github.com/gobitfly/go-ethereum@v1.8.12/core/chain_makers.go (about)

     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  
    17  package core
    18  
    19  import (
    20  	"fmt"
    21  	"math/big"
    22  
    23  	"github.com/ethereum/go-ethereum/common"
    24  	"github.com/ethereum/go-ethereum/consensus"
    25  	"github.com/ethereum/go-ethereum/consensus/misc"
    26  	"github.com/ethereum/go-ethereum/core/state"
    27  	"github.com/ethereum/go-ethereum/core/types"
    28  	"github.com/ethereum/go-ethereum/core/vm"
    29  	"github.com/ethereum/go-ethereum/ethdb"
    30  	"github.com/ethereum/go-ethereum/params"
    31  )
    32  
    33  // BlockGen creates blocks for testing.
    34  // See GenerateChain for a detailed explanation.
    35  type BlockGen struct {
    36  	i           int
    37  	parent      *types.Block
    38  	chain       []*types.Block
    39  	chainReader consensus.ChainReader
    40  	header      *types.Header
    41  	statedb     *state.StateDB
    42  
    43  	gasPool  *GasPool
    44  	txs      []*types.Transaction
    45  	receipts []*types.Receipt
    46  	uncles   []*types.Header
    47  
    48  	config *params.ChainConfig
    49  	engine consensus.Engine
    50  }
    51  
    52  // SetCoinbase sets the coinbase of the generated block.
    53  // It can be called at most once.
    54  func (b *BlockGen) SetCoinbase(addr common.Address) {
    55  	if b.gasPool != nil {
    56  		if len(b.txs) > 0 {
    57  			panic("coinbase must be set before adding transactions")
    58  		}
    59  		panic("coinbase can only be set once")
    60  	}
    61  	b.header.Coinbase = addr
    62  	b.gasPool = new(GasPool).AddGas(b.header.GasLimit)
    63  }
    64  
    65  // SetExtra sets the extra data field of the generated block.
    66  func (b *BlockGen) SetExtra(data []byte) {
    67  	b.header.Extra = data
    68  }
    69  
    70  // AddTx adds a transaction to the generated block. If no coinbase has
    71  // been set, the block's coinbase is set to the zero address.
    72  //
    73  // AddTx panics if the transaction cannot be executed. In addition to
    74  // the protocol-imposed limitations (gas limit, etc.), there are some
    75  // further limitations on the content of transactions that can be
    76  // added. Notably, contract code relying on the BLOCKHASH instruction
    77  // will panic during execution.
    78  func (b *BlockGen) AddTx(tx *types.Transaction) {
    79  	b.AddTxWithChain(nil, tx)
    80  }
    81  
    82  // AddTxWithChain adds a transaction to the generated block. If no coinbase has
    83  // been set, the block's coinbase is set to the zero address.
    84  //
    85  // AddTxWithChain panics if the transaction cannot be executed. In addition to
    86  // the protocol-imposed limitations (gas limit, etc.), there are some
    87  // further limitations on the content of transactions that can be
    88  // added. If contract code relies on the BLOCKHASH instruction,
    89  // the block in chain will be returned.
    90  func (b *BlockGen) AddTxWithChain(bc *BlockChain, tx *types.Transaction) {
    91  	if b.gasPool == nil {
    92  		b.SetCoinbase(common.Address{})
    93  	}
    94  	b.statedb.Prepare(tx.Hash(), common.Hash{}, len(b.txs))
    95  	receipt, _, err := ApplyTransaction(b.config, bc, &b.header.Coinbase, b.gasPool, b.statedb, b.header, tx, &b.header.GasUsed, vm.Config{})
    96  	if err != nil {
    97  		panic(err)
    98  	}
    99  	b.txs = append(b.txs, tx)
   100  	b.receipts = append(b.receipts, receipt)
   101  }
   102  
   103  // Number returns the block number of the block being generated.
   104  func (b *BlockGen) Number() *big.Int {
   105  	return new(big.Int).Set(b.header.Number)
   106  }
   107  
   108  // AddUncheckedReceipt forcefully adds a receipts to the block without a
   109  // backing transaction.
   110  //
   111  // AddUncheckedReceipt will cause consensus failures when used during real
   112  // chain processing. This is best used in conjunction with raw block insertion.
   113  func (b *BlockGen) AddUncheckedReceipt(receipt *types.Receipt) {
   114  	b.receipts = append(b.receipts, receipt)
   115  }
   116  
   117  // TxNonce returns the next valid transaction nonce for the
   118  // account at addr. It panics if the account does not exist.
   119  func (b *BlockGen) TxNonce(addr common.Address) uint64 {
   120  	if !b.statedb.Exist(addr) {
   121  		panic("account does not exist")
   122  	}
   123  	return b.statedb.GetNonce(addr)
   124  }
   125  
   126  // AddUncle adds an uncle header to the generated block.
   127  func (b *BlockGen) AddUncle(h *types.Header) {
   128  	b.uncles = append(b.uncles, h)
   129  }
   130  
   131  // PrevBlock returns a previously generated block by number. It panics if
   132  // num is greater or equal to the number of the block being generated.
   133  // For index -1, PrevBlock returns the parent block given to GenerateChain.
   134  func (b *BlockGen) PrevBlock(index int) *types.Block {
   135  	if index >= b.i {
   136  		panic("block index out of range")
   137  	}
   138  	if index == -1 {
   139  		return b.parent
   140  	}
   141  	return b.chain[index]
   142  }
   143  
   144  // OffsetTime modifies the time instance of a block, implicitly changing its
   145  // associated difficulty. It's useful to test scenarios where forking is not
   146  // tied to chain length directly.
   147  func (b *BlockGen) OffsetTime(seconds int64) {
   148  	b.header.Time.Add(b.header.Time, new(big.Int).SetInt64(seconds))
   149  	if b.header.Time.Cmp(b.parent.Header().Time) <= 0 {
   150  		panic("block time out of range")
   151  	}
   152  	b.header.Difficulty = b.engine.CalcDifficulty(b.chainReader, b.header.Time.Uint64(), b.parent.Header())
   153  }
   154  
   155  // GenerateChain creates a chain of n blocks. The first block's
   156  // parent will be the provided parent. db is used to store
   157  // intermediate states and should contain the parent's state trie.
   158  //
   159  // The generator function is called with a new block generator for
   160  // every block. Any transactions and uncles added to the generator
   161  // become part of the block. If gen is nil, the blocks will be empty
   162  // and their coinbase will be the zero address.
   163  //
   164  // Blocks created by GenerateChain do not contain valid proof of work
   165  // values. Inserting them into BlockChain requires use of FakePow or
   166  // a similar non-validating proof of work implementation.
   167  func GenerateChain(config *params.ChainConfig, parent *types.Block, engine consensus.Engine, db ethdb.Database, n int, gen func(int, *BlockGen)) ([]*types.Block, []types.Receipts) {
   168  	if config == nil {
   169  		config = params.TestChainConfig
   170  	}
   171  	blocks, receipts := make(types.Blocks, n), make([]types.Receipts, n)
   172  	genblock := func(i int, parent *types.Block, statedb *state.StateDB) (*types.Block, types.Receipts) {
   173  		// TODO(karalabe): This is needed for clique, which depends on multiple blocks.
   174  		// It's nonetheless ugly to spin up a blockchain here. Get rid of this somehow.
   175  		blockchain, _ := NewBlockChain(db, nil, config, engine, vm.Config{})
   176  		defer blockchain.Stop()
   177  
   178  		b := &BlockGen{i: i, parent: parent, chain: blocks, chainReader: blockchain, statedb: statedb, config: config, engine: engine}
   179  		b.header = makeHeader(b.chainReader, parent, statedb, b.engine)
   180  
   181  		// Mutate the state and block according to any hard-fork specs
   182  		if daoBlock := config.DAOForkBlock; daoBlock != nil {
   183  			limit := new(big.Int).Add(daoBlock, params.DAOForkExtraRange)
   184  			if b.header.Number.Cmp(daoBlock) >= 0 && b.header.Number.Cmp(limit) < 0 {
   185  				if config.DAOForkSupport {
   186  					b.header.Extra = common.CopyBytes(params.DAOForkBlockExtra)
   187  				}
   188  			}
   189  		}
   190  		if config.DAOForkSupport && config.DAOForkBlock != nil && config.DAOForkBlock.Cmp(b.header.Number) == 0 {
   191  			misc.ApplyDAOHardFork(statedb)
   192  		}
   193  		// Execute any user modifications to the block and finalize it
   194  		if gen != nil {
   195  			gen(i, b)
   196  		}
   197  
   198  		if b.engine != nil {
   199  			block, _ := b.engine.Finalize(b.chainReader, b.header, statedb, b.txs, b.uncles, b.receipts)
   200  			// Write state changes to db
   201  			root, err := statedb.Commit(config.IsEIP158(b.header.Number))
   202  			if err != nil {
   203  				panic(fmt.Sprintf("state write error: %v", err))
   204  			}
   205  			if err := statedb.Database().TrieDB().Commit(root, false); err != nil {
   206  				panic(fmt.Sprintf("trie write error: %v", err))
   207  			}
   208  			return block, b.receipts
   209  		}
   210  		return nil, nil
   211  	}
   212  	for i := 0; i < n; i++ {
   213  		statedb, err := state.New(parent.Root(), state.NewDatabase(db))
   214  		if err != nil {
   215  			panic(err)
   216  		}
   217  		block, receipt := genblock(i, parent, statedb)
   218  		blocks[i] = block
   219  		receipts[i] = receipt
   220  		parent = block
   221  	}
   222  	return blocks, receipts
   223  }
   224  
   225  func makeHeader(chain consensus.ChainReader, parent *types.Block, state *state.StateDB, engine consensus.Engine) *types.Header {
   226  	var time *big.Int
   227  	if parent.Time() == nil {
   228  		time = big.NewInt(10)
   229  	} else {
   230  		time = new(big.Int).Add(parent.Time(), big.NewInt(10)) // block time is fixed at 10 seconds
   231  	}
   232  
   233  	return &types.Header{
   234  		Root:       state.IntermediateRoot(chain.Config().IsEIP158(parent.Number())),
   235  		ParentHash: parent.Hash(),
   236  		Coinbase:   parent.Coinbase(),
   237  		Difficulty: engine.CalcDifficulty(chain, time.Uint64(), &types.Header{
   238  			Number:     parent.Number(),
   239  			Time:       new(big.Int).Sub(time, big.NewInt(10)),
   240  			Difficulty: parent.Difficulty(),
   241  			UncleHash:  parent.UncleHash(),
   242  		}),
   243  		GasLimit: CalcGasLimit(parent),
   244  		Number:   new(big.Int).Add(parent.Number(), common.Big1),
   245  		Time:     time,
   246  	}
   247  }
   248  
   249  // makeHeaderChain creates a deterministic chain of headers rooted at parent.
   250  func makeHeaderChain(parent *types.Header, n int, engine consensus.Engine, db ethdb.Database, seed int) []*types.Header {
   251  	blocks := makeBlockChain(types.NewBlockWithHeader(parent), n, engine, db, seed)
   252  	headers := make([]*types.Header, len(blocks))
   253  	for i, block := range blocks {
   254  		headers[i] = block.Header()
   255  	}
   256  	return headers
   257  }
   258  
   259  // makeBlockChain creates a deterministic chain of blocks rooted at parent.
   260  func makeBlockChain(parent *types.Block, n int, engine consensus.Engine, db ethdb.Database, seed int) []*types.Block {
   261  	blocks, _ := GenerateChain(params.TestChainConfig, parent, engine, db, n, func(i int, b *BlockGen) {
   262  		b.SetCoinbase(common.Address{0: byte(seed), 19: byte(i)})
   263  	})
   264  	return blocks
   265  }