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@tokamak-zk-evm/synthesizer

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Tokamak zk-EVM Synthesizer - Processes Ethereum transactions into wire maps for Tokamak zk-SNARK proof generation

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import { Hardfork } from '@synthesizer-libs/common'; import { BIGINT_0, BIGINT_1, BIGINT_3, BIGINT_31, BIGINT_32, BIGINT_64, VERKLE_BASIC_DATA_LEAF_KEY, VERKLE_CODE_HASH_LEAF_KEY, bigIntToBytes, equalsBytes, getVerkleTreeIndicesForStorageSlot, setLengthLeft, } from "@synthesizer-libs/util"; import { EOFError } from '../eof/errors.js'; import { ERROR } from '../exceptions.js'; import { DELEGATION_7702_FLAG } from '../types.js'; import { updateSstoreGasEIP1283 } from './EIP1283.js'; import { updateSstoreGasEIP2200 } from './EIP2200.js'; import { accessAddressEIP2929, accessStorageEIP2929 } from './EIP2929.js'; import { createAddressFromStackBigInt, divCeil, maxCallGas, setLengthLeftStorage, subMemUsage, trap, updateSstoreGas, } from './util.js'; const EXTCALL_TARGET_MAX = BigInt(2) ** BigInt(8 * 20) - BigInt(1); async function eip7702GasCost(runState, common, address, charge2929Gas) { const code = await runState.stateManager.getCode(address); if (equalsBytes(code.slice(0, 3), DELEGATION_7702_FLAG)) { return accessAddressEIP2929(runState, code.slice(3, 24), common, charge2929Gas); } return BIGINT_0; } export const dynamicGasHandlers = new Map([ [ /* EXP */ 0x0a, async function (runState, gas, common) { const [_base, exponent] = runState.stack.peek(2); if (exponent === BIGINT_0) { return gas; } let byteLength = exponent.toString(2).length / 8; if (byteLength > Math.trunc(byteLength)) { byteLength = Math.trunc(byteLength) + 1; } if (byteLength < 1 || byteLength > 32) { trap(ERROR.OUT_OF_RANGE); } const expPricePerByte = common.param('expByteGas'); gas += BigInt(byteLength) * expPricePerByte; return gas; }, ], [ /* KECCAK256 */ 0x20, async function (runState, gas, common) { const [offset, length] = runState.stack.peek(2); gas += subMemUsage(runState, offset, length, common); gas += common.param('keccak256WordGas') * divCeil(length, BIGINT_32); return gas; }, ], [ /* BALANCE */ 0x31, async function (runState, gas, common) { const address = createAddressFromStackBigInt(runState.stack.peek()[0]); let charge2929Gas = true; if (common.isActivatedEIP(6800)) { const coldAccessGas = runState.env.accessWitness.touchAddressOnReadAndComputeGas(address, 0, VERKLE_BASIC_DATA_LEAF_KEY); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, address.bytes, common, charge2929Gas); } return gas; }, ], [ /* CALLDATACOPY */ 0x37, async function (runState, gas, common) { const [memOffset, _dataOffset, dataLength] = runState.stack.peek(3); gas += subMemUsage(runState, memOffset, dataLength, common); if (dataLength !== BIGINT_0) { gas += common.param('copyGas') * divCeil(dataLength, BIGINT_32); } return gas; }, ], [ /* CODECOPY */ 0x39, async function (runState, gas, common) { const [memOffset, _codeOffset, dataLength] = runState.stack.peek(3); gas += subMemUsage(runState, memOffset, dataLength, common); if (dataLength !== BIGINT_0) { gas += common.param('copyGas') * divCeil(dataLength, BIGINT_32); if (common.isActivatedEIP(6800) && runState.env.chargeCodeAccesses === true) { const contract = runState.interpreter.getAddress(); let codeEnd = _codeOffset + dataLength; const codeSize = runState.interpreter.getCodeSize(); if (codeEnd > codeSize) { codeEnd = codeSize; } gas += runState.env.accessWitness.touchCodeChunksRangeOnReadAndChargeGas(contract, Number(_codeOffset), Number(codeEnd)); } } return gas; }, ], [ /* EXTCODESIZE */ 0x3b, async function (runState, gas, common) { const address = createAddressFromStackBigInt(runState.stack.peek()[0]); let charge2929Gas = true; if (common.isActivatedEIP(6800) && runState.interpreter._evm.getPrecompile(address) === undefined) { let coldAccessGas = BIGINT_0; coldAccessGas += runState.env.accessWitness.touchAddressOnReadAndComputeGas(address, 0, VERKLE_BASIC_DATA_LEAF_KEY); gas += coldAccessGas; // if cold access gas has been charged 2929 gas shouldn't be charged charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, address.bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, address, charge2929Gas); } return gas; }, ], [ /* EXTCODECOPY */ 0x3c, async function (runState, gas, common) { const [addressBigInt, memOffset, _codeOffset, dataLength] = runState.stack.peek(4); const address = createAddressFromStackBigInt(addressBigInt); gas += subMemUsage(runState, memOffset, dataLength, common); let charge2929Gas = true; if (common.isActivatedEIP(6800) && runState.interpreter._evm.getPrecompile(address) === undefined) { let coldAccessGas = BIGINT_0; coldAccessGas += runState.env.accessWitness.touchAddressOnReadAndComputeGas(address, 0, VERKLE_BASIC_DATA_LEAF_KEY); gas += coldAccessGas; // if cold access gas has been charged 2929 gas shouldn't be charged charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, address.bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, address, charge2929Gas); } if (dataLength !== BIGINT_0) { gas += common.param('copyGas') * divCeil(dataLength, BIGINT_32); if (common.isActivatedEIP(6800)) { let codeEnd = _codeOffset + dataLength; const codeSize = BigInt((await runState.stateManager.getCode(address)).length); if (codeEnd > codeSize) { codeEnd = codeSize; } gas += runState.env.accessWitness.touchCodeChunksRangeOnReadAndChargeGas(address, Number(_codeOffset), Number(codeEnd)); } } return gas; }, ], [ /* RETURNDATACOPY */ 0x3e, async function (runState, gas, common) { const [memOffset, returnDataOffset, dataLength] = runState.stack.peek(3); if (returnDataOffset + dataLength > runState.interpreter.getReturnDataSize()) { // For an EOF contract, the behavior is changed (see EIP 7069) // RETURNDATACOPY in that case does not throw OOG when reading out-of-bounds if (runState.env.eof === undefined) { trap(ERROR.OUT_OF_GAS); } } gas += subMemUsage(runState, memOffset, dataLength, common); if (dataLength !== BIGINT_0) { gas += common.param('copyGas') * divCeil(dataLength, BIGINT_32); } return gas; }, ], [ /* EXTCODEHASH */ 0x3f, async function (runState, gas, common) { const address = createAddressFromStackBigInt(runState.stack.peek()[0]); let charge2929Gas = true; if (common.isActivatedEIP(6800)) { let coldAccessGas = BIGINT_0; coldAccessGas += runState.env.accessWitness.touchAddressOnReadAndComputeGas(address, 0, VERKLE_CODE_HASH_LEAF_KEY); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, address.bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, address, charge2929Gas); } return gas; }, ], [ /* MLOAD */ 0x51, async function (runState, gas, common) { const pos = runState.stack.peek()[0]; gas += subMemUsage(runState, pos, BIGINT_32, common); return gas; }, ], [ /* MSTORE */ 0x52, async function (runState, gas, common) { const offset = runState.stack.peek()[0]; gas += subMemUsage(runState, offset, BIGINT_32, common); return gas; }, ], [ /* MSTORE8 */ 0x53, async function (runState, gas, common) { const offset = runState.stack.peek()[0]; gas += subMemUsage(runState, offset, BIGINT_1, common); return gas; }, ], [ /* SLOAD */ 0x54, async function (runState, gas, common) { const key = runState.stack.peek()[0]; const keyBuf = setLengthLeft(bigIntToBytes(key), 32); let charge2929Gas = true; if (common.isActivatedEIP(6800)) { const address = runState.interpreter.getAddress(); const { treeIndex, subIndex } = getVerkleTreeIndicesForStorageSlot(key); const coldAccessGas = runState.env.accessWitness.touchAddressOnReadAndComputeGas(address, treeIndex, subIndex); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessStorageEIP2929(runState, keyBuf, false, common, charge2929Gas); } return gas; }, ], [ /* SSTORE */ 0x55, async function (runState, gas, common) { if (runState.interpreter.isStatic()) { trap(ERROR.STATIC_STATE_CHANGE); } const [key, val] = runState.stack.peek(2); const keyBytes = setLengthLeft(bigIntToBytes(key), 32); // NOTE: this should be the shortest representation let value; if (val === BIGINT_0) { value = Uint8Array.from([]); } else { value = bigIntToBytes(val); } const currentStorage = setLengthLeftStorage(await runState.interpreter.storageLoad(keyBytes)); const originalStorage = setLengthLeftStorage(await runState.interpreter.storageLoad(keyBytes, true)); if (common.hardfork() === Hardfork.Constantinople) { gas += updateSstoreGasEIP1283(runState, currentStorage, originalStorage, setLengthLeftStorage(value), common); } else if (common.gteHardfork(Hardfork.Istanbul)) { if (!common.isActivatedEIP(6800)) { gas += updateSstoreGasEIP2200(runState, currentStorage, originalStorage, setLengthLeftStorage(value), keyBytes, common); } } else { gas += updateSstoreGas(runState, currentStorage, setLengthLeftStorage(value), common); } let charge2929Gas = true; if (common.isActivatedEIP(6800)) { const contract = runState.interpreter.getAddress(); const { treeIndex, subIndex } = getVerkleTreeIndicesForStorageSlot(key); const coldAccessGas = runState.env.accessWitness.touchAddressOnWriteAndComputeGas(contract, treeIndex, subIndex); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { // We have to do this after the Istanbul (EIP2200) checks. // Otherwise, we might run out of gas, due to "sentry check" of 2300 gas, // if we deduct extra gas first. gas += accessStorageEIP2929(runState, keyBytes, true, common, charge2929Gas); } return gas; }, ], [ /* MCOPY */ 0x5e, async function (runState, gas, common) { const [dst, src, length] = runState.stack.peek(3); const wordsCopied = (length + BIGINT_31) / BIGINT_32; gas += BIGINT_3 * wordsCopied; gas += subMemUsage(runState, src, length, common); gas += subMemUsage(runState, dst, length, common); return gas; }, ], [ /* LOG */ 0xa0, async function (runState, gas, common) { if (runState.interpreter.isStatic()) { trap(ERROR.STATIC_STATE_CHANGE); } const [memOffset, memLength] = runState.stack.peek(2); const topicsCount = runState.opCode - 0xa0; if (topicsCount < 0 || topicsCount > 4) { trap(ERROR.OUT_OF_RANGE); } gas += subMemUsage(runState, memOffset, memLength, common); gas += common.param('logTopicGas') * BigInt(topicsCount) + memLength * common.param('logDataGas'); return gas; }, ], /* DATACOPY */ [ 0xd3, async function (runState, gas, common) { const [memOffset, _dataOffset, dataLength] = runState.stack.peek(3); gas += subMemUsage(runState, memOffset, dataLength, common); if (dataLength !== BIGINT_0) { gas += common.param('copyGas') * divCeil(dataLength, BIGINT_32); } return gas; }, ], /* EOFCREATE */ [ 0xec, async function (runState, gas, common) { // Note: TX_CREATE_COST is in the base fee (this is 32000 and same as CREATE / CREATE2) // Note: in `gas.ts` programCounter is not yet incremented (which it is in `functions.ts`) // So have to manually add to programCounter here to get the right container index // Read container index const containerIndex = runState.env.code[runState.programCounter + 1]; // Pop stack values const [_value, _salt, inputOffset, inputSize] = runState.stack.peek(4); //if (common.isActivatedEIP(2929)) { // TODO: adding or not adding this makes test // --test=tests/prague/eip7692_eof_v1/eip7620_eof_create/test_eofcreate.py::test_eofcreate_then_call[fork_CancunEIP7692-blockchain_test] // still succeed. This only warms the current address?? This is also in CREATE/CREATE2 // Can this be removed in both? /*gas += accessAddressEIP2929( runState, runState.interpreter.getAddress().bytes, common, false ) }*/ // Expand memory gas += subMemUsage(runState, inputOffset, inputSize, common); // Read container const container = runState.env.eof.container.body.containerSections[containerIndex]; // Charge for hashing cost gas += common.param('keccak256WordGas') * divCeil(BigInt(container.length), BIGINT_32); const gasLeft = runState.interpreter.getGasLeft() - gas; runState.messageGasLimit = maxCallGas(gasLeft, gasLeft, runState, common); return gas; }, ], /* RETURNCONTRACT */ [ 0xee, async function (runState, gas, common) { // Pop stack values const [auxDataOffset, auxDataSize] = runState.stack.peek(2); // Expand memory gas += subMemUsage(runState, auxDataOffset, auxDataSize, common); return gas; }, ], [ /* CREATE */ 0xf0, async function (runState, gas, common) { if (runState.interpreter.isStatic()) { trap(ERROR.STATIC_STATE_CHANGE); } const [_value, offset, length] = runState.stack.peek(3); if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, runState.interpreter.getAddress().bytes, common, false); } if (common.isActivatedEIP(3860)) { gas += ((length + BIGINT_31) / BIGINT_32) * common.param('initCodeWordGas'); } gas += subMemUsage(runState, offset, length, common); let gasLimit = BigInt(runState.interpreter.getGasLeft()) - gas; gasLimit = maxCallGas(gasLimit, gasLimit, runState, common); runState.messageGasLimit = gasLimit; return gas; }, ], [ /* CALL */ 0xf1, async function (runState, gas, common) { const [currentGasLimit, toAddr, value, inOffset, inLength, outOffset, outLength] = runState.stack.peek(7); const toAddress = createAddressFromStackBigInt(toAddr); if (runState.interpreter.isStatic() && value !== BIGINT_0) { trap(ERROR.STATIC_STATE_CHANGE); } gas += subMemUsage(runState, inOffset, inLength, common); gas += subMemUsage(runState, outOffset, outLength, common); let charge2929Gas = true; if (common.isActivatedEIP(6800) && runState.interpreter._evm.getPrecompile(toAddress) === undefined) { // TODO: add check if toAddress is not a precompile const coldAccessGas = runState.env.accessWitness.touchAndChargeMessageCall(toAddress); if (value !== BIGINT_0) { const contractAddress = runState.interpreter.getAddress(); gas += runState.env.accessWitness.touchAddressOnWriteAndComputeGas(contractAddress, 0, VERKLE_BASIC_DATA_LEAF_KEY); gas += runState.env.accessWitness.touchAndChargeValueTransfer(toAddress); } gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, toAddress.bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, toAddress, charge2929Gas); } if (value !== BIGINT_0 && !common.isActivatedEIP(6800)) { gas += common.param('callValueTransferGas'); } if (common.gteHardfork(Hardfork.SpuriousDragon)) { // We are at or after Spurious Dragon // Call new account gas: account is DEAD and we transfer nonzero value const account = await runState.stateManager.getAccount(toAddress); let deadAccount = false; if (account === undefined || account.isEmpty()) { deadAccount = true; } if (deadAccount && !(value === BIGINT_0)) { gas += common.param('callNewAccountGas'); } } else if ((await runState.stateManager.getAccount(toAddress)) === undefined) { // We are before Spurious Dragon and the account does not exist. // Call new account gas: account does not exist (it is not in the state trie, not even as an "empty" account) gas += common.param('callNewAccountGas'); } const gasLimit = maxCallGas(currentGasLimit, runState.interpreter.getGasLeft() - gas, runState, common); // note that TangerineWhistle or later this cannot happen // (it could have ran out of gas prior to getting here though) if (gasLimit > runState.interpreter.getGasLeft() - gas) { trap(ERROR.OUT_OF_GAS); } if (gas > runState.interpreter.getGasLeft()) { trap(ERROR.OUT_OF_GAS); } runState.messageGasLimit = gasLimit; return gas; }, ], [ /* CALLCODE */ 0xf2, async function (runState, gas, common) { const [currentGasLimit, toAddr, value, inOffset, inLength, outOffset, outLength] = runState.stack.peek(7); const toAddress = createAddressFromStackBigInt(toAddr); gas += subMemUsage(runState, inOffset, inLength, common); gas += subMemUsage(runState, outOffset, outLength, common); let charge2929Gas = true; if (common.isActivatedEIP(6800) && runState.interpreter._evm.getPrecompile(toAddress) === undefined) { const coldAccessGas = runState.env.accessWitness.touchAndChargeMessageCall(toAddress); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, createAddressFromStackBigInt(toAddr).bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, toAddress, charge2929Gas); } if (value !== BIGINT_0) { gas += common.param('callValueTransferGas'); } const gasLimit = maxCallGas(currentGasLimit, runState.interpreter.getGasLeft() - gas, runState, common); // note that TangerineWhistle or later this cannot happen // (it could have ran out of gas prior to getting here though) if (gasLimit > runState.interpreter.getGasLeft() - gas) { trap(ERROR.OUT_OF_GAS); } runState.messageGasLimit = gasLimit; return gas; }, ], [ /* RETURN */ 0xf3, async function (runState, gas, common) { const [offset, length] = runState.stack.peek(2); gas += subMemUsage(runState, offset, length, common); return gas; }, ], [ /* DELEGATECALL */ 0xf4, async function (runState, gas, common) { const [currentGasLimit, toAddr, inOffset, inLength, outOffset, outLength] = runState.stack.peek(6); const toAddress = createAddressFromStackBigInt(toAddr); gas += subMemUsage(runState, inOffset, inLength, common); gas += subMemUsage(runState, outOffset, outLength, common); let charge2929Gas = true; if (common.isActivatedEIP(6800) && runState.interpreter._evm.getPrecompile(toAddress) === undefined) { // TODO: add check if toAddress is not a precompile const coldAccessGas = runState.env.accessWitness.touchAndChargeMessageCall(toAddress); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, createAddressFromStackBigInt(toAddr).bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, toAddress, charge2929Gas); } const gasLimit = maxCallGas(currentGasLimit, runState.interpreter.getGasLeft() - gas, runState, common); // note that TangerineWhistle or later this cannot happen // (it could have ran out of gas prior to getting here though) if (gasLimit > runState.interpreter.getGasLeft() - gas) { trap(ERROR.OUT_OF_GAS); } runState.messageGasLimit = gasLimit; return gas; }, ], [ /* CREATE2 */ 0xf5, async function (runState, gas, common) { if (runState.interpreter.isStatic()) { trap(ERROR.STATIC_STATE_CHANGE); } const [_value, offset, length, _salt] = runState.stack.peek(4); gas += subMemUsage(runState, offset, length, common); if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, runState.interpreter.getAddress().bytes, common, false); } if (common.isActivatedEIP(3860)) { gas += ((length + BIGINT_31) / BIGINT_32) * common.param('initCodeWordGas'); } gas += common.param('keccak256WordGas') * divCeil(length, BIGINT_32); let gasLimit = runState.interpreter.getGasLeft() - gas; gasLimit = maxCallGas(gasLimit, gasLimit, runState, common); // CREATE2 is only available after TangerineWhistle (Constantinople introduced this opcode) runState.messageGasLimit = gasLimit; return gas; }, ], /* EXTCALL */ [ 0xf8, async function (runState, gas, common) { // Charge WARM_STORAGE_READ_COST (100) -> done in accessAddressEIP2929 // Peek stack values const [toAddr, inOffset, inLength, value] = runState.stack.peek(4); // If value is nonzero and in static mode, throw: if (runState.interpreter.isStatic() && value !== BIGINT_0) { trap(ERROR.STATIC_STATE_CHANGE); } // If value > 0, charge CALL_VALUE_COST if (value > BIGINT_0) { gas += common.param('callValueTransferGas'); } // Check if the target address > 20 bytes if (toAddr > EXTCALL_TARGET_MAX) { trap(EOFError.InvalidExtcallTarget); } // Charge for memory expansion gas += subMemUsage(runState, inOffset, inLength, common); const toAddress = createAddressFromStackBigInt(toAddr); // Charge to make address warm (2600 gas) // (in case if address is already warm, this charges the 100 gas) gas += accessAddressEIP2929(runState, toAddress.bytes, common); // Charge account creation cost if value is nonzero if (value > BIGINT_0) { const account = await runState.stateManager.getAccount(toAddress); const deadAccount = account === undefined || account.isEmpty(); if (deadAccount) { gas += common.param('callNewAccountGas'); } } const minRetainedGas = common.param('minRetainedGas'); const minCalleeGas = common.param('minCalleeGas'); const currentGasAvailable = runState.interpreter.getGasLeft() - gas; const reducedGas = currentGasAvailable / BIGINT_64; // Calculate the gas limit for the callee // (this is the gas available for the next call frame) let gasLimit; if (reducedGas < minRetainedGas) { gasLimit = currentGasAvailable - minRetainedGas; } else { gasLimit = currentGasAvailable - reducedGas; } if (runState.env.depth >= Number(common.param('stackLimit')) || runState.env.contract.balance < value || gasLimit < minCalleeGas) { // Note: this is a hack, TODO: get around this hack and clean this up // This special case will ensure that the actual EXT*CALL is being ran, // But, the code in `function.ts` will note that `runState.messageGasLimit` is set to a negative number // This special number signals that `1` should be put on the stack (per spec) gasLimit = -BIGINT_1; } runState.messageGasLimit = gasLimit; return gas; }, ], /* EXTDELEGATECALL */ [ 0xf9, async function (runState, gas, common) { // Charge WARM_STORAGE_READ_COST (100) -> done in accessAddressEIP2929 // Peek stack values const [toAddr, inOffset, inLength] = runState.stack.peek(3); // Check if the target address > 20 bytes if (toAddr > EXTCALL_TARGET_MAX) { trap(EOFError.InvalidExtcallTarget); } // Charge for memory expansion gas += subMemUsage(runState, inOffset, inLength, common); const toAddress = createAddressFromStackBigInt(toAddr); // Charge to make address warm (2600 gas) // (in case if address is already warm, this charges the 100 gas) gas += accessAddressEIP2929(runState, toAddress.bytes, common); const minRetainedGas = common.param('minRetainedGas'); const minCalleeGas = common.param('minCalleeGas'); const currentGasAvailable = runState.interpreter.getGasLeft() - gas; const reducedGas = currentGasAvailable / BIGINT_64; // Calculate the gas limit for the callee // (this is the gas available for the next call frame) let gasLimit; if (reducedGas < minRetainedGas) { gasLimit = currentGasAvailable - minRetainedGas; } else { gasLimit = currentGasAvailable - reducedGas; } if (runState.env.depth >= Number(common.param('stackLimit')) || gasLimit < minCalleeGas) { // Note: this is a hack, TODO: get around this hack and clean this up // This special case will ensure that the actual EXT*CALL is being ran, // But, the code in `function.ts` will note that `runState.messageGasLimit` is set to a negative number // This special number signals that `1` should be put on the stack (per spec) gasLimit = -BIGINT_1; } runState.messageGasLimit = gasLimit; return gas; }, ], [ /* STATICCALL */ 0xfa, async function (runState, gas, common) { const [currentGasLimit, toAddr, inOffset, inLength, outOffset, outLength] = runState.stack.peek(6); gas += subMemUsage(runState, inOffset, inLength, common); gas += subMemUsage(runState, outOffset, outLength, common); let charge2929Gas = true; if (common.isActivatedEIP(6800)) { const toAddress = createAddressFromStackBigInt(toAddr); // TODO: add check if toAddress is not a precompile const coldAccessGas = runState.env.accessWitness.touchAndChargeMessageCall(toAddress); gas += coldAccessGas; charge2929Gas = coldAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, createAddressFromStackBigInt(toAddr).bytes, common, charge2929Gas); } if (common.isActivatedEIP(7702)) { gas += await eip7702GasCost(runState, common, createAddressFromStackBigInt(toAddr), charge2929Gas); } const gasLimit = maxCallGas(currentGasLimit, runState.interpreter.getGasLeft() - gas, runState, common); // we set TangerineWhistle or later to true here, as STATICCALL was available from Byzantium (which is after TangerineWhistle) runState.messageGasLimit = gasLimit; return gas; }, ], /* EXTSTATICCALL */ [ 0xfb, async function (runState, gas, common) { // Charge WARM_STORAGE_READ_COST (100) -> done in accessAddressEIP2929 // Peek stack values const [toAddr, inOffset, inLength] = runState.stack.peek(3); // Check if the target address > 20 bytes if (toAddr > EXTCALL_TARGET_MAX) { trap(EOFError.InvalidExtcallTarget); } // Charge for memory expansion gas += subMemUsage(runState, inOffset, inLength, common); const toAddress = createAddressFromStackBigInt(toAddr); // Charge to make address warm (2600 gas) // (in case if address is already warm, this charges the 100 gas) gas += accessAddressEIP2929(runState, toAddress.bytes, common); const minRetainedGas = common.param('minRetainedGas'); const minCalleeGas = common.param('minCalleeGas'); const currentGasAvailable = runState.interpreter.getGasLeft() - gas; const reducedGas = currentGasAvailable / BIGINT_64; // Calculate the gas limit for the callee // (this is the gas available for the next call frame) let gasLimit; if (reducedGas < minRetainedGas) { gasLimit = currentGasAvailable - minRetainedGas; } else { gasLimit = currentGasAvailable - reducedGas; } if (runState.env.depth >= Number(common.param('stackLimit')) || gasLimit < minCalleeGas) { // Note: this is a hack, TODO: get around this hack and clean this up // This special case will ensure that the actual EXT*CALL is being ran, // But, the code in `function.ts` will note that `runState.messageGasLimit` is set to a negative number // This special number signals that `1` should be put on the stack (per spec) gasLimit = -BIGINT_1; } runState.messageGasLimit = gasLimit; return gas; }, ], [ /* REVERT */ 0xfd, async function (runState, gas, common) { const [offset, length] = runState.stack.peek(2); gas += subMemUsage(runState, offset, length, common); return gas; }, ], [ /* SELFDESTRUCT */ 0xff, async function (runState, gas, common) { if (runState.interpreter.isStatic()) { trap(ERROR.STATIC_STATE_CHANGE); } const selfdestructToaddressBigInt = runState.stack.peek()[0]; const selfdestructToAddress = createAddressFromStackBigInt(selfdestructToaddressBigInt); const contractAddress = runState.interpreter.getAddress(); let deductGas = false; const balance = await runState.interpreter.getExternalBalance(contractAddress); if (common.gteHardfork(Hardfork.SpuriousDragon)) { // EIP-161: State Trie Clearing if (balance > BIGINT_0) { // This technically checks if account is empty or non-existent const account = await runState.stateManager.getAccount(selfdestructToAddress); if (account === undefined || account.isEmpty()) { deductGas = true; } } } else if (common.gteHardfork(Hardfork.TangerineWhistle)) { // EIP-150 (Tangerine Whistle) gas semantics const exists = (await runState.stateManager.getAccount(selfdestructToAddress)) !== undefined; if (!exists) { deductGas = true; } } if (deductGas) { gas += common.param('callNewAccountGas'); } let selfDestructToCharge2929Gas = true; if (common.isActivatedEIP(6800)) { gas += runState.env.accessWitness.touchAddressOnReadAndComputeGas(contractAddress, 0, VERKLE_BASIC_DATA_LEAF_KEY); if (balance > BIGINT_0) { gas += runState.env.accessWitness.touchAddressOnWriteAndComputeGas(contractAddress, 0, VERKLE_BASIC_DATA_LEAF_KEY); } let selfDestructToColdAccessGas = runState.env.accessWitness.touchAddressOnReadAndComputeGas(selfdestructToAddress, 0, VERKLE_BASIC_DATA_LEAF_KEY); if (balance > BIGINT_0) { selfDestructToColdAccessGas += runState.env.accessWitness.touchAddressOnWriteAndComputeGas(selfdestructToAddress, 0, VERKLE_BASIC_DATA_LEAF_KEY); } gas += selfDestructToColdAccessGas; selfDestructToCharge2929Gas = selfDestructToColdAccessGas === BIGINT_0; } if (common.isActivatedEIP(2929)) { gas += accessAddressEIP2929(runState, selfdestructToAddress.bytes, common, selfDestructToCharge2929Gas, true); } return gas; }, ], ]); // Set the range [0xa0, 0xa4] to the LOG handler const logDynamicFunc = dynamicGasHandlers.get(0xa0); for (let i = 0xa1; i <= 0xa4; i++) { dynamicGasHandlers.set(i, logDynamicFunc); } //# sourceMappingURL=gas.js.map