cad-editor/docs/automation/ocs.py

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"""Thin Python client for the Open CAD Studio headless automation server.
Launches `OpenCADStudio --serve` and talks to it over a line-based JSON protocol
(one request object per line on stdin, one response per line on stdout). There
is nothing to compile or maintain on the Python side every method is one JSON
message; the real work is Open CAD Studio's own command system.
from ocs import Ocs
with Ocs(binary="OpenCADStudio") as ocs:
ocs.open("plan.dwg")
ocs.run("LAYER Walls")
print(ocs.entities()) # {"total": 42, "by_type": {...}}
ocs.save("plan_out.dwg")
Each call returns the parsed response dict and raises `OcsError` on `ok: false`.
"""
from __future__ import annotations
import json
import socket
import subprocess
from typing import Any, Optional
class OcsError(RuntimeError):
"""Raised when the server replies with `{"ok": false, ...}`."""
class Ocs:
"""Connect by spawning the server (default) or over a TCP socket.
- `Ocs()` spawns `OpenCADStudio --serve` and talks over stdin/stdout.
- `Ocs(port=4242)` connects to a server started with `--serve --port 4242`.
"""
def __init__(
self,
binary: str = "OpenCADStudio",
port: Optional[int] = None,
host: str = "127.0.0.1",
) -> None:
self.proc: Optional[subprocess.Popen] = None
self.sock: Optional[socket.socket] = None
if port is not None:
self.sock = socket.create_connection((host, port))
io = self.sock.makefile("rw")
self._r, self._w = io, io
else:
self.proc = subprocess.Popen(
[binary, "--serve"],
stdin=subprocess.PIPE,
stdout=subprocess.PIPE,
text=True,
bufsize=1,
)
self._r, self._w = self.proc.stdout, self.proc.stdin
self._read() # the {"ready": true} greeting
# ── protocol ────────────────────────────────────────────────────────────
def _read(self) -> dict[str, Any]:
line = self._r.readline()
if not line:
raise OcsError("server closed the connection")
return json.loads(line)
def _send(self, **req: Any) -> dict[str, Any]:
self._w.write(json.dumps(req) + "\n")
self._w.flush()
resp = self._read()
if not resp.get("ok", False):
raise OcsError(resp.get("error", "unknown error"))
return resp
# ── operations ──────────────────────────────────────────────────────────
def new(self) -> dict[str, Any]:
"""Start an empty document."""
return self._send(op="new")
def open(self, path: str) -> dict[str, Any]:
"""Load a DWG/DXF drawing."""
return self._send(op="open", path=path)
def run(self, cmd: str) -> dict[str, Any]:
"""Run a command through Open CAD Studio's command system."""
return self._send(op="run", cmd=cmd)
def entities(self) -> dict[str, Any]:
"""Total entity count and a breakdown by type."""
return self._send(op="entities")
def query(
self,
type: Optional[str] = None,
layer: Optional[str] = None,
limit: Optional[int] = None,
) -> dict[str, Any]:
"""List entities (handle, type, layer, geometry), optionally filtered."""
return self._send(op="query", type=type, layer=layer, limit=limit)
def layers(self) -> dict[str, Any]:
"""List layers (name, color, on/off, frozen, locked) and the current one."""
return self._send(op="layers")
def header(self) -> dict[str, Any]:
"""Read drawing header variables (units, PDMODE/PDSIZE, LTSCALE, …)."""
return self._send(op="header")
def select(
self,
handles: Optional[list[str]] = None,
type: Optional[str] = None,
layer: Optional[str] = None,
clear: bool = False,
) -> dict[str, Any]:
"""Set the selection by handle, type, or layer (a following selection
command like ``run("ERASE")`` then acts on it). `clear=True` deselects."""
return self._send(
op="select", handles=handles, type=type, layer=layer, clear=clear
)
def undo(self) -> dict[str, Any]:
"""Undo the last change."""
return self._send(op="undo")
def redo(self) -> dict[str, Any]:
"""Redo the last undone change."""
return self._send(op="redo")
def save(self, path: Optional[str] = None) -> dict[str, Any]:
"""Write the document (defaults to the opened/last-saved path)."""
return self._send(op="save", path=path)
# ── lifecycle ───────────────────────────────────────────────────────────
def close(self) -> None:
try:
self._w.close()
except Exception:
pass
if self.proc is not None:
try:
self.proc.wait(timeout=5)
except subprocess.TimeoutExpired:
self.proc.kill()
if self.sock is not None:
self.sock.close()
def __enter__(self) -> "Ocs":
return self
def __exit__(self, *_exc: object) -> None:
self.close()