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@ -1086,6 +1086,82 @@ class SegWitTest(BitcoinTestFramework):
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self.old_node.announce_tx_and_wait_for_getdata(block4.vtx[0])
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assert(block4.sha256 not in self.old_node.getdataset)
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# V0 segwit outputs should be standard after activation, but not before.
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def test_standardness_v0(self, segwit_activated):
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print("\tTesting standardness of v0 outputs (%s activation)" % ("after" if segwit_activated else "before"))
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assert(len(self.utxo))
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witness_program = CScript([OP_TRUE])
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witness_hash = sha256(witness_program)
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scriptPubKey = CScript([OP_0, witness_hash])
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p2sh_pubkey = hash160(witness_program)
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p2sh_scriptPubKey = CScript([OP_HASH160, p2sh_pubkey, OP_EQUAL])
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# First prepare a p2sh output (so that spending it will pass standardness)
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p2sh_tx = CTransaction()
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p2sh_tx.vin = [CTxIn(COutPoint(self.utxo[0].sha256, self.utxo[0].n), b"")]
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p2sh_tx.vout = [CTxOut(self.utxo[0].nValue-1000, p2sh_scriptPubKey)]
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p2sh_tx.rehash()
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# Mine it on test_node to create the confirmed output.
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self.test_node.test_transaction_acceptance(p2sh_tx, with_witness=True, accepted=True)
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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# Now test standardness of v0 P2WSH outputs.
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# Start by creating a transaction with two outputs.
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tx = CTransaction()
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tx.vin = [CTxIn(COutPoint(p2sh_tx.sha256, 0), CScript([witness_program]))]
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tx.vout = [CTxOut(p2sh_tx.vout[0].nValue-10000, scriptPubKey)]
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tx.vout.append(CTxOut(8000, scriptPubKey)) # Might burn this later
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tx.rehash()
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self.std_node.test_transaction_acceptance(tx, with_witness=True, accepted=segwit_activated)
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# Now create something that looks like a P2PKH output. This won't be spendable.
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scriptPubKey = CScript([OP_0, hash160(witness_hash)])
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tx2 = CTransaction()
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if segwit_activated:
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# if tx was accepted, then we spend the second output.
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tx2.vin = [CTxIn(COutPoint(tx.sha256, 1), b"")]
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tx2.vout = [CTxOut(7000, scriptPubKey)]
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tx2.wit.vtxinwit.append(CTxInWitness())
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tx2.wit.vtxinwit[0].scriptWitness.stack = [witness_program]
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else:
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# if tx wasn't accepted, we just re-spend the p2sh output we started with.
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tx2.vin = [CTxIn(COutPoint(p2sh_tx.sha256, 0), CScript([witness_program]))]
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tx2.vout = [CTxOut(p2sh_tx.vout[0].nValue-1000, scriptPubKey)]
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tx2.rehash()
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self.std_node.test_transaction_acceptance(tx2, with_witness=True, accepted=segwit_activated)
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# Now update self.utxo for later tests.
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tx3 = CTransaction()
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if segwit_activated:
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# tx and tx2 were both accepted. Don't bother trying to reclaim the
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# P2PKH output; just send tx's first output back to an anyone-can-spend.
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sync_mempools(self.nodes)
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tx3.vin = [CTxIn(COutPoint(tx.sha256, 0), b"")]
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tx3.vout = [CTxOut(tx.vout[0].nValue-1000, CScript([OP_TRUE]))]
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tx3.wit.vtxinwit.append(CTxInWitness())
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tx3.wit.vtxinwit[0].scriptWitness.stack = [witness_program]
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tx3.rehash()
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self.test_node.test_transaction_acceptance(tx3, with_witness=True, accepted=True)
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else:
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# tx and tx2 didn't go anywhere; just clean up the p2sh_tx output.
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tx3.vin = [CTxIn(COutPoint(p2sh_tx.sha256, 0), CScript([witness_program]))]
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tx3.vout = [CTxOut(p2sh_tx.vout[0].nValue-1000, witness_program)]
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tx3.rehash()
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self.test_node.test_transaction_acceptance(tx3, with_witness=True, accepted=True)
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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self.utxo.pop(0)
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self.utxo.append(UTXO(tx3.sha256, 0, tx3.vout[0].nValue))
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assert_equal(len(self.nodes[1].getrawmempool()), 0)
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# Verify that future segwit upgraded transactions are non-standard,
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# but valid in blocks. Can run this before and after segwit activation.
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def test_segwit_versions(self):
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@ -1658,6 +1734,7 @@ class SegWitTest(BitcoinTestFramework):
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self.test_witness_tx_relay_before_segwit_activation()
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self.test_block_relay(segwit_activated=False)
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self.test_p2sh_witness(segwit_activated=False)
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self.test_standardness_v0(segwit_activated=False)
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sync_blocks(self.nodes)
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@ -1679,6 +1756,7 @@ class SegWitTest(BitcoinTestFramework):
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self.test_witness_input_length()
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self.test_block_relay(segwit_activated=True)
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self.test_tx_relay_after_segwit_activation()
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self.test_standardness_v0(segwit_activated=True)
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self.test_segwit_versions()
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self.test_premature_coinbase_witness_spend()
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self.test_signature_version_1()
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