+func (x IfType) String() string {
+ s, ok := IfType_name[uint32(x)]
+ if ok {
+ return s
+ }
+ return "IfType(" + strconv.Itoa(int(x)) + ")"
+}
+
+// LinkDuplex represents VPP binary API enum 'link_duplex'.
+type LinkDuplex uint32
+
+const (
+ LINK_DUPLEX_API_UNKNOWN LinkDuplex = 0
+ LINK_DUPLEX_API_HALF LinkDuplex = 1
+ LINK_DUPLEX_API_FULL LinkDuplex = 2
+)
+
+var (
+ LinkDuplex_name = map[uint32]string{
+ 0: "LINK_DUPLEX_API_UNKNOWN",
+ 1: "LINK_DUPLEX_API_HALF",
+ 2: "LINK_DUPLEX_API_FULL",
+ }
+ LinkDuplex_value = map[string]uint32{
+ "LINK_DUPLEX_API_UNKNOWN": 0,
+ "LINK_DUPLEX_API_HALF": 1,
+ "LINK_DUPLEX_API_FULL": 2,
+ }
+)
+
+func (x LinkDuplex) String() string {
+ s, ok := LinkDuplex_name[uint32(x)]
+ if ok {
+ return s
+ }
+ return "LinkDuplex(" + strconv.Itoa(int(x)) + ")"
+}
+
+// MtuProto represents VPP binary API enum 'mtu_proto'.
+type MtuProto uint32
+
+const (
+ MTU_PROTO_API_L3 MtuProto = 1
+ MTU_PROTO_API_IP4 MtuProto = 2
+ MTU_PROTO_API_IP6 MtuProto = 3
+ MTU_PROTO_API_MPLS MtuProto = 4
+ MTU_PROTO_API_N MtuProto = 5
+)
+
+var (
+ MtuProto_name = map[uint32]string{
+ 1: "MTU_PROTO_API_L3",
+ 2: "MTU_PROTO_API_IP4",
+ 3: "MTU_PROTO_API_IP6",
+ 4: "MTU_PROTO_API_MPLS",
+ 5: "MTU_PROTO_API_N",
+ }
+ MtuProto_value = map[string]uint32{
+ "MTU_PROTO_API_L3": 1,
+ "MTU_PROTO_API_IP4": 2,
+ "MTU_PROTO_API_IP6": 3,
+ "MTU_PROTO_API_MPLS": 4,
+ "MTU_PROTO_API_N": 5,
+ }
+)
+
+func (x MtuProto) String() string {
+ s, ok := MtuProto_name[uint32(x)]
+ if ok {
+ return s
+ }
+ return "MtuProto(" + strconv.Itoa(int(x)) + ")"
+}
+
+// RxMode represents VPP binary API enum 'rx_mode'.
+type RxMode uint32
+
+const (
+ RX_MODE_API_UNKNOWN RxMode = 0
+ RX_MODE_API_POLLING RxMode = 1
+ RX_MODE_API_INTERRUPT RxMode = 2
+ RX_MODE_API_ADAPTIVE RxMode = 3
+ RX_MODE_API_DEFAULT RxMode = 4
+)
+
+var (
+ RxMode_name = map[uint32]string{
+ 0: "RX_MODE_API_UNKNOWN",
+ 1: "RX_MODE_API_POLLING",
+ 2: "RX_MODE_API_INTERRUPT",
+ 3: "RX_MODE_API_ADAPTIVE",
+ 4: "RX_MODE_API_DEFAULT",
+ }
+ RxMode_value = map[string]uint32{
+ "RX_MODE_API_UNKNOWN": 0,
+ "RX_MODE_API_POLLING": 1,
+ "RX_MODE_API_INTERRUPT": 2,
+ "RX_MODE_API_ADAPTIVE": 3,
+ "RX_MODE_API_DEFAULT": 4,
+ }
+)
+
+func (x RxMode) String() string {
+ s, ok := RxMode_name[uint32(x)]
+ if ok {
+ return s
+ }
+ return "RxMode(" + strconv.Itoa(int(x)) + ")"
+}
+
+// SubIfFlags represents VPP binary API enum 'sub_if_flags'.
+type SubIfFlags uint32
+
+const (
+ SUB_IF_API_FLAG_NO_TAGS SubIfFlags = 1
+ SUB_IF_API_FLAG_ONE_TAG SubIfFlags = 2
+ SUB_IF_API_FLAG_TWO_TAGS SubIfFlags = 4
+ SUB_IF_API_FLAG_DOT1AD SubIfFlags = 8
+ SUB_IF_API_FLAG_EXACT_MATCH SubIfFlags = 16
+ SUB_IF_API_FLAG_DEFAULT SubIfFlags = 32
+ SUB_IF_API_FLAG_OUTER_VLAN_ID_ANY SubIfFlags = 64
+ SUB_IF_API_FLAG_INNER_VLAN_ID_ANY SubIfFlags = 128
+ SUB_IF_API_FLAG_MASK_VNET SubIfFlags = 254
+ SUB_IF_API_FLAG_DOT1AH SubIfFlags = 256
+)
+
+var (
+ SubIfFlags_name = map[uint32]string{
+ 1: "SUB_IF_API_FLAG_NO_TAGS",
+ 2: "SUB_IF_API_FLAG_ONE_TAG",
+ 4: "SUB_IF_API_FLAG_TWO_TAGS",
+ 8: "SUB_IF_API_FLAG_DOT1AD",
+ 16: "SUB_IF_API_FLAG_EXACT_MATCH",
+ 32: "SUB_IF_API_FLAG_DEFAULT",
+ 64: "SUB_IF_API_FLAG_OUTER_VLAN_ID_ANY",
+ 128: "SUB_IF_API_FLAG_INNER_VLAN_ID_ANY",
+ 254: "SUB_IF_API_FLAG_MASK_VNET",
+ 256: "SUB_IF_API_FLAG_DOT1AH",
+ }
+ SubIfFlags_value = map[string]uint32{
+ "SUB_IF_API_FLAG_NO_TAGS": 1,
+ "SUB_IF_API_FLAG_ONE_TAG": 2,
+ "SUB_IF_API_FLAG_TWO_TAGS": 4,
+ "SUB_IF_API_FLAG_DOT1AD": 8,
+ "SUB_IF_API_FLAG_EXACT_MATCH": 16,
+ "SUB_IF_API_FLAG_DEFAULT": 32,
+ "SUB_IF_API_FLAG_OUTER_VLAN_ID_ANY": 64,
+ "SUB_IF_API_FLAG_INNER_VLAN_ID_ANY": 128,
+ "SUB_IF_API_FLAG_MASK_VNET": 254,
+ "SUB_IF_API_FLAG_DOT1AH": 256,
+ }
+)
+
+func (x SubIfFlags) String() string {
+ s, ok := SubIfFlags_name[uint32(x)]
+ if ok {
+ return s
+ }
+ return "SubIfFlags(" + strconv.Itoa(int(x)) + ")"
+}
+
+// InterfaceIndex represents VPP binary API alias 'interface_index'.
+type InterfaceIndex uint32
+
+// MacAddress represents VPP binary API alias 'mac_address'.
+type MacAddress [6]uint8