mirror of https://github.com/vishvananda/netlink
324 lines
8.9 KiB
Go
324 lines
8.9 KiB
Go
package netlink
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import (
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"bytes"
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"fmt"
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"net"
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"github.com/vishvananda/netlink/nl"
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"golang.org/x/sys/unix"
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)
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const FibRuleInvert = 0x2
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// RuleAdd adds a rule to the system.
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// Equivalent to: ip rule add
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func RuleAdd(rule *Rule) error {
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return pkgHandle.RuleAdd(rule)
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}
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// RuleAdd adds a rule to the system.
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// Equivalent to: ip rule add
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func (h *Handle) RuleAdd(rule *Rule) error {
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req := h.newNetlinkRequest(unix.RTM_NEWRULE, unix.NLM_F_CREATE|unix.NLM_F_EXCL|unix.NLM_F_ACK)
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return ruleHandle(rule, req)
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}
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// RuleDel deletes a rule from the system.
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// Equivalent to: ip rule del
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func RuleDel(rule *Rule) error {
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return pkgHandle.RuleDel(rule)
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}
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// RuleDel deletes a rule from the system.
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// Equivalent to: ip rule del
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func (h *Handle) RuleDel(rule *Rule) error {
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req := h.newNetlinkRequest(unix.RTM_DELRULE, unix.NLM_F_ACK)
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return ruleHandle(rule, req)
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}
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func ruleHandle(rule *Rule, req *nl.NetlinkRequest) error {
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msg := nl.NewRtMsg()
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msg.Family = unix.AF_INET
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msg.Protocol = unix.RTPROT_BOOT
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msg.Scope = unix.RT_SCOPE_UNIVERSE
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msg.Table = unix.RT_TABLE_UNSPEC
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msg.Type = unix.RTN_UNSPEC
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if req.NlMsghdr.Flags&unix.NLM_F_CREATE > 0 {
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msg.Type = unix.RTN_UNICAST
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}
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if rule.Invert {
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msg.Flags |= FibRuleInvert
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}
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if rule.Family != 0 {
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msg.Family = uint8(rule.Family)
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}
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if rule.Table >= 0 && rule.Table < 256 {
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msg.Table = uint8(rule.Table)
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}
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if rule.Tos != 0 {
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msg.Tos = uint8(rule.Tos)
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}
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var dstFamily uint8
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var rtAttrs []*nl.RtAttr
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if rule.Dst != nil && rule.Dst.IP != nil {
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dstLen, _ := rule.Dst.Mask.Size()
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msg.Dst_len = uint8(dstLen)
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msg.Family = uint8(nl.GetIPFamily(rule.Dst.IP))
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dstFamily = msg.Family
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var dstData []byte
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if msg.Family == unix.AF_INET {
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dstData = rule.Dst.IP.To4()
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} else {
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dstData = rule.Dst.IP.To16()
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}
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rtAttrs = append(rtAttrs, nl.NewRtAttr(unix.RTA_DST, dstData))
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}
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if rule.Src != nil && rule.Src.IP != nil {
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msg.Family = uint8(nl.GetIPFamily(rule.Src.IP))
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if dstFamily != 0 && dstFamily != msg.Family {
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return fmt.Errorf("source and destination ip are not the same IP family")
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}
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srcLen, _ := rule.Src.Mask.Size()
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msg.Src_len = uint8(srcLen)
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var srcData []byte
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if msg.Family == unix.AF_INET {
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srcData = rule.Src.IP.To4()
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} else {
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srcData = rule.Src.IP.To16()
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}
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rtAttrs = append(rtAttrs, nl.NewRtAttr(unix.RTA_SRC, srcData))
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}
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req.AddData(msg)
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for i := range rtAttrs {
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req.AddData(rtAttrs[i])
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}
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if rule.Priority >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Priority))
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req.AddData(nl.NewRtAttr(nl.FRA_PRIORITY, b))
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}
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if rule.Mark >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Mark))
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req.AddData(nl.NewRtAttr(nl.FRA_FWMARK, b))
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}
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if rule.Mask >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Mask))
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req.AddData(nl.NewRtAttr(nl.FRA_FWMASK, b))
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}
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if rule.Flow >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Flow))
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req.AddData(nl.NewRtAttr(nl.FRA_FLOW, b))
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}
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if rule.TunID > 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.TunID))
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req.AddData(nl.NewRtAttr(nl.FRA_TUN_ID, b))
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}
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if rule.Table >= 256 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Table))
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req.AddData(nl.NewRtAttr(nl.FRA_TABLE, b))
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}
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if msg.Table > 0 {
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if rule.SuppressPrefixlen >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.SuppressPrefixlen))
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req.AddData(nl.NewRtAttr(nl.FRA_SUPPRESS_PREFIXLEN, b))
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}
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if rule.SuppressIfgroup >= 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.SuppressIfgroup))
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req.AddData(nl.NewRtAttr(nl.FRA_SUPPRESS_IFGROUP, b))
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}
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}
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if rule.IifName != "" {
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req.AddData(nl.NewRtAttr(nl.FRA_IIFNAME, []byte(rule.IifName+"\x00")))
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}
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if rule.OifName != "" {
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req.AddData(nl.NewRtAttr(nl.FRA_OIFNAME, []byte(rule.OifName+"\x00")))
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}
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if rule.Goto >= 0 {
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msg.Type = nl.FR_ACT_GOTO
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.Goto))
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req.AddData(nl.NewRtAttr(nl.FRA_GOTO, b))
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}
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if rule.IPProto > 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(rule.IPProto))
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req.AddData(nl.NewRtAttr(nl.FRA_IP_PROTO, b))
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}
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if rule.Dport != nil {
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b := rule.Dport.toRtAttrData()
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req.AddData(nl.NewRtAttr(nl.FRA_DPORT_RANGE, b))
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}
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if rule.Sport != nil {
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b := rule.Sport.toRtAttrData()
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req.AddData(nl.NewRtAttr(nl.FRA_SPORT_RANGE, b))
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}
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if rule.UIDRange != nil {
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b := rule.UIDRange.toRtAttrData()
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req.AddData(nl.NewRtAttr(nl.FRA_UID_RANGE, b))
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}
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if rule.Protocol > 0 {
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req.AddData(nl.NewRtAttr(nl.FRA_PROTOCOL, nl.Uint8Attr(rule.Protocol)))
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}
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_, err := req.Execute(unix.NETLINK_ROUTE, 0)
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return err
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}
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// RuleList lists rules in the system.
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// Equivalent to: ip rule list
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func RuleList(family int) ([]Rule, error) {
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return pkgHandle.RuleList(family)
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}
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// RuleList lists rules in the system.
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// Equivalent to: ip rule list
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func (h *Handle) RuleList(family int) ([]Rule, error) {
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return h.RuleListFiltered(family, nil, 0)
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}
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// RuleListFiltered gets a list of rules in the system filtered by the
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// specified rule template `filter`.
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// Equivalent to: ip rule list
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func RuleListFiltered(family int, filter *Rule, filterMask uint64) ([]Rule, error) {
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return pkgHandle.RuleListFiltered(family, filter, filterMask)
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}
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// RuleListFiltered lists rules in the system.
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// Equivalent to: ip rule list
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func (h *Handle) RuleListFiltered(family int, filter *Rule, filterMask uint64) ([]Rule, error) {
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req := h.newNetlinkRequest(unix.RTM_GETRULE, unix.NLM_F_DUMP|unix.NLM_F_REQUEST)
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msg := nl.NewIfInfomsg(family)
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req.AddData(msg)
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msgs, err := req.Execute(unix.NETLINK_ROUTE, unix.RTM_NEWRULE)
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if err != nil {
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return nil, err
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}
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var res = make([]Rule, 0)
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for i := range msgs {
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msg := nl.DeserializeRtMsg(msgs[i])
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attrs, err := nl.ParseRouteAttr(msgs[i][msg.Len():])
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if err != nil {
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return nil, err
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}
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rule := NewRule()
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rule.Priority = 0 // The default priority from kernel
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rule.Invert = msg.Flags&FibRuleInvert > 0
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rule.Family = int(msg.Family)
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rule.Tos = uint(msg.Tos)
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for j := range attrs {
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switch attrs[j].Attr.Type {
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case unix.RTA_TABLE:
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rule.Table = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_SRC:
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rule.Src = &net.IPNet{
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IP: attrs[j].Value,
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Mask: net.CIDRMask(int(msg.Src_len), 8*len(attrs[j].Value)),
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}
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case nl.FRA_DST:
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rule.Dst = &net.IPNet{
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IP: attrs[j].Value,
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Mask: net.CIDRMask(int(msg.Dst_len), 8*len(attrs[j].Value)),
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}
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case nl.FRA_FWMARK:
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rule.Mark = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_FWMASK:
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rule.Mask = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_TUN_ID:
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rule.TunID = uint(native.Uint64(attrs[j].Value[0:8]))
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case nl.FRA_IIFNAME:
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rule.IifName = string(attrs[j].Value[:len(attrs[j].Value)-1])
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case nl.FRA_OIFNAME:
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rule.OifName = string(attrs[j].Value[:len(attrs[j].Value)-1])
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case nl.FRA_SUPPRESS_PREFIXLEN:
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i := native.Uint32(attrs[j].Value[0:4])
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if i != 0xffffffff {
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rule.SuppressPrefixlen = int(i)
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}
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case nl.FRA_SUPPRESS_IFGROUP:
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i := native.Uint32(attrs[j].Value[0:4])
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if i != 0xffffffff {
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rule.SuppressIfgroup = int(i)
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}
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case nl.FRA_FLOW:
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rule.Flow = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_GOTO:
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rule.Goto = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_PRIORITY:
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rule.Priority = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_IP_PROTO:
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rule.IPProto = int(native.Uint32(attrs[j].Value[0:4]))
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case nl.FRA_DPORT_RANGE:
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rule.Dport = NewRulePortRange(native.Uint16(attrs[j].Value[0:2]), native.Uint16(attrs[j].Value[2:4]))
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case nl.FRA_SPORT_RANGE:
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rule.Sport = NewRulePortRange(native.Uint16(attrs[j].Value[0:2]), native.Uint16(attrs[j].Value[2:4]))
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case nl.FRA_UID_RANGE:
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rule.UIDRange = NewRuleUIDRange(native.Uint32(attrs[j].Value[0:4]), native.Uint32(attrs[j].Value[4:8]))
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case nl.FRA_PROTOCOL:
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rule.Protocol = uint8(attrs[j].Value[0])
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}
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}
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if filter != nil {
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switch {
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case filterMask&RT_FILTER_SRC != 0 &&
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(rule.Src == nil || rule.Src.String() != filter.Src.String()):
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continue
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case filterMask&RT_FILTER_DST != 0 &&
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(rule.Dst == nil || rule.Dst.String() != filter.Dst.String()):
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continue
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case filterMask&RT_FILTER_TABLE != 0 &&
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filter.Table != unix.RT_TABLE_UNSPEC && rule.Table != filter.Table:
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continue
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case filterMask&RT_FILTER_TOS != 0 && rule.Tos != filter.Tos:
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continue
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case filterMask&RT_FILTER_PRIORITY != 0 && rule.Priority != filter.Priority:
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continue
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case filterMask&RT_FILTER_MARK != 0 && rule.Mark != filter.Mark:
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continue
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case filterMask&RT_FILTER_MASK != 0 && rule.Mask != filter.Mask:
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continue
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}
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}
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res = append(res, *rule)
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}
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return res, nil
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}
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func (pr *RulePortRange) toRtAttrData() []byte {
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b := [][]byte{make([]byte, 2), make([]byte, 2)}
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native.PutUint16(b[0], pr.Start)
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native.PutUint16(b[1], pr.End)
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return bytes.Join(b, []byte{})
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}
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func (pr *RuleUIDRange) toRtAttrData() []byte {
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b := [][]byte{make([]byte, 4), make([]byte, 4)}
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native.PutUint32(b[0], pr.Start)
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native.PutUint32(b[1], pr.End)
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return bytes.Join(b, []byte{})
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}
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