X-Git-Url: http://git.droids-corp.org/?a=blobdiff_plain;f=lib%2Flibrte_ip_frag%2Frte_ip_frag.h;h=0c0d95f47a11e16d59fc792572f9abb7be443ca4;hb=771e5af07320f2ba94afa59b763fad098e6e537a;hp=7f425f6100e92b14a252c853832583c9ae3689cd;hpb=d5946eef6a83e335e0af8242bc6323af8fa24ea7;p=dpdk.git diff --git a/lib/librte_ip_frag/rte_ip_frag.h b/lib/librte_ip_frag/rte_ip_frag.h index 7f425f6100..0c0d95f47a 100644 --- a/lib/librte_ip_frag/rte_ip_frag.h +++ b/lib/librte_ip_frag/rte_ip_frag.h @@ -44,9 +44,17 @@ struct ip_frag { /** @internal to uniquely identify fragmented datagram. */ struct ip_frag_key { - uint64_t src_dst[4]; /**< src address, first 8 bytes used for IPv4 */ - uint32_t id; /**< dst address */ - uint32_t key_len; /**< src/dst key length */ + uint64_t src_dst[4]; + /**< src and dst address, only first 8 bytes used for IPv4 */ + RTE_STD_C11 + union { + uint64_t id_key_len; /**< combined for easy fetch */ + __extension__ + struct { + uint32_t id; /**< packet id */ + uint32_t key_len; /**< src/dst key length */ + }; + }; }; /** @@ -107,6 +115,7 @@ struct rte_ip_frag_tbl { #define RTE_IPV6_EHDR_MF_MASK 1 #define RTE_IPV6_EHDR_FO_SHIFT 3 #define RTE_IPV6_EHDR_FO_MASK (~((1 << RTE_IPV6_EHDR_FO_SHIFT) - 1)) +#define RTE_IPV6_EHDR_FO_ALIGN (1 << RTE_IPV6_EHDR_FO_SHIFT) #define RTE_IPV6_FRAG_USED_MASK \ (RTE_IPV6_EHDR_MF_MASK | RTE_IPV6_EHDR_FO_MASK) @@ -210,7 +219,7 @@ rte_ipv6_fragment_packet(struct rte_mbuf *pkt_in, */ struct rte_mbuf *rte_ipv6_frag_reassemble_packet(struct rte_ip_frag_tbl *tbl, struct rte_ip_frag_death_row *dr, - struct rte_mbuf *mb, uint64_t tms, struct ipv6_hdr *ip_hdr, + struct rte_mbuf *mb, uint64_t tms, struct rte_ipv6_hdr *ip_hdr, struct ipv6_extension_fragment *frag_hdr); /** @@ -225,7 +234,7 @@ struct rte_mbuf *rte_ipv6_frag_reassemble_packet(struct rte_ip_frag_tbl *tbl, * present. */ static inline struct ipv6_extension_fragment * -rte_ipv6_frag_get_ipv6_fragment_header(struct ipv6_hdr *hdr) +rte_ipv6_frag_get_ipv6_fragment_header(struct rte_ipv6_hdr *hdr) { if (hdr->proto == IPPROTO_FRAGMENT) { return (struct ipv6_extension_fragment *) ++hdr; @@ -265,7 +274,7 @@ int32_t rte_ipv4_fragment_packet(struct rte_mbuf *pkt_in, /** * This function implements reassembly of fragmented IPv4 packets. - * Incoming mbufs should have its l2_len/l3_len fields setup correclty. + * Incoming mbufs should have its l2_len/l3_len fields setup correctly. * * @param tbl * Table where to lookup/add the fragmented packet. @@ -284,7 +293,7 @@ int32_t rte_ipv4_fragment_packet(struct rte_mbuf *pkt_in, */ struct rte_mbuf * rte_ipv4_frag_reassemble_packet(struct rte_ip_frag_tbl *tbl, struct rte_ip_frag_death_row *dr, - struct rte_mbuf *mb, uint64_t tms, struct ipv4_hdr *ip_hdr); + struct rte_mbuf *mb, uint64_t tms, struct rte_ipv4_hdr *ip_hdr); /** * Check if the IPv4 packet is fragmented @@ -295,12 +304,13 @@ struct rte_mbuf * rte_ipv4_frag_reassemble_packet(struct rte_ip_frag_tbl *tbl, * 1 if fragmented, 0 if not fragmented */ static inline int -rte_ipv4_frag_pkt_is_fragmented(const struct ipv4_hdr * hdr) { +rte_ipv4_frag_pkt_is_fragmented(const struct rte_ipv4_hdr *hdr) +{ uint16_t flag_offset, ip_flag, ip_ofs; flag_offset = rte_be_to_cpu_16(hdr->fragment_offset); - ip_ofs = (uint16_t)(flag_offset & IPV4_HDR_OFFSET_MASK); - ip_flag = (uint16_t)(flag_offset & IPV4_HDR_MF_FLAG); + ip_ofs = (uint16_t)(flag_offset & RTE_IPV4_HDR_OFFSET_MASK); + ip_flag = (uint16_t)(flag_offset & RTE_IPV4_HDR_MF_FLAG); return ip_flag != 0 || ip_ofs != 0; } @@ -338,7 +348,8 @@ rte_ip_frag_table_statistics_dump(FILE * f, const struct rte_ip_frag_tbl *tbl); * @param tms * Current timestamp */ -void __rte_experimental +__rte_experimental +void rte_frag_table_del_expired_entries(struct rte_ip_frag_tbl *tbl, struct rte_ip_frag_death_row *dr, uint64_t tms);