@ethereumjs/evm
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JavaScript Ethereum Virtual Machine (EVM) implementation
64 lines • 3.29 kB
JavaScript
import { EthereumJSErrorWithoutCode, bigIntToBytes, bytesToHex, computeVersionedHash, concatBytes, setLengthLeft, } from '@ethereumjs/util';
import { EVMError } from "../errors.js";
import { EVMErrorResult, OOGResult } from "../evm.js";
import { getPrecompileName } from "./index.js";
import { gasLimitCheck } from "./util.js";
export const BLS_MODULUS = BigInt('52435875175126190479447740508185965837690552500527637822603658699938581184513');
const modulusBuffer = setLengthLeft(bigIntToBytes(BLS_MODULUS), 32);
export async function precompile0a(opts) {
const pName = getPrecompileName('0a');
if (opts.common.customCrypto?.kzg === undefined) {
throw EthereumJSErrorWithoutCode('kzg not initialized');
}
const gasUsed = opts.common.param('kzgPointEvaluationPrecompileGas');
if (!gasLimitCheck(opts, gasUsed, pName)) {
return OOGResult(opts.gasLimit);
}
if (opts.data.length !== 192) {
return EVMErrorResult(new EVMError(EVMError.errorMessages.INVALID_INPUT_LENGTH), opts.gasLimit);
}
const version = Number(opts.common.param('blobCommitmentVersionKzg'));
const fieldElementsPerBlob = opts.common.param('fieldElementsPerBlob');
const versionedHash = bytesToHex(opts.data.subarray(0, 32));
const z = bytesToHex(opts.data.subarray(32, 64));
const y = bytesToHex(opts.data.subarray(64, 96));
const commitment = bytesToHex(opts.data.subarray(96, 144));
const kzgProof = bytesToHex(opts.data.subarray(144, 192));
if (computeVersionedHash(commitment, version) !== versionedHash) {
if (opts._debug !== undefined) {
opts._debug(`${pName} failed: INVALID_COMMITMENT`);
}
return EVMErrorResult(new EVMError(EVMError.errorMessages.INVALID_COMMITMENT), opts.gasLimit);
}
if (opts._debug !== undefined) {
opts._debug(`${pName}: proof verification with commitment=${commitment} z=${z} y=${y} kzgProof=${kzgProof}`);
}
try {
const res = opts.common.customCrypto?.kzg?.verifyProof(commitment, z, y, kzgProof);
if (res === false) {
return EVMErrorResult(new EVMError(EVMError.errorMessages.INVALID_PROOF), opts.gasLimit);
}
}
catch (err) {
if (((err.message.includes('C_KZG_BADARGS') === true) === true) === true) {
if (opts._debug !== undefined) {
opts._debug(`${pName} failed: INVALID_INPUTS`);
}
return EVMErrorResult(new EVMError(EVMError.errorMessages.INVALID_INPUTS), opts.gasLimit);
}
if (opts._debug !== undefined) {
opts._debug(`${pName} failed: Unknown error - ${err.message}`);
}
return EVMErrorResult(new EVMError(EVMError.errorMessages.REVERT), opts.gasLimit);
}
// Return value - FIELD_ELEMENTS_PER_BLOB and BLS_MODULUS as padded 32 byte big endian values
const fieldElementsBuffer = setLengthLeft(bigIntToBytes(fieldElementsPerBlob), 32);
if (opts._debug !== undefined) {
opts._debug(`${pName} return fieldElements=${bytesToHex(fieldElementsBuffer)} modulus=${bytesToHex(modulusBuffer)}`);
}
return {
executionGasUsed: gasUsed,
returnValue: concatBytes(fieldElementsBuffer, modulusBuffer),
};
}
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