The weather-terms glossary (9 entries) and four static pages' SEO title/ description were hardcoded directly in web/content.py - a 1019-line module that also owns all SSR rendering logic - mixed in with code that changes on a completely different cadence and for different reasons. Add content/glossary.yaml and content/pages.yaml (a new repo-root content/ tree, a sibling of backend/ and frontend/ paths.py resolves the same way - the seed of a future thermograph-copy repo per the architecture decision doc's own §4) plus web/content_loader.py: a small loader that validates each file's shape at load time (required fields present and non-empty, no duplicate glossary slugs) and fails loudly on a malformed edit rather than rendering a blank glossary card or an empty <title>. content.py's GLOSSARY dict and the about/privacy/hub/glossary_index page_title/description literals now come from the loader. Scope: only content that is genuinely pure static data with no embedded template logic. cities_flavor.json (Wikipedia extracts, already its own generated file) and the homepage's title/description (embedded in home.html.j2 as Jinja block overrides, a heavily-tested product-critical template) are deliberately left as they are - a future pass, not required for this one. UI microcopy bound to frontend logic stays in frontend/, per the doc's own line between content and frontend. Verified: content/glossary.yaml generated programmatically from the live GLOSSARY dict (not hand-transcribed) and round-tripped byte-for-byte identical against it; content/pages.yaml's four entries checked field-by- field against the original hardcoded strings. Full backend suite green (362 passed, 4 skipped) with zero existing test changes needed beyond one assertion made escaping-aware (a pre-existing Jinja double-escape quirk on the one title containing "&", intentionally preserved not fixed). Built and booted the real Docker image: content/ present at /app/content, and curled /glossary, /glossary/percentine, /about, /privacy from inside the running container - all four render with the exact expected title text.
962 lines
41 KiB
Python
962 lines
41 KiB
Python
"""Server-rendered, crawlable content pages (climate hub / per-city / month /
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records / glossary / about) plus robots.txt and sitemap.xml.
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||
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These are the SEO surface: real URLs with the climate stats in the HTML, rendered
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with Jinja2 from the same builders the API uses, linking into the interactive tool.
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Registered on the app (via register()) BEFORE the StaticFiles mount so they win.
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||
"""
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import contextlib
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import contextvars
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import datetime
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import functools
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import hashlib
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import json
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import math
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import os
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||
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import polars as pl
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from fastapi import HTTPException, Request, Response
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from fastapi.responses import PlainTextResponse
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from jinja2 import Environment, FileSystemLoader, select_autoescape
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from markupsafe import Markup
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||
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from data import cities
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from data import city_events
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from data import climate
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from data import grading
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from data import grid
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from web import content_loader
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from web import homepage
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import paths
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from web.views import OBS_COLS
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_BASE = os.environ.get("THERMOGRAPH_BASE", "/thermograph").strip("/")
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BASE = f"/{_BASE}" if _BASE else ""
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||
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TEMPLATES_DIR = paths.TEMPLATES_DIR
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_env = Environment(
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loader=FileSystemLoader(TEMPLATES_DIR),
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autoescape=select_autoescape(["html", "xml", "j2"]),
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trim_blocks=True,
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lstrip_blocks=True,
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)
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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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||
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# Meteorological seasons as (northern-hemisphere label, southern-hemisphere label,
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# month numbers, span text). The same three months are one season everywhere — only
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# the name flips across the equator (Dec–Feb is winter in the north, summer in the
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# south), so a city's latitude picks the label.
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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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# Display labels for the graded metrics (order = how they appear on the page).
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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 F_REGIONS in frontend/units.js —
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# the client applies it to the visitor's locale, we apply it to the city's country.
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# A test asserts the two lists 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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# One flag drives every measure: a °C page also gets mm and km/h. Mirrors the same
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# decision in frontend/units.js.
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MM_PER_IN = 25.4
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KMH_PER_MPH = 1.609344
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# The unit the current page renders temperatures in. None = °F, and also means
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# "this page has no city", which is what keeps the interactive pages on the
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# client-side locale default instead of being pinned server-side.
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#
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# A ContextVar rather than a parameter because _temp() is reached from both sides:
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# templates call it as a Jinja global, and the context builders call it directly
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# (the records tables are pre-rendered into strings in Python). Threading a `unit`
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# argument would mean touching ~20 call sites across three levels of nesting, where
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# forgetting one yields a silently wrong unit rather than an error.
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_UNIT: contextvars.ContextVar[str | None] = contextvars.ContextVar("display_unit", default=None)
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|
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@contextlib.contextmanager
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def _unit_scope(unit: str | None):
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"""Render temperatures in `unit` for the duration of the block.
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|
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The reset is not optional: the page handlers are sync `def`, so Starlette runs
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them on a recycled threadpool thread, and a value left set would leak into
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whatever request that thread serves next — including pages with no city.
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"""
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token = _UNIT.set(unit)
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try:
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yield
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finally:
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_UNIT.reset(token)
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def unit_for_country(code: str | None) -> str:
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"""The temperature unit a reader in this country expects."""
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return "F" if (code or "").upper() in F_COUNTRIES else "C"
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||
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||
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def _round_half_up(x: float) -> int:
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"""Round like JS's Math.round, not like Python's round().
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Python rounds halves to even, JS rounds them up. Where they disagree the
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server would render one number and climate.js would repaint a different one —
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a visible flicker for exactly the visitor whose unit already matched.
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"""
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return math.floor(x + 0.5)
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def _c(f: float) -> int:
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return _round_half_up((f - 32) * 5 / 9)
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def _shown(f: float) -> int:
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"""The number to print, in the active unit."""
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return _c(f) if _UNIT.get() == "C" else _round_half_up(f)
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def _letter() -> str:
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return "C" if _UNIT.get() == "C" else "F"
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||
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||
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def _temp(f):
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"""A Fahrenheit temperature as a client-convertible span, e.g.
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'<span class="temp" data-temp-f="72.3">72°F</span>'. The text is rendered in
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the page's unit (the city's country convention — see _unit_scope), so crawlers
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and no-JS visitors get the local convention rather than a conversion they have
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to do themselves; climate.js repaints on toggle. data-temp-f stays Fahrenheit
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either way — it is the conversion source of truth. '—' for a missing value."""
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if f is None:
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return "—"
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return Markup('<span class="temp" data-temp-f="{:.1f}">{}°{}</span>').format(
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f, _shown(f), _letter())
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def _temp_bare(f):
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"""Like _temp() but with no unit letter ('72°'), for the range strip where the
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axis already implies the unit. Still carries data-temp-f so it converts."""
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if f is None:
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return "—"
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return Markup('<span class="temp" data-temp-f="{:.1f}" data-bare>{}°</span>').format(
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f, _shown(f))
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def _temp_text(f) -> str:
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"""'72°F' as plain text. The span _temp() returns can't go in a
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<meta content="…">, and a meta description is the one place a temperature is
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never converted client-side — it is what the search snippet quotes, which is
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why it has to be in the city's own unit at render time."""
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if f is None:
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return "—"
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return f"{_shown(f)}°{_letter()}"
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def _precip(v):
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"""Precipitation as a client-convertible span, the same contract as _temp():
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text in the page's unit, data-precip-in always inches."""
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if v is None:
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return "—"
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return Markup('<span class="precip" data-precip-in="{:.3f}">{}</span>').format(
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v, _precip_text(v))
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def _precip_text(v) -> str:
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"""Whole millimetres — that is how rainfall is reported, and a tenth of a
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millimetre is below what the source resolves. Inches keep two decimals, since
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a whole inch of rain is a lot to round to."""
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if v is None:
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return "—"
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return (f"{_round_half_up(v * MM_PER_IN)} mm" if _UNIT.get() == "C"
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else f"{v:.2f} in")
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def _wind(v):
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"""Wind/gust as a client-convertible span; data-wind-mph is always mph."""
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if v is None:
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return "—"
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return Markup('<span class="wind" data-wind-mph="{:.1f}">{}</span>').format(
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v, _wind_text(v))
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def _wind_text(v) -> str:
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if v is None:
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return "—"
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return (f"{_round_half_up(v * KMH_PER_MPH)} km/h" if _UNIT.get() == "C"
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else f"{_round_half_up(v)} mph")
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||
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||
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def _month_year(date_s: str) -> str:
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"""'1995-07-13' -> 'Jul 1995'. Meta descriptions have ~155 characters to
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spend, so a record's date gives up its day."""
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try:
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return datetime.date.fromisoformat(str(date_s)).strftime("%b %Y")
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except (ValueError, TypeError):
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return str(date_s)
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||
|
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def _clamp_desc(text: str, limit: int = 155) -> str:
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"""Meta descriptions are cut at ~155 characters in the SERP. Trim on a word
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boundary so we choose where the sentence ends rather than Google doing it."""
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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 _titled(text: str, suffix: str = " · Thermograph", limit: int = 60) -> str:
|
||
"""Brand the title only when it costs nothing — the payload ("… in July",
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"hottest & coldest days") has to survive truncation first."""
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return text + suffix if len(text) + len(suffix) <= limit else text
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||
|
||
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def _fmt(metric: str, v) -> str:
|
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if v is None:
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||
return "—"
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if metric in _TEMP_METRICS:
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return _temp(v)
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||
if metric == "precip":
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||
return _precip(v)
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||
if metric == "humid":
|
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# Absolute humidity is g/m³ in both systems — there is no imperial unit for
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# it anyone would recognise — so it is never converted.
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return f"{v:.1f} g/m³"
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return _wind(v) # wind, gust
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# Absolute-temperature colour tiers (°F upper bounds) mapped to the site's diverging
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# cold→hot palette — the same 9 tiers the interactive grader uses. Colouring records
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# and normals by these turns the tables into a heat map in the site's own visual
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# language, rather than a plain grid.
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_TEMP_TIERS = [
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(20, "rec-cold"), (32, "very-cold"), (45, "cold"), (58, "cool"),
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(70, "normal"), (80, "warm"), (90, "hot"), (100, "very-hot"),
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]
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# °F axis for the monthly temperature-range strip on the city page.
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_AXIS_LO, _AXIS_HI = -10.0, 115.0
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def temp_class(f) -> str:
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"""Diverging-palette tier name for an absolute Fahrenheit temperature (or 'none')."""
|
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if f is None:
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return "none"
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for upper, cls in _TEMP_TIERS:
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if f < upper:
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return cls
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return "rec-hot"
|
||
|
||
|
||
def _range_bar(low_f, high_f) -> dict | None:
|
||
"""Geometry for one month's low→high bar on the shared _AXIS_LO.._AXIS_HI axis:
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left offset + width as percentages, and the tier colour at each end (for a
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gradient fill). None when a value is missing."""
|
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if low_f is None or high_f is None:
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return None
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lo = max(_AXIS_LO, min(_AXIS_HI, low_f))
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hi = max(_AXIS_LO, min(_AXIS_HI, high_f))
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span = _AXIS_HI - _AXIS_LO
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return {
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"left": round((lo - _AXIS_LO) / span * 100, 1),
|
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"width": round(max(2.0, (hi - lo) / span * 100), 1),
|
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"c1": temp_class(low_f), "c2": temp_class(high_f),
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||
}
|
||
|
||
|
||
def _ordinal(n) -> str:
|
||
"""Percentile -> display ordinal. Delegates to grading so every surface
|
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(Day page, calendar, chart, city pages, homepage strip) agrees."""
|
||
return grading.pct_ordinal(n)
|
||
|
||
|
||
_env.globals["temp_class"] = temp_class
|
||
_env.globals["temp"] = _temp
|
||
_env.globals["temp_bare"] = _temp_bare
|
||
_env.filters["ordinal"] = _ordinal
|
||
|
||
|
||
def _month_doy(month_idx: int) -> int:
|
||
return datetime.date(2001, month_idx, 15).timetuple().tm_yday
|
||
|
||
|
||
# --- helpers -----------------------------------------------------------------
|
||
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}"
|
||
|
||
|
||
def _breadcrumb_jsonld(o: str, breadcrumb: list[tuple[str, str | None]]) -> dict:
|
||
"""BreadcrumbList structured data. Google requires ``item`` on every
|
||
ListItem except the last, so unlinked intermediate crumbs (e.g. the
|
||
country, which has no page of its own) are omitted here even though the
|
||
visible breadcrumb shows them."""
|
||
crumbs = [c for c in breadcrumb[:-1] if c[1]] + breadcrumb[-1:]
|
||
return {"@type": "BreadcrumbList",
|
||
"itemListElement": [
|
||
{"@type": "ListItem", "position": i + 1, "name": nm,
|
||
**({"item": f"{o}{href}"} if href else {})}
|
||
for i, (nm, href) in enumerate(crumbs)]}
|
||
|
||
|
||
def _respond_html(request: Request, template: str, **ctx) -> Response:
|
||
o = origin(request)
|
||
# Taken from the same ContextVar the numbers were rendered through, so the
|
||
# attribute units.js reads can't drift from what the page actually says.
|
||
# None on any page without a city -> base.html.j2 omits it entirely.
|
||
ctx.setdefault("unit_default", _UNIT.get())
|
||
html = _env.get_template(template).render(base=BASE, origin=o, base_url=f"{o}{BASE}", **ctx)
|
||
etag = f'W/"{hashlib.sha1(html.encode()).hexdigest()[:20]}"'
|
||
inm = request.headers.get("if-none-match")
|
||
if inm and etag in {t.strip() for t in inm.split(",")}:
|
||
return Response(status_code=304, headers={"ETag": etag})
|
||
return Response(html, media_type="text/html", headers={"ETag": etag})
|
||
|
||
|
||
# --- robots.txt & sitemap.xml -------------------------------------------------
|
||
def robots_txt(request: Request) -> Response:
|
||
base_url = f"{origin(request)}{BASE}"
|
||
body = (
|
||
"User-agent: *\n"
|
||
"Allow: /\n"
|
||
f"Disallow: {BASE}/api/\n" # JSON endpoints, nothing to index
|
||
f"Disallow: {BASE}/alerts\n" # per-user, requires login
|
||
f"Sitemap: {base_url}/sitemap.xml\n"
|
||
)
|
||
return PlainTextResponse(body)
|
||
|
||
|
||
def _sitemap_entries() -> list[tuple[str, str, str]]:
|
||
"""Every indexable page as (path, changefreq, priority). Paths are relative to
|
||
BASE. Shared by the sitemap and IndexNow so the two never drift."""
|
||
entries = [("/", "daily", "1.0")]
|
||
for p in ("/climate", "/about", "/glossary", "/calendar", "/compare", "/legend"):
|
||
entries.append((p, "weekly", "0.6"))
|
||
for slug in cities.all_slugs():
|
||
entries.append((f"/climate/{slug}", "daily", "0.8"))
|
||
entries.append((f"/climate/{slug}/records", "monthly", "0.5"))
|
||
for m in MONTHS:
|
||
entries.append((f"/climate/{slug}/{m}", "monthly", "0.5"))
|
||
return entries
|
||
|
||
|
||
def public_paths() -> list[str]:
|
||
"""BASE-relative paths of every indexable page — for IndexNow submission."""
|
||
return [p for p, _, _ in _sitemap_entries()]
|
||
|
||
|
||
@functools.lru_cache(maxsize=1)
|
||
def _content_lastmod() -> str:
|
||
"""A stable 'content last built' date for <lastmod> — the newest mtime of the
|
||
city list and this module (both change on a content/code rebuild, and the
|
||
process restarts on deploy). Honest and stable, unlike a per-request today()
|
||
that churns every fetch and trains crawlers to ignore lastmod entirely."""
|
||
srcs = [paths.CITIES_JSON, __file__]
|
||
mtimes = [os.path.getmtime(p) for p in srcs if os.path.exists(p)]
|
||
day = datetime.date.fromtimestamp(max(mtimes)) if mtimes else datetime.date.today()
|
||
return day.isoformat()
|
||
|
||
|
||
def sitemap_xml(request: Request) -> Response:
|
||
base_url = f"{origin(request)}{BASE}"
|
||
lastmod = _content_lastmod()
|
||
parts = ['<?xml version="1.0" encoding="UTF-8"?>',
|
||
'<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9">']
|
||
for path, cf, pr in _sitemap_entries():
|
||
parts.append(
|
||
f"<url><loc>{base_url}{path}</loc><lastmod>{lastmod}</lastmod>"
|
||
f"<changefreq>{cf}</changefreq><priority>{pr}</priority></url>"
|
||
)
|
||
parts.append("</urlset>")
|
||
return Response("\n".join(parts), media_type="application/xml")
|
||
|
||
|
||
def head_verify_html() -> Markup:
|
||
"""Search-engine ownership-verification <meta> tags, from env (empty when
|
||
unset). Injected into every page's <head> — Google verifies the homepage."""
|
||
metas = []
|
||
google = os.environ.get("THERMOGRAPH_GOOGLE_VERIFY", "").strip()
|
||
bing = os.environ.get("THERMOGRAPH_BING_VERIFY", "").strip()
|
||
if google:
|
||
metas.append(Markup('<meta name="google-site-verification" content="{}">').format(google))
|
||
if bing:
|
||
metas.append(Markup('<meta name="msvalidate.01" content="{}">').format(bing))
|
||
return Markup("\n ").join(metas)
|
||
|
||
|
||
_env.globals["head_verify"] = head_verify_html
|
||
|
||
|
||
# --- per-city climate pages ---------------------------------------------------
|
||
def _history_for(cell: dict):
|
||
"""Cached archive for a cell, fetching once if missing (self-heals like the
|
||
notifier). Returns a polars frame or None."""
|
||
hist = climate.load_cached_history(cell)
|
||
if hist is not None and not hist.is_empty():
|
||
return hist
|
||
try:
|
||
hist, _ = climate.get_history(cell)
|
||
except Exception: # noqa: BLE001 - upstream unavailable: caller renders a 503
|
||
return None
|
||
return hist if (hist is not None and not hist.is_empty()) else None
|
||
|
||
|
||
def _monthly_normals(history) -> list[dict]:
|
||
"""One row per month: average high/low and average precip, from the ±7-day
|
||
climatology around each month's 15th."""
|
||
rows = []
|
||
for i, name in enumerate(MONTHS_TITLE, start=1):
|
||
clim = grading.climatology(history, _month_doy(i))
|
||
tmax, tmin, precip = clim.get("tmax"), clim.get("tmin"), clim.get("precip")
|
||
high_f = tmax["mean"] if tmax else None
|
||
low_f = tmin["mean"] if tmin else None
|
||
# The range strip spans the typical spread: 10th-percentile daily low to
|
||
# 90th-percentile daily high (the band most days fall within).
|
||
rng_lo = tmin["p10"] if tmin else None
|
||
rng_hi = tmax["p90"] if tmax else None
|
||
rows.append({
|
||
"name": name,
|
||
"slug": MONTHS[i - 1],
|
||
"high": _temp(tmax["mean"]) if tmax else "—",
|
||
"high_f": high_f,
|
||
"low": _temp(tmin["mean"]) if tmin else "—",
|
||
"low_f": low_f,
|
||
"range_lo_f": rng_lo,
|
||
"range_hi_f": rng_hi,
|
||
"precip": _precip(precip["mean"]) if precip else "—",
|
||
"precip_v": precip["mean"] if precip else None,
|
||
"bar": _range_bar(rng_lo, rng_hi),
|
||
})
|
||
return rows
|
||
|
||
|
||
def _extreme(metric_rec, key: str) -> dict | None:
|
||
"""One extreme of a metric — key 'max' (warmest) or 'min' (coldest) — as the
|
||
two-unit value, its heat-map tier, and the date it occurred."""
|
||
if not metric_rec:
|
||
return None
|
||
v = metric_rec[key]
|
||
return {"txt": _temp(v), "f": v, "cls": temp_class(v), "date": metric_rec[f"{key}_date"]}
|
||
|
||
|
||
def _period_records(history, months: list[int]) -> dict:
|
||
"""For a set of calendar months, the record *warmest and coldest* of BOTH the
|
||
daytime high (tmax) and the overnight low (tmin) — four extremes with dates.
|
||
|
||
So each metric shows both ends: the daytime high's hottest day and the coldest a
|
||
day ever stayed (its record-low high), and the overnight low's mildest night and
|
||
its record low. Reuses grading.all_time_records on the month-filtered archive."""
|
||
if len(months) == 1:
|
||
sub = history.filter(pl.col("date").dt.month() == months[0])
|
||
else:
|
||
sub = history.filter(pl.col("date").dt.month().is_in(months))
|
||
rec = grading.all_time_records(sub) if not sub.is_empty() else {}
|
||
tmax, tmin = rec.get("tmax"), rec.get("tmin")
|
||
return {
|
||
"high": {"warm": _extreme(tmax, "max"), "cold": _extreme(tmax, "min")},
|
||
"low": {"warm": _extreme(tmin, "max"), "cold": _extreme(tmin, "min")},
|
||
}
|
||
|
||
|
||
def _monthly_records(history) -> list[dict]:
|
||
"""Record high and low for each of the 12 months (each row links to its month page)."""
|
||
return [
|
||
{"name": name, "slug": MONTHS[i - 1], **_period_records(history, [i])}
|
||
for i, name in enumerate(MONTHS_TITLE, start=1)
|
||
]
|
||
|
||
|
||
def _seasonal_records(history, lat: float) -> list[dict]:
|
||
"""Record high and low for each meteorological season, labelled for the city's
|
||
hemisphere (Dec–Feb reads as winter north of the equator, summer south of it)."""
|
||
south = lat < 0
|
||
return [
|
||
{"name": (south_lbl if south else north_lbl), "span": span,
|
||
**_period_records(history, months)}
|
||
for north_lbl, south_lbl, months, span in SEASONS
|
||
]
|
||
|
||
|
||
def _today_vs_normal(history, cell) -> dict | None:
|
||
"""Grade the latest recorded day against its climatology, for the hero block."""
|
||
try:
|
||
recent = climate.get_recent_forecast(cell)
|
||
except Exception: # noqa: BLE001
|
||
return None
|
||
if recent is None or recent.is_empty() or "date" not in recent.columns:
|
||
return None
|
||
today = datetime.date.today()
|
||
observed = recent.filter(pl.col("date") <= today).sort("date")
|
||
if observed.is_empty():
|
||
return None
|
||
row = observed.row(observed.height - 1, named=True)
|
||
obs = {k: row[k] for k in OBS_COLS if k in row}
|
||
graded = grading.grade_day(history, row["date"], obs)
|
||
cards = []
|
||
for key, label in METRIC_LABELS:
|
||
g = graded.get(key)
|
||
if not g:
|
||
continue
|
||
cards.append({
|
||
"label": label, "metric": key,
|
||
"value": _fmt(key, g.get("value")),
|
||
"percentile": g.get("percentile"),
|
||
"grade": g.get("grade"), "cls": g.get("class"),
|
||
})
|
||
date = row["date"]
|
||
return {
|
||
"date": date.isoformat() if hasattr(date, "isoformat") else str(date),
|
||
"cards": cards,
|
||
}
|
||
|
||
|
||
def _city_context(request, city, cell, history) -> dict:
|
||
name = city["name"]
|
||
display = cities.display_name(city)
|
||
title = cities.title_name(city)
|
||
years = history["date"].dt.year()
|
||
year_range = [int(years.min()), int(years.max())]
|
||
months = _monthly_normals(history)
|
||
warmest = max((m for m in months if m["high_f"] is not None), key=lambda m: m["high_f"], default=None)
|
||
coldest = min((m for m in months if m["low_f"] is not None), key=lambda m: m["low_f"], default=None)
|
||
wettest = max((m for m in months if m["precip_v"] is not None), key=lambda m: m["precip_v"], default=None)
|
||
records = grading.all_time_records(history)
|
||
tool_hash = f"{city['lat']:.5f},{city['lon']:.5f}"
|
||
# Unique editorial blurb (Wikipedia, CC BY-SA) so the page isn't just templated
|
||
# stats, and a travel/comfort CTA that pre-fills this city on the compare page.
|
||
flavor = cities.flavor(city["slug"])
|
||
event = city_events.get(city["slug"]) # hand-curated; None → page falls back to the blurb
|
||
compare_url = f"{BASE}/compare#loc={city['lat']:.4f},{city['lon']:.4f}"
|
||
|
||
breadcrumb = [("Home", f"{BASE}/"), ("Climate", f"{BASE}/climate")]
|
||
if city.get("country"):
|
||
breadcrumb.append((city["country"], None))
|
||
breadcrumb.append((name, None))
|
||
|
||
o = origin(request)
|
||
page_url = f"{o}{BASE}/climate/{city['slug']}"
|
||
jsonld = {
|
||
"@context": "https://schema.org",
|
||
"@graph": [
|
||
{"@type": "Dataset",
|
||
"name": f"{display} climate normals and records",
|
||
"description": f"Average temperatures, precipitation and record highs and lows for "
|
||
f"{display}, from ~{year_range[1] - year_range[0]} years of daily climate history.",
|
||
"url": page_url,
|
||
"temporalCoverage": f"{year_range[0]}/{year_range[1]}",
|
||
"spatialCoverage": {"@type": "Place", "name": display,
|
||
"geo": {"@type": "GeoCoordinates",
|
||
"latitude": city["lat"], "longitude": city["lon"]}},
|
||
"creator": {"@type": "Organization", "name": "Thermograph"},
|
||
"isBasedOn": "https://open-meteo.com/ (ERA5 reanalysis)"},
|
||
_breadcrumb_jsonld(o, breadcrumb),
|
||
],
|
||
}
|
||
return {
|
||
"section": "climate",
|
||
"city": city, "display": display, "name": name,
|
||
"year_range": year_range, "n_years": year_range[1] - year_range[0],
|
||
"months": months, "warmest": warmest, "coldest": coldest, "wettest": wettest,
|
||
"records": records, "today": _today_vs_normal(history, cell),
|
||
"tool_hash": tool_hash, "flavor": flavor, "event": event, "compare_url": compare_url,
|
||
"breadcrumb": breadcrumb,
|
||
"canonical_path": f"/climate/{city['slug']}",
|
||
"page_title": _titled(f"{title} climate: daily normals, records & how unusual it is now"),
|
||
"page_description": _clamp_desc(
|
||
f"{title} averages highs of {_temp_text(warmest['high_f']) if warmest else '—'} in "
|
||
f"{warmest['name'] if warmest else 'summer'} and lows of "
|
||
f"{_temp_text(coldest['low_f']) if coldest else '—'} in "
|
||
f"{coldest['name'] if coldest else 'winter'}. "
|
||
f"Every day graded against {year_range[1] - year_range[0]} years of local history."),
|
||
"jsonld_str": json.dumps(jsonld, ensure_ascii=False, separators=(",", ":")),
|
||
}
|
||
|
||
|
||
def _resolve_city(slug: str):
|
||
"""(city, cell, history) for a slug, or raise 404 (unknown) / 503 (warming)."""
|
||
city = cities.get(slug)
|
||
if city is None:
|
||
raise HTTPException(status_code=404, detail="Unknown city.")
|
||
cell = grid.snap(city["lat"], city["lon"])
|
||
history = _history_for(cell)
|
||
if history is None:
|
||
raise HTTPException(status_code=503, detail="Climate data is warming up; please retry shortly.")
|
||
return city, cell, history
|
||
|
||
|
||
def city_page(request: Request, slug: str) -> Response:
|
||
city, cell, history = _resolve_city(slug)
|
||
# The scope has to cover the context builder too, not just the render: it is
|
||
# evaluated as an argument, so it runs first — and it is where most of the
|
||
# page's temperatures are formatted.
|
||
with _unit_scope(unit_for_country(city.get("country_code"))):
|
||
return _respond_html(request, "city.html.j2",
|
||
**_city_context(request, city, cell, history))
|
||
|
||
|
||
# --- month & records pages ----------------------------------------------------
|
||
def _month_context(request, city, history, month_idx: int) -> dict:
|
||
display = cities.display_name(city)
|
||
title = cities.title_name(city)
|
||
name = city["name"]
|
||
month_name = MONTHS_TITLE[month_idx - 1]
|
||
month_slug = MONTHS[month_idx - 1]
|
||
years = history["date"].dt.year()
|
||
year_range = [int(years.min()), int(years.max())]
|
||
|
||
clim = grading.climatology(history, _month_doy(month_idx))
|
||
tmax, tmin, precip = clim.get("tmax"), clim.get("tmin"), clim.get("precip")
|
||
mdf = history.filter(pl.col("date").dt.month() == month_idx)
|
||
mrec = grading.all_time_records(mdf) if not mdf.is_empty() else {}
|
||
|
||
stats = []
|
||
if tmax:
|
||
stats.append(("Average high", _temp(tmax["mean"])))
|
||
stats.append(("Typical high range", _temp(tmax['p10']) + " to " + _temp(tmax['p90'])))
|
||
if tmin:
|
||
stats.append(("Average low", _temp(tmin["mean"])))
|
||
stats.append(("Typical low range", _temp(tmin['p10']) + " to " + _temp(tmin['p90'])))
|
||
if precip:
|
||
stats.append(("Average daily precipitation", _precip(precip["mean"])))
|
||
# Record high and low for every metric in this calendar month (mirrors the
|
||
# all-time records cards, but scoped to the month). Precip is special-cased:
|
||
# a per-day "record low" is just zero, and the dry-streak helper would wrongly
|
||
# bridge year boundaries on month-filtered rows, so the wettest/driest sides
|
||
# show this month's largest and smallest total accumulation, dated to the year.
|
||
records = []
|
||
for key, label in METRIC_LABELS:
|
||
r = mrec.get(key)
|
||
if not r:
|
||
continue
|
||
if key == "precip":
|
||
# Only whole months count — a partial current month would otherwise win
|
||
# "driest" on a fraction of its rainfall.
|
||
totals = (mdf.filter(pl.col("precip").is_not_null())
|
||
.group_by(pl.col("date").dt.year().alias("yr"))
|
||
.agg(pl.col("precip").sum().alias("total"),
|
||
pl.len().alias("days"))
|
||
.filter(pl.col("days") >= 26)
|
||
.sort("total"))
|
||
if totals.is_empty():
|
||
continue
|
||
lo, hi = totals.row(0, named=True), totals.row(totals.height - 1, named=True)
|
||
records.append({
|
||
"label": label,
|
||
"high": _precip(hi["total"]), "high_date": str(hi["yr"]), "high_tag": "Wettest",
|
||
"low": _precip(lo["total"]), "low_date": str(lo["yr"]), "low_tag": "Driest",
|
||
})
|
||
else:
|
||
records.append({
|
||
"label": label,
|
||
"high": _fmt(key, r["max"]), "high_date": r["max_date"], "high_tag": "Highest",
|
||
"low": _fmt(key, r["min"]), "low_date": r["min_date"], "low_tag": "Lowest",
|
||
})
|
||
|
||
prev_i = 12 if month_idx == 1 else month_idx - 1
|
||
next_i = 1 if month_idx == 12 else month_idx + 1
|
||
breadcrumb = [("Home", f"{BASE}/"), ("Climate", f"{BASE}/climate"),
|
||
(name, f"{BASE}/climate/{city['slug']}"), (month_name, None)]
|
||
return {
|
||
"section": "climate", "city": city, "display": display, "name": name,
|
||
"month_name": month_name, "month_slug": month_slug,
|
||
"year_range": year_range, "n_years": year_range[1] - year_range[0],
|
||
"avg_high": _temp(tmax["mean"]) if tmax else "—",
|
||
"avg_low": _temp(tmin["mean"]) if tmin else "—",
|
||
"avg_high_cls": temp_class(tmax["mean"]) if tmax else "none",
|
||
"avg_low_cls": temp_class(tmin["mean"]) if tmin else "none",
|
||
"stats": stats, "records": records,
|
||
"tool_hash": f"{city['lat']:.5f},{city['lon']:.5f}",
|
||
"compare_url": f"{BASE}/compare#loc={city['lat']:.4f},{city['lon']:.4f}",
|
||
"prev": {"name": MONTHS_TITLE[prev_i - 1], "slug": MONTHS[prev_i - 1]},
|
||
"next": {"name": MONTHS_TITLE[next_i - 1], "slug": MONTHS[next_i - 1]},
|
||
"breadcrumb": breadcrumb,
|
||
"canonical_path": f"/climate/{city['slug']}/{month_slug}",
|
||
"page_title": _titled(f"{title} in {month_name}: normal weather & records"),
|
||
"page_description": _clamp_desc(
|
||
f"{title} averages {_temp_text(tmax['mean']) if tmax else '—'} highs and "
|
||
f"{_temp_text(tmin['mean']) if tmin else '—'} lows in {month_name}. "
|
||
f"Every day graded against {year_range[1] - year_range[0]} years of local history."),
|
||
}
|
||
|
||
|
||
def month_page(request: Request, slug: str, month: str) -> Response:
|
||
if month not in MONTH_INDEX:
|
||
raise HTTPException(status_code=404, detail="Unknown month.")
|
||
city, cell, history = _resolve_city(slug)
|
||
with _unit_scope(unit_for_country(city.get("country_code"))):
|
||
return _respond_html(request, "month.html.j2",
|
||
**_month_context(request, city, history, MONTH_INDEX[month]))
|
||
|
||
|
||
def _records_context(request, city, history) -> dict:
|
||
display = cities.display_name(city)
|
||
title = cities.title_name(city)
|
||
name = city["name"]
|
||
years = history["date"].dt.year()
|
||
year_range = [int(years.min()), int(years.max())]
|
||
n_years = year_range[1] - year_range[0]
|
||
rec = grading.all_time_records(history)
|
||
# The two numbers the meta description leads with — the same all-time extremes
|
||
# the page's own lede sentence quotes.
|
||
hi_rec = (rec.get("tmax") or {}).get("max")
|
||
hi_date = (rec.get("tmax") or {}).get("max_date")
|
||
lo_rec = (rec.get("tmin") or {}).get("min")
|
||
lo_date = (rec.get("tmin") or {}).get("min_date")
|
||
rows = []
|
||
for key, label in METRIC_LABELS:
|
||
r = rec.get(key)
|
||
if not r:
|
||
continue
|
||
if key == "precip":
|
||
# "Record low" rain is meaningless (it's just 0), so the low side shows
|
||
# the longest dry streak and the date it began instead.
|
||
days, dry_start = grading.longest_dry_streak(history)
|
||
low = f"{days}-day dry spell" if days else "—"
|
||
low_date = dry_start or "—"
|
||
else:
|
||
low, low_date = _fmt(key, r["min"]), r["min_date"]
|
||
is_temp = key in _TEMP_METRICS
|
||
rows.append({
|
||
"label": label,
|
||
"high": _fmt(key, r["max"]), "high_date": r["max_date"],
|
||
"high_f": r["max"] if is_temp else None,
|
||
"low": low, "low_date": low_date,
|
||
"low_f": r["min"] if is_temp else None,
|
||
})
|
||
monthly = _monthly_records(history)
|
||
seasonal = _seasonal_records(history, city["lat"])
|
||
hemisphere = "Southern" if city["lat"] < 0 else "Northern"
|
||
|
||
breadcrumb = [("Home", f"{BASE}/"), ("Climate", f"{BASE}/climate"),
|
||
(name, f"{BASE}/climate/{city['slug']}"), ("Records", None)]
|
||
o = origin(request)
|
||
page_url = f"{o}{BASE}/climate/{city['slug']}/records"
|
||
jsonld = {
|
||
"@context": "https://schema.org",
|
||
"@graph": [
|
||
{"@type": "Dataset",
|
||
"name": f"{display} monthly and seasonal weather records",
|
||
"description": f"Record high and low temperatures for {display} by month and by "
|
||
f"meteorological season, with the dates they occurred, from ~{n_years} "
|
||
f"years of daily climate history.",
|
||
"url": page_url,
|
||
"temporalCoverage": f"{year_range[0]}/{year_range[1]}",
|
||
"spatialCoverage": {"@type": "Place", "name": display,
|
||
"geo": {"@type": "GeoCoordinates",
|
||
"latitude": city["lat"], "longitude": city["lon"]}},
|
||
"creator": {"@type": "Organization", "name": "Thermograph"},
|
||
"isBasedOn": "https://open-meteo.com/ (ERA5 reanalysis)"},
|
||
_breadcrumb_jsonld(o, breadcrumb),
|
||
],
|
||
}
|
||
return {
|
||
"section": "climate", "city": city, "display": display, "name": name,
|
||
"year_range": year_range, "n_years": n_years,
|
||
"rows": rows, "monthly": monthly, "seasonal": seasonal,
|
||
"hemisphere": hemisphere, "all_time": rec,
|
||
"canonical_path": f"/climate/{city['slug']}/records",
|
||
"breadcrumb": breadcrumb,
|
||
"page_title": _titled(
|
||
f"{title} weather records: hottest & coldest days since {year_range[0]}"),
|
||
"page_description": _clamp_desc(
|
||
f"{title}'s hottest day hit {_temp_text(hi_rec)}"
|
||
f"{f' ({_month_year(hi_date)})' if hi_date else ''}; its coldest fell to "
|
||
f"{_temp_text(lo_rec)}{f' ({_month_year(lo_date)})' if lo_date else ''}. "
|
||
f"Every day graded against {n_years} years of local history."),
|
||
"jsonld_str": json.dumps(jsonld, ensure_ascii=False, separators=(",", ":")),
|
||
}
|
||
|
||
|
||
def records_page(request: Request, slug: str) -> Response:
|
||
city, cell, history = _resolve_city(slug)
|
||
with _unit_scope(unit_for_country(city.get("country_code"))):
|
||
return _respond_html(request, "records.html.j2",
|
||
**_records_context(request, city, history))
|
||
|
||
|
||
# --- hub / glossary / about ---------------------------------------------------
|
||
def _breadcrumb(*items):
|
||
return list(items)
|
||
|
||
|
||
def hub_page(request: Request) -> Response:
|
||
groups = cities.by_country()
|
||
ctx = {
|
||
"section": "climate",
|
||
"groups": groups,
|
||
"n_cities": sum(len(v) for v in groups.values()),
|
||
"n_countries": len(groups),
|
||
"canonical_path": "/climate",
|
||
"breadcrumb": [("Home", f"{BASE}/"), ("Climate", None)],
|
||
"page_title": PAGES["hub"]["title"],
|
||
"page_description": PAGES["hub"]["description"],
|
||
}
|
||
return _respond_html(request, "hub.html.j2", **ctx)
|
||
|
||
|
||
# Weather-terms glossary, loaded from content/glossary.yaml (see content_loader.py).
|
||
GLOSSARY: dict[str, dict] = content_loader.load_glossary()
|
||
|
||
# Static-page SEO title/description, loaded from content/pages.yaml. The
|
||
# per-city/per-month pages build theirs dynamically from city data instead —
|
||
# see their own page_title/page_description assignments above.
|
||
PAGES: dict[str, dict] = content_loader.load_pages()
|
||
|
||
|
||
def _glossary_body(entry: dict) -> str:
|
||
return entry["body"].replace("{base}", BASE)
|
||
|
||
|
||
def glossary_index(request: Request) -> Response:
|
||
ctx = {
|
||
"terms": [{"slug": s, **e} for s, e in GLOSSARY.items()],
|
||
"canonical_path": "/glossary",
|
||
"breadcrumb": [("Home", f"{BASE}/"), ("Glossary", None)],
|
||
"page_title": PAGES["glossary_index"]["title"],
|
||
"page_description": PAGES["glossary_index"]["description"],
|
||
}
|
||
return _respond_html(request, "glossary.html.j2", **ctx)
|
||
|
||
|
||
def glossary_term(request: Request, term: str) -> Response:
|
||
entry = GLOSSARY.get(term)
|
||
if entry is None:
|
||
raise HTTPException(status_code=404, detail="Unknown term.")
|
||
ctx = {
|
||
"term": entry["term"], "body": _glossary_body(entry),
|
||
"canonical_path": f"/glossary/{term}",
|
||
"breadcrumb": [("Home", f"{BASE}/"), ("Glossary", f"{BASE}/glossary"), (entry["term"], None)],
|
||
"page_title": f"{entry['term']}: what it means | Thermograph",
|
||
"page_description": entry["short"],
|
||
"others": [{"slug": s, "term": e["term"]} for s, e in GLOSSARY.items() if s != term],
|
||
}
|
||
return _respond_html(request, "glossary_term.html.j2", **ctx)
|
||
|
||
|
||
def about_page(request: Request) -> Response:
|
||
ctx = {
|
||
"canonical_path": "/about",
|
||
"breadcrumb": [("Home", f"{BASE}/"), ("About", None)],
|
||
"page_title": PAGES["about"]["title"],
|
||
"page_description": PAGES["about"]["description"],
|
||
}
|
||
return _respond_html(request, "about.html.j2", **ctx)
|
||
|
||
|
||
def privacy_page(request: Request) -> Response:
|
||
ctx = {
|
||
"canonical_path": "/privacy",
|
||
"breadcrumb": [("Home", f"{BASE}/"), ("Privacy", None)],
|
||
"page_title": PAGES["privacy"]["title"],
|
||
"page_description": PAGES["privacy"]["description"],
|
||
}
|
||
return _respond_html(request, "privacy.html.j2", **ctx)
|
||
|
||
|
||
# --- homepage -----------------------------------------------------------------
|
||
# The homepage is the Weekly tool plus the distribution surfaces around it. It is
|
||
# server-rendered like the SEO pages (rather than a static file with placeholder
|
||
# substitution) so a cold visitor with no JS still gets the headline, a real
|
||
# graded example, the records strip and the city links.
|
||
|
||
_HOME_JSONLD = {
|
||
"@context": "https://schema.org",
|
||
"@type": "WebApplication",
|
||
"name": "Thermograph",
|
||
"applicationCategory": "WeatherApplication",
|
||
"operatingSystem": "Web, iOS, Android",
|
||
"isAccessibleForFree": True,
|
||
"offers": {"@type": "Offer", "price": "0", "priceCurrency": "USD"},
|
||
"description": ("How unusual is your weather? Any day, anywhere on Earth, graded "
|
||
"against 45 years of that place's own history."),
|
||
}
|
||
|
||
# 12 city chips, chosen for geographic spread rather than raw population, so the
|
||
# strip reads as "anywhere on Earth" and seeds crawl paths across the hub.
|
||
HOME_CITY_SLUGS = (
|
||
"new-york-city-new-york-us", "london-england-gb", "tokyo-jp",
|
||
"sydney-new-south-wales-au", "sao-paulo-br", "lagos-ng",
|
||
"mumbai-maharashtra-in", "mexico-city-mx", "cairo-eg",
|
||
"toronto-ontario-ca", "berlin-state-of-berlin-de", "seattle-washington-us",
|
||
)
|
||
|
||
|
||
def _home_cities() -> list[dict]:
|
||
"""The chip set, skipping any slug not in the routable city list so a
|
||
regenerated cities.json can never 404 a homepage link."""
|
||
out = []
|
||
for slug in HOME_CITY_SLUGS:
|
||
city = cities.get(slug)
|
||
if city:
|
||
out.append({"slug": slug, "name": city["name"]})
|
||
return out
|
||
|
||
|
||
def home_page(request: Request) -> Response:
|
||
feed = homepage.load()
|
||
stale = bool(feed) and homepage.is_stale(feed)
|
||
unusual = None
|
||
ranked: list = []
|
||
if feed:
|
||
ranked = feed.get("ranked") or []
|
||
pick = (feed.get("picks") or {}).get("extreme")
|
||
if pick:
|
||
unusual = dict(pick, is_default=True)
|
||
|
||
ctx = {
|
||
"section": "home",
|
||
# The hero headline owns the page's sole h1, so the brand degrades to a <p>.
|
||
"brand_tag": "p",
|
||
# The tool needs the wide app column, not the 880px reading column.
|
||
"main_class": "",
|
||
"canonical_path": "/",
|
||
"unusual": unusual,
|
||
"stale": stale,
|
||
"ranked": ranked,
|
||
"cities": _home_cities(),
|
||
"jsonld_str": Markup(json.dumps({**_HOME_JSONLD, "url": f"{origin(request)}{BASE}/"})),
|
||
}
|
||
return _respond_html(request, "home.html.j2", **ctx)
|
||
|
||
|
||
# --- registration ------------------------------------------------------------
|
||
def register(app) -> None:
|
||
"""Attach all content routes. Call from app.py BEFORE the StaticFiles mount."""
|
||
app.add_api_route(f"{BASE}/robots.txt", robots_txt, methods=["GET"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/sitemap.xml", sitemap_xml, methods=["GET"], include_in_schema=False)
|
||
# IndexNow ownership key, served as a text file at the site root (/{key}.txt)
|
||
# so Bing/DuckDuckGo/Yandex can verify our submissions. The key is fixed at
|
||
# startup, so registering its literal path here is safe.
|
||
import indexnow
|
||
_inkey = indexnow.key()
|
||
|
||
def _indexnow_key_file() -> Response:
|
||
return PlainTextResponse(_inkey + "\n")
|
||
|
||
app.add_api_route(
|
||
f"{BASE}/{_inkey}.txt", _indexnow_key_file,
|
||
methods=["GET", "HEAD"], include_in_schema=False,
|
||
)
|
||
# The homepage. Registered here (not as a static file in app.py) so it is
|
||
# server-rendered from the same Jinja environment as the SEO pages.
|
||
app.add_api_route(f"{BASE}/", home_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/about", about_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/privacy", privacy_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/glossary", glossary_index, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/glossary/{{term}}", glossary_term, methods=["GET", "HEAD"], include_in_schema=False)
|
||
# Hub before /climate/{slug} so the literal path wins.
|
||
app.add_api_route(f"{BASE}/climate", hub_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/climate/{{slug}}", city_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
# Records before the {month} param so the literal path wins.
|
||
app.add_api_route(f"{BASE}/climate/{{slug}}/records", records_page, methods=["GET", "HEAD"], include_in_schema=False)
|
||
app.add_api_route(f"{BASE}/climate/{{slug}}/{{month}}", month_page, methods=["GET", "HEAD"], include_in_schema=False)
|