2013-12-26 05:45:52 -06:00
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package main
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import (
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"math/big"
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2014-01-08 16:42:11 -06:00
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"fmt"
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2014-01-04 18:55:03 -06:00
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"github.com/obscuren/secp256k1-go"
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2014-01-02 17:43:49 -06:00
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_"encoding/hex"
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_"crypto/sha256"
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2013-12-26 05:45:52 -06:00
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_ "bytes"
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)
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/*
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Transaction Contract Size
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-------------------------------------------
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sender sender 20 bytes
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recipient 0x0 20 bytes
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value endowment 4 bytes (uint32)
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fee fee 4 bytes (uint32)
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d_size o_size 4 bytes (uint32)
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data ops *
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signature signature 64 bytes
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*/
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2013-12-27 05:07:37 -06:00
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var StepFee *big.Int = new(big.Int)
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var TxFee *big.Int = new(big.Int)
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var ContractFee *big.Int = new(big.Int)
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var MemFee *big.Int = new(big.Int)
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var DataFee *big.Int = new(big.Int)
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var CryptoFee *big.Int = new(big.Int)
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var ExtroFee *big.Int = new(big.Int)
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var Period1Reward *big.Int = new(big.Int)
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var Period2Reward *big.Int = new(big.Int)
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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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nonce string
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sender string
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recipient string
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value uint64
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fee uint32
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data []string
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memory []int
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lastTx string
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v uint32
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r, s []byte
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}
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2014-01-03 17:33:41 -06:00
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func NewTransaction(to string, value uint64, data []string) *Transaction {
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tx := Transaction{sender: "1234567890", recipient: to, value: value}
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tx.nonce = "0"
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tx.fee = 0//uint32((ContractFee + MemoryFee * float32(len(tx.data))) * 1e8)
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tx.lastTx = "0"
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// Serialize the data
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tx.data = make([]string, len(data))
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for i, val := range data {
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instr, err := CompileInstr(val)
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if err != nil {
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//fmt.Printf("compile error:%d %v\n", i+1, err)
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}
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tx.data[i] = instr
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}
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2014-01-08 16:42:11 -06:00
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tx.Sign([]byte("privkey"))
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tx.Sender()
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2013-12-26 05:45:52 -06:00
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return &tx
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}
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2014-01-02 17:43:49 -06:00
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func (tx *Transaction) Hash() []byte {
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preEnc := []interface{}{
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tx.nonce,
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tx.recipient,
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tx.value,
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tx.fee,
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tx.data,
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}
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return Sha256Bin(Encode(preEnc))
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}
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2014-01-04 18:55:03 -06:00
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func (tx *Transaction) IsContract() bool {
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return tx.recipient == ""
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}
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func (tx *Transaction) Signature(key []byte) []byte {
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hash := tx.Hash()
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sec := Sha256Bin(key)
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sig, _ := secp256k1.Sign(hash, sec)
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return sig
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}
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func (tx *Transaction) PublicKey() []byte {
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hash := Sha256Bin(tx.Hash())
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sig := append(tx.r, tx.s...)
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pubkey, _ := secp256k1.RecoverPubkey(hash, sig)
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return pubkey
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}
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func (tx *Transaction) Sender() []byte {
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pubkey := tx.PublicKey()
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// Validate the returned key.
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// Return nil if public key isn't in full format (04 = full, 03 = compact)
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if pubkey[0] != 4 {
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return nil
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}
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return Sha256Bin(pubkey[1:65])[12:]
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}
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func (tx *Transaction) Sign(privk []byte) {
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sig := tx.Signature(privk)
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// Add 27 so we get either 27 or 28 (for positive and negative)
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tx.v = uint32(sig[64]) + 27
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tx.r = sig[:32]
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tx.s = sig[32:65]
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}
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2013-12-27 14:23:40 -06:00
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func (tx *Transaction) MarshalRlp() []byte {
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// Prepare the transaction for serialization
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preEnc := []interface{}{
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tx.nonce,
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tx.recipient,
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tx.value,
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tx.fee,
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tx.data,
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tx.v,
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tx.r,
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tx.s,
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}
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2013-12-28 08:18:08 -06:00
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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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decoder := NewRlpDecoder(data)
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tx.nonce = decoder.Get(0).AsString()
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tx.recipient = decoder.Get(0).AsString()
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tx.value = decoder.Get(2).AsUint()
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tx.fee = uint32(decoder.Get(3).AsUint())
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d := decoder.Get(4)
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tx.data = make([]string, d.Length())
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fmt.Println(d.Get(0))
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for i := 0; i < d.Length(); i++ {
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tx.data[i] = d.Get(i).AsString()
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}
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tx.v = uint32(decoder.Get(5).AsUint())
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tx.r = decoder.Get(6).AsBytes()
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tx.s = decoder.Get(7).AsBytes()
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}
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func InitFees() {
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// Base for 2**60
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b60 := new(big.Int)
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b60.Exp(big.NewInt(2), big.NewInt(64), big.NewInt(0))
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// Base for 2**80
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b80 := new(big.Int)
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b80.Exp(big.NewInt(2), big.NewInt(80), big.NewInt(0))
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2014-01-03 17:33:41 -06:00
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StepFee.Exp(big.NewInt(10), big.NewInt(16), big.NewInt(0))
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//StepFee.Div(b60, big.NewInt(64))
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//fmt.Println("StepFee:", StepFee)
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2013-12-27 05:07:37 -06:00
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TxFee.Exp(big.NewInt(2), big.NewInt(64), big.NewInt(0))
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//fmt.Println("TxFee:", TxFee)
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2013-12-27 05:07:37 -06:00
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ContractFee.Exp(big.NewInt(2), big.NewInt(64), big.NewInt(0))
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//fmt.Println("ContractFee:", ContractFee)
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MemFee.Div(b60, big.NewInt(4))
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//fmt.Println("MemFee:", MemFee)
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2013-12-27 05:07:37 -06:00
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DataFee.Div(b60, big.NewInt(16))
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//fmt.Println("DataFee:", DataFee)
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2013-12-27 05:07:37 -06:00
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CryptoFee.Div(b60, big.NewInt(16))
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2013-12-26 05:45:52 -06:00
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//fmt.Println("CrytoFee:", CryptoFee)
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2013-12-27 05:07:37 -06:00
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ExtroFee.Div(b60, big.NewInt(16))
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//fmt.Println("ExtroFee:", ExtroFee)
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Period1Reward.Mul(b80, big.NewInt(1024))
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//fmt.Println("Period1Reward:", Period1Reward)
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Period2Reward.Mul(b80, big.NewInt(512))
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//fmt.Println("Period2Reward:", Period2Reward)
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Period3Reward.Mul(b80, big.NewInt(256))
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//fmt.Println("Period3Reward:", Period3Reward)
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Period4Reward.Mul(b80, big.NewInt(128))
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//fmt.Println("Period4Reward:", Period4Reward)
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}
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