9954aa7728http: don't parse any new requests from a client if m_req_busy = true (Matthew Zipkin)c7db3ae1f9test: cover HTTPRequest state machine (Matthew Zipkin)90676e24adAdd state to HTTPRequest to avoid duplicate work over I/O cycles (Matthew Zipkin)507e528e84http: reuse HTTPHeaders to parse chunked trailer (Matthew Zipkin)902d8908c9http: only read one HTTPRequest at a time per client (Matthew Zipkin) Pull request description: This PR reduces the memory consumption of the HTTP Server when reading data from connected clients, and improves performance especially when requests are large (i.e. requiring multiple TCP packets). In https://github.com/bitcoin/bitcoin/pull/35182 the server copies as much data as it can from the socket into application memory, and then tries to parse as many complete HTTP requests as possible from that data. If a request is discovered to be incomplete, the in-progress request is abandoned. The server tries again on the next I/O cycle to read the same data from the buffer, duplicating work as many times as it takes before the client finishes sending the request (or times out). This PR implements two improvements to this: 1. Only parse one request at a time from the receive buffer. The server processes requests from each client in series anyway. 2. Add state to `HTTPRequest` so it can be filled with data from the receive buffer over multiple I/O loop iterations without losing progress. If a client sends large or multiple requests, that data will sit in the kernel's socket buffer instead of the application memory. Eventually the socket buffer will fill up and TCP backpressure will kick in, dropping the TCP window to 0 and blocking the client from sending any more. A state machine for `HTTPRemoteClient` was [discussed previously](https://github.com/bitcoin/bitcoin/pull/35182#pullrequestreview-4322490068) to control resource consumption. Another nice benefit of this model (for a follow-up PR) will be to insert the RPC authentication check after reading 8kB-limited headers but before the 32MB-limited request body. ACKs for top commit: winterrdog: re-ACK9954aa7728janb84: re ACK9954aa7728frankomosh: ACK9954aa7728. fjahr: ACK9954aa7728Tree-SHA512: b7c913114283fbf1f360b40f6c65a01390a26731bf3b166f460ec260f9206f25d738b3a06887bfa839911c1c6aaf634448181da47a752a9a881aebd907e44868
Bitcoin Core integration/staging tree
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.