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December 21, 2019 14:17
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Create a simple Blockchain with python
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import json | |
import hashlib | |
import datetime | |
from flask import Flask, jsonify, request | |
import requests | |
from uuid import uuid4 | |
from urllib.parse import urlparse | |
# Part 1 - Building a Blockchain | |
class Blockchain: | |
def __init__(self): | |
self.chain = [] | |
self.transactions = [] | |
self.create_block(proof = 1, previous_hash = '0') | |
self.nodes = set() | |
def create_block(self, proof, previous_hash): | |
block = {'index': len(self.chain) + 1, | |
'timestamp': str(datetime.datetime.now()), | |
'proof': proof, | |
'previous_hash': previous_hash, | |
'transactions': self.transactions} | |
self.transactions = [] | |
self.chain.append(block) | |
return block | |
def get_previous_block(self): | |
return self.chain[-1] | |
def proof_of_work(self, previous_proof): | |
new_proof = 1 | |
check_proof = False | |
while check_proof is False: | |
hash_operation = hashlib.sha256(str(new_proof**2 - previous_proof**2).encode()).hexdigest() | |
if hash_operation[:4] == '0000': | |
check_proof = True | |
else: | |
new_proof += 1 | |
return new_proof | |
def hash(self, block): | |
encoded_block = json.dumps(block, sort_keys = True).encode() | |
return hashlib.sha256(encoded_block).hexdigest() | |
def is_chain_valid(self, chain): | |
previous_block = chain[0] | |
block_index = 1 | |
while block_index < len(chain): | |
block = chain[block_index] | |
if block['previous_hash'] != self.hash(previous_block): | |
return False | |
previous_proof = previous_block['proof'] | |
proof = block['proof'] | |
hash_operation = hashlib.sha256(str(proof**2 - previous_proof**2).encode()).hexdigest() | |
if hash_operation[:4] != '0000': | |
return False | |
previous_block = block | |
block_index += 1 | |
return True | |
def add_transaction(self, sender, receiver, amount): | |
self.transactions.append({'sender': sender, | |
'receiver': receiver, | |
'amount': amount}) | |
previous_block = self.get_previous_block() | |
return previous_block['index'] + 1 | |
def add_node(self, address): | |
parsed_url = urlparse(address) | |
self.nodes.add(parsed_url.netloc) | |
def replace_chain(self): | |
network = self.nodes | |
longest_chain = None | |
max_lenght = len(self.chain) | |
for nodes in network: | |
# Part 2 - Mining our Blockchain | |
# Creating a Web App | |
app = Flask(__name__) | |
# Creating a Blockchain | |
blockchain = Blockchain() | |
# Mining a block | |
@app.route('/mine_block', methods = ['GET']) | |
def mine_block(): | |
previous_block = blockchain.get_previous_block() | |
previous_proof = previous_block['proof'] | |
proof = blockchain.proof_of_work(previous_proof) | |
previous_hash = blockchain.hash(previous_block) | |
block = blockchain.create_block(proof, previous_hash) | |
response = {'message': 'Congratulations, you just mined a block!', | |
'index': block['index'], | |
'timestamp': block['timestamp'], | |
'proof': block['proof'], | |
'previous_hash': block['previous_hash']} | |
return jsonify(response), 200 | |
@app.route('/get_chain', methods = ['GET']) | |
def get_chain(): | |
response = {'chain': blockchain.chain, | |
'lenght': len(blockchain.chain)} | |
return jsonify(response), 200 | |
@app.route('/is_valid', methods = ['GET']) | |
def is_valid(): | |
is_valid = blockchain.is_chain_valid(blockchain.chain) | |
if is_valid: | |
response = {'message': 'All good. The Blockchain is valid.'} | |
else: | |
response = {'message': 'YOOOOOO'} | |
return jsonify(response), 200 | |
# Part 3 - Decentralizing our Blockchain | |
# Running the app | |
app.run(host = '0.0.0.0', port = 5000) |
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