virtchnl: Add support for new VLAN capabilities
Currently VIRTCHNL only allows for VLAN filtering and offloads to happen on a single 802.1Q VLAN. Add support to filter and offload on inner, outer, and/or inner + outer VLANs. This is done by introducing the new capability VIRTCHNL_VF_OFFLOAD_VLAN_V2. The flow to negotiate this new capability is shown below. 1. VF - sets the VIRTCHNL_VF_OFFLOAD_VLAN_V2 bit in the virtchnl_vf_resource.vf_caps_flags during the VIRTCHNL_OP_GET_VF_RESOURCES request message. The VF should also set the VIRTCHNL_VF_OFFLOAD_VLAN bit in case the PF driver doesn't support the new capability. 2. PF - sets the VLAN capability bit it supports in the VIRTCHNL_OP_GET_VF_RESOURCES response message. This will either be VIRTCHNL_VF_OFFLOAD_VLAN_V2, VIRTCHNL_VF_OFFLOAD_VLAN, or none. 3. VF - If the VIRTCHNL_VF_OFFLOAD_VLAN_V2 capability was ACK'd by the PF, then the VF needs to request the VLAN capabilities of the PF/Device by issuing a VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS request. If the VIRTCHNL_VF_OFFLOAD_VLAN capability was ACK'd then the VF knows only single 802.1Q VLAN filtering/offloads are supported. If no VLAN capability is ACK'd then the PF/Device doesn't support hardware VLAN filtering/offloads for this VF. 4. PF - Populates the virtchnl_vlan_caps structure based on what it allows/supports for that VF and sends that response via VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS. After VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS is successfully negotiated the VF driver needs to interpret the capabilities supported by the underlying PF/Device. The VF will be allowed to filter/offload the inner 802.1Q, outer (various ethertype), inner 802.1Q + outer (various ethertypes), or none based on which fields are set. The VF will also need to interpret where the VLAN tag should be inserted and/or stripped based on the negotiated capabilities. Signed-off-by: Brett Creeley <brett.creeley@intel.com> Tested-by: Konrad Jankowski <konrad0.jankowski@intel.com> Signed-off-by: Tony Nguyen <anthony.l.nguyen@intel.com>
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@ -141,6 +141,13 @@ enum virtchnl_ops {
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VIRTCHNL_OP_DEL_RSS_CFG = 46,
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VIRTCHNL_OP_ADD_FDIR_FILTER = 47,
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VIRTCHNL_OP_DEL_FDIR_FILTER = 48,
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VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS = 51,
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VIRTCHNL_OP_ADD_VLAN_V2 = 52,
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VIRTCHNL_OP_DEL_VLAN_V2 = 53,
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VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 = 54,
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VIRTCHNL_OP_DISABLE_VLAN_STRIPPING_V2 = 55,
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VIRTCHNL_OP_ENABLE_VLAN_INSERTION_V2 = 56,
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VIRTCHNL_OP_DISABLE_VLAN_INSERTION_V2 = 57,
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VIRTCHNL_OP_MAX,
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};
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@ -246,6 +253,7 @@ VIRTCHNL_CHECK_STRUCT_LEN(16, virtchnl_vsi_resource);
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#define VIRTCHNL_VF_OFFLOAD_REQ_QUEUES BIT(6)
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/* used to negotiate communicating link speeds in Mbps */
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#define VIRTCHNL_VF_CAP_ADV_LINK_SPEED BIT(7)
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#define VIRTCHNL_VF_OFFLOAD_VLAN_V2 BIT(15)
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#define VIRTCHNL_VF_OFFLOAD_VLAN BIT(16)
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#define VIRTCHNL_VF_OFFLOAD_RX_POLLING BIT(17)
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#define VIRTCHNL_VF_OFFLOAD_RSS_PCTYPE_V2 BIT(18)
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@ -475,6 +483,351 @@ struct virtchnl_vlan_filter_list {
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VIRTCHNL_CHECK_STRUCT_LEN(6, virtchnl_vlan_filter_list);
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/* This enum is used for all of the VIRTCHNL_VF_OFFLOAD_VLAN_V2_CAPS related
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* structures and opcodes.
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*
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* VIRTCHNL_VLAN_UNSUPPORTED - This field is not supported and if a VF driver
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* populates it the PF should return VIRTCHNL_STATUS_ERR_NOT_SUPPORTED.
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*
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* VIRTCHNL_VLAN_ETHERTYPE_8100 - This field supports 0x8100 ethertype.
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 - This field supports 0x88A8 ethertype.
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* VIRTCHNL_VLAN_ETHERTYPE_9100 - This field supports 0x9100 ethertype.
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*
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* VIRTCHNL_VLAN_ETHERTYPE_AND - Used when multiple ethertypes can be supported
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* by the PF concurrently. For example, if the PF can support
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* VIRTCHNL_VLAN_ETHERTYPE_8100 AND VIRTCHNL_VLAN_ETHERTYPE_88A8 filters it
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* would OR the following bits:
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*
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* VIRTHCNL_VLAN_ETHERTYPE_8100 |
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
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* VIRTCHNL_VLAN_ETHERTYPE_AND;
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*
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* The VF would interpret this as VLAN filtering can be supported on both 0x8100
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* and 0x88A8 VLAN ethertypes.
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*
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* VIRTCHNL_ETHERTYPE_XOR - Used when only a single ethertype can be supported
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* by the PF concurrently. For example if the PF can support
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* VIRTCHNL_VLAN_ETHERTYPE_8100 XOR VIRTCHNL_VLAN_ETHERTYPE_88A8 stripping
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* offload it would OR the following bits:
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*
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* VIRTCHNL_VLAN_ETHERTYPE_8100 |
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
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* VIRTCHNL_VLAN_ETHERTYPE_XOR;
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*
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* The VF would interpret this as VLAN stripping can be supported on either
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* 0x8100 or 0x88a8 VLAN ethertypes. So when requesting VLAN stripping via
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* VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 the specified ethertype will override
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* the previously set value.
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*
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* VIRTCHNL_VLAN_TAG_LOCATION_L2TAG1 - Used to tell the VF to insert and/or
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* strip the VLAN tag using the L2TAG1 field of the Tx/Rx descriptors.
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*
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* VIRTCHNL_VLAN_TAG_LOCATION_L2TAG2 - Used to tell the VF to insert hardware
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* offloaded VLAN tags using the L2TAG2 field of the Tx descriptor.
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*
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* VIRTCHNL_VLAN_TAG_LOCATION_L2TAG2 - Used to tell the VF to strip hardware
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* offloaded VLAN tags using the L2TAG2_2 field of the Rx descriptor.
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*
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* VIRTCHNL_VLAN_PRIO - This field supports VLAN priority bits. This is used for
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* VLAN filtering if the underlying PF supports it.
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*
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* VIRTCHNL_VLAN_TOGGLE_ALLOWED - This field is used to say whether a
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* certain VLAN capability can be toggled. For example if the underlying PF/CP
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* allows the VF to toggle VLAN filtering, stripping, and/or insertion it should
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* set this bit along with the supported ethertypes.
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*/
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enum virtchnl_vlan_support {
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VIRTCHNL_VLAN_UNSUPPORTED = 0,
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VIRTCHNL_VLAN_ETHERTYPE_8100 = BIT(0),
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VIRTCHNL_VLAN_ETHERTYPE_88A8 = BIT(1),
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VIRTCHNL_VLAN_ETHERTYPE_9100 = BIT(2),
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VIRTCHNL_VLAN_TAG_LOCATION_L2TAG1 = BIT(8),
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VIRTCHNL_VLAN_TAG_LOCATION_L2TAG2 = BIT(9),
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VIRTCHNL_VLAN_TAG_LOCATION_L2TAG2_2 = BIT(10),
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VIRTCHNL_VLAN_PRIO = BIT(24),
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VIRTCHNL_VLAN_FILTER_MASK = BIT(28),
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VIRTCHNL_VLAN_ETHERTYPE_AND = BIT(29),
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VIRTCHNL_VLAN_ETHERTYPE_XOR = BIT(30),
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VIRTCHNL_VLAN_TOGGLE = BIT(31),
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};
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/* This structure is used as part of the VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS
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* for filtering, insertion, and stripping capabilities.
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*
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* If only outer capabilities are supported (for filtering, insertion, and/or
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* stripping) then this refers to the outer most or single VLAN from the VF's
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* perspective.
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*
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* If only inner capabilities are supported (for filtering, insertion, and/or
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* stripping) then this refers to the outer most or single VLAN from the VF's
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* perspective. Functionally this is the same as if only outer capabilities are
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* supported. The VF driver is just forced to use the inner fields when
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* adding/deleting filters and enabling/disabling offloads (if supported).
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*
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* If both outer and inner capabilities are supported (for filtering, insertion,
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* and/or stripping) then outer refers to the outer most or single VLAN and
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* inner refers to the second VLAN, if it exists, in the packet.
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*
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* There is no support for tunneled VLAN offloads, so outer or inner are never
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* referring to a tunneled packet from the VF's perspective.
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*/
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struct virtchnl_vlan_supported_caps {
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u32 outer;
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u32 inner;
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};
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/* The PF populates these fields based on the supported VLAN filtering. If a
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* field is VIRTCHNL_VLAN_UNSUPPORTED then it's not supported and the PF will
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* reject any VIRTCHNL_OP_ADD_VLAN_V2 or VIRTCHNL_OP_DEL_VLAN_V2 messages using
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* the unsupported fields.
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*
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* Also, a VF is only allowed to toggle its VLAN filtering setting if the
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* VIRTCHNL_VLAN_TOGGLE bit is set.
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*
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* The ethertype(s) specified in the ethertype_init field are the ethertypes
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* enabled for VLAN filtering. VLAN filtering in this case refers to the outer
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* most VLAN from the VF's perspective. If both inner and outer filtering are
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* allowed then ethertype_init only refers to the outer most VLAN as only
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* VLAN ethertype supported for inner VLAN filtering is
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* VIRTCHNL_VLAN_ETHERTYPE_8100. By default, inner VLAN filtering is disabled
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* when both inner and outer filtering are allowed.
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*
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* The max_filters field tells the VF how many VLAN filters it's allowed to have
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* at any one time. If it exceeds this amount and tries to add another filter,
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* then the request will be rejected by the PF. To prevent failures, the VF
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* should keep track of how many VLAN filters it has added and not attempt to
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* add more than max_filters.
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*/
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struct virtchnl_vlan_filtering_caps {
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struct virtchnl_vlan_supported_caps filtering_support;
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u32 ethertype_init;
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u16 max_filters;
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u8 pad[2];
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};
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VIRTCHNL_CHECK_STRUCT_LEN(16, virtchnl_vlan_filtering_caps);
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/* This enum is used for the virtchnl_vlan_offload_caps structure to specify
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* if the PF supports a different ethertype for stripping and insertion.
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*
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* VIRTCHNL_ETHERTYPE_STRIPPING_MATCHES_INSERTION - The ethertype(s) specified
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* for stripping affect the ethertype(s) specified for insertion and visa versa
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* as well. If the VF tries to configure VLAN stripping via
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* VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 with VIRTCHNL_VLAN_ETHERTYPE_8100 then
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* that will be the ethertype for both stripping and insertion.
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*
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* VIRTCHNL_ETHERTYPE_MATCH_NOT_REQUIRED - The ethertype(s) specified for
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* stripping do not affect the ethertype(s) specified for insertion and visa
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* versa.
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*/
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enum virtchnl_vlan_ethertype_match {
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VIRTCHNL_ETHERTYPE_STRIPPING_MATCHES_INSERTION = 0,
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VIRTCHNL_ETHERTYPE_MATCH_NOT_REQUIRED = 1,
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};
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/* The PF populates these fields based on the supported VLAN offloads. If a
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* field is VIRTCHNL_VLAN_UNSUPPORTED then it's not supported and the PF will
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* reject any VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 or
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* VIRTCHNL_OP_DISABLE_VLAN_STRIPPING_V2 messages using the unsupported fields.
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*
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* Also, a VF is only allowed to toggle its VLAN offload setting if the
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* VIRTCHNL_VLAN_TOGGLE_ALLOWED bit is set.
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*
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* The VF driver needs to be aware of how the tags are stripped by hardware and
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* inserted by the VF driver based on the level of offload support. The PF will
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* populate these fields based on where the VLAN tags are expected to be
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* offloaded via the VIRTHCNL_VLAN_TAG_LOCATION_* bits. The VF will need to
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* interpret these fields. See the definition of the
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* VIRTCHNL_VLAN_TAG_LOCATION_* bits above the virtchnl_vlan_support
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* enumeration.
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*/
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struct virtchnl_vlan_offload_caps {
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struct virtchnl_vlan_supported_caps stripping_support;
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struct virtchnl_vlan_supported_caps insertion_support;
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u32 ethertype_init;
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u8 ethertype_match;
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u8 pad[3];
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};
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VIRTCHNL_CHECK_STRUCT_LEN(24, virtchnl_vlan_offload_caps);
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/* VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS
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* VF sends this message to determine its VLAN capabilities.
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*
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* PF will mark which capabilities it supports based on hardware support and
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* current configuration. For example, if a port VLAN is configured the PF will
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* not allow outer VLAN filtering, stripping, or insertion to be configured so
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* it will block these features from the VF.
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*
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* The VF will need to cross reference its capabilities with the PFs
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* capabilities in the response message from the PF to determine the VLAN
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* support.
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*/
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struct virtchnl_vlan_caps {
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struct virtchnl_vlan_filtering_caps filtering;
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struct virtchnl_vlan_offload_caps offloads;
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};
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VIRTCHNL_CHECK_STRUCT_LEN(40, virtchnl_vlan_caps);
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struct virtchnl_vlan {
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u16 tci; /* tci[15:13] = PCP and tci[11:0] = VID */
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u16 tci_mask; /* only valid if VIRTCHNL_VLAN_FILTER_MASK set in
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* filtering caps
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*/
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u16 tpid; /* 0x8100, 0x88a8, etc. and only type(s) set in
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* filtering caps. Note that tpid here does not refer to
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* VIRTCHNL_VLAN_ETHERTYPE_*, but it refers to the
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* actual 2-byte VLAN TPID
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*/
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u8 pad[2];
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};
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VIRTCHNL_CHECK_STRUCT_LEN(8, virtchnl_vlan);
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struct virtchnl_vlan_filter {
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struct virtchnl_vlan inner;
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struct virtchnl_vlan outer;
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u8 pad[16];
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};
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VIRTCHNL_CHECK_STRUCT_LEN(32, virtchnl_vlan_filter);
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/* VIRTCHNL_OP_ADD_VLAN_V2
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* VIRTCHNL_OP_DEL_VLAN_V2
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*
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* VF sends these messages to add/del one or more VLAN tag filters for Rx
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* traffic.
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*
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* The PF attempts to add the filters and returns status.
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*
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* The VF should only ever attempt to add/del virtchnl_vlan_filter(s) using the
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* supported fields negotiated via VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS.
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*/
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struct virtchnl_vlan_filter_list_v2 {
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u16 vport_id;
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u16 num_elements;
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u8 pad[4];
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struct virtchnl_vlan_filter filters[1];
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};
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VIRTCHNL_CHECK_STRUCT_LEN(40, virtchnl_vlan_filter_list_v2);
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/* VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2
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* VIRTCHNL_OP_DISABLE_VLAN_STRIPPING_V2
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* VIRTCHNL_OP_ENABLE_VLAN_INSERTION_V2
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* VIRTCHNL_OP_DISABLE_VLAN_INSERTION_V2
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*
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* VF sends this message to enable or disable VLAN stripping or insertion. It
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* also needs to specify an ethertype. The VF knows which VLAN ethertypes are
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* allowed and whether or not it's allowed to enable/disable the specific
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* offload via the VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS message. The VF needs to
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* parse the virtchnl_vlan_caps.offloads fields to determine which offload
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* messages are allowed.
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*
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* For example, if the PF populates the virtchnl_vlan_caps.offloads in the
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* following manner the VF will be allowed to enable and/or disable 0x8100 inner
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* VLAN insertion and/or stripping via the opcodes listed above. Inner in this
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* case means the outer most or single VLAN from the VF's perspective. This is
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* because no outer offloads are supported. See the comments above the
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* virtchnl_vlan_supported_caps structure for more details.
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*
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* virtchnl_vlan_caps.offloads.stripping_support.inner =
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* VIRTCHNL_VLAN_TOGGLE |
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* VIRTCHNL_VLAN_ETHERTYPE_8100;
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*
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* virtchnl_vlan_caps.offloads.insertion_support.inner =
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* VIRTCHNL_VLAN_TOGGLE |
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* VIRTCHNL_VLAN_ETHERTYPE_8100;
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*
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* In order to enable inner (again note that in this case inner is the outer
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* most or single VLAN from the VF's perspective) VLAN stripping for 0x8100
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* VLANs, the VF would populate the virtchnl_vlan_setting structure in the
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* following manner and send the VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 message.
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*
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* virtchnl_vlan_setting.inner_ethertype_setting =
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* VIRTCHNL_VLAN_ETHERTYPE_8100;
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*
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* virtchnl_vlan_setting.vport_id = vport_id or vsi_id assigned to the VF on
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* initialization.
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*
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* The reason that VLAN TPID(s) are not being used for the
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* outer_ethertype_setting and inner_ethertype_setting fields is because it's
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* possible a device could support VLAN insertion and/or stripping offload on
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* multiple ethertypes concurrently, so this method allows a VF to request
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* multiple ethertypes in one message using the virtchnl_vlan_support
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* enumeration.
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*
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* For example, if the PF populates the virtchnl_vlan_caps.offloads in the
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* following manner the VF will be allowed to enable 0x8100 and 0x88a8 outer
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* VLAN insertion and stripping simultaneously. The
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* virtchnl_vlan_caps.offloads.ethertype_match field will also have to be
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* populated based on what the PF can support.
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*
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* virtchnl_vlan_caps.offloads.stripping_support.outer =
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* VIRTCHNL_VLAN_TOGGLE |
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* VIRTCHNL_VLAN_ETHERTYPE_8100 |
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
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* VIRTCHNL_VLAN_ETHERTYPE_AND;
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*
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* virtchnl_vlan_caps.offloads.insertion_support.outer =
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* VIRTCHNL_VLAN_TOGGLE |
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* VIRTCHNL_VLAN_ETHERTYPE_8100 |
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
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* VIRTCHNL_VLAN_ETHERTYPE_AND;
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*
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* In order to enable outer VLAN stripping for 0x8100 and 0x88a8 VLANs, the VF
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* would populate the virthcnl_vlan_offload_structure in the following manner
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* and send the VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2 message.
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*
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* virtchnl_vlan_setting.outer_ethertype_setting =
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* VIRTHCNL_VLAN_ETHERTYPE_8100 |
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* VIRTHCNL_VLAN_ETHERTYPE_88A8;
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*
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* virtchnl_vlan_setting.vport_id = vport_id or vsi_id assigned to the VF on
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* initialization.
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*
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* There is also the case where a PF and the underlying hardware can support
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* VLAN offloads on multiple ethertypes, but not concurrently. For example, if
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* the PF populates the virtchnl_vlan_caps.offloads in the following manner the
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* VF will be allowed to enable and/or disable 0x8100 XOR 0x88a8 outer VLAN
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* offloads. The ethertypes must match for stripping and insertion.
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*
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* virtchnl_vlan_caps.offloads.stripping_support.outer =
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* VIRTCHNL_VLAN_TOGGLE |
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* VIRTCHNL_VLAN_ETHERTYPE_8100 |
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* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
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* VIRTCHNL_VLAN_ETHERTYPE_XOR;
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*
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* virtchnl_vlan_caps.offloads.insertion_support.outer =
|
||||
* VIRTCHNL_VLAN_TOGGLE |
|
||||
* VIRTCHNL_VLAN_ETHERTYPE_8100 |
|
||||
* VIRTCHNL_VLAN_ETHERTYPE_88A8 |
|
||||
* VIRTCHNL_VLAN_ETHERTYPE_XOR;
|
||||
*
|
||||
* virtchnl_vlan_caps.offloads.ethertype_match =
|
||||
* VIRTCHNL_ETHERTYPE_STRIPPING_MATCHES_INSERTION;
|
||||
*
|
||||
* In order to enable outer VLAN stripping for 0x88a8 VLANs, the VF would
|
||||
* populate the virtchnl_vlan_setting structure in the following manner and send
|
||||
* the VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2. Also, this will change the
|
||||
* ethertype for VLAN insertion if it's enabled. So, for completeness, a
|
||||
* VIRTCHNL_OP_ENABLE_VLAN_INSERTION_V2 with the same ethertype should be sent.
|
||||
*
|
||||
* virtchnl_vlan_setting.outer_ethertype_setting = VIRTHCNL_VLAN_ETHERTYPE_88A8;
|
||||
*
|
||||
* virtchnl_vlan_setting.vport_id = vport_id or vsi_id assigned to the VF on
|
||||
* initialization.
|
||||
*/
|
||||
struct virtchnl_vlan_setting {
|
||||
u32 outer_ethertype_setting;
|
||||
u32 inner_ethertype_setting;
|
||||
u16 vport_id;
|
||||
u8 pad[6];
|
||||
};
|
||||
|
||||
VIRTCHNL_CHECK_STRUCT_LEN(16, virtchnl_vlan_setting);
|
||||
|
||||
/* VIRTCHNL_OP_CONFIG_PROMISCUOUS_MODE
|
||||
* VF sends VSI id and flags.
|
||||
* PF returns status code in retval.
|
||||
|
@ -1156,6 +1509,30 @@ virtchnl_vc_validate_vf_msg(struct virtchnl_version_info *ver, u32 v_opcode,
|
|||
case VIRTCHNL_OP_DEL_FDIR_FILTER:
|
||||
valid_len = sizeof(struct virtchnl_fdir_del);
|
||||
break;
|
||||
case VIRTCHNL_OP_GET_OFFLOAD_VLAN_V2_CAPS:
|
||||
break;
|
||||
case VIRTCHNL_OP_ADD_VLAN_V2:
|
||||
case VIRTCHNL_OP_DEL_VLAN_V2:
|
||||
valid_len = sizeof(struct virtchnl_vlan_filter_list_v2);
|
||||
if (msglen >= valid_len) {
|
||||
struct virtchnl_vlan_filter_list_v2 *vfl =
|
||||
(struct virtchnl_vlan_filter_list_v2 *)msg;
|
||||
|
||||
valid_len += (vfl->num_elements - 1) *
|
||||
sizeof(struct virtchnl_vlan_filter);
|
||||
|
||||
if (vfl->num_elements == 0) {
|
||||
err_msg_format = true;
|
||||
break;
|
||||
}
|
||||
}
|
||||
break;
|
||||
case VIRTCHNL_OP_ENABLE_VLAN_STRIPPING_V2:
|
||||
case VIRTCHNL_OP_DISABLE_VLAN_STRIPPING_V2:
|
||||
case VIRTCHNL_OP_ENABLE_VLAN_INSERTION_V2:
|
||||
case VIRTCHNL_OP_DISABLE_VLAN_INSERTION_V2:
|
||||
valid_len = sizeof(struct virtchnl_vlan_setting);
|
||||
break;
|
||||
/* These are always errors coming from the VF. */
|
||||
case VIRTCHNL_OP_EVENT:
|
||||
case VIRTCHNL_OP_UNKNOWN:
|
||||
|
|
Loading…
Reference in New Issue