github.com/bigzoro/my_simplechain@v0.0.0-20240315012955-8ad0a2a29bb9/core/vm/instructions.go (about)

     1  // Copyright 2015 The go-simplechain Authors
     2  // This file is part of the go-simplechain library.
     3  //
     4  // The go-simplechain 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-simplechain 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-simplechain library. If not, see <http://www.gnu.org/licenses/>.
    16  
    17  package vm
    18  
    19  import (
    20  	"errors"
    21  	"math/big"
    22  
    23  	"github.com/bigzoro/my_simplechain/common"
    24  	"github.com/bigzoro/my_simplechain/common/math"
    25  	"github.com/bigzoro/my_simplechain/core/types"
    26  	"github.com/bigzoro/my_simplechain/params"
    27  	"golang.org/x/crypto/sha3"
    28  )
    29  
    30  var (
    31  	bigZero                  = new(big.Int)
    32  	tt255                    = math.BigPow(2, 255)
    33  	errWriteProtection       = errors.New("evm: write protection")
    34  	errReturnDataOutOfBounds = errors.New("evm: return data out of bounds")
    35  	errExecutionReverted     = errors.New("evm: execution reverted")
    36  	errMaxCodeSizeExceeded   = errors.New("evm: max code size exceeded")
    37  	errInvalidJump           = errors.New("evm: invalid jump destination")
    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.GetPtr(offset.Int64(), size.Int64())
   388  
   389  	if interpreter.hasher == nil {
   390  		interpreter.hasher = sha3.NewLegacyKeccak256().(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(interpreter.intPool.get().SetBytes(contract.Address().Bytes()))
   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  	slot.Set(interpreter.evm.StateDB.GetBalance(common.BigToAddress(slot)))
   415  	return nil, nil
   416  }
   417  
   418  func opOrigin(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   419  	stack.push(interpreter.intPool.get().SetBytes(interpreter.evm.Origin.Bytes()))
   420  	return nil, nil
   421  }
   422  
   423  func opCaller(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   424  	stack.push(interpreter.intPool.get().SetBytes(contract.Caller().Bytes()))
   425  	return nil, nil
   426  }
   427  
   428  func opCallValue(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   429  	stack.push(interpreter.intPool.get().Set(contract.value))
   430  	return nil, nil
   431  }
   432  
   433  func opCallDataLoad(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   434  	stack.push(interpreter.intPool.get().SetBytes(getDataBig(contract.Input, stack.pop(), big32)))
   435  	return nil, nil
   436  }
   437  
   438  func opCallDataSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   439  	stack.push(interpreter.intPool.get().SetInt64(int64(len(contract.Input))))
   440  	return nil, nil
   441  }
   442  
   443  func opCallDataCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   444  	var (
   445  		memOffset  = stack.pop()
   446  		dataOffset = stack.pop()
   447  		length     = stack.pop()
   448  	)
   449  	memory.Set(memOffset.Uint64(), length.Uint64(), getDataBig(contract.Input, dataOffset, length))
   450  
   451  	interpreter.intPool.put(memOffset, dataOffset, length)
   452  	return nil, nil
   453  }
   454  
   455  func opReturnDataSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   456  	stack.push(interpreter.intPool.get().SetUint64(uint64(len(interpreter.returnData))))
   457  	return nil, nil
   458  }
   459  
   460  func opReturnDataCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   461  	var (
   462  		memOffset  = stack.pop()
   463  		dataOffset = stack.pop()
   464  		length     = stack.pop()
   465  
   466  		end = interpreter.intPool.get().Add(dataOffset, length)
   467  	)
   468  	defer interpreter.intPool.put(memOffset, dataOffset, length, end)
   469  
   470  	if !end.IsUint64() || uint64(len(interpreter.returnData)) < end.Uint64() {
   471  		return nil, errReturnDataOutOfBounds
   472  	}
   473  	memory.Set(memOffset.Uint64(), length.Uint64(), interpreter.returnData[dataOffset.Uint64():end.Uint64()])
   474  
   475  	return nil, nil
   476  }
   477  
   478  func opExtCodeSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   479  	slot := stack.peek()
   480  	slot.SetUint64(uint64(interpreter.evm.StateDB.GetCodeSize(common.BigToAddress(slot))))
   481  
   482  	return nil, nil
   483  }
   484  
   485  func opCodeSize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   486  	l := interpreter.intPool.get().SetInt64(int64(len(contract.Code)))
   487  	stack.push(l)
   488  
   489  	return nil, nil
   490  }
   491  
   492  func opCodeCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   493  	var (
   494  		memOffset  = stack.pop()
   495  		codeOffset = stack.pop()
   496  		length     = stack.pop()
   497  	)
   498  	codeCopy := getDataBig(contract.Code, codeOffset, length)
   499  	memory.Set(memOffset.Uint64(), length.Uint64(), codeCopy)
   500  
   501  	interpreter.intPool.put(memOffset, codeOffset, length)
   502  	return nil, nil
   503  }
   504  
   505  func opExtCodeCopy(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   506  	var (
   507  		addr       = common.BigToAddress(stack.pop())
   508  		memOffset  = stack.pop()
   509  		codeOffset = stack.pop()
   510  		length     = stack.pop()
   511  	)
   512  	codeCopy := getDataBig(interpreter.evm.StateDB.GetCode(addr), codeOffset, length)
   513  	memory.Set(memOffset.Uint64(), length.Uint64(), codeCopy)
   514  
   515  	interpreter.intPool.put(memOffset, codeOffset, length)
   516  	return nil, nil
   517  }
   518  
   519  // opExtCodeHash returns the code hash of a specified account.
   520  // There are several cases when the function is called, while we can relay everything
   521  // to `state.GetCodeHash` function to ensure the correctness.
   522  //
   523  //	(1) Caller tries to get the code hash of a normal contract account, state
   524  //
   525  // should return the relative code hash and set it as the result.
   526  //
   527  //	(2) Caller tries to get the code hash of a non-existent account, state should
   528  //
   529  // return common.Hash{} and zero will be set as the result.
   530  //
   531  //	(3) Caller tries to get the code hash for an account without contract code,
   532  //
   533  // state should return emptyCodeHash(0xc5d246...) as the result.
   534  //
   535  //	(4) Caller tries to get the code hash of a precompiled account, the result
   536  //
   537  // should be zero or emptyCodeHash.
   538  //
   539  // It is worth noting that in order to avoid unnecessary create and clean,
   540  // all precompile accounts on mainnet have been transferred 1 wei, so the return
   541  // here should be emptyCodeHash.
   542  // If the precompile account is not transferred any amount on a private or
   543  // customized chain, the return value will be zero.
   544  //
   545  //	(5) Caller tries to get the code hash for an account which is marked as suicided
   546  //
   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  //
   551  // this account should be regarded as a non-existent account and zero should be returned.
   552  func opExtCodeHash(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   553  	slot := stack.peek()
   554  	address := common.BigToAddress(slot)
   555  	if interpreter.evm.StateDB.Empty(address) {
   556  		slot.SetUint64(0)
   557  	} else {
   558  		slot.SetBytes(interpreter.evm.StateDB.GetCodeHash(address).Bytes())
   559  	}
   560  	return nil, nil
   561  }
   562  
   563  func opGasprice(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   564  	stack.push(interpreter.intPool.get().Set(interpreter.evm.GasPrice))
   565  	return nil, nil
   566  }
   567  
   568  func opBlockhash(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   569  	num := stack.pop()
   570  
   571  	n := interpreter.intPool.get().Sub(interpreter.evm.BlockNumber, common.Big257)
   572  	if num.Cmp(n) > 0 && num.Cmp(interpreter.evm.BlockNumber) < 0 {
   573  		stack.push(interpreter.evm.GetHash(num.Uint64()).Big())
   574  	} else {
   575  		stack.push(interpreter.intPool.getZero())
   576  	}
   577  	interpreter.intPool.put(num, n)
   578  	return nil, nil
   579  }
   580  
   581  func opCoinbase(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   582  	stack.push(interpreter.intPool.get().SetBytes(interpreter.evm.Coinbase.Bytes()))
   583  	return nil, nil
   584  }
   585  
   586  func opTimestamp(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   587  	stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.Time)))
   588  	return nil, nil
   589  }
   590  
   591  func opNumber(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   592  	stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.BlockNumber)))
   593  	return nil, nil
   594  }
   595  
   596  func opDifficulty(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   597  	stack.push(math.U256(interpreter.intPool.get().Set(interpreter.evm.Difficulty)))
   598  	return nil, nil
   599  }
   600  
   601  func opGasLimit(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   602  	stack.push(math.U256(interpreter.intPool.get().SetUint64(interpreter.evm.GasLimit)))
   603  	return nil, nil
   604  }
   605  
   606  func opPop(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   607  	interpreter.intPool.put(stack.pop())
   608  	return nil, nil
   609  }
   610  
   611  func opMload(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   612  	v := stack.peek()
   613  	offset := v.Int64()
   614  	v.SetBytes(memory.GetPtr(offset, 32))
   615  	return nil, nil
   616  }
   617  
   618  func opMstore(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   619  	// pop value of the stack
   620  	mStart, val := stack.pop(), stack.pop()
   621  	memory.Set32(mStart.Uint64(), val)
   622  
   623  	interpreter.intPool.put(mStart, val)
   624  	return nil, nil
   625  }
   626  
   627  func opMstore8(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   628  	off, val := stack.pop().Int64(), stack.pop().Int64()
   629  	memory.store[off] = byte(val & 0xff)
   630  
   631  	return nil, nil
   632  }
   633  
   634  func opSload(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   635  	loc := stack.peek()
   636  	val := interpreter.evm.StateDB.GetState(contract.Address(), common.BigToHash(loc))
   637  	loc.SetBytes(val.Bytes())
   638  	return nil, nil
   639  }
   640  
   641  func opSstore(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   642  	loc := common.BigToHash(stack.pop())
   643  	val := stack.pop()
   644  	interpreter.evm.StateDB.SetState(contract.Address(), loc, common.BigToHash(val))
   645  
   646  	interpreter.intPool.put(val)
   647  	return nil, nil
   648  }
   649  
   650  func opJump(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   651  	pos := stack.pop()
   652  	if !contract.validJumpdest(pos) {
   653  		return nil, errInvalidJump
   654  	}
   655  	*pc = pos.Uint64()
   656  
   657  	interpreter.intPool.put(pos)
   658  	return nil, nil
   659  }
   660  
   661  func opJumpi(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   662  	pos, cond := stack.pop(), stack.pop()
   663  	if cond.Sign() != 0 {
   664  		if !contract.validJumpdest(pos) {
   665  			return nil, errInvalidJump
   666  		}
   667  		*pc = pos.Uint64()
   668  	} else {
   669  		*pc++
   670  	}
   671  
   672  	interpreter.intPool.put(pos, cond)
   673  	return nil, nil
   674  }
   675  
   676  func opJumpdest(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   677  	return nil, nil
   678  }
   679  
   680  func opPc(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   681  	stack.push(interpreter.intPool.get().SetUint64(*pc))
   682  	return nil, nil
   683  }
   684  
   685  func opMsize(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   686  	stack.push(interpreter.intPool.get().SetInt64(int64(memory.Len())))
   687  	return nil, nil
   688  }
   689  
   690  func opGas(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   691  	stack.push(interpreter.intPool.get().SetUint64(contract.Gas))
   692  	return nil, nil
   693  }
   694  
   695  func opCreate(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   696  	var (
   697  		value        = stack.pop()
   698  		offset, size = stack.pop(), stack.pop()
   699  		input        = memory.GetCopy(offset.Int64(), size.Int64())
   700  		gas          = contract.Gas
   701  	)
   702  	gas -= gas / 64
   703  
   704  	contract.UseGas(gas)
   705  	res, addr, returnGas, suberr := interpreter.evm.Create(contract, input, gas, value)
   706  	// Push item on the stack based on the returned error. If the ruleset is
   707  	// homestead we must check for CodeStoreOutOfGasError (homestead only
   708  	// rule) and treat as an error, if the ruleset is frontier we must
   709  	// ignore this error and pretend the operation was successful.
   710  	if suberr == ErrCodeStoreOutOfGas {
   711  		stack.push(interpreter.intPool.getZero())
   712  	} else if suberr != nil && suberr != ErrCodeStoreOutOfGas {
   713  		stack.push(interpreter.intPool.getZero())
   714  	} else {
   715  		stack.push(interpreter.intPool.get().SetBytes(addr.Bytes()))
   716  	}
   717  	contract.Gas += returnGas
   718  	interpreter.intPool.put(value, offset, size)
   719  
   720  	if suberr == errExecutionReverted {
   721  		return res, nil
   722  	}
   723  	return nil, nil
   724  }
   725  
   726  func opCreate2(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   727  	var (
   728  		endowment    = stack.pop()
   729  		offset, size = stack.pop(), stack.pop()
   730  		salt         = stack.pop()
   731  		input        = memory.GetCopy(offset.Int64(), size.Int64())
   732  		gas          = contract.Gas
   733  	)
   734  
   735  	// Apply EIP150
   736  	gas -= gas / 64
   737  	contract.UseGas(gas)
   738  	res, addr, returnGas, suberr := interpreter.evm.Create2(contract, input, gas, endowment, salt)
   739  	// Push item on the stack based on the returned error.
   740  	if suberr != nil {
   741  		stack.push(interpreter.intPool.getZero())
   742  	} else {
   743  		stack.push(interpreter.intPool.get().SetBytes(addr.Bytes()))
   744  	}
   745  	contract.Gas += returnGas
   746  	interpreter.intPool.put(endowment, offset, size, salt)
   747  
   748  	if suberr == errExecutionReverted {
   749  		return res, nil
   750  	}
   751  	return nil, nil
   752  }
   753  
   754  func opCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   755  	// Pop gas. The actual gas in interpreter.evm.callGasTemp.
   756  	interpreter.intPool.put(stack.pop())
   757  	gas := interpreter.evm.callGasTemp
   758  	// Pop other call parameters.
   759  	addr, value, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop()
   760  	toAddr := common.BigToAddress(addr)
   761  	value = math.U256(value)
   762  	// Get the arguments from the memory.
   763  	args := memory.GetPtr(inOffset.Int64(), inSize.Int64())
   764  
   765  	if value.Sign() != 0 {
   766  		gas += params.CallStipend
   767  	}
   768  	ret, returnGas, err := interpreter.evm.Call(contract, toAddr, args, gas, value)
   769  	if err != nil {
   770  		stack.push(interpreter.intPool.getZero())
   771  	} else {
   772  		stack.push(interpreter.intPool.get().SetUint64(1))
   773  	}
   774  	if err == nil || err == errExecutionReverted {
   775  		memory.Set(retOffset.Uint64(), retSize.Uint64(), ret)
   776  	}
   777  	contract.Gas += returnGas
   778  
   779  	interpreter.intPool.put(addr, value, inOffset, inSize, retOffset, retSize)
   780  	return ret, nil
   781  }
   782  
   783  func opCallCode(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   784  	// Pop gas. The actual gas is in interpreter.evm.callGasTemp.
   785  	interpreter.intPool.put(stack.pop())
   786  	gas := interpreter.evm.callGasTemp
   787  	// Pop other call parameters.
   788  	addr, value, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop()
   789  	toAddr := common.BigToAddress(addr)
   790  	value = math.U256(value)
   791  	// Get arguments from the memory.
   792  	args := memory.GetPtr(inOffset.Int64(), inSize.Int64())
   793  
   794  	if value.Sign() != 0 {
   795  		gas += params.CallStipend
   796  	}
   797  	ret, returnGas, err := interpreter.evm.CallCode(contract, toAddr, args, gas, value)
   798  	if err != nil {
   799  		stack.push(interpreter.intPool.getZero())
   800  	} else {
   801  		stack.push(interpreter.intPool.get().SetUint64(1))
   802  	}
   803  	if err == nil || err == errExecutionReverted {
   804  		memory.Set(retOffset.Uint64(), retSize.Uint64(), ret)
   805  	}
   806  	contract.Gas += returnGas
   807  
   808  	interpreter.intPool.put(addr, value, inOffset, inSize, retOffset, retSize)
   809  	return ret, nil
   810  }
   811  
   812  func opDelegateCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   813  	// Pop gas. The actual gas is in interpreter.evm.callGasTemp.
   814  	interpreter.intPool.put(stack.pop())
   815  	gas := interpreter.evm.callGasTemp
   816  	// Pop other call parameters.
   817  	addr, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop()
   818  	toAddr := common.BigToAddress(addr)
   819  	// Get arguments from the memory.
   820  	args := memory.GetPtr(inOffset.Int64(), inSize.Int64())
   821  
   822  	ret, returnGas, err := interpreter.evm.DelegateCall(contract, toAddr, args, gas)
   823  	if err != nil {
   824  		stack.push(interpreter.intPool.getZero())
   825  	} else {
   826  		stack.push(interpreter.intPool.get().SetUint64(1))
   827  	}
   828  	if err == nil || err == errExecutionReverted {
   829  		memory.Set(retOffset.Uint64(), retSize.Uint64(), ret)
   830  	}
   831  	contract.Gas += returnGas
   832  
   833  	interpreter.intPool.put(addr, inOffset, inSize, retOffset, retSize)
   834  	return ret, nil
   835  }
   836  
   837  func opStaticCall(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   838  	// Pop gas. The actual gas is in interpreter.evm.callGasTemp.
   839  	interpreter.intPool.put(stack.pop())
   840  	gas := interpreter.evm.callGasTemp
   841  	// Pop other call parameters.
   842  	addr, inOffset, inSize, retOffset, retSize := stack.pop(), stack.pop(), stack.pop(), stack.pop(), stack.pop()
   843  	toAddr := common.BigToAddress(addr)
   844  	// Get arguments from the memory.
   845  	args := memory.GetPtr(inOffset.Int64(), inSize.Int64())
   846  
   847  	ret, returnGas, err := interpreter.evm.StaticCall(contract, toAddr, args, gas)
   848  	if err != nil {
   849  		stack.push(interpreter.intPool.getZero())
   850  	} else {
   851  		stack.push(interpreter.intPool.get().SetUint64(1))
   852  	}
   853  	if err == nil || err == errExecutionReverted {
   854  		memory.Set(retOffset.Uint64(), retSize.Uint64(), ret)
   855  	}
   856  	contract.Gas += returnGas
   857  
   858  	interpreter.intPool.put(addr, inOffset, inSize, retOffset, retSize)
   859  	return ret, nil
   860  }
   861  
   862  func opReturn(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   863  	offset, size := stack.pop(), stack.pop()
   864  	ret := memory.GetPtr(offset.Int64(), size.Int64())
   865  
   866  	interpreter.intPool.put(offset, size)
   867  	return ret, nil
   868  }
   869  
   870  func opRevert(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   871  	offset, size := stack.pop(), stack.pop()
   872  	ret := memory.GetPtr(offset.Int64(), size.Int64())
   873  
   874  	interpreter.intPool.put(offset, size)
   875  	return ret, nil
   876  }
   877  
   878  func opStop(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   879  	return nil, nil
   880  }
   881  
   882  func opSuicide(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   883  	balance := interpreter.evm.StateDB.GetBalance(contract.Address())
   884  	interpreter.evm.StateDB.AddBalance(common.BigToAddress(stack.pop()), balance)
   885  
   886  	interpreter.evm.StateDB.Suicide(contract.Address())
   887  	return nil, nil
   888  }
   889  
   890  // following functions are used by the instruction jump  table
   891  
   892  // make log instruction function
   893  func makeLog(size int) executionFunc {
   894  	return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   895  		topics := make([]common.Hash, size)
   896  		mStart, mSize := stack.pop(), stack.pop()
   897  		for i := 0; i < size; i++ {
   898  			topics[i] = common.BigToHash(stack.pop())
   899  		}
   900  
   901  		d := memory.GetCopy(mStart.Int64(), mSize.Int64())
   902  		interpreter.evm.StateDB.AddLog(&types.Log{
   903  			Address: contract.Address(),
   904  			Topics:  topics,
   905  			Data:    d,
   906  			// This is a non-consensus field, but assigned here because
   907  			// core/state doesn't know the current block number.
   908  			BlockNumber: interpreter.evm.BlockNumber.Uint64(),
   909  		})
   910  
   911  		interpreter.intPool.put(mStart, mSize)
   912  		return nil, nil
   913  	}
   914  }
   915  
   916  // opPush1 is a specialized version of pushN
   917  func opPush1(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   918  	var (
   919  		codeLen = uint64(len(contract.Code))
   920  		integer = interpreter.intPool.get()
   921  	)
   922  	*pc += 1
   923  	if *pc < codeLen {
   924  		stack.push(integer.SetUint64(uint64(contract.Code[*pc])))
   925  	} else {
   926  		stack.push(integer.SetUint64(0))
   927  	}
   928  	return nil, nil
   929  }
   930  
   931  // make push instruction function
   932  func makePush(size uint64, pushByteSize int) executionFunc {
   933  	return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   934  		codeLen := len(contract.Code)
   935  
   936  		startMin := codeLen
   937  		if int(*pc+1) < startMin {
   938  			startMin = int(*pc + 1)
   939  		}
   940  
   941  		endMin := codeLen
   942  		if startMin+pushByteSize < endMin {
   943  			endMin = startMin + pushByteSize
   944  		}
   945  
   946  		integer := interpreter.intPool.get()
   947  		stack.push(integer.SetBytes(common.RightPadBytes(contract.Code[startMin:endMin], pushByteSize)))
   948  
   949  		*pc += size
   950  		return nil, nil
   951  	}
   952  }
   953  
   954  // make dup instruction function
   955  func makeDup(size int64) executionFunc {
   956  	return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   957  		stack.dup(interpreter.intPool, int(size))
   958  		return nil, nil
   959  	}
   960  }
   961  
   962  // make swap instruction function
   963  func makeSwap(size int64) executionFunc {
   964  	// switch n + 1 otherwise n would be swapped with n
   965  	size++
   966  	return func(pc *uint64, interpreter *EVMInterpreter, contract *Contract, memory *Memory, stack *Stack) ([]byte, error) {
   967  		stack.swap(int(size))
   968  		return nil, nil
   969  	}
   970  }