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v2fly/infra/conf/v4/v2ray.go

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package v4
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import (
"encoding/json"
"strings"
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"google.golang.org/protobuf/types/known/anypb"
core "github.com/v2fly/v2ray-core/v5"
"github.com/v2fly/v2ray-core/v5/app/dispatcher"
"github.com/v2fly/v2ray-core/v5/app/proxyman"
"github.com/v2fly/v2ray-core/v5/app/stats"
"github.com/v2fly/v2ray-core/v5/common/serial"
"github.com/v2fly/v2ray-core/v5/infra/conf/cfgcommon"
"github.com/v2fly/v2ray-core/v5/infra/conf/cfgcommon/loader"
"github.com/v2fly/v2ray-core/v5/infra/conf/cfgcommon/muxcfg"
"github.com/v2fly/v2ray-core/v5/infra/conf/cfgcommon/proxycfg"
"github.com/v2fly/v2ray-core/v5/infra/conf/cfgcommon/sniffer"
"github.com/v2fly/v2ray-core/v5/infra/conf/synthetic/dns"
"github.com/v2fly/v2ray-core/v5/infra/conf/synthetic/log"
"github.com/v2fly/v2ray-core/v5/infra/conf/synthetic/router"
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)
var (
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inboundConfigLoader = loader.NewJSONConfigLoader(loader.ConfigCreatorCache{
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"dokodemo-door": func() interface{} { return new(DokodemoConfig) },
"http": func() interface{} { return new(HTTPServerConfig) },
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"shadowsocks": func() interface{} { return new(ShadowsocksServerConfig) },
"socks": func() interface{} { return new(SocksServerConfig) },
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"vless": func() interface{} { return new(VLessInboundConfig) },
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"vmess": func() interface{} { return new(VMessInboundConfig) },
"trojan": func() interface{} { return new(TrojanServerConfig) },
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}, "protocol", "settings")
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outboundConfigLoader = loader.NewJSONConfigLoader(loader.ConfigCreatorCache{
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"blackhole": func() interface{} { return new(BlackholeConfig) },
"freedom": func() interface{} { return new(FreedomConfig) },
"http": func() interface{} { return new(HTTPClientConfig) },
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"shadowsocks": func() interface{} { return new(ShadowsocksClientConfig) },
"socks": func() interface{} { return new(SocksClientConfig) },
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"vless": func() interface{} { return new(VLessOutboundConfig) },
"vmess": func() interface{} { return new(VMessOutboundConfig) },
"trojan": func() interface{} { return new(TrojanClientConfig) },
"dns": func() interface{} { return new(DNSOutboundConfig) },
"loopback": func() interface{} { return new(LoopbackConfig) },
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}, "protocol", "settings")
)
func toProtocolList(s []string) ([]proxyman.KnownProtocols, error) {
kp := make([]proxyman.KnownProtocols, 0, 8)
for _, p := range s {
switch strings.ToLower(p) {
case "http":
kp = append(kp, proxyman.KnownProtocols_HTTP)
case "https", "tls", "ssl":
kp = append(kp, proxyman.KnownProtocols_TLS)
default:
return nil, newError("Unknown protocol: ", p)
}
}
return kp, nil
}
type InboundDetourAllocationConfig struct {
Strategy string `json:"strategy"`
Concurrency *uint32 `json:"concurrency"`
RefreshMin *uint32 `json:"refresh"`
}
// Build implements Buildable.
func (c *InboundDetourAllocationConfig) Build() (*proxyman.AllocationStrategy, error) {
config := new(proxyman.AllocationStrategy)
switch strings.ToLower(c.Strategy) {
case "always":
config.Type = proxyman.AllocationStrategy_Always
case "random":
config.Type = proxyman.AllocationStrategy_Random
case "external":
config.Type = proxyman.AllocationStrategy_External
default:
return nil, newError("unknown allocation strategy: ", c.Strategy)
}
if c.Concurrency != nil {
config.Concurrency = &proxyman.AllocationStrategy_AllocationStrategyConcurrency{
Value: *c.Concurrency,
}
}
if c.RefreshMin != nil {
config.Refresh = &proxyman.AllocationStrategy_AllocationStrategyRefresh{
Value: *c.RefreshMin,
}
}
return config, nil
}
type InboundDetourConfig struct {
Protocol string `json:"protocol"`
PortRange *cfgcommon.PortRange `json:"port"`
ListenOn *cfgcommon.Address `json:"listen"`
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Settings *json.RawMessage `json:"settings"`
Tag string `json:"tag"`
Allocation *InboundDetourAllocationConfig `json:"allocate"`
StreamSetting *StreamConfig `json:"streamSettings"`
DomainOverride *cfgcommon.StringList `json:"domainOverride"`
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SniffingConfig *sniffer.SniffingConfig `json:"sniffing"`
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}
// Build implements Buildable.
func (c *InboundDetourConfig) Build() (*core.InboundHandlerConfig, error) {
receiverSettings := &proxyman.ReceiverConfig{}
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if c.ListenOn == nil {
// Listen on anyip, must set PortRange
if c.PortRange == nil {
return nil, newError("Listen on AnyIP but no Port(s) set in InboundDetour.")
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}
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receiverSettings.PortRange = c.PortRange.Build()
} else {
// Listen on specific IP or Unix Domain Socket
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receiverSettings.Listen = c.ListenOn.Build()
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listenDS := c.ListenOn.Family().IsDomain() && (c.ListenOn.Domain()[0] == '/' || c.ListenOn.Domain()[0] == '@')
listenIP := c.ListenOn.Family().IsIP() || (c.ListenOn.Family().IsDomain() && c.ListenOn.Domain() == "localhost")
switch {
case listenIP:
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// Listen on specific IP, must set PortRange
if c.PortRange == nil {
return nil, newError("Listen on specific ip without port in InboundDetour.")
}
// Listen on IP:Port
receiverSettings.PortRange = c.PortRange.Build()
case listenDS:
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if c.PortRange != nil {
// Listen on Unix Domain Socket, PortRange should be nil
receiverSettings.PortRange = nil
}
default:
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return nil, newError("unable to listen on domain address: ", c.ListenOn.Domain())
}
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}
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if c.Allocation != nil {
concurrency := -1
if c.Allocation.Concurrency != nil && c.Allocation.Strategy == "random" {
concurrency = int(*c.Allocation.Concurrency)
}
portRange := int(c.PortRange.To - c.PortRange.From + 1)
if concurrency >= 0 && concurrency >= portRange {
return nil, newError("not enough ports. concurrency = ", concurrency, " ports: ", c.PortRange.From, " - ", c.PortRange.To)
}
as, err := c.Allocation.Build()
if err != nil {
return nil, err
}
receiverSettings.AllocationStrategy = as
}
if c.StreamSetting != nil {
ss, err := c.StreamSetting.Build()
if err != nil {
return nil, err
}
receiverSettings.StreamSettings = ss
}
if c.SniffingConfig != nil {
s, err := c.SniffingConfig.Build()
if err != nil {
return nil, newError("failed to build sniffing config").Base(err)
}
receiverSettings.SniffingSettings = s
}
if c.DomainOverride != nil {
kp, err := toProtocolList(*c.DomainOverride)
if err != nil {
return nil, newError("failed to parse inbound detour config").Base(err)
}
receiverSettings.DomainOverride = kp
}
settings := []byte("{}")
if c.Settings != nil {
settings = ([]byte)(*c.Settings)
}
rawConfig, err := inboundConfigLoader.LoadWithID(settings, c.Protocol)
if err != nil {
return nil, newError("failed to load inbound detour config.").Base(err)
}
if dokodemoConfig, ok := rawConfig.(*DokodemoConfig); ok {
receiverSettings.ReceiveOriginalDestination = dokodemoConfig.Redirect
}
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ts, err := rawConfig.(cfgcommon.Buildable).Build()
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if err != nil {
return nil, err
}
return &core.InboundHandlerConfig{
Tag: c.Tag,
ReceiverSettings: serial.ToTypedMessage(receiverSettings),
ProxySettings: serial.ToTypedMessage(ts),
}, nil
}
type OutboundDetourConfig struct {
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Protocol string `json:"protocol"`
SendThrough *cfgcommon.Address `json:"sendThrough"`
Tag string `json:"tag"`
Settings *json.RawMessage `json:"settings"`
StreamSetting *StreamConfig `json:"streamSettings"`
ProxySettings *proxycfg.ProxyConfig `json:"proxySettings"`
MuxSettings *muxcfg.MuxConfig `json:"mux"`
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}
// Build implements Buildable.
func (c *OutboundDetourConfig) Build() (*core.OutboundHandlerConfig, error) {
senderSettings := &proxyman.SenderConfig{}
if c.SendThrough != nil {
address := c.SendThrough
if address.Family().IsDomain() {
return nil, newError("unable to send through: " + address.String())
}
senderSettings.Via = address.Build()
}
if c.StreamSetting != nil {
ss, err := c.StreamSetting.Build()
if err != nil {
return nil, err
}
senderSettings.StreamSettings = ss
}
if c.ProxySettings != nil {
ps, err := c.ProxySettings.Build()
if err != nil {
return nil, newError("invalid outbound detour proxy settings.").Base(err)
}
senderSettings.ProxySettings = ps
}
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if c.MuxSettings != nil {
senderSettings.MultiplexSettings = c.MuxSettings.Build()
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}
settings := []byte("{}")
if c.Settings != nil {
settings = ([]byte)(*c.Settings)
}
rawConfig, err := outboundConfigLoader.LoadWithID(settings, c.Protocol)
if err != nil {
return nil, newError("failed to parse to outbound detour config.").Base(err)
}
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ts, err := rawConfig.(cfgcommon.Buildable).Build()
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if err != nil {
return nil, err
}
return &core.OutboundHandlerConfig{
SenderSettings: serial.ToTypedMessage(senderSettings),
Tag: c.Tag,
ProxySettings: serial.ToTypedMessage(ts),
}, nil
}
type StatsConfig struct{}
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// Build implements Buildable.
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func (c *StatsConfig) Build() (*stats.Config, error) {
return &stats.Config{}, nil
}
type Config struct {
// Port of this Point server.
// Deprecated: Port exists for historical compatibility
// and should not be used.
Port uint16 `json:"port"`
// Deprecated: InboundConfig exists for historical compatibility
// and should not be used.
InboundConfig *InboundDetourConfig `json:"inbound"`
// Deprecated: OutboundConfig exists for historical compatibility
// and should not be used.
OutboundConfig *OutboundDetourConfig `json:"outbound"`
// Deprecated: InboundDetours exists for historical compatibility
// and should not be used.
InboundDetours []InboundDetourConfig `json:"inboundDetour"`
// Deprecated: OutboundDetours exists for historical compatibility
// and should not be used.
OutboundDetours []OutboundDetourConfig `json:"outboundDetour"`
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LogConfig *log.LogConfig `json:"log"`
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RouterConfig *router.RouterConfig `json:"routing"`
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DNSConfig *dns.DNSConfig `json:"dns"`
InboundConfigs []InboundDetourConfig `json:"inbounds"`
OutboundConfigs []OutboundDetourConfig `json:"outbounds"`
Transport *TransportConfig `json:"transport"`
Policy *PolicyConfig `json:"policy"`
API *APIConfig `json:"api"`
Stats *StatsConfig `json:"stats"`
Reverse *ReverseConfig `json:"reverse"`
FakeDNS *FakeDNSConfig `json:"fakeDns"`
BrowserForwarder *BrowserForwarderConfig `json:"browserForwarder"`
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Observatory *ObservatoryConfig `json:"observatory"`
BurstObservatory *BurstObservatoryConfig `json:"burstObservatory"`
MultiObservatory *MultiObservatoryConfig `json:"multiObservatory"`
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Services map[string]*json.RawMessage `json:"services"`
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}
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func (c *Config) findInboundTag(tag string) int {
found := -1
for idx, ib := range c.InboundConfigs {
if ib.Tag == tag {
found = idx
break
}
}
return found
}
func (c *Config) findOutboundTag(tag string) int {
found := -1
for idx, ob := range c.OutboundConfigs {
if ob.Tag == tag {
found = idx
break
}
}
return found
}
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func applyTransportConfig(s *StreamConfig, t *TransportConfig) {
if s.TCPSettings == nil {
s.TCPSettings = t.TCPConfig
}
if s.KCPSettings == nil {
s.KCPSettings = t.KCPConfig
}
if s.WSSettings == nil {
s.WSSettings = t.WSConfig
}
if s.HTTPSettings == nil {
s.HTTPSettings = t.HTTPConfig
}
if s.DSSettings == nil {
s.DSSettings = t.DSConfig
}
}
// Build implements Buildable.
func (c *Config) Build() (*core.Config, error) {
Feature: Fake DNS support (#406) * Add fake dns A new config object "fake" in DnsObject for toggling fake dns function Compare with sniffing, fake dns is not limited to http and tls traffic. It works across all inbounds. For example, when dns request come from one inbound, the local DNS server of v2ray will response with a unique fake IP for every unique domain name. Then later on v2ray received a request to one of the fake IP from any inbounds, it will override the request destination with the previously saved domain. By default, v2ray cache up to 65535 addresses. The old records will be discarded bases on LRU. The fake IP will be 240.x.x.x * fix an edge case when encounter a fake IP in use * Move lru to common.cache package * Added the necessary change to obtain request IP from sniffer * Refactor the code so that it may stop depending on global variables in the future. * Replace string manipulation code with more generic codes, hopefully this will work for both IPv4 and IPv6 networks. * Try to use IPv4 version of address if possible * Added Test Case for Fake Dns * Added More Test Case for Fake Dns * Stop user from creating a instance with LRU size more than subnet size, it will create a infinite loop * Move Fake DNS to a separate package * Generated Code for fakedns * Encapsulate Fake DNS as a Instance wide service * Added Support for metadata sniffer, which will be used for Fake DNS * Dependency injection for fake dns * Fake DNS As a Sniffer * Remove stub object * Remove global variable * Update generated protobuf file for metadata only sniffing * Apply Fake DNS config to session * Loading for fake dns settings * Bug fix * Include fake dns in all * Fix FakeDns Lint Condition * Fix sniffer config * Fix lint message * Fix dependency resolution * Fix fake dns not loaded as sniffer * reduce ttl for fake dns * Apply Coding Style * Apply Coding Style * Apply Coding Style * Apply Coding Style * Apply Coding Style * Fix crashed when no fake dns * Apply Coding Style * Fix Fake DNS do not apply to UDP socket * Fixed a bug prevent FakeDNS App Setting from become effective * Fixed a caveat prevent FakeDNS App Setting from become effective * Use log comparison to reduce in issue when it comes to really high value typical for ipv6 subnet * Add build tag for fakedns * Removal of FakeDNS specific logic at DNS client: making it a standard dns client * Regenerate auto generated file * Amended version of configure file * Bug fixes for fakeDNS * Bug fixes for fakeDNS * Fix test: remove reference to removed attribute * Test: fix codacy issue * Conf: Remove old field support * Test: fix codacy issue * Change test scale for TestFakeDnsHolderCreateMappingAndRollOver * Test: fix codacy issue Co-authored-by: yuhan6665 <1588741+yuhan6665@users.noreply.github.com> Co-authored-by: loyalsoldier <10487845+Loyalsoldier@users.noreply.github.com> Co-authored-by: kslr <kslrwang@gmail.com>
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if err := PostProcessConfigureFile(c); err != nil {
return nil, err
}
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config := &core.Config{
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App: []*anypb.Any{
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serial.ToTypedMessage(&dispatcher.Config{}),
serial.ToTypedMessage(&proxyman.InboundConfig{}),
serial.ToTypedMessage(&proxyman.OutboundConfig{}),
},
}
if c.API != nil {
apiConf, err := c.API.Build()
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if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(apiConf))
}
if c.Stats != nil {
statsConf, err := c.Stats.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(statsConf))
}
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var logConfMsg *anypb.Any
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if c.LogConfig != nil {
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logConfMsg = serial.ToTypedMessage(c.LogConfig.Build())
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} else {
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logConfMsg = serial.ToTypedMessage(log.DefaultLogConfig())
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}
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// let logger module be the first App to start,
// so that other modules could print log during initiating
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config.App = append([]*anypb.Any{logConfMsg}, config.App...)
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if c.RouterConfig != nil {
routerConfig, err := c.RouterConfig.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(routerConfig))
}
if c.DNSConfig != nil {
dnsApp, err := c.DNSConfig.Build()
if err != nil {
return nil, newError("failed to parse DNS config").Base(err)
}
config.App = append(config.App, serial.ToTypedMessage(dnsApp))
}
if c.Policy != nil {
pc, err := c.Policy.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(pc))
}
if c.Reverse != nil {
r, err := c.Reverse.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
Feature: Fake DNS support (#406) * Add fake dns A new config object "fake" in DnsObject for toggling fake dns function Compare with sniffing, fake dns is not limited to http and tls traffic. It works across all inbounds. For example, when dns request come from one inbound, the local DNS server of v2ray will response with a unique fake IP for every unique domain name. Then later on v2ray received a request to one of the fake IP from any inbounds, it will override the request destination with the previously saved domain. By default, v2ray cache up to 65535 addresses. The old records will be discarded bases on LRU. The fake IP will be 240.x.x.x * fix an edge case when encounter a fake IP in use * Move lru to common.cache package * Added the necessary change to obtain request IP from sniffer * Refactor the code so that it may stop depending on global variables in the future. * Replace string manipulation code with more generic codes, hopefully this will work for both IPv4 and IPv6 networks. * Try to use IPv4 version of address if possible * Added Test Case for Fake Dns * Added More Test Case for Fake Dns * Stop user from creating a instance with LRU size more than subnet size, it will create a infinite loop * Move Fake DNS to a separate package * Generated Code for fakedns * Encapsulate Fake DNS as a Instance wide service * Added Support for metadata sniffer, which will be used for Fake DNS * Dependency injection for fake dns * Fake DNS As a Sniffer * Remove stub object * Remove global variable * Update generated protobuf file for metadata only sniffing * Apply Fake DNS config to session * Loading for fake dns settings * Bug fix * Include fake dns in all * Fix FakeDns Lint Condition * Fix sniffer config * Fix lint message * Fix dependency resolution * Fix fake dns not loaded as sniffer * reduce ttl for fake dns * Apply Coding Style * Apply Coding Style * Apply Coding Style * Apply Coding Style * Apply Coding Style * Fix crashed when no fake dns * Apply Coding Style * Fix Fake DNS do not apply to UDP socket * Fixed a bug prevent FakeDNS App Setting from become effective * Fixed a caveat prevent FakeDNS App Setting from become effective * Use log comparison to reduce in issue when it comes to really high value typical for ipv6 subnet * Add build tag for fakedns * Removal of FakeDNS specific logic at DNS client: making it a standard dns client * Regenerate auto generated file * Amended version of configure file * Bug fixes for fakeDNS * Bug fixes for fakeDNS * Fix test: remove reference to removed attribute * Test: fix codacy issue * Conf: Remove old field support * Test: fix codacy issue * Change test scale for TestFakeDnsHolderCreateMappingAndRollOver * Test: fix codacy issue Co-authored-by: yuhan6665 <1588741+yuhan6665@users.noreply.github.com> Co-authored-by: loyalsoldier <10487845+Loyalsoldier@users.noreply.github.com> Co-authored-by: kslr <kslrwang@gmail.com>
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if c.FakeDNS != nil {
r, err := c.FakeDNS.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
if c.BrowserForwarder != nil {
r, err := c.BrowserForwarder.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
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if c.Observatory != nil {
r, err := c.Observatory.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
if c.BurstObservatory != nil {
r, err := c.BurstObservatory.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
if c.MultiObservatory != nil {
r, err := c.MultiObservatory.Build()
if err != nil {
return nil, err
}
config.App = append(config.App, serial.ToTypedMessage(r))
}
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// Load Additional Services that do not have a json translator
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if msg, err := c.BuildServices(c.Services); err != nil {
developererr := newError("Loading a V2Ray Features as a service is intended for developers only. " +
"This is used for developers to prototype new features or for an advanced client to use special features in V2Ray," +
" instead of allowing end user to enable it without special tool and knowledge.")
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sb := strings.Builder{}
return nil, newError("Cannot load service").Base(developererr).Base(err).Base(newError(sb.String()))
} else { // nolint: revive
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// Using a else here is required to keep msg in scope
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config.App = append(config.App, msg...)
}
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var inbounds []InboundDetourConfig
if c.InboundConfig != nil {
inbounds = append(inbounds, *c.InboundConfig)
}
if len(c.InboundDetours) > 0 {
inbounds = append(inbounds, c.InboundDetours...)
}
if len(c.InboundConfigs) > 0 {
inbounds = append(inbounds, c.InboundConfigs...)
}
// Backward compatibility.
if len(inbounds) > 0 && inbounds[0].PortRange == nil && c.Port > 0 {
inbounds[0].PortRange = &cfgcommon.PortRange{
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From: uint32(c.Port),
To: uint32(c.Port),
}
}
for _, rawInboundConfig := range inbounds {
if c.Transport != nil {
if rawInboundConfig.StreamSetting == nil {
rawInboundConfig.StreamSetting = &StreamConfig{}
}
applyTransportConfig(rawInboundConfig.StreamSetting, c.Transport)
}
ic, err := rawInboundConfig.Build()
if err != nil {
return nil, err
}
config.Inbound = append(config.Inbound, ic)
}
var outbounds []OutboundDetourConfig
if c.OutboundConfig != nil {
outbounds = append(outbounds, *c.OutboundConfig)
}
if len(c.OutboundDetours) > 0 {
outbounds = append(outbounds, c.OutboundDetours...)
}
if len(c.OutboundConfigs) > 0 {
outbounds = append(outbounds, c.OutboundConfigs...)
}
for _, rawOutboundConfig := range outbounds {
if c.Transport != nil {
if rawOutboundConfig.StreamSetting == nil {
rawOutboundConfig.StreamSetting = &StreamConfig{}
}
applyTransportConfig(rawOutboundConfig.StreamSetting, c.Transport)
}
oc, err := rawOutboundConfig.Build()
if err != nil {
return nil, err
}
config.Outbound = append(config.Outbound, oc)
}
return config, nil
}