github.com/platonnetwork/platon-go@v0.7.6/rlp/decode_test.go (about) 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 17 package rlp 18 19 import ( 20 "bytes" 21 "encoding/hex" 22 "errors" 23 "fmt" 24 "io" 25 "math/big" 26 "reflect" 27 "strings" 28 "testing" 29 ) 30 31 func TestStreamKind(t *testing.T) { 32 tests := []struct { 33 input string 34 wantKind Kind 35 wantLen uint64 36 }{ 37 {"00", Byte, 0}, 38 {"01", Byte, 0}, 39 {"7F", Byte, 0}, 40 {"80", String, 0}, 41 {"B7", String, 55}, 42 {"B90400", String, 1024}, 43 {"BFFFFFFFFFFFFFFFFF", String, ^uint64(0)}, 44 {"C0", List, 0}, 45 {"C8", List, 8}, 46 {"F7", List, 55}, 47 {"F90400", List, 1024}, 48 {"FFFFFFFFFFFFFFFFFF", List, ^uint64(0)}, 49 } 50 51 for i, test := range tests { 52 // using plainReader to inhibit input limit errors. 53 s := NewStream(newPlainReader(unhex(test.input)), 0) 54 kind, len, err := s.Kind() 55 if err != nil { 56 t.Errorf("test %d: Kind returned error: %v", i, err) 57 continue 58 } 59 if kind != test.wantKind { 60 t.Errorf("test %d: kind mismatch: got %d, want %d", i, kind, test.wantKind) 61 } 62 if len != test.wantLen { 63 t.Errorf("test %d: len mismatch: got %d, want %d", i, len, test.wantLen) 64 } 65 } 66 } 67 68 func TestNewListStream(t *testing.T) { 69 ls := NewListStream(bytes.NewReader(unhex("0101010101")), 3) 70 if k, size, err := ls.Kind(); k != List || size != 3 || err != nil { 71 t.Errorf("Kind() returned (%v, %d, %v), expected (List, 3, nil)", k, size, err) 72 } 73 if size, err := ls.List(); size != 3 || err != nil { 74 t.Errorf("List() returned (%d, %v), expected (3, nil)", size, err) 75 } 76 for i := 0; i < 3; i++ { 77 if val, err := ls.Uint(); val != 1 || err != nil { 78 t.Errorf("Uint() returned (%d, %v), expected (1, nil)", val, err) 79 } 80 } 81 if err := ls.ListEnd(); err != nil { 82 t.Errorf("ListEnd() returned %v, expected (3, nil)", err) 83 } 84 } 85 86 func TestStreamErrors(t *testing.T) { 87 withoutInputLimit := func(b []byte) *Stream { 88 return NewStream(newPlainReader(b), 0) 89 } 90 withCustomInputLimit := func(limit uint64) func([]byte) *Stream { 91 return func(b []byte) *Stream { 92 return NewStream(bytes.NewReader(b), limit) 93 } 94 } 95 96 type calls []string 97 tests := []struct { 98 string 99 calls 100 newStream func([]byte) *Stream // uses bytes.Reader if nil 101 error error 102 }{ 103 {"C0", calls{"Bytes"}, nil, ErrExpectedString}, 104 {"C0", calls{"Uint"}, nil, ErrExpectedString}, 105 {"89000000000000000001", calls{"Uint"}, nil, errUintOverflow}, 106 {"00", calls{"List"}, nil, ErrExpectedList}, 107 {"80", calls{"List"}, nil, ErrExpectedList}, 108 {"C0", calls{"List", "Uint"}, nil, EOL}, 109 {"C8C9010101010101010101", calls{"List", "Kind"}, nil, ErrElemTooLarge}, 110 {"C3C2010201", calls{"List", "List", "Uint", "Uint", "ListEnd", "Uint"}, nil, EOL}, 111 {"00", calls{"ListEnd"}, nil, errNotInList}, 112 {"C401020304", calls{"List", "Uint", "ListEnd"}, nil, errNotAtEOL}, 113 114 // Non-canonical integers (e.g. leading zero bytes). 115 {"00", calls{"Uint"}, nil, ErrCanonInt}, 116 {"820002", calls{"Uint"}, nil, ErrCanonInt}, 117 {"8133", calls{"Uint"}, nil, ErrCanonSize}, 118 {"817F", calls{"Uint"}, nil, ErrCanonSize}, 119 {"8180", calls{"Uint"}, nil, nil}, 120 121 // Non-valid boolean 122 {"02", calls{"Bool"}, nil, errors.New("rlp: invalid boolean value: 2")}, 123 124 // Size tags must use the smallest possible encoding. 125 // Leading zero bytes in the size tag are also rejected. 126 {"8100", calls{"Uint"}, nil, ErrCanonSize}, 127 {"8100", calls{"Bytes"}, nil, ErrCanonSize}, 128 {"8101", calls{"Bytes"}, nil, ErrCanonSize}, 129 {"817F", calls{"Bytes"}, nil, ErrCanonSize}, 130 {"8180", calls{"Bytes"}, nil, nil}, 131 {"B800", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 132 {"B90000", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 133 {"B90055", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 134 {"BA0002FFFF", calls{"Bytes"}, withoutInputLimit, ErrCanonSize}, 135 {"F800", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 136 {"F90000", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 137 {"F90055", calls{"Kind"}, withoutInputLimit, ErrCanonSize}, 138 {"FA0002FFFF", calls{"List"}, withoutInputLimit, ErrCanonSize}, 139 140 // Expected EOF 141 {"", calls{"Kind"}, nil, io.EOF}, 142 {"", calls{"Uint"}, nil, io.EOF}, 143 {"", calls{"List"}, nil, io.EOF}, 144 {"8180", calls{"Uint", "Uint"}, nil, io.EOF}, 145 {"C0", calls{"List", "ListEnd", "List"}, nil, io.EOF}, 146 147 {"", calls{"List"}, withoutInputLimit, io.EOF}, 148 {"8180", calls{"Uint", "Uint"}, withoutInputLimit, io.EOF}, 149 {"C0", calls{"List", "ListEnd", "List"}, withoutInputLimit, io.EOF}, 150 151 // Input limit errors. 152 {"81", calls{"Bytes"}, nil, ErrValueTooLarge}, 153 {"81", calls{"Uint"}, nil, ErrValueTooLarge}, 154 {"81", calls{"Raw"}, nil, ErrValueTooLarge}, 155 {"BFFFFFFFFFFFFFFFFFFF", calls{"Bytes"}, nil, ErrValueTooLarge}, 156 {"C801", calls{"List"}, nil, ErrValueTooLarge}, 157 158 // Test for list element size check overflow. 159 {"CD04040404FFFFFFFFFFFFFFFFFF0303", calls{"List", "Uint", "Uint", "Uint", "Uint", "List"}, nil, ErrElemTooLarge}, 160 161 // Test for input limit overflow. Since we are counting the limit 162 // down toward zero in Stream.remaining, reading too far can overflow 163 // remaining to a large value, effectively disabling the limit. 164 {"C40102030401", calls{"Raw", "Uint"}, withCustomInputLimit(5), io.EOF}, 165 {"C4010203048180", calls{"Raw", "Uint"}, withCustomInputLimit(6), ErrValueTooLarge}, 166 167 // Check that the same calls are fine without a limit. 168 {"C40102030401", calls{"Raw", "Uint"}, withoutInputLimit, nil}, 169 {"C4010203048180", calls{"Raw", "Uint"}, withoutInputLimit, nil}, 170 171 // Unexpected EOF. This only happens when there is 172 // no input limit, so the reader needs to be 'dumbed down'. 173 {"81", calls{"Bytes"}, withoutInputLimit, io.ErrUnexpectedEOF}, 174 {"81", calls{"Uint"}, withoutInputLimit, io.ErrUnexpectedEOF}, 175 {"BFFFFFFFFFFFFFFF", calls{"Bytes"}, withoutInputLimit, io.ErrUnexpectedEOF}, 176 {"C801", calls{"List", "Uint", "Uint"}, withoutInputLimit, io.ErrUnexpectedEOF}, 177 178 // This test verifies that the input position is advanced 179 // correctly when calling Bytes for empty strings. Kind can be called 180 // any number of times in between and doesn't advance. 181 {"C3808080", calls{ 182 "List", // enter the list 183 "Bytes", // past first element 184 185 "Kind", "Kind", "Kind", // this shouldn't advance 186 187 "Bytes", // past second element 188 189 "Kind", "Kind", // can't hurt to try 190 191 "Bytes", // past final element 192 "Bytes", // this one should fail 193 }, nil, EOL}, 194 } 195 196 testfor: 197 for i, test := range tests { 198 if test.newStream == nil { 199 test.newStream = func(b []byte) *Stream { return NewStream(bytes.NewReader(b), 0) } 200 } 201 s := test.newStream(unhex(test.string)) 202 rs := reflect.ValueOf(s) 203 for j, call := range test.calls { 204 fval := rs.MethodByName(call) 205 ret := fval.Call(nil) 206 err := "<nil>" 207 if lastret := ret[len(ret)-1].Interface(); lastret != nil { 208 err = lastret.(error).Error() 209 } 210 if j == len(test.calls)-1 { 211 want := "<nil>" 212 if test.error != nil { 213 want = test.error.Error() 214 } 215 if err != want { 216 t.Log(test) 217 t.Errorf("test %d: last call (%s) error mismatch\ngot: %s\nwant: %s", 218 i, call, err, test.error) 219 } 220 } else if err != "<nil>" { 221 t.Log(test) 222 t.Errorf("test %d: call %d (%s) unexpected error: %q", i, j, call, err) 223 continue testfor 224 } 225 } 226 } 227 } 228 229 func TestStreamList(t *testing.T) { 230 s := NewStream(bytes.NewReader(unhex("C80102030405060708")), 0) 231 232 len, err := s.List() 233 if err != nil { 234 t.Fatalf("List error: %v", err) 235 } 236 if len != 8 { 237 t.Fatalf("List returned invalid length, got %d, want 8", len) 238 } 239 240 for i := uint64(1); i <= 8; i++ { 241 v, err := s.Uint() 242 if err != nil { 243 t.Fatalf("Uint error: %v", err) 244 } 245 if i != v { 246 t.Errorf("Uint returned wrong value, got %d, want %d", v, i) 247 } 248 } 249 250 if _, err := s.Uint(); err != EOL { 251 t.Errorf("Uint error mismatch, got %v, want %v", err, EOL) 252 } 253 if err = s.ListEnd(); err != nil { 254 t.Fatalf("ListEnd error: %v", err) 255 } 256 } 257 258 func TestStreamRaw(t *testing.T) { 259 tests := []struct { 260 input string 261 output string 262 }{ 263 { 264 "C58401010101", 265 "8401010101", 266 }, 267 { 268 "F842B84001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101", 269 "B84001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101", 270 }, 271 } 272 for i, tt := range tests { 273 s := NewStream(bytes.NewReader(unhex(tt.input)), 0) 274 s.List() 275 276 want := unhex(tt.output) 277 raw, err := s.Raw() 278 if err != nil { 279 t.Fatal(err) 280 } 281 if !bytes.Equal(want, raw) { 282 t.Errorf("test %d: raw mismatch: got %x, want %x", i, raw, want) 283 } 284 } 285 } 286 287 func TestStreamRaw2(t *testing.T) { 288 tests := []struct { 289 input string 290 output string 291 }{ 292 { 293 "C58401010101", 294 "8401010101", 295 }, 296 { 297 "F842B84001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101", 298 "B84001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101", 299 }, 300 } 301 for i, tt := range tests { 302 s := NewStream(bytes.NewReader(unhex(tt.input)), 0) 303 s.List() 304 305 want := unhex(tt.output) 306 raw, err := s.Raw() 307 println("want: ", want, " raw ", raw) 308 if err != nil { 309 t.Fatal(err) 310 } 311 if !bytes.Equal(want, raw) { 312 t.Errorf("test %d: raw mismatch: got %x, want %x", i, raw, want) 313 } 314 } 315 } 316 317 func TestDecodeErrors(t *testing.T) { 318 r := bytes.NewReader(nil) 319 320 if err := Decode(r, nil); err != errDecodeIntoNil { 321 t.Errorf("Decode(r, nil) error mismatch, got %q, want %q", err, errDecodeIntoNil) 322 } 323 324 var nilptr *struct{} 325 if err := Decode(r, nilptr); err != errDecodeIntoNil { 326 t.Errorf("Decode(r, nilptr) error mismatch, got %q, want %q", err, errDecodeIntoNil) 327 } 328 329 if err := Decode(r, struct{}{}); err != errNoPointer { 330 t.Errorf("Decode(r, struct{}{}) error mismatch, got %q, want %q", err, errNoPointer) 331 } 332 333 expectErr := "rlp: type chan bool is not RLP-serializable" 334 if err := Decode(r, new(chan bool)); err == nil || err.Error() != expectErr { 335 t.Errorf("Decode(r, new(chan bool)) error mismatch, got %q, want %q", err, expectErr) 336 } 337 338 if err := Decode(r, new(uint)); err != io.EOF { 339 t.Errorf("Decode(r, new(int)) error mismatch, got %q, want %q", err, io.EOF) 340 } 341 } 342 343 type decodeTest struct { 344 input string 345 ptr interface{} 346 value interface{} 347 error string 348 } 349 350 type simplestruct struct { 351 A uint 352 B string 353 } 354 355 type recstruct struct { 356 I uint 357 Child *recstruct `rlp:"nil"` 358 } 359 360 type invalidTail1 struct { 361 A uint `rlp:"tail"` 362 B string 363 } 364 365 type invalidTail2 struct { 366 A uint 367 B string `rlp:"tail"` 368 } 369 370 type tailRaw struct { 371 A uint 372 Tail []RawValue `rlp:"tail"` 373 } 374 375 type tailUint struct { 376 A uint 377 Tail []uint `rlp:"tail"` 378 } 379 380 var ( 381 veryBigInt = big.NewInt(0).Add( 382 big.NewInt(0).Lsh(big.NewInt(0xFFFFFFFFFFFFFF), 16), 383 big.NewInt(0xFFFF), 384 ) 385 ) 386 387 type hasIgnoredField struct { 388 A uint 389 B uint `rlp:"-"` 390 C uint 391 } 392 393 var decodeTests = []decodeTest{ 394 // booleans 395 {input: "01", ptr: new(bool), value: true}, 396 {input: "80", ptr: new(bool), value: false}, 397 {input: "02", ptr: new(bool), error: "rlp: invalid boolean value: 2"}, 398 399 // integers 400 {input: "05", ptr: new(uint32), value: uint32(5)}, 401 {input: "80", ptr: new(uint32), value: uint32(0)}, 402 {input: "820505", ptr: new(uint32), value: uint32(0x0505)}, 403 {input: "83050505", ptr: new(uint32), value: uint32(0x050505)}, 404 {input: "8405050505", ptr: new(uint32), value: uint32(0x05050505)}, 405 {input: "850505050505", ptr: new(uint32), error: "rlp: input string too long for uint32"}, 406 {input: "C0", ptr: new(uint32), error: "rlp: expected input string or byte for uint32"}, 407 {input: "00", ptr: new(uint32), error: "rlp: non-canonical integer (leading zero bytes) for uint32"}, 408 {input: "8105", ptr: new(uint32), error: "rlp: non-canonical size information for uint32"}, 409 {input: "820004", ptr: new(uint32), error: "rlp: non-canonical integer (leading zero bytes) for uint32"}, 410 {input: "B8020004", ptr: new(uint32), error: "rlp: non-canonical size information for uint32"}, 411 412 // slices 413 {input: "C0", ptr: new([]uint), value: []uint{}}, 414 {input: "C80102030405060708", ptr: new([]uint), value: []uint{1, 2, 3, 4, 5, 6, 7, 8}}, 415 {input: "F8020004", ptr: new([]uint), error: "rlp: non-canonical size information for []uint"}, 416 417 // arrays 418 {input: "C50102030405", ptr: new([5]uint), value: [5]uint{1, 2, 3, 4, 5}}, 419 {input: "C0", ptr: new([5]uint), error: "rlp: input list has too few elements for [5]uint"}, 420 {input: "C102", ptr: new([5]uint), error: "rlp: input list has too few elements for [5]uint"}, 421 {input: "C6010203040506", ptr: new([5]uint), error: "rlp: input list has too many elements for [5]uint"}, 422 {input: "F8020004", ptr: new([5]uint), error: "rlp: non-canonical size information for [5]uint"}, 423 424 // zero sized arrays 425 {input: "C0", ptr: new([0]uint), value: [0]uint{}}, 426 {input: "C101", ptr: new([0]uint), error: "rlp: input list has too many elements for [0]uint"}, 427 428 // byte slices 429 {input: "01", ptr: new([]byte), value: []byte{1}}, 430 {input: "80", ptr: new([]byte), value: []byte{}}, 431 {input: "8D6162636465666768696A6B6C6D", ptr: new([]byte), value: []byte("abcdefghijklm")}, 432 {input: "C0", ptr: new([]byte), error: "rlp: expected input string or byte for []uint8"}, 433 {input: "8105", ptr: new([]byte), error: "rlp: non-canonical size information for []uint8"}, 434 435 // byte arrays 436 {input: "02", ptr: new([1]byte), value: [1]byte{2}}, 437 {input: "8180", ptr: new([1]byte), value: [1]byte{128}}, 438 {input: "850102030405", ptr: new([5]byte), value: [5]byte{1, 2, 3, 4, 5}}, 439 440 // byte array errors 441 {input: "02", ptr: new([5]byte), error: "rlp: input string too short for [5]uint8"}, 442 {input: "80", ptr: new([5]byte), error: "rlp: input string too short for [5]uint8"}, 443 {input: "820000", ptr: new([5]byte), error: "rlp: input string too short for [5]uint8"}, 444 {input: "C0", ptr: new([5]byte), error: "rlp: expected input string or byte for [5]uint8"}, 445 {input: "C3010203", ptr: new([5]byte), error: "rlp: expected input string or byte for [5]uint8"}, 446 {input: "86010203040506", ptr: new([5]byte), error: "rlp: input string too long for [5]uint8"}, 447 {input: "8105", ptr: new([1]byte), error: "rlp: non-canonical size information for [1]uint8"}, 448 {input: "817F", ptr: new([1]byte), error: "rlp: non-canonical size information for [1]uint8"}, 449 450 // zero sized byte arrays 451 {input: "80", ptr: new([0]byte), value: [0]byte{}}, 452 {input: "01", ptr: new([0]byte), error: "rlp: input string too long for [0]uint8"}, 453 {input: "8101", ptr: new([0]byte), error: "rlp: input string too long for [0]uint8"}, 454 455 // strings 456 {input: "00", ptr: new(string), value: "\000"}, 457 {input: "8D6162636465666768696A6B6C6D", ptr: new(string), value: "abcdefghijklm"}, 458 {input: "C0", ptr: new(string), error: "rlp: expected input string or byte for string"}, 459 460 // big ints 461 {input: "01", ptr: new(*big.Int), value: big.NewInt(1)}, 462 {input: "89FFFFFFFFFFFFFFFFFF", ptr: new(*big.Int), value: veryBigInt}, 463 {input: "10", ptr: new(big.Int), value: *big.NewInt(16)}, // non-pointer also works 464 {input: "C0", ptr: new(*big.Int), error: "rlp: expected input string or byte for *big.Int"}, 465 {input: "820001", ptr: new(big.Int), error: "rlp: non-canonical integer (leading zero bytes) for *big.Int"}, 466 {input: "8105", ptr: new(big.Int), error: "rlp: non-canonical size information for *big.Int"}, 467 468 // structs 469 { 470 input: "C50583343434", 471 ptr: new(simplestruct), 472 value: simplestruct{5, "444"}, 473 }, 474 { 475 input: "C601C402C203C0", 476 ptr: new(recstruct), 477 value: recstruct{1, &recstruct{2, &recstruct{3, nil}}}, 478 }, 479 480 // struct errors 481 { 482 input: "C0", 483 ptr: new(simplestruct), 484 error: "rlp: too few elements for rlp.simplestruct", 485 }, 486 { 487 input: "C105", 488 ptr: new(simplestruct), 489 error: "rlp: too few elements for rlp.simplestruct", 490 }, 491 { 492 input: "C7C50583343434C0", 493 ptr: new([]*simplestruct), 494 error: "rlp: too few elements for rlp.simplestruct, decoding into ([]*rlp.simplestruct)[1]", 495 }, 496 { 497 input: "83222222", 498 ptr: new(simplestruct), 499 error: "rlp: expected input list for rlp.simplestruct", 500 }, 501 { 502 input: "C3010101", 503 ptr: new(simplestruct), 504 error: "rlp: input list has too many elements for rlp.simplestruct", 505 }, 506 { 507 input: "C501C3C00000", 508 ptr: new(recstruct), 509 error: "rlp: expected input string or byte for uint, decoding into (rlp.recstruct).Child.I", 510 }, 511 { 512 input: "C0", 513 ptr: new(invalidTail1), 514 error: "rlp: invalid struct tag \"tail\" for rlp.invalidTail1.A (must be on last field)", 515 }, 516 { 517 input: "C0", 518 ptr: new(invalidTail2), 519 error: "rlp: invalid struct tag \"tail\" for rlp.invalidTail2.B (field type is not slice)", 520 }, 521 { 522 input: "C50102C20102", 523 ptr: new(tailUint), 524 error: "rlp: expected input string or byte for uint, decoding into (rlp.tailUint).Tail[1]", 525 }, 526 527 // struct tag "tail" 528 { 529 input: "C3010203", 530 ptr: new(tailRaw), 531 value: tailRaw{A: 1, Tail: []RawValue{unhex("02"), unhex("03")}}, 532 }, 533 { 534 input: "C20102", 535 ptr: new(tailRaw), 536 value: tailRaw{A: 1, Tail: []RawValue{unhex("02")}}, 537 }, 538 { 539 input: "C101", 540 ptr: new(tailRaw), 541 value: tailRaw{A: 1, Tail: []RawValue{}}, 542 }, 543 544 // struct tag "-" 545 { 546 input: "C20102", 547 ptr: new(hasIgnoredField), 548 value: hasIgnoredField{A: 1, C: 2}, 549 }, 550 551 // RawValue 552 {input: "01", ptr: new(RawValue), value: RawValue(unhex("01"))}, 553 {input: "82FFFF", ptr: new(RawValue), value: RawValue(unhex("82FFFF"))}, 554 {input: "C20102", ptr: new([]RawValue), value: []RawValue{unhex("01"), unhex("02")}}, 555 556 // pointers 557 {input: "00", ptr: new(*[]byte), value: &[]byte{0}}, 558 {input: "80", ptr: new(*uint), value: uintp(0)}, 559 {input: "C0", ptr: new(*uint), error: "rlp: expected input string or byte for uint"}, 560 {input: "07", ptr: new(*uint), value: uintp(7)}, 561 {input: "817F", ptr: new(*uint), error: "rlp: non-canonical size information for uint"}, 562 {input: "8180", ptr: new(*uint), value: uintp(0x80)}, 563 {input: "C109", ptr: new(*[]uint), value: &[]uint{9}}, 564 {input: "C58403030303", ptr: new(*[][]byte), value: &[][]byte{{3, 3, 3, 3}}}, 565 566 // check that input position is advanced also for empty values. 567 {input: "C3808005", ptr: new([]*uint), value: []*uint{uintp(0), uintp(0), uintp(5)}}, 568 569 // interface{} 570 {input: "00", ptr: new(interface{}), value: []byte{0}}, 571 {input: "01", ptr: new(interface{}), value: []byte{1}}, 572 {input: "80", ptr: new(interface{}), value: []byte{}}, 573 {input: "850505050505", ptr: new(interface{}), value: []byte{5, 5, 5, 5, 5}}, 574 {input: "C0", ptr: new(interface{}), value: []interface{}{}}, 575 {input: "C50183040404", ptr: new(interface{}), value: []interface{}{[]byte{1}, []byte{4, 4, 4}}}, 576 { 577 input: "C3010203", 578 ptr: new([]io.Reader), 579 error: "rlp: type io.Reader is not RLP-serializable", 580 }, 581 582 // fuzzer crashes 583 { 584 input: "c330f9c030f93030ce3030303030303030bd303030303030", 585 ptr: new(interface{}), 586 error: "rlp: element is larger than containing list", 587 }, 588 } 589 590 func uintp(i uint) *uint { return &i } 591 592 func runTests(t *testing.T, decode func([]byte, interface{}) error) { 593 for i, test := range decodeTests { 594 input, err := hex.DecodeString(test.input) 595 if err != nil { 596 t.Errorf("test %d: invalid hex input %q", i, test.input) 597 continue 598 } 599 err = decode(input, test.ptr) 600 if err != nil && test.error == "" { 601 t.Errorf("test %d: unexpected Decode error: %v\ndecoding into %T\ninput %q", 602 i, err, test.ptr, test.input) 603 continue 604 } 605 if test.error != "" && fmt.Sprint(err) != test.error { 606 t.Errorf("test %d: Decode error mismatch\ngot %v\nwant %v\ndecoding into %T\ninput %q", 607 i, err, test.error, test.ptr, test.input) 608 continue 609 } 610 deref := reflect.ValueOf(test.ptr).Elem().Interface() 611 if err == nil && !reflect.DeepEqual(deref, test.value) { 612 t.Errorf("test %d: value mismatch\ngot %#v\nwant %#v\ndecoding into %T\ninput %q", 613 i, deref, test.value, test.ptr, test.input) 614 } 615 } 616 } 617 618 func TestDecodeWithByteReader(t *testing.T) { 619 runTests(t, func(input []byte, into interface{}) error { 620 return Decode(bytes.NewReader(input), into) 621 }) 622 } 623 624 // plainReader reads from a byte slice but does not 625 // implement ReadByte. It is also not recognized by the 626 // size validation. This is useful to test how the decoder 627 // behaves on a non-buffered input stream. 628 type plainReader []byte 629 630 func newPlainReader(b []byte) io.Reader { 631 return (*plainReader)(&b) 632 } 633 634 func (r *plainReader) Read(buf []byte) (n int, err error) { 635 if len(*r) == 0 { 636 return 0, io.EOF 637 } 638 n = copy(buf, *r) 639 *r = (*r)[n:] 640 return n, nil 641 } 642 643 func TestDecodeWithNonByteReader(t *testing.T) { 644 runTests(t, func(input []byte, into interface{}) error { 645 return Decode(newPlainReader(input), into) 646 }) 647 } 648 649 func TestDecodeStreamReset(t *testing.T) { 650 s := NewStream(nil, 0) 651 runTests(t, func(input []byte, into interface{}) error { 652 s.Reset(bytes.NewReader(input), 0) 653 return s.Decode(into) 654 }) 655 } 656 657 type testDecoder struct{ called bool } 658 659 func (t *testDecoder) DecodeRLP(s *Stream) error { 660 if _, err := s.Uint(); err != nil { 661 return err 662 } 663 t.called = true 664 return nil 665 } 666 667 func TestDecodeDecoder(t *testing.T) { 668 var s struct { 669 T1 testDecoder 670 T2 *testDecoder 671 T3 **testDecoder 672 } 673 if err := Decode(bytes.NewReader(unhex("C3010203")), &s); err != nil { 674 t.Fatalf("Decode error: %v", err) 675 } 676 677 if !s.T1.called { 678 t.Errorf("DecodeRLP was not called for (non-pointer) testDecoder") 679 } 680 681 if s.T2 == nil { 682 t.Errorf("*testDecoder has not been allocated") 683 } else if !s.T2.called { 684 t.Errorf("DecodeRLP was not called for *testDecoder") 685 } 686 687 if s.T3 == nil || *s.T3 == nil { 688 t.Errorf("**testDecoder has not been allocated") 689 } else if !(*s.T3).called { 690 t.Errorf("DecodeRLP was not called for **testDecoder") 691 } 692 } 693 694 type byteDecoder byte 695 696 func (bd *byteDecoder) DecodeRLP(s *Stream) error { 697 _, err := s.Uint() 698 *bd = 255 699 return err 700 } 701 702 func (bd byteDecoder) called() bool { 703 return bd == 255 704 } 705 706 // This test verifies that the byte slice/byte array logic 707 // does not kick in for element types implementing Decoder. 708 func TestDecoderInByteSlice(t *testing.T) { 709 var slice []byteDecoder 710 if err := Decode(bytes.NewReader(unhex("C101")), &slice); err != nil { 711 t.Errorf("unexpected Decode error %v", err) 712 } else if !slice[0].called() { 713 t.Errorf("DecodeRLP not called for slice element") 714 } 715 716 var array [1]byteDecoder 717 if err := Decode(bytes.NewReader(unhex("C101")), &array); err != nil { 718 t.Errorf("unexpected Decode error %v", err) 719 } else if !array[0].called() { 720 t.Errorf("DecodeRLP not called for array element") 721 } 722 } 723 724 func ExampleDecode() { 725 input, _ := hex.DecodeString("C90A1486666F6F626172") 726 727 type example struct { 728 A, B uint 729 private uint // private fields are ignored 730 String string 731 } 732 733 var s example 734 err := Decode(bytes.NewReader(input), &s) 735 if err != nil { 736 fmt.Printf("Error: %v\n", err) 737 } else { 738 fmt.Printf("Decoded value: %#v\n", s) 739 } 740 // Output: 741 // Decoded value: rlp.example{A:0xa, B:0x14, private:0x0, String:"foobar"} 742 } 743 744 func ExampleDecode_structTagNil() { 745 // In this example, we'll use the "nil" struct tag to change 746 // how a pointer-typed field is decoded. The input contains an RLP 747 // list of one element, an empty string. 748 input := []byte{0xC1, 0x80} 749 750 // This type uses the normal rules. 751 // The empty input string is decoded as a pointer to an empty Go string. 752 var normalRules struct { 753 String *string 754 } 755 Decode(bytes.NewReader(input), &normalRules) 756 fmt.Printf("normal: String = %q\n", *normalRules.String) 757 758 // This type uses the struct tag. 759 // The empty input string is decoded as a nil pointer. 760 var withEmptyOK struct { 761 String *string `rlp:"nil"` 762 } 763 Decode(bytes.NewReader(input), &withEmptyOK) 764 fmt.Printf("with nil tag: String = %v\n", withEmptyOK.String) 765 766 // Output: 767 // normal: String = "" 768 // with nil tag: String = <nil> 769 } 770 771 func ExampleStream() { 772 input, _ := hex.DecodeString("C90A1486666F6F626172") 773 s := NewStream(bytes.NewReader(input), 0) 774 775 // Check what kind of value lies ahead 776 kind, size, _ := s.Kind() 777 //fmt.Println(kind) 778 fmt.Printf("Kind: %v size:%d\n", kind, size) 779 780 // Enter the list 781 if _, err := s.List(); err != nil { 782 fmt.Printf("List error: %v\n", err) 783 return 784 } 785 786 // Decode elements 787 fmt.Println(s.Uint()) 788 fmt.Println(s.Uint()) 789 fmt.Println(s.Bytes()) 790 791 // Acknowledge end of list 792 if err := s.ListEnd(); err != nil { 793 fmt.Printf("ListEnd error: %v\n", err) 794 } 795 // Output: 796 // Kind: List size:9 797 // 10 <nil> 798 // 20 <nil> 799 // [102 111 111 98 97 114] <nil> 800 } 801 802 func BenchmarkDecode(b *testing.B) { 803 enc := encodeTestSlice(90000) 804 b.SetBytes(int64(len(enc))) 805 b.ReportAllocs() 806 b.ResetTimer() 807 808 for i := 0; i < b.N; i++ { 809 var s []uint 810 r := bytes.NewReader(enc) 811 if err := Decode(r, &s); err != nil { 812 b.Fatalf("Decode error: %v", err) 813 } 814 } 815 } 816 817 func BenchmarkDecodeIntSliceReuse(b *testing.B) { 818 enc := encodeTestSlice(100000) 819 b.SetBytes(int64(len(enc))) 820 b.ReportAllocs() 821 b.ResetTimer() 822 823 var s []uint 824 for i := 0; i < b.N; i++ { 825 r := bytes.NewReader(enc) 826 if err := Decode(r, &s); err != nil { 827 b.Fatalf("Decode error: %v", err) 828 } 829 } 830 } 831 832 func encodeTestSlice(n uint) []byte { 833 s := make([]uint, n) 834 for i := uint(0); i < n; i++ { 835 s[i] = i 836 } 837 b, err := EncodeToBytes(s) 838 if err != nil { 839 panic(fmt.Sprintf("encode error: %v", err)) 840 } 841 return b 842 } 843 844 func unhex(str string) []byte { 845 b, err := hex.DecodeString(strings.Replace(str, " ", "", -1)) 846 if err != nil { 847 panic(fmt.Sprintf("invalid hex string: %q", str)) 848 } 849 return b 850 }