netdev_ipaddr.h 13 KB

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  1. /*
  2. * Copyright (c) 2006-2021, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2018-05-18 ChenYong First version
  9. */
  10. #ifndef __NETDEV_IPADDR_H__
  11. #define __NETDEV_IPADDR_H__
  12. #include <stdint.h>
  13. #include <rtconfig.h>
  14. #ifdef __cplusplus
  15. extern "C" {
  16. #endif
  17. /*
  18. * Definitions of bits in internet address integers.
  19. * On subnets, the decomposition of addresses to host and net parts
  20. * is done according to subnet mask, not the masks here.
  21. */
  22. #define IN_CLASSA(i) (((long)(i) & 0x80000000) == 0)
  23. #define IN_CLASSA_NET 0xff000000
  24. #define IN_CLASSA_NSHIFT 24
  25. #define IN_CLASSA_HOST 0x00ffffff
  26. #define IN_CLASSA_MAX 128
  27. #define IN_CLASSB(i) (((long)(i) & 0xc0000000) == 0x80000000)
  28. #define IN_CLASSB_NET 0xffff0000
  29. #define IN_CLASSB_NSHIFT 16
  30. #define IN_CLASSB_HOST 0x0000ffff
  31. #define IN_CLASSB_MAX 65536
  32. #define IN_CLASSC(i) (((long)(i) & 0xe0000000) == 0xc0000000)
  33. #define IN_CLASSC_NET 0xffffff00
  34. #define IN_CLASSC_NSHIFT 8
  35. #define IN_CLASSC_HOST 0x000000ff
  36. #define IN_CLASSD(i) (((long)(i) & 0xf0000000) == 0xe0000000)
  37. #define IN_MULTICAST(i) IN_CLASSD(i)
  38. #define IN_EXPERIMENTAL(i) (((long)(i) & 0xe0000000) == 0xe0000000)
  39. #define IN_BADCLASS(i) (((long)(i) & 0xf0000000) == 0xf0000000)
  40. #define IN_LOOPBACKNET 127 /* official! */
  41. /* IP address types for use in ip_addr_t.type member */
  42. enum netdev_ip_addr_type
  43. {
  44. /** IPv4 */
  45. IPADDR_TYPE_V4 = 0U,
  46. /** IPv6 */
  47. IPADDR_TYPE_V6 = 6U,
  48. /** IPv4+IPv6 ("dual-stack") */
  49. IPADDR_TYPE_ANY = 46U
  50. };
  51. #if NETDEV_IPV4
  52. /** IPv4 only: set the IP address given as an u32_t */
  53. #define ip4_addr_set_u32(dest_ipaddr, src_u32) ((dest_ipaddr)->addr = (src_u32))
  54. /** IPv4 only: get the IP address as an u32_t */
  55. #define ip4_addr_get_u32(src_ipaddr) ((src_ipaddr)->addr)
  56. #define IP4ADDR_STRLEN_MAX 16
  57. #endif /* NETIF_IPV4 */
  58. /* These macros should be calculated by the preprocessor and are used
  59. with compile-time constants only (so that there is no little-endian
  60. overhead at runtime). */
  61. #define PP_HTONS(x) ((((x) & 0x00ffUL) << 8) | (((x) & 0xff00UL) >> 8))
  62. #define PP_NTOHS(x) PP_HTONS(x)
  63. #define PP_HTONL(x) ((((x) & 0x000000ffUL) << 24) | \
  64. (((x) & 0x0000ff00UL) << 8) | \
  65. (((x) & 0x00ff0000UL) >> 8) | \
  66. (((x) & 0xff000000UL) >> 24))
  67. #define PP_NTOHL(x) PP_HTONL(x)
  68. #define htons(x) (uint16_t)PP_HTONS(x)
  69. #define ntohs(x) (uint16_t)PP_NTOHS(x)
  70. #define htonl(x) (uint32_t)PP_HTONL(x)
  71. #define ntohl(x) (uint32_t)PP_NTOHL(x)
  72. /* If your port already typedef's in_addr_t, define IN_ADDR_T_DEFINED
  73. to prevent this code from redefining it. */
  74. #if !defined(in_addr_t) && !defined(IN_ADDR_T_DEFINED)
  75. typedef uint32_t in_addr_t;
  76. #endif
  77. #if NETDEV_IPV4
  78. struct in_addr
  79. {
  80. in_addr_t s_addr;
  81. };
  82. typedef struct ip4_addr
  83. {
  84. uint32_t addr;
  85. } ip4_addr_t;
  86. /** 255.255.255.255 */
  87. #define IPADDR_NONE ((uint32_t)0xffffffffUL)
  88. /** 127.0.0.1 */
  89. #define IPADDR_LOOPBACK ((uint32_t)0x7f000001UL)
  90. /** 0.0.0.0 */
  91. #define IPADDR_ANY ((uint32_t)0x00000000UL)
  92. /** 255.255.255.255 */
  93. #define IPADDR_BROADCAST ((uint32_t)0xffffffffUL)
  94. /** 255.255.255.255 */
  95. #define INADDR_NONE IPADDR_NONE
  96. /** 127.0.0.1 */
  97. #define INADDR_LOOPBACK IPADDR_LOOPBACK
  98. /** 0.0.0.0 */
  99. #define INADDR_ANY IPADDR_ANY
  100. /** 255.255.255.255 */
  101. #define INADDR_BROADCAST IPADDR_BROADCAST
  102. #define IPADDR_BROADCAST_STRING "255.255.255.255"
  103. /** Copy IP address - faster than ip4_addr_set: no NULL check */
  104. #define ip4_addr_copy(dest, src) ((dest).addr = (src).addr)
  105. #define ip4_addr_cmp(addr1, addr2) ((addr1)->addr == (addr2)->addr)
  106. /** Safely copy one IP address to another (src may be NULL) */
  107. #define ip4_addr_set(dest, src) ((dest)->addr = ((src) == NULL ? 0 : (src)->addr))
  108. /** Set complete address to zero */
  109. #define ip4_addr_set_zero(ipaddr) ((ipaddr)->addr = 0)
  110. /** Set address to IPADDR_ANY (no need for htonl()) */
  111. #define ip4_addr_set_any(ipaddr) ((ipaddr)->addr = IPADDR_ANY)
  112. #define ip4_addr_isany_val(ipaddr) ((ipaddr).addr == IPADDR_ANY)
  113. #define ip4_addr_isany(ipaddr) ((ipaddr) == NULL || ip4_addr_isany_val(*(ipaddr)))
  114. in_addr_t netdev_ipaddr_addr(const char *cp);
  115. int netdev_ip4addr_aton(const char *cp, ip4_addr_t *addr);
  116. char *netdev_ip4addr_ntoa(const ip4_addr_t *addr);
  117. char *netdev_ip4addr_ntoa_r(const ip4_addr_t *addr, char *buf, int buflen);
  118. #endif /* NETIF_IPV4 */
  119. #if NETDEV_IPV6
  120. struct in6_addr
  121. {
  122. union
  123. {
  124. uint32_t u32_addr[4];
  125. uint8_t u8_addr[16];
  126. } un;
  127. #define s6_addr un.u8_addr
  128. };
  129. typedef struct ip6_addr
  130. {
  131. uint32_t addr[4];
  132. #ifdef NETDEV_IPV6_SCOPES
  133. uint8_t zone;
  134. #endif /* NETDEV_IPV6_SCOPES */
  135. } ip6_addr_t;
  136. /** This macro can be used to initialize a variable of type struct in6_addr
  137. to the IPv6 wildcard address. */
  138. #define IN6ADDR_ANY_INIT {{{0,0,0,0}}}
  139. /** This macro can be used to initialize a variable of type struct in6_addr
  140. to the IPv6 loopback address. */
  141. #define IN6ADDR_LOOPBACK_INIT {{{0,0,0,PP_HTONL(1)}}}
  142. /** This variable is initialized by the system to contain the wildcard IPv6 address.
  143. */
  144. extern const struct in6_addr in6addr_any;
  145. #define ip6_addr_cmp(addr1, addr2) (((addr1)->addr[0] == (addr2)->addr[0]) && \
  146. ((addr1)->addr[1] == (addr2)->addr[1]) && \
  147. ((addr1)->addr[2] == (addr2)->addr[2]) && \
  148. ((addr1)->addr[3] == (addr2)->addr[3]))
  149. /** Copy IPv6 address - faster than ip6_addr_set: no NULL check */
  150. #define ip6_addr_copy(dest, src) do{(dest).addr[0] = (src).addr[0]; \
  151. (dest).addr[1] = (src).addr[1]; \
  152. (dest).addr[2] = (src).addr[2]; \
  153. (dest).addr[3] = (src).addr[3];}while(0)
  154. /** Safely copy one IPv6 address to another (src may be NULL) */
  155. #define ip6_addr_set(dest, src) do{(dest)->addr[0] = (src) == NULL ? 0 : (src)->addr[0]; \
  156. (dest)->addr[1] = (src) == NULL ? 0 : (src)->addr[1]; \
  157. (dest)->addr[2] = (src) == NULL ? 0 : (src)->addr[2]; \
  158. (dest)->addr[3] = (src) == NULL ? 0 : (src)->addr[3];}while(0)
  159. /** Set complete address to zero */
  160. #define ip6_addr_set_zero(ip6addr) do{(ip6addr)->addr[0] = 0; \
  161. (ip6addr)->addr[1] = 0; \
  162. (ip6addr)->addr[2] = 0; \
  163. (ip6addr)->addr[3] = 0;}while(0)
  164. /** Set address to ipv6 'any' (no need for lwip_htonl()) */
  165. #define ip6_addr_set_any(ip6addr) ip6_addr_set_zero(ip6addr)
  166. #define ip6_addr_isany_val(ip6addr) (((ip6addr).addr[0] == 0) && \
  167. ((ip6addr).addr[1] == 0) && \
  168. ((ip6addr).addr[2] == 0) && \
  169. ((ip6addr).addr[3] == 0))
  170. #define ip6_addr_isany(ip6addr) (((ip6addr) == NULL) || ip6_addr_isany_val(*(ip6addr)))
  171. int netdev_ip6addr_aton(const char *cp, ip6_addr_t *addr);
  172. char *netdev_ip6addr_ntoa(const ip6_addr_t *addr);
  173. char *netdev_ip6addr_ntoa_r(const ip6_addr_t *addr, char *buf, int buflen);
  174. #endif /* NETIF_IPV6 */
  175. #if NETDEV_IPV4 && NETDEV_IPV6
  176. /* A union struct for both IP version's addresses */
  177. typedef struct _ip_addr
  178. {
  179. union
  180. {
  181. ip6_addr_t ip6;
  182. ip4_addr_t ip4;
  183. } u_addr;
  184. /** @ref netdev_ip_addr_type */
  185. uint8_t type;
  186. } ip_addr_t;
  187. #define IP_SET_TYPE_VAL(ipaddr, iptype) do { (ipaddr).type = (iptype); }while(0)
  188. #define IP_SET_TYPE(ipaddr, iptype) do { if((ipaddr) != NULL) { IP_SET_TYPE_VAL(*(ipaddr), iptype); }}while(0)
  189. #define IP_GET_TYPE(ipaddr) ((ipaddr)->type)
  190. #define IP_IS_V4_VAL(ipaddr) (IP_GET_TYPE(&ipaddr) == IPADDR_TYPE_V4)
  191. #define IP_IS_V6_VAL(ipaddr) (IP_GET_TYPE(&ipaddr) == IPADDR_TYPE_V6)
  192. #define IP_IS_V4(ipaddr) (((ipaddr) == NULL) || IP_IS_V4_VAL(*(ipaddr)))
  193. #define IP_IS_V6(ipaddr) (((ipaddr) != NULL) && IP_IS_V6_VAL(*(ipaddr)))
  194. /** Convert generic ip address to specific protocol version */
  195. #define ip_2_ip6(ipaddr) (&((ipaddr)->u_addr.ip6))
  196. /** Convert generic ip address to specific protocol version */
  197. #define ip_2_ip4(ipaddr) (&((ipaddr)->u_addr.ip4))
  198. #define ip_addr_copy(dest, src) do{ IP_SET_TYPE_VAL(dest, IP_GET_TYPE(&src)); if(IP_IS_V6_VAL(src)){ \
  199. ip6_addr_copy(*ip_2_ip6(&(dest)), *ip_2_ip6(&(src))); }else{ \
  200. ip4_addr_copy(*ip_2_ip4(&(dest)), *ip_2_ip4(&(src))); }}while(0)
  201. #define ip_addr_cmp(addr1, addr2) ((IP_GET_TYPE(addr1) != IP_GET_TYPE(addr2)) ? 0 : (IP_IS_V6_VAL(*(addr1)) ? \
  202. ip6_addr_cmp(ip_2_ip6(addr1), ip_2_ip6(addr2)) : \
  203. ip4_addr_cmp(ip_2_ip4(addr1), ip_2_ip4(addr2))))
  204. #define ip_addr_set(dest, src) do{ IP_SET_TYPE(dest, IP_GET_TYPE(src)); if(IP_IS_V6(src)){ \
  205. ip6_addr_set(ip_2_ip6(dest), ip_2_ip6(src)); }else{ \
  206. ip4_addr_set(ip_2_ip4(dest), ip_2_ip4(src)); }}while(0)
  207. #define ip_addr_set_zero(ipaddr) do{ ip6_addr_set_zero(ip_2_ip6(ipaddr)); IP_SET_TYPE(ipaddr, 0); }while(0)
  208. #define ip_addr_set_any(is_ipv6, ipaddr) do{ if(is_ipv6){ \
  209. ip6_addr_set_any(ip_2_ip6(ipaddr)); IP_SET_TYPE(ipaddr, IPADDR_TYPE_V6); }else{ \
  210. ip4_addr_set_any(ip_2_ip4(ipaddr)); IP_SET_TYPE(ipaddr, IPADDR_TYPE_V4); }}while(0)
  211. #define ip_addr_isany_val(ipaddr) ((IP_IS_V6_VAL(ipaddr)) ? \
  212. ip6_addr_isany_val(*ip_2_ip6(&(ipaddr))) : \
  213. ip4_addr_isany_val(*ip_2_ip4(&(ipaddr))))
  214. #define ip_addr_isany(ipaddr) ((IP_IS_V6(ipaddr)) ? \
  215. ip6_addr_isany(ip_2_ip6(ipaddr)) : \
  216. ip4_addr_isany(ip_2_ip4(ipaddr)))
  217. /* directly map this to the lwip internal functions */
  218. #define inet_addr(cp) netdev_ipaddr_addr(cp)
  219. #define inet_aton(cp, addr) ((IP_IS_V6_VAL(*addr)) ? \
  220. netdev_ip6addr_aton(cp, ip_2_ip6(addr)) : \
  221. netdev_ip4addr_aton(cp, ip_2_ip4(addr)))
  222. #define inet_ntoa(addr) ((IP_IS_V6_VAL(addr)) ? \
  223. netdev_ip6addr_ntoa(ip_2_ip6(&addr)) : \
  224. netdev_ip4addr_ntoa(ip_2_ip4(&addr)))
  225. #define inet_ntoa_r(addr, buf, buflen) ((IP_IS_V6_VAL(addr)) ? \
  226. netdev_ip6addr_ntoa_r(ip_2_ip6(&addr), buf, buflen) : \
  227. netdev_ip4addr_ntoa_r(ip_2_ip4(&addr), buf, buflen))
  228. #elif NETDEV_IPV4 /* NETDEV_IPV4 */
  229. typedef ip4_addr_t ip_addr_t;
  230. #define IP_SET_TYPE_VAL(ipaddr, iptype)
  231. #define IP_SET_TYPE(ipaddr, iptype)
  232. #define IP_GET_TYPE(ipaddr) IPADDR_TYPE_V4
  233. #define ip_addr_copy(dest, src) ip4_addr_copy(dest, src)
  234. #define ip_addr_cmp(addr1, addr2) ip4_addr_cmp(addr1, addr2)
  235. #define ip_addr_set(dest, src) ip4_addr_set(dest, src)
  236. #define ip_addr_set_zero(ipaddr) ip4_addr_set_zero(ipaddr)
  237. #define ip_addr_set_any(is_ipv6, ipaddr) ip4_addr_set_any(ipaddr)
  238. #define ip_addr_isany_val(ipaddr) ip4_addr_isany_val(ipaddr)
  239. #define ip_addr_isany(ipaddr) ip4_addr_isany(ipaddr)
  240. /* directly map this to the lwip internal functions */
  241. #define inet_addr(cp) netdev_ipaddr_addr(cp)
  242. #define inet_aton(cp, addr) netdev_ip4addr_aton(cp,(ip4_addr_t*)addr)
  243. #define inet_ntoa(addr) netdev_ip4addr_ntoa((const ip4_addr_t*)&(addr))
  244. #define inet_ntoa_r(addr, buf, buflen) netdev_ip4addr_ntoa_r((const ip4_addr_t*)&(addr), buf, buflen)
  245. #else /* NETDEV_IPV6 */
  246. typedef ip6_addr_t ip_addr_t;
  247. #define IP_SET_TYPE_VAL(ipaddr, iptype)
  248. #define IP_SET_TYPE(ipaddr, iptype)
  249. #define IP_GET_TYPE(ipaddr) IPADDR_TYPE_V6
  250. #define ip_addr_copy(dest, src) ip6_addr_copy(dest, src)
  251. #define ip_addr_cmp(addr1, addr2) ip6_addr_cmp(addr1, addr2)
  252. #define ip_addr_set(dest, src) ip6_addr_set(dest, src)
  253. #define ip_addr_set_zero(ipaddr) ip6_addr_set_zero(ipaddr)
  254. #define ip_addr_set_any(is_ipv6, ipaddr) ip6_addr_set_any(ipaddr)
  255. #define ip_addr_isany_val(ipaddr) ip6_addr_isany_val(ipaddr)
  256. #define ip_addr_isany(ipaddr) ip6_addr_isany(ipaddr)
  257. /* directly map this to the lwip internal functions */
  258. #define inet_aton(cp, addr) netdev_ip6addr_aton(cp, (ip6_addr_t*)addr)
  259. #define inet_ntoa(addr) netdev_ip6addr_ntoa((const ip6_addr_t*)&(addr))
  260. #define inet_ntoa_r(addr, buf, buflen) netdev_ip6addr_ntoa_r((const ip6_addr_t*)&(addr), buf, buflen)
  261. #endif /* NTDEV_IPV4 && NTDEV_IPV6 */
  262. const char *netdev_inet_ntop(int af, const void *src, char *dst, int32_t size);
  263. int netdev_inet_pton(int af, const char *src, void *dst);
  264. #define inet_ntop(af, src, dst, size) netdev_inet_ntop(af, src, dst, size)
  265. #define inet_pton(af, src, dst) netdev_inet_pton(af, src, dst)
  266. #ifdef __cplusplus
  267. }
  268. #endif
  269. #endif /* __NETDEV_IPADDR_H__ */