20 #ifdef RTE_EXEC_ENV_WINDOWS
23 #include <sys/socket.h>
24 #include <sys/types.h>
25 #include <netinet/in.h>
26 #include <arpa/inet.h>
27 #include <netinet/ip.h>
28 #include <netinet/ip6.h>
31 #include <rte_compat.h>
47 #if RTE_BYTE_ORDER == RTE_LITTLE_ENDIAN
50 #elif RTE_BYTE_ORDER == RTE_BIG_ENDIAN
68 #define RTE_IPV4(a, b, c, d) ((uint32_t)(((a) & 0xff) << 24) | \
69 (((b) & 0xff) << 16) | \
70 (((c) & 0xff) << 8) | \
74 #define RTE_IPV4_MAX_PKT_LEN 65535
77 #define RTE_IPV4_HDR_IHL_MASK (0x0f)
82 #define RTE_IPV4_IHL_MULTIPLIER (4)
85 #define RTE_IPV4_HDR_DSCP_MASK (0xfc)
86 #define RTE_IPV4_HDR_ECN_MASK (0x03)
87 #define RTE_IPV4_HDR_ECN_CE RTE_IPV4_HDR_ECN_MASK
90 #define RTE_IPV4_HDR_DF_SHIFT 14
91 #define RTE_IPV4_HDR_MF_SHIFT 13
92 #define RTE_IPV4_HDR_FO_SHIFT 3
94 #define RTE_IPV4_HDR_DF_FLAG (1 << RTE_IPV4_HDR_DF_SHIFT)
95 #define RTE_IPV4_HDR_MF_FLAG (1 << RTE_IPV4_HDR_MF_SHIFT)
97 #define RTE_IPV4_HDR_OFFSET_MASK ((1 << RTE_IPV4_HDR_MF_SHIFT) - 1)
99 #define RTE_IPV4_HDR_OFFSET_UNITS 8
102 #define RTE_IPV4_HDR_OPT_EOL 0
103 #define RTE_IPV4_HDR_OPT_NOP 1
104 #define RTE_IPV4_HDR_OPT_COPIED(v) ((v) & 0x80)
105 #define RTE_IPV4_HDR_OPT_MAX_LEN 40
110 #define RTE_IPV4_ANY ((uint32_t)0x00000000)
111 #define RTE_IPV4_LOOPBACK ((uint32_t)0x7f000001)
112 #define RTE_IPV4_BROADCAST ((uint32_t)0xe0000000)
113 #define RTE_IPV4_ALLHOSTS_GROUP ((uint32_t)0xe0000001)
114 #define RTE_IPV4_ALLRTRS_GROUP ((uint32_t)0xe0000002)
115 #define RTE_IPV4_MAX_LOCAL_GROUP ((uint32_t)0xe00000ff)
120 #define RTE_IPV4_MIN_MCAST \
121 RTE_IPV4(224, 0, 0, 0)
122 #define RTE_IPV4_MAX_MCAST \
123 RTE_IPV4(239, 255, 255, 255)
125 #define RTE_IS_IPV4_MCAST(x) \
126 ((x) >= RTE_IPV4_MIN_MCAST && (x) <= RTE_IPV4_MAX_MCAST)
130 #define RTE_IPV4_MIN_IHL (0x5)
131 #define RTE_IPV4_VHL_DEF ((IPVERSION << 4) | RTE_IPV4_MIN_IHL)
141 static inline uint8_t
161 static inline uint32_t
162 __rte_raw_cksum(
const void *buf,
size_t len, uint32_t sum)
167 buf != end; buf =
RTE_PTR_ADD(buf,
sizeof(uint16_t))) {
170 memcpy(&v, buf,
sizeof(uint16_t));
178 memcpy(&left, end, 1);
194 static inline uint16_t
195 __rte_raw_cksum_reduce(uint32_t sum)
197 sum = ((sum & 0xffff0000) >> 16) + (sum & 0xffff);
198 sum = ((sum & 0xffff0000) >> 16) + (sum & 0xffff);
199 return (uint16_t)sum;
212 static inline uint16_t
217 sum = __rte_raw_cksum(buf, len, 0);
218 return __rte_raw_cksum_reduce(sum);
242 uint32_t seglen, done;
247 const char *, off), len);
256 for (seg = m; seg != NULL; seg = seg->
next) {
262 RTE_ASSERT(seg != NULL);
277 tmp = __rte_raw_cksum(buf, seglen, 0);
287 if (seglen > len - done)
291 *cksum = __rte_raw_cksum_reduce(sum);
305 static inline uint16_t
310 return (uint16_t)~cksum;
331 static inline uint16_t
334 struct ipv4_psd_header {
344 psd_hdr.src_addr = ipv4_hdr->
src_addr;
345 psd_hdr.dst_addr = ipv4_hdr->
dst_addr;
361 static inline uint16_t
362 __rte_ipv4_udptcp_cksum(
const struct rte_ipv4_hdr *ipv4_hdr,
const void *l4_hdr)
365 uint32_t l3_len, l4_len;
370 if (l3_len < ip_hdr_len)
373 l4_len = l3_len - ip_hdr_len;
378 cksum = ((cksum & 0xffff0000) >> 16) + (cksum & 0xffff);
380 return (uint16_t)cksum;
395 static inline uint16_t
398 uint16_t cksum = __rte_ipv4_udptcp_cksum(ipv4_hdr, l4_hdr);
416 static inline uint16_t
417 __rte_ipv4_udptcp_cksum_mbuf(
const struct rte_mbuf *m,
435 cksum = ((cksum & 0xffff0000) >> 16) + (cksum & 0xffff);
437 return (uint16_t)cksum;
456 static inline uint16_t
460 uint16_t cksum = __rte_ipv4_udptcp_cksum_mbuf(m, ipv4_hdr, l4_off);
493 uint16_t cksum = __rte_ipv4_udptcp_cksum(ipv4_hdr, l4_hdr);
525 uint16_t cksum = __rte_ipv4_udptcp_cksum_mbuf(m, ipv4_hdr, l4_off);
546 #define RTE_IPV6_HDR_FL_SHIFT 0
547 #define RTE_IPV6_HDR_TC_SHIFT 20
548 #define RTE_IPV6_HDR_FL_MASK ((1u << RTE_IPV6_HDR_TC_SHIFT) - 1)
549 #define RTE_IPV6_HDR_TC_MASK (0xff << RTE_IPV6_HDR_TC_SHIFT)
550 #define RTE_IPV6_HDR_DSCP_MASK (0xfc << RTE_IPV6_HDR_TC_SHIFT)
551 #define RTE_IPV6_HDR_ECN_MASK (0x03 << RTE_IPV6_HDR_TC_SHIFT)
552 #define RTE_IPV6_HDR_ECN_CE RTE_IPV6_HDR_ECN_MASK
554 #define RTE_IPV6_MIN_MTU 1280
572 static inline uint16_t
581 psd_hdr.proto = (uint32_t)(ipv6_hdr->
proto << 24);
588 sum = __rte_raw_cksum(ipv6_hdr->
src_addr,
591 sum = __rte_raw_cksum(&psd_hdr,
sizeof(psd_hdr), sum);
592 return __rte_raw_cksum_reduce(sum);
598 static inline uint16_t
599 __rte_ipv6_udptcp_cksum(
const struct rte_ipv6_hdr *ipv6_hdr,
const void *l4_hdr)
609 cksum = ((cksum & 0xffff0000) >> 16) + (cksum & 0xffff);
611 return (uint16_t)cksum;
627 static inline uint16_t
630 uint16_t cksum = __rte_ipv6_udptcp_cksum(ipv6_hdr, l4_hdr);
639 if (cksum == 0 && ipv6_hdr->
proto == IPPROTO_UDP)
648 static inline uint16_t
649 __rte_ipv6_udptcp_cksum_mbuf(
const struct rte_mbuf *m,
664 cksum = ((cksum & 0xffff0000) >> 16) + (cksum & 0xffff);
666 return (uint16_t)cksum;
688 static inline uint16_t
692 uint16_t cksum = __rte_ipv6_udptcp_cksum_mbuf(m, ipv6_hdr, l4_off);
701 if (cksum == 0 && ipv6_hdr->
proto == IPPROTO_UDP)
726 uint16_t cksum = __rte_ipv6_udptcp_cksum(ipv6_hdr, l4_hdr);
759 uint16_t cksum = __rte_ipv6_udptcp_cksum_mbuf(m, ipv6_hdr, l4_off);
768 #define RTE_IPV6_EHDR_MF_SHIFT 0
769 #define RTE_IPV6_EHDR_MF_MASK 1
770 #define RTE_IPV6_EHDR_FO_SHIFT 3
771 #define RTE_IPV6_EHDR_FO_MASK (~((1 << RTE_IPV6_EHDR_FO_SHIFT) - 1))
772 #define RTE_IPV6_EHDR_FO_ALIGN (1 << RTE_IPV6_EHDR_FO_SHIFT)
774 #define RTE_IPV6_FRAG_USED_MASK (RTE_IPV6_EHDR_MF_MASK | RTE_IPV6_EHDR_FO_MASK)
776 #define RTE_IPV6_GET_MF(x) ((x) & RTE_IPV6_EHDR_MF_MASK)
777 #define RTE_IPV6_GET_FO(x) ((x) >> RTE_IPV6_EHDR_FO_SHIFT)
779 #define RTE_IPV6_SET_FRAG_DATA(fo, mf) \
780 (((fo) & RTE_IPV6_EHDR_FO_MASK) | ((mf) & RTE_IPV6_EHDR_MF_MASK))
782 struct rte_ipv6_fragment_ext {
790 #define RTE_IPV6_FRAG_HDR_SIZE sizeof(struct rte_ipv6_fragment_ext)
817 *ext_len = (*p + 2) *
sizeof(uint32_t);
820 case IPPROTO_HOPOPTS:
821 case IPPROTO_ROUTING:
822 case IPPROTO_DSTOPTS:
824 *ext_len = (*p + 1) *
sizeof(uint64_t);
827 case IPPROTO_FRAGMENT:
829 *ext_len = RTE_IPV6_FRAG_HDR_SIZE;