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ipv4.c 17KB

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  1. #include <string.h>
  2. #include <stdint.h>
  3. #include <stdlib.h>
  4. #include <stdio.h>
  5. #include <errno.h>
  6. #include <byteswap.h>
  7. #include <gpxe/list.h>
  8. #include <gpxe/in.h>
  9. #include <gpxe/arp.h>
  10. #include <gpxe/if_ether.h>
  11. #include <gpxe/iobuf.h>
  12. #include <gpxe/netdevice.h>
  13. #include <gpxe/ip.h>
  14. #include <gpxe/tcpip.h>
  15. #include <gpxe/dhcp.h>
  16. #include <gpxe/settings.h>
  17. /** @file
  18. *
  19. * IPv4 protocol
  20. *
  21. */
  22. FILE_LICENCE ( GPL2_OR_LATER );
  23. /* Unique IP datagram identification number */
  24. static uint16_t next_ident = 0;
  25. struct net_protocol ipv4_protocol;
  26. /** List of IPv4 miniroutes */
  27. struct list_head ipv4_miniroutes = LIST_HEAD_INIT ( ipv4_miniroutes );
  28. /** List of fragment reassembly buffers */
  29. static LIST_HEAD ( frag_buffers );
  30. /**
  31. * Add IPv4 minirouting table entry
  32. *
  33. * @v netdev Network device
  34. * @v address IPv4 address
  35. * @v netmask Subnet mask
  36. * @v gateway Gateway address (or @c INADDR_NONE for no gateway)
  37. * @ret miniroute Routing table entry, or NULL
  38. */
  39. static struct ipv4_miniroute * __malloc
  40. add_ipv4_miniroute ( struct net_device *netdev, struct in_addr address,
  41. struct in_addr netmask, struct in_addr gateway ) {
  42. struct ipv4_miniroute *miniroute;
  43. DBG ( "IPv4 add %s", inet_ntoa ( address ) );
  44. DBG ( "/%s ", inet_ntoa ( netmask ) );
  45. if ( gateway.s_addr != INADDR_NONE )
  46. DBG ( "gw %s ", inet_ntoa ( gateway ) );
  47. DBG ( "via %s\n", netdev->name );
  48. /* Allocate and populate miniroute structure */
  49. miniroute = malloc ( sizeof ( *miniroute ) );
  50. if ( ! miniroute ) {
  51. DBG ( "IPv4 could not add miniroute\n" );
  52. return NULL;
  53. }
  54. /* Record routing information */
  55. miniroute->netdev = netdev_get ( netdev );
  56. miniroute->address = address;
  57. miniroute->netmask = netmask;
  58. miniroute->gateway = gateway;
  59. /* Add to end of list if we have a gateway, otherwise
  60. * to start of list.
  61. */
  62. if ( gateway.s_addr != INADDR_NONE ) {
  63. list_add_tail ( &miniroute->list, &ipv4_miniroutes );
  64. } else {
  65. list_add ( &miniroute->list, &ipv4_miniroutes );
  66. }
  67. return miniroute;
  68. }
  69. /**
  70. * Delete IPv4 minirouting table entry
  71. *
  72. * @v miniroute Routing table entry
  73. */
  74. static void del_ipv4_miniroute ( struct ipv4_miniroute *miniroute ) {
  75. DBG ( "IPv4 del %s", inet_ntoa ( miniroute->address ) );
  76. DBG ( "/%s ", inet_ntoa ( miniroute->netmask ) );
  77. if ( miniroute->gateway.s_addr != INADDR_NONE )
  78. DBG ( "gw %s ", inet_ntoa ( miniroute->gateway ) );
  79. DBG ( "via %s\n", miniroute->netdev->name );
  80. netdev_put ( miniroute->netdev );
  81. list_del ( &miniroute->list );
  82. free ( miniroute );
  83. }
  84. /**
  85. * Perform IPv4 routing
  86. *
  87. * @v dest Final destination address
  88. * @ret dest Next hop destination address
  89. * @ret miniroute Routing table entry to use, or NULL if no route
  90. *
  91. * If the route requires use of a gateway, the next hop destination
  92. * address will be overwritten with the gateway address.
  93. */
  94. static struct ipv4_miniroute * ipv4_route ( struct in_addr *dest ) {
  95. struct ipv4_miniroute *miniroute;
  96. int local;
  97. int has_gw;
  98. /* Never attempt to route the broadcast address */
  99. if ( dest->s_addr == INADDR_BROADCAST )
  100. return NULL;
  101. /* Find first usable route in routing table */
  102. list_for_each_entry ( miniroute, &ipv4_miniroutes, list ) {
  103. local = ( ( ( dest->s_addr ^ miniroute->address.s_addr )
  104. & miniroute->netmask.s_addr ) == 0 );
  105. has_gw = ( miniroute->gateway.s_addr != INADDR_NONE );
  106. if ( local || has_gw ) {
  107. if ( ! local )
  108. *dest = miniroute->gateway;
  109. return miniroute;
  110. }
  111. }
  112. return NULL;
  113. }
  114. /**
  115. * Fragment reassembly counter timeout
  116. *
  117. * @v timer Retry timer
  118. * @v over If asserted, the timer is greater than @c MAX_TIMEOUT
  119. */
  120. static void ipv4_frag_expired ( struct retry_timer *timer __unused,
  121. int over ) {
  122. if ( over ) {
  123. DBG ( "Fragment reassembly timeout" );
  124. /* Free the fragment buffer */
  125. }
  126. }
  127. /**
  128. * Free fragment buffer
  129. *
  130. * @v fragbug Fragment buffer
  131. */
  132. static void free_fragbuf ( struct frag_buffer *fragbuf ) {
  133. free ( fragbuf );
  134. }
  135. /**
  136. * Fragment reassembler
  137. *
  138. * @v iobuf I/O buffer, fragment of the datagram
  139. * @ret frag_iob Reassembled packet, or NULL
  140. */
  141. static struct io_buffer * ipv4_reassemble ( struct io_buffer * iobuf ) {
  142. struct iphdr *iphdr = iobuf->data;
  143. struct frag_buffer *fragbuf;
  144. /**
  145. * Check if the fragment belongs to any fragment series
  146. */
  147. list_for_each_entry ( fragbuf, &frag_buffers, list ) {
  148. if ( fragbuf->ident == iphdr->ident &&
  149. fragbuf->src.s_addr == iphdr->src.s_addr ) {
  150. /**
  151. * Check if the packet is the expected fragment
  152. *
  153. * The offset of the new packet must be equal to the
  154. * length of the data accumulated so far (the length of
  155. * the reassembled I/O buffer
  156. */
  157. if ( iob_len ( fragbuf->frag_iob ) ==
  158. ( iphdr->frags & IP_MASK_OFFSET ) ) {
  159. /**
  160. * Append the contents of the fragment to the
  161. * reassembled I/O buffer
  162. */
  163. iob_pull ( iobuf, sizeof ( *iphdr ) );
  164. memcpy ( iob_put ( fragbuf->frag_iob,
  165. iob_len ( iobuf ) ),
  166. iobuf->data, iob_len ( iobuf ) );
  167. free_iob ( iobuf );
  168. /** Check if the fragment series is over */
  169. if ( ! ( iphdr->frags & IP_MASK_MOREFRAGS ) ) {
  170. iobuf = fragbuf->frag_iob;
  171. free_fragbuf ( fragbuf );
  172. return iobuf;
  173. }
  174. } else {
  175. /* Discard the fragment series */
  176. free_fragbuf ( fragbuf );
  177. free_iob ( iobuf );
  178. }
  179. return NULL;
  180. }
  181. }
  182. /** Check if the fragment is the first in the fragment series */
  183. if ( iphdr->frags & IP_MASK_MOREFRAGS &&
  184. ( ( iphdr->frags & IP_MASK_OFFSET ) == 0 ) ) {
  185. /** Create a new fragment buffer */
  186. fragbuf = ( struct frag_buffer* ) malloc ( sizeof( *fragbuf ) );
  187. fragbuf->ident = iphdr->ident;
  188. fragbuf->src = iphdr->src;
  189. /* Set up the reassembly I/O buffer */
  190. fragbuf->frag_iob = alloc_iob ( IP_FRAG_IOB_SIZE );
  191. iob_pull ( iobuf, sizeof ( *iphdr ) );
  192. memcpy ( iob_put ( fragbuf->frag_iob, iob_len ( iobuf ) ),
  193. iobuf->data, iob_len ( iobuf ) );
  194. free_iob ( iobuf );
  195. /* Set the reassembly timer */
  196. fragbuf->frag_timer.timeout = IP_FRAG_TIMEOUT;
  197. fragbuf->frag_timer.expired = ipv4_frag_expired;
  198. start_timer ( &fragbuf->frag_timer );
  199. /* Add the fragment buffer to the list of fragment buffers */
  200. list_add ( &fragbuf->list, &frag_buffers );
  201. }
  202. return NULL;
  203. }
  204. /**
  205. * Add IPv4 pseudo-header checksum to existing checksum
  206. *
  207. * @v iobuf I/O buffer
  208. * @v csum Existing checksum
  209. * @ret csum Updated checksum
  210. */
  211. static uint16_t ipv4_pshdr_chksum ( struct io_buffer *iobuf, uint16_t csum ) {
  212. struct ipv4_pseudo_header pshdr;
  213. struct iphdr *iphdr = iobuf->data;
  214. size_t hdrlen = ( ( iphdr->verhdrlen & IP_MASK_HLEN ) * 4 );
  215. /* Build pseudo-header */
  216. pshdr.src = iphdr->src;
  217. pshdr.dest = iphdr->dest;
  218. pshdr.zero_padding = 0x00;
  219. pshdr.protocol = iphdr->protocol;
  220. pshdr.len = htons ( iob_len ( iobuf ) - hdrlen );
  221. /* Update the checksum value */
  222. return tcpip_continue_chksum ( csum, &pshdr, sizeof ( pshdr ) );
  223. }
  224. /**
  225. * Determine link-layer address
  226. *
  227. * @v dest IPv4 destination address
  228. * @v src IPv4 source address
  229. * @v netdev Network device
  230. * @v ll_dest Link-layer destination address buffer
  231. * @ret rc Return status code
  232. */
  233. static int ipv4_ll_addr ( struct in_addr dest, struct in_addr src,
  234. struct net_device *netdev, uint8_t *ll_dest ) {
  235. struct ll_protocol *ll_protocol = netdev->ll_protocol;
  236. if ( dest.s_addr == INADDR_BROADCAST ) {
  237. /* Broadcast address */
  238. memcpy ( ll_dest, netdev->ll_broadcast,
  239. ll_protocol->ll_addr_len );
  240. return 0;
  241. } else if ( IN_MULTICAST ( ntohl ( dest.s_addr ) ) ) {
  242. return ll_protocol->mc_hash ( AF_INET, &dest, ll_dest );
  243. } else {
  244. /* Unicast address: resolve via ARP */
  245. return arp_resolve ( netdev, &ipv4_protocol, &dest,
  246. &src, ll_dest );
  247. }
  248. }
  249. /**
  250. * Transmit IP packet
  251. *
  252. * @v iobuf I/O buffer
  253. * @v tcpip Transport-layer protocol
  254. * @v st_src Source network-layer address
  255. * @v st_dest Destination network-layer address
  256. * @v netdev Network device to use if no route found, or NULL
  257. * @v trans_csum Transport-layer checksum to complete, or NULL
  258. * @ret rc Status
  259. *
  260. * This function expects a transport-layer segment and prepends the IP header
  261. */
  262. static int ipv4_tx ( struct io_buffer *iobuf,
  263. struct tcpip_protocol *tcpip_protocol,
  264. struct sockaddr_tcpip *st_src,
  265. struct sockaddr_tcpip *st_dest,
  266. struct net_device *netdev,
  267. uint16_t *trans_csum ) {
  268. struct iphdr *iphdr = iob_push ( iobuf, sizeof ( *iphdr ) );
  269. struct sockaddr_in *sin_src = ( ( struct sockaddr_in * ) st_src );
  270. struct sockaddr_in *sin_dest = ( ( struct sockaddr_in * ) st_dest );
  271. struct ipv4_miniroute *miniroute;
  272. struct in_addr next_hop;
  273. uint8_t ll_dest[MAX_LL_ADDR_LEN];
  274. int rc;
  275. /* Fill up the IP header, except source address */
  276. memset ( iphdr, 0, sizeof ( *iphdr ) );
  277. iphdr->verhdrlen = ( IP_VER | ( sizeof ( *iphdr ) / 4 ) );
  278. iphdr->service = IP_TOS;
  279. iphdr->len = htons ( iob_len ( iobuf ) );
  280. iphdr->ident = htons ( ++next_ident );
  281. iphdr->ttl = IP_TTL;
  282. iphdr->protocol = tcpip_protocol->tcpip_proto;
  283. iphdr->dest = sin_dest->sin_addr;
  284. /* Use routing table to identify next hop and transmitting netdev */
  285. next_hop = iphdr->dest;
  286. if ( sin_src )
  287. iphdr->src = sin_src->sin_addr;
  288. if ( ( next_hop.s_addr != INADDR_BROADCAST ) &&
  289. ( ! IN_MULTICAST ( ntohl ( next_hop.s_addr ) ) ) &&
  290. ( ( miniroute = ipv4_route ( &next_hop ) ) != NULL ) ) {
  291. iphdr->src = miniroute->address;
  292. netdev = miniroute->netdev;
  293. }
  294. if ( ! netdev ) {
  295. DBG ( "IPv4 has no route to %s\n", inet_ntoa ( iphdr->dest ) );
  296. rc = -ENETUNREACH;
  297. goto err;
  298. }
  299. /* Determine link-layer destination address */
  300. if ( ( rc = ipv4_ll_addr ( next_hop, iphdr->src, netdev,
  301. ll_dest ) ) != 0 ) {
  302. DBG ( "IPv4 has no link-layer address for %s: %s\n",
  303. inet_ntoa ( next_hop ), strerror ( rc ) );
  304. goto err;
  305. }
  306. /* Fix up checksums */
  307. if ( trans_csum )
  308. *trans_csum = ipv4_pshdr_chksum ( iobuf, *trans_csum );
  309. iphdr->chksum = tcpip_chksum ( iphdr, sizeof ( *iphdr ) );
  310. /* Print IP4 header for debugging */
  311. DBG ( "IPv4 TX %s->", inet_ntoa ( iphdr->src ) );
  312. DBG ( "%s len %d proto %d id %04x csum %04x\n",
  313. inet_ntoa ( iphdr->dest ), ntohs ( iphdr->len ), iphdr->protocol,
  314. ntohs ( iphdr->ident ), ntohs ( iphdr->chksum ) );
  315. /* Hand off to link layer */
  316. if ( ( rc = net_tx ( iobuf, netdev, &ipv4_protocol, ll_dest ) ) != 0 ) {
  317. DBG ( "IPv4 could not transmit packet via %s: %s\n",
  318. netdev->name, strerror ( rc ) );
  319. return rc;
  320. }
  321. return 0;
  322. err:
  323. free_iob ( iobuf );
  324. return rc;
  325. }
  326. /**
  327. * Process incoming packets
  328. *
  329. * @v iobuf I/O buffer
  330. * @v netdev Network device
  331. * @v ll_source Link-layer destination source
  332. *
  333. * This function expects an IP4 network datagram. It processes the headers
  334. * and sends it to the transport layer.
  335. */
  336. static int ipv4_rx ( struct io_buffer *iobuf, struct net_device *netdev __unused,
  337. const void *ll_source __unused ) {
  338. struct iphdr *iphdr = iobuf->data;
  339. size_t hdrlen;
  340. size_t len;
  341. union {
  342. struct sockaddr_in sin;
  343. struct sockaddr_tcpip st;
  344. } src, dest;
  345. uint16_t csum;
  346. uint16_t pshdr_csum;
  347. int rc;
  348. /* Sanity check the IPv4 header */
  349. if ( iob_len ( iobuf ) < sizeof ( *iphdr ) ) {
  350. DBG ( "IPv4 packet too short at %zd bytes (min %zd bytes)\n",
  351. iob_len ( iobuf ), sizeof ( *iphdr ) );
  352. goto err;
  353. }
  354. if ( ( iphdr->verhdrlen & IP_MASK_VER ) != IP_VER ) {
  355. DBG ( "IPv4 version %#02x not supported\n", iphdr->verhdrlen );
  356. goto err;
  357. }
  358. hdrlen = ( ( iphdr->verhdrlen & IP_MASK_HLEN ) * 4 );
  359. if ( hdrlen < sizeof ( *iphdr ) ) {
  360. DBG ( "IPv4 header too short at %zd bytes (min %zd bytes)\n",
  361. hdrlen, sizeof ( *iphdr ) );
  362. goto err;
  363. }
  364. if ( hdrlen > iob_len ( iobuf ) ) {
  365. DBG ( "IPv4 header too long at %zd bytes "
  366. "(packet is %zd bytes)\n", hdrlen, iob_len ( iobuf ) );
  367. goto err;
  368. }
  369. if ( ( csum = tcpip_chksum ( iphdr, hdrlen ) ) != 0 ) {
  370. DBG ( "IPv4 checksum incorrect (is %04x including checksum "
  371. "field, should be 0000)\n", csum );
  372. goto err;
  373. }
  374. len = ntohs ( iphdr->len );
  375. if ( len < hdrlen ) {
  376. DBG ( "IPv4 length too short at %zd bytes "
  377. "(header is %zd bytes)\n", len, hdrlen );
  378. goto err;
  379. }
  380. if ( len > iob_len ( iobuf ) ) {
  381. DBG ( "IPv4 length too long at %zd bytes "
  382. "(packet is %zd bytes)\n", len, iob_len ( iobuf ) );
  383. goto err;
  384. }
  385. /* Print IPv4 header for debugging */
  386. DBG ( "IPv4 RX %s<-", inet_ntoa ( iphdr->dest ) );
  387. DBG ( "%s len %d proto %d id %04x csum %04x\n",
  388. inet_ntoa ( iphdr->src ), ntohs ( iphdr->len ), iphdr->protocol,
  389. ntohs ( iphdr->ident ), ntohs ( iphdr->chksum ) );
  390. /* Truncate packet to correct length, calculate pseudo-header
  391. * checksum and then strip off the IPv4 header.
  392. */
  393. iob_unput ( iobuf, ( iob_len ( iobuf ) - len ) );
  394. pshdr_csum = ipv4_pshdr_chksum ( iobuf, TCPIP_EMPTY_CSUM );
  395. iob_pull ( iobuf, hdrlen );
  396. /* Fragment reassembly */
  397. if ( ( iphdr->frags & htons ( IP_MASK_MOREFRAGS ) ) ||
  398. ( ( iphdr->frags & htons ( IP_MASK_OFFSET ) ) != 0 ) ) {
  399. /* Pass the fragment to ipv4_reassemble() which either
  400. * returns a fully reassembled I/O buffer or NULL.
  401. */
  402. iobuf = ipv4_reassemble ( iobuf );
  403. if ( ! iobuf )
  404. return 0;
  405. }
  406. /* Construct socket addresses and hand off to transport layer */
  407. memset ( &src, 0, sizeof ( src ) );
  408. src.sin.sin_family = AF_INET;
  409. src.sin.sin_addr = iphdr->src;
  410. memset ( &dest, 0, sizeof ( dest ) );
  411. dest.sin.sin_family = AF_INET;
  412. dest.sin.sin_addr = iphdr->dest;
  413. if ( ( rc = tcpip_rx ( iobuf, iphdr->protocol, &src.st,
  414. &dest.st, pshdr_csum ) ) != 0 ) {
  415. DBG ( "IPv4 received packet rejected by stack: %s\n",
  416. strerror ( rc ) );
  417. return rc;
  418. }
  419. return 0;
  420. err:
  421. free_iob ( iobuf );
  422. return -EINVAL;
  423. }
  424. /**
  425. * Check existence of IPv4 address for ARP
  426. *
  427. * @v netdev Network device
  428. * @v net_addr Network-layer address
  429. * @ret rc Return status code
  430. */
  431. static int ipv4_arp_check ( struct net_device *netdev, const void *net_addr ) {
  432. const struct in_addr *address = net_addr;
  433. struct ipv4_miniroute *miniroute;
  434. list_for_each_entry ( miniroute, &ipv4_miniroutes, list ) {
  435. if ( ( miniroute->netdev == netdev ) &&
  436. ( miniroute->address.s_addr == address->s_addr ) ) {
  437. /* Found matching address */
  438. return 0;
  439. }
  440. }
  441. return -ENOENT;
  442. }
  443. /**
  444. * Convert IPv4 address to dotted-quad notation
  445. *
  446. * @v in IP address
  447. * @ret string IP address in dotted-quad notation
  448. */
  449. char * inet_ntoa ( struct in_addr in ) {
  450. static char buf[16]; /* "xxx.xxx.xxx.xxx" */
  451. uint8_t *bytes = ( uint8_t * ) &in;
  452. sprintf ( buf, "%d.%d.%d.%d", bytes[0], bytes[1], bytes[2], bytes[3] );
  453. return buf;
  454. }
  455. /**
  456. * Transcribe IP address
  457. *
  458. * @v net_addr IP address
  459. * @ret string IP address in dotted-quad notation
  460. *
  461. */
  462. static const char * ipv4_ntoa ( const void *net_addr ) {
  463. return inet_ntoa ( * ( ( struct in_addr * ) net_addr ) );
  464. }
  465. /** IPv4 protocol */
  466. struct net_protocol ipv4_protocol __net_protocol = {
  467. .name = "IP",
  468. .net_proto = htons ( ETH_P_IP ),
  469. .net_addr_len = sizeof ( struct in_addr ),
  470. .rx = ipv4_rx,
  471. .ntoa = ipv4_ntoa,
  472. };
  473. /** IPv4 TCPIP net protocol */
  474. struct tcpip_net_protocol ipv4_tcpip_protocol __tcpip_net_protocol = {
  475. .name = "IPv4",
  476. .sa_family = AF_INET,
  477. .tx = ipv4_tx,
  478. };
  479. /** IPv4 ARP protocol */
  480. struct arp_net_protocol ipv4_arp_protocol __arp_net_protocol = {
  481. .net_protocol = &ipv4_protocol,
  482. .check = ipv4_arp_check,
  483. };
  484. /******************************************************************************
  485. *
  486. * Settings
  487. *
  488. ******************************************************************************
  489. */
  490. /** IPv4 address setting */
  491. struct setting ip_setting __setting = {
  492. .name = "ip",
  493. .description = "IPv4 address",
  494. .tag = DHCP_EB_YIADDR,
  495. .type = &setting_type_ipv4,
  496. };
  497. /** IPv4 subnet mask setting */
  498. struct setting netmask_setting __setting = {
  499. .name = "netmask",
  500. .description = "IPv4 subnet mask",
  501. .tag = DHCP_SUBNET_MASK,
  502. .type = &setting_type_ipv4,
  503. };
  504. /** Default gateway setting */
  505. struct setting gateway_setting __setting = {
  506. .name = "gateway",
  507. .description = "Default gateway",
  508. .tag = DHCP_ROUTERS,
  509. .type = &setting_type_ipv4,
  510. };
  511. /**
  512. * Create IPv4 routing table based on configured settings
  513. *
  514. * @ret rc Return status code
  515. */
  516. static int ipv4_create_routes ( void ) {
  517. struct ipv4_miniroute *miniroute;
  518. struct ipv4_miniroute *tmp;
  519. struct net_device *netdev;
  520. struct settings *settings;
  521. struct in_addr address = { 0 };
  522. struct in_addr netmask = { 0 };
  523. struct in_addr gateway = { INADDR_NONE };
  524. /* Delete all existing routes */
  525. list_for_each_entry_safe ( miniroute, tmp, &ipv4_miniroutes, list )
  526. del_ipv4_miniroute ( miniroute );
  527. /* Create a route for each configured network device */
  528. for_each_netdev ( netdev ) {
  529. settings = netdev_settings ( netdev );
  530. /* Get IPv4 address */
  531. address.s_addr = 0;
  532. fetch_ipv4_setting ( settings, &ip_setting, &address );
  533. if ( ! address.s_addr )
  534. continue;
  535. /* Calculate default netmask */
  536. if ( IN_CLASSA ( ntohl ( address.s_addr ) ) ) {
  537. netmask.s_addr = htonl ( IN_CLASSA_NET );
  538. } else if ( IN_CLASSB ( ntohl ( address.s_addr ) ) ) {
  539. netmask.s_addr = htonl ( IN_CLASSB_NET );
  540. } else if ( IN_CLASSC ( ntohl ( address.s_addr ) ) ) {
  541. netmask.s_addr = htonl ( IN_CLASSC_NET );
  542. } else {
  543. netmask.s_addr = 0;
  544. }
  545. /* Override with subnet mask, if present */
  546. fetch_ipv4_setting ( settings, &netmask_setting, &netmask );
  547. /* Get default gateway, if present */
  548. gateway.s_addr = INADDR_NONE;
  549. fetch_ipv4_setting ( settings, &gateway_setting, &gateway );
  550. /* Configure route */
  551. miniroute = add_ipv4_miniroute ( netdev, address,
  552. netmask, gateway );
  553. if ( ! miniroute )
  554. return -ENOMEM;
  555. }
  556. return 0;
  557. }
  558. /** IPv4 settings applicator */
  559. struct settings_applicator ipv4_settings_applicator __settings_applicator = {
  560. .apply = ipv4_create_routes,
  561. };
  562. /* Drag in ICMP */
  563. REQUIRE_OBJECT ( icmp );