mirror of
https://github.com/ethereum/go-ethereum.git
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Merge pull request #21 from sei-protocol/precompile-readonly-flag
Pass ReadOnly flag to precompiles
This commit is contained in:
commit
babe11a284
5 changed files with 38 additions and 38 deletions
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@ -39,12 +39,12 @@ import (
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// requires a deterministic gas count based on the input size of the Run method of the
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// contract.
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type PrecompiledContract interface {
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RequiredGas(input []byte) uint64 // RequiredPrice calculates the contract gas use
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Run(evm *EVM, sender common.Address, input []byte, value *big.Int) ([]byte, error) // Run runs the precompiled contract
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RequiredGas(input []byte) uint64 // RequiredPrice calculates the contract gas use
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Run(evm *EVM, sender common.Address, input []byte, value *big.Int, readOnly bool) ([]byte, error) // Run runs the precompiled contract
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}
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type DynamicGasPrecompiledContract interface {
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RunAndCalculateGas(evm *EVM, sender common.Address, callingContract common.Address, input []byte, suppliedGas uint64, value *big.Int, logger *tracing.Hooks) (ret []byte, remainingGas uint64, err error) // Run runs the precompiled contract and calculate gas dynamically
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RunAndCalculateGas(evm *EVM, sender common.Address, callingContract common.Address, input []byte, suppliedGas uint64, value *big.Int, logger *tracing.Hooks, readOnly bool) (ret []byte, remainingGas uint64, err error) // Run runs the precompiled contract and calculate gas dynamically
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}
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// PrecompiledContractsHomestead contains the default set of pre-compiled Ethereum
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@ -173,9 +173,9 @@ func ActivePrecompiles(rules params.Rules) []common.Address {
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// - the returned bytes,
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// - the _remaining_ gas,
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// - any error that occurred
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func RunPrecompiledContract(p PrecompiledContract, evm *EVM, sender common.Address, callingContract common.Address, input []byte, suppliedGas uint64, value *big.Int, logger *tracing.Hooks) (ret []byte, remainingGas uint64, err error) {
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func RunPrecompiledContract(p PrecompiledContract, evm *EVM, sender common.Address, callingContract common.Address, input []byte, suppliedGas uint64, value *big.Int, logger *tracing.Hooks, readOnly bool) (ret []byte, remainingGas uint64, err error) {
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if dp, ok := p.(DynamicGasPrecompiledContract); ok {
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return dp.RunAndCalculateGas(evm, sender, callingContract, input, suppliedGas, value, logger)
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return dp.RunAndCalculateGas(evm, sender, callingContract, input, suppliedGas, value, logger, readOnly)
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}
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gasCost := p.RequiredGas(input)
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if suppliedGas < gasCost {
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@ -185,7 +185,7 @@ func RunPrecompiledContract(p PrecompiledContract, evm *EVM, sender common.Addre
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logger.OnGasChange(suppliedGas, suppliedGas-gasCost, tracing.GasChangeCallPrecompiledContract)
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}
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suppliedGas -= gasCost
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output, err := p.Run(evm, sender, input, value)
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output, err := p.Run(evm, sender, input, value, readOnly)
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return output, suppliedGas, err
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}
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@ -196,7 +196,7 @@ func (c *Ecrecover) RequiredGas(input []byte) uint64 {
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return params.EcrecoverGas
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}
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func (c *Ecrecover) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Ecrecover) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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const ecRecoverInputLength = 128
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input = common.RightPadBytes(input, ecRecoverInputLength)
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@ -237,7 +237,7 @@ type Sha256hash struct{}
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func (c *Sha256hash) RequiredGas(input []byte) uint64 {
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return uint64(len(input)+31)/32*params.Sha256PerWordGas + params.Sha256BaseGas
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}
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func (c *Sha256hash) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Sha256hash) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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h := sha256.Sum256(input)
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return h[:], nil
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}
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@ -252,7 +252,7 @@ type Ripemd160hash struct{}
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func (c *Ripemd160hash) RequiredGas(input []byte) uint64 {
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return uint64(len(input)+31)/32*params.Ripemd160PerWordGas + params.Ripemd160BaseGas
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}
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func (c *Ripemd160hash) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Ripemd160hash) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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ripemd := ripemd160.New()
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ripemd.Write(input)
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return common.LeftPadBytes(ripemd.Sum(nil), 32), nil
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@ -268,7 +268,7 @@ type DataCopy struct{}
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func (c *DataCopy) RequiredGas(input []byte) uint64 {
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return uint64(len(input)+31)/32*params.IdentityPerWordGas + params.IdentityBaseGas
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}
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func (c *DataCopy) Run(_ *EVM, _ common.Address, in []byte, _ *big.Int) ([]byte, error) {
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func (c *DataCopy) Run(_ *EVM, _ common.Address, in []byte, _ *big.Int, _ bool) ([]byte, error) {
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return common.CopyBytes(in), nil
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}
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@ -394,7 +394,7 @@ func (c *BigModExp) RequiredGas(input []byte) uint64 {
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return gas.Uint64()
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}
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func (c *BigModExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *BigModExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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var (
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baseLen = new(big.Int).SetBytes(getData(input, 0, 32)).Uint64()
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expLen = new(big.Int).SetBytes(getData(input, 32, 32)).Uint64()
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@ -474,7 +474,7 @@ func (c *Bn256AddIstanbul) RequiredGas(input []byte) uint64 {
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return params.Bn256AddGasIstanbul
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}
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func (c *Bn256AddIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bn256AddIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256Add(input)
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}
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@ -487,7 +487,7 @@ func (c *bn256AddByzantium) RequiredGas(input []byte) uint64 {
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return params.Bn256AddGasByzantium
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}
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func (c *bn256AddByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *bn256AddByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256Add(input)
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}
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@ -512,7 +512,7 @@ func (c *Bn256ScalarMulIstanbul) RequiredGas(input []byte) uint64 {
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return params.Bn256ScalarMulGasIstanbul
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}
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func (c *Bn256ScalarMulIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bn256ScalarMulIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256ScalarMul(input)
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}
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@ -525,7 +525,7 @@ func (c *bn256ScalarMulByzantium) RequiredGas(input []byte) uint64 {
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return params.Bn256ScalarMulGasByzantium
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}
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func (c *bn256ScalarMulByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *bn256ScalarMulByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256ScalarMul(input)
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}
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@ -580,7 +580,7 @@ func (c *Bn256PairingIstanbul) RequiredGas(input []byte) uint64 {
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return params.Bn256PairingBaseGasIstanbul + uint64(len(input)/192)*params.Bn256PairingPerPointGasIstanbul
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}
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func (c *Bn256PairingIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bn256PairingIstanbul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256Pairing(input)
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}
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@ -593,7 +593,7 @@ func (c *bn256PairingByzantium) RequiredGas(input []byte) uint64 {
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return params.Bn256PairingBaseGasByzantium + uint64(len(input)/192)*params.Bn256PairingPerPointGasByzantium
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}
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func (c *bn256PairingByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *bn256PairingByzantium) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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return runBn256Pairing(input)
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}
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@ -619,7 +619,7 @@ var (
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ErrBlake2FInvalidFinalFlag = errors.New("invalid final flag")
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)
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func (c *Blake2F) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Blake2F) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Make sure the input is valid (correct length and final flag)
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if len(input) != Blake2FInputLength {
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return nil, ErrBlake2FInvalidInputLength
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@ -673,7 +673,7 @@ func (c *Bls12381G1Add) RequiredGas(input []byte) uint64 {
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return params.Bls12381G1AddGas
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}
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func (c *Bls12381G1Add) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G1Add) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G1Add precompile.
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// > G1 addition call expects `256` bytes as an input that is interpreted as byte concatenation of two G1 points (`128` bytes each).
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// > Output is an encoding of addition operation result - single G1 point (`128` bytes).
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@ -711,7 +711,7 @@ func (c *Bls12381G1Mul) RequiredGas(input []byte) uint64 {
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return params.Bls12381G1MulGas
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}
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func (c *Bls12381G1Mul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G1Mul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G1Mul precompile.
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// > G1 multiplication call expects `160` bytes as an input that is interpreted as byte concatenation of encoding of G1 point (`128` bytes) and encoding of a scalar value (`32` bytes).
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// > Output is an encoding of multiplication operation result - single G1 point (`128` bytes).
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@ -761,7 +761,7 @@ func (c *Bls12381G1MultiExp) RequiredGas(input []byte) uint64 {
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return (uint64(k) * params.Bls12381G1MulGas * discount) / 1000
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}
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func (c *Bls12381G1MultiExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G1MultiExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G1MultiExp precompile.
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// G1 multiplication call expects `160*k` bytes as an input that is interpreted as byte concatenation of `k` slices each of them being a byte concatenation of encoding of G1 point (`128` bytes) and encoding of a scalar value (`32` bytes).
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// Output is an encoding of multiexponentiation operation result - single G1 point (`128` bytes).
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@ -804,7 +804,7 @@ func (c *Bls12381G2Add) RequiredGas(input []byte) uint64 {
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return params.Bls12381G2AddGas
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}
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func (c *Bls12381G2Add) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G2Add) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G2Add precompile.
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// > G2 addition call expects `512` bytes as an input that is interpreted as byte concatenation of two G2 points (`256` bytes each).
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// > Output is an encoding of addition operation result - single G2 point (`256` bytes).
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@ -842,7 +842,7 @@ func (c *Bls12381G2Mul) RequiredGas(input []byte) uint64 {
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return params.Bls12381G2MulGas
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}
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func (c *Bls12381G2Mul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G2Mul) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G2MUL precompile logic.
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// > G2 multiplication call expects `288` bytes as an input that is interpreted as byte concatenation of encoding of G2 point (`256` bytes) and encoding of a scalar value (`32` bytes).
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// > Output is an encoding of multiplication operation result - single G2 point (`256` bytes).
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@ -892,7 +892,7 @@ func (c *Bls12381G2MultiExp) RequiredGas(input []byte) uint64 {
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return (uint64(k) * params.Bls12381G2MulGas * discount) / 1000
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}
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func (c *Bls12381G2MultiExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381G2MultiExp) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 G2MultiExp precompile logic
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// > G2 multiplication call expects `288*k` bytes as an input that is interpreted as byte concatenation of `k` slices each of them being a byte concatenation of encoding of G2 point (`256` bytes) and encoding of a scalar value (`32` bytes).
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// > Output is an encoding of multiexponentiation operation result - single G2 point (`256` bytes).
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@ -935,7 +935,7 @@ func (c *Bls12381Pairing) RequiredGas(input []byte) uint64 {
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return params.Bls12381PairingBaseGas + uint64(len(input)/384)*params.Bls12381PairingPerPairGas
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}
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func (c *Bls12381Pairing) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381Pairing) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 Pairing precompile logic.
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// > Pairing call expects `384*k` bytes as an inputs that is interpreted as byte concatenation of `k` slices. Each slice has the following structure:
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// > - `128` bytes of G1 point encoding
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@ -1014,7 +1014,7 @@ func (c *Bls12381MapG1) RequiredGas(input []byte) uint64 {
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return params.Bls12381MapG1Gas
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}
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func (c *Bls12381MapG1) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381MapG1) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 Map_To_G1 precompile.
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// > Field-to-curve call expects `64` bytes an an input that is interpreted as a an element of the base field.
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// > Output of this call is `128` bytes and is G1 point following respective encoding rules.
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@ -1049,7 +1049,7 @@ func (c *Bls12381MapG2) RequiredGas(input []byte) uint64 {
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return params.Bls12381MapG2Gas
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}
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func (c *Bls12381MapG2) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (c *Bls12381MapG2) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]byte, error) {
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// Implements EIP-2537 Map_FP2_TO_G2 precompile logic.
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// > Field-to-curve call expects `128` bytes an an input that is interpreted as a an element of the quadratic extension field.
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// > Output of this call is `256` bytes and is G2 point following respective encoding rules.
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@ -1104,7 +1104,7 @@ var (
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)
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// Run executes the point evaluation precompile.
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func (b *KzgPointEvaluation) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int) ([]byte, error) {
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func (b *KzgPointEvaluation) Run(_ *EVM, _ common.Address, input []byte, _ *big.Int, _ bool) ([]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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@ -37,7 +37,7 @@ func FuzzPrecompiledContracts(f *testing.F) {
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return
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}
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inWant := string(input)
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vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, input, gas, nil, nil)
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vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, input, gas, nil, nil, false)
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if inHave := string(input); inWant != inHave {
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t.Errorf("Precompiled %v modified input data", a)
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}
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@ -99,7 +99,7 @@ func testPrecompiled(addr string, test precompiledTest, t *testing.T) {
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in := common.Hex2Bytes(test.Input)
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gas := p.RequiredGas(in)
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t.Run(fmt.Sprintf("%s-Gas=%d", test.Name, gas), func(t *testing.T) {
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if res, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil); err != nil {
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if res, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil, false); err != nil {
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t.Error(err)
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} else if common.Bytes2Hex(res) != test.Expected {
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t.Errorf("Expected %v, got %v", test.Expected, common.Bytes2Hex(res))
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@ -121,7 +121,7 @@ func testPrecompiledOOG(addr string, test precompiledTest, t *testing.T) {
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gas := p.RequiredGas(in) - 1
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t.Run(fmt.Sprintf("%s-Gas=%d", test.Name, gas), func(t *testing.T) {
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_, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil)
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_, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil, false)
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if err.Error() != "out of gas" {
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t.Errorf("Expected error [out of gas], got [%v]", err)
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}
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@ -138,7 +138,7 @@ func testPrecompiledFailure(addr string, test precompiledFailureTest, t *testing
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in := common.Hex2Bytes(test.Input)
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gas := p.RequiredGas(in)
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t.Run(test.Name, func(t *testing.T) {
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_, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil)
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_, _, err := vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, in, gas, nil, nil, false)
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if err.Error() != test.ExpectedError {
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t.Errorf("Expected error [%v], got [%v]", test.ExpectedError, err)
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}
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@ -170,7 +170,7 @@ func benchmarkPrecompiled(addr string, test precompiledTest, bench *testing.B) {
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bench.ResetTimer()
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for i := 0; i < bench.N; i++ {
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copy(data, in)
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res, _, err = vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, data, reqGas, nil, nil)
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res, _, err = vm.RunPrecompiledContract(p, nil, common.Address{}, common.Address{}, data, reqGas, nil, nil, false)
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}
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bench.StopTimer()
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elapsed := uint64(time.Since(start))
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@ -215,7 +215,7 @@ func (evm *EVM) Call(caller ContractRef, addr common.Address, input []byte, gas
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evm.Context.Transfer(evm.StateDB, caller.Address(), addr, value)
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if isPrecompile {
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, value, evm.Config.Tracer)
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, value, evm.Config.Tracer, false)
|
||||
} else {
|
||||
// Initialise a new contract and set the code that is to be used by the EVM.
|
||||
// The contract is a scoped environment for this execution context only.
|
||||
|
|
@ -281,7 +281,7 @@ func (evm *EVM) CallCode(caller ContractRef, addr common.Address, input []byte,
|
|||
|
||||
// It is allowed to call precompiles, even via delegatecall
|
||||
if p, isPrecompile := evm.precompile(addr); isPrecompile {
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, value, evm.Config.Tracer)
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, value, evm.Config.Tracer, false)
|
||||
} else {
|
||||
addrCopy := addr
|
||||
// Initialise a new contract and set the code that is to be used by the EVM.
|
||||
|
|
@ -332,7 +332,7 @@ func (evm *EVM) DelegateCall(caller ContractRef, addr common.Address, input []by
|
|||
// NOTE: caller must, at all times be a contract. It should never happen
|
||||
// that caller is something other than a Contract.
|
||||
parent := caller.(*Contract)
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, parent.CallerAddress, caller.Address(), input, gas, nil, evm.Config.Tracer)
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, parent.CallerAddress, caller.Address(), input, gas, nil, evm.Config.Tracer, false)
|
||||
} else {
|
||||
addrCopy := addr
|
||||
// Initialise a new contract and make initialise the delegate values
|
||||
|
|
@ -383,7 +383,7 @@ func (evm *EVM) StaticCall(caller ContractRef, addr common.Address, input []byte
|
|||
evm.StateDB.AddBalance(addr, new(big.Int), tracing.BalanceChangeTouchAccount)
|
||||
|
||||
if p, isPrecompile := evm.precompile(addr); isPrecompile {
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, nil, evm.Config.Tracer)
|
||||
ret, gas, err = RunPrecompiledContract(p, evm, caller.Address(), caller.Address(), input, gas, nil, evm.Config.Tracer, true)
|
||||
} else {
|
||||
// At this point, we use a copy of address. If we don't, the go compiler will
|
||||
// leak the 'contract' to the outer scope, and make allocation for 'contract'
|
||||
|
|
|
|||
|
|
@ -82,7 +82,7 @@ func fuzz(id byte, data []byte) int {
|
|||
}
|
||||
cpy := make([]byte, len(data))
|
||||
copy(cpy, data)
|
||||
_, err := precompile.Run(nil, common.Address{}, cpy, nil)
|
||||
_, err := precompile.Run(nil, common.Address{}, cpy, nil, false)
|
||||
if !bytes.Equal(cpy, data) {
|
||||
panic(fmt.Sprintf("input data modified, precompile %d: %x %x", id, data, cpy))
|
||||
}
|
||||
|
|
|
|||
Loading…
Reference in a new issue