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157 lines
6.2 KiB
157 lines
6.2 KiB
#!/usr/bin/env python3 |
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# Copyright (c) 2015-2016 The Bitcoin Core developers |
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# Distributed under the MIT software license, see the accompanying |
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# file COPYING or http://www.opensource.org/licenses/mit-license.php. |
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"""Test BIP66 (DER SIG). |
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Test that the DERSIG soft-fork activates at (regtest) height 1251. |
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""" |
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from test_framework.test_framework import BitcoinTestFramework |
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from test_framework.util import * |
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from test_framework.mininode import * |
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from test_framework.blocktools import create_coinbase, create_block |
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from test_framework.script import CScript |
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from io import BytesIO |
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DERSIG_HEIGHT = 1251 |
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# Reject codes that we might receive in this test |
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REJECT_INVALID = 16 |
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REJECT_OBSOLETE = 17 |
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REJECT_NONSTANDARD = 64 |
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# A canonical signature consists of: |
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# <30> <total len> <02> <len R> <R> <02> <len S> <S> <hashtype> |
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def unDERify(tx): |
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""" |
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Make the signature in vin 0 of a tx non-DER-compliant, |
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by adding padding after the S-value. |
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""" |
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scriptSig = CScript(tx.vin[0].scriptSig) |
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newscript = [] |
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for i in scriptSig: |
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if (len(newscript) == 0): |
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newscript.append(i[0:-1] + b'\0' + i[-1:]) |
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else: |
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newscript.append(i) |
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tx.vin[0].scriptSig = CScript(newscript) |
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def create_transaction(node, coinbase, to_address, amount): |
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from_txid = node.getblock(coinbase)['tx'][0] |
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inputs = [{ "txid" : from_txid, "vout" : 0}] |
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outputs = { to_address : amount } |
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rawtx = node.createrawtransaction(inputs, outputs) |
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signresult = node.signrawtransaction(rawtx) |
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tx = CTransaction() |
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tx.deserialize(BytesIO(hex_str_to_bytes(signresult['hex']))) |
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return tx |
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class BIP66Test(BitcoinTestFramework): |
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def __init__(self): |
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super().__init__() |
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self.num_nodes = 1 |
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self.extra_args = [['-promiscuousmempoolflags=1', '-whitelist=127.0.0.1']] |
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self.setup_clean_chain = True |
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def run_test(self): |
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node0 = NodeConnCB() |
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connections = [] |
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connections.append(NodeConn('127.0.0.1', p2p_port(0), self.nodes[0], node0)) |
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node0.add_connection(connections[0]) |
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NetworkThread().start() # Start up network handling in another thread |
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# wait_for_verack ensures that the P2P connection is fully up. |
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node0.wait_for_verack() |
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self.log.info("Mining %d blocks", DERSIG_HEIGHT - 2) |
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self.coinbase_blocks = self.nodes[0].generate(DERSIG_HEIGHT - 2) |
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self.nodeaddress = self.nodes[0].getnewaddress() |
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self.log.info("Test that a transaction with non-DER signature can still appear in a block") |
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spendtx = create_transaction(self.nodes[0], self.coinbase_blocks[0], |
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self.nodeaddress, 1.0) |
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unDERify(spendtx) |
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spendtx.rehash() |
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tip = self.nodes[0].getbestblockhash() |
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block_time = self.nodes[0].getblockheader(tip)['mediantime'] + 1 |
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block = create_block(int(tip, 16), create_coinbase(DERSIG_HEIGHT - 1), block_time) |
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block.nVersion = 2 |
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block.vtx.append(spendtx) |
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block.hashMerkleRoot = block.calc_merkle_root() |
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block.rehash() |
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block.solve() |
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node0.send_and_ping(msg_block(block)) |
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assert_equal(self.nodes[0].getbestblockhash(), block.hash) |
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self.log.info("Test that blocks must now be at least version 3") |
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tip = block.sha256 |
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block_time += 1 |
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block = create_block(tip, create_coinbase(DERSIG_HEIGHT), block_time) |
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block.nVersion = 2 |
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block.rehash() |
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block.solve() |
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node0.send_and_ping(msg_block(block)) |
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), tip) |
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wait_until(lambda: "reject" in node0.last_message.keys(), lock=mininode_lock) |
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with mininode_lock: |
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assert_equal(node0.last_message["reject"].code, REJECT_OBSOLETE) |
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assert_equal(node0.last_message["reject"].reason, b'bad-version(0x00000002)') |
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assert_equal(node0.last_message["reject"].data, block.sha256) |
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del node0.last_message["reject"] |
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self.log.info("Test that transactions with non-DER signatures cannot appear in a block") |
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block.nVersion = 3 |
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spendtx = create_transaction(self.nodes[0], self.coinbase_blocks[1], |
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self.nodeaddress, 1.0) |
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unDERify(spendtx) |
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spendtx.rehash() |
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# First we show that this tx is valid except for DERSIG by getting it |
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# accepted to the mempool (which we can achieve with |
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# -promiscuousmempoolflags). |
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node0.send_and_ping(msg_tx(spendtx)) |
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assert spendtx.hash in self.nodes[0].getrawmempool() |
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# Now we verify that a block with this transaction is invalid. |
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block.vtx.append(spendtx) |
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block.hashMerkleRoot = block.calc_merkle_root() |
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block.rehash() |
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block.solve() |
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node0.send_and_ping(msg_block(block)) |
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), tip) |
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wait_until(lambda: "reject" in node0.last_message.keys(), lock=mininode_lock) |
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with mininode_lock: |
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# We can receive different reject messages depending on whether |
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# bitcoind is running with multiple script check threads. If script |
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# check threads are not in use, then transaction script validation |
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# happens sequentially, and bitcoind produces more specific reject |
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# reasons. |
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assert node0.last_message["reject"].code in [REJECT_INVALID, REJECT_NONSTANDARD] |
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assert_equal(node0.last_message["reject"].data, block.sha256) |
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if node0.last_message["reject"].code == REJECT_INVALID: |
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# Generic rejection when a block is invalid |
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assert_equal(node0.last_message["reject"].reason, b'block-validation-failed') |
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else: |
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assert b'Non-canonical DER signature' in node0.last_message["reject"].reason |
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self.log.info("Test that a version 3 block with a DERSIG-compliant transaction is accepted") |
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block.vtx[1] = create_transaction(self.nodes[0], |
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self.coinbase_blocks[1], self.nodeaddress, 1.0) |
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block.hashMerkleRoot = block.calc_merkle_root() |
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block.rehash() |
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block.solve() |
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node0.send_and_ping(msg_block(block)) |
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), block.sha256) |
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if __name__ == '__main__': |
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BIP66Test().main()
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