runtime_test.go 24 KB

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  1. // Copyright 2015 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 runtime
  17. import (
  18. "fmt"
  19. "math/big"
  20. "os"
  21. "strings"
  22. "testing"
  23. "time"
  24. "github.com/ethereum/go-ethereum/accounts/abi"
  25. "github.com/ethereum/go-ethereum/common"
  26. "github.com/ethereum/go-ethereum/consensus"
  27. "github.com/ethereum/go-ethereum/core"
  28. "github.com/ethereum/go-ethereum/core/asm"
  29. "github.com/ethereum/go-ethereum/core/rawdb"
  30. "github.com/ethereum/go-ethereum/core/state"
  31. "github.com/ethereum/go-ethereum/core/types"
  32. "github.com/ethereum/go-ethereum/core/vm"
  33. "github.com/ethereum/go-ethereum/params"
  34. )
  35. func TestDefaults(t *testing.T) {
  36. cfg := new(Config)
  37. setDefaults(cfg)
  38. if cfg.Difficulty == nil {
  39. t.Error("expected difficulty to be non nil")
  40. }
  41. if cfg.Time == nil {
  42. t.Error("expected time to be non nil")
  43. }
  44. if cfg.GasLimit == 0 {
  45. t.Error("didn't expect gaslimit to be zero")
  46. }
  47. if cfg.GasPrice == nil {
  48. t.Error("expected time to be non nil")
  49. }
  50. if cfg.Value == nil {
  51. t.Error("expected time to be non nil")
  52. }
  53. if cfg.GetHashFn == nil {
  54. t.Error("expected time to be non nil")
  55. }
  56. if cfg.BlockNumber == nil {
  57. t.Error("expected block number to be non nil")
  58. }
  59. }
  60. func TestEVM(t *testing.T) {
  61. defer func() {
  62. if r := recover(); r != nil {
  63. t.Fatalf("crashed with: %v", r)
  64. }
  65. }()
  66. Execute([]byte{
  67. byte(vm.DIFFICULTY),
  68. byte(vm.TIMESTAMP),
  69. byte(vm.GASLIMIT),
  70. byte(vm.PUSH1),
  71. byte(vm.ORIGIN),
  72. byte(vm.BLOCKHASH),
  73. byte(vm.COINBASE),
  74. }, nil, nil)
  75. }
  76. func TestExecute(t *testing.T) {
  77. ret, _, err := Execute([]byte{
  78. byte(vm.PUSH1), 10,
  79. byte(vm.PUSH1), 0,
  80. byte(vm.MSTORE),
  81. byte(vm.PUSH1), 32,
  82. byte(vm.PUSH1), 0,
  83. byte(vm.RETURN),
  84. }, nil, nil)
  85. if err != nil {
  86. t.Fatal("didn't expect error", err)
  87. }
  88. num := new(big.Int).SetBytes(ret)
  89. if num.Cmp(big.NewInt(10)) != 0 {
  90. t.Error("Expected 10, got", num)
  91. }
  92. }
  93. func TestCall(t *testing.T) {
  94. state, _ := state.New(common.Hash{}, state.NewDatabase(rawdb.NewMemoryDatabase()), nil)
  95. address := common.HexToAddress("0x0a")
  96. state.SetCode(address, []byte{
  97. byte(vm.PUSH1), 10,
  98. byte(vm.PUSH1), 0,
  99. byte(vm.MSTORE),
  100. byte(vm.PUSH1), 32,
  101. byte(vm.PUSH1), 0,
  102. byte(vm.RETURN),
  103. })
  104. ret, _, err := Call(address, nil, &Config{State: state})
  105. if err != nil {
  106. t.Fatal("didn't expect error", err)
  107. }
  108. num := new(big.Int).SetBytes(ret)
  109. if num.Cmp(big.NewInt(10)) != 0 {
  110. t.Error("Expected 10, got", num)
  111. }
  112. }
  113. func BenchmarkCall(b *testing.B) {
  114. var definition = `[{"constant":true,"inputs":[],"name":"seller","outputs":[{"name":"","type":"address"}],"type":"function"},{"constant":false,"inputs":[],"name":"abort","outputs":[],"type":"function"},{"constant":true,"inputs":[],"name":"value","outputs":[{"name":"","type":"uint256"}],"type":"function"},{"constant":false,"inputs":[],"name":"refund","outputs":[],"type":"function"},{"constant":true,"inputs":[],"name":"buyer","outputs":[{"name":"","type":"address"}],"type":"function"},{"constant":false,"inputs":[],"name":"confirmReceived","outputs":[],"type":"function"},{"constant":true,"inputs":[],"name":"state","outputs":[{"name":"","type":"uint8"}],"type":"function"},{"constant":false,"inputs":[],"name":"confirmPurchase","outputs":[],"type":"function"},{"inputs":[],"type":"constructor"},{"anonymous":false,"inputs":[],"name":"Aborted","type":"event"},{"anonymous":false,"inputs":[],"name":"PurchaseConfirmed","type":"event"},{"anonymous":false,"inputs":[],"name":"ItemReceived","type":"event"},{"anonymous":false,"inputs":[],"name":"Refunded","type":"event"}]`
  115. var code = common.Hex2Bytes("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")
  116. abi, err := abi.JSON(strings.NewReader(definition))
  117. if err != nil {
  118. b.Fatal(err)
  119. }
  120. cpurchase, err := abi.Pack("confirmPurchase")
  121. if err != nil {
  122. b.Fatal(err)
  123. }
  124. creceived, err := abi.Pack("confirmReceived")
  125. if err != nil {
  126. b.Fatal(err)
  127. }
  128. refund, err := abi.Pack("refund")
  129. if err != nil {
  130. b.Fatal(err)
  131. }
  132. b.ResetTimer()
  133. for i := 0; i < b.N; i++ {
  134. for j := 0; j < 400; j++ {
  135. Execute(code, cpurchase, nil)
  136. Execute(code, creceived, nil)
  137. Execute(code, refund, nil)
  138. }
  139. }
  140. }
  141. func benchmarkEVM_Create(bench *testing.B, code string) {
  142. var (
  143. statedb, _ = state.New(common.Hash{}, state.NewDatabase(rawdb.NewMemoryDatabase()), nil)
  144. sender = common.BytesToAddress([]byte("sender"))
  145. receiver = common.BytesToAddress([]byte("receiver"))
  146. )
  147. statedb.CreateAccount(sender)
  148. statedb.SetCode(receiver, common.FromHex(code))
  149. runtimeConfig := Config{
  150. Origin: sender,
  151. State: statedb,
  152. GasLimit: 10000000,
  153. Difficulty: big.NewInt(0x200000),
  154. Time: new(big.Int).SetUint64(0),
  155. Coinbase: common.Address{},
  156. BlockNumber: new(big.Int).SetUint64(1),
  157. ChainConfig: &params.ChainConfig{
  158. ChainID: big.NewInt(1),
  159. HomesteadBlock: new(big.Int),
  160. ByzantiumBlock: new(big.Int),
  161. ConstantinopleBlock: new(big.Int),
  162. DAOForkBlock: new(big.Int),
  163. DAOForkSupport: false,
  164. EIP150Block: new(big.Int),
  165. EIP155Block: new(big.Int),
  166. EIP158Block: new(big.Int),
  167. },
  168. EVMConfig: vm.Config{},
  169. }
  170. // Warm up the intpools and stuff
  171. bench.ResetTimer()
  172. for i := 0; i < bench.N; i++ {
  173. Call(receiver, []byte{}, &runtimeConfig)
  174. }
  175. bench.StopTimer()
  176. }
  177. func BenchmarkEVM_CREATE_500(bench *testing.B) {
  178. // initcode size 500K, repeatedly calls CREATE and then modifies the mem contents
  179. benchmarkEVM_Create(bench, "5b6207a120600080f0600152600056")
  180. }
  181. func BenchmarkEVM_CREATE2_500(bench *testing.B) {
  182. // initcode size 500K, repeatedly calls CREATE2 and then modifies the mem contents
  183. benchmarkEVM_Create(bench, "5b586207a120600080f5600152600056")
  184. }
  185. func BenchmarkEVM_CREATE_1200(bench *testing.B) {
  186. // initcode size 1200K, repeatedly calls CREATE and then modifies the mem contents
  187. benchmarkEVM_Create(bench, "5b62124f80600080f0600152600056")
  188. }
  189. func BenchmarkEVM_CREATE2_1200(bench *testing.B) {
  190. // initcode size 1200K, repeatedly calls CREATE2 and then modifies the mem contents
  191. benchmarkEVM_Create(bench, "5b5862124f80600080f5600152600056")
  192. }
  193. func fakeHeader(n uint64, parentHash common.Hash) *types.Header {
  194. header := types.Header{
  195. Coinbase: common.HexToAddress("0x00000000000000000000000000000000deadbeef"),
  196. Number: big.NewInt(int64(n)),
  197. ParentHash: parentHash,
  198. Time: 1000,
  199. Nonce: types.BlockNonce{0x1},
  200. Extra: []byte{},
  201. Difficulty: big.NewInt(0),
  202. GasLimit: 100000,
  203. }
  204. return &header
  205. }
  206. type dummyChain struct {
  207. counter int
  208. }
  209. // Engine retrieves the chain's consensus engine.
  210. func (d *dummyChain) Engine() consensus.Engine {
  211. return nil
  212. }
  213. // GetHeader returns the hash corresponding to their hash.
  214. func (d *dummyChain) GetHeader(h common.Hash, n uint64) *types.Header {
  215. d.counter++
  216. parentHash := common.Hash{}
  217. s := common.LeftPadBytes(big.NewInt(int64(n-1)).Bytes(), 32)
  218. copy(parentHash[:], s)
  219. //parentHash := common.Hash{byte(n - 1)}
  220. //fmt.Printf("GetHeader(%x, %d) => header with parent %x\n", h, n, parentHash)
  221. return fakeHeader(n, parentHash)
  222. }
  223. // TestBlockhash tests the blockhash operation. It's a bit special, since it internally
  224. // requires access to a chain reader.
  225. func TestBlockhash(t *testing.T) {
  226. // Current head
  227. n := uint64(1000)
  228. parentHash := common.Hash{}
  229. s := common.LeftPadBytes(big.NewInt(int64(n-1)).Bytes(), 32)
  230. copy(parentHash[:], s)
  231. header := fakeHeader(n, parentHash)
  232. // This is the contract we're using. It requests the blockhash for current num (should be all zeroes),
  233. // then iteratively fetches all blockhashes back to n-260.
  234. // It returns
  235. // 1. the first (should be zero)
  236. // 2. the second (should be the parent hash)
  237. // 3. the last non-zero hash
  238. // By making the chain reader return hashes which correlate to the number, we can
  239. // verify that it obtained the right hashes where it should
  240. /*
  241. pragma solidity ^0.5.3;
  242. contract Hasher{
  243. function test() public view returns (bytes32, bytes32, bytes32){
  244. uint256 x = block.number;
  245. bytes32 first;
  246. bytes32 last;
  247. bytes32 zero;
  248. zero = blockhash(x); // Should be zeroes
  249. first = blockhash(x-1);
  250. for(uint256 i = 2 ; i < 260; i++){
  251. bytes32 hash = blockhash(x - i);
  252. if (uint256(hash) != 0){
  253. last = hash;
  254. }
  255. }
  256. return (zero, first, last);
  257. }
  258. }
  259. */
  260. // The contract above
  261. data := common.Hex2Bytes("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")
  262. // The method call to 'test()'
  263. input := common.Hex2Bytes("f8a8fd6d")
  264. chain := &dummyChain{}
  265. ret, _, err := Execute(data, input, &Config{
  266. GetHashFn: core.GetHashFn(header, chain),
  267. BlockNumber: new(big.Int).Set(header.Number),
  268. })
  269. if err != nil {
  270. t.Fatalf("expected no error, got %v", err)
  271. }
  272. if len(ret) != 96 {
  273. t.Fatalf("expected returndata to be 96 bytes, got %d", len(ret))
  274. }
  275. zero := new(big.Int).SetBytes(ret[0:32])
  276. first := new(big.Int).SetBytes(ret[32:64])
  277. last := new(big.Int).SetBytes(ret[64:96])
  278. if zero.BitLen() != 0 {
  279. t.Fatalf("expected zeroes, got %x", ret[0:32])
  280. }
  281. if first.Uint64() != 999 {
  282. t.Fatalf("second block should be 999, got %d (%x)", first, ret[32:64])
  283. }
  284. if last.Uint64() != 744 {
  285. t.Fatalf("last block should be 744, got %d (%x)", last, ret[64:96])
  286. }
  287. if exp, got := 255, chain.counter; exp != got {
  288. t.Errorf("suboptimal; too much chain iteration, expected %d, got %d", exp, got)
  289. }
  290. }
  291. type stepCounter struct {
  292. inner *vm.JSONLogger
  293. steps int
  294. }
  295. func (s *stepCounter) CaptureStart(env *vm.EVM, from common.Address, to common.Address, create bool, input []byte, gas uint64, value *big.Int) {
  296. }
  297. func (s *stepCounter) CaptureFault(env *vm.EVM, pc uint64, op vm.OpCode, gas, cost uint64, scope *vm.ScopeContext, depth int, err error) {
  298. }
  299. func (s *stepCounter) CaptureEnd(output []byte, gasUsed uint64, t time.Duration, err error) {}
  300. func (s *stepCounter) CaptureState(env *vm.EVM, pc uint64, op vm.OpCode, gas, cost uint64, scope *vm.ScopeContext, rData []byte, depth int, err error) {
  301. s.steps++
  302. // Enable this for more output
  303. //s.inner.CaptureState(env, pc, op, gas, cost, memory, stack, rStack, contract, depth, err)
  304. }
  305. // benchmarkNonModifyingCode benchmarks code, but if the code modifies the
  306. // state, this should not be used, since it does not reset the state between runs.
  307. func benchmarkNonModifyingCode(gas uint64, code []byte, name string, b *testing.B) {
  308. cfg := new(Config)
  309. setDefaults(cfg)
  310. cfg.State, _ = state.New(common.Hash{}, state.NewDatabase(rawdb.NewMemoryDatabase()), nil)
  311. cfg.GasLimit = gas
  312. var (
  313. destination = common.BytesToAddress([]byte("contract"))
  314. vmenv = NewEnv(cfg)
  315. sender = vm.AccountRef(cfg.Origin)
  316. )
  317. cfg.State.CreateAccount(destination)
  318. eoa := common.HexToAddress("E0")
  319. {
  320. cfg.State.CreateAccount(eoa)
  321. cfg.State.SetNonce(eoa, 100)
  322. }
  323. reverting := common.HexToAddress("EE")
  324. {
  325. cfg.State.CreateAccount(reverting)
  326. cfg.State.SetCode(reverting, []byte{
  327. byte(vm.PUSH1), 0x00,
  328. byte(vm.PUSH1), 0x00,
  329. byte(vm.REVERT),
  330. })
  331. }
  332. //cfg.State.CreateAccount(cfg.Origin)
  333. // set the receiver's (the executing contract) code for execution.
  334. cfg.State.SetCode(destination, code)
  335. vmenv.Call(sender, destination, nil, gas, cfg.Value)
  336. b.Run(name, func(b *testing.B) {
  337. b.ReportAllocs()
  338. for i := 0; i < b.N; i++ {
  339. vmenv.Call(sender, destination, nil, gas, cfg.Value)
  340. }
  341. })
  342. }
  343. // BenchmarkSimpleLoop test a pretty simple loop which loops until OOG
  344. // 55 ms
  345. func BenchmarkSimpleLoop(b *testing.B) {
  346. staticCallIdentity := []byte{
  347. byte(vm.JUMPDEST), // [ count ]
  348. // push args for the call
  349. byte(vm.PUSH1), 0, // out size
  350. byte(vm.DUP1), // out offset
  351. byte(vm.DUP1), // out insize
  352. byte(vm.DUP1), // in offset
  353. byte(vm.PUSH1), 0x4, // address of identity
  354. byte(vm.GAS), // gas
  355. byte(vm.STATICCALL),
  356. byte(vm.POP), // pop return value
  357. byte(vm.PUSH1), 0, // jumpdestination
  358. byte(vm.JUMP),
  359. }
  360. callIdentity := []byte{
  361. byte(vm.JUMPDEST), // [ count ]
  362. // push args for the call
  363. byte(vm.PUSH1), 0, // out size
  364. byte(vm.DUP1), // out offset
  365. byte(vm.DUP1), // out insize
  366. byte(vm.DUP1), // in offset
  367. byte(vm.DUP1), // value
  368. byte(vm.PUSH1), 0x4, // address of identity
  369. byte(vm.GAS), // gas
  370. byte(vm.CALL),
  371. byte(vm.POP), // pop return value
  372. byte(vm.PUSH1), 0, // jumpdestination
  373. byte(vm.JUMP),
  374. }
  375. callInexistant := []byte{
  376. byte(vm.JUMPDEST), // [ count ]
  377. // push args for the call
  378. byte(vm.PUSH1), 0, // out size
  379. byte(vm.DUP1), // out offset
  380. byte(vm.DUP1), // out insize
  381. byte(vm.DUP1), // in offset
  382. byte(vm.DUP1), // value
  383. byte(vm.PUSH1), 0xff, // address of existing contract
  384. byte(vm.GAS), // gas
  385. byte(vm.CALL),
  386. byte(vm.POP), // pop return value
  387. byte(vm.PUSH1), 0, // jumpdestination
  388. byte(vm.JUMP),
  389. }
  390. callEOA := []byte{
  391. byte(vm.JUMPDEST), // [ count ]
  392. // push args for the call
  393. byte(vm.PUSH1), 0, // out size
  394. byte(vm.DUP1), // out offset
  395. byte(vm.DUP1), // out insize
  396. byte(vm.DUP1), // in offset
  397. byte(vm.DUP1), // value
  398. byte(vm.PUSH1), 0xE0, // address of EOA
  399. byte(vm.GAS), // gas
  400. byte(vm.CALL),
  401. byte(vm.POP), // pop return value
  402. byte(vm.PUSH1), 0, // jumpdestination
  403. byte(vm.JUMP),
  404. }
  405. loopingCode := []byte{
  406. byte(vm.JUMPDEST), // [ count ]
  407. // push args for the call
  408. byte(vm.PUSH1), 0, // out size
  409. byte(vm.DUP1), // out offset
  410. byte(vm.DUP1), // out insize
  411. byte(vm.DUP1), // in offset
  412. byte(vm.PUSH1), 0x4, // address of identity
  413. byte(vm.GAS), // gas
  414. byte(vm.POP), byte(vm.POP), byte(vm.POP), byte(vm.POP), byte(vm.POP), byte(vm.POP),
  415. byte(vm.PUSH1), 0, // jumpdestination
  416. byte(vm.JUMP),
  417. }
  418. calllRevertingContractWithInput := []byte{
  419. byte(vm.JUMPDEST), //
  420. // push args for the call
  421. byte(vm.PUSH1), 0, // out size
  422. byte(vm.DUP1), // out offset
  423. byte(vm.PUSH1), 0x20, // in size
  424. byte(vm.PUSH1), 0x00, // in offset
  425. byte(vm.PUSH1), 0x00, // value
  426. byte(vm.PUSH1), 0xEE, // address of reverting contract
  427. byte(vm.GAS), // gas
  428. byte(vm.CALL),
  429. byte(vm.POP), // pop return value
  430. byte(vm.PUSH1), 0, // jumpdestination
  431. byte(vm.JUMP),
  432. }
  433. //tracer := vm.NewJSONLogger(nil, os.Stdout)
  434. //Execute(loopingCode, nil, &Config{
  435. // EVMConfig: vm.Config{
  436. // Debug: true,
  437. // Tracer: tracer,
  438. // }})
  439. // 100M gas
  440. benchmarkNonModifyingCode(100000000, staticCallIdentity, "staticcall-identity-100M", b)
  441. benchmarkNonModifyingCode(100000000, callIdentity, "call-identity-100M", b)
  442. benchmarkNonModifyingCode(100000000, loopingCode, "loop-100M", b)
  443. benchmarkNonModifyingCode(100000000, callInexistant, "call-nonexist-100M", b)
  444. benchmarkNonModifyingCode(100000000, callEOA, "call-EOA-100M", b)
  445. benchmarkNonModifyingCode(100000000, calllRevertingContractWithInput, "call-reverting-100M", b)
  446. //benchmarkNonModifyingCode(10000000, staticCallIdentity, "staticcall-identity-10M", b)
  447. //benchmarkNonModifyingCode(10000000, loopingCode, "loop-10M", b)
  448. }
  449. // TestEip2929Cases contains various testcases that are used for
  450. // EIP-2929 about gas repricings
  451. func TestEip2929Cases(t *testing.T) {
  452. id := 1
  453. prettyPrint := func(comment string, code []byte) {
  454. instrs := make([]string, 0)
  455. it := asm.NewInstructionIterator(code)
  456. for it.Next() {
  457. if it.Arg() != nil && 0 < len(it.Arg()) {
  458. instrs = append(instrs, fmt.Sprintf("%v 0x%x", it.Op(), it.Arg()))
  459. } else {
  460. instrs = append(instrs, fmt.Sprintf("%v", it.Op()))
  461. }
  462. }
  463. ops := strings.Join(instrs, ", ")
  464. fmt.Printf("### Case %d\n\n", id)
  465. id++
  466. fmt.Printf("%v\n\nBytecode: \n```\n0x%x\n```\nOperations: \n```\n%v\n```\n\n",
  467. comment,
  468. code, ops)
  469. Execute(code, nil, &Config{
  470. EVMConfig: vm.Config{
  471. Debug: true,
  472. Tracer: vm.NewMarkdownLogger(nil, os.Stdout),
  473. ExtraEips: []int{2929},
  474. },
  475. })
  476. }
  477. { // First eip testcase
  478. code := []byte{
  479. // Three checks against a precompile
  480. byte(vm.PUSH1), 1, byte(vm.EXTCODEHASH), byte(vm.POP),
  481. byte(vm.PUSH1), 2, byte(vm.EXTCODESIZE), byte(vm.POP),
  482. byte(vm.PUSH1), 3, byte(vm.BALANCE), byte(vm.POP),
  483. // Three checks against a non-precompile
  484. byte(vm.PUSH1), 0xf1, byte(vm.EXTCODEHASH), byte(vm.POP),
  485. byte(vm.PUSH1), 0xf2, byte(vm.EXTCODESIZE), byte(vm.POP),
  486. byte(vm.PUSH1), 0xf3, byte(vm.BALANCE), byte(vm.POP),
  487. // Same three checks (should be cheaper)
  488. byte(vm.PUSH1), 0xf2, byte(vm.EXTCODEHASH), byte(vm.POP),
  489. byte(vm.PUSH1), 0xf3, byte(vm.EXTCODESIZE), byte(vm.POP),
  490. byte(vm.PUSH1), 0xf1, byte(vm.BALANCE), byte(vm.POP),
  491. // Check the origin, and the 'this'
  492. byte(vm.ORIGIN), byte(vm.BALANCE), byte(vm.POP),
  493. byte(vm.ADDRESS), byte(vm.BALANCE), byte(vm.POP),
  494. byte(vm.STOP),
  495. }
  496. prettyPrint("This checks `EXT`(codehash,codesize,balance) of precompiles, which should be `100`, "+
  497. "and later checks the same operations twice against some non-precompiles. "+
  498. "Those are cheaper second time they are accessed. Lastly, it checks the `BALANCE` of `origin` and `this`.", code)
  499. }
  500. { // EXTCODECOPY
  501. code := []byte{
  502. // extcodecopy( 0xff,0,0,0,0)
  503. byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, //length, codeoffset, memoffset
  504. byte(vm.PUSH1), 0xff, byte(vm.EXTCODECOPY),
  505. // extcodecopy( 0xff,0,0,0,0)
  506. byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, //length, codeoffset, memoffset
  507. byte(vm.PUSH1), 0xff, byte(vm.EXTCODECOPY),
  508. // extcodecopy( this,0,0,0,0)
  509. byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, byte(vm.PUSH1), 0x00, //length, codeoffset, memoffset
  510. byte(vm.ADDRESS), byte(vm.EXTCODECOPY),
  511. byte(vm.STOP),
  512. }
  513. prettyPrint("This checks `extcodecopy( 0xff,0,0,0,0)` twice, (should be expensive first time), "+
  514. "and then does `extcodecopy( this,0,0,0,0)`.", code)
  515. }
  516. { // SLOAD + SSTORE
  517. code := []byte{
  518. // Add slot `0x1` to access list
  519. byte(vm.PUSH1), 0x01, byte(vm.SLOAD), byte(vm.POP), // SLOAD( 0x1) (add to access list)
  520. // Write to `0x1` which is already in access list
  521. byte(vm.PUSH1), 0x11, byte(vm.PUSH1), 0x01, byte(vm.SSTORE), // SSTORE( loc: 0x01, val: 0x11)
  522. // Write to `0x2` which is not in access list
  523. byte(vm.PUSH1), 0x11, byte(vm.PUSH1), 0x02, byte(vm.SSTORE), // SSTORE( loc: 0x02, val: 0x11)
  524. // Write again to `0x2`
  525. byte(vm.PUSH1), 0x11, byte(vm.PUSH1), 0x02, byte(vm.SSTORE), // SSTORE( loc: 0x02, val: 0x11)
  526. // Read slot in access list (0x2)
  527. byte(vm.PUSH1), 0x02, byte(vm.SLOAD), // SLOAD( 0x2)
  528. // Read slot in access list (0x1)
  529. byte(vm.PUSH1), 0x01, byte(vm.SLOAD), // SLOAD( 0x1)
  530. }
  531. prettyPrint("This checks `sload( 0x1)` followed by `sstore(loc: 0x01, val:0x11)`, then 'naked' sstore:"+
  532. "`sstore(loc: 0x02, val:0x11)` twice, and `sload(0x2)`, `sload(0x1)`. ", code)
  533. }
  534. { // Call variants
  535. code := []byte{
  536. // identity precompile
  537. byte(vm.PUSH1), 0x0, byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  538. byte(vm.PUSH1), 0x04, byte(vm.PUSH1), 0x0, byte(vm.CALL), byte(vm.POP),
  539. // random account - call 1
  540. byte(vm.PUSH1), 0x0, byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  541. byte(vm.PUSH1), 0xff, byte(vm.PUSH1), 0x0, byte(vm.CALL), byte(vm.POP),
  542. // random account - call 2
  543. byte(vm.PUSH1), 0x0, byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  544. byte(vm.PUSH1), 0xff, byte(vm.PUSH1), 0x0, byte(vm.STATICCALL), byte(vm.POP),
  545. }
  546. prettyPrint("This calls the `identity`-precompile (cheap), then calls an account (expensive) and `staticcall`s the same"+
  547. "account (cheap)", code)
  548. }
  549. }
  550. // TestColdAccountAccessCost test that the cold account access cost is reported
  551. // correctly
  552. // see: https://github.com/ethereum/go-ethereum/issues/22649
  553. func TestColdAccountAccessCost(t *testing.T) {
  554. for i, tc := range []struct {
  555. code []byte
  556. step int
  557. want uint64
  558. }{
  559. { // EXTCODEHASH(0xff)
  560. code: []byte{byte(vm.PUSH1), 0xFF, byte(vm.EXTCODEHASH), byte(vm.POP)},
  561. step: 1,
  562. want: 2600,
  563. },
  564. { // BALANCE(0xff)
  565. code: []byte{byte(vm.PUSH1), 0xFF, byte(vm.BALANCE), byte(vm.POP)},
  566. step: 1,
  567. want: 2600,
  568. },
  569. { // CALL(0xff)
  570. code: []byte{
  571. byte(vm.PUSH1), 0x0,
  572. byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  573. byte(vm.PUSH1), 0xff, byte(vm.DUP1), byte(vm.CALL), byte(vm.POP),
  574. },
  575. step: 7,
  576. want: 2855,
  577. },
  578. { // CALLCODE(0xff)
  579. code: []byte{
  580. byte(vm.PUSH1), 0x0,
  581. byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  582. byte(vm.PUSH1), 0xff, byte(vm.DUP1), byte(vm.CALLCODE), byte(vm.POP),
  583. },
  584. step: 7,
  585. want: 2855,
  586. },
  587. { // DELEGATECALL(0xff)
  588. code: []byte{
  589. byte(vm.PUSH1), 0x0,
  590. byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  591. byte(vm.PUSH1), 0xff, byte(vm.DUP1), byte(vm.DELEGATECALL), byte(vm.POP),
  592. },
  593. step: 6,
  594. want: 2855,
  595. },
  596. { // STATICCALL(0xff)
  597. code: []byte{
  598. byte(vm.PUSH1), 0x0,
  599. byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1),
  600. byte(vm.PUSH1), 0xff, byte(vm.DUP1), byte(vm.STATICCALL), byte(vm.POP),
  601. },
  602. step: 6,
  603. want: 2855,
  604. },
  605. { // SELFDESTRUCT(0xff)
  606. code: []byte{
  607. byte(vm.PUSH1), 0xff, byte(vm.SELFDESTRUCT),
  608. },
  609. step: 1,
  610. want: 7600,
  611. },
  612. } {
  613. tracer := vm.NewStructLogger(nil)
  614. Execute(tc.code, nil, &Config{
  615. EVMConfig: vm.Config{
  616. Debug: true,
  617. Tracer: tracer,
  618. },
  619. })
  620. have := tracer.StructLogs()[tc.step].GasCost
  621. if want := tc.want; have != want {
  622. for ii, op := range tracer.StructLogs() {
  623. t.Logf("%d: %v %d", ii, op.OpName(), op.GasCost)
  624. }
  625. t.Fatalf("tescase %d, gas report wrong, step %d, have %d want %d", i, tc.step, have, want)
  626. }
  627. }
  628. }