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https://github.com/ethereum/go-ethereum.git
synced 2026-07-27 15:16:43 +00:00
consensus, core/vm, params: fixed rebase issues
This commit is contained in:
parent
22ca13fa85
commit
363cfd850f
4 changed files with 22 additions and 26 deletions
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@ -308,8 +308,8 @@ func (ethash *Ethash) verifyHeader(chain consensus.ChainReader, header, parent *
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func CalcDifficulty(config *params.ChainConfig, time uint64, parent *types.Header) *big.Int {
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func CalcDifficulty(config *params.ChainConfig, time uint64, parent *types.Header) *big.Int {
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next := new(big.Int).Add(parent.Number, common.Big1)
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next := new(big.Int).Add(parent.Number, common.Big1)
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switch {
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switch {
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case config.IsEIP100(next):
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case config.IsMetropolis(next):
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return CalcDifficultyMetropolis(time, parent)
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return calcDifficultyMetropolis(time, parent)
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case config.IsHomestead(next):
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case config.IsHomestead(next):
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return calcDifficultyHomestead(time, parent)
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return calcDifficultyHomestead(time, parent)
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default:
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default:
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@ -320,11 +320,12 @@ func CalcDifficulty(config *params.ChainConfig, time uint64, parent *types.Heade
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// Some weird constants to avoid constant memory allocs for them.
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// Some weird constants to avoid constant memory allocs for them.
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var (
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var (
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expDiffPeriod = big.NewInt(100000)
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expDiffPeriod = big.NewInt(100000)
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big9 = big.NewInt(9)
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big10 = big.NewInt(10)
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big10 = big.NewInt(10)
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bigMinus99 = big.NewInt(-99)
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bigMinus99 = big.NewInt(-99)
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)
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)
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func CalcDifficultyMetropolis(time uint64, parent *types.Header) *big.Int {
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func calcDifficultyMetropolis(time uint64, parent *types.Header) *big.Int {
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bigTime := new(big.Int).SetUint64(time)
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bigTime := new(big.Int).SetUint64(time)
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bigParentTime := new(big.Int).Set(parent.Time)
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bigParentTime := new(big.Int).Set(parent.Time)
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@ -356,7 +357,7 @@ func CalcDifficultyMetropolis(time uint64, parent *types.Header) *big.Int {
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// for the exponential factor
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// for the exponential factor
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periodCount := new(big.Int).Add(parent.Number, common.Big1)
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periodCount := new(big.Int).Add(parent.Number, common.Big1)
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periodCount.Div(periodCount, ExpDiffPeriod)
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periodCount.Div(periodCount, expDiffPeriod)
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// the exponential factor, commonly referred to as "the bomb"
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// the exponential factor, commonly referred to as "the bomb"
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// diff = diff + 2^(periodCount - 2)
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// diff = diff + 2^(periodCount - 2)
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@ -372,15 +373,15 @@ func CalcDifficultyMetropolis(time uint64, parent *types.Header) *big.Int {
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// calcDifficultyHomestead is the difficulty adjustment algorithm. It returns
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// calcDifficultyHomestead is the difficulty adjustment algorithm. It returns
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// the difficulty that a new block should have when created at time given the
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// the difficulty that a new block should have when created at time given the
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// parent block's time and difficulty. The calculation uses the Homestead rules.
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// parent block's time and difficulty. The calculation uses the Homestead rules.
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func calcDifficultyHomestead(time, parentTime uint64, parentNumber, parentDiff *big.Int) *big.Int {
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func calcDifficultyHomestead(time uint64, parent *types.Header) *big.Int {
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// https://github.com/ethereum/EIPs/blob/master/EIPS/eip-2.mediawiki
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// https://github.com/ethereum/EIPs/blob/master/EIPS/eip-2.mediawiki
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// algorithm:
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// algorithm:
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// diff = (parent_diff +
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// diff = (parent_diff +
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// (parent_diff / 2048 * max(1 - (block_timestamp - parent_timestamp) // 10, -99))
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// (parent_diff / 2048 * max(1 - (block_timestamp - parent_timestamp) // 10, -99))
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// ) + 2^(periodCount - 2)
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// ) + 2^(periodCount - 2)
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bigTime := new(big.Int).SetUint64(time)
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bigTime := new(big.Int).Set(parent.Time)
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bigParentTime := new(big.Int).SetUint64(parentTime)
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bigParentTime := new(big.Int).Set(parent.Time)
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// holds intermediate values to make the algo easier to read & audit
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// holds intermediate values to make the algo easier to read & audit
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x := new(big.Int)
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x := new(big.Int)
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@ -396,16 +397,16 @@ func calcDifficultyHomestead(time, parentTime uint64, parentNumber, parentDiff *
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x.Set(bigMinus99)
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x.Set(bigMinus99)
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}
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}
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// (parent_diff + parent_diff // 2048 * max(1 - (block_timestamp - parent_timestamp) // 10, -99))
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// (parent_diff + parent_diff // 2048 * max(1 - (block_timestamp - parent_timestamp) // 10, -99))
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y.Div(parentDiff, params.DifficultyBoundDivisor)
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y.Div(parent.Difficulty, params.DifficultyBoundDivisor)
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x.Mul(y, x)
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x.Mul(y, x)
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x.Add(parentDiff, x)
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x.Add(parent.Difficulty, x)
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// minimum difficulty can ever be (before exponential factor)
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// minimum difficulty can ever be (before exponential factor)
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if x.Cmp(params.MinimumDifficulty) < 0 {
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if x.Cmp(params.MinimumDifficulty) < 0 {
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x.Set(params.MinimumDifficulty)
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x.Set(params.MinimumDifficulty)
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}
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}
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// for the exponential factor
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// for the exponential factor
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periodCount := new(big.Int).Add(parentNumber, common.Big1)
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periodCount := new(big.Int).Add(parent.Number, common.Big1)
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periodCount.Div(periodCount, expDiffPeriod)
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periodCount.Div(periodCount, expDiffPeriod)
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// the exponential factor, commonly referred to as "the bomb"
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// the exponential factor, commonly referred to as "the bomb"
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@ -421,25 +422,25 @@ func calcDifficultyHomestead(time, parentTime uint64, parentNumber, parentDiff *
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// calcDifficultyFrontier is the difficulty adjustment algorithm. It returns the
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// calcDifficultyFrontier is the difficulty adjustment algorithm. It returns the
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// difficulty that a new block should have when created at time given the parent
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// difficulty that a new block should have when created at time given the parent
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// block's time and difficulty. The calculation uses the Frontier rules.
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// block's time and difficulty. The calculation uses the Frontier rules.
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func calcDifficultyFrontier(time, parentTime uint64, parentNumber, parentDiff *big.Int) *big.Int {
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func calcDifficultyFrontier(time uint64, parent *types.Header) *big.Int {
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diff := new(big.Int)
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diff := new(big.Int)
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adjust := new(big.Int).Div(parentDiff, params.DifficultyBoundDivisor)
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adjust := new(big.Int).Div(parent.Difficulty, params.DifficultyBoundDivisor)
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bigTime := new(big.Int)
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bigTime := new(big.Int)
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bigParentTime := new(big.Int)
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bigParentTime := new(big.Int)
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bigTime.SetUint64(time)
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bigTime.SetUint64(time)
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bigParentTime.SetUint64(parentTime)
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bigParentTime.Set(parent.Time)
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if bigTime.Sub(bigTime, bigParentTime).Cmp(params.DurationLimit) < 0 {
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if bigTime.Sub(bigTime, bigParentTime).Cmp(params.DurationLimit) < 0 {
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diff.Add(parentDiff, adjust)
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diff.Add(parent.Difficulty, adjust)
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} else {
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} else {
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diff.Sub(parentDiff, adjust)
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diff.Sub(parent.Difficulty, adjust)
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}
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}
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if diff.Cmp(params.MinimumDifficulty) < 0 {
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if diff.Cmp(params.MinimumDifficulty) < 0 {
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diff.Set(params.MinimumDifficulty)
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diff.Set(params.MinimumDifficulty)
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}
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}
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periodCount := new(big.Int).Add(parentNumber, common.Big1)
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periodCount := new(big.Int).Add(parent.Number, common.Big1)
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periodCount.Div(periodCount, expDiffPeriod)
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periodCount.Div(periodCount, expDiffPeriod)
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if periodCount.Cmp(common.Big1) > 0 {
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if periodCount.Cmp(common.Big1) > 0 {
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// diff = diff + 2^(periodCount - 2)
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// diff = diff + 2^(periodCount - 2)
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@ -142,7 +142,7 @@ func (b *BlockGen) OffsetTime(seconds int64) {
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if b.header.Time.Cmp(b.parent.Header().Time) <= 0 {
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if b.header.Time.Cmp(b.parent.Header().Time) <= 0 {
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panic("block time out of range")
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panic("block time out of range")
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}
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}
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b.header.Difficulty = ethash.CalcDifficulty(b.config, b.header.Time.Uint64(), b.parent)
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b.header.Difficulty = ethash.CalcDifficulty(b.config, b.header.Time.Uint64(), b.parent.Header())
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}
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}
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// GenerateChain creates a chain of n blocks. The first block's
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// GenerateChain creates a chain of n blocks. The first block's
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@ -18,7 +18,6 @@ package vm
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import (
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import (
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"fmt"
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"fmt"
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"math/big"
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"sync/atomic"
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"sync/atomic"
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"time"
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"time"
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@ -140,9 +139,7 @@ func (in *Interpreter) Run(snapshot int, contract *Contract, input []byte) (ret
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if err != nil && in.cfg.Debug {
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if err != nil && in.cfg.Debug {
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// XXX For debugging
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// XXX For debugging
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//fmt.Printf("%04d: %8v cost = %-8d stack = %-8d ERR = %v\n", pc, op, cost, stack.len(), err)
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//fmt.Printf("%04d: %8v cost = %-8d stack = %-8d ERR = %v\n", pc, op, cost, stack.len(), err)
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// TODO update the tracer to accept uint64 instead of *big.Int
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in.cfg.Tracer.CaptureState(in.evm, pc, op, contract.Gas, cost, mem, stack, contract, in.evm.depth, err)
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g, c := new(big.Int).SetUint64(contract.Gas), new(big.Int).SetUint64(cost)
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in.cfg.Tracer.CaptureState(in.evm, pc, op, g, c, mem, stack, contract, in.evm.depth, err)
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}
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}
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}()
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}()
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@ -203,9 +200,7 @@ func (in *Interpreter) Run(snapshot int, contract *Contract, input []byte) (ret
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}
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}
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if in.cfg.Debug {
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if in.cfg.Debug {
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// TODO update the tracer to accept uint64 instead of *big.Int
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in.cfg.Tracer.CaptureState(in.evm, pc, op, contract.Gas, cost, mem, stack, contract, in.evm.depth, err)
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g, c := new(big.Int).SetUint64(contract.Gas), new(big.Int).SetUint64(cost)
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in.cfg.Tracer.CaptureState(in.evm, pc, op, g, c, mem, stack, contract, in.evm.depth, err)
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}
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}
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// XXX For debugging
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// XXX For debugging
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//fmt.Printf("%04d: %8v cost = %-8d stack = %-8d\n", pc, op, cost, stack.len())
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//fmt.Printf("%04d: %8v cost = %-8d stack = %-8d\n", pc, op, cost, stack.len())
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@ -34,7 +34,7 @@ var (
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EIP150Hash: MainNetHomesteadGasRepriceHash,
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EIP150Hash: MainNetHomesteadGasRepriceHash,
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EIP155Block: MainNetSpuriousDragon,
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EIP155Block: MainNetSpuriousDragon,
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EIP158Block: MainNetSpuriousDragon,
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EIP158Block: MainNetSpuriousDragon,
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MetropolisBlock: MainNetMetropolis,
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MetropolisBlock: MainNetMetropolisBlock,
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}
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}
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// TestnetChainConfig is the chain parameters to run a node on the test network.
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// TestnetChainConfig is the chain parameters to run a node on the test network.
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@ -47,7 +47,7 @@ var (
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EIP150Hash: common.HexToHash("0x41941023680923e0fe4d74a34bdac8141f2540e3ae90623718e47d66d1ca4a2d"),
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EIP150Hash: common.HexToHash("0x41941023680923e0fe4d74a34bdac8141f2540e3ae90623718e47d66d1ca4a2d"),
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EIP155Block: big.NewInt(10),
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EIP155Block: big.NewInt(10),
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EIP158Block: big.NewInt(10),
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EIP158Block: big.NewInt(10),
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MetropolisBlock: TestNetMetropolis,
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MetropolisBlock: TestNetMetropolisBlock,
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}
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}
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// AllProtocolChanges contains every protocol change (EIPs)
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// AllProtocolChanges contains every protocol change (EIPs)
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