github.com/zjj1991/quorum@v0.0.0-20190524123704-ae4b0a1e1a19/core/vm/instructions.go (about) 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 17 package vm 18 19 import ( 20 "errors" 21 "fmt" 22 "math/big" 23 24 "github.com/ethereum/go-ethereum/common" 25 "github.com/ethereum/go-ethereum/common/math" 26 "github.com/ethereum/go-ethereum/core/types" 27 "github.com/ethereum/go-ethereum/crypto/sha3" 28 "github.com/ethereum/go-ethereum/params" 29 ) 30 31 var ( 32 bigZero = new(big.Int) 33 tt255 = math.BigPow(2, 255) 34 errWriteProtection = errors.New("evm: write protection") 35 errReturnDataOutOfBounds = errors.New("evm: return data out of bounds") 36 errExecutionReverted = errors.New("evm: execution reverted") 37 errMaxCodeSizeExceeded = errors.New("evm: max code size exceeded") 38 ) 39 40 func opAdd(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 41 x, y := stack.pop(), stack.peek() 42 math.U256(y.Add(x, y)) 43 44 interpreter.intPool.put(x) 45 return nil, nil 46 } 47 48 func opSub(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 49 x, y := stack.pop(), stack.peek() 50 math.U256(y.Sub(x, y)) 51 52 interpreter.intPool.put(x) 53 return nil, nil 54 } 55 56 func opMul(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 57 x, y := stack.pop(), stack.pop() 58 stack.push(math.U256(x.Mul(x, y))) 59 60 interpreter.intPool.put(y) 61 62 return nil, nil 63 } 64 65 func opDiv(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 66 x, y := stack.pop(), stack.peek() 67 if y.Sign() != 0 { 68 math.U256(y.Div(x, y)) 69 } else { 70 y.SetUint64(0) 71 } 72 interpreter.intPool.put(x) 73 return nil, nil 74 } 75 76 func opSdiv(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 77 x, y := math.S256(stack.pop()), math.S256(stack.pop()) 78 res := interpreter.intPool.getZero() 79 80 if y.Sign() == 0 || x.Sign() == 0 { 81 stack.push(res) 82 } else { 83 if x.Sign() != y.Sign() { 84 res.Div(x.Abs(x), y.Abs(y)) 85 res.Neg(res) 86 } else { 87 res.Div(x.Abs(x), y.Abs(y)) 88 } 89 stack.push(math.U256(res)) 90 } 91 interpreter.intPool.put(x, y) 92 return nil, nil 93 } 94 95 func opMod(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 96 x, y := stack.pop(), stack.pop() 97 if y.Sign() == 0 { 98 stack.push(x.SetUint64(0)) 99 } else { 100 stack.push(math.U256(x.Mod(x, y))) 101 } 102 interpreter.intPool.put(y) 103 return nil, nil 104 } 105 106 func opSmod(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 107 x, y := math.S256(stack.pop()), math.S256(stack.pop()) 108 res := interpreter.intPool.getZero() 109 110 if y.Sign() == 0 { 111 stack.push(res) 112 } else { 113 if x.Sign() < 0 { 114 res.Mod(x.Abs(x), y.Abs(y)) 115 res.Neg(res) 116 } else { 117 res.Mod(x.Abs(x), y.Abs(y)) 118 } 119 stack.push(math.U256(res)) 120 } 121 interpreter.intPool.put(x, y) 122 return nil, nil 123 } 124 125 func opExp(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 126 base, exponent := stack.pop(), stack.pop() 127 // some shortcuts 128 cmpToOne := exponent.Cmp(big1) 129 if cmpToOne < 0 { // Exponent is zero 130 // x ^ 0 == 1 131 stack.push(base.SetUint64(1)) 132 } else if base.Sign() == 0 { 133 // 0 ^ y, if y != 0, == 0 134 stack.push(base.SetUint64(0)) 135 } else if cmpToOne == 0 { // Exponent is one 136 // x ^ 1 == x 137 stack.push(base) 138 } else { 139 stack.push(math.Exp(base, exponent)) 140 interpreter.intPool.put(base) 141 } 142 interpreter.intPool.put(exponent) 143 return nil, nil 144 } 145 146 func opSignExtend(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 147 back := stack.pop() 148 if back.Cmp(big.NewInt(31)) < 0 { 149 bit := uint(back.Uint64()*8 + 7) 150 num := stack.pop() 151 mask := back.Lsh(common.Big1, bit) 152 mask.Sub(mask, common.Big1) 153 if num.Bit(int(bit)) > 0 { 154 num.Or(num, mask.Not(mask)) 155 } else { 156 num.And(num, mask) 157 } 158 159 stack.push(math.U256(num)) 160 } 161 162 interpreter.intPool.put(back) 163 return nil, nil 164 } 165 166 func opNot(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 167 x := stack.peek() 168 math.U256(x.Not(x)) 169 return nil, nil 170 } 171 172 func opLt(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 173 x, y := stack.pop(), stack.peek() 174 if x.Cmp(y) < 0 { 175 y.SetUint64(1) 176 } else { 177 y.SetUint64(0) 178 } 179 interpreter.intPool.put(x) 180 return nil, nil 181 } 182 183 func opGt(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 184 x, y := stack.pop(), stack.peek() 185 if x.Cmp(y) > 0 { 186 y.SetUint64(1) 187 } else { 188 y.SetUint64(0) 189 } 190 interpreter.intPool.put(x) 191 return nil, nil 192 } 193 194 func opSlt(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 195 x, y := stack.pop(), stack.peek() 196 197 xSign := x.Cmp(tt255) 198 ySign := y.Cmp(tt255) 199 200 switch { 201 case xSign >= 0 && ySign < 0: 202 y.SetUint64(1) 203 204 case xSign < 0 && ySign >= 0: 205 y.SetUint64(0) 206 207 default: 208 if x.Cmp(y) < 0 { 209 y.SetUint64(1) 210 } else { 211 y.SetUint64(0) 212 } 213 } 214 interpreter.intPool.put(x) 215 return nil, nil 216 } 217 218 func opSgt(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 219 x, y := stack.pop(), stack.peek() 220 221 xSign := x.Cmp(tt255) 222 ySign := y.Cmp(tt255) 223 224 switch { 225 case xSign >= 0 && ySign < 0: 226 y.SetUint64(0) 227 228 case xSign < 0 && ySign >= 0: 229 y.SetUint64(1) 230 231 default: 232 if x.Cmp(y) > 0 { 233 y.SetUint64(1) 234 } else { 235 y.SetUint64(0) 236 } 237 } 238 interpreter.intPool.put(x) 239 return nil, nil 240 } 241 242 func opEq(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 243 x, y := stack.pop(), stack.peek() 244 if x.Cmp(y) == 0 { 245 y.SetUint64(1) 246 } else { 247 y.SetUint64(0) 248 } 249 interpreter.intPool.put(x) 250 return nil, nil 251 } 252 253 func opIszero(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 254 x := stack.peek() 255 if x.Sign() > 0 { 256 x.SetUint64(0) 257 } else { 258 x.SetUint64(1) 259 } 260 return nil, nil 261 } 262 263 func opAnd(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 264 x, y := stack.pop(), stack.pop() 265 stack.push(x.And(x, y)) 266 267 interpreter.intPool.put(y) 268 return nil, nil 269 } 270 271 func opOr(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 272 x, y := stack.pop(), stack.peek() 273 y.Or(x, y) 274 275 interpreter.intPool.put(x) 276 return nil, nil 277 } 278 279 func opXor(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 280 x, y := stack.pop(), stack.peek() 281 y.Xor(x, y) 282 283 interpreter.intPool.put(x) 284 return nil, nil 285 } 286 287 func opByte(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 288 th, val := stack.pop(), stack.peek() 289 if th.Cmp(common.Big32) < 0 { 290 b := math.Byte(val, 32, int(th.Int64())) 291 val.SetUint64(uint64(b)) 292 } else { 293 val.SetUint64(0) 294 } 295 interpreter.intPool.put(th) 296 return nil, nil 297 } 298 299 func opAddmod(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 300 x, y, z := stack.pop(), stack.pop(), stack.pop() 301 if z.Cmp(bigZero) > 0 { 302 x.Add(x, y) 303 x.Mod(x, z) 304 stack.push(math.U256(x)) 305 } else { 306 stack.push(x.SetUint64(0)) 307 } 308 interpreter.intPool.put(y, z) 309 return nil, nil 310 } 311 312 func opMulmod(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 313 x, y, z := stack.pop(), stack.pop(), stack.pop() 314 if z.Cmp(bigZero) > 0 { 315 x.Mul(x, y) 316 x.Mod(x, z) 317 stack.push(math.U256(x)) 318 } else { 319 stack.push(x.SetUint64(0)) 320 } 321 interpreter.intPool.put(y, z) 322 return nil, nil 323 } 324 325 // opSHL implements Shift Left 326 // The SHL instruction (shift left) pops 2 values from the stack, first arg1 and then arg2, 327 // and pushes on the stack arg2 shifted to the left by arg1 number of bits. 328 func opSHL(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 329 // Note, second operand is left in the stack; accumulate result into it, and no need to push it afterwards 330 shift, value := math.U256(stack.pop()), math.U256(stack.peek()) 331 defer interpreter.intPool.put(shift) // First operand back into the pool 332 333 if shift.Cmp(common.Big256) >= 0 { 334 value.SetUint64(0) 335 return nil, nil 336 } 337 n := uint(shift.Uint64()) 338 math.U256(value.Lsh(value, n)) 339 340 return nil, nil 341 } 342 343 // opSHR implements Logical Shift Right 344 // The SHR instruction (logical shift right) pops 2 values from the stack, first arg1 and then arg2, 345 // and pushes on the stack arg2 shifted to the right by arg1 number of bits with zero fill. 346 func opSHR(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 347 // Note, second operand is left in the stack; accumulate result into it, and no need to push it afterwards 348 shift, value := math.U256(stack.pop()), math.U256(stack.peek()) 349 defer interpreter.intPool.put(shift) // First operand back into the pool 350 351 if shift.Cmp(common.Big256) >= 0 { 352 value.SetUint64(0) 353 return nil, nil 354 } 355 n := uint(shift.Uint64()) 356 math.U256(value.Rsh(value, n)) 357 358 return nil, nil 359 } 360 361 // opSAR implements Arithmetic Shift Right 362 // The SAR instruction (arithmetic shift right) pops 2 values from the stack, first arg1 and then arg2, 363 // and pushes on the stack arg2 shifted to the right by arg1 number of bits with sign extension. 364 func opSAR(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 365 // Note, S256 returns (potentially) a new bigint, so we're popping, not peeking this one 366 shift, value := math.U256(stack.pop()), math.S256(stack.pop()) 367 defer interpreter.intPool.put(shift) // First operand back into the pool 368 369 if shift.Cmp(common.Big256) >= 0 { 370 if value.Sign() >= 0 { 371 value.SetUint64(0) 372 } else { 373 value.SetInt64(-1) 374 } 375 stack.push(math.U256(value)) 376 return nil, nil 377 } 378 n := uint(shift.Uint64()) 379 value.Rsh(value, n) 380 stack.push(math.U256(value)) 381 382 return nil, nil 383 } 384 385 func opSha3(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 386 offset, size := stack.pop(), stack.pop() 387 data := memory.Get(offset.Int64(), size.Int64()) 388 389 if interpreter.hasher == nil { 390 interpreter.hasher = sha3.NewKeccak256().(keccakState) 391 } else { 392 interpreter.hasher.Reset() 393 } 394 interpreter.hasher.Write(data) 395 interpreter.hasher.Read(interpreter.hasherBuf[:]) 396 397 evm := interpreter.evm 398 if evm.vmConfig.EnablePreimageRecording { 399 evm.StateDB.AddPreimage(interpreter.hasherBuf, data) 400 } 401 stack.push(interpreter.intPool.get().SetBytes(interpreter.hasherBuf[:])) 402 403 interpreter.intPool.put(offset, size) 404 return nil, nil 405 } 406 407 func opAddress(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 408 stack.push(contract.Address().Big()) 409 return nil, nil 410 } 411 412 func opBalance(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 413 slot := stack.peek() 414 addr := common.BigToAddress(slot) 415 // Quorum: get public/private state db based on addr 416 balance := getDualState(interpreter.evm, addr).GetBalance(addr) 417 slot.Set(balance) 418 return nil, nil 419 } 420 421 func opOrigin(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 422 stack.push(interpreter.evm.Origin.Big()) 423 return nil, nil 424 } 425 426 func opCaller(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 427 stack.push(contract.Caller().Big()) 428 return nil, nil 429 } 430 431 func opCallValue(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 432 stack.push(interpreter.intPool.get().Set(contract.value)) 433 return nil, nil 434 } 435 436 func opCallDataLoad(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 437 stack.push(interpreter.intPool.get().SetBytes(getDataBig(contract.Input, stack.pop(), big32))) 438 return nil, nil 439 } 440 441 func opCallDataSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 442 stack.push(interpreter.intPool.get().SetInt64(int64(len(contract.Input)))) 443 return nil, nil 444 } 445 446 func opCallDataCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 447 var ( 448 memOffset = stack.pop() 449 dataOffset = stack.pop() 450 length = stack.pop() 451 ) 452 memory.Set(memOffset.Uint64(), length.Uint64(), getDataBig(contract.Input, dataOffset, length)) 453 454 interpreter.intPool.put(memOffset, dataOffset, length) 455 return nil, nil 456 } 457 458 func opReturnDataSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 459 stack.push(interpreter.intPool.get().SetUint64(uint64(len(interpreter.returnData)))) 460 return nil, nil 461 } 462 463 func opReturnDataCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 464 var ( 465 memOffset = stack.pop() 466 dataOffset = stack.pop() 467 length = stack.pop() 468 469 end = interpreter.intPool.get().Add(dataOffset, length) 470 ) 471 defer interpreter.intPool.put(memOffset, dataOffset, length, end) 472 473 if end.BitLen() > 64 || uint64(len(interpreter.returnData)) < end.Uint64() { 474 return nil, errReturnDataOutOfBounds 475 } 476 memory.Set(memOffset.Uint64(), length.Uint64(), interpreter.returnData[dataOffset.Uint64():end.Uint64()]) 477 478 return nil, nil 479 } 480 481 func opExtCodeSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 482 slot := stack.peek() 483 addr := common.BigToAddress(slot) 484 // Quorum: get public/private state db based on addr 485 slot.SetUint64(uint64(getDualState(interpreter.evm, addr).GetCodeSize(addr))) 486 487 return nil, nil 488 } 489 490 func opCodeSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 491 l := interpreter.intPool.get().SetInt64(int64(len(contract.Code))) 492 stack.push(l) 493 494 return nil, nil 495 } 496 497 func opCodeCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 498 var ( 499 memOffset = stack.pop() 500 codeOffset = stack.pop() 501 length = stack.pop() 502 ) 503 codeCopy := getDataBig(contract.Code, codeOffset, length) 504 memory.Set(memOffset.Uint64(), length.Uint64(), codeCopy) 505 506 interpreter.intPool.put(memOffset, codeOffset, length) 507 return nil, nil 508 } 509 510 func opExtCodeCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 511 var ( 512 addr = common.BigToAddress(stack.pop()) 513 memOffset = stack.pop() 514 codeOffset = stack.pop() 515 length = stack.pop() 516 ) 517 // Quorum: get public/private state db based on addr 518 codeCopy := getDataBig(getDualState(interpreter.evm, addr).GetCode(addr), codeOffset, length) 519 memory.Set(memOffset.Uint64(), length.Uint64(), codeCopy) 520 521 interpreter.intPool.put(memOffset, codeOffset, length) 522 return nil, nil 523 } 524 525 // opExtCodeHash returns the code hash of a specified account. 526 // There are several cases when the function is called, while we can relay everything 527 // to `state.GetCodeHash` function to ensure the correctness. 528 // (1) Caller tries to get the code hash of a normal contract account, state 529 // should return the relative code hash and set it as the result. 530 // 531 // (2) Caller tries to get the code hash of a non-existent account, state should 532 // return common.Hash{} and zero will be set as the result. 533 // 534 // (3) Caller tries to get the code hash for an account without contract code, 535 // state should return emptyCodeHash(0xc5d246...) as the result. 536 // 537 // (4) Caller tries to get the code hash of a precompiled account, the result 538 // should be zero or emptyCodeHash. 539 // 540 // It is worth noting that in order to avoid unnecessary create and clean, 541 // all precompile accounts on mainnet have been transferred 1 wei, so the return 542 // here should be emptyCodeHash. 543 // If the precompile account is not transferred any amount on a private or 544 // customized chain, the return value will be zero. 545 // 546 // (5) Caller tries to get the code hash for an account which is marked as suicided 547 // in the current transaction, the code hash of this account should be returned. 548 // 549 // (6) Caller tries to get the code hash for an account which is marked as deleted, 550 // this account should be regarded as a non-existent account and zero should be returned. 551 func opExtCodeHash(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 552 slot := stack.peek() 553 address := common.BigToAddress(slot) 554 if interpreter.evm.StateDB.Empty(address) { 555 slot.SetUint64(0) 556 } else { 557 slot.SetBytes(interpreter.evm.StateDB.GetCodeHash(address).Bytes()) 558 } 559 return nil, nil 560 } 561 562 func opGasprice(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 563 stack.push(interpreter.intPool.get().Set(interpreter.evm.GasPrice)) 564 return nil, nil 565 } 566 567 func opBlockhash(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 568 num := stack.pop() 569 570 n := interpreter.intPool.get().Sub(interpreter.evm.BlockNumber, common.Big257) 571 if num.Cmp(n) > 0 && num.Cmp(interpreter.evm.BlockNumber) < 0 { 572 stack.push(interpreter.evm.GetHash(num.Uint64()).Big()) 573 } else { 574 stack.push(interpreter.intPool.getZero()) 575 } 576 interpreter.intPool.put(num, n) 577 return nil, nil 578 } 579 580 func opCoinbase(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 581 stack.push(interpreter.evm.Coinbase.Big()) 582 return nil, nil 583 } 584 585 func opTimestamp(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 586 stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.Time))) 587 return nil, nil 588 } 589 590 func opNumber(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 591 stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.BlockNumber))) 592 return nil, nil 593 } 594 595 func opDifficulty(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 596 stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.Difficulty))) 597 return nil, nil 598 } 599 600 func opGasLimit(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 601 stack.push(math.U256(interpreter.intPool.get().SetUint64(interpreter.evm.GasLimit))) 602 return nil, nil 603 } 604 605 func opPop(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 606 interpreter.intPool.put(stack.pop()) 607 return nil, nil 608 } 609 610 func opMload(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 611 offset := stack.pop() 612 val := interpreter.intPool.get().SetBytes(memory.Get(offset.Int64(), 32)) 613 stack.push(val) 614 615 interpreter.intPool.put(offset) 616 return nil, nil 617 } 618 619 func opMstore(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 620 // pop value of the stack 621 mStart, val := stack.pop(), stack.pop() 622 memory.Set32(mStart.Uint64(), val) 623 624 interpreter.intPool.put(mStart, val) 625 return nil, nil 626 } 627 628 func opMstore8(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 629 off, val := stack.pop().Int64(), stack.pop().Int64() 630 memory.store[off] = byte(val & 0xff) 631 632 return nil, nil 633 } 634 635 func opSload(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 636 loc := stack.peek() 637 // Quorum: get public/private state db based on addr 638 val := getDualState(interpreter.evm, contract.Address()).GetState(contract.Address(), common.BigToHash(loc)) 639 loc.SetBytes(val.Bytes()) 640 return nil, nil 641 } 642 643 func opSstore(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 644 loc := common.BigToHash(stack.pop()) 645 val := stack.pop() 646 // Quorum: get public/private state db based on addr 647 getDualState(interpreter.evm, contract.Address()).SetState(contract.Address(), loc, common.BigToHash(val)) 648 649 interpreter.intPool.put(val) 650 return nil, nil 651 } 652 653 func opJump(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 654 pos := stack.pop() 655 if !contract.validJumpdest(pos) { 656 nop := contract.GetOp(pos.Uint64()) 657 return nil, fmt.Errorf("invalid jump destination (%v) %v", nop, pos) 658 } 659 *pc = pos.Uint64() 660 661 interpreter.intPool.put(pos) 662 return nil, nil 663 } 664 665 func opJumpi(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 666 pos, cond := stack.pop(), stack.pop() 667 if cond.Sign() != 0 { 668 if !contract.validJumpdest(pos) { 669 nop := contract.GetOp(pos.Uint64()) 670 return nil, fmt.Errorf("invalid jump destination (%v) %v", nop, pos) 671 } 672 *pc = pos.Uint64() 673 } else { 674 *pc++ 675 } 676 677 interpreter.intPool.put(pos, cond) 678 return nil, nil 679 } 680 681 func opJumpdest(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 682 return nil, nil 683 } 684 685 func opPc(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 686 stack.push(interpreter.intPool.get().SetUint64(*pc)) 687 return nil, nil 688 } 689 690 func opMsize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 691 stack.push(interpreter.intPool.get().SetInt64(int64(memory.Len()))) 692 return nil, nil 693 } 694 695 func opGas(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 696 stack.push(interpreter.intPool.get().SetUint64(contract.Gas)) 697 return nil, nil 698 } 699 700 func opCreate(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 701 var ( 702 value = stack.pop() 703 offset, size = stack.pop(), stack.pop() 704 input = memory.Get(offset.Int64(), size.Int64()) 705 gas = contract.Gas 706 ) 707 if interpreter.evm.ChainConfig().IsEIP150(interpreter.evm.BlockNumber) { 708 gas -= gas / 64 709 } 710 711 contract.UseGas(gas) 712 res, addr, returnGas, suberr := interpreter.evm.Create(contract, input, gas, value) 713 // Push item on the stack based on the returned error. If the ruleset is 714 // homestead we must check for CodeStoreOutOfGasError (homestead only 715 // rule) and treat as an error, if the ruleset is frontier we must 716 // ignore this error and pretend the operation was successful. 717 if interpreter.evm.ChainConfig().IsHomestead(interpreter.evm.BlockNumber) && suberr == ErrCodeStoreOutOfGas { 718 stack.push(interpreter.intPool.getZero()) 719 } else if suberr != nil && suberr != ErrCodeStoreOutOfGas { 720 stack.push(interpreter.intPool.getZero()) 721 } else { 722 stack.push(addr.Big()) 723 } 724 contract.Gas += returnGas 725 interpreter.intPool.put(value, offset, size) 726 727 if suberr == errExecutionReverted { 728 return res, nil 729 } 730 return nil, nil 731 } 732 733 func opCreate2(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 734 var ( 735 endowment = stack.pop() 736 offset, size = stack.pop(), stack.pop() 737 salt = stack.pop() 738 input = memory.Get(offset.Int64(), size.Int64()) 739 gas = contract.Gas 740 ) 741 742 // Apply EIP150 743 gas -= gas / 64 744 contract.UseGas(gas) 745 res, addr, returnGas, suberr := interpreter.evm.Create2(contract, input, gas, endowment, salt) 746 // Push item on the stack based on the returned error. 747 if suberr != nil { 748 stack.push(interpreter.intPool.getZero()) 749 } else { 750 stack.push(addr.Big()) 751 } 752 contract.Gas += returnGas 753 interpreter.intPool.put(endowment, offset, size, salt) 754 755 if suberr == errExecutionReverted { 756 return res, nil 757 } 758 return nil, nil 759 } 760 761 func opCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 762 // Pop gas. The actual gas in interpreter.evm.callGasTemp. 763 interpreter.intPool.put(stack.pop()) 764 gas := interpreter.evm.callGasTemp 765 // Pop other call parameters. 766 addr, value, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop() 767 toAddr := common.BigToAddress(addr) 768 value = math.U256(value) 769 // Get the arguments from the memory. 770 args := memory.Get(inOffset.Int64(), inSize.Int64()) 771 772 if value.Sign() != 0 { 773 gas += params.CallStipend 774 } 775 ret, returnGas, err := interpreter.evm.Call(contract, toAddr, args, gas, value) 776 if err != nil { 777 stack.push(interpreter.intPool.getZero()) 778 } else { 779 stack.push(interpreter.intPool.get().SetUint64(1)) 780 } 781 if err == nil || err == errExecutionReverted { 782 memory.Set(retOffset.Uint64(), retSize.Uint64(), ret) 783 } 784 contract.Gas += returnGas 785 786 interpreter.intPool.put(addr, value, inOffset, inSize, retOffset, retSize) 787 return ret, nil 788 } 789 790 func opCallCode(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 791 // Pop gas. The actual gas is in interpreter.evm.callGasTemp. 792 interpreter.intPool.put(stack.pop()) 793 gas := interpreter.evm.callGasTemp 794 // Pop other call parameters. 795 addr, value, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop() 796 toAddr := common.BigToAddress(addr) 797 value = math.U256(value) 798 // Get arguments from the memory. 799 args := memory.Get(inOffset.Int64(), inSize.Int64()) 800 801 if value.Sign() != 0 { 802 gas += params.CallStipend 803 } 804 ret, returnGas, err := interpreter.evm.CallCode(contract, toAddr, args, gas, value) 805 if err != nil { 806 stack.push(interpreter.intPool.getZero()) 807 } else { 808 stack.push(interpreter.intPool.get().SetUint64(1)) 809 } 810 if err == nil || err == errExecutionReverted { 811 memory.Set(retOffset.Uint64(), retSize.Uint64(), ret) 812 } 813 contract.Gas += returnGas 814 815 interpreter.intPool.put(addr, value, inOffset, inSize, retOffset, retSize) 816 return ret, nil 817 } 818 819 func opDelegateCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 820 // Pop gas. The actual gas is in interpreter.evm.callGasTemp. 821 interpreter.intPool.put(stack.pop()) 822 gas := interpreter.evm.callGasTemp 823 // Pop other call parameters. 824 addr, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop() 825 toAddr := common.BigToAddress(addr) 826 // Get arguments from the memory. 827 args := memory.Get(inOffset.Int64(), inSize.Int64()) 828 829 ret, returnGas, err := interpreter.evm.DelegateCall(contract, toAddr, args, gas) 830 if err != nil { 831 stack.push(interpreter.intPool.getZero()) 832 } else { 833 stack.push(interpreter.intPool.get().SetUint64(1)) 834 } 835 if err == nil || err == errExecutionReverted { 836 memory.Set(retOffset.Uint64(), retSize.Uint64(), ret) 837 } 838 contract.Gas += returnGas 839 840 interpreter.intPool.put(addr, inOffset, inSize, retOffset, retSize) 841 return ret, nil 842 } 843 844 func opStaticCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 845 // Pop gas. The actual gas is in interpreter.evm.callGasTemp. 846 interpreter.intPool.put(stack.pop()) 847 gas := interpreter.evm.callGasTemp 848 // Pop other call parameters. 849 addr, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop() 850 toAddr := common.BigToAddress(addr) 851 // Get arguments from the memory. 852 args := memory.Get(inOffset.Int64(), inSize.Int64()) 853 854 ret, returnGas, err := interpreter.evm.StaticCall(contract, toAddr, args, gas) 855 if err != nil { 856 stack.push(interpreter.intPool.getZero()) 857 } else { 858 stack.push(interpreter.intPool.get().SetUint64(1)) 859 } 860 if err == nil || err == errExecutionReverted { 861 memory.Set(retOffset.Uint64(), retSize.Uint64(), ret) 862 } 863 contract.Gas += returnGas 864 865 interpreter.intPool.put(addr, inOffset, inSize, retOffset, retSize) 866 return ret, nil 867 } 868 869 func opReturn(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 870 offset, size := stack.pop(), stack.pop() 871 ret := memory.GetPtr(offset.Int64(), size.Int64()) 872 873 interpreter.intPool.put(offset, size) 874 return ret, nil 875 } 876 877 func opRevert(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 878 offset, size := stack.pop(), stack.pop() 879 ret := memory.GetPtr(offset.Int64(), size.Int64()) 880 881 interpreter.intPool.put(offset, size) 882 return ret, nil 883 } 884 885 func opStop(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 886 return nil, nil 887 } 888 889 func opSuicide(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 890 // Quorum: get public/private state db based on addr 891 db := getDualState(interpreter.evm, contract.Address()) 892 balance := db.GetBalance(contract.Address()) 893 db.AddBalance(common.BigToAddress(stack.pop()), balance) 894 895 db.Suicide(contract.Address()) 896 return nil, nil 897 } 898 899 // following functions are used by the instruction jump table 900 901 // make log instruction function 902 func makeLog(size int) executionFunc { 903 return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 904 topics := make([]common.Hash, size) 905 mStart, mSize := stack.pop(), stack.pop() 906 for i := 0; i < size; i++ { 907 topics[i] = common.BigToHash(stack.pop()) 908 } 909 910 d := memory.Get(mStart.Int64(), mSize.Int64()) 911 interpreter.evm.StateDB.AddLog(&types.Log{ 912 Address: contract.Address(), 913 Topics: topics, 914 Data: d, 915 // This is a non-consensus field, but assigned here because 916 // core/state doesn't know the current block number. 917 BlockNumber: interpreter.evm.BlockNumber.Uint64(), 918 }) 919 920 interpreter.intPool.put(mStart, mSize) 921 return nil, nil 922 } 923 } 924 925 // make push instruction function 926 func makePush(size uint64, pushByteSize int) executionFunc { 927 return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 928 codeLen := len(contract.Code) 929 930 startMin := codeLen 931 if int(*pc+1) < startMin { 932 startMin = int(*pc + 1) 933 } 934 935 endMin := codeLen 936 if startMin+pushByteSize < endMin { 937 endMin = startMin + pushByteSize 938 } 939 940 integer := interpreter.intPool.get() 941 stack.push(integer.SetBytes(common.RightPadBytes(contract.Code[startMin:endMin], pushByteSize))) 942 943 *pc += size 944 return nil, nil 945 } 946 } 947 948 // make dup instruction function 949 func makeDup(size int64) executionFunc { 950 return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 951 stack.dup(interpreter.intPool, int(size)) 952 return nil, nil 953 } 954 } 955 956 // make swap instruction function 957 func makeSwap(size int64) executionFunc { 958 // switch n + 1 otherwise n would be swapped with n 959 size++ 960 return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) { 961 stack.swap(int(size)) 962 return nil, nil 963 } 964 }