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@ -7,11 +7,11 @@
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Test rescan behavior of importaddress, importpubkey, importprivkey, and
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importmulti RPCs with different types of keys and rescan options.
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In the first part of the test, node 0 creates an address for each type of
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import RPC call and sends BTC to it. Then other nodes import the addresses,
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and the test makes listtransactions and getbalance calls to confirm that the
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importing node either did or did not execute rescans picking up the send
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transactions.
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In the first part of the test, node 1 creates an address for each type of
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import RPC call and node 0 sends BTC to it. Then other nodes import the
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addresses, and the test makes listtransactions and getbalance calls to confirm
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that the importing node either did or did not execute rescans picking up the
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send transactions.
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In the second part of the test, node 0 sends more BTC to each address, and the
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test makes more listtransactions and getbalance calls to confirm that the
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@ -83,6 +83,12 @@ class Variant(collections.namedtuple("Variant", "call data rescan prune")):
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assert_equal(tx["txid"], txid)
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assert_equal(tx["confirmations"], confirmations)
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assert_equal("trusted" not in tx, True)
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# Verify the transaction is correctly marked watchonly depending on
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# whether the transaction pays to an imported public key or
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# imported private key. The test setup ensures that transaction
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# inputs will not be from watchonly keys (important because
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# involvesWatchonly will be true if either the transaction output
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# or inputs are watchonly).
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if self.data != Data.priv:
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assert_equal(tx["involvesWatchonly"], True)
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else:
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@ -108,11 +114,11 @@ RESCAN_WINDOW = 2 * 60 * 60
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class ImportRescanTest(BitcoinTestFramework):
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def __init__(self):
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super().__init__()
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self.num_nodes = 1 + len(IMPORT_NODES)
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self.num_nodes = 2 + len(IMPORT_NODES)
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def setup_network(self):
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extra_args = [["-debug=1"] for _ in range(self.num_nodes)]
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for i, import_node in enumerate(IMPORT_NODES, 1):
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for i, import_node in enumerate(IMPORT_NODES, 2):
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if import_node.prune:
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extra_args[i] += ["-prune=1"]
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@ -125,9 +131,9 @@ class ImportRescanTest(BitcoinTestFramework):
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# each possible type of wallet import RPC.
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for i, variant in enumerate(IMPORT_VARIANTS):
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variant.label = "label {} {}".format(i, variant)
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variant.address = self.nodes[0].validateaddress(self.nodes[0].getnewaddress(variant.label))
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variant.key = self.nodes[0].dumpprivkey(variant.address["address"])
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variant.initial_amount = 25 - (i + 1) / 4.0
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variant.address = self.nodes[1].validateaddress(self.nodes[1].getnewaddress(variant.label))
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variant.key = self.nodes[1].dumpprivkey(variant.address["address"])
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variant.initial_amount = 10 - (i + 1) / 4.0
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variant.initial_txid = self.nodes[0].sendtoaddress(variant.address["address"], variant.initial_amount)
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# Generate a block containing the initial transactions, then another
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@ -144,7 +150,7 @@ class ImportRescanTest(BitcoinTestFramework):
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for variant in IMPORT_VARIANTS:
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variant.expect_disabled = variant.rescan == Rescan.yes and variant.prune and variant.call == Call.single
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expect_rescan = variant.rescan == Rescan.yes and not variant.expect_disabled
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variant.node = self.nodes[1 + IMPORT_NODES.index(ImportNode(variant.prune, expect_rescan))]
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variant.node = self.nodes[2 + IMPORT_NODES.index(ImportNode(variant.prune, expect_rescan))]
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variant.do_import(timestamp)
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if expect_rescan:
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variant.expected_balance = variant.initial_amount
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@ -158,7 +164,7 @@ class ImportRescanTest(BitcoinTestFramework):
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# Create new transactions sending to each address.
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fee = self.nodes[0].getnetworkinfo()["relayfee"]
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for i, variant in enumerate(IMPORT_VARIANTS):
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variant.sent_amount = 25 - (2 * i + 1) / 8.0
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variant.sent_amount = 10 - (2 * i + 1) / 8.0
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variant.sent_txid = self.nodes[0].sendtoaddress(variant.address["address"], variant.sent_amount)
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# Generate a block containing the new transactions.
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