dns.go 6.4 KB

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  1. package conf
  2. import (
  3. "encoding/json"
  4. "sort"
  5. "strings"
  6. "v2ray.com/core/app/dns"
  7. "v2ray.com/core/app/router"
  8. "v2ray.com/core/common/net"
  9. )
  10. type NameServerConfig struct {
  11. Address *Address
  12. Port uint16
  13. Domains []string
  14. ExpectIPs StringList
  15. }
  16. func (c *NameServerConfig) UnmarshalJSON(data []byte) error {
  17. var address Address
  18. if err := json.Unmarshal(data, &address); err == nil {
  19. c.Address = &address
  20. return nil
  21. }
  22. var advanced struct {
  23. Address *Address `json:"address"`
  24. Port uint16 `json:"port"`
  25. Domains []string `json:"domains"`
  26. ExpectIPs StringList `json:"expectIps"`
  27. }
  28. if err := json.Unmarshal(data, &advanced); err == nil {
  29. c.Address = advanced.Address
  30. c.Port = advanced.Port
  31. c.Domains = advanced.Domains
  32. c.ExpectIPs = advanced.ExpectIPs
  33. return nil
  34. }
  35. return newError("failed to parse name server: ", string(data))
  36. }
  37. func toDomainMatchingType(t router.Domain_Type) dns.DomainMatchingType {
  38. switch t {
  39. case router.Domain_Domain:
  40. return dns.DomainMatchingType_Subdomain
  41. case router.Domain_Full:
  42. return dns.DomainMatchingType_Full
  43. case router.Domain_Plain:
  44. return dns.DomainMatchingType_Keyword
  45. case router.Domain_Regex:
  46. return dns.DomainMatchingType_Regex
  47. default:
  48. panic("unknown domain type")
  49. }
  50. }
  51. func (c *NameServerConfig) Build() (*dns.NameServer, error) {
  52. if c.Address == nil {
  53. return nil, newError("NameServer address is not specified.")
  54. }
  55. var domains []*dns.NameServer_PriorityDomain
  56. var originalRules []*dns.NameServer_OriginalRule
  57. for _, rule := range c.Domains {
  58. parsedDomain, err := parseDomainRule(rule)
  59. if err != nil {
  60. return nil, newError("invalid domain rule: ", rule).Base(err)
  61. }
  62. for _, pd := range parsedDomain {
  63. domains = append(domains, &dns.NameServer_PriorityDomain{
  64. Type: toDomainMatchingType(pd.Type),
  65. Domain: pd.Value,
  66. })
  67. }
  68. originalRules = append(originalRules, &dns.NameServer_OriginalRule{
  69. Rule: rule,
  70. Size: uint32(len(parsedDomain)),
  71. })
  72. }
  73. geoipList, err := toCidrList(c.ExpectIPs)
  74. if err != nil {
  75. return nil, newError("invalid ip rule: ", c.ExpectIPs).Base(err)
  76. }
  77. return &dns.NameServer{
  78. Address: &net.Endpoint{
  79. Network: net.Network_UDP,
  80. Address: c.Address.Build(),
  81. Port: uint32(c.Port),
  82. },
  83. PrioritizedDomain: domains,
  84. Geoip: geoipList,
  85. OriginalRules: originalRules,
  86. }, nil
  87. }
  88. var typeMap = map[router.Domain_Type]dns.DomainMatchingType{
  89. router.Domain_Full: dns.DomainMatchingType_Full,
  90. router.Domain_Domain: dns.DomainMatchingType_Subdomain,
  91. router.Domain_Plain: dns.DomainMatchingType_Keyword,
  92. router.Domain_Regex: dns.DomainMatchingType_Regex,
  93. }
  94. // DnsConfig is a JSON serializable object for dns.Config.
  95. type DnsConfig struct {
  96. Servers []*NameServerConfig `json:"servers"`
  97. Hosts map[string]*Address `json:"hosts"`
  98. ClientIP *Address `json:"clientIp"`
  99. Tag string `json:"tag"`
  100. }
  101. func getHostMapping(addr *Address) *dns.Config_HostMapping {
  102. if addr.Family().IsIP() {
  103. return &dns.Config_HostMapping{
  104. Ip: [][]byte{[]byte(addr.IP())},
  105. }
  106. } else {
  107. return &dns.Config_HostMapping{
  108. ProxiedDomain: addr.Domain(),
  109. }
  110. }
  111. }
  112. // Build implements Buildable
  113. func (c *DnsConfig) Build() (*dns.Config, error) {
  114. config := &dns.Config{
  115. Tag: c.Tag,
  116. }
  117. if c.ClientIP != nil {
  118. if !c.ClientIP.Family().IsIP() {
  119. return nil, newError("not an IP address:", c.ClientIP.String())
  120. }
  121. config.ClientIp = []byte(c.ClientIP.IP())
  122. }
  123. for _, server := range c.Servers {
  124. ns, err := server.Build()
  125. if err != nil {
  126. return nil, newError("failed to build name server").Base(err)
  127. }
  128. config.NameServer = append(config.NameServer, ns)
  129. }
  130. if c.Hosts != nil && len(c.Hosts) > 0 {
  131. domains := make([]string, 0, len(c.Hosts))
  132. for domain := range c.Hosts {
  133. domains = append(domains, domain)
  134. }
  135. sort.Strings(domains)
  136. for _, domain := range domains {
  137. addr := c.Hosts[domain]
  138. var mappings []*dns.Config_HostMapping
  139. if strings.HasPrefix(domain, "domain:") {
  140. mapping := getHostMapping(addr)
  141. mapping.Type = dns.DomainMatchingType_Subdomain
  142. mapping.Domain = domain[7:]
  143. mappings = append(mappings, mapping)
  144. } else if strings.HasPrefix(domain, "geosite:") {
  145. domains, err := loadGeositeWithAttr("geosite.dat", strings.ToUpper(domain[8:]))
  146. if err != nil {
  147. return nil, newError("invalid geosite settings: ", domain).Base(err)
  148. }
  149. for _, d := range domains {
  150. mapping := getHostMapping(addr)
  151. mapping.Type = typeMap[d.Type]
  152. mapping.Domain = d.Value
  153. mappings = append(mappings, mapping)
  154. }
  155. } else if strings.HasPrefix(domain, "regexp:") {
  156. mapping := getHostMapping(addr)
  157. mapping.Type = dns.DomainMatchingType_Regex
  158. mapping.Domain = domain[7:]
  159. mappings = append(mappings, mapping)
  160. } else if strings.HasPrefix(domain, "keyword:") {
  161. mapping := getHostMapping(addr)
  162. mapping.Type = dns.DomainMatchingType_Keyword
  163. mapping.Domain = domain[8:]
  164. mappings = append(mappings, mapping)
  165. } else if strings.HasPrefix(domain, "full:") {
  166. mapping := getHostMapping(addr)
  167. mapping.Type = dns.DomainMatchingType_Full
  168. mapping.Domain = domain[5:]
  169. mappings = append(mappings, mapping)
  170. } else if strings.HasPrefix(domain, "dotless:") {
  171. mapping := getHostMapping(addr)
  172. mapping.Type = dns.DomainMatchingType_Regex
  173. switch substr := domain[8:]; {
  174. case substr == "":
  175. mapping.Domain = "^[^.]*$"
  176. case !strings.Contains(substr, "."):
  177. mapping.Domain = "^[^.]*" + substr + "[^.]*$"
  178. default:
  179. return nil, newError("substr in dotless rule should not contain a dot: ", substr)
  180. }
  181. mappings = append(mappings, mapping)
  182. } else if strings.HasPrefix(domain, "ext:") {
  183. kv := strings.Split(domain[4:], ":")
  184. if len(kv) != 2 {
  185. return nil, newError("invalid external resource: ", domain)
  186. }
  187. filename := kv[0]
  188. country := kv[1]
  189. domains, err := loadGeositeWithAttr(filename, country)
  190. if err != nil {
  191. return nil, newError("failed to load domains: ", country, " from ", filename).Base(err)
  192. }
  193. for _, d := range domains {
  194. mapping := getHostMapping(addr)
  195. mapping.Type = typeMap[d.Type]
  196. mapping.Domain = d.Value
  197. mappings = append(mappings, mapping)
  198. }
  199. } else {
  200. mapping := getHostMapping(addr)
  201. mapping.Type = dns.DomainMatchingType_Full
  202. mapping.Domain = domain
  203. mappings = append(mappings, mapping)
  204. }
  205. config.StaticHosts = append(config.StaticHosts, mappings...)
  206. }
  207. }
  208. return config, nil
  209. }