protocol_params.go 12 KB

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  1. // Copyright 2015 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package params
  17. import "math/big"
  18. const (
  19. GasLimitBoundDivisor uint64 = 1024 // The bound divisor of the gas limit, used in update calculations.
  20. MinGasLimit uint64 = 5000 // Minimum the gas limit may ever be.
  21. MaxGasLimit uint64 = 0x7fffffffffffffff // Maximum the gas limit (2^63-1).
  22. GenesisGasLimit uint64 = 4712388 // Gas limit of the Genesis block.
  23. MaximumExtraDataSize uint64 = 32 // Maximum size extra data may be after Genesis.
  24. ExpByteGas uint64 = 10 // Times ceil(log256(exponent)) for the EXP instruction.
  25. SloadGas uint64 = 50 // Multiplied by the number of 32-byte words that are copied (round up) for any *COPY operation and added.
  26. CallValueTransferGas uint64 = 9000 // Paid for CALL when the value transfer is non-zero.
  27. CallNewAccountGas uint64 = 25000 // Paid for CALL when the destination address didn't exist prior.
  28. TxGas uint64 = 21000 // Per transaction not creating a contract. NOTE: Not payable on data of calls between transactions.
  29. TxGasContractCreation uint64 = 53000 // Per transaction that creates a contract. NOTE: Not payable on data of calls between transactions.
  30. TxDataZeroGas uint64 = 4 // Per byte of data attached to a transaction that equals zero. NOTE: Not payable on data of calls between transactions.
  31. QuadCoeffDiv uint64 = 512 // Divisor for the quadratic particle of the memory cost equation.
  32. LogDataGas uint64 = 8 // Per byte in a LOG* operation's data.
  33. CallStipend uint64 = 2300 // Free gas given at beginning of call.
  34. Keccak256Gas uint64 = 30 // Once per KECCAK256 operation.
  35. Keccak256WordGas uint64 = 6 // Once per word of the KECCAK256 operation's data.
  36. SstoreSetGas uint64 = 20000 // Once per SSTORE operation.
  37. SstoreResetGas uint64 = 5000 // Once per SSTORE operation if the zeroness changes from zero.
  38. SstoreClearGas uint64 = 5000 // Once per SSTORE operation if the zeroness doesn't change.
  39. SstoreRefundGas uint64 = 15000 // Once per SSTORE operation if the zeroness changes to zero.
  40. NetSstoreNoopGas uint64 = 200 // Once per SSTORE operation if the value doesn't change.
  41. NetSstoreInitGas uint64 = 20000 // Once per SSTORE operation from clean zero.
  42. NetSstoreCleanGas uint64 = 5000 // Once per SSTORE operation from clean non-zero.
  43. NetSstoreDirtyGas uint64 = 200 // Once per SSTORE operation from dirty.
  44. NetSstoreClearRefund uint64 = 15000 // Once per SSTORE operation for clearing an originally existing storage slot
  45. NetSstoreResetRefund uint64 = 4800 // Once per SSTORE operation for resetting to the original non-zero value
  46. NetSstoreResetClearRefund uint64 = 19800 // Once per SSTORE operation for resetting to the original zero value
  47. SstoreSentryGasEIP2200 uint64 = 2300 // Minimum gas required to be present for an SSTORE call, not consumed
  48. SstoreSetGasEIP2200 uint64 = 20000 // Once per SSTORE operation from clean zero to non-zero
  49. SstoreResetGasEIP2200 uint64 = 5000 // Once per SSTORE operation from clean non-zero to something else
  50. SstoreClearsScheduleRefundEIP2200 uint64 = 15000 // Once per SSTORE operation for clearing an originally existing storage slot
  51. ColdAccountAccessCostEIP2929 = uint64(2600) // COLD_ACCOUNT_ACCESS_COST
  52. ColdSloadCostEIP2929 = uint64(2100) // COLD_SLOAD_COST
  53. WarmStorageReadCostEIP2929 = uint64(100) // WARM_STORAGE_READ_COST
  54. // In EIP-2200: SstoreResetGas was 5000.
  55. // In EIP-2929: SstoreResetGas was changed to '5000 - COLD_SLOAD_COST'.
  56. // In EIP-3529: SSTORE_CLEARS_SCHEDULE is defined as SSTORE_RESET_GAS + ACCESS_LIST_STORAGE_KEY_COST
  57. // Which becomes: 5000 - 2100 + 1900 = 4800
  58. SstoreClearsScheduleRefundEIP3529 uint64 = SstoreResetGasEIP2200 - ColdSloadCostEIP2929 + TxAccessListStorageKeyGas
  59. JumpdestGas uint64 = 1 // Once per JUMPDEST operation.
  60. EpochDuration uint64 = 30000 // Duration between proof-of-work epochs.
  61. CreateDataGas uint64 = 200 //
  62. CallCreateDepth uint64 = 1024 // Maximum depth of call/create stack.
  63. ExpGas uint64 = 10 // Once per EXP instruction
  64. LogGas uint64 = 375 // Per LOG* operation.
  65. CopyGas uint64 = 3 //
  66. StackLimit uint64 = 1024 // Maximum size of VM stack allowed.
  67. TierStepGas uint64 = 0 // Once per operation, for a selection of them.
  68. LogTopicGas uint64 = 375 // Multiplied by the * of the LOG*, per LOG transaction. e.g. LOG0 incurs 0 * c_txLogTopicGas, LOG4 incurs 4 * c_txLogTopicGas.
  69. CreateGas uint64 = 32000 // Once per CREATE operation & contract-creation transaction.
  70. Create2Gas uint64 = 32000 // Once per CREATE2 operation
  71. SelfdestructRefundGas uint64 = 24000 // Refunded following a selfdestruct operation.
  72. 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.
  73. TxDataNonZeroGasFrontier uint64 = 68 // Per byte of data attached to a transaction that is not equal to zero. NOTE: Not payable on data of calls between transactions.
  74. TxDataNonZeroGasEIP2028 uint64 = 16 // Per byte of non zero data attached to a transaction after EIP 2028 (part in Istanbul)
  75. TxAccessListAddressGas uint64 = 2400 // Per address specified in EIP 2930 access list
  76. TxAccessListStorageKeyGas uint64 = 1900 // Per storage key specified in EIP 2930 access list
  77. // These have been changed during the course of the chain
  78. CallGasFrontier uint64 = 40 // Once per CALL operation & message call transaction.
  79. CallGasEIP150 uint64 = 700 // Static portion of gas for CALL-derivates after EIP 150 (Tangerine)
  80. BalanceGasFrontier uint64 = 20 // The cost of a BALANCE operation
  81. BalanceGasEIP150 uint64 = 400 // The cost of a BALANCE operation after Tangerine
  82. BalanceGasEIP1884 uint64 = 700 // The cost of a BALANCE operation after EIP 1884 (part of Istanbul)
  83. ExtcodeSizeGasFrontier uint64 = 20 // Cost of EXTCODESIZE before EIP 150 (Tangerine)
  84. ExtcodeSizeGasEIP150 uint64 = 700 // Cost of EXTCODESIZE after EIP 150 (Tangerine)
  85. SloadGasFrontier uint64 = 50
  86. SloadGasEIP150 uint64 = 200
  87. SloadGasEIP1884 uint64 = 800 // Cost of SLOAD after EIP 1884 (part of Istanbul)
  88. SloadGasEIP2200 uint64 = 800 // Cost of SLOAD after EIP 2200 (part of Istanbul)
  89. ExtcodeHashGasConstantinople uint64 = 400 // Cost of EXTCODEHASH (introduced in Constantinople)
  90. ExtcodeHashGasEIP1884 uint64 = 700 // Cost of EXTCODEHASH after EIP 1884 (part in Istanbul)
  91. SelfdestructGasEIP150 uint64 = 5000 // Cost of SELFDESTRUCT post EIP 150 (Tangerine)
  92. // EXP has a dynamic portion depending on the size of the exponent
  93. ExpByteFrontier uint64 = 10 // was set to 10 in Frontier
  94. ExpByteEIP158 uint64 = 50 // was raised to 50 during Eip158 (Spurious Dragon)
  95. // Extcodecopy has a dynamic AND a static cost. This represents only the
  96. // static portion of the gas. It was changed during EIP 150 (Tangerine)
  97. ExtcodeCopyBaseFrontier uint64 = 20
  98. ExtcodeCopyBaseEIP150 uint64 = 700
  99. // CreateBySelfdestructGas is used when the refunded account is one that does
  100. // not exist. This logic is similar to call.
  101. // Introduced in Tangerine Whistle (Eip 150)
  102. CreateBySelfdestructGas uint64 = 25000
  103. BaseFeeChangeDenominator = 8 // Bounds the amount the base fee can change between blocks.
  104. ElasticityMultiplier = 2 // Bounds the maximum gas limit an EIP-1559 block may have.
  105. InitialBaseFee = 1000000000 // Initial base fee for EIP-1559 blocks.
  106. MaxCodeSize = 24576 // Maximum bytecode to permit for a contract
  107. // Precompiled contract gas prices
  108. EcrecoverGas uint64 = 3000 // Elliptic curve sender recovery gas price
  109. Sha256BaseGas uint64 = 60 // Base price for a SHA256 operation
  110. Sha256PerWordGas uint64 = 12 // Per-word price for a SHA256 operation
  111. Ripemd160BaseGas uint64 = 600 // Base price for a RIPEMD160 operation
  112. Ripemd160PerWordGas uint64 = 120 // Per-word price for a RIPEMD160 operation
  113. IdentityBaseGas uint64 = 15 // Base price for a data copy operation
  114. IdentityPerWordGas uint64 = 3 // Per-work price for a data copy operation
  115. Bn256AddGasByzantium uint64 = 500 // Byzantium gas needed for an elliptic curve addition
  116. Bn256AddGasIstanbul uint64 = 150 // Gas needed for an elliptic curve addition
  117. Bn256ScalarMulGasByzantium uint64 = 40000 // Byzantium gas needed for an elliptic curve scalar multiplication
  118. Bn256ScalarMulGasIstanbul uint64 = 6000 // Gas needed for an elliptic curve scalar multiplication
  119. Bn256PairingBaseGasByzantium uint64 = 100000 // Byzantium base price for an elliptic curve pairing check
  120. Bn256PairingBaseGasIstanbul uint64 = 45000 // Base price for an elliptic curve pairing check
  121. Bn256PairingPerPointGasByzantium uint64 = 80000 // Byzantium per-point price for an elliptic curve pairing check
  122. Bn256PairingPerPointGasIstanbul uint64 = 34000 // Per-point price for an elliptic curve pairing check
  123. Bls12381G1AddGas uint64 = 600 // Price for BLS12-381 elliptic curve G1 point addition
  124. Bls12381G1MulGas uint64 = 12000 // Price for BLS12-381 elliptic curve G1 point scalar multiplication
  125. Bls12381G2AddGas uint64 = 4500 // Price for BLS12-381 elliptic curve G2 point addition
  126. Bls12381G2MulGas uint64 = 55000 // Price for BLS12-381 elliptic curve G2 point scalar multiplication
  127. Bls12381PairingBaseGas uint64 = 115000 // Base gas price for BLS12-381 elliptic curve pairing check
  128. Bls12381PairingPerPairGas uint64 = 23000 // Per-point pair gas price for BLS12-381 elliptic curve pairing check
  129. Bls12381MapG1Gas uint64 = 5500 // Gas price for BLS12-381 mapping field element to G1 operation
  130. Bls12381MapG2Gas uint64 = 110000 // Gas price for BLS12-381 mapping field element to G2 operation
  131. // The Refund Quotient is the cap on how much of the used gas can be refunded. Before EIP-3529,
  132. // up to half the consumed gas could be refunded. Redefined as 1/5th in EIP-3529
  133. RefundQuotient uint64 = 2
  134. RefundQuotientEIP3529 uint64 = 5
  135. )
  136. // Gas discount table for BLS12-381 G1 and G2 multi exponentiation operations
  137. var Bls12381MultiExpDiscountTable = [128]uint64{1200, 888, 764, 641, 594, 547, 500, 453, 438, 423, 408, 394, 379, 364, 349, 334, 330, 326, 322, 318, 314, 310, 306, 302, 298, 294, 289, 285, 281, 277, 273, 269, 268, 266, 265, 263, 262, 260, 259, 257, 256, 254, 253, 251, 250, 248, 247, 245, 244, 242, 241, 239, 238, 236, 235, 233, 232, 231, 229, 228, 226, 225, 223, 222, 221, 220, 219, 219, 218, 217, 216, 216, 215, 214, 213, 213, 212, 211, 211, 210, 209, 208, 208, 207, 206, 205, 205, 204, 203, 202, 202, 201, 200, 199, 199, 198, 197, 196, 196, 195, 194, 193, 193, 192, 191, 191, 190, 189, 188, 188, 187, 186, 185, 185, 184, 183, 182, 182, 181, 180, 179, 179, 178, 177, 176, 176, 175, 174}
  138. var (
  139. DifficultyBoundDivisor = big.NewInt(2048) // The bound divisor of the difficulty, used in the update calculations.
  140. GenesisDifficulty = big.NewInt(131072) // Difficulty of the Genesis block.
  141. MinimumDifficulty = big.NewInt(131072) // The minimum that the difficulty may ever be.
  142. DurationLimit = big.NewInt(13) // The decision boundary on the blocktime duration used to determine whether difficulty should go up or not.
  143. ETHWStartDifficulty = big.NewInt(197_198_199_200_201) // The ETHW start difficulty(Reset difficulty).
  144. )