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functional_tests: fix multisig tests noutputs assertion
The changes to the multisig tests in #8914 and #8904 affected each other, this PR cleans up the code and fixes that issue.
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@ -37,100 +37,61 @@ import random
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from framework.daemon import Daemon
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from framework.wallet import Wallet
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MULTISIG_PUB_ADDRS = [
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'45J58b7PmKJFSiNPFFrTdtfMcFGnruP7V4CMuRpX7NsH4j3jGHKAjo3YJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ3gr7sG', # 2/2
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'44G2TQNfsiURKkvxp7gbgaJY8WynZvANnhmyMAwv6WeEbAvyAWMfKXRhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5duN94i', # 2/3
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'41mro238grj56GnrWkakAKTkBy2yDcXYsUZ2iXCM9pe5Ueajd2RRc6Fhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5ief4ZP', # 3/3
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'44vZSprQKJQRFe6t1VHgU4ESvq2dv7TjBLVGE7QscKxMdFSiyyPCEV64NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6dakeff', # 3/4
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'47puypSwsV1gvUDratmX4y58fSwikXVehEiBhVLxJA1gRCxHyrRgTDr4NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6aRPj5U', # 2/4
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'4A8RnBQixry4VXkqeWhmg8L7vWJVDJj4FN9PV4E7Mgad5ZZ6LKQdn8dYJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ4S8RSB' # 1/2
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TEST_CASES = \
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[
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# M N Primary Address
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[2, 2, '45J58b7PmKJFSiNPFFrTdtfMcFGnruP7V4CMuRpX7NsH4j3jGHKAjo3YJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ3gr7sG'],
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[2, 3, '44G2TQNfsiURKkvxp7gbgaJY8WynZvANnhmyMAwv6WeEbAvyAWMfKXRhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5duN94i'],
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[3, 3, '41mro238grj56GnrWkakAKTkBy2yDcXYsUZ2iXCM9pe5Ueajd2RRc6Fhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5ief4ZP'],
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[3, 4, '44vZSprQKJQRFe6t1VHgU4ESvq2dv7TjBLVGE7QscKxMdFSiyyPCEV64NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6dakeff'],
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[2, 4, '47puypSwsV1gvUDratmX4y58fSwikXVehEiBhVLxJA1gRCxHyrRgTDr4NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6aRPj5U'],
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[1, 2, '4A8RnBQixry4VXkqeWhmg8L7vWJVDJj4FN9PV4E7Mgad5ZZ6LKQdn8dYJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ4S8RSB']
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]
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PUB_ADDRS = [case[2] for case in TEST_CASES]
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class MultisigTest():
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def run_test(self):
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self.reset()
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for pub_addr in MULTISIG_PUB_ADDRS:
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self.mine(pub_addr, 4)
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for pub_addr in PUB_ADDRS:
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self.mine(pub_addr, 4)
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self.mine('42ey1afDFnn4886T7196doS9GPMzexD9gXpsZJDwVjeRVdFCSoHnv7KPbBeGpzJBzHRCAs9UxqeoyFQMYbqSWYTfJJQAWDm', 80)
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self.test_states()
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self.fund_addrs_with_normal_wallet(MULTISIG_PUB_ADDRS)
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self.fund_addrs_with_normal_wallet(PUB_ADDRS)
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self.create_multisig_wallets(2, 2, '45J58b7PmKJFSiNPFFrTdtfMcFGnruP7V4CMuRpX7NsH4j3jGHKAjo3YJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ3gr7sG')
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self.import_multisig_info([1, 0], 5)
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txid = self.transfer([1, 0])
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self.import_multisig_info([0, 1], 6)
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self.check_transaction(txid)
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for M, N, pub_addr in TEST_CASES:
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assert M <= N
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shuffled_participants = list(range(N))
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random.shuffle(shuffled_participants)
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shuffled_signers = shuffled_participants[:M]
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self.remake_some_multisig_wallets_by_multsig_seed(2)
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self.import_multisig_info([0, 1], 6) # six outputs, same as before
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txid = self.transfer([0, 1])
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self.import_multisig_info([0, 1], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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expected_outputs = 5 # each wallet owns four mined outputs & one transferred output
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self.create_multisig_wallets(2, 3, '44G2TQNfsiURKkvxp7gbgaJY8WynZvANnhmyMAwv6WeEbAvyAWMfKXRhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5duN94i')
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self.import_multisig_info([0, 2], 5)
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txid = self.transfer([0, 2])
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self.import_multisig_info([0, 1, 2], 6)
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self.check_transaction(txid)
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# Create multisig wallet and test transferring
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self.create_multisig_wallets(M, N, pub_addr)
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self.import_multisig_info(shuffled_signers if M != 1 else shuffled_participants, expected_outputs)
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txid = self.transfer(shuffled_signers)
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expected_outputs += 1
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self.import_multisig_info(shuffled_participants, expected_outputs)
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self.check_transaction(txid)
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self.remake_some_multisig_wallets_by_multsig_seed(2)
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self.import_multisig_info([0, 2], 6) # six outputs, same as before
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txid = self.transfer([0, 2])
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self.import_multisig_info([0, 1, 2], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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# If more than 1 signer, try to freeze key image of one signer, make tx using that key
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# image on another signer, then have first signer sign multisg_txset. Should fail
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if M != 1:
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txid = self.try_transfer_frozen(shuffled_signers)
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expected_outputs += 1
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self.import_multisig_info(shuffled_participants, expected_outputs)
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self.check_transaction(txid)
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self.create_multisig_wallets(3, 3, '41mro238grj56GnrWkakAKTkBy2yDcXYsUZ2iXCM9pe5Ueajd2RRc6Fhh3uBXT2UAKhAsUJ7Fg5zjjF2U1iGciFk5ief4ZP')
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self.import_multisig_info([2, 0, 1], 5)
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txid = self.transfer([2, 1, 0])
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self.import_multisig_info([0, 2, 1], 6)
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self.check_transaction(txid)
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self.remake_some_multisig_wallets_by_multsig_seed(3)
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self.import_multisig_info([2, 0, 1], 6) # six outputs, same as before
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txid = self.transfer([2, 1, 0])
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self.import_multisig_info([0, 2, 1], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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self.create_multisig_wallets(3, 4, '44vZSprQKJQRFe6t1VHgU4ESvq2dv7TjBLVGE7QscKxMdFSiyyPCEV64NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6dakeff')
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self.import_multisig_info([0, 2, 3], 5)
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txid = self.transfer([0, 2, 3])
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self.import_multisig_info([0, 1, 2, 3], 6)
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self.check_transaction(txid)
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self.remake_some_multisig_wallets_by_multsig_seed(3)
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self.import_multisig_info([0, 2, 3], 6) # six outputs, same as before
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txid = self.transfer([0, 2, 3])
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self.import_multisig_info([0, 1, 2, 3], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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self.create_multisig_wallets(2, 4, '47puypSwsV1gvUDratmX4y58fSwikXVehEiBhVLxJA1gRCxHyrRgTDr4NnKUQssFPyWxc2meyt7j63F2S2qtCTRL6aRPj5U')
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self.import_multisig_info([1, 2], 5)
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txid = self.transfer([1, 2])
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self.import_multisig_info([0, 1, 2, 3], 6)
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self.check_transaction(txid)
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txid = self.try_transfer_frozen([2, 3])
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self.import_multisig_info([0, 1, 2, 3], 7)
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self.check_transaction(txid)
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self.remake_some_multisig_wallets_by_multsig_seed(2)
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self.import_multisig_info([0, 1, 2, 3], 6) # six outputs, same as before
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txid = self.transfer([2, 3])
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self.import_multisig_info([0, 1, 2, 3], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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self.create_multisig_wallets(1, 2, '4A8RnBQixry4VXkqeWhmg8L7vWJVDJj4FN9PV4E7Mgad5ZZ6LKQdn8dYJP2RePX6HMaSkbvTbrWUFhDNcNcHgtNmQ4S8RSB')
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self.import_multisig_info([0, 1], 5)
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txid = self.transfer([0])
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self.import_multisig_info([0, 1], 6)
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self.check_transaction(txid)
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self.remake_some_multisig_wallets_by_multsig_seed(1)
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self.import_multisig_info([0, 1], 6) # six outputs, same as before
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txid = self.transfer([1])
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self.import_multisig_info([0, 1], 7) # seven outputs b/c we're dest plus change
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self.check_transaction(txid)
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# Recreate wallet from multisig seed and test transferring
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self.remake_some_multisig_wallets_by_multsig_seed(M)
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self.import_multisig_info(shuffled_signers if M != 1 else shuffled_participants, expected_outputs)
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txid = self.transfer(shuffled_signers)
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expected_outputs += 1
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self.import_multisig_info(shuffled_participants, expected_outputs)
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self.check_transaction(txid)
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def reset(self):
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print('Resetting blockchain')
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@ -262,10 +223,10 @@ class MultisigTest():
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def remake_some_multisig_wallets_by_multsig_seed(self, threshold):
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N = len(self.wallet)
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signers_to_remake = set()
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num_signers_to_remake = random.randint(1, N) # Do at least one
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while len(signers_to_remake) < num_signers_to_remake:
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signers_to_remake.add(random.randint(0, N - 1))
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signers_to_remake = list(range(N))
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random.shuffle(signers_to_remake)
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signers_to_remake = signers_to_remake[:num_signers_to_remake]
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for i in signers_to_remake:
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print("Remaking {}/{} multsig wallet from multisig seed: #{}".format(threshold, N, i+1))
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@ -501,7 +462,7 @@ class MultisigTest():
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print("Attemping to sign with frozen key image. This should fail")
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try:
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res = self.wallet[signers[1]].sign_multisig(multisig_txset)
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raise ValueError('sign_multisig should not have succeeded w/ fronzen enotes')
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raise ValueError('sign_multisig should not have succeeded w/ frozen enotes')
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except AssertionError:
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pass
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