Repo-split Stage 2: SSR content JSON API (#10)
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api/content_payloads.py
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355
api/content_payloads.py
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"""Payload builders for the SSR content API (backend/api/content_routes.py).
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These mirror backend/web/content.py's context builders — same underlying
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grading.climatology()/all_time_records()/etc. calls — but return plain JSON-safe
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dicts (raw floats, no Markup-wrapped HTML spans, no ContextVar-based unit
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rendering) instead of pre-rendered strings, so a caller doesn't need to be a
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Jinja/HTML consumer. Transitional duplication with content.py's own logic is
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expected here: Stage 3 of the repo-split rewrites content.py to call these
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endpoints via HTTP instead of computing in-process, at which point content.py's
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copies of this logic go away and this becomes the only implementation.
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"""
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import datetime
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import polars as pl
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from api.payloads import OBS_COLS
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from data import cities
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from data import city_events
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from data import grading
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MONTHS = ["january", "february", "march", "april", "may", "june",
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"july", "august", "september", "october", "november", "december"]
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MONTHS_TITLE = [m.capitalize() for m in MONTHS]
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MONTH_INDEX = {m: i + 1 for i, m in enumerate(MONTHS)}
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SEASONS = [
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("Winter", "Summer", [12, 1, 2], "Dec–Feb"),
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("Spring", "Autumn", [3, 4, 5], "Mar–May"),
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("Summer", "Winter", [6, 7, 8], "Jun–Aug"),
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("Autumn", "Spring", [9, 10, 11], "Sep–Nov"),
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]
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METRIC_LABELS = [
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("tmax", "High"), ("tmin", "Low"), ("feels", "Feels-like"),
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("humid", "Humidity"), ("wind", "Wind"), ("gust", "Gust"), ("precip", "Precip"),
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]
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_TEMP_METRICS = {"tmax", "tmin", "feels"}
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# Countries that actually use Fahrenheit. Mirrors content.py's F_COUNTRIES /
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# frontend/units.js's F_REGIONS — a test asserts all three stay identical.
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F_COUNTRIES = frozenset({"US", "PR", "GU", "VI", "AS", "MP", "UM",
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"BS", "BZ", "KY", "PW", "FM", "MH", "LR"})
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# 12 city chips for the homepage, geographically spread — mirrors content.py's
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# HOME_CITY_SLUGS exactly (a test asserts the two lists stay identical).
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HOME_CITY_SLUGS = (
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"new-york-city-new-york-us", "london-england-gb", "tokyo-jp",
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"sydney-new-south-wales-au", "sao-paulo-br", "lagos-ng",
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"mumbai-maharashtra-in", "mexico-city-mx", "cairo-eg",
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"toronto-ontario-ca", "berlin-state-of-berlin-de", "seattle-washington-us",
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)
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def unit_for_country(code: str | None) -> str:
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return "F" if (code or "").upper() in F_COUNTRIES else "C"
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def _month_doy(month_idx: int) -> int:
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return datetime.date(2001, month_idx, 15).timetuple().tm_yday
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def _titled(text: str, suffix: str = " · Thermograph", limit: int = 60) -> str:
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return text + suffix if len(text) + len(suffix) <= limit else text
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def _clamp_desc(text: str, limit: int = 155) -> str:
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text = " ".join(text.split())
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if len(text) <= limit:
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return text
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return text[:limit].rsplit(" ", 1)[0].rstrip(",;—-") + "…"
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def _temp_text(f, unit: str) -> str:
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if f is None:
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return "—"
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v = round((f - 32) * 5 / 9) if unit == "C" else round(f)
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return f"{v}°{unit}"
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def hub_payload() -> dict:
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groups = cities.by_country()
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return {
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"n_cities": sum(len(v) for v in groups.values()),
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"n_countries": len(groups),
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"countries": [
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{"country": country,
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"cities": [{"slug": c["slug"], "name": c["name"],
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"display": cities.display_name(c)} for c in group]}
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for country, group in groups.items()
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],
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}
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def _monthly_normals_raw(history) -> list[dict]:
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"""One row per month: raw high/low/precip means + the range-strip bounds."""
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rows = []
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for i, name in enumerate(MONTHS_TITLE, start=1):
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clim = grading.climatology(history, _month_doy(i))
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tmax, tmin, precip = clim.get("tmax"), clim.get("tmin"), clim.get("precip")
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rows.append({
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"name": name, "slug": MONTHS[i - 1],
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"high_f": tmax["mean"] if tmax else None,
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"low_f": tmin["mean"] if tmin else None,
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"range_lo_f": tmin["p10"] if tmin else None,
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"range_hi_f": tmax["p90"] if tmax else None,
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"precip_f": precip["mean"] if precip else None,
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})
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return rows
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def _extreme_raw(metric_rec, key: str) -> dict | None:
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if not metric_rec:
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return None
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return {"value_f": metric_rec[key], "date": metric_rec[f"{key}_date"]}
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def _period_records_raw(history, months: list[int]) -> dict:
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if len(months) == 1:
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sub = history.filter(pl.col("date").dt.month() == months[0])
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else:
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sub = history.filter(pl.col("date").dt.month().is_in(months))
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rec = grading.all_time_records(sub) if not sub.is_empty() else {}
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tmax, tmin = rec.get("tmax"), rec.get("tmin")
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return {
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"high": {"warm": _extreme_raw(tmax, "max"), "cold": _extreme_raw(tmax, "min")},
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"low": {"warm": _extreme_raw(tmin, "max"), "cold": _extreme_raw(tmin, "min")},
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}
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def _monthly_records_raw(history) -> list[dict]:
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return [
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{"name": name, "slug": MONTHS[i - 1], **_period_records_raw(history, [i])}
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for i, name in enumerate(MONTHS_TITLE, start=1)
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]
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def _seasonal_records_raw(history, lat: float) -> list[dict]:
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south = lat < 0
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return [
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{"name": (south_lbl if south else north_lbl), "span": span,
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**_period_records_raw(history, months)}
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for north_lbl, south_lbl, months, span in SEASONS
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]
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def _today_vs_normal_raw(history, recent) -> dict | None:
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if recent is None or recent.is_empty() or "date" not in recent.columns:
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return None
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today = datetime.date.today()
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observed = recent.filter(pl.col("date") <= today).sort("date")
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if observed.is_empty():
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return None
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row = observed.row(observed.height - 1, named=True)
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obs = {k: row[k] for k in OBS_COLS if k in row}
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graded = grading.grade_day(history, row["date"], obs)
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cards = []
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for key, label in METRIC_LABELS:
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g = graded.get(key)
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if not g:
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continue
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cards.append({
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"label": label, "metric": key, "value_f": g.get("value"),
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"percentile": g.get("percentile"), "grade": g.get("grade"), "cls": g.get("class"),
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})
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date = row["date"]
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return {"date": date.isoformat() if hasattr(date, "isoformat") else str(date), "cards": cards}
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def city_payload(request_origin: str, base: str, city: dict, history, recent=None) -> dict:
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"""The full /api/v2/content/city/{slug} payload. `recent` is the caller's
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already-fetched recent/forecast bundle (or None to skip today_vs_normal)."""
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display = cities.display_name(city)
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title = cities.title_name(city)
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years = history["date"].dt.year()
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year_range = [int(years.min()), int(years.max())]
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months = _monthly_normals_raw(history)
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warmest = max((m for m in months if m["high_f"] is not None), key=lambda m: m["high_f"], default=None)
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coldest = min((m for m in months if m["low_f"] is not None), key=lambda m: m["low_f"], default=None)
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wettest = max((m for m in months if m["precip_f"] is not None), key=lambda m: m["precip_f"], default=None)
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records = grading.all_time_records(history)
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unit = unit_for_country(city.get("country_code"))
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flavor = cities.flavor(city["slug"])
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event = city_events.get(city["slug"])
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today = _today_vs_normal_raw(history, recent) if recent is not None else None
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breadcrumb = [{"name": "Home", "href": f"{base}/"}, {"name": "Climate", "href": f"{base}/climate"}]
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if city.get("country"):
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breadcrumb.append({"name": city["country"], "href": None})
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breadcrumb.append({"name": city["name"], "href": None})
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page_url = f"{request_origin}{base}/climate/{city['slug']}"
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n_years = year_range[1] - year_range[0]
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jsonld = {
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"@context": "https://schema.org",
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"@graph": [
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{"@type": "Dataset",
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"name": f"{display} climate normals and records",
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"description": f"Average temperatures, precipitation and record highs and lows for "
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f"{display}, from ~{n_years} years of daily climate history.",
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"url": page_url,
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"temporalCoverage": f"{year_range[0]}/{year_range[1]}",
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"spatialCoverage": {"@type": "Place", "name": display,
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"geo": {"@type": "GeoCoordinates",
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"latitude": city["lat"], "longitude": city["lon"]}},
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"creator": {"@type": "Organization", "name": "Thermograph"},
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"isBasedOn": "https://open-meteo.com/ (ERA5 reanalysis)"},
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],
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}
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return {
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"city": city, "display": display, "title": title,
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"year_range": year_range, "n_years": n_years,
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"months": months,
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"warmest_month_slug": warmest["slug"] if warmest else None,
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"coldest_month_slug": coldest["slug"] if coldest else None,
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"wettest_month_slug": wettest["slug"] if wettest else None,
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"all_time_records": records,
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"today_vs_normal": today,
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"flavor": flavor, "event": event, "default_unit": unit,
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"breadcrumb": breadcrumb,
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"canonical_path": f"/climate/{city['slug']}",
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"page_title": _titled(f"{title} climate: daily normals, records & how unusual it is now"),
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"page_description": _clamp_desc(
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f"{title} averages highs of {_temp_text(warmest['high_f'], unit) if warmest else '—'} in "
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f"{warmest['name'] if warmest else 'summer'} and lows of "
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f"{_temp_text(coldest['low_f'], unit) if coldest else '—'} in "
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f"{coldest['name'] if coldest else 'winter'}. "
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f"Every day graded against {n_years} years of local history."),
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"jsonld": jsonld,
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}
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def month_payload(city: dict, history, month_idx: int) -> dict:
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title = cities.title_name(city)
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month_name = MONTHS_TITLE[month_idx - 1]
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month_slug = MONTHS[month_idx - 1]
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years = history["date"].dt.year()
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year_range = [int(years.min()), int(years.max())]
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clim = grading.climatology(history, _month_doy(month_idx))
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tmax, tmin, precip = clim.get("tmax"), clim.get("tmin"), clim.get("precip")
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mdf = history.filter(pl.col("date").dt.month() == month_idx)
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mrec = grading.all_time_records(mdf) if not mdf.is_empty() else {}
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records = []
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for key, label in METRIC_LABELS:
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r = mrec.get(key)
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if not r:
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continue
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if key == "precip":
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totals = (mdf.filter(pl.col("precip").is_not_null())
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.group_by(pl.col("date").dt.year().alias("yr"))
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.agg(pl.col("precip").sum().alias("total"),
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pl.len().alias("days"))
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.filter(pl.col("days") >= 26)
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.sort("total"))
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if totals.is_empty():
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continue
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lo, hi = totals.row(0, named=True), totals.row(totals.height - 1, named=True)
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records.append({"label": label,
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"high_f": hi["total"], "high_date": str(hi["yr"]), "high_tag": "Wettest",
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"low_f": lo["total"], "low_date": str(lo["yr"]), "low_tag": "Driest"})
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else:
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records.append({"label": label,
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"high_f": r["max"], "high_date": r["max_date"], "high_tag": "Highest",
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"low_f": r["min"], "low_date": r["min_date"], "low_tag": "Lowest"})
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prev_i = 12 if month_idx == 1 else month_idx - 1
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next_i = 1 if month_idx == 12 else month_idx + 1
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n_years = year_range[1] - year_range[0]
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unit = unit_for_country(city.get("country_code"))
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return {
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"month_name": month_name, "month_slug": month_slug,
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"year_range": year_range, "n_years": n_years,
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"avg_high_f": tmax["mean"] if tmax else None,
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"avg_low_f": tmin["mean"] if tmin else None,
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"typical_high_range_f": [tmax["p10"], tmax["p90"]] if tmax else None,
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"typical_low_range_f": [tmin["p10"], tmin["p90"]] if tmin else None,
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"avg_precip_f": precip["mean"] if precip else None,
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"records": records,
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"prev": {"name": MONTHS_TITLE[prev_i - 1], "slug": MONTHS[prev_i - 1]},
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"next": {"name": MONTHS_TITLE[next_i - 1], "slug": MONTHS[next_i - 1]},
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"canonical_path": f"/climate/{city['slug']}/{month_slug}",
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"page_title": _titled(f"{title} in {month_name}: normal weather & records"),
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"page_description": _clamp_desc(
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f"{title} averages {_temp_text(tmax['mean'] if tmax else None, unit)} highs and "
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f"{_temp_text(tmin['mean'] if tmin else None, unit)} lows in {month_name}. "
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f"Every day graded against {n_years} years of local history."),
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}
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def records_payload(city: dict, history) -> dict:
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title = cities.title_name(city)
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years = history["date"].dt.year()
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year_range = [int(years.min()), int(years.max())]
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n_years = year_range[1] - year_range[0]
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rec = grading.all_time_records(history)
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hi_rec = (rec.get("tmax") or {}).get("max")
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hi_date = (rec.get("tmax") or {}).get("max_date")
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lo_rec = (rec.get("tmin") or {}).get("min")
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lo_date = (rec.get("tmin") or {}).get("min_date")
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unit = unit_for_country(city.get("country_code"))
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rows = []
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for key, label in METRIC_LABELS:
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r = rec.get(key)
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if not r:
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continue
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if key == "precip":
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# "Record low" rain is meaningless (it's just 0) -- the low side is
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# the longest dry streak instead, which is a day count + start date,
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# not a precip value, so low_f/low_date stay None here.
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days, dry_start = grading.longest_dry_streak(history)
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low_f, low_date = None, dry_start or None
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dry_streak_days = days or None
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else:
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low_f, low_date, dry_streak_days = r["min"], r["min_date"], None
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rows.append({
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"label": label,
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"high_f": r["max"], "high_date": r["max_date"],
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"low_f": low_f, "low_date": low_date,
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"dry_streak_days": dry_streak_days,
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})
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hemisphere = "Southern" if city["lat"] < 0 else "Northern"
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return {
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"year_range": year_range, "n_years": n_years,
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"rows": rows,
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"monthly": _monthly_records_raw(history),
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"seasonal": _seasonal_records_raw(history, city["lat"]),
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"hemisphere": hemisphere,
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"canonical_path": f"/climate/{city['slug']}/records",
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"page_title": _titled(f"{title} weather records: hottest & coldest days since {year_range[0]}"),
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"page_description": _clamp_desc(
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f"{title}'s hottest day hit {_temp_text(hi_rec, unit)}"
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f"{f' ({hi_date})' if hi_date else ''}; its coldest fell to "
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f"{_temp_text(lo_rec, unit)}{f' ({lo_date})' if lo_date else ''}. "
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f"Every day graded against {n_years} years of local history."),
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}
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def home_payload() -> dict:
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from api import homepage
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feed = homepage.load()
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stale = bool(feed) and homepage.is_stale(feed)
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ranked, unusual = [], None
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if feed:
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ranked = feed.get("ranked") or []
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pick = (feed.get("picks") or {}).get("extreme")
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if pick:
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unusual = dict(pick, is_default=True)
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home_cities = []
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for slug in HOME_CITY_SLUGS:
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city = cities.get(slug)
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if city:
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home_cities.append({"slug": slug, "name": city["name"]})
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return {"unusual": unusual, "stale": stale, "ranked": ranked, "cities": home_cities}
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143
api/content_routes.py
Normal file
143
api/content_routes.py
Normal file
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@ -0,0 +1,143 @@
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"""SSR content JSON API — the data a frontend SSR layer needs to render the
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climate hub / per-city / month / records / homepage surfaces, without importing
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backend code in-process. See backend/api/content_payloads.py for the builders;
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this module is just FastAPI route wiring + the same derived-store/ETag caching
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pattern web/app.py's own endpoints use.
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"""
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import hashlib
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import os
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from fastapi import APIRouter, HTTPException, Request, Response
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from api import content_payloads as payloads
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from api import sitemap as sitemap_mod
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from api.payloads import history_token
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from data import climate
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from data import cities
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||||
from data import grid
|
||||
from data import store
|
||||
|
||||
router = APIRouter(tags=["content"])
|
||||
|
||||
# Same convention as web/app.py and web/content.py: the deployment's base path,
|
||||
# used only for the breadcrumb hrefs and jsonld URL this endpoint returns.
|
||||
_BASE = os.environ.get("THERMOGRAPH_BASE", "/thermograph").strip("/")
|
||||
BASE = f"/{_BASE}" if _BASE else ""
|
||||
|
||||
|
||||
def _etag_for(kind: str, cell_id: str, key: str, token: str) -> str:
|
||||
h = hashlib.sha1(f"{kind}:{cell_id}:{key}:{token}".encode()).hexdigest()[:20]
|
||||
return f'W/"{h}"'
|
||||
|
||||
|
||||
def _not_modified(request: Request, etag: str) -> bool:
|
||||
inm = request.headers.get("if-none-match")
|
||||
if not inm:
|
||||
return False
|
||||
tags = {t.strip() for t in inm.split(",")}
|
||||
return "*" in tags or etag in tags or etag.removeprefix("W/") in tags
|
||||
|
||||
|
||||
def _json_response(body: bytes, etag: str) -> Response:
|
||||
return Response(content=body, media_type="application/json", headers={"ETag": etag})
|
||||
|
||||
|
||||
def _cached(request: Request, kind: str, cell_id: str, key: str, token: str, build) -> Response:
|
||||
"""Same shape as web/app.py's _cached_response: If-None-Match -> empty 304;
|
||||
a token-valid store row -> replay it; otherwise build, persist, serve.
|
||||
store.get_payload/put_payload both deal in already-encoded JSON bytes, not
|
||||
the payload dict -- put_payload returns the exact bytes it persisted so the
|
||||
caller can serve them without re-serializing."""
|
||||
etag = _etag_for(kind, cell_id, key, token)
|
||||
if _not_modified(request, etag):
|
||||
return Response(status_code=304, headers={"ETag": etag})
|
||||
body = store.get_payload(kind, cell_id, key, token)
|
||||
if body is not None:
|
||||
return _json_response(body, etag)
|
||||
payload = build()
|
||||
return _json_response(store.put_payload(kind, cell_id, key, token, payload), etag)
|
||||
|
||||
|
||||
def _resolve_city(slug: str):
|
||||
"""(city, cell, history) for a slug, or raise 404 (unknown) / 503 (warming) --
|
||||
mirrors web/content.py's _resolve_city."""
|
||||
city = cities.get(slug)
|
||||
if city is None:
|
||||
raise HTTPException(status_code=404, detail="Unknown city.")
|
||||
cell = grid.snap(city["lat"], city["lon"])
|
||||
history = climate.load_cached_history(cell)
|
||||
if history is None or history.is_empty():
|
||||
try:
|
||||
history, _ = climate.get_history(cell)
|
||||
except Exception: # noqa: BLE001
|
||||
history = None
|
||||
if history is None or history.is_empty():
|
||||
raise HTTPException(status_code=503, detail="Climate data is warming up; please retry shortly.")
|
||||
return city, cell, history
|
||||
|
||||
|
||||
def _origin(request: Request) -> str:
|
||||
proto = request.headers.get("x-forwarded-proto") or request.url.scheme
|
||||
host = request.headers.get("host") or request.url.netloc
|
||||
return f"{proto}://{host}"
|
||||
|
||||
|
||||
@router.get("/content/hub")
|
||||
def content_hub(request: Request):
|
||||
return payloads.hub_payload()
|
||||
|
||||
|
||||
@router.get("/content/sitemap")
|
||||
def content_sitemap(request: Request):
|
||||
return [{"path": p, "changefreq": cf, "priority": pr} for p, cf, pr in sitemap_mod.sitemap_entries()]
|
||||
|
||||
|
||||
@router.get("/content/indexnow-key")
|
||||
def content_indexnow_key(request: Request):
|
||||
import indexnow
|
||||
return {"key": indexnow.key()}
|
||||
|
||||
|
||||
@router.get("/content/home")
|
||||
def content_home(request: Request):
|
||||
return payloads.home_payload()
|
||||
|
||||
|
||||
@router.get("/content/city/{slug}")
|
||||
def content_city(request: Request, slug: str):
|
||||
city, cell, history = _resolve_city(slug)
|
||||
recent = None
|
||||
try:
|
||||
recent = climate.get_recent_forecast(cell)
|
||||
except Exception: # noqa: BLE001 - today_vs_normal degrades to None
|
||||
pass
|
||||
token = history_token(history)
|
||||
|
||||
def build():
|
||||
return payloads.city_payload(_origin(request), BASE, city, history, recent)
|
||||
|
||||
return _cached(request, "content-city", cell["id"], slug, token, build)
|
||||
|
||||
|
||||
@router.get("/content/city/{slug}/month/{month}")
|
||||
def content_city_month(request: Request, slug: str, month: str):
|
||||
if month not in payloads.MONTH_INDEX:
|
||||
raise HTTPException(status_code=404, detail="Unknown month.")
|
||||
city, cell, history = _resolve_city(slug)
|
||||
token = history_token(history)
|
||||
|
||||
def build():
|
||||
return payloads.month_payload(city, history, payloads.MONTH_INDEX[month])
|
||||
|
||||
return _cached(request, "content-month", cell["id"], f"{slug}:{month}", token, build)
|
||||
|
||||
|
||||
@router.get("/content/city/{slug}/records")
|
||||
def content_city_records(request: Request, slug: str):
|
||||
city, cell, history = _resolve_city(slug)
|
||||
token = history_token(history)
|
||||
|
||||
def build():
|
||||
return payloads.records_payload(city, history)
|
||||
|
||||
return _cached(request, "content-records", cell["id"], slug, token, build)
|
||||
|
|
@ -583,3 +583,78 @@ def test_city_page_percentiles_are_real_ordinals(client):
|
|||
# No float ordinals, no impossible ones, no "1th"/"2th"/"3th".
|
||||
for bad in re.findall(r"\d+\.\d+(?:st|nd|rd|th)|100th|\b0th|\b\d*[123]th", html):
|
||||
raise AssertionError(f"malformed percentile ordinal: {bad!r}")
|
||||
|
||||
|
||||
# --- content API parity (repo-split Stage 2) ----------------------------------
|
||||
# The new /api/v2/content/* endpoints (backend/api/content_routes.py) recompute
|
||||
# the same numbers this file's SSR pages render, independently (content.py's
|
||||
# Markup-wrapped spans vs. the API's raw floats). These assert the two never
|
||||
# drift apart while both exist side by side -- see backend/api/content_payloads.py.
|
||||
|
||||
def _data_temp_fs(html: str) -> set[float]:
|
||||
return {round(float(v), 1) for v in re.findall(r'data-temp-f="(-?[\d.]+)"', html)}
|
||||
|
||||
|
||||
def test_content_api_city_matches_rendered_html(client):
|
||||
html = client.get(f"{B}/climate/{SLUG}").text
|
||||
rendered = _data_temp_fs(html)
|
||||
|
||||
j = client.get(f"{B}/api/v2/content/city/{SLUG}").json()
|
||||
assert j["canonical_path"] == f"/climate/{SLUG}"
|
||||
assert j["city"]["slug"] == SLUG
|
||||
|
||||
# Every month's high/low the API reports must appear somewhere in the
|
||||
# page's client-convertible spans -- same underlying grading.climatology()
|
||||
# call, so a real drift here means one side silently diverged.
|
||||
for m in j["months"]:
|
||||
if m["high_f"] is not None:
|
||||
assert round(m["high_f"], 1) in rendered, f"{m['slug']} high_f not on page"
|
||||
if m["low_f"] is not None:
|
||||
assert round(m["low_f"], 1) in rendered, f"{m['slug']} low_f not on page"
|
||||
|
||||
# All-time tmax/tmin extremes likewise.
|
||||
rec = j["all_time_records"]
|
||||
assert round(rec["tmax"]["max"], 1) in rendered
|
||||
assert round(rec["tmin"]["min"], 1) in rendered
|
||||
|
||||
|
||||
def test_content_api_month_matches_rendered_html(client):
|
||||
html = client.get(f"{B}/climate/{SLUG}/july").text
|
||||
rendered = _data_temp_fs(html)
|
||||
|
||||
j = client.get(f"{B}/api/v2/content/city/{SLUG}/month/july").json()
|
||||
assert j["month_slug"] == "july"
|
||||
if j["avg_high_f"] is not None:
|
||||
assert round(j["avg_high_f"], 1) in rendered
|
||||
if j["avg_low_f"] is not None:
|
||||
assert round(j["avg_low_f"], 1) in rendered
|
||||
|
||||
|
||||
def test_content_api_records_matches_rendered_html(client):
|
||||
html = client.get(f"{B}/climate/{SLUG}/records").text
|
||||
rendered = _data_temp_fs(html)
|
||||
|
||||
j = client.get(f"{B}/api/v2/content/city/{SLUG}/records").json()
|
||||
for row in j["rows"]:
|
||||
if row["label"] == "Precip":
|
||||
continue # precip isn't a data-temp-f span
|
||||
assert round(row["high_f"], 1) in rendered
|
||||
if row["low_f"] is not None:
|
||||
assert round(row["low_f"], 1) in rendered
|
||||
|
||||
|
||||
def test_content_api_unknown_city_404s(client):
|
||||
assert client.get(f"{B}/api/v2/content/city/not-a-real-city").status_code == 404
|
||||
|
||||
|
||||
def test_content_api_unknown_month_404s(client):
|
||||
assert client.get(f"{B}/api/v2/content/city/{SLUG}/month/notamonth").status_code == 404
|
||||
|
||||
|
||||
def test_content_api_home_city_slugs_match_content_py():
|
||||
"""Two hand-maintained copies (content.py's HOME_CITY_SLUGS and
|
||||
content_payloads.py's) -- pin them together like the other parity tests
|
||||
in this file."""
|
||||
from web import content
|
||||
from api import content_payloads
|
||||
assert content.HOME_CITY_SLUGS == content_payloads.HOME_CITY_SLUGS
|
||||
|
|
|
|||
|
|
@ -17,6 +17,7 @@ from fastapi.responses import RedirectResponse
|
|||
from fastapi.staticfiles import StaticFiles
|
||||
|
||||
from accounts import api_accounts
|
||||
from api import content_routes
|
||||
from core import audit
|
||||
from data import climate
|
||||
from web import content
|
||||
|
|
@ -716,6 +717,11 @@ v2.add_api_route("/event", api_event, methods=["POST"], include_in_schema=False)
|
|||
app.include_router(v1, prefix=f"{BASE}/api") # legacy unversioned == v1 (backward compatible)
|
||||
app.include_router(v1, prefix=f"{BASE}/api/v1")
|
||||
app.include_router(v2, prefix=f"{BASE}/api/v2")
|
||||
# SSR content API (repo-split Stage 2) -- purely additive, not yet consumed by
|
||||
# anything in this repo; content.py still renders its own SSR pages in-process.
|
||||
# The eventual frontend SSR service will call these instead. See
|
||||
# backend/api/content_routes.py.
|
||||
app.include_router(content_routes.router, prefix=f"{BASE}/api/v2")
|
||||
|
||||
|
||||
# --- Discord slash commands (HTTP interactions) ----------------------------
|
||||
|
|
|
|||
Loading…
Reference in a new issue