core: 4844 opcode and precompile (#27356)
* core: crypto: implement BLOBHASH and pointEval precompile * core: crypto: fixed nitpicks, moved precompile return value * core/vm: fix review comments
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380fb4e249
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@ -128,6 +128,7 @@ func runCmd(ctx *cli.Context) error {
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receiver = common.BytesToAddress([]byte("receiver"))
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genesisConfig *core.Genesis
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preimages = ctx.Bool(DumpFlag.Name)
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blobHashes []common.Hash // TODO (MariusVanDerWijden) implement blob hashes in state tests
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)
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if ctx.Bool(MachineFlag.Name) {
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tracer = logger.NewJSONLogger(logconfig, os.Stdout)
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@ -217,6 +218,7 @@ func runCmd(ctx *cli.Context) error {
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Time: genesisConfig.Timestamp,
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Coinbase: genesisConfig.Coinbase,
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BlockNumber: new(big.Int).SetUint64(genesisConfig.Number),
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BlobHashes: blobHashes,
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EVMConfig: vm.Config{
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Tracer: tracer,
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},
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@ -74,6 +74,7 @@ func NewEVMTxContext(msg *Message) vm.TxContext {
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return vm.TxContext{
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Origin: msg.From,
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GasPrice: new(big.Int).Set(msg.GasPrice),
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BlobHashes: msg.BlobHashes,
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}
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}
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@ -135,6 +135,7 @@ type Message struct {
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GasTipCap *big.Int
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Data []byte
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AccessList types.AccessList
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BlobHashes []common.Hash
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// When SkipAccountChecks is true, the message nonce is not checked against the
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// account nonce in state. It also disables checking that the sender is an EOA.
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@ -155,6 +156,7 @@ func TransactionToMessage(tx *types.Transaction, s types.Signer, baseFee *big.In
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Data: tx.Data(),
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AccessList: tx.AccessList(),
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SkipAccountChecks: false,
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BlobHashes: tx.BlobHashes(),
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}
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// If baseFee provided, set gasPrice to effectiveGasPrice.
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if baseFee != nil {
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@ -20,6 +20,7 @@ import (
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"crypto/sha256"
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"encoding/binary"
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"errors"
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"fmt"
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"math/big"
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"github.com/ethereum/go-ethereum/common"
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@ -28,6 +29,7 @@ import (
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"github.com/ethereum/go-ethereum/crypto/blake2b"
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"github.com/ethereum/go-ethereum/crypto/bls12381"
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"github.com/ethereum/go-ethereum/crypto/bn256"
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"github.com/ethereum/go-ethereum/crypto/kzg4844"
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"github.com/ethereum/go-ethereum/params"
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"golang.org/x/crypto/ripemd160"
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)
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@ -90,6 +92,21 @@ var PrecompiledContractsBerlin = map[common.Address]PrecompiledContract{
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common.BytesToAddress([]byte{9}): &blake2F{},
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}
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// PrecompiledContractsCancun contains the default set of pre-compiled Ethereum
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// contracts used in the Cancun release.
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var PrecompiledContractsCancun = map[common.Address]PrecompiledContract{
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common.BytesToAddress([]byte{1}): &ecrecover{},
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common.BytesToAddress([]byte{2}): &sha256hash{},
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common.BytesToAddress([]byte{3}): &ripemd160hash{},
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common.BytesToAddress([]byte{4}): &dataCopy{},
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common.BytesToAddress([]byte{5}): &bigModExp{eip2565: true},
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common.BytesToAddress([]byte{6}): &bn256AddIstanbul{},
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common.BytesToAddress([]byte{7}): &bn256ScalarMulIstanbul{},
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common.BytesToAddress([]byte{8}): &bn256PairingIstanbul{},
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common.BytesToAddress([]byte{9}): &blake2F{},
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common.BytesToAddress([]byte{20}): &kzgPointEvaluation{},
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}
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// PrecompiledContractsBLS contains the set of pre-compiled Ethereum
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// contracts specified in EIP-2537. These are exported for testing purposes.
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var PrecompiledContractsBLS = map[common.Address]PrecompiledContract{
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@ -105,6 +122,7 @@ var PrecompiledContractsBLS = map[common.Address]PrecompiledContract{
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}
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var (
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PrecompiledAddressesCancun []common.Address
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PrecompiledAddressesBerlin []common.Address
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PrecompiledAddressesIstanbul []common.Address
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PrecompiledAddressesByzantium []common.Address
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@ -124,11 +142,16 @@ func init() {
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for k := range PrecompiledContractsBerlin {
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PrecompiledAddressesBerlin = append(PrecompiledAddressesBerlin, k)
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}
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for k := range PrecompiledContractsCancun {
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PrecompiledAddressesCancun = append(PrecompiledAddressesCancun, k)
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}
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}
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// ActivePrecompiles returns the precompiles enabled with the current configuration.
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func ActivePrecompiles(rules params.Rules) []common.Address {
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switch {
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case rules.IsCancun:
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return PrecompiledAddressesCancun
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case rules.IsBerlin:
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return PrecompiledAddressesBerlin
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case rules.IsIstanbul:
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@ -1048,3 +1071,67 @@ func (c *bls12381MapG2) Run(input []byte) ([]byte, error) {
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// Encode the G2 point to 256 bytes
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return g.EncodePoint(r), nil
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}
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// kzgPointEvaluation implements the EIP-4844 point evaluation precompile.
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type kzgPointEvaluation struct{}
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// RequiredGas estimates the gas required for running the point evaluation precompile.
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func (b *kzgPointEvaluation) RequiredGas(input []byte) uint64 {
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return params.BlobTxPointEvaluationPrecompileGas
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}
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const (
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blobVerifyInputLength = 192 // Max input length for the point evaluation precompile.
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blobCommitmentVersionKZG uint8 = 0x01 // Version byte for the point evaluation precompile.
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blobPrecompileReturnValue = "000000000000000000000000000000000000000000000000000000000000100073eda753299d7d483339d80809a1d80553bda402fffe5bfeffffffff00000001"
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)
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var (
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errBlobVerifyInvalidInputLength = errors.New("invalid input length")
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errBlobVerifyMismatchedVersion = errors.New("mismatched versioned hash")
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errBlobVerifyKZGProof = errors.New("error verifying kzg proof")
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)
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// Run executes the point evaluation precompile.
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func (b *kzgPointEvaluation) Run(input []byte) ([]byte, error) {
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if len(input) != blobVerifyInputLength {
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return nil, errBlobVerifyInvalidInputLength
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}
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// versioned hash: first 32 bytes
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var versionedHash common.Hash
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copy(versionedHash[:], input[:])
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var (
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point kzg4844.Point
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claim kzg4844.Claim
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)
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// Evaluation point: next 32 bytes
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copy(point[:], input[32:])
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// Expected output: next 32 bytes
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copy(claim[:], input[64:])
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// input kzg point: next 48 bytes
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var commitment kzg4844.Commitment
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copy(commitment[:], input[96:])
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if kZGToVersionedHash(commitment) != versionedHash {
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return nil, errBlobVerifyMismatchedVersion
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}
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// Proof: next 48 bytes
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var proof kzg4844.Proof
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copy(proof[:], input[144:])
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if err := kzg4844.VerifyProof(commitment, point, claim, proof); err != nil {
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return nil, fmt.Errorf("%w: %v", errBlobVerifyKZGProof, err)
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}
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return common.Hex2Bytes(blobPrecompileReturnValue), nil
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}
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// kZGToVersionedHash implements kzg_to_versioned_hash from EIP-4844
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func kZGToVersionedHash(kzg kzg4844.Commitment) common.Hash {
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h := sha256.Sum256(kzg[:])
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h[0] = blobCommitmentVersionKZG
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return h
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}
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@ -65,6 +65,7 @@ var allPrecompiles = map[common.Address]PrecompiledContract{
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common.BytesToAddress([]byte{16}): &bls12381Pairing{},
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common.BytesToAddress([]byte{17}): &bls12381MapG1{},
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common.BytesToAddress([]byte{18}): &bls12381MapG2{},
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common.BytesToAddress([]byte{20}): &kzgPointEvaluation{},
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}
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// EIP-152 test vectors
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@ -311,6 +312,7 @@ func TestPrecompiledBLS12381G2MultiExp(t *testing.T) { testJson("blsG2MultiExp",
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func TestPrecompiledBLS12381Pairing(t *testing.T) { testJson("blsPairing", "10", t) }
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func TestPrecompiledBLS12381MapG1(t *testing.T) { testJson("blsMapG1", "11", t) }
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func TestPrecompiledBLS12381MapG2(t *testing.T) { testJson("blsMapG2", "12", t) }
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func TestPrecompiledPointEvaluation(t *testing.T) { testJson("pointEvaluation", "14", t) }
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func BenchmarkPrecompiledBLS12381G1Add(b *testing.B) { benchJson("blsG1Add", "0a", b) }
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func BenchmarkPrecompiledBLS12381G1Mul(b *testing.B) { benchJson("blsG1Mul", "0b", b) }
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@ -235,9 +235,32 @@ func opPush0(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]by
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return nil, nil
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}
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// ebnable3860 enables "EIP-3860: Limit and meter initcode"
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// enable3860 enables "EIP-3860: Limit and meter initcode"
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// https://eips.ethereum.org/EIPS/eip-3860
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func enable3860(jt *JumpTable) {
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jt[CREATE].dynamicGas = gasCreateEip3860
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jt[CREATE2].dynamicGas = gasCreate2Eip3860
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}
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// opBlobHash implements the BLOBHASH opcode
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func opBlobHash(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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index := scope.Stack.peek()
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if index.LtUint64(uint64(len(interpreter.evm.TxContext.BlobHashes))) {
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blobHash := interpreter.evm.TxContext.BlobHashes[index.Uint64()]
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index.SetBytes32(blobHash[:])
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} else {
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index.Clear()
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}
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return nil, nil
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}
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// enable4844 applies EIP-4844 (DATAHASH opcode)
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func enable4844(jt *JumpTable) {
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// New opcode
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jt[BLOBHASH] = &operation{
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execute: opBlobHash,
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constantGas: GasFastestStep,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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}
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@ -43,6 +43,8 @@ type (
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func (evm *EVM) precompile(addr common.Address) (PrecompiledContract, bool) {
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var precompiles map[common.Address]PrecompiledContract
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switch {
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case evm.chainRules.IsCancun:
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precompiles = PrecompiledContractsCancun
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case evm.chainRules.IsBerlin:
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precompiles = PrecompiledContractsBerlin
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case evm.chainRules.IsIstanbul:
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@ -83,6 +85,7 @@ type TxContext struct {
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// Message information
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Origin common.Address // Provides information for ORIGIN
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GasPrice *big.Int // Provides information for GASPRICE
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BlobHashes []common.Hash // Provides information for BLOBHASH
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}
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// EVM is the Ethereum Virtual Machine base object and provides
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@ -746,3 +746,45 @@ func TestRandom(t *testing.T) {
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}
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}
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}
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func TestBlobHash(t *testing.T) {
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type testcase struct {
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name string
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idx uint64
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expect common.Hash
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hashes []common.Hash
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}
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var (
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zero = common.Hash{0}
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one = common.Hash{1}
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two = common.Hash{2}
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three = common.Hash{3}
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)
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for _, tt := range []testcase{
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{name: "[{1}]", idx: 0, expect: one, hashes: []common.Hash{one}},
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{name: "[1,{2},3]", idx: 2, expect: three, hashes: []common.Hash{one, two, three}},
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{name: "out-of-bounds (empty)", idx: 10, expect: zero, hashes: []common.Hash{}},
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{name: "out-of-bounds", idx: 25, expect: zero, hashes: []common.Hash{one, two, three}},
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{name: "out-of-bounds (nil)", idx: 25, expect: zero, hashes: nil},
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} {
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var (
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env = NewEVM(BlockContext{}, TxContext{BlobHashes: tt.hashes}, nil, params.TestChainConfig, Config{})
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stack = newstack()
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pc = uint64(0)
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evmInterpreter = env.interpreter
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)
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stack.push(uint256.NewInt(tt.idx))
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opBlobHash(&pc, evmInterpreter, &ScopeContext{nil, stack, nil})
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if len(stack.data) != 1 {
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t.Errorf("Expected one item on stack after %v, got %d: ", tt.name, len(stack.data))
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}
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actual := stack.pop()
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expected, overflow := uint256.FromBig(new(big.Int).SetBytes(tt.expect.Bytes()))
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if overflow {
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t.Errorf("Testcase %v: invalid overflow", tt.name)
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}
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if actual.Cmp(expected) != 0 {
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t.Errorf("Testcase %v: expected %x, got %x", tt.name, expected, actual)
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}
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}
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}
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@ -56,6 +56,8 @@ func NewEVMInterpreter(evm *EVM) *EVMInterpreter {
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// If jump table was not initialised we set the default one.
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var table *JumpTable
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switch {
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case evm.chainRules.IsCancun:
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table = &cancunInstructionSet
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case evm.chainRules.IsShanghai:
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table = &shanghaiInstructionSet
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case evm.chainRules.IsMerge:
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@ -56,6 +56,7 @@ var (
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londonInstructionSet = newLondonInstructionSet()
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mergeInstructionSet = newMergeInstructionSet()
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shanghaiInstructionSet = newShanghaiInstructionSet()
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cancunInstructionSet = newCancunInstructionSet()
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)
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// JumpTable contains the EVM opcodes supported at a given fork.
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@ -79,6 +80,12 @@ func validate(jt JumpTable) JumpTable {
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return jt
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}
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func newCancunInstructionSet() JumpTable {
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instructionSet := newShanghaiInstructionSet()
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enable4844(&instructionSet) // BLOBHASH opcode
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return validate(instructionSet)
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}
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func newShanghaiInstructionSet() JumpTable {
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instructionSet := newMergeInstructionSet()
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enable3855(&instructionSet) // PUSH0 instruction
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@ -100,6 +100,7 @@ const (
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CHAINID OpCode = 0x46
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SELFBALANCE OpCode = 0x47
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BASEFEE OpCode = 0x48
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BLOBHASH OpCode = 0x49
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)
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// 0x50 range - 'storage' and execution.
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@ -288,6 +289,7 @@ var opCodeToString = map[OpCode]string{
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CHAINID: "CHAINID",
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SELFBALANCE: "SELFBALANCE",
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BASEFEE: "BASEFEE",
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BLOBHASH: "BLOBHASH",
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// 0x50 range - 'storage' and execution.
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POP: "POP",
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@ -445,6 +447,7 @@ var stringToOp = map[string]OpCode{
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"CALLDATACOPY": CALLDATACOPY,
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"CHAINID": CHAINID,
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"BASEFEE": BASEFEE,
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"BLOBHASH": BLOBHASH,
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"DELEGATECALL": DELEGATECALL,
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"STATICCALL": STATICCALL,
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"CODESIZE": CODESIZE,
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@ -25,6 +25,7 @@ func NewEnv(cfg *Config) *vm.EVM {
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txContext := vm.TxContext{
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Origin: cfg.Origin,
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GasPrice: cfg.GasPrice,
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BlobHashes: cfg.BlobHashes,
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}
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blockContext := vm.BlockContext{
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CanTransfer: core.CanTransfer,
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@ -44,6 +44,7 @@ type Config struct {
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Debug bool
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EVMConfig vm.Config
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BaseFee *big.Int
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BlobHashes []common.Hash
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State *state.StateDB
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GetHashFn func(n uint64) common.Hash
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9
core/vm/testdata/precompiles/pointEvaluation.json
vendored
Normal file
9
core/vm/testdata/precompiles/pointEvaluation.json
vendored
Normal file
@ -0,0 +1,9 @@
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[
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{
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"Input": "013c03613f6fc558fb7e61e75602241ed9a2f04e36d8670aadd286e71b5ca9cc420000000000000000000000000000000000000000000000000000000000000031e5a2356cbc2ef6a733eae8d54bf48719ae3d990017ca787c419c7d369f8e3c83fac17c3f237fc51f90e2c660eb202a438bc2025baded5cd193c1a018c5885bc9281ba704d5566082e851235c7be763b2a99adff965e0a121ee972ebc472d02944a74f5c6243e14052e105124b70bf65faf85ad3a494325e269fad097842cba",
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"Expected": "000000000000000000000000000000000000000000000000000000000000100073eda753299d7d483339d80809a1d80553bda402fffe5bfeffffffff00000001",
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"Name": "pointEvaluation1",
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"Gas": 50000,
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"NoBenchmark": false
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}
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]
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@ -166,6 +166,7 @@ const (
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BlobTxDataGasPerBlob = 1 << 17 // Gas consumption of a single data blob (== blob byte size)
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BlobTxMinDataGasprice = 1 // Minimum gas price for data blobs
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BlobTxDataGaspriceUpdateFraction = 2225652 // Controls the maximum rate of change for data gas price
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BlobTxPointEvaluationPrecompileGas = 50000 // Gas price for the point evaluation precompile.
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)
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// Gas discount table for BLS12-381 G1 and G2 multi exponentiation operations
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