bialy-dataset / training /code-rank /scripts /decide /rerank /synthesize_sites.py
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#!/usr/bin/env python3
"""Write training rows for the candidate shapes the Go dumps do not cover.
The head learns "Task / Candidate" pairs, so every shape a site emits must be
in the training set. `decide-rerank eval --dump` covers file heads (structure),
symbols (definitions, repomap tags, windows) from real site calls. This script
writes the remaining shapes in the same dump format, with the exact candidate
text each site builds:
lines "File: path\\nLine N: text" project search hits and call sites
neighbors "File: path\\n<why>" fit-tier neighbour stubs
imports "Import (kind): from -> to" fit-tier import edges
next "Next: read path lines=A-B\\n<why>" follow-up calls
pages "Page: url\\nTitle: ...\\n..." verified web pages
Code shapes come from harvested units and the repository files; pages come
from public documentation sites fetched once into a cache. Labels follow the
site's own structure on the engine's 0..4 rubric.
Usage:
synthesize_sites.py code --units units.jsonl --pairs pairs.jsonl --repo PATH --out rows.jsonl [--limit N]
synthesize_sites.py pages --cache .task/decide/pages --out rows.jsonl [--limit N]
"""
import argparse
import hashlib
import html
import json
import os
import random
import re
import sys
import time
import urllib.parse
import urllib.request
from collections import defaultdict
from html.parser import HTMLParser
LINE_CANDIDATES = 24
FILE_CANDIDATES = 24
EXCERPT_RUNES = 200
PROBE_TEXT_RUNES = 400
def read_jsonl(path):
with open(path, encoding="utf-8") as fh:
for line in fh:
line = line.strip()
if line:
yield json.loads(line)
def write_jsonl(path, rows):
os.makedirs(os.path.dirname(path) or ".", exist_ok=True)
with open(path, "w", encoding="utf-8") as fh:
for row in rows:
fh.write(json.dumps(row, ensure_ascii=False) + "\n")
def bound(text, n):
text = text.strip()
return text if len(text) <= n else text[:n]
def row(site, pair, cands):
return {"site": site, "repo": pair["repo"], "task": pair["task"], "query": pair.get("query", ""),
"file": pair["file"], "symbol": pair["symbol"], "line": pair["line"], "lang": pair.get("lang", ""),
"candidates": cands}
def cand(text, file, label, symbol="", line=0):
# The Go dump carries lexical scores; synthetic rows carry the label the
# trainer needs and a lexical placeholder that orders the same way.
return {"text": text, "file": file, "symbol": symbol, "line": line, "lexical": float(label), "target": label == 4, "label": label}
class Corpus:
def __init__(self, units, root):
self.root = root
self.units = units
self.by_file = defaultdict(list)
for u in units:
self.by_file[u["file"]].append(u)
self.files = sorted(self.by_file)
self._lines = {}
def lines(self, rel):
if rel not in self._lines:
try:
with open(os.path.join(self.root, rel), encoding="utf-8", errors="replace") as fh:
self._lines[rel] = fh.read().split("\n")
except OSError:
self._lines[rel] = []
return self._lines[rel]
def doc_of(self, rel):
for u in self.by_file.get(rel, []):
if u.get("doc"):
return u["doc"]
return ""
def symbol_uses(corpus, symbol, skip_file, rng, limit):
"""Lines in other files that mention the symbol: call sites."""
pattern = re.compile(r"\b" + re.escape(symbol) + r"\b")
out = []
files = corpus.files[:]
rng.shuffle(files)
for rel in files:
if rel == skip_file:
continue
for i, text in enumerate(corpus.lines(rel)):
if pattern.search(text):
out.append((rel, i + 1, text.strip()))
break
if len(out) >= limit:
break
return out
def random_lines(corpus, rng, limit, skip_file):
out = []
for _ in range(limit * 4):
rel = rng.choice(corpus.files)
if rel == skip_file:
continue
lines = corpus.lines(rel)
if not lines:
continue
i = rng.randrange(len(lines))
if lines[i].strip():
out.append((rel, i + 1, lines[i].strip()))
if len(out) >= limit:
break
return out
def line_text(rel, n, text):
return "File: %s\nLine %d: %s" % (rel, n, bound(text, EXCERPT_RUNES))
def lines_row(corpus, pair, rng):
lines = corpus.lines(pair["file"])
if not lines or pair["line"] > len(lines):
return None
definition = lines[pair["line"] - 1].strip()
cands = [cand(line_text(pair["file"], pair["line"], definition), pair["file"], 4, pair["symbol"], pair["line"])]
for rel, n, text in symbol_uses(corpus, pair["symbol"], pair["file"], rng, 6):
cands.append(cand(line_text(rel, n, text), rel, 2, "", n))
for rel, n, text in random_lines(corpus, rng, LINE_CANDIDATES - len(cands), pair["file"]):
cands.append(cand(line_text(rel, n, text), rel, 0, "", n))
rng.shuffle(cands)
return row("project_search", pair, cands)
def neighbors_row(corpus, pair, rng):
target_dir = os.path.dirname(pair["file"])
cands = [cand("File: %s\n%s" % (pair["file"], bound(corpus.doc_of(pair["file"]) or "defines " + pair["symbol"], EXCERPT_RUNES)), pair["file"], 4)]
same_dir = [f for f in corpus.files if os.path.dirname(f) == target_dir and f != pair["file"]]
others = [f for f in corpus.files if os.path.dirname(f) != target_dir]
rng.shuffle(same_dir)
rng.shuffle(others)
for f in same_dir[:6]:
cands.append(cand("File: %s\n%s" % (f, bound(corpus.doc_of(f) or "sibling in " + target_dir, EXCERPT_RUNES)), f, 2))
for f in others[: FILE_CANDIDATES - len(cands)]:
cands.append(cand("File: %s\n%s" % (f, bound(corpus.doc_of(f) or "elsewhere in the tree", EXCERPT_RUNES)), f, 0))
rng.shuffle(cands)
return row("summarize_neighbors", pair, cands)
IMPORT_RE = re.compile(r'^\s*(?:import|from|use|require|#include|using)\s+["<]?([\w./:\-]+)', re.M)
# Go and similar block imports list one quoted path per line.
IMPORT_BLOCK_RE = re.compile(r'^\s*(?:\w+\s+)?"([\w./\-]+)"\s*$', re.M)
def imports_of(corpus, rel):
text = "\n".join(corpus.lines(rel)[:80])
found = [m.group(1) for m in IMPORT_RE.finditer(text)] + [m.group(1) for m in IMPORT_BLOCK_RE.finditer(text)]
return list(dict.fromkeys(found))[:8]
def imports_row(corpus, pair, rng):
own = imports_of(corpus, pair["file"])
if not own:
return None
cands = [cand("Import (outbound): %s -> %s" % (pair["file"], to), pair["file"], 3) for to in own]
others = corpus.files[:]
rng.shuffle(others)
for f in others:
if f == pair["file"]:
continue
for to in imports_of(corpus, f)[:2]:
cands.append(cand("Import (outbound): %s -> %s" % (f, to), f, 0))
if len(cands) >= FILE_CANDIDATES:
break
cands[0]["label"], cands[0]["target"], cands[0]["lexical"] = 4, True, 4.0
rng.shuffle(cands)
return row("summarize_imports", pair, cands)
def next_row(corpus, pair, rng):
def action(u, why, label):
end = u["line"] + 23
text = "Next: read %s lines=%d-%d\n%s" % (u["file"], u["line"], end, why)
return cand(text, u["file"], label, u["symbol"], u["line"])
unit = next((u for u in corpus.by_file[pair["file"]] if u["symbol"] == pair["symbol"] and u["line"] == pair["line"]), None)
if unit is None:
return None
cands = [action(unit, "read %s for detail" % unit["symbol"], 4)]
for u in corpus.by_file[pair["file"]]:
if u is not unit and len(cands) < 6:
cands.append(action(u, "read %s for detail" % u["symbol"], 2))
others = [u for u in corpus.units if u["file"] != pair["file"]]
for u in rng.sample(others, min(len(others), FILE_CANDIDATES - len(cands))):
cands.append(action(u, "read %s for detail" % u["symbol"], 0))
rng.shuffle(cands)
return row("summarize_next_actions", pair, cands)
def code_mode(args):
rng = random.Random(args.seed)
units = list(read_jsonl(args.units))
pairs = list(read_jsonl(args.pairs))
rng.shuffle(pairs)
if args.limit:
pairs = pairs[: args.limit]
corpus = Corpus(units, args.repo)
rows = []
for p in pairs:
for make in (lines_row, neighbors_row, imports_row, next_row):
r = make(corpus, p, rng)
if r:
rows.append(r)
write_jsonl(args.out, rows)
counts = defaultdict(int)
for r in rows:
counts[r["site"]] += 1
print("wrote %d rows to %s: %s" % (len(rows), args.out, dict(counts)), file=sys.stderr)
# --- pages -----------------------------------------------------------------
DOC_INDEXES = [
("python", "https://docs.python.org/3/library/index.html", "https://docs.python.org/3/library/"),
("rust", "https://doc.rust-lang.org/std/index.html", "https://doc.rust-lang.org/std/"),
("go", "https://go.dev/doc/", "https://go.dev/doc/"),
("mdn-js", "https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects", "https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/"),
("mdn-css", "https://developer.mozilla.org/en-US/docs/Web/CSS/Reference", "https://developer.mozilla.org/en-US/docs/Web/CSS/"),
("postgres", "https://www.postgresql.org/docs/current/sql-commands.html", "https://www.postgresql.org/docs/current/sql-"),
("git", "https://git-scm.com/docs", "https://git-scm.com/docs/git-"),
("kubernetes", "https://kubernetes.io/docs/concepts/", "https://kubernetes.io/docs/concepts/"),
]
class Page(HTMLParser):
def __init__(self):
super().__init__()
self.title = ""
self.description = ""
self.headings = []
self.text = []
self.links = []
self._stack = []
def handle_starttag(self, tag, attrs):
a = dict(attrs)
self._stack.append(tag)
if tag == "meta" and a.get("name") == "description":
self.description = a.get("content", "")
if tag == "a" and a.get("href"):
self.links.append(a["href"])
def handle_endtag(self, tag):
if self._stack and self._stack[-1] == tag:
self._stack.pop()
def handle_data(self, data):
if not self._stack:
return
tag = self._stack[-1]
text = data.strip()
if not text:
return
if tag == "title" and not self.title:
self.title = text
elif tag in ("h1", "h2", "h3") and len(self.headings) < 8:
self.headings.append(text)
elif tag in ("p", "li", "td", "pre", "code") and len(" ".join(self.text)) < 3000:
self.text.append(text)
def fetch(url, cache):
key = hashlib.sha1(url.encode()).hexdigest()
path = os.path.join(cache, key + ".html")
if os.path.exists(path):
with open(path, encoding="utf-8", errors="replace") as fh:
return fh.read()
req = urllib.request.Request(url, headers={"User-Agent": "painted-wolf-rerank-corpus/1 (+bespoke experiment)"})
try:
with urllib.request.urlopen(req, timeout=20) as resp:
body = resp.read(600_000).decode("utf-8", errors="replace")
except Exception as exc: # noqa: BLE001 - a missing page is just skipped
print("skip %s: %s" % (url, exc), file=sys.stderr)
body = ""
os.makedirs(cache, exist_ok=True)
with open(path, "w", encoding="utf-8") as fh:
fh.write(body)
time.sleep(0.4)
return body
def parse_page(url, body):
p = Page()
try:
p.feed(body)
except Exception: # noqa: BLE001
return None
title = html.unescape(re.sub(r"\s+", " ", p.title))
if not title:
return None
return {"url": url, "title": title, "headings": [html.unescape(h) for h in p.headings],
"description": html.unescape(p.description), "sample": html.unescape(" ".join(p.text))[:PROBE_TEXT_RUNES], "links": p.links}
def page_text(pg):
parts = ["Page: " + pg["url"]]
if pg["title"]:
parts.append("Title: " + pg["title"])
if pg["headings"]:
parts.append("Headings: " + " | ".join(pg["headings"]))
if pg["description"]:
parts.append("Description: " + pg["description"])
if pg["sample"]:
parts.append(pg["sample"])
return "\n".join(parts)
def page_task(pg):
"""A request the page answers: its description without the title's words."""
words = {w.lower() for w in re.findall(r"[A-Za-z0-9_]+", pg["title"]) if len(w) > 2}
desc = re.split(r"(?<=[.!?])\s", pg["description"].strip(), maxsplit=1)[0] if pg["description"] else ""
if len(desc.split()) >= 5 and not ({w.lower() for w in re.findall(r"[A-Za-z0-9_]+", desc)} & words):
return desc
return ""
def pages_mode(args):
rng = random.Random(args.seed)
pages = []
for site, index_url, prefix in DOC_INDEXES:
index = parse_page(index_url, fetch(index_url, args.cache))
if not index:
continue
seen = set()
for href in index["links"]:
url = urllib.parse.urljoin(index_url, href).split("#")[0]
if not url.startswith(prefix) or url == index_url or url in seen:
continue
seen.add(url)
if len(seen) > args.per_site:
break
pg = parse_page(url, fetch(url, args.cache))
if pg:
pg["site"] = site
pages.append(pg)
rows = []
for pg in pages:
task = page_task(pg)
if not task:
continue
cands = [cand(page_text(pg), pg["url"], 4)]
same = [q for q in pages if q["site"] == pg["site"] and q is not pg]
other = [q for q in pages if q["site"] != pg["site"]]
for q in rng.sample(same, min(len(same), 5)):
cands.append(cand(page_text(q), q["url"], 1))
for q in rng.sample(other, min(len(other), 10)):
cands.append(cand(page_text(q), q["url"], 0))
rng.shuffle(cands)
rows.append({"site": "web_pages", "repo": pg["site"], "task": task, "file": pg["url"], "symbol": pg["title"], "line": 0, "candidates": cands})
if args.limit and len(rows) >= args.limit:
break
write_jsonl(args.out, rows)
print("fetched %d pages, wrote %d page rows to %s" % (len(pages), len(rows), args.out), file=sys.stderr)
def main():
ap = argparse.ArgumentParser(description=__doc__, formatter_class=argparse.RawDescriptionHelpFormatter)
sub = ap.add_subparsers(dest="mode", required=True)
code = sub.add_parser("code")
code.add_argument("--units", required=True)
code.add_argument("--pairs", required=True)
code.add_argument("--repo", required=True)
code.add_argument("--out", required=True)
code.add_argument("--limit", type=int, default=0)
code.add_argument("--seed", type=int, default=7)
pages = sub.add_parser("pages")
pages.add_argument("--cache", required=True)
pages.add_argument("--out", required=True)
pages.add_argument("--per-site", type=int, default=80)
pages.add_argument("--limit", type=int, default=0)
pages.add_argument("--seed", type=int, default=7)
args = ap.parse_args()
if args.mode == "code":
code_mode(args)
else:
pages_mode(args)
if __name__ == "__main__":
main()