1. 10 2月, 2017 2 次提交
    • J
      openvswitch: Pack struct sw_flow_key. · 316d4d78
      Jarno Rajahalme 提交于
      struct sw_flow_key has two 16-bit holes. Move the most matched
      conntrack match fields there.  In some typical cases this reduces the
      size of the key that needs to be hashed into half and into one cache
      line.
      Signed-off-by: NJarno Rajahalme <jarno@ovn.org>
      Acked-by: NJoe Stringer <joe@ovn.org>
      Acked-by: NPravin B Shelar <pshelar@ovn.org>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      316d4d78
    • J
      openvswitch: Add original direction conntrack tuple to sw_flow_key. · 9dd7f890
      Jarno Rajahalme 提交于
      Add the fields of the conntrack original direction 5-tuple to struct
      sw_flow_key.  The new fields are initially marked as non-existent, and
      are populated whenever a conntrack action is executed and either finds
      or generates a conntrack entry.  This means that these fields exist
      for all packets that were not rejected by conntrack as untrackable.
      
      The original tuple fields in the sw_flow_key are filled from the
      original direction tuple of the conntrack entry relating to the
      current packet, or from the original direction tuple of the master
      conntrack entry, if the current conntrack entry has a master.
      Generally, expected connections of connections having an assigned
      helper (e.g., FTP), have a master conntrack entry.
      
      The main purpose of the new conntrack original tuple fields is to
      allow matching on them for policy decision purposes, with the premise
      that the admissibility of tracked connections reply packets (as well
      as original direction packets), and both direction packets of any
      related connections may be based on ACL rules applying to the master
      connection's original direction 5-tuple.  This also makes it easier to
      make policy decisions when the actual packet headers might have been
      transformed by NAT, as the original direction 5-tuple represents the
      packet headers before any such transformation.
      
      When using the original direction 5-tuple the admissibility of return
      and/or related packets need not be based on the mere existence of a
      conntrack entry, allowing separation of admission policy from the
      established conntrack state.  While existence of a conntrack entry is
      required for admission of the return or related packets, policy
      changes can render connections that were initially admitted to be
      rejected or dropped afterwards.  If the admission of the return and
      related packets was based on mere conntrack state (e.g., connection
      being in an established state), a policy change that would make the
      connection rejected or dropped would need to find and delete all
      conntrack entries affected by such a change.  When using the original
      direction 5-tuple matching the affected conntrack entries can be
      allowed to time out instead, as the established state of the
      connection would not need to be the basis for packet admission any
      more.
      
      It should be noted that the directionality of related connections may
      be the same or different than that of the master connection, and
      neither the original direction 5-tuple nor the conntrack state bits
      carry this information.  If needed, the directionality of the master
      connection can be stored in master's conntrack mark or labels, which
      are automatically inherited by the expected related connections.
      
      The fact that neither ARP nor ND packets are trackable by conntrack
      allows mutual exclusion between ARP/ND and the new conntrack original
      tuple fields.  Hence, the IP addresses are overlaid in union with ARP
      and ND fields.  This allows the sw_flow_key to not grow much due to
      this patch, but it also means that we must be careful to never use the
      new key fields with ARP or ND packets.  ARP is easy to distinguish and
      keep mutually exclusive based on the ethernet type, but ND being an
      ICMPv6 protocol requires a bit more attention.
      Signed-off-by: NJarno Rajahalme <jarno@ovn.org>
      Acked-by: NJoe Stringer <joe@ovn.org>
      Acked-by: NPravin B Shelar <pshelar@ovn.org>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      9dd7f890
  2. 15 3月, 2016 1 次提交
  3. 28 10月, 2015 1 次提交
  4. 22 10月, 2015 1 次提交
  5. 07 10月, 2015 2 次提交
  6. 05 10月, 2015 1 次提交
  7. 07 9月, 2015 1 次提交
  8. 28 8月, 2015 3 次提交
    • J
      openvswitch: Allow matching on conntrack label · c2ac6673
      Joe Stringer 提交于
      Allow matching and setting the ct_label field. As with ct_mark, this is
      populated by executing the CT action. The label field may be modified by
      specifying a label and mask nested under the CT action. It is stored as
      metadata attached to the connection. Label modification occurs after
      lookup, and will only persist when the conntrack entry is committed by
      providing the COMMIT flag to the CT action. Labels are currently fixed
      to 128 bits in size.
      Signed-off-by: NJoe Stringer <joestringer@nicira.com>
      Acked-by: NThomas Graf <tgraf@suug.ch>
      Acked-by: NPravin B Shelar <pshelar@nicira.com>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      c2ac6673
    • J
      openvswitch: Allow matching on conntrack mark · 182e3042
      Joe Stringer 提交于
      Allow matching and setting the ct_mark field. As with ct_state and
      ct_zone, these fields are populated when the CT action is executed. To
      write to this field, a value and mask can be specified as a nested
      attribute under the CT action. This data is stored with the conntrack
      entry, and is executed after the lookup occurs for the CT action. The
      conntrack entry itself must be committed using the COMMIT flag in the CT
      action flags for this change to persist.
      Signed-off-by: NJustin Pettit <jpettit@nicira.com>
      Signed-off-by: NJoe Stringer <joestringer@nicira.com>
      Acked-by: NThomas Graf <tgraf@suug.ch>
      Acked-by: NPravin B Shelar <pshelar@nicira.com>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      182e3042
    • J
      openvswitch: Add conntrack action · 7f8a436e
      Joe Stringer 提交于
      Expose the kernel connection tracker via OVS. Userspace components can
      make use of the CT action to populate the connection state (ct_state)
      field for a flow. This state can be subsequently matched.
      
      Exposed connection states are OVS_CS_F_*:
      - NEW (0x01) - Beginning of a new connection.
      - ESTABLISHED (0x02) - Part of an existing connection.
      - RELATED (0x04) - Related to an established connection.
      - INVALID (0x20) - Could not track the connection for this packet.
      - REPLY_DIR (0x40) - This packet is in the reply direction for the flow.
      - TRACKED (0x80) - This packet has been sent through conntrack.
      
      When the CT action is executed by itself, it will send the packet
      through the connection tracker and populate the ct_state field with one
      or more of the connection state flags above. The CT action will always
      set the TRACKED bit.
      
      When the COMMIT flag is passed to the conntrack action, this specifies
      that information about the connection should be stored. This allows
      subsequent packets for the same (or related) connections to be
      correlated with this connection. Sending subsequent packets for the
      connection through conntrack allows the connection tracker to consider
      the packets as ESTABLISHED, RELATED, and/or REPLY_DIR.
      
      The CT action may optionally take a zone to track the flow within. This
      allows connections with the same 5-tuple to be kept logically separate
      from connections in other zones. If the zone is specified, then the
      "ct_zone" match field will be subsequently populated with the zone id.
      
      IP fragments are handled by transparently assembling them as part of the
      CT action. The maximum received unit (MRU) size is tracked so that
      refragmentation can occur during output.
      
      IP frag handling contributed by Andy Zhou.
      
      Based on original design by Justin Pettit.
      Signed-off-by: NJoe Stringer <joestringer@nicira.com>
      Signed-off-by: NJustin Pettit <jpettit@nicira.com>
      Signed-off-by: NAndy Zhou <azhou@nicira.com>
      Acked-by: NThomas Graf <tgraf@suug.ch>
      Acked-by: NPravin B Shelar <pshelar@nicira.com>
      Signed-off-by: NDavid S. Miller <davem@davemloft.net>
      7f8a436e