Three faults with one root: the stored body of a code-defined node is an import shim, and nothing that mattered was ever read from the code itself. - The run stamp could not identify what ran. The shim imports whatever is on disk when the worker starts, and an uncommitted tree stamps <commit>-dirty for every run it ever produces. Run.code_digest hashes the repository's .py files, memoized on their stat state, and it is read again when the run is actually claimed -- so a sweep queued for hours records the code each of its runs executed, not the code that was there when it was submitted. - The stage cache adopted code that was too new. The fingerprint hashed the shim, which is invariant under any edit to the imported function or anything it calls into, so a re-run was served from cache and answered without the outputs the edit added. It now carries the repo digest and the node's declared ports. Every fingerprint changes once, which invalidates the existing cache; a canvas flow has no repository and keys as before. - An interrupted sync looked like a hand-edited canvas. The engine answers a new-node template for a node with no stored body, and the template carries no marker, so the drift check read "somebody edited this" and demanded --force -- for the one state that re-running the sync is the fix for. NodeSource.missing states the fact, and sync skips those and reuses the bodies it read instead of asking for each one twice. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
449 lines
16 KiB
Python
449 lines
16 KiB
Python
"""Runs over the API: submit one, watch it, read what it made.
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Submitting returns immediately with a queued run — a training run is measured
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in hours, so nothing here waits for one. The way to follow a run is to poll it
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or to listen on the flow socket, which carries its start and finish.
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"""
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from datetime import UTC, datetime
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from typing import Any, Literal
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from fastapi import APIRouter, Depends, HTTPException, Request
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from fastapi.concurrency import run_in_threadpool
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from pydantic import BaseModel, Field, model_validator
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from sqlalchemy import func
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from sqlalchemy import select as sa_select
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from sqlmodel import Session, col, select
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from fluksio.api.deps import CurrentUser, SessionDep, get_current_user
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from fluksio.flow.messages import requalify
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from fluksio.flow.runs import RunRejected, RunService, new_run_id
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from fluksio.flow.store import FlowNotFound
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from fluksio.models import Run, RunArtifact, RunMetric, RunNode
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router = APIRouter(
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prefix="/runs", tags=["runs"], dependencies=[Depends(get_current_user)]
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)
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#: A sweep bigger than this is almost always a mistake in a loop.
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MAX_SWEEP = 1000
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def elapsed_ms(since: datetime) -> float:
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"""Milliseconds since an instant the columns stored as UTC."""
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start = since if since.tzinfo else since.replace(tzinfo=UTC)
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return round((datetime.now(UTC) - start).total_seconds() * 1000, 2)
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#: Where a caller may say a run came from. "sweep" is not here because the
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#: sweep route writes it itself, and neither is a value a client made up: the
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#: column is only worth a table row if it means the same thing every time.
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RunCause = Literal["api", "cli", "sdk"]
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class RunCreate(BaseModel):
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params: dict[str, Any] = Field(default_factory=dict)
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seed: int | None = None
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#: Run the unpublished draft instead of what is published.
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draft: bool = False
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#: Execute every node, whatever an earlier run already worked out.
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no_cache: bool = False
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#: Who is asking. The dashboard leaves it, and is the "api" default.
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cause: RunCause = "api"
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#: A key the caller minted for this submission. Sending it again returns
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#: the run it already made, so a retry after a timeout cannot double-submit.
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idempotency_key: str | None = Field(default=None, max_length=64)
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class SweepEntry(BaseModel):
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params: dict[str, Any] = Field(default_factory=dict)
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seed: int | None = None
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#: One per entry, so retrying a half-created sweep recreates only the runs
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#: whose rows never landed.
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idempotency_key: str | None = Field(default=None, max_length=64)
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class SweepCreate(BaseModel):
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runs: list[SweepEntry] = Field(default_factory=list)
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draft: bool = False
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no_cache: bool = False
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class RunNodeRow(BaseModel):
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node: str
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status: str
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attempt: int
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duration_ms: float
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worker: str
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error: str
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logs: str
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#: What this node's result was looked up by. Empty when it may not be
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#: reused; `status` is "cached" when it was.
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cache_key: str = ""
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#: Which run it was restored from, when it was. That run is also where this
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#: node's series was recorded.
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cached_from: str = ""
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class ArtifactRow(BaseModel):
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name: str
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node: str
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digest: str
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size: int
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media_type: str
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class RunRow(BaseModel):
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"""A run without its result, which is the part that can be large."""
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id: str
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flow: str
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status: str
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status_reason: str
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cause: str
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params: dict[str, Any]
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params_digest: str
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#: The user repository's commit, for a flow declared in code with the
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#: decorators. Empty for one drawn on the canvas, where `commit` is the
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#: whole answer to what produced the number.
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origin_commit: str = ""
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#: What that repository's python files hashed to when the run started.
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#: Two runs of one dirty tree share a commit and differ here, which is the
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#: only way to tell apart what they actually executed.
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code_digest: str = ""
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#: The flow store's own commit. Short, unlike `result`, so the list
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#: carries it: "what code produced this" is a question asked of a table.
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commit: str = ""
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seed: int | None
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group_id: str | None
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labels: list[str]
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created_at: Any
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started_at: Any = None
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finished_at: Any = None
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#: How long it took, or — while it is still going — how long it has been
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#: going: a duration of its own is only written once a run finishes.
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duration_ms: float
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actor: str
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@model_validator(mode="after")
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def _running_duration(self) -> "RunRow":
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if self.status == "running" and not self.duration_ms and self.started_at:
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self.duration_ms = elapsed_ms(self.started_at)
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return self
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class RunDetail(RunRow):
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result: dict[str, Any] = Field(default_factory=dict)
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flow_version: int = 1
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nodes: list[RunNodeRow] = Field(default_factory=list)
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artifacts: list[ArtifactRow] = Field(default_factory=list)
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class FlowRunsRow(BaseModel):
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"""How much a flow has been run, for the screen's list of flows."""
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flow: str
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runs: int
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running: int
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queued: int
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last_created_at: Any = None
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class MetricPoint(BaseModel):
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step: int
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ts: float
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value: float
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name: str = ""
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class MetricSeries(BaseModel):
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"""The shape a chart widget already draws, so comparing runs is a binding."""
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label: str
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points: list[list[float]] = Field(default_factory=list)
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class SeriesAnswer(BaseModel):
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metric: str
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#: What the x values are: "step", "time" (seconds since this run's first
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#: reading), or the name of another metric this one was plotted against.
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x: str = "step"
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lines: list[MetricSeries] = Field(default_factory=list)
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def _service(request: Request) -> RunService:
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service: RunService | None = getattr(request.app.state, "run_service", None)
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if service is None:
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raise HTTPException(status_code=503, detail="Runs are not available")
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return service
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@router.post("/flows/{name}", response_model=RunRow, status_code=202)
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async def create_run(
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name: str, body: RunCreate, request: Request, user: CurrentUser
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) -> Any:
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"""Queue one run of a flow."""
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service = _service(request)
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try:
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return await run_in_threadpool(
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service.submit,
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name,
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params=body.params,
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seed=body.seed,
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cause=body.cause,
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actor=user.email,
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draft=body.draft,
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no_cache=body.no_cache,
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idempotency_key=body.idempotency_key,
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)
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except FlowNotFound as exc:
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raise HTTPException(status_code=404, detail=str(exc)) from exc
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except RunRejected as exc:
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raise HTTPException(status_code=422, detail=str(exc)) from exc
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@router.post("/flows/{name}/sweep", response_model=list[RunRow], status_code=202)
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async def create_sweep(
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name: str, body: SweepCreate, request: Request, user: CurrentUser
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) -> Any:
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"""Queue many runs of one flow under a shared group.
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An ensemble is this with the same parameters and different seeds; a grid
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search is this with the parameters spread out. Either way the caller
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builds the list — the engine does not own a sweep grammar.
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"""
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if not body.runs:
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raise HTTPException(status_code=422, detail="A sweep needs at least one run")
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if len(body.runs) > MAX_SWEEP:
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raise HTTPException(
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status_code=422, detail=f"A sweep is capped at {MAX_SWEEP} runs"
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)
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service = _service(request)
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group = new_run_id()
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def submit_all() -> list[Run]:
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return [
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service.submit(
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name,
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params=entry.params,
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seed=entry.seed,
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group_id=group,
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cause="sweep",
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actor=user.email,
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draft=body.draft,
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no_cache=body.no_cache,
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idempotency_key=entry.idempotency_key,
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)
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for entry in body.runs
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]
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try:
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return await run_in_threadpool(submit_all)
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except FlowNotFound as exc:
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raise HTTPException(status_code=404, detail=str(exc)) from exc
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except RunRejected as exc:
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raise HTTPException(status_code=422, detail=str(exc)) from exc
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@router.get("", response_model=list[RunRow])
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def read_runs(
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session: SessionDep,
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flow: str | None = None,
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status: str | None = None,
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group: str | None = None,
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digest: str | None = None,
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limit: int = 50,
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offset: int = 0,
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) -> Any:
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"""Runs, newest first. The queryable table an experiment log needs."""
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statement = select(Run).order_by(col(Run.created_at).desc())
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if flow:
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statement = statement.where(col(Run.flow) == flow)
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if status:
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statement = statement.where(col(Run.status) == status)
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if group:
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statement = statement.where(col(Run.group_id) == group)
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if digest:
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statement = statement.where(col(Run.params_digest) == digest)
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statement = statement.offset(max(0, offset)).limit(min(limit, 500))
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return list(session.exec(statement))
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@router.get("/overview", response_model=list[FlowRunsRow])
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def read_overview(session: SessionDep) -> Any:
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"""One row per flow that has ever run, busiest-recent first.
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The list caps at 500 newest runs, so counting flows on the client goes
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wrong the moment a history outgrows one page. The database counts instead.
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"""
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statement = sa_select(
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col(Run.flow),
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col(Run.status),
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func.count(col(Run.id)),
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func.max(col(Run.created_at)),
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).group_by(col(Run.flow), col(Run.status))
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rows: dict[str, FlowRunsRow] = {}
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for flow, status, count, latest in session.execute(statement):
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row = rows.setdefault(flow, FlowRunsRow(flow=flow, runs=0, running=0, queued=0))
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row.runs += count
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if status == "running":
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row.running += count
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elif status == "queued":
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row.queued += count
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if row.last_created_at is None or latest > row.last_created_at:
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row.last_created_at = latest
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return sorted(rows.values(), key=lambda row: row.last_created_at, reverse=True)
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@router.get("/{run_id}", response_model=RunDetail)
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def read_run(run_id: str, session: SessionDep) -> Any:
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"""One run in full: what it was asked, what each node did, what it made."""
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run = session.get(Run, run_id)
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if run is None:
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raise HTTPException(status_code=404, detail="No such run")
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nodes = session.exec(select(RunNode).where(col(RunNode.run_id) == run_id)).all()
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artifacts = session.exec(
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select(RunArtifact).where(col(RunArtifact.run_id) == run_id)
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).all()
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detail = RunDetail.model_validate(run, from_attributes=True)
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detail.nodes = [RunNodeRow.model_validate(n, from_attributes=True) for n in nodes]
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detail.artifacts = [
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ArtifactRow.model_validate(a, from_attributes=True) for a in artifacts
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]
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return detail
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@router.post("/{run_id}/cancel", response_model=RunRow)
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async def cancel_run(run_id: str, request: Request, session: SessionDep) -> Any:
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"""Stop a run. One already past its last node is left as it finished."""
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run = session.get(Run, run_id)
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if run is None:
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raise HTTPException(status_code=404, detail="No such run")
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service = _service(request)
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await run_in_threadpool(service.cancel, run_id)
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session.refresh(run)
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return run
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def _series(session: Session, run_id: str, name: str = "") -> list[RunMetric]:
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"""A run's numbers, including the ones a cached node points at.
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A cache hit replays no emissions, so a node restored from an earlier run has
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no rows of its own — it carries that run's id instead, and its series is read
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from there. Names are re-qualified on the way out, because the same node
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reached through two flows publishes under two names and the caller asked for
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this run's.
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"""
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statement = select(RunMetric).where(col(RunMetric.run_id) == run_id)
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if name:
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statement = statement.where(col(RunMetric.name) == name)
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rows = list(session.exec(statement))
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restored = session.exec(
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select(RunNode).where(
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col(RunNode.run_id) == run_id, col(RunNode.cached_from) != ""
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)
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).all()
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if restored:
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run = session.get(Run, run_id)
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flow = run.flow if run is not None else ""
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for node_row in restored:
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source = session.get(Run, node_row.cached_from)
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if source is None:
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# The run it came from is gone — deleted with its flow. The
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# outputs are still on this run; the curve is not recoverable.
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continue
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source_node = requalify(node_row.node, flow, source.flow)
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for row in session.exec(
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select(RunMetric).where(
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col(RunMetric.run_id) == node_row.cached_from,
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col(RunMetric.node) == source_node,
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)
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):
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renamed = requalify(row.name, source.flow, flow)
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if name and renamed != name:
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continue
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rows.append(
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RunMetric(
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run_id=run_id,
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name=renamed,
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step=row.step,
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node=node_row.node,
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ts=row.ts,
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value=row.value,
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)
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)
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rows.sort(key=lambda row: (row.name, row.step))
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return rows
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@router.get("/{run_id}/metrics", response_model=list[MetricPoint])
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def read_metrics(
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run_id: str, session: SessionDep, name: str = "", stride: int = 1
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) -> Any:
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"""One metric's series, in step order — or every one of them, unnamed.
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``stride`` thins a long curve down: 3000 steps drawn on a 400-pixel chart
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is 3000 points nobody can see.
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"""
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rows = _series(session, run_id, name)
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if stride > 1:
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rows = rows[:: max(1, stride)]
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return rows
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def _points(session: Session, run_id: str, metric: str, x: str) -> list[list[float]]:
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"""One run's readings of ``metric``, against whichever x was asked for.
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The step is the default because it is what every run has. Time answers
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"which one got there sooner", and is measured from this run's own first
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reading so that runs started hours apart still lie on top of each other.
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Another metric answers "against what the loop was actually counting" — an
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epoch, or samples seen — and is joined on the step the two share, which is
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the only thing they have in common.
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"""
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rows = _series(session, run_id, metric)
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if x == "time":
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if not rows:
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return []
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start = min(row.ts for row in rows)
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return [[row.ts - start, row.value] for row in rows]
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if x and x != "step":
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against = {row.step: row.value for row in _series(session, run_id, x)}
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return [[against[row.step], row.value] for row in rows if row.step in against]
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return [[float(row.step), row.value] for row in rows]
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@router.get("/series/compare", response_model=SeriesAnswer)
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def compare_metric(session: SessionDep, ids: str, metric: str, x: str = "") -> Any:
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"""One metric across several runs, as the chart widget's series shape.
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This is the comparison view: it answers in the same shape a flow answers a
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chart's query with, so putting three training curves beside each other is
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a widget binding rather than a screen of its own.
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``x`` names what to plot against — nothing or "step", "time", or another
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metric of the same runs.
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"""
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run_ids = [part for part in ids.split(",") if part]
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if not run_ids:
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raise HTTPException(status_code=422, detail="Name at least one run")
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runs = {
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run.id: run
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for run in session.exec(select(Run).where(col(Run.id).in_(run_ids))).all()
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}
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lines: list[MetricSeries] = []
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for run_id in run_ids:
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run = runs.get(run_id)
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if run is None:
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continue
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label = run_id
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if run.seed is not None:
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label = f"{run_id} (seed {run.seed})"
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lines.append(
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MetricSeries(label=label, points=_points(session, run_id, metric, x))
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)
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return SeriesAnswer(metric=metric, x=x or "step", lines=lines)
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