merge-script d0e777baf5 Merge bitcoin/bitcoin#36111: rpc: bound memory for overlong Bech32 errors
7fcaccd9d0 bech32: bound overlength error locations (Lőrinc)

Pull request description:

  **Problem:** `validateaddress` reports likely error positions for invalid Bech32 inputs, including multiple useful positions for character and checksum errors.
  For an overlength input, `LocateErrors()` returns every position after the 90-character limit, which the RPC converts to a `UniValue` number before serializing the response.
  A near-limit authenticated request therefore creates about 33 million `int` values and 33 million `UniValue` objects.

  **Fix:** Return position 90 for an overlength input, which identifies where the single length violation begins.
  Character and checksum errors continue to return multiple useful positions when they can be determined.
  The tests now include an oversized example and pin the bounded result.

  **Reproducer:** Peak memory usage for a near-limit authenticated request:

  <details>
  <summary>Linux reproducer</summary>

  ```bash
  sed -i "/def test_validateaddress(self):/a\\
          self.nodes[0].validateaddress('bcrt1' + 'q' * (2**25 - 100))\\
          __import__('time').sleep(30)" test/functional/rpc_invalid_address_message.py
  cmake -B build && cmake --build build -j2
  build/test/functional/rpc_invalid_address_message.py >/dev/null 2>&1 &
  sleep 20 && awk '/VmHWM/' /proc/$(pgrep bitcoind)/status
  ```
  </details>

  ```text
  Before ████████████████████████ 5.69 GiB
  After  █░░░░░░░░░░░░░░░░░░░░░░░  240 MiB
  ```

ACKs for top commit:
  maflcko:
    lgtm ACK 7fcaccd9d0
  sedited:
    ACK 7fcaccd9d0
  janb84:
    ACK 7fcaccd9d0

Tree-SHA512: 3d439774d394f081b8107f8131963f7aa23ed048b0d6d349a80f9b3481fefeef7b5ce239fbd33606ad1f4960e6bfd899f968c50febc70d38b2fe731c6049583f
2026-08-29 10:20:42 +02:00
2026-05-29 08:59:43 +01:00
2026-07-16 10:29:58 +01:00
2026-07-09 16:44:50 -04:00

Bitcoin Core integration/staging tree

https://bitcoincore.org

For an immediately usable, binary version of the Bitcoin Core software, see https://bitcoincore.org/en/download/.

What is Bitcoin Core?

Bitcoin Core connects to the Bitcoin peer-to-peer network to download and fully validate blocks and transactions. It also includes a wallet and graphical user interface, which can be optionally built.

Further information about Bitcoin Core is available in the doc folder.

License

Bitcoin Core is released under the terms of the MIT license. See COPYING for more information or see https://opensource.org/license/MIT.

Development Process

The master branch is regularly built (see doc/build-*.md for instructions) and tested, but it is not guaranteed to be completely stable. Tags are created regularly from release branches to indicate new official, stable release versions of Bitcoin Core.

The https://github.com/bitcoin-core/gui repository is used exclusively for the development of the GUI. Its master branch is identical in all monotree repositories. Release branches and tags do not exist, so please do not fork that repository unless it is for development reasons.

The contribution workflow is described in CONTRIBUTING.md and useful hints for developers can be found in doc/developer-notes.md.

Testing

Testing and code review is the bottleneck for development; we get more pull requests than we can review and test on short notice. Please be patient and help out by testing other people's pull requests, and remember this is a security-critical project where any mistake might cost people lots of money.

Automated Testing

Developers are strongly encouraged to write unit tests for new code, and to submit new unit tests for old code. Unit tests can be compiled and run (assuming they weren't disabled during the generation of the build system) with: ctest. Further details on running and extending unit tests can be found in /src/test/README.md.

There are also regression and integration tests, written in Python. These tests can be run (if the test dependencies are installed) with: build/test/functional/test_runner.py (assuming build is your build directory).

The CI (Continuous Integration) systems make sure that every pull request is tested on Windows, Linux, and macOS. The CI must pass on all commits before merge to avoid unrelated CI failures on new pull requests.

Manual Quality Assurance (QA) Testing

Changes should be tested by somebody other than the developer who wrote the code. This is especially important for large or high-risk changes. It is useful to add a test plan to the pull request description if testing the changes is not straightforward.

Translations

Changes to translations as well as new translations can be submitted to Bitcoin Core's Transifex page.

Translations are periodically pulled from Transifex and merged into the git repository. See the translation process for details on how this works.

Important: We do not accept translation changes as GitHub pull requests because the next pull from Transifex would automatically overwrite them again.

Description
Languages
C++ 62.8%
Python 18.7%
C 14.9%
CMake 1.2%
Shell 0.9%
Other 1.2%