mirror of
https://github.com/simonw/datasette.git
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Spans describe requests that have finished. They structurally cannot answer "am I saturating my 3 SQL threads right now", because that is a level rather than an event - and with num_sql_threads defaulting to 3, it is usually the first thing worth knowing about a busy Datasette. This adds the metrics that answer it. Five observable gauges, computed only when something is collecting, so an instance with no MeterProvider installed does no work for them at all: datasette.sql.threads.limit num_sql_threads datasette.sql.threads.queue_depth queries waiting for a free thread datasette.sql.queries.pending in-flight reads, by db.namespace datasette.write.queue_depth writes behind the single write thread datasette.connections.open tracked file connections Three instruments recorded inline, which matters because metrics survive trace sampling and spans do not - an operator sampling 1% of traces still gets 100% of the latency distribution: db.client.operation.duration semconv histogram, with error.type datasette.write.queue_wait the metric twin of the existing span datasette.sql.queries.interrupted sql_time_limit_ms kills The interrupted counter closes a gap the plan called out as unanswerable: "how often are we killing queries at the limit" is a rate, and a rate cannot be recovered from sampled spans. Core still creates no provider of any kind, so the architecture is unchanged; `grep -rn 'opentelemetry.sdk' datasette/` stays empty. One real difference from tracing is worth recording: _ProxyMeter and its instruments forward to a provider installed after they were created, whereas ProxyTracer permanently caches the first concrete tracer it resolves. Module-level instruments are therefore safe and the test fixture has no ordering constraint. Live instances are tracked in a lock-guarded WeakSet so instrumenting an instance never keeps it alive. The pool gauges carry no attribute saying which Datasette produced them: production runs one instance per process, and adding an id to disambiguate the test suite's hundreds of instances would buy unbounded attribute cardinality to fix a case that does not occur. The collision is documented instead, and the gauge callbacks are plain generator functions so tests can assert exact values by calling them directly rather than through the SDK's last-value aggregation. demos/otel/metrics_demo.py fires 12 concurrent 40ms queries at a 3-thread pool and samples the gauges mid-flight: queue_depth peaks at exactly 9, and the duration histogram reads max=0.1695s for a query whose work is 40ms. That gap is the queue, and it is the thing traces alone will not show you. Also corrects the demo README's privacy section, which still claimed parameter values are never recorded - that stopped being unconditionally true when trace_sql_parameters landed. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> (cherry picked from 6ef0dd8c and adapted to the rebuilt phase-1 stack: attribute names now come from telemetry_registry where entries exist, the meter carries the instrumentation-scope version and schema URL, and the interrupted-queries counter skips expected timeouts - callers that opted into a deliberately short budget, like facet suggestion - matching how those are excluded from span error status. The internals.rst reference lands with the registry commit that follows.) Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01F2h9ANGZ7paWSpqs5DUAcG
565 lines
19 KiB
Python
565 lines
19 KiB
Python
import importlib.metadata
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import os
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import pathlib
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import re
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import socket
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import subprocess
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import sys
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import tempfile
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import time
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from dataclasses import dataclass
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import httpx
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import pytest
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import pytest_asyncio
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from datasette import Event, hookimpl
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try:
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import pysqlite3 as sqlite3
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except ImportError:
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import sqlite3
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UNDOCUMENTED_PERMISSIONS = {
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"this_is_allowed",
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"this_is_denied",
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"this_is_allowed_async",
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"this_is_denied_async",
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"no_match",
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# Test actions from test_hook_register_actions_with_custom_resources
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"manage_documents",
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"view_document_collection",
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"view_document",
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}
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def wait_until_responds(url, timeout=5.0, client=httpx, process=None, **kwargs):
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start = time.time()
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while time.time() - start < timeout:
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# If the server died there is no point waiting out the timeout - fail
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# now, with its output, instead of after `timeout` seconds of silence
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if process is not None and process.poll() is not None:
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raise AssertionError(
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"Server exited early with returncode {}\n{}".format(
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process.returncode, process.stdout.read().decode("utf-8")
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)
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)
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try:
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client.get(url, **kwargs)
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return
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except httpx.TransportError:
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time.sleep(0.1)
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raise AssertionError(f"Timed out waiting for {url} to respond")
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def find_free_port():
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with socket.socket() as sock:
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sock.bind(("127.0.0.1", 0))
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return sock.getsockname()[1]
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_otel_span_exporter = None
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@pytest.fixture(scope="session", autouse=True)
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def _otel_provider():
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"""
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Install a real OTel SDK TracerProvider + InMemorySpanExporter exactly
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once, before any span is ever created in this process.
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This has to be session-scoped and autouse because
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`opentelemetry.trace.set_tracer_provider()` is effectively
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once-per-process: a second call logs a warning and is ignored. So the
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install must happen exactly once, before anything asserts on spans.
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`datasette.telemetry.tracer` is a module-level `ProxyTracer`. Once a
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provider exists, the first span it starts resolves a concrete tracer
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and caches it permanently. It does *not* cache the no-op tracer, so
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any span started before this fixture runs is merely lost rather than
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poisoning the tracer for the rest of the process. If the SDK isn't
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installed, do nothing: core spans stay no-op `NonRecordingSpan`s and
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the rest of the suite is unaffected.
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"""
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global _otel_span_exporter
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try:
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from opentelemetry import trace as otel_trace
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from opentelemetry.sdk.trace import TracerProvider
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from opentelemetry.sdk.trace.export import SimpleSpanProcessor
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from opentelemetry.sdk.trace.export.in_memory_span_exporter import (
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InMemorySpanExporter,
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)
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except ImportError:
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return
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exporter = InMemorySpanExporter()
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provider = TracerProvider()
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# SimpleSpanProcessor exports synchronously on span end - no background
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# batching thread, so assertions immediately after a request never race.
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provider.add_span_processor(SimpleSpanProcessor(exporter))
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otel_trace.set_tracer_provider(provider)
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_otel_span_exporter = exporter
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@pytest.fixture
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def otel_spans():
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"""
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Function-scoped access to the finished-spans exporter: clears any spans
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left over from previous tests, then yields the exporter so a test can
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call `.get_finished_spans()` after making requests. Skips (rather than
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fails) if the OTel SDK is not installed.
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"""
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pytest.importorskip("opentelemetry.sdk")
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if _otel_span_exporter is None:
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pytest.skip("OpenTelemetry SDK provider was not installed")
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_otel_span_exporter.clear()
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yield _otel_span_exporter
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_otel_metric_reader = None
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@pytest.fixture(scope="session", autouse=True)
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def _otel_meter_provider():
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"""
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Install a real OTel SDK MeterProvider + InMemoryMetricReader once per
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process.
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Unlike the tracer, ordering is not load-bearing here: `_ProxyMeter` and
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the `_ProxyInstrument`s it hands out forward to a provider installed
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*after* they were created, whereas `ProxyTracer` permanently caches the
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first concrete tracer it resolves. This fixture is still session-scoped
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and autouse for symmetry, and so that a single reader collects for the
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whole run.
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DELTA temporality is chosen for counters and histograms so that each
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collection reports only what happened since the previous one. With the
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SDK default of CUMULATIVE, every metrics test would see every query run
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by every earlier test in the session.
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"""
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global _otel_metric_reader
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try:
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from opentelemetry import metrics as otel_metrics
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from opentelemetry.sdk.metrics import Counter, Histogram, MeterProvider
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from opentelemetry.sdk.metrics.export import (
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AggregationTemporality,
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InMemoryMetricReader,
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)
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except ImportError:
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return
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reader = InMemoryMetricReader(
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preferred_temporality={
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Counter: AggregationTemporality.DELTA,
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Histogram: AggregationTemporality.DELTA,
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}
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)
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otel_metrics.set_meter_provider(MeterProvider(metric_readers=[reader]))
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_otel_metric_reader = reader
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class MetricsCollector:
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"""
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Thin reader over an `InMemoryMetricReader`.
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`collect()` runs a collection cycle - which is what invokes the observable
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gauge callbacks - and snapshots the result. Queries then run against that
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snapshot rather than re-collecting, so a test that inspects several
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metrics sees one consistent moment and does not drain delta state twice.
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"""
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def __init__(self, reader):
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self.reader = reader
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self.snapshot = {}
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def collect(self):
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self.snapshot = {}
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data = self.reader.get_metrics_data()
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if data is None:
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return self.snapshot
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for resource_metrics in data.resource_metrics:
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for scope_metrics in resource_metrics.scope_metrics:
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for metric in scope_metrics.metrics:
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self.snapshot.setdefault(metric.name, []).extend(
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metric.data.data_points
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)
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return self.snapshot
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def points(self, name, attributes=None):
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"Data points for `name` whose attributes are a superset of `attributes`."
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found = []
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for point in self.snapshot.get(name, []):
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point_attributes = dict(point.attributes or {})
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if all(point_attributes.get(k) == v for k, v in (attributes or {}).items()):
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found.append(point)
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return found
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def point(self, name, attributes=None):
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"The single matching data point, asserting there is exactly one."
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found = self.points(name, attributes)
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assert len(found) == 1, (
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f"expected exactly one {name} point matching {attributes}, "
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f"got {len(found)}: {found}"
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)
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return found[0]
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@pytest.fixture
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def otel_metrics():
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"""
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Function-scoped metrics collector. Drains any delta state accumulated by
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earlier tests before yielding, so counts start from zero.
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"""
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pytest.importorskip("opentelemetry.sdk")
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if _otel_metric_reader is None:
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pytest.skip("OpenTelemetry SDK meter provider was not installed")
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_otel_metric_reader.get_metrics_data()
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yield MetricsCollector(_otel_metric_reader)
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@pytest.fixture
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def bare_ds():
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"""
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Minimal Datasette with no plugins, data, metadata, or config - for tests
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that want to exercise core behavior (e.g. middleware) in isolation.
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"""
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from datasette.app import Datasette
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return Datasette(memory=True)
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@pytest_asyncio.fixture(scope="session")
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async def ds_client():
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import secrets
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from datasette.app import Datasette
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from datasette.database import Database
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from .fixtures import CONFIG, METADATA, PLUGINS_DIR
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ds = Datasette(
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metadata=METADATA,
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config=CONFIG,
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plugins_dir=PLUGINS_DIR,
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settings={
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"default_page_size": 50,
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"max_returned_rows": 100,
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"sql_time_limit_ms": 200,
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"facet_suggest_time_limit_ms": 200, # Up from 50 default
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# Default is 3 but this results in "too many open files"
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# errors when running the full test suite:
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"num_sql_threads": 1,
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},
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)
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from datasette.fixtures import populate_fixture_database
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# Use a unique memory_name to avoid collisions between different
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# Datasette instances in the same process, but use "fixtures" for routing
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unique_memory_name = f"fixtures_{secrets.token_hex(8)}"
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db = ds.add_database(Database(ds, memory_name=unique_memory_name), name="fixtures")
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ds.remove_database("_memory")
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def prepare(conn):
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if not conn.execute("select count(*) from sqlite_master").fetchone()[0]:
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populate_fixture_database(conn)
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await db.execute_write_fn(prepare)
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await ds.invoke_startup()
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return ds.client
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def pytest_report_header(config):
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conn = sqlite3.connect(":memory:")
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version = conn.execute("select sqlite_version()").fetchone()[0]
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conn.close()
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sqlite_utils_version = importlib.metadata.version("sqlite-utils")
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headers = [
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f"SQLite: {version}",
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f"sqlite-utils: {sqlite_utils_version}",
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]
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if config.getoption("--playwright"):
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try:
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browsers = config.getoption("--browser")
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except ValueError:
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browsers = None
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if isinstance(browsers, str):
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browsers = [browsers]
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if browsers:
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headers.append("Playwright browsers: {}".format(", ".join(browsers)))
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return headers
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def pytest_addoption(parser):
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parser.addoption(
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"--playwright",
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action="store_true",
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default=False,
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help="run Playwright browser automation tests",
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)
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def pytest_configure(config):
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import sys
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sys._called_from_test = True
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def pytest_unconfigure(config):
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import sys
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del sys._called_from_test
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def pytest_collection_modifyitems(config, items):
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if not config.getoption("--playwright"):
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skip_playwright = pytest.mark.skip(reason="need --playwright option to run")
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for item in items:
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if "playwright" in item.keywords:
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item.add_marker(skip_playwright)
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# Ensure test_cli.py and test_black.py and test_inspect.py run first before any asyncio code kicks in
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move_to_front(items, "test_cli")
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move_to_front(items, "test_black")
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move_to_front(items, "test_inspect_cli")
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move_to_front(items, "test_serve_with_get")
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move_to_front(items, "test_serve_with_get_exit_code_for_error")
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move_to_front(items, "test_inspect_cli_writes_to_file")
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move_to_front(items, "test_spatialite_error_if_attempt_to_open_spatialite")
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move_to_front(items, "test_package")
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move_to_front(items, "test_package_with_port")
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# Same reason: this one shells out to a fresh interpreter. Late in a serial
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# run the pytest process holds enough threads that the fork half of
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# subprocess' fork+exec crashes the interpreter on macOS/CPython 3.13
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# (SIGSEGV/SIGBUS inside _execute_child). Reproduces with any subprocess
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# call placed there, on an unmodified tree - running it first avoids it.
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move_to_front(items, "test_datasette_package_never_imports_the_sdk")
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move_to_front(items, "test_no_provider_takes_the_fast_path")
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def move_to_front(items, test_name):
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test = [fn for fn in items if fn.name == test_name]
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if test:
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items.insert(0, items.pop(items.index(test[0])))
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@pytest.fixture
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def restore_working_directory(tmpdir, request):
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try:
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previous_cwd = os.getcwd()
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except OSError:
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# https://github.com/simonw/datasette/issues/1361
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previous_cwd = None
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tmpdir.chdir()
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def return_to_previous():
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os.chdir(previous_cwd)
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if previous_cwd is not None:
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request.addfinalizer(return_to_previous)
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@pytest.fixture(scope="session", autouse=True)
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def check_actions_are_documented():
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from datasette.default_actions import register_actions as default_register_actions
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from datasette.plugins import pm
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content = (
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pathlib.Path(__file__).parent.parent / "docs" / "authentication.rst"
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).read_text()
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permissions_re = re.compile(r"\.\. _actions_([^\s:]+):")
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documented_actions = set(permissions_re.findall(content)).union(
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UNDOCUMENTED_PERMISSIONS
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)
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# Only Datasette core actions need to be documented - actions registered
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# by (test) plugins are checked for registration but not documentation
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core_actions = {action.name for action in default_register_actions()}
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def before(hook_name, hook_impls, kwargs):
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if hook_name == "permission_resources_sql":
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datasette = kwargs["datasette"]
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assert kwargs["action"] in datasette.actions, (
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"'{}' has not been registered with register_actions()".format(
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kwargs["action"]
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)
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+ " (or maybe a test forgot to do await ds.invoke_startup())"
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)
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action = kwargs.get("action").replace("-", "_")
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if kwargs["action"] in core_actions:
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assert (
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action in documented_actions
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), f"Undocumented permission action: {action}"
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pm.add_hookcall_monitoring(
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before=before, after=lambda outcome, hook_name, hook_impls, kwargs: None
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)
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class TrackEventPlugin:
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__name__ = "TrackEventPlugin"
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@dataclass
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class OneEvent(Event):
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name = "one"
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extra: str
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@hookimpl
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def register_events(self, datasette):
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async def inner():
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return [self.OneEvent]
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return inner
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@hookimpl
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def track_event(self, datasette, event):
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datasette._tracked_events = getattr(datasette, "_tracked_events", [])
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datasette._tracked_events.append(event)
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@pytest.fixture(scope="session", autouse=True)
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def install_event_tracking_plugin():
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from datasette.plugins import pm
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pm.register(TrackEventPlugin(), name="TrackEventPlugin")
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@pytest.fixture(scope="session")
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def ds_localhost_http_server():
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ds_proc = subprocess.Popen(
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[sys.executable, "-m", "datasette", "--memory", "-p", "8041"],
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stdout=subprocess.PIPE,
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stderr=subprocess.STDOUT,
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# Avoid FileNotFoundError: [Errno 2] No such file or directory:
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cwd=tempfile.gettempdir(),
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)
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wait_until_responds("http://localhost:8041/")
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# Check it started successfully
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assert not ds_proc.poll(), ds_proc.stdout.read().decode("utf-8")
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yield ds_proc
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# Shut it down at the end of the pytest session
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ds_proc.terminate()
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@pytest.fixture(scope="session")
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def ds_unix_domain_socket_server(tmp_path_factory):
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# This used to use tmp_path_factory.mktemp("uds") but that turned out to
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# produce paths that were too long to use as UDS on macOS, see
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# https://github.com/simonw/datasette/issues/1407 - so I switched to
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# using tempfile.gettempdir() with a per-process filename.
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uds = str(pathlib.Path(tempfile.gettempdir()) / f"datasette-{os.getpid()}.sock")
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try:
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os.unlink(uds)
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except FileNotFoundError:
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pass
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ds_proc = subprocess.Popen(
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[sys.executable, "-m", "datasette", "--memory", "--uds", uds],
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stdout=subprocess.PIPE,
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stderr=subprocess.STDOUT,
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cwd=tempfile.gettempdir(),
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)
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# Poll until available
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transport = httpx.HTTPTransport(uds=uds)
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client = httpx.Client(transport=transport)
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try:
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wait_until_responds(
|
|
"http://localhost/_memory.json", timeout=30.0, client=client
|
|
)
|
|
# Check it started successfully
|
|
assert not ds_proc.poll(), ds_proc.stdout.read().decode("utf-8")
|
|
yield ds_proc, uds
|
|
finally:
|
|
client.close()
|
|
# Shut it down at the end of the pytest session
|
|
ds_proc.terminate()
|
|
try:
|
|
ds_proc.wait(timeout=5)
|
|
except subprocess.TimeoutExpired:
|
|
ds_proc.kill()
|
|
ds_proc.wait()
|
|
try:
|
|
os.unlink(uds)
|
|
except FileNotFoundError:
|
|
pass
|
|
|
|
|
|
@pytest.fixture
|
|
def serve_with_plugins(tmp_path):
|
|
"""Factory fixture for starting ``datasette serve`` in a subprocess with
|
|
plugins written to a temporary ``--plugins-dir``.
|
|
|
|
For tests that need the real serve path: event-loop wiring, exit codes,
|
|
signals. The usual in-process ``pm.register`` plugin pattern can't reach
|
|
a subprocess, so plugin source is written out as importable files instead.
|
|
|
|
Unlike ``ds_localhost_http_server`` this is function-scoped and takes a
|
|
fresh port each time, because each test needs its own plugins. Call it as::
|
|
|
|
proc, port = serve_with_plugins({"my_plugin": PLUGIN_SOURCE})
|
|
|
|
``plugins`` maps module name to Python source. Pass
|
|
``wait_for_startup=False`` when the server is expected to fail during
|
|
startup rather than begin serving. Extra CLI arguments are passed through.
|
|
Every process started is terminated when the test ends.
|
|
"""
|
|
processes = []
|
|
|
|
def start(plugins, *extra_args, wait_for_startup=True):
|
|
plugins_dir = tmp_path / "plugins"
|
|
plugins_dir.mkdir(exist_ok=True)
|
|
for module_name, source in plugins.items():
|
|
(plugins_dir / f"{module_name}.py").write_text(source, "utf-8")
|
|
port = find_free_port()
|
|
proc = subprocess.Popen(
|
|
[
|
|
sys.executable,
|
|
"-m",
|
|
"datasette",
|
|
"--memory",
|
|
"--plugins-dir",
|
|
str(plugins_dir),
|
|
"-h",
|
|
"127.0.0.1",
|
|
"-p",
|
|
str(port),
|
|
*extra_args,
|
|
],
|
|
stdout=subprocess.PIPE,
|
|
stderr=subprocess.STDOUT,
|
|
# Avoid FileNotFoundError: [Errno 2] No such file or directory:
|
|
cwd=tempfile.gettempdir(),
|
|
)
|
|
processes.append(proc)
|
|
if wait_for_startup:
|
|
wait_until_responds(
|
|
f"http://127.0.0.1:{port}/-/versions.json", process=proc
|
|
)
|
|
return proc, port
|
|
|
|
yield start
|
|
|
|
for proc in processes:
|
|
if proc.poll() is None:
|
|
proc.terminate()
|
|
try:
|
|
proc.wait(timeout=5)
|
|
except subprocess.TimeoutExpired:
|
|
proc.kill()
|
|
proc.wait()
|
|
|
|
|
|
# Import fixtures from fixtures.py to make them available
|
|
from .fixtures import ( # noqa: F401
|
|
TEMP_PLUGIN_SECRET_FILE,
|
|
app_client,
|
|
app_client_base_url_prefix,
|
|
app_client_conflicting_database_names,
|
|
app_client_csv_max_mb_one,
|
|
app_client_immutable_and_inspect_file,
|
|
app_client_larger_cache_size,
|
|
app_client_no_files,
|
|
app_client_returned_rows_matches_page_size,
|
|
app_client_shorter_time_limit,
|
|
app_client_two_attached_databases,
|
|
app_client_two_attached_databases_crossdb_enabled,
|
|
app_client_two_attached_databases_one_immutable,
|
|
app_client_with_cors,
|
|
app_client_with_dot,
|
|
make_app_client,
|
|
)
|