encode_test.go 17 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465
  1. // Copyright 2014 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 rlp
  17. import (
  18. "bytes"
  19. "errors"
  20. "fmt"
  21. "io"
  22. "io/ioutil"
  23. "math/big"
  24. "sync"
  25. "testing"
  26. "github.com/ethereum/go-ethereum/common/math"
  27. )
  28. type testEncoder struct {
  29. err error
  30. }
  31. func (e *testEncoder) EncodeRLP(w io.Writer) error {
  32. if e == nil {
  33. panic("EncodeRLP called on nil value")
  34. }
  35. if e.err != nil {
  36. return e.err
  37. } else {
  38. w.Write([]byte{0, 1, 0, 1, 0, 1, 0, 1, 0, 1})
  39. }
  40. return nil
  41. }
  42. type testEncoderValueMethod struct{}
  43. func (e testEncoderValueMethod) EncodeRLP(w io.Writer) error {
  44. w.Write([]byte{0xFA, 0xFE, 0xF0})
  45. return nil
  46. }
  47. type byteEncoder byte
  48. func (e byteEncoder) EncodeRLP(w io.Writer) error {
  49. w.Write(EmptyList)
  50. return nil
  51. }
  52. type undecodableEncoder func()
  53. func (f undecodableEncoder) EncodeRLP(w io.Writer) error {
  54. w.Write([]byte{0xF5, 0xF5, 0xF5})
  55. return nil
  56. }
  57. type encodableReader struct {
  58. A, B uint
  59. }
  60. func (e *encodableReader) Read(b []byte) (int, error) {
  61. panic("called")
  62. }
  63. type namedByteType byte
  64. var (
  65. _ = Encoder(&testEncoder{})
  66. _ = Encoder(byteEncoder(0))
  67. reader io.Reader = &encodableReader{1, 2}
  68. )
  69. type encTest struct {
  70. val interface{}
  71. output, error string
  72. }
  73. var encTests = []encTest{
  74. // booleans
  75. {val: true, output: "01"},
  76. {val: false, output: "80"},
  77. // integers
  78. {val: uint32(0), output: "80"},
  79. {val: uint32(127), output: "7F"},
  80. {val: uint32(128), output: "8180"},
  81. {val: uint32(256), output: "820100"},
  82. {val: uint32(1024), output: "820400"},
  83. {val: uint32(0xFFFFFF), output: "83FFFFFF"},
  84. {val: uint32(0xFFFFFFFF), output: "84FFFFFFFF"},
  85. {val: uint64(0xFFFFFFFF), output: "84FFFFFFFF"},
  86. {val: uint64(0xFFFFFFFFFF), output: "85FFFFFFFFFF"},
  87. {val: uint64(0xFFFFFFFFFFFF), output: "86FFFFFFFFFFFF"},
  88. {val: uint64(0xFFFFFFFFFFFFFF), output: "87FFFFFFFFFFFFFF"},
  89. {val: uint64(0xFFFFFFFFFFFFFFFF), output: "88FFFFFFFFFFFFFFFF"},
  90. // big integers (should match uint for small values)
  91. {val: big.NewInt(0), output: "80"},
  92. {val: big.NewInt(1), output: "01"},
  93. {val: big.NewInt(127), output: "7F"},
  94. {val: big.NewInt(128), output: "8180"},
  95. {val: big.NewInt(256), output: "820100"},
  96. {val: big.NewInt(1024), output: "820400"},
  97. {val: big.NewInt(0xFFFFFF), output: "83FFFFFF"},
  98. {val: big.NewInt(0xFFFFFFFF), output: "84FFFFFFFF"},
  99. {val: big.NewInt(0xFFFFFFFFFF), output: "85FFFFFFFFFF"},
  100. {val: big.NewInt(0xFFFFFFFFFFFF), output: "86FFFFFFFFFFFF"},
  101. {val: big.NewInt(0xFFFFFFFFFFFFFF), output: "87FFFFFFFFFFFFFF"},
  102. {
  103. val: big.NewInt(0).SetBytes(unhex("102030405060708090A0B0C0D0E0F2")),
  104. output: "8F102030405060708090A0B0C0D0E0F2",
  105. },
  106. {
  107. val: big.NewInt(0).SetBytes(unhex("0100020003000400050006000700080009000A000B000C000D000E01")),
  108. output: "9C0100020003000400050006000700080009000A000B000C000D000E01",
  109. },
  110. {
  111. val: big.NewInt(0).SetBytes(unhex("010000000000000000000000000000000000000000000000000000000000000000")),
  112. output: "A1010000000000000000000000000000000000000000000000000000000000000000",
  113. },
  114. // non-pointer big.Int
  115. {val: *big.NewInt(0), output: "80"},
  116. {val: *big.NewInt(0xFFFFFF), output: "83FFFFFF"},
  117. // negative ints are not supported
  118. {val: big.NewInt(-1), error: "rlp: cannot encode negative *big.Int"},
  119. // byte arrays
  120. {val: [0]byte{}, output: "80"},
  121. {val: [1]byte{0}, output: "00"},
  122. {val: [1]byte{1}, output: "01"},
  123. {val: [1]byte{0x7F}, output: "7F"},
  124. {val: [1]byte{0x80}, output: "8180"},
  125. {val: [1]byte{0xFF}, output: "81FF"},
  126. {val: [3]byte{1, 2, 3}, output: "83010203"},
  127. {val: [57]byte{1, 2, 3}, output: "B839010203000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"},
  128. // named byte type arrays
  129. {val: [0]namedByteType{}, output: "80"},
  130. {val: [1]namedByteType{0}, output: "00"},
  131. {val: [1]namedByteType{1}, output: "01"},
  132. {val: [1]namedByteType{0x7F}, output: "7F"},
  133. {val: [1]namedByteType{0x80}, output: "8180"},
  134. {val: [1]namedByteType{0xFF}, output: "81FF"},
  135. {val: [3]namedByteType{1, 2, 3}, output: "83010203"},
  136. {val: [57]namedByteType{1, 2, 3}, output: "B839010203000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"},
  137. // byte slices
  138. {val: []byte{}, output: "80"},
  139. {val: []byte{0}, output: "00"},
  140. {val: []byte{0x7E}, output: "7E"},
  141. {val: []byte{0x7F}, output: "7F"},
  142. {val: []byte{0x80}, output: "8180"},
  143. {val: []byte{1, 2, 3}, output: "83010203"},
  144. // named byte type slices
  145. {val: []namedByteType{}, output: "80"},
  146. {val: []namedByteType{0}, output: "00"},
  147. {val: []namedByteType{0x7E}, output: "7E"},
  148. {val: []namedByteType{0x7F}, output: "7F"},
  149. {val: []namedByteType{0x80}, output: "8180"},
  150. {val: []namedByteType{1, 2, 3}, output: "83010203"},
  151. // strings
  152. {val: "", output: "80"},
  153. {val: "\x7E", output: "7E"},
  154. {val: "\x7F", output: "7F"},
  155. {val: "\x80", output: "8180"},
  156. {val: "dog", output: "83646F67"},
  157. {
  158. val: "Lorem ipsum dolor sit amet, consectetur adipisicing eli",
  159. output: "B74C6F72656D20697073756D20646F6C6F722073697420616D65742C20636F6E7365637465747572206164697069736963696E6720656C69",
  160. },
  161. {
  162. val: "Lorem ipsum dolor sit amet, consectetur adipisicing elit",
  163. output: "B8384C6F72656D20697073756D20646F6C6F722073697420616D65742C20636F6E7365637465747572206164697069736963696E6720656C6974",
  164. },
  165. {
  166. val: "Lorem ipsum dolor sit amet, consectetur adipiscing elit. Curabitur mauris magna, suscipit sed vehicula non, iaculis faucibus tortor. Proin suscipit ultricies malesuada. Duis tortor elit, dictum quis tristique eu, ultrices at risus. Morbi a est imperdiet mi ullamcorper aliquet suscipit nec lorem. Aenean quis leo mollis, vulputate elit varius, consequat enim. Nulla ultrices turpis justo, et posuere urna consectetur nec. Proin non convallis metus. Donec tempor ipsum in mauris congue sollicitudin. Vestibulum ante ipsum primis in faucibus orci luctus et ultrices posuere cubilia Curae; Suspendisse convallis sem vel massa faucibus, eget lacinia lacus tempor. Nulla quis ultricies purus. Proin auctor rhoncus nibh condimentum mollis. Aliquam consequat enim at metus luctus, a eleifend purus egestas. Curabitur at nibh metus. Nam bibendum, neque at auctor tristique, lorem libero aliquet arcu, non interdum tellus lectus sit amet eros. Cras rhoncus, metus ac ornare cursus, dolor justo ultrices metus, at ullamcorper volutpat",
  167. output: "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",
  168. },
  169. // slices
  170. {val: []uint{}, output: "C0"},
  171. {val: []uint{1, 2, 3}, output: "C3010203"},
  172. {
  173. // [ [], [[]], [ [], [[]] ] ]
  174. val: []interface{}{[]interface{}{}, [][]interface{}{{}}, []interface{}{[]interface{}{}, [][]interface{}{{}}}},
  175. output: "C7C0C1C0C3C0C1C0",
  176. },
  177. {
  178. val: []string{"aaa", "bbb", "ccc", "ddd", "eee", "fff", "ggg", "hhh", "iii", "jjj", "kkk", "lll", "mmm", "nnn", "ooo"},
  179. output: "F83C836161618362626283636363836464648365656583666666836767678368686883696969836A6A6A836B6B6B836C6C6C836D6D6D836E6E6E836F6F6F",
  180. },
  181. {
  182. val: []interface{}{uint(1), uint(0xFFFFFF), []interface{}{[]uint{4, 5, 5}}, "abc"},
  183. output: "CE0183FFFFFFC4C304050583616263",
  184. },
  185. {
  186. val: [][]string{
  187. {"asdf", "qwer", "zxcv"},
  188. {"asdf", "qwer", "zxcv"},
  189. {"asdf", "qwer", "zxcv"},
  190. {"asdf", "qwer", "zxcv"},
  191. {"asdf", "qwer", "zxcv"},
  192. {"asdf", "qwer", "zxcv"},
  193. {"asdf", "qwer", "zxcv"},
  194. {"asdf", "qwer", "zxcv"},
  195. {"asdf", "qwer", "zxcv"},
  196. {"asdf", "qwer", "zxcv"},
  197. {"asdf", "qwer", "zxcv"},
  198. {"asdf", "qwer", "zxcv"},
  199. {"asdf", "qwer", "zxcv"},
  200. {"asdf", "qwer", "zxcv"},
  201. {"asdf", "qwer", "zxcv"},
  202. {"asdf", "qwer", "zxcv"},
  203. {"asdf", "qwer", "zxcv"},
  204. {"asdf", "qwer", "zxcv"},
  205. {"asdf", "qwer", "zxcv"},
  206. {"asdf", "qwer", "zxcv"},
  207. {"asdf", "qwer", "zxcv"},
  208. {"asdf", "qwer", "zxcv"},
  209. {"asdf", "qwer", "zxcv"},
  210. {"asdf", "qwer", "zxcv"},
  211. {"asdf", "qwer", "zxcv"},
  212. {"asdf", "qwer", "zxcv"},
  213. {"asdf", "qwer", "zxcv"},
  214. {"asdf", "qwer", "zxcv"},
  215. {"asdf", "qwer", "zxcv"},
  216. {"asdf", "qwer", "zxcv"},
  217. {"asdf", "qwer", "zxcv"},
  218. {"asdf", "qwer", "zxcv"},
  219. },
  220. output: "F90200CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376CF84617364668471776572847A786376",
  221. },
  222. // RawValue
  223. {val: RawValue(unhex("01")), output: "01"},
  224. {val: RawValue(unhex("82FFFF")), output: "82FFFF"},
  225. {val: []RawValue{unhex("01"), unhex("02")}, output: "C20102"},
  226. // structs
  227. {val: simplestruct{}, output: "C28080"},
  228. {val: simplestruct{A: 3, B: "foo"}, output: "C50383666F6F"},
  229. {val: &recstruct{5, nil}, output: "C205C0"},
  230. {val: &recstruct{5, &recstruct{4, &recstruct{3, nil}}}, output: "C605C404C203C0"},
  231. {val: &tailRaw{A: 1, Tail: []RawValue{unhex("02"), unhex("03")}}, output: "C3010203"},
  232. {val: &tailRaw{A: 1, Tail: []RawValue{unhex("02")}}, output: "C20102"},
  233. {val: &tailRaw{A: 1, Tail: []RawValue{}}, output: "C101"},
  234. {val: &tailRaw{A: 1, Tail: nil}, output: "C101"},
  235. {val: &hasIgnoredField{A: 1, B: 2, C: 3}, output: "C20103"},
  236. {val: &intField{X: 3}, error: "rlp: type int is not RLP-serializable (struct field rlp.intField.X)"},
  237. // nil
  238. {val: (*uint)(nil), output: "80"},
  239. {val: (*string)(nil), output: "80"},
  240. {val: (*[]byte)(nil), output: "80"},
  241. {val: (*[10]byte)(nil), output: "80"},
  242. {val: (*big.Int)(nil), output: "80"},
  243. {val: (*[]string)(nil), output: "C0"},
  244. {val: (*[10]string)(nil), output: "C0"},
  245. {val: (*[]interface{})(nil), output: "C0"},
  246. {val: (*[]struct{ uint })(nil), output: "C0"},
  247. {val: (*interface{})(nil), output: "C0"},
  248. // nil struct fields
  249. {
  250. val: struct {
  251. X *[]byte
  252. }{},
  253. output: "C180",
  254. },
  255. {
  256. val: struct {
  257. X *[2]byte
  258. }{},
  259. output: "C180",
  260. },
  261. {
  262. val: struct {
  263. X *uint64
  264. }{},
  265. output: "C180",
  266. },
  267. {
  268. val: struct {
  269. X *uint64 `rlp:"nilList"`
  270. }{},
  271. output: "C1C0",
  272. },
  273. {
  274. val: struct {
  275. X *[]uint64
  276. }{},
  277. output: "C1C0",
  278. },
  279. {
  280. val: struct {
  281. X *[]uint64 `rlp:"nilString"`
  282. }{},
  283. output: "C180",
  284. },
  285. // interfaces
  286. {val: []io.Reader{reader}, output: "C3C20102"}, // the contained value is a struct
  287. // Encoder
  288. {val: (*testEncoder)(nil), output: "C0"},
  289. {val: &testEncoder{}, output: "00010001000100010001"},
  290. {val: &testEncoder{errors.New("test error")}, error: "test error"},
  291. {val: struct{ E testEncoderValueMethod }{}, output: "C3FAFEF0"},
  292. {val: struct{ E *testEncoderValueMethod }{}, output: "C1C0"},
  293. // Verify that the Encoder interface works for unsupported types like func().
  294. {val: undecodableEncoder(func() {}), output: "F5F5F5"},
  295. // Verify that pointer method testEncoder.EncodeRLP is called for
  296. // addressable non-pointer values.
  297. {val: &struct{ TE testEncoder }{testEncoder{}}, output: "CA00010001000100010001"},
  298. {val: &struct{ TE testEncoder }{testEncoder{errors.New("test error")}}, error: "test error"},
  299. // Verify the error for non-addressable non-pointer Encoder.
  300. {val: testEncoder{}, error: "rlp: unadressable value of type rlp.testEncoder, EncodeRLP is pointer method"},
  301. // Verify Encoder takes precedence over []byte.
  302. {val: []byteEncoder{0, 1, 2, 3, 4}, output: "C5C0C0C0C0C0"},
  303. }
  304. func runEncTests(t *testing.T, f func(val interface{}) ([]byte, error)) {
  305. for i, test := range encTests {
  306. output, err := f(test.val)
  307. if err != nil && test.error == "" {
  308. t.Errorf("test %d: unexpected error: %v\nvalue %#v\ntype %T",
  309. i, err, test.val, test.val)
  310. continue
  311. }
  312. if test.error != "" && fmt.Sprint(err) != test.error {
  313. t.Errorf("test %d: error mismatch\ngot %v\nwant %v\nvalue %#v\ntype %T",
  314. i, err, test.error, test.val, test.val)
  315. continue
  316. }
  317. if err == nil && !bytes.Equal(output, unhex(test.output)) {
  318. t.Errorf("test %d: output mismatch:\ngot %X\nwant %s\nvalue %#v\ntype %T",
  319. i, output, test.output, test.val, test.val)
  320. }
  321. }
  322. }
  323. func TestEncode(t *testing.T) {
  324. runEncTests(t, func(val interface{}) ([]byte, error) {
  325. b := new(bytes.Buffer)
  326. err := Encode(b, val)
  327. return b.Bytes(), err
  328. })
  329. }
  330. func TestEncodeToBytes(t *testing.T) {
  331. runEncTests(t, EncodeToBytes)
  332. }
  333. func TestEncodeToReader(t *testing.T) {
  334. runEncTests(t, func(val interface{}) ([]byte, error) {
  335. _, r, err := EncodeToReader(val)
  336. if err != nil {
  337. return nil, err
  338. }
  339. return ioutil.ReadAll(r)
  340. })
  341. }
  342. func TestEncodeToReaderPiecewise(t *testing.T) {
  343. runEncTests(t, func(val interface{}) ([]byte, error) {
  344. size, r, err := EncodeToReader(val)
  345. if err != nil {
  346. return nil, err
  347. }
  348. // read output piecewise
  349. output := make([]byte, size)
  350. for start, end := 0, 0; start < size; start = end {
  351. if remaining := size - start; remaining < 3 {
  352. end += remaining
  353. } else {
  354. end = start + 3
  355. }
  356. n, err := r.Read(output[start:end])
  357. end = start + n
  358. if err == io.EOF {
  359. break
  360. } else if err != nil {
  361. return nil, err
  362. }
  363. }
  364. return output, nil
  365. })
  366. }
  367. // This is a regression test verifying that encReader
  368. // returns its encbuf to the pool only once.
  369. func TestEncodeToReaderReturnToPool(t *testing.T) {
  370. buf := make([]byte, 50)
  371. wg := new(sync.WaitGroup)
  372. for i := 0; i < 5; i++ {
  373. wg.Add(1)
  374. go func() {
  375. for i := 0; i < 1000; i++ {
  376. _, r, _ := EncodeToReader("foo")
  377. ioutil.ReadAll(r)
  378. r.Read(buf)
  379. r.Read(buf)
  380. r.Read(buf)
  381. r.Read(buf)
  382. }
  383. wg.Done()
  384. }()
  385. }
  386. wg.Wait()
  387. }
  388. var sink interface{}
  389. func BenchmarkIntsize(b *testing.B) {
  390. for i := 0; i < b.N; i++ {
  391. sink = intsize(0x12345678)
  392. }
  393. }
  394. func BenchmarkPutint(b *testing.B) {
  395. buf := make([]byte, 8)
  396. for i := 0; i < b.N; i++ {
  397. putint(buf, 0x12345678)
  398. sink = buf
  399. }
  400. }
  401. func BenchmarkEncodeBigInts(b *testing.B) {
  402. ints := make([]*big.Int, 200)
  403. for i := range ints {
  404. ints[i] = math.BigPow(2, int64(i))
  405. }
  406. out := bytes.NewBuffer(make([]byte, 0, 4096))
  407. b.ResetTimer()
  408. b.ReportAllocs()
  409. for i := 0; i < b.N; i++ {
  410. out.Reset()
  411. if err := Encode(out, ints); err != nil {
  412. b.Fatal(err)
  413. }
  414. }
  415. }