459 lines
14 KiB
Nim
459 lines
14 KiB
Nim
# Nimbus
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# Copyright (c) 2018 Status Research & Development GmbH
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# Licensed under either of
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# * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE) or
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# http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or
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# http://opensource.org/licenses/MIT)
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# at your option. This file may not be copied, modified, or distributed except
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# according to those terms.
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## EVM Opcode Handlers: Call Operations
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## ====================================
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##
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import
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../../../constants,
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../../../db/accounts_cache,
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../../../errors,
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../../computation,
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../../memory,
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../../stack,
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../../state,
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../../types,
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../forks_list,
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../gas_costs,
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../gas_meter,
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../op_codes,
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../utils/utils_numeric,
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./oph_defs,
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chronicles,
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eth/common,
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eth/common/eth_types,
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stint
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# ------------------------------------------------------------------------------
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# Private
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# ------------------------------------------------------------------------------
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type
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LocalParams = tuple
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gas: UInt256
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value: UInt256
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destination: EthAddress
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sender: EthAddress
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memInPos: int
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memInLen: int
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memOutPos: int
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memOutLen: int
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flags: MsgFlags
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memOffset: int
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memLength: int
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contractAddress: EthAddress
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proc updateStackAndParams(q: var LocalParams; c: Computation) =
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c.stack.push(0)
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let
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outLen = calcMemSize(q.memOutPos, q.memOutLen)
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inLen = calcMemSize(q.memInPos, q.memInLen)
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# get the bigger one
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if outLen < inLen:
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q.memOffset = q.memInPos
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q.memLength = q.memInLen
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else:
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q.memOffset = q.memOutPos
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q.memLength = q.memOutLen
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# EIP2929: This came before old gas calculator
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# because it will affect `c.gasMeter.gasRemaining`
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# and further `childGasLimit`
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if FkBerlin <= c.fork:
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c.vmState.mutateStateDB:
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if not db.inAccessList(q.destination):
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db.accessList(q.destination)
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# The WarmStorageReadCostEIP2929 (100) is already deducted in
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# the form of a constant `gasCall`
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c.gasMeter.consumeGas(
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ColdAccountAccessCost - WarmStorageReadCost,
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reason = "EIP2929 gasCall")
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proc callParams(c: Computation): LocalParams =
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## Helper for callOp()
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result.gas = c.stack.popInt()
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result.destination = c.stack.popAddress()
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result.value = c.stack.popInt()
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result.memInPos = c.stack.popInt().cleanMemRef
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result.memInLen = c.stack.popInt().cleanMemRef
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result.memOutPos = c.stack.popInt().cleanMemRef
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result.memOutLen = c.stack.popInt().cleanMemRef
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result.sender = c.msg.contractAddress
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result.flags = c.msg.flags
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result.contractAddress = result.destination
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result.updateStackAndParams(c)
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proc callCodeParams(c: Computation): LocalParams =
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## Helper for callCodeOp()
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result = c.callParams
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result.contractAddress = c.msg.contractAddress
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proc delegateCallParams(c: Computation): LocalParams =
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## Helper for delegateCall()
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result.gas = c.stack.popInt()
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result.destination = c.stack.popAddress()
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result.memInPos = c.stack.popInt().cleanMemRef
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result.memInLen = c.stack.popInt().cleanMemRef
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result.memOutPos = c.stack.popInt().cleanMemRef
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result.memOutLen = c.stack.popInt().cleanMemRef
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result.value = c.msg.value
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result.sender = c.msg.sender
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result.flags = c.msg.flags
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result.contractAddress = c.msg.contractAddress
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result.updateStackAndParams(c)
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proc staticCallParams(c: Computation): LocalParams =
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## Helper for staticCall()
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result.gas = c.stack.popInt()
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result.destination = c.stack.popAddress()
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result.memInPos = c.stack.popInt().cleanMemRef
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result.memInLen = c.stack.popInt().cleanMemRef
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result.memOutPos = c.stack.popInt().cleanMemRef
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result.memOutLen = c.stack.popInt().cleanMemRef
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result.value = 0.u256
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result.sender = c.msg.contractAddress
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result.flags = emvcStatic
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result.contractAddress = result.destination
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result.updateStackAndParams(c)
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proc execSubCall(k: var Vm2Ctx; childMsg: Message; memPos, memLen: int) =
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## Call new VM -- helper for `Call`-like operations
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# need to provide explicit <c> and <child> for capturing in chainTo proc()
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# <memPos> and <memLen> are provided by value and need not be captured
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var
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c = k.cpt
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child = newComputation(k.cpt.vmState, childMsg)
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k.cpt.chainTo(child):
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if not child.shouldBurnGas:
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c.gasMeter.returnGas(child.gasMeter.gasRemaining)
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if child.isSuccess:
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c.merge(child)
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c.stack.top(1)
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c.returnData = child.output
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let actualOutputSize = min(memLen, child.output.len)
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if actualOutputSize > 0:
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c.memory.write(memPos, child.output.toOpenArray(0, actualOutputSize - 1))
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# ------------------------------------------------------------------------------
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# Private, op handlers implementation
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# ------------------------------------------------------------------------------
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const
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callOp: Vm2OpFn = proc(k: var Vm2Ctx) =
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## 0xf1, Message-Call into an account
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if emvcStatic == k.cpt.msg.flags and k.cpt.stack[^3, UInt256] > 0.u256:
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raise newException(
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StaticContextError,
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"Cannot modify state while inside of a STATICCALL context")
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let
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p = k.cpt.callParams
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var (gasCost, childGasLimit) = k.cpt.gasCosts[Call].c_handler(
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p.value,
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GasParams(
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kind: Call,
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c_isNewAccount: not k.cpt.accountExists(p.contractAddress),
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c_gasBalance: k.cpt.gasMeter.gasRemaining,
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c_contractGas: p.gas,
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c_currentMemSize: k.cpt.memory.len,
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c_memOffset: p.memOffset,
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c_memLength: p.memLength))
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# EIP 2046: temporary disabled
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# reduce gas fee for precompiles
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# from 700 to 40
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if gasCost >= 0:
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k.cpt.gasMeter.consumeGas(gasCost, reason = $Call)
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k.cpt.returnData.setLen(0)
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if k.cpt.msg.depth >= MaxCallDepth:
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debug "Computation Failure",
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reason = "Stack too deep",
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maximumDepth = MaxCallDepth,
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depth = k.cpt.msg.depth
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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if gasCost < 0 and childGasLimit <= 0:
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raise newException(
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OutOfGas, "Gas not enough to perform calculation (call)")
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k.cpt.memory.extend(p.memInPos, p.memInLen)
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k.cpt.memory.extend(p.memOutPos, p.memOutLen)
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let senderBalance = k.cpt.getBalance(p.sender)
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if senderBalance < p.value:
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debug "Insufficient funds",
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available = senderBalance,
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needed = k.cpt.msg.value
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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k.execSubCall(
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memPos = p.memOutPos,
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memLen = p.memOutLen,
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childMsg = Message(
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kind: evmcCall,
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depth: k.cpt.msg.depth + 1,
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gas: childGasLimit,
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sender: p.sender,
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contractAddress: p.contractAddress,
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codeAddress: p.destination,
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value: p.value,
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data: k.cpt.memory.read(p.memInPos, p.memInLen),
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flags: p.flags))
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# ---------------------
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callCodeOp: Vm2OpFn = proc(k: var Vm2Ctx) =
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## 0xf2, Message-call into this account with an alternative account's code.
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let
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p = k.cpt.callCodeParams
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var (gasCost, childGasLimit) = k.cpt.gasCosts[CallCode].c_handler(
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p.value,
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GasParams(
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kind: CallCode,
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c_isNewAccount: not k.cpt.accountExists(p.contractAddress),
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c_gasBalance: k.cpt.gasMeter.gasRemaining,
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c_contractGas: p.gas,
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c_currentMemSize: k.cpt.memory.len,
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c_memOffset: p.memOffset,
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c_memLength: p.memLength))
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# EIP 2046: temporary disabled
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# reduce gas fee for precompiles
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# from 700 to 40
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if gasCost >= 0:
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k.cpt.gasMeter.consumeGas(gasCost, reason = $CallCode)
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k.cpt.returnData.setLen(0)
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if k.cpt.msg.depth >= MaxCallDepth:
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debug "Computation Failure",
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reason = "Stack too deep",
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maximumDepth = MaxCallDepth,
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depth = k.cpt.msg.depth
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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# EIP 2046: temporary disabled
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# reduce gas fee for precompiles
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# from 700 to 40
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if gasCost < 0 and childGasLimit <= 0:
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raise newException(
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OutOfGas, "Gas not enough to perform calculation (callCode)")
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k.cpt.memory.extend(p.memInPos, p.memInLen)
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k.cpt.memory.extend(p.memOutPos, p.memOutLen)
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let senderBalance = k.cpt.getBalance(p.sender)
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if senderBalance < p.value:
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debug "Insufficient funds",
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available = senderBalance,
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needed = k.cpt.msg.value
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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k.execSubCall(
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memPos = p.memOutPos,
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memLen = p.memOutLen,
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childMsg = Message(
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kind: evmcCallCode,
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depth: k.cpt.msg.depth + 1,
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gas: childGasLimit,
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sender: p.sender,
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contractAddress: p.contractAddress,
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codeAddress: p.destination,
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value: p.value,
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data: k.cpt.memory.read(p.memInPos, p.memInLen),
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flags: p.flags))
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# ---------------------
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delegateCallOp: Vm2OpFn = proc(k: var Vm2Ctx) =
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## 0xf4, Message-call into this account with an alternative account's
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## code, but persisting the current values for sender and value.
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let
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p = k.cpt.delegateCallParams
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var (gasCost, childGasLimit) = k.cpt.gasCosts[DelegateCall].c_handler(
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p.value,
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GasParams(
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kind: DelegateCall,
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c_isNewAccount: not k.cpt.accountExists(p.contractAddress),
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c_gasBalance: k.cpt.gasMeter.gasRemaining,
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c_contractGas: p.gas,
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c_currentMemSize: k.cpt.memory.len,
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c_memOffset: p.memOffset,
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c_memLength: p.memLength))
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# EIP 2046: temporary disabled
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# reduce gas fee for precompiles
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# from 700 to 40
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if gasCost >= 0:
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k.cpt.gasMeter.consumeGas(gasCost, reason = $DelegateCall)
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k.cpt.returnData.setLen(0)
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if k.cpt.msg.depth >= MaxCallDepth:
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debug "Computation Failure",
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reason = "Stack too deep",
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maximumDepth = MaxCallDepth,
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depth = k.cpt.msg.depth
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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if gasCost < 0 and childGasLimit <= 0:
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raise newException(
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OutOfGas, "Gas not enough to perform calculation (delegateCall)")
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k.cpt.memory.extend(p.memInPos, p.memInLen)
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k.cpt.memory.extend(p.memOutPos, p.memOutLen)
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k.execSubCall(
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memPos = p.memOutPos,
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memLen = p.memOutLen,
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childMsg = Message(
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kind: evmcDelegateCall,
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depth: k.cpt.msg.depth + 1,
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gas: childGasLimit,
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sender: p.sender,
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contractAddress: p.contractAddress,
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codeAddress: p.destination,
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value: p.value,
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data: k.cpt.memory.read(p.memInPos, p.memInLen),
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flags: p.flags))
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# ---------------------
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staticCallOp: Vm2OpFn = proc(k: var Vm2Ctx) =
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## 0xfa, Static message-call into an account.
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let
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p = k.cpt.staticCallParams
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var (gasCost, childGasLimit) = k.cpt.gasCosts[StaticCall].c_handler(
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p.value,
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GasParams(
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kind: StaticCall,
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c_isNewAccount: not k.cpt.accountExists(p.contractAddress),
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c_gasBalance: k.cpt.gasMeter.gasRemaining,
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c_contractGas: p.gas,
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c_currentMemSize: k.cpt.memory.len,
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c_memOffset: p.memOffset,
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c_memLength: p.memLength))
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# EIP 2046: temporary disabled
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# reduce gas fee for precompiles
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# from 700 to 40
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#
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# when opCode == StaticCall:
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# if k.cpt.fork >= FkBerlin and destination.toInt <= MaxPrecompilesAddr:
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# gasCost = gasCost - 660.GasInt
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if gasCost >= 0:
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k.cpt.gasMeter.consumeGas(gasCost, reason = $StaticCall)
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k.cpt.returnData.setLen(0)
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if k.cpt.msg.depth >= MaxCallDepth:
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debug "Computation Failure",
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reason = "Stack too deep",
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maximumDepth = MaxCallDepth,
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depth = k.cpt.msg.depth
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k.cpt.gasMeter.returnGas(childGasLimit)
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return
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if gasCost < 0 and childGasLimit <= 0:
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raise newException(
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OutOfGas, "Gas not enough to perform calculation (staticCall)")
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k.cpt.memory.extend(p.memInPos, p.memInLen)
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k.cpt.memory.extend(p.memOutPos, p.memOutLen)
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k.execSubCall(
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memPos = p.memOutPos,
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memLen = p.memOutLen,
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childMsg = Message(
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kind: evmcCall,
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depth: k.cpt.msg.depth + 1,
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gas: childGasLimit,
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sender: p.sender,
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contractAddress: p.contractAddress,
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codeAddress: p.destination,
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value: p.value,
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data: k.cpt.memory.read(p.memInPos, p.memInLen),
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flags: p.flags))
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# ------------------------------------------------------------------------------
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# Public, op exec table entries
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# ------------------------------------------------------------------------------
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const
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vm2OpExecCall*: seq[Vm2OpExec] = @[
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(opCode: Call, ## 0xf1, Message-Call into an account
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forks: Vm2OpAllForks,
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name: "call",
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info: "Message-Call into an account",
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exec: (prep: vm2OpIgnore,
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run: callOp,
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post: vm2OpIgnore)),
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(opCode: CallCode, ## 0xf2, Message-Call with alternative code
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forks: Vm2OpAllForks,
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name: "callCode",
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info: "Message-call into this account with alternative account's code",
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exec: (prep: vm2OpIgnore,
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run: callCodeOp,
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post: vm2OpIgnore)),
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(opCode: DelegateCall, ## 0xf4, CallCode with persisting sender and value
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forks: Vm2OpHomesteadAndLater,
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name: "delegateCall",
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info: "Message-call into this account with an alternative account's " &
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"code but persisting the current values for sender and value.",
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exec: (prep: vm2OpIgnore,
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run: delegateCallOp,
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post: vm2OpIgnore)),
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(opCode: StaticCall, ## 0xfa, Static message-call into an account
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forks: Vm2OpByzantiumAndLater,
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name: "staticCall",
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info: "Static message-call into an account",
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exec: (prep: vm2OpIgnore,
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run: staticCallOp,
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post: vm2OpIgnore))]
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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