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Merge #14457: test: add invalid tx templates for use in functional tests
59e387705c7e55ec40400301346354fa2d0c613f test: add invalid tx templates for use in functional tests (James O'Beirne) Pull request description: This change adds a list of `CTransaction`-generating templates which each correspond to a specific type of invalid transaction. We then use this list to test for a wider variety of invalid tx types in `p2p_invalid_tx.py` and `feature_block.py`. Consolidating all invalid tx types will allow us to more easily cover all tx reject cases from a variety of tests without repeating ourselves. Validation logic doesn't differ much between mempool and block acceptance, but there *is* a difference and we should be sure we're testing both comprehensively. Right now, I've only added templates covering the tx reject types listed below but if this approach seems worthwhile I will expand the list to be fully comprehensive. ``` bad-txns-in-belowout bad-txns-inputs-duplicate bad-txns-too-many-sigops bad-txns-vin-empty bad-txns-vout-empty bad-txns-vout-negative ``` Tree-SHA512: 05407f4a953fbd7c44c08bb49bb989cefd39a2b05ea00f5b3c92197a3f05e1b302f789e33832445734220e1c333d133aba385740b77b84139b170c583471ce20
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test/functional/data/invalid_txs.py
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180
test/functional/data/invalid_txs.py
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#!/usr/bin/env python3
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# Copyright (c) 2015-2018 The Bitcoin Core developers
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# Distributed under the MIT software license, see the accompanying
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# file COPYING or http://www.opensource.org/licenses/mit-license.php.
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"""
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Templates for constructing various sorts of invalid transactions.
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These templates (or an iterator over all of them) can be reused in different
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contexts to test using a number of invalid transaction types.
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Hopefully this makes it easier to get coverage of a full variety of tx
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validation checks through different interfaces (AcceptBlock, AcceptToMemPool,
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etc.) without repeating ourselves.
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Invalid tx cases not covered here can be found by running:
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$ diff \
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<(grep -IREho "bad-txns[a-zA-Z-]+" src | sort -u) \
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<(grep -IEho "bad-txns[a-zA-Z-]+" test/functional/data/invalid_txs.py | sort -u)
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"""
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import abc
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from test_framework.messages import CTransaction, CTxIn, CTxOut, COutPoint
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from test_framework import script as sc
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from test_framework.blocktools import create_tx_with_script, MAX_BLOCK_SIGOPS
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basic_p2sh = sc.CScript([sc.OP_HASH160, sc.hash160(sc.CScript([sc.OP_0])), sc.OP_EQUAL])
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class BadTxTemplate:
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"""Allows simple construction of a certain kind of invalid tx. Base class to be subclassed."""
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__metaclass__ = abc.ABCMeta
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# The expected error code given by bitcoind upon submission of the tx.
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reject_reason = ""
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# Only specified if it differs from mempool acceptance error.
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block_reject_reason = ""
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# Do we expect to be disconnected after submitting this tx?
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expect_disconnect = False
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# Is this tx considered valid when included in a block, but not for acceptance into
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# the mempool (i.e. does it violate policy but not consensus)?
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valid_in_block = False
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def __init__(self, *, spend_tx=None, spend_block=None):
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self.spend_tx = spend_block.vtx[0] if spend_block else spend_tx
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self.spend_avail = sum(o.nValue for o in self.spend_tx.vout)
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self.valid_txin = CTxIn(COutPoint(self.spend_tx.sha256, 0), b"", 0xffffffff)
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@abc.abstractmethod
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def get_tx(self, *args, **kwargs):
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"""Return a CTransaction that is invalid per the subclass."""
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pass
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class OutputMissing(BadTxTemplate):
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reject_reason = "bad-txns-vout-empty"
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expect_disconnect = False
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def get_tx(self):
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tx = CTransaction()
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tx.vin.append(self.valid_txin)
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tx.calc_sha256()
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return tx
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class InputMissing(BadTxTemplate):
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reject_reason = "bad-txns-vin-empty"
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expect_disconnect = False
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def get_tx(self):
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tx = CTransaction()
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tx.vout.append(CTxOut(0, sc.CScript([sc.OP_TRUE] * 100)))
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tx.calc_sha256()
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return tx
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class SizeTooSmall(BadTxTemplate):
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reject_reason = "tx-size-small"
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expect_disconnect = False
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valid_in_block = True
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def get_tx(self):
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tx = CTransaction()
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tx.vin.append(self.valid_txin)
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tx.vout.append(CTxOut(0, sc.CScript([sc.OP_TRUE])))
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tx.calc_sha256()
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return tx
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class BadInputOutpointIndex(BadTxTemplate):
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# Won't be rejected - nonexistent outpoint index is treated as an orphan since the coins
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# database can't distinguish between spent outpoints and outpoints which never existed.
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reject_reason = None
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expect_disconnect = False
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def get_tx(self):
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num_indices = len(self.spend_tx.vin)
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bad_idx = num_indices + 100
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tx = CTransaction()
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tx.vin.append(CTxIn(COutPoint(self.spend_tx.sha256, bad_idx), b"", 0xffffffff))
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tx.vout.append(CTxOut(0, basic_p2sh))
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tx.calc_sha256()
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return tx
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class DuplicateInput(BadTxTemplate):
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reject_reason = 'bad-txns-inputs-duplicate'
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expect_disconnect = True
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def get_tx(self):
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tx = CTransaction()
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tx.vin.append(self.valid_txin)
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tx.vin.append(self.valid_txin)
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tx.vout.append(CTxOut(1, basic_p2sh))
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tx.calc_sha256()
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return tx
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class NonexistentInput(BadTxTemplate):
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reject_reason = None # Added as an orphan tx.
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expect_disconnect = False
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def get_tx(self):
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tx = CTransaction()
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tx.vin.append(CTxIn(COutPoint(self.spend_tx.sha256 + 1, 0), b"", 0xffffffff))
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tx.vin.append(self.valid_txin)
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tx.vout.append(CTxOut(1, basic_p2sh))
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tx.calc_sha256()
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return tx
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class SpendTooMuch(BadTxTemplate):
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reject_reason = 'bad-txns-in-belowout'
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expect_disconnect = True
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def get_tx(self):
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return create_tx_with_script(
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self.spend_tx, 0, script_pub_key=basic_p2sh, amount=(self.spend_avail + 1))
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class SpendNegative(BadTxTemplate):
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reject_reason = 'bad-txns-vout-negative'
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expect_disconnect = True
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def get_tx(self):
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return create_tx_with_script(self.spend_tx, 0, amount=-1)
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class InvalidOPIFConstruction(BadTxTemplate):
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reject_reason = "mandatory-script-verify-flag-failed (Invalid OP_IF construction)"
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expect_disconnect = True
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valid_in_block = True
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def get_tx(self):
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return create_tx_with_script(
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self.spend_tx, 0, script_sig=b'\x64' * 35,
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amount=(self.spend_avail // 2))
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class TooManySigops(BadTxTemplate):
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reject_reason = "bad-txns-too-many-sigops"
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block_reject_reason = "bad-blk-sigops, out-of-bounds SigOpCount"
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expect_disconnect = False
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def get_tx(self):
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lotsa_checksigs = sc.CScript([sc.OP_CHECKSIG] * (MAX_BLOCK_SIGOPS))
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return create_tx_with_script(
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self.spend_tx, 0,
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script_pub_key=lotsa_checksigs,
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amount=1)
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def iter_all_templates():
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"""Iterate through all bad transaction template types."""
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return BadTxTemplate.__subclasses__()
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import copy
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import struct
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from test_framework.blocktools import create_block, create_coinbase, create_tx_with_script, get_legacy_sigopcount_block
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from test_framework.blocktools import (
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create_block,
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create_coinbase,
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create_tx_with_script,
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get_legacy_sigopcount_block,
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MAX_BLOCK_SIGOPS,
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)
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from test_framework.key import ECKey
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from test_framework.messages import (
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CBlock,
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@ -44,8 +50,7 @@ from test_framework.script import (
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)
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from test_framework.test_framework import BitcoinTestFramework
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from test_framework.util import assert_equal
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MAX_BLOCK_SIGOPS = 20000
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from data import invalid_txs
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# Use this class for tests that require behavior other than normal "mininode" behavior.
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# For now, it is used to serialize a bloated varint (b64).
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@ -110,16 +115,21 @@ class FullBlockTest(BitcoinTestFramework):
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self.save_spendable_output()
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self.send_blocks([b0])
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# These constants chosen specifically to trigger an immature coinbase spend
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# at a certain time below.
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NUM_BUFFER_BLOCKS_TO_GENERATE = 99
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NUM_OUTPUTS_TO_COLLECT = 33
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# Allow the block to mature
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blocks = []
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for i in range(99):
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blocks.append(self.next_block(5000 + i))
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for i in range(NUM_BUFFER_BLOCKS_TO_GENERATE):
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blocks.append(self.next_block("maturitybuffer.{}".format(i)))
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self.save_spendable_output()
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self.send_blocks(blocks)
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# collect spendable outputs now to avoid cluttering the code later on
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out = []
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for i in range(33):
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for i in range(NUM_OUTPUTS_TO_COLLECT):
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out.append(self.get_spendable_output())
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# Start by building a couple of blocks on top (which output is spent is
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@ -131,7 +141,39 @@ class FullBlockTest(BitcoinTestFramework):
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b2 = self.next_block(2, spend=out[1])
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self.save_spendable_output()
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self.send_blocks([b1, b2])
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self.send_blocks([b1, b2], timeout=4)
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# Select a txn with an output eligible for spending. This won't actually be spent,
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# since we're testing submission of a series of blocks with invalid txns.
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attempt_spend_tx = out[2]
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# Submit blocks for rejection, each of which contains a single transaction
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# (aside from coinbase) which should be considered invalid.
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for TxTemplate in invalid_txs.iter_all_templates():
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template = TxTemplate(spend_tx=attempt_spend_tx)
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# Something about the serialization code for missing inputs creates
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# a different hash in the test client than on bitcoind, resulting
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# in a mismatching merkle root during block validation.
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# Skip until we figure out what's going on.
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if TxTemplate == invalid_txs.InputMissing:
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continue
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if template.valid_in_block:
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continue
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self.log.info("Reject block with invalid tx: %s", TxTemplate.__name__)
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blockname = "for_invalid.%s" % TxTemplate.__name__
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badblock = self.next_block(blockname)
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badtx = template.get_tx()
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self.sign_tx(badtx, attempt_spend_tx)
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badtx.rehash()
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badblock = self.update_block(blockname, [badtx])
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self.send_blocks(
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[badblock], success=False,
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reject_reason=(template.block_reject_reason or template.reject_reason),
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reconnect=True, timeout=2)
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self.move_tip(2)
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# Fork like this:
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#
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@ -1329,7 +1371,7 @@ class FullBlockTest(BitcoinTestFramework):
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self.blocks[block_number] = block
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return block
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def bootstrap_p2p(self):
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def bootstrap_p2p(self, timeout=10):
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"""Add a P2P connection to the node.
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Helper to connect and wait for version handshake."""
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@ -1340,15 +1382,15 @@ class FullBlockTest(BitcoinTestFramework):
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# an INV for the next block and receive two getheaders - one for the
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# IBD and one for the INV. We'd respond to both and could get
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# unexpectedly disconnected if the DoS score for that error is 50.
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self.nodes[0].p2p.wait_for_getheaders(timeout=5)
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self.nodes[0].p2p.wait_for_getheaders(timeout=timeout)
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def reconnect_p2p(self):
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def reconnect_p2p(self, timeout=60):
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"""Tear down and bootstrap the P2P connection to the node.
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The node gets disconnected several times in this test. This helper
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method reconnects the p2p and restarts the network thread."""
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self.nodes[0].disconnect_p2ps()
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self.bootstrap_p2p()
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self.bootstrap_p2p(timeout=timeout)
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def send_blocks(self, blocks, success=True, reject_reason=None, force_send=False, reconnect=False, timeout=60):
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"""Sends blocks to test node. Syncs and verifies that tip has advanced to most recent block.
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@ -1357,7 +1399,7 @@ class FullBlockTest(BitcoinTestFramework):
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self.nodes[0].p2p.send_blocks_and_test(blocks, self.nodes[0], success=success, reject_reason=reject_reason, force_send=force_send, timeout=timeout, expect_disconnect=reconnect)
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if reconnect:
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self.reconnect_p2p()
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self.reconnect_p2p(timeout=timeout)
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if __name__ == '__main__':
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In this test we connect to one node over p2p, and test tx requests."""
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from test_framework.blocktools import create_block, create_coinbase, create_tx_with_script
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from test_framework.blocktools import create_block, create_coinbase
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from test_framework.messages import (
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COIN,
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COutPoint,
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@ -20,6 +20,7 @@ from test_framework.util import (
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assert_equal,
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wait_until,
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)
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from data import invalid_txs
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class InvalidTxRequestTest(BitcoinTestFramework):
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@ -74,12 +75,21 @@ class InvalidTxRequestTest(BitcoinTestFramework):
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self.log.info("Mature the block.")
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self.nodes[0].generatetoaddress(100, self.nodes[0].get_deterministic_priv_key().address)
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# b'\x64' is OP_NOTIF
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# Transaction will be rejected with code 16 (REJECT_INVALID)
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# and we get disconnected immediately
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self.log.info('Test a transaction that is rejected')
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tx1 = create_tx_with_script(block1.vtx[0], 0, script_sig=b'\x64' * 35, amount=50 * COIN)
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node.p2p.send_txs_and_test([tx1], node, success=False, expect_disconnect=True)
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# Iterate through a list of known invalid transaction types, ensuring each is
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# rejected. Some are consensus invalid and some just violate policy.
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for BadTxTemplate in invalid_txs.iter_all_templates():
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self.log.info("Testing invalid transaction: %s", BadTxTemplate.__name__)
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template = BadTxTemplate(spend_block=block1)
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tx = template.get_tx()
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node.p2p.send_txs_and_test(
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[tx], node, success=False,
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expect_disconnect=template.expect_disconnect,
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reject_reason=template.reject_reason,
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)
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if template.expect_disconnect:
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self.log.info("Reconnecting to peer")
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self.reconnect_p2p()
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# Make two p2p connections to provide the node with orphans
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# * p2ps[0] will send valid orphan txs (one with low fee)
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@ -17,6 +17,8 @@ from .script import CScript, CScriptNum, CScriptOp, OP_TRUE, OP_CHECKSIG
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from .util import assert_equal, hex_str_to_bytes
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from io import BytesIO
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MAX_BLOCK_SIGOPS = 20000
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def create_block(hashprev, coinbase, ntime=None):
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"""Create a block (with regtest difficulty)."""
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block = CBlock()
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