2019-12-04 07:29:16 -08:00
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#!/usr/bin/env python3
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2018-09-25 12:48:01 -07:00
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# Copyright (c) 2018 The Zcash developers
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# Distributed under the MIT software license, see the accompanying
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2019-07-18 07:16:09 -07:00
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# file COPYING or https://www.opensource.org/licenses/mit-license.php .
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2018-09-25 12:48:01 -07:00
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from test_framework.test_framework import BitcoinTestFramework
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2020-12-17 11:39:58 -08:00
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from test_framework.util import assert_equal, assert_true, assert_false, DEFAULT_FEE, DEFAULT_FEE_ZATS
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from test_framework.util import wait_and_assert_operationid_status
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2018-09-25 12:48:01 -07:00
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from decimal import Decimal
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2019-10-18 13:47:30 -07:00
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my_memo_str = 'c0ffee' # stay awake
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my_memo = '633066666565'
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my_memo = my_memo + '0'*(1024-len(my_memo))
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no_memo = 'f6' + ('0'*1022) # see section 5.5 of the protocol spec
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class ListReceivedTest (BitcoinTestFramework):
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def generate_and_sync(self, new_height):
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current_height = self.nodes[0].getblockcount()
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assert(new_height > current_height)
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self.nodes[0].generate(new_height - current_height)
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2018-09-25 12:48:01 -07:00
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self.sync_all()
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assert_equal(new_height, self.nodes[0].getblockcount())
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2018-10-24 07:13:56 -07:00
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def run_test_release(self, release, height):
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self.generate_and_sync(height+1)
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taddr = self.nodes[1].getnewaddress()
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zaddr1 = self.nodes[1].z_getnewaddress(release)
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zaddrExt = self.nodes[3].z_getnewaddress(release)
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self.nodes[0].sendtoaddress(taddr, 4.0)
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self.generate_and_sync(height+2)
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# Send 1 ZEC to zaddr1
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opid = self.nodes[1].z_sendmany(taddr, [
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{'address': zaddr1, 'amount': 1, 'memo': my_memo},
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{'address': zaddrExt, 'amount': 2},
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])
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txid = wait_and_assert_operationid_status(self.nodes[1], opid)
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self.sync_all()
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# Decrypted transaction details should be correct
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pt = self.nodes[1].z_viewtransaction(txid)
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assert_equal(pt['txid'], txid)
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assert_equal(len(pt['spends']), 0)
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assert_equal(len(pt['outputs']), 1 if release == 'sprout' else 2)
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# Output orders can be randomized, so we check the output
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# positions and contents separately
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outputs = []
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assert_equal(pt['outputs'][0]['type'], release)
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if release == 'sprout':
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assert_equal(pt['outputs'][0]['js'], 0)
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jsOutputPrev = pt['outputs'][0]['jsOutput']
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elif pt['outputs'][0]['address'] == zaddr1:
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assert_equal(pt['outputs'][0]['outgoing'], False)
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assert_equal(pt['outputs'][0]['memoStr'], my_memo_str)
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else:
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assert_equal(pt['outputs'][0]['outgoing'], True)
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outputs.append({
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'address': pt['outputs'][0]['address'],
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'value': pt['outputs'][0]['value'],
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'valueZat': pt['outputs'][0]['valueZat'],
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'memo': pt['outputs'][0]['memo'],
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})
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if release != 'sprout':
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assert_equal(pt['outputs'][1]['type'], release)
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if pt['outputs'][1]['address'] == zaddr1:
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assert_equal(pt['outputs'][1]['outgoing'], False)
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assert_equal(pt['outputs'][1]['memoStr'], my_memo_str)
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else:
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assert_equal(pt['outputs'][1]['outgoing'], True)
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outputs.append({
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'address': pt['outputs'][1]['address'],
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'value': pt['outputs'][1]['value'],
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'valueZat': pt['outputs'][1]['valueZat'],
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'memo': pt['outputs'][1]['memo'],
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})
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assert({
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'address': zaddr1,
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'value': Decimal('1'),
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'valueZat': 100000000,
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'memo': my_memo,
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} in outputs)
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if release != 'sprout':
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assert({
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'address': zaddrExt,
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'value': Decimal('2'),
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'valueZat': 200000000,
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'memo': no_memo,
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} in outputs)
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2018-09-25 12:48:01 -07:00
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r = self.nodes[1].z_listreceivedbyaddress(zaddr1)
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assert_equal(0, len(r), "Should have received no confirmed note")
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c = self.nodes[1].z_getnotescount()
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assert_equal(0, c[release], "Count of confirmed notes should be 0")
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# No confirmation required, one note should be present
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r = self.nodes[1].z_listreceivedbyaddress(zaddr1, 0)
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assert_equal(1, len(r), "Should have received one (unconfirmed) note")
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assert_equal(txid, r[0]['txid'])
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assert_equal(1, r[0]['amount'])
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assert_equal(100000000, r[0]['amountZat'])
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assert_false(r[0]['change'], "Note should not be change")
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assert_equal(my_memo, r[0]['memo'])
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assert_equal(0, r[0]['confirmations'])
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assert_equal(-1, r[0]['blockindex'])
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assert_equal(0, r[0]['blockheight'])
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c = self.nodes[1].z_getnotescount(0)
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assert_equal(1, c[release], "Count of unconfirmed notes should be 1")
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# Confirm transaction (1 ZEC from taddr to zaddr1)
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self.generate_and_sync(height+3)
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2020-03-11 09:43:47 -07:00
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# adjust confirmations
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r[0]['confirmations'] = 1
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# adjust blockindex
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r[0]['blockindex'] = 1
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# adjust height
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r[0]['blockheight'] = height + 3
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# Require one confirmation, note should be present
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assert_equal(r, self.nodes[1].z_listreceivedbyaddress(zaddr1))
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# Generate some change by sending part of zaddr1 to zaddr2
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txidPrev = txid
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zaddr2 = self.nodes[1].z_getnewaddress(release)
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opid = self.nodes[1].z_sendmany(zaddr1,
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[{'address': zaddr2, 'amount': 0.6}])
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txid = wait_and_assert_operationid_status(self.nodes[1], opid)
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self.sync_all()
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self.generate_and_sync(height+4)
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2019-10-18 13:47:30 -07:00
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# Decrypted transaction details should be correct
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pt = self.nodes[1].z_viewtransaction(txid)
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assert_equal(pt['txid'], txid)
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assert_equal(len(pt['spends']), 1)
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assert_equal(len(pt['outputs']), 2)
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assert_equal(pt['spends'][0]['type'], release)
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assert_equal(pt['spends'][0]['txidPrev'], txidPrev)
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if release == 'sprout':
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assert_equal(pt['spends'][0]['js'], 0)
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# jsSpend is randomised during transaction creation
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assert_equal(pt['spends'][0]['jsPrev'], 0)
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assert_equal(pt['spends'][0]['jsOutputPrev'], jsOutputPrev)
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else:
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assert_equal(pt['spends'][0]['spend'], 0)
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assert_equal(pt['spends'][0]['outputPrev'], 0)
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assert_equal(pt['spends'][0]['address'], zaddr1)
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assert_equal(pt['spends'][0]['value'], Decimal('1.0'))
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assert_equal(pt['spends'][0]['valueZat'], 100000000)
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# Output orders can be randomized, so we check the output
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# positions and contents separately
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outputs = []
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assert_equal(pt['outputs'][0]['type'], release)
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if release == 'sapling':
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assert_equal(pt['outputs'][0]['output'], 0)
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assert_equal(pt['outputs'][0]['outgoing'], False)
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outputs.append({
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'address': pt['outputs'][0]['address'],
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'value': pt['outputs'][0]['value'],
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'valueZat': pt['outputs'][0]['valueZat'],
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'memo': pt['outputs'][0]['memo'],
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})
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assert_equal(pt['outputs'][1]['type'], release)
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if release == 'sapling':
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assert_equal(pt['outputs'][1]['output'], 1)
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assert_equal(pt['outputs'][1]['outgoing'], False)
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outputs.append({
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'address': pt['outputs'][1]['address'],
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'value': pt['outputs'][1]['value'],
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'valueZat': pt['outputs'][1]['valueZat'],
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'memo': pt['outputs'][1]['memo'],
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})
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assert({
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'address': zaddr2,
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'value': Decimal('0.6'),
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'valueZat': 60000000,
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'memo': no_memo,
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} in outputs)
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assert({
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'address': zaddr1,
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'value': Decimal('0.4') - DEFAULT_FEE,
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'valueZat': 40000000 - DEFAULT_FEE_ZATS,
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'memo': no_memo,
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} in outputs)
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2018-09-25 12:48:01 -07:00
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# zaddr1 should have a note with change
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r = self.nodes[1].z_listreceivedbyaddress(zaddr1, 0)
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r = sorted(r, key = lambda received: received['amount'])
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assert_equal(2, len(r), "zaddr1 Should have received 2 notes")
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assert_equal(txid, r[0]['txid'])
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assert_equal(Decimal('0.4')-DEFAULT_FEE, r[0]['amount'])
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assert_equal(40000000-DEFAULT_FEE_ZATS, r[0]['amountZat'])
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assert_true(r[0]['change'], "Note valued at (0.4-"+str(DEFAULT_FEE)+") should be change")
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assert_equal(no_memo, r[0]['memo'])
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# The old note still exists (it's immutable), even though it is spent
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assert_equal(Decimal('1.0'), r[1]['amount'])
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assert_equal(100000000, r[1]['amountZat'])
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assert_false(r[1]['change'], "Note valued at 1.0 should not be change")
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assert_equal(my_memo, r[1]['memo'])
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# zaddr2 should not have change
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r = self.nodes[1].z_listreceivedbyaddress(zaddr2, 0)
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r = sorted(r, key = lambda received: received['amount'])
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assert_equal(1, len(r), "zaddr2 Should have received 1 notes")
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assert_equal(txid, r[0]['txid'])
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assert_equal(Decimal('0.6'), r[0]['amount'])
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assert_equal(60000000, r[0]['amountZat'])
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assert_false(r[0]['change'], "Note valued at 0.6 should not be change")
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assert_equal(no_memo, r[0]['memo'])
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2020-04-19 16:22:06 -07:00
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c = self.nodes[1].z_getnotescount(0)
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assert_equal(3, c[release], "Count of unconfirmed notes should be 3(2 in zaddr1 + 1 in zaddr2)")
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def run_test(self):
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self.run_test_release('sprout', 200)
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self.run_test_release('sapling', 214)
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if __name__ == '__main__':
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ListReceivedTest().main()
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