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https://github.com/dashpay/dash.git
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[qa] Get rid of duplicate code
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e22f409f18
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facbfa5816
@ -81,49 +81,16 @@ class TestNode(NodeConnCB):
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class MaxUploadTest(BitcoinTestFramework):
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class MaxUploadTest(BitcoinTestFramework):
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def add_options(self, parser):
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parser.add_option("--testbinary", dest="testbinary",
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default=os.getenv("BITCOIND", "bitcoind"),
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help="bitcoind binary to test")
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def __init__(self):
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def __init__(self):
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super().__init__()
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super().__init__()
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self.setup_clean_chain = True
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self.setup_clean_chain = True
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self.num_nodes = 1
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self.num_nodes = 1
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self.utxo = []
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self.txouts = gen_return_txouts()
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def setup_network(self):
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def setup_network(self):
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# Start a node with maxuploadtarget of 200 MB (/24h)
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# Start a node with maxuploadtarget of 200 MB (/24h)
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self.nodes = []
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self.nodes = []
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self.nodes.append(start_node(0, self.options.tmpdir, ["-debug", "-maxuploadtarget=800", "-blockmaxsize=999000"]))
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self.nodes.append(start_node(0, self.options.tmpdir, ["-debug", "-maxuploadtarget=800", "-blockmaxsize=999000"]))
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def mine_full_block(self, node, address):
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# Want to create a full block
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# We'll generate a 66k transaction below, and 14 of them is close to the 1MB block limit
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for j in range(14):
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if len(self.utxo) < 14:
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self.utxo = node.listunspent()
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inputs=[]
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outputs = {}
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t = self.utxo.pop()
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inputs.append({ "txid" : t["txid"], "vout" : t["vout"]})
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remchange = t["amount"] - Decimal("0.001000")
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outputs[address]=remchange
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# Create a basic transaction that will send change back to ourself after account for a fee
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# And then insert the 128 generated transaction outs in the middle rawtx[92] is where the #
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# of txouts is stored and is the only thing we overwrite from the original transaction
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rawtx = node.createrawtransaction(inputs, outputs)
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newtx = rawtx[0:92]
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newtx = newtx + self.txouts
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newtx = newtx + rawtx[94:]
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# Appears to be ever so slightly faster to sign with SIGHASH_NONE
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signresult = node.signrawtransaction(newtx,None,None,"NONE")
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txid = node.sendrawtransaction(signresult["hex"], True)
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# Mine a full sized block which will be these transactions we just created
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node.generate(1)
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def run_test(self):
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def run_test(self):
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# Before we connect anything, we first set the time on the node
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# Before we connect anything, we first set the time on the node
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# to be in the past, otherwise things break because the CNode
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# to be in the past, otherwise things break because the CNode
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@ -151,7 +118,7 @@ class MaxUploadTest(BitcoinTestFramework):
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# Test logic begins here
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# Test logic begins here
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# Now mine a big block
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# Now mine a big block
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self.mine_full_block(self.nodes[0], self.nodes[0].getnewaddress())
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mine_large_block(self.nodes[0])
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# Store the hash; we'll request this later
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# Store the hash; we'll request this later
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big_old_block = self.nodes[0].getbestblockhash()
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big_old_block = self.nodes[0].getbestblockhash()
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@ -162,11 +129,10 @@ class MaxUploadTest(BitcoinTestFramework):
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self.nodes[0].setmocktime(int(time.time()) - 2*60*60*24)
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self.nodes[0].setmocktime(int(time.time()) - 2*60*60*24)
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# Mine one more block, so that the prior block looks old
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# Mine one more block, so that the prior block looks old
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self.mine_full_block(self.nodes[0], self.nodes[0].getnewaddress())
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mine_large_block(self.nodes[0])
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# We'll be requesting this new block too
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# We'll be requesting this new block too
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big_new_block = self.nodes[0].getbestblockhash()
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big_new_block = self.nodes[0].getbestblockhash()
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new_block_size = self.nodes[0].getblock(big_new_block)['size']
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big_new_block = int(big_new_block, 16)
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big_new_block = int(big_new_block, 16)
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# test_nodes[0] will test what happens if we just keep requesting the
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# test_nodes[0] will test what happens if we just keep requesting the
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@ -24,10 +24,6 @@ class PruneTest(BitcoinTestFramework):
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self.setup_clean_chain = True
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self.setup_clean_chain = True
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self.num_nodes = 3
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self.num_nodes = 3
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self.utxo = []
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self.address = ["",""]
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self.txouts = gen_return_txouts()
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def setup_network(self):
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def setup_network(self):
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self.nodes = []
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self.nodes = []
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self.is_network_split = False
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self.is_network_split = False
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@ -40,12 +36,6 @@ class PruneTest(BitcoinTestFramework):
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self.nodes.append(start_node(2, self.options.tmpdir, ["-debug","-maxreceivebuffer=20000","-prune=550"], timewait=900))
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self.nodes.append(start_node(2, self.options.tmpdir, ["-debug","-maxreceivebuffer=20000","-prune=550"], timewait=900))
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self.prunedir = self.options.tmpdir+"/node2/regtest/blocks/"
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self.prunedir = self.options.tmpdir+"/node2/regtest/blocks/"
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self.address[0] = self.nodes[0].getnewaddress()
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self.address[1] = self.nodes[1].getnewaddress()
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# Determine default relay fee
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self.relayfee = self.nodes[0].getnetworkinfo()["relayfee"]
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connect_nodes(self.nodes[0], 1)
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connect_nodes(self.nodes[0], 1)
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connect_nodes(self.nodes[1], 2)
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connect_nodes(self.nodes[1], 2)
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connect_nodes(self.nodes[2], 0)
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connect_nodes(self.nodes[2], 0)
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@ -58,7 +48,7 @@ class PruneTest(BitcoinTestFramework):
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self.nodes[0].generate(150)
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self.nodes[0].generate(150)
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# Then mine enough full blocks to create more than 550MiB of data
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# Then mine enough full blocks to create more than 550MiB of data
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for i in range(645):
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for i in range(645):
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self.mine_full_block(self.nodes[0], self.address[0])
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mine_large_block(self.nodes[0])
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sync_blocks(self.nodes[0:3])
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sync_blocks(self.nodes[0:3])
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@ -70,7 +60,7 @@ class PruneTest(BitcoinTestFramework):
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print("Mining 25 more blocks should cause the first block file to be pruned")
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print("Mining 25 more blocks should cause the first block file to be pruned")
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# Pruning doesn't run until we're allocating another chunk, 20 full blocks past the height cutoff will ensure this
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# Pruning doesn't run until we're allocating another chunk, 20 full blocks past the height cutoff will ensure this
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for i in range(25):
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for i in range(25):
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self.mine_full_block(self.nodes[0],self.address[0])
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mine_large_block(self.nodes[0])
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waitstart = time.time()
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waitstart = time.time()
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while os.path.isfile(self.prunedir+"blk00000.dat"):
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while os.path.isfile(self.prunedir+"blk00000.dat"):
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@ -95,17 +85,15 @@ class PruneTest(BitcoinTestFramework):
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stop_node(self.nodes[0],0)
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stop_node(self.nodes[0],0)
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self.nodes[0]=start_node(0, self.options.tmpdir, ["-debug","-maxreceivebuffer=20000","-blockmaxsize=999000", "-checkblocks=5"], timewait=900)
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self.nodes[0]=start_node(0, self.options.tmpdir, ["-debug","-maxreceivebuffer=20000","-blockmaxsize=999000", "-checkblocks=5"], timewait=900)
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# Mine 24 blocks in node 1
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# Mine 24 blocks in node 1
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self.utxo = self.nodes[1].listunspent()
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for i in range(24):
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for i in range(24):
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if j == 0:
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if j == 0:
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self.mine_full_block(self.nodes[1],self.address[1])
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mine_large_block(self.nodes[1])
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else:
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else:
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self.nodes[1].generate(1) #tx's already in mempool from previous disconnects
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self.nodes[1].generate(1) #tx's already in mempool from previous disconnects
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# Reorg back with 25 block chain from node 0
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# Reorg back with 25 block chain from node 0
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self.utxo = self.nodes[0].listunspent()
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for i in range(25):
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for i in range(25):
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self.mine_full_block(self.nodes[0],self.address[0])
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mine_large_block(self.nodes[0])
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# Create connections in the order so both nodes can see the reorg at the same time
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# Create connections in the order so both nodes can see the reorg at the same time
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connect_nodes(self.nodes[1], 0)
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connect_nodes(self.nodes[1], 0)
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@ -217,31 +205,6 @@ class PruneTest(BitcoinTestFramework):
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# Verify we can now have the data for a block previously pruned
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# Verify we can now have the data for a block previously pruned
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assert(self.nodes[2].getblock(self.forkhash)["height"] == self.forkheight)
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assert(self.nodes[2].getblock(self.forkhash)["height"] == self.forkheight)
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def mine_full_block(self, node, address):
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# Want to create a full block
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# We'll generate a 66k transaction below, and 14 of them is close to the 1MB block limit
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for j in range(14):
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if len(self.utxo) < 14:
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self.utxo = node.listunspent()
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inputs=[]
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outputs = {}
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t = self.utxo.pop()
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inputs.append({ "txid" : t["txid"], "vout" : t["vout"]})
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remchange = t["amount"] - 100*self.relayfee # Fee must be above min relay rate for 66kb tx
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outputs[address]=remchange
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# Create a basic transaction that will send change back to ourself after account for a fee
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# And then insert the 128 generated transaction outs in the middle rawtx[92] is where the #
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# of txouts is stored and is the only thing we overwrite from the original transaction
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rawtx = node.createrawtransaction(inputs, outputs)
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newtx = rawtx[0:92]
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newtx = newtx + self.txouts
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newtx = newtx + rawtx[94:]
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# Appears to be ever so slightly faster to sign with SIGHASH_NONE
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signresult = node.signrawtransaction(newtx,None,None,"NONE")
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txid = node.sendrawtransaction(signresult["hex"], True)
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# Mine a full sized block which will be these transactions we just created
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node.generate(1)
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def run_test(self):
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def run_test(self):
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print("Warning! This test requires 4GB of disk space and takes over 30 mins (up to 2 hours)")
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print("Warning! This test requires 4GB of disk space and takes over 30 mins (up to 2 hours)")
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@ -657,13 +657,12 @@ def create_tx(node, coinbase, to_address, amount):
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def create_lots_of_big_transactions(node, txouts, utxos, fee):
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def create_lots_of_big_transactions(node, txouts, utxos, fee):
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addr = node.getnewaddress()
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addr = node.getnewaddress()
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txids = []
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txids = []
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for i in range(len(utxos)):
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for _ in range(len(utxos)):
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t = utxos.pop()
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t = utxos.pop()
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inputs = []
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inputs=[{ "txid" : t["txid"], "vout" : t["vout"]}]
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inputs.append({ "txid" : t["txid"], "vout" : t["vout"]})
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outputs = {}
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outputs = {}
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send_value = t['amount'] - fee
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change = t['amount'] - fee
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outputs[addr] = satoshi_round(send_value)
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outputs[addr] = satoshi_round(change)
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rawtx = node.createrawtransaction(inputs, outputs)
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rawtx = node.createrawtransaction(inputs, outputs)
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newtx = rawtx[0:92]
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newtx = rawtx[0:92]
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newtx = newtx + txouts
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newtx = newtx + txouts
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@ -673,6 +672,15 @@ def create_lots_of_big_transactions(node, txouts, utxos, fee):
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txids.append(txid)
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txids.append(txid)
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return txids
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return txids
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def mine_large_block(node):
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# generate a 66k transaction,
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# and 14 of them is close to the 1MB block limit
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txouts = gen_return_txouts()
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utxos = node.listunspent()[:14]
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fee = 100 * node.getnetworkinfo()["relayfee"]
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create_lots_of_big_transactions(node, txouts, utxos, fee=fee)
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node.generate(1)
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def get_bip9_status(node, key):
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def get_bip9_status(node, key):
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info = node.getblockchaininfo()
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info = node.getblockchaininfo()
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return info['bip9_softforks'][key]
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return info['bip9_softforks'][key]
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