更新前端看板
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@@ -88,6 +88,22 @@ def parse_size_bytes(value: Any) -> int:
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return max(0, round(amount * _SIZE_UNIT_BYTES[unit]))
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def count_dataset_records(content: str) -> int:
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text = (content or "").strip()
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if not text:
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return 0
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try:
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value = json.loads(text)
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if isinstance(value, list):
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return len(value)
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return 1
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except (TypeError, ValueError, json.JSONDecodeError):
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pass
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return len([line for line in text.splitlines() if line.strip()])
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def version_number(value: Any, default: int = 0) -> int:
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try:
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number = int(value)
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@@ -296,6 +312,7 @@ class PlatformStore:
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# request (notably expensive against the remote PostgreSQL instance).
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# TCP keepalive 让操作系统持续保活连接,抵抗远程库空闲静默断连。
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pool_kwargs = {
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"connect_timeout": 5,
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"keepalives": 1,
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"keepalives_idle": 10,
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"keepalives_interval": 5,
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@@ -320,6 +337,19 @@ class PlatformStore:
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self._pool.open()
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self.ensure_schema()
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self.ensure_seed_data()
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# Track which compute nodes have an active inference model loaded
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self._inference_nodes: set[str] = set()
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# ── inference node tracking ────────────────────────────────────
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def mark_inference_loaded(self, node_id: str) -> None:
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self._inference_nodes.add(node_id)
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def mark_inference_unloaded(self, node_id: str) -> None:
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self._inference_nodes.discard(node_id)
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def is_inference_loaded(self, node_id: str) -> bool:
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return node_id in self._inference_nodes
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@contextmanager
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def connect(self) -> Iterator["PgConnection"]:
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@@ -1298,6 +1328,7 @@ class PlatformStore:
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file_size_bytes = int(file_row.get("size_bytes") or 0)
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if file_size_bytes <= 0:
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file_size_bytes = parse_size_bytes(file_row.get("size"))
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file_record_count = int(file_row.get("record_count") or 0)
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decoded_files.append(
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{
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"id": file_row["id"],
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@@ -1306,7 +1337,7 @@ class PlatformStore:
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"size_bytes": file_size_bytes,
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**dataset_file_version_summary(file_row),
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"create_time": file_row["create_time"],
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"record_count": int(file_row.get("record_count") or 0),
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"record_count": file_record_count,
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"split": metadata.get("file_split"),
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}
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)
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@@ -1324,6 +1355,9 @@ class PlatformStore:
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total_size_bytes = int(row.get("size_bytes") or 0)
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if total_size_bytes <= 0:
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total_size_bytes = parse_size_bytes(row.get("size"))
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total_record_count = sum(int(item.get("record_count") or 0) for item in decoded_files)
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if not decoded_files:
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total_record_count = int(row.get("record_count") or row.get("count") or 0)
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current_version_nos = sorted(
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{
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int(item["current_version_no"])
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@@ -1333,6 +1367,8 @@ class PlatformStore:
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)
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return {
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**dict(row),
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"count": total_record_count,
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"record_count": total_record_count,
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"size_bytes": total_size_bytes,
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"current_version_no": (
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current_version_nos[0] if len(current_version_nos) == 1 else None
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@@ -1407,7 +1443,7 @@ class PlatformStore:
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version_id = f"{file_id}_v1"
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size_bytes = len(content.encode("utf-8"))
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size = f"{size_bytes} B"
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record_count = len([line for line in content.splitlines() if line.strip()])
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record_count = count_dataset_records(content)
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version = {
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"id": version_id,
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"version": 1,
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@@ -1440,10 +1476,18 @@ class PlatformStore:
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)
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conn.execute(
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"""UPDATE datasets
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SET count=count+?, record_count=record_count+?,
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size_bytes=size_bytes+?, size=((size_bytes+?)::text || ' B')
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SET count=stats.record_count,
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record_count=stats.record_count,
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size_bytes=stats.size_bytes,
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size=(stats.size_bytes::text || ' B')
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FROM (
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SELECT COALESCE(SUM(record_count), 0) AS record_count,
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COALESCE(SUM(size_bytes), 0) AS size_bytes
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FROM dataset_files
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WHERE dataset_id=?
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) stats
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WHERE id=?""",
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(record_count, record_count, size_bytes, size_bytes, dataset_id),
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(dataset_id, dataset_id),
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)
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return {
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"id": file_id,
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@@ -1548,19 +1592,57 @@ class PlatformStore:
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row = conn.execute("SELECT * FROM dataset_files WHERE id=?", (file_id,)).fetchone()
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if not row:
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raise KeyError(file_id)
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content = payload.get("content", "")
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size_bytes = len(content.encode("utf-8"))
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record_count = count_dataset_records(content)
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versions = json_loads(row["versions"], [])
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version = {
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"id": f"{file_id}_v{len(versions) + 1}",
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"version": len(versions) + 1,
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"version_no": len(versions) + 1,
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"create_time": utcnow(),
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"description": payload.get("description", "online edit"),
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"size_bytes": size_bytes,
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"record_count": record_count,
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}
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versions.append(version)
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conn.execute(
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"UPDATE dataset_files SET content=?, active_version_id=?, versions=? WHERE id=?",
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(payload.get("content", ""), version["id"], json_dumps(versions), file_id),
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"""
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UPDATE dataset_files
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SET content=?, active_version_id=?, current_version_id=?, versions=?,
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size_bytes=?, size=?, record_count=?, version_no=?
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WHERE id=?
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""",
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(
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content,
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version["id"],
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version["id"],
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json_dumps(versions),
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size_bytes,
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f"{size_bytes} B",
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record_count,
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version["version_no"],
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file_id,
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),
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)
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return {"version": version, "content": payload.get("content", "")}
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conn.execute(
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"""UPDATE datasets
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SET count=stats.record_count,
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record_count=stats.record_count,
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size_bytes=stats.size_bytes,
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size=(stats.size_bytes::text || ' B')
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FROM (
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SELECT dataset_id,
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COALESCE(SUM(record_count), 0) AS record_count,
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COALESCE(SUM(size_bytes), 0) AS size_bytes
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FROM dataset_files
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WHERE dataset_id=(SELECT dataset_id FROM dataset_files WHERE id=?)
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GROUP BY dataset_id
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) stats
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WHERE datasets.id=stats.dataset_id""",
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(file_id,),
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)
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return {"version": version, "content": content}
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def activate_file_version(self, file_id: str, version_id: str) -> dict[str, Any]:
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with self.connect() as conn:
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@@ -2114,10 +2196,63 @@ class PlatformStore:
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)
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return self.eval_task(task_id)
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def update_eval_task(self, task_id: str, updates: dict[str, Any]) -> dict[str, Any]:
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"""Update fields in an eval task's payload without replacing the whole record."""
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task = self.eval_task(task_id)
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merged = {**task, **updates}
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with self.connect() as conn:
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conn.execute(
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"UPDATE eval_tasks SET payload=?, status=? WHERE id=?",
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(json_dumps(merged), merged.get("status", task.get("status", "pending")), task_id),
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)
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return self.eval_task(task_id)
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def delete_eval_task(self, task_id: str) -> None:
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with self.connect() as conn:
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conn.execute("DELETE FROM eval_tasks WHERE id=?", (task_id,))
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def running_eval_tasks(self) -> list[dict[str, Any]]:
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"""Return eval tasks that have been submitted to a compute node and are still running."""
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return [
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task for task in self.eval_tasks()
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if task.get("compute_job_id") and task.get("status") in {"queued", "running"}
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]
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def apply_eval_job_result(self, task_id: str, job: dict[str, Any], result_content: dict[str, Any] | None = None) -> dict[str, Any]:
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"""Sync a compute job status/result back to an eval task."""
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task = self.eval_task(task_id)
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job_status = str(job.get("status", ""))
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status_map = {"queued": "running", "running": "running", "completed": "completed",
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"failed": "failed", "stopped": "stopped"}
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new_status = status_map.get(job_status, job_status or task.get("status", "pending"))
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updates: dict[str, Any] = {
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"status": new_status,
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"progress": int(job.get("progress", 0)),
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"output_dir": job.get("output_dir", task.get("output_dir", "")),
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}
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# On completion, populate results from eval_results.json content
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if new_status == "completed" and result_content:
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updates.update({
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"overall_score": result_content.get("overall_score", 0),
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"overall_score_max": result_content.get("overall_score_max", 100),
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"overall_evaluation": result_content.get("overall_evaluation", ""),
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"improvement_suggestions": result_content.get("improvement_suggestions", []),
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"dimension_summary": result_content.get("dimension_summary", []),
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"samples": result_content.get("samples", []),
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"sample_count": result_content.get("sample_count", 0),
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"completed_count": result_content.get("completed_count", 0),
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"passed_count": result_content.get("passed_count", 0),
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"basic_metrics": result_content.get("basic_metrics", {}),
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"score": result_content.get("overall_score", 0),
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"completed_time": utcnow(),
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})
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elif new_status in {"failed", "stopped"}:
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updates.update({
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"error": job.get("error") or task.get("error") or "",
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"completed_time": utcnow(),
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})
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return self.update_eval_task(task_id, updates)
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def dimensions(self) -> list[dict[str, Any]]:
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with self.connect() as conn:
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rows = conn.execute("SELECT * FROM eval_dimensions ORDER BY create_time DESC").fetchall()
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@@ -2284,6 +2419,15 @@ class PlatformStore:
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).fetchall()
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return {int(row["gpu_index"]) for row in rows}
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def _node_gpu_indexes(self, conn: PgConnection, node: dict[str, Any]) -> set[int]:
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rows = conn.execute("SELECT gpu_index FROM gpus WHERE node_id=?", (node["id"],)).fetchall()
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if rows:
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return {int(row["gpu_index"]) for row in rows}
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return set(range(max(0, int(node.get("gpu_count") or 0))))
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def _node_capacity(self, node: dict[str, Any]) -> int:
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return max(1, int(node.get("max_parallel_jobs") or 1), int(node.get("gpu_count") or 0))
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def _schedule_node_locked(self, conn: PgConnection, payload: dict[str, Any]) -> dict[str, Any]:
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requested = payload.get("requested_node_id") or payload.get("compute_node_id")
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requested_gpus = [int(item) for item in payload.get("gpus") or []]
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@@ -2291,13 +2435,15 @@ class PlatformStore:
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candidates = [
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n
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for n in nodes
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if n["enabled"] and n["scheduler_status"] == "online" and n["current_running_jobs"] < n["max_parallel_jobs"]
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if n["enabled"] and n["scheduler_status"] == "online" and n["current_running_jobs"] < self._node_capacity(n)
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]
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if requested_gpus:
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requested_gpu_set = set(requested_gpus)
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candidates = [
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node
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for node in candidates
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if not set(requested_gpus).intersection(self._active_gpu_indexes(conn, node["id"]))
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if requested_gpu_set.issubset(self._node_gpu_indexes(conn, node))
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and not requested_gpu_set.intersection(self._active_gpu_indexes(conn, node["id"]))
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]
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if requested:
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selected = next((n for n in candidates if n["id"] == requested), None)
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@@ -2312,8 +2458,8 @@ class PlatformStore:
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reason = "disabled"
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elif node["scheduler_status"] != "online":
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reason = f"status={node['scheduler_status']}"
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elif node["current_running_jobs"] >= node["max_parallel_jobs"]:
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reason = f"capacity full {node['current_running_jobs']}/{node['max_parallel_jobs']}"
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elif node["current_running_jobs"] >= self._node_capacity(node):
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reason = f"capacity full {node['current_running_jobs']}/{self._node_capacity(node)}"
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else:
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reason = "not selected"
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reasons.append(f"{node['code']}({reason})")
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@@ -2664,6 +2810,24 @@ class PlatformStore:
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)
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return next(node for node in self.compute_nodes() if node["id"] == node_id)
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def delete_compute_node(self, node_id: str) -> dict[str, Any]:
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with self.connect() as conn:
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node = conn.execute("SELECT * FROM compute_nodes WHERE id=?", (node_id,)).fetchone()
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if not node:
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raise KeyError(node_id)
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active = conn.execute(
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"""
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SELECT COUNT(*) AS cnt
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FROM fine_tune_tasks
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WHERE compute_node_id=? AND status IN ('syncing','queued','running')
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""",
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(node_id,),
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).fetchone()
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if active and int(active["cnt"] or 0) > 0:
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raise ValueError("compute node has active training tasks")
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conn.execute("DELETE FROM compute_nodes WHERE id=?", (node_id,))
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return {"deleted": node_id}
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def update_compute_node_health(self, node_id: str, health: dict[str, Any], success: bool, error: str | None = None) -> dict[str, Any]:
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current = next((n for n in self.compute_nodes() if n["id"] == node_id), None)
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if not current:
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@@ -2749,6 +2913,11 @@ class PlatformStore:
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)
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busy = task is not None and task.get("status") == "running"
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reserved = task is not None and task.get("status") in {"syncing", "queued"}
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# Also mark GPU as busy if an inference model is loaded on this node
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inference_busy = self.is_inference_loaded(row["node_id"])
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if inference_busy and not busy:
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busy = True
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reserved = False
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memory_used = round(row["memory_total_gb"] * (0.72 if busy else 0.18 if reserved else 0.04), 1)
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gpu_percent = 86 if busy else 22 if reserved else 3
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memory_total = float(row["memory_total_gb"] or 0)
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@@ -2827,11 +2996,12 @@ class PlatformStore:
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}
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def health_metrics(self) -> dict[str, float]:
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info = self.system_info()
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# Health checks must stay lightweight. The Docker healthcheck and page
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# refresh probes should not wait on dashboard/GPU/database aggregation.
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return {
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"cpu_percent": info["cpu"]["percent"],
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"memory_percent": info["memory"]["percent"],
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"disk_percent": info["disk"]["percent"],
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"cpu_percent": 0.0,
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"memory_percent": 0.0,
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"disk_percent": 0.0,
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}
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def queue(self) -> list[dict[str, Any]]:
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