Rename `pour` in RPC tests.
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@ -1,7 +1,7 @@
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#!/usr/bin/env python2
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#
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# Test Pour semantics
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# Test joinsplit semantics
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#
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from test_framework.test_framework import BitcoinTestFramework
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@ -24,26 +24,26 @@ class JoinSplitTest(BitcoinTestFramework):
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(total_in, inputs) = gather_inputs(self.nodes[0], 40)
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protect_tx = self.nodes[0].createrawtransaction(inputs, {})
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pour_result = self.nodes[0].zcrawjoinsplit(protect_tx, {}, {zcaddress:39.9}, 39.9, 0)
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joinsplit_result = self.nodes[0].zcrawjoinsplit(protect_tx, {}, {zcaddress:39.9}, 39.9, 0)
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, pour_result["encryptednote1"])
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, joinsplit_result["encryptednote1"])
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assert_equal(receive_result["exists"], False)
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protect_tx = self.nodes[0].signrawtransaction(pour_result["rawtxn"])
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protect_tx = self.nodes[0].signrawtransaction(joinsplit_result["rawtxn"])
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self.nodes[0].sendrawtransaction(protect_tx["hex"])
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self.nodes[0].generate(1)
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, pour_result["encryptednote1"])
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, joinsplit_result["encryptednote1"])
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assert_equal(receive_result["exists"], True)
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pour_tx = self.nodes[0].createrawtransaction([], {})
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pour_result = self.nodes[0].zcrawjoinsplit(pour_tx, {receive_result["note"] : zcsecretkey}, {zcaddress: 39.8}, 0, 0.1)
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joinsplit_tx = self.nodes[0].createrawtransaction([], {})
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joinsplit_result = self.nodes[0].zcrawjoinsplit(joinsplit_tx, {receive_result["note"] : zcsecretkey}, {zcaddress: 39.8}, 0, 0.1)
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self.nodes[0].sendrawtransaction(pour_result["rawtxn"])
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self.nodes[0].sendrawtransaction(joinsplit_result["rawtxn"])
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self.nodes[0].generate(1)
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print "Done!"
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, pour_result["encryptednote1"])
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receive_result = self.nodes[0].zcrawreceive(zcsecretkey, joinsplit_result["encryptednote1"])
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assert_equal(receive_result["exists"], True)
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if __name__ == '__main__':
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@ -1,7 +1,7 @@
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#!/usr/bin/env python2
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#
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# Tests a Pour double-spend and a subsequent reorg.
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# Tests a joinsplit double-spend and a subsequent reorg.
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#
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from test_framework.test_framework import BitcoinTestFramework
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@ -27,7 +27,7 @@ class JoinSplitTest(BitcoinTestFramework):
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return not exception_triggered
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def cannot_pour(self, node, txn):
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def cannot_joinsplit(self, node, txn):
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exception_triggered = False
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try:
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@ -37,8 +37,8 @@ class JoinSplitTest(BitcoinTestFramework):
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return exception_triggered
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def expect_cannot_pour(self, node, txn):
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assert_equal(self.cannot_pour(node, txn), True)
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def expect_cannot_joinsplit(self, node, txn):
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assert_equal(self.cannot_joinsplit(node, txn), True)
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def run_test(self):
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# All nodes should start with 250 BTC:
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@ -87,31 +87,31 @@ class JoinSplitTest(BitcoinTestFramework):
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assert_equal(receive_result["exists"], True)
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blank_tx = self.nodes[0].createrawtransaction([], {})
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# Create pour {A, B}->{*}
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pour_AB = self.nodes[0].zcrawjoinsplit(blank_tx,
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# Create joinsplit {A, B}->{*}
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joinsplit_AB = self.nodes[0].zcrawjoinsplit(blank_tx,
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{pool[0] : zcsecretkey, pool[1] : zcsecretkey},
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{zcaddress:(39.9*2)-0.1},
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0, 0.1)
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# Create pour {B, C}->{*}
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pour_BC = self.nodes[0].zcrawjoinsplit(blank_tx,
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# Create joinsplit {B, C}->{*}
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joinsplit_BC = self.nodes[0].zcrawjoinsplit(blank_tx,
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{pool[1] : zcsecretkey, pool[2] : zcsecretkey},
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{zcaddress:(39.9*2)-0.1},
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0, 0.1)
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# Create pour {C, D}->{*}
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pour_CD = self.nodes[0].zcrawjoinsplit(blank_tx,
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# Create joinsplit {C, D}->{*}
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joinsplit_CD = self.nodes[0].zcrawjoinsplit(blank_tx,
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{pool[2] : zcsecretkey, pool[3] : zcsecretkey},
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{zcaddress:(39.9*2)-0.1},
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0, 0.1)
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# Create pour {A, D}->{*}
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pour_AD = self.nodes[0].zcrawjoinsplit(blank_tx,
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# Create joinsplit {A, D}->{*}
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joinsplit_AD = self.nodes[0].zcrawjoinsplit(blank_tx,
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{pool[0] : zcsecretkey, pool[3] : zcsecretkey},
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{zcaddress:(39.9*2)-0.1},
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0, 0.1)
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# (a) Node 0 will spend pour AB, then attempt to
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# (a) Node 0 will spend joinsplit AB, then attempt to
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# double-spend it with BC. It should fail before and
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# after Node 0 mines blocks.
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#
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@ -126,9 +126,9 @@ class JoinSplitTest(BitcoinTestFramework):
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# (a)
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AB_txid = self.nodes[0].sendrawtransaction(pour_AB["rawtxn"])
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AB_txid = self.nodes[0].sendrawtransaction(joinsplit_AB["rawtxn"])
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self.expect_cannot_pour(self.nodes[0], pour_BC["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[0], joinsplit_BC["rawtxn"])
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# Wait until node[1] receives AB before we attempt to double-spend
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# with BC.
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@ -139,17 +139,17 @@ class JoinSplitTest(BitcoinTestFramework):
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time.sleep(0.2)
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print "Done!\n"
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self.expect_cannot_pour(self.nodes[1], pour_BC["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[1], joinsplit_BC["rawtxn"])
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# Generate a block
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self.nodes[0].generate(1)
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sync_blocks(self.nodes[0:2])
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self.expect_cannot_pour(self.nodes[0], pour_BC["rawtxn"])
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self.expect_cannot_pour(self.nodes[1], pour_BC["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[0], joinsplit_BC["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[1], joinsplit_BC["rawtxn"])
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# (b)
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self.nodes[2].sendrawtransaction(pour_BC["rawtxn"])
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self.nodes[2].sendrawtransaction(joinsplit_BC["rawtxn"])
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self.nodes[2].generate(5)
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# Connect the two nodes
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@ -158,23 +158,23 @@ class JoinSplitTest(BitcoinTestFramework):
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sync_blocks(self.nodes)
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# AB and CD should all be impossible to spend for each node.
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self.expect_cannot_pour(self.nodes[0], pour_AB["rawtxn"])
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self.expect_cannot_pour(self.nodes[0], pour_CD["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[0], joinsplit_AB["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[0], joinsplit_CD["rawtxn"])
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self.expect_cannot_pour(self.nodes[1], pour_AB["rawtxn"])
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self.expect_cannot_pour(self.nodes[1], pour_CD["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[1], joinsplit_AB["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[1], joinsplit_CD["rawtxn"])
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self.expect_cannot_pour(self.nodes[2], pour_AB["rawtxn"])
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self.expect_cannot_pour(self.nodes[2], pour_CD["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[2], joinsplit_AB["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[2], joinsplit_CD["rawtxn"])
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self.expect_cannot_pour(self.nodes[3], pour_AB["rawtxn"])
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self.expect_cannot_pour(self.nodes[3], pour_CD["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[3], joinsplit_AB["rawtxn"])
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self.expect_cannot_joinsplit(self.nodes[3], joinsplit_CD["rawtxn"])
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# (c)
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# AD should be possible to send due to the reorg that
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# tossed out AB.
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self.nodes[0].sendrawtransaction(pour_AD["rawtxn"])
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self.nodes[0].sendrawtransaction(joinsplit_AD["rawtxn"])
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self.nodes[0].generate(1)
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sync_blocks(self.nodes)
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