19 Commits

Author SHA1 Message Date
benvin b8410488d2 Merge pull request 'Create the nftables table in the configured address family' (#32) from benvin/v4-only-family into main
ci/woodpecker/tag/release Pipeline was successful
Reviewed-on: #32
2026-10-04 15:43:03 +11:00
benvin 200b4d3bdf Merge pull request 'Honour shorewall INVALID_DISPOSITION and UNTRACKED_DISPOSITION' (#31) from benvin/invalid-disposition into main
Reviewed-on: #31
2026-10-04 15:42:40 +11:00
unkin-agent d6dfeb62b6 Merge remote-tracking branch 'origin/main' into benvin/v4-only-family
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# Conflicts:
#	internal/nftables/engine.go
2026-10-04 15:40:58 +11:00
benvin 11fafc0e6a Merge pull request 'Fix large-batch netlink errors and revert failed try applies' (#30) from benvin/try-apply-error into main
Reviewed-on: #30
2026-10-04 15:40:08 +11:00
unkin-agent d949fc4772 Create the nftables table in the configured address family
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ci/woodpecker/pr/test Pipeline was successful
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2026-10-04 15:36:03 +11:00
unkin-agent 2ed5b958b4 default dispositions to continue before the nil-conf return; test bad disposition values
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2026-10-04 15:35:58 +11:00
unkin-agent c3049e3ed4 honour shorewall INVALID_DISPOSITION and UNTRACKED_DISPOSITION
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ci/woodpecker/pr/test Pipeline was successful
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2026-10-04 15:34:11 +11:00
unkin-agent fe689e99ed Raise netlink buffers for large batches; restore snapshot when try apply fails
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2026-10-04 15:34:08 +11:00
benvin 1e32bde555 Merge pull request 'Emit the implied ACCEPT for DNAT and REDIRECT rules' (#29) from benvin/dnat-implied-accept into main
ci/woodpecker/tag/release Pipeline was successful
Reviewed-on: #29
2026-10-04 15:28:05 +11:00
unkin-agent 87be6bc6af Merge remote-tracking branch 'origin/main' into benvin/dnat-implied-accept
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ci/woodpecker/pr/pre-commit Pipeline was successful
# Conflicts:
#	internal/nftables/compiler.go
#	internal/nftables/compiler_test.go
2026-10-04 15:22:41 +11:00
benvin 599c483cd8 Merge pull request 'Accept DHCP on dhcp interfaces as shorewall does' (#27) from benvin/dhcp-option into main
Reviewed-on: #27
2026-10-04 15:21:51 +11:00
benvin 110b109d97 Merge pull request 'Include firewall zone in all/any rule expansion' (#28) from benvin/all-includes-fw into main
Reviewed-on: #28
2026-10-04 15:21:24 +11:00
unkin-agent ac63f65f2f Keep rule extras off the DNAT implied accept, expand all/any DNAT sources and match SPORT
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2026-10-04 15:12:29 +11:00
unkin-agent e3130b6c3b Expand all/any firewall pairs per zone and dedupe fw
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2026-10-04 15:10:49 +11:00
unkin-agent df9326330a Count firewall-expanded all/any specs for limiter guard
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2026-10-04 15:08:48 +11:00
unkin-agent b29ed2446e Emit the implied ACCEPT for DNAT and REDIRECT rules
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ci/woodpecker/pr/test Pipeline was successful
ci/woodpecker/pr/pre-commit Pipeline was successful
2026-10-04 15:08:11 +11:00
unkin-agent 0551120eec Scope DHCP accept rules to IPv4
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2026-10-04 15:07:41 +11:00
unkin-agent ff4c9b63e8 Include firewall zone in all/any rule expansion
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2026-10-04 15:06:24 +11:00
unkin-agent e48e9079bd Accept DHCP on dhcp interfaces as shorewall does
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2026-10-04 15:06:11 +11:00
16 changed files with 1034 additions and 145 deletions
+3 -3
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@@ -89,10 +89,10 @@ func tryApply(cfg *config.Config, fallback time.Duration) (string, error) {
return "", err return "", err
} }
if err := engine.Apply(changes); err != nil { if err := engine.Apply(changes); err != nil {
if derr := tryapply.Discard(); derr != nil { if aerr := tryapply.Abort(); aerr != nil {
err = fmt.Errorf("%w (discarding snapshot: %v)", err, derr) return "", fmt.Errorf("applying changes: %w; %v; the revert timer restores the previous ruleset within %s", err, aerr, fallback)
} }
return "", fmt.Errorf("applying changes: %w", err) return "", fmt.Errorf("applying changes: %w: previous ruleset restored", err)
} }
return id, nil return id, nil
} }
+15
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@@ -59,6 +59,11 @@ type Settings struct {
// When true, auto-generate CONTINUE policies for sub-zones to their parent zones. // When true, auto-generate CONTINUE policies for sub-zones to their parent zones.
ImplicitContinue bool `yaml:"implicit_continue,omitempty"` ImplicitContinue bool `yaml:"implicit_continue,omitempty"`
// Verdict for ct state invalid/untracked packets; continue passes them to the rules.
// Unset: invalid drops, untracked continues.
InvalidDisposition PolicyAction `yaml:"invalid_disposition,omitempty"`
UntrackedDisposition PolicyAction `yaml:"untracked_disposition,omitempty"`
} }
// Load reads a config file in YAML or JSON format (detected by extension). // Load reads a config file in YAML or JSON format (detected by extension).
@@ -115,6 +120,16 @@ func (c *Config) validateSettings() error {
if !validAddressFamilies[c.Settings.AddressFamily] { if !validAddressFamilies[c.Settings.AddressFamily] {
return fmt.Errorf("unknown address_family %q (use inet, ip, or ip6)", c.Settings.AddressFamily) return fmt.Errorf("unknown address_family %q (use inet, ip, or ip6)", c.Settings.AddressFamily)
} }
for name, d := range map[string]PolicyAction{
"invalid_disposition": c.Settings.InvalidDisposition,
"untracked_disposition": c.Settings.UntrackedDisposition,
} {
switch d {
case "", PolicyAccept, PolicyDrop, PolicyReject, PolicyContinue:
default:
return fmt.Errorf("unknown %s %q (use accept, drop, reject, or continue)", name, d)
}
}
return nil return nil
} }
+17
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@@ -1052,3 +1052,20 @@ func TestSplitZoneList(t *testing.T) {
} }
} }
} }
func TestValidateDispositions(t *testing.T) {
for _, tc := range []struct {
invalid, untracked PolicyAction
wantErr string
}{
{"", "", ""},
{PolicyContinue, PolicyDrop, ""},
{"bogus", "", `unknown invalid_disposition "bogus"`},
{PolicyAccept, "log", `unknown untracked_disposition "log"`},
} {
c := baseConfig()
c.Settings.InvalidDisposition = tc.invalid
c.Settings.UntrackedDisposition = tc.untracked
checkErr(t, c.Validate(), tc.wantErr)
}
}
+2 -2
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@@ -28,7 +28,7 @@ func (e *Engine) FindForeignRules() ([]ForeignRule, error) {
var ourTable *nftables.Table var ourTable *nftables.Table
for _, t := range tables { for _, t := range tables {
if t.Name == e.cfg.Settings.TableName && t.Family == nftables.TableFamilyINet { if t.Name == e.cfg.Settings.TableName && t.Family == e.family() {
ourTable = t ourTable = t
break break
} }
@@ -52,7 +52,7 @@ func (e *Engine) FindForeignRules() ([]ForeignRule, error) {
var foreign []ForeignRule var foreign []ForeignRule
chains, err := e.conn.ListChainsOfTableFamily(nftables.TableFamilyINet) chains, err := e.conn.ListChainsOfTableFamily(e.family())
if err != nil { if err != nil {
return nil, fmt.Errorf("listing chains: %w", err) return nil, fmt.Errorf("listing chains: %w", err)
} }
+191 -79
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@@ -70,21 +70,34 @@ func (c *Compiler) Compile() (*FirewallState, error) {
} }
func (c *Compiler) compileConntrackFastPath(state *FirewallState) error { func (c *Compiler) compileConntrackFastPath(state *FirewallState) error {
invalid := c.cfg.Settings.InvalidDisposition
if invalid == "" {
invalid = config.PolicyDrop
}
for _, chain := range []string{"input", "forward", "output"} { for _, chain := range []string{"input", "forward", "output"} {
state.Rules[chain] = append(state.Rules[chain], state.Rules[chain] = append(state.Rules[chain], ManagedRule{
ManagedRule{ Chain: chain,
Exprs: append(matchCtState(ctStateEstablished|ctStateRelated),
&expr.Verdict{Kind: expr.VerdictAccept}),
Tag: "ct:fastpath:" + chain,
})
for _, d := range []struct {
name string
state uint32
action config.PolicyAction
}{
{"invalid", ctStateInvalid, invalid},
{"untracked", ctStateUntracked, c.cfg.Settings.UntrackedDisposition},
} {
if d.action == "" || d.action == config.PolicyContinue {
continue
}
state.Rules[chain] = append(state.Rules[chain], ManagedRule{
Chain: chain, Chain: chain,
Exprs: append(matchCtState(ctStateEstablished|ctStateRelated), Exprs: append(matchCtState(d.state), policyVerdict(d.action, c.cfg.Settings.AddressFamily)...),
&expr.Verdict{Kind: expr.VerdictAccept}), Tag: "ct:" + d.name + ":" + chain,
Tag: "ct:fastpath:" + chain, })
}, }
ManagedRule{
Chain: chain,
Exprs: append(matchCtState(ctStateInvalid),
&expr.Verdict{Kind: expr.VerdictDrop}),
Tag: "ct:invalid:" + chain,
},
)
} }
return nil return nil
} }
@@ -126,40 +139,23 @@ func (c *Compiler) compileDHCP(state *FirewallState) {
continue continue
} }
name := iface.PhysicalName() name := iface.PhysicalName()
// Allow DHCPv4 client traffic (bootpc:68 → bootps:67) dhcp := func(chain, dir string, ifaceMatch []expr.Any) {
state.Rules["input"] = append(state.Rules["input"], ManagedRule{ state.Rules[chain] = append(state.Rules[chain], ManagedRule{
Chain: "input", Chain: chain,
Exprs: append(append(append( Exprs: append(append(append(append(ifaceMatch,
matchIfaceName(true, name), matchNFProto(unix.NFPROTO_IPV4)...),
matchProtoNum(unix.IPPROTO_UDP)...), matchProtoNum(unix.IPPROTO_UDP)...),
matchSPort(68)...), matchDPortRange(67, 68)...),
matchDPort(67)..., &expr.Verdict{Kind: expr.VerdictAccept}),
), Tag: fmt.Sprintf("dhcp:%s:%s", dir, iface.Interface),
Tag: fmt.Sprintf("dhcp:in:%s", iface.Interface), })
}) }
// Allow DHCPv4 server → client replies // shorewall: udp dport 67:68 both ways between fw and iface, forwarded back out a bridge
state.Rules["input"] = append(state.Rules["input"], ManagedRule{ dhcp("input", "in", matchIfaceName(true, name))
Chain: "input", dhcp("output", "out", matchIfaceName(false, name))
Exprs: append(append(append(append( if iface.Options.Bridge {
matchIfaceName(true, name), dhcp("forward", "fwd", append(matchIfaceName(true, name), matchIfaceName(false, name)...))
matchProtoNum(unix.IPPROTO_UDP)...), }
matchSPort(67)...),
matchDPort(68)...),
&expr.Verdict{Kind: expr.VerdictAccept},
),
Tag: fmt.Sprintf("dhcp:reply:%s", iface.Interface),
})
state.Rules["output"] = append(state.Rules["output"], ManagedRule{
Chain: "output",
Exprs: append(append(append(append(
matchIfaceName(false, name),
matchProtoNum(unix.IPPROTO_UDP)...),
matchSPort(68)...),
matchDPort(67)...),
&expr.Verdict{Kind: expr.VerdictAccept},
),
Tag: fmt.Sprintf("dhcp:out:%s", iface.Interface),
})
} }
} }
@@ -381,7 +377,7 @@ func (c *Compiler) compileRules(state *FirewallState) error {
if err != nil { if err != nil {
return fmt.Errorf("rule[%d]: %w", i, err) return fmt.Errorf("rule[%d]: %w", i, err)
} }
if len(matches)*c.specCount(rule.Source, rule.Dest, rule.OrigDest, rule.Action) > 1 { if len(matches)*c.specCount(rule.Source, rule.Dest, rule.OrigDest, fwZone, rule.Action) > 1 {
return fmt.Errorf("rule[%d]: ratelimit/connlimit cannot be combined with proto, port, zone or address lists (each expanded rule would get its own limiter)", i) return fmt.Errorf("rule[%d]: ratelimit/connlimit cannot be combined with proto, port, zone or address lists (each expanded rule would get its own limiter)", i)
} }
} }
@@ -467,26 +463,32 @@ func (c *Compiler) compileOneRule(state *FirewallState, tag, srcSpec, dstSpec, p
dports, sports config.PortSpec, action config.RuleAction, logLevel string, dports, sports config.PortSpec, action config.RuleAction, logLevel string,
dnatDest, origDest string, fwZone string, section config.RuleSection) error { dnatDest, origDest string, fwZone string, section config.RuleSection) error {
for _, src := range c.zoneSpecs(srcSpec) { if action == config.RuleDNAT || action == config.RuleRedirect {
for _, srcAddr := range splitAddrs(src.Addr) { for _, src := range c.dnatSourceSpecs(srcSpec, fwZone) {
for _, od := range splitAddrs(origDest) { if dnatSkipsIntrazone(srcSpec, src.Zone, dstSpec) {
if action == config.RuleDNAT || action == config.RuleRedirect { continue
if err := c.compileDNATRule(state, tag, src.Zone, srcAddr, od, dstSpec, proto, dports, action, logLevel); err != nil { }
for _, srcAddr := range splitAddrs(src.Addr) {
if err := c.compileDNATAccept(state, tag+":accept", src.Zone, srcAddr, dstSpec, proto, dports, sports, action, fwZone, section); err != nil {
return err
}
for _, od := range splitAddrs(origDest) {
if err := c.compileDNATRule(state, tag, src.Zone, srcAddr, od, dstSpec, proto, dports, sports, action, logLevel); err != nil {
return err return err
} }
continue
} }
for _, dst := range c.zoneSpecs(dstSpec) { }
// Exclusion expansion never pairs fw with itself, and pairs a zone with itself only for "all+". }
if src.Zone == dst.Zone && (isZoneExclusion(srcSpec) || isZoneExclusion(dstSpec)) && return nil
(src.Zone == fwZone || !strings.Contains(srcSpec, "+!") && !strings.Contains(dstSpec, "+!")) { }
continue for _, p := range c.zonePairs(srcSpec, dstSpec, fwZone) {
} src, dst := p[0], p[1]
for _, dstAddr := range splitAddrs(dst.Addr) { for _, srcAddr := range splitAddrs(src.Addr) {
if err := c.compileZonePair(state, tag, src.Zone, srcAddr, dst.Zone, dstAddr, od, proto, for _, od := range splitAddrs(origDest) {
dports, sports, action, logLevel, fwZone, section); err != nil { for _, dstAddr := range splitAddrs(dst.Addr) {
return err if err := c.compileZonePair(state, tag, src.Zone, srcAddr, dst.Zone, dstAddr, od, proto,
} dports, sports, action, logLevel, fwZone, section); err != nil {
return err
} }
} }
} }
@@ -495,19 +497,93 @@ func (c *Compiler) compileOneRule(state *FirewallState, tag, srcSpec, dstSpec, p
return nil return nil
} }
// specCount is how many zone/address combinations compileOneRule expands src and dst into. // dnatSourceSpecs hooks DNAT per source zone like shorewall: all/any expand to every zone but fw (prerouting never sees fw traffic).
func (c *Compiler) specCount(srcSpec, dstSpec, origDest string, action config.RuleAction) int { func (c *Compiler) dnatSourceSpecs(spec, fwZone string) []config.ZoneSpec {
count := func(spec string) (n int) { zone, addr := splitZoneSpec(spec)
for _, z := range c.zoneSpecs(spec) { base, _, _ := strings.Cut(zone, "!")
n += len(splitAddrs(z.Addr)) if base = strings.TrimSuffix(base, "+"); base != "all" && base != "any" {
return c.zoneSpecs(spec)
}
var out []config.ZoneSpec
for _, z := range c.expandZoneRef(zone) {
if z != fwZone {
out = append(out, config.ZoneSpec{Zone: z, Addr: addr})
} }
return n
} }
n := count(srcSpec) * len(splitAddrs(origDest)) return out
}
// dnatSkipsIntrazone mirrors shorewall: a zone list or all/any source never pairs a zone with itself unless marked "+".
func dnatSkipsIntrazone(srcSpec, srcZone, dstSpec string) bool {
zones, _, _ := strings.Cut(srcSpec, ":")
base, _, _ := strings.Cut(zones, "!")
wild := base == "all" || base == "any" || strings.Contains(base, ",")
dstZone, _, _ := strings.Cut(dstSpec, ":")
return wild && srcZone == dstZone
}
// compileDNATAccept emits the filter ACCEPT implied by DNAT/REDIRECT (shorewall's DNAT-/REDIRECT- omit it) for the translated flow.
func (c *Compiler) compileDNATAccept(state *FirewallState, tag, srcZone, srcAddr, dstSpec, proto string,
dports, sports config.PortSpec, action config.RuleAction, fwZone string, section config.RuleSection) error {
parts := strings.SplitN(dstSpec, ":", 3)
if len(parts) < 2 {
return fmt.Errorf("DNAT dest must be zone:address or zone:address:port")
}
dstZone, dstAddr := parts[0], parts[1]
if action == config.RuleRedirect {
dstZone, dstAddr = fwZone, ""
}
if len(parts) == 3 {
dports = config.PortSpec{parts[2]}
}
chain := c.selectChain(srcZone, dstZone, fwZone)
n := len(state.Rules[chain])
if err := c.compileZonePair(state, tag, srcZone, srcAddr, dstZone, dstAddr, "", proto,
dports, sports, config.RuleAccept, "", fwZone, section); err != nil {
return err
}
for i := n; i < len(state.Rules[chain]); i++ {
e := state.Rules[chain][i].Exprs
last := len(e) - 1
state.Rules[chain][i].Exprs = append(append(e[:last:last], matchCtBits(expr.CtKeySTATUS, ctStatusDNAT)...), e[last])
}
return nil
}
// specCount is how many zone/address combinations compileOneRule expands src and dst into.
func (c *Compiler) specCount(srcSpec, dstSpec, origDest, fwZone string, action config.RuleAction) int {
n := 0
if action == config.RuleDNAT || action == config.RuleRedirect { if action == config.RuleDNAT || action == config.RuleRedirect {
return n for _, src := range c.dnatSourceSpecs(srcSpec, fwZone) {
n += len(splitAddrs(src.Addr))
}
return n * len(splitAddrs(origDest))
} }
return n * count(dstSpec) for _, p := range c.zonePairs(srcSpec, dstSpec, fwZone) {
n += len(splitAddrs(p[0].Addr)) * len(splitAddrs(p[1].Addr))
}
return n * len(splitAddrs(origDest))
}
// zonePairs is the src/dst zone expansion of a non-DNAT rule, with fw added beside all/any.
func (c *Compiler) zonePairs(srcSpec, dstSpec, fwZone string) [][2]config.ZoneSpec {
srcs, srcGlobal := withFirewall(c.zoneSpecs(srcSpec), fwZone)
dsts, dstGlobal := withFirewall(c.zoneSpecs(dstSpec), fwZone)
var out [][2]config.ZoneSpec
for _, src := range srcs {
for _, dst := range dsts {
if src.Zone == fwZone && dst.Zone == fwZone && (srcGlobal || dstGlobal) {
continue
}
// Exclusion expansion never pairs fw with itself, and pairs a zone with itself only for "all+".
if src.Zone == dst.Zone && (isZoneExclusion(srcSpec) || isZoneExclusion(dstSpec)) &&
(src.Zone == fwZone || !strings.Contains(srcSpec, "+!") && !strings.Contains(dstSpec, "+!")) {
continue
}
out = append(out, [2]config.ZoneSpec{src, dst})
}
}
return out
} }
// zoneSpecs expands a comma zone list; "all"/"any" stay global and "all!x,y" becomes every zone but x and y. // zoneSpecs expands a comma zone list; "all"/"any" stay global and "all!x,y" becomes every zone but x and y.
@@ -526,6 +602,26 @@ func (c *Compiler) zoneSpecs(spec string) []config.ZoneSpec {
return out return out
} }
// withFirewall adds the firewall zone beside a global all/any spec, which otherwise only reaches forward.
func withFirewall(specs []config.ZoneSpec, fwZone string) ([]config.ZoneSpec, bool) {
out, global := specs, false
for _, s := range specs {
if fwZone != "" && isGlobalZone(s.Zone) {
global = true
if fw := (config.ZoneSpec{Zone: fwZone, Addr: s.Addr}); !slices.Contains(out, fw) {
out = append(out, fw)
}
}
}
return out, global
}
func isGlobalZone(spec string) bool {
zone, _ := splitZoneSpec(spec)
base := strings.TrimSuffix(zone, "+")
return base == "all" || base == "any"
}
func isZoneExclusion(spec string) bool { func isZoneExclusion(spec string) bool {
base, _, ok := strings.Cut(spec, "!") base, _, ok := strings.Cut(spec, "!")
base = strings.TrimSuffix(base, "+") base = strings.TrimSuffix(base, "+")
@@ -595,7 +691,7 @@ func (c *Compiler) compileZonePair(state *FirewallState, tag, srcZone, srcAddr,
} }
func (c *Compiler) compileDNATRule(state *FirewallState, tag, srcZone, srcAddr, origDest, dstSpec, proto string, func (c *Compiler) compileDNATRule(state *FirewallState, tag, srcZone, srcAddr, origDest, dstSpec, proto string,
dports config.PortSpec, action config.RuleAction, logLevel string) error { dports, sports config.PortSpec, action config.RuleAction, logLevel string) error {
chain := "prerouting" chain := "prerouting"
parts := strings.SplitN(dstSpec, ":", 3) parts := strings.SplitN(dstSpec, ":", 3)
@@ -623,7 +719,7 @@ func (c *Compiler) compileDNATRule(state *FirewallState, tag, srcZone, srcAddr,
} }
} }
matches, err := l4Matches(proto, dports, nil) matches, err := l4Matches(proto, dports, sports)
if err != nil { if err != nil {
return err return err
} }
@@ -1554,10 +1650,14 @@ func matchOrigDest(addr string) ([]expr.Any, error) {
if err != nil { if err != nil {
return nil, err return nil, err
} }
return append([]expr.Any{ return append(matchNFProto(proto), dst...), nil
}
func matchNFProto(proto byte) []expr.Any {
return []expr.Any{
&expr.Meta{Key: expr.MetaKeyNFPROTO, Register: 1}, &expr.Meta{Key: expr.MetaKeyNFPROTO, Register: 1},
&expr.Cmp{Op: expr.CmpOpEq, Register: 1, Data: []byte{proto}}, &expr.Cmp{Op: expr.CmpOpEq, Register: 1, Data: []byte{proto}},
}, dst...), nil }
} }
func matchAddrCIDR(cidr string, isSrc bool) ([]expr.Any, error) { func matchAddrCIDR(cidr string, isSrc bool) ([]expr.Any, error) {
@@ -1645,13 +1745,18 @@ const (
ctStateRelated = 4 ctStateRelated = 4
ctStateNew = 8 ctStateNew = 8
ctStateUntracked = 64 ctStateUntracked = 64
ctStatusDNAT = 32
) )
func matchCtState(stateMask uint32) []expr.Any { func matchCtState(stateMask uint32) []expr.Any {
return matchCtBits(expr.CtKeySTATE, stateMask)
}
func matchCtBits(key expr.CtKey, stateMask uint32) []expr.Any {
stateBytes := make([]byte, 4) stateBytes := make([]byte, 4)
binary.NativeEndian.PutUint32(stateBytes, stateMask) binary.NativeEndian.PutUint32(stateBytes, stateMask)
return []expr.Any{ return []expr.Any{
&expr.Ct{Key: expr.CtKeySTATE, Register: 1}, &expr.Ct{Key: key, Register: 1},
&expr.Bitwise{ &expr.Bitwise{
SourceRegister: 1, SourceRegister: 1,
DestRegister: 1, DestRegister: 1,
@@ -1957,6 +2062,13 @@ func rejectExprs(proto byte, family config.AddressFamily) []expr.Any {
Code: 0, Code: 0,
}} }}
} }
// icmpx is inet-only; ip and ip6 tables silently drop on it.
switch family {
case config.FamilyIP:
return []expr.Any{&expr.Reject{Type: unix.NFT_REJECT_ICMP_UNREACH, Code: 3}} // port-unreachable
case config.FamilyIP6:
return []expr.Any{&expr.Reject{Type: unix.NFT_REJECT_ICMP_UNREACH, Code: 4}} // port-unreachable
}
return []expr.Any{&expr.Reject{ return []expr.Any{&expr.Reject{
Type: unix.NFT_REJECT_ICMPX_UNREACH, Type: unix.NFT_REJECT_ICMPX_UNREACH,
Code: unix.NFT_REJECT_ICMPX_PORT_UNREACH, Code: unix.NFT_REJECT_ICMPX_PORT_UNREACH,
+379 -23
View File
@@ -1013,38 +1013,84 @@ func TestCompile_DHCP(t *testing.T) {
Zones: map[string]config.Zone{ Zones: map[string]config.Zone{
"fw": {Type: config.ZoneFirewall}, "fw": {Type: config.ZoneFirewall},
"net": {Type: config.ZoneIP}, "net": {Type: config.ZoneIP},
"loc": {Type: config.ZoneIP},
}, },
Interfaces: []config.Interface{ Interfaces: []config.Interface{
{Zone: "net", Interface: "eth0", Options: config.InterfaceOptions{DHCP: true}}, {Zone: "net", Interface: "eth0", Options: config.InterfaceOptions{DHCP: true}},
{Zone: "loc", Interface: "br0", Options: config.InterfaceOptions{DHCP: true, Bridge: true}},
}, },
Policy: []config.Policy{ Policy: []config.Policy{
{Source: "all", Dest: "all", Action: config.PolicyDrop}, {Source: "all", Dest: "all", Action: config.PolicyDrop},
}, },
PortGroups: make(map[string]config.PortGroup), PortGroups: make(map[string]config.PortGroup),
} }
c := NewCompiler(cfg) state, err := NewCompiler(cfg).Compile()
state, err := c.Compile()
if err != nil { if err != nil {
t.Fatalf("Compile() error: %v", err) t.Fatalf("Compile() error: %v", err)
} }
foundIn := false find := func(chain, tag string) *ManagedRule {
foundOut := false for i, r := range state.Rules[chain] {
for _, r := range state.Rules["input"] { if r.Tag == tag {
if r.Tag == "dhcp:in:eth0" || r.Tag == "dhcp:reply:eth0" { return &state.Rules[chain][i]
foundIn = true }
}
return nil
}
for _, want := range []struct{ chain, tag, iif, oif string }{
{"input", "dhcp:in:eth0", "eth0", ""},
{"output", "dhcp:out:eth0", "", "eth0"},
{"input", "dhcp:in:br0", "br0", ""},
{"output", "dhcp:out:br0", "", "br0"},
{"forward", "dhcp:fwd:br0", "br0", "br0"},
} {
r := find(want.chain, want.tag)
if r == nil {
t.Errorf("%s: no rule %s", want.chain, want.tag)
continue
}
metas := map[expr.MetaKey][]byte{}
for i := 0; i+1 < len(r.Exprs); i++ {
if m, ok := r.Exprs[i].(*expr.Meta); ok {
if c, ok := r.Exprs[i+1].(*expr.Cmp); ok && c.Op == expr.CmpOpEq {
metas[m.Key] = c.Data
}
}
}
if got := metas[expr.MetaKeyNFPROTO]; !bytes.Equal(got, []byte{unix.NFPROTO_IPV4}) {
t.Errorf("%s: nfproto %v, want ipv4 guard", want.tag, got)
}
if got := metas[expr.MetaKeyL4PROTO]; !bytes.Equal(got, []byte{unix.IPPROTO_UDP}) {
t.Errorf("%s: l4proto %v, want udp", want.tag, got)
}
for key, name := range map[expr.MetaKey]string{expr.MetaKeyIIFNAME: want.iif, expr.MetaKeyOIFNAME: want.oif} {
got, ok := metas[key]
if name == "" {
if ok {
t.Errorf("%s: unexpected meta %v match %q", want.tag, key, got)
}
} else if string(got) != name+"\x00" {
t.Errorf("%s: meta %v %q, want %q", want.tag, key, got, name)
}
}
v, ok := r.Exprs[len(r.Exprs)-1].(*expr.Verdict)
if !ok || v.Kind != expr.VerdictAccept {
t.Errorf("%s: last expr %#v, want accept verdict", want.tag, r.Exprs[len(r.Exprs)-1])
}
var lo, hi []byte
for _, e := range r.Exprs {
if c, ok := e.(*expr.Cmp); ok && c.Op == expr.CmpOpGte {
lo = c.Data
} else if ok && c.Op == expr.CmpOpLte {
hi = c.Data
}
}
if !bytes.Equal(lo, []byte{0, 67}) || !bytes.Equal(hi, []byte{0, 68}) {
t.Errorf("%s: dport range %v-%v, want 67-68", want.tag, lo, hi)
} }
} }
for _, r := range state.Rules["output"] { if find("forward", "dhcp:fwd:eth0") != nil {
if r.Tag == "dhcp:out:eth0" { t.Error("non-bridge eth0 must not forward DHCP")
foundOut = true
}
}
if !foundIn {
t.Error("no DHCP input rule found for eth0")
}
if !foundOut {
t.Error("no DHCP output rule found for eth0")
} }
} }
@@ -1918,12 +1964,58 @@ func TestCompile_CommaZoneLists(t *testing.T) {
{ {
name: "dnat source list", name: "dnat source list",
rule: config.Rule{Action: config.RuleDNAT, Source: "net,lan", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}}, rule: config.Rule{Action: config.RuleDNAT, Source: "net,lan", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0", "iif=eth1"}}, want: map[string][]string{"prerouting": {"iif=eth0", "iif=eth1"},
"forward": {"iif=eth0 oif=eth2 daddr=192.0.2.10", "iif=eth1 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat source list skips the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "net,svr", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0"}, "forward": {"iif=eth0 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat lone source zone may equal the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "svr", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth2"}, "forward": {"iif=eth2 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat exclusion source skips the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "all!fw,anycast", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth1", "iif=eth0"},
"forward": {"iif=eth1 oif=eth2 daddr=192.0.2.10", "iif=eth0 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat intrazone exclusion source keeps the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "all+!fw,anycast,lan", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0", "iif=eth2"},
"forward": {"iif=eth0 oif=eth2 daddr=192.0.2.10", "iif=eth2 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat all source expands per zone and skips fw and the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "all", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth3", "iif=eth1", "iif=eth0"},
"forward": {"iif=eth3 oif=eth2 daddr=192.0.2.10", "iif=eth1 oif=eth2 daddr=192.0.2.10", "iif=eth0 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat any+ source keeps the target zone",
rule: config.Rule{Action: config.RuleDNAT, Source: "any+", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth3", "iif=eth1", "iif=eth0", "iif=eth2"},
"forward": {"iif=eth3 oif=eth2 daddr=192.0.2.10", "iif=eth1 oif=eth2 daddr=192.0.2.10", "iif=eth0 oif=eth2 daddr=192.0.2.10", "iif=eth2 oif=eth2 daddr=192.0.2.10"}},
},
{
name: "dnat to fw accepts in input",
rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "fw:192.0.2.1", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0"}, "input": {"iif=eth0 daddr=192.0.2.1"}},
},
{
name: "redirect accepts in input without daddr",
rule: config.Rule{Action: config.RuleRedirect, Source: "lan", Dest: "fw:192.0.2.1:3128", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth1"}, "input": {"iif=eth1"}},
}, },
{ {
name: "dnat source address list", name: "dnat source address list",
rule: config.Rule{Action: config.RuleDNAT, Source: "net:192.0.2.5,198.51.100.5", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}}, rule: config.Rule{Action: config.RuleDNAT, Source: "net:192.0.2.5,198.51.100.5", Dest: "svr:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0 saddr=192.0.2.5", "iif=eth0 saddr=198.51.100.5"}}, want: map[string][]string{"prerouting": {"iif=eth0 saddr=192.0.2.5", "iif=eth0 saddr=198.51.100.5"},
"forward": {"iif=eth0 oif=eth2 saddr=192.0.2.5 daddr=192.0.2.10", "iif=eth0 oif=eth2 saddr=198.51.100.5 daddr=192.0.2.10"}},
}, },
{ {
name: "negated address list stays one AND-ed rule", name: "negated address list stays one AND-ed rule",
@@ -1958,17 +2050,20 @@ func TestCompile_CommaZoneLists(t *testing.T) {
{ {
name: "dnat origdest", name: "dnat origdest",
rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "203.0.113.5"}, rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "203.0.113.5"},
want: map[string][]string{"prerouting": {"iif=eth0 daddr=203.0.113.5"}}, want: map[string][]string{"prerouting": {"iif=eth0 daddr=203.0.113.5"},
"forward": {"iif=eth0 oif=eth2 daddr=192.0.2.17"}},
}, },
{ {
name: "dnat origdest list", name: "dnat origdest list",
rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "203.0.113.5,203.0.113.6"}, rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "203.0.113.5,203.0.113.6"},
want: map[string][]string{"prerouting": {"iif=eth0 daddr=203.0.113.5", "iif=eth0 daddr=203.0.113.6"}}, want: map[string][]string{"prerouting": {"iif=eth0 daddr=203.0.113.5", "iif=eth0 daddr=203.0.113.6"},
"forward": {"iif=eth0 oif=eth2 daddr=192.0.2.17"}},
}, },
{ {
name: "dnat negated origdest list", name: "dnat negated origdest list",
rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "!203.0.113.5,203.0.113.6"}, rule: config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}, OrigDest: "!203.0.113.5,203.0.113.6"},
want: map[string][]string{"prerouting": {"iif=eth0 !daddr=203.0.113.5 !daddr=203.0.113.6"}}, want: map[string][]string{"prerouting": {"iif=eth0 !daddr=203.0.113.5 !daddr=203.0.113.6"},
"forward": {"iif=eth0 oif=eth2 daddr=192.0.2.17"}},
}, },
{ {
name: "accept origdest", name: "accept origdest",
@@ -2019,7 +2114,7 @@ func TestCompile_CommaZoneLists(t *testing.T) {
got := map[string][]string{} got := map[string][]string{}
for chain, rules := range state.Rules { for chain, rules := range state.Rules {
for _, r := range rules { for _, r := range rules {
if r.Tag == tag { if r.Tag == tag || r.Tag == tag+":accept" {
got[chain] = append(got[chain], describeRule(r)) got[chain] = append(got[chain], describeRule(r))
} }
} }
@@ -2217,11 +2312,116 @@ func TestCompile_DNATGetsNoRuleExtras(t *testing.T) {
} }
} }
func TestCompile_DNATImpliedAccept(t *testing.T) {
state, err := NewCompiler(listCfg(func(c *config.Config) {
c.Zones["svr"] = config.Zone{Type: config.ZoneIP}
c.Interfaces = append(c.Interfaces, config.Interface{Zone: "svr", Interface: "eth2"})
c.Rules = []config.Rule{{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17:8080", Proto: "tcp", DPort: config.PortSpec{"80"}}}
})).Compile()
if err != nil {
t.Fatalf("Compile() error: %v", err)
}
fwd := taggedRules(state, "forward", "rule:0:accept")
if len(fwd) != 1 {
t.Fatalf("got %d forward accepts, want 1", len(fwd))
}
want := append(append(append(append(append(matchIfaceName(true, "eth0"), matchIfaceName(false, "eth2")...),
mustExprs(t)(matchDestCIDR("192.0.2.17"))...), mustExprs(t)(l4Exprs("tcp", "8080"))...),
dnatStatusExprs...), &expr.Verdict{Kind: expr.VerdictAccept})
if !reflect.DeepEqual(fwd[0].Exprs, want) {
t.Errorf("forward accept = %#v, want %#v", fwd[0].Exprs, want)
}
}
// IPS_DST_NAT = 1<<5, hard-coded so a wrong ctStatusDNAT or ct key fails here.
var dnatStatusExprs = []expr.Any{
&expr.Ct{Key: expr.CtKeySTATUS, Register: 1},
&expr.Bitwise{SourceRegister: 1, DestRegister: 1, Len: 4, Mask: binary.NativeEndian.AppendUint32(nil, 32), Xor: []byte{0, 0, 0, 0}},
&expr.Cmp{Op: expr.CmpOpNeq, Register: 1, Data: []byte{0, 0, 0, 0}},
}
func TestCompile_DNATImpliedAcceptGetsNoRuleExtras(t *testing.T) {
compile := func(r config.Rule) *FirewallState {
state, err := NewCompiler(listCfg(func(c *config.Config) {
c.Zones["svr"] = config.Zone{Type: config.ZoneIP}
c.Interfaces = append(c.Interfaces, config.Interface{Zone: "svr", Interface: "eth2"})
c.Rules = []config.Rule{r}
})).Compile()
if err != nil {
t.Fatalf("Compile() error: %v", err)
}
return state
}
plain := config.Rule{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp", DPort: config.PortSpec{"80"}}
extras := plain
extras.RateLimit, extras.Mark, extras.User = "10/sec:5", "0x1", "root"
want, got := compile(plain), compile(extras)
if len(taggedRules(got, "forward", "rule:0:accept")) != 1 {
t.Fatalf("want one forward accept, got %v", got.Rules["forward"])
}
if !reflect.DeepEqual(got.Rules, want.Rules) {
t.Errorf("ratelimit/mark/user changed the DNAT rules:\ngot %#v\nwant %#v", got.Rules, want.Rules)
}
}
func TestCompile_DNATMatchesSport(t *testing.T) {
state, err := NewCompiler(listCfg(func(c *config.Config) {
c.Zones["svr"] = config.Zone{Type: config.ZoneIP}
c.Interfaces = append(c.Interfaces, config.Interface{Zone: "svr", Interface: "eth2"})
c.Rules = []config.Rule{{Action: config.RuleDNAT, Source: "net", Dest: "svr:192.0.2.17", Proto: "tcp",
DPort: config.PortSpec{"80"}, SPort: config.PortSpec{"1024"}}}
})).Compile()
if err != nil {
t.Fatalf("Compile() error: %v", err)
}
m, err := l4Matches("tcp", config.PortSpec{"80"}, config.PortSpec{"1024"})
if err != nil {
t.Fatal(err)
}
for _, r := range append(taggedRules(state, "prerouting", "rule:0"), taggedRules(state, "forward", "rule:0:accept")...) {
if !containsExprs(r.Exprs, m[0].exprs) {
t.Errorf("%s rule lacks the sport match: %#v", r.Chain, r.Exprs)
}
}
}
func containsExprs(haystack, needle []expr.Any) bool {
for i := 0; i+len(needle) <= len(haystack); i++ {
if reflect.DeepEqual(haystack[i:i+len(needle)], needle) {
return true
}
}
return false
}
func mustExprs(t *testing.T) func([]expr.Any, error) []expr.Any {
return func(e []expr.Any, err error) []expr.Any {
t.Helper()
if err != nil {
t.Fatal(err)
}
return e
}
}
func l4Exprs(proto, port string) ([]expr.Any, error) {
m, err := l4Matches(proto, config.PortSpec{port}, nil)
if err != nil {
return nil, err
}
return m[0].exprs, nil
}
func TestCompile_CommaZoneListLimitErrors(t *testing.T) { func TestCompile_CommaZoneListLimitErrors(t *testing.T) {
for _, r := range []config.Rule{ for _, r := range []config.Rule{
{Action: config.RuleAccept, Source: "net", Dest: "fw,lan", RateLimit: "10/sec:5"}, {Action: config.RuleAccept, Source: "net", Dest: "fw,lan", RateLimit: "10/sec:5"},
{Action: config.RuleAccept, Source: "net,lan", Dest: "fw", ConnLimit: "10"}, {Action: config.RuleAccept, Source: "net,lan", Dest: "fw", ConnLimit: "10"},
{Action: config.RuleAccept, Source: "net", Dest: "fw:192.0.2.1,198.51.100.1", RateLimit: "10/sec"}, {Action: config.RuleAccept, Source: "net", Dest: "fw:192.0.2.1,198.51.100.1", RateLimit: "10/sec"},
{Action: config.RuleDNAT, Source: "net,lan", Dest: "fw:192.0.2.1", RateLimit: "10/sec"},
{Action: config.RuleAccept, Source: "all", Dest: "all", RateLimit: "10/sec"},
{Action: config.RuleAccept, Source: "net", Dest: "all", ConnLimit: "10"},
{Action: config.RuleAccept, Source: "all", Dest: "net", RateLimit: "10/sec"},
{Action: config.RuleAccept, Source: "net,all", Dest: "fw", RateLimit: "10/sec"},
} { } {
t.Run(r.Source+">"+r.Dest, func(t *testing.T) { t.Run(r.Source+">"+r.Dest, func(t *testing.T) {
cfg := &config.Config{ cfg := &config.Config{
@@ -2799,3 +2999,159 @@ func TestCompile_ConntrackHelperZones(t *testing.T) {
}) })
} }
} }
func TestCompile_AllIncludesFirewallMatches(t *testing.T) {
cases := []struct {
name string
rule config.Rule
want map[string][]string
}{
{
name: "all address kept on added fw rules",
rule: config.Rule{Action: config.RuleAccept, Source: "all:192.0.2.5", Dest: "all"},
want: map[string][]string{"input": {"saddr=192.0.2.5"}, "output": {"saddr=192.0.2.5"}, "forward": {"saddr=192.0.2.5"}},
},
{
name: "dnat with all source skips fw",
rule: config.Rule{Action: config.RuleDNAT, Source: "all", Dest: "fw:192.0.2.10", Proto: "tcp", DPort: config.PortSpec{"80"}},
want: map[string][]string{"prerouting": {"iif=eth0"}},
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
cfg := &config.Config{
Settings: config.Settings{TableName: "test", AddressFamily: config.FamilyINET},
Zones: map[string]config.Zone{"fw": {Type: config.ZoneFirewall}, "net": {Type: config.ZoneIP}},
Interfaces: []config.Interface{{Zone: "net", Interface: "eth0"}},
Rules: []config.Rule{tc.rule},
PortGroups: map[string]config.PortGroup{},
}
state := mustCompile(t, cfg)
got := map[string][]string{}
for _, chain := range []string{"prerouting", "input", "output", "forward"} {
for _, r := range taggedRules(state, chain, "rule:0") {
got[chain] = append(got[chain], describeRule(r))
}
}
if !reflect.DeepEqual(got, tc.want) {
t.Errorf("rules = %q, want %q", got, tc.want)
}
})
}
}
func TestCompile_AllIncludesFirewall(t *testing.T) {
cases := []struct {
src, dst string
want map[string]int
}{
{"all", "all", map[string]int{"input": 1, "output": 1, "forward": 1}},
{"net", "all", map[string]int{"input": 1, "output": 0, "forward": 1}},
{"all", "net", map[string]int{"input": 0, "output": 1, "forward": 1}},
{"all", "fw", map[string]int{"input": 1, "output": 0, "forward": 0}},
{"all:192.0.2.0/24", "fw", map[string]int{"input": 1, "output": 0, "forward": 0}},
{"all!fw", "all!fw", map[string]int{"input": 0, "output": 0, "forward": 2}},
{"all+", "all", map[string]int{"input": 1, "output": 1, "forward": 1}},
{"net,all", "fw", map[string]int{"input": 2, "output": 0, "forward": 0}},
{"fw,all", "net", map[string]int{"input": 0, "output": 1, "forward": 1}},
}
for _, tc := range cases {
t.Run(tc.src+"->"+tc.dst, func(t *testing.T) {
cfg := &config.Config{
Settings: config.Settings{TableName: "test", AddressFamily: config.FamilyINET},
Zones: map[string]config.Zone{
"fw": {Type: config.ZoneFirewall},
"net": {Type: config.ZoneIP},
"loc": {Type: config.ZoneIP},
},
Interfaces: []config.Interface{{Zone: "net", Interface: "eth0"}, {Zone: "loc", Interface: "eth1"}},
Rules: []config.Rule{
{Action: config.RuleAccept, Source: tc.src, Dest: tc.dst, Proto: "icmp", DPort: config.PortSpec{"8"}},
},
PortGroups: map[string]config.PortGroup{},
}
state, err := NewCompiler(cfg).Compile()
if err != nil {
t.Fatalf("Compile() error: %v", err)
}
for chain, want := range tc.want {
got := 0
for _, r := range state.Rules[chain] {
if r.Tag == "rule:0" {
got++
}
}
if got != want {
t.Errorf("%s: got %d rule:0 entries, want %d", chain, got, want)
}
}
})
}
}
func TestSpecCount_CommaAllMatchesExpansion(t *testing.T) {
c := NewCompiler(&config.Config{
Zones: map[string]config.Zone{"fw": {Type: config.ZoneFirewall}, "net": {Type: config.ZoneIP}},
})
for _, tc := range []struct {
src, dst string
want int
}{
{"net,all", "fw", 2},
{"fw,all", "net", 2},
} {
if got := c.specCount(tc.src, tc.dst, "", "fw", config.RuleAccept); got != tc.want {
t.Errorf("specCount(%s, %s) = %d, want %d", tc.src, tc.dst, got, tc.want)
}
}
}
func TestCompile_Dispositions(t *testing.T) {
cases := []struct {
invalid, untracked config.PolicyAction
want map[string]expr.Any // tag prefix -> verdict expr, nil = absent
}{
{"", "", map[string]expr.Any{"ct:invalid:": &expr.Verdict{Kind: expr.VerdictDrop}, "ct:untracked:": nil}},
{config.PolicyContinue, config.PolicyContinue, map[string]expr.Any{"ct:invalid:": nil, "ct:untracked:": nil}},
{config.PolicyReject, config.PolicyAccept, map[string]expr.Any{
"ct:invalid:": rejectExprs(0, config.FamilyINET)[0],
"ct:untracked:": &expr.Verdict{Kind: expr.VerdictAccept},
}},
}
for _, tc := range cases {
cfg := &config.Config{
Settings: config.Settings{
TableName: "test",
AddressFamily: config.FamilyINET,
InvalidDisposition: tc.invalid,
UntrackedDisposition: tc.untracked,
},
Zones: map[string]config.Zone{"fw": {Type: config.ZoneFirewall}, "net": {Type: config.ZoneIP}},
Interfaces: []config.Interface{{Zone: "net", Interface: "eth0"}},
Policy: []config.Policy{{Source: "all", Dest: "all", Action: config.PolicyDrop}},
PortGroups: make(map[string]config.PortGroup),
}
state, err := NewCompiler(cfg).Compile()
if err != nil {
t.Fatalf("Compile: %v", err)
}
for _, chain := range []string{"input", "forward", "output"} {
for prefix, want := range tc.want {
var got *ManagedRule
for i, r := range state.Rules[chain] {
if r.Tag == prefix+chain {
got = &state.Rules[chain][i]
}
}
switch {
case want == nil && got != nil:
t.Errorf("%q/%q: unexpected %s%s rule", tc.invalid, tc.untracked, prefix, chain)
case want != nil && got == nil:
t.Errorf("%q/%q: missing %s%s rule", tc.invalid, tc.untracked, prefix, chain)
case want != nil && !reflect.DeepEqual(got.Exprs[len(got.Exprs)-1], want):
t.Errorf("%q/%q: %s%s verdict = %#v, want %#v", tc.invalid, tc.untracked, prefix, chain, got.Exprs[len(got.Exprs)-1], want)
}
}
}
}
}
+138 -19
View File
@@ -5,6 +5,8 @@ import (
"github.com/google/nftables" "github.com/google/nftables"
"github.com/google/nftables/expr" "github.com/google/nftables/expr"
"github.com/mdlayher/netlink"
"golang.org/x/sys/unix"
"git.unkin.net/unkin/tomswall/internal/config" "git.unkin.net/unkin/tomswall/internal/config"
) )
@@ -15,16 +17,101 @@ type Engine struct {
} }
func NewEngine(cfg *config.Config) (*Engine, error) { func NewEngine(cfg *config.Config) (*Engine, error) {
conn, err := nftables.New() conn, err := nftables.New(nftables.WithSockOptions(largeBuffers))
if err != nil { if err != nil {
return nil, fmt.Errorf("connecting to nftables: %w", err) return nil, fmt.Errorf("connecting to nftables: %w", err)
} }
return &Engine{cfg: cfg, conn: conn}, nil return &Engine{cfg: cfg, conn: conn}, nil
} }
var tableFamilies = map[config.AddressFamily]nftables.TableFamily{
config.FamilyINET: nftables.TableFamilyINet,
config.FamilyIP: nftables.TableFamilyIPv4,
config.FamilyIP6: nftables.TableFamilyIPv6,
}
func (e *Engine) family() nftables.TableFamily {
if f, ok := tableFamilies[e.cfg.Settings.AddressFamily]; ok {
return f
}
return nftables.TableFamilyINet
}
func addressFamily(tf nftables.TableFamily) config.AddressFamily {
for f, t := range tableFamilies {
if t == tf {
return f
}
}
return config.FamilyINET
}
// withFamily is the engine for the same table name in another address family.
func (e *Engine) withFamily(f config.AddressFamily) *Engine {
cfg := *e.cfg
cfg.Settings.AddressFamily = f
return &Engine{cfg: &cfg, conn: e.conn}
}
// overlaps reports whether tables of families a and b filter the same traffic:
// inet covers both ip and ip6, which do not overlap each other.
func overlaps(a, b nftables.TableFamily) bool {
if a == b {
return false
}
return (a == nftables.TableFamilyINet && (b == nftables.TableFamilyIPv4 || b == nftables.TableFamilyIPv6)) ||
(b == nftables.TableFamilyINet && (a == nftables.TableFamilyIPv4 || a == nftables.TableFamilyIPv6))
}
// staleTables are our-named tables left by a different address_family that
// would still filter the traffic this family now owns.
func (e *Engine) staleTables() ([]*nftables.Table, error) {
tables, err := e.conn.ListTables()
if err != nil {
return nil, fmt.Errorf("listing tables: %w", err)
}
var stale []*nftables.Table
for _, t := range tables {
if t.Name == e.cfg.Settings.TableName && overlaps(e.family(), t.Family) {
stale = append(stale, t)
}
}
return stale, nil
}
// batchBufSize bounds one batch: the kernel rejects a batch larger than the
// send buffer (EMSGSIZE) and drops ACKs beyond the receive buffer (ENOBUFS)
// after committing it.
// ponytail: fixed cap of tens of thousands of rules; size per batch if exceeded.
const batchBufSize = 64 << 20
// largeBuffers raises both socket buffers, ignoring rmem_max/wmem_max when
// CAP_NET_ADMIN allows it and falling back to the capped sizes otherwise.
func largeBuffers(c *netlink.Conn) error {
rc, err := c.SyscallConn()
if err != nil {
return err
}
var serr error
err = rc.Control(func(fd uintptr) {
for _, o := range [][2]int{{unix.SO_SNDBUFFORCE, unix.SO_SNDBUF}, {unix.SO_RCVBUFFORCE, unix.SO_RCVBUF}} {
if unix.SetsockoptInt(int(fd), unix.SOL_SOCKET, o[0], batchBufSize) == nil {
continue
}
if serr = unix.SetsockoptInt(int(fd), unix.SOL_SOCKET, o[1], batchBufSize); serr != nil {
return
}
}
})
if err != nil {
return err
}
return serr
}
func (e *Engine) ensureTable() *nftables.Table { func (e *Engine) ensureTable() *nftables.Table {
return e.conn.AddTable(&nftables.Table{ return e.conn.AddTable(&nftables.Table{
Family: nftables.TableFamilyINet, Family: e.family(),
Name: e.cfg.Settings.TableName, Name: e.cfg.Settings.TableName,
}) })
} }
@@ -132,6 +219,13 @@ func (e *Engine) Apply(changes *ChangeSet) error {
} }
func (e *Engine) apply(changes *ChangeSet, policies map[string]nftables.ChainPolicy) error { func (e *Engine) apply(changes *ChangeSet, policies map[string]nftables.ChainPolicy) error {
stale, err := e.staleTables()
if err != nil {
return err
}
for _, t := range stale {
e.conn.DelTable(t)
}
table := e.ensureTable() table := e.ensureTable()
chains := e.ensureChains(table, policies) chains := e.ensureChains(table, policies)
@@ -173,18 +267,24 @@ func (e *Engine) apply(changes *ChangeSet, policies map[string]nftables.ChainPol
} }
func (e *Engine) Flush() error { func (e *Engine) Flush() error {
tables, err := e.conn.ListTables() tables, err := e.staleTables()
if err != nil { if err != nil {
return fmt.Errorf("listing tables: %w", err) return err
}
own, err := e.findTable()
if err != nil {
return err
}
if own != nil {
tables = append(tables, own)
}
if len(tables) == 0 {
return nil
} }
for _, t := range tables { for _, t := range tables {
if t.Name == e.cfg.Settings.TableName { e.conn.DelTable(t)
e.conn.DelTable(t)
return e.conn.Flush()
}
} }
return nil return e.conn.Flush()
} }
func (e *Engine) findTable() (*nftables.Table, error) { func (e *Engine) findTable() (*nftables.Table, error) {
@@ -193,7 +293,7 @@ func (e *Engine) findTable() (*nftables.Table, error) {
return nil, fmt.Errorf("listing tables: %w", err) return nil, fmt.Errorf("listing tables: %w", err)
} }
for _, t := range tables { for _, t := range tables {
if t.Name == e.cfg.Settings.TableName && t.Family == nftables.TableFamilyINet { if t.Name == e.cfg.Settings.TableName && t.Family == e.family() {
return t, nil return t, nil
} }
} }
@@ -222,7 +322,7 @@ func (e *Engine) readCurrentState() (*FirewallState, error) {
} }
} }
chains, err := e.conn.ListChainsOfTableFamily(nftables.TableFamilyINet) chains, err := e.conn.ListChainsOfTableFamily(e.family())
if err != nil { if err != nil {
return nil, fmt.Errorf("listing chains: %w", err) return nil, fmt.Errorf("listing chains: %w", err)
} }
@@ -252,6 +352,7 @@ func (e *Engine) readCurrentState() (*FirewallState, error) {
// survives the process that took it. // survives the process that took it.
type Snapshot struct { type Snapshot struct {
Table string `json:"table"` Table string `json:"table"`
Family config.AddressFamily `json:"family,omitempty"`
Present bool `json:"present"` Present bool `json:"present"`
Policies map[string]nftables.ChainPolicy `json:"policies,omitempty"` Policies map[string]nftables.ChainPolicy `json:"policies,omitempty"`
Rules map[string][]SnapshotRule `json:"rules,omitempty"` Rules map[string][]SnapshotRule `json:"rules,omitempty"`
@@ -264,16 +365,30 @@ type SnapshotRule struct {
Exprs [][]byte `json:"exprs"` Exprs [][]byte `json:"exprs"`
} }
// Snapshot captures the live tomswall table so Restore can roll back to it. // Snapshot captures the live tomswall table so Restore can roll back to it,
// falling back to the overlapping table of another family that apply replaces.
func (e *Engine) Snapshot() (*Snapshot, error) { func (e *Engine) Snapshot() (*Snapshot, error) {
snap := &Snapshot{Table: e.cfg.Settings.TableName}
t, err := e.findTable() t, err := e.findTable()
if err != nil || t == nil { if err != nil {
return snap, err return nil, err
}
if t == nil {
stale, err := e.staleTables()
if err != nil {
return nil, err
}
// ponytail: captures one stale table; an inet config replacing both ip and ip6 restores only the first.
if len(stale) > 0 {
return e.withFamily(addressFamily(stale[0].Family)).Snapshot()
}
}
snap := &Snapshot{Table: e.cfg.Settings.TableName, Family: addressFamily(e.family())}
if t == nil {
return snap, nil
} }
snap.Present = true snap.Present = true
chains, err := e.conn.ListChainsOfTableFamily(nftables.TableFamilyINet) chains, err := e.conn.ListChainsOfTableFamily(e.family())
if err != nil { if err != nil {
return nil, fmt.Errorf("listing chains: %w", err) return nil, fmt.Errorf("listing chains: %w", err)
} }
@@ -288,7 +403,7 @@ func (e *Engine) Snapshot() (*Snapshot, error) {
if err != nil { if err != nil {
return nil, err return nil, err
} }
snap.Rules, err = encodeState(state) snap.Rules, err = encodeState(state, byte(e.family()))
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -302,10 +417,14 @@ func (e *Engine) Restore(s *Snapshot) error {
if s.Table != e.cfg.Settings.TableName { if s.Table != e.cfg.Settings.TableName {
return fmt.Errorf("snapshot is of table %q, engine manages %q", s.Table, e.cfg.Settings.TableName) return fmt.Errorf("snapshot is of table %q, engine manages %q", s.Table, e.cfg.Settings.TableName)
} }
// Snapshots predating the family field are of the inet table.
if f := addressFamily(tableFamilies[s.Family]); f != addressFamily(e.family()) {
return e.withFamily(f).Restore(s)
}
if !s.Present { if !s.Present {
return e.Flush() return e.Flush()
} }
want, err := decodeState(s.Rules) want, err := decodeState(s.Rules, byte(e.family()))
if err != nil { if err != nil {
return err return err
} }
+59
View File
@@ -0,0 +1,59 @@
package nftables
import (
"os"
"strconv"
"strings"
"testing"
"github.com/mdlayher/netlink"
"golang.org/x/sys/unix"
)
func TestLargeBuffersRaisesSocketBuffers(t *testing.T) {
c, err := netlink.Dial(unix.NETLINK_NETFILTER, nil)
if err != nil {
t.Skipf("netlink unavailable: %v", err)
}
defer c.Close()
if err := largeBuffers(c); err != nil {
t.Fatal(err)
}
// Without CAP_NET_ADMIN the kernel caps at the sysctl max; it doubles either way.
for opt, sysctl := range map[int]string{unix.SO_RCVBUF: "rmem_max", unix.SO_SNDBUF: "wmem_max"} {
want := 2 * min(batchBufSize, procInt(t, "/proc/sys/net/core/"+sysctl))
if got := sockBuf(t, c, opt); got < want {
t.Errorf("%s-bounded buffer = %d, want >= %d", sysctl, got, want)
}
}
}
func procInt(t *testing.T, path string) int {
t.Helper()
b, err := os.ReadFile(path)
if err != nil {
t.Skipf("reading %s: %v", path, err)
}
v, err := strconv.Atoi(strings.TrimSpace(string(b)))
if err != nil {
t.Fatal(err)
}
return v
}
func sockBuf(t *testing.T, c *netlink.Conn, opt int) int {
t.Helper()
rc, err := c.SyscallConn()
if err != nil {
t.Fatal(err)
}
var v int
var serr error
if err := rc.Control(func(fd uintptr) { v, serr = unix.GetsockoptInt(int(fd), unix.SOL_SOCKET, opt) }); err != nil {
t.Fatal(err)
}
if serr != nil {
t.Fatal(serr)
}
return v
}
+113
View File
@@ -0,0 +1,113 @@
package nftables
import (
"testing"
"github.com/google/nftables"
"github.com/google/nftables/expr"
"github.com/mdlayher/netlink"
"golang.org/x/sys/unix"
"git.unkin.net/unkin/tomswall/internal/config"
)
type sentTable struct {
msg int
family nftables.TableFamily
}
// familyEngine fakes a kernel holding tomswall tables of the given families
// and records table creations/deletions.
func familyEngine(t *testing.T, af config.AddressFamily, live ...nftables.TableFamily) (*Engine, *[]sentTable) {
var sent []sentTable
e := testEngine(t, func(req []netlink.Message) ([]netlink.Message, error) {
var out []netlink.Message
for _, m := range req {
switch m.Header.Type {
case nftType(unix.NFT_MSG_GETTABLE):
for _, f := range live {
attrs, _ := netlink.MarshalAttributes([]netlink.Attribute{{Type: unix.NFTA_TABLE_NAME, Data: []byte("tomswall\x00")}})
out = append(out, netlink.Message{Header: netlink.Header{Type: nftType(unix.NFT_MSG_NEWTABLE), Sequence: m.Header.Sequence}, Data: append([]byte{byte(f), 0, 0, 0}, attrs...)})
}
case nftType(unix.NFT_MSG_NEWTABLE):
sent = append(sent, sentTable{unix.NFT_MSG_NEWTABLE, nftables.TableFamily(m.Data[0])})
case nftType(unix.NFT_MSG_DELTABLE):
sent = append(sent, sentTable{unix.NFT_MSG_DELTABLE, nftables.TableFamily(m.Data[0])})
}
}
return out, nil
})
e.cfg.Settings.AddressFamily = af
return e, &sent
}
func TestApplyIPFamilyReplacesInetTable(t *testing.T) {
e, sent := familyEngine(t, config.FamilyIP, nftables.TableFamilyINet, nftables.TableFamilyIPv6)
if err := e.Apply(&ChangeSet{}); err != nil {
t.Fatal(err)
}
want := []sentTable{{unix.NFT_MSG_DELTABLE, nftables.TableFamilyINet}, {unix.NFT_MSG_NEWTABLE, nftables.TableFamilyIPv4}}
if len(*sent) != len(want) || (*sent)[0] != want[0] || (*sent)[1] != want[1] {
t.Errorf("got %+v, want %+v (the ip6 table must survive)", *sent, want)
}
}
func TestApplyInetFamilyReplacesIPTables(t *testing.T) {
e, sent := familyEngine(t, config.FamilyINET, nftables.TableFamilyIPv4, nftables.TableFamilyIPv6)
if err := e.Apply(&ChangeSet{}); err != nil {
t.Fatal(err)
}
var dels int
for _, s := range *sent {
if s.msg == unix.NFT_MSG_DELTABLE {
dels++
}
}
if dels != 2 {
t.Errorf("want ip and ip6 tables deleted, got %+v", *sent)
}
}
func TestFlushIPFamilyKeepsIP6Table(t *testing.T) {
e, sent := familyEngine(t, config.FamilyIP, nftables.TableFamilyIPv6, nftables.TableFamilyIPv4)
if err := e.Flush(); err != nil {
t.Fatal(err)
}
if len(*sent) != 1 || (*sent)[0] != (sentTable{unix.NFT_MSG_DELTABLE, nftables.TableFamilyIPv4}) {
t.Errorf("got %+v, want only the ip table deleted", *sent)
}
}
func TestSnapshotFallsBackToReplacedTable(t *testing.T) {
e, _ := familyEngine(t, config.FamilyIP, nftables.TableFamilyINet)
snap, err := e.Snapshot()
if err != nil {
t.Fatal(err)
}
if !snap.Present || snap.Family != config.FamilyINET {
t.Fatalf("want present inet snapshot, got %+v", snap)
}
// Reverting to the inet snapshot drops the tried ip table.
e, sent := familyEngine(t, config.FamilyIP, nftables.TableFamilyIPv4)
if err := e.Restore(&Snapshot{Table: "tomswall", Family: config.FamilyINET, Present: true}); err != nil {
t.Fatal(err)
}
want := []sentTable{{unix.NFT_MSG_DELTABLE, nftables.TableFamilyIPv4}, {unix.NFT_MSG_NEWTABLE, nftables.TableFamilyINet}}
if len(*sent) != 2 || (*sent)[0] != want[0] || (*sent)[1] != want[1] {
t.Errorf("got %+v, want %+v", *sent, want)
}
}
func TestRejectExprsFamily(t *testing.T) {
for af, want := range map[config.AddressFamily]expr.Reject{
config.FamilyINET: {Type: unix.NFT_REJECT_ICMPX_UNREACH, Code: unix.NFT_REJECT_ICMPX_PORT_UNREACH},
config.FamilyIP: {Type: unix.NFT_REJECT_ICMP_UNREACH, Code: 3},
config.FamilyIP6: {Type: unix.NFT_REJECT_ICMP_UNREACH, Code: 4},
} {
got := rejectExprs(unix.IPPROTO_UDP, af)[0].(*expr.Reject)
if *got != want {
t.Errorf("%s: got %+v, want %+v", af, *got, want)
}
}
}
+7 -10
View File
@@ -4,14 +4,11 @@ import (
"encoding/binary" "encoding/binary"
"fmt" "fmt"
"github.com/google/nftables"
"github.com/google/nftables/expr" "github.com/google/nftables/expr"
"github.com/mdlayher/netlink" "github.com/mdlayher/netlink"
"golang.org/x/sys/unix" "golang.org/x/sys/unix"
) )
const inet = byte(nftables.TableFamilyINet)
// exprByName mirrors the expression types google/nftables can parse back from the kernel. // exprByName mirrors the expression types google/nftables can parse back from the kernel.
var exprByName = map[string]func() expr.Any{ var exprByName = map[string]func() expr.Any{
"ct": func() expr.Any { return &expr.Ct{} }, "ct": func() expr.Any { return &expr.Ct{} },
@@ -40,13 +37,13 @@ var exprByName = map[string]func() expr.Any{
"notrack": func() expr.Any { return &expr.Notrack{} }, "notrack": func() expr.Any { return &expr.Notrack{} },
} }
func encodeState(state *FirewallState) (map[string][]SnapshotRule, error) { func encodeState(state *FirewallState, fam byte) (map[string][]SnapshotRule, error) {
out := make(map[string][]SnapshotRule, len(state.Rules)) out := make(map[string][]SnapshotRule, len(state.Rules))
for chain, rules := range state.Rules { for chain, rules := range state.Rules {
for _, r := range rules { for _, r := range rules {
sr := SnapshotRule{Tag: r.Tag} sr := SnapshotRule{Tag: r.Tag}
for _, e := range r.Exprs { for _, e := range r.Exprs {
b, err := expr.Marshal(inet, e) b, err := expr.Marshal(fam, e)
if err != nil { if err != nil {
return nil, fmt.Errorf("encoding %s rule %q: %w", chain, r.Tag, err) return nil, fmt.Errorf("encoding %s rule %q: %w", chain, r.Tag, err)
} }
@@ -58,13 +55,13 @@ func encodeState(state *FirewallState) (map[string][]SnapshotRule, error) {
return out, nil return out, nil
} }
func decodeState(rules map[string][]SnapshotRule) (*FirewallState, error) { func decodeState(rules map[string][]SnapshotRule, fam byte) (*FirewallState, error) {
state := &FirewallState{Rules: make(map[string][]ManagedRule, len(rules))} state := &FirewallState{Rules: make(map[string][]ManagedRule, len(rules))}
for chain, rs := range rules { for chain, rs := range rules {
for _, sr := range rs { for _, sr := range rs {
r := ManagedRule{Chain: chain, Tag: sr.Tag} r := ManagedRule{Chain: chain, Tag: sr.Tag}
for _, b := range sr.Exprs { for _, b := range sr.Exprs {
e, err := decodeExpr(b) e, err := decodeExpr(b, fam)
if err != nil { if err != nil {
return nil, fmt.Errorf("decoding %s rule %q: %w", chain, sr.Tag, err) return nil, fmt.Errorf("decoding %s rule %q: %w", chain, sr.Tag, err)
} }
@@ -77,7 +74,7 @@ func decodeState(rules map[string][]SnapshotRule) (*FirewallState, error) {
} }
// decodeExpr reverses expr.Marshal, as google/nftables does when reading rules. // decodeExpr reverses expr.Marshal, as google/nftables does when reading rules.
func decodeExpr(b []byte) (expr.Any, error) { func decodeExpr(b []byte, fam byte) (expr.Any, error) {
ad, err := netlink.NewAttributeDecoder(b) ad, err := netlink.NewAttributeDecoder(b)
if err != nil { if err != nil {
return nil, err return nil, err
@@ -104,13 +101,13 @@ func decodeExpr(b []byte) (expr.Any, error) {
if name == "notrack" { if name == "notrack" {
return e, nil return e, nil
} }
if err := expr.Unmarshal(inet, data, e); err != nil { if err := expr.Unmarshal(fam, data, e); err != nil {
return nil, err return nil, err
} }
// A verdict is an immediate into the verdict register with no data. // A verdict is an immediate into the verdict register with no data.
if imm, ok := e.(*expr.Immediate); ok && imm.Register == unix.NFT_REG_VERDICT && len(imm.Data) == 0 { if imm, ok := e.(*expr.Immediate); ok && imm.Register == unix.NFT_REG_VERDICT && len(imm.Data) == 0 {
v := &expr.Verdict{} v := &expr.Verdict{}
if err := expr.Unmarshal(inet, data, v); err != nil { if err := expr.Unmarshal(fam, data, v); err != nil {
return nil, err return nil, err
} }
return v, nil return v, nil
+5 -5
View File
@@ -29,7 +29,7 @@ func TestSnapshotRulesRoundTrip(t *testing.T) {
"input": {{Chain: "input", Tag: "ssh", Exprs: exprs}, {Chain: "input", Tag: "drop", Exprs: []expr.Any{&expr.Verdict{Kind: expr.VerdictDrop}}}}, "input": {{Chain: "input", Tag: "ssh", Exprs: exprs}, {Chain: "input", Tag: "drop", Exprs: []expr.Any{&expr.Verdict{Kind: expr.VerdictDrop}}}},
}} }}
rules, err := encodeState(state) rules, err := encodeState(state, byte(nftables.TableFamilyINet))
if err != nil { if err != nil {
t.Fatal(err) t.Fatal(err)
} }
@@ -45,7 +45,7 @@ func TestSnapshotRulesRoundTrip(t *testing.T) {
if snap.Policies["input"] != nftables.ChainPolicyAccept { if snap.Policies["input"] != nftables.ChainPolicyAccept {
t.Errorf("policy lost: %v", snap.Policies) t.Errorf("policy lost: %v", snap.Policies)
} }
got, err := decodeState(snap.Rules) got, err := decodeState(snap.Rules, byte(nftables.TableFamilyINet))
if err != nil { if err != nil {
t.Fatal(err) t.Fatal(err)
} }
@@ -79,7 +79,7 @@ func TestSnapshotAndRestoreAbsentTable(t *testing.T) {
for _, m := range req { for _, m := range req {
sent = append(sent, m.Header.Type) sent = append(sent, m.Header.Type)
if m.Header.Type == nftType(unix.NFT_MSG_GETTABLE) && tablePresent { if m.Header.Type == nftType(unix.NFT_MSG_GETTABLE) && tablePresent {
data := []byte{inet, 0, 0, 0} data := []byte{byte(nftables.TableFamilyINet), 0, 0, 0}
attrs, _ := netlink.MarshalAttributes([]netlink.Attribute{{Type: unix.NFTA_TABLE_NAME, Data: []byte("tomswall\x00")}}) attrs, _ := netlink.MarshalAttributes([]netlink.Attribute{{Type: unix.NFTA_TABLE_NAME, Data: []byte("tomswall\x00")}})
return []netlink.Message{{Header: netlink.Header{Type: nftType(unix.NFT_MSG_NEWTABLE), Sequence: m.Header.Sequence}, Data: append(data, attrs...)}}, nil return []netlink.Message{{Header: netlink.Header{Type: nftType(unix.NFT_MSG_NEWTABLE), Sequence: m.Header.Sequence}, Data: append(data, attrs...)}}, nil
} }
@@ -116,7 +116,7 @@ func TestRestorePresentTable(t *testing.T) {
{Tag: "ssh", Exprs: []expr.Any{&expr.Ct{Register: 1, Key: expr.CtKeySTATE}, &expr.Verdict{Kind: expr.VerdictAccept}}}, {Tag: "ssh", Exprs: []expr.Any{&expr.Ct{Register: 1, Key: expr.CtKeySTATE}, &expr.Verdict{Kind: expr.VerdictAccept}}},
{Tag: "drop", Exprs: []expr.Any{&expr.Verdict{Kind: expr.VerdictDrop}}}, {Tag: "drop", Exprs: []expr.Any{&expr.Verdict{Kind: expr.VerdictDrop}}},
} { } {
enc, err := encodeState(&FirewallState{Rules: map[string][]ManagedRule{"input": {r}}}) enc, err := encodeState(&FirewallState{Rules: map[string][]ManagedRule{"input": {r}}}, byte(nftables.TableFamilyINet))
if err != nil { if err != nil {
t.Fatal(err) t.Fatal(err)
} }
@@ -132,7 +132,7 @@ func TestRestorePresentTable(t *testing.T) {
if err != nil { if err != nil {
t.Fatal(err) t.Fatal(err)
} }
return append([]byte{inet, 0, 0, 0}, b...) return append([]byte{byte(nftables.TableFamilyINet), 0, 0, 0}, b...)
} }
handle := make([]byte, 8) handle := make([]byte, 8)
binary.BigEndian.PutUint64(handle, 7) binary.BigEndian.PutUint64(handle, 7)
+11 -1
View File
@@ -99,6 +99,15 @@ func convertDir(dir string, ipv6 bool) (*config.Config, error) {
return cfg, nil return cfg, nil
} }
// disposition maps a shorewall *_DISPOSITION value; unset means CONTINUE and A_ (audit) variants map to their base action.
func disposition(v string) config.PolicyAction {
v = strings.TrimPrefix(strings.ToLower(v), "a_")
if v == "" {
return config.PolicyContinue
}
return config.PolicyAction(v)
}
func subst(s string, params map[string]string) string { func subst(s string, params map[string]string) string {
if !strings.Contains(s, "$") { if !strings.Contains(s, "$") {
return s return s
@@ -115,6 +124,8 @@ func convertConf(dir string, cfg *config.Config, params map[string]string, ipv6
if err != nil { if err != nil {
return err return err
} }
cfg.Settings.InvalidDisposition = disposition(conf["INVALID_DISPOSITION"])
cfg.Settings.UntrackedDisposition = disposition(conf["UNTRACKED_DISPOSITION"])
if conf == nil { if conf == nil {
return nil return nil
} }
@@ -136,7 +147,6 @@ func convertConf(dir string, cfg *config.Config, params map[string]string, ipv6
if v, ok := conf["IMPLICIT_CONTINUE"]; ok { if v, ok := conf["IMPLICIT_CONTINUE"]; ok {
cfg.Settings.ImplicitContinue = v == "Yes" cfg.Settings.ImplicitContinue = v == "Yes"
} }
return nil return nil
} }
+31
View File
@@ -725,3 +725,34 @@ func TestIsIPv6Dir(t *testing.T) {
} }
}) })
} }
func TestConvert_Dispositions(t *testing.T) {
cases := []struct {
conf string
invalid, untracked config.PolicyAction
}{
{"", config.PolicyContinue, config.PolicyContinue},
{"IP_FORWARDING=Yes", config.PolicyContinue, config.PolicyContinue},
{"INVALID_DISPOSITION=CONTINUE\nUNTRACKED_DISPOSITION=ACCEPT", config.PolicyContinue, config.PolicyAccept},
{"INVALID_DISPOSITION=DROP\nUNTRACKED_DISPOSITION=A_DROP", config.PolicyDrop, config.PolicyDrop},
{"INVALID_DISPOSITION=A_REJECT", config.PolicyReject, config.PolicyContinue},
}
for _, tc := range cases {
dir := t.TempDir()
writeFile(t, dir, "shorewall.conf", tc.conf)
writeFile(t, dir, "zones", "fw firewall\nnet ipv4\n")
writeFile(t, dir, "interfaces", "net eth0 -\n")
writeFile(t, dir, "policy", "all all DROP\n")
cfg, err := Convert(dir)
if err != nil {
t.Fatalf("Convert(%q): %v", tc.conf, err)
}
if cfg.Settings.InvalidDisposition != tc.invalid || cfg.Settings.UntrackedDisposition != tc.untracked {
t.Errorf("%q: got invalid=%q untracked=%q, want %q/%q", tc.conf,
cfg.Settings.InvalidDisposition, cfg.Settings.UntrackedDisposition, tc.invalid, tc.untracked)
}
if err := cfg.Validate(); err != nil {
t.Errorf("%q: Validate: %v", tc.conf, err)
}
}
}
+21 -3
View File
@@ -175,10 +175,28 @@ func Revert(id string) (reverted bool, err error) {
if err != nil || p == nil || (id != "" && p.ID != id) { if err != nil || p == nil || (id != "" && p.ID != id) {
return false, err return false, err
} }
if err := restore(p.Snapshot); err != nil { return true, restorePending(p)
return false, fmt.Errorf("restoring snapshot: %w", err) }
// Abort restores the pending snapshot after a failed apply, which may have
// committed partially. A failed restore keeps the snapshot and timer so the
// timer still reverts. The caller must hold the lock.
func Abort() error {
p, err := load()
if err != nil {
return err
} }
return true, Discard() if p == nil {
return errors.New("no pending try to abort")
}
return restorePending(p)
}
func restorePending(p *pending) error {
if err := restore(p.Snapshot); err != nil {
return fmt.Errorf("restoring snapshot: %w", err)
}
return Discard()
} }
func load() (*pending, error) { func load() (*pending, error) {
+38
View File
@@ -209,3 +209,41 @@ func TestRevertStaleIDIgnored(t *testing.T) {
t.Errorf("newer try's snapshot removed: %v", err) t.Errorf("newer try's snapshot removed: %v", err)
} }
} }
func TestAbortRestoresAndDisarms(t *testing.T) {
cmds := setup(t)
restored := stubRestore(t, nil)
snap := &nftables.Snapshot{Table: "tomswall", Present: true}
arm(t, snap)
if err := Abort(); err != nil {
t.Fatal(err)
}
if len(*restored) != 1 || !reflect.DeepEqual((*restored)[0], snap) {
t.Errorf("restored %+v, want the armed snapshot", *restored)
}
if _, err := os.Stat(snapshotPath()); !os.IsNotExist(err) {
t.Error("snapshot not removed")
}
if last := (*cmds)[len(*cmds)-1]; last != "systemctl stop "+Unit+".timer" {
t.Errorf("timer not stopped, last command %q", last)
}
}
func TestAbortFailureKeepsSnapshotAndTimer(t *testing.T) {
cmds := setup(t)
boom := errors.New("netlink down")
stubRestore(t, boom)
arm(t, &nftables.Snapshot{Table: "tomswall"})
armed := len(*cmds)
if err := Abort(); !errors.Is(err, boom) {
t.Fatalf("Abort error = %v, want %v", err, boom)
}
if _, err := os.Stat(snapshotPath()); err != nil {
t.Fatalf("snapshot gone after failed abort: %v", err)
}
if len(*cmds) != armed {
t.Errorf("revert timer touched after failed abort: %v", (*cmds)[armed:])
}
}
+4
View File
@@ -8,6 +8,10 @@ settings:
log_level: info log_level: info
table_name: tomswall table_name: tomswall
implicit_continue: false implicit_continue: false
# ct state invalid/untracked verdict: accept, drop, reject, continue (pass to rules)
# defaults: invalid drop, untracked continue (migrate defaults both to continue, as shorewall)
invalid_disposition: drop
untracked_disposition: continue
# Named port groups — reusable port+protocol combos referenced in rules # Named port groups — reusable port+protocol combos referenced in rules
portgroups: portgroups: