Documentation ¶
Index ¶
Constants ¶
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const ( // GenesisGasLimit Gas limit of the Genesis block. GenesisGasLimit uint64 = 100000000 // MinGasLimit Minimum the gas limit may ever be. MinGasLimit uint64 = 5000 // GasLimitBoundDivisor The bound divisor of the gas limit, used in update calculations. GasLimitBoundDivisor uint64 = 1024 // MaximumExtraDataSize Maximum size extra data may be after Genesis. MaximumExtraDataSize uint64 = 32 + 65 // ActionGas Per action not creating a contract. NOTE: Not payable on data of calls between transactions. ActionGas uint64 = 21000 // ActionGasContractCreation Per action that creates a contract. NOTE: Not payable on data of calls between transactions. ActionGasContractCreation uint64 = 53000 // TxDataNonZeroGas Per byte of data attached to a transaction that is not equal to zero. NOTE:Not payable on data of calls between transactions. TxDataNonZeroGas uint64 = 68 // TxDataZeroGas Per byte of data attached to a transaction that equals zero. NOTE: Not payable on data of calls between transactions. TxDataZeroGas uint64 = 4 ExpByteGas uint64 = 10 // Times ceil(log256(exponent)) for the EXP instruction. SloadGas uint64 = 50 // Multiplied by the number of 32-byte words that are copied (round up) for any *COPY operation and added. CallValueTransferGas uint64 = 9000 // Paid for CALL when the value transfer is non-zero. CallNewAccountGas uint64 = 25000 // Paid for CALL when the destination address didn't exist prior. QuadCoeffDiv uint64 = 512 // Divisor for the quadratic particle of the memory cost equation. SstoreSetGas uint64 = 20000 // Once per SLOAD operation. LogDataGas uint64 = 8 // Per byte in a LOG* operation's data. CallStipend uint64 = 2300 // Free gas given at beginning of call. Sha3Gas uint64 = 30 // Once per SHA3 operation. Sha3WordGas uint64 = 6 // Once per word of the SHA3 operation's data. SstoreResetGas uint64 = 5000 // Once per SSTORE operation if the zeroness changes from zero. SstoreClearGas uint64 = 5000 // Once per SSTORE operation if the zeroness doesn't change. SstoreRefundGas uint64 = 15000 // Once per SSTORE operation if the zeroness changes to zero. JumpdestGas uint64 = 1 // Refunded gas, once per SSTORE operation if the zeroness changes to zero. EpochDuration uint64 = 30000 // Duration between proof-of-work epochs. CallGas uint64 = 40 // Once per CALL operation & message call transaction. CreateDataGas uint64 = 200 // CallCreateDepth uint64 = 1024 // Maximum depth of call/create stack. ExpGas uint64 = 10 // Once per EXP instruction LogGas uint64 = 375 // Per LOG* operation. CopyGas uint64 = 3 // StackLimit uint64 = 1024 // Maximum size of VM stack allowed. TierStepGas uint64 = 0 // Once per operation, for a selection of them. LogTopicGas uint64 = 375 // Multiplied by the * of the LOG*, per LOG transaction. e.g. LOG0 incurs 0 * c_txLogTopicGas, LOG4 incurs 4 * c_txLogTopicGas. CreateGas uint64 = 32000 // Once per CREATE operation & contract-creation transaction. SuicideRefundGas uint64 = 24000 // Refunded following a suicide operation. MemoryGas uint64 = 3 // Times the address of the (highest referenced byte in memory + 1). NOTE: referencing happens on read, write and in instructions such as RETURN and CALL. MaxCodeSize = 24576 // Maximum bytecode to permit for a contract EcrecoverGas uint64 = 3000 // Elliptic curve sender recovery gas price Sha256BaseGas uint64 = 60 // Base price for a SHA256 operation Sha256PerWordGas uint64 = 12 // Per-word price for a SHA256 operation Ripemd160BaseGas uint64 = 600 // Base price for a RIPEMD160 operation Ripemd160PerWordGas uint64 = 120 // Per-word price for a RIPEMD160 operation IdentityBaseGas uint64 = 15 // Base price for a data copy operation IdentityPerWordGas uint64 = 3 // Per-work price for a data copy operation ModExpQuadCoeffDiv uint64 = 20 // Divisor for the quadratic particle of the big int modular exponentiation Bn256AddGas uint64 = 500 // Gas needed for an elliptic curve addition Bn256ScalarMulGas uint64 = 40000 // Gas needed for an elliptic curve scalar multiplication Bn256PairingBaseGas uint64 = 100000 // Base price for an elliptic curve pairing check Bn256PairingPerPointGas uint64 = 80000 // Per-point price for an elliptic curve pairing check Wei = 1 GWei = 1e9 Ether = 1e18 )
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const ( // VersionMajor is Major version component of the current release VersionMajor = 0 // VersionMinor is Minor version component of the current release VersionMinor = 0 // VersionPatch is Patch version component of the current release VersionPatch = 1 // VersionMeta is Version metadata to append to the version string VersionMeta = "unstable" )
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const (
//ClientIdentifier Client identifier to advertise over the network
ClientIdentifier = "ft"
)
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const DefaultPubkeyHex = "" /* 130-byte string literal not displayed */
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const (
Fractal = 1e18
)
Variables ¶
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var ( DifficultyBoundDivisor = big.NewInt(2048) // The bound divisor of the difficulty, used in the update calculations. GenesisDifficulty = big.NewInt(131072) // Difficulty of the Genesis block. MinimumDifficulty = big.NewInt(131072) // The minimum that the difficulty may ever be. DurationLimit = big.NewInt(13) // The decision boundary on the blocktime duration used to determine whether difficulty should go up or not. )
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var DefaultChainconfig = &ChainConfig{ ChainID: big.NewInt(1), SysName: "ftsystemio", SysToken: "ftoken", }
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var ( // GasTable contain the gas re-prices GasTableInstanse = GasTable{ ExtcodeSize: 700, ExtcodeCopy: 700, Balance: 400, SLoad: 200, Calls: 700, Suicide: 5000, ExpByte: 50, CreateBySuicide: 25000, SetOwner: 200, } )
Variables containing gas prices for different ethereum phases.
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var GitCommit = func() string { head := readGitFile("HEAD") if splits := strings.Split(head, " "); len(splits) == 2 { head = splits[1] return readGitFile(head) } return "" }
GitCommit Git SHA1 commit hash of the release (set via linker flags)
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var Version = func() string { return fmt.Sprintf("%d.%d.%d", VersionMajor, VersionMinor, VersionPatch) }()
Version holds the textual version string.
Functions ¶
func ArchiveVersion ¶
ArchiveVersion holds the textual version string used for Geth archives.
func CalcGasLimit ¶
CalcGasLimit computes the gas limit of the next block after parent. This is miner strategy, not consensus protocol.
Types ¶
type ChainConfig ¶
type ChainConfig struct { ChainID *big.Int `json:"chainId"` // chainId identifies the current chain and is used for replay protection SysName common.Name `json:"sysName"` // system name SysToken string `json:"sysToken"` // system token SysTokenID uint64 `json:"-"` SysTokenDecimals uint64 `json:"-"` }
ChainConfig is the core config which determines the blockchain settings. ChainConfig is stored in the database on a per block basis.
type GasTable ¶
type GasTable struct { ExtcodeSize uint64 ExtcodeCopy uint64 Balance uint64 SLoad uint64 Calls uint64 Suicide uint64 ExpByte uint64 // CreateBySuicide occurs when the // refunded account is one that does // not exist. This logic is similar // to call. May be left nil. Nil means // not charged. CreateBySuicide uint64 SetOwner uint64 }
GasTable organizes gas prices for different ethereum phases.
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