4474e37a5b
If VIRTIO_NET_F_RSS negotiated and RSS is enabled, process incoming packets, calculate packet's hash and place the packet into respective RX virtqueue. Signed-off-by: Yuri Benditovich <yuri.benditovich@daynix.com> Signed-off-by: Jason Wang <jasowang@redhat.com>
222 lines
6.0 KiB
C
222 lines
6.0 KiB
C
/*
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* Virtio Network Device
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*
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* Copyright IBM, Corp. 2007
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*
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* Authors:
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* Anthony Liguori <aliguori@us.ibm.com>
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*
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* This work is licensed under the terms of the GNU GPL, version 2. See
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* the COPYING file in the top-level directory.
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*
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*/
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#ifndef QEMU_VIRTIO_NET_H
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#define QEMU_VIRTIO_NET_H
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#include "qemu/units.h"
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#include "standard-headers/linux/virtio_net.h"
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#include "hw/virtio/virtio.h"
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#include "net/announce.h"
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#include "qemu/option_int.h"
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#define TYPE_VIRTIO_NET "virtio-net-device"
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#define VIRTIO_NET(obj) \
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OBJECT_CHECK(VirtIONet, (obj), TYPE_VIRTIO_NET)
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#define TX_TIMER_INTERVAL 150000 /* 150 us */
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/* Limit the number of packets that can be sent via a single flush
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* of the TX queue. This gives us a guaranteed exit condition and
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* ensures fairness in the io path. 256 conveniently matches the
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* length of the TX queue and shows a good balance of performance
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* and latency. */
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#define TX_BURST 256
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typedef struct virtio_net_conf
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{
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uint32_t txtimer;
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int32_t txburst;
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char *tx;
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uint16_t rx_queue_size;
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uint16_t tx_queue_size;
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uint16_t mtu;
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int32_t speed;
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char *duplex_str;
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uint8_t duplex;
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char *primary_id_str;
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} virtio_net_conf;
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/* Coalesced packets type & status */
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typedef enum {
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RSC_COALESCE, /* Data been coalesced */
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RSC_FINAL, /* Will terminate current connection */
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RSC_NO_MATCH, /* No matched in the buffer pool */
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RSC_BYPASS, /* Packet to be bypass, not tcp, tcp ctrl, etc */
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RSC_CANDIDATE /* Data want to be coalesced */
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} CoalesceStatus;
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typedef struct VirtioNetRscStat {
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uint32_t received;
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uint32_t coalesced;
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uint32_t over_size;
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uint32_t cache;
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uint32_t empty_cache;
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uint32_t no_match_cache;
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uint32_t win_update;
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uint32_t no_match;
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uint32_t tcp_syn;
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uint32_t tcp_ctrl_drain;
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uint32_t dup_ack;
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uint32_t dup_ack1;
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uint32_t dup_ack2;
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uint32_t pure_ack;
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uint32_t ack_out_of_win;
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uint32_t data_out_of_win;
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uint32_t data_out_of_order;
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uint32_t data_after_pure_ack;
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uint32_t bypass_not_tcp;
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uint32_t tcp_option;
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uint32_t tcp_all_opt;
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uint32_t ip_frag;
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uint32_t ip_ecn;
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uint32_t ip_hacked;
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uint32_t ip_option;
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uint32_t purge_failed;
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uint32_t drain_failed;
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uint32_t final_failed;
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int64_t timer;
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} VirtioNetRscStat;
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/* Rsc unit general info used to checking if can coalescing */
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typedef struct VirtioNetRscUnit {
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void *ip; /* ip header */
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uint16_t *ip_plen; /* data len pointer in ip header field */
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struct tcp_header *tcp; /* tcp header */
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uint16_t tcp_hdrlen; /* tcp header len */
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uint16_t payload; /* pure payload without virtio/eth/ip/tcp */
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} VirtioNetRscUnit;
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/* Coalesced segment */
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typedef struct VirtioNetRscSeg {
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QTAILQ_ENTRY(VirtioNetRscSeg) next;
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void *buf;
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size_t size;
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uint16_t packets;
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uint16_t dup_ack;
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bool is_coalesced; /* need recal ipv4 header checksum, mark here */
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VirtioNetRscUnit unit;
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NetClientState *nc;
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} VirtioNetRscSeg;
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typedef struct VirtIONet VirtIONet;
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/* Chain is divided by protocol(ipv4/v6) and NetClientInfo */
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typedef struct VirtioNetRscChain {
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QTAILQ_ENTRY(VirtioNetRscChain) next;
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VirtIONet *n; /* VirtIONet */
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uint16_t proto;
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uint8_t gso_type;
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uint16_t max_payload;
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QEMUTimer *drain_timer;
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QTAILQ_HEAD(, VirtioNetRscSeg) buffers;
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VirtioNetRscStat stat;
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} VirtioNetRscChain;
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/* Maximum packet size we can receive from tap device: header + 64k */
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#define VIRTIO_NET_MAX_BUFSIZE (sizeof(struct virtio_net_hdr) + (64 * KiB))
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#define VIRTIO_NET_RSS_MAX_KEY_SIZE 40
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#define VIRTIO_NET_RSS_MAX_TABLE_LEN 128
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typedef struct VirtioNetRssData {
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bool enabled;
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uint32_t hash_types;
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uint8_t key[VIRTIO_NET_RSS_MAX_KEY_SIZE];
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uint16_t indirections_len;
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uint16_t *indirections_table;
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uint16_t default_queue;
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} VirtioNetRssData;
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typedef struct VirtIONetQueue {
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VirtQueue *rx_vq;
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VirtQueue *tx_vq;
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QEMUTimer *tx_timer;
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QEMUBH *tx_bh;
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uint32_t tx_waiting;
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struct {
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VirtQueueElement *elem;
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} async_tx;
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struct VirtIONet *n;
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} VirtIONetQueue;
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struct VirtIONet {
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VirtIODevice parent_obj;
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uint8_t mac[ETH_ALEN];
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uint16_t status;
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VirtIONetQueue *vqs;
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VirtQueue *ctrl_vq;
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NICState *nic;
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/* RSC Chains - temporary storage of coalesced data,
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all these data are lost in case of migration */
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QTAILQ_HEAD(, VirtioNetRscChain) rsc_chains;
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uint32_t tx_timeout;
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int32_t tx_burst;
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uint32_t has_vnet_hdr;
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size_t host_hdr_len;
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size_t guest_hdr_len;
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uint64_t host_features;
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uint32_t rsc_timeout;
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uint8_t rsc4_enabled;
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uint8_t rsc6_enabled;
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uint8_t has_ufo;
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uint32_t mergeable_rx_bufs;
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uint8_t promisc;
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uint8_t allmulti;
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uint8_t alluni;
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uint8_t nomulti;
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uint8_t nouni;
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uint8_t nobcast;
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uint8_t vhost_started;
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struct {
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uint32_t in_use;
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uint32_t first_multi;
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uint8_t multi_overflow;
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uint8_t uni_overflow;
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uint8_t *macs;
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} mac_table;
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uint32_t *vlans;
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virtio_net_conf net_conf;
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NICConf nic_conf;
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DeviceState *qdev;
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int multiqueue;
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uint16_t max_queues;
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uint16_t curr_queues;
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size_t config_size;
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char *netclient_name;
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char *netclient_type;
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uint64_t curr_guest_offloads;
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/* used on saved state restore phase to preserve the curr_guest_offloads */
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uint64_t saved_guest_offloads;
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AnnounceTimer announce_timer;
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bool needs_vnet_hdr_swap;
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bool mtu_bypass_backend;
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QemuOpts *primary_device_opts;
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QDict *primary_device_dict;
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DeviceState *primary_dev;
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BusState *primary_bus;
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char *primary_device_id;
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char *standby_id;
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bool primary_should_be_hidden;
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bool failover;
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DeviceListener primary_listener;
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Notifier migration_state;
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VirtioNetRssData rss_data;
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struct NetRxPkt *rx_pkt;
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};
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void virtio_net_set_netclient_name(VirtIONet *n, const char *name,
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const char *type);
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#endif
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