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| pretty_name: RLforDecomp | |
| license: other | |
| license_name: upstream-open-source-licenses | |
| task_categories: | |
| - text-generation | |
| tags: | |
| - decompilation | |
| - reverse-engineering | |
| - binary-analysis | |
| - c | |
| - code | |
| size_categories: | |
| - 100K<n<1M | |
| configs: | |
| - config_name: default | |
| data_files: | |
| - split: train | |
| path: data/train-* | |
| - split: val | |
| path: data/val-* | |
| - split: test | |
| path: data/test-* | |
| - split: decompiler_test | |
| path: data/decompiler_test-* | |
| dataset_info: | |
| config_name: default | |
| features: | |
| - name: input | |
| dtype: string | |
| - name: output | |
| dtype: string | |
| - name: function_name | |
| dtype: string | |
| - name: repo_name | |
| dtype: string | |
| - name: category | |
| dtype: string | |
| - name: sample_id | |
| dtype: string | |
| - name: decompiler | |
| dtype: string | |
| - name: opt_level | |
| dtype: string | |
| splits: | |
| - name: train | |
| num_examples: 643767 | |
| - name: val | |
| num_examples: 5954 | |
| - name: test | |
| num_examples: 10838 | |
| - name: decompiler_test | |
| num_examples: 48664 | |
| # RLforDecomp | |
| Function-level pairs for **decompilation refinement**: `input` is a C function as produced by a | |
| decompiler, `output` is the original source function it came from. The task is to reconstruct the | |
| source function from the decompiler output. Quality is measured by the graph edit distance (GED) | |
| between the control-flow graphs of the prediction and of the source function, as in the | |
| [SAILR](https://wilgibbs.com/papers/sailr_usenix24.pdf) paper (GED = 0: identical CFG). | |
| All binaries are x86-64, compiled at `-O0`. | |
| ```python | |
| from datasets import load_dataset | |
| ds = load_dataset("Divij/RLforDecomp") # DatasetDict: train / val / test / decompiler_test | |
| ``` | |
| ## Splits | |
| | split | rows | projects | decompiler(s) | intended use | | |
| | --- | ---: | ---: | --- | --- | | |
| | `train` | 643,767 | 1,972 Gentoo packages | IDA Pro 9.2 | training | | |
| | `val` | 5,954 | 30 Gentoo packages | IDA Pro 9.2 | tuning: checkpoint selection, thresholds, sweeps | | |
| | `test` | 10,838 | 30 Gentoo packages | IDA Pro 9.2 | evaluation on unseen repositories, same decompiler as training | | |
| | `decompiler_test` | 48,664 | 23 SAILR (Debian) projects | IDA (older release), Ghidra, angr-SAILR, angr-Phoenix, angr-DREAM | evaluation on unseen repositories **and** unseen decompilers | | |
| `decompiler_test` rows per decompiler: `ghidra` 11,681, `angr_dream` 11,486, `ida` 11,269, | |
| `angr_sailr` 7,410, `angr_phoenix` 6,818. | |
| Splits are disjoint at the level of the **version-stripped package name** (every version of a project | |
| lands in the same split), and no decompiled input occurs in more than one split. Treat `test` and | |
| `decompiler_test` as held-out: evaluate a frozen system on them once and tune on `val` instead. | |
| ## Fields | |
| | field | meaning | | |
| | --- | --- | | |
| | `input` | decompiled function (model input) | | |
| | `output` | original source function (target) | | |
| | `function_name` | function name used to pair the two sides | | |
| | `repo_name` | Gentoo package (with version) or SAILR project | | |
| | `category` | Gentoo category, or `sailr` for `decompiler_test` | | |
| | `sample_id` | parent binary (Gentoo) or SAILR file stem; **not** unique per row | | |
| | `decompiler` | `ida` for train/val/test; one of `ida`, `ghidra`, `angr_sailr`, `angr_phoenix`, `angr_dream` for `decompiler_test` | | |
| | `opt_level` | always `O0` | | |
| A row is uniquely identified by `(sample_id, function_name, decompiler)`. | |
| Length in characters (median / 95th percentile); lengths are heavy-tailed (train inputs: p99 about 11K, max about 454K). | |
| | split | `input` | `output` | | |
| | --- | ---: | ---: | | |
| | `train` | 531 / 4,278 | 447 / 3,094 | | |
| | `val` | 612.5 / 4,696 | 488 / 3,451 | | |
| | `test` | 431 / 4,313 | 449 / 3,233 | | |
| | `decompiler_test` | 625 / 4,694 | 531 / 4,052 | | |
| ## How it was built | |
| - **Gentoo (`train`, `val`, `test`).** From the x86-64 Gentoo binaries and source archives released with | |
| [VarBERT](https://github.com/sefcom/VarBERT) (O0 only; built with debug info and **not stripped**). | |
| Each binary was matched to its source archive (exact or revision-normalized package name, or a manually | |
| reviewed override) and its DWARF compilation units to archive members; a binary with any unresolved | |
| unit was dropped. Every remaining binary was decompiled whole with IDA Pro 9.2 (output normalized with | |
| the SAILR lexer rules: IDA integer type names mapped to C types, `__fastcall`/`__noreturn`/`__cdecl` | |
| removed, `::` mapped to `_`), leaving 9,612 binaries (2,107 packages, 76 categories) before pairing and filtering. | |
| - **Pairs.** IDA output is split into functions, top-level functions are extracted from the matched source | |
| files, and functions are paired by exact, case-sensitive name. IDA auto-generated names (`sub_...`) and | |
| any name with more than one distinct body on either side are dropped. Comments are removed from both | |
| sides and both are formatted with clang-format (LLVM style). Exact duplicate (input, output) pairs are removed. | |
| - **SAILR (`decompiler_test`).** All usable O0 output of the [SAILR artifact](https://github.com/mahaloz/sailr-eval): | |
| 23 projects, each source function paired with the output of up to five decompilers. A pair is kept only if | |
| pyjoern can build a CFG for the named function on both sides. The source side is the artifact's normalized, | |
| preprocessed source. | |
| - **Contamination guards.** No Gentoo package whose version-independent name matches a SAILR project, no | |
| Gentoo row whose decompiled input occurs in SAILR, and no exact-input overlap between any two splits. | |
| ## Things to know | |
| 1. **Unstripped inputs in train/val/test.** Gentoo binaries keep DWARF and symbols, so IDA output for | |
| `train`/`val`/`test` typically retains real identifiers, types and even label names. `decompiler_test` | |
| inputs use generic names (`a1`, `param_1`, `struct_0 *a0`, ...), so it measures a substantial distribution shift. | |
| 2. **Pairs are matched by name, not proven equivalent.** There is no address- or line-level alignment, and source | |
| can contain code that the compiler removed (for example `assert` macros). Identical decompiler output can map | |
| to different sources: in `train`, 5,078 distinct inputs occur with more than one distinct `output` (for example | |
| compiler/CRT stubs and trivial one-liners). | |
| 3. **CFG-buildability was required only for `decompiler_test`.** `train`, `val` and `test` rows were not filtered on it. | |
| 4. **Exact deduplication only.** Near-duplicates, forks and vendored copies can remain; leakage checks are exact-match. | |
| 5. **Skew.** Large projects dominate: 121 of the 1,972 `train` packages hold half of the rows, two packages hold half | |
| of `val` and half of `test`, and three projects (openssh-portable, bash, coreutils) hold 49% of `decompiler_test`. | |
| Read aggregate metrics per repository or with a repository-clustered bootstrap. Because GED is heavy-tailed, | |
| the exact-match rate (GED = 0) is the more stable summary than the mean. | |
| 6. **Verbatim upstream strings.** Functions are copied from public projects and can contain strings that resemble | |
| credentials (PEM header markers in key parsers; one public Amazon API access-key ID in glyr's `generic_amazon_url`). | |
| ## License and provenance | |
| The `output` side is source code from open-source projects (named in `repo_name`) under their own, varying licenses | |
| (for example GPL, LGPL, BSD, MIT); the `input` side is decompiler output for binaries built from that code. This | |
| compilation is provided for research use. You are responsible for complying with the licenses of the upstream projects. | |
| Upstream artifacts: | |
| - VarBERT: K. K. Pal et al., "Len or index or count, anything but v1": Predicting Variable Names in Decompilation | |
| Output with Transfer Learning. IEEE Symposium on Security and Privacy, 2024. | |
| - SAILR: Z. L. Basque et al., Ahoy SAILR! There is No Need to DREAM of C: A Compiler-Aware Structuring Algorithm | |
| for Binary Decompilation. USENIX Security Symposium, 2024. | |