sing-box/route/rule_dns.go

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package route
import (
"net/netip"
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"github.com/sagernet/sing-box/adapter"
C "github.com/sagernet/sing-box/constant"
"github.com/sagernet/sing-box/log"
"github.com/sagernet/sing-box/option"
"github.com/sagernet/sing/common"
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E "github.com/sagernet/sing/common/exceptions"
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)
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func NewDNSRule(router adapter.Router, logger log.ContextLogger, options option.DNSRule, checkServer bool) (adapter.DNSRule, error) {
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switch options.Type {
case "", C.RuleTypeDefault:
if !options.DefaultOptions.IsValid() {
return nil, E.New("missing conditions")
}
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if options.DefaultOptions.Server == "" && checkServer {
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return nil, E.New("missing server field")
}
return NewDefaultDNSRule(router, logger, options.DefaultOptions)
case C.RuleTypeLogical:
if !options.LogicalOptions.IsValid() {
return nil, E.New("missing conditions")
}
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if options.LogicalOptions.Server == "" && checkServer {
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return nil, E.New("missing server field")
}
return NewLogicalDNSRule(router, logger, options.LogicalOptions)
default:
return nil, E.New("unknown rule type: ", options.Type)
}
}
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var _ adapter.DNSRule = (*DefaultDNSRule)(nil)
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type DefaultDNSRule struct {
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abstractDefaultRule
disableCache bool
rewriteTTL *uint32
clientSubnet *netip.Prefix
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}
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func NewDefaultDNSRule(router adapter.Router, logger log.ContextLogger, options option.DefaultDNSRule) (*DefaultDNSRule, error) {
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rule := &DefaultDNSRule{
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abstractDefaultRule: abstractDefaultRule{
invert: options.Invert,
outbound: options.Server,
},
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disableCache: options.DisableCache,
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rewriteTTL: options.RewriteTTL,
clientSubnet: (*netip.Prefix)(options.ClientSubnet),
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}
if len(options.Inbound) > 0 {
item := NewInboundRule(options.Inbound)
rule.items = append(rule.items, item)
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rule.allItems = append(rule.allItems, item)
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}
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if options.IPVersion > 0 {
switch options.IPVersion {
case 4, 6:
item := NewIPVersionItem(options.IPVersion == 6)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
default:
return nil, E.New("invalid ip version: ", options.IPVersion)
}
}
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if len(options.QueryType) > 0 {
item := NewQueryTypeItem(options.QueryType)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.Network) > 0 {
item := NewNetworkItem(options.Network)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
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}
if len(options.AuthUser) > 0 {
item := NewAuthUserItem(options.AuthUser)
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rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.Protocol) > 0 {
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item := NewProtocolItem(options.Protocol)
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rule.items = append(rule.items, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.Domain) > 0 || len(options.DomainSuffix) > 0 {
item := NewDomainItem(options.Domain, options.DomainSuffix)
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rule.destinationAddressItems = append(rule.destinationAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.DomainKeyword) > 0 {
item := NewDomainKeywordItem(options.DomainKeyword)
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rule.destinationAddressItems = append(rule.destinationAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.DomainRegex) > 0 {
item, err := NewDomainRegexItem(options.DomainRegex)
if err != nil {
return nil, E.Cause(err, "domain_regex")
}
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rule.destinationAddressItems = append(rule.destinationAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.Geosite) > 0 {
item := NewGeositeItem(router, logger, options.Geosite)
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rule.destinationAddressItems = append(rule.destinationAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.SourceGeoIP) > 0 {
item := NewGeoIPItem(router, logger, true, options.SourceGeoIP)
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rule.sourceAddressItems = append(rule.sourceAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.GeoIP) > 0 {
item := NewGeoIPItem(router, logger, false, options.GeoIP)
rule.destinationIPCIDRItems = append(rule.destinationIPCIDRItems, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.SourceIPCIDR) > 0 {
item, err := NewIPCIDRItem(true, options.SourceIPCIDR)
if err != nil {
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return nil, E.Cause(err, "source_ip_cidr")
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}
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rule.sourceAddressItems = append(rule.sourceAddressItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.IPCIDR) > 0 {
item, err := NewIPCIDRItem(false, options.IPCIDR)
if err != nil {
return nil, E.Cause(err, "ip_cidr")
}
rule.destinationIPCIDRItems = append(rule.destinationIPCIDRItems, item)
rule.allItems = append(rule.allItems, item)
}
if options.SourceIPIsPrivate {
item := NewIPIsPrivateItem(true)
rule.sourceAddressItems = append(rule.sourceAddressItems, item)
rule.allItems = append(rule.allItems, item)
}
if options.IPIsPrivate {
item := NewIPIsPrivateItem(false)
rule.destinationIPCIDRItems = append(rule.destinationIPCIDRItems, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.SourcePort) > 0 {
item := NewPortItem(true, options.SourcePort)
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rule.sourcePortItems = append(rule.sourcePortItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.SourcePortRange) > 0 {
item, err := NewPortRangeItem(true, options.SourcePortRange)
if err != nil {
return nil, E.Cause(err, "source_port_range")
}
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rule.sourcePortItems = append(rule.sourcePortItems, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.Port) > 0 {
item := NewPortItem(false, options.Port)
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rule.destinationPortItems = append(rule.destinationPortItems, item)
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rule.allItems = append(rule.allItems, item)
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}
if len(options.PortRange) > 0 {
item, err := NewPortRangeItem(false, options.PortRange)
if err != nil {
return nil, E.Cause(err, "port_range")
}
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rule.destinationPortItems = append(rule.destinationPortItems, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.ProcessName) > 0 {
item := NewProcessItem(options.ProcessName)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.ProcessPath) > 0 {
item := NewProcessPathItem(options.ProcessPath)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.ProcessPathRegex) > 0 {
item, err := NewProcessPathRegexItem(options.ProcessPathRegex)
if err != nil {
return nil, E.Cause(err, "process_path_regex")
}
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.PackageName) > 0 {
item := NewPackageNameItem(options.PackageName)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.User) > 0 {
item := NewUserItem(options.User)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.UserID) > 0 {
item := NewUserIDItem(options.UserID)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.Outbound) > 0 {
item := NewOutboundRule(options.Outbound)
rule.items = append(rule.items, item)
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rule.allItems = append(rule.allItems, item)
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}
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if options.ClashMode != "" {
item := NewClashModeItem(router, options.ClashMode)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.WIFISSID) > 0 {
item := NewWIFISSIDItem(router, options.WIFISSID)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
if len(options.WIFIBSSID) > 0 {
item := NewWIFIBSSIDItem(router, options.WIFIBSSID)
rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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if len(options.RuleSet) > 0 {
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item := NewRuleSetItem(router, options.RuleSet, options.RuleSetIPCIDRMatchSource, options.RuleSetIPCIDRAcceptEmpty)
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rule.items = append(rule.items, item)
rule.allItems = append(rule.allItems, item)
}
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return rule, nil
}
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func (r *DefaultDNSRule) DisableCache() bool {
return r.disableCache
}
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func (r *DefaultDNSRule) RewriteTTL() *uint32 {
return r.rewriteTTL
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}
func (r *DefaultDNSRule) ClientSubnet() *netip.Prefix {
return r.clientSubnet
}
func (r *DefaultDNSRule) WithAddressLimit() bool {
if len(r.destinationIPCIDRItems) > 0 {
return true
}
for _, rawRule := range r.items {
ruleSet, isRuleSet := rawRule.(*RuleSetItem)
if !isRuleSet {
continue
}
if ruleSet.ContainsDestinationIPCIDRRule() {
return true
}
}
return false
}
func (r *DefaultDNSRule) Match(metadata *adapter.InboundContext) bool {
metadata.IgnoreDestinationIPCIDRMatch = true
defer func() {
metadata.IgnoreDestinationIPCIDRMatch = false
}()
return r.abstractDefaultRule.Match(metadata)
}
func (r *DefaultDNSRule) MatchAddressLimit(metadata *adapter.InboundContext) bool {
return r.abstractDefaultRule.Match(metadata)
}
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var _ adapter.DNSRule = (*LogicalDNSRule)(nil)
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type LogicalDNSRule struct {
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abstractLogicalRule
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disableCache bool
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rewriteTTL *uint32
clientSubnet *netip.Prefix
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}
func NewLogicalDNSRule(router adapter.Router, logger log.ContextLogger, options option.LogicalDNSRule) (*LogicalDNSRule, error) {
r := &LogicalDNSRule{
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abstractLogicalRule: abstractLogicalRule{
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rules: make([]adapter.HeadlessRule, len(options.Rules)),
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invert: options.Invert,
outbound: options.Server,
},
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disableCache: options.DisableCache,
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rewriteTTL: options.RewriteTTL,
clientSubnet: (*netip.Prefix)(options.ClientSubnet),
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}
switch options.Mode {
case C.LogicalTypeAnd:
r.mode = C.LogicalTypeAnd
case C.LogicalTypeOr:
r.mode = C.LogicalTypeOr
default:
return nil, E.New("unknown logical mode: ", options.Mode)
}
for i, subRule := range options.Rules {
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rule, err := NewDNSRule(router, logger, subRule, false)
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if err != nil {
return nil, E.Cause(err, "sub rule[", i, "]")
}
r.rules[i] = rule
}
return r, nil
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}
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func (r *LogicalDNSRule) DisableCache() bool {
return r.disableCache
}
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func (r *LogicalDNSRule) RewriteTTL() *uint32 {
return r.rewriteTTL
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}
func (r *LogicalDNSRule) ClientSubnet() *netip.Prefix {
return r.clientSubnet
}
func (r *LogicalDNSRule) WithAddressLimit() bool {
for _, rawRule := range r.rules {
switch rule := rawRule.(type) {
case *DefaultDNSRule:
if rule.WithAddressLimit() {
return true
}
case *LogicalDNSRule:
if rule.WithAddressLimit() {
return true
}
}
}
return false
}
func (r *LogicalDNSRule) Match(metadata *adapter.InboundContext) bool {
if r.mode == C.LogicalTypeAnd {
return common.All(r.rules, func(it adapter.HeadlessRule) bool {
metadata.ResetRuleCache()
return it.(adapter.DNSRule).Match(metadata)
}) != r.invert
} else {
return common.Any(r.rules, func(it adapter.HeadlessRule) bool {
metadata.ResetRuleCache()
return it.(adapter.DNSRule).Match(metadata)
}) != r.invert
}
}
func (r *LogicalDNSRule) MatchAddressLimit(metadata *adapter.InboundContext) bool {
if r.mode == C.LogicalTypeAnd {
return common.All(r.rules, func(it adapter.HeadlessRule) bool {
metadata.ResetRuleCache()
return it.(adapter.DNSRule).MatchAddressLimit(metadata)
}) != r.invert
} else {
return common.Any(r.rules, func(it adapter.HeadlessRule) bool {
metadata.ResetRuleCache()
return it.(adapter.DNSRule).MatchAddressLimit(metadata)
}) != r.invert
}
}