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main.go
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main.go
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//Example of BlockChain Technology
//test new branch
//test new 2
package main
import (
"fmt"
"bytes"
"crypto/sha256"
"strconv"
"time"
)
// Block keeps block headers
type Block struct {
Timestamp int64
Data []byte
PrevBlockHash []byte
Hash []byte
}
// SetHash calculates and sets block hash
func (b *Block) SetHash() {
timestamp := []byte(strconv.FormatInt(b.Timestamp, 10))
headers := bytes.Join([][]byte{b.PrevBlockHash, b.Data, timestamp}, []byte{})
hash := sha256.Sum256(headers)
b.Hash = hash[:]
}
// NewBlock creates and returns Block
func NewBlock(data string, prevBlockHash []byte) *Block {
block := &Block{time.Now().Unix(), []byte(data), prevBlockHash, []byte{}}
block.SetHash()
return block
}
// NewGenesisBlock creates and returns genesis Block
func NewGenesisBlock() *Block {
return NewBlock("Genesis Block", []byte{})
}
// Blockchain keeps a sequence of Blocks
type Blockchain struct {
blocks []*Block
}
// AddBlock saves provided data as a block in the blockchain
func (bc *Blockchain) AddBlock(data string) {
prevBlock := bc.blocks[len(bc.blocks)-1]
newBlock := NewBlock(data, prevBlock.Hash)
bc.blocks = append(bc.blocks, newBlock)
}
// NewBlockchain creates a new Blockchain with genesis Block
func NewBlockchain() *Blockchain {
return &Blockchain{[]*Block{NewGenesisBlock()}}
}
func main() {
bc := NewBlockchain()
bc.AddBlock("Send 1 BTC to Oleg Vinokurov")
bc.AddBlock("Send 2 more BTC to Oleg Vinokurov")
for _, block := range bc.blocks {
fmt.Printf("Prev. hash: %x\n", block.PrevBlockHash)
fmt.Printf("Data: %s\n", block.Data)
fmt.Printf("Hash: %x\n", block.Hash)
fmt.Println()
}
}