ec2adf3c51test: Check miniscript descriptor h and apostrophe equivalence (w0xlt)a2d001b57ctest: Enforce descriptor reimport is an update (Ava Chow)e2b2f1c5c6descriptor: Rename DescriptorID to CompatDescriptorHash (Ava Chow)6ad31c062ctest: Add 31.0 to wallet backwards compatibility test (Ava Chow)2a6c53371bwallet, spkm: Treat Descriptor ID as an opaque SPKM ID (Ava Chow)62e826fa76wallet: Update WalletDescriptor from another one instead of overwriting (Ava Chow)1113f7590ewallet, export: Include descriptor cache when exporting descriptors (Ava Chow)9fc7b2618bspkm: Remove DescriptorSPKM constructor that doesn't take a descriptor (Ava Chow)770ff64bd7test: Add v30.2 and Miniscript to wallet backwards compatibility test (Ava Chow)35d6a60dbfdescriptor: Add ToCanonicalString (Ava Chow)1d87af26cedescriptors: Remove default StringType from PubkeyProvider::ToString() (Ava Chow)1c7f9aaf75miniscript: Don't use StringType::COMPAT (Ava Chow) Pull request description: Since keys in Miniscript expressions were not correctly handling `StringType::COMPAT` when generating the Descriptor ID, in order to keep compatibility with previous versions, we need to continue to handle that enum incorrectly when computing the ID. Given that this it the second time that we have had this issue, this PR also drops the concept of Descriptor ID being something that we can validate. Instead, the ID read in from the database is treated as an opaque blob that is used only to tie together the records related to a particular SPKM. It is instead treated as a ScriptPubKeyMan ID and users of it must be retrieving the ID from somewhere rather than computing it from a descriptor. The check of comparing the read ID to the computed ID is removed so that all previously created wallets can be read. To clarify that the ID is not actually an ID, the function `DescriptorID` is renamed to `CompatDescriptorHash` and it is still used to generate the SPKM ID that is written to the database. The ID was additionally being used to determine whether a descriptor is equal to another descriptor. This was used only by `importdescriptors` and `createwalletdescriptor`. These uses have been changed to do a string comparison rather than computing a hash and comparing the hashes. This removes the need to rely on `CompatDescriptorHash`. The only caveat is that previously the hash was being used to do a map lookup in `m_spk_managers`, but this is now changed to use `std::find_if`. The lookup complexity changes from logarithmic to linear, which may be really bad for wallets with a lot of descriptors, e.g. migrated formerly non-HD wallets. I think in general though, the tradeoff is okay, and neither of these functions purport to be performant, especially as `importdescriptors` may also do a rescan which can take a long time. However, if that is a concern, an additional map of `CompatDescriptorHash` to DescriptorSPKM can be added. Lastly, the wallet backwards compatibility test is updated to have 30.2 and 31.0 nodes, and a wallet with miniscript expressions. This exercises both creating wallets in previous versions and making sure they load in master, and making new wallets on master and checking whether they load, depending on the version. Fixes #35432 ACKs for top commit: pseudoramdom: ACKec2adf3c51davidgumberg: crACKec2adf3c51w0xlt: ACKec2adf3c51Tree-SHA512: a32995c171b829a874cfd1bb03adde46fd8737322d5c44bc2ff27eff1ea8742c16c7ea1bb6fdc0fb2b89d0f11919850383799c3af126e7f55fe0878a8f1a7024
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()andsetup_xxxx()methods at the top of the subclass, then locally-defined helper methods, then therun_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 andos.nameto check whether it's a POSIX system (see also theskip_if_platform_not_{linux,posix}methods in theBitcoinTestFrameworkclass, 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:featurefor tests for full features that aren't wallet/mining/mempool, egfeature_rbf.pyinterfacefor tests for other interfaces (REST, ZMQ, etc), eginterface_rest.pymempoolfor tests for mempool behaviour, egmempool_reorg.pyminingfor tests for mining features, egmining_prioritisetransaction.pyp2pfor tests that explicitly test the p2p interface, egp2p_disconnect_ban.pyrpcfor tests for individual RPC methods or features, egrpc_listtransactions.pytoolfor tests for tools, egtool_wallet.pywalletfor tests for wallet features, egwallet_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, notrpc_decode_script.py
- 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
- Don't use the redundant word
testin the name, eginterface_zmq.py, notinterface_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_nodesto 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_chainvariable inset_test_params()toTrueto initialize an empty blockchain and start from the Genesis block, rather than load a premined blockchain from cache with the default value ofFalse. 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
CBlockandCTransactiondon'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 RPCsProcessMessage()in/src/net_processing.cppfor 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.
-
P2PConnectionis the class used to connect to a bitcoind.P2PInterfacecontains 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.