NetworkParseTests.cs 18 KB

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  1. using System;
  2. using System.Collections.ObjectModel;
  3. using System.Globalization;
  4. using System.Linq;
  5. using System.Net;
  6. using Jellyfin.Networking.Configuration;
  7. using Jellyfin.Networking.Manager;
  8. using MediaBrowser.Common.Configuration;
  9. using MediaBrowser.Common.Net;
  10. using Microsoft.AspNetCore.HttpOverrides;
  11. using Microsoft.Extensions.Logging.Abstractions;
  12. using Moq;
  13. using Xunit;
  14. namespace Jellyfin.Networking.Tests
  15. {
  16. public class NetworkParseTests
  17. {
  18. internal static IConfigurationManager GetMockConfig(NetworkConfiguration conf)
  19. {
  20. var configManager = new Mock<IConfigurationManager>
  21. {
  22. CallBase = true
  23. };
  24. configManager.Setup(x => x.GetConfiguration(It.IsAny<string>())).Returns(conf);
  25. return configManager.Object;
  26. }
  27. /// <summary>
  28. /// Checks the ability to ignore virtual interfaces.
  29. /// </summary>
  30. /// <param name="interfaces">Mock network setup, in the format (IP address, interface index, interface name) | .... </param>
  31. /// <param name="lan">LAN addresses.</param>
  32. /// <param name="value">Bind addresses that are excluded.</param>
  33. [Theory]
  34. // All valid
  35. [InlineData("192.168.1.208/24,-16,eth16|200.200.200.200/24,11,eth11", "192.168.1.0/24;200.200.200.0/24", "[192.168.1.208/24,200.200.200.200/24]")]
  36. // eth16 only
  37. [InlineData("192.168.1.208/24,-16,eth16|200.200.200.200/24,11,eth11", "192.168.1.0/24", "[192.168.1.208/24]")]
  38. // All interfaces excluded. (including loopbacks)
  39. [InlineData("192.168.1.208/24,-16,vEthernet1|192.168.2.208/24,-16,vEthernet212|200.200.200.200/24,11,eth11", "192.168.1.0/24", "[]")]
  40. // vEthernet1 and vEthernet212 should be excluded.
  41. [InlineData("192.168.1.200/24,-20,vEthernet1|192.168.2.208/24,-16,vEthernet212|200.200.200.200/24,11,eth11", "192.168.1.0/24;200.200.200.200/24", "[200.200.200.200/24]")]
  42. // Overlapping interface,
  43. [InlineData("192.168.1.110/24,-20,br0|192.168.1.10/24,-16,br0|200.200.200.200/24,11,eth11", "192.168.1.0/24", "[192.168.1.110/24,192.168.1.10/24]")]
  44. public void IgnoreVirtualInterfaces(string interfaces, string lan, string value)
  45. {
  46. var conf = new NetworkConfiguration()
  47. {
  48. EnableIPV6 = true,
  49. EnableIPV4 = true,
  50. IgnoreVirtualInterfaces = true,
  51. VirtualInterfaceNames = "veth",
  52. LocalNetworkSubnets = lan?.Split(';') ?? throw new ArgumentNullException(nameof(lan))
  53. };
  54. NetworkManager.MockNetworkSettings = interfaces;
  55. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  56. NetworkManager.MockNetworkSettings = string.Empty;
  57. Assert.Equal(value, "[" + string.Join(",", nm.GetInternalBindAddresses().Select(x => x.Address + "/" + x.Subnet.PrefixLength)) + "]");
  58. }
  59. /// <summary>
  60. /// Checks valid IP address formats.
  61. /// </summary>
  62. /// <param name="address">IP Address.</param>
  63. [Theory]
  64. [InlineData("127.0.0.1")]
  65. [InlineData("fd23:184f:2029:0:3139:7386:67d7:d517")]
  66. [InlineData("[fd23:184f:2029:0:3139:7386:67d7:d517]")]
  67. [InlineData("fe80::7add:12ff:febb:c67b%16")]
  68. [InlineData("[fe80::7add:12ff:febb:c67b%16]:123")]
  69. [InlineData("fe80::7add:12ff:febb:c67b%16:123")]
  70. [InlineData("[fe80::7add:12ff:febb:c67b%16]")]
  71. [InlineData("192.168.1.2")]
  72. public static void TryParseValidIPStringsTrue(string address)
  73. => Assert.True(IPAddress.TryParse(address, out _));
  74. /// <summary>
  75. /// Checks invalid IP address formats.
  76. /// </summary>
  77. /// <param name="address">IP Address.</param>
  78. [Theory]
  79. [InlineData("192.168.1.2/255.255.255.0")]
  80. [InlineData("192.168.1.2/24")]
  81. [InlineData("127.0.0.1/8")]
  82. [InlineData("127.0.0.1#")]
  83. [InlineData("localhost!")]
  84. [InlineData("256.128.0.0.0.1")]
  85. [InlineData("fd23:184f:2029:0:3139:7386:67d7:d517/56")]
  86. [InlineData("fd23:184f:2029:0:3139:7386:67d7:d517:1231")]
  87. [InlineData("[fd23:184f:2029:0:3139:7386:67d7:d517:1231]")]
  88. public static void TryParseInvalidIPStringsFalse(string address)
  89. => Assert.False(IPAddress.TryParse(address, out _));
  90. [Theory]
  91. [InlineData("192.168.5.85/24", "192.168.5.1")]
  92. [InlineData("192.168.5.85/24", "192.168.5.254")]
  93. [InlineData("10.128.240.50/30", "10.128.240.48")]
  94. [InlineData("10.128.240.50/30", "10.128.240.49")]
  95. [InlineData("10.128.240.50/30", "10.128.240.50")]
  96. [InlineData("10.128.240.50/30", "10.128.240.51")]
  97. [InlineData("127.0.0.1/8", "127.0.0.1")]
  98. public void IpV4SubnetMaskMatchesValidIpAddress(string netMask, string ipAddress)
  99. {
  100. var split = netMask.Split("/");
  101. var mask = int.Parse(split[1], CultureInfo.InvariantCulture);
  102. var ipa = IPAddress.Parse(split[0]);
  103. var ipn = new IPNetwork(ipa, mask);
  104. Assert.True(ipn.Contains(IPAddress.Parse(ipAddress)));
  105. }
  106. [Theory]
  107. [InlineData("192.168.5.85/24", "192.168.4.254")]
  108. [InlineData("192.168.5.85/24", "191.168.5.254")]
  109. [InlineData("10.128.240.50/30", "10.128.240.47")]
  110. [InlineData("10.128.240.50/30", "10.128.240.52")]
  111. [InlineData("10.128.240.50/30", "10.128.239.50")]
  112. [InlineData("10.128.240.50/30", "10.127.240.51")]
  113. public void IpV4SubnetMaskDoesNotMatchInvalidIpAddress(string netMask, string ipAddress)
  114. {
  115. var split = netMask.Split("/");
  116. var mask = int.Parse(split[1], CultureInfo.InvariantCulture);
  117. var ipa = IPAddress.Parse(split[0]);
  118. var ipn = new IPNetwork(ipa, mask);
  119. Assert.False(ipn.Contains(IPAddress.Parse(ipAddress)));
  120. }
  121. [Theory]
  122. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0012:0000:0000:0000:0000")]
  123. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0012:FFFF:FFFF:FFFF:FFFF")]
  124. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0012:0001:0000:0000:0000")]
  125. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0012:FFFF:FFFF:FFFF:FFF0")]
  126. [InlineData("2001:db8:abcd:0012::0/128", "2001:0DB8:ABCD:0012:0000:0000:0000:0000")]
  127. public void IpV6SubnetMaskMatchesValidIpAddress(string netMask, string ipAddress)
  128. {
  129. var split = netMask.Split("/");
  130. var mask = int.Parse(split[1], CultureInfo.InvariantCulture);
  131. var ipa = IPAddress.Parse(split[0]);
  132. var ipn = new IPNetwork(ipa, mask);
  133. Assert.True(ipn.Contains(IPAddress.Parse(ipAddress)));
  134. }
  135. [Theory]
  136. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0011:FFFF:FFFF:FFFF:FFFF")]
  137. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0013:0000:0000:0000:0000")]
  138. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0013:0001:0000:0000:0000")]
  139. [InlineData("2001:db8:abcd:0012::0/64", "2001:0DB8:ABCD:0011:FFFF:FFFF:FFFF:FFF0")]
  140. [InlineData("2001:db8:abcd:0012::0/128", "2001:0DB8:ABCD:0012:0000:0000:0000:0001")]
  141. public void IpV6SubnetMaskDoesNotMatchInvalidIpAddress(string netMask, string ipAddress)
  142. {
  143. var split = netMask.Split("/");
  144. var mask = int.Parse(split[1], CultureInfo.InvariantCulture);
  145. var ipa = IPAddress.Parse(split[0]);
  146. var ipn = new IPNetwork(ipa, mask);
  147. Assert.False(ipn.Contains(IPAddress.Parse(ipAddress)));
  148. }
  149. [Theory]
  150. // Testing bind interfaces.
  151. // On my system eth16 is internal, eth11 external (Windows defines the indexes).
  152. //
  153. // This test is to replicate how DLNA requests work throughout the system.
  154. // User on internal network, we're bound internal and external - so result is internal.
  155. [InlineData("192.168.1.1", "eth16,eth11", false, "eth16")]
  156. // User on external network, we're bound internal and external - so result is external.
  157. [InlineData("8.8.8.8", "eth16,eth11", false, "eth11")]
  158. // User on internal network, we're bound internal only - so result is internal.
  159. [InlineData("10.10.10.10", "eth16", false, "eth16")]
  160. // User on internal network, no binding specified - so result is the 1st internal.
  161. [InlineData("192.168.1.1", "", false, "eth16")]
  162. // User on external network, internal binding only - so result is the 1st internal.
  163. [InlineData("jellyfin.org", "eth16", false, "eth16")]
  164. // User on external network, no binding - so result is the 1st external.
  165. [InlineData("jellyfin.org", "", false, "eth11")]
  166. // Dns failure - should skip the test.
  167. // https://en.wikipedia.org/wiki/.test
  168. [InlineData("invalid.domain.test", "", false, "eth11")]
  169. // User assumed to be internal, no binding - so result is the 1st internal.
  170. [InlineData("", "", false, "eth16")]
  171. public void TestBindInterfaces(string source, string bindAddresses, bool ipv6enabled, string result)
  172. {
  173. if (source == null)
  174. {
  175. throw new ArgumentNullException(nameof(source));
  176. }
  177. if (bindAddresses == null)
  178. {
  179. throw new ArgumentNullException(nameof(bindAddresses));
  180. }
  181. if (result == null)
  182. {
  183. throw new ArgumentNullException(nameof(result));
  184. }
  185. var conf = new NetworkConfiguration()
  186. {
  187. LocalNetworkAddresses = bindAddresses.Split(','),
  188. EnableIPV6 = ipv6enabled,
  189. EnableIPV4 = true
  190. };
  191. NetworkManager.MockNetworkSettings = "192.168.1.208/24,-16,eth16|200.200.200.200/24,11,eth11";
  192. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  193. NetworkManager.MockNetworkSettings = string.Empty;
  194. _ = nm.TryParseInterface(result, out Collection<IPData>? resultObj);
  195. // Check to see if dns resolution is working. If not, skip test.
  196. _ = NetworkExtensions.TryParseHost(source, out var host);
  197. if (resultObj != null && host.Length > 0)
  198. {
  199. result = resultObj.First().Address.ToString();
  200. var intf = nm.GetBindInterface(source, out _);
  201. Assert.Equal(intf, result);
  202. }
  203. }
  204. [Theory]
  205. // Testing bind interfaces. These are set for my system so won't work elsewhere.
  206. // On my system eth16 is internal, eth11 external (Windows defines the indexes).
  207. //
  208. // This test is to replicate how subnet bound ServerPublisherUri work throughout the system.
  209. // User on internal network, we're bound internal and external - so result is internal override.
  210. [InlineData("192.168.1.1", "192.168.1.0/24", "eth16,eth11", false, "192.168.1.0/24=internal.jellyfin", "internal.jellyfin")]
  211. // User on external network, we're bound internal and external - so result is override.
  212. [InlineData("8.8.8.8", "192.168.1.0/24", "eth16,eth11", false, "0.0.0.0=http://helloworld.com", "http://helloworld.com")]
  213. // User on internal network, we're bound internal only, but the address isn't in the LAN - so return the override.
  214. [InlineData("10.10.10.10", "192.168.1.0/24", "eth16", false, "0.0.0.0=http://internalButNotDefinedAsLan.com", "http://internalButNotDefinedAsLan.com")]
  215. // User on internal network, no binding specified - so result is the 1st internal.
  216. [InlineData("192.168.1.1", "192.168.1.0/24", "", false, "0.0.0.0=http://helloworld.com", "eth16")]
  217. // User on external network, internal binding only - so assumption is a proxy forward, return external override.
  218. [InlineData("jellyfin.org", "192.168.1.0/24", "eth16", false, "0.0.0.0=http://helloworld.com", "http://helloworld.com")]
  219. // User on external network, no binding - so result is the 1st external which is overriden.
  220. [InlineData("jellyfin.org", "192.168.1.0/24", "", false, "0.0.0.0=http://helloworld.com", "http://helloworld.com")]
  221. // User assumed to be internal, no binding - so result is the 1st internal.
  222. [InlineData("", "192.168.1.0/24", "", false, "0.0.0.0=http://helloworld.com", "eth16")]
  223. // User is internal, no binding - so result is the 1st internal, which is then overridden.
  224. [InlineData("192.168.1.1", "192.168.1.0/24", "", false, "eth16=http://helloworld.com", "http://helloworld.com")]
  225. public void TestBindInterfaceOverrides(string source, string lan, string bindAddresses, bool ipv6enabled, string publishedServers, string result)
  226. {
  227. if (lan == null)
  228. {
  229. throw new ArgumentNullException(nameof(lan));
  230. }
  231. if (bindAddresses == null)
  232. {
  233. throw new ArgumentNullException(nameof(bindAddresses));
  234. }
  235. var conf = new NetworkConfiguration()
  236. {
  237. LocalNetworkSubnets = lan.Split(','),
  238. LocalNetworkAddresses = bindAddresses.Split(','),
  239. EnableIPV6 = ipv6enabled,
  240. EnableIPV4 = true,
  241. PublishedServerUriBySubnet = new string[] { publishedServers }
  242. };
  243. NetworkManager.MockNetworkSettings = "192.168.1.208/24,-16,eth16|200.200.200.200/24,11,eth11";
  244. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  245. NetworkManager.MockNetworkSettings = string.Empty;
  246. if (nm.TryParseInterface(result, out Collection<IPData>? resultObj) && resultObj != null)
  247. {
  248. // Parse out IPAddresses so we can do a string comparison. (Ignore subnet masks).
  249. result = resultObj.First().Address.ToString();
  250. }
  251. var intf = nm.GetBindInterface(source, out int? _);
  252. Assert.Equal(result, intf);
  253. }
  254. [Theory]
  255. [InlineData("185.10.10.10,200.200.200.200", "79.2.3.4", true)]
  256. [InlineData("185.10.10.10", "185.10.10.10", false)]
  257. [InlineData("", "100.100.100.100", false)]
  258. public void HasRemoteAccess_GivenWhitelist_AllowsOnlyIpsInWhitelist(string addresses, string remoteIp, bool denied)
  259. {
  260. // Comma separated list of IP addresses or IP/netmask entries for networks that will be allowed to connect remotely.
  261. // If left blank, all remote addresses will be allowed.
  262. var conf = new NetworkConfiguration()
  263. {
  264. EnableIPV4 = true,
  265. RemoteIPFilter = addresses.Split(','),
  266. IsRemoteIPFilterBlacklist = false
  267. };
  268. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  269. Assert.NotEqual(nm.HasRemoteAccess(IPAddress.Parse(remoteIp)), denied);
  270. }
  271. [Theory]
  272. [InlineData("185.10.10.10", "79.2.3.4", false)]
  273. [InlineData("185.10.10.10", "185.10.10.10", true)]
  274. [InlineData("", "100.100.100.100", false)]
  275. public void HasRemoteAccess_GivenBlacklist_BlacklistTheIps(string addresses, string remoteIp, bool denied)
  276. {
  277. // Comma separated list of IP addresses or IP/netmask entries for networks that will be allowed to connect remotely.
  278. // If left blank, all remote addresses will be allowed.
  279. var conf = new NetworkConfiguration()
  280. {
  281. EnableIPV4 = true,
  282. RemoteIPFilter = addresses.Split(','),
  283. IsRemoteIPFilterBlacklist = true
  284. };
  285. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  286. Assert.NotEqual(nm.HasRemoteAccess(IPAddress.Parse(remoteIp)), denied);
  287. }
  288. [Theory]
  289. [InlineData("192.168.1.209/24,-16,eth16", "192.168.1.0/24", "", "192.168.1.209")] // Only 1 address so use it.
  290. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "", "192.168.1.208")] // LAN address is specified by default.
  291. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "10.0.0.1", "10.0.0.1")] // return bind address
  292. public void GetBindInterface_NoSourceGiven_Success(string interfaces, string lan, string bind, string result)
  293. {
  294. var conf = new NetworkConfiguration
  295. {
  296. EnableIPV4 = true,
  297. LocalNetworkSubnets = lan.Split(','),
  298. LocalNetworkAddresses = bind.Split(',')
  299. };
  300. NetworkManager.MockNetworkSettings = interfaces;
  301. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  302. var interfaceToUse = nm.GetBindInterface(string.Empty, out _);
  303. Assert.Equal(result, interfaceToUse);
  304. }
  305. [Theory]
  306. [InlineData("192.168.1.209/24,-16,eth16", "192.168.1.0/24", "", "192.168.1.210", "192.168.1.209")] // Source on LAN
  307. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "", "192.168.1.209", "192.168.1.208")] // Source on LAN
  308. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "", "8.8.8.8", "10.0.0.1")] // Source external.
  309. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "10.0.0.1", "192.168.1.209", "10.0.0.1")] // LAN not bound, so return external.
  310. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "192.168.1.208,10.0.0.1", "8.8.8.8", "10.0.0.1")] // return external bind address
  311. [InlineData("192.168.1.208/24,-16,eth16|10.0.0.1/24,10,eth7", "192.168.1.0/24", "192.168.1.208,10.0.0.1", "192.168.1.210", "192.168.1.208")] // return LAN bind address
  312. public void GetBindInterface_ValidSourceGiven_Success(string interfaces, string lan, string bind, string source, string result)
  313. {
  314. var conf = new NetworkConfiguration
  315. {
  316. EnableIPV4 = true,
  317. LocalNetworkSubnets = lan.Split(','),
  318. LocalNetworkAddresses = bind.Split(',')
  319. };
  320. NetworkManager.MockNetworkSettings = interfaces;
  321. using var nm = new NetworkManager(GetMockConfig(conf), new NullLogger<NetworkManager>());
  322. var interfaceToUse = nm.GetBindInterface(source, out _);
  323. Assert.Equal(result, interfaceToUse);
  324. }
  325. }
  326. }