mirror of
https://gitclone.com/github.com/MetaCubeX/Clash.Meta
synced 2024-11-15 21:51:23 +08:00
399 lines
7.8 KiB
Go
399 lines
7.8 KiB
Go
package router
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import (
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"encoding/binary"
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"fmt"
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"net"
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"sort"
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"strings"
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"github.com/metacubex/mihomo/component/geodata/strmatcher"
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"github.com/metacubex/mihomo/component/trie"
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)
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var matcherTypeMap = map[Domain_Type]strmatcher.Type{
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Domain_Plain: strmatcher.Substr,
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Domain_Regex: strmatcher.Regex,
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Domain_Domain: strmatcher.Domain,
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Domain_Full: strmatcher.Full,
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}
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func domainToMatcher(domain *Domain) (strmatcher.Matcher, error) {
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matcherType, f := matcherTypeMap[domain.Type]
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if !f {
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return nil, fmt.Errorf("unsupported domain type %v", domain.Type)
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}
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matcher, err := matcherType.New(domain.Value)
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if err != nil {
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return nil, fmt.Errorf("failed to create domain matcher, base error: %s", err.Error())
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}
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return matcher, nil
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}
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type DomainMatcher interface {
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ApplyDomain(string) bool
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}
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type succinctDomainMatcher struct {
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set *trie.DomainSet
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otherMatchers []strmatcher.Matcher
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not bool
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}
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func (m *succinctDomainMatcher) ApplyDomain(domain string) bool {
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isMatched := m.set.Has(domain)
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if !isMatched {
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for _, matcher := range m.otherMatchers {
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isMatched = matcher.Match(domain)
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if isMatched {
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break
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}
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}
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}
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if m.not {
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isMatched = !isMatched
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}
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return isMatched
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}
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func NewSuccinctMatcherGroup(domains []*Domain, not bool) (DomainMatcher, error) {
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t := trie.New[struct{}]()
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m := &succinctDomainMatcher{
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not: not,
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}
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for _, d := range domains {
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switch d.Type {
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case Domain_Plain, Domain_Regex:
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matcher, err := matcherTypeMap[d.Type].New(d.Value)
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if err != nil {
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return nil, err
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}
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m.otherMatchers = append(m.otherMatchers, matcher)
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case Domain_Domain:
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err := t.Insert("+."+d.Value, struct{}{})
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if err != nil {
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return nil, err
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}
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case Domain_Full:
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err := t.Insert(d.Value, struct{}{})
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if err != nil {
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return nil, err
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}
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}
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}
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m.set = t.NewDomainSet()
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return m, nil
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}
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type v2rayDomainMatcher struct {
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matchers strmatcher.IndexMatcher
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not bool
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}
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func NewMphMatcherGroup(domains []*Domain, not bool) (DomainMatcher, error) {
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g := strmatcher.NewMphMatcherGroup()
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for _, d := range domains {
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matcherType, f := matcherTypeMap[d.Type]
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if !f {
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return nil, fmt.Errorf("unsupported domain type %v", d.Type)
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}
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_, err := g.AddPattern(d.Value, matcherType)
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if err != nil {
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return nil, err
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}
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}
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g.Build()
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return &v2rayDomainMatcher{
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matchers: g,
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not: not,
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}, nil
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}
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func (m *v2rayDomainMatcher) ApplyDomain(domain string) bool {
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isMatched := len(m.matchers.Match(strings.ToLower(domain))) > 0
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if m.not {
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isMatched = !isMatched
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}
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return isMatched
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}
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// CIDRList is an alias of []*CIDR to provide sort.Interface.
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type CIDRList []*CIDR
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// Len implements sort.Interface.
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func (l *CIDRList) Len() int {
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return len(*l)
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}
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// Less implements sort.Interface.
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func (l *CIDRList) Less(i int, j int) bool {
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ci := (*l)[i]
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cj := (*l)[j]
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if len(ci.Ip) < len(cj.Ip) {
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return true
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}
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if len(ci.Ip) > len(cj.Ip) {
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return false
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}
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for k := 0; k < len(ci.Ip); k++ {
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if ci.Ip[k] < cj.Ip[k] {
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return true
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}
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if ci.Ip[k] > cj.Ip[k] {
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return false
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}
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}
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return ci.Prefix < cj.Prefix
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}
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// Swap implements sort.Interface.
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func (l *CIDRList) Swap(i int, j int) {
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(*l)[i], (*l)[j] = (*l)[j], (*l)[i]
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}
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type ipv6 struct {
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a uint64
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b uint64
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}
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type GeoIPMatcher struct {
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countryCode string
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reverseMatch bool
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ip4 []uint32
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prefix4 []uint8
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ip6 []ipv6
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prefix6 []uint8
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}
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func normalize4(ip uint32, prefix uint8) uint32 {
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return (ip >> (32 - prefix)) << (32 - prefix)
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}
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func normalize6(ip ipv6, prefix uint8) ipv6 {
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if prefix <= 64 {
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ip.a = (ip.a >> (64 - prefix)) << (64 - prefix)
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ip.b = 0
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} else {
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ip.b = (ip.b >> (128 - prefix)) << (128 - prefix)
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}
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return ip
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}
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func (m *GeoIPMatcher) Init(cidrs []*CIDR) error {
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ip4Count := 0
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ip6Count := 0
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for _, cidr := range cidrs {
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ip := cidr.Ip
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switch len(ip) {
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case 4:
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ip4Count++
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case 16:
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ip6Count++
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default:
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return fmt.Errorf("unexpect ip length: %d", len(ip))
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}
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}
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cidrList := CIDRList(cidrs)
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sort.Sort(&cidrList)
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m.ip4 = make([]uint32, 0, ip4Count)
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m.prefix4 = make([]uint8, 0, ip4Count)
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m.ip6 = make([]ipv6, 0, ip6Count)
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m.prefix6 = make([]uint8, 0, ip6Count)
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for _, cidr := range cidrs {
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ip := cidr.Ip
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prefix := uint8(cidr.Prefix)
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switch len(ip) {
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case 4:
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m.ip4 = append(m.ip4, normalize4(binary.BigEndian.Uint32(ip), prefix))
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m.prefix4 = append(m.prefix4, prefix)
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case 16:
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ip6 := ipv6{
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a: binary.BigEndian.Uint64(ip[0:8]),
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b: binary.BigEndian.Uint64(ip[8:16]),
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}
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ip6 = normalize6(ip6, prefix)
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m.ip6 = append(m.ip6, ip6)
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m.prefix6 = append(m.prefix6, prefix)
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}
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}
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return nil
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}
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func (m *GeoIPMatcher) SetReverseMatch(isReverseMatch bool) {
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m.reverseMatch = isReverseMatch
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}
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func (m *GeoIPMatcher) match4(ip uint32) bool {
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if len(m.ip4) == 0 {
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return false
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}
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if ip < m.ip4[0] {
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return false
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}
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size := uint32(len(m.ip4))
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l := uint32(0)
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r := size
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for l < r {
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x := ((l + r) >> 1)
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if ip < m.ip4[x] {
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r = x
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continue
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}
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nip := normalize4(ip, m.prefix4[x])
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if nip == m.ip4[x] {
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return true
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}
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l = x + 1
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}
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return l > 0 && normalize4(ip, m.prefix4[l-1]) == m.ip4[l-1]
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}
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func less6(a ipv6, b ipv6) bool {
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return a.a < b.a || (a.a == b.a && a.b < b.b)
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}
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func (m *GeoIPMatcher) match6(ip ipv6) bool {
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if len(m.ip6) == 0 {
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return false
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}
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if less6(ip, m.ip6[0]) {
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return false
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}
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size := uint32(len(m.ip6))
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l := uint32(0)
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r := size
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for l < r {
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x := (l + r) / 2
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if less6(ip, m.ip6[x]) {
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r = x
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continue
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}
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if normalize6(ip, m.prefix6[x]) == m.ip6[x] {
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return true
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}
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l = x + 1
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}
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return l > 0 && normalize6(ip, m.prefix6[l-1]) == m.ip6[l-1]
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}
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// Match returns true if the given ip is included by the GeoIP.
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func (m *GeoIPMatcher) Match(ip net.IP) bool {
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switch len(ip) {
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case 4:
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if m.reverseMatch {
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return !m.match4(binary.BigEndian.Uint32(ip))
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}
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return m.match4(binary.BigEndian.Uint32(ip))
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case 16:
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if m.reverseMatch {
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return !m.match6(ipv6{
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a: binary.BigEndian.Uint64(ip[0:8]),
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b: binary.BigEndian.Uint64(ip[8:16]),
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})
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}
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return m.match6(ipv6{
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a: binary.BigEndian.Uint64(ip[0:8]),
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b: binary.BigEndian.Uint64(ip[8:16]),
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})
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default:
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return false
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}
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}
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// GeoIPMatcherContainer is a container for GeoIPMatchers. It keeps unique copies of GeoIPMatcher by country code.
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type GeoIPMatcherContainer struct {
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matchers []*GeoIPMatcher
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}
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// Add adds a new GeoIP set into the container.
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// If the country code of GeoIP is not empty, GeoIPMatcherContainer will try to find an existing one, instead of adding a new one.
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func (c *GeoIPMatcherContainer) Add(geoip *GeoIP) (*GeoIPMatcher, error) {
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if len(geoip.CountryCode) > 0 {
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for _, m := range c.matchers {
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if m.countryCode == geoip.CountryCode && m.reverseMatch == geoip.ReverseMatch {
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return m, nil
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}
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}
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}
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m := &GeoIPMatcher{
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countryCode: geoip.CountryCode,
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reverseMatch: geoip.ReverseMatch,
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}
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if err := m.Init(geoip.Cidr); err != nil {
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return nil, err
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}
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if len(geoip.CountryCode) > 0 {
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c.matchers = append(c.matchers, m)
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}
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return m, nil
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}
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var globalGeoIPContainer GeoIPMatcherContainer
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type MultiGeoIPMatcher struct {
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matchers []*GeoIPMatcher
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}
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func NewGeoIPMatcher(geoip *GeoIP) (*GeoIPMatcher, error) {
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matcher, err := globalGeoIPContainer.Add(geoip)
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if err != nil {
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return nil, err
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}
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return matcher, nil
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}
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func (m *MultiGeoIPMatcher) ApplyIp(ip net.IP) bool {
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for _, matcher := range m.matchers {
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if matcher.Match(ip) {
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return true
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}
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}
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return false
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}
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func NewMultiGeoIPMatcher(geoips []*GeoIP) (*MultiGeoIPMatcher, error) {
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var matchers []*GeoIPMatcher
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for _, geoip := range geoips {
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matcher, err := globalGeoIPContainer.Add(geoip)
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if err != nil {
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return nil, err
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}
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matchers = append(matchers, matcher)
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}
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matcher := &MultiGeoIPMatcher{
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matchers: matchers,
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}
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return matcher, nil
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}
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