
Type: improvement Change-Id: If61d7409ff14b9f771c1dc8ec9f35e179cea7a28 Signed-off-by: Damjan Marion <damarion@cisco.com>
972 lines
30 KiB
C
972 lines
30 KiB
C
/*
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* Copyright (c) 2015 Cisco and/or its affiliates.
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <vnet/vnet.h>
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#include <vppinfra/vec.h>
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#include <vppinfra/format.h>
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#include <assert.h>
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#define __USE_GNU
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#include <dlfcn.h>
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#include <vnet/ethernet/ethernet.h>
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#include <vnet/ethernet/sfp.h>
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#include <dpdk/device/dpdk.h>
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#include <dpdk/device/dpdk_priv.h>
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#include <vppinfra/error.h>
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#define foreach_dpdk_counter \
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_ (tx_frames_ok, opackets) \
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_ (tx_bytes_ok, obytes) \
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_ (tx_errors, oerrors) \
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_ (rx_frames_ok, ipackets) \
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_ (rx_bytes_ok, ibytes) \
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_ (rx_errors, ierrors) \
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_ (rx_missed, imissed) \
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_ (rx_no_bufs, rx_nombuf)
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#define foreach_dpdk_q_counter \
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_ (rx_frames_ok, q_ipackets) \
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_ (tx_frames_ok, q_opackets) \
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_ (rx_bytes_ok, q_ibytes) \
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_ (tx_bytes_ok, q_obytes) \
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_ (rx_errors, q_errors)
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#if RTE_VERSION < RTE_VERSION_NUM(21, 5, 0, 0)
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#define PKT_RX_OUTER_IP_CKSUM_BAD PKT_RX_EIP_CKSUM_BAD
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#endif
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#define foreach_dpdk_pkt_rx_offload_flag \
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_ (RX_FDIR, "RX packet with FDIR infos") \
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_ (RX_FDIR_FLX, "RX packet with FDIR_FLX info") \
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_ (RX_FDIR_ID, "RX packet with FDIR_ID info") \
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_ (RX_IEEE1588_PTP, "RX IEEE1588 L2 Ethernet PT Packet") \
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_ (RX_IEEE1588_TMST, "RX IEEE1588 L2/L4 timestamped packet") \
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_ (RX_IP_CKSUM_BAD, "IP cksum of RX pkt. is not OK") \
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_ (RX_IP_CKSUM_GOOD, "IP cksum of RX pkt. is valid") \
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_ (RX_IP_CKSUM_NONE, "no IP cksum of RX pkt.") \
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_ (RX_L4_CKSUM_BAD, "L4 cksum of RX pkt. is not OK") \
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_ (RX_L4_CKSUM_GOOD, "L4 cksum of RX pkt. is valid") \
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_ (RX_L4_CKSUM_NONE, "no L4 cksum of RX pkt.") \
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_ (RX_LRO, "LRO packet") \
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_ (RX_OUTER_IP_CKSUM_BAD, "External IP header checksum error") \
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_ (RX_OUTER_L4_CKSUM_BAD, "External L4 header checksum error") \
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_ (RX_OUTER_L4_CKSUM_GOOD, "External L4 header checksum OK") \
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_ (RX_QINQ, "RX packet with QinQ tags") \
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_ (RX_QINQ_STRIPPED, "RX packet QinQ tags stripped") \
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_ (RX_RSS_HASH, "RX packet with RSS hash result") \
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_ (RX_SEC_OFFLOAD, "RX packet with security offload") \
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_ (RX_SEC_OFFLOAD_FAILED, "RX packet with security offload failed") \
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_ (RX_VLAN, "RX packet is a 802.1q VLAN packet") \
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_ (RX_VLAN_STRIPPED, "RX packet VLAN tag stripped")
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#define foreach_dpdk_pkt_type \
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_ (L2, ETHER, "Ethernet packet") \
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_ (L2, ETHER_TIMESYNC, "Ethernet packet for time sync") \
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_ (L2, ETHER_ARP, "ARP packet") \
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_ (L2, ETHER_LLDP, "LLDP (Link Layer Discovery Protocol) packet") \
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_ (L2, ETHER_NSH, "NSH (Network Service Header) packet") \
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_ (L2, ETHER_VLAN, "VLAN packet") \
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_ (L2, ETHER_QINQ, "QinQ packet") \
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_ (L3, IPV4, "IPv4 packet without extension headers") \
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_ (L3, IPV4_EXT, "IPv4 packet with extension headers") \
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_ (L3, IPV4_EXT_UNKNOWN, "IPv4 packet with or without extension headers") \
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_ (L3, IPV6, "IPv6 packet without extension headers") \
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_ (L3, IPV6_EXT, "IPv6 packet with extension headers") \
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_ (L3, IPV6_EXT_UNKNOWN, "IPv6 packet with or without extension headers") \
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_ (L4, TCP, "TCP packet") \
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_ (L4, UDP, "UDP packet") \
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_ (L4, FRAG, "Fragmented IP packet") \
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_ (L4, SCTP, "SCTP (Stream Control Transmission Protocol) packet") \
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_ (L4, ICMP, "ICMP packet") \
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_ (L4, NONFRAG, "Non-fragmented IP packet") \
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_ (TUNNEL, GRE, "GRE tunneling packet") \
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_ (TUNNEL, VXLAN, "VXLAN tunneling packet") \
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_ (TUNNEL, NVGRE, "NVGRE Tunneling packet") \
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_ (TUNNEL, GENEVE, "GENEVE Tunneling packet") \
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_ (TUNNEL, GRENAT, "Teredo, VXLAN or GRE Tunneling packet") \
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_ (INNER_L2, ETHER, "Inner Ethernet packet") \
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_ (INNER_L2, ETHER_VLAN, "Inner Ethernet packet with VLAN") \
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_ (INNER_L3, IPV4, "Inner IPv4 packet without extension headers") \
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_ (INNER_L3, IPV4_EXT, "Inner IPv4 packet with extension headers") \
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_ (INNER_L3, IPV4_EXT_UNKNOWN, "Inner IPv4 packet with or without extension headers") \
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_ (INNER_L3, IPV6, "Inner IPv6 packet without extension headers") \
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_ (INNER_L3, IPV6_EXT, "Inner IPv6 packet with extension headers") \
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_ (INNER_L3, IPV6_EXT_UNKNOWN, "Inner IPv6 packet with or without extension headers") \
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_ (INNER_L4, TCP, "Inner TCP packet") \
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_ (INNER_L4, UDP, "Inner UDP packet") \
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_ (INNER_L4, FRAG, "Inner fragmented IP packet") \
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_ (INNER_L4, SCTP, "Inner SCTP (Stream Control Transmission Protocol) packet") \
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_ (INNER_L4, ICMP, "Inner ICMP packet") \
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_ (INNER_L4, NONFRAG, "Inner non-fragmented IP packet")
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#define foreach_dpdk_pkt_tx_offload_flag \
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_ (TX_IEEE1588_TMST, "TX IEEE1588 packet to timestamp") \
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_ (TX_IPV4, "TX IPV4") \
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_ (TX_IPV6, "TX IPV6") \
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_ (TX_IP_CKSUM, "IP cksum of TX pkt. computed by NIC") \
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_ (TX_MACSEC, "TX MACSEC") \
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_ (TX_OUTER_IPV4, "TX outer IPV4") \
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_ (TX_OUTER_IPV6, "TX outer IPV6") \
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_ (TX_OUTER_IP_CKSUM, "Outer IP cksum of Tx pkt. computed by NIC") \
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_ (TX_OUTER_UDP_CKSUM, "TX outer UDP cksum") \
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_ (TX_QINQ, "TX QINQ") \
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_ (TX_SCTP_CKSUM, "SCTP cksum of TX pkt. computed by NIC") \
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_ (TX_SEC_OFFLOAD, "TX SEC OFFLOAD") \
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_ (TX_TCP_CKSUM, "TCP cksum of TX pkt. computed by NIC") \
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_ (TX_TCP_SEG, "TSO of TX pkt. done by NIC") \
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_ (TX_TUNNEL_GENEVE, "TX tunnel GENEVE") \
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_ (TX_TUNNEL_GRE, "TX tunnel GRE") \
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_ (TX_TUNNEL_GTP, "TX tunnel GTP") \
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_ (TX_TUNNEL_IP, "TX tunnel IP") \
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_ (TX_TUNNEL_IPIP, "TX tunnel IPIP") \
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_ (TX_TUNNEL_MPLSINUDP, "TX tunnel MPLSinUDP") \
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_ (TX_TUNNEL_UDP, "TX tunnel UDP") \
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_ (TX_TUNNEL_VXLAN, "TX packet is a VXLAN packet") \
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_ (TX_TUNNEL_VXLAN_GPE, "TX tunnel VXLAN GPE") \
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_ (TX_UDP_CKSUM, "TX UDP cksum") \
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_ (TX_UDP_SEG, "TX UDP SEG") \
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_ (TX_VLAN, "TX packet is a 802.1q VLAN packet")
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#define foreach_dpdk_pkt_offload_flag \
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foreach_dpdk_pkt_rx_offload_flag \
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foreach_dpdk_pkt_tx_offload_flag
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#define foreach_dpdk_pkt_dyn_rx_offload_flag \
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_ (RX_TIMESTAMP, 0, "Timestamp field is valid")
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static char *device_name_by_port_type[] = {
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#define _(n, s) [VNET_DPDK_PORT_TYPE_##n] = (s),
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forach_dpdk_port_type
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#undef _
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};
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u8 *
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format_dpdk_device_name (u8 * s, va_list * args)
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{
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dpdk_main_t *dm = &dpdk_main;
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char *devname_format;
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char *device_name = 0;
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u32 i = va_arg (*args, u32);
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dpdk_device_t *xd = vec_elt_at_index (dm->devices, i);
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struct rte_eth_dev_info dev_info;
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struct rte_pci_device *pci_dev;
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u8 *ret;
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if (xd->name)
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return format (s, "%s", xd->name);
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if (dm->conf->interface_name_format_decimal)
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devname_format = "%s%d/%d/%d";
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else
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devname_format = "%s%x/%x/%x";
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if (xd->port_type < ARRAY_LEN (device_name_by_port_type))
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device_name = device_name_by_port_type[xd->port_type];
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device_name = device_name ? device_name : "UnknownEthernet";
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rte_eth_dev_info_get (xd->port_id, &dev_info);
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pci_dev = dpdk_get_pci_device (&dev_info);
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if (pci_dev && xd->port_type != VNET_DPDK_PORT_TYPE_FAILSAFE)
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ret = format (s, devname_format, device_name, pci_dev->addr.bus,
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pci_dev->addr.devid, pci_dev->addr.function);
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else
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ret = format (s, "%s%d", device_name, xd->port_id);
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if (xd->interface_name_suffix)
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return format (ret, "/%s", xd->interface_name_suffix);
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return ret;
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}
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u8 *
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format_dpdk_device_flags (u8 * s, va_list * args)
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{
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dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
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u8 *t = 0;
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#define _(a, b, c) if (xd->flags & (1 << a)) \
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t = format (t, "%s%s", t ? " ":"", c);
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foreach_dpdk_device_flags
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#undef _
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s = format (s, "%v", t);
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vec_free (t);
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return s;
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}
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static u8 *
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format_dpdk_device_type (u8 * s, va_list * args)
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{
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dpdk_main_t *dm = &dpdk_main;
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char *dev_type;
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u32 i = va_arg (*args, u32);
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switch (dm->devices[i].pmd)
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{
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case VNET_DPDK_PMD_E1000EM:
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dev_type = "Intel 82540EM (e1000)";
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break;
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case VNET_DPDK_PMD_IGB:
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dev_type = "Intel e1000";
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break;
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case VNET_DPDK_PMD_I40E:
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dev_type = "Intel X710/XL710 Family";
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break;
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case VNET_DPDK_PMD_I40EVF:
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dev_type = "Intel X710/XL710 Family VF";
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break;
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case VNET_DPDK_PMD_ICE:
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dev_type = "Intel E810 Family";
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break;
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case VNET_DPDK_PMD_IAVF:
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dev_type = "Intel iAVF";
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break;
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case VNET_DPDK_PMD_FM10K:
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dev_type = "Intel FM10000 Family Ethernet Switch";
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break;
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case VNET_DPDK_PMD_IGBVF:
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dev_type = "Intel e1000 VF";
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break;
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case VNET_DPDK_PMD_VIRTIO:
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dev_type = "Red Hat Virtio";
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break;
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case VNET_DPDK_PMD_IXGBEVF:
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dev_type = "Intel 82599 VF";
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break;
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case VNET_DPDK_PMD_IXGBE:
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dev_type = "Intel 82599";
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break;
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case VNET_DPDK_PMD_ENIC:
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dev_type = "Cisco VIC";
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break;
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case VNET_DPDK_PMD_CXGBE:
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dev_type = "Chelsio T4/T5";
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break;
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case VNET_DPDK_PMD_MLX4:
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dev_type = "Mellanox ConnectX-3 Family";
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break;
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case VNET_DPDK_PMD_MLX5:
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dev_type = "Mellanox ConnectX-4 Family";
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break;
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case VNET_DPDK_PMD_VMXNET3:
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dev_type = "VMware VMXNET3";
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break;
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case VNET_DPDK_PMD_AF_PACKET:
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dev_type = "af_packet";
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break;
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case VNET_DPDK_PMD_DPAA2:
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dev_type = "NXP DPAA2 Mac";
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break;
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case VNET_DPDK_PMD_VIRTIO_USER:
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dev_type = "Virtio User";
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break;
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case VNET_DPDK_PMD_THUNDERX:
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dev_type = "Cavium ThunderX";
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break;
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case VNET_DPDK_PMD_VHOST_ETHER:
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dev_type = "VhostEthernet";
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break;
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case VNET_DPDK_PMD_ENA:
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dev_type = "AWS ENA VF";
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break;
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case VNET_DPDK_PMD_FAILSAFE:
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dev_type = "FailsafeEthernet";
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break;
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case VNET_DPDK_PMD_LIOVF_ETHER:
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dev_type = "Cavium Lio VF";
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break;
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case VNET_DPDK_PMD_QEDE:
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dev_type = "Cavium QLogic FastLinQ QL4xxxx";
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break;
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case VNET_DPDK_PMD_NETVSC:
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dev_type = "Microsoft Hyper-V Netvsc";
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break;
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case VNET_DPDK_PMD_BNXT:
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dev_type = "Broadcom NetXtreme E/S-Series";
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break;
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default:
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case VNET_DPDK_PMD_UNKNOWN:
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dev_type = "### UNKNOWN ###";
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break;
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}
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return format (s, dev_type);
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}
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static u8 *
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format_dpdk_link_status (u8 * s, va_list * args)
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{
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dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
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struct rte_eth_link *l = &xd->link;
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vnet_main_t *vnm = vnet_get_main ();
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vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, xd->hw_if_index);
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s = format (s, "%s ", l->link_status ? "up" : "down");
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if (l->link_status)
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{
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u32 promisc = rte_eth_promiscuous_get (xd->port_id);
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s = format (s, "%s duplex ", (l->link_duplex == ETH_LINK_FULL_DUPLEX) ?
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"full" : "half");
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s = format (s, "mtu %d %s\n", hi->max_packet_bytes, promisc ?
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" promisc" : "");
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}
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else
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s = format (s, "\n");
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return s;
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}
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#define _(n, v, str) \
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if (bitmap & v) { \
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if (format_get_indent (s) > 72) \
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s = format(s,"\n%U", format_white_space, indent); \
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s = format(s, "%s ", str); \
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}
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u8 *
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format_dpdk_rss_hf_name (u8 * s, va_list * args)
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{
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u64 bitmap = va_arg (*args, u64);
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u32 indent = format_get_indent (s);
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if (!bitmap)
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return format (s, "none");
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foreach_dpdk_rss_hf return s;
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}
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#undef _
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/* Convert to all lower case e.g "VLAN_STRIP" -> "vlan-strip"
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Works for both vector names and null terminated c strings. */
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static u8 *
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format_offload (u8 * s, va_list * va)
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{
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u8 *id = va_arg (*va, u8 *);
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uword i, l;
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l = ~0;
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if (clib_mem_is_vec (id))
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l = vec_len (id);
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if (id)
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for (i = 0; id[i] != 0 && i < l; i++)
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{
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u8 c = id[i];
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if (c == '_')
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c = '-';
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else
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c = tolower (c);
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vec_add1 (s, c);
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}
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return s;
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}
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#define _(v, func) \
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if (bitmap & v) { \
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if (format_get_indent (s) > 72) \
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s = format(s,"\n%U", format_white_space, indent); \
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s = format(s, "%U ", format_offload, func (v)); \
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}
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u8 *
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format_dpdk_rx_offload_caps (u8 * s, va_list * args)
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{
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u64 bitmap = va_arg (*args, u32);
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u32 indent = format_get_indent (s);
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uword i;
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if (!bitmap)
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return format (s, "none");
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for (i = 0; i < 64; i++)
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{
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u64 mask = (u64) 1 << i;
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_(mask, rte_eth_dev_rx_offload_name);
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}
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return s;
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}
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u8 *
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format_dpdk_tx_offload_caps (u8 * s, va_list * args)
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{
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u64 bitmap = va_arg (*args, u32);
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u32 indent = format_get_indent (s);
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uword i;
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if (!bitmap)
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return format (s, "none");
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|
|
|
for (i = 0; i < 64; i++)
|
|
{
|
|
u64 mask = (u64) 1 << i;
|
|
|
|
_(mask, rte_eth_dev_tx_offload_name);
|
|
}
|
|
return s;
|
|
}
|
|
|
|
#undef _
|
|
|
|
u8 *
|
|
format_dpdk_device_errors (u8 * s, va_list * args)
|
|
{
|
|
dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
|
|
clib_error_t *e;
|
|
u32 indent = format_get_indent (s);
|
|
|
|
vec_foreach (e, xd->errors)
|
|
{
|
|
s = format (s, "%U%v\n", format_white_space, indent, e->what);
|
|
}
|
|
return s;
|
|
}
|
|
|
|
static u8 *
|
|
format_dpdk_device_module_info (u8 * s, va_list * args)
|
|
{
|
|
dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
|
|
struct rte_eth_dev_module_info mi = { 0 };
|
|
struct rte_dev_eeprom_info ei = { 0 };
|
|
|
|
if (rte_eth_dev_get_module_info (xd->port_id, &mi) != 0)
|
|
return format (s, "unknown");
|
|
|
|
ei.length = mi.eeprom_len;
|
|
ei.data = clib_mem_alloc (mi.eeprom_len);
|
|
|
|
if (rte_eth_dev_get_module_eeprom (xd->port_id, &ei) == 0)
|
|
{
|
|
s = format (s, "%U", format_sfp_eeprom, ei.data +
|
|
(mi.type == RTE_ETH_MODULE_SFF_8436 ? 0x80 : 0));
|
|
}
|
|
else
|
|
s = format (s, "eeprom read error");
|
|
|
|
clib_mem_free (ei.data);
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_burst_fn (u8 *s, va_list *args)
|
|
{
|
|
dpdk_device_t *xd = va_arg (*args, dpdk_device_t *);
|
|
vlib_rx_or_tx_t dir = va_arg (*args, vlib_rx_or_tx_t);
|
|
void *p;
|
|
Dl_info info = { 0 };
|
|
|
|
#if RTE_VERSION < RTE_VERSION_NUM(21, 11, 0, 0)
|
|
#define rte_eth_fp_ops rte_eth_devices
|
|
#endif
|
|
|
|
p = (dir == VLIB_TX) ? rte_eth_fp_ops[xd->port_id].tx_pkt_burst :
|
|
rte_eth_fp_ops[xd->port_id].rx_pkt_burst;
|
|
|
|
if (dladdr (p, &info) == 0)
|
|
return 0;
|
|
|
|
return format (s, "%s", info.dli_sname);
|
|
}
|
|
|
|
static u8 *
|
|
format_switch_info (u8 * s, va_list * args)
|
|
{
|
|
struct rte_eth_switch_info *si =
|
|
va_arg (*args, struct rte_eth_switch_info *);
|
|
|
|
if (si->name)
|
|
s = format (s, "name %s ", si->name);
|
|
|
|
s = format (s, "domain id %d port id %d", si->domain_id, si->port_id);
|
|
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_rte_device (u8 *s, va_list *args)
|
|
{
|
|
struct rte_device *d = va_arg (*args, struct rte_device *);
|
|
|
|
if (!d)
|
|
return format (s, "not available");
|
|
|
|
s = format (s, "name: %s, numa: %d", d->name, d->numa_node);
|
|
|
|
if (d->driver)
|
|
s = format (s, ", driver: %s", d->driver->name);
|
|
|
|
if (d->bus)
|
|
s = format (s, ", bus: %s", d->bus->name);
|
|
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_device (u8 * s, va_list * args)
|
|
{
|
|
u32 dev_instance = va_arg (*args, u32);
|
|
int verbose = va_arg (*args, int);
|
|
dpdk_main_t *dm = &dpdk_main;
|
|
vlib_main_t *vm = vlib_get_main ();
|
|
dpdk_device_t *xd = vec_elt_at_index (dm->devices, dev_instance);
|
|
u32 indent = format_get_indent (s);
|
|
f64 now = vlib_time_now (vm);
|
|
struct rte_eth_dev_info di;
|
|
struct rte_eth_burst_mode mode;
|
|
struct rte_pci_device *pci;
|
|
struct rte_eth_rss_conf rss_conf;
|
|
int vlan_off;
|
|
int retval;
|
|
|
|
dpdk_update_counters (xd, now);
|
|
dpdk_update_link_state (xd, now);
|
|
rte_eth_dev_info_get (xd->port_id, &di);
|
|
|
|
s = format (s, "%U\n%Ucarrier %U",
|
|
format_dpdk_device_type, dev_instance,
|
|
format_white_space, indent + 2, format_dpdk_link_status, xd);
|
|
s = format (s, "%Uflags: %U\n",
|
|
format_white_space, indent + 2, format_dpdk_device_flags, xd);
|
|
if (di.device->devargs && di.device->devargs->args)
|
|
s = format (s, "%UDevargs: %s\n",
|
|
format_white_space, indent + 2, di.device->devargs->args);
|
|
s = format (s,
|
|
"%Urx: queues %d (max %d), desc %d "
|
|
"(min %d max %d align %d)\n",
|
|
format_white_space, indent + 2, xd->conf.n_rx_queues,
|
|
di.max_rx_queues, xd->conf.n_rx_desc, di.rx_desc_lim.nb_min,
|
|
di.rx_desc_lim.nb_max, di.rx_desc_lim.nb_align);
|
|
s = format (s,
|
|
"%Utx: queues %d (max %d), desc %d "
|
|
"(min %d max %d align %d)\n",
|
|
format_white_space, indent + 2, xd->conf.n_tx_queues,
|
|
di.max_tx_queues, xd->conf.n_tx_desc, di.tx_desc_lim.nb_min,
|
|
di.tx_desc_lim.nb_max, di.tx_desc_lim.nb_align);
|
|
|
|
rss_conf.rss_key = 0;
|
|
rss_conf.rss_hf = 0;
|
|
retval = rte_eth_dev_rss_hash_conf_get (xd->port_id, &rss_conf);
|
|
if (retval < 0)
|
|
clib_warning ("rte_eth_dev_rss_hash_conf_get returned %d", retval);
|
|
|
|
pci = dpdk_get_pci_device (&di);
|
|
|
|
if (pci)
|
|
{
|
|
u8 *s2;
|
|
if (xd->cpu_socket > -1)
|
|
s2 = format (0, "%d", xd->cpu_socket);
|
|
else
|
|
s2 = format (0, "unknown");
|
|
s = format (s,
|
|
"%Upci: device %04x:%04x subsystem %04x:%04x "
|
|
"address %04x:%02x:%02x.%02x numa %v\n",
|
|
format_white_space, indent + 2, pci->id.vendor_id,
|
|
pci->id.device_id, pci->id.subsystem_vendor_id,
|
|
pci->id.subsystem_device_id, pci->addr.domain, pci->addr.bus,
|
|
pci->addr.devid, pci->addr.function, s2);
|
|
vec_free (s2);
|
|
}
|
|
|
|
if (di.switch_info.domain_id != RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID)
|
|
{
|
|
s = format (s, "%Uswitch info: %U\n", format_white_space, indent + 2,
|
|
format_switch_info, &di.switch_info);
|
|
}
|
|
|
|
if (1 < verbose)
|
|
{
|
|
s = format (s, "%Umodule: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_device_module_info, xd);
|
|
}
|
|
|
|
s = format (s, "%Umax rx packet len: %d\n", format_white_space, indent + 2,
|
|
di.max_rx_pktlen);
|
|
s = format (s, "%Upromiscuous: unicast %s all-multicast %s\n",
|
|
format_white_space, indent + 2,
|
|
rte_eth_promiscuous_get (xd->port_id) ? "on" : "off",
|
|
rte_eth_allmulticast_get (xd->port_id) ? "on" : "off");
|
|
vlan_off = rte_eth_dev_get_vlan_offload (xd->port_id);
|
|
s = format (s, "%Uvlan offload: strip %s filter %s qinq %s\n",
|
|
format_white_space, indent + 2,
|
|
vlan_off & ETH_VLAN_STRIP_OFFLOAD ? "on" : "off",
|
|
vlan_off & ETH_VLAN_FILTER_OFFLOAD ? "on" : "off",
|
|
vlan_off & ETH_VLAN_EXTEND_OFFLOAD ? "on" : "off");
|
|
s = format (s, "%Urx offload avail: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_rx_offload_caps, di.rx_offload_capa);
|
|
s = format (s, "%Urx offload active: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_rx_offload_caps, xd->enabled_rx_off);
|
|
s = format (s, "%Utx offload avail: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_tx_offload_caps, di.tx_offload_capa);
|
|
s = format (s, "%Utx offload active: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_tx_offload_caps, xd->enabled_tx_off);
|
|
s = format (s,
|
|
"%Urss avail: %U\n"
|
|
"%Urss active: %U\n",
|
|
format_white_space, indent + 2, format_dpdk_rss_hf_name,
|
|
di.flow_type_rss_offloads, format_white_space, indent + 2,
|
|
format_dpdk_rss_hf_name, rss_conf.rss_hf);
|
|
|
|
if (rte_eth_tx_burst_mode_get (xd->port_id, 0, &mode) == 0)
|
|
{
|
|
s = format (s, "%Utx burst mode: %s%s\n", format_white_space, indent + 2,
|
|
mode.info,
|
|
mode.flags & RTE_ETH_BURST_FLAG_PER_QUEUE ? " (per queue)" :
|
|
"");
|
|
}
|
|
|
|
s = format (s, "%Utx burst function: %U\n", format_white_space, indent + 2,
|
|
format_dpdk_burst_fn, xd, VLIB_RX);
|
|
|
|
if (rte_eth_rx_burst_mode_get (xd->port_id, 0, &mode) == 0)
|
|
{
|
|
s = format (s, "%Urx burst mode: %s%s\n", format_white_space, indent + 2,
|
|
mode.info,
|
|
mode.flags & RTE_ETH_BURST_FLAG_PER_QUEUE ? " (per queue)" :
|
|
"");
|
|
}
|
|
|
|
s = format (s, "%Urx burst function: %s\n", format_white_space, indent + 2,
|
|
format_dpdk_burst_fn, xd, VLIB_TX);
|
|
|
|
/* $$$ MIB counters */
|
|
{
|
|
#define _(N, V) \
|
|
if (xd->stats.V != 0) { \
|
|
s = format (s, "\n%U%-40U%16Lu", \
|
|
format_white_space, indent + 2, \
|
|
format_c_identifier, #N, \
|
|
xd->stats.V); \
|
|
} \
|
|
|
|
foreach_dpdk_counter
|
|
#undef _
|
|
}
|
|
|
|
u8 *xs = 0;
|
|
u32 i = 0;
|
|
struct rte_eth_xstat *xstat;
|
|
struct rte_eth_xstat_name *xstat_names = 0;
|
|
int len = vec_len (xd->xstats);
|
|
vec_validate (xstat_names, len - 1);
|
|
int ret = rte_eth_xstats_get_names (xd->port_id, xstat_names, len);
|
|
|
|
if (ret >= 0 && ret <= len)
|
|
{
|
|
/* *INDENT-OFF* */
|
|
vec_foreach_index(i, xd->xstats)
|
|
{
|
|
xstat = vec_elt_at_index(xd->xstats, i);
|
|
if (verbose == 2 || (verbose && xstat->value))
|
|
{
|
|
xs = format(xs, "\n%U%-38s%16Lu",
|
|
format_white_space, indent + 4,
|
|
xstat_names[i].name,
|
|
xstat->value);
|
|
}
|
|
}
|
|
/* *INDENT-ON* */
|
|
|
|
vec_free (xstat_names);
|
|
}
|
|
|
|
if (xs)
|
|
{
|
|
s = format (s, "\n%Uextended stats:%v",
|
|
format_white_space, indent + 2, xs);
|
|
vec_free (xs);
|
|
}
|
|
|
|
if (vec_len (xd->errors))
|
|
{
|
|
s = format (s, "%UErrors:\n %U", format_white_space, indent,
|
|
format_dpdk_device_errors, xd);
|
|
}
|
|
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_tx_trace (u8 * s, va_list * va)
|
|
{
|
|
CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
|
|
CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
|
|
CLIB_UNUSED (vnet_main_t * vnm) = vnet_get_main ();
|
|
dpdk_tx_trace_t *t = va_arg (*va, dpdk_tx_trace_t *);
|
|
dpdk_main_t *dm = &dpdk_main;
|
|
dpdk_device_t *xd = vec_elt_at_index (dm->devices, t->device_index);
|
|
u32 indent = format_get_indent (s);
|
|
vnet_sw_interface_t *sw = vnet_get_sw_interface (vnm, xd->sw_if_index);
|
|
|
|
s = format (s, "%U tx queue %d",
|
|
format_vnet_sw_interface_name, vnm, sw, t->queue_index);
|
|
|
|
s = format (s, "\n%Ubuffer 0x%x: %U", format_white_space, indent,
|
|
t->buffer_index, format_vnet_buffer_no_chain, &t->buffer);
|
|
|
|
s = format (s, "\n%U%U",
|
|
format_white_space, indent,
|
|
format_dpdk_rte_mbuf, &t->mb, &t->data);
|
|
|
|
s = format (s, "\n%U%U", format_white_space, indent,
|
|
format_ethernet_header_with_length, t->buffer.pre_data,
|
|
sizeof (t->buffer.pre_data));
|
|
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_rx_trace (u8 * s, va_list * va)
|
|
{
|
|
CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
|
|
CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
|
|
CLIB_UNUSED (vnet_main_t * vnm) = vnet_get_main ();
|
|
dpdk_rx_trace_t *t = va_arg (*va, dpdk_rx_trace_t *);
|
|
dpdk_main_t *dm = &dpdk_main;
|
|
dpdk_device_t *xd = vec_elt_at_index (dm->devices, t->device_index);
|
|
format_function_t *f;
|
|
u32 indent = format_get_indent (s);
|
|
vnet_sw_interface_t *sw = vnet_get_sw_interface (vnm, xd->sw_if_index);
|
|
|
|
s = format (s, "%U rx queue %d",
|
|
format_vnet_sw_interface_name, vnm, sw, t->queue_index);
|
|
|
|
s = format (s, "\n%Ubuffer 0x%x: %U", format_white_space, indent,
|
|
t->buffer_index, format_vnet_buffer_no_chain, &t->buffer);
|
|
|
|
s = format (s, "\n%U%U",
|
|
format_white_space, indent,
|
|
format_dpdk_rte_mbuf, &t->mb, &t->data);
|
|
|
|
if (vm->trace_main.verbose)
|
|
{
|
|
s = format (s, "\n%UPacket Dump%s", format_white_space, indent + 2,
|
|
t->mb.data_len > sizeof (t->data) ? " (truncated)" : "");
|
|
s = format (s, "\n%U%U", format_white_space, indent + 4,
|
|
format_hexdump, &t->data,
|
|
t->mb.data_len >
|
|
sizeof (t->data) ? sizeof (t->data) : t->mb.data_len);
|
|
}
|
|
f = node->format_buffer;
|
|
if (!f)
|
|
f = format_hex_bytes;
|
|
s = format (s, "\n%U%U", format_white_space, indent,
|
|
f, t->buffer.pre_data, sizeof (t->buffer.pre_data));
|
|
|
|
return s;
|
|
}
|
|
|
|
|
|
static inline u8 *
|
|
format_dpdk_pkt_types (u8 * s, va_list * va)
|
|
{
|
|
u32 *pkt_types = va_arg (*va, u32 *);
|
|
u32 indent __attribute__ ((unused)) = format_get_indent (s) + 2;
|
|
|
|
if (!*pkt_types)
|
|
return s;
|
|
|
|
s = format (s, "Packet Types");
|
|
|
|
#define _(L, F, S) \
|
|
if ((*pkt_types & RTE_PTYPE_##L##_MASK) == RTE_PTYPE_##L##_##F) \
|
|
{ \
|
|
s = format (s, "\n%U%s (0x%04x) %s", format_white_space, indent, \
|
|
"RTE_PTYPE_" #L "_" #F, RTE_PTYPE_##L##_##F, S); \
|
|
}
|
|
|
|
foreach_dpdk_pkt_type
|
|
#undef _
|
|
return s;
|
|
}
|
|
|
|
static inline u8 *
|
|
format_dpdk_pkt_offload_flags (u8 * s, va_list * va)
|
|
{
|
|
u64 *ol_flags = va_arg (*va, u64 *);
|
|
u32 indent = format_get_indent (s) + 2;
|
|
u64 rx_dynflag;
|
|
int rx_dynflag_offset;
|
|
|
|
if (!*ol_flags)
|
|
return s;
|
|
|
|
s = format (s, "Packet Offload Flags");
|
|
|
|
#define _(F, S) \
|
|
if (*ol_flags & RTE_MBUF_F_##F) \
|
|
{ \
|
|
s = format (s, "\n%U%s (0x%04x) %s", format_white_space, indent, \
|
|
"PKT_" #F, RTE_MBUF_F_##F, S); \
|
|
}
|
|
|
|
foreach_dpdk_pkt_offload_flag
|
|
#undef _
|
|
#define _(F, P, S) \
|
|
{ \
|
|
rx_dynflag_offset = rte_mbuf_dynflag_lookup(RTE_MBUF_DYNFLAG_##F##_NAME, \
|
|
P); \
|
|
if (rx_dynflag_offset >= 0) \
|
|
{ \
|
|
rx_dynflag = (u64) 1 << rx_dynflag_offset; \
|
|
if (*ol_flags & rx_dynflag) \
|
|
{ \
|
|
s = format (s, "\n%U%s %s", format_white_space, indent, \
|
|
#F, S); \
|
|
} \
|
|
} \
|
|
}
|
|
foreach_dpdk_pkt_dyn_rx_offload_flag
|
|
#undef _
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_rte_mbuf_tso (u8 *s, va_list *va)
|
|
{
|
|
struct rte_mbuf *mb = va_arg (*va, struct rte_mbuf *);
|
|
if (mb->ol_flags & RTE_MBUF_F_TX_TCP_SEG)
|
|
{
|
|
s = format (s, "l4_len %u tso_segsz %u", mb->l4_len, mb->tso_segsz);
|
|
}
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_rte_mbuf_vlan (u8 * s, va_list * va)
|
|
{
|
|
ethernet_vlan_header_tv_t *vlan_hdr =
|
|
va_arg (*va, ethernet_vlan_header_tv_t *);
|
|
|
|
if (clib_net_to_host_u16 (vlan_hdr->type) == ETHERNET_TYPE_DOT1AD)
|
|
{
|
|
s = format (s, "%U 802.1q vlan ",
|
|
format_ethernet_vlan_tci,
|
|
clib_net_to_host_u16 (vlan_hdr->priority_cfi_and_id));
|
|
vlan_hdr++;
|
|
}
|
|
|
|
s = format (s, "%U",
|
|
format_ethernet_vlan_tci,
|
|
clib_net_to_host_u16 (vlan_hdr->priority_cfi_and_id));
|
|
|
|
return s;
|
|
}
|
|
|
|
u8 *
|
|
format_dpdk_rte_mbuf (u8 * s, va_list * va)
|
|
{
|
|
struct rte_mbuf *mb = va_arg (*va, struct rte_mbuf *);
|
|
ethernet_header_t *eth_hdr = va_arg (*va, ethernet_header_t *);
|
|
u32 indent = format_get_indent (s) + 2;
|
|
|
|
s = format (
|
|
s,
|
|
"PKT MBUF: port %d, nb_segs %d, pkt_len %d"
|
|
"\n%Ubuf_len %d, data_len %d, ol_flags 0x%lx, data_off %d, phys_addr 0x%x"
|
|
"\n%Upacket_type 0x%x l2_len %u l3_len %u outer_l2_len %u outer_l3_len %u "
|
|
"%U"
|
|
"\n%Urss 0x%x fdir.hi 0x%x fdir.lo 0x%x",
|
|
mb->port, mb->nb_segs, mb->pkt_len, format_white_space, indent,
|
|
mb->buf_len, mb->data_len, mb->ol_flags, mb->data_off, mb->buf_iova,
|
|
format_white_space, indent, mb->packet_type, mb->l2_len, mb->l3_len,
|
|
mb->outer_l2_len, mb->outer_l3_len, format_dpdk_rte_mbuf_tso, mb,
|
|
format_white_space, indent, mb->hash.rss, mb->hash.fdir.hi,
|
|
mb->hash.fdir.lo);
|
|
|
|
if (mb->ol_flags)
|
|
s = format (s, "\n%U%U", format_white_space, indent,
|
|
format_dpdk_pkt_offload_flags, &mb->ol_flags);
|
|
|
|
if ((mb->ol_flags & RTE_MBUF_F_RX_VLAN) &&
|
|
((mb->ol_flags &
|
|
(RTE_MBUF_F_RX_VLAN_STRIPPED | RTE_MBUF_F_RX_QINQ_STRIPPED)) == 0))
|
|
{
|
|
ethernet_vlan_header_tv_t *vlan_hdr =
|
|
((ethernet_vlan_header_tv_t *) & (eth_hdr->type));
|
|
s = format (s, " %U", format_dpdk_rte_mbuf_vlan, vlan_hdr);
|
|
}
|
|
|
|
if (mb->packet_type)
|
|
s = format (s, "\n%U%U", format_white_space, indent,
|
|
format_dpdk_pkt_types, &mb->packet_type);
|
|
|
|
return s;
|
|
}
|
|
|
|
clib_error_t *
|
|
unformat_rss_fn (unformat_input_t * input, uword * rss_fn)
|
|
{
|
|
while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
|
|
{
|
|
if (0)
|
|
;
|
|
#undef _
|
|
#define _(n, f, s) \
|
|
else if (unformat (input, s)) \
|
|
*rss_fn |= f;
|
|
|
|
foreach_dpdk_rss_hf
|
|
#undef _
|
|
else
|
|
{
|
|
return clib_error_return (0, "unknown input `%U'",
|
|
format_unformat_error, input);
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
|
|
/*
|
|
* fd.io coding-style-patch-verification: ON
|
|
*
|
|
* Local Variables:
|
|
* eval: (c-set-style "gnu")
|
|
* End:
|
|
*/
|