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@ -43,6 +43,7 @@ class TestNode(NodeConnCB):
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self.last_pong = msg_pong(0)
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self.last_pong = msg_pong(0)
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self.sleep_time = 0.05
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self.sleep_time = 0.05
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self.getdataset = set()
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self.getdataset = set()
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self.last_reject = None
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def add_connection(self, conn):
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def add_connection(self, conn):
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self.connection = conn
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self.connection = conn
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@ -68,7 +69,7 @@ class TestNode(NodeConnCB):
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def on_reject(self, conn, message):
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def on_reject(self, conn, message):
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self.last_reject = message
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self.last_reject = message
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#print message
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#print (message)
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# Syncing helpers
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# Syncing helpers
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def sync(self, test_function, timeout=60):
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def sync(self, test_function, timeout=60):
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@ -136,13 +137,17 @@ class TestNode(NodeConnCB):
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self.wait_for_block(blockhash, timeout)
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self.wait_for_block(blockhash, timeout)
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return self.last_block
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return self.last_block
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def test_transaction_acceptance(self, tx, with_witness, accepted):
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def test_transaction_acceptance(self, tx, with_witness, accepted, reason=None):
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tx_message = msg_tx(tx)
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tx_message = msg_tx(tx)
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if with_witness:
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if with_witness:
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tx_message = msg_witness_tx(tx)
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tx_message = msg_witness_tx(tx)
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self.send_message(tx_message)
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self.send_message(tx_message)
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self.sync_with_ping()
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self.sync_with_ping()
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assert_equal(tx.hash in self.connection.rpc.getrawmempool(), accepted)
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assert_equal(tx.hash in self.connection.rpc.getrawmempool(), accepted)
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if (reason != None and not accepted):
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# Check the rejection reason as well.
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with mininode_lock:
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assert_equal(self.last_reject.reason, reason)
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# Test whether a witness block had the correct effect on the tip
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# Test whether a witness block had the correct effect on the tip
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def test_witness_block(self, block, accepted, with_witness=True):
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def test_witness_block(self, block, accepted, with_witness=True):
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@ -277,9 +282,52 @@ class SegWitTest(BitcoinTestFramework):
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self.test_node.sync_with_ping()
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self.test_node.sync_with_ping()
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assert_equal(self.nodes[0].getbestblockhash(), block.hash)
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assert_equal(self.nodes[0].getbestblockhash(), block.hash)
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sync_blocks(self.nodes)
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# Create a p2sh output -- this is so we can pass the standardness
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# rules (an anyone-can-spend OP_TRUE would be rejected, if not wrapped
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# in P2SH).
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p2sh_program = CScript([OP_TRUE])
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p2sh_pubkey = hash160(p2sh_program)
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scriptPubKey = CScript([OP_HASH160, p2sh_pubkey, OP_EQUAL])
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# Now check that unnecessary witnesses can't be used to blind a node
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# to a transaction, eg by violating standardness checks.
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tx2 = CTransaction()
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tx2.vin.append(CTxIn(COutPoint(tx.sha256, 0), b""))
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tx2.vout.append(CTxOut(tx.vout[0].nValue-1000, scriptPubKey))
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tx2.rehash()
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self.test_node.test_transaction_acceptance(tx2, False, True)
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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# We'll add an unnecessary witness to this transaction that would cause
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# it to be too large according to IsStandard.
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tx3 = CTransaction()
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tx3.vin.append(CTxIn(COutPoint(tx2.sha256, 0), CScript([p2sh_program])))
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tx3.vout.append(CTxOut(tx2.vout[0].nValue-1000, scriptPubKey))
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tx3.wit.vtxinwit.append(CTxinWitness())
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tx3.wit.vtxinwit[0].scriptWitness.stack = [b'a'*400000]
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tx3.rehash()
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self.std_node.test_transaction_acceptance(tx3, True, False, b'no-witness-yet')
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# If we send without witness, it should be accepted.
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self.std_node.test_transaction_acceptance(tx3, False, True)
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# Now create a new anyone-can-spend utxo for the next test.
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tx4 = CTransaction()
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tx4.vin.append(CTxIn(COutPoint(tx3.sha256, 0), CScript([p2sh_program])))
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tx4.vout.append(CTxOut(tx3.vout[0].nValue-1000, CScript([OP_TRUE])))
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tx4.rehash()
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self.test_node.test_transaction_acceptance(tx3, False, True)
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self.test_node.test_transaction_acceptance(tx4, False, True)
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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# Update our utxo list; we spent the first entry.
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# Update our utxo list; we spent the first entry.
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self.utxo.pop(0)
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self.utxo.pop(0)
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self.utxo.append(UTXO(tx.sha256, 0, tx.vout[0].nValue))
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self.utxo.append(UTXO(tx4.sha256, 0, tx4.vout[0].nValue))
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# Mine enough blocks for segwit's vb state to be 'started'.
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# Mine enough blocks for segwit's vb state to be 'started'.
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