vm_debug.go 21 KB

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  1. package vm
  2. import (
  3. "fmt"
  4. "math"
  5. "math/big"
  6. "github.com/ethereum/go-ethereum/crypto"
  7. "github.com/ethereum/go-ethereum/ethutil"
  8. "github.com/ethereum/go-ethereum/state"
  9. )
  10. type DebugVm struct {
  11. env Environment
  12. logTy byte
  13. logStr string
  14. err error
  15. // Debugging
  16. Dbg Debugger
  17. BreakPoints []int64
  18. Stepping bool
  19. Fn string
  20. Recoverable bool
  21. }
  22. func NewDebugVm(env Environment) *DebugVm {
  23. lt := LogTyPretty
  24. if ethutil.Config.Diff {
  25. lt = LogTyDiff
  26. }
  27. return &DebugVm{env: env, logTy: lt, Recoverable: true}
  28. }
  29. func (self *DebugVm) Run(me, caller ClosureRef, code []byte, value, gas, price *big.Int, callData []byte) (ret []byte, err error) {
  30. self.env.SetDepth(self.env.Depth() + 1)
  31. msg := self.env.State().Manifest().AddMessage(&state.Message{
  32. To: me.Address(), From: caller.Address(),
  33. Input: callData,
  34. Origin: self.env.Origin(),
  35. Block: self.env.BlockHash(), Timestamp: self.env.Time(), Coinbase: self.env.Coinbase(), Number: self.env.BlockNumber(),
  36. Value: value,
  37. })
  38. closure := NewClosure(msg, caller, me, code, gas, price)
  39. if p := Precompiled[string(me.Address())]; p != nil {
  40. return self.RunPrecompiled(p, callData, closure)
  41. }
  42. if self.Recoverable {
  43. // Recover from any require exception
  44. defer func() {
  45. if r := recover(); r != nil {
  46. self.Endl()
  47. closure.UseGas(closure.Gas)
  48. ret = closure.Return(nil)
  49. err = fmt.Errorf("%v", r)
  50. }
  51. }()
  52. }
  53. var (
  54. op OpCode
  55. destinations = analyseJumpDests(closure.Code)
  56. mem = NewMemory()
  57. stack = NewStack()
  58. pc uint64 = 0
  59. step = 0
  60. prevStep = 0
  61. statedb = self.env.State()
  62. require = func(m int) {
  63. if stack.Len() < m {
  64. panic(fmt.Sprintf("%04v (%v) stack err size = %d, required = %d", pc, op, stack.Len(), m))
  65. }
  66. }
  67. jump = func(from uint64, to *big.Int) {
  68. p := to.Uint64()
  69. self.Printf(" ~> %v", to)
  70. // Return to start
  71. if p == 0 {
  72. pc = 0
  73. } else {
  74. nop := OpCode(closure.GetOp(p))
  75. if !(nop == JUMPDEST || destinations[from] != nil) {
  76. panic(fmt.Sprintf("invalid jump destination (%v) %v", nop, p))
  77. } else if nop == JUMP || nop == JUMPI {
  78. panic(fmt.Sprintf("not allowed to JUMP(I) in to JUMP"))
  79. }
  80. pc = to.Uint64()
  81. }
  82. self.Endl()
  83. }
  84. )
  85. // Don't bother with the execution if there's no code.
  86. if len(code) == 0 {
  87. return closure.Return(nil), nil
  88. }
  89. vmlogger.Debugf("(%d) (%x) %x gas: %v (d) %x\n", self.env.Depth(), caller.Address()[:4], closure.Address(), closure.Gas, callData)
  90. for {
  91. prevStep = step
  92. // The base for all big integer arithmetic
  93. base := new(big.Int)
  94. step++
  95. // Get the memory location of pc
  96. op = closure.GetOp(pc)
  97. gas := new(big.Int)
  98. addStepGasUsage := func(amount *big.Int) {
  99. if amount.Cmp(ethutil.Big0) >= 0 {
  100. gas.Add(gas, amount)
  101. }
  102. }
  103. addStepGasUsage(GasStep)
  104. var newMemSize *big.Int = ethutil.Big0
  105. // Stack Check, memory resize & gas phase
  106. switch op {
  107. // Stack checks only
  108. case ISZERO, CALLDATALOAD, POP, JUMP, NOT: // 1
  109. require(1)
  110. case ADD, SUB, DIV, SDIV, MOD, SMOD, LT, GT, SLT, SGT, EQ, AND, OR, XOR, BYTE: // 2
  111. require(2)
  112. case ADDMOD, MULMOD: // 3
  113. require(3)
  114. case SWAP1, SWAP2, SWAP3, SWAP4, SWAP5, SWAP6, SWAP7, SWAP8, SWAP9, SWAP10, SWAP11, SWAP12, SWAP13, SWAP14, SWAP15, SWAP16:
  115. n := int(op - SWAP1 + 2)
  116. require(n)
  117. case DUP1, DUP2, DUP3, DUP4, DUP5, DUP6, DUP7, DUP8, DUP9, DUP10, DUP11, DUP12, DUP13, DUP14, DUP15, DUP16:
  118. n := int(op - DUP1 + 1)
  119. require(n)
  120. case LOG0, LOG1, LOG2, LOG3, LOG4:
  121. n := int(op - LOG0)
  122. require(n + 2)
  123. gas.Set(GasLog)
  124. addStepGasUsage(new(big.Int).Mul(big.NewInt(int64(n)), GasLog))
  125. mSize, mStart := stack.Peekn()
  126. addStepGasUsage(mSize)
  127. newMemSize = calcMemSize(mStart, mSize)
  128. case EXP:
  129. require(2)
  130. gas.Set(big.NewInt(int64(len(stack.data[stack.Len()-2].Bytes()) + 1)))
  131. // Gas only
  132. case STOP:
  133. gas.Set(ethutil.Big0)
  134. case SUICIDE:
  135. require(1)
  136. gas.Set(ethutil.Big0)
  137. case SLOAD:
  138. require(1)
  139. gas.Set(GasSLoad)
  140. // Memory resize & Gas
  141. case SSTORE:
  142. require(2)
  143. var mult *big.Int
  144. y, x := stack.Peekn()
  145. val := statedb.GetState(closure.Address(), x.Bytes())
  146. if len(val) == 0 && len(y.Bytes()) > 0 {
  147. // 0 => non 0
  148. mult = ethutil.Big3
  149. } else if len(val) > 0 && len(y.Bytes()) == 0 {
  150. statedb.Refund(caller.Address(), GasSStoreRefund)
  151. mult = ethutil.Big0
  152. } else {
  153. // non 0 => non 0 (or 0 => 0)
  154. mult = ethutil.Big1
  155. }
  156. gas.Set(new(big.Int).Mul(mult, GasSStore))
  157. case BALANCE:
  158. require(1)
  159. gas.Set(GasBalance)
  160. case MSTORE:
  161. require(2)
  162. newMemSize = calcMemSize(stack.Peek(), u256(32))
  163. case MLOAD:
  164. require(1)
  165. newMemSize = calcMemSize(stack.Peek(), u256(32))
  166. case MSTORE8:
  167. require(2)
  168. newMemSize = calcMemSize(stack.Peek(), u256(1))
  169. case RETURN:
  170. require(2)
  171. newMemSize = calcMemSize(stack.Peek(), stack.data[stack.Len()-2])
  172. case SHA3:
  173. require(2)
  174. gas.Set(GasSha)
  175. newMemSize = calcMemSize(stack.Peek(), stack.data[stack.Len()-2])
  176. case CALLDATACOPY:
  177. require(2)
  178. newMemSize = calcMemSize(stack.Peek(), stack.data[stack.Len()-3])
  179. case CODECOPY:
  180. require(3)
  181. newMemSize = calcMemSize(stack.Peek(), stack.data[stack.Len()-3])
  182. case EXTCODECOPY:
  183. require(4)
  184. newMemSize = calcMemSize(stack.data[stack.Len()-2], stack.data[stack.Len()-4])
  185. case CALL, CALLCODE:
  186. require(7)
  187. gas.Set(GasCall)
  188. addStepGasUsage(stack.data[stack.Len()-1])
  189. x := calcMemSize(stack.data[stack.Len()-6], stack.data[stack.Len()-7])
  190. y := calcMemSize(stack.data[stack.Len()-4], stack.data[stack.Len()-5])
  191. newMemSize = ethutil.BigMax(x, y)
  192. case CREATE:
  193. require(3)
  194. gas.Set(GasCreate)
  195. newMemSize = calcMemSize(stack.data[stack.Len()-2], stack.data[stack.Len()-3])
  196. }
  197. if newMemSize.Cmp(ethutil.Big0) > 0 {
  198. newMemSize.Add(newMemSize, u256(31))
  199. newMemSize.Div(newMemSize, u256(32))
  200. newMemSize.Mul(newMemSize, u256(32))
  201. switch op {
  202. case CALLDATACOPY, CODECOPY, EXTCODECOPY:
  203. addStepGasUsage(new(big.Int).Div(newMemSize, u256(32)))
  204. case SHA3:
  205. g := new(big.Int).Div(newMemSize, u256(32))
  206. g.Mul(g, GasSha3Byte)
  207. addStepGasUsage(g)
  208. }
  209. if newMemSize.Cmp(u256(int64(mem.Len()))) > 0 {
  210. memGasUsage := new(big.Int).Sub(newMemSize, u256(int64(mem.Len())))
  211. memGasUsage.Mul(GasMemory, memGasUsage)
  212. memGasUsage.Div(memGasUsage, u256(32))
  213. addStepGasUsage(memGasUsage)
  214. }
  215. }
  216. self.Printf("(pc) %-3d -o- %-14s", pc, op.String())
  217. self.Printf(" (m) %-4d (s) %-4d (g) %-3v (%v)", mem.Len(), stack.Len(), gas, closure.Gas)
  218. if !closure.UseGas(gas) {
  219. self.Endl()
  220. tmp := new(big.Int).Set(closure.Gas)
  221. closure.UseGas(closure.Gas)
  222. return closure.Return(nil), OOG(gas, tmp)
  223. }
  224. mem.Resize(newMemSize.Uint64())
  225. switch op {
  226. // 0x20 range
  227. case ADD:
  228. x, y := stack.Popn()
  229. self.Printf(" %v + %v", y, x)
  230. base.Add(y, x)
  231. U256(base)
  232. self.Printf(" = %v", base)
  233. // Pop result back on the stack
  234. stack.Push(base)
  235. case SUB:
  236. x, y := stack.Popn()
  237. self.Printf(" %v - %v", y, x)
  238. base.Sub(y, x)
  239. U256(base)
  240. self.Printf(" = %v", base)
  241. // Pop result back on the stack
  242. stack.Push(base)
  243. case MUL:
  244. x, y := stack.Popn()
  245. self.Printf(" %v * %v", y, x)
  246. base.Mul(y, x)
  247. U256(base)
  248. self.Printf(" = %v", base)
  249. // Pop result back on the stack
  250. stack.Push(base)
  251. case DIV:
  252. x, y := stack.Pop(), stack.Pop()
  253. self.Printf(" %v / %v", x, y)
  254. if y.Cmp(ethutil.Big0) != 0 {
  255. base.Div(x, y)
  256. }
  257. U256(base)
  258. self.Printf(" = %v", base)
  259. // Pop result back on the stack
  260. stack.Push(base)
  261. case SDIV:
  262. x, y := S256(stack.Pop()), S256(stack.Pop())
  263. self.Printf(" %v / %v", x, y)
  264. if y.Cmp(ethutil.Big0) == 0 {
  265. base.Set(ethutil.Big0)
  266. } else {
  267. n := new(big.Int)
  268. if new(big.Int).Mul(x, y).Cmp(ethutil.Big0) < 0 {
  269. n.SetInt64(-1)
  270. } else {
  271. n.SetInt64(1)
  272. }
  273. base.Div(x.Abs(x), y.Abs(y)).Mul(base, n)
  274. U256(base)
  275. }
  276. self.Printf(" = %v", base)
  277. stack.Push(base)
  278. case MOD:
  279. x, y := stack.Pop(), stack.Pop()
  280. self.Printf(" %v %% %v", x, y)
  281. if y.Cmp(ethutil.Big0) == 0 {
  282. base.Set(ethutil.Big0)
  283. } else {
  284. base.Mod(x, y)
  285. }
  286. U256(base)
  287. self.Printf(" = %v", base)
  288. stack.Push(base)
  289. case SMOD:
  290. x, y := S256(stack.Pop()), S256(stack.Pop())
  291. self.Printf(" %v %% %v", x, y)
  292. if y.Cmp(ethutil.Big0) == 0 {
  293. base.Set(ethutil.Big0)
  294. } else {
  295. n := new(big.Int)
  296. if x.Cmp(ethutil.Big0) < 0 {
  297. n.SetInt64(-1)
  298. } else {
  299. n.SetInt64(1)
  300. }
  301. base.Mod(x.Abs(x), y.Abs(y)).Mul(base, n)
  302. U256(base)
  303. }
  304. self.Printf(" = %v", base)
  305. stack.Push(base)
  306. case EXP:
  307. x, y := stack.Popn()
  308. self.Printf(" %v ** %v", y, x)
  309. base.Exp(y, x, Pow256)
  310. U256(base)
  311. self.Printf(" = %v", base)
  312. stack.Push(base)
  313. case SIGNEXTEND:
  314. back := stack.Pop().Uint64()
  315. if back < 31 {
  316. bit := uint(back*8 + 7)
  317. num := stack.Pop()
  318. mask := new(big.Int).Lsh(ethutil.Big1, bit)
  319. mask.Sub(mask, ethutil.Big1)
  320. if ethutil.BitTest(num, int(bit)) {
  321. num.Or(num, mask.Not(mask))
  322. } else {
  323. num.And(num, mask)
  324. }
  325. num = U256(num)
  326. self.Printf(" = %v", num)
  327. stack.Push(num)
  328. }
  329. case NOT:
  330. base.Sub(Pow256, stack.Pop()).Sub(base, ethutil.Big1)
  331. // Not needed
  332. //base = U256(base)
  333. stack.Push(base)
  334. case LT:
  335. x, y := stack.Popn()
  336. self.Printf(" %v < %v", y, x)
  337. // x < y
  338. if y.Cmp(x) < 0 {
  339. stack.Push(ethutil.BigTrue)
  340. } else {
  341. stack.Push(ethutil.BigFalse)
  342. }
  343. case GT:
  344. x, y := stack.Popn()
  345. self.Printf(" %v > %v", y, x)
  346. // x > y
  347. if y.Cmp(x) > 0 {
  348. stack.Push(ethutil.BigTrue)
  349. } else {
  350. stack.Push(ethutil.BigFalse)
  351. }
  352. case SLT:
  353. y, x := S256(stack.Pop()), S256(stack.Pop())
  354. self.Printf(" %v < %v", y, x)
  355. // x < y
  356. if y.Cmp(S256(x)) < 0 {
  357. stack.Push(ethutil.BigTrue)
  358. } else {
  359. stack.Push(ethutil.BigFalse)
  360. }
  361. case SGT:
  362. y, x := S256(stack.Pop()), S256(stack.Pop())
  363. self.Printf(" %v > %v", y, x)
  364. // x > y
  365. if y.Cmp(x) > 0 {
  366. stack.Push(ethutil.BigTrue)
  367. } else {
  368. stack.Push(ethutil.BigFalse)
  369. }
  370. case EQ:
  371. x, y := stack.Popn()
  372. self.Printf(" %v == %v", y, x)
  373. // x == y
  374. if x.Cmp(y) == 0 {
  375. stack.Push(ethutil.BigTrue)
  376. } else {
  377. stack.Push(ethutil.BigFalse)
  378. }
  379. case ISZERO:
  380. x := stack.Pop()
  381. if x.Cmp(ethutil.BigFalse) > 0 {
  382. stack.Push(ethutil.BigFalse)
  383. } else {
  384. stack.Push(ethutil.BigTrue)
  385. }
  386. // 0x10 range
  387. case AND:
  388. x, y := stack.Popn()
  389. self.Printf(" %v & %v", y, x)
  390. stack.Push(base.And(y, x))
  391. case OR:
  392. x, y := stack.Popn()
  393. self.Printf(" %v | %v", y, x)
  394. stack.Push(base.Or(y, x))
  395. case XOR:
  396. x, y := stack.Popn()
  397. self.Printf(" %v ^ %v", y, x)
  398. stack.Push(base.Xor(y, x))
  399. case BYTE:
  400. val, th := stack.Popn()
  401. if th.Cmp(big.NewInt(32)) < 0 {
  402. byt := big.NewInt(int64(ethutil.LeftPadBytes(val.Bytes(), 32)[th.Int64()]))
  403. base.Set(byt)
  404. } else {
  405. base.Set(ethutil.BigFalse)
  406. }
  407. self.Printf(" => 0x%x", base.Bytes())
  408. stack.Push(base)
  409. case ADDMOD:
  410. x := stack.Pop()
  411. y := stack.Pop()
  412. z := stack.Pop()
  413. base.Add(x, y)
  414. base.Mod(base, z)
  415. U256(base)
  416. self.Printf(" = %v", base)
  417. stack.Push(base)
  418. case MULMOD:
  419. x := stack.Pop()
  420. y := stack.Pop()
  421. z := stack.Pop()
  422. base.Mul(x, y)
  423. base.Mod(base, z)
  424. U256(base)
  425. self.Printf(" = %v", base)
  426. stack.Push(base)
  427. // 0x20 range
  428. case SHA3:
  429. size, offset := stack.Popn()
  430. data := crypto.Sha3(mem.Get(offset.Int64(), size.Int64()))
  431. stack.Push(ethutil.BigD(data))
  432. self.Printf(" => %x", data)
  433. // 0x30 range
  434. case ADDRESS:
  435. stack.Push(ethutil.BigD(closure.Address()))
  436. self.Printf(" => %x", closure.Address())
  437. case BALANCE:
  438. addr := stack.Pop().Bytes()
  439. balance := statedb.GetBalance(addr)
  440. stack.Push(balance)
  441. self.Printf(" => %v (%x)", balance, addr)
  442. case ORIGIN:
  443. origin := self.env.Origin()
  444. stack.Push(ethutil.BigD(origin))
  445. self.Printf(" => %x", origin)
  446. case CALLER:
  447. caller := closure.caller.Address()
  448. stack.Push(ethutil.BigD(caller))
  449. self.Printf(" => %x", caller)
  450. case CALLVALUE:
  451. stack.Push(value)
  452. self.Printf(" => %v", value)
  453. case CALLDATALOAD:
  454. var (
  455. offset = stack.Pop()
  456. data = make([]byte, 32)
  457. lenData = big.NewInt(int64(len(callData)))
  458. )
  459. if lenData.Cmp(offset) >= 0 {
  460. length := new(big.Int).Add(offset, ethutil.Big32)
  461. length = ethutil.BigMin(length, lenData)
  462. copy(data, callData[offset.Int64():length.Int64()])
  463. }
  464. self.Printf(" => 0x%x", data)
  465. stack.Push(ethutil.BigD(data))
  466. case CALLDATASIZE:
  467. l := int64(len(callData))
  468. stack.Push(big.NewInt(l))
  469. self.Printf(" => %d", l)
  470. case CALLDATACOPY:
  471. var (
  472. size = uint64(len(callData))
  473. mOff = stack.Pop().Uint64()
  474. cOff = stack.Pop().Uint64()
  475. l = stack.Pop().Uint64()
  476. )
  477. if cOff > size {
  478. cOff = 0
  479. l = 0
  480. } else if cOff+l > size {
  481. l = 0
  482. }
  483. code := callData[cOff : cOff+l]
  484. mem.Set(mOff, l, code)
  485. self.Printf(" => [%v, %v, %v] %x", mOff, cOff, l, callData[cOff:cOff+l])
  486. case CODESIZE, EXTCODESIZE:
  487. var code []byte
  488. if op == EXTCODESIZE {
  489. addr := stack.Pop().Bytes()
  490. code = statedb.GetCode(addr)
  491. } else {
  492. code = closure.Code
  493. }
  494. l := big.NewInt(int64(len(code)))
  495. stack.Push(l)
  496. self.Printf(" => %d", l)
  497. case CODECOPY, EXTCODECOPY:
  498. var code []byte
  499. if op == EXTCODECOPY {
  500. addr := stack.Pop().Bytes()
  501. code = statedb.GetCode(addr)
  502. } else {
  503. code = closure.Code
  504. }
  505. var (
  506. size = uint64(len(code))
  507. mOff = stack.Pop().Uint64()
  508. cOff = stack.Pop().Uint64()
  509. l = stack.Pop().Uint64()
  510. )
  511. if cOff > size {
  512. cOff = 0
  513. l = 0
  514. } else if cOff+l > size {
  515. l = uint64(math.Min(float64(cOff+l), float64(size)))
  516. }
  517. codeCopy := code[cOff : cOff+l]
  518. mem.Set(mOff, l, codeCopy)
  519. self.Printf(" => [%v, %v, %v] %x", mOff, cOff, l, code[cOff:cOff+l])
  520. case GASPRICE:
  521. stack.Push(closure.Price)
  522. self.Printf(" => %v", closure.Price)
  523. // 0x40 range
  524. case PREVHASH:
  525. prevHash := self.env.PrevHash()
  526. stack.Push(ethutil.BigD(prevHash))
  527. self.Printf(" => 0x%x", prevHash)
  528. case COINBASE:
  529. coinbase := self.env.Coinbase()
  530. stack.Push(ethutil.BigD(coinbase))
  531. self.Printf(" => 0x%x", coinbase)
  532. case TIMESTAMP:
  533. time := self.env.Time()
  534. stack.Push(big.NewInt(time))
  535. self.Printf(" => 0x%x", time)
  536. case NUMBER:
  537. number := self.env.BlockNumber()
  538. stack.Push(number)
  539. self.Printf(" => 0x%x", number.Bytes())
  540. case DIFFICULTY:
  541. difficulty := self.env.Difficulty()
  542. stack.Push(difficulty)
  543. self.Printf(" => 0x%x", difficulty.Bytes())
  544. case GASLIMIT:
  545. stack.Push(self.env.GasLimit())
  546. // 0x50 range
  547. case PUSH1, PUSH2, PUSH3, PUSH4, PUSH5, PUSH6, PUSH7, PUSH8, PUSH9, PUSH10, PUSH11, PUSH12, PUSH13, PUSH14, PUSH15, PUSH16, PUSH17, PUSH18, PUSH19, PUSH20, PUSH21, PUSH22, PUSH23, PUSH24, PUSH25, PUSH26, PUSH27, PUSH28, PUSH29, PUSH30, PUSH31, PUSH32:
  548. //a := big.NewInt(int64(op) - int64(PUSH1) + 1)
  549. a := uint64(op - PUSH1 + 1)
  550. //pc.Add(pc, ethutil.Big1)
  551. val := ethutil.BigD(closure.GetRangeValue(pc+1, a))
  552. // Push value to stack
  553. stack.Push(val)
  554. pc += a
  555. //pc.Add(pc, a.Sub(a, big.NewInt(1)))
  556. step += int(op) - int(PUSH1) + 1
  557. self.Printf(" => 0x%x", val.Bytes())
  558. case POP:
  559. stack.Pop()
  560. case DUP1, DUP2, DUP3, DUP4, DUP5, DUP6, DUP7, DUP8, DUP9, DUP10, DUP11, DUP12, DUP13, DUP14, DUP15, DUP16:
  561. n := int(op - DUP1 + 1)
  562. stack.Dupn(n)
  563. self.Printf(" => [%d] 0x%x", n, stack.Peek().Bytes())
  564. case SWAP1, SWAP2, SWAP3, SWAP4, SWAP5, SWAP6, SWAP7, SWAP8, SWAP9, SWAP10, SWAP11, SWAP12, SWAP13, SWAP14, SWAP15, SWAP16:
  565. n := int(op - SWAP1 + 2)
  566. x, y := stack.Swapn(n)
  567. self.Printf(" => [%d] %x [0] %x", n, x.Bytes(), y.Bytes())
  568. case LOG0, LOG1, LOG2, LOG3, LOG4:
  569. n := int(op - LOG0)
  570. topics := make([][]byte, n)
  571. mSize, mStart := stack.Popn()
  572. for i := 0; i < n; i++ {
  573. topics[i] = ethutil.LeftPadBytes(stack.Pop().Bytes(), 32)
  574. }
  575. data := mem.Geti(mStart.Int64(), mSize.Int64())
  576. log := &Log{closure.Address(), topics, data}
  577. self.env.AddLog(log)
  578. self.Printf(" => %v", log)
  579. case MLOAD:
  580. offset := stack.Pop()
  581. val := ethutil.BigD(mem.Get(offset.Int64(), 32))
  582. stack.Push(val)
  583. self.Printf(" => 0x%x", val.Bytes())
  584. case MSTORE: // Store the value at stack top-1 in to memory at location stack top
  585. // Pop value of the stack
  586. val, mStart := stack.Popn()
  587. mem.Set(mStart.Uint64(), 32, ethutil.BigToBytes(val, 256))
  588. self.Printf(" => 0x%x", val)
  589. case MSTORE8:
  590. off := stack.Pop()
  591. val := stack.Pop()
  592. mem.store[off.Int64()] = byte(val.Int64() & 0xff)
  593. self.Printf(" => [%v] 0x%x", off, val)
  594. case SLOAD:
  595. loc := stack.Pop()
  596. val := ethutil.BigD(statedb.GetState(closure.Address(), loc.Bytes()))
  597. stack.Push(val)
  598. self.Printf(" {0x%x : 0x%x}", loc.Bytes(), val.Bytes())
  599. case SSTORE:
  600. val, loc := stack.Popn()
  601. statedb.SetState(closure.Address(), loc.Bytes(), val)
  602. closure.message.AddStorageChange(loc.Bytes())
  603. self.Printf(" {0x%x : 0x%x}", loc.Bytes(), val.Bytes())
  604. case JUMP:
  605. jump(pc, stack.Pop())
  606. continue
  607. case JUMPI:
  608. cond, pos := stack.Popn()
  609. if cond.Cmp(ethutil.BigTrue) >= 0 {
  610. jump(pc, pos)
  611. continue
  612. }
  613. case JUMPDEST:
  614. case PC:
  615. stack.Push(big.NewInt(int64(pc)))
  616. case MSIZE:
  617. stack.Push(big.NewInt(int64(mem.Len())))
  618. case GAS:
  619. stack.Push(closure.Gas)
  620. // 0x60 range
  621. case CREATE:
  622. var (
  623. err error
  624. value = stack.Pop()
  625. size, offset = stack.Popn()
  626. input = mem.Get(offset.Int64(), size.Int64())
  627. gas = new(big.Int).Set(closure.Gas)
  628. // Snapshot the current stack so we are able to
  629. // revert back to it later.
  630. //snapshot = self.env.State().Copy()
  631. )
  632. // Generate a new address
  633. n := statedb.GetNonce(closure.Address())
  634. addr := crypto.CreateAddress(closure.Address(), n)
  635. statedb.SetNonce(closure.Address(), n+1)
  636. self.Printf(" (*) %x", addr).Endl()
  637. closure.UseGas(closure.Gas)
  638. ret, err, ref := self.env.Create(closure, addr, input, gas, price, value)
  639. if err != nil {
  640. stack.Push(ethutil.BigFalse)
  641. self.Printf("CREATE err %v", err)
  642. } else {
  643. // gas < len(ret) * CreateDataGas == NO_CODE
  644. dataGas := big.NewInt(int64(len(ret)))
  645. dataGas.Mul(dataGas, GasCreateByte)
  646. if closure.UseGas(dataGas) {
  647. ref.SetCode(ret)
  648. msg.Output = ret
  649. }
  650. stack.Push(ethutil.BigD(addr))
  651. }
  652. self.Endl()
  653. // Debug hook
  654. if self.Dbg != nil {
  655. self.Dbg.SetCode(closure.Code)
  656. }
  657. case CALL, CALLCODE:
  658. self.Endl()
  659. gas := stack.Pop()
  660. // Pop gas and value of the stack.
  661. value, addr := stack.Popn()
  662. // Pop input size and offset
  663. inSize, inOffset := stack.Popn()
  664. // Pop return size and offset
  665. retSize, retOffset := stack.Popn()
  666. // Get the arguments from the memory
  667. args := mem.Get(inOffset.Int64(), inSize.Int64())
  668. var (
  669. ret []byte
  670. err error
  671. )
  672. if op == CALLCODE {
  673. ret, err = self.env.CallCode(closure, addr.Bytes(), args, gas, price, value)
  674. } else {
  675. ret, err = self.env.Call(closure, addr.Bytes(), args, gas, price, value)
  676. }
  677. if err != nil {
  678. stack.Push(ethutil.BigFalse)
  679. vmlogger.Debugln(err)
  680. } else {
  681. stack.Push(ethutil.BigTrue)
  682. msg.Output = ret
  683. mem.Set(retOffset.Uint64(), retSize.Uint64(), ret)
  684. }
  685. self.Printf("resume %x (%v)", closure.Address(), closure.Gas)
  686. // Debug hook
  687. if self.Dbg != nil {
  688. self.Dbg.SetCode(closure.Code)
  689. }
  690. case RETURN:
  691. size, offset := stack.Popn()
  692. ret := mem.Get(offset.Int64(), size.Int64())
  693. self.Printf(" => (%d) 0x%x", len(ret), ret).Endl()
  694. return closure.Return(ret), nil
  695. case SUICIDE:
  696. receiver := statedb.GetOrNewStateObject(stack.Pop().Bytes())
  697. balance := statedb.GetBalance(closure.Address())
  698. self.Printf(" => (%x) %v", receiver.Address()[:4], balance)
  699. receiver.AddAmount(balance)
  700. statedb.Delete(closure.Address())
  701. fallthrough
  702. case STOP: // Stop the closure
  703. self.Endl()
  704. return closure.Return(nil), nil
  705. default:
  706. vmlogger.Debugf("(pc) %-3v Invalid opcode %x\n", pc, op)
  707. closure.ReturnGas(big.NewInt(1), nil)
  708. return closure.Return(nil), fmt.Errorf("Invalid opcode %x", op)
  709. }
  710. pc++
  711. self.Endl()
  712. if self.Dbg != nil {
  713. for _, instrNo := range self.Dbg.BreakPoints() {
  714. if pc == uint64(instrNo) {
  715. self.Stepping = true
  716. if !self.Dbg.BreakHook(prevStep, op, mem, stack, statedb.GetStateObject(closure.Address())) {
  717. return nil, nil
  718. }
  719. } else if self.Stepping {
  720. if !self.Dbg.StepHook(prevStep, op, mem, stack, statedb.GetStateObject(closure.Address())) {
  721. return nil, nil
  722. }
  723. }
  724. }
  725. }
  726. }
  727. }
  728. func (self *DebugVm) RunPrecompiled(p *PrecompiledAccount, callData []byte, closure *Closure) (ret []byte, err error) {
  729. gas := p.Gas(len(callData))
  730. if closure.UseGas(gas) {
  731. ret = p.Call(callData)
  732. self.Printf("NATIVE_FUNC => %x", ret)
  733. self.Endl()
  734. return closure.Return(ret), nil
  735. } else {
  736. self.Endl()
  737. tmp := new(big.Int).Set(closure.Gas)
  738. closure.UseGas(closure.Gas)
  739. return closure.Return(nil), OOG(gas, tmp)
  740. }
  741. }
  742. func (self *DebugVm) Printf(format string, v ...interface{}) VirtualMachine {
  743. if self.logTy == LogTyPretty {
  744. self.logStr += fmt.Sprintf(format, v...)
  745. }
  746. return self
  747. }
  748. func (self *DebugVm) Endl() VirtualMachine {
  749. if self.logTy == LogTyPretty {
  750. vmlogger.Debugln(self.logStr)
  751. self.logStr = ""
  752. }
  753. return self
  754. }
  755. func (self *DebugVm) Env() Environment {
  756. return self.env
  757. }