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127 lines
6.5 KiB
Python
Executable file
127 lines
6.5 KiB
Python
Executable file
#!/usr/bin/env python3
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# Copyright (c) 2015-2020 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 Taproot soft fork activation for Elements
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Unlike Bitcoin, this (a) does not use Speedy Trial, and (b) does use
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a pair of new versionbits features which allows Taproot to have its
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own signalling period length (128 blocks on regtest) and activation
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threshold (100%).
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The primary purpose of this test is to confirm that this configuration
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works; the actual activation (e.g. how are Taproot-enabled transactions
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treated) is covered by other tests and by manual testing.
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There is an undocumented option `con_taproot_signal_start` which sets
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the block at which signalling starts; otherwise it is set to "always
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on" which means that signalling will not occur.
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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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class TaprootActivationTest(BitcoinTestFramework):
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def set_test_params(self):
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self.setup_clean_chain = True
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self.num_nodes = 1
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def skip_test_if_missing_module(self):
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self.skip_if_no_wallet()
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def add_options(self, parser):
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self.add_wallet_options(parser)
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def test_activation(self, rpc, activation_height):
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self.log.info("Testing activation at height %d" % activation_height)
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activation_height = 128 * ((activation_height + 127) // 128)
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assert_equal(rpc.getblockcount(), 0)
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blocks = self.generatetoaddress(rpc, activation_height - 2, rpc.getnewaddress())
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assert_equal(rpc.getblockcount(), activation_height - 2)
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for n, block in enumerate(blocks):
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decode = rpc.getblockheader(block)
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if n < 143:
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assert_equal (decode["versionHex"], "20000000")
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elif n < 431:
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# TESTDUMMY deployment: 144 blocks active, 144 blocks locked in
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assert_equal (decode["versionHex"], "30000000")
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else:
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assert_equal (decode["versionHex"], "20000000")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "defined")
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# The 1023rd block does not signal, but changes status_next to "started" from "defined"
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# bitcoin PR #23508 changed bip9 status to the current block instead of the next block
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blocks = self.generatetoaddress(rpc, 1, rpc.getnewaddress())
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "defined")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status_next"], "started")
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assert_equal(rpc.getblockheader(blocks[0])["versionHex"], "20000000")
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blocks = self.generatetoaddress(rpc, 127, rpc.getnewaddress())
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for n, block in enumerate(blocks):
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decode = rpc.getblockheader(block)
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assert_equal (decode["versionHex"], "20000004")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "started")
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# Fail to signal on the 128th block. Since the threshold for Taproot is
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# 100% this will prevent activation. Note that our period is 128, not
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# 144 (the default), as we have overridden the period for Taproot. On
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# the main Liquid chain it is overridden to be one week of signalling.
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block = rpc.getnewblockhex()
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block = block[:1] + "0" + block[2:] # turn off Taproot signal
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rpc.submitblock(block)
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "started")
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# Run through another 128 blocks, without failing to signal
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blocks = self.generatetoaddress(rpc, 127, rpc.getnewaddress())
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for n, block in enumerate(blocks):
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decode = rpc.getblockheader(block)
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assert_equal (decode["versionHex"], "20000004")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "started")
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# The 128th block then switches from "started" to "locked_in"
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blocks = self.generatetoaddress(rpc, 1, rpc.getnewaddress())
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "started")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status_next"], "locked_in")
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assert_equal(rpc.getblockheader(blocks[0])["versionHex"], "20000004")
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# Run through another 128 blocks, which will go from "locked in" to "active" regardless of signalling
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blocks = self.generatetoaddress(rpc, 127, rpc.getnewaddress())
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for n, block in enumerate(blocks):
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decode = rpc.getblockheader(block)
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assert_equal (decode["versionHex"], "20000004")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "locked_in")
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block = rpc.getnewblockhex()
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block = block[:1] + "0" + block[2:] # turn off Taproot signal
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rpc.submitblock(block)
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "locked_in")
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status_next"], "active")
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# After the state is "active", signallng stops by default.
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blocks = self.generatetoaddress(rpc, 1, self.nodes[0].getnewaddress())
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assert_equal(rpc.getdeploymentinfo()["deployments"]["taproot"]["bip9"]["status"], "active")
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assert_equal(rpc.getblockheader(blocks[0])["versionHex"], "20000000")
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def run_test(self):
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# Test that regtest nodes never signal taproot by default
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self.log.info("Testing node not configured to activate taproot")
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blocks = self.generatetoaddress(self.nodes[0], 2500, self.nodes[0].getnewaddress())
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assert_equal(self.nodes[0].getblockcount(), 2500)
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for n, block in enumerate(blocks):
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decode = self.nodes[0].getblockheader(block)
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if n < 143:
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assert_equal (decode["versionHex"], "20000000")
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elif n < 431:
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# TESTDUMMY deployment: 144 blocks active, 144 blocks locked in
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assert_equal (decode["versionHex"], "30000000")
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else:
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assert_equal (decode["versionHex"], "20000000")
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# Test activation starting from height 1000
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self.restart_node(0, ["-evbparams=taproot:500:::"])
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self.nodes[0].invalidateblock(self.nodes[0].getblockhash(1))
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self.test_activation(self.nodes[0], 500)
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if __name__ == '__main__':
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TaprootActivationTest(__file__).main()
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