go-ethereum/core/vm/contracts.go
Christopher Franko 9cdd178759 Merge remote-tracking branch 'refs/remotes/ethereum/master' into rebase-1.3.1
Conflicts:
	Godeps/Godeps.json
	Godeps/_workspace/src/github.com/expanse-project/ethash/ethash_test.go
	Makefile
	VERSION
	cmd/gexp/blocktestcmd.go
	cmd/gexp/js.go
	cmd/gexp/js_test.go
	cmd/gexp/main.go
	cmd/utils/cmd.go
	cmd/utils/flags.go
	common/natspec/natspec.go
	common/natspec/natspec_e2e_test.go
	common/natspec/natspec_e2e_test.go.orig
	common/path.go
	common/registrar/registrar.go
	core/block_processor.go
	core/block_processor_test.go
	core/chain_manager.go
	core/chain_manager_test.go
	core/chain_util_test.go
	core/events.go
	core/execution.go
	core/filter.go
	core/state/errors.go
	core/state/statedb.go
	core/state_transition.go
	core/transaction_util.go
	core/types/bloom9.go
	core/types/common.go
	core/types/derive_sha.go
	core/types/receipt.go
	core/vm/common.go
	core/vm/environment.go
	core/vm/instructions.go
	core/vm/jit.go
	core/vm/jit_test.go
	core/vm/vm.go
	docker/Dockerfile
	docker/supervisord.conf
	eth/downloader/modes.go
	event/filter/eth_filter.go
	exp/backend.go
	exp/downloader/downloader.go
	exp/downloader/downloader_test.go
	exp/downloader/peer.go
	exp/downloader/queue.go
	exp/gasprice.go
	exp/handler.go
	exp/sync.go
	miner/worker.go
	rpc/api/admin.go
	rpc/api/debug.go
	rpc/api/eth.go
	rpc/api/eth_args.go
	rpc/api/miner.go
	rpc/api/personal.go
	rpc/comms/ipc.go
	rpc/comms/ipc_unix.go
	rpc/comms/ipc_windows.go
	tests/block_test_util.go
	tests/files/BlockchainTests/bcUncleTest.json
	trie/cache.go
	trie/fullnode.go
	trie/hashnode.go
	trie/secure_trie.go
	trie/shortnode.go
	trie/trie.go
	trie/trie_test.go
	trie/valuenode.go
	xeth/xeth.go
2015-11-03 18:25:50 -05:00

118 lines
3.6 KiB
Go

// Copyright 2014 The go-ethereum Authors && Copyright 2015 go-expanse Authors
// This file is part of the go-expanse library.
//
// The go-expanse library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-expanse library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-expanse library. If not, see <http://www.gnu.org/licenses/>.
package vm
import (
"math/big"
"github.com/expanse-project/go-expanse/common"
"github.com/expanse-project/go-expanse/crypto"
"github.com/expanse-project/go-expanse/logger"
"github.com/expanse-project/go-expanse/logger/glog"
"github.com/expanse-project/go-expanse/params"
)
// PrecompiledAccount represents a native ethereum contract
type PrecompiledAccount struct {
Gas func(l int) *big.Int
fn func(in []byte) []byte
}
// Call calls the native function
func (self PrecompiledAccount) Call(in []byte) []byte {
return self.fn(in)
}
// Precompiled contains the default set of ethereum contracts
var Precompiled = PrecompiledContracts()
// PrecompiledContracts returns the default set of precompiled ethereum
// contracts defined by the ethereum yellow paper.
func PrecompiledContracts() map[string]*PrecompiledAccount {
return map[string]*PrecompiledAccount{
// ECRECOVER
string(common.LeftPadBytes([]byte{1}, 20)): &PrecompiledAccount{func(l int) *big.Int {
return params.EcrecoverGas
}, ecrecoverFunc},
// SHA256
string(common.LeftPadBytes([]byte{2}, 20)): &PrecompiledAccount{func(l int) *big.Int {
n := big.NewInt(int64(l+31) / 32)
n.Mul(n, params.Sha256WordGas)
return n.Add(n, params.Sha256Gas)
}, sha256Func},
// RIPEMD160
string(common.LeftPadBytes([]byte{3}, 20)): &PrecompiledAccount{func(l int) *big.Int {
n := big.NewInt(int64(l+31) / 32)
n.Mul(n, params.Ripemd160WordGas)
return n.Add(n, params.Ripemd160Gas)
}, ripemd160Func},
string(common.LeftPadBytes([]byte{4}, 20)): &PrecompiledAccount{func(l int) *big.Int {
n := big.NewInt(int64(l+31) / 32)
n.Mul(n, params.IdentityWordGas)
return n.Add(n, params.IdentityGas)
}, memCpy},
}
}
func sha256Func(in []byte) []byte {
return crypto.Sha256(in)
}
func ripemd160Func(in []byte) []byte {
return common.LeftPadBytes(crypto.Ripemd160(in), 32)
}
const ecRecoverInputLength = 128
func ecrecoverFunc(in []byte) []byte {
in = common.RightPadBytes(in, 128)
// "in" is (hash, v, r, s), each 32 bytes
// but for ecrecover we want (r, s, v)
r := common.BytesToBig(in[64:96])
s := common.BytesToBig(in[96:128])
// Treat V as a 256bit integer
vbig := common.Bytes2Big(in[32:64])
v := byte(vbig.Uint64())
if !crypto.ValidateSignatureValues(v, r, s) {
glog.V(logger.Debug).Infof("EC RECOVER FAIL: v, r or s value invalid")
return nil
}
// v needs to be at the end and normalized for libsecp256k1
vbignormal := new(big.Int).Sub(vbig, big.NewInt(27))
vnormal := byte(vbignormal.Uint64())
rsv := append(in[64:128], vnormal)
pubKey, err := crypto.Ecrecover(in[:32], rsv)
// make sure the public key is a valid one
if err != nil {
glog.V(logger.Error).Infof("EC RECOVER FAIL: ", err)
return nil
}
// the first byte of pubkey is bitcoin heritage
return common.LeftPadBytes(crypto.Sha3(pubKey[1:])[12:], 32)
}
func memCpy(in []byte) []byte {
return in
}