276 lines
9.8 KiB
Nim
276 lines
9.8 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 http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or http://opensource.org/licenses/MIT)
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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import
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tables, macros,
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chronicles,
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./interpreter/[opcode_values, opcodes_impl, vm_forks, gas_costs, gas_meter, utils/macros_gen_opcodes],
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./code_stream,
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../vm_types, ../errors, precompiles,
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./stack, terminal # Those are only needed for logging
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logScope:
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topics = "vm opcode"
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func invalidInstruction*(computation: BaseComputation) {.inline.} =
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raise newException(InvalidInstruction, "Invalid instruction, received an opcode not implemented in the current fork.")
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let FrontierOpDispatch {.compileTime.}: array[Op, NimNode] = block:
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fill_enum_table_holes(Op, newIdentNode("invalidInstruction")):
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[
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Stop: newIdentNode "toBeReplacedByBreak",
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Add: newIdentNode "add",
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Mul: newIdentNode "mul",
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Sub: newIdentNode "sub",
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Div: newIdentNode "divide",
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Sdiv: newIdentNode "sdiv",
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Mod: newIdentNode "modulo",
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Smod: newIdentNode "smod",
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Addmod: newIdentNode "addmod",
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Mulmod: newIdentNode "mulmod",
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Exp: newIdentNode "exp",
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SignExtend: newIdentNode "signExtend",
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# 10s: Comparison & Bitwise Logic Operations
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Lt: newIdentNode "lt",
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Gt: newIdentNode "gt",
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Slt: newIdentNode "slt",
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Sgt: newIdentNode "sgt",
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Eq: newIdentNode "eq",
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IsZero: newIdentNode "isZero",
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And: newIdentNode "andOp",
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Or: newIdentNode "orOp",
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Xor: newIdentNode "xorOp",
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Not: newIdentNode "notOp",
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Byte: newIdentNode "byteOp",
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# 20s: SHA3
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Sha3: newIdentNode "sha3",
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# 30s: Environmental Information
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Address: newIdentNode "address",
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Balance: newIdentNode "balance",
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Origin: newIdentNode "origin",
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Caller: newIdentNode "caller",
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CallValue: newIdentNode "callValue",
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CallDataLoad: newIdentNode "callDataLoad",
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CallDataSize: newIdentNode "callDataSize",
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CallDataCopy: newIdentNode "callDataCopy",
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CodeSize: newIdentNode "codeSize",
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CodeCopy: newIdentNode "codeCopy",
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GasPrice: newIdentNode "gasPrice",
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ExtCodeSize: newIdentNode "extCodeSize",
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ExtCodeCopy: newIdentNode "extCodeCopy",
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# ReturnDataSize: introduced in Byzantium
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# ReturnDataCopy: introduced in Byzantium
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# 40s: Block Information
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Blockhash: newIdentNode "blockhash",
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Coinbase: newIdentNode "coinbase",
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Timestamp: newIdentNode "timestamp",
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Number: newIdentNode "blockNumber",
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Difficulty: newIdentNode "difficulty",
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GasLimit: newIdentNode "gasLimit",
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# 50s: Stack, Memory, Storage and Flow Operations
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Pop: newIdentNode "pop",
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Mload: newIdentNode "mload",
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Mstore: newIdentNode "mstore",
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Mstore8: newIdentNode "mstore8",
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Sload: newIdentNode "sload",
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Sstore: newIdentNode "sstore",
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Jump: newIdentNode "jump",
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JumpI: newIdentNode "jumpI",
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Pc: newIdentNode "pc",
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Msize: newIdentNode "msize",
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Gas: newIdentNode "gas",
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JumpDest: newIdentNode "jumpDest",
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# 60s & 70s: Push Operations.
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Push1: newIdentNode "push1",
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Push2: newIdentNode "push2",
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Push3: newIdentNode "push3",
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Push4: newIdentNode "push4",
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Push5: newIdentNode "push5",
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Push6: newIdentNode "push6",
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Push7: newIdentNode "push7",
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Push8: newIdentNode "push8",
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Push9: newIdentNode "push9",
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Push10: newIdentNode "push10",
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Push11: newIdentNode "push11",
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Push12: newIdentNode "push12",
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Push13: newIdentNode "push13",
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Push14: newIdentNode "push14",
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Push15: newIdentNode "push15",
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Push16: newIdentNode "push16",
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Push17: newIdentNode "push17",
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Push18: newIdentNode "push18",
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Push19: newIdentNode "push19",
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Push20: newIdentNode "push20",
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Push21: newIdentNode "push21",
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Push22: newIdentNode "push22",
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Push23: newIdentNode "push23",
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Push24: newIdentNode "push24",
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Push25: newIdentNode "push25",
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Push26: newIdentNode "push26",
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Push27: newIdentNode "push27",
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Push28: newIdentNode "push28",
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Push29: newIdentNode "push29",
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Push30: newIdentNode "push30",
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Push31: newIdentNode "push31",
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Push32: newIdentNode "push32",
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# 80s: Duplication Operations
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Dup1: newIdentNode "dup1",
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Dup2: newIdentNode "dup2",
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Dup3: newIdentNode "dup3",
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Dup4: newIdentNode "dup4",
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Dup5: newIdentNode "dup5",
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Dup6: newIdentNode "dup6",
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Dup7: newIdentNode "dup7",
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Dup8: newIdentNode "dup8",
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Dup9: newIdentNode "dup9",
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Dup10: newIdentNode "dup10",
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Dup11: newIdentNode "dup11",
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Dup12: newIdentNode "dup12",
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Dup13: newIdentNode "dup13",
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Dup14: newIdentNode "dup14",
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Dup15: newIdentNode "dup15",
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Dup16: newIdentNode "dup16",
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# 90s: Exchange Operations
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Swap1: newIdentNode "swap1",
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Swap2: newIdentNode "swap2",
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Swap3: newIdentNode "swap3",
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Swap4: newIdentNode "swap4",
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Swap5: newIdentNode "swap5",
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Swap6: newIdentNode "swap6",
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Swap7: newIdentNode "swap7",
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Swap8: newIdentNode "swap8",
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Swap9: newIdentNode "swap9",
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Swap10: newIdentNode "swap10",
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Swap11: newIdentNode "swap11",
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Swap12: newIdentNode "swap12",
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Swap13: newIdentNode "swap13",
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Swap14: newIdentNode "swap14",
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Swap15: newIdentNode "swap15",
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Swap16: newIdentNode "swap16",
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# a0s: Logging Operations
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Log0: newIdentNode "log0",
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Log1: newIdentNode "log1",
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Log2: newIdentNode "log2",
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Log3: newIdentNode "log3",
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Log4: newIdentNode "log4",
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# f0s: System operations
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Create: newIdentNode "create",
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Call: newIdentNode "call",
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CallCode: newIdentNode "callCode",
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Return: newIdentNode "returnOp",
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# StaticCall: introduced in Byzantium
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# Revert: introduced in Byzantium
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# Invalid: newIdentNode "invalid",
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SelfDestruct: newIdentNode "selfDestruct"
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]
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proc genHomesteadJumpTable(ops: array[Op, NimNode]): array[Op, NimNode] {.compileTime.} =
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result = ops
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result[DelegateCall] = newIdentNode "delegateCall"
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let HomesteadOpDispatch {.compileTime.}: array[Op, NimNode] = genHomesteadJumpTable(FrontierOpDispatch)
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proc opTableToCaseStmt(opTable: array[Op, NimNode], computation: NimNode): NimNode =
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let instr = quote do: `computation`.instr
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result = nnkCaseStmt.newTree(instr)
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# Add a branch for each (opcode, proc) pair
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# We dispatch to the next instruction at the end of each branch
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for op, opImpl in opTable.pairs:
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let asOp = quote do: Op(`op`) # TODO: unfortunately when passing to runtime, ops are transformed into int
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let branchStmt = block:
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if op == Stop:
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quote do:
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trace "op: Stop"
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if not `computation`.code.atEnd() and `computation`.tracingEnabled:
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# we only trace `REAL STOP` and ignore `FAKE STOP`
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`computation`.opIndex = `computation`.traceOpCodeStarted(`asOp`)
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`computation`.traceOpCodeEnded(`asOp`, `computation`.opIndex)
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break
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else:
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if BaseGasCosts[op].kind == GckFixed:
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quote do:
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if `computation`.tracingEnabled:
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`computation`.opIndex = `computation`.traceOpCodeStarted(`asOp`)
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`computation`.gasMeter.consumeGas(`computation`.gasCosts[`asOp`].cost, reason = $`asOp`)
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`opImpl`(`computation`)
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if `computation`.tracingEnabled:
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`computation`.traceOpCodeEnded(`asOp`, `computation`.opIndex)
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`instr` = `computation`.code.next()
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else:
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quote do:
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if `computation`.tracingEnabled:
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`computation`.opIndex = `computation`.traceOpCodeStarted(`asOp`)
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`opImpl`(`computation`)
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if `computation`.tracingEnabled:
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`computation`.traceOpCodeEnded(`asOp`, `computation`.opIndex)
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when `asOp` in {Return, Revert, SelfDestruct}:
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break
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else:
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`instr` = `computation`.code.next()
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result.add nnkOfBranch.newTree(
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newIdentNode($op),
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branchStmt
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)
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# Wrap the case statement in while true + computed goto
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result = quote do:
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if `computation`.tracingEnabled:
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`computation`.prepareTracer()
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`computation`.instr = `computation`.code.next()
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while true:
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{.computedGoto.}
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# TODO lots of macro magic here to unravel, with chronicles...
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# `computation`.logger.log($`computation`.stack & "\n\n", fgGreen)
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`result`
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macro genFrontierDispatch(computation: BaseComputation): untyped =
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result = opTableToCaseStmt(FrontierOpDispatch, computation)
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macro genHomesteadDispatch(computation: BaseComputation): untyped =
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result = opTableToCaseStmt(HomesteadOpDispatch, computation)
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proc frontierVM(computation: BaseComputation) =
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genFrontierDispatch(computation)
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proc homesteadVM(computation: BaseComputation) =
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genHomesteadDispatch(computation)
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proc selectVM(computation: BaseComputation, fork: Fork) =
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# TODO: Optimise getting fork and updating opCodeExec only when necessary
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case fork
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of FkFrontier..FkThawing:
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computation.frontierVM()
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of FkHomestead..FkSpurious:
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computation.homesteadVM()
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else:
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raise newException(VMError, "Unknown or not implemented fork: " & $fork)
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proc executeOpcodes(computation: BaseComputation) =
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try:
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let fork = computation.getFork
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if `computation`.execPrecompiles(fork):
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computation.nextProc()
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return
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computation.selectVM(fork)
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except:
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let msg = getCurrentExceptionMsg()
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computation.setError(&"Opcode Dispatch Error msg={msg}, depth={computation.msg.depth}", true)
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computation.nextProc()
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