Merge branch 'release/v2.1.1-1' into release/v2.1.2
This commit is contained in:
commit
8542522732
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@ -84,6 +84,7 @@ testScripts=(
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'mining_shielded_coinbase.py'
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'framework.py'
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'feature_zip221.py'
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'upgrade_golden.py'
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);
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testScriptsExt=(
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'getblocktemplate_longpoll.py'
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Binary file not shown.
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@ -81,10 +81,11 @@ mininode_lock = RLock()
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def sha256(s):
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return hashlib.new('sha256', s).digest()
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def hash256(s):
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return sha256(sha256(s))
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def nuparams(branch_id, height):
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return '-nuparams=%x:%d' % (branch_id, height)
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def ser_compactsize(n):
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if n < 253:
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@ -0,0 +1,79 @@
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#!/usr/bin/env python
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#
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# Copyright (c) 2020 The Zcash developers
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# Distributed under the MIT software license, see the accompanying
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# file COPYING or https://www.opensource.org/licenses/mit-license.php .
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import (assert_equal, assert_true,
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initialize_chain_clean, start_nodes, start_node, connect_nodes_bi,
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bitcoind_processes)
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from test_framework.mininode import (
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nuparams,
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OVERWINTER_BRANCH_ID, SAPLING_BRANCH_ID, BLOSSOM_BRANCH_ID) #, HEARTWOOD_BRANCH_ID)
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import re
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import logging
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import tarfile
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import os.path
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HAS_SAPLING = [nuparams(OVERWINTER_BRANCH_ID, 10), nuparams(SAPLING_BRANCH_ID, 20)]
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HAS_BLOSSOM = HAS_SAPLING + [nuparams(BLOSSOM_BRANCH_ID, 30)]
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#HAS_HEARTWOOD = HAS_BLOSSOM + [nuparams(HEARTWOOD_BRANCH_ID, 40)]
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class Upgrade():
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def __init__(self, h, p, a):
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self.gen_height = h
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self.tgz_path = p
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self.extra_args = a
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class UpgradeGoldenTest(BitcoinTestFramework):
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def setup_chain(self):
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self.upgrades = [ Upgrade(35, os.path.dirname(os.path.realpath(__file__))+"/golden/blossom.tar.gz", HAS_BLOSSOM)
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]
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logging.info("Initializing test directory "+self.options.tmpdir)
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initialize_chain_clean(self.options.tmpdir, len(self.upgrades) + 1)
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# This mirrors how the network was setup in the bash test
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def setup_network(self, split=False):
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logging.info("Initializing the network in "+self.options.tmpdir)
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upgrade_args = [self.upgrades[-1].extra_args] + [u.extra_args for u in self.upgrades]
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self.nodes = start_nodes(len(self.upgrades) + 1, self.options.tmpdir, extra_args=upgrade_args)
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def capture_blocks(self, to_height, tgz_path):
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# Generate past Blossom activation.
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self.nodes[0].generate(to_height)
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self.nodes[0].stop()
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bitcoind_processes[0].wait()
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node_path = self.options.tmpdir + "/node0/regtest"
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with tarfile.open(tgz_path, "w:gz") as tgz:
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tgz.add(node_path, arcname="")
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logging.info("Captured node state to "+tgz_path)
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def run_test(self):
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last_upgrade = self.upgrades[-1]
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if not os.path.isfile(last_upgrade.tgz_path):
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self.capture_blocks(last_upgrade.gen_height, last_upgrade.tgz_path)
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# restart the node after capturing the state
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self.nodes[0] = start_node(0, self.options.tmpdir, extra_args=last_upgrade.extra_args)
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i = 1
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for upgrade in self.upgrades:
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if os.path.isfile(upgrade.tgz_path):
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# shut down the node so we can replace its data dir(s)
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self.nodes[i].stop()
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bitcoind_processes[i].wait()
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with tarfile.open(upgrade.tgz_path, "r:gz") as tgz:
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tgz.extractall(path = self.options.tmpdir + "/node" + str(i)+"/regtest")
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# Upgrade each node to the latest network version. If any fails to
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# start, this will fail the test.
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self.nodes[i] = start_node(i, self.options.tmpdir, extra_args=last_upgrade.extra_args)
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if __name__ == '__main__':
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UpgradeGoldenTest().main()
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