## What & why S-19b-2, closing out ADR-0028's stated direction: **the read projection is now derived from the `RegisterRecord` in Objecten, not from ZGW zaak events.** Until now the subscriber listened on `zaken` and *inferred* register state from case events — a `zaak/create` meant INGEDIEND, and any `status/create` was assumed to be the approval (it may not read OpenZaak, so it could not tell statustypen apart). The reference wasn't in the notification at all, so every projection made a second hop to the ACL. The register — a fact about a person — was being reconstructed by guessing at the lifecycle of the case that produced it. - The subscriber's abonnement moves to the `objecten` kanaal (S-19b-1 made it publish). - An Objecten notification carries **no record data**, only the object URL, so the record is read back through the ACL (`POST /register-records/read`) — §8.1 applies to Objecten exactly as ADR-0028 established. - The record carries `id`, `status` and `reference`, so the row *is* the record: `IsZaakCreated`, `IsZaakStatusSet`, `ZaakUrl`, `ZaakId` and `ToEntry`'s `Resource == "status"` inference are all gone, and so is the ACL enrichment hop. - **The ACL now writes an INGEDIEND record on submit.** Without it, re-sourcing would silently drop every submitted registration from the public register, since only approval wrote a record. - `processed_notifications` holds the projected row (`register_id`, `status`, `reference`) instead of the ZGW event, so a rebuild is a replay with no mapping rules and no upstream reads at all. **ADR-0030** records it. ADR-0028's open caveat — record written but not yet read, "the two must agree" — is closed: there is one source now. Closes #153 ## Definition of Done - [x] Linked Gitea issue (above). - [x] Failing tests committed before the implementation — two red/green pairs, ACL side (06c0444→566ef7d) and subscriber side (142ed45→8af09b2). - [x] Refactor commit follows (b496ac9). - [x] Conventional Commits referencing the issue (`refs #153`). - [x] CI green — all six jobs onb30fa66, `verify-stack` end to end including the e2e. - [x] `docker compose up` from a fresh clone reaches green health checks within 3 minutes (`verify-stack`'s bring-up step — see the wait-healthy fix below). - [x] Docs updated — ADR-0030 added, ADR-0028's consequence + caveat annotated, BACKLOG.md, e2e header comment. - [x] ADR added in `docs/architecture/`. - [x] Demo note in `docs/demo-script.md` — n/a: no user-visible change. The openbaar register shows the same two statuses for the same registrations; only where they come from changed. ## Notes for reviewers **The decision I'd most like a second opinion on** is the one the issue didn't settle: what happens to INGEDIEND. Objecten held only INGESCHREVEN records, so re-sourcing forced a choice between (a) the ACL also writing on submit, (b) a public register that lists only actual registrations, or (c) a hybrid keeping both kanalen. I took (a): visible behaviour is unchanged and the register holds the whole lifecycle. (b) is arguably the better *semantics* for a public register but narrows what the portal shows and reads against PRD §68 ("~50 register entries with diverse statuses"); (c) leaves the projection half-derived from ZGW, which is the coupling ADR-0028 set out to remove. All three are laid out in ADR-0030. **The dedup key is the projected row**, `objecten:object:{url}:{status}:{reference}` — not the object URL (the ACL upserts *one object per registration*, so submit and approval notify about the same URL and the approval would be swallowed as a duplicate) and not URL+actie (a retried approval is a second `update`). Redeliveries collapse, genuine state changes don't. §8.6. **The migration drops columns rather than renaming them.** EF scaffolded renames — `resource` → `register_id`, `zaak_id` → `status` — which would have carried ZGW values into columns meaning something else, and a rebuild would then have projected that garbage. It also empties both tables: a pre-slice row describes a zaak event the new projector can't reproject, and those registrations have no RegisterRecord in Objecten either, so they're not re-derivable from the new source. Stated as a ceiling in the ADR — fine while stacks are ephemeral, backfill from Objecten if a long-lived environment ever needs it. **`run-projection-check.sh` now opens its zaak through the ACL** instead of straight against OpenZaak, because the ACL is what writes the record. A zaak created behind the ACL's back produces no projection row — that's the re-source working, not a gap. ## Three fixes CI found, none of them in the projection logic 1. **`wait-healthy.sh` matched the wrong container** (744f91a). Bring-up timed out with `TIMEOUT: 'objecten' not healthy (status=none)` while the `docker ps` it dumps showed objecten `Up 9 minutes (healthy)`. `--filter name=` is a substring match, so `objecten` also matches `objecten-db`/`objecten-redis`/`objecten-celery`, and `head -1` took whichever docker listed first — the celery worker has no healthcheck, hence `status=none`. Latent since those services landed and decided purely by listing order; `objecttypen` matches `objecttypen-db` the same way. Anchored on the compose replica suffix, which the verify scripts already do. 2. **The ACL had to be repointed at OpenZaak's IP** (7e0897a). Opening the zaak through the ACL put this check in the same bind run-domain-check.sh already handles: `400 {"name":"zaaktype","code":"bad-url","reason":"Voer een geldige URL in."}`. OpenZaak reflects the request Host into the zaaktype URL and then rejects it on zaak-create when single-label — the mechanism compose already documents on `ACL_OPENZAAK_BASEURL`. 3. **Approval arrives as `partial_update`, not `update`** (0dd26a7→b30fa66) — the one real bug in the slice. The ACL upserts with PATCH; DRF routes it through the notifying `update()` but names the action `partial_update`, so the projector dropped every approval. Only the e2e could catch it: `verify-projection` drives a submit, and per ADR-0028 the e2e is the only check that drives a *real* approval. `verify-tracing` also failed once (run 722) on a path this PR doesn't touch, and passed on a plain re-run of the same commit. Tempo logged `pusher failed to consume trace data` / `distributor_pool failing healthcheck` — it dropped spans under runner load rather than the trace chain being broken. Filed as **#156** rather than absorbed here. **Correction to the #152 PR notes:** I wrote there that celery concurrency was "the next knob" if verify-stack got tight. It isn't — `CELERY_WORKER_CONCURRENCY` already defaults to 1 in the Maykin image, so `objecten-celery` is already a single-process worker. Noted in #156. **Possible follow-up, deliberately not done here:** an `openzaak.local` network alias mirroring `objecten.local` would remove the ACL-repoint dance from both run-domain-check.sh and run-projection-check.sh. It changes the host in every zaak URL the system produces, which is too broad a ripple to land inside an unrelated slice — worth its own issue. **Known costs, all in the ADR:** submission is now two writes across two modules and eventually consistent (same posture ADR-0028 accepted for approval); projecting now depends on the ACL being reachable on the main path, not just for enrichment (NRC retries, so it converges); and OpenZaak still publishes to `zaken` with nothing in the product listening — kept because `verify-nrc` asserts that path.Reviewed-on: #155
368 lines
16 KiB
C#
368 lines
16 KiB
C#
using System.Net;
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using System.Net.Http.Json;
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using Acl.Application;
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using Acl.Infrastructure;
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namespace Acl.Tests;
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public class ObjectenGatewayTests
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{
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private sealed class StubHandler(Func<HttpRequestMessage, Task<HttpResponseMessage>> onSend)
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: HttpMessageHandler
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{
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protected override Task<HttpResponseMessage> SendAsync(HttpRequestMessage request, CancellationToken ct)
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=> onSend(request);
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}
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private sealed class FixedClock(DateOnly today) : IClock
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{
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public DateOnly Today { get; } = today;
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}
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private sealed record Sent(
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HttpMethod Method, Uri Uri, string? Body, string? Auth, string? ContentCrs, string? AcceptCrs, long? ContentLength);
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private const string ObjecttypeUrl = "http://objecttypen:8000/api/v2/objecttypes/ot-1";
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private static ObjectenGateway Gateway(List<Sent> sent, Func<HttpRequestMessage, HttpResponseMessage> respond) =>
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new(
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new HttpClient(new StubHandler(async req =>
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{
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// Read the length BEFORE the body: ReadAsStringAsync buffers the content and would set
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// ContentLength as a side effect, masking whether the gateway buffered it itself (uwsgi
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// rejects a chunked body).
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sent.Add(new Sent(
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req.Method,
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req.RequestUri!,
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ContentLength: req.Content?.Headers.ContentLength,
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Body: req.Content is null ? null : await req.Content.ReadAsStringAsync(),
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Auth: req.Headers.Authorization?.ToString(),
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ContentCrs: req.Content?.Headers.TryGetValues("Content-Crs", out var c) == true ? string.Join(",", c!) : null,
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AcceptCrs: req.Headers.TryGetValues("Accept-Crs", out var a) ? string.Join(",", a) : null));
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return respond(req);
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})),
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new ObjectenOptions
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{
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BaseUrl = new("http://objecten:8000"),
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Token = "objecten-token",
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ObjecttypenBaseUrl = new("http://objecttypen:8000"),
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ObjecttypenToken = "objecttypen-token",
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ObjecttypeName = "RegisterRecord",
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},
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new FixedClock(new DateOnly(2026, 6, 4)));
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// A published v1 and v2, plus a draft v3 that must never be written against even though it is the
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// highest version.
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private static readonly Dictionary<string, object> Versions = new()
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{
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[$"{ObjecttypeUrl}/versions/1"] = new { version = 1, status = "published" },
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[$"{ObjecttypeUrl}/versions/2"] = new { version = 2, status = "published" },
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[$"{ObjecttypeUrl}/versions/3"] = new { version = 3, status = "draft" },
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};
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// A stack that answers the reads every write is preceded by: the objecttype list (matched by name),
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// each of that objecttype's versions, and the Objecten search for an existing record.
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private static HttpResponseMessage Route(HttpRequestMessage req, object[] existingObjects) =>
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Versions.TryGetValue(req.RequestUri!.ToString(), out var version)
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? Json(version)
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: req.RequestUri.AbsolutePath.StartsWith("/api/v2/objecttypes", StringComparison.Ordinal)
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? Json(new
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{
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results = new[]
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{
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new { url = "http://objecttypen:8000/api/v2/objecttypes/other", name = "SomethingElse", versions = Array.Empty<string>() },
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new { url = ObjecttypeUrl, name = "RegisterRecord", versions = Versions.Keys.ToArray() },
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},
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})
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: req.Method == HttpMethod.Get
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? Json(new { results = existingObjects })
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: new HttpResponseMessage(HttpStatusCode.Created) { Content = JsonContent.Create(new { url = "http://objecten:8000/api/v2/objects/obj-1" }) };
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private static HttpResponseMessage Json(object body) =>
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new(HttpStatusCode.OK) { Content = JsonContent.Create(body) };
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private static RegisterRecord Record() => new("zaak-uuid-1", RegisterRecordStatus.Ingeschreven, "REG-2026-0001");
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[Fact]
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public async Task Reads_a_register_record_back_from_its_object_url(/* S-19b-2 */)
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{
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var sent = new List<Sent>();
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var objectUrl = new Uri("http://objecten:8000/api/v2/objects/obj-9");
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var gateway = Gateway(sent, _ => Json(new
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{
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url = objectUrl.ToString(),
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record = new { data = new { id = "zaak-uuid-1", status = "INGESCHREVEN", reference = "REG-2026-0001" } },
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}));
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var record = await gateway.GetAsync(objectUrl);
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// The object is fetched directly by the URL the notification carried — no objecttype
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// resolution and no search, unlike a write.
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var read = Assert.Single(sent);
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Assert.Equal(HttpMethod.Get, read.Method);
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Assert.Equal(objectUrl, read.Uri);
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// Objecten is a geo API: the CRS header is required on reads too.
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Assert.Equal("EPSG:4326", read.AcceptCrs);
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Assert.Equal("Token objecten-token", read.Auth);
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Assert.Equal("zaak-uuid-1", record!.Id);
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Assert.Equal("INGESCHREVEN", record.Status);
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Assert.Equal("REG-2026-0001", record.Reference);
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}
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[Fact]
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public async Task Reading_an_object_that_is_gone_yields_no_record(/* S-19b-2 */)
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, _ => new HttpResponseMessage(HttpStatusCode.NotFound));
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// A record deleted between the notification and the read is not an error — there is simply
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// nothing to project (§8.6: the subscriber tolerates whatever order deliveries arrive in).
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Assert.Null(await gateway.GetAsync(new Uri("http://objecten:8000/api/v2/objects/gone")));
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}
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[Fact]
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public async Task Creates_the_object_when_none_exists_for_the_registration()
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{
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var sent = new List<Sent>();
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await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
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var write = sent.Single(s => s.Method == HttpMethod.Post && s.Uri.AbsolutePath == "/api/v2/objects");
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Assert.Contains($"\"type\":\"{ObjecttypeUrl}\"", write.Body);
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// The highest *published* version (2), not the highest version (a draft 3).
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Assert.Contains("\"typeVersion\":2", write.Body);
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Assert.Contains("\"id\":\"zaak-uuid-1\"", write.Body);
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Assert.Contains("\"status\":\"INGESCHREVEN\"", write.Body);
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Assert.Contains("\"reference\":\"REG-2026-0001\"", write.Body);
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Assert.Contains("\"startAt\":\"2026-06-04\"", write.Body);
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}
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[Fact]
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public async Task Updates_the_existing_object_instead_of_creating_a_second_one()
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{
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var sent = new List<Sent>();
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object[] existing = [new { uuid = "obj-9", url = "http://objecten:8000/api/v2/objects/obj-9" }];
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await Gateway(sent, req => Route(req, existing)).UpsertAsync(Record());
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Assert.DoesNotContain(sent, s => s.Method == HttpMethod.Post && s.Uri.AbsolutePath == "/api/v2/objects");
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var write = sent.Single(s => s.Method == HttpMethod.Patch);
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Assert.Equal("http://objecten:8000/api/v2/objects/obj-9", write.Uri.ToString());
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Assert.Contains("\"status\":\"INGESCHREVEN\"", write.Body);
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}
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[Fact]
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public async Task Searches_objecten_for_the_registration_id_within_the_objecttype()
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{
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var sent = new List<Sent>();
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await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
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var search = sent.Single(s => s.Method == HttpMethod.Get && s.Uri.AbsolutePath == "/api/v2/objects");
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Assert.Contains("type=" + Uri.EscapeDataString(ObjecttypeUrl), search.Uri.Query);
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Assert.Contains("data_attrs=id__exact__zaak-uuid-1", search.Uri.Query);
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}
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[Fact]
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public async Task Authenticates_with_the_static_token_of_each_api()
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{
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var sent = new List<Sent>();
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await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
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Assert.All(
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sent.Where(s => s.Uri.AbsolutePath.StartsWith("/api/v2/objecttypes", StringComparison.Ordinal)),
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s => Assert.Equal("Token objecttypen-token", s.Auth));
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Assert.All(
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sent.Where(s => s.Uri.AbsolutePath.StartsWith("/api/v2/objects", StringComparison.Ordinal)),
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s => Assert.Equal("Token objecten-token", s.Auth));
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}
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[Fact]
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public async Task Sends_the_geo_crs_headers_the_objecten_api_requires()
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{
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var sent = new List<Sent>();
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await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
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var objects = sent.Where(s => s.Uri.AbsolutePath.StartsWith("/api/v2/objects", StringComparison.Ordinal)).ToList();
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Assert.All(objects, s => Assert.Equal("EPSG:4326", s.AcceptCrs));
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Assert.All(objects.Where(s => s.Body is not null), s => Assert.Equal("EPSG:4326", s.ContentCrs));
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}
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[Fact]
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public async Task Resolves_the_objecttype_once_and_reuses_it_across_writes()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => Route(req, []));
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await gateway.UpsertAsync(Record());
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await gateway.UpsertAsync(Record() with { Id = "zaak-uuid-2" });
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Assert.Single(sent, s => s.Uri.AbsolutePath == "/api/v2/objecttypes");
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}
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[Fact]
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public async Task Fails_loudly_when_the_objecttype_has_no_published_version()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => req.RequestUri!.AbsolutePath.Contains("/versions/", StringComparison.Ordinal)
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? Json(new { version = 1, status = "draft" })
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: Route(req, []));
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var error = await Assert.ThrowsAsync<InvalidOperationException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("published version", error.Message);
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}
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[Fact]
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public async Task Fails_loudly_when_the_objecttype_is_not_registered()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, _ => new HttpResponseMessage(HttpStatusCode.OK)
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{
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Content = JsonContent.Create(new { results = Array.Empty<object>() }),
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});
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var error = await Assert.ThrowsAsync<InvalidOperationException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("RegisterRecord", error.Message);
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}
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[Fact]
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public async Task Surfaces_the_objecten_error_body_when_a_write_is_rejected()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => req.Method == HttpMethod.Post && req.RequestUri!.AbsolutePath == "/api/v2/objects"
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? new HttpResponseMessage(HttpStatusCode.BadRequest) { Content = new StringContent("{\"detail\":\"schema mismatch\"}") }
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: Route(req, []));
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var error = await Assert.ThrowsAsync<HttpRequestException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("schema mismatch", error.Message);
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Assert.Contains("Creating the register record", error.Message);
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}
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[Fact]
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public async Task Surfaces_the_objecten_error_body_when_an_update_is_rejected()
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{
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var sent = new List<Sent>();
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object[] existing = [new { url = "http://objecten:8000/api/v2/objects/obj-9" }];
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var gateway = Gateway(sent, req => req.Method == HttpMethod.Patch
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? new HttpResponseMessage(HttpStatusCode.BadRequest) { Content = new StringContent("{\"detail\":\"stale version\"}") }
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: Route(req, existing));
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var error = await Assert.ThrowsAsync<HttpRequestException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("stale version", error.Message);
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Assert.Contains("Updating the register record", error.Message);
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}
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[Fact]
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public async Task Surfaces_a_failed_read_instead_of_writing_blind()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, _ => new HttpResponseMessage(HttpStatusCode.Unauthorized)
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{
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Content = new StringContent("{\"detail\":\"invalid token\"}"),
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});
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var error = await Assert.ThrowsAsync<HttpRequestException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("Querying objecttypen", error.Message);
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Assert.Contains("invalid token", error.Message);
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// A read that failed must never be mistaken for "nothing there yet" and followed by a write.
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Assert.DoesNotContain(sent, s => s.Method == HttpMethod.Post || s.Method == HttpMethod.Patch);
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}
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[Fact]
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public async Task Fails_loudly_when_the_objecttype_carries_no_versions_at_all()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => req.RequestUri!.AbsolutePath == "/api/v2/objecttypes"
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? Json(new { results = new[] { new { url = ObjecttypeUrl, name = "RegisterRecord" } } })
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: Route(req, []));
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var error = await Assert.ThrowsAsync<InvalidOperationException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("published version", error.Message);
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}
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[Fact]
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public async Task Says_which_read_failed_when_the_objecten_search_errors()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => req.Method == HttpMethod.Get && req.RequestUri!.AbsolutePath == "/api/v2/objects"
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? new HttpResponseMessage(HttpStatusCode.InternalServerError) { Content = new StringContent("boom") }
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: Route(req, []));
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var error = await Assert.ThrowsAsync<HttpRequestException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("Querying objects", error.Message);
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}
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[Fact]
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public async Task Surfaces_an_empty_read_body_rather_than_dereferencing_it()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, _ => new HttpResponseMessage(HttpStatusCode.OK)
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{
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Content = new StringContent("null", System.Text.Encoding.UTF8, "application/json"),
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});
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var error = await Assert.ThrowsAsync<InvalidOperationException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("objecttypen", error.Message);
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}
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[Fact]
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public async Task Treats_a_result_less_response_as_no_match_rather_than_crashing()
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{
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var sent = new List<Sent>();
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// The objecttypes collection carries no `results` key — the objecttype is absent, which must
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// surface as the "not registered" error rather than an ArgumentNullException from LINQ.
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var gateway = Gateway(sent, _ => Json(new { }));
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var error = await Assert.ThrowsAsync<InvalidOperationException>(() => gateway.UpsertAsync(Record()));
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Assert.Contains("RegisterRecord", error.Message);
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}
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[Fact]
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public async Task Creates_the_object_when_the_search_response_carries_no_results_key()
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{
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var sent = new List<Sent>();
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var gateway = Gateway(sent, req => req.Method == HttpMethod.Get && req.RequestUri!.AbsolutePath == "/api/v2/objects"
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? Json(new { })
|
|
: Route(req, []));
|
|
|
|
await gateway.UpsertAsync(Record());
|
|
|
|
Assert.Contains(sent, s => s.Method == HttpMethod.Post && s.Uri.AbsolutePath == "/api/v2/objects");
|
|
}
|
|
|
|
[Fact]
|
|
public async Task Reads_objecttypen_without_the_crs_headers_it_does_not_accept()
|
|
{
|
|
var sent = new List<Sent>();
|
|
|
|
await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
|
|
|
|
// Objecttypen is not a geo API; only the Objecten hops carry CRS.
|
|
Assert.All(
|
|
sent.Where(s => s.Uri.AbsolutePath.StartsWith("/api/v2/objecttypes", StringComparison.Ordinal)),
|
|
s => Assert.Null(s.AcceptCrs));
|
|
}
|
|
|
|
[Fact]
|
|
public async Task Buffers_the_write_body_so_uwsgi_gets_a_content_length()
|
|
{
|
|
var sent = new List<Sent>();
|
|
|
|
await Gateway(sent, req => Route(req, [])).UpsertAsync(Record());
|
|
|
|
var write = sent.Single(s => s.Method == HttpMethod.Post && s.Uri.AbsolutePath == "/api/v2/objects");
|
|
Assert.NotNull(write.ContentLength);
|
|
}
|
|
|
|
[Fact]
|
|
public async Task Rejects_a_null_record_without_calling_objecten()
|
|
{
|
|
var sent = new List<Sent>();
|
|
|
|
await Assert.ThrowsAsync<ArgumentNullException>(() => Gateway(sent, req => Route(req, [])).UpsertAsync(null!));
|
|
Assert.Empty(sent);
|
|
}
|
|
}
|