link_linux.go 96 KB

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  1. package netlink
  2. import (
  3. "bytes"
  4. "encoding/binary"
  5. "fmt"
  6. "io/ioutil"
  7. "net"
  8. "os"
  9. "strconv"
  10. "strings"
  11. "syscall"
  12. "unsafe"
  13. "github.com/vishvananda/netlink/nl"
  14. "github.com/vishvananda/netns"
  15. "golang.org/x/sys/unix"
  16. )
  17. const (
  18. SizeofLinkStats32 = 0x5c
  19. SizeofLinkStats64 = 0xb8
  20. )
  21. const (
  22. TUNTAP_MODE_TUN TuntapMode = unix.IFF_TUN
  23. TUNTAP_MODE_TAP TuntapMode = unix.IFF_TAP
  24. TUNTAP_DEFAULTS TuntapFlag = unix.IFF_TUN_EXCL | unix.IFF_ONE_QUEUE
  25. TUNTAP_VNET_HDR TuntapFlag = unix.IFF_VNET_HDR
  26. TUNTAP_TUN_EXCL TuntapFlag = unix.IFF_TUN_EXCL
  27. TUNTAP_NO_PI TuntapFlag = unix.IFF_NO_PI
  28. TUNTAP_ONE_QUEUE TuntapFlag = unix.IFF_ONE_QUEUE
  29. TUNTAP_MULTI_QUEUE TuntapFlag = unix.IFF_MULTI_QUEUE
  30. TUNTAP_MULTI_QUEUE_DEFAULTS TuntapFlag = TUNTAP_MULTI_QUEUE | TUNTAP_NO_PI
  31. )
  32. var StringToTuntapModeMap = map[string]TuntapMode{
  33. "tun": TUNTAP_MODE_TUN,
  34. "tap": TUNTAP_MODE_TAP,
  35. }
  36. func (ttm TuntapMode) String() string {
  37. switch ttm {
  38. case TUNTAP_MODE_TUN:
  39. return "tun"
  40. case TUNTAP_MODE_TAP:
  41. return "tap"
  42. }
  43. return "unknown"
  44. }
  45. const (
  46. VF_LINK_STATE_AUTO uint32 = 0
  47. VF_LINK_STATE_ENABLE uint32 = 1
  48. VF_LINK_STATE_DISABLE uint32 = 2
  49. )
  50. var lookupByDump = false
  51. var macvlanModes = [...]uint32{
  52. 0,
  53. nl.MACVLAN_MODE_PRIVATE,
  54. nl.MACVLAN_MODE_VEPA,
  55. nl.MACVLAN_MODE_BRIDGE,
  56. nl.MACVLAN_MODE_PASSTHRU,
  57. nl.MACVLAN_MODE_SOURCE,
  58. }
  59. func ensureIndex(link *LinkAttrs) {
  60. if link != nil && link.Index == 0 {
  61. newlink, _ := LinkByName(link.Name)
  62. if newlink != nil {
  63. link.Index = newlink.Attrs().Index
  64. }
  65. }
  66. }
  67. func (h *Handle) ensureIndex(link *LinkAttrs) {
  68. if link != nil && link.Index == 0 {
  69. newlink, _ := h.LinkByName(link.Name)
  70. if newlink != nil {
  71. link.Index = newlink.Attrs().Index
  72. }
  73. }
  74. }
  75. func (h *Handle) LinkSetARPOff(link Link) error {
  76. base := link.Attrs()
  77. h.ensureIndex(base)
  78. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  79. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  80. msg.Change |= unix.IFF_NOARP
  81. msg.Flags |= unix.IFF_NOARP
  82. msg.Index = int32(base.Index)
  83. req.AddData(msg)
  84. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  85. return err
  86. }
  87. func LinkSetARPOff(link Link) error {
  88. return pkgHandle.LinkSetARPOff(link)
  89. }
  90. func (h *Handle) LinkSetARPOn(link Link) error {
  91. base := link.Attrs()
  92. h.ensureIndex(base)
  93. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  94. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  95. msg.Change |= unix.IFF_NOARP
  96. msg.Flags &= ^uint32(unix.IFF_NOARP)
  97. msg.Index = int32(base.Index)
  98. req.AddData(msg)
  99. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  100. return err
  101. }
  102. func LinkSetARPOn(link Link) error {
  103. return pkgHandle.LinkSetARPOn(link)
  104. }
  105. func (h *Handle) SetPromiscOn(link Link) error {
  106. base := link.Attrs()
  107. h.ensureIndex(base)
  108. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  109. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  110. msg.Change = unix.IFF_PROMISC
  111. msg.Flags = unix.IFF_PROMISC
  112. msg.Index = int32(base.Index)
  113. req.AddData(msg)
  114. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  115. return err
  116. }
  117. // LinkSetAllmulticastOn enables the reception of all hardware multicast packets for the link device.
  118. // Equivalent to: `ip link set $link allmulticast on`
  119. func LinkSetAllmulticastOn(link Link) error {
  120. return pkgHandle.LinkSetAllmulticastOn(link)
  121. }
  122. // LinkSetAllmulticastOn enables the reception of all hardware multicast packets for the link device.
  123. // Equivalent to: `ip link set $link allmulticast on`
  124. func (h *Handle) LinkSetAllmulticastOn(link Link) error {
  125. base := link.Attrs()
  126. h.ensureIndex(base)
  127. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  128. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  129. msg.Change = unix.IFF_ALLMULTI
  130. msg.Flags = unix.IFF_ALLMULTI
  131. msg.Index = int32(base.Index)
  132. req.AddData(msg)
  133. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  134. return err
  135. }
  136. // LinkSetAllmulticastOff disables the reception of all hardware multicast packets for the link device.
  137. // Equivalent to: `ip link set $link allmulticast off`
  138. func LinkSetAllmulticastOff(link Link) error {
  139. return pkgHandle.LinkSetAllmulticastOff(link)
  140. }
  141. // LinkSetAllmulticastOff disables the reception of all hardware multicast packets for the link device.
  142. // Equivalent to: `ip link set $link allmulticast off`
  143. func (h *Handle) LinkSetAllmulticastOff(link Link) error {
  144. base := link.Attrs()
  145. h.ensureIndex(base)
  146. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  147. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  148. msg.Change = unix.IFF_ALLMULTI
  149. msg.Index = int32(base.Index)
  150. req.AddData(msg)
  151. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  152. return err
  153. }
  154. func MacvlanMACAddrAdd(link Link, addr net.HardwareAddr) error {
  155. return pkgHandle.MacvlanMACAddrAdd(link, addr)
  156. }
  157. func (h *Handle) MacvlanMACAddrAdd(link Link, addr net.HardwareAddr) error {
  158. return h.macvlanMACAddrChange(link, []net.HardwareAddr{addr}, nl.MACVLAN_MACADDR_ADD)
  159. }
  160. func MacvlanMACAddrDel(link Link, addr net.HardwareAddr) error {
  161. return pkgHandle.MacvlanMACAddrDel(link, addr)
  162. }
  163. func (h *Handle) MacvlanMACAddrDel(link Link, addr net.HardwareAddr) error {
  164. return h.macvlanMACAddrChange(link, []net.HardwareAddr{addr}, nl.MACVLAN_MACADDR_DEL)
  165. }
  166. func MacvlanMACAddrFlush(link Link) error {
  167. return pkgHandle.MacvlanMACAddrFlush(link)
  168. }
  169. func (h *Handle) MacvlanMACAddrFlush(link Link) error {
  170. return h.macvlanMACAddrChange(link, nil, nl.MACVLAN_MACADDR_FLUSH)
  171. }
  172. func MacvlanMACAddrSet(link Link, addrs []net.HardwareAddr) error {
  173. return pkgHandle.MacvlanMACAddrSet(link, addrs)
  174. }
  175. func (h *Handle) MacvlanMACAddrSet(link Link, addrs []net.HardwareAddr) error {
  176. return h.macvlanMACAddrChange(link, addrs, nl.MACVLAN_MACADDR_SET)
  177. }
  178. func (h *Handle) macvlanMACAddrChange(link Link, addrs []net.HardwareAddr, mode uint32) error {
  179. base := link.Attrs()
  180. h.ensureIndex(base)
  181. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  182. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  183. msg.Index = int32(base.Index)
  184. req.AddData(msg)
  185. linkInfo := nl.NewRtAttr(unix.IFLA_LINKINFO, nil)
  186. linkInfo.AddRtAttr(nl.IFLA_INFO_KIND, nl.NonZeroTerminated(link.Type()))
  187. inner := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  188. // IFLA_MACVLAN_MACADDR_MODE = mode
  189. b := make([]byte, 4)
  190. native.PutUint32(b, mode)
  191. inner.AddRtAttr(nl.IFLA_MACVLAN_MACADDR_MODE, b)
  192. // populate message with MAC addrs, if necessary
  193. switch mode {
  194. case nl.MACVLAN_MACADDR_ADD, nl.MACVLAN_MACADDR_DEL:
  195. if len(addrs) == 1 {
  196. inner.AddRtAttr(nl.IFLA_MACVLAN_MACADDR, []byte(addrs[0]))
  197. }
  198. case nl.MACVLAN_MACADDR_SET:
  199. mad := inner.AddRtAttr(nl.IFLA_MACVLAN_MACADDR_DATA, nil)
  200. for _, addr := range addrs {
  201. mad.AddRtAttr(nl.IFLA_MACVLAN_MACADDR, []byte(addr))
  202. }
  203. }
  204. req.AddData(linkInfo)
  205. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  206. return err
  207. }
  208. // LinkSetMacvlanMode sets the mode of a macvlan or macvtap link device.
  209. // Note that passthrough mode cannot be set to and from and will fail.
  210. // Equivalent to: `ip link set $link type (macvlan|macvtap) mode $mode
  211. func LinkSetMacvlanMode(link Link, mode MacvlanMode) error {
  212. return pkgHandle.LinkSetMacvlanMode(link, mode)
  213. }
  214. // LinkSetMacvlanMode sets the mode of the macvlan or macvtap link device.
  215. // Note that passthrough mode cannot be set to and from and will fail.
  216. // Equivalent to: `ip link set $link type (macvlan|macvtap) mode $mode
  217. func (h *Handle) LinkSetMacvlanMode(link Link, mode MacvlanMode) error {
  218. base := link.Attrs()
  219. h.ensureIndex(base)
  220. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  221. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  222. msg.Index = int32(base.Index)
  223. req.AddData(msg)
  224. linkInfo := nl.NewRtAttr(unix.IFLA_LINKINFO, nil)
  225. linkInfo.AddRtAttr(nl.IFLA_INFO_KIND, nl.NonZeroTerminated(link.Type()))
  226. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  227. data.AddRtAttr(nl.IFLA_MACVLAN_MODE, nl.Uint32Attr(macvlanModes[mode]))
  228. req.AddData(linkInfo)
  229. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  230. return err
  231. }
  232. func BridgeSetMcastSnoop(link Link, on bool) error {
  233. return pkgHandle.BridgeSetMcastSnoop(link, on)
  234. }
  235. func (h *Handle) BridgeSetMcastSnoop(link Link, on bool) error {
  236. bridge := link.(*Bridge)
  237. bridge.MulticastSnooping = &on
  238. return h.linkModify(bridge, unix.NLM_F_ACK)
  239. }
  240. func BridgeSetVlanFiltering(link Link, on bool) error {
  241. return pkgHandle.BridgeSetVlanFiltering(link, on)
  242. }
  243. func (h *Handle) BridgeSetVlanFiltering(link Link, on bool) error {
  244. bridge := link.(*Bridge)
  245. bridge.VlanFiltering = &on
  246. return h.linkModify(bridge, unix.NLM_F_ACK)
  247. }
  248. func SetPromiscOn(link Link) error {
  249. return pkgHandle.SetPromiscOn(link)
  250. }
  251. func (h *Handle) SetPromiscOff(link Link) error {
  252. base := link.Attrs()
  253. h.ensureIndex(base)
  254. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  255. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  256. msg.Change = unix.IFF_PROMISC
  257. msg.Index = int32(base.Index)
  258. req.AddData(msg)
  259. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  260. return err
  261. }
  262. func SetPromiscOff(link Link) error {
  263. return pkgHandle.SetPromiscOff(link)
  264. }
  265. // LinkSetUp enables the link device.
  266. // Equivalent to: `ip link set $link up`
  267. func LinkSetUp(link Link) error {
  268. return pkgHandle.LinkSetUp(link)
  269. }
  270. // LinkSetUp enables the link device.
  271. // Equivalent to: `ip link set $link up`
  272. func (h *Handle) LinkSetUp(link Link) error {
  273. base := link.Attrs()
  274. h.ensureIndex(base)
  275. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  276. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  277. msg.Change = unix.IFF_UP
  278. msg.Flags = unix.IFF_UP
  279. msg.Index = int32(base.Index)
  280. req.AddData(msg)
  281. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  282. return err
  283. }
  284. // LinkSetDown disables link device.
  285. // Equivalent to: `ip link set $link down`
  286. func LinkSetDown(link Link) error {
  287. return pkgHandle.LinkSetDown(link)
  288. }
  289. // LinkSetDown disables link device.
  290. // Equivalent to: `ip link set $link down`
  291. func (h *Handle) LinkSetDown(link Link) error {
  292. base := link.Attrs()
  293. h.ensureIndex(base)
  294. req := h.newNetlinkRequest(unix.RTM_NEWLINK, unix.NLM_F_ACK)
  295. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  296. msg.Change = unix.IFF_UP
  297. msg.Index = int32(base.Index)
  298. req.AddData(msg)
  299. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  300. return err
  301. }
  302. // LinkSetMTU sets the mtu of the link device.
  303. // Equivalent to: `ip link set $link mtu $mtu`
  304. func LinkSetMTU(link Link, mtu int) error {
  305. return pkgHandle.LinkSetMTU(link, mtu)
  306. }
  307. // LinkSetMTU sets the mtu of the link device.
  308. // Equivalent to: `ip link set $link mtu $mtu`
  309. func (h *Handle) LinkSetMTU(link Link, mtu int) error {
  310. base := link.Attrs()
  311. h.ensureIndex(base)
  312. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  313. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  314. msg.Index = int32(base.Index)
  315. req.AddData(msg)
  316. b := make([]byte, 4)
  317. native.PutUint32(b, uint32(mtu))
  318. data := nl.NewRtAttr(unix.IFLA_MTU, b)
  319. req.AddData(data)
  320. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  321. return err
  322. }
  323. // LinkSetName sets the name of the link device.
  324. // Equivalent to: `ip link set $link name $name`
  325. func LinkSetName(link Link, name string) error {
  326. return pkgHandle.LinkSetName(link, name)
  327. }
  328. // LinkSetName sets the name of the link device.
  329. // Equivalent to: `ip link set $link name $name`
  330. func (h *Handle) LinkSetName(link Link, name string) error {
  331. base := link.Attrs()
  332. h.ensureIndex(base)
  333. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  334. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  335. msg.Index = int32(base.Index)
  336. req.AddData(msg)
  337. data := nl.NewRtAttr(unix.IFLA_IFNAME, []byte(name))
  338. req.AddData(data)
  339. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  340. return err
  341. }
  342. // LinkSetAlias sets the alias of the link device.
  343. // Equivalent to: `ip link set dev $link alias $name`
  344. func LinkSetAlias(link Link, name string) error {
  345. return pkgHandle.LinkSetAlias(link, name)
  346. }
  347. // LinkSetAlias sets the alias of the link device.
  348. // Equivalent to: `ip link set dev $link alias $name`
  349. func (h *Handle) LinkSetAlias(link Link, name string) error {
  350. base := link.Attrs()
  351. h.ensureIndex(base)
  352. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  353. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  354. msg.Index = int32(base.Index)
  355. req.AddData(msg)
  356. data := nl.NewRtAttr(unix.IFLA_IFALIAS, []byte(name))
  357. req.AddData(data)
  358. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  359. return err
  360. }
  361. // LinkSetHardwareAddr sets the hardware address of the link device.
  362. // Equivalent to: `ip link set $link address $hwaddr`
  363. func LinkSetHardwareAddr(link Link, hwaddr net.HardwareAddr) error {
  364. return pkgHandle.LinkSetHardwareAddr(link, hwaddr)
  365. }
  366. // LinkSetHardwareAddr sets the hardware address of the link device.
  367. // Equivalent to: `ip link set $link address $hwaddr`
  368. func (h *Handle) LinkSetHardwareAddr(link Link, hwaddr net.HardwareAddr) error {
  369. base := link.Attrs()
  370. h.ensureIndex(base)
  371. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  372. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  373. msg.Index = int32(base.Index)
  374. req.AddData(msg)
  375. data := nl.NewRtAttr(unix.IFLA_ADDRESS, []byte(hwaddr))
  376. req.AddData(data)
  377. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  378. return err
  379. }
  380. // LinkSetVfHardwareAddr sets the hardware address of a vf for the link.
  381. // Equivalent to: `ip link set $link vf $vf mac $hwaddr`
  382. func LinkSetVfHardwareAddr(link Link, vf int, hwaddr net.HardwareAddr) error {
  383. return pkgHandle.LinkSetVfHardwareAddr(link, vf, hwaddr)
  384. }
  385. // LinkSetVfHardwareAddr sets the hardware address of a vf for the link.
  386. // Equivalent to: `ip link set $link vf $vf mac $hwaddr`
  387. func (h *Handle) LinkSetVfHardwareAddr(link Link, vf int, hwaddr net.HardwareAddr) error {
  388. base := link.Attrs()
  389. h.ensureIndex(base)
  390. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  391. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  392. msg.Index = int32(base.Index)
  393. req.AddData(msg)
  394. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  395. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  396. vfmsg := nl.VfMac{
  397. Vf: uint32(vf),
  398. }
  399. copy(vfmsg.Mac[:], []byte(hwaddr))
  400. info.AddRtAttr(nl.IFLA_VF_MAC, vfmsg.Serialize())
  401. req.AddData(data)
  402. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  403. return err
  404. }
  405. // LinkSetVfVlan sets the vlan of a vf for the link.
  406. // Equivalent to: `ip link set $link vf $vf vlan $vlan`
  407. func LinkSetVfVlan(link Link, vf, vlan int) error {
  408. return pkgHandle.LinkSetVfVlan(link, vf, vlan)
  409. }
  410. // LinkSetVfVlan sets the vlan of a vf for the link.
  411. // Equivalent to: `ip link set $link vf $vf vlan $vlan`
  412. func (h *Handle) LinkSetVfVlan(link Link, vf, vlan int) error {
  413. base := link.Attrs()
  414. h.ensureIndex(base)
  415. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  416. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  417. msg.Index = int32(base.Index)
  418. req.AddData(msg)
  419. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  420. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  421. vfmsg := nl.VfVlan{
  422. Vf: uint32(vf),
  423. Vlan: uint32(vlan),
  424. }
  425. info.AddRtAttr(nl.IFLA_VF_VLAN, vfmsg.Serialize())
  426. req.AddData(data)
  427. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  428. return err
  429. }
  430. // LinkSetVfVlanQos sets the vlan and qos priority of a vf for the link.
  431. // Equivalent to: `ip link set $link vf $vf vlan $vlan qos $qos`
  432. func LinkSetVfVlanQos(link Link, vf, vlan, qos int) error {
  433. return pkgHandle.LinkSetVfVlanQos(link, vf, vlan, qos)
  434. }
  435. // LinkSetVfVlanQos sets the vlan and qos priority of a vf for the link.
  436. // Equivalent to: `ip link set $link vf $vf vlan $vlan qos $qos`
  437. func (h *Handle) LinkSetVfVlanQos(link Link, vf, vlan, qos int) error {
  438. base := link.Attrs()
  439. h.ensureIndex(base)
  440. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  441. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  442. msg.Index = int32(base.Index)
  443. req.AddData(msg)
  444. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  445. info := nl.NewRtAttrChild(data, nl.IFLA_VF_INFO, nil)
  446. vfmsg := nl.VfVlan{
  447. Vf: uint32(vf),
  448. Vlan: uint32(vlan),
  449. Qos: uint32(qos),
  450. }
  451. nl.NewRtAttrChild(info, nl.IFLA_VF_VLAN, vfmsg.Serialize())
  452. req.AddData(data)
  453. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  454. return err
  455. }
  456. // LinkSetVfTxRate sets the tx rate of a vf for the link.
  457. // Equivalent to: `ip link set $link vf $vf rate $rate`
  458. func LinkSetVfTxRate(link Link, vf, rate int) error {
  459. return pkgHandle.LinkSetVfTxRate(link, vf, rate)
  460. }
  461. // LinkSetVfTxRate sets the tx rate of a vf for the link.
  462. // Equivalent to: `ip link set $link vf $vf rate $rate`
  463. func (h *Handle) LinkSetVfTxRate(link Link, vf, rate int) error {
  464. base := link.Attrs()
  465. h.ensureIndex(base)
  466. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  467. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  468. msg.Index = int32(base.Index)
  469. req.AddData(msg)
  470. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  471. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  472. vfmsg := nl.VfTxRate{
  473. Vf: uint32(vf),
  474. Rate: uint32(rate),
  475. }
  476. info.AddRtAttr(nl.IFLA_VF_TX_RATE, vfmsg.Serialize())
  477. req.AddData(data)
  478. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  479. return err
  480. }
  481. // LinkSetVfRate sets the min and max tx rate of a vf for the link.
  482. // Equivalent to: `ip link set $link vf $vf min_tx_rate $min_rate max_tx_rate $max_rate`
  483. func LinkSetVfRate(link Link, vf, minRate, maxRate int) error {
  484. return pkgHandle.LinkSetVfRate(link, vf, minRate, maxRate)
  485. }
  486. // LinkSetVfRate sets the min and max tx rate of a vf for the link.
  487. // Equivalent to: `ip link set $link vf $vf min_tx_rate $min_rate max_tx_rate $max_rate`
  488. func (h *Handle) LinkSetVfRate(link Link, vf, minRate, maxRate int) error {
  489. base := link.Attrs()
  490. h.ensureIndex(base)
  491. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  492. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  493. msg.Index = int32(base.Index)
  494. req.AddData(msg)
  495. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  496. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  497. vfmsg := nl.VfRate{
  498. Vf: uint32(vf),
  499. MinTxRate: uint32(minRate),
  500. MaxTxRate: uint32(maxRate),
  501. }
  502. info.AddRtAttr(nl.IFLA_VF_RATE, vfmsg.Serialize())
  503. req.AddData(data)
  504. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  505. return err
  506. }
  507. // LinkSetVfState enables/disables virtual link state on a vf.
  508. // Equivalent to: `ip link set $link vf $vf state $state`
  509. func LinkSetVfState(link Link, vf int, state uint32) error {
  510. return pkgHandle.LinkSetVfState(link, vf, state)
  511. }
  512. // LinkSetVfState enables/disables virtual link state on a vf.
  513. // Equivalent to: `ip link set $link vf $vf state $state`
  514. func (h *Handle) LinkSetVfState(link Link, vf int, state uint32) error {
  515. base := link.Attrs()
  516. h.ensureIndex(base)
  517. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  518. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  519. msg.Index = int32(base.Index)
  520. req.AddData(msg)
  521. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  522. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  523. vfmsg := nl.VfLinkState{
  524. Vf: uint32(vf),
  525. LinkState: state,
  526. }
  527. info.AddRtAttr(nl.IFLA_VF_LINK_STATE, vfmsg.Serialize())
  528. req.AddData(data)
  529. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  530. return err
  531. }
  532. // LinkSetVfSpoofchk enables/disables spoof check on a vf for the link.
  533. // Equivalent to: `ip link set $link vf $vf spoofchk $check`
  534. func LinkSetVfSpoofchk(link Link, vf int, check bool) error {
  535. return pkgHandle.LinkSetVfSpoofchk(link, vf, check)
  536. }
  537. // LinkSetVfSpoofchk enables/disables spoof check on a vf for the link.
  538. // Equivalent to: `ip link set $link vf $vf spoofchk $check`
  539. func (h *Handle) LinkSetVfSpoofchk(link Link, vf int, check bool) error {
  540. var setting uint32
  541. base := link.Attrs()
  542. h.ensureIndex(base)
  543. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  544. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  545. msg.Index = int32(base.Index)
  546. req.AddData(msg)
  547. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  548. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  549. if check {
  550. setting = 1
  551. }
  552. vfmsg := nl.VfSpoofchk{
  553. Vf: uint32(vf),
  554. Setting: setting,
  555. }
  556. info.AddRtAttr(nl.IFLA_VF_SPOOFCHK, vfmsg.Serialize())
  557. req.AddData(data)
  558. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  559. return err
  560. }
  561. // LinkSetVfTrust enables/disables trust state on a vf for the link.
  562. // Equivalent to: `ip link set $link vf $vf trust $state`
  563. func LinkSetVfTrust(link Link, vf int, state bool) error {
  564. return pkgHandle.LinkSetVfTrust(link, vf, state)
  565. }
  566. // LinkSetVfTrust enables/disables trust state on a vf for the link.
  567. // Equivalent to: `ip link set $link vf $vf trust $state`
  568. func (h *Handle) LinkSetVfTrust(link Link, vf int, state bool) error {
  569. var setting uint32
  570. base := link.Attrs()
  571. h.ensureIndex(base)
  572. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  573. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  574. msg.Index = int32(base.Index)
  575. req.AddData(msg)
  576. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  577. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  578. if state {
  579. setting = 1
  580. }
  581. vfmsg := nl.VfTrust{
  582. Vf: uint32(vf),
  583. Setting: setting,
  584. }
  585. info.AddRtAttr(nl.IFLA_VF_TRUST, vfmsg.Serialize())
  586. req.AddData(data)
  587. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  588. return err
  589. }
  590. // LinkSetVfNodeGUID sets the node GUID of a vf for the link.
  591. // Equivalent to: `ip link set dev $link vf $vf node_guid $nodeguid`
  592. func LinkSetVfNodeGUID(link Link, vf int, nodeguid net.HardwareAddr) error {
  593. return pkgHandle.LinkSetVfGUID(link, vf, nodeguid, nl.IFLA_VF_IB_NODE_GUID)
  594. }
  595. // LinkSetVfPortGUID sets the port GUID of a vf for the link.
  596. // Equivalent to: `ip link set dev $link vf $vf port_guid $portguid`
  597. func LinkSetVfPortGUID(link Link, vf int, portguid net.HardwareAddr) error {
  598. return pkgHandle.LinkSetVfGUID(link, vf, portguid, nl.IFLA_VF_IB_PORT_GUID)
  599. }
  600. // LinkSetVfGUID sets the node or port GUID of a vf for the link.
  601. func (h *Handle) LinkSetVfGUID(link Link, vf int, vfGuid net.HardwareAddr, guidType int) error {
  602. var err error
  603. var guid uint64
  604. buf := bytes.NewBuffer(vfGuid)
  605. err = binary.Read(buf, binary.BigEndian, &guid)
  606. if err != nil {
  607. return err
  608. }
  609. base := link.Attrs()
  610. h.ensureIndex(base)
  611. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  612. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  613. msg.Index = int32(base.Index)
  614. req.AddData(msg)
  615. data := nl.NewRtAttr(unix.IFLA_VFINFO_LIST, nil)
  616. info := data.AddRtAttr(nl.IFLA_VF_INFO, nil)
  617. vfmsg := nl.VfGUID{
  618. Vf: uint32(vf),
  619. GUID: guid,
  620. }
  621. info.AddRtAttr(guidType, vfmsg.Serialize())
  622. req.AddData(data)
  623. _, err = req.Execute(unix.NETLINK_ROUTE, 0)
  624. return err
  625. }
  626. // LinkSetMaster sets the master of the link device.
  627. // Equivalent to: `ip link set $link master $master`
  628. func LinkSetMaster(link Link, master Link) error {
  629. return pkgHandle.LinkSetMaster(link, master)
  630. }
  631. // LinkSetMaster sets the master of the link device.
  632. // Equivalent to: `ip link set $link master $master`
  633. func (h *Handle) LinkSetMaster(link Link, master Link) error {
  634. index := 0
  635. if master != nil {
  636. masterBase := master.Attrs()
  637. h.ensureIndex(masterBase)
  638. index = masterBase.Index
  639. }
  640. if index <= 0 {
  641. return fmt.Errorf("Device does not exist")
  642. }
  643. return h.LinkSetMasterByIndex(link, index)
  644. }
  645. // LinkSetNoMaster removes the master of the link device.
  646. // Equivalent to: `ip link set $link nomaster`
  647. func LinkSetNoMaster(link Link) error {
  648. return pkgHandle.LinkSetNoMaster(link)
  649. }
  650. // LinkSetNoMaster removes the master of the link device.
  651. // Equivalent to: `ip link set $link nomaster`
  652. func (h *Handle) LinkSetNoMaster(link Link) error {
  653. return h.LinkSetMasterByIndex(link, 0)
  654. }
  655. // LinkSetMasterByIndex sets the master of the link device.
  656. // Equivalent to: `ip link set $link master $master`
  657. func LinkSetMasterByIndex(link Link, masterIndex int) error {
  658. return pkgHandle.LinkSetMasterByIndex(link, masterIndex)
  659. }
  660. // LinkSetMasterByIndex sets the master of the link device.
  661. // Equivalent to: `ip link set $link master $master`
  662. func (h *Handle) LinkSetMasterByIndex(link Link, masterIndex int) error {
  663. base := link.Attrs()
  664. h.ensureIndex(base)
  665. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  666. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  667. msg.Index = int32(base.Index)
  668. req.AddData(msg)
  669. b := make([]byte, 4)
  670. native.PutUint32(b, uint32(masterIndex))
  671. data := nl.NewRtAttr(unix.IFLA_MASTER, b)
  672. req.AddData(data)
  673. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  674. return err
  675. }
  676. // LinkSetNsPid puts the device into a new network namespace. The
  677. // pid must be a pid of a running process.
  678. // Equivalent to: `ip link set $link netns $pid`
  679. func LinkSetNsPid(link Link, nspid int) error {
  680. return pkgHandle.LinkSetNsPid(link, nspid)
  681. }
  682. // LinkSetNsPid puts the device into a new network namespace. The
  683. // pid must be a pid of a running process.
  684. // Equivalent to: `ip link set $link netns $pid`
  685. func (h *Handle) LinkSetNsPid(link Link, nspid int) error {
  686. base := link.Attrs()
  687. h.ensureIndex(base)
  688. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  689. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  690. msg.Index = int32(base.Index)
  691. req.AddData(msg)
  692. b := make([]byte, 4)
  693. native.PutUint32(b, uint32(nspid))
  694. data := nl.NewRtAttr(unix.IFLA_NET_NS_PID, b)
  695. req.AddData(data)
  696. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  697. return err
  698. }
  699. // LinkSetNsFd puts the device into a new network namespace. The
  700. // fd must be an open file descriptor to a network namespace.
  701. // Similar to: `ip link set $link netns $ns`
  702. func LinkSetNsFd(link Link, fd int) error {
  703. return pkgHandle.LinkSetNsFd(link, fd)
  704. }
  705. // LinkSetNsFd puts the device into a new network namespace. The
  706. // fd must be an open file descriptor to a network namespace.
  707. // Similar to: `ip link set $link netns $ns`
  708. func (h *Handle) LinkSetNsFd(link Link, fd int) error {
  709. base := link.Attrs()
  710. h.ensureIndex(base)
  711. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  712. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  713. msg.Index = int32(base.Index)
  714. req.AddData(msg)
  715. b := make([]byte, 4)
  716. native.PutUint32(b, uint32(fd))
  717. data := nl.NewRtAttr(unix.IFLA_NET_NS_FD, b)
  718. req.AddData(data)
  719. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  720. return err
  721. }
  722. // LinkSetXdpFd adds a bpf function to the driver. The fd must be a bpf
  723. // program loaded with bpf(type=BPF_PROG_TYPE_XDP)
  724. func LinkSetXdpFd(link Link, fd int) error {
  725. return LinkSetXdpFdWithFlags(link, fd, 0)
  726. }
  727. // LinkSetXdpFdWithFlags adds a bpf function to the driver with the given
  728. // options. The fd must be a bpf program loaded with bpf(type=BPF_PROG_TYPE_XDP)
  729. func LinkSetXdpFdWithFlags(link Link, fd, flags int) error {
  730. base := link.Attrs()
  731. ensureIndex(base)
  732. req := nl.NewNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  733. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  734. msg.Index = int32(base.Index)
  735. req.AddData(msg)
  736. addXdpAttrs(&LinkXdp{Fd: fd, Flags: uint32(flags)}, req)
  737. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  738. return err
  739. }
  740. func boolAttr(val bool) []byte {
  741. var v uint8
  742. if val {
  743. v = 1
  744. }
  745. return nl.Uint8Attr(v)
  746. }
  747. type vxlanPortRange struct {
  748. Lo, Hi uint16
  749. }
  750. func addVxlanAttrs(vxlan *Vxlan, linkInfo *nl.RtAttr) {
  751. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  752. if vxlan.FlowBased {
  753. vxlan.VxlanId = 0
  754. }
  755. data.AddRtAttr(nl.IFLA_VXLAN_ID, nl.Uint32Attr(uint32(vxlan.VxlanId)))
  756. if vxlan.VtepDevIndex != 0 {
  757. data.AddRtAttr(nl.IFLA_VXLAN_LINK, nl.Uint32Attr(uint32(vxlan.VtepDevIndex)))
  758. }
  759. if vxlan.SrcAddr != nil {
  760. ip := vxlan.SrcAddr.To4()
  761. if ip != nil {
  762. data.AddRtAttr(nl.IFLA_VXLAN_LOCAL, []byte(ip))
  763. } else {
  764. ip = vxlan.SrcAddr.To16()
  765. if ip != nil {
  766. data.AddRtAttr(nl.IFLA_VXLAN_LOCAL6, []byte(ip))
  767. }
  768. }
  769. }
  770. if vxlan.Group != nil {
  771. group := vxlan.Group.To4()
  772. if group != nil {
  773. data.AddRtAttr(nl.IFLA_VXLAN_GROUP, []byte(group))
  774. } else {
  775. group = vxlan.Group.To16()
  776. if group != nil {
  777. data.AddRtAttr(nl.IFLA_VXLAN_GROUP6, []byte(group))
  778. }
  779. }
  780. }
  781. data.AddRtAttr(nl.IFLA_VXLAN_TTL, nl.Uint8Attr(uint8(vxlan.TTL)))
  782. data.AddRtAttr(nl.IFLA_VXLAN_TOS, nl.Uint8Attr(uint8(vxlan.TOS)))
  783. data.AddRtAttr(nl.IFLA_VXLAN_LEARNING, boolAttr(vxlan.Learning))
  784. data.AddRtAttr(nl.IFLA_VXLAN_PROXY, boolAttr(vxlan.Proxy))
  785. data.AddRtAttr(nl.IFLA_VXLAN_RSC, boolAttr(vxlan.RSC))
  786. data.AddRtAttr(nl.IFLA_VXLAN_L2MISS, boolAttr(vxlan.L2miss))
  787. data.AddRtAttr(nl.IFLA_VXLAN_L3MISS, boolAttr(vxlan.L3miss))
  788. data.AddRtAttr(nl.IFLA_VXLAN_UDP_ZERO_CSUM6_TX, boolAttr(vxlan.UDP6ZeroCSumTx))
  789. data.AddRtAttr(nl.IFLA_VXLAN_UDP_ZERO_CSUM6_RX, boolAttr(vxlan.UDP6ZeroCSumRx))
  790. if vxlan.UDPCSum {
  791. data.AddRtAttr(nl.IFLA_VXLAN_UDP_CSUM, boolAttr(vxlan.UDPCSum))
  792. }
  793. if vxlan.GBP {
  794. data.AddRtAttr(nl.IFLA_VXLAN_GBP, []byte{})
  795. }
  796. if vxlan.FlowBased {
  797. data.AddRtAttr(nl.IFLA_VXLAN_FLOWBASED, boolAttr(vxlan.FlowBased))
  798. }
  799. if vxlan.NoAge {
  800. data.AddRtAttr(nl.IFLA_VXLAN_AGEING, nl.Uint32Attr(0))
  801. } else if vxlan.Age > 0 {
  802. data.AddRtAttr(nl.IFLA_VXLAN_AGEING, nl.Uint32Attr(uint32(vxlan.Age)))
  803. }
  804. if vxlan.Limit > 0 {
  805. data.AddRtAttr(nl.IFLA_VXLAN_LIMIT, nl.Uint32Attr(uint32(vxlan.Limit)))
  806. }
  807. if vxlan.Port > 0 {
  808. data.AddRtAttr(nl.IFLA_VXLAN_PORT, htons(uint16(vxlan.Port)))
  809. }
  810. if vxlan.PortLow > 0 || vxlan.PortHigh > 0 {
  811. pr := vxlanPortRange{uint16(vxlan.PortLow), uint16(vxlan.PortHigh)}
  812. buf := new(bytes.Buffer)
  813. binary.Write(buf, binary.BigEndian, &pr)
  814. data.AddRtAttr(nl.IFLA_VXLAN_PORT_RANGE, buf.Bytes())
  815. }
  816. }
  817. func addBondAttrs(bond *Bond, linkInfo *nl.RtAttr) {
  818. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  819. if bond.Mode >= 0 {
  820. data.AddRtAttr(nl.IFLA_BOND_MODE, nl.Uint8Attr(uint8(bond.Mode)))
  821. }
  822. if bond.ActiveSlave >= 0 {
  823. data.AddRtAttr(nl.IFLA_BOND_ACTIVE_SLAVE, nl.Uint32Attr(uint32(bond.ActiveSlave)))
  824. }
  825. if bond.Miimon >= 0 {
  826. data.AddRtAttr(nl.IFLA_BOND_MIIMON, nl.Uint32Attr(uint32(bond.Miimon)))
  827. }
  828. if bond.UpDelay >= 0 {
  829. data.AddRtAttr(nl.IFLA_BOND_UPDELAY, nl.Uint32Attr(uint32(bond.UpDelay)))
  830. }
  831. if bond.DownDelay >= 0 {
  832. data.AddRtAttr(nl.IFLA_BOND_DOWNDELAY, nl.Uint32Attr(uint32(bond.DownDelay)))
  833. }
  834. if bond.UseCarrier >= 0 {
  835. data.AddRtAttr(nl.IFLA_BOND_USE_CARRIER, nl.Uint8Attr(uint8(bond.UseCarrier)))
  836. }
  837. if bond.ArpInterval >= 0 {
  838. data.AddRtAttr(nl.IFLA_BOND_ARP_INTERVAL, nl.Uint32Attr(uint32(bond.ArpInterval)))
  839. }
  840. if bond.ArpIpTargets != nil {
  841. msg := data.AddRtAttr(nl.IFLA_BOND_ARP_IP_TARGET, nil)
  842. for i := range bond.ArpIpTargets {
  843. ip := bond.ArpIpTargets[i].To4()
  844. if ip != nil {
  845. msg.AddRtAttr(i, []byte(ip))
  846. continue
  847. }
  848. ip = bond.ArpIpTargets[i].To16()
  849. if ip != nil {
  850. msg.AddRtAttr(i, []byte(ip))
  851. }
  852. }
  853. }
  854. if bond.ArpValidate >= 0 {
  855. data.AddRtAttr(nl.IFLA_BOND_ARP_VALIDATE, nl.Uint32Attr(uint32(bond.ArpValidate)))
  856. }
  857. if bond.ArpAllTargets >= 0 {
  858. data.AddRtAttr(nl.IFLA_BOND_ARP_ALL_TARGETS, nl.Uint32Attr(uint32(bond.ArpAllTargets)))
  859. }
  860. if bond.Primary >= 0 {
  861. data.AddRtAttr(nl.IFLA_BOND_PRIMARY, nl.Uint32Attr(uint32(bond.Primary)))
  862. }
  863. if bond.PrimaryReselect >= 0 {
  864. data.AddRtAttr(nl.IFLA_BOND_PRIMARY_RESELECT, nl.Uint8Attr(uint8(bond.PrimaryReselect)))
  865. }
  866. if bond.FailOverMac >= 0 {
  867. data.AddRtAttr(nl.IFLA_BOND_FAIL_OVER_MAC, nl.Uint8Attr(uint8(bond.FailOverMac)))
  868. }
  869. if bond.XmitHashPolicy >= 0 {
  870. data.AddRtAttr(nl.IFLA_BOND_XMIT_HASH_POLICY, nl.Uint8Attr(uint8(bond.XmitHashPolicy)))
  871. }
  872. if bond.ResendIgmp >= 0 {
  873. data.AddRtAttr(nl.IFLA_BOND_RESEND_IGMP, nl.Uint32Attr(uint32(bond.ResendIgmp)))
  874. }
  875. if bond.NumPeerNotif >= 0 {
  876. data.AddRtAttr(nl.IFLA_BOND_NUM_PEER_NOTIF, nl.Uint8Attr(uint8(bond.NumPeerNotif)))
  877. }
  878. if bond.AllSlavesActive >= 0 {
  879. data.AddRtAttr(nl.IFLA_BOND_ALL_SLAVES_ACTIVE, nl.Uint8Attr(uint8(bond.AllSlavesActive)))
  880. }
  881. if bond.MinLinks >= 0 {
  882. data.AddRtAttr(nl.IFLA_BOND_MIN_LINKS, nl.Uint32Attr(uint32(bond.MinLinks)))
  883. }
  884. if bond.LpInterval >= 0 {
  885. data.AddRtAttr(nl.IFLA_BOND_LP_INTERVAL, nl.Uint32Attr(uint32(bond.LpInterval)))
  886. }
  887. if bond.PacketsPerSlave >= 0 {
  888. data.AddRtAttr(nl.IFLA_BOND_PACKETS_PER_SLAVE, nl.Uint32Attr(uint32(bond.PacketsPerSlave)))
  889. }
  890. if bond.LacpRate >= 0 {
  891. data.AddRtAttr(nl.IFLA_BOND_AD_LACP_RATE, nl.Uint8Attr(uint8(bond.LacpRate)))
  892. }
  893. if bond.AdSelect >= 0 {
  894. data.AddRtAttr(nl.IFLA_BOND_AD_SELECT, nl.Uint8Attr(uint8(bond.AdSelect)))
  895. }
  896. if bond.AdActorSysPrio >= 0 {
  897. data.AddRtAttr(nl.IFLA_BOND_AD_ACTOR_SYS_PRIO, nl.Uint16Attr(uint16(bond.AdActorSysPrio)))
  898. }
  899. if bond.AdUserPortKey >= 0 {
  900. data.AddRtAttr(nl.IFLA_BOND_AD_USER_PORT_KEY, nl.Uint16Attr(uint16(bond.AdUserPortKey)))
  901. }
  902. if bond.AdActorSystem != nil {
  903. data.AddRtAttr(nl.IFLA_BOND_AD_ACTOR_SYSTEM, []byte(bond.AdActorSystem))
  904. }
  905. if bond.TlbDynamicLb >= 0 {
  906. data.AddRtAttr(nl.IFLA_BOND_TLB_DYNAMIC_LB, nl.Uint8Attr(uint8(bond.TlbDynamicLb)))
  907. }
  908. }
  909. func cleanupFds(fds []*os.File) {
  910. for _, f := range fds {
  911. f.Close()
  912. }
  913. }
  914. // LinkAdd adds a new link device. The type and features of the device
  915. // are taken from the parameters in the link object.
  916. // Equivalent to: `ip link add $link`
  917. func LinkAdd(link Link) error {
  918. return pkgHandle.LinkAdd(link)
  919. }
  920. // LinkAdd adds a new link device. The type and features of the device
  921. // are taken from the parameters in the link object.
  922. // Equivalent to: `ip link add $link`
  923. func (h *Handle) LinkAdd(link Link) error {
  924. return h.linkModify(link, unix.NLM_F_CREATE|unix.NLM_F_EXCL|unix.NLM_F_ACK)
  925. }
  926. func (h *Handle) LinkModify(link Link) error {
  927. return h.linkModify(link, unix.NLM_F_REQUEST|unix.NLM_F_ACK)
  928. }
  929. func (h *Handle) linkModify(link Link, flags int) error {
  930. // TODO: support extra data for macvlan
  931. base := link.Attrs()
  932. // if tuntap, then the name can be empty, OS will provide a name
  933. tuntap, isTuntap := link.(*Tuntap)
  934. if base.Name == "" && !isTuntap {
  935. return fmt.Errorf("LinkAttrs.Name cannot be empty")
  936. }
  937. if isTuntap {
  938. if tuntap.Mode < unix.IFF_TUN || tuntap.Mode > unix.IFF_TAP {
  939. return fmt.Errorf("Tuntap.Mode %v unknown", tuntap.Mode)
  940. }
  941. queues := tuntap.Queues
  942. var fds []*os.File
  943. var req ifReq
  944. copy(req.Name[:15], base.Name)
  945. req.Flags = uint16(tuntap.Flags)
  946. if queues == 0 { //Legacy compatibility
  947. queues = 1
  948. if tuntap.Flags == 0 {
  949. req.Flags = uint16(TUNTAP_DEFAULTS)
  950. }
  951. } else {
  952. // For best peformance set Flags to TUNTAP_MULTI_QUEUE_DEFAULTS | TUNTAP_VNET_HDR
  953. // when a) KVM has support for this ABI and
  954. // b) the value of the flag is queryable using the TUNGETIFF ioctl
  955. if tuntap.Flags == 0 {
  956. req.Flags = uint16(TUNTAP_MULTI_QUEUE_DEFAULTS)
  957. }
  958. }
  959. req.Flags |= uint16(tuntap.Mode)
  960. const TUN = "/dev/net/tun"
  961. for i := 0; i < queues; i++ {
  962. localReq := req
  963. fd, err := unix.Open(TUN, os.O_RDWR|syscall.O_CLOEXEC, 0)
  964. if err != nil {
  965. cleanupFds(fds)
  966. return err
  967. }
  968. _, _, errno := unix.Syscall(unix.SYS_IOCTL, uintptr(fd), uintptr(unix.TUNSETIFF), uintptr(unsafe.Pointer(&localReq)))
  969. if errno != 0 {
  970. // close the new fd
  971. unix.Close(fd)
  972. // and the already opened ones
  973. cleanupFds(fds)
  974. return fmt.Errorf("Tuntap IOCTL TUNSETIFF failed [%d], errno %v", i, errno)
  975. }
  976. _, _, errno = syscall.Syscall(syscall.SYS_IOCTL, uintptr(fd), syscall.TUNSETOWNER, uintptr(tuntap.Owner))
  977. if errno != 0 {
  978. cleanupFds(fds)
  979. return fmt.Errorf("Tuntap IOCTL TUNSETOWNER failed [%d], errno %v", i, errno)
  980. }
  981. _, _, errno = syscall.Syscall(syscall.SYS_IOCTL, uintptr(fd), syscall.TUNSETGROUP, uintptr(tuntap.Group))
  982. if errno != 0 {
  983. cleanupFds(fds)
  984. return fmt.Errorf("Tuntap IOCTL TUNSETGROUP failed [%d], errno %v", i, errno)
  985. }
  986. // Set the tun device to non-blocking before use. The below comment
  987. // taken from:
  988. //
  989. // https://github.com/mistsys/tuntap/commit/161418c25003bbee77d085a34af64d189df62bea
  990. //
  991. // Note there is a complication because in go, if a device node is
  992. // opened, go sets it to use nonblocking I/O. However a /dev/net/tun
  993. // doesn't work with epoll until after the TUNSETIFF ioctl has been
  994. // done. So we open the unix fd directly, do the ioctl, then put the
  995. // fd in nonblocking mode, an then finally wrap it in a os.File,
  996. // which will see the nonblocking mode and add the fd to the
  997. // pollable set, so later on when we Read() from it blocked the
  998. // calling thread in the kernel.
  999. //
  1000. // See
  1001. // https://github.com/golang/go/issues/30426
  1002. // which got exposed in go 1.13 by the fix to
  1003. // https://github.com/golang/go/issues/30624
  1004. err = unix.SetNonblock(fd, true)
  1005. if err != nil {
  1006. cleanupFds(fds)
  1007. return fmt.Errorf("Tuntap set to non-blocking failed [%d], err %v", i, err)
  1008. }
  1009. // create the file from the file descriptor and store it
  1010. file := os.NewFile(uintptr(fd), TUN)
  1011. fds = append(fds, file)
  1012. // 1) we only care for the name of the first tap in the multi queue set
  1013. // 2) if the original name was empty, the localReq has now the actual name
  1014. //
  1015. // In addition:
  1016. // This ensures that the link name is always identical to what the kernel returns.
  1017. // Not only in case of an empty name, but also when using name templates.
  1018. // e.g. when the provided name is "tap%d", the kernel replaces %d with the next available number.
  1019. if i == 0 {
  1020. link.Attrs().Name = strings.Trim(string(localReq.Name[:]), "\x00")
  1021. }
  1022. }
  1023. // only persist interface if NonPersist is NOT set
  1024. if !tuntap.NonPersist {
  1025. _, _, errno := unix.Syscall(unix.SYS_IOCTL, fds[0].Fd(), uintptr(unix.TUNSETPERSIST), 1)
  1026. if errno != 0 {
  1027. cleanupFds(fds)
  1028. return fmt.Errorf("Tuntap IOCTL TUNSETPERSIST failed, errno %v", errno)
  1029. }
  1030. }
  1031. h.ensureIndex(base)
  1032. // can't set master during create, so set it afterwards
  1033. if base.MasterIndex != 0 {
  1034. // TODO: verify MasterIndex is actually a bridge?
  1035. err := h.LinkSetMasterByIndex(link, base.MasterIndex)
  1036. if err != nil {
  1037. // un-persist (e.g. allow the interface to be removed) the tuntap
  1038. // should not hurt if not set prior, condition might be not needed
  1039. if !tuntap.NonPersist {
  1040. _, _, _ = unix.Syscall(unix.SYS_IOCTL, fds[0].Fd(), uintptr(unix.TUNSETPERSIST), 0)
  1041. }
  1042. cleanupFds(fds)
  1043. return err
  1044. }
  1045. }
  1046. if tuntap.Queues == 0 {
  1047. cleanupFds(fds)
  1048. } else {
  1049. tuntap.Fds = fds
  1050. }
  1051. return nil
  1052. }
  1053. req := h.newNetlinkRequest(unix.RTM_NEWLINK, flags)
  1054. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1055. // TODO: make it shorter
  1056. if base.Flags&net.FlagUp != 0 {
  1057. msg.Change = unix.IFF_UP
  1058. msg.Flags = unix.IFF_UP
  1059. }
  1060. if base.Flags&net.FlagBroadcast != 0 {
  1061. msg.Change |= unix.IFF_BROADCAST
  1062. msg.Flags |= unix.IFF_BROADCAST
  1063. }
  1064. if base.Flags&net.FlagLoopback != 0 {
  1065. msg.Change |= unix.IFF_LOOPBACK
  1066. msg.Flags |= unix.IFF_LOOPBACK
  1067. }
  1068. if base.Flags&net.FlagPointToPoint != 0 {
  1069. msg.Change |= unix.IFF_POINTOPOINT
  1070. msg.Flags |= unix.IFF_POINTOPOINT
  1071. }
  1072. if base.Flags&net.FlagMulticast != 0 {
  1073. msg.Change |= unix.IFF_MULTICAST
  1074. msg.Flags |= unix.IFF_MULTICAST
  1075. }
  1076. if base.Index != 0 {
  1077. msg.Index = int32(base.Index)
  1078. }
  1079. req.AddData(msg)
  1080. if base.ParentIndex != 0 {
  1081. b := make([]byte, 4)
  1082. native.PutUint32(b, uint32(base.ParentIndex))
  1083. data := nl.NewRtAttr(unix.IFLA_LINK, b)
  1084. req.AddData(data)
  1085. } else if link.Type() == "ipvlan" || link.Type() == "ipoib" {
  1086. return fmt.Errorf("Can't create %s link without ParentIndex", link.Type())
  1087. }
  1088. nameData := nl.NewRtAttr(unix.IFLA_IFNAME, nl.ZeroTerminated(base.Name))
  1089. req.AddData(nameData)
  1090. if base.Alias != "" {
  1091. alias := nl.NewRtAttr(unix.IFLA_IFALIAS, []byte(base.Alias))
  1092. req.AddData(alias)
  1093. }
  1094. if base.MTU > 0 {
  1095. mtu := nl.NewRtAttr(unix.IFLA_MTU, nl.Uint32Attr(uint32(base.MTU)))
  1096. req.AddData(mtu)
  1097. }
  1098. if base.TxQLen >= 0 {
  1099. qlen := nl.NewRtAttr(unix.IFLA_TXQLEN, nl.Uint32Attr(uint32(base.TxQLen)))
  1100. req.AddData(qlen)
  1101. }
  1102. if base.HardwareAddr != nil {
  1103. hwaddr := nl.NewRtAttr(unix.IFLA_ADDRESS, []byte(base.HardwareAddr))
  1104. req.AddData(hwaddr)
  1105. }
  1106. if base.NumTxQueues > 0 {
  1107. txqueues := nl.NewRtAttr(unix.IFLA_NUM_TX_QUEUES, nl.Uint32Attr(uint32(base.NumTxQueues)))
  1108. req.AddData(txqueues)
  1109. }
  1110. if base.NumRxQueues > 0 {
  1111. rxqueues := nl.NewRtAttr(unix.IFLA_NUM_RX_QUEUES, nl.Uint32Attr(uint32(base.NumRxQueues)))
  1112. req.AddData(rxqueues)
  1113. }
  1114. if base.GSOMaxSegs > 0 {
  1115. gsoAttr := nl.NewRtAttr(unix.IFLA_GSO_MAX_SEGS, nl.Uint32Attr(base.GSOMaxSegs))
  1116. req.AddData(gsoAttr)
  1117. }
  1118. if base.GSOMaxSize > 0 {
  1119. gsoAttr := nl.NewRtAttr(unix.IFLA_GSO_MAX_SIZE, nl.Uint32Attr(base.GSOMaxSize))
  1120. req.AddData(gsoAttr)
  1121. }
  1122. if base.Group > 0 {
  1123. groupAttr := nl.NewRtAttr(unix.IFLA_GROUP, nl.Uint32Attr(base.Group))
  1124. req.AddData(groupAttr)
  1125. }
  1126. if base.Namespace != nil {
  1127. var attr *nl.RtAttr
  1128. switch ns := base.Namespace.(type) {
  1129. case NsPid:
  1130. val := nl.Uint32Attr(uint32(ns))
  1131. attr = nl.NewRtAttr(unix.IFLA_NET_NS_PID, val)
  1132. case NsFd:
  1133. val := nl.Uint32Attr(uint32(ns))
  1134. attr = nl.NewRtAttr(unix.IFLA_NET_NS_FD, val)
  1135. }
  1136. req.AddData(attr)
  1137. }
  1138. if base.Xdp != nil {
  1139. addXdpAttrs(base.Xdp, req)
  1140. }
  1141. linkInfo := nl.NewRtAttr(unix.IFLA_LINKINFO, nil)
  1142. linkInfo.AddRtAttr(nl.IFLA_INFO_KIND, nl.NonZeroTerminated(link.Type()))
  1143. switch link := link.(type) {
  1144. case *Vlan:
  1145. b := make([]byte, 2)
  1146. native.PutUint16(b, uint16(link.VlanId))
  1147. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  1148. data.AddRtAttr(nl.IFLA_VLAN_ID, b)
  1149. if link.VlanProtocol != VLAN_PROTOCOL_UNKNOWN {
  1150. data.AddRtAttr(nl.IFLA_VLAN_PROTOCOL, htons(uint16(link.VlanProtocol)))
  1151. }
  1152. case *Veth:
  1153. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  1154. peer := data.AddRtAttr(nl.VETH_INFO_PEER, nil)
  1155. nl.NewIfInfomsgChild(peer, unix.AF_UNSPEC)
  1156. peer.AddRtAttr(unix.IFLA_IFNAME, nl.ZeroTerminated(link.PeerName))
  1157. if base.TxQLen >= 0 {
  1158. peer.AddRtAttr(unix.IFLA_TXQLEN, nl.Uint32Attr(uint32(base.TxQLen)))
  1159. }
  1160. if base.NumTxQueues > 0 {
  1161. peer.AddRtAttr(unix.IFLA_NUM_TX_QUEUES, nl.Uint32Attr(uint32(base.NumTxQueues)))
  1162. }
  1163. if base.NumRxQueues > 0 {
  1164. peer.AddRtAttr(unix.IFLA_NUM_RX_QUEUES, nl.Uint32Attr(uint32(base.NumRxQueues)))
  1165. }
  1166. if base.MTU > 0 {
  1167. peer.AddRtAttr(unix.IFLA_MTU, nl.Uint32Attr(uint32(base.MTU)))
  1168. }
  1169. if link.PeerHardwareAddr != nil {
  1170. peer.AddRtAttr(unix.IFLA_ADDRESS, []byte(link.PeerHardwareAddr))
  1171. }
  1172. if link.PeerNamespace != nil {
  1173. switch ns := link.PeerNamespace.(type) {
  1174. case NsPid:
  1175. val := nl.Uint32Attr(uint32(ns))
  1176. peer.AddRtAttr(unix.IFLA_NET_NS_PID, val)
  1177. case NsFd:
  1178. val := nl.Uint32Attr(uint32(ns))
  1179. peer.AddRtAttr(unix.IFLA_NET_NS_FD, val)
  1180. }
  1181. }
  1182. case *Vxlan:
  1183. addVxlanAttrs(link, linkInfo)
  1184. case *Bond:
  1185. addBondAttrs(link, linkInfo)
  1186. case *IPVlan:
  1187. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  1188. data.AddRtAttr(nl.IFLA_IPVLAN_MODE, nl.Uint16Attr(uint16(link.Mode)))
  1189. data.AddRtAttr(nl.IFLA_IPVLAN_FLAG, nl.Uint16Attr(uint16(link.Flag)))
  1190. case *Macvlan:
  1191. if link.Mode != MACVLAN_MODE_DEFAULT {
  1192. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  1193. data.AddRtAttr(nl.IFLA_MACVLAN_MODE, nl.Uint32Attr(macvlanModes[link.Mode]))
  1194. }
  1195. case *Macvtap:
  1196. if link.Mode != MACVLAN_MODE_DEFAULT {
  1197. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  1198. data.AddRtAttr(nl.IFLA_MACVLAN_MODE, nl.Uint32Attr(macvlanModes[link.Mode]))
  1199. }
  1200. case *Geneve:
  1201. addGeneveAttrs(link, linkInfo)
  1202. case *Gretap:
  1203. addGretapAttrs(link, linkInfo)
  1204. case *Iptun:
  1205. addIptunAttrs(link, linkInfo)
  1206. case *Ip6tnl:
  1207. addIp6tnlAttrs(link, linkInfo)
  1208. case *Sittun:
  1209. addSittunAttrs(link, linkInfo)
  1210. case *Gretun:
  1211. addGretunAttrs(link, linkInfo)
  1212. case *Vti:
  1213. addVtiAttrs(link, linkInfo)
  1214. case *Vrf:
  1215. addVrfAttrs(link, linkInfo)
  1216. case *Bridge:
  1217. addBridgeAttrs(link, linkInfo)
  1218. case *GTP:
  1219. addGTPAttrs(link, linkInfo)
  1220. case *Xfrmi:
  1221. addXfrmiAttrs(link, linkInfo)
  1222. case *IPoIB:
  1223. addIPoIBAttrs(link, linkInfo)
  1224. }
  1225. req.AddData(linkInfo)
  1226. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1227. if err != nil {
  1228. return err
  1229. }
  1230. h.ensureIndex(base)
  1231. // can't set master during create, so set it afterwards
  1232. if base.MasterIndex != 0 {
  1233. // TODO: verify MasterIndex is actually a bridge?
  1234. return h.LinkSetMasterByIndex(link, base.MasterIndex)
  1235. }
  1236. return nil
  1237. }
  1238. // LinkDel deletes link device. Either Index or Name must be set in
  1239. // the link object for it to be deleted. The other values are ignored.
  1240. // Equivalent to: `ip link del $link`
  1241. func LinkDel(link Link) error {
  1242. return pkgHandle.LinkDel(link)
  1243. }
  1244. // LinkDel deletes link device. Either Index or Name must be set in
  1245. // the link object for it to be deleted. The other values are ignored.
  1246. // Equivalent to: `ip link del $link`
  1247. func (h *Handle) LinkDel(link Link) error {
  1248. base := link.Attrs()
  1249. h.ensureIndex(base)
  1250. req := h.newNetlinkRequest(unix.RTM_DELLINK, unix.NLM_F_ACK)
  1251. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1252. msg.Index = int32(base.Index)
  1253. req.AddData(msg)
  1254. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1255. return err
  1256. }
  1257. func (h *Handle) linkByNameDump(name string) (Link, error) {
  1258. links, err := h.LinkList()
  1259. if err != nil {
  1260. return nil, err
  1261. }
  1262. for _, link := range links {
  1263. if link.Attrs().Name == name {
  1264. return link, nil
  1265. }
  1266. }
  1267. return nil, LinkNotFoundError{fmt.Errorf("Link %s not found", name)}
  1268. }
  1269. func (h *Handle) linkByAliasDump(alias string) (Link, error) {
  1270. links, err := h.LinkList()
  1271. if err != nil {
  1272. return nil, err
  1273. }
  1274. for _, link := range links {
  1275. if link.Attrs().Alias == alias {
  1276. return link, nil
  1277. }
  1278. }
  1279. return nil, LinkNotFoundError{fmt.Errorf("Link alias %s not found", alias)}
  1280. }
  1281. // LinkByName finds a link by name and returns a pointer to the object.
  1282. func LinkByName(name string) (Link, error) {
  1283. return pkgHandle.LinkByName(name)
  1284. }
  1285. // LinkByName finds a link by name and returns a pointer to the object.
  1286. func (h *Handle) LinkByName(name string) (Link, error) {
  1287. if h.lookupByDump {
  1288. return h.linkByNameDump(name)
  1289. }
  1290. req := h.newNetlinkRequest(unix.RTM_GETLINK, unix.NLM_F_ACK)
  1291. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1292. req.AddData(msg)
  1293. attr := nl.NewRtAttr(unix.IFLA_EXT_MASK, nl.Uint32Attr(nl.RTEXT_FILTER_VF))
  1294. req.AddData(attr)
  1295. nameData := nl.NewRtAttr(unix.IFLA_IFNAME, nl.ZeroTerminated(name))
  1296. req.AddData(nameData)
  1297. link, err := execGetLink(req)
  1298. if err == unix.EINVAL {
  1299. // older kernels don't support looking up via IFLA_IFNAME
  1300. // so fall back to dumping all links
  1301. h.lookupByDump = true
  1302. return h.linkByNameDump(name)
  1303. }
  1304. return link, err
  1305. }
  1306. // LinkByAlias finds a link by its alias and returns a pointer to the object.
  1307. // If there are multiple links with the alias it returns the first one
  1308. func LinkByAlias(alias string) (Link, error) {
  1309. return pkgHandle.LinkByAlias(alias)
  1310. }
  1311. // LinkByAlias finds a link by its alias and returns a pointer to the object.
  1312. // If there are multiple links with the alias it returns the first one
  1313. func (h *Handle) LinkByAlias(alias string) (Link, error) {
  1314. if h.lookupByDump {
  1315. return h.linkByAliasDump(alias)
  1316. }
  1317. req := h.newNetlinkRequest(unix.RTM_GETLINK, unix.NLM_F_ACK)
  1318. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1319. req.AddData(msg)
  1320. attr := nl.NewRtAttr(unix.IFLA_EXT_MASK, nl.Uint32Attr(nl.RTEXT_FILTER_VF))
  1321. req.AddData(attr)
  1322. nameData := nl.NewRtAttr(unix.IFLA_IFALIAS, nl.ZeroTerminated(alias))
  1323. req.AddData(nameData)
  1324. link, err := execGetLink(req)
  1325. if err == unix.EINVAL {
  1326. // older kernels don't support looking up via IFLA_IFALIAS
  1327. // so fall back to dumping all links
  1328. h.lookupByDump = true
  1329. return h.linkByAliasDump(alias)
  1330. }
  1331. return link, err
  1332. }
  1333. // LinkByIndex finds a link by index and returns a pointer to the object.
  1334. func LinkByIndex(index int) (Link, error) {
  1335. return pkgHandle.LinkByIndex(index)
  1336. }
  1337. // LinkByIndex finds a link by index and returns a pointer to the object.
  1338. func (h *Handle) LinkByIndex(index int) (Link, error) {
  1339. req := h.newNetlinkRequest(unix.RTM_GETLINK, unix.NLM_F_ACK)
  1340. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1341. msg.Index = int32(index)
  1342. req.AddData(msg)
  1343. attr := nl.NewRtAttr(unix.IFLA_EXT_MASK, nl.Uint32Attr(nl.RTEXT_FILTER_VF))
  1344. req.AddData(attr)
  1345. return execGetLink(req)
  1346. }
  1347. func execGetLink(req *nl.NetlinkRequest) (Link, error) {
  1348. msgs, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1349. if err != nil {
  1350. if errno, ok := err.(syscall.Errno); ok {
  1351. if errno == unix.ENODEV {
  1352. return nil, LinkNotFoundError{fmt.Errorf("Link not found")}
  1353. }
  1354. }
  1355. return nil, err
  1356. }
  1357. switch {
  1358. case len(msgs) == 0:
  1359. return nil, LinkNotFoundError{fmt.Errorf("Link not found")}
  1360. case len(msgs) == 1:
  1361. return LinkDeserialize(nil, msgs[0])
  1362. default:
  1363. return nil, fmt.Errorf("More than one link found")
  1364. }
  1365. }
  1366. // linkDeserialize deserializes a raw message received from netlink into
  1367. // a link object.
  1368. func LinkDeserialize(hdr *unix.NlMsghdr, m []byte) (Link, error) {
  1369. msg := nl.DeserializeIfInfomsg(m)
  1370. attrs, err := nl.ParseRouteAttr(m[msg.Len():])
  1371. if err != nil {
  1372. return nil, err
  1373. }
  1374. base := NewLinkAttrs()
  1375. base.Index = int(msg.Index)
  1376. base.RawFlags = msg.Flags
  1377. base.Flags = linkFlags(msg.Flags)
  1378. base.EncapType = msg.EncapType()
  1379. if msg.Flags&unix.IFF_PROMISC != 0 {
  1380. base.Promisc = 1
  1381. }
  1382. var (
  1383. link Link
  1384. stats32 *LinkStatistics32
  1385. stats64 *LinkStatistics64
  1386. linkType string
  1387. linkSlave LinkSlave
  1388. slaveType string
  1389. )
  1390. for _, attr := range attrs {
  1391. switch attr.Attr.Type {
  1392. case unix.IFLA_LINKINFO:
  1393. infos, err := nl.ParseRouteAttr(attr.Value)
  1394. if err != nil {
  1395. return nil, err
  1396. }
  1397. for _, info := range infos {
  1398. switch info.Attr.Type {
  1399. case nl.IFLA_INFO_KIND:
  1400. linkType = string(info.Value[:len(info.Value)-1])
  1401. switch linkType {
  1402. case "dummy":
  1403. link = &Dummy{}
  1404. case "ifb":
  1405. link = &Ifb{}
  1406. case "bridge":
  1407. link = &Bridge{}
  1408. case "vlan":
  1409. link = &Vlan{}
  1410. case "veth":
  1411. link = &Veth{}
  1412. case "wireguard":
  1413. link = &Wireguard{}
  1414. case "vxlan":
  1415. link = &Vxlan{}
  1416. case "bond":
  1417. link = &Bond{}
  1418. case "ipvlan":
  1419. link = &IPVlan{}
  1420. case "macvlan":
  1421. link = &Macvlan{}
  1422. case "macvtap":
  1423. link = &Macvtap{}
  1424. case "geneve":
  1425. link = &Geneve{}
  1426. case "gretap":
  1427. link = &Gretap{}
  1428. case "ip6gretap":
  1429. link = &Gretap{}
  1430. case "ipip":
  1431. link = &Iptun{}
  1432. case "ip6tnl":
  1433. link = &Ip6tnl{}
  1434. case "sit":
  1435. link = &Sittun{}
  1436. case "gre":
  1437. link = &Gretun{}
  1438. case "ip6gre":
  1439. link = &Gretun{}
  1440. case "vti", "vti6":
  1441. link = &Vti{}
  1442. case "vrf":
  1443. link = &Vrf{}
  1444. case "gtp":
  1445. link = &GTP{}
  1446. case "xfrm":
  1447. link = &Xfrmi{}
  1448. case "tun":
  1449. link = &Tuntap{}
  1450. case "ipoib":
  1451. link = &IPoIB{}
  1452. case "can":
  1453. link = &Can{}
  1454. default:
  1455. link = &GenericLink{LinkType: linkType}
  1456. }
  1457. case nl.IFLA_INFO_DATA:
  1458. data, err := nl.ParseRouteAttr(info.Value)
  1459. if err != nil {
  1460. return nil, err
  1461. }
  1462. switch linkType {
  1463. case "vlan":
  1464. parseVlanData(link, data)
  1465. case "vxlan":
  1466. parseVxlanData(link, data)
  1467. case "bond":
  1468. parseBondData(link, data)
  1469. case "ipvlan":
  1470. parseIPVlanData(link, data)
  1471. case "macvlan":
  1472. parseMacvlanData(link, data)
  1473. case "macvtap":
  1474. parseMacvtapData(link, data)
  1475. case "geneve":
  1476. parseGeneveData(link, data)
  1477. case "gretap":
  1478. parseGretapData(link, data)
  1479. case "ip6gretap":
  1480. parseGretapData(link, data)
  1481. case "ipip":
  1482. parseIptunData(link, data)
  1483. case "ip6tnl":
  1484. parseIp6tnlData(link, data)
  1485. case "sit":
  1486. parseSittunData(link, data)
  1487. case "gre":
  1488. parseGretunData(link, data)
  1489. case "ip6gre":
  1490. parseGretunData(link, data)
  1491. case "vti", "vti6":
  1492. parseVtiData(link, data)
  1493. case "vrf":
  1494. parseVrfData(link, data)
  1495. case "bridge":
  1496. parseBridgeData(link, data)
  1497. case "gtp":
  1498. parseGTPData(link, data)
  1499. case "xfrm":
  1500. parseXfrmiData(link, data)
  1501. case "tun":
  1502. parseTuntapData(link, data)
  1503. case "ipoib":
  1504. parseIPoIBData(link, data)
  1505. case "can":
  1506. parseCanData(link, data)
  1507. }
  1508. case nl.IFLA_INFO_SLAVE_KIND:
  1509. slaveType = string(info.Value[:len(info.Value)-1])
  1510. switch slaveType {
  1511. case "bond":
  1512. linkSlave = &BondSlave{}
  1513. }
  1514. case nl.IFLA_INFO_SLAVE_DATA:
  1515. switch slaveType {
  1516. case "bond":
  1517. data, err := nl.ParseRouteAttr(info.Value)
  1518. if err != nil {
  1519. return nil, err
  1520. }
  1521. parseBondSlaveData(linkSlave, data)
  1522. }
  1523. }
  1524. }
  1525. case unix.IFLA_ADDRESS:
  1526. var nonzero bool
  1527. for _, b := range attr.Value {
  1528. if b != 0 {
  1529. nonzero = true
  1530. }
  1531. }
  1532. if nonzero {
  1533. base.HardwareAddr = attr.Value[:]
  1534. }
  1535. case unix.IFLA_IFNAME:
  1536. base.Name = string(attr.Value[:len(attr.Value)-1])
  1537. case unix.IFLA_MTU:
  1538. base.MTU = int(native.Uint32(attr.Value[0:4]))
  1539. case unix.IFLA_LINK:
  1540. base.ParentIndex = int(native.Uint32(attr.Value[0:4]))
  1541. case unix.IFLA_MASTER:
  1542. base.MasterIndex = int(native.Uint32(attr.Value[0:4]))
  1543. case unix.IFLA_TXQLEN:
  1544. base.TxQLen = int(native.Uint32(attr.Value[0:4]))
  1545. case unix.IFLA_IFALIAS:
  1546. base.Alias = string(attr.Value[:len(attr.Value)-1])
  1547. case unix.IFLA_STATS:
  1548. stats32 = new(LinkStatistics32)
  1549. if err := binary.Read(bytes.NewBuffer(attr.Value[:]), nl.NativeEndian(), stats32); err != nil {
  1550. return nil, err
  1551. }
  1552. case unix.IFLA_STATS64:
  1553. stats64 = new(LinkStatistics64)
  1554. if err := binary.Read(bytes.NewBuffer(attr.Value[:]), nl.NativeEndian(), stats64); err != nil {
  1555. return nil, err
  1556. }
  1557. case unix.IFLA_XDP:
  1558. xdp, err := parseLinkXdp(attr.Value[:])
  1559. if err != nil {
  1560. return nil, err
  1561. }
  1562. base.Xdp = xdp
  1563. case unix.IFLA_PROTINFO | unix.NLA_F_NESTED:
  1564. if hdr != nil && hdr.Type == unix.RTM_NEWLINK &&
  1565. msg.Family == unix.AF_BRIDGE {
  1566. attrs, err := nl.ParseRouteAttr(attr.Value[:])
  1567. if err != nil {
  1568. return nil, err
  1569. }
  1570. protinfo := parseProtinfo(attrs)
  1571. base.Protinfo = &protinfo
  1572. }
  1573. case unix.IFLA_OPERSTATE:
  1574. base.OperState = LinkOperState(uint8(attr.Value[0]))
  1575. case unix.IFLA_LINK_NETNSID:
  1576. base.NetNsID = int(native.Uint32(attr.Value[0:4]))
  1577. case unix.IFLA_GSO_MAX_SIZE:
  1578. base.GSOMaxSize = native.Uint32(attr.Value[0:4])
  1579. case unix.IFLA_GSO_MAX_SEGS:
  1580. base.GSOMaxSegs = native.Uint32(attr.Value[0:4])
  1581. case unix.IFLA_VFINFO_LIST:
  1582. data, err := nl.ParseRouteAttr(attr.Value)
  1583. if err != nil {
  1584. return nil, err
  1585. }
  1586. vfs, err := parseVfInfoList(data)
  1587. if err != nil {
  1588. return nil, err
  1589. }
  1590. base.Vfs = vfs
  1591. case unix.IFLA_NUM_TX_QUEUES:
  1592. base.NumTxQueues = int(native.Uint32(attr.Value[0:4]))
  1593. case unix.IFLA_NUM_RX_QUEUES:
  1594. base.NumRxQueues = int(native.Uint32(attr.Value[0:4]))
  1595. case unix.IFLA_GROUP:
  1596. base.Group = native.Uint32(attr.Value[0:4])
  1597. }
  1598. }
  1599. if stats64 != nil {
  1600. base.Statistics = (*LinkStatistics)(stats64)
  1601. } else if stats32 != nil {
  1602. base.Statistics = (*LinkStatistics)(stats32.to64())
  1603. }
  1604. // Links that don't have IFLA_INFO_KIND are hardware devices
  1605. if link == nil {
  1606. link = &Device{}
  1607. }
  1608. *link.Attrs() = base
  1609. link.Attrs().Slave = linkSlave
  1610. // If the tuntap attributes are not updated by netlink due to
  1611. // an older driver, use sysfs
  1612. if link != nil && linkType == "tun" {
  1613. tuntap := link.(*Tuntap)
  1614. if tuntap.Mode == 0 {
  1615. ifname := tuntap.Attrs().Name
  1616. if flags, err := readSysPropAsInt64(ifname, "tun_flags"); err == nil {
  1617. if flags&unix.IFF_TUN != 0 {
  1618. tuntap.Mode = unix.IFF_TUN
  1619. } else if flags&unix.IFF_TAP != 0 {
  1620. tuntap.Mode = unix.IFF_TAP
  1621. }
  1622. tuntap.NonPersist = false
  1623. if flags&unix.IFF_PERSIST == 0 {
  1624. tuntap.NonPersist = true
  1625. }
  1626. }
  1627. // The sysfs interface for owner/group returns -1 for root user, instead of returning 0.
  1628. // So explicitly check for negative value, before assigning the owner uid/gid.
  1629. if owner, err := readSysPropAsInt64(ifname, "owner"); err == nil && owner > 0 {
  1630. tuntap.Owner = uint32(owner)
  1631. }
  1632. if group, err := readSysPropAsInt64(ifname, "group"); err == nil && group > 0 {
  1633. tuntap.Group = uint32(group)
  1634. }
  1635. }
  1636. }
  1637. return link, nil
  1638. }
  1639. func readSysPropAsInt64(ifname, prop string) (int64, error) {
  1640. fname := fmt.Sprintf("/sys/class/net/%s/%s", ifname, prop)
  1641. contents, err := ioutil.ReadFile(fname)
  1642. if err != nil {
  1643. return 0, err
  1644. }
  1645. num, err := strconv.ParseInt(strings.TrimSpace(string(contents)), 0, 64)
  1646. if err == nil {
  1647. return num, nil
  1648. }
  1649. return 0, err
  1650. }
  1651. // LinkList gets a list of link devices.
  1652. // Equivalent to: `ip link show`
  1653. func LinkList() ([]Link, error) {
  1654. return pkgHandle.LinkList()
  1655. }
  1656. // LinkList gets a list of link devices.
  1657. // Equivalent to: `ip link show`
  1658. func (h *Handle) LinkList() ([]Link, error) {
  1659. // NOTE(vish): This duplicates functionality in net/iface_linux.go, but we need
  1660. // to get the message ourselves to parse link type.
  1661. req := h.newNetlinkRequest(unix.RTM_GETLINK, unix.NLM_F_DUMP)
  1662. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1663. req.AddData(msg)
  1664. attr := nl.NewRtAttr(unix.IFLA_EXT_MASK, nl.Uint32Attr(nl.RTEXT_FILTER_VF))
  1665. req.AddData(attr)
  1666. msgs, err := req.Execute(unix.NETLINK_ROUTE, unix.RTM_NEWLINK)
  1667. if err != nil {
  1668. return nil, err
  1669. }
  1670. var res []Link
  1671. for _, m := range msgs {
  1672. link, err := LinkDeserialize(nil, m)
  1673. if err != nil {
  1674. return nil, err
  1675. }
  1676. res = append(res, link)
  1677. }
  1678. return res, nil
  1679. }
  1680. // LinkUpdate is used to pass information back from LinkSubscribe()
  1681. type LinkUpdate struct {
  1682. nl.IfInfomsg
  1683. Header unix.NlMsghdr
  1684. Link
  1685. }
  1686. // LinkSubscribe takes a chan down which notifications will be sent
  1687. // when links change. Close the 'done' chan to stop subscription.
  1688. func LinkSubscribe(ch chan<- LinkUpdate, done <-chan struct{}) error {
  1689. return linkSubscribeAt(netns.None(), netns.None(), ch, done, nil, false)
  1690. }
  1691. // LinkSubscribeAt works like LinkSubscribe plus it allows the caller
  1692. // to choose the network namespace in which to subscribe (ns).
  1693. func LinkSubscribeAt(ns netns.NsHandle, ch chan<- LinkUpdate, done <-chan struct{}) error {
  1694. return linkSubscribeAt(ns, netns.None(), ch, done, nil, false)
  1695. }
  1696. // LinkSubscribeOptions contains a set of options to use with
  1697. // LinkSubscribeWithOptions.
  1698. type LinkSubscribeOptions struct {
  1699. Namespace *netns.NsHandle
  1700. ErrorCallback func(error)
  1701. ListExisting bool
  1702. }
  1703. // LinkSubscribeWithOptions work like LinkSubscribe but enable to
  1704. // provide additional options to modify the behavior. Currently, the
  1705. // namespace can be provided as well as an error callback.
  1706. func LinkSubscribeWithOptions(ch chan<- LinkUpdate, done <-chan struct{}, options LinkSubscribeOptions) error {
  1707. if options.Namespace == nil {
  1708. none := netns.None()
  1709. options.Namespace = &none
  1710. }
  1711. return linkSubscribeAt(*options.Namespace, netns.None(), ch, done, options.ErrorCallback, options.ListExisting)
  1712. }
  1713. func linkSubscribeAt(newNs, curNs netns.NsHandle, ch chan<- LinkUpdate, done <-chan struct{}, cberr func(error), listExisting bool) error {
  1714. s, err := nl.SubscribeAt(newNs, curNs, unix.NETLINK_ROUTE, unix.RTNLGRP_LINK)
  1715. if err != nil {
  1716. return err
  1717. }
  1718. if done != nil {
  1719. go func() {
  1720. <-done
  1721. s.Close()
  1722. }()
  1723. }
  1724. if listExisting {
  1725. req := pkgHandle.newNetlinkRequest(unix.RTM_GETLINK,
  1726. unix.NLM_F_DUMP)
  1727. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1728. req.AddData(msg)
  1729. if err := s.Send(req); err != nil {
  1730. return err
  1731. }
  1732. }
  1733. go func() {
  1734. defer close(ch)
  1735. for {
  1736. msgs, from, err := s.Receive()
  1737. if err != nil {
  1738. if cberr != nil {
  1739. cberr(err)
  1740. }
  1741. return
  1742. }
  1743. if from.Pid != nl.PidKernel {
  1744. if cberr != nil {
  1745. cberr(fmt.Errorf("Wrong sender portid %d, expected %d", from.Pid, nl.PidKernel))
  1746. }
  1747. continue
  1748. }
  1749. for _, m := range msgs {
  1750. if m.Header.Type == unix.NLMSG_DONE {
  1751. continue
  1752. }
  1753. if m.Header.Type == unix.NLMSG_ERROR {
  1754. native := nl.NativeEndian()
  1755. error := int32(native.Uint32(m.Data[0:4]))
  1756. if error == 0 {
  1757. continue
  1758. }
  1759. if cberr != nil {
  1760. cberr(syscall.Errno(-error))
  1761. }
  1762. return
  1763. }
  1764. ifmsg := nl.DeserializeIfInfomsg(m.Data)
  1765. header := unix.NlMsghdr(m.Header)
  1766. link, err := LinkDeserialize(&header, m.Data)
  1767. if err != nil {
  1768. if cberr != nil {
  1769. cberr(err)
  1770. }
  1771. return
  1772. }
  1773. ch <- LinkUpdate{IfInfomsg: *ifmsg, Header: header, Link: link}
  1774. }
  1775. }
  1776. }()
  1777. return nil
  1778. }
  1779. func LinkSetHairpin(link Link, mode bool) error {
  1780. return pkgHandle.LinkSetHairpin(link, mode)
  1781. }
  1782. func (h *Handle) LinkSetHairpin(link Link, mode bool) error {
  1783. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_MODE)
  1784. }
  1785. func LinkSetGuard(link Link, mode bool) error {
  1786. return pkgHandle.LinkSetGuard(link, mode)
  1787. }
  1788. func (h *Handle) LinkSetGuard(link Link, mode bool) error {
  1789. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_GUARD)
  1790. }
  1791. func LinkSetFastLeave(link Link, mode bool) error {
  1792. return pkgHandle.LinkSetFastLeave(link, mode)
  1793. }
  1794. func (h *Handle) LinkSetFastLeave(link Link, mode bool) error {
  1795. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_FAST_LEAVE)
  1796. }
  1797. func LinkSetLearning(link Link, mode bool) error {
  1798. return pkgHandle.LinkSetLearning(link, mode)
  1799. }
  1800. func (h *Handle) LinkSetLearning(link Link, mode bool) error {
  1801. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_LEARNING)
  1802. }
  1803. func LinkSetRootBlock(link Link, mode bool) error {
  1804. return pkgHandle.LinkSetRootBlock(link, mode)
  1805. }
  1806. func (h *Handle) LinkSetRootBlock(link Link, mode bool) error {
  1807. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_PROTECT)
  1808. }
  1809. func LinkSetFlood(link Link, mode bool) error {
  1810. return pkgHandle.LinkSetFlood(link, mode)
  1811. }
  1812. func (h *Handle) LinkSetFlood(link Link, mode bool) error {
  1813. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_UNICAST_FLOOD)
  1814. }
  1815. func LinkSetBrProxyArp(link Link, mode bool) error {
  1816. return pkgHandle.LinkSetBrProxyArp(link, mode)
  1817. }
  1818. func (h *Handle) LinkSetBrProxyArp(link Link, mode bool) error {
  1819. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_PROXYARP)
  1820. }
  1821. func LinkSetBrProxyArpWiFi(link Link, mode bool) error {
  1822. return pkgHandle.LinkSetBrProxyArpWiFi(link, mode)
  1823. }
  1824. func (h *Handle) LinkSetBrProxyArpWiFi(link Link, mode bool) error {
  1825. return h.setProtinfoAttr(link, mode, nl.IFLA_BRPORT_PROXYARP_WIFI)
  1826. }
  1827. func (h *Handle) setProtinfoAttr(link Link, mode bool, attr int) error {
  1828. base := link.Attrs()
  1829. h.ensureIndex(base)
  1830. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  1831. msg := nl.NewIfInfomsg(unix.AF_BRIDGE)
  1832. msg.Index = int32(base.Index)
  1833. req.AddData(msg)
  1834. br := nl.NewRtAttr(unix.IFLA_PROTINFO|unix.NLA_F_NESTED, nil)
  1835. br.AddRtAttr(attr, boolToByte(mode))
  1836. req.AddData(br)
  1837. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1838. if err != nil {
  1839. return err
  1840. }
  1841. return nil
  1842. }
  1843. // LinkSetTxQLen sets the transaction queue length for the link.
  1844. // Equivalent to: `ip link set $link txqlen $qlen`
  1845. func LinkSetTxQLen(link Link, qlen int) error {
  1846. return pkgHandle.LinkSetTxQLen(link, qlen)
  1847. }
  1848. // LinkSetTxQLen sets the transaction queue length for the link.
  1849. // Equivalent to: `ip link set $link txqlen $qlen`
  1850. func (h *Handle) LinkSetTxQLen(link Link, qlen int) error {
  1851. base := link.Attrs()
  1852. h.ensureIndex(base)
  1853. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  1854. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1855. msg.Index = int32(base.Index)
  1856. req.AddData(msg)
  1857. b := make([]byte, 4)
  1858. native.PutUint32(b, uint32(qlen))
  1859. data := nl.NewRtAttr(unix.IFLA_TXQLEN, b)
  1860. req.AddData(data)
  1861. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1862. return err
  1863. }
  1864. // LinkSetGroup sets the link group id which can be used to perform mass actions
  1865. // with iproute2 as well use it as a reference in nft filters.
  1866. // Equivalent to: `ip link set $link group $id`
  1867. func LinkSetGroup(link Link, group int) error {
  1868. return pkgHandle.LinkSetGroup(link, group)
  1869. }
  1870. // LinkSetGroup sets the link group id which can be used to perform mass actions
  1871. // with iproute2 as well use it as a reference in nft filters.
  1872. // Equivalent to: `ip link set $link group $id`
  1873. func (h *Handle) LinkSetGroup(link Link, group int) error {
  1874. base := link.Attrs()
  1875. h.ensureIndex(base)
  1876. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  1877. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  1878. msg.Index = int32(base.Index)
  1879. req.AddData(msg)
  1880. b := make([]byte, 4)
  1881. native.PutUint32(b, uint32(group))
  1882. data := nl.NewRtAttr(unix.IFLA_GROUP, b)
  1883. req.AddData(data)
  1884. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  1885. return err
  1886. }
  1887. func parseVlanData(link Link, data []syscall.NetlinkRouteAttr) {
  1888. vlan := link.(*Vlan)
  1889. for _, datum := range data {
  1890. switch datum.Attr.Type {
  1891. case nl.IFLA_VLAN_ID:
  1892. vlan.VlanId = int(native.Uint16(datum.Value[0:2]))
  1893. case nl.IFLA_VLAN_PROTOCOL:
  1894. vlan.VlanProtocol = VlanProtocol(int(ntohs(datum.Value[0:2])))
  1895. }
  1896. }
  1897. }
  1898. func parseVxlanData(link Link, data []syscall.NetlinkRouteAttr) {
  1899. vxlan := link.(*Vxlan)
  1900. for _, datum := range data {
  1901. // NOTE(vish): Apparently some messages can be sent with no value.
  1902. // We special case GBP here to not change existing
  1903. // functionality. It appears that GBP sends a datum.Value
  1904. // of null.
  1905. if len(datum.Value) == 0 && datum.Attr.Type != nl.IFLA_VXLAN_GBP {
  1906. continue
  1907. }
  1908. switch datum.Attr.Type {
  1909. case nl.IFLA_VXLAN_ID:
  1910. vxlan.VxlanId = int(native.Uint32(datum.Value[0:4]))
  1911. case nl.IFLA_VXLAN_LINK:
  1912. vxlan.VtepDevIndex = int(native.Uint32(datum.Value[0:4]))
  1913. case nl.IFLA_VXLAN_LOCAL:
  1914. vxlan.SrcAddr = net.IP(datum.Value[0:4])
  1915. case nl.IFLA_VXLAN_LOCAL6:
  1916. vxlan.SrcAddr = net.IP(datum.Value[0:16])
  1917. case nl.IFLA_VXLAN_GROUP:
  1918. vxlan.Group = net.IP(datum.Value[0:4])
  1919. case nl.IFLA_VXLAN_GROUP6:
  1920. vxlan.Group = net.IP(datum.Value[0:16])
  1921. case nl.IFLA_VXLAN_TTL:
  1922. vxlan.TTL = int(datum.Value[0])
  1923. case nl.IFLA_VXLAN_TOS:
  1924. vxlan.TOS = int(datum.Value[0])
  1925. case nl.IFLA_VXLAN_LEARNING:
  1926. vxlan.Learning = int8(datum.Value[0]) != 0
  1927. case nl.IFLA_VXLAN_PROXY:
  1928. vxlan.Proxy = int8(datum.Value[0]) != 0
  1929. case nl.IFLA_VXLAN_RSC:
  1930. vxlan.RSC = int8(datum.Value[0]) != 0
  1931. case nl.IFLA_VXLAN_L2MISS:
  1932. vxlan.L2miss = int8(datum.Value[0]) != 0
  1933. case nl.IFLA_VXLAN_L3MISS:
  1934. vxlan.L3miss = int8(datum.Value[0]) != 0
  1935. case nl.IFLA_VXLAN_UDP_CSUM:
  1936. vxlan.UDPCSum = int8(datum.Value[0]) != 0
  1937. case nl.IFLA_VXLAN_UDP_ZERO_CSUM6_TX:
  1938. vxlan.UDP6ZeroCSumTx = int8(datum.Value[0]) != 0
  1939. case nl.IFLA_VXLAN_UDP_ZERO_CSUM6_RX:
  1940. vxlan.UDP6ZeroCSumRx = int8(datum.Value[0]) != 0
  1941. case nl.IFLA_VXLAN_GBP:
  1942. vxlan.GBP = true
  1943. case nl.IFLA_VXLAN_FLOWBASED:
  1944. vxlan.FlowBased = int8(datum.Value[0]) != 0
  1945. case nl.IFLA_VXLAN_AGEING:
  1946. vxlan.Age = int(native.Uint32(datum.Value[0:4]))
  1947. vxlan.NoAge = vxlan.Age == 0
  1948. case nl.IFLA_VXLAN_LIMIT:
  1949. vxlan.Limit = int(native.Uint32(datum.Value[0:4]))
  1950. case nl.IFLA_VXLAN_PORT:
  1951. vxlan.Port = int(ntohs(datum.Value[0:2]))
  1952. case nl.IFLA_VXLAN_PORT_RANGE:
  1953. buf := bytes.NewBuffer(datum.Value[0:4])
  1954. var pr vxlanPortRange
  1955. if binary.Read(buf, binary.BigEndian, &pr) != nil {
  1956. vxlan.PortLow = int(pr.Lo)
  1957. vxlan.PortHigh = int(pr.Hi)
  1958. }
  1959. }
  1960. }
  1961. }
  1962. func parseBondData(link Link, data []syscall.NetlinkRouteAttr) {
  1963. bond := link.(*Bond)
  1964. for i := range data {
  1965. switch data[i].Attr.Type {
  1966. case nl.IFLA_BOND_MODE:
  1967. bond.Mode = BondMode(data[i].Value[0])
  1968. case nl.IFLA_BOND_ACTIVE_SLAVE:
  1969. bond.ActiveSlave = int(native.Uint32(data[i].Value[0:4]))
  1970. case nl.IFLA_BOND_MIIMON:
  1971. bond.Miimon = int(native.Uint32(data[i].Value[0:4]))
  1972. case nl.IFLA_BOND_UPDELAY:
  1973. bond.UpDelay = int(native.Uint32(data[i].Value[0:4]))
  1974. case nl.IFLA_BOND_DOWNDELAY:
  1975. bond.DownDelay = int(native.Uint32(data[i].Value[0:4]))
  1976. case nl.IFLA_BOND_USE_CARRIER:
  1977. bond.UseCarrier = int(data[i].Value[0])
  1978. case nl.IFLA_BOND_ARP_INTERVAL:
  1979. bond.ArpInterval = int(native.Uint32(data[i].Value[0:4]))
  1980. case nl.IFLA_BOND_ARP_IP_TARGET:
  1981. bond.ArpIpTargets = parseBondArpIpTargets(data[i].Value)
  1982. case nl.IFLA_BOND_ARP_VALIDATE:
  1983. bond.ArpValidate = BondArpValidate(native.Uint32(data[i].Value[0:4]))
  1984. case nl.IFLA_BOND_ARP_ALL_TARGETS:
  1985. bond.ArpAllTargets = BondArpAllTargets(native.Uint32(data[i].Value[0:4]))
  1986. case nl.IFLA_BOND_PRIMARY:
  1987. bond.Primary = int(native.Uint32(data[i].Value[0:4]))
  1988. case nl.IFLA_BOND_PRIMARY_RESELECT:
  1989. bond.PrimaryReselect = BondPrimaryReselect(data[i].Value[0])
  1990. case nl.IFLA_BOND_FAIL_OVER_MAC:
  1991. bond.FailOverMac = BondFailOverMac(data[i].Value[0])
  1992. case nl.IFLA_BOND_XMIT_HASH_POLICY:
  1993. bond.XmitHashPolicy = BondXmitHashPolicy(data[i].Value[0])
  1994. case nl.IFLA_BOND_RESEND_IGMP:
  1995. bond.ResendIgmp = int(native.Uint32(data[i].Value[0:4]))
  1996. case nl.IFLA_BOND_NUM_PEER_NOTIF:
  1997. bond.NumPeerNotif = int(data[i].Value[0])
  1998. case nl.IFLA_BOND_ALL_SLAVES_ACTIVE:
  1999. bond.AllSlavesActive = int(data[i].Value[0])
  2000. case nl.IFLA_BOND_MIN_LINKS:
  2001. bond.MinLinks = int(native.Uint32(data[i].Value[0:4]))
  2002. case nl.IFLA_BOND_LP_INTERVAL:
  2003. bond.LpInterval = int(native.Uint32(data[i].Value[0:4]))
  2004. case nl.IFLA_BOND_PACKETS_PER_SLAVE:
  2005. bond.PacketsPerSlave = int(native.Uint32(data[i].Value[0:4]))
  2006. case nl.IFLA_BOND_AD_LACP_RATE:
  2007. bond.LacpRate = BondLacpRate(data[i].Value[0])
  2008. case nl.IFLA_BOND_AD_SELECT:
  2009. bond.AdSelect = BondAdSelect(data[i].Value[0])
  2010. case nl.IFLA_BOND_AD_INFO:
  2011. // TODO: implement
  2012. case nl.IFLA_BOND_AD_ACTOR_SYS_PRIO:
  2013. bond.AdActorSysPrio = int(native.Uint16(data[i].Value[0:2]))
  2014. case nl.IFLA_BOND_AD_USER_PORT_KEY:
  2015. bond.AdUserPortKey = int(native.Uint16(data[i].Value[0:2]))
  2016. case nl.IFLA_BOND_AD_ACTOR_SYSTEM:
  2017. bond.AdActorSystem = net.HardwareAddr(data[i].Value[0:6])
  2018. case nl.IFLA_BOND_TLB_DYNAMIC_LB:
  2019. bond.TlbDynamicLb = int(data[i].Value[0])
  2020. }
  2021. }
  2022. }
  2023. func parseBondArpIpTargets(value []byte) []net.IP {
  2024. data, err := nl.ParseRouteAttr(value)
  2025. if err != nil {
  2026. return nil
  2027. }
  2028. targets := []net.IP{}
  2029. for i := range data {
  2030. target := net.IP(data[i].Value)
  2031. if ip := target.To4(); ip != nil {
  2032. targets = append(targets, ip)
  2033. continue
  2034. }
  2035. if ip := target.To16(); ip != nil {
  2036. targets = append(targets, ip)
  2037. }
  2038. }
  2039. return targets
  2040. }
  2041. func addBondSlaveAttrs(bondSlave *BondSlave, linkInfo *nl.RtAttr) {
  2042. data := linkInfo.AddRtAttr(nl.IFLA_INFO_SLAVE_DATA, nil)
  2043. data.AddRtAttr(nl.IFLA_BOND_SLAVE_STATE, nl.Uint8Attr(uint8(bondSlave.State)))
  2044. data.AddRtAttr(nl.IFLA_BOND_SLAVE_MII_STATUS, nl.Uint8Attr(uint8(bondSlave.MiiStatus)))
  2045. data.AddRtAttr(nl.IFLA_BOND_SLAVE_LINK_FAILURE_COUNT, nl.Uint32Attr(bondSlave.LinkFailureCount))
  2046. data.AddRtAttr(nl.IFLA_BOND_SLAVE_QUEUE_ID, nl.Uint16Attr(bondSlave.QueueId))
  2047. data.AddRtAttr(nl.IFLA_BOND_SLAVE_AD_AGGREGATOR_ID, nl.Uint16Attr(bondSlave.AggregatorId))
  2048. data.AddRtAttr(nl.IFLA_BOND_SLAVE_AD_ACTOR_OPER_PORT_STATE, nl.Uint8Attr(bondSlave.AdActorOperPortState))
  2049. data.AddRtAttr(nl.IFLA_BOND_SLAVE_AD_PARTNER_OPER_PORT_STATE, nl.Uint16Attr(bondSlave.AdPartnerOperPortState))
  2050. if mac := bondSlave.PermHardwareAddr; mac != nil {
  2051. data.AddRtAttr(nl.IFLA_BOND_SLAVE_PERM_HWADDR, []byte(mac))
  2052. }
  2053. }
  2054. func parseBondSlaveData(slave LinkSlave, data []syscall.NetlinkRouteAttr) {
  2055. bondSlave := slave.(*BondSlave)
  2056. for i := range data {
  2057. switch data[i].Attr.Type {
  2058. case nl.IFLA_BOND_SLAVE_STATE:
  2059. bondSlave.State = BondSlaveState(data[i].Value[0])
  2060. case nl.IFLA_BOND_SLAVE_MII_STATUS:
  2061. bondSlave.MiiStatus = BondSlaveMiiStatus(data[i].Value[0])
  2062. case nl.IFLA_BOND_SLAVE_LINK_FAILURE_COUNT:
  2063. bondSlave.LinkFailureCount = native.Uint32(data[i].Value[0:4])
  2064. case nl.IFLA_BOND_SLAVE_PERM_HWADDR:
  2065. bondSlave.PermHardwareAddr = net.HardwareAddr(data[i].Value[0:6])
  2066. case nl.IFLA_BOND_SLAVE_QUEUE_ID:
  2067. bondSlave.QueueId = native.Uint16(data[i].Value[0:2])
  2068. case nl.IFLA_BOND_SLAVE_AD_AGGREGATOR_ID:
  2069. bondSlave.AggregatorId = native.Uint16(data[i].Value[0:2])
  2070. case nl.IFLA_BOND_SLAVE_AD_ACTOR_OPER_PORT_STATE:
  2071. bondSlave.AdActorOperPortState = uint8(data[i].Value[0])
  2072. case nl.IFLA_BOND_SLAVE_AD_PARTNER_OPER_PORT_STATE:
  2073. bondSlave.AdPartnerOperPortState = native.Uint16(data[i].Value[0:2])
  2074. }
  2075. }
  2076. }
  2077. func parseIPVlanData(link Link, data []syscall.NetlinkRouteAttr) {
  2078. ipv := link.(*IPVlan)
  2079. for _, datum := range data {
  2080. switch datum.Attr.Type {
  2081. case nl.IFLA_IPVLAN_MODE:
  2082. ipv.Mode = IPVlanMode(native.Uint32(datum.Value[0:4]))
  2083. case nl.IFLA_IPVLAN_FLAG:
  2084. ipv.Flag = IPVlanFlag(native.Uint32(datum.Value[0:4]))
  2085. }
  2086. }
  2087. }
  2088. func parseMacvtapData(link Link, data []syscall.NetlinkRouteAttr) {
  2089. macv := link.(*Macvtap)
  2090. parseMacvlanData(&macv.Macvlan, data)
  2091. }
  2092. func parseMacvlanData(link Link, data []syscall.NetlinkRouteAttr) {
  2093. macv := link.(*Macvlan)
  2094. for _, datum := range data {
  2095. switch datum.Attr.Type {
  2096. case nl.IFLA_MACVLAN_MODE:
  2097. switch native.Uint32(datum.Value[0:4]) {
  2098. case nl.MACVLAN_MODE_PRIVATE:
  2099. macv.Mode = MACVLAN_MODE_PRIVATE
  2100. case nl.MACVLAN_MODE_VEPA:
  2101. macv.Mode = MACVLAN_MODE_VEPA
  2102. case nl.MACVLAN_MODE_BRIDGE:
  2103. macv.Mode = MACVLAN_MODE_BRIDGE
  2104. case nl.MACVLAN_MODE_PASSTHRU:
  2105. macv.Mode = MACVLAN_MODE_PASSTHRU
  2106. case nl.MACVLAN_MODE_SOURCE:
  2107. macv.Mode = MACVLAN_MODE_SOURCE
  2108. }
  2109. case nl.IFLA_MACVLAN_MACADDR_COUNT:
  2110. macv.MACAddrs = make([]net.HardwareAddr, 0, int(native.Uint32(datum.Value[0:4])))
  2111. case nl.IFLA_MACVLAN_MACADDR_DATA:
  2112. macs, err := nl.ParseRouteAttr(datum.Value[:])
  2113. if err != nil {
  2114. panic(fmt.Sprintf("failed to ParseRouteAttr for IFLA_MACVLAN_MACADDR_DATA: %v", err))
  2115. }
  2116. for _, macDatum := range macs {
  2117. macv.MACAddrs = append(macv.MACAddrs, net.HardwareAddr(macDatum.Value[0:6]))
  2118. }
  2119. }
  2120. }
  2121. }
  2122. // copied from pkg/net_linux.go
  2123. func linkFlags(rawFlags uint32) net.Flags {
  2124. var f net.Flags
  2125. if rawFlags&unix.IFF_UP != 0 {
  2126. f |= net.FlagUp
  2127. }
  2128. if rawFlags&unix.IFF_BROADCAST != 0 {
  2129. f |= net.FlagBroadcast
  2130. }
  2131. if rawFlags&unix.IFF_LOOPBACK != 0 {
  2132. f |= net.FlagLoopback
  2133. }
  2134. if rawFlags&unix.IFF_POINTOPOINT != 0 {
  2135. f |= net.FlagPointToPoint
  2136. }
  2137. if rawFlags&unix.IFF_MULTICAST != 0 {
  2138. f |= net.FlagMulticast
  2139. }
  2140. return f
  2141. }
  2142. func addGeneveAttrs(geneve *Geneve, linkInfo *nl.RtAttr) {
  2143. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2144. if geneve.FlowBased {
  2145. // In flow based mode, no other attributes need to be configured
  2146. linkInfo.AddRtAttr(nl.IFLA_GENEVE_COLLECT_METADATA, boolAttr(geneve.FlowBased))
  2147. return
  2148. }
  2149. if ip := geneve.Remote; ip != nil {
  2150. if ip4 := ip.To4(); ip4 != nil {
  2151. data.AddRtAttr(nl.IFLA_GENEVE_REMOTE, ip.To4())
  2152. } else {
  2153. data.AddRtAttr(nl.IFLA_GENEVE_REMOTE6, []byte(ip))
  2154. }
  2155. }
  2156. if geneve.ID != 0 {
  2157. data.AddRtAttr(nl.IFLA_GENEVE_ID, nl.Uint32Attr(geneve.ID))
  2158. }
  2159. if geneve.Dport != 0 {
  2160. data.AddRtAttr(nl.IFLA_GENEVE_PORT, htons(geneve.Dport))
  2161. }
  2162. if geneve.Ttl != 0 {
  2163. data.AddRtAttr(nl.IFLA_GENEVE_TTL, nl.Uint8Attr(geneve.Ttl))
  2164. }
  2165. if geneve.Tos != 0 {
  2166. data.AddRtAttr(nl.IFLA_GENEVE_TOS, nl.Uint8Attr(geneve.Tos))
  2167. }
  2168. }
  2169. func parseGeneveData(link Link, data []syscall.NetlinkRouteAttr) {
  2170. geneve := link.(*Geneve)
  2171. for _, datum := range data {
  2172. switch datum.Attr.Type {
  2173. case nl.IFLA_GENEVE_ID:
  2174. geneve.ID = native.Uint32(datum.Value[0:4])
  2175. case nl.IFLA_GENEVE_REMOTE, nl.IFLA_GENEVE_REMOTE6:
  2176. geneve.Remote = datum.Value
  2177. case nl.IFLA_GENEVE_PORT:
  2178. geneve.Dport = ntohs(datum.Value[0:2])
  2179. case nl.IFLA_GENEVE_TTL:
  2180. geneve.Ttl = uint8(datum.Value[0])
  2181. case nl.IFLA_GENEVE_TOS:
  2182. geneve.Tos = uint8(datum.Value[0])
  2183. }
  2184. }
  2185. }
  2186. func addGretapAttrs(gretap *Gretap, linkInfo *nl.RtAttr) {
  2187. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2188. if gretap.FlowBased {
  2189. // In flow based mode, no other attributes need to be configured
  2190. data.AddRtAttr(nl.IFLA_GRE_COLLECT_METADATA, boolAttr(gretap.FlowBased))
  2191. return
  2192. }
  2193. if ip := gretap.Local; ip != nil {
  2194. if ip.To4() != nil {
  2195. ip = ip.To4()
  2196. }
  2197. data.AddRtAttr(nl.IFLA_GRE_LOCAL, []byte(ip))
  2198. }
  2199. if ip := gretap.Remote; ip != nil {
  2200. if ip.To4() != nil {
  2201. ip = ip.To4()
  2202. }
  2203. data.AddRtAttr(nl.IFLA_GRE_REMOTE, []byte(ip))
  2204. }
  2205. if gretap.IKey != 0 {
  2206. data.AddRtAttr(nl.IFLA_GRE_IKEY, htonl(gretap.IKey))
  2207. gretap.IFlags |= uint16(nl.GRE_KEY)
  2208. }
  2209. if gretap.OKey != 0 {
  2210. data.AddRtAttr(nl.IFLA_GRE_OKEY, htonl(gretap.OKey))
  2211. gretap.OFlags |= uint16(nl.GRE_KEY)
  2212. }
  2213. data.AddRtAttr(nl.IFLA_GRE_IFLAGS, htons(gretap.IFlags))
  2214. data.AddRtAttr(nl.IFLA_GRE_OFLAGS, htons(gretap.OFlags))
  2215. if gretap.Link != 0 {
  2216. data.AddRtAttr(nl.IFLA_GRE_LINK, nl.Uint32Attr(gretap.Link))
  2217. }
  2218. data.AddRtAttr(nl.IFLA_GRE_PMTUDISC, nl.Uint8Attr(gretap.PMtuDisc))
  2219. data.AddRtAttr(nl.IFLA_GRE_TTL, nl.Uint8Attr(gretap.Ttl))
  2220. data.AddRtAttr(nl.IFLA_GRE_TOS, nl.Uint8Attr(gretap.Tos))
  2221. data.AddRtAttr(nl.IFLA_GRE_ENCAP_TYPE, nl.Uint16Attr(gretap.EncapType))
  2222. data.AddRtAttr(nl.IFLA_GRE_ENCAP_FLAGS, nl.Uint16Attr(gretap.EncapFlags))
  2223. data.AddRtAttr(nl.IFLA_GRE_ENCAP_SPORT, htons(gretap.EncapSport))
  2224. data.AddRtAttr(nl.IFLA_GRE_ENCAP_DPORT, htons(gretap.EncapDport))
  2225. }
  2226. func parseGretapData(link Link, data []syscall.NetlinkRouteAttr) {
  2227. gre := link.(*Gretap)
  2228. for _, datum := range data {
  2229. switch datum.Attr.Type {
  2230. case nl.IFLA_GRE_OKEY:
  2231. gre.IKey = ntohl(datum.Value[0:4])
  2232. case nl.IFLA_GRE_IKEY:
  2233. gre.OKey = ntohl(datum.Value[0:4])
  2234. case nl.IFLA_GRE_LOCAL:
  2235. gre.Local = net.IP(datum.Value)
  2236. case nl.IFLA_GRE_REMOTE:
  2237. gre.Remote = net.IP(datum.Value)
  2238. case nl.IFLA_GRE_ENCAP_SPORT:
  2239. gre.EncapSport = ntohs(datum.Value[0:2])
  2240. case nl.IFLA_GRE_ENCAP_DPORT:
  2241. gre.EncapDport = ntohs(datum.Value[0:2])
  2242. case nl.IFLA_GRE_IFLAGS:
  2243. gre.IFlags = ntohs(datum.Value[0:2])
  2244. case nl.IFLA_GRE_OFLAGS:
  2245. gre.OFlags = ntohs(datum.Value[0:2])
  2246. case nl.IFLA_GRE_TTL:
  2247. gre.Ttl = uint8(datum.Value[0])
  2248. case nl.IFLA_GRE_TOS:
  2249. gre.Tos = uint8(datum.Value[0])
  2250. case nl.IFLA_GRE_PMTUDISC:
  2251. gre.PMtuDisc = uint8(datum.Value[0])
  2252. case nl.IFLA_GRE_ENCAP_TYPE:
  2253. gre.EncapType = native.Uint16(datum.Value[0:2])
  2254. case nl.IFLA_GRE_ENCAP_FLAGS:
  2255. gre.EncapFlags = native.Uint16(datum.Value[0:2])
  2256. case nl.IFLA_GRE_COLLECT_METADATA:
  2257. gre.FlowBased = true
  2258. }
  2259. }
  2260. }
  2261. func addGretunAttrs(gre *Gretun, linkInfo *nl.RtAttr) {
  2262. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2263. if ip := gre.Local; ip != nil {
  2264. if ip.To4() != nil {
  2265. ip = ip.To4()
  2266. }
  2267. data.AddRtAttr(nl.IFLA_GRE_LOCAL, []byte(ip))
  2268. }
  2269. if ip := gre.Remote; ip != nil {
  2270. if ip.To4() != nil {
  2271. ip = ip.To4()
  2272. }
  2273. data.AddRtAttr(nl.IFLA_GRE_REMOTE, []byte(ip))
  2274. }
  2275. if gre.IKey != 0 {
  2276. data.AddRtAttr(nl.IFLA_GRE_IKEY, htonl(gre.IKey))
  2277. gre.IFlags |= uint16(nl.GRE_KEY)
  2278. }
  2279. if gre.OKey != 0 {
  2280. data.AddRtAttr(nl.IFLA_GRE_OKEY, htonl(gre.OKey))
  2281. gre.OFlags |= uint16(nl.GRE_KEY)
  2282. }
  2283. data.AddRtAttr(nl.IFLA_GRE_IFLAGS, htons(gre.IFlags))
  2284. data.AddRtAttr(nl.IFLA_GRE_OFLAGS, htons(gre.OFlags))
  2285. if gre.Link != 0 {
  2286. data.AddRtAttr(nl.IFLA_GRE_LINK, nl.Uint32Attr(gre.Link))
  2287. }
  2288. data.AddRtAttr(nl.IFLA_GRE_PMTUDISC, nl.Uint8Attr(gre.PMtuDisc))
  2289. data.AddRtAttr(nl.IFLA_GRE_TTL, nl.Uint8Attr(gre.Ttl))
  2290. data.AddRtAttr(nl.IFLA_GRE_TOS, nl.Uint8Attr(gre.Tos))
  2291. data.AddRtAttr(nl.IFLA_GRE_ENCAP_TYPE, nl.Uint16Attr(gre.EncapType))
  2292. data.AddRtAttr(nl.IFLA_GRE_ENCAP_FLAGS, nl.Uint16Attr(gre.EncapFlags))
  2293. data.AddRtAttr(nl.IFLA_GRE_ENCAP_SPORT, htons(gre.EncapSport))
  2294. data.AddRtAttr(nl.IFLA_GRE_ENCAP_DPORT, htons(gre.EncapDport))
  2295. }
  2296. func parseGretunData(link Link, data []syscall.NetlinkRouteAttr) {
  2297. gre := link.(*Gretun)
  2298. for _, datum := range data {
  2299. switch datum.Attr.Type {
  2300. case nl.IFLA_GRE_IKEY:
  2301. gre.IKey = ntohl(datum.Value[0:4])
  2302. case nl.IFLA_GRE_OKEY:
  2303. gre.OKey = ntohl(datum.Value[0:4])
  2304. case nl.IFLA_GRE_LOCAL:
  2305. gre.Local = net.IP(datum.Value)
  2306. case nl.IFLA_GRE_REMOTE:
  2307. gre.Remote = net.IP(datum.Value)
  2308. case nl.IFLA_GRE_IFLAGS:
  2309. gre.IFlags = ntohs(datum.Value[0:2])
  2310. case nl.IFLA_GRE_OFLAGS:
  2311. gre.OFlags = ntohs(datum.Value[0:2])
  2312. case nl.IFLA_GRE_TTL:
  2313. gre.Ttl = uint8(datum.Value[0])
  2314. case nl.IFLA_GRE_TOS:
  2315. gre.Tos = uint8(datum.Value[0])
  2316. case nl.IFLA_GRE_PMTUDISC:
  2317. gre.PMtuDisc = uint8(datum.Value[0])
  2318. case nl.IFLA_GRE_ENCAP_TYPE:
  2319. gre.EncapType = native.Uint16(datum.Value[0:2])
  2320. case nl.IFLA_GRE_ENCAP_FLAGS:
  2321. gre.EncapFlags = native.Uint16(datum.Value[0:2])
  2322. case nl.IFLA_GRE_ENCAP_SPORT:
  2323. gre.EncapSport = ntohs(datum.Value[0:2])
  2324. case nl.IFLA_GRE_ENCAP_DPORT:
  2325. gre.EncapDport = ntohs(datum.Value[0:2])
  2326. }
  2327. }
  2328. }
  2329. func addXdpAttrs(xdp *LinkXdp, req *nl.NetlinkRequest) {
  2330. attrs := nl.NewRtAttr(unix.IFLA_XDP|unix.NLA_F_NESTED, nil)
  2331. b := make([]byte, 4)
  2332. native.PutUint32(b, uint32(xdp.Fd))
  2333. attrs.AddRtAttr(nl.IFLA_XDP_FD, b)
  2334. if xdp.Flags != 0 {
  2335. b := make([]byte, 4)
  2336. native.PutUint32(b, xdp.Flags)
  2337. attrs.AddRtAttr(nl.IFLA_XDP_FLAGS, b)
  2338. }
  2339. req.AddData(attrs)
  2340. }
  2341. func parseLinkXdp(data []byte) (*LinkXdp, error) {
  2342. attrs, err := nl.ParseRouteAttr(data)
  2343. if err != nil {
  2344. return nil, err
  2345. }
  2346. xdp := &LinkXdp{}
  2347. for _, attr := range attrs {
  2348. switch attr.Attr.Type {
  2349. case nl.IFLA_XDP_FD:
  2350. xdp.Fd = int(native.Uint32(attr.Value[0:4]))
  2351. case nl.IFLA_XDP_ATTACHED:
  2352. xdp.AttachMode = uint32(attr.Value[0])
  2353. xdp.Attached = xdp.AttachMode != 0
  2354. case nl.IFLA_XDP_FLAGS:
  2355. xdp.Flags = native.Uint32(attr.Value[0:4])
  2356. case nl.IFLA_XDP_PROG_ID:
  2357. xdp.ProgId = native.Uint32(attr.Value[0:4])
  2358. }
  2359. }
  2360. return xdp, nil
  2361. }
  2362. func addIptunAttrs(iptun *Iptun, linkInfo *nl.RtAttr) {
  2363. if iptun.FlowBased {
  2364. // In flow based mode, no other attributes need to be configured
  2365. linkInfo.AddRtAttr(nl.IFLA_IPTUN_COLLECT_METADATA, boolAttr(iptun.FlowBased))
  2366. return
  2367. }
  2368. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2369. ip := iptun.Local.To4()
  2370. if ip != nil {
  2371. data.AddRtAttr(nl.IFLA_IPTUN_LOCAL, []byte(ip))
  2372. }
  2373. ip = iptun.Remote.To4()
  2374. if ip != nil {
  2375. data.AddRtAttr(nl.IFLA_IPTUN_REMOTE, []byte(ip))
  2376. }
  2377. if iptun.Link != 0 {
  2378. data.AddRtAttr(nl.IFLA_IPTUN_LINK, nl.Uint32Attr(iptun.Link))
  2379. }
  2380. data.AddRtAttr(nl.IFLA_IPTUN_PMTUDISC, nl.Uint8Attr(iptun.PMtuDisc))
  2381. data.AddRtAttr(nl.IFLA_IPTUN_TTL, nl.Uint8Attr(iptun.Ttl))
  2382. data.AddRtAttr(nl.IFLA_IPTUN_TOS, nl.Uint8Attr(iptun.Tos))
  2383. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_TYPE, nl.Uint16Attr(iptun.EncapType))
  2384. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_FLAGS, nl.Uint16Attr(iptun.EncapFlags))
  2385. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_SPORT, htons(iptun.EncapSport))
  2386. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_DPORT, htons(iptun.EncapDport))
  2387. }
  2388. func parseIptunData(link Link, data []syscall.NetlinkRouteAttr) {
  2389. iptun := link.(*Iptun)
  2390. for _, datum := range data {
  2391. switch datum.Attr.Type {
  2392. case nl.IFLA_IPTUN_LOCAL:
  2393. iptun.Local = net.IP(datum.Value[0:4])
  2394. case nl.IFLA_IPTUN_REMOTE:
  2395. iptun.Remote = net.IP(datum.Value[0:4])
  2396. case nl.IFLA_IPTUN_TTL:
  2397. iptun.Ttl = uint8(datum.Value[0])
  2398. case nl.IFLA_IPTUN_TOS:
  2399. iptun.Tos = uint8(datum.Value[0])
  2400. case nl.IFLA_IPTUN_PMTUDISC:
  2401. iptun.PMtuDisc = uint8(datum.Value[0])
  2402. case nl.IFLA_IPTUN_ENCAP_SPORT:
  2403. iptun.EncapSport = ntohs(datum.Value[0:2])
  2404. case nl.IFLA_IPTUN_ENCAP_DPORT:
  2405. iptun.EncapDport = ntohs(datum.Value[0:2])
  2406. case nl.IFLA_IPTUN_ENCAP_TYPE:
  2407. iptun.EncapType = native.Uint16(datum.Value[0:2])
  2408. case nl.IFLA_IPTUN_ENCAP_FLAGS:
  2409. iptun.EncapFlags = native.Uint16(datum.Value[0:2])
  2410. case nl.IFLA_IPTUN_COLLECT_METADATA:
  2411. iptun.FlowBased = true
  2412. }
  2413. }
  2414. }
  2415. func addIp6tnlAttrs(ip6tnl *Ip6tnl, linkInfo *nl.RtAttr) {
  2416. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2417. if ip6tnl.Link != 0 {
  2418. data.AddRtAttr(nl.IFLA_IPTUN_LINK, nl.Uint32Attr(ip6tnl.Link))
  2419. }
  2420. ip := ip6tnl.Local.To16()
  2421. if ip != nil {
  2422. data.AddRtAttr(nl.IFLA_IPTUN_LOCAL, []byte(ip))
  2423. }
  2424. ip = ip6tnl.Remote.To16()
  2425. if ip != nil {
  2426. data.AddRtAttr(nl.IFLA_IPTUN_REMOTE, []byte(ip))
  2427. }
  2428. data.AddRtAttr(nl.IFLA_IPTUN_TTL, nl.Uint8Attr(ip6tnl.Ttl))
  2429. data.AddRtAttr(nl.IFLA_IPTUN_TOS, nl.Uint8Attr(ip6tnl.Tos))
  2430. data.AddRtAttr(nl.IFLA_IPTUN_FLAGS, nl.Uint32Attr(ip6tnl.Flags))
  2431. data.AddRtAttr(nl.IFLA_IPTUN_PROTO, nl.Uint8Attr(ip6tnl.Proto))
  2432. data.AddRtAttr(nl.IFLA_IPTUN_FLOWINFO, nl.Uint32Attr(ip6tnl.FlowInfo))
  2433. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_LIMIT, nl.Uint8Attr(ip6tnl.EncapLimit))
  2434. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_TYPE, nl.Uint16Attr(ip6tnl.EncapType))
  2435. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_FLAGS, nl.Uint16Attr(ip6tnl.EncapFlags))
  2436. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_SPORT, htons(ip6tnl.EncapSport))
  2437. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_DPORT, htons(ip6tnl.EncapDport))
  2438. }
  2439. func parseIp6tnlData(link Link, data []syscall.NetlinkRouteAttr) {
  2440. ip6tnl := link.(*Ip6tnl)
  2441. for _, datum := range data {
  2442. switch datum.Attr.Type {
  2443. case nl.IFLA_IPTUN_LOCAL:
  2444. ip6tnl.Local = net.IP(datum.Value[:16])
  2445. case nl.IFLA_IPTUN_REMOTE:
  2446. ip6tnl.Remote = net.IP(datum.Value[:16])
  2447. case nl.IFLA_IPTUN_TTL:
  2448. ip6tnl.Ttl = datum.Value[0]
  2449. case nl.IFLA_IPTUN_TOS:
  2450. ip6tnl.Tos = datum.Value[0]
  2451. case nl.IFLA_IPTUN_FLAGS:
  2452. ip6tnl.Flags = native.Uint32(datum.Value[:4])
  2453. case nl.IFLA_IPTUN_PROTO:
  2454. ip6tnl.Proto = datum.Value[0]
  2455. case nl.IFLA_IPTUN_FLOWINFO:
  2456. ip6tnl.FlowInfo = native.Uint32(datum.Value[:4])
  2457. case nl.IFLA_IPTUN_ENCAP_LIMIT:
  2458. ip6tnl.EncapLimit = datum.Value[0]
  2459. case nl.IFLA_IPTUN_ENCAP_TYPE:
  2460. ip6tnl.EncapType = native.Uint16(datum.Value[0:2])
  2461. case nl.IFLA_IPTUN_ENCAP_FLAGS:
  2462. ip6tnl.EncapFlags = native.Uint16(datum.Value[0:2])
  2463. case nl.IFLA_IPTUN_ENCAP_SPORT:
  2464. ip6tnl.EncapSport = ntohs(datum.Value[0:2])
  2465. case nl.IFLA_IPTUN_ENCAP_DPORT:
  2466. ip6tnl.EncapDport = ntohs(datum.Value[0:2])
  2467. }
  2468. }
  2469. }
  2470. func addSittunAttrs(sittun *Sittun, linkInfo *nl.RtAttr) {
  2471. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2472. if sittun.Link != 0 {
  2473. data.AddRtAttr(nl.IFLA_IPTUN_LINK, nl.Uint32Attr(sittun.Link))
  2474. }
  2475. ip := sittun.Local.To4()
  2476. if ip != nil {
  2477. data.AddRtAttr(nl.IFLA_IPTUN_LOCAL, []byte(ip))
  2478. }
  2479. ip = sittun.Remote.To4()
  2480. if ip != nil {
  2481. data.AddRtAttr(nl.IFLA_IPTUN_REMOTE, []byte(ip))
  2482. }
  2483. if sittun.Ttl > 0 {
  2484. // Would otherwise fail on 3.10 kernel
  2485. data.AddRtAttr(nl.IFLA_IPTUN_TTL, nl.Uint8Attr(sittun.Ttl))
  2486. }
  2487. data.AddRtAttr(nl.IFLA_IPTUN_PROTO, nl.Uint8Attr(sittun.Proto))
  2488. data.AddRtAttr(nl.IFLA_IPTUN_TOS, nl.Uint8Attr(sittun.Tos))
  2489. data.AddRtAttr(nl.IFLA_IPTUN_PMTUDISC, nl.Uint8Attr(sittun.PMtuDisc))
  2490. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_LIMIT, nl.Uint8Attr(sittun.EncapLimit))
  2491. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_TYPE, nl.Uint16Attr(sittun.EncapType))
  2492. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_FLAGS, nl.Uint16Attr(sittun.EncapFlags))
  2493. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_SPORT, htons(sittun.EncapSport))
  2494. data.AddRtAttr(nl.IFLA_IPTUN_ENCAP_DPORT, htons(sittun.EncapDport))
  2495. }
  2496. func parseSittunData(link Link, data []syscall.NetlinkRouteAttr) {
  2497. sittun := link.(*Sittun)
  2498. for _, datum := range data {
  2499. switch datum.Attr.Type {
  2500. case nl.IFLA_IPTUN_LOCAL:
  2501. sittun.Local = net.IP(datum.Value[0:4])
  2502. case nl.IFLA_IPTUN_REMOTE:
  2503. sittun.Remote = net.IP(datum.Value[0:4])
  2504. case nl.IFLA_IPTUN_TTL:
  2505. sittun.Ttl = datum.Value[0]
  2506. case nl.IFLA_IPTUN_TOS:
  2507. sittun.Tos = datum.Value[0]
  2508. case nl.IFLA_IPTUN_PMTUDISC:
  2509. sittun.PMtuDisc = datum.Value[0]
  2510. case nl.IFLA_IPTUN_PROTO:
  2511. sittun.Proto = datum.Value[0]
  2512. case nl.IFLA_IPTUN_ENCAP_TYPE:
  2513. sittun.EncapType = native.Uint16(datum.Value[0:2])
  2514. case nl.IFLA_IPTUN_ENCAP_FLAGS:
  2515. sittun.EncapFlags = native.Uint16(datum.Value[0:2])
  2516. case nl.IFLA_IPTUN_ENCAP_SPORT:
  2517. sittun.EncapSport = ntohs(datum.Value[0:2])
  2518. case nl.IFLA_IPTUN_ENCAP_DPORT:
  2519. sittun.EncapDport = ntohs(datum.Value[0:2])
  2520. }
  2521. }
  2522. }
  2523. func addVtiAttrs(vti *Vti, linkInfo *nl.RtAttr) {
  2524. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2525. family := FAMILY_V4
  2526. if vti.Local.To4() == nil {
  2527. family = FAMILY_V6
  2528. }
  2529. var ip net.IP
  2530. if family == FAMILY_V4 {
  2531. ip = vti.Local.To4()
  2532. } else {
  2533. ip = vti.Local
  2534. }
  2535. if ip != nil {
  2536. data.AddRtAttr(nl.IFLA_VTI_LOCAL, []byte(ip))
  2537. }
  2538. if family == FAMILY_V4 {
  2539. ip = vti.Remote.To4()
  2540. } else {
  2541. ip = vti.Remote
  2542. }
  2543. if ip != nil {
  2544. data.AddRtAttr(nl.IFLA_VTI_REMOTE, []byte(ip))
  2545. }
  2546. if vti.Link != 0 {
  2547. data.AddRtAttr(nl.IFLA_VTI_LINK, nl.Uint32Attr(vti.Link))
  2548. }
  2549. data.AddRtAttr(nl.IFLA_VTI_IKEY, htonl(vti.IKey))
  2550. data.AddRtAttr(nl.IFLA_VTI_OKEY, htonl(vti.OKey))
  2551. }
  2552. func parseVtiData(link Link, data []syscall.NetlinkRouteAttr) {
  2553. vti := link.(*Vti)
  2554. for _, datum := range data {
  2555. switch datum.Attr.Type {
  2556. case nl.IFLA_VTI_LOCAL:
  2557. vti.Local = net.IP(datum.Value)
  2558. case nl.IFLA_VTI_REMOTE:
  2559. vti.Remote = net.IP(datum.Value)
  2560. case nl.IFLA_VTI_IKEY:
  2561. vti.IKey = ntohl(datum.Value[0:4])
  2562. case nl.IFLA_VTI_OKEY:
  2563. vti.OKey = ntohl(datum.Value[0:4])
  2564. }
  2565. }
  2566. }
  2567. func addVrfAttrs(vrf *Vrf, linkInfo *nl.RtAttr) {
  2568. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2569. b := make([]byte, 4)
  2570. native.PutUint32(b, uint32(vrf.Table))
  2571. data.AddRtAttr(nl.IFLA_VRF_TABLE, b)
  2572. }
  2573. func parseVrfData(link Link, data []syscall.NetlinkRouteAttr) {
  2574. vrf := link.(*Vrf)
  2575. for _, datum := range data {
  2576. switch datum.Attr.Type {
  2577. case nl.IFLA_VRF_TABLE:
  2578. vrf.Table = native.Uint32(datum.Value[0:4])
  2579. }
  2580. }
  2581. }
  2582. func addBridgeAttrs(bridge *Bridge, linkInfo *nl.RtAttr) {
  2583. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2584. if bridge.MulticastSnooping != nil {
  2585. data.AddRtAttr(nl.IFLA_BR_MCAST_SNOOPING, boolToByte(*bridge.MulticastSnooping))
  2586. }
  2587. if bridge.AgeingTime != nil {
  2588. data.AddRtAttr(nl.IFLA_BR_AGEING_TIME, nl.Uint32Attr(*bridge.AgeingTime))
  2589. }
  2590. if bridge.HelloTime != nil {
  2591. data.AddRtAttr(nl.IFLA_BR_HELLO_TIME, nl.Uint32Attr(*bridge.HelloTime))
  2592. }
  2593. if bridge.VlanFiltering != nil {
  2594. data.AddRtAttr(nl.IFLA_BR_VLAN_FILTERING, boolToByte(*bridge.VlanFiltering))
  2595. }
  2596. }
  2597. func parseBridgeData(bridge Link, data []syscall.NetlinkRouteAttr) {
  2598. br := bridge.(*Bridge)
  2599. for _, datum := range data {
  2600. switch datum.Attr.Type {
  2601. case nl.IFLA_BR_AGEING_TIME:
  2602. ageingTime := native.Uint32(datum.Value[0:4])
  2603. br.AgeingTime = &ageingTime
  2604. case nl.IFLA_BR_HELLO_TIME:
  2605. helloTime := native.Uint32(datum.Value[0:4])
  2606. br.HelloTime = &helloTime
  2607. case nl.IFLA_BR_MCAST_SNOOPING:
  2608. mcastSnooping := datum.Value[0] == 1
  2609. br.MulticastSnooping = &mcastSnooping
  2610. case nl.IFLA_BR_VLAN_FILTERING:
  2611. vlanFiltering := datum.Value[0] == 1
  2612. br.VlanFiltering = &vlanFiltering
  2613. }
  2614. }
  2615. }
  2616. func addGTPAttrs(gtp *GTP, linkInfo *nl.RtAttr) {
  2617. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2618. data.AddRtAttr(nl.IFLA_GTP_FD0, nl.Uint32Attr(uint32(gtp.FD0)))
  2619. data.AddRtAttr(nl.IFLA_GTP_FD1, nl.Uint32Attr(uint32(gtp.FD1)))
  2620. data.AddRtAttr(nl.IFLA_GTP_PDP_HASHSIZE, nl.Uint32Attr(131072))
  2621. if gtp.Role != nl.GTP_ROLE_GGSN {
  2622. data.AddRtAttr(nl.IFLA_GTP_ROLE, nl.Uint32Attr(uint32(gtp.Role)))
  2623. }
  2624. }
  2625. func parseGTPData(link Link, data []syscall.NetlinkRouteAttr) {
  2626. gtp := link.(*GTP)
  2627. for _, datum := range data {
  2628. switch datum.Attr.Type {
  2629. case nl.IFLA_GTP_FD0:
  2630. gtp.FD0 = int(native.Uint32(datum.Value))
  2631. case nl.IFLA_GTP_FD1:
  2632. gtp.FD1 = int(native.Uint32(datum.Value))
  2633. case nl.IFLA_GTP_PDP_HASHSIZE:
  2634. gtp.PDPHashsize = int(native.Uint32(datum.Value))
  2635. case nl.IFLA_GTP_ROLE:
  2636. gtp.Role = int(native.Uint32(datum.Value))
  2637. }
  2638. }
  2639. }
  2640. func parseVfInfoList(data []syscall.NetlinkRouteAttr) ([]VfInfo, error) {
  2641. var vfs []VfInfo
  2642. for i, element := range data {
  2643. if element.Attr.Type != nl.IFLA_VF_INFO {
  2644. return nil, fmt.Errorf("Incorrect element type in vf info list: %d", element.Attr.Type)
  2645. }
  2646. vfAttrs, err := nl.ParseRouteAttr(element.Value)
  2647. if err != nil {
  2648. return nil, err
  2649. }
  2650. vfs = append(vfs, parseVfInfo(vfAttrs, i))
  2651. }
  2652. return vfs, nil
  2653. }
  2654. func parseVfInfo(data []syscall.NetlinkRouteAttr, id int) VfInfo {
  2655. vf := VfInfo{ID: id}
  2656. for _, element := range data {
  2657. switch element.Attr.Type {
  2658. case nl.IFLA_VF_MAC:
  2659. mac := nl.DeserializeVfMac(element.Value[:])
  2660. vf.Mac = mac.Mac[:6]
  2661. case nl.IFLA_VF_VLAN:
  2662. vl := nl.DeserializeVfVlan(element.Value[:])
  2663. vf.Vlan = int(vl.Vlan)
  2664. vf.Qos = int(vl.Qos)
  2665. case nl.IFLA_VF_TX_RATE:
  2666. txr := nl.DeserializeVfTxRate(element.Value[:])
  2667. vf.TxRate = int(txr.Rate)
  2668. case nl.IFLA_VF_SPOOFCHK:
  2669. sp := nl.DeserializeVfSpoofchk(element.Value[:])
  2670. vf.Spoofchk = sp.Setting != 0
  2671. case nl.IFLA_VF_LINK_STATE:
  2672. ls := nl.DeserializeVfLinkState(element.Value[:])
  2673. vf.LinkState = ls.LinkState
  2674. case nl.IFLA_VF_RATE:
  2675. vfr := nl.DeserializeVfRate(element.Value[:])
  2676. vf.MaxTxRate = vfr.MaxTxRate
  2677. vf.MinTxRate = vfr.MinTxRate
  2678. case nl.IFLA_VF_STATS:
  2679. vfstats := nl.DeserializeVfStats(element.Value[:])
  2680. vf.RxPackets = vfstats.RxPackets
  2681. vf.TxPackets = vfstats.TxPackets
  2682. vf.RxBytes = vfstats.RxBytes
  2683. vf.TxBytes = vfstats.TxBytes
  2684. vf.Multicast = vfstats.Multicast
  2685. vf.Broadcast = vfstats.Broadcast
  2686. vf.RxDropped = vfstats.RxDropped
  2687. vf.TxDropped = vfstats.TxDropped
  2688. case nl.IFLA_VF_RSS_QUERY_EN:
  2689. result := nl.DeserializeVfRssQueryEn(element.Value)
  2690. vf.RssQuery = result.Setting
  2691. case nl.IFLA_VF_TRUST:
  2692. result := nl.DeserializeVfTrust(element.Value)
  2693. vf.Trust = result.Setting
  2694. }
  2695. }
  2696. return vf
  2697. }
  2698. func addXfrmiAttrs(xfrmi *Xfrmi, linkInfo *nl.RtAttr) {
  2699. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2700. data.AddRtAttr(nl.IFLA_XFRM_LINK, nl.Uint32Attr(uint32(xfrmi.ParentIndex)))
  2701. data.AddRtAttr(nl.IFLA_XFRM_IF_ID, nl.Uint32Attr(xfrmi.Ifid))
  2702. }
  2703. func parseXfrmiData(link Link, data []syscall.NetlinkRouteAttr) {
  2704. xfrmi := link.(*Xfrmi)
  2705. for _, datum := range data {
  2706. switch datum.Attr.Type {
  2707. case nl.IFLA_XFRM_LINK:
  2708. xfrmi.ParentIndex = int(native.Uint32(datum.Value))
  2709. case nl.IFLA_XFRM_IF_ID:
  2710. xfrmi.Ifid = native.Uint32(datum.Value)
  2711. }
  2712. }
  2713. }
  2714. // LinkSetBondSlave add slave to bond link via ioctl interface.
  2715. func LinkSetBondSlave(link Link, master *Bond) error {
  2716. fd, err := getSocketUDP()
  2717. if err != nil {
  2718. return err
  2719. }
  2720. defer syscall.Close(fd)
  2721. ifreq := newIocltSlaveReq(link.Attrs().Name, master.Attrs().Name)
  2722. _, _, errno := syscall.Syscall(syscall.SYS_IOCTL, uintptr(fd), unix.SIOCBONDENSLAVE, uintptr(unsafe.Pointer(ifreq)))
  2723. if errno != 0 {
  2724. return fmt.Errorf("Failed to enslave %q to %q, errno=%v", link.Attrs().Name, master.Attrs().Name, errno)
  2725. }
  2726. return nil
  2727. }
  2728. // LinkSetBondSlaveQueueId modify bond slave queue-id.
  2729. func (h *Handle) LinkSetBondSlaveQueueId(link Link, queueId uint16) error {
  2730. base := link.Attrs()
  2731. h.ensureIndex(base)
  2732. req := h.newNetlinkRequest(unix.RTM_SETLINK, unix.NLM_F_ACK)
  2733. msg := nl.NewIfInfomsg(unix.AF_UNSPEC)
  2734. msg.Index = int32(base.Index)
  2735. req.AddData(msg)
  2736. linkInfo := nl.NewRtAttr(unix.IFLA_LINKINFO, nil)
  2737. data := linkInfo.AddRtAttr(nl.IFLA_INFO_SLAVE_DATA, nil)
  2738. data.AddRtAttr(nl.IFLA_BOND_SLAVE_QUEUE_ID, nl.Uint16Attr(queueId))
  2739. req.AddData(linkInfo)
  2740. _, err := req.Execute(unix.NETLINK_ROUTE, 0)
  2741. return err
  2742. }
  2743. // LinkSetBondSlaveQueueId modify bond slave queue-id.
  2744. func LinkSetBondSlaveQueueId(link Link, queueId uint16) error {
  2745. return pkgHandle.LinkSetBondSlaveQueueId(link, queueId)
  2746. }
  2747. func vethStatsSerialize(stats ethtoolStats) ([]byte, error) {
  2748. statsSize := int(unsafe.Sizeof(stats)) + int(stats.nStats)*int(unsafe.Sizeof(uint64(0)))
  2749. b := make([]byte, 0, statsSize)
  2750. buf := bytes.NewBuffer(b)
  2751. err := binary.Write(buf, nl.NativeEndian(), stats)
  2752. return buf.Bytes()[:statsSize], err
  2753. }
  2754. type vethEthtoolStats struct {
  2755. Cmd uint32
  2756. NStats uint32
  2757. Peer uint64
  2758. // Newer kernels have XDP stats in here, but we only care
  2759. // to extract the peer ifindex here.
  2760. }
  2761. func vethStatsDeserialize(b []byte) (vethEthtoolStats, error) {
  2762. var stats = vethEthtoolStats{}
  2763. err := binary.Read(bytes.NewReader(b), nl.NativeEndian(), &stats)
  2764. return stats, err
  2765. }
  2766. // VethPeerIndex get veth peer index.
  2767. func VethPeerIndex(link *Veth) (int, error) {
  2768. fd, err := getSocketUDP()
  2769. if err != nil {
  2770. return -1, err
  2771. }
  2772. defer syscall.Close(fd)
  2773. ifreq, sSet := newIocltStringSetReq(link.Name)
  2774. _, _, errno := syscall.Syscall(syscall.SYS_IOCTL, uintptr(fd), SIOCETHTOOL, uintptr(unsafe.Pointer(ifreq)))
  2775. if errno != 0 {
  2776. return -1, fmt.Errorf("SIOCETHTOOL request for %q failed, errno=%v", link.Attrs().Name, errno)
  2777. }
  2778. stats := ethtoolStats{
  2779. cmd: ETHTOOL_GSTATS,
  2780. nStats: sSet.data[0],
  2781. }
  2782. buffer, err := vethStatsSerialize(stats)
  2783. if err != nil {
  2784. return -1, err
  2785. }
  2786. ifreq.Data = uintptr(unsafe.Pointer(&buffer[0]))
  2787. _, _, errno = syscall.Syscall(syscall.SYS_IOCTL, uintptr(fd), SIOCETHTOOL, uintptr(unsafe.Pointer(ifreq)))
  2788. if errno != 0 {
  2789. return -1, fmt.Errorf("SIOCETHTOOL request for %q failed, errno=%v", link.Attrs().Name, errno)
  2790. }
  2791. vstats, err := vethStatsDeserialize(buffer)
  2792. if err != nil {
  2793. return -1, err
  2794. }
  2795. return int(vstats.Peer), nil
  2796. }
  2797. func parseTuntapData(link Link, data []syscall.NetlinkRouteAttr) {
  2798. tuntap := link.(*Tuntap)
  2799. for _, datum := range data {
  2800. switch datum.Attr.Type {
  2801. case nl.IFLA_TUN_OWNER:
  2802. tuntap.Owner = native.Uint32(datum.Value)
  2803. case nl.IFLA_TUN_GROUP:
  2804. tuntap.Group = native.Uint32(datum.Value)
  2805. case nl.IFLA_TUN_TYPE:
  2806. tuntap.Mode = TuntapMode(uint8(datum.Value[0]))
  2807. case nl.IFLA_TUN_PERSIST:
  2808. tuntap.NonPersist = false
  2809. if uint8(datum.Value[0]) == 0 {
  2810. tuntap.NonPersist = true
  2811. }
  2812. }
  2813. }
  2814. }
  2815. func parseIPoIBData(link Link, data []syscall.NetlinkRouteAttr) {
  2816. ipoib := link.(*IPoIB)
  2817. for _, datum := range data {
  2818. switch datum.Attr.Type {
  2819. case nl.IFLA_IPOIB_PKEY:
  2820. ipoib.Pkey = uint16(native.Uint16(datum.Value))
  2821. case nl.IFLA_IPOIB_MODE:
  2822. ipoib.Mode = IPoIBMode(native.Uint16(datum.Value))
  2823. case nl.IFLA_IPOIB_UMCAST:
  2824. ipoib.Umcast = uint16(native.Uint16(datum.Value))
  2825. }
  2826. }
  2827. }
  2828. func parseCanData(link Link, data []syscall.NetlinkRouteAttr) {
  2829. can := link.(*Can)
  2830. for _, datum := range data {
  2831. switch datum.Attr.Type {
  2832. case nl.IFLA_CAN_BITTIMING:
  2833. can.BitRate = native.Uint32(datum.Value)
  2834. can.SamplePoint = native.Uint32(datum.Value[4:])
  2835. can.TimeQuanta = native.Uint32(datum.Value[8:])
  2836. can.PropagationSegment = native.Uint32(datum.Value[12:])
  2837. can.PhaseSegment1 = native.Uint32(datum.Value[16:])
  2838. can.PhaseSegment2 = native.Uint32(datum.Value[20:])
  2839. can.SyncJumpWidth = native.Uint32(datum.Value[24:])
  2840. can.BitRatePreScaler = native.Uint32(datum.Value[28:])
  2841. case nl.IFLA_CAN_BITTIMING_CONST:
  2842. can.Name = string(datum.Value[:16])
  2843. can.TimeSegment1Min = native.Uint32(datum.Value[16:])
  2844. can.TimeSegment1Max = native.Uint32(datum.Value[20:])
  2845. can.TimeSegment2Min = native.Uint32(datum.Value[24:])
  2846. can.TimeSegment2Max = native.Uint32(datum.Value[28:])
  2847. can.SyncJumpWidthMax = native.Uint32(datum.Value[32:])
  2848. can.BitRatePreScalerMin = native.Uint32(datum.Value[36:])
  2849. can.BitRatePreScalerMax = native.Uint32(datum.Value[40:])
  2850. can.BitRatePreScalerInc = native.Uint32(datum.Value[44:])
  2851. case nl.IFLA_CAN_CLOCK:
  2852. can.ClockFrequency = native.Uint32(datum.Value)
  2853. case nl.IFLA_CAN_STATE:
  2854. can.State = native.Uint32(datum.Value)
  2855. case nl.IFLA_CAN_CTRLMODE:
  2856. can.Mask = native.Uint32(datum.Value)
  2857. can.Flags = native.Uint32(datum.Value[4:])
  2858. case nl.IFLA_CAN_BERR_COUNTER:
  2859. can.TxError = native.Uint16(datum.Value)
  2860. can.RxError = native.Uint16(datum.Value[2:])
  2861. case nl.IFLA_CAN_RESTART_MS:
  2862. can.RestartMs = native.Uint32(datum.Value)
  2863. case nl.IFLA_CAN_DATA_BITTIMING_CONST:
  2864. case nl.IFLA_CAN_RESTART:
  2865. case nl.IFLA_CAN_DATA_BITTIMING:
  2866. case nl.IFLA_CAN_TERMINATION:
  2867. case nl.IFLA_CAN_TERMINATION_CONST:
  2868. case nl.IFLA_CAN_BITRATE_CONST:
  2869. case nl.IFLA_CAN_DATA_BITRATE_CONST:
  2870. case nl.IFLA_CAN_BITRATE_MAX:
  2871. }
  2872. }
  2873. }
  2874. func addIPoIBAttrs(ipoib *IPoIB, linkInfo *nl.RtAttr) {
  2875. data := linkInfo.AddRtAttr(nl.IFLA_INFO_DATA, nil)
  2876. data.AddRtAttr(nl.IFLA_IPOIB_PKEY, nl.Uint16Attr(uint16(ipoib.Pkey)))
  2877. data.AddRtAttr(nl.IFLA_IPOIB_MODE, nl.Uint16Attr(uint16(ipoib.Mode)))
  2878. data.AddRtAttr(nl.IFLA_IPOIB_UMCAST, nl.Uint16Attr(uint16(ipoib.Umcast)))
  2879. }