#!/usr/bin/env python3 """Build the mash finetune dataset: (mangled | natural-language) -> correct command. Sources, in order of quality: 1. Your own accepted fixes from ~/.fash/events.jsonl (kind=fix/args with a chosen command) — real human pairs, mixed in automatically. 2. tldr-pages (github.com/tldr-pages/tldr, CC-BY-4.0): canonical example invocations for ~3000 commands, with per-example descriptions. Descriptions become natural-language -> command pairs; the commands get synthetically mangled into typo -> command pairs. Mangling taxonomy (mirrors how commands really break — cf. thefuck's rules): transposed chars (gti status), dropped chars (grp), adjacent-key typos (gir status), doubled chars, single/double dash confusion (-help / --l), merged words (cd.. / gitpush), and stripped quotes. Output: train/valid/test .jsonl in mlx-lm chat format, ready for `mlx_lm.lora`. Usage: uv run python training/build_dataset.py --out training/data uv run python training/build_dataset.py --out training/data --max-pairs 20000 --no-events """ from __future__ import annotations import argparse import io import json import random import re import sys import urllib.request import zipfile from pathlib import Path # single source of truth for the context-header format Mash sees at inference sys.path.insert(0, str(Path(__file__).parent.parent)) from fash.llm.prompts import local_context_block # noqa: E402 SYSTEM_PROMPT = "Return the shell command the user most likely wants. Reply with the command only." TLDR_ZIP_URL = "https://github.com/tldr-pages/tldr/archive/refs/heads/main.zip" TLDR_SECTIONS = ("pages/common/", "pages/osx/", "pages/linux/") EVENTS_PATH = Path("~/.fash/events.jsonl").expanduser() # ------------------------------------------------------------------ tldr parsing _EXAMPLE_RE = re.compile(r"^- (?P.+?):\s*$") _CODE_RE = re.compile(r"^`(?P.+)`\s*$") _PLACEHOLDER_RE = re.compile(r"\{\{(.+?)\}\}") # Concrete scenarios: the same noun fills the command placeholder AND rewrites # the description, so NL pairs read like real requests ("open the settings # file" -> `joe settings.json`) instead of template-speak mapped to arbitrary # filenames. # Each noun has several plausible concrete forms; exactly ONE appears in the # synthetic directory listing, and the command must use that one — teaching the # model to resolve "the settings file" against what actually exists. FILE_SCENARIOS = [ ("settings", ["settings.json", "settings.toml", "settings.yaml", "settings.ini"]), ("config", ["config.yaml", "config.json", "config.toml"]), ("notes", ["notes.txt", "notes.md"]), ("readme", ["README.md", "README.rst", "readme.txt"]), ("log", ["app.log", "server.log", "debug.log"]), ("deploy script", ["deploy.sh", "deploy.py"]), ("data", ["data.csv", "data.json"]), ("backup", ["backup.tar.gz", "backup.zip"]), ("env", [".env", ".env.local", ".env.production"]), ] DIR_SCENARIOS = [ ("source", ["./src"]), ("build", ["./build", "./dist"]), ("project", ["~/projects/demo"]), ("downloads", ["~/Downloads"]), ("temp", ["/tmp/scratch"]), ] LISTING_DISTRACTORS = [ "main.py", "package.json", "Makefile", ".gitignore", "src/", "tests/", "index.ts", "Dockerfile", "pyproject.toml", "LICENSE", "app.py", "utils.py", ".git/", "docs/", "scripts/", "requirements.txt", ] CWD_POOL = ["~/projects/demo", "~/work/api", "~/code/webapp", "/opt/services/worker", "~/dev/tool"] _FILE_PLACEHOLDER_RE = re.compile(r"path/to/.*file|filename|file", re.I) _DIR_PLACEHOLDER_RE = re.compile(r"path/to/.*dir|directory|folder", re.I) _PLACEHOLDER_VALUES = [ (re.compile(r"branch", re.I), "main"), (re.compile(r"remote", re.I), "origin"), (re.compile(r"url|link", re.I), "https://example.com"), (re.compile(r"package|module|library", re.I), "requests"), (re.compile(r"port", re.I), "8080"), (re.compile(r"pid|process_id", re.I), "12345"), (re.compile(r"user(name)?", re.I), "alice"), (re.compile(r"host|server|ip", re.I), "example.com"), (re.compile(r"pattern|regex|search_term|query", re.I), "TODO"), (re.compile(r"message|commit", re.I), '"update readme"'), (re.compile(r"image", re.I), "ubuntu"), (re.compile(r"container", re.I), "web"), (re.compile(r"version|tag", re.I), "1.2.0"), (re.compile(r"count|number|n\b", re.I), "5"), (re.compile(r"name", re.I), "demo"), ] def _fill_static(inner: str) -> str: for pattern, value in _PLACEHOLDER_VALUES: if pattern.search(inner): return value # fall back to the placeholder text itself, de-templated token = inner.strip().split("/")[-1] or "value" return re.sub(r"[^A-Za-z0-9._-]", "", token) or "value" _GENERIC_FILE_RE = re.compile(r"\b(?:a|the)\s+(?:specific|specified|given|particular)\s+files?\b|\ba file\b", re.I) _GENERIC_DIR_RE = re.compile( r"\b(?:a|the)\s+(?:specific|specified|given|particular)\s+(?:directory|folder)\b|\ba (?:directory|folder)\b", re.I ) def _pick_scenario(scenarios: list, hints: str, rng: random.Random) -> tuple[str, list[str]]: """Prefer the scenario the example already talks about ('config', 'log', …).""" for noun, variants in scenarios: if noun.split()[0] in hints: return noun, variants return rng.choice(scenarios) def make_listing(must_contain: list[str], rng: random.Random) -> list[str]: """A plausible cwd listing containing the target entries plus distractors. Distractors never include confusable siblings of the targets, so exactly one 'settings.*' (etc.) exists and the model must use the one that's there. """ entries = set(must_contain) entries.update(rng.sample(LISTING_DISTRACTORS, rng.randint(4, 8))) return sorted(entries, key=str.lower) def fill_example(description: str, command_template: str, rng: random.Random) -> tuple[str, str, str]: """Fill placeholders with a concrete scenario; rewrite the description to match; return a context header grounding the choice in a directory listing. 'Open a specific file:' + `joe {{path/to/file}}` -> ('Open the settings file:', 'joe settings.toml', 'cwd: ~/work/api\\nfiles: .git/ Makefile settings.toml src/') """ hints = f"{description} {command_template}".lower() file_noun, file_variants = _pick_scenario(FILE_SCENARIOS, hints, rng) file_value = rng.choice(file_variants) dir_noun, dir_variants = _pick_scenario(DIR_SCENARIOS, hints, rng) dir_value = rng.choice(dir_variants) used = {"file": False, "dir": False} typed_files: list[str] = [] def _fill(match: re.Match) -> str: inner = match.group(1).split("|")[0] if _DIR_PLACEHOLDER_RE.search(inner): used["dir"] = True return dir_value if _FILE_PLACEHOLDER_RE.search(inner): base = inner.strip().split("/")[-1] # extension-typed placeholders ({{path/to/file.pam}}) keep their # extension — `pamfile settings.json` would be nonsense if re.search(r"\.[A-Za-z0-9]{1,6}$", base): cleaned = re.sub(r"[^A-Za-z0-9._-]", "", base) typed_files.append(cleaned) return cleaned used["file"] = True return file_value return _fill_static(inner) command = _PLACEHOLDER_RE.sub(_fill, command_template).strip() context = "" targets: list[str] = [] if used["file"]: description = _GENERIC_FILE_RE.sub(f"the {file_noun} file", description) targets.append(file_value) targets.extend(typed_files) if used["dir"]: description = _GENERIC_DIR_RE.sub(f"the {dir_noun} directory", description) if dir_value.startswith("./"): targets.append(dir_value[2:] + "/") if targets: context = local_context_block(rng.choice(CWD_POOL), make_listing(targets, rng)) return description, command, context def parse_tldr_page(text: str) -> list[tuple[str, str]]: """Return (description, command_template) pairs from one tldr page body. Placeholders are left intact — fill_example() resolves them per example so the description and the filled command stay coherent. """ pairs: list[tuple[str, str]] = [] description = "" for line in text.splitlines(): described = _EXAMPLE_RE.match(line) if described: description = described.group("desc").strip() continue code = _CODE_RE.match(line) if code: command = code.group("cmd").strip() if command and len(command) <= 160 and not command.startswith("#"): pairs.append((description, command)) description = "" return pairs def load_tldr_pairs(cache_dir: Path) -> list[tuple[str, str]]: cache_dir.mkdir(parents=True, exist_ok=True) zip_path = cache_dir / "tldr-main.zip" if zip_path.exists() and not zipfile.is_zipfile(zip_path): print("cached tldr zip is corrupt (interrupted download?) — refetching") zip_path.unlink() if not zip_path.exists(): print(f"downloading tldr-pages ({TLDR_ZIP_URL}) …") partial = zip_path.with_suffix(".part") with urllib.request.urlopen(TLDR_ZIP_URL, timeout=120) as response: partial.write_bytes(response.read()) if not zipfile.is_zipfile(partial): partial.unlink(missing_ok=True) raise SystemExit("downloaded tldr archive is not a valid zip — try again") partial.rename(zip_path) pairs: list[tuple[str, str]] = [] with zipfile.ZipFile(io.BytesIO(zip_path.read_bytes())) as archive: for name in archive.namelist(): if not name.endswith(".md"): continue if not any(section in name for section in TLDR_SECTIONS): continue pairs.extend(parse_tldr_page(archive.read(name).decode("utf-8", errors="replace"))) return pairs # ------------------------------------------------------------------ casual requests _STOPWORDS = {"a", "an", "the", "your", "specific", "given", "particular", "certain", "currently"} _VERB_SWAPS = [ (re.compile(r"^display\b"), "show"), (re.compile(r"^print\b"), "show"), (re.compile(r"^view\b"), "show"), (re.compile(r"^remove\b"), "delete"), (re.compile(r"^execute\b"), "run"), ] def casualize(description: str, rng: random.Random) -> list[str]: """Terse request variants of a tldr description — how people actually type. 'Commit staged files to the repository with a message:' -> ['commit staged files with message', 'commit staged files'] """ base = description.rstrip(":").strip().lower() if not base: return [] # cut trailing clauses base = base.split(";")[0].split(". ")[0] words = [w for w in base.split() if w not in _STOPWORDS] if not words: return [] terse = " ".join(words) for pattern, replacement in _VERB_SWAPS: terse = pattern.sub(replacement, terse) variants = [terse] # even shorter: cut at the first comma or first preposition-y tail comma_cut = terse.split(",")[0].strip() if comma_cut != terse and len(comma_cut.split()) >= 2: variants.append(comma_cut) words = terse.split() if len(words) > 5: for cut_word in ("to", "from", "in", "with", "using", "for"): if cut_word in words[2:]: short = " ".join(words[: words[2:].index(cut_word) + 2]).strip() if len(short.split()) >= 2: variants.append(short) break # dedupe preserving order; return at most 2, randomly favoring the shortest seen: list[str] = [] for variant in variants: if variant not in seen: seen.append(variant) if len(seen) > 2: seen = [seen[0], rng.choice(seen[1:])] return seen # ------------------------------------------------------------------ common head typos # highest-frequency real-world command typos; each always yields a training pair COMMON_TYPOS = { "git": ["gti", "gt", "gitt", "igt"], "grep": ["gerp", "grpe", "gerep"], "ls": ["sl", "lls", "l s"], "cd": ["dc", "cd.."], "clear": ["celar", "claer", "clera"], "sudo": ["suod", "sudp", "sduo"], "python": ["pyhton", "pytohn", "pythno"], "python3": ["pyhton3", "pytohn3"], "docker": ["dokcer", "docekr", "dcoker"], "kubectl": ["kubeclt", "kubctl", "kubetcl"], "npm": ["nmp", "npn"], "make": ["mkae", "amke"], "ssh": ["shh", "ssh-"], "curl": ["culr", "crul"], "brew": ["brwe", "berw"], "cargo": ["cagro", "carog"], "vim": ["ivm", "vmi"], "tar": ["tra", "atr"], "find": ["fnid", "fidn"], "chmod": ["chmdo", "cmhod"], } def head_typo(command: str, rng: random.Random) -> str | None: head, _, rest = command.partition(" ") typos = COMMON_TYPOS.get(head) if not typos: return None mangled_head = rng.choice(typos) return f"{mangled_head} {rest}".strip() # ------------------------------------------------------------------ manglers QWERTY_NEIGHBORS = { "q": "wa", "w": "qes", "e": "wrd", "r": "etf", "t": "ryg", "y": "tuh", "u": "yij", "i": "uok", "o": "ipl", "p": "o", "a": "qsz", "s": "adwx", "d": "sfec", "f": "dgrv", "g": "fhtb", "h": "gjyn", "j": "hkum", "k": "jli", "l": "ko", "z": "asx", "x": "zsdc", "c": "xdfv", "v": "cfgb", "b": "vghn", "n": "bhjm", "m": "njk", } def _word_spans(command: str) -> list[tuple[int, int]]: """Spans of alphabetic words worth corrupting (commands/subcommands, not values).""" spans = [] for match in re.finditer(r"[A-Za-z]{3,}", command): # don't corrupt inside quotes prefix = command[: match.start()] if prefix.count('"') % 2 == 0 and prefix.count("'") % 2 == 0: spans.append(match.span()) return spans[:3] # bias corruption toward the head of the line def mangle_transpose(command: str, rng: random.Random) -> str | None: spans = _word_spans(command) if not spans: return None start, end = rng.choice(spans) if end - start < 3: return None i = rng.randrange(start, end - 1) chars = list(command) chars[i], chars[i + 1] = chars[i + 1], chars[i] return "".join(chars) def mangle_drop(command: str, rng: random.Random) -> str | None: spans = _word_spans(command) if not spans: return None start, end = rng.choice(spans) i = rng.randrange(start, end) return command[:i] + command[i + 1 :] def mangle_adjacent(command: str, rng: random.Random) -> str | None: spans = _word_spans(command) if not spans: return None start, end = rng.choice(spans) candidates = [i for i in range(start, end) if command[i].lower() in QWERTY_NEIGHBORS] if not candidates: return None i = rng.choice(candidates) replacement = rng.choice(QWERTY_NEIGHBORS[command[i].lower()]) if command[i].isupper(): replacement = replacement.upper() return command[:i] + replacement + command[i + 1 :] def mangle_double(command: str, rng: random.Random) -> str | None: spans = _word_spans(command) if not spans: return None start, end = rng.choice(spans) i = rng.randrange(start, end) return command[:i] + command[i] + command[i:] def mangle_dashes(command: str, rng: random.Random) -> str | None: double = list(re.finditer(r"(? str | None: spaces = [i for i, ch in enumerate(command) if ch == " "] if not spaces: return None i = rng.choice(spaces[:2]) # merging happens near the head (cd.., gitpush) return command[:i] + command[i + 1 :] def mangle_unquote(command: str, rng: random.Random) -> str | None: match = re.search(r"([\"'])(.+?)\1", command) if not match: return None return command[: match.start()] + match.group(2) + command[match.end() :] def mangle_sudo(command: str, rng: random.Random) -> str | None: # missing sudo (the common real-world case) or a spurious one if command.startswith("sudo "): return command[len("sudo ") :] if rng.random() < 0.3 and not command.startswith(("cd", "export")): return "sudo " + command return None def mangle_prompt_prefix(command: str, rng: random.Random) -> str | None: # copy-pasted from docs with the shell prompt still attached return ("$ " if rng.random() < 0.8 else "> ") + command def mangle_dup_word(command: str, rng: random.Random) -> str | None: head, sep, rest = command.partition(" ") if not sep: return None return f"{head} {head} {rest}" _SMART_SWAPS = [("'", "’"), ('"', "“"), ("--", "–")] def mangle_smart_chars(command: str, rng: random.Random) -> str | None: # smart quotes / en-dashes picked up from web pages applicable = [(a, b) for a, b in _SMART_SWAPS if a in command] if not applicable: return None plain, smart = rng.choice(applicable) return command.replace(plain, smart, 1) MANGLERS = [ (mangle_transpose, 0.24), (mangle_drop, 0.12), (mangle_adjacent, 0.16), (mangle_double, 0.08), (mangle_dashes, 0.09), (mangle_merge_words, 0.08), (mangle_unquote, 0.04), (mangle_sudo, 0.08), (mangle_prompt_prefix, 0.06), (mangle_dup_word, 0.03), (mangle_smart_chars, 0.02), ] def mangle(command: str, rng: random.Random) -> str | None: """Apply one weighted-random corruption; occasionally two.""" result = command rounds = 2 if rng.random() < 0.15 else 1 changed = False for _ in range(rounds): # weighted permutation (Efraimidis-Spirakis) — tries every mangler once, # in weight-biased order, so an applicable one is never skipped ordered = sorted(MANGLERS, key=lambda mw: rng.random() ** (1.0 / mw[1]), reverse=True) for fn, _ in ordered: mangled = fn(result, rng) if mangled and mangled != result: result = mangled changed = True break return result if changed and result != command else None # ------------------------------------------------------------------ nl2bash NL2BASH_CM_URL = "https://raw.githubusercontent.com/TellinaTool/nl2bash/master/data/bash/all.cm" NL2BASH_NL_URL = "https://raw.githubusercontent.com/TellinaTool/nl2bash/master/data/bash/all.nl" def load_nl2bash_pairs(cache_dir: Path) -> list[tuple[str, str]]: """(description, command) pairs from the NL2Bash corpus (MIT). Best-effort.""" cache_dir.mkdir(parents=True, exist_ok=True) texts: list[str] = [] for url, name in ((NL2BASH_NL_URL, "nl2bash.nl"), (NL2BASH_CM_URL, "nl2bash.cm")): path = cache_dir / name try: if not path.exists(): with urllib.request.urlopen(url, timeout=60) as response: path.write_bytes(response.read()) texts.append(path.read_text(encoding="utf-8", errors="replace")) except (OSError, urllib.error.URLError): print(f"note: could not fetch {name} — continuing without nl2bash") return [] descriptions, commands = texts[0].splitlines(), texts[1].splitlines() pairs: list[tuple[str, str]] = [] for desc, cmd in zip(descriptions, commands): desc, cmd = desc.strip(), cmd.strip() if desc and cmd and len(cmd) <= 120: pairs.append((desc, cmd)) return pairs # ------------------------------------------------------------------ fash events _COMMAND_FILE_RE = re.compile( r"\b[\w.-]+\.(?:gz|tgz|tar|zip|txt|csv|tsv|json|yaml|yml|toml|md|log|py|sh|rb|js|ts|go|rs|c|cpp|h|pdf|png|jpg|mov|mp4|conf|cfg|ini|sql|env)\b" ) def extract_files_from_command(command: str) -> list[str]: """Concrete filenames already present in a command (nl2bash rows have no placeholders) — they seed a listing so context-conditioning covers that corpus too.""" return list(dict.fromkeys(_COMMAND_FILE_RE.findall(command)))[:3] def load_event_pairs() -> list[tuple[str, str]]: """Accepted fixes from your own fash usage: the highest-quality pairs.""" if not EVENTS_PATH.exists(): return [] pairs: list[tuple[str, str]] = [] with EVENTS_PATH.open("r", encoding="utf-8") as handle: for raw in handle: try: event = json.loads(raw) except json.JSONDecodeError: continue if event.get("kind") in {"fix", "args"} and event.get("chosen") and event.get("line"): pairs.append((str(event["line"]), str(event["chosen"]))) return pairs # ------------------------------------------------------------------ assembly def row(user: str, assistant: str) -> dict: return { "messages": [ {"role": "system", "content": SYSTEM_PROMPT}, {"role": "user", "content": user}, {"role": "assistant", "content": assistant}, ] } def build(out_dir: Path, max_pairs: int, seed: int, include_events: bool, nl_share: float) -> None: rng = random.Random(seed) cache = Path(__file__).parent / ".cache" tldr = load_tldr_pairs(cache) print(f"tldr examples: {len(tldr)}") nl2bash = load_nl2bash_pairs(cache) print(f"nl2bash examples: {len(nl2bash)}") corpus = tldr + nl2bash rng.shuffle(corpus) def with_context(user: str, context: str, probability: float) -> str: """Attach the cwd/files header some of the time — Mash must work both with context (to resolve 'the settings file' against the listing) and bare (context capture may be unavailable).""" if context and rng.random() < probability: return f"{context}\n{user}" return user rows: list[dict] = [] for raw_description, template in corpus: description, command, context = fill_example(raw_description, template, rng) if not command or len(command) > 120: continue if not context: named = extract_files_from_command(command) if named: context = local_context_block(rng.choice(CWD_POOL), make_listing(named, rng)) elif rng.random() < 0.08: # irrelevant listing: teaches ignoring context that doesn't help context = local_context_block(rng.choice(CWD_POOL), make_listing([], rng)) mangled = mangle(command, rng) if mangled: rows.append(row(with_context(mangled, context, 0.5), command)) typo = head_typo(command, rng) if typo: rows.append(row(typo, command)) if description and rng.random() < nl_share: for variant in casualize(description, rng): # NL requests get the listing most of the time: choosing the # file that actually exists is the whole point rows.append(row(with_context(variant, context, 0.85), command)) # identity pairs: correct input maps to itself, so the model learns not # to over-correct (its echo doubles as an "already fine" signal). Kept # small — at ~12% of rows a 1.5B run learned to echo 39% of genuinely # garbled inputs; ~5% preserves the signal without teaching timidity. if rng.random() < 0.10: rows.append(row(command, command)) if len(rows) >= max_pairs: break event_rows: list[dict] = [] if include_events: event_pairs = list(dict.fromkeys(load_event_pairs())) # dedupe, keep order print(f"pairs from your fash history: {len(event_pairs)}") event_rows = [row(garbled, chosen) for garbled, chosen in event_pairs] rows.extend(event_rows) # once each — upweighting happens after the split rng.shuffle(rows) n = len(rows) valid_n = max(64, int(n * 0.02)) if n > 200 else max(1, n // 10) splits = { "valid": rows[:valid_n], "test": rows[valid_n : valid_n * 2], "train": rows[valid_n * 2 :], } if event_rows: # 3x weight for real accepted-fix pairs, applied only inside train so # duplicates can never leak into valid/test event_keys = {json.dumps(r, sort_keys=True) for r in event_rows} extra = [r for r in splits["train"] if json.dumps(r, sort_keys=True) in event_keys] splits["train"].extend(extra * 2) rng.shuffle(splits["train"]) out_dir.mkdir(parents=True, exist_ok=True) for name, split_rows in splits.items(): path = out_dir / f"{name}.jsonl" with path.open("w", encoding="utf-8") as handle: for item in split_rows: handle.write(json.dumps(item, ensure_ascii=False) + "\n") print(f"{path}: {len(split_rows)} rows") def main() -> None: parser = argparse.ArgumentParser(description=__doc__) parser.add_argument("--out", type=Path, default=Path(__file__).parent / "data") parser.add_argument("--max-pairs", type=int, default=42000) parser.add_argument("--seed", type=int, default=7) parser.add_argument("--nl-share", type=float, default=0.4, help="fraction of examples that also emit natural-language request pairs") parser.add_argument("--no-events", dest="events", action="store_false", help="skip pairs from ~/.fash/events.jsonl") args = parser.parse_args() build(args.out, args.max_pairs, args.seed, args.events, args.nl_share) if __name__ == "__main__": main()