v4_lookup_test.go 12 KB

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  1. // Copyright 2019 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. "crypto/ecdsa"
  19. "fmt"
  20. "net"
  21. "sort"
  22. "testing"
  23. "github.com/ethereum/go-ethereum/crypto"
  24. "github.com/ethereum/go-ethereum/p2p/enode"
  25. "github.com/ethereum/go-ethereum/p2p/enr"
  26. )
  27. func TestUDPv4_Lookup(t *testing.T) {
  28. t.Parallel()
  29. test := newUDPTest(t)
  30. // Lookup on empty table returns no nodes.
  31. targetKey, _ := decodePubkey(crypto.S256(), lookupTestnet.target)
  32. if results := test.udp.LookupPubkey(targetKey); len(results) > 0 {
  33. t.Fatalf("lookup on empty table returned %d results: %#v", len(results), results)
  34. }
  35. // Seed table with initial node.
  36. fillTable(test.table, []*node{wrapNode(lookupTestnet.node(256, 0))})
  37. // Start the lookup.
  38. resultC := make(chan []*enode.Node, 1)
  39. go func() {
  40. resultC <- test.udp.LookupPubkey(targetKey)
  41. test.close()
  42. }()
  43. // Answer lookup packets.
  44. serveTestnet(test, lookupTestnet)
  45. // Verify result nodes.
  46. results := <-resultC
  47. t.Logf("results:")
  48. for _, e := range results {
  49. t.Logf(" ld=%d, %x", enode.LogDist(lookupTestnet.target.id(), e.ID()), e.ID().Bytes())
  50. }
  51. if len(results) != bucketSize {
  52. t.Errorf("wrong number of results: got %d, want %d", len(results), bucketSize)
  53. }
  54. checkLookupResults(t, lookupTestnet, results)
  55. }
  56. func TestUDPv4_LookupIterator(t *testing.T) {
  57. t.Parallel()
  58. test := newUDPTest(t)
  59. defer test.close()
  60. // Seed table with initial nodes.
  61. bootnodes := make([]*node, len(lookupTestnet.dists[256]))
  62. for i := range lookupTestnet.dists[256] {
  63. bootnodes[i] = wrapNode(lookupTestnet.node(256, i))
  64. }
  65. fillTable(test.table, bootnodes)
  66. go serveTestnet(test, lookupTestnet)
  67. // Create the iterator and collect the nodes it yields.
  68. iter := test.udp.RandomNodes()
  69. seen := make(map[enode.ID]*enode.Node)
  70. for limit := lookupTestnet.len(); iter.Next() && len(seen) < limit; {
  71. seen[iter.Node().ID()] = iter.Node()
  72. }
  73. iter.Close()
  74. // Check that all nodes in lookupTestnet were seen by the iterator.
  75. results := make([]*enode.Node, 0, len(seen))
  76. for _, n := range seen {
  77. results = append(results, n)
  78. }
  79. sortByID(results)
  80. want := lookupTestnet.nodes()
  81. if err := checkNodesEqual(results, want); err != nil {
  82. t.Fatal(err)
  83. }
  84. }
  85. // TestUDPv4_LookupIteratorClose checks that lookupIterator ends when its Close
  86. // method is called.
  87. func TestUDPv4_LookupIteratorClose(t *testing.T) {
  88. t.Parallel()
  89. test := newUDPTest(t)
  90. defer test.close()
  91. // Seed table with initial nodes.
  92. bootnodes := make([]*node, len(lookupTestnet.dists[256]))
  93. for i := range lookupTestnet.dists[256] {
  94. bootnodes[i] = wrapNode(lookupTestnet.node(256, i))
  95. }
  96. fillTable(test.table, bootnodes)
  97. go serveTestnet(test, lookupTestnet)
  98. it := test.udp.RandomNodes()
  99. if ok := it.Next(); !ok || it.Node() == nil {
  100. t.Fatalf("iterator didn't return any node")
  101. }
  102. it.Close()
  103. ncalls := 0
  104. for ; ncalls < 100 && it.Next(); ncalls++ {
  105. if it.Node() == nil {
  106. t.Error("iterator returned Node() == nil node after Next() == true")
  107. }
  108. }
  109. t.Logf("iterator returned %d nodes after close", ncalls)
  110. if it.Next() {
  111. t.Errorf("Next() == true after close and %d more calls", ncalls)
  112. }
  113. if n := it.Node(); n != nil {
  114. t.Errorf("iterator returned non-nil node after close and %d more calls", ncalls)
  115. }
  116. }
  117. func serveTestnet(test *udpTest, testnet *preminedTestnet) {
  118. for done := false; !done; {
  119. done = test.waitPacketOut(func(p packetV4, to *net.UDPAddr, hash []byte) {
  120. n, key := testnet.nodeByAddr(to)
  121. switch p.(type) {
  122. case *pingV4:
  123. test.packetInFrom(nil, key, to, &pongV4{Expiration: futureExp, ReplyTok: hash})
  124. case *findnodeV4:
  125. dist := enode.LogDist(n.ID(), testnet.target.id())
  126. nodes := testnet.nodesAtDistance(dist - 1)
  127. test.packetInFrom(nil, key, to, &neighborsV4{Expiration: futureExp, Nodes: nodes})
  128. }
  129. })
  130. }
  131. }
  132. // checkLookupResults verifies that the results of a lookup are the closest nodes to
  133. // the testnet's target.
  134. func checkLookupResults(t *testing.T, tn *preminedTestnet, results []*enode.Node) {
  135. t.Helper()
  136. t.Logf("results:")
  137. for _, e := range results {
  138. t.Logf(" ld=%d, %x", enode.LogDist(tn.target.id(), e.ID()), e.ID().Bytes())
  139. }
  140. if hasDuplicates(wrapNodes(results)) {
  141. t.Errorf("result set contains duplicate entries")
  142. }
  143. if !sortedByDistanceTo(tn.target.id(), wrapNodes(results)) {
  144. t.Errorf("result set not sorted by distance to target")
  145. }
  146. wantNodes := tn.closest(len(results))
  147. if err := checkNodesEqual(results, wantNodes); err != nil {
  148. t.Error(err)
  149. }
  150. }
  151. // This is the test network for the Lookup test.
  152. // The nodes were obtained by running lookupTestnet.mine with a random NodeID as target.
  153. var lookupTestnet = &preminedTestnet{
  154. target: hexEncPubkey("5d485bdcbe9bc89314a10ae9231e429d33853e3a8fa2af39f5f827370a2e4185e344ace5d16237491dad41f278f1d3785210d29ace76cd627b9147ee340b1125"),
  155. dists: [257][]*ecdsa.PrivateKey{
  156. 251: {
  157. hexEncPrivkey("29738ba0c1a4397d6a65f292eee07f02df8e58d41594ba2be3cf84ce0fc58169"),
  158. hexEncPrivkey("511b1686e4e58a917f7f848e9bf5539d206a68f5ad6b54b552c2399fe7d174ae"),
  159. hexEncPrivkey("d09e5eaeec0fd596236faed210e55ef45112409a5aa7f3276d26646080dcfaeb"),
  160. hexEncPrivkey("c1e20dbbf0d530e50573bd0a260b32ec15eb9190032b4633d44834afc8afe578"),
  161. hexEncPrivkey("ed5f38f5702d92d306143e5d9154fb21819777da39af325ea359f453d179e80b"),
  162. },
  163. 252: {
  164. hexEncPrivkey("1c9b1cafbec00848d2c174b858219914b42a7d5c9359b1ca03fd650e8239ae94"),
  165. hexEncPrivkey("e0e1e8db4a6f13c1ffdd3e96b72fa7012293ced187c9dcdcb9ba2af37a46fa10"),
  166. hexEncPrivkey("3d53823e0a0295cb09f3e11d16c1b44d07dd37cec6f739b8df3a590189fe9fb9"),
  167. },
  168. 253: {
  169. hexEncPrivkey("2d0511ae9bf590166597eeab86b6f27b1ab761761eaea8965487b162f8703847"),
  170. hexEncPrivkey("6cfbd7b8503073fc3dbdb746a7c672571648d3bd15197ccf7f7fef3d904f53a2"),
  171. hexEncPrivkey("a30599b12827b69120633f15b98a7f6bc9fc2e9a0fd6ae2ebb767c0e64d743ab"),
  172. hexEncPrivkey("14a98db9b46a831d67eff29f3b85b1b485bb12ae9796aea98d91be3dc78d8a91"),
  173. hexEncPrivkey("2369ff1fc1ff8ca7d20b17e2673adc3365c3674377f21c5d9dafaff21fe12e24"),
  174. hexEncPrivkey("9ae91101d6b5048607f41ec0f690ef5d09507928aded2410aabd9237aa2727d7"),
  175. hexEncPrivkey("05e3c59090a3fd1ae697c09c574a36fcf9bedd0afa8fe3946f21117319ca4973"),
  176. hexEncPrivkey("06f31c5ea632658f718a91a1b1b9ae4b7549d7b3bc61cbc2be5f4a439039f3ad"),
  177. },
  178. 254: {
  179. hexEncPrivkey("dec742079ec00ff4ec1284d7905bc3de2366f67a0769431fd16f80fd68c58a7c"),
  180. hexEncPrivkey("ff02c8861fa12fbd129d2a95ea663492ef9c1e51de19dcfbbfe1c59894a28d2b"),
  181. hexEncPrivkey("4dded9e4eefcbce4262be4fd9e8a773670ab0b5f448f286ec97dfc8cf681444a"),
  182. hexEncPrivkey("750d931e2a8baa2c9268cb46b7cd851f4198018bed22f4dceb09dd334a2395f6"),
  183. hexEncPrivkey("ce1435a956a98ffec484cd11489c4f165cf1606819ab6b521cee440f0c677e9e"),
  184. hexEncPrivkey("996e7f8d1638be92d7328b4770f47e5420fc4bafecb4324fd33b1f5d9f403a75"),
  185. hexEncPrivkey("ebdc44e77a6cc0eb622e58cf3bb903c3da4c91ca75b447b0168505d8fc308b9c"),
  186. hexEncPrivkey("46bd1eddcf6431bea66fc19ebc45df191c1c7d6ed552dcdc7392885009c322f0"),
  187. },
  188. 255: {
  189. hexEncPrivkey("da8645f90826e57228d9ea72aff84500060ad111a5d62e4af831ed8e4b5acfb8"),
  190. hexEncPrivkey("3c944c5d9af51d4c1d43f5d0f3a1a7ef65d5e82744d669b58b5fed242941a566"),
  191. hexEncPrivkey("5ebcde76f1d579eebf6e43b0ffe9157e65ffaa391175d5b9aa988f47df3e33da"),
  192. hexEncPrivkey("97f78253a7d1d796e4eaabce721febcc4550dd68fb11cc818378ba807a2cb7de"),
  193. hexEncPrivkey("a38cd7dc9b4079d1c0406afd0fdb1165c285f2c44f946eca96fc67772c988c7d"),
  194. hexEncPrivkey("d64cbb3ffdf712c372b7a22a176308ef8f91861398d5dbaf326fd89c6eaeef1c"),
  195. hexEncPrivkey("d269609743ef29d6446e3355ec647e38d919c82a4eb5837e442efd7f4218944f"),
  196. hexEncPrivkey("d8f7bcc4a530efde1d143717007179e0d9ace405ddaaf151c4d863753b7fd64c"),
  197. },
  198. 256: {
  199. hexEncPrivkey("8c5b422155d33ea8e9d46f71d1ad3e7b24cb40051413ffa1a81cff613d243ba9"),
  200. hexEncPrivkey("937b1af801def4e8f5a3a8bd225a8bcff1db764e41d3e177f2e9376e8dd87233"),
  201. hexEncPrivkey("120260dce739b6f71f171da6f65bc361b5fad51db74cf02d3e973347819a6518"),
  202. hexEncPrivkey("1fa56cf25d4b46c2bf94e82355aa631717b63190785ac6bae545a88aadc304a9"),
  203. hexEncPrivkey("3c38c503c0376f9b4adcbe935d5f4b890391741c764f61b03cd4d0d42deae002"),
  204. hexEncPrivkey("3a54af3e9fa162bc8623cdf3e5d9b70bf30ade1d54cc3abea8659aba6cff471f"),
  205. hexEncPrivkey("6799a02ea1999aefdcbcc4d3ff9544478be7365a328d0d0f37c26bd95ade0cda"),
  206. hexEncPrivkey("e24a7bc9051058f918646b0f6e3d16884b2a55a15553b89bab910d55ebc36116"),
  207. },
  208. },
  209. }
  210. type preminedTestnet struct {
  211. target encPubkey
  212. dists [hashBits + 1][]*ecdsa.PrivateKey
  213. }
  214. func (tn *preminedTestnet) len() int {
  215. n := 0
  216. for _, keys := range tn.dists {
  217. n += len(keys)
  218. }
  219. return n
  220. }
  221. func (tn *preminedTestnet) nodes() []*enode.Node {
  222. result := make([]*enode.Node, 0, tn.len())
  223. for dist, keys := range tn.dists {
  224. for index := range keys {
  225. result = append(result, tn.node(dist, index))
  226. }
  227. }
  228. sortByID(result)
  229. return result
  230. }
  231. func (tn *preminedTestnet) node(dist, index int) *enode.Node {
  232. key := tn.dists[dist][index]
  233. rec := new(enr.Record)
  234. rec.Set(enr.IP{127, byte(dist >> 8), byte(dist), byte(index)})
  235. rec.Set(enr.UDP(5000))
  236. enode.SignV4(rec, key)
  237. n, _ := enode.New(enode.ValidSchemes, rec)
  238. return n
  239. }
  240. func (tn *preminedTestnet) nodeByAddr(addr *net.UDPAddr) (*enode.Node, *ecdsa.PrivateKey) {
  241. dist := int(addr.IP[1])<<8 + int(addr.IP[2])
  242. index := int(addr.IP[3])
  243. key := tn.dists[dist][index]
  244. return tn.node(dist, index), key
  245. }
  246. func (tn *preminedTestnet) nodesAtDistance(dist int) []rpcNode {
  247. result := make([]rpcNode, len(tn.dists[dist]))
  248. for i := range result {
  249. result[i] = nodeToRPC(wrapNode(tn.node(dist, i)))
  250. }
  251. return result
  252. }
  253. func (tn *preminedTestnet) neighborsAtDistance(base *enode.Node, distance uint, elems int) []*enode.Node {
  254. nodes := nodesByDistance{target: base.ID()}
  255. for d := range lookupTestnet.dists {
  256. for i := range lookupTestnet.dists[d] {
  257. n := lookupTestnet.node(d, i)
  258. if uint(enode.LogDist(n.ID(), base.ID())) == distance {
  259. nodes.push(wrapNode(n), elems)
  260. }
  261. }
  262. }
  263. return unwrapNodes(nodes.entries)
  264. }
  265. func (tn *preminedTestnet) closest(n int) (nodes []*enode.Node) {
  266. for d := range tn.dists {
  267. for i := range tn.dists[d] {
  268. nodes = append(nodes, tn.node(d, i))
  269. }
  270. }
  271. sort.Slice(nodes, func(i, j int) bool {
  272. return enode.DistCmp(tn.target.id(), nodes[i].ID(), nodes[j].ID()) < 0
  273. })
  274. return nodes[:n]
  275. }
  276. var _ = (*preminedTestnet).mine // avoid linter warning about mine being dead code.
  277. // mine generates a testnet struct literal with nodes at
  278. // various distances to the network's target.
  279. func (tn *preminedTestnet) mine() {
  280. // Clear existing slices first (useful when re-mining).
  281. for i := range tn.dists {
  282. tn.dists[i] = nil
  283. }
  284. targetSha := tn.target.id()
  285. found, need := 0, 40
  286. for found < need {
  287. k := newkey()
  288. ld := enode.LogDist(targetSha, encodePubkey(&k.PublicKey).id())
  289. if len(tn.dists[ld]) < 8 {
  290. tn.dists[ld] = append(tn.dists[ld], k)
  291. found++
  292. fmt.Printf("found ID with ld %d (%d/%d)\n", ld, found, need)
  293. }
  294. }
  295. fmt.Printf("&preminedTestnet{\n")
  296. fmt.Printf(" target: hexEncPubkey(\"%x\"),\n", tn.target[:])
  297. fmt.Printf(" dists: [%d][]*ecdsa.PrivateKey{\n", len(tn.dists))
  298. for ld, ns := range tn.dists {
  299. if len(ns) == 0 {
  300. continue
  301. }
  302. fmt.Printf(" %d: {\n", ld)
  303. for _, key := range ns {
  304. fmt.Printf(" hexEncPrivkey(\"%x\"),\n", crypto.FromECDSA(key))
  305. }
  306. fmt.Printf(" },\n")
  307. }
  308. fmt.Printf(" },\n")
  309. fmt.Printf("}\n")
  310. }