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@ -8,9 +8,9 @@ from test_framework.test_framework import BitcoinTestFramework
@@ -8,9 +8,9 @@ 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 sha256, ripemd160, CTransaction, CTxIn, COutPoint, CTxOut, COIN |
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from test_framework.address import script_to_p2sh, key_to_p2pkh |
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from test_framework.script import CScript, OP_HASH160, OP_CHECKSIG, OP_0, hash160, OP_EQUAL, OP_DUP, OP_EQUALVERIFY, OP_1, OP_2, OP_CHECKMULTISIG, hash160 |
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from test_framework.script import CScript, OP_HASH160, OP_CHECKSIG, OP_0, hash160, OP_EQUAL, OP_DUP, OP_EQUALVERIFY, OP_1, OP_2, OP_CHECKMULTISIG, hash160, OP_TRUE |
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from io import BytesIO |
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from test_framework.mininode import FromHex, ToHex |
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from test_framework.mininode import ToHex, FromHex, COIN |
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NODE_0 = 0 |
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NODE_1 = 1 |
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@ -250,12 +250,54 @@ class SegWitTest(BitcoinTestFramework):
@@ -250,12 +250,54 @@ class SegWitTest(BitcoinTestFramework):
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assert(tmpl['transactions'][0]['txid'] == txid) |
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assert(tmpl['transactions'][0]['sigops'] == 8) |
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self.nodes[0].generate(1) # Mine a block to clear the gbt cache |
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self.log.info("Non-segwit miners are able to use GBT response after activation.") |
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txid = send_to_witness(1, self.nodes[0], find_unspent(self.nodes[0], 50), self.pubkey[0], False, Decimal("49.998")) |
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#assert_raises_jsonrpc(-8, "Support for 'segwit' rule requires explicit client support", self.nodes[0].getblocktemplate, {}) |
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tmpl = self.nodes[0].getblocktemplate() |
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# TODO: add a transaction with witness to mempool, and verify it's not |
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# selected for mining. |
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# Create a 3-tx chain: tx1 (non-segwit input, paying to a segwit output) -> |
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# tx2 (segwit input, paying to a non-segwit output) -> |
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# tx3 (non-segwit input, paying to a non-segwit output). |
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# tx1 is allowed to appear in the block, but no others. |
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txid1 = send_to_witness(1, self.nodes[0], find_unspent(self.nodes[0], 50), self.pubkey[0], False, Decimal("49.996")) |
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hex_tx = self.nodes[0].gettransaction(txid)['hex'] |
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tx = FromHex(CTransaction(), hex_tx) |
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assert(tx.wit.is_null()) # This should not be a segwit input |
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assert(txid1 in self.nodes[0].getrawmempool()) |
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# Now create tx2, which will spend from txid1. |
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tx = CTransaction() |
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tx.vin.append(CTxIn(COutPoint(int(txid1, 16), 0), b'')) |
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tx.vout.append(CTxOut(int(49.99*COIN), CScript([OP_TRUE]))) |
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tx2_hex = self.nodes[0].signrawtransaction(ToHex(tx))['hex'] |
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txid2 = self.nodes[0].sendrawtransaction(tx2_hex) |
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tx = FromHex(CTransaction(), tx2_hex) |
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assert(not tx.wit.is_null()) |
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# Now create tx3, which will spend from txid2 |
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tx = CTransaction() |
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tx.vin.append(CTxIn(COutPoint(int(txid2, 16), 0), b"")) |
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tx.vout.append(CTxOut(int(49.95*COIN), CScript([OP_TRUE]))) # Huge fee |
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tx.calc_sha256() |
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txid3 = self.nodes[0].sendrawtransaction(ToHex(tx)) |
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assert(tx.wit.is_null()) |
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assert(txid3 in self.nodes[0].getrawmempool()) |
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# Now try calling getblocktemplate() without segwit support. |
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template = self.nodes[0].getblocktemplate() |
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# Check that tx1 is the only transaction of the 3 in the template. |
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template_txids = [ t['txid'] for t in template['transactions'] ] |
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assert(txid2 not in template_txids and txid3 not in template_txids) |
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assert(txid1 in template_txids) |
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# Check that running with segwit support results in all 3 being included. |
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template = self.nodes[0].getblocktemplate({"rules": ["segwit"]}) |
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template_txids = [ t['txid'] for t in template['transactions'] ] |
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assert(txid1 in template_txids) |
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assert(txid2 in template_txids) |
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assert(txid3 in template_txids) |
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# Mine a block to clear the gbt cache again. |
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self.nodes[0].generate(1) |
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self.log.info("Verify behaviour of importaddress, addwitnessaddress and listunspent") |
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