#!/usr/bin/env python3 # Copyright (c) 2014-2018 The Bitcoin Core developers # Distributed under the MIT software license, see the accompanying # file COPYING or http://www.opensource.org/licenses/mit-license.php. """Test mandatory coinbase feature""" from binascii import b2a_hex from test_framework.blocktools import create_coinbase from test_framework.messages import CBlock, CProof from test_framework.test_framework import BitcoinTestFramework from test_framework.util import assert_equal, assert_raises_rpc_error mandatory_privkey = "cNaQCDwmmh4dS9LzCgVtyy1e1xjCJ21GUDHe9K98nzb689JvinGV" mandatory_address = "n3NkSZqoPMCQN5FENxUBw4qVATbytH6FDK" mandatory_pubkey = "02fcba7ecf41bc7e1be4ee122d9d22e3333671eb0a3a87b5cdf099d59874e1940f" mandatory_script = "76a914efc58b838b3153174bf3d1677b7213353a4dccfd88ac" def b2x(b): return b2a_hex(b).decode('ascii') def assert_template(node, block, expect, rehash=True): if rehash: block.hashMerkleRoot = block.calc_merkle_root() rsp = node.getblocktemplate({'data': b2x(block.serialize()), 'mode': 'proposal'}) assert_equal(rsp, expect) class MandatoryCoinbaseTest(BitcoinTestFramework): def set_test_params(self): self.num_nodes = 2 self.setup_clean_chain = True # Non-zero coinbase outputs *must* match this. Not setting it means anything is allowed self.extra_args = [["-con_mandatorycoinbase="+mandatory_script], []] def run_test(self): node0 = self.nodes[0] node1 = self.nodes[1] node0.importprivkey(mandatory_privkey) self.log.info("generatetoaddress: Making blocks of various kinds, checking for rejection") # Create valid blocks to get out of IBD and get some funds (subsidy goes to permitted addr) node0.generatetoaddress(101, mandatory_address) # Generating for another address will not work assert_raises_rpc_error(-1, "CreateNewBlock: TestBlockValidity failed: bad-coinbase-txos", node0.generatetoaddress, 1, node0.getnewaddress()) # Have non-mandatory node make a template self.sync_all() tmpl = node1.getblocktemplate() # We make a block with OP_TRUE coinbase output that will fail on node0 coinbase_tx = create_coinbase(height=int(tmpl["height"])) # sequence numbers must not be max for nLockTime to have effect coinbase_tx.vin[0].nSequence = 2 ** 32 - 2 coinbase_tx.rehash() block = CBlock() block.nVersion = tmpl["version"] block.hashPrevBlock = int(tmpl["previousblockhash"], 16) block.nTime = tmpl["curtime"] block.nBits = int(tmpl["bits"], 16) block.nNonce = 0 block.proof = CProof(bytearray.fromhex('51')) block.vtx = [coinbase_tx] block.block_height = int(tmpl["height"]) self.log.info("getblocktemplate: Test block on both nodes") assert_equal(node0.submitblock(b2x(block.serialize())), 'invalid') assert_template(node1, block, None) self.log.info("getblocktemplate: Test non-subsidy block on both nodes") # Without block reward anything goes, this allows commitment outputs like segwit coinbase_tx.vout[0].nValue = 0 coinbase_tx.rehash() block.vtx = [coinbase_tx] assert_template(node0, block, None) assert_template(node1, block, None) if __name__ == '__main__': MandatoryCoinbaseTest().main()