Files
bitcoin/test/functional
Ryan Ofsky a4157fc24a Merge bitcoin/bitcoin#33966: refactor: disentangle miner startup defaults from runtime options
1e5d3b4f0d doc: add release note for mining option validation (Sjors Provoost)
0317f52022 ci: enforce iwyu for touched files (Sjors Provoost)
8c58f63578 refactor: have mining files include what they use (Sjors Provoost)
3bb6498fb0 mining: store block create options in NodeContext (Sjors Provoost)
4637cd157d mining: reject invalid block create options (Sjors Provoost)
8daac1d6eb mining: add block create option helpers (Sjors Provoost)
128da7c3ff miner: add block_max_weight to BlockCreateOptions (Sjors Provoost)
fa81e51eae mining: parse block creation args in mining_args (Sjors Provoost)
020166080c mining: use interface for tests, bench and fuzzers (Sjors Provoost)
44082bea47 interfaces: make Mining use const NodeContext (Sjors Provoost)
d4368e059c move-only: add node/mining_types.h (Sjors Provoost)
6aeb1fbea2 test: cover IPC blockmaxweight policy (Sjors Provoost)
63b23ea1e9 test: regression test for waitNext mining policy (Sjors Provoost)
24750f8b31 test: add createNewBlock failure helper (Sjors Provoost)
63ee9cd15b test: misc interface_ipc_mining.py improvements (Sjors Provoost)

Pull request description:

  Although this PR is primarily a refactor, _there are behavior changes_ documented in the release note:
  - the IPC mining interface now rejects out-of-range block template options instead of silently clamping them;
  - startup now rejects `-blockmaxweight` values lower than `-blockreservedweight`, instead of allowing them to be clamped later.

  The interaction between node startup options like `-blockreservedweight` and runtime options, especially those passed via IPC, is confusing.

  They're combined in `BlockAssembler::Options`, which this PR gets rid of in favour of `BlockCreateOptions`.

  `BlockCreateOptions` is used by interface clients. As before, IPC clients have access to a safe / sane subset, whereas RPC and test code can use all fields. The same type is also used to store mining defaults parsed once during node startup in `NodeContext`.

  The maximum block weight setting (`block_max_weight`) is optional. When read from startup options it matches `-blockmaxweight`; when provided by callers it is a runtime override. `Merge()` fills unset fields from startup defaults while preserving caller-provided values.

  This all happens in commits `mining: add block create option helpers` and `mining: store block create options in NodeContext`, and requires some preparation to keep things easy to review.

  We get rid of `BlockAssembler::Options` but this is used in many tests. Since large churn is inevitable, we might as well switch all tests, bench and fuzzers over to the Mining interface. The `mining: use interface for tests, bench and fuzzers` commit does that, dramatically reducing direct use of `BlockAssembler`. Two exceptions are documented in the commit message. Because `test_block_validity` wasn't available via the interface and the block_assemble benchmark needs it, it's moved from `BlockAssembler::Options` to `BlockCreateOptions` (still not exposed via IPC).

  We need access to mining related structs from both the miner and node initialization code. To avoid having to pull in all of `BlockAssembler` for the latter, the `move-only: add node/mining_types.h` commit introduces `node/mining_types.h` and moves `BlockCreateOptions`, `BlockWaitOptions` and `BlockCheckOptions` there from `src/node/types.h`.

  I considered also moving `DEFAULT_BLOCK_MAX_WEIGHT`, `DEFAULT_BLOCK_RESERVED_WEIGHT`, `MINIMUM_BLOCK_RESERVED_WEIGHT` and `DEFAULT_BLOCK_MIN_TX_FEE` there from `policy.h`, since they are distinct from relay policy and not needed by the kernel. But this seems more appropriate for a follow-up and requires additional discussion.

  ---

  I kept variable renaming and other formatting changes to a minimum to ease review with `--color-moved=dimmed-zebra`.

  ## Commit summary

  Tests and test cleanup:
  - `test: misc interface_ipc_mining.py improvements`
  - `test: add assert_create_fails helper`
  - `test: regression test for waitNext mining policy`
  - `test: cover IPC blockmaxweight policy`

  Refactoring test/bench/fuzz callers:
  - `interfaces: make Mining use const NodeContext`
  - `mining: use interface for tests, bench and fuzzers`

  Moving mining interface types:
  - `move-only: add node/mining_types.h`

  Separating startup defaults from runtime options:
  - `mining: parse block creation args in mining_args`: adds `node/mining_args.{h,cpp}` and moves mining option parsing out of `init.cpp`, without storing the parsed values yet.
  - `miner: add block_max_weight to BlockCreateOptions`: moves the runtime maximum block weight setting into `BlockCreateOptions` as an optional value, so it can later be defaulted from startup args when unset.
  - `mining: add block create option helpers`: centralizes block template option defaulting and merging, removes `BlockAssembler::Options`, and preserves behavior except for dropping the `Specified ` prefix from startup option error messages.
  - `mining: reject invalid block create options`: checks typed `BlockCreateOptions` before block template creation, so invalid runtime options are rejected instead of silently clamped. Startup validation also rejects `-blockmaxweight` values lower than `-blockreservedweight`.
  - `mining: store block create options in NodeContext`: stores the startup mining options in `NodeContext` as `BlockCreateOptions`, so startup defaults and runtime overrides can be merged with the same option type.

  Include hygiene, CI and release note:
  - `refactor: have mining files include what they use`
  - `ci: enforce iwyu for touched files`
  - `doc: add release note for mining option validation`

ACKs for top commit:
  w0xlt:
    reACK 1e5d3b4f0d
  sedited:
    ACK 1e5d3b4f0d
  ryanofsky:
    Code review ACK 1e5d3b4f0d. Looks good, thanks for the updates!

Tree-SHA512: 28c715023cb78f02775caa787b243c994bd0f8ce4559afc8db9301e93400ebbc74963626a4afe65ae15bcc16b9192d051a745839f4c804848d50746ea5a224b4
2026-05-26 08:39:03 -04:00
..
2026-04-29 15:04:22 -07:00
2026-04-21 14:11:13 +02:00
2025-12-26 08:19:34 +01:00
2026-04-29 15:11:44 -07:00

Functional tests

Writing Functional Tests

Example test

The file test/functional/example_test.py is a heavily commented example of a test case that uses both the RPC and P2P interfaces. If you are writing your first test, copy that file and modify to fit your needs.

Coverage

Assuming the build directory is build, running build/test/functional/test_runner.py with the --coverage argument tracks which RPCs are called by the tests and prints a report of uncovered RPCs in the summary. This can be used (along with the --extended argument) to find out which RPCs we don't have test cases for.

Style guidelines

  • Where possible, try to adhere to PEP-8 guidelines
  • Use a python linter like flake8 before submitting PRs to catch common style nits (eg trailing whitespace, unused imports, etc)
  • The oldest supported Python version is specified in doc/dependencies.md. Consider using pyenv, which checks .python-version, to prevent accidentally introducing modern syntax from an unsupported Python version. The CI linter job also checks this, but possibly not in all cases.
  • See the python lint script that checks for violations that could lead to bugs and issues in the test code.
  • Use type hints in your code to improve code readability and to detect possible bugs earlier.
  • Avoid wildcard imports.
  • If more than one name from a module is needed, use lexicographically sorted multi-line imports in order to reduce the possibility of potential merge conflicts.
  • Use a module-level docstring to describe what the test is testing, and how it is testing it.
  • When subclassing the BitcoinTestFramework, place overrides for the set_test_params(), add_options() and setup_xxxx() methods at the top of the subclass, then locally-defined helper methods, then the run_test() method.
  • Use f'{x}' for string formatting in preference to '{}'.format(x) or '%s' % x.
  • Use platform.system() for detecting the running operating system and os.name to check whether it's a POSIX system (see also the skip_if_platform_not_{linux,posix} methods in the BitcoinTestFramework class, which can be used to skip a whole test depending on the platform).

Naming guidelines

  • Name the test <area>_test.py, where area can be one of the following:
    • feature for tests for full features that aren't wallet/mining/mempool, eg feature_rbf.py
    • interface for tests for other interfaces (REST, ZMQ, etc), eg interface_rest.py
    • mempool for tests for mempool behaviour, eg mempool_reorg.py
    • mining for tests for mining features, eg mining_prioritisetransaction.py
    • p2p for tests that explicitly test the p2p interface, eg p2p_disconnect_ban.py
    • rpc for tests for individual RPC methods or features, eg rpc_listtransactions.py
    • tool for tests for tools, eg tool_wallet.py
    • wallet for tests for wallet features, eg wallet_keypool.py
  • Use an underscore to separate words
    • exception: for tests for specific RPCs or command line options which don't include underscores, name the test after the exact RPC or argument name, eg rpc_decodescript.py, not rpc_decode_script.py
  • Don't use the redundant word test in the name, eg interface_zmq.py, not interface_zmq_test.py

General test-writing advice

  • Instead of inline comments or no test documentation at all, log the comments to the test log, e.g. self.log.info('Create enough transactions to fill a block'). Logs make the test code easier to read and the test logic easier to debug.
  • Set self.num_nodes to the minimum number of nodes necessary for the test. Having additional unrequired nodes adds to the execution time of the test as well as memory/CPU/disk requirements (which is important when running tests in parallel).
  • Avoid stop-starting the nodes multiple times during the test if possible. A stop-start takes several seconds, so doing it several times blows up the runtime of the test.
  • Set the self.setup_clean_chain variable in set_test_params() to True to initialize an empty blockchain and start from the Genesis block, rather than load a premined blockchain from cache with the default value of False. The cached data directories contain a 200-block pre-mined blockchain with the spendable mining rewards being split between four nodes. Each node has 25 mature block subsidies (25x50=1250 BTC) in its wallet. Using them is much more efficient than mining blocks in your test.
  • When calling RPCs with lots of arguments, consider using named keyword arguments instead of positional arguments to make the intent of the call clear to readers.
  • Many of the core test framework classes such as CBlock and CTransaction don't allow new attributes to be added to their objects at runtime like typical Python objects allow. This helps prevent unpredictable side effects from typographical errors or usage of the objects outside of their intended purpose.

RPC and P2P definitions

Test writers may find it helpful to refer to the definitions for the RPC and P2P messages. These can be found in the following source files:

  • /src/rpc/* for RPCs
  • /src/wallet/rpc* for wallet RPCs
  • ProcessMessage() in /src/net_processing.cpp for parsing P2P messages

Using the P2P interface

  • P2Ps can be used to test specific P2P protocol behavior. p2p.py contains test framework p2p objects and messages.py contains all the definitions for objects passed over the network (CBlock, CTransaction, etc, along with the network-level wrappers for them, msg_block, msg_tx, etc).

  • P2P tests have two threads. One thread handles all network communication with the bitcoind(s) being tested in a callback-based event loop; the other implements the test logic.

  • P2PConnection is the class used to connect to a bitcoind. P2PInterface contains the higher level logic for processing P2P payloads and connecting to the Bitcoin Core node application logic. For custom behaviour, subclass the P2PInterface object and override the callback methods.

P2PConnections can be used as such:

p2p_conn = node.add_p2p_connection(P2PInterface())
p2p_conn.send_and_ping(msg)

They can also be referenced by indexing into a TestNode's p2ps list, which contains the list of test framework p2p objects connected to itself (it does not include any TestNodes):

node.p2ps[0].sync_with_ping()

More examples can be found in p2p_unrequested_blocks.py, p2p_compactblocks.py.

Prototyping tests

The TestShell class exposes the BitcoinTestFramework functionality to interactive Python3 environments and can be used to prototype tests. This may be especially useful in a REPL environment with session logging utilities, such as IPython. The logs of such interactive sessions can later be adapted into permanent test cases.

Test framework modules

The following are useful modules for test developers. They are located in test/functional/test_framework/.

authproxy.py

Taken from the python-bitcoinrpc repository.

test_framework.py

Base class for functional tests.

util.py

Generally useful functions.

p2p.py

Test objects for interacting with a bitcoind node over the p2p interface.

script.py

Utilities for manipulating transaction scripts (originally from python-bitcoinlib)

key.py

Test-only secp256k1 elliptic curve implementation

blocktools.py

Helper functions for creating blocks and transactions.

Benchmarking with perf

An easy way to profile node performance during functional tests is provided for Linux platforms using perf.

Perf will sample the running node and will generate profile data in the node's datadir. The profile data can then be presented using perf report or a graphical tool like hotspot.

There are two ways of invoking perf: one is to use the --perf flag when running tests, which will profile each node during the entire test run: perf begins to profile when the node starts and ends when it shuts down. The other way is the use the profile_with_perf context manager, e.g.

with node.profile_with_perf("send-big-msgs"):
    # Perform activity on the node you're interested in profiling, e.g.:
    for _ in range(10000):
        node.p2ps[0].send_without_ping(some_large_message)

To see useful textual output, run

perf report -i /path/to/datadir/send-big-msgs.perf.data.xxxx --stdio | c++filt | less

See also: