/* case PKT_RX_HBUF_OVERFLOW: return "PKT_RX_HBUF_OVERFLOW"; */
/* case PKT_RX_RECIP_ERR: return "PKT_RX_RECIP_ERR"; */
/* case PKT_RX_MAC_ERR: return "PKT_RX_MAC_ERR"; */
+#ifndef RTE_NEXT_ABI
case PKT_RX_IPV4_HDR: return "PKT_RX_IPV4_HDR";
case PKT_RX_IPV4_HDR_EXT: return "PKT_RX_IPV4_HDR_EXT";
case PKT_RX_IPV6_HDR: return "PKT_RX_IPV6_HDR";
case PKT_RX_IPV6_HDR_EXT: return "PKT_RX_IPV6_HDR_EXT";
+#endif /* RTE_NEXT_ABI */
case PKT_RX_IEEE1588_PTP: return "PKT_RX_IEEE1588_PTP";
case PKT_RX_IEEE1588_TMST: return "PKT_RX_IEEE1588_TMST";
+#ifndef RTE_NEXT_ABI
case PKT_RX_TUNNEL_IPV4_HDR: return "PKT_RX_TUNNEL_IPV4_HDR";
case PKT_RX_TUNNEL_IPV6_HDR: return "PKT_RX_TUNNEL_IPV6_HDR";
+#endif /* RTE_NEXT_ABI */
default: return NULL;
}
}
#define PKT_RX_HBUF_OVERFLOW (0ULL << 0) /**< Header buffer overflow. */
#define PKT_RX_RECIP_ERR (0ULL << 0) /**< Hardware processing error. */
#define PKT_RX_MAC_ERR (0ULL << 0) /**< MAC error. */
+#ifndef RTE_NEXT_ABI
#define PKT_RX_IPV4_HDR (1ULL << 5) /**< RX packet with IPv4 header. */
#define PKT_RX_IPV4_HDR_EXT (1ULL << 6) /**< RX packet with extended IPv4 header. */
#define PKT_RX_IPV6_HDR (1ULL << 7) /**< RX packet with IPv6 header. */
#define PKT_RX_IPV6_HDR_EXT (1ULL << 8) /**< RX packet with extended IPv6 header. */
+#endif /* RTE_NEXT_ABI */
#define PKT_RX_IEEE1588_PTP (1ULL << 9) /**< RX IEEE1588 L2 Ethernet PT Packet. */
#define PKT_RX_IEEE1588_TMST (1ULL << 10) /**< RX IEEE1588 L2/L4 timestamped packet.*/
+#ifndef RTE_NEXT_ABI
#define PKT_RX_TUNNEL_IPV4_HDR (1ULL << 11) /**< RX tunnel packet with IPv4 header.*/
#define PKT_RX_TUNNEL_IPV6_HDR (1ULL << 12) /**< RX tunnel packet with IPv6 header. */
+#endif /* RTE_NEXT_ABI */
#define PKT_RX_FDIR_ID (1ULL << 13) /**< FD id reported if FDIR match. */
#define PKT_RX_FDIR_FLX (1ULL << 14) /**< Flexible bytes reported if FDIR match. */
#define PKT_RX_QINQ_PKT (1ULL << 15) /**< RX packet with double VLAN stripped. */