kenteken
Look up Dutch vehicle data by licence plate, from the RDW open data API.
Built for humans at a terminal and for agents reading a pipe, equally: text when
stdout is a TTY, JSON when it is not, a machine-readable contract under
kenteken schema, and structured errors on stderr. It follows
The CLI Spec v0.2.
$ kenteken lookup V-95-JKV
V-95-JKV Iveco 35s14
Type Bedrijfsauto (N1), neerklapbare zijschotten, 3 seats, 2
doors
APK expires 2027-12-11 in 1 year 4 months
First admitted 2024-12-11 1 year 8 months ago
Registered since 2024-12-11
Fuel Diesel, 100 kW, 243 g/km CO2 (WLTP)
Engine 2,287 cm3
Mass 2,059 kg empty, 3,500 kg max
Towing 750 kg unbraked
Dimensions 691 cm long, 213 cm wide, 228 cm high
Catalogue price EUR 91,144
Odometer consistent last reading 2024
Insured (WAM) yes
Recall none outstanding
Anything that should stop you is shouted in words, not just coloured, so it
survives being piped, redirected or read by someone who cannot tell red from
grey: EXPIRED, NOT INSURED, OPEN RECALL, INCONSISTENT,
TRANSFER BLOCKED, TACHOGRAPH TAMPERING.
Install
cargo install kenteken
uv tool install kenteken # or: pipx install kenteken
Or from a clone:
make install # builds --release and copies to ~/.local/bin
No API key is needed. RDW open data is anonymous and in the public domain.
Setting RDW_APP_TOKEN to a Socrata app token
raises the shared per-IP rate limit; the token is read from the environment only,
never from the command line.
Commands
| Command | What it returns |
|---|---|
lookup <PLATE>... |
Registration summary: make, model, APK and tachograph expiry, masses, towing, dimensions, fuel, indicators |
defects <PLATE>... |
Defects recorded at inspection, each code resolved to its description |
fuel <PLATE>... |
Fuel and emissions rows, one per fuel for a hybrid or bifuel vehicle |
recalls <PLATE>... |
Manufacturer recalls, open ones first, each resolved to the defect, the hazard and the repair |
inspections <PLATE>... |
Notifications filed by inspection bodies, and the expiry each one produced |
raw <DATASET> <PLATE>... |
Rows from any known RDW dataset, exactly as RDW returned them |
datasets |
The datasets this build knows. Makes no network request |
schema |
The machine-readable contract, as JSON |
completions <SHELL> |
A shell completion script |
Every command is read-only, and every command takes several plates at once:
kenteken lookup V-95-JKV 00-BN-V3 12-ABC-3
Plates are normalized before anything is sent, so V-95-JKV, v95jkv and
V95JKV are the same plate, and a plate that cannot be one is refused without
spending a request.
Defects
Defect codes are resolved from a table embedded in the binary, so this needs one request rather than two:
$ kenteken defects 00-BB-D9 --limit 3
DATE CODE DEFECT
2024-11-21 205 Band onvoldoende profiel
2024-11-21 419 Blokkering gordel werkt niet (goed)
2024-11-21 516 Dimlicht onjuist afgesteld
note: showing rows 1-3 of 11; raise --limit or page with --offset
Rows arrive newest inspection first, so a page cut short by --limit shows the
most recent defects rather than an arbitrary three of eleven. The plate column
appears only when more than one plate was asked for.
Refresh the table from RDW with make update-gebreken, which writes
data/gebreken.json as a reviewable diff.
Recalls
A recall is spread over three RDW datasets: one says which recalls a plate is
subject to and whether each is repaired, one describes the recall, and one lists
what it can cause. recalls reads all three and prints a card per recall:
$ kenteken recalls 19-GNF-3
19-GNF-3 MGP070060 OPEN
Defect De mogelijkheid bestaat dat de bouten van de
stuurkoppeling op de stuuras niet goed zijn vast
gedraaid.
Category Motorrijtuigen en aanhangwagens - stuurinrichting
Hazard Een (verkeers)ongeval met letselschade
Consequences De kans bestaat dat de verbinding van de stuurkoppeling
op de stuuras los gaat zitten. Dit kan worden herkend
door optredend geluid tijdens inparkeren en manouvreren
bij lage snelheid. Na verloop van tijd kan dit leiden tot
losraken van deze koppeling en onbestuurbaar worden van
het voertuig.
Repair De producent roept de betreffende voertuigen terug, neemt
maatregelen om het defect te verhelpen. De
voertuigeigenaar wordt uitgenodigd een afspraak te maken
met een merkdealer. De dealer zal de stuurkoppeling dan
vervangen.
Reported by Louwman Parts & Service B.V.
More information 0162-585217
Published 2013-03-28 7,500 vehicles in the action
Owners informed 2007-11-06
RDW's prose is passed through in Dutch, untranslated and unabridged, because a paraphrase of a safety instruction is a liability rather than a convenience. It is rewrapped to the terminal under its label, and a paragraph stays whole.
Open recalls come first, so a page cut short by --limit shows what is still
outstanding rather than what was repaired years ago. A recall RDW has not
published detail for still names itself, its status and its reference.
A vehicle card names the hazard and points here, on two lines rather than one, because a hazard is a sentence and a sentence joined to a shouted status wraps into a run-on phrase:
Recall OPEN RECALL see: kenteken recalls 19-GNF-3
Recall hazard Een (verkeers)ongeval met letselschade
That card asks about recalls only when the register says one is outstanding, so an ordinary lookup still costs the two requests it always did.
Inspections
Every notification an inspection body filed about the vehicle, newest first, and the expiry date it produced:
$ kenteken inspections 00-BB-D9
DATE NOTIFICATION FILED BY VALID UNTIL
2024-11-21 periodieke controle APK Zware voertuigen 2025-11-21
2024-02-29 periodieke controle APK Zware voertuigen 2025-03-01
2024-02-29 periodieke controle Controleapparaten 2026-03-01
Two bodies filing on one day is normal, and the two dates they set are not the
same kind of date: the APK station's expires a year out, the tachograph
workshop's two. The column is VALID UNTIL rather than APK until for exactly
that reason, and the expiry belongs to the notification rather than to the
vehicle.
Inspection bodies file five kinds of notification. Three are routine
(periodieke controle, inbouw, uitbouw); the other two, manipulatie tacho
and zegelverbreking tacho, mean someone interfered with the instrument that
records a professional driver's hours. Those two are shouted, as
TACHOGRAPH TAMPERING and TACHOGRAPH SEAL BROKEN, and carry a stable
derived.alarm for a consumer that would rather match a value than a phrase.
Raw datasets
raw reaches the datasets lookup does not summarize:
kenteken datasets # names and Socrata ids
kenteken raw assen V-95-JKV # by short name
kenteken raw 3huj-srit V-95-JKV # or by Socrata id
Output
--output/-o takes auto (the default), text, json, yaml or ndjson.
auto is text on a TTY and JSON in a pipe, so a script gets JSON without asking.
JSON and YAML carry the whole envelope:
$ kenteken lookup V95JKV --fields kenteken,merk,vervaldatum_apk
{
"items": [
{
"kenteken": "V95JKV",
"merk": "IVECO",
"vervaldatum_apk": "20271211"
}
],
"total": 1,
"limit": 100,
"offset": 0,
"truncated": false,
"not_found": [],
"no_rows": []
}
items is always an array, under every command, so a consumer parses one shape.
total counts every matching row and truncated says whether rows remain after
this page; page with --limit and --offset until truncated is false. NDJSON
prints one item per line and puts that metadata on stderr, where it cannot
corrupt the stream. Text says it in words.
--fields keeps only the named columns. A field present in no row is a usage
error rather than a silently empty column.
What RDW sent, and what it means
Every item carries RDW's own columns untouched, plus a derived block holding
this tool's reading of them. The text output is that same block, formatted, so a
human and an agent are looking at one computation rather than two that can
disagree.
$ kenteken lookup GZS-81-K --fields derived -o json
{
"items": [
{
"derived": {
"plate": "GZS-81-K",
"make": "TESLA",
"model": "MODEL Y",
"kind": "Personenauto",
"eu_category": "M1",
"body": "MPV",
"seats": 5,
"doors": 5,
"colour": "ZWART",
"second_colour": null,
"apk_expiry": "2026-12-31",
"apk_expired": false,
"apk_days_remaining": 148,
"tachograph_expiry": null,
"tachograph_expired": null,
"tachograph_days_remaining": null,
"first_admission": "2024-12-31",
"age_days": 582,
"registered_since": "2024-12-31",
"first_dutch_registration": "2024-12-31",
"dutch_registration_lag_days": 0,
"fuels": [
"Elektriciteit"
],
"power_kw": 378.0,
"co2_g_per_km": null,
"co2_basis": null,
"electric_range_km": 533.0,
"engine_cc": null,
"energy_label": null,
"mass_empty_kg": 1954,
"mass_max_kg": 2518,
"tow_braked_kg": 1600,
"tow_unbraked_kg": 750,
"length_cm": 475,
"width_cm": 192,
"height_cm": 162,
"vin_location": null,
"catalogue_price_eur": 51990,
"odometer": "consistent",
"odometer_year": 2026,
"odometer_reason": "De geregistreerde tellerstand is steeds hoger dan de daarvoor geregistreerde tellerstand. Wij oordelen dan dat de tellerstand logisch verklaarbaar is.",
"insured": true,
"open_recall": false,
"open_recall_count": 0,
"open_recall_hazards": [],
"exported": false,
"taxi": true,
"transferable": true
}
}
],
"total": 1,
"limit": 100,
"offset": 0,
"truncated": false,
"not_found": [],
"no_rows": []
}
Its keys are always present, and a fact RDW did not supply is null. Dates are
ISO 8601 rather than 20261231, Ja/Nee are booleans, Logisch is
consistent, and a CO2 figure never appears without the test cycle that
produced it, because a WLTP number and an NEDC number are not comparable.
RDW writes makes, models, bodies and colours in capitals. The card calms them to
be read, ZWART to Zwart, while derived and the raw columns keep RDW's own
spelling so a consumer can still match it against RDW's documentation. Calming
is the wrong answer for a word that is written in capitals rather than shouted,
and no rule tells the two apart: WIT and BMW are three capital letters each.
So the exceptions are a list. It is complete for RDW's closed vocabularies, the
95 body styles holding exactly one initialism (MPV) and the 16 colours holding
none, and it is necessarily partial for 11,422 makes and 268,884 model names. An
initialism nobody has listed yet is still calmed.
04-NLNX Mercedes-Benz 208 CDI
Type Personenauto (M1), MPV, 9 seats
Colour Wit
apk_expired is null rather than false when there is no expiry date: a
vehicle that needs no inspection has not passed one.
tachograph_expiry is a second deadline rather than a copy of the first. A
tachograph is inspected on its own cycle by its own kind of workshop, so the two
dates routinely disagree, and one can be long past while the other is
comfortably in hand:
APK expires 2025-11-21 EXPIRED 8 months ago
Tachograph expires 2026-03-01 EXPIRED 5 months ago
Most vehicles have no tachograph, and for them all three keys are null.
tachograph_expired in particular is null rather than false, by the same
rule as apk_expired: an instrument that does not exist has not stayed current.
open_recall_count follows the same rule. Zero means the register says nothing
is outstanding; null means the count is unknown, which is what a register
saying a recall is open while no recall row came back actually is. Its hazards
are null in that case too, since an empty list would read as "nothing to
worry about". open_recall_hazards lists each hazard once, in the order met:
RDW files one row per hazard, so a single recall routinely names several and two
recalls on one vehicle often name the same one twice.
dutch_registration_lag_days is the gap between first admission anywhere and
first registration in the Netherlands. It is a day count and not an import flag:
a long gap usually means a vehicle came from abroad, but RDW does not say so,
and a re-registration after a gap in ownership produces the same number. The
two dates are reported as they are, and what they mean is left to the reader.
tow_braked_kg and tow_unbraked_kg are the two halves of "can this pull my
caravan", and they are not interchangeable: the braked figure assumes the
trailer brakes itself, and is usually several times the unbraked one. Both are
reported, labelled, and neither is presented as the towing capacity.
vin_location says where on the vehicle the chassis number is stamped, which is
what you want when you are standing next to a car rather than reading about one.
It is left in RDW's own abbreviated Dutch, r. op trekdriehoek 075 cm a. hart koppeling, because expanding those abbreviations means guessing at them, and a
wrong guess sends you looking at the wrong part of the vehicle.
odometer_reason is RDW's own explanation of the odometer verdict, resolved
from a table embedded in the binary, so it costs no request. Refresh it with
make update-tellerstand. The summary card shows it only when the verdict is
something other than consistent, since a paragraph explaining that all is
well is noise; JSON always carries it.
odometer_year is the year the readings behind that verdict stop, and it is
reported beside the verdict because the verdict carries no date of its own. A
history last read in 2016 and one read last month both say consistent, which
is the same word about very different evidence. The two are independent in the
register as well: 730,494 vehicles have a reading year and no verdict against
it, so the card prints whichever half exists rather than dropping the line.
RDW writes a placeholder into a column it has no value for rather than leaving
it empty: N.v.t., Niet geregistreerd, Geen verstrekking in Open Data,
Niet bekend or (Nog) niet bekend. Read naively, tweede_kleur alone gives
ten million single-colour vehicles a second colour, and a recall's contact
column offers you (Nog) niet bekend as a phone number. The raw columns carry those strings verbatim, because that is
what RDW sent; derived resolves them to null.
A 0 can be a placeholder as well, and nothing but the column itself says
which, so each one was counted against the live register rather than reasoned
about:
length_cm,width_cmandheight_cmarenullwhen RDW wrote a zero. 430,531 passenger cars carrylengte0, and not one of them is zero centimetres long.doorsis read straight, because there a zero is a true count: 1,953,411 vehicles have no doors, being trailers and motorcycles.seatsneeds neither rule. RDW omits the column rather than zeroing it, and not one row in 16.8 million carries a0.
cilinderinhoud, catalogusprijs and both the mass and towing columns behave
like seats, holding no zero anywhere. So a card can say 0 doors, and will
never say 0 cm long.
Paging returns the same rows twice
Socrata leaves the order of an unsorted result undefined, and this endpoint has
been observed returning the same rows in different orders for two identical
requests. Every query therefore carries an explicit sort, newest first for
anything dated, so --limit is the first N rather than an arbitrary N, and
--offset neither skips nor repeats. kenteken datasets -o json shows the sort
used for each dataset.
Only results go to stdout. Warnings, notes and error envelopes go to stderr, and
--quiet silences the warnings and notes without changing stdout by a byte. It
does not silence the NDJSON metadata line: that is the envelope rather than a
warning, and it is the only place a consumer of that format can learn that rows
were withheld.
$ kenteken -o ndjson --limit 2 --quiet datasets 2>&1 >/dev/null
{"total":18,"truncated":true,"not_found":[],"no_rows":[]}
Absent, empty and missing are three different answers
Collapsing them is the one mistake a vehicle lookup cannot afford, so this tool keeps them apart everywhere:
- Not registered. No vehicle exists under the plate. It is listed in
not_found, and when no requested plate exists at all the run is anot_founderror with exit 4. - Registered, nothing in this dataset. The vehicle exists but has no rows
here. It is listed in
no_rowsand the run exits 0. In text,defectssays so positively: "V95JKV is registered, with no defects recorded at inspection", never a blank table that reads like a failed lookup. - Some of each. With several plates, the ones that resolved are returned and
the ones that did not are named on stderr, and the run exits 1 (
partial).
A field RDW did not report is left out rather than rendered as 0 or an empty
string: null in JSON, - in a table cell, and no line at all on a summary
card, since a confident-looking label next to nothing is worse than silence.
Any command reading a dataset other than the register therefore reads the
register as well, purely to tell a typo from a clean bill of health. Without it,
recalls XX-99-XX on a mistyped plate would answer "no recalls", which is
exactly what you were hoping to read about a car that does not exist.
Exit codes
| Code | Meaning | Retryable |
|---|---|---|
| 0 | Success | |
| 1 | partial: some plates resolved, some are not registered. A data state, not an error, so no error envelope is written |
|
| 2 | network: the RDW API could not be reached |
yes |
| 3 | usage, invalid_plate, unknown_dataset |
|
| 4 | not_found: no requested plate is registered |
|
| 5 | timeout |
yes |
| 6 | rate_limit: RDW returned HTTP 429 |
yes |
| 7 | api: RDW answered with an error |
|
| 8 | io: the answer was fetched but could not be written to stdout |
A consumer that closes the pipe early, as | head does, is not an io failure:
it got what it asked for, and the run exits 0.
Errors are a single JSON object on the last line of stderr:
$ kenteken lookup 'not a plate'; echo "exit=$?"
{"error":{"kind":"invalid_plate","message":"not a valid Dutch licence plate: 'NOTAPLATE' has 9 characters, every Dutch plate has 6","exit_code":3,"retryable":false,"hint":"plates are six letters and digits, e.g. V-95-JKV","details":{"input":"not a plate"}}}
exit=3
kenteken schema declares every error kind, its exit code and whether a retry
can behave differently, so a consumer can branch without parsing prose.
Requests to RDW
RDW is a free public service, so the tool is deliberately quiet:
- No request is ever retried automatically. Transient failures are reported as
retryableand the caller decides. --concurrency(default 4) is capped at 8.- Malformed plates and datasets with no
kentekencolumn are refused locally. defectsneeds no second request for the code table; it is embedded, and so is the odometer tablelookupreads.lookupasks about recalls only when the register says one is outstanding.- Recalls are named by reference and described elsewhere. Every reference a run collected is resolved together: one request per recall dataset, whether that is one recall or forty.
Development
make check # fmt, clippy -D warnings, and the test suite
make test
make conformance # clispec score ./target/release/kenteken
The test suite never touches the network. run is generic over an RdwSource
trait that tests substitute, and the HTTP client is exercised against a fake RDW
on a local socket.
Licence
MIT. RDW open data is published in the public domain; this tool is not affiliated with RDW.
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