client_test.go 13 KB

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  1. // Copyright 2018 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 dnsdisc
  17. import (
  18. "context"
  19. "crypto/ecdsa"
  20. "errors"
  21. "math/rand"
  22. "reflect"
  23. "testing"
  24. "time"
  25. "github.com/davecgh/go-spew/spew"
  26. "github.com/ethereum/go-ethereum/common/mclock"
  27. "github.com/ethereum/go-ethereum/crypto"
  28. "github.com/ethereum/go-ethereum/internal/testlog"
  29. "github.com/ethereum/go-ethereum/log"
  30. "github.com/ethereum/go-ethereum/p2p/enode"
  31. "github.com/ethereum/go-ethereum/p2p/enr"
  32. )
  33. const (
  34. signingKeySeed = 0x111111
  35. nodesSeed1 = 0x2945237
  36. nodesSeed2 = 0x4567299
  37. )
  38. func TestClientSyncTree(t *testing.T) {
  39. r := mapResolver{
  40. "n": "enrtree-root:v1 e=JWXYDBPXYWG6FX3GMDIBFA6CJ4 l=C7HRFPF3BLGF3YR4DY5KX3SMBE seq=1 sig=o908WmNp7LibOfPsr4btQwatZJ5URBr2ZAuxvK4UWHlsB9sUOTJQaGAlLPVAhM__XJesCHxLISo94z5Z2a463gA",
  41. "C7HRFPF3BLGF3YR4DY5KX3SMBE.n": "enrtree://AM5FCQLWIZX2QFPNJAP7VUERCCRNGRHWZG3YYHIUV7BVDQ5FDPRT2@morenodes.example.org",
  42. "JWXYDBPXYWG6FX3GMDIBFA6CJ4.n": "enrtree-branch:2XS2367YHAXJFGLZHVAWLQD4ZY,H4FHT4B454P6UXFD7JCYQ5PWDY,MHTDO6TMUBRIA2XWG5LUDACK24",
  43. "2XS2367YHAXJFGLZHVAWLQD4ZY.n": "enr:-HW4QOFzoVLaFJnNhbgMoDXPnOvcdVuj7pDpqRvh6BRDO68aVi5ZcjB3vzQRZH2IcLBGHzo8uUN3snqmgTiE56CH3AMBgmlkgnY0iXNlY3AyNTZrMaECC2_24YYkYHEgdzxlSNKQEnHhuNAbNlMlWJxrJxbAFvA",
  44. "H4FHT4B454P6UXFD7JCYQ5PWDY.n": "enr:-HW4QAggRauloj2SDLtIHN1XBkvhFZ1vtf1raYQp9TBW2RD5EEawDzbtSmlXUfnaHcvwOizhVYLtr7e6vw7NAf6mTuoCgmlkgnY0iXNlY3AyNTZrMaECjrXI8TLNXU0f8cthpAMxEshUyQlK-AM0PW2wfrnacNI",
  45. "MHTDO6TMUBRIA2XWG5LUDACK24.n": "enr:-HW4QLAYqmrwllBEnzWWs7I5Ev2IAs7x_dZlbYdRdMUx5EyKHDXp7AV5CkuPGUPdvbv1_Ms1CPfhcGCvSElSosZmyoqAgmlkgnY0iXNlY3AyNTZrMaECriawHKWdDRk2xeZkrOXBQ0dfMFLHY4eENZwdufn1S1o",
  46. }
  47. var (
  48. wantNodes = testNodes(0x29452, 3)
  49. wantLinks = []string{"enrtree://AM5FCQLWIZX2QFPNJAP7VUERCCRNGRHWZG3YYHIUV7BVDQ5FDPRT2@morenodes.example.org"}
  50. wantSeq = uint(1)
  51. )
  52. c := NewClient(Config{Resolver: r, Logger: testlog.Logger(t, log.LvlTrace)})
  53. stree, err := c.SyncTree("enrtree://AKPYQIUQIL7PSIACI32J7FGZW56E5FKHEFCCOFHILBIMW3M6LWXS2@n")
  54. if err != nil {
  55. t.Fatal("sync error:", err)
  56. }
  57. if !reflect.DeepEqual(sortByID(stree.Nodes()), sortByID(wantNodes)) {
  58. t.Errorf("wrong nodes in synced tree:\nhave %v\nwant %v", spew.Sdump(stree.Nodes()), spew.Sdump(wantNodes))
  59. }
  60. if !reflect.DeepEqual(stree.Links(), wantLinks) {
  61. t.Errorf("wrong links in synced tree: %v", stree.Links())
  62. }
  63. if stree.Seq() != wantSeq {
  64. t.Errorf("synced tree has wrong seq: %d", stree.Seq())
  65. }
  66. }
  67. // In this test, syncing the tree fails because it contains an invalid ENR entry.
  68. func TestClientSyncTreeBadNode(t *testing.T) {
  69. // var b strings.Builder
  70. // b.WriteString(enrPrefix)
  71. // b.WriteString("-----")
  72. // badHash := subdomain(&b)
  73. // tree, _ := MakeTree(3, nil, []string{"enrtree://AM5FCQLWIZX2QFPNJAP7VUERCCRNGRHWZG3YYHIUV7BVDQ5FDPRT2@morenodes.example.org"})
  74. // tree.entries[badHash] = &b
  75. // tree.root.eroot = badHash
  76. // url, _ := tree.Sign(testKey(signingKeySeed), "n")
  77. // fmt.Println(url)
  78. // fmt.Printf("%#v\n", tree.ToTXT("n"))
  79. r := mapResolver{
  80. "n": "enrtree-root:v1 e=INDMVBZEEQ4ESVYAKGIYU74EAA l=C7HRFPF3BLGF3YR4DY5KX3SMBE seq=3 sig=Vl3AmunLur0JZ3sIyJPSH6A3Vvdp4F40jWQeCmkIhmcgwE4VC5U9wpK8C_uL_CMY29fd6FAhspRvq2z_VysTLAA",
  81. "C7HRFPF3BLGF3YR4DY5KX3SMBE.n": "enrtree://AM5FCQLWIZX2QFPNJAP7VUERCCRNGRHWZG3YYHIUV7BVDQ5FDPRT2@morenodes.example.org",
  82. "INDMVBZEEQ4ESVYAKGIYU74EAA.n": "enr:-----",
  83. }
  84. c := NewClient(Config{Resolver: r, Logger: testlog.Logger(t, log.LvlTrace)})
  85. _, err := c.SyncTree("enrtree://AKPYQIUQIL7PSIACI32J7FGZW56E5FKHEFCCOFHILBIMW3M6LWXS2@n")
  86. wantErr := nameError{name: "INDMVBZEEQ4ESVYAKGIYU74EAA.n", err: entryError{typ: "enr", err: errInvalidENR}}
  87. if err != wantErr {
  88. t.Fatalf("expected sync error %q, got %q", wantErr, err)
  89. }
  90. }
  91. // This test checks that randomIterator finds all entries.
  92. func TestIterator(t *testing.T) {
  93. nodes := testNodes(nodesSeed1, 30)
  94. tree, url := makeTestTree("n", nodes, nil)
  95. r := mapResolver(tree.ToTXT("n"))
  96. c := NewClient(Config{
  97. Resolver: r,
  98. Logger: testlog.Logger(t, log.LvlTrace),
  99. RateLimit: 500,
  100. })
  101. it, err := c.NewIterator(url)
  102. if err != nil {
  103. t.Fatal(err)
  104. }
  105. checkIterator(t, it, nodes)
  106. }
  107. // This test checks if closing randomIterator races.
  108. func TestIteratorClose(t *testing.T) {
  109. nodes := testNodes(nodesSeed1, 500)
  110. tree1, url1 := makeTestTree("t1", nodes, nil)
  111. c := NewClient(Config{Resolver: newMapResolver(tree1.ToTXT("t1"))})
  112. it, err := c.NewIterator(url1)
  113. if err != nil {
  114. t.Fatal(err)
  115. }
  116. done := make(chan struct{})
  117. go func() {
  118. for it.Next() {
  119. _ = it.Node()
  120. }
  121. close(done)
  122. }()
  123. time.Sleep(50 * time.Millisecond)
  124. it.Close()
  125. <-done
  126. }
  127. // This test checks that randomIterator traverses linked trees as well as explicitly added trees.
  128. func TestIteratorLinks(t *testing.T) {
  129. nodes := testNodes(nodesSeed1, 40)
  130. tree1, url1 := makeTestTree("t1", nodes[:10], nil)
  131. tree2, url2 := makeTestTree("t2", nodes[10:], []string{url1})
  132. c := NewClient(Config{
  133. Resolver: newMapResolver(tree1.ToTXT("t1"), tree2.ToTXT("t2")),
  134. Logger: testlog.Logger(t, log.LvlTrace),
  135. RateLimit: 500,
  136. })
  137. it, err := c.NewIterator(url2)
  138. if err != nil {
  139. t.Fatal(err)
  140. }
  141. checkIterator(t, it, nodes)
  142. }
  143. // This test verifies that randomIterator re-checks the root of the tree to catch
  144. // updates to nodes.
  145. func TestIteratorNodeUpdates(t *testing.T) {
  146. var (
  147. clock = new(mclock.Simulated)
  148. nodes = testNodes(nodesSeed1, 30)
  149. resolver = newMapResolver()
  150. c = NewClient(Config{
  151. Resolver: resolver,
  152. Logger: testlog.Logger(t, log.LvlTrace),
  153. RecheckInterval: 20 * time.Minute,
  154. RateLimit: 500,
  155. })
  156. )
  157. c.clock = clock
  158. tree1, url := makeTestTree("n", nodes[:25], nil)
  159. it, err := c.NewIterator(url)
  160. if err != nil {
  161. t.Fatal(err)
  162. }
  163. // Sync the original tree.
  164. resolver.add(tree1.ToTXT("n"))
  165. checkIterator(t, it, nodes[:25])
  166. // Ensure RandomNode returns the new nodes after the tree is updated.
  167. updateSomeNodes(nodesSeed1, nodes)
  168. tree2, _ := makeTestTree("n", nodes, nil)
  169. resolver.clear()
  170. resolver.add(tree2.ToTXT("n"))
  171. t.Log("tree updated")
  172. clock.Run(c.cfg.RecheckInterval + 1*time.Second)
  173. checkIterator(t, it, nodes)
  174. }
  175. // This test checks that the tree root is rechecked when a couple of leaf
  176. // requests have failed. The test is just like TestIteratorNodeUpdates, but
  177. // without advancing the clock by recheckInterval after the tree update.
  178. func TestIteratorRootRecheckOnFail(t *testing.T) {
  179. var (
  180. clock = new(mclock.Simulated)
  181. nodes = testNodes(nodesSeed1, 30)
  182. resolver = newMapResolver()
  183. c = NewClient(Config{
  184. Resolver: resolver,
  185. Logger: testlog.Logger(t, log.LvlTrace),
  186. RecheckInterval: 20 * time.Minute,
  187. RateLimit: 500,
  188. // Disabling the cache is required for this test because the client doesn't
  189. // notice leaf failures if all records are cached.
  190. CacheLimit: 1,
  191. })
  192. )
  193. c.clock = clock
  194. tree1, url := makeTestTree("n", nodes[:25], nil)
  195. it, err := c.NewIterator(url)
  196. if err != nil {
  197. t.Fatal(err)
  198. }
  199. // Sync the original tree.
  200. resolver.add(tree1.ToTXT("n"))
  201. checkIterator(t, it, nodes[:25])
  202. // Ensure RandomNode returns the new nodes after the tree is updated.
  203. updateSomeNodes(nodesSeed1, nodes)
  204. tree2, _ := makeTestTree("n", nodes, nil)
  205. resolver.clear()
  206. resolver.add(tree2.ToTXT("n"))
  207. t.Log("tree updated")
  208. checkIterator(t, it, nodes)
  209. }
  210. // This test checks that the iterator works correctly when the tree is initially empty.
  211. func TestIteratorEmptyTree(t *testing.T) {
  212. var (
  213. clock = new(mclock.Simulated)
  214. nodes = testNodes(nodesSeed1, 1)
  215. resolver = newMapResolver()
  216. c = NewClient(Config{
  217. Resolver: resolver,
  218. Logger: testlog.Logger(t, log.LvlTrace),
  219. RecheckInterval: 20 * time.Minute,
  220. RateLimit: 500,
  221. })
  222. )
  223. c.clock = clock
  224. tree1, url := makeTestTree("n", nil, nil)
  225. tree2, _ := makeTestTree("n", nodes, nil)
  226. resolver.add(tree1.ToTXT("n"))
  227. // Start the iterator.
  228. node := make(chan *enode.Node)
  229. it, err := c.NewIterator(url)
  230. if err != nil {
  231. t.Fatal(err)
  232. }
  233. go func() {
  234. it.Next()
  235. node <- it.Node()
  236. }()
  237. // Wait for the client to get stuck in waitForRootUpdates.
  238. clock.WaitForTimers(1)
  239. // Now update the root.
  240. resolver.add(tree2.ToTXT("n"))
  241. // Wait for it to pick up the root change.
  242. clock.Run(c.cfg.RecheckInterval)
  243. select {
  244. case n := <-node:
  245. if n.ID() != nodes[0].ID() {
  246. t.Fatalf("wrong node returned")
  247. }
  248. case <-time.After(5 * time.Second):
  249. t.Fatal("it.Next() did not unblock within 5s of real time")
  250. }
  251. }
  252. // updateSomeNodes applies ENR updates to some of the given nodes.
  253. func updateSomeNodes(keySeed int64, nodes []*enode.Node) {
  254. keys := testKeys(nodesSeed1, len(nodes))
  255. for i, n := range nodes[:len(nodes)/2] {
  256. r := n.Record()
  257. r.Set(enr.IP{127, 0, 0, 1})
  258. r.SetSeq(55)
  259. enode.SignV4(r, keys[i])
  260. n2, _ := enode.New(enode.ValidSchemes, r)
  261. nodes[i] = n2
  262. }
  263. }
  264. // This test verifies that randomIterator re-checks the root of the tree to catch
  265. // updates to links.
  266. func TestIteratorLinkUpdates(t *testing.T) {
  267. var (
  268. clock = new(mclock.Simulated)
  269. nodes = testNodes(nodesSeed1, 30)
  270. resolver = newMapResolver()
  271. c = NewClient(Config{
  272. Resolver: resolver,
  273. Logger: testlog.Logger(t, log.LvlTrace),
  274. RecheckInterval: 20 * time.Minute,
  275. RateLimit: 500,
  276. })
  277. )
  278. c.clock = clock
  279. tree3, url3 := makeTestTree("t3", nodes[20:30], nil)
  280. tree2, url2 := makeTestTree("t2", nodes[10:20], nil)
  281. tree1, url1 := makeTestTree("t1", nodes[0:10], []string{url2})
  282. resolver.add(tree1.ToTXT("t1"))
  283. resolver.add(tree2.ToTXT("t2"))
  284. resolver.add(tree3.ToTXT("t3"))
  285. it, err := c.NewIterator(url1)
  286. if err != nil {
  287. t.Fatal(err)
  288. }
  289. // Sync tree1 using RandomNode.
  290. checkIterator(t, it, nodes[:20])
  291. // Add link to tree3, remove link to tree2.
  292. tree1, _ = makeTestTree("t1", nodes[:10], []string{url3})
  293. resolver.add(tree1.ToTXT("t1"))
  294. t.Log("tree1 updated")
  295. clock.Run(c.cfg.RecheckInterval + 1*time.Second)
  296. var wantNodes []*enode.Node
  297. wantNodes = append(wantNodes, tree1.Nodes()...)
  298. wantNodes = append(wantNodes, tree3.Nodes()...)
  299. checkIterator(t, it, wantNodes)
  300. // Check that linked trees are GCed when they're no longer referenced.
  301. knownTrees := it.(*randomIterator).trees
  302. if len(knownTrees) != 2 {
  303. t.Errorf("client knows %d trees, want 2", len(knownTrees))
  304. }
  305. }
  306. func checkIterator(t *testing.T, it enode.Iterator, wantNodes []*enode.Node) {
  307. t.Helper()
  308. var (
  309. want = make(map[enode.ID]*enode.Node)
  310. maxCalls = len(wantNodes) * 3
  311. calls = 0
  312. )
  313. for _, n := range wantNodes {
  314. want[n.ID()] = n
  315. }
  316. for ; len(want) > 0 && calls < maxCalls; calls++ {
  317. if !it.Next() {
  318. t.Fatalf("Next returned false (call %d)", calls)
  319. }
  320. n := it.Node()
  321. delete(want, n.ID())
  322. }
  323. t.Logf("checkIterator called Next %d times to find %d nodes", calls, len(wantNodes))
  324. for _, n := range want {
  325. t.Errorf("iterator didn't discover node %v", n.ID())
  326. }
  327. }
  328. func makeTestTree(domain string, nodes []*enode.Node, links []string) (*Tree, string) {
  329. tree, err := MakeTree(1, nodes, links)
  330. if err != nil {
  331. panic(err)
  332. }
  333. url, err := tree.Sign(testKey(signingKeySeed), domain)
  334. if err != nil {
  335. panic(err)
  336. }
  337. return tree, url
  338. }
  339. // testKeys creates deterministic private keys for testing.
  340. func testKeys(seed int64, n int) []*ecdsa.PrivateKey {
  341. rand := rand.New(rand.NewSource(seed))
  342. keys := make([]*ecdsa.PrivateKey, n)
  343. for i := 0; i < n; i++ {
  344. key, err := ecdsa.GenerateKey(crypto.S256(), rand)
  345. if err != nil {
  346. panic("can't generate key: " + err.Error())
  347. }
  348. keys[i] = key
  349. }
  350. return keys
  351. }
  352. func testKey(seed int64) *ecdsa.PrivateKey {
  353. return testKeys(seed, 1)[0]
  354. }
  355. func testNodes(seed int64, n int) []*enode.Node {
  356. keys := testKeys(seed, n)
  357. nodes := make([]*enode.Node, n)
  358. for i, key := range keys {
  359. record := new(enr.Record)
  360. record.SetSeq(uint64(i))
  361. enode.SignV4(record, key)
  362. n, err := enode.New(enode.ValidSchemes, record)
  363. if err != nil {
  364. panic(err)
  365. }
  366. nodes[i] = n
  367. }
  368. return nodes
  369. }
  370. func testNode(seed int64) *enode.Node {
  371. return testNodes(seed, 1)[0]
  372. }
  373. type mapResolver map[string]string
  374. func newMapResolver(maps ...map[string]string) mapResolver {
  375. mr := make(mapResolver)
  376. for _, m := range maps {
  377. mr.add(m)
  378. }
  379. return mr
  380. }
  381. func (mr mapResolver) clear() {
  382. for k := range mr {
  383. delete(mr, k)
  384. }
  385. }
  386. func (mr mapResolver) add(m map[string]string) {
  387. for k, v := range m {
  388. mr[k] = v
  389. }
  390. }
  391. func (mr mapResolver) LookupTXT(ctx context.Context, name string) ([]string, error) {
  392. if record, ok := mr[name]; ok {
  393. return []string{record}, nil
  394. }
  395. return nil, errors.New("not found")
  396. }