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Merge 024c3bf3c7
into c5e44a0435
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commit
b43fc22c16
1 changed files with 66 additions and 5 deletions
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@ -7,6 +7,7 @@
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Test that the CHECKLOCKTIMEVERIFY soft-fork activates.
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"""
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import time
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from test_framework.blocktools import (
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TIME_GENESIS_BLOCK,
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create_block,
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@ -26,7 +27,7 @@ from test_framework.script import (
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OP_DROP,
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)
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import assert_equal
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from test_framework.util import assert_equal, assert_not_equal
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from test_framework.wallet import (
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MiniWallet,
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MiniWalletMode,
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@ -72,12 +73,12 @@ def cltv_invalidate(tx, failure_reason):
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def cltv_validate(tx, height):
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# Modify the signature in vin 0 and nSequence/nLockTime of the tx to pass CLTV
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scheme = [[CScriptNum(height), OP_CHECKLOCKTIMEVERIFY, OP_DROP], 0, height]
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scheme = [[CScriptNum.encode(CScriptNum(height))[1:], OP_CHECKLOCKTIMEVERIFY, OP_DROP], 0, height]
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cltv_modify_tx(tx, prepend_scriptsig=scheme[0], nsequence=scheme[1], nlocktime=scheme[2])
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CLTV_HEIGHT = 111
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CLTV_HEIGHT = 112
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class BIP65Test(BitcoinTestFramework):
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@ -107,8 +108,9 @@ class BIP65Test(BitcoinTestFramework):
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self.test_cltv_info(is_active=False)
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self.log.info("Mining %d blocks", CLTV_HEIGHT - 2)
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self.generate(wallet, 10)
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self.generate(self.nodes[0], CLTV_HEIGHT - 2 - 10)
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num_utxos = 12
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self.generate(wallet, num_utxos)
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self.generate(self.nodes[0], CLTV_HEIGHT - 2 - num_utxos)
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assert_equal(self.nodes[0].getblockcount(), CLTV_HEIGHT - 2)
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self.log.info("Test that invalid-according-to-CLTV transactions can still appear in a block")
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@ -199,6 +201,65 @@ class BIP65Test(BitcoinTestFramework):
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self.test_cltv_info(is_active=True) # Active as of current tip
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), block.sha256)
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# test wall clock time
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tip = block.sha256
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current_time = int(time.time())
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locktime = current_time + (60 * 60) # 1 hour
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spendtx = wallet.create_self_transfer()['tx']
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self.log.info("Test that one block mined with correct wall clock time does not satisfy median-time-past")
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cltv_validate(spendtx,locktime)
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block2 = create_block(tip, create_coinbase(CLTV_HEIGHT + 1), ntime=locktime, version=4)
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block2.vtx.append(spendtx)
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block2.hashMerkleRoot = block2.calc_merkle_root()
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block2.solve()
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peer.send_and_ping(msg_block(block2))
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# expect failure as we haven't satisfied wall clock time yet
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assert_not_equal(int(self.nodes[0].getbestblockhash(), 16), block2.sha256)
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self.log.info("Test 7 blocks mined with current wall clock time can satisfy the median-time-past")
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num = 7
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for i in range(num):
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b = create_block(tip, create_coinbase(CLTV_HEIGHT + i + 1), ntime=locktime + i, version=4)
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b.solve()
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peer.send_and_ping(msg_block(b))
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tip = b.sha256
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# now our median-past-time should allow for a transaction with
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# a locktime of +1 hour to be confirmed
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cltv_validate(spendtx,locktime)
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block2 = create_block(tip, create_coinbase(CLTV_HEIGHT + num + 1), ntime=locktime + num, version=4)
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block2.vtx.append(spendtx)
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block2.hashMerkleRoot = block2.calc_merkle_root()
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block2.solve()
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peer.send_and_ping(msg_block(block2))
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), block2.sha256)
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self.log.info("Test that we cannot mine locktimes that are UINT32_MAX")
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UINT32_MAX = 2**32 - 1
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self.nodes[0].setmocktime(UINT32_MAX)
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# need to re-add connection as setting mocktime times out the p2p connection
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peer = self.nodes[0].add_p2p_connection(P2PInterface())
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tip = block2.sha256
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# mine 6 blocks with UINT32_MAX -1 ntime
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for i in range(6):
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b = create_block(tip, create_coinbase(CLTV_HEIGHT + num + i + 2), ntime=UINT32_MAX - 1, version=4)
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b.solve()
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peer.send_and_ping(msg_block(b))
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tip = b.sha256
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), tip)
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spendtx = wallet.create_self_transfer()['tx']
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# create the next block with ntime=UINT32_MAX so we monotonically increase block time
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block3 = create_block(tip, create_coinbase(CLTV_HEIGHT + num + 6 + 2), ntime=UINT32_MAX, version=4)
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# the max locktime we can include in this block is UINT32_MAX - 2 due to the fact
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# our current median-time-past is UINT32_MAX - 1
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cltv_validate(spendtx,UINT32_MAX - 2)
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block3.vtx.append(spendtx)
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block3.hashMerkleRoot = block3.calc_merkle_root()
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block3.solve()
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peer.send_and_ping(msg_block(block3))
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assert_equal(int(self.nodes[0].getbestblockhash(), 16), block3.sha256)
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if __name__ == '__main__':
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BIP65Test(__file__).main()
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