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316 lines
6.1 KiB
316 lines
6.1 KiB
// +build !confonly
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package router
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import (
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"context"
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"strings"
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"v2ray.com/core/app/dispatcher"
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"v2ray.com/core/common/net"
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"v2ray.com/core/common/session"
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"v2ray.com/core/common/strmatcher"
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)
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type Condition interface {
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Apply(ctx context.Context) bool
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}
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type ConditionChan []Condition
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func NewConditionChan() *ConditionChan {
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var condChan ConditionChan = make([]Condition, 0, 8)
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return &condChan
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}
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func (v *ConditionChan) Add(cond Condition) *ConditionChan {
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*v = append(*v, cond)
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return v
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}
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func (v *ConditionChan) Apply(ctx context.Context) bool {
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for _, cond := range *v {
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if !cond.Apply(ctx) {
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return false
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}
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}
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return true
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}
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func (v *ConditionChan) Len() int {
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return len(*v)
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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, newError("unsupported domain type", 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, newError("failed to create domain matcher").Base(err)
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}
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return matcher, nil
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}
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type DomainMatcher struct {
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matchers strmatcher.IndexMatcher
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}
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func NewDomainMatcher(domains []*Domain) (*DomainMatcher, error) {
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g := new(strmatcher.MatcherGroup)
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for _, d := range domains {
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m, err := domainToMatcher(d)
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if err != nil {
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return nil, err
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}
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g.Add(m)
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}
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return &DomainMatcher{
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matchers: g,
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}, nil
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}
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func (m *DomainMatcher) ApplyDomain(domain string) bool {
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return m.matchers.Match(domain) > 0
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}
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func (m *DomainMatcher) Apply(ctx context.Context) bool {
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outbound := session.OutboundFromContext(ctx)
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if outbound == nil || !outbound.Target.IsValid() {
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return false
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}
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dest := outbound.Target
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if !dest.Address.Family().IsDomain() {
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return false
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}
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return m.ApplyDomain(dest.Address.Domain())
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}
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func sourceFromContext(ctx context.Context) net.Destination {
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inbound := session.InboundFromContext(ctx)
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if inbound == nil {
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return net.Destination{}
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}
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return inbound.Source
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}
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func targetFromContent(ctx context.Context) net.Destination {
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outbound := session.OutboundFromContext(ctx)
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if outbound == nil {
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return net.Destination{}
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}
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return outbound.Target
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}
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func resolvedIPFromContext(ctx context.Context) []net.IP {
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outbound := session.OutboundFromContext(ctx)
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if outbound == nil {
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return nil
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}
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return outbound.ResolvedIPs
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}
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type MultiGeoIPMatcher struct {
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matchers []*GeoIPMatcher
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destFunc func(context.Context) net.Destination
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resolvedIPFunc func(context.Context) []net.IP
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}
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func NewMultiGeoIPMatcher(geoips []*GeoIP, onSource bool) (*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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if onSource {
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matcher.destFunc = sourceFromContext
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} else {
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matcher.destFunc = targetFromContent
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matcher.resolvedIPFunc = resolvedIPFromContext
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}
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return matcher, nil
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}
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func (m *MultiGeoIPMatcher) Apply(ctx context.Context) bool {
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ips := make([]net.IP, 0, 4)
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dest := m.destFunc(ctx)
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if dest.IsValid() && dest.Address.Family().IsIP() {
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ips = append(ips, dest.Address.IP())
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}
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if m.resolvedIPFunc != nil {
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rips := m.resolvedIPFunc(ctx)
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if len(rips) > 0 {
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ips = append(ips, rips...)
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}
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}
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for _, ip := range ips {
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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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}
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return false
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}
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type PortMatcher struct {
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port net.PortRange
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}
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func NewPortMatcher(portRange net.PortRange) *PortMatcher {
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return &PortMatcher{
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port: portRange,
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}
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}
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func (v *PortMatcher) Apply(ctx context.Context) bool {
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outbound := session.OutboundFromContext(ctx)
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if outbound == nil || !outbound.Target.IsValid() {
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return false
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}
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return v.port.Contains(outbound.Target.Port)
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}
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type NetworkMatcher struct {
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list [8]bool
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}
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func NewNetworkMatcher(network []net.Network) NetworkMatcher {
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var matcher NetworkMatcher
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for _, n := range network {
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matcher.list[int(n)] = true
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}
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return matcher
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}
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func (v NetworkMatcher) Apply(ctx context.Context) bool {
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outbound := session.OutboundFromContext(ctx)
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if outbound == nil || !outbound.Target.IsValid() {
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return false
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}
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return v.list[int(outbound.Target.Network)]
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}
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type UserMatcher struct {
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user []string
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}
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func NewUserMatcher(users []string) *UserMatcher {
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usersCopy := make([]string, 0, len(users))
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for _, user := range users {
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if len(user) > 0 {
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usersCopy = append(usersCopy, user)
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}
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}
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return &UserMatcher{
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user: usersCopy,
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}
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}
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func (v *UserMatcher) Apply(ctx context.Context) bool {
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inbound := session.InboundFromContext(ctx)
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if inbound == nil {
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return false
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}
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user := inbound.User
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if user == nil {
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return false
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}
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for _, u := range v.user {
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if u == user.Email {
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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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type InboundTagMatcher struct {
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tags []string
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}
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func NewInboundTagMatcher(tags []string) *InboundTagMatcher {
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tagsCopy := make([]string, 0, len(tags))
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for _, tag := range tags {
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if len(tag) > 0 {
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tagsCopy = append(tagsCopy, tag)
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}
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}
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return &InboundTagMatcher{
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tags: tagsCopy,
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}
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}
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func (v *InboundTagMatcher) Apply(ctx context.Context) bool {
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inbound := session.InboundFromContext(ctx)
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if inbound == nil || len(inbound.Tag) == 0 {
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return false
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}
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tag := inbound.Tag
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for _, t := range v.tags {
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if t == tag {
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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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type ProtocolMatcher struct {
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protocols []string
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}
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func NewProtocolMatcher(protocols []string) *ProtocolMatcher {
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pCopy := make([]string, 0, len(protocols))
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for _, p := range protocols {
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if len(p) > 0 {
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pCopy = append(pCopy, p)
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}
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}
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return &ProtocolMatcher{
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protocols: pCopy,
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}
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}
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func (m *ProtocolMatcher) Apply(ctx context.Context) bool {
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result := dispatcher.SniffingResultFromContext(ctx)
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if result == nil {
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return false
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}
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protocol := result.Protocol()
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for _, p := range m.protocols {
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if strings.HasPrefix(protocol, p) {
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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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