chunker_test.go 16 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. package storage
  17. import (
  18. "bytes"
  19. "context"
  20. "encoding/binary"
  21. "fmt"
  22. "io"
  23. "testing"
  24. "github.com/ethereum/go-ethereum/swarm/chunk"
  25. "github.com/ethereum/go-ethereum/swarm/testutil"
  26. "golang.org/x/crypto/sha3"
  27. )
  28. /*
  29. Tests TreeChunker by splitting and joining a random byte slice
  30. */
  31. type test interface {
  32. Fatalf(string, ...interface{})
  33. Logf(string, ...interface{})
  34. }
  35. type chunkerTester struct {
  36. inputs map[uint64][]byte
  37. t test
  38. }
  39. var mockTag = chunk.NewTag(0, "mock-tag", 0)
  40. func newTestHasherStore(store ChunkStore, hash string) *hasherStore {
  41. return NewHasherStore(store, MakeHashFunc(hash), false, chunk.NewTag(0, "test-tag", 0))
  42. }
  43. func testRandomBrokenData(n int, tester *chunkerTester) {
  44. data := testutil.RandomReader(1, n)
  45. brokendata := brokenLimitReader(data, n, n/2)
  46. buf := make([]byte, n)
  47. _, err := brokendata.Read(buf)
  48. if err == nil || err.Error() != "Broken reader" {
  49. tester.t.Fatalf("Broken reader is not broken, hence broken. Returns: %v", err)
  50. }
  51. data = testutil.RandomReader(2, n)
  52. brokendata = brokenLimitReader(data, n, n/2)
  53. putGetter := newTestHasherStore(NewMapChunkStore(), SHA3Hash)
  54. expectedError := fmt.Errorf("Broken reader")
  55. ctx := context.Background()
  56. key, _, err := TreeSplit(ctx, brokendata, int64(n), putGetter)
  57. if err == nil || err.Error() != expectedError.Error() {
  58. tester.t.Fatalf("Not receiving the correct error! Expected %v, received %v", expectedError, err)
  59. }
  60. tester.t.Logf(" Address = %v\n", key)
  61. }
  62. func testRandomData(usePyramid bool, hash string, n int, tester *chunkerTester) Address {
  63. if tester.inputs == nil {
  64. tester.inputs = make(map[uint64][]byte)
  65. }
  66. input, found := tester.inputs[uint64(n)]
  67. var data io.Reader
  68. if !found {
  69. input = testutil.RandomBytes(1, n)
  70. data = bytes.NewReader(input)
  71. tester.inputs[uint64(n)] = input
  72. } else {
  73. data = io.LimitReader(bytes.NewReader(input), int64(n))
  74. }
  75. putGetter := newTestHasherStore(NewMapChunkStore(), hash)
  76. var addr Address
  77. var wait func(context.Context) error
  78. var err error
  79. ctx := context.TODO()
  80. if usePyramid {
  81. addr, wait, err = PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  82. } else {
  83. addr, wait, err = TreeSplit(ctx, data, int64(n), putGetter)
  84. }
  85. if err != nil {
  86. tester.t.Fatalf(err.Error())
  87. }
  88. tester.t.Logf(" Address = %v\n", addr)
  89. err = wait(ctx)
  90. if err != nil {
  91. tester.t.Fatalf(err.Error())
  92. }
  93. reader := TreeJoin(ctx, addr, putGetter, 0)
  94. output := make([]byte, n)
  95. r, err := reader.Read(output)
  96. if r != n || err != io.EOF {
  97. tester.t.Fatalf("read error read: %v n = %v err = %v\n", r, n, err)
  98. }
  99. if input != nil {
  100. if !bytes.Equal(output, input) {
  101. tester.t.Fatalf("input and output mismatch\n IN: %v\nOUT: %v\n", input, output)
  102. }
  103. }
  104. // testing partial read
  105. for i := 1; i < n; i += 10000 {
  106. readableLength := n - i
  107. r, err := reader.ReadAt(output, int64(i))
  108. if r != readableLength || err != io.EOF {
  109. tester.t.Fatalf("readAt error with offset %v read: %v n = %v err = %v\n", i, r, readableLength, err)
  110. }
  111. if input != nil {
  112. if !bytes.Equal(output[:readableLength], input[i:]) {
  113. tester.t.Fatalf("input and output mismatch\n IN: %v\nOUT: %v\n", input[i:], output[:readableLength])
  114. }
  115. }
  116. }
  117. return addr
  118. }
  119. func TestSha3ForCorrectness(t *testing.T) {
  120. tester := &chunkerTester{t: t}
  121. size := 4096
  122. input := make([]byte, size+8)
  123. binary.LittleEndian.PutUint64(input[:8], uint64(size))
  124. io.LimitReader(bytes.NewReader(input[8:]), int64(size))
  125. rawSha3 := sha3.NewLegacyKeccak256()
  126. rawSha3.Reset()
  127. rawSha3.Write(input)
  128. rawSha3Output := rawSha3.Sum(nil)
  129. sha3FromMakeFunc := MakeHashFunc(SHA3Hash)()
  130. sha3FromMakeFunc.ResetWithLength(input[:8])
  131. sha3FromMakeFunc.Write(input[8:])
  132. sha3FromMakeFuncOutput := sha3FromMakeFunc.Sum(nil)
  133. if len(rawSha3Output) != len(sha3FromMakeFuncOutput) {
  134. tester.t.Fatalf("Original SHA3 and abstracted Sha3 has different length %v:%v\n", len(rawSha3Output), len(sha3FromMakeFuncOutput))
  135. }
  136. if !bytes.Equal(rawSha3Output, sha3FromMakeFuncOutput) {
  137. tester.t.Fatalf("Original SHA3 and abstracted Sha3 mismatch %v:%v\n", rawSha3Output, sha3FromMakeFuncOutput)
  138. }
  139. }
  140. func TestDataAppend(t *testing.T) {
  141. sizes := []int{1, 1, 1, 4095, 4096, 4097, 1, 1, 1, 123456, 2345678, 2345678}
  142. appendSizes := []int{4095, 4096, 4097, 1, 1, 1, 8191, 8192, 8193, 9000, 3000, 5000}
  143. tester := &chunkerTester{t: t}
  144. for i := range sizes {
  145. n := sizes[i]
  146. m := appendSizes[i]
  147. if tester.inputs == nil {
  148. tester.inputs = make(map[uint64][]byte)
  149. }
  150. input, found := tester.inputs[uint64(n)]
  151. var data io.Reader
  152. if !found {
  153. input = testutil.RandomBytes(i, n)
  154. data = bytes.NewReader(input)
  155. tester.inputs[uint64(n)] = input
  156. } else {
  157. data = io.LimitReader(bytes.NewReader(input), int64(n))
  158. }
  159. store := NewMapChunkStore()
  160. putGetter := newTestHasherStore(store, SHA3Hash)
  161. ctx := context.TODO()
  162. addr, wait, err := PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  163. if err != nil {
  164. tester.t.Fatalf(err.Error())
  165. }
  166. err = wait(ctx)
  167. if err != nil {
  168. tester.t.Fatalf(err.Error())
  169. }
  170. //create a append data stream
  171. appendInput, found := tester.inputs[uint64(m)]
  172. var appendData io.Reader
  173. if !found {
  174. appendInput = testutil.RandomBytes(i, m)
  175. appendData = bytes.NewReader(appendInput)
  176. tester.inputs[uint64(m)] = appendInput
  177. } else {
  178. appendData = io.LimitReader(bytes.NewReader(appendInput), int64(m))
  179. }
  180. putGetter = newTestHasherStore(store, SHA3Hash)
  181. newAddr, wait, err := PyramidAppend(ctx, addr, appendData, putGetter, putGetter, mockTag)
  182. if err != nil {
  183. tester.t.Fatalf(err.Error())
  184. }
  185. err = wait(ctx)
  186. if err != nil {
  187. tester.t.Fatalf(err.Error())
  188. }
  189. reader := TreeJoin(ctx, newAddr, putGetter, 0)
  190. newOutput := make([]byte, n+m)
  191. r, err := reader.Read(newOutput)
  192. if r != (n + m) {
  193. tester.t.Fatalf("read error read: %v n = %v m = %v err = %v\n", r, n, m, err)
  194. }
  195. newInput := append(input, appendInput...)
  196. if !bytes.Equal(newOutput, newInput) {
  197. tester.t.Fatalf("input and output mismatch\n IN: %v\nOUT: %v\n", newInput, newOutput)
  198. }
  199. }
  200. }
  201. func TestRandomData(t *testing.T) {
  202. // This test can validate files up to a relatively short length, as tree chunker slows down drastically.
  203. // Validation of longer files is done by TestLocalStoreAndRetrieve in swarm package.
  204. //sizes := []int{1, 60, 83, 179, 253, 1024, 4095, 4096, 4097, 8191, 8192, 8193, 12287, 12288, 12289, 524288, 524288 + 1, 524288 + 4097, 7 * 524288, 7*524288 + 1, 7*524288 + 4097}
  205. sizes := []int{1, 60, 83, 179, 253, 1024, 4095, 4097, 8191, 8192, 12288, 12289, 524288}
  206. tester := &chunkerTester{t: t}
  207. for _, s := range sizes {
  208. treeChunkerAddress := testRandomData(false, SHA3Hash, s, tester)
  209. pyramidChunkerAddress := testRandomData(true, SHA3Hash, s, tester)
  210. if treeChunkerAddress.String() != pyramidChunkerAddress.String() {
  211. tester.t.Fatalf("tree chunker and pyramid chunker key mismatch for size %v\n TC: %v\n PC: %v\n", s, treeChunkerAddress.String(), pyramidChunkerAddress.String())
  212. }
  213. }
  214. for _, s := range sizes {
  215. treeChunkerAddress := testRandomData(false, BMTHash, s, tester)
  216. pyramidChunkerAddress := testRandomData(true, BMTHash, s, tester)
  217. if treeChunkerAddress.String() != pyramidChunkerAddress.String() {
  218. tester.t.Fatalf("tree chunker and pyramid chunker key mismatch for size %v\n TC: %v\n PC: %v\n", s, treeChunkerAddress.String(), pyramidChunkerAddress.String())
  219. }
  220. }
  221. }
  222. func TestRandomBrokenData(t *testing.T) {
  223. sizes := []int{1, 60, 83, 179, 253, 1024, 4095, 4096, 4097, 8191, 8192, 8193, 12287, 12288, 12289, 123456, 2345678}
  224. tester := &chunkerTester{t: t}
  225. for _, s := range sizes {
  226. testRandomBrokenData(s, tester)
  227. }
  228. }
  229. func benchReadAll(reader LazySectionReader) {
  230. size, _ := reader.Size(context.TODO(), nil)
  231. output := make([]byte, 1000)
  232. for pos := int64(0); pos < size; pos += 1000 {
  233. reader.ReadAt(output, pos)
  234. }
  235. }
  236. func benchmarkSplitJoin(n int, t *testing.B) {
  237. t.ReportAllocs()
  238. for i := 0; i < t.N; i++ {
  239. data := testutil.RandomReader(i, n)
  240. putGetter := newTestHasherStore(NewMapChunkStore(), SHA3Hash)
  241. ctx := context.TODO()
  242. key, wait, err := PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  243. if err != nil {
  244. t.Fatalf(err.Error())
  245. }
  246. err = wait(ctx)
  247. if err != nil {
  248. t.Fatalf(err.Error())
  249. }
  250. reader := TreeJoin(ctx, key, putGetter, 0)
  251. benchReadAll(reader)
  252. }
  253. }
  254. func benchmarkSplitTreeSHA3(n int, t *testing.B) {
  255. t.ReportAllocs()
  256. for i := 0; i < t.N; i++ {
  257. data := testutil.RandomReader(i, n)
  258. putGetter := newTestHasherStore(&FakeChunkStore{}, SHA3Hash)
  259. ctx := context.Background()
  260. _, wait, err := TreeSplit(ctx, data, int64(n), putGetter)
  261. if err != nil {
  262. t.Fatalf(err.Error())
  263. }
  264. err = wait(ctx)
  265. if err != nil {
  266. t.Fatalf(err.Error())
  267. }
  268. }
  269. }
  270. func benchmarkSplitTreeBMT(n int, t *testing.B) {
  271. t.ReportAllocs()
  272. for i := 0; i < t.N; i++ {
  273. data := testutil.RandomReader(i, n)
  274. putGetter := newTestHasherStore(&FakeChunkStore{}, BMTHash)
  275. ctx := context.Background()
  276. _, wait, err := TreeSplit(ctx, data, int64(n), putGetter)
  277. if err != nil {
  278. t.Fatalf(err.Error())
  279. }
  280. err = wait(ctx)
  281. if err != nil {
  282. t.Fatalf(err.Error())
  283. }
  284. }
  285. }
  286. func benchmarkSplitPyramidBMT(n int, t *testing.B) {
  287. t.ReportAllocs()
  288. for i := 0; i < t.N; i++ {
  289. data := testutil.RandomReader(i, n)
  290. putGetter := newTestHasherStore(&FakeChunkStore{}, BMTHash)
  291. ctx := context.Background()
  292. _, wait, err := PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  293. if err != nil {
  294. t.Fatalf(err.Error())
  295. }
  296. err = wait(ctx)
  297. if err != nil {
  298. t.Fatalf(err.Error())
  299. }
  300. }
  301. }
  302. func benchmarkSplitPyramidSHA3(n int, t *testing.B) {
  303. t.ReportAllocs()
  304. for i := 0; i < t.N; i++ {
  305. data := testutil.RandomReader(i, n)
  306. putGetter := newTestHasherStore(&FakeChunkStore{}, SHA3Hash)
  307. ctx := context.Background()
  308. _, wait, err := PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  309. if err != nil {
  310. t.Fatalf(err.Error())
  311. }
  312. err = wait(ctx)
  313. if err != nil {
  314. t.Fatalf(err.Error())
  315. }
  316. }
  317. }
  318. func benchmarkSplitAppendPyramid(n, m int, t *testing.B) {
  319. t.ReportAllocs()
  320. for i := 0; i < t.N; i++ {
  321. data := testutil.RandomReader(i, n)
  322. data1 := testutil.RandomReader(t.N+i, m)
  323. store := NewMapChunkStore()
  324. putGetter := newTestHasherStore(store, SHA3Hash)
  325. ctx := context.Background()
  326. key, wait, err := PyramidSplit(ctx, data, putGetter, putGetter, mockTag)
  327. if err != nil {
  328. t.Fatalf(err.Error())
  329. }
  330. err = wait(ctx)
  331. if err != nil {
  332. t.Fatalf(err.Error())
  333. }
  334. putGetter = newTestHasherStore(store, SHA3Hash)
  335. _, wait, err = PyramidAppend(ctx, key, data1, putGetter, putGetter, mockTag)
  336. if err != nil {
  337. t.Fatalf(err.Error())
  338. }
  339. err = wait(ctx)
  340. if err != nil {
  341. t.Fatalf(err.Error())
  342. }
  343. }
  344. }
  345. func BenchmarkSplitJoin_2(t *testing.B) { benchmarkSplitJoin(100, t) }
  346. func BenchmarkSplitJoin_3(t *testing.B) { benchmarkSplitJoin(1000, t) }
  347. func BenchmarkSplitJoin_4(t *testing.B) { benchmarkSplitJoin(10000, t) }
  348. func BenchmarkSplitJoin_5(t *testing.B) { benchmarkSplitJoin(100000, t) }
  349. func BenchmarkSplitJoin_6(t *testing.B) { benchmarkSplitJoin(1000000, t) }
  350. func BenchmarkSplitJoin_7(t *testing.B) { benchmarkSplitJoin(10000000, t) }
  351. // func BenchmarkSplitJoin_8(t *testing.B) { benchmarkJoin(100000000, t) }
  352. func BenchmarkSplitTreeSHA3_2(t *testing.B) { benchmarkSplitTreeSHA3(100, t) }
  353. func BenchmarkSplitTreeSHA3_2h(t *testing.B) { benchmarkSplitTreeSHA3(500, t) }
  354. func BenchmarkSplitTreeSHA3_3(t *testing.B) { benchmarkSplitTreeSHA3(1000, t) }
  355. func BenchmarkSplitTreeSHA3_3h(t *testing.B) { benchmarkSplitTreeSHA3(5000, t) }
  356. func BenchmarkSplitTreeSHA3_4(t *testing.B) { benchmarkSplitTreeSHA3(10000, t) }
  357. func BenchmarkSplitTreeSHA3_4h(t *testing.B) { benchmarkSplitTreeSHA3(50000, t) }
  358. func BenchmarkSplitTreeSHA3_5(t *testing.B) { benchmarkSplitTreeSHA3(100000, t) }
  359. func BenchmarkSplitTreeSHA3_6(t *testing.B) { benchmarkSplitTreeSHA3(1000000, t) }
  360. func BenchmarkSplitTreeSHA3_7(t *testing.B) { benchmarkSplitTreeSHA3(10000000, t) }
  361. // func BenchmarkSplitTreeSHA3_8(t *testing.B) { benchmarkSplitTreeSHA3(100000000, t) }
  362. func BenchmarkSplitTreeBMT_2(t *testing.B) { benchmarkSplitTreeBMT(100, t) }
  363. func BenchmarkSplitTreeBMT_2h(t *testing.B) { benchmarkSplitTreeBMT(500, t) }
  364. func BenchmarkSplitTreeBMT_3(t *testing.B) { benchmarkSplitTreeBMT(1000, t) }
  365. func BenchmarkSplitTreeBMT_3h(t *testing.B) { benchmarkSplitTreeBMT(5000, t) }
  366. func BenchmarkSplitTreeBMT_4(t *testing.B) { benchmarkSplitTreeBMT(10000, t) }
  367. func BenchmarkSplitTreeBMT_4h(t *testing.B) { benchmarkSplitTreeBMT(50000, t) }
  368. func BenchmarkSplitTreeBMT_5(t *testing.B) { benchmarkSplitTreeBMT(100000, t) }
  369. func BenchmarkSplitTreeBMT_6(t *testing.B) { benchmarkSplitTreeBMT(1000000, t) }
  370. func BenchmarkSplitTreeBMT_7(t *testing.B) { benchmarkSplitTreeBMT(10000000, t) }
  371. // func BenchmarkSplitTreeBMT_8(t *testing.B) { benchmarkSplitTreeBMT(100000000, t) }
  372. func BenchmarkSplitPyramidSHA3_2(t *testing.B) { benchmarkSplitPyramidSHA3(100, t) }
  373. func BenchmarkSplitPyramidSHA3_2h(t *testing.B) { benchmarkSplitPyramidSHA3(500, t) }
  374. func BenchmarkSplitPyramidSHA3_3(t *testing.B) { benchmarkSplitPyramidSHA3(1000, t) }
  375. func BenchmarkSplitPyramidSHA3_3h(t *testing.B) { benchmarkSplitPyramidSHA3(5000, t) }
  376. func BenchmarkSplitPyramidSHA3_4(t *testing.B) { benchmarkSplitPyramidSHA3(10000, t) }
  377. func BenchmarkSplitPyramidSHA3_4h(t *testing.B) { benchmarkSplitPyramidSHA3(50000, t) }
  378. func BenchmarkSplitPyramidSHA3_5(t *testing.B) { benchmarkSplitPyramidSHA3(100000, t) }
  379. func BenchmarkSplitPyramidSHA3_6(t *testing.B) { benchmarkSplitPyramidSHA3(1000000, t) }
  380. func BenchmarkSplitPyramidSHA3_7(t *testing.B) { benchmarkSplitPyramidSHA3(10000000, t) }
  381. // func BenchmarkSplitPyramidSHA3_8(t *testing.B) { benchmarkSplitPyramidSHA3(100000000, t) }
  382. func BenchmarkSplitPyramidBMT_2(t *testing.B) { benchmarkSplitPyramidBMT(100, t) }
  383. func BenchmarkSplitPyramidBMT_2h(t *testing.B) { benchmarkSplitPyramidBMT(500, t) }
  384. func BenchmarkSplitPyramidBMT_3(t *testing.B) { benchmarkSplitPyramidBMT(1000, t) }
  385. func BenchmarkSplitPyramidBMT_3h(t *testing.B) { benchmarkSplitPyramidBMT(5000, t) }
  386. func BenchmarkSplitPyramidBMT_4(t *testing.B) { benchmarkSplitPyramidBMT(10000, t) }
  387. func BenchmarkSplitPyramidBMT_4h(t *testing.B) { benchmarkSplitPyramidBMT(50000, t) }
  388. func BenchmarkSplitPyramidBMT_5(t *testing.B) { benchmarkSplitPyramidBMT(100000, t) }
  389. func BenchmarkSplitPyramidBMT_6(t *testing.B) { benchmarkSplitPyramidBMT(1000000, t) }
  390. func BenchmarkSplitPyramidBMT_7(t *testing.B) { benchmarkSplitPyramidBMT(10000000, t) }
  391. // func BenchmarkSplitPyramidBMT_8(t *testing.B) { benchmarkSplitPyramidBMT(100000000, t) }
  392. func BenchmarkSplitAppendPyramid_2(t *testing.B) { benchmarkSplitAppendPyramid(100, 1000, t) }
  393. func BenchmarkSplitAppendPyramid_2h(t *testing.B) { benchmarkSplitAppendPyramid(500, 1000, t) }
  394. func BenchmarkSplitAppendPyramid_3(t *testing.B) { benchmarkSplitAppendPyramid(1000, 1000, t) }
  395. func BenchmarkSplitAppendPyramid_4(t *testing.B) { benchmarkSplitAppendPyramid(10000, 1000, t) }
  396. func BenchmarkSplitAppendPyramid_4h(t *testing.B) { benchmarkSplitAppendPyramid(50000, 1000, t) }
  397. func BenchmarkSplitAppendPyramid_5(t *testing.B) { benchmarkSplitAppendPyramid(1000000, 1000, t) }
  398. func BenchmarkSplitAppendPyramid_6(t *testing.B) { benchmarkSplitAppendPyramid(1000000, 1000, t) }
  399. func BenchmarkSplitAppendPyramid_7(t *testing.B) { benchmarkSplitAppendPyramid(10000000, 1000, t) }
  400. // func BenchmarkAppendPyramid_8(t *testing.B) { benchmarkAppendPyramid(100000000, 1000, t) }
  401. // go test -timeout 20m -cpu 4 -bench=./swarm/storage -run no
  402. // If you dont add the timeout argument above .. the benchmark will timeout and dump