| name | roadtrip-navigator |
| description | Generate North American road-trip itineraries as a map-first, offline-friendly single-file HTML page. Plans around daily driving segments, overnight stops, fuel/EV-charging, national-park reservations (Recreation.gov / NPS), seasonal road closures, and timezone/border crossings — for executable, decision-ready trips. Two entry modes: give a start + region/destination + days and it plans the whole route, or hand it an existing route and it verifies, fills gaps, and produces the page.
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| read-when | road trip, self drive, 自驾, 公路旅行, national park, scenic drive, RV trip, EV road trip, Southwest loop, route 66, drive itinerary, campground, 自驾路线, 租车自驾, 环线, road trip planner, US/Canada drive, park reservation
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RoadTrip Navigator
Turn "start + days" or "an existing route" into a road trip you can
actually drive: paced into days, with overnight stops, fuel/charging, park
reservations, seasonal road risks, and a map-first single-file HTML page.
North American road trips revolve around the car, not flights: how many
hours do we drive today, where do we sleep, will we make it on the fuel/charge
we have, and is the road even open. That focus is what this skill adds on top
of a generic "list of attractions."
When to use
Use this skill whenever the request is about driving a multi-stop trip in the
US / Canada / Mexico (see read-when triggers). If the user only wants a single
city guide or a flight itinerary, this is not the right skill.
Two entry modes
Detect the mode up front (see scripts/helper.py for the heuristic):
- Light mode (plan it for me): user gives a start, a rough region or
destination, day count, and party/vehicle. → Run the full 7-step workflow,
designing the route yourself.
- Heavy mode (verify my route): user pastes/links/screenshots an existing
route. → Skip route invention. Parse their route into the schema, then
verify and fill gaps: driving segmentation, overnight realism, fuel/charge
coverage, reservation countdown, seasonal closures, and produce the page.
When unsure which mode, ask one short question. Otherwise infer and proceed.
The five things that make this more than a list
These are where pure-model answers fail and where this skill earns its keep:
- Daily driving segmentation (the core). Slice the whole route into days
under a sane daily drive limit, place an overnight at each segment end, and
validate each day: drive ≤ limit, arrive before dark, no stop hits a
closed gate, fatigue buffer. This is the road-trip equivalent of
connection-checking — most AI itineraries skip it.
- Reservation countdown. Recreation.gov campgrounds often release ~6 months
out; popular timed-entry a few days out; in-park lodges up to ~13 months out.
From the departure date, work backwards into a "book by" to-do list.
- Fuel / charge planning. Gas: flag long empty stretches ("next fuel in
X mi"). EV: plan a charging corridor against the vehicle's range and note
whether each leg makes it, charger power, and a backup.
- Seasonal road conditions & closures. Mountain passes that close in winter
(Going-to-the-Sun, Tioga Pass, Trail Ridge Rd), wildfire/hurricane/snow
season. If the travel date hits one, down-rank or reroute and say so.
- Timezones & borders. Correct arrival times across timezone lines; for
border crossings, flag documents / vehicle papers / insurance / wait times.
Workflow (7 steps)
Run scripts/helper.py "<user request>" first — it parses slots, guesses the
entry mode, picks the trip region (for HTML theming), and prints what's still
missing. Use its output to drive the steps below.
Step 1 — Collect requirements (slot filling)
Required: start, travel date, days, party makeup, vehicle (gas/EV/RV + range).
Optional: destination/region, budget, preferences (scenic vs. fast, hike
intensity, loop vs. one-way, border crossing). Only ask follow-ups for missing
required slots; fill the rest with sensible defaults and proceed.
Validate place names before planning. Slot presence is not slot truth: a
made-up start like "ABC" parses fine and would otherwise flow straight into a
fabricated route. Run every user-supplied place — start, destination, named
waypoints; in heavy mode each day's from/to towns — through
python3 tools/places_client.py "<name>" and branch on its verdict:
match → adopt the returned canonical name + coordinates; did-you-mean →
confirm the intended place with the user (one short question, same spirit as
the required-slot follow-ups); no-match → stop and ask — never plan a
route around a place you could not verify; unverified (offline) → use your
own judgment and ask about any name you don't recognize. A match with
outsideNA: true is a real place outside US/Canada/Mexico — tell the user
it's beyond this skill's coverage instead of calling it fake.
Step 2 — Route / destination planning (if not given)
Decide loop vs. one-way first (affects one-way drop fees and pacing).
For region-level input ("the Southwest", "Pacific Northwest"): search
candidates → seasonal & closure check → shortlist. Compute rough total miles /
driving days for the shortlist and drop any "can't be driven in N days" option.
Present two candidate routes before committing (light mode only). Once the
shortlist is down to viable options, draft exactly two genuinely distinct
routes yourself — e.g. a faster direct corridor vs. a scenic detour, or two
different geographic loops — each with a short label, a one-line summary, and
rough total miles/driving days. Show both to the user and ask them to pick
(or say "surprise me") before moving to Step 3. This is a single short
question, same spirit as the required-slot follow-up in Step 1 — don't
draft a full itinerary for either option first. If the conversation is
one-shot and no reply is possible, pick the better-rated option yourself,
proceed, and note the alternative you didn't take. Skip this entirely in
heavy mode (the user already supplied a route) or once the user has already
chosen. Carry both options into scripts/helper.compare_routes() to populate
routeOptions[] (Phase-3 module below) so the rendered page shows the
comparison table with the chosen route flagged.
Step 3 — Daily driving segmentation (core; see five-things #1)
- Split by a daily drive limit (default: relaxed adults ≤ 4–5h;
with kids/seniors ≤ 3–4h; user-adjustable).
- Put an overnight at each segment end (has lodging, supplies, good for the
next morning).
- Validate: arrive before dark, no stop hits a closed gate, long legs
have a fuel/charge point mid-way.
- If infeasible: cut miles / add a night / pick a closer overnight town.
- Surface risks explicitly in the day, e.g. "no fast charger for 180 mi on this
leg — charge to full before leaving."
Rule of thumb: plan by daylight, not by odometer — a day that ends after
dark fails at the trailhead, not on the map.
Step 4 — Parallel research (sub-agents)
Fan out (one concern per sub-agent, run concurrently): weather (per day),
lodging/campgrounds (price + booking difficulty), fuel/charging points,
attractions & tickets/permits, food, scenic byways & hikes, Reddit real-world
gotchas. Delegation rule: instruct each sub-agent to hit official APIs first
(NPS / NWS / Recreation.gov / Open Charge Map) and fall back to web search only
on failure. See reference.md for the tool routing table and tools/.
Step 5 — Reservation countdown (see five-things #2)
From the departure date, generate a "book by" to-do list:
campgrounds (Recreation.gov, ~T-6 months), timed-entry / wilderness permits
(per park rule, T-X days), popular in-park lodges (up to ~T-13 months),
one-way car/RV rental (lock price early). Render as a ⚠️ checklist at the top of
the page + a timeline. Populate bookingCountdown[].
Step 6 — Budget (with reliability grading)
Tag every line verified / reference(~) / estimate(≈). Road-trip specifics:
fuel = total miles ÷ MPG × gas price (or EV charging cost); tolls; park entry or
the America the Beautiful annual pass; one-way drop fee; campground; lodging;
food. Force a bottom disclaimer: prices are dynamic, confirm before departure.
Step 7 — Generate the single-file HTML (map-first)
- Write the data to
tripData.json first (data/view separation — editable,
re-renderable).
- Render:
python3 assets/generate.py tripData.json -o trip.html
→ Leaflet map (numbered stops + ordered polyline) + one-tap mobile nav
(Google/Apple deep links) + daily timeline + reservation to-do + budget.
Responsive (mobile single-column / desktop multi-column) + print friendly.
- Validate before delivering (plan §9): the generator already does a light
schema check and a JSON parse of the injected data. Optionally syntax-check
the inline JS, then open/preview.
- Full-page disclaimer: AI-assembled, may be out of date, verify with official
sources.
Output contract
- Always produce both
tripData.json and the rendered trip.html.
- Units: miles, °F, MPG, USD by default; switch to km/°C/local currency on
Canadian/Mexican legs and note the change. A trip entirely within China
prices its budget in CNY (¥) — never converted into USD.
- Never invent a precise reservation availability, live charger occupancy, or
minute-level traffic — point to the official app / Recreation.gov / nav.
Honesty boundaries (Phase 1)
Do not promise: exact live fuel/electricity prices, live charger occupancy,
minute-level traffic, live campground availability, or replacing turn-by-turn
navigation. For these, tell the user to confirm via the official app /
Recreation.gov / their navigation app in real time. The page's job is to be
right the morning you leave, not merely impressive the night it was generated.
Files
reference.md — tripData schema, reliability grading, tool routing table.
AGENTS.md ("Worked examples") — typical prompts and expected outputs.
assets/generate.py — tripData.json → single-file HTML.
assets/template.html — the HTML/JS renderer (Leaflet map + timeline).
assets/tripData.example.json / assets/preview.html — Southwest 7-day demo.
assets/tripData.tahoe.json / assets/preview-tahoe.html — Sunnyvale→Tahoe
3-day demo (mountain theme, state-park reservations, Sierra snow risk).
assets/tripData.pnw.json / assets/preview-pnw.html — Seattle→Vancouver→
Whistler EV cross-border demo (exercises all three Phase-3 modules below).
Phase-3 modules (implemented)
These render as extra sections when their data is present (see reference.md):
- Multi-route comparison —
scripts/helper.compare_routes(options, party)
→ routeOptions[]. Feeds from the Step 2 two-route pick above; it auto-rates
drive intensity and renders a comparison table with the chosen route flagged.
- Cross-border —
tools/border_client.trip_section([("US","CA",rental),...])
→ crossBorder. Per-crossing documents / insurance / customs / unit-switch
checklist for US↔CA↔MX. Note the key asymmetry it encodes: US insurance is
usually valid in Canada but never in Mexico (buy Mexican insurance).
- Duty-free exemption —
tools/customs_client.personal_exemption(residence, hours_abroad, used_within_30_days=False) → the per-person allowance quoted in
crossBorder customs notes. Encodes the 24h/48h tiers (US: USD 800 at 48h+,
once per 30 days, else USD 200; CA: 0 / CAD 200 / CAD 800; MX land: USD 300)
with EN + 中文 note strings — quote the tool, never recall these amounts.
- EV charging corridor —
tools/charging_client.corridor(legs, usableRange, winter_derate=...) → evPlan. Simulates state-of-charge leg by leg, sets a
recommended charge-to at each stop, and flags legs that won't make the buffer.
Pass winter_derate (e.g. 0.25) for cold-weather range loss.
scripts/helper.py — input parsing, entry-mode + region detection, slot check.
tools/*.py — per-source clients, each with a web-search fallback
(incl. border_client.py and charging_client.corridor()).