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The gates have never gone green on the new runners. Three separate reasons: - backend/Dockerfile shipped Python 3.10 while the code imports typing.Self and datetime.UTC, so the container exited on import and the suite could not even load its conftest. The image moves to 3.13 and the packages declare >=3.12, which is the floor the tests actually pass on; ruff's target follows and rewrites timezone.utc and asyncio.TimeoutError accordingly. Relocking drops the 3.10 branch, which bumps FastAPI and so regenerates the SDK. - frontend/README.md had no trailing newline and two dashboard widgets used arbitrary text-[…] sizes. Both are em-relative on purpose, so they move to the inline style the neighbouring ramp already uses. - Every commit left its own run queued: without a concurrency group a runner that was offline for a while works through a backlog nobody reads. A stack that fails to come up now prints its logs before the teardown removes it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
170 lines
5.6 KiB
Python
170 lines
5.6 KiB
Python
"""Inject: the node that starts something, on a timer or on request.
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Node-RED's *inject* is the most placed trigger in a real installation — mostly
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as a button someone presses, sometimes on an interval, occasionally once when
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everything comes up.
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"""
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from __future__ import annotations
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import asyncio
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import logging
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import time
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from collections.abc import Iterable
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from typing import TYPE_CHECKING, Any
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from pydantic import BaseModel, ConfigDict, Field
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from fluksio.flow.messages import MessageSpec
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from fluksio.flow.nodes.base import Node
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if TYPE_CHECKING:
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from fastapi import FastAPI
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logger = logging.getLogger(__name__)
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class InjectNode(Node):
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"""Emit a value: on request, every n seconds, on a schedule, or at startup.
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The value is whatever ``payload`` says, or the current time when it says
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nothing — a timestamp is what most schedules actually want. ``payloads``
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overrides that per output port, for a node that starts more than one thing.
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"""
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class Params(BaseModel):
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model_config = ConfigDict(extra="allow")
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payload: Any = Field(
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default=None,
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description="What to emit. Empty emits the current time.",
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)
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payloads: dict[str, Any] = Field(
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default_factory=dict,
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description=(
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"What to emit on each output port, keyed by port name. A port not "
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"named here falls back to `payload`."
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),
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)
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interval: float = Field(
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default=0,
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ge=0,
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description="Emit every this many seconds. 0 means never on its own.",
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)
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cron: str = Field(
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default="",
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description="A five-field cron expression, if it should follow a schedule.",
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)
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at_start: bool = Field(
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default=False,
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description="Emit once when the flow starts.",
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)
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start_delay: float = Field(
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default=1.0,
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ge=0,
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description="How long to wait before the startup emission.",
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)
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__slots__ = ("cfg", "_stop")
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def __init__(
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self,
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requires: MessageSpec | Iterable[MessageSpec] = (),
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provides: MessageSpec | Iterable[MessageSpec] = (),
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params: dict[str, Any] | None = None,
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name: str | None = None,
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):
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self.cfg = self.Params.model_validate(params or {})
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self._stop: asyncio.Event | None = None
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super().__init__(
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f=self._emit,
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requires=requires,
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provides=provides,
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params=params,
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name=name or "inject",
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)
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def _values(self) -> dict[str, Any]:
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"""One value per output port: its own, or the node-wide payload."""
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# Read once, so an emission that falls back carries a single timestamp
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# across every port rather than one per port.
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fallback = time.time() if self.cfg.payload is None else self.cfg.payload
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return {
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spec.port: self.cfg.payloads.get(spec.port, fallback)
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for spec in self.output_ports
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}
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def _emit(self, params: dict[str, Any], **kwargs: Any) -> dict[str, Any] | None:
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"""Each output carries what its port says to emit."""
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return self._values() or None
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# -------------------------------------------------------------------------
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# Its own schedule
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# -------------------------------------------------------------------------
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async def start(self, app: FastAPI | None = None) -> None:
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if self._stop is not None:
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return
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if not (self.cfg.interval or self.cfg.cron or self.cfg.at_start):
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# A manual inject waits to be pressed.
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return
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self._stop = asyncio.Event()
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self._run_supervised("inject", self._loop)
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async def stop(self, app: FastAPI | None = None) -> None:
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if self._stop is None:
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return
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self._stop.set()
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self._stop = None
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async def _loop(self) -> None:
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stop = self._stop
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if stop is None:
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return
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if self.cfg.at_start:
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# A moment's grace, so subscribers are listening before it fires.
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await self._sleep(stop, self.cfg.start_delay)
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if stop.is_set():
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return
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await self._fire()
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if self.cfg.cron:
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await self._cron_loop(stop)
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elif self.cfg.interval:
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while not stop.is_set():
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await self._sleep(stop, self.cfg.interval)
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if stop.is_set():
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return
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await self._fire()
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async def _cron_loop(self, stop: asyncio.Event) -> None:
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from datetime import datetime
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from croniter import croniter # type: ignore[import-untyped]
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if not croniter.is_valid(self.cfg.cron):
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raise ValueError(f"'{self.cfg.cron}' is not a cron expression")
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cron = croniter(self.cfg.cron, datetime.now())
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while not stop.is_set():
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wait = max(0.0, (cron.get_next(datetime) - datetime.now()).total_seconds())
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await self._sleep(stop, wait)
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if stop.is_set():
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return
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await self._fire()
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@staticmethod
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async def _sleep(stop: asyncio.Event, seconds: float) -> None:
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"""Wait, but wake immediately if the node is being stopped."""
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try:
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await asyncio.wait_for(stop.wait(), timeout=seconds)
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except TimeoutError:
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pass
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async def _fire(self) -> None:
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outputs = self._values()
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if outputs:
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# inject runs the graph, which is blocking work.
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await asyncio.to_thread(self.inject, outputs)
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