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The census listed 17 candidates in ecstore. Sixteen were false positives of three shapes, and reading them showed the heuristics rather than the tests were wrong: - `#[should_panic(expected = "...")]` (5). `should_panic` was already in the verification signals, but the check only ever ran against the function body — the attribute block was collected and then ignored, so the expected panic message, which *is* the assertion, was invisible. - Bodies that are a single call into a shared harness (9), like `run(DurabilityMode::Strict).await` and `aborting_encode_drops_blocked_producer(EncodePipeline::Vec).await`. The delegation rule keyed off callee names (`assert_`/`verify_`/`run_`/`_harness`), which these do not match, though a body that is nothing but one call delegates by construction whatever the callee is called. - Compile-time contracts (2): a turbofish between the callee and its parens (`assert_replication_config_ext::<T>()`) broke the delegation regex, and a nested `fn` that is only bound and discarded is the same signature guard as the already-recognised `fn _name()` form. The script now folds the attribute block into the verification text, allows a turbofish in the delegation patterns, and recognises both a single-call body and a discarded nested-fn binding. Tree-wide candidates drop from 53 to 33, ecstore from 17 to 1. The one that survives was real: `test_error_conversions` performed two conversions and discarded both results. It now pins what each conversion must produce — a plain `io::Error` stays `DiskError::Io` rather than being guessed at from its `NotFound` kind, a typed error boxed through `io::Error` round-trips back to itself instead of degrading to `Io`, and a serde_json error folds into `other` with its message intact. Refs backlog#1836
RustFS ECStore - Erasure Coding Storage
High-performance erasure coding storage engine for RustFS distributed object storage
📖 Documentation
· 🐛 Bug Reports
· 💬 Discussions
📖 Overview
RustFS ECStore provides erasure coding storage capabilities for the RustFS distributed object storage system. For the complete RustFS experience, please visit the main RustFS repository.
✨ Features
- Reed-Solomon erasure coding implementation
- Configurable redundancy levels (N+K schemes)
- Automatic data healing and reconstruction
- Multi-drive support with intelligent placement
- Parallel encoding/decoding for performance
- Efficient disk space utilization
📚 Documentation
For comprehensive documentation, examples, and usage guides, please visit the main RustFS repository.
📄 License
This project is licensed under the Apache License 2.0 - see the LICENSE file for details.
Copyright 2024 RustFS Team
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
RustFS is a trademark of RustFS, Inc.
All other trademarks are the property of their respective owners.
Made with ❤️ by the RustFS Storage Team
