udp_test.go 20 KB

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  1. // Copyright 2015 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package discover
  17. import (
  18. "bytes"
  19. "crypto/ecdsa"
  20. "encoding/binary"
  21. "encoding/hex"
  22. "errors"
  23. "fmt"
  24. "io"
  25. "math/rand"
  26. "net"
  27. "path/filepath"
  28. "reflect"
  29. "runtime"
  30. "sync"
  31. "testing"
  32. "time"
  33. "github.com/davecgh/go-spew/spew"
  34. "github.com/ethereum/go-ethereum/common"
  35. "github.com/ethereum/go-ethereum/crypto"
  36. "github.com/ethereum/go-ethereum/rlp"
  37. )
  38. func init() {
  39. spew.Config.DisableMethods = true
  40. }
  41. // shared test variables
  42. var (
  43. futureExp = uint64(time.Now().Add(10 * time.Hour).Unix())
  44. testTarget = NodeID{0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1, 0, 1}
  45. testRemote = rpcEndpoint{IP: net.ParseIP("1.1.1.1").To4(), UDP: 1, TCP: 2}
  46. testLocalAnnounced = rpcEndpoint{IP: net.ParseIP("2.2.2.2").To4(), UDP: 3, TCP: 4}
  47. testLocal = rpcEndpoint{IP: net.ParseIP("3.3.3.3").To4(), UDP: 5, TCP: 6}
  48. )
  49. type udpTest struct {
  50. t *testing.T
  51. pipe *dgramPipe
  52. table *Table
  53. udp *udp
  54. sent [][]byte
  55. localkey, remotekey *ecdsa.PrivateKey
  56. remoteaddr *net.UDPAddr
  57. }
  58. func newUDPTest(t *testing.T) *udpTest {
  59. test := &udpTest{
  60. t: t,
  61. pipe: newpipe(),
  62. localkey: newkey(),
  63. remotekey: newkey(),
  64. remoteaddr: &net.UDPAddr{IP: net.IP{10, 0, 1, 99}, Port: 30303},
  65. }
  66. test.table, test.udp, _ = newUDP(test.pipe, Config{PrivateKey: test.localkey})
  67. // Wait for initial refresh so the table doesn't send unexpected findnode.
  68. <-test.table.initDone
  69. return test
  70. }
  71. // handles a packet as if it had been sent to the transport.
  72. func (test *udpTest) packetIn(wantError error, ptype byte, data packet) error {
  73. enc, _, err := encodePacket(test.remotekey, ptype, data)
  74. if err != nil {
  75. return test.errorf("packet (%d) encode error: %v", ptype, err)
  76. }
  77. test.sent = append(test.sent, enc)
  78. if err = test.udp.handlePacket(test.remoteaddr, enc); err != wantError {
  79. return test.errorf("error mismatch: got %q, want %q", err, wantError)
  80. }
  81. return nil
  82. }
  83. // waits for a packet to be sent by the transport.
  84. // validate should have type func(*udpTest, X) error, where X is a packet type.
  85. func (test *udpTest) waitPacketOut(validate interface{}) ([]byte, error) {
  86. dgram := test.pipe.waitPacketOut()
  87. p, _, hash, err := decodePacket(dgram)
  88. if err != nil {
  89. return hash, test.errorf("sent packet decode error: %v", err)
  90. }
  91. fn := reflect.ValueOf(validate)
  92. exptype := fn.Type().In(0)
  93. if reflect.TypeOf(p) != exptype {
  94. return hash, test.errorf("sent packet type mismatch, got: %v, want: %v", reflect.TypeOf(p), exptype)
  95. }
  96. fn.Call([]reflect.Value{reflect.ValueOf(p)})
  97. return hash, nil
  98. }
  99. func (test *udpTest) errorf(format string, args ...interface{}) error {
  100. _, file, line, ok := runtime.Caller(2) // errorf + waitPacketOut
  101. if ok {
  102. file = filepath.Base(file)
  103. } else {
  104. file = "???"
  105. line = 1
  106. }
  107. err := fmt.Errorf(format, args...)
  108. fmt.Printf("\t%s:%d: %v\n", file, line, err)
  109. test.t.Fail()
  110. return err
  111. }
  112. func TestUDP_packetErrors(t *testing.T) {
  113. test := newUDPTest(t)
  114. defer test.table.Close()
  115. test.packetIn(errExpired, pingPacket, &ping{From: testRemote, To: testLocalAnnounced, Version: Version})
  116. test.packetIn(errUnsolicitedReply, pongPacket, &pong{ReplyTok: []byte{}, Expiration: futureExp})
  117. test.packetIn(errUnknownNode, findnodePacket, &findnode{Expiration: futureExp})
  118. test.packetIn(errUnsolicitedReply, neighborsPacket, &neighbors{Expiration: futureExp})
  119. }
  120. func TestUDP_pingTimeout(t *testing.T) {
  121. t.Parallel()
  122. test := newUDPTest(t)
  123. defer test.table.Close()
  124. toaddr := &net.UDPAddr{IP: net.ParseIP("1.2.3.4"), Port: 2222}
  125. toid := NodeID{1, 2, 3, 4}
  126. if err := test.udp.ping(toid, toaddr); err != errTimeout {
  127. t.Error("expected timeout error, got", err)
  128. }
  129. }
  130. func TestUDP_responseTimeouts(t *testing.T) {
  131. t.Parallel()
  132. test := newUDPTest(t)
  133. defer test.table.Close()
  134. rand.Seed(time.Now().UnixNano())
  135. randomDuration := func(max time.Duration) time.Duration {
  136. return time.Duration(rand.Int63n(int64(max)))
  137. }
  138. var (
  139. nReqs = 200
  140. nTimeouts = 0 // number of requests with ptype > 128
  141. nilErr = make(chan error, nReqs) // for requests that get a reply
  142. timeoutErr = make(chan error, nReqs) // for requests that time out
  143. )
  144. for i := 0; i < nReqs; i++ {
  145. // Create a matcher for a random request in udp.loop. Requests
  146. // with ptype <= 128 will not get a reply and should time out.
  147. // For all other requests, a reply is scheduled to arrive
  148. // within the timeout window.
  149. p := &pending{
  150. ptype: byte(rand.Intn(255)),
  151. callback: func(interface{}) bool { return true },
  152. }
  153. binary.BigEndian.PutUint64(p.from[:], uint64(i))
  154. if p.ptype <= 128 {
  155. p.errc = timeoutErr
  156. test.udp.addpending <- p
  157. nTimeouts++
  158. } else {
  159. p.errc = nilErr
  160. test.udp.addpending <- p
  161. time.AfterFunc(randomDuration(60*time.Millisecond), func() {
  162. if !test.udp.handleReply(p.from, p.ptype, nil) {
  163. t.Logf("not matched: %v", p)
  164. }
  165. })
  166. }
  167. time.Sleep(randomDuration(30 * time.Millisecond))
  168. }
  169. // Check that all timeouts were delivered and that the rest got nil errors.
  170. // The replies must be delivered.
  171. var (
  172. recvDeadline = time.After(20 * time.Second)
  173. nTimeoutsRecv, nNil = 0, 0
  174. )
  175. for i := 0; i < nReqs; i++ {
  176. select {
  177. case err := <-timeoutErr:
  178. if err != errTimeout {
  179. t.Fatalf("got non-timeout error on timeoutErr %d: %v", i, err)
  180. }
  181. nTimeoutsRecv++
  182. case err := <-nilErr:
  183. if err != nil {
  184. t.Fatalf("got non-nil error on nilErr %d: %v", i, err)
  185. }
  186. nNil++
  187. case <-recvDeadline:
  188. t.Fatalf("exceeded recv deadline")
  189. }
  190. }
  191. if nTimeoutsRecv != nTimeouts {
  192. t.Errorf("wrong number of timeout errors received: got %d, want %d", nTimeoutsRecv, nTimeouts)
  193. }
  194. if nNil != nReqs-nTimeouts {
  195. t.Errorf("wrong number of successful replies: got %d, want %d", nNil, nReqs-nTimeouts)
  196. }
  197. }
  198. func TestUDP_findnodeTimeout(t *testing.T) {
  199. t.Parallel()
  200. test := newUDPTest(t)
  201. defer test.table.Close()
  202. toaddr := &net.UDPAddr{IP: net.ParseIP("1.2.3.4"), Port: 2222}
  203. toid := NodeID{1, 2, 3, 4}
  204. target := NodeID{4, 5, 6, 7}
  205. result, err := test.udp.findnode(toid, toaddr, target)
  206. if err != errTimeout {
  207. t.Error("expected timeout error, got", err)
  208. }
  209. if len(result) > 0 {
  210. t.Error("expected empty result, got", result)
  211. }
  212. }
  213. func TestUDP_findnode(t *testing.T) {
  214. test := newUDPTest(t)
  215. defer test.table.Close()
  216. // put a few nodes into the table. their exact
  217. // distribution shouldn't matter much, although we need to
  218. // take care not to overflow any bucket.
  219. targetHash := crypto.Keccak256Hash(testTarget[:])
  220. nodes := &nodesByDistance{target: targetHash}
  221. for i := 0; i < bucketSize; i++ {
  222. nodes.push(nodeAtDistance(test.table.self.sha, i+2), bucketSize)
  223. }
  224. test.table.stuff(nodes.entries)
  225. // ensure there's a bond with the test node,
  226. // findnode won't be accepted otherwise.
  227. test.table.db.updateNode(NewNode(
  228. PubkeyID(&test.remotekey.PublicKey),
  229. test.remoteaddr.IP,
  230. uint16(test.remoteaddr.Port),
  231. 99,
  232. ))
  233. // check that closest neighbors are returned.
  234. test.packetIn(nil, findnodePacket, &findnode{Target: testTarget, Expiration: futureExp})
  235. expected := test.table.closest(targetHash, bucketSize)
  236. waitNeighbors := func(want []*Node) {
  237. test.waitPacketOut(func(p *neighbors) {
  238. if len(p.Nodes) != len(want) {
  239. t.Errorf("wrong number of results: got %d, want %d", len(p.Nodes), bucketSize)
  240. }
  241. for i := range p.Nodes {
  242. if p.Nodes[i].ID != want[i].ID {
  243. t.Errorf("result mismatch at %d:\n got: %v\n want: %v", i, p.Nodes[i], expected.entries[i])
  244. }
  245. }
  246. })
  247. }
  248. waitNeighbors(expected.entries[:maxNeighbors])
  249. waitNeighbors(expected.entries[maxNeighbors:])
  250. }
  251. func TestUDP_findnodeMultiReply(t *testing.T) {
  252. test := newUDPTest(t)
  253. defer test.table.Close()
  254. // queue a pending findnode request
  255. resultc, errc := make(chan []*Node), make(chan error)
  256. go func() {
  257. rid := PubkeyID(&test.remotekey.PublicKey)
  258. ns, err := test.udp.findnode(rid, test.remoteaddr, testTarget)
  259. if err != nil && len(ns) == 0 {
  260. errc <- err
  261. } else {
  262. resultc <- ns
  263. }
  264. }()
  265. // wait for the findnode to be sent.
  266. // after it is sent, the transport is waiting for a reply
  267. test.waitPacketOut(func(p *findnode) {
  268. if p.Target != testTarget {
  269. t.Errorf("wrong target: got %v, want %v", p.Target, testTarget)
  270. }
  271. })
  272. // send the reply as two packets.
  273. list := []*Node{
  274. MustParseNode("enode://ba85011c70bcc5c04d8607d3a0ed29aa6179c092cbdda10d5d32684fb33ed01bd94f588ca8f91ac48318087dcb02eaf36773a7a453f0eedd6742af668097b29c@10.0.1.16:30303?discport=30304"),
  275. MustParseNode("enode://81fa361d25f157cd421c60dcc28d8dac5ef6a89476633339c5df30287474520caca09627da18543d9079b5b288698b542d56167aa5c09111e55acdbbdf2ef799@10.0.1.16:30303"),
  276. MustParseNode("enode://9bffefd833d53fac8e652415f4973bee289e8b1a5c6c4cbe70abf817ce8a64cee11b823b66a987f51aaa9fba0d6a91b3e6bf0d5a5d1042de8e9eeea057b217f8@10.0.1.36:30301?discport=17"),
  277. MustParseNode("enode://1b5b4aa662d7cb44a7221bfba67302590b643028197a7d5214790f3bac7aaa4a3241be9e83c09cf1f6c69d007c634faae3dc1b1221793e8446c0b3a09de65960@10.0.1.16:30303"),
  278. }
  279. rpclist := make([]rpcNode, len(list))
  280. for i := range list {
  281. rpclist[i] = nodeToRPC(list[i])
  282. }
  283. test.packetIn(nil, neighborsPacket, &neighbors{Expiration: futureExp, Nodes: rpclist[:2]})
  284. test.packetIn(nil, neighborsPacket, &neighbors{Expiration: futureExp, Nodes: rpclist[2:]})
  285. // check that the sent neighbors are all returned by findnode
  286. select {
  287. case result := <-resultc:
  288. want := append(list[:2], list[3:]...)
  289. if !reflect.DeepEqual(result, want) {
  290. t.Errorf("neighbors mismatch:\n got: %v\n want: %v", result, want)
  291. }
  292. case err := <-errc:
  293. t.Errorf("findnode error: %v", err)
  294. case <-time.After(5 * time.Second):
  295. t.Error("findnode did not return within 5 seconds")
  296. }
  297. }
  298. func TestUDP_successfulPing(t *testing.T) {
  299. test := newUDPTest(t)
  300. added := make(chan *Node, 1)
  301. test.table.nodeAddedHook = func(n *Node) { added <- n }
  302. defer test.table.Close()
  303. // The remote side sends a ping packet to initiate the exchange.
  304. go test.packetIn(nil, pingPacket, &ping{From: testRemote, To: testLocalAnnounced, Version: Version, Expiration: futureExp})
  305. // the ping is replied to.
  306. test.waitPacketOut(func(p *pong) {
  307. pinghash := test.sent[0][:macSize]
  308. if !bytes.Equal(p.ReplyTok, pinghash) {
  309. t.Errorf("got pong.ReplyTok %x, want %x", p.ReplyTok, pinghash)
  310. }
  311. wantTo := rpcEndpoint{
  312. // The mirrored UDP address is the UDP packet sender
  313. IP: test.remoteaddr.IP, UDP: uint16(test.remoteaddr.Port),
  314. // The mirrored TCP port is the one from the ping packet
  315. TCP: testRemote.TCP,
  316. }
  317. if !reflect.DeepEqual(p.To, wantTo) {
  318. t.Errorf("got pong.To %v, want %v", p.To, wantTo)
  319. }
  320. })
  321. // remote is unknown, the table pings back.
  322. hash, _ := test.waitPacketOut(func(p *ping) error {
  323. if !reflect.DeepEqual(p.From, test.udp.ourEndpoint) {
  324. t.Errorf("got ping.From %v, want %v", p.From, test.udp.ourEndpoint)
  325. }
  326. wantTo := rpcEndpoint{
  327. // The mirrored UDP address is the UDP packet sender.
  328. IP: test.remoteaddr.IP, UDP: uint16(test.remoteaddr.Port),
  329. TCP: 0,
  330. }
  331. if !reflect.DeepEqual(p.To, wantTo) {
  332. t.Errorf("got ping.To %v, want %v", p.To, wantTo)
  333. }
  334. return nil
  335. })
  336. test.packetIn(nil, pongPacket, &pong{ReplyTok: hash, Expiration: futureExp})
  337. // the node should be added to the table shortly after getting the
  338. // pong packet.
  339. select {
  340. case n := <-added:
  341. rid := PubkeyID(&test.remotekey.PublicKey)
  342. if n.ID != rid {
  343. t.Errorf("node has wrong ID: got %v, want %v", n.ID, rid)
  344. }
  345. if !n.IP.Equal(test.remoteaddr.IP) {
  346. t.Errorf("node has wrong IP: got %v, want: %v", n.IP, test.remoteaddr.IP)
  347. }
  348. if int(n.UDP) != test.remoteaddr.Port {
  349. t.Errorf("node has wrong UDP port: got %v, want: %v", n.UDP, test.remoteaddr.Port)
  350. }
  351. if n.TCP != testRemote.TCP {
  352. t.Errorf("node has wrong TCP port: got %v, want: %v", n.TCP, testRemote.TCP)
  353. }
  354. case <-time.After(2 * time.Second):
  355. t.Errorf("node was not added within 2 seconds")
  356. }
  357. }
  358. var testPackets = []struct {
  359. input string
  360. wantPacket interface{}
  361. }{
  362. {
  363. input: "71dbda3a79554728d4f94411e42ee1f8b0d561c10e1e5f5893367948c6a7d70bb87b235fa28a77070271b6c164a2dce8c7e13a5739b53b5e96f2e5acb0e458a02902f5965d55ecbeb2ebb6cabb8b2b232896a36b737666c55265ad0a68412f250001ea04cb847f000001820cfa8215a8d790000000000000000000000000000000018208ae820d058443b9a355",
  364. wantPacket: &ping{
  365. Version: 4,
  366. From: rpcEndpoint{net.ParseIP("127.0.0.1").To4(), 3322, 5544},
  367. To: rpcEndpoint{net.ParseIP("::1"), 2222, 3333},
  368. Expiration: 1136239445,
  369. Rest: []rlp.RawValue{},
  370. },
  371. },
  372. {
  373. input: "e9614ccfd9fc3e74360018522d30e1419a143407ffcce748de3e22116b7e8dc92ff74788c0b6663aaa3d67d641936511c8f8d6ad8698b820a7cf9e1be7155e9a241f556658c55428ec0563514365799a4be2be5a685a80971ddcfa80cb422cdd0101ec04cb847f000001820cfa8215a8d790000000000000000000000000000000018208ae820d058443b9a3550102",
  374. wantPacket: &ping{
  375. Version: 4,
  376. From: rpcEndpoint{net.ParseIP("127.0.0.1").To4(), 3322, 5544},
  377. To: rpcEndpoint{net.ParseIP("::1"), 2222, 3333},
  378. Expiration: 1136239445,
  379. Rest: []rlp.RawValue{{0x01}, {0x02}},
  380. },
  381. },
  382. {
  383. input: "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",
  384. wantPacket: &ping{
  385. Version: 555,
  386. From: rpcEndpoint{net.ParseIP("2001:db8:3c4d:15::abcd:ef12"), 3322, 5544},
  387. To: rpcEndpoint{net.ParseIP("2001:db8:85a3:8d3:1319:8a2e:370:7348"), 2222, 33338},
  388. Expiration: 1136239445,
  389. Rest: []rlp.RawValue{{0xC5, 0x01, 0x02, 0x03, 0x04, 0x05}},
  390. },
  391. },
  392. {
  393. input: "09b2428d83348d27cdf7064ad9024f526cebc19e4958f0fdad87c15eb598dd61d08423e0bf66b2069869e1724125f820d851c136684082774f870e614d95a2855d000f05d1648b2d5945470bc187c2d2216fbe870f43ed0909009882e176a46b0102f846d79020010db885a308d313198a2e037073488208ae82823aa0fbc914b16819237dcd8801d7e53f69e9719adecb3cc0e790c57e91ca4461c9548443b9a355c6010203c2040506a0c969a58f6f9095004c0177a6b47f451530cab38966a25cca5cb58f055542124e",
  394. wantPacket: &pong{
  395. To: rpcEndpoint{net.ParseIP("2001:db8:85a3:8d3:1319:8a2e:370:7348"), 2222, 33338},
  396. ReplyTok: common.Hex2Bytes("fbc914b16819237dcd8801d7e53f69e9719adecb3cc0e790c57e91ca4461c954"),
  397. Expiration: 1136239445,
  398. Rest: []rlp.RawValue{{0xC6, 0x01, 0x02, 0x03, 0xC2, 0x04, 0x05}, {0x06}},
  399. },
  400. },
  401. {
  402. input: "c7c44041b9f7c7e41934417ebac9a8e1a4c6298f74553f2fcfdcae6ed6fe53163eb3d2b52e39fe91831b8a927bf4fc222c3902202027e5e9eb812195f95d20061ef5cd31d502e47ecb61183f74a504fe04c51e73df81f25c4d506b26db4517490103f84eb840ca634cae0d49acb401d8a4c6b6fe8c55b70d115bf400769cc1400f3258cd31387574077f301b421bc84df7266c44e9e6d569fc56be00812904767bf5ccd1fc7f8443b9a35582999983999999280dc62cc8255c73471e0a61da0c89acdc0e035e260add7fc0c04ad9ebf3919644c91cb247affc82b69bd2ca235c71eab8e49737c937a2c396",
  403. wantPacket: &findnode{
  404. Target: MustHexID("ca634cae0d49acb401d8a4c6b6fe8c55b70d115bf400769cc1400f3258cd31387574077f301b421bc84df7266c44e9e6d569fc56be00812904767bf5ccd1fc7f"),
  405. Expiration: 1136239445,
  406. Rest: []rlp.RawValue{{0x82, 0x99, 0x99}, {0x83, 0x99, 0x99, 0x99}},
  407. },
  408. },
  409. {
  410. input: "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",
  411. wantPacket: &neighbors{
  412. Nodes: []rpcNode{
  413. {
  414. ID: MustHexID("3155e1427f85f10a5c9a7755877748041af1bcd8d474ec065eb33df57a97babf54bfd2103575fa829115d224c523596b401065a97f74010610fce76382c0bf32"),
  415. IP: net.ParseIP("99.33.22.55").To4(),
  416. UDP: 4444,
  417. TCP: 4445,
  418. },
  419. {
  420. ID: MustHexID("312c55512422cf9b8a4097e9a6ad79402e87a15ae909a4bfefa22398f03d20951933beea1e4dfa6f968212385e829f04c2d314fc2d4e255e0d3bc08792b069db"),
  421. IP: net.ParseIP("1.2.3.4").To4(),
  422. UDP: 1,
  423. TCP: 1,
  424. },
  425. {
  426. ID: MustHexID("38643200b172dcfef857492156971f0e6aa2c538d8b74010f8e140811d53b98c765dd2d96126051913f44582e8c199ad7c6d6819e9a56483f637feaac9448aac"),
  427. IP: net.ParseIP("2001:db8:3c4d:15::abcd:ef12"),
  428. UDP: 3333,
  429. TCP: 3333,
  430. },
  431. {
  432. ID: MustHexID("8dcab8618c3253b558d459da53bd8fa68935a719aff8b811197101a4b2b47dd2d47295286fc00cc081bb542d760717d1bdd6bec2c37cd72eca367d6dd3b9df73"),
  433. IP: net.ParseIP("2001:db8:85a3:8d3:1319:8a2e:370:7348"),
  434. UDP: 999,
  435. TCP: 1000,
  436. },
  437. },
  438. Expiration: 1136239445,
  439. Rest: []rlp.RawValue{{0x01}, {0x02}, {0x03}},
  440. },
  441. },
  442. }
  443. func TestForwardCompatibility(t *testing.T) {
  444. testkey, _ := crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
  445. wantNodeID := PubkeyID(&testkey.PublicKey)
  446. for _, test := range testPackets {
  447. input, err := hex.DecodeString(test.input)
  448. if err != nil {
  449. t.Fatalf("invalid hex: %s", test.input)
  450. }
  451. packet, nodeid, _, err := decodePacket(input)
  452. if err != nil {
  453. t.Errorf("did not accept packet %s\n%v", test.input, err)
  454. continue
  455. }
  456. if !reflect.DeepEqual(packet, test.wantPacket) {
  457. t.Errorf("got %s\nwant %s", spew.Sdump(packet), spew.Sdump(test.wantPacket))
  458. }
  459. if nodeid != wantNodeID {
  460. t.Errorf("got id %v\nwant id %v", nodeid, wantNodeID)
  461. }
  462. }
  463. }
  464. // dgramPipe is a fake UDP socket. It queues all sent datagrams.
  465. type dgramPipe struct {
  466. mu *sync.Mutex
  467. cond *sync.Cond
  468. closing chan struct{}
  469. closed bool
  470. queue [][]byte
  471. }
  472. func newpipe() *dgramPipe {
  473. mu := new(sync.Mutex)
  474. return &dgramPipe{
  475. closing: make(chan struct{}),
  476. cond: &sync.Cond{L: mu},
  477. mu: mu,
  478. }
  479. }
  480. // WriteToUDP queues a datagram.
  481. func (c *dgramPipe) WriteToUDP(b []byte, to *net.UDPAddr) (n int, err error) {
  482. msg := make([]byte, len(b))
  483. copy(msg, b)
  484. c.mu.Lock()
  485. defer c.mu.Unlock()
  486. if c.closed {
  487. return 0, errors.New("closed")
  488. }
  489. c.queue = append(c.queue, msg)
  490. c.cond.Signal()
  491. return len(b), nil
  492. }
  493. // ReadFromUDP just hangs until the pipe is closed.
  494. func (c *dgramPipe) ReadFromUDP(b []byte) (n int, addr *net.UDPAddr, err error) {
  495. <-c.closing
  496. return 0, nil, io.EOF
  497. }
  498. func (c *dgramPipe) Close() error {
  499. c.mu.Lock()
  500. defer c.mu.Unlock()
  501. if !c.closed {
  502. close(c.closing)
  503. c.closed = true
  504. }
  505. return nil
  506. }
  507. func (c *dgramPipe) LocalAddr() net.Addr {
  508. return &net.UDPAddr{IP: testLocal.IP, Port: int(testLocal.UDP)}
  509. }
  510. func (c *dgramPipe) waitPacketOut() []byte {
  511. c.mu.Lock()
  512. defer c.mu.Unlock()
  513. for len(c.queue) == 0 {
  514. c.cond.Wait()
  515. }
  516. p := c.queue[0]
  517. copy(c.queue, c.queue[1:])
  518. c.queue = c.queue[:len(c.queue)-1]
  519. return p
  520. }