test_helper.go 21 KB

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  1. // Copyright 2016 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. // This file contains some shares testing functionality, common to multiple
  17. // different files and modules being tested.
  18. package les
  19. import (
  20. "context"
  21. "crypto/rand"
  22. "fmt"
  23. "math/big"
  24. "sync/atomic"
  25. "testing"
  26. "time"
  27. "github.com/ethereum/go-ethereum/accounts/abi/bind"
  28. "github.com/ethereum/go-ethereum/accounts/abi/bind/backends"
  29. "github.com/ethereum/go-ethereum/common"
  30. "github.com/ethereum/go-ethereum/common/mclock"
  31. "github.com/ethereum/go-ethereum/consensus/ethash"
  32. "github.com/ethereum/go-ethereum/contracts/checkpointoracle/contract"
  33. "github.com/ethereum/go-ethereum/core"
  34. "github.com/ethereum/go-ethereum/core/rawdb"
  35. "github.com/ethereum/go-ethereum/core/types"
  36. "github.com/ethereum/go-ethereum/crypto"
  37. "github.com/ethereum/go-ethereum/eth/ethconfig"
  38. "github.com/ethereum/go-ethereum/ethdb"
  39. "github.com/ethereum/go-ethereum/event"
  40. "github.com/ethereum/go-ethereum/les/checkpointoracle"
  41. "github.com/ethereum/go-ethereum/les/flowcontrol"
  42. "github.com/ethereum/go-ethereum/light"
  43. "github.com/ethereum/go-ethereum/p2p"
  44. "github.com/ethereum/go-ethereum/p2p/enode"
  45. "github.com/ethereum/go-ethereum/p2p/nodestate"
  46. "github.com/ethereum/go-ethereum/params"
  47. )
  48. var (
  49. bankKey, _ = crypto.GenerateKey()
  50. bankAddr = crypto.PubkeyToAddress(bankKey.PublicKey)
  51. bankFunds = big.NewInt(1000000000000000000)
  52. userKey1, _ = crypto.GenerateKey()
  53. userKey2, _ = crypto.GenerateKey()
  54. userAddr1 = crypto.PubkeyToAddress(userKey1.PublicKey)
  55. userAddr2 = crypto.PubkeyToAddress(userKey2.PublicKey)
  56. testContractAddr common.Address
  57. testContractCode = common.Hex2Bytes("606060405260cc8060106000396000f360606040526000357c01000000000000000000000000000000000000000000000000000000009004806360cd2685146041578063c16431b914606b57603f565b005b6055600480803590602001909190505060a9565b6040518082815260200191505060405180910390f35b60886004808035906020019091908035906020019091905050608a565b005b80600060005083606481101560025790900160005b50819055505b5050565b6000600060005082606481101560025790900160005b5054905060c7565b91905056")
  58. testContractCodeDeployed = testContractCode[16:]
  59. testContractDeployed = uint64(2)
  60. testEventEmitterCode = common.Hex2Bytes("60606040523415600e57600080fd5b7f57050ab73f6b9ebdd9f76b8d4997793f48cf956e965ee070551b9ca0bb71584e60405160405180910390a160358060476000396000f3006060604052600080fd00a165627a7a723058203f727efcad8b5811f8cb1fc2620ce5e8c63570d697aef968172de296ea3994140029")
  61. // Checkpoint registrar relative
  62. registrarAddr common.Address
  63. signerKey, _ = crypto.GenerateKey()
  64. signerAddr = crypto.PubkeyToAddress(signerKey.PublicKey)
  65. )
  66. var (
  67. // The block frequency for creating checkpoint(only used in test)
  68. sectionSize = big.NewInt(128)
  69. // The number of confirmations needed to generate a checkpoint(only used in test).
  70. processConfirms = big.NewInt(1)
  71. // The token bucket buffer limit for testing purpose.
  72. testBufLimit = uint64(1000000)
  73. // The buffer recharging speed for testing purpose.
  74. testBufRecharge = uint64(1000)
  75. )
  76. /*
  77. contract test {
  78. uint256[100] data;
  79. function Put(uint256 addr, uint256 value) {
  80. data[addr] = value;
  81. }
  82. function Get(uint256 addr) constant returns (uint256 value) {
  83. return data[addr];
  84. }
  85. }
  86. */
  87. // prepare pre-commits specified number customized blocks into chain.
  88. func prepare(n int, backend *backends.SimulatedBackend) {
  89. var (
  90. ctx = context.Background()
  91. signer = types.HomesteadSigner{}
  92. )
  93. for i := 0; i < n; i++ {
  94. switch i {
  95. case 0:
  96. // deploy checkpoint contract
  97. auth, _ := bind.NewKeyedTransactorWithChainID(bankKey, big.NewInt(1337))
  98. registrarAddr, _, _, _ = contract.DeployCheckpointOracle(auth, backend, []common.Address{signerAddr}, sectionSize, processConfirms, big.NewInt(1))
  99. // bankUser transfers some ether to user1
  100. nonce, _ := backend.PendingNonceAt(ctx, bankAddr)
  101. tx, _ := types.SignTx(types.NewTransaction(nonce, userAddr1, big.NewInt(10000), params.TxGas, nil, nil), signer, bankKey)
  102. backend.SendTransaction(ctx, tx)
  103. case 1:
  104. bankNonce, _ := backend.PendingNonceAt(ctx, bankAddr)
  105. userNonce1, _ := backend.PendingNonceAt(ctx, userAddr1)
  106. // bankUser transfers more ether to user1
  107. tx1, _ := types.SignTx(types.NewTransaction(bankNonce, userAddr1, big.NewInt(1000), params.TxGas, nil, nil), signer, bankKey)
  108. backend.SendTransaction(ctx, tx1)
  109. // user1 relays ether to user2
  110. tx2, _ := types.SignTx(types.NewTransaction(userNonce1, userAddr2, big.NewInt(1000), params.TxGas, nil, nil), signer, userKey1)
  111. backend.SendTransaction(ctx, tx2)
  112. // user1 deploys a test contract
  113. tx3, _ := types.SignTx(types.NewContractCreation(userNonce1+1, big.NewInt(0), 200000, big.NewInt(0), testContractCode), signer, userKey1)
  114. backend.SendTransaction(ctx, tx3)
  115. testContractAddr = crypto.CreateAddress(userAddr1, userNonce1+1)
  116. // user1 deploys a event contract
  117. tx4, _ := types.SignTx(types.NewContractCreation(userNonce1+2, big.NewInt(0), 200000, big.NewInt(0), testEventEmitterCode), signer, userKey1)
  118. backend.SendTransaction(ctx, tx4)
  119. case 2:
  120. // bankUser transfer some ether to signer
  121. bankNonce, _ := backend.PendingNonceAt(ctx, bankAddr)
  122. tx1, _ := types.SignTx(types.NewTransaction(bankNonce, signerAddr, big.NewInt(1000000000), params.TxGas, nil, nil), signer, bankKey)
  123. backend.SendTransaction(ctx, tx1)
  124. // invoke test contract
  125. data := common.Hex2Bytes("C16431B900000000000000000000000000000000000000000000000000000000000000010000000000000000000000000000000000000000000000000000000000000001")
  126. tx2, _ := types.SignTx(types.NewTransaction(bankNonce+1, testContractAddr, big.NewInt(0), 100000, nil, data), signer, bankKey)
  127. backend.SendTransaction(ctx, tx2)
  128. case 3:
  129. // invoke test contract
  130. bankNonce, _ := backend.PendingNonceAt(ctx, bankAddr)
  131. data := common.Hex2Bytes("C16431B900000000000000000000000000000000000000000000000000000000000000020000000000000000000000000000000000000000000000000000000000000002")
  132. tx, _ := types.SignTx(types.NewTransaction(bankNonce, testContractAddr, big.NewInt(0), 100000, nil, data), signer, bankKey)
  133. backend.SendTransaction(ctx, tx)
  134. }
  135. backend.Commit()
  136. }
  137. }
  138. // testIndexers creates a set of indexers with specified params for testing purpose.
  139. func testIndexers(db ethdb.Database, odr light.OdrBackend, config *light.IndexerConfig, disablePruning bool) []*core.ChainIndexer {
  140. var indexers [3]*core.ChainIndexer
  141. indexers[0] = light.NewChtIndexer(db, odr, config.ChtSize, config.ChtConfirms, disablePruning)
  142. indexers[1] = core.NewBloomIndexer(db, config.BloomSize, config.BloomConfirms)
  143. indexers[2] = light.NewBloomTrieIndexer(db, odr, config.BloomSize, config.BloomTrieSize, disablePruning)
  144. // make bloomTrieIndexer as a child indexer of bloom indexer.
  145. indexers[1].AddChildIndexer(indexers[2])
  146. return indexers[:]
  147. }
  148. func newTestClientHandler(backend *backends.SimulatedBackend, odr *LesOdr, indexers []*core.ChainIndexer, db ethdb.Database, peers *serverPeerSet, ulcServers []string, ulcFraction int) *clientHandler {
  149. var (
  150. evmux = new(event.TypeMux)
  151. engine = ethash.NewFaker()
  152. gspec = core.Genesis{
  153. Config: params.AllEthashProtocolChanges,
  154. Alloc: core.GenesisAlloc{bankAddr: {Balance: bankFunds}},
  155. GasLimit: 100000000,
  156. }
  157. oracle *checkpointoracle.CheckpointOracle
  158. )
  159. genesis := gspec.MustCommit(db)
  160. chain, _ := light.NewLightChain(odr, gspec.Config, engine, nil)
  161. if indexers != nil {
  162. checkpointConfig := &params.CheckpointOracleConfig{
  163. Address: crypto.CreateAddress(bankAddr, 0),
  164. Signers: []common.Address{signerAddr},
  165. Threshold: 1,
  166. }
  167. getLocal := func(index uint64) params.TrustedCheckpoint {
  168. chtIndexer := indexers[0]
  169. sectionHead := chtIndexer.SectionHead(index)
  170. return params.TrustedCheckpoint{
  171. SectionIndex: index,
  172. SectionHead: sectionHead,
  173. CHTRoot: light.GetChtRoot(db, index, sectionHead),
  174. BloomRoot: light.GetBloomTrieRoot(db, index, sectionHead),
  175. }
  176. }
  177. oracle = checkpointoracle.New(checkpointConfig, getLocal)
  178. }
  179. client := &LightEthereum{
  180. lesCommons: lesCommons{
  181. genesis: genesis.Hash(),
  182. config: &ethconfig.Config{LightPeers: 100, NetworkId: NetworkId},
  183. chainConfig: params.AllEthashProtocolChanges,
  184. iConfig: light.TestClientIndexerConfig,
  185. chainDb: db,
  186. oracle: oracle,
  187. chainReader: chain,
  188. closeCh: make(chan struct{}),
  189. },
  190. peers: peers,
  191. reqDist: odr.retriever.dist,
  192. retriever: odr.retriever,
  193. odr: odr,
  194. engine: engine,
  195. blockchain: chain,
  196. eventMux: evmux,
  197. }
  198. client.handler = newClientHandler(ulcServers, ulcFraction, nil, client)
  199. if client.oracle != nil {
  200. client.oracle.Start(backend)
  201. }
  202. client.handler.start()
  203. return client.handler
  204. }
  205. func newTestServerHandler(blocks int, indexers []*core.ChainIndexer, db ethdb.Database, clock mclock.Clock) (*serverHandler, *backends.SimulatedBackend) {
  206. var (
  207. gspec = core.Genesis{
  208. Config: params.AllEthashProtocolChanges,
  209. Alloc: core.GenesisAlloc{bankAddr: {Balance: bankFunds}},
  210. GasLimit: 100000000,
  211. }
  212. oracle *checkpointoracle.CheckpointOracle
  213. )
  214. genesis := gspec.MustCommit(db)
  215. // create a simulation backend and pre-commit several customized block to the database.
  216. simulation := backends.NewSimulatedBackendWithDatabase(db, gspec.Alloc, 100000000)
  217. prepare(blocks, simulation)
  218. txpoolConfig := core.DefaultTxPoolConfig
  219. txpoolConfig.Journal = ""
  220. txpool := core.NewTxPool(txpoolConfig, gspec.Config, simulation.Blockchain())
  221. if indexers != nil {
  222. checkpointConfig := &params.CheckpointOracleConfig{
  223. Address: crypto.CreateAddress(bankAddr, 0),
  224. Signers: []common.Address{signerAddr},
  225. Threshold: 1,
  226. }
  227. getLocal := func(index uint64) params.TrustedCheckpoint {
  228. chtIndexer := indexers[0]
  229. sectionHead := chtIndexer.SectionHead(index)
  230. return params.TrustedCheckpoint{
  231. SectionIndex: index,
  232. SectionHead: sectionHead,
  233. CHTRoot: light.GetChtRoot(db, index, sectionHead),
  234. BloomRoot: light.GetBloomTrieRoot(db, index, sectionHead),
  235. }
  236. }
  237. oracle = checkpointoracle.New(checkpointConfig, getLocal)
  238. }
  239. ns := nodestate.NewNodeStateMachine(nil, nil, mclock.System{}, serverSetup)
  240. server := &LesServer{
  241. lesCommons: lesCommons{
  242. genesis: genesis.Hash(),
  243. config: &ethconfig.Config{LightPeers: 100, NetworkId: NetworkId},
  244. chainConfig: params.AllEthashProtocolChanges,
  245. iConfig: light.TestServerIndexerConfig,
  246. chainDb: db,
  247. chainReader: simulation.Blockchain(),
  248. oracle: oracle,
  249. closeCh: make(chan struct{}),
  250. },
  251. ns: ns,
  252. broadcaster: newBroadcaster(ns),
  253. servingQueue: newServingQueue(int64(time.Millisecond*10), 1),
  254. defParams: flowcontrol.ServerParams{
  255. BufLimit: testBufLimit,
  256. MinRecharge: testBufRecharge,
  257. },
  258. fcManager: flowcontrol.NewClientManager(nil, clock),
  259. }
  260. server.costTracker, server.minCapacity = newCostTracker(db, server.config)
  261. server.costTracker.testCostList = testCostList(0) // Disable flow control mechanism.
  262. server.clientPool = newClientPool(ns, db, testBufRecharge, defaultConnectedBias, clock, func(id enode.ID) {})
  263. server.clientPool.setLimits(10000, 10000) // Assign enough capacity for clientpool
  264. server.handler = newServerHandler(server, simulation.Blockchain(), db, txpool, func() bool { return true })
  265. if server.oracle != nil {
  266. server.oracle.Start(simulation)
  267. }
  268. server.servingQueue.setThreads(4)
  269. ns.Start()
  270. server.handler.start()
  271. return server.handler, simulation
  272. }
  273. // testPeer is a simulated peer to allow testing direct network calls.
  274. type testPeer struct {
  275. cpeer *clientPeer
  276. speer *serverPeer
  277. net p2p.MsgReadWriter // Network layer reader/writer to simulate remote messaging
  278. app *p2p.MsgPipeRW // Application layer reader/writer to simulate the local side
  279. }
  280. // newTestPeer creates a new peer registered at the given protocol manager.
  281. func newTestPeer(t *testing.T, name string, version int, handler *serverHandler, shake bool, testCost uint64) (*testPeer, <-chan error) {
  282. // Create a message pipe to communicate through
  283. app, net := p2p.MsgPipe()
  284. // Generate a random id and create the peer
  285. var id enode.ID
  286. rand.Read(id[:])
  287. peer := newClientPeer(version, NetworkId, p2p.NewPeer(id, name, nil), net)
  288. // Start the peer on a new thread
  289. errCh := make(chan error, 1)
  290. go func() {
  291. select {
  292. case <-handler.closeCh:
  293. errCh <- p2p.DiscQuitting
  294. case errCh <- handler.handle(peer):
  295. }
  296. }()
  297. tp := &testPeer{
  298. app: app,
  299. net: net,
  300. cpeer: peer,
  301. }
  302. // Execute any implicitly requested handshakes and return
  303. if shake {
  304. // Customize the cost table if required.
  305. if testCost != 0 {
  306. handler.server.costTracker.testCostList = testCostList(testCost)
  307. }
  308. var (
  309. genesis = handler.blockchain.Genesis()
  310. head = handler.blockchain.CurrentHeader()
  311. td = handler.blockchain.GetTd(head.Hash(), head.Number.Uint64())
  312. )
  313. tp.handshake(t, td, head.Hash(), head.Number.Uint64(), genesis.Hash(), testCostList(testCost))
  314. }
  315. return tp, errCh
  316. }
  317. // close terminates the local side of the peer, notifying the remote protocol
  318. // manager of termination.
  319. func (p *testPeer) close() {
  320. p.app.Close()
  321. }
  322. func newTestPeerPair(name string, version int, server *serverHandler, client *clientHandler) (*testPeer, *testPeer, error) {
  323. // Create a message pipe to communicate through
  324. app, net := p2p.MsgPipe()
  325. // Generate a random id and create the peer
  326. var id enode.ID
  327. rand.Read(id[:])
  328. peer1 := newClientPeer(version, NetworkId, p2p.NewPeer(id, name, nil), net)
  329. peer2 := newServerPeer(version, NetworkId, false, p2p.NewPeer(id, name, nil), app)
  330. // Start the peer on a new thread
  331. errc1 := make(chan error, 1)
  332. errc2 := make(chan error, 1)
  333. go func() {
  334. select {
  335. case <-server.closeCh:
  336. errc1 <- p2p.DiscQuitting
  337. case errc1 <- server.handle(peer1):
  338. }
  339. }()
  340. go func() {
  341. select {
  342. case <-client.closeCh:
  343. errc2 <- p2p.DiscQuitting
  344. case errc2 <- client.handle(peer2):
  345. }
  346. }()
  347. // Ensure the connection is established or exits when any error occurs
  348. for {
  349. select {
  350. case err := <-errc1:
  351. return nil, nil, fmt.Errorf("Failed to establish protocol connection %v", err)
  352. case err := <-errc2:
  353. return nil, nil, fmt.Errorf("Failed to establish protocol connection %v", err)
  354. default:
  355. }
  356. if atomic.LoadUint32(&peer1.serving) == 1 && atomic.LoadUint32(&peer2.serving) == 1 {
  357. break
  358. }
  359. time.Sleep(50 * time.Millisecond)
  360. }
  361. return &testPeer{cpeer: peer1, net: net, app: app}, &testPeer{speer: peer2, net: app, app: net}, nil
  362. }
  363. // handshake simulates a trivial handshake that expects the same state from the
  364. // remote side as we are simulating locally.
  365. func (p *testPeer) handshake(t *testing.T, td *big.Int, head common.Hash, headNum uint64, genesis common.Hash, costList RequestCostList) {
  366. var expList keyValueList
  367. expList = expList.add("protocolVersion", uint64(p.cpeer.version))
  368. expList = expList.add("networkId", uint64(NetworkId))
  369. expList = expList.add("headTd", td)
  370. expList = expList.add("headHash", head)
  371. expList = expList.add("headNum", headNum)
  372. expList = expList.add("genesisHash", genesis)
  373. sendList := make(keyValueList, len(expList))
  374. copy(sendList, expList)
  375. expList = expList.add("serveHeaders", nil)
  376. expList = expList.add("serveChainSince", uint64(0))
  377. expList = expList.add("serveStateSince", uint64(0))
  378. expList = expList.add("serveRecentState", uint64(core.TriesInMemory-4))
  379. expList = expList.add("txRelay", nil)
  380. expList = expList.add("flowControl/BL", testBufLimit)
  381. expList = expList.add("flowControl/MRR", testBufRecharge)
  382. expList = expList.add("flowControl/MRC", costList)
  383. if err := p2p.ExpectMsg(p.app, StatusMsg, expList); err != nil {
  384. t.Fatalf("status recv: %v", err)
  385. }
  386. if err := p2p.Send(p.app, StatusMsg, sendList); err != nil {
  387. t.Fatalf("status send: %v", err)
  388. }
  389. p.cpeer.fcParams = flowcontrol.ServerParams{
  390. BufLimit: testBufLimit,
  391. MinRecharge: testBufRecharge,
  392. }
  393. }
  394. type indexerCallback func(*core.ChainIndexer, *core.ChainIndexer, *core.ChainIndexer)
  395. // testClient represents a client for testing with necessary auxiliary fields.
  396. type testClient struct {
  397. clock mclock.Clock
  398. db ethdb.Database
  399. peer *testPeer
  400. handler *clientHandler
  401. chtIndexer *core.ChainIndexer
  402. bloomIndexer *core.ChainIndexer
  403. bloomTrieIndexer *core.ChainIndexer
  404. }
  405. // testServer represents a server for testing with necessary auxiliary fields.
  406. type testServer struct {
  407. clock mclock.Clock
  408. backend *backends.SimulatedBackend
  409. db ethdb.Database
  410. peer *testPeer
  411. handler *serverHandler
  412. chtIndexer *core.ChainIndexer
  413. bloomIndexer *core.ChainIndexer
  414. bloomTrieIndexer *core.ChainIndexer
  415. }
  416. func newServerEnv(t *testing.T, blocks int, protocol int, callback indexerCallback, simClock bool, newPeer bool, testCost uint64) (*testServer, func()) {
  417. db := rawdb.NewMemoryDatabase()
  418. indexers := testIndexers(db, nil, light.TestServerIndexerConfig, true)
  419. var clock mclock.Clock = &mclock.System{}
  420. if simClock {
  421. clock = &mclock.Simulated{}
  422. }
  423. handler, b := newTestServerHandler(blocks, indexers, db, clock)
  424. var peer *testPeer
  425. if newPeer {
  426. peer, _ = newTestPeer(t, "peer", protocol, handler, true, testCost)
  427. }
  428. cIndexer, bIndexer, btIndexer := indexers[0], indexers[1], indexers[2]
  429. cIndexer.Start(handler.blockchain)
  430. bIndexer.Start(handler.blockchain)
  431. // Wait until indexers generate enough index data.
  432. if callback != nil {
  433. callback(cIndexer, bIndexer, btIndexer)
  434. }
  435. server := &testServer{
  436. clock: clock,
  437. backend: b,
  438. db: db,
  439. peer: peer,
  440. handler: handler,
  441. chtIndexer: cIndexer,
  442. bloomIndexer: bIndexer,
  443. bloomTrieIndexer: btIndexer,
  444. }
  445. teardown := func() {
  446. if newPeer {
  447. peer.close()
  448. peer.cpeer.close()
  449. b.Close()
  450. }
  451. cIndexer.Close()
  452. bIndexer.Close()
  453. }
  454. return server, teardown
  455. }
  456. func newClientServerEnv(t *testing.T, blocks int, protocol int, callback indexerCallback, ulcServers []string, ulcFraction int, simClock bool, connect bool, disablePruning bool) (*testServer, *testClient, func()) {
  457. sdb, cdb := rawdb.NewMemoryDatabase(), rawdb.NewMemoryDatabase()
  458. speers := newServerPeerSet()
  459. var clock mclock.Clock = &mclock.System{}
  460. if simClock {
  461. clock = &mclock.Simulated{}
  462. }
  463. dist := newRequestDistributor(speers, clock)
  464. rm := newRetrieveManager(speers, dist, func() time.Duration { return time.Millisecond * 500 })
  465. odr := NewLesOdr(cdb, light.TestClientIndexerConfig, rm)
  466. sindexers := testIndexers(sdb, nil, light.TestServerIndexerConfig, true)
  467. cIndexers := testIndexers(cdb, odr, light.TestClientIndexerConfig, disablePruning)
  468. scIndexer, sbIndexer, sbtIndexer := sindexers[0], sindexers[1], sindexers[2]
  469. ccIndexer, cbIndexer, cbtIndexer := cIndexers[0], cIndexers[1], cIndexers[2]
  470. odr.SetIndexers(ccIndexer, cbIndexer, cbtIndexer)
  471. server, b := newTestServerHandler(blocks, sindexers, sdb, clock)
  472. client := newTestClientHandler(b, odr, cIndexers, cdb, speers, ulcServers, ulcFraction)
  473. scIndexer.Start(server.blockchain)
  474. sbIndexer.Start(server.blockchain)
  475. ccIndexer.Start(client.backend.blockchain)
  476. cbIndexer.Start(client.backend.blockchain)
  477. if callback != nil {
  478. callback(scIndexer, sbIndexer, sbtIndexer)
  479. }
  480. var (
  481. err error
  482. speer, cpeer *testPeer
  483. )
  484. if connect {
  485. done := make(chan struct{})
  486. client.syncEnd = func(_ *types.Header) { close(done) }
  487. cpeer, speer, err = newTestPeerPair("peer", protocol, server, client)
  488. if err != nil {
  489. t.Fatalf("Failed to connect testing peers %v", err)
  490. }
  491. select {
  492. case <-done:
  493. case <-time.After(10 * time.Second):
  494. t.Fatal("test peer did not connect and sync within 3s")
  495. }
  496. }
  497. s := &testServer{
  498. clock: clock,
  499. backend: b,
  500. db: sdb,
  501. peer: cpeer,
  502. handler: server,
  503. chtIndexer: scIndexer,
  504. bloomIndexer: sbIndexer,
  505. bloomTrieIndexer: sbtIndexer,
  506. }
  507. c := &testClient{
  508. clock: clock,
  509. db: cdb,
  510. peer: speer,
  511. handler: client,
  512. chtIndexer: ccIndexer,
  513. bloomIndexer: cbIndexer,
  514. bloomTrieIndexer: cbtIndexer,
  515. }
  516. teardown := func() {
  517. if connect {
  518. speer.close()
  519. cpeer.close()
  520. cpeer.cpeer.close()
  521. speer.speer.close()
  522. }
  523. ccIndexer.Close()
  524. cbIndexer.Close()
  525. scIndexer.Close()
  526. sbIndexer.Close()
  527. b.Close()
  528. }
  529. return s, c, teardown
  530. }