Files
homelable/backend/app/api/routes/scan.py
T
Pranjal Joshi 3a57d809a4 fix: compatibility with multi-design schema for scan/zigbee/liveview/CustomStyleModal
- liveview.py: replace hardcoded CanvasState PK lookup (get(1)) with
  design_id-aware query; filter nodes/edges by design_id
- scan.py: add design_id to bulk approve, single approve, and edge
  resolution Node/Edge constructors (fallback to first design)
- zigbee.py: add design_id to coordinator auto-approval Node constructor
- schemas/nodes.py: add design_id to NodeCreate and NodeResponse
- schemas/edges.py: add design_id to EdgeCreate
- CustomStyleModal.tsx: add 'electrical' to EDITABLE_EDGE_TYPES
2026-05-31 14:44:17 +05:30

411 lines
14 KiB
Python

import ipaddress
import logging
import uuid
from typing import Any
from fastapi import APIRouter, BackgroundTasks, Depends, HTTPException
from pydantic import BaseModel, field_validator
from sqlalchemy import select
from sqlalchemy.ext.asyncio import AsyncSession
from app.api.deps import get_current_user
from app.core.config import settings
from app.db.database import AsyncSessionLocal, get_db
from app.db.models import Design, Edge, Node, PendingDevice, PendingDeviceLink, ScanRun
from app.schemas.nodes import NodeCreate
from app.schemas.scan import PendingDeviceResponse, ScanRunResponse
from app.services.scanner import request_cancel, run_scan
from app.services.zigbee_service import build_zigbee_properties
_ZIGBEE_TYPES = {"zigbee_coordinator", "zigbee_router", "zigbee_enddevice"}
class BulkActionRequest(BaseModel):
device_ids: list[str]
class ScanConfig(BaseModel):
ranges: list[str]
@field_validator("ranges")
@classmethod
def validate_cidr(cls, v: list[str]) -> list[str]:
for r in v:
try:
ipaddress.ip_network(r, strict=False)
except ValueError as exc:
raise ValueError(f"Invalid CIDR range: {r!r}") from exc
return v
logger = logging.getLogger(__name__)
router = APIRouter()
async def _background_scan(run_id: str, ranges: list[str]) -> None:
async with AsyncSessionLocal() as db:
try:
await run_scan(ranges, db, run_id)
except Exception:
logger.exception("Scan run %s failed unexpectedly", run_id)
await db.rollback()
run = await db.get(ScanRun, run_id)
if run and run.status == "running":
run.status = "failed"
await db.commit()
@router.post("/trigger", response_model=ScanRunResponse)
async def trigger_scan(
background_tasks: BackgroundTasks,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> ScanRun:
ranges = settings.scanner_ranges
run = ScanRun(status="running", ranges=ranges)
db.add(run)
await db.commit()
await db.refresh(run)
background_tasks.add_task(_background_scan, run.id, ranges)
return run
@router.post("/{run_id}/stop", response_model=dict)
async def stop_scan(
run_id: str,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, bool]:
try:
uuid.UUID(run_id)
except ValueError:
raise HTTPException(status_code=400, detail="Invalid run_id format") from None
run = await db.get(ScanRun, run_id)
if not run:
raise HTTPException(status_code=404, detail="Scan run not found")
if run.status != "running":
raise HTTPException(status_code=409, detail="Scan is not running")
request_cancel(run_id)
return {"stopping": True}
@router.get("/pending", response_model=list[PendingDeviceResponse])
async def list_pending(db: AsyncSession = Depends(get_db), _: str = Depends(get_current_user)) -> list[PendingDevice]:
result = await db.execute(select(PendingDevice).where(PendingDevice.status == "pending"))
return list(result.scalars().all())
@router.delete("/pending", response_model=dict)
async def clear_pending(
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, int]:
from sqlalchemy import delete as sa_delete
result = await db.execute(sa_delete(PendingDevice).where(PendingDevice.status == "pending"))
await db.commit()
return {"deleted": result.rowcount}
@router.get("/hidden", response_model=list[PendingDeviceResponse])
async def list_hidden(db: AsyncSession = Depends(get_db), _: str = Depends(get_current_user)) -> list[PendingDevice]:
result = await db.execute(select(PendingDevice).where(PendingDevice.status == "hidden"))
return list(result.scalars().all())
@router.post("/pending/bulk-approve", response_model=dict)
async def bulk_approve_devices(
payload: BulkActionRequest,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, Any]:
# Determine target design (use first design as fallback)
first_design = (await db.execute(select(Design).order_by(Design.created_at).limit(1))).scalar()
default_design_id = first_design.id if first_design else None
result = await db.execute(
select(PendingDevice).where(
PendingDevice.id.in_(payload.device_ids),
PendingDevice.status == "pending",
)
)
devices = result.scalars().all()
created_nodes: list[Node] = []
for device in devices:
device.status = "approved"
node_type = device.suggested_type or "generic"
is_zigbee = node_type in _ZIGBEE_TYPES
node = Node(
label=device.hostname or device.friendly_name or device.ip or "device",
type=node_type,
ip=device.ip,
hostname=device.hostname,
status="online" if is_zigbee else "unknown",
services=device.services or [],
ieee_address=device.ieee_address,
properties=build_zigbee_properties(
device.ieee_address, device.vendor, device.model, device.lqi
) if is_zigbee else [],
# Default to ping so the status checker actually polls the new node.
# Without this the scheduler skips it (check_method NULL → no check).
check_method="none" if is_zigbee else ("ping" if device.ip else None),
design_id=default_design_id,
)
db.add(node)
created_nodes.append(node)
await db.flush() # populates node.id from Python-side default before reading
node_ids = [n.id for n in created_nodes]
approved_device_ids = [d.id for d in devices]
all_edges: list[dict[str, str]] = []
for device in devices:
all_edges.extend(await _resolve_pending_links_for_ieee(db, device.ieee_address))
await db.commit()
return {
"approved": len(node_ids),
"node_ids": node_ids,
"device_ids": approved_device_ids,
"edges_created": len(all_edges),
"edges": all_edges,
"skipped": len(payload.device_ids) - len(node_ids),
}
@router.post("/pending/bulk-hide", response_model=dict)
async def bulk_hide_devices(
payload: BulkActionRequest,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, Any]:
result = await db.execute(
select(PendingDevice).where(
PendingDevice.id.in_(payload.device_ids),
PendingDevice.status == "pending",
)
)
devices = result.scalars().all()
for device in devices:
device.status = "hidden"
await db.commit()
return {"hidden": len(devices), "skipped": len(payload.device_ids) - len(devices)}
@router.post("/pending/{device_id}/restore", response_model=dict)
async def restore_device(
device_id: str,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, Any]:
device = await db.get(PendingDevice, device_id)
if not device:
raise HTTPException(status_code=404, detail="Device not found")
if device.status != "hidden":
raise HTTPException(status_code=409, detail="Device is not hidden")
device.status = "pending"
await db.commit()
return {"restored": True, "device_id": device_id}
@router.post("/pending/bulk-restore", response_model=dict)
async def bulk_restore_devices(
payload: BulkActionRequest,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, Any]:
result = await db.execute(
select(PendingDevice).where(
PendingDevice.id.in_(payload.device_ids),
PendingDevice.status == "hidden",
)
)
devices = result.scalars().all()
for device in devices:
device.status = "pending"
await db.commit()
return {"restored": len(devices), "skipped": len(payload.device_ids) - len(devices)}
@router.post("/pending/{device_id}/approve", response_model=dict)
async def approve_device(
device_id: str,
node_data: NodeCreate,
db: AsyncSession = Depends(get_db),
_: str = Depends(get_current_user),
) -> dict[str, Any]:
# Determine target design
node_design_id = node_data.design_id
if node_design_id is None:
first = (await db.execute(select(Design).order_by(Design.created_at).limit(1))).scalar()
node_design_id = first.id if first else None
device = await db.get(PendingDevice, device_id)
if not device:
raise HTTPException(status_code=404, detail="Device not found")
if device.status != "pending":
raise HTTPException(status_code=409, detail="Device already processed")
device.status = "approved"
_is_zigbee = node_data.type in _ZIGBEE_TYPES
node = Node(
label=node_data.label,
type=node_data.type,
ip=node_data.ip,
hostname=node_data.hostname,
status="online" if _is_zigbee else node_data.status,
services=node_data.services or [],
ieee_address=device.ieee_address,
properties=build_zigbee_properties(
device.ieee_address, device.vendor, device.model, device.lqi
) if _is_zigbee else (node_data.properties or []),
check_method="none" if _is_zigbee else (node_data.check_method or ("ping" if node_data.ip else None)),
check_target=None if _is_zigbee else node_data.check_target,
design_id=node_design_id,
)
db.add(node)
await db.flush()
node_id = node.id
edges = await _resolve_pending_links_for_ieee(db, device.ieee_address)
await db.commit()
return {
"approved": True,
"node_id": node_id,
"edges_created": len(edges),
"edges": edges,
}
async def _resolve_pending_links_for_ieee(
db: AsyncSession, ieee: str | None
) -> list[dict[str, str]]:
"""Materialize edges for any pending_device_links involving ``ieee``.
For each link where the other endpoint already exists as a canvas Node
(matched by ``Node.ieee_address``), create the Edge and drop the link
row. Links where the other endpoint is still pending are kept so they
can resolve when that endpoint is approved later.
"""
if not ieee:
return []
links_q = await db.execute(
select(PendingDeviceLink).where(
(PendingDeviceLink.source_ieee == ieee)
| (PendingDeviceLink.target_ieee == ieee)
)
)
links = list(links_q.scalars().all())
if not links:
return []
# Map every relevant ieee → Node (single query).
other_ieees = {
link.target_ieee if link.source_ieee == ieee else link.source_ieee
for link in links
}
other_ieees.add(ieee)
nodes_q = await db.execute(
select(Node).where(Node.ieee_address.in_(other_ieees))
)
by_ieee = {n.ieee_address: n for n in nodes_q.scalars().all() if n.ieee_address}
self_node = by_ieee.get(ieee)
if self_node is None:
return []
# Pre-fetch existing edges between these node ids so we don't create dups
# if the user re-approves a device or had drawn the link manually.
candidate_node_ids = [n.id for n in by_ieee.values()]
existing_q = await db.execute(
select(Edge).where(
Edge.source.in_(candidate_node_ids),
Edge.target.in_(candidate_node_ids),
)
)
existing_pairs = {(e.source, e.target) for e in existing_q.scalars().all()}
created: list[dict[str, str]] = []
for link in links:
other_ieee = (
link.target_ieee if link.source_ieee == ieee else link.source_ieee
)
other_node = by_ieee.get(other_ieee)
if other_node is None:
continue
if link.source_ieee == ieee:
src_id, tgt_id = self_node.id, other_node.id
else:
src_id, tgt_id = other_node.id, self_node.id
# Skip if either direction already exists.
if (src_id, tgt_id) in existing_pairs or (tgt_id, src_id) in existing_pairs:
await db.delete(link)
continue
# Use the source node's design_id for the edge
edge_design_id = self_node.design_id if self_node else None
if edge_design_id is None:
first = (await db.execute(select(Design).order_by(Design.created_at).limit(1))).scalar()
edge_design_id = first.id if first else None
edge = Edge(
source=src_id,
target=tgt_id,
type="iot",
source_handle="bottom",
target_handle="top-t",
design_id=edge_design_id,
)
db.add(edge)
await db.flush()
existing_pairs.add((src_id, tgt_id))
created.append({"id": edge.id, "source": src_id, "target": tgt_id})
await db.delete(link)
return created
@router.post("/pending/{device_id}/hide")
async def hide_device(
device_id: str, db: AsyncSession = Depends(get_db), _: str = Depends(get_current_user)
) -> dict[str, bool]:
device = await db.get(PendingDevice, device_id)
if not device:
raise HTTPException(status_code=404, detail="Device not found")
device.status = "hidden"
await db.commit()
return {"hidden": True}
@router.post("/pending/{device_id}/ignore")
async def ignore_device(
device_id: str, db: AsyncSession = Depends(get_db), _: str = Depends(get_current_user)
) -> dict[str, bool]:
device = await db.get(PendingDevice, device_id)
if not device:
raise HTTPException(status_code=404, detail="Device not found")
await db.delete(device)
await db.commit()
return {"ignored": True}
@router.get("/runs", response_model=list[ScanRunResponse])
async def list_runs(db: AsyncSession = Depends(get_db), _: str = Depends(get_current_user)) -> list[ScanRun]:
result = await db.execute(select(ScanRun).order_by(ScanRun.started_at.desc()).limit(20))
return list(result.scalars().all())
@router.get("/config", response_model=ScanConfig)
async def get_scan_config(_: str = Depends(get_current_user)) -> ScanConfig:
return ScanConfig(ranges=settings.scanner_ranges)
@router.post("/config", response_model=ScanConfig)
async def update_scan_config(payload: ScanConfig, _: str = Depends(get_current_user)) -> ScanConfig:
previous = settings.scanner_ranges
settings.scanner_ranges = payload.ranges
try:
settings.save_overrides()
return payload
except Exception as exc:
settings.scanner_ranges = previous
logger.error("Failed to save scan config: %s", exc)
raise HTTPException(status_code=500, detail="Failed to save scan config") from exc