forked from cerc-io/plugeth
(un)marshal blocks and transactions
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parent
95d877f701
commit
bd582d919b
81
block.go
81
block.go
@ -3,19 +3,18 @@ package main
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import (
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"fmt"
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"time"
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_"bytes"
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)
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type Block struct {
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RlpSerializer
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number uint32
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prevHash string
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uncles []*Block
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coinbase string
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// state xxx
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difficulty int
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difficulty uint32
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time time.Time
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nonce int
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nonce uint32
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transactions []*Transaction
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}
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@ -23,6 +22,11 @@ func NewBlock(/* TODO use raw data */transactions []*Transaction) *Block {
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block := &Block{
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// Slice of transactions to include in this block
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transactions: transactions,
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number: 1,
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prevHash: "1234",
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coinbase: "me",
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difficulty: 10,
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nonce: 0,
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time: time.Now(),
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}
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@ -44,28 +48,77 @@ func (block *Block) MarshalRlp() []byte {
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encTx[i] = string(tx.MarshalRlp())
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}
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/* I made up the block. It should probably contain different data or types. It sole purpose now is testing */
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header := []interface{}{
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block.number,
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//block.prevHash,
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block.prevHash,
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// Sha of uncles
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//block.coinbase,
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"",
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block.coinbase,
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// root state
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//Sha256Bin([]byte(RlpEncode(encTx))),
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//block.difficulty,
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//block.time,
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//block.nonce,
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"",
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string(Sha256Bin([]byte(RlpEncode(encTx)))),
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block.difficulty,
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block.time.String(),
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block.nonce,
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// extra?
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}
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return Encode([]interface{}{header, encTx})
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encoded := Encode([]interface{}{header, encTx})
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return encoded
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}
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func (block *Block) UnmarshalRlp(data []byte) {
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fmt.Printf("%q\n", data)
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t, _ := Decode(data,0)
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if slice, ok := t.([]interface{}); ok {
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if txes, ok := slice[1].([]interface{}); ok {
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fmt.Println(txes[0])
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if header, ok := slice[0].([]interface{}); ok {
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if number, ok := header[0].(uint8); ok {
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block.number = uint32(number)
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}
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if prevHash, ok := header[1].([]byte); ok {
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block.prevHash = string(prevHash)
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}
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// sha of uncles is header[2]
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if coinbase, ok := header[3].([]byte); ok {
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block.coinbase = string(coinbase)
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}
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// state is header[header[4]
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// sha is header[5]
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// It's either 8bit or 64
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if difficulty, ok := header[6].(uint8); ok {
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block.difficulty = uint32(difficulty)
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}
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if difficulty, ok := header[6].(uint64); ok {
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block.difficulty = uint32(difficulty)
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}
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if time, ok := header[7].([]byte); ok {
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fmt.Sprintf("Time is: ", string(time))
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}
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if nonce, ok := header[8].(uint8); ok {
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block.nonce = uint32(nonce)
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}
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}
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if txSlice, ok := slice[1].([]interface{}); ok {
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block.transactions = make([]*Transaction, len(txSlice))
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for i, tx := range txSlice {
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if t, ok := tx.([]byte); ok {
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tx := &Transaction{}
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tx.UnmarshalRlp(t)
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block.transactions[i] = tx
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}
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}
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}
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}
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}
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@ -34,8 +34,6 @@ var Period3Reward *big.Int = new(big.Int)
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var Period4Reward *big.Int = new(big.Int)
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type Transaction struct {
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RlpSerializer
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sender string
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recipient string
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value uint32
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@ -83,7 +81,7 @@ func (tx *Transaction) MarshalRlp() []byte {
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tx.data,
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}
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return []byte(Encode(preEnc))
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return Encode(preEnc)
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}
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func (tx *Transaction) UnmarshalRlp(data []byte) {
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