Files
clawdmeter/daemon/claude_usage_daemon.py
T
tobby168andClaude Opus 4.7 f252a871c4 Make BLE pairing work on macOS, allow daemon + HID to coexist
macOS Bluetooth quirks made the original BLE setup unusable from a Mac
host. Five focused changes to fix discovery, pairing, the keyboard
identification wizard, and concurrent connections, plus a couple of
cross-platform daemon/script niceties.

Firmware (ble.cpp):
  * Advertise the standard HID Service UUID (0x1812) in the primary
    packet. Without it, macOS Sequoia's Bluetooth Settings GUI
    recognizes the device internally but silently hides it from the
    "Nearby Devices" list. Service UUIDs >16-bit overflow the 31-byte
    advertising packet, so the custom data-service UUID moved to the
    scan response.
  * Switch PnP ID from Apple's USB vendor (0x05AC + Magic Keyboard
    PID 0x820A) to Espressif's BT SIG vendor (0x02E5). macOS validates
    Apple-claimed HIDs against known device IDs and refuses to surface
    a Connect button for spoofers.
  * Add the LED output report (Num/Caps/Scroll Lock) to the HID
    descriptor — macOS treats a keyboard descriptor without LEDs as
    "incomplete" and triggers the Keyboard Setup Assistant repeatedly.
  * Set HID country code to 33 (US ANSI) instead of 0 (Not Supported)
    so macOS can identify the layout without asking the user.
  * Bump CONFIG_BT_NIMBLE_MAX_CONNECTIONS to 2 and restart advertising
    after each accept. macOS holds one connection for the HID keyboard
    link; the daemon now gets its own slot for the data service in
    parallel, instead of either side starving the other.

screenshot.sh: auto-pick /dev/cu.usbmodem101 on macOS vs /dev/ttyACM0
on Linux, fall back to PlatformIO's bundled Python if pyserial isn't
on the system Python (PEP 668 blocks `pip install` on Homebrew Python),
and pass the actual framebuffer dimensions to ffmpeg instead of
hardcoding 480x480.

daemon/claude_usage_daemon.py: log API HTTP status + response body on
4xx/5xx so silent token-expiry failures (the daemon was reporting
{"s":0,"w":0} payloads instead of surfacing a 401) are visible in the
daemon log.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-05-17 16:56:05 -07:00

335 lines
10 KiB
Python
Executable File

#!/usr/bin/env python3
"""Claude Usage Tracker Daemon (BLE) — macOS port of claude-usage-daemon.sh.
Polls Claude API rate-limit headers and writes a JSON payload to the
ESP32 "Claude Controller" peripheral over a custom GATT service. Uses
bleak (CoreBluetooth backend on macOS).
"""
import asyncio
import getpass
import json
import os
import re
import signal
import subprocess
import sys
import time
from pathlib import Path
import httpx
from bleak import BleakClient, BleakScanner
from bleak.exc import BleakError
DEVICE_NAME = "Claude Controller"
SERVICE_UUID = "4c41555a-4465-7669-6365-000000000001"
RX_CHAR_UUID = "4c41555a-4465-7669-6365-000000000002"
REQ_CHAR_UUID = "4c41555a-4465-7669-6365-000000000004"
POLL_INTERVAL = 60
TICK = 5
SCAN_TIMEOUT = 8.0
# macOS: token lives in Keychain (service "Claude Code-credentials").
# Linux: token lives in ~/.claude/.credentials.json.
KEYCHAIN_SERVICE = "Claude Code-credentials"
CREDENTIALS_PATH = Path.home() / ".claude" / ".credentials.json"
SAVED_ADDR_FILE = Path.home() / ".config" / "claude-usage-monitor" / "ble-address"
API_URL = "https://api.anthropic.com/v1/messages"
API_HEADERS_TEMPLATE = {
"anthropic-version": "2023-06-01",
"anthropic-beta": "oauth-2025-04-20",
"Content-Type": "application/json",
"User-Agent": "claude-code/2.1.5",
}
API_BODY = {
"model": "claude-haiku-4-5-20251001",
"max_tokens": 1,
"messages": [{"role": "user", "content": "hi"}],
}
def log(msg: str) -> None:
print(f"[{time.strftime('%H:%M:%S')}] {msg}", flush=True)
def _extract_access_token(blob: str) -> str | None:
"""Pull the accessToken out of a credentials blob.
Claude Code stores credentials as a JSON object; the blob may also be
nested ({"claudeAiOauth": {"accessToken": "..."}}). Fall back to a
regex match so unexpected shapes still work, and finally treat the
blob as a raw token if nothing else matches.
"""
blob = blob.strip()
if not blob:
return None
try:
data = json.loads(blob)
except json.JSONDecodeError:
data = None
if isinstance(data, dict):
# direct: {"accessToken": "..."}
if isinstance(data.get("accessToken"), str):
return data["accessToken"]
# nested: {"claudeAiOauth": {"accessToken": "..."}}
for v in data.values():
if isinstance(v, dict) and isinstance(v.get("accessToken"), str):
return v["accessToken"]
m = re.search(r'"accessToken"\s*:\s*"([^"]+)"', blob)
if m:
return m.group(1)
# Raw token (no JSON wrapper) — must look plausible (sk-ant-... etc.)
if re.fullmatch(r"[A-Za-z0-9_\-.~+/=]{20,}", blob):
return blob
return None
def _read_token_keychain() -> str | None:
try:
out = subprocess.run(
[
"security",
"find-generic-password",
"-s",
KEYCHAIN_SERVICE,
"-a",
getpass.getuser(),
"-w",
],
check=True,
capture_output=True,
text=True,
timeout=10,
)
except subprocess.CalledProcessError as e:
log(f"Keychain read failed (rc={e.returncode}): {e.stderr.strip()}")
return None
except (FileNotFoundError, subprocess.TimeoutExpired) as e:
log(f"Keychain access error: {e}")
return None
return _extract_access_token(out.stdout)
def _read_token_file() -> str | None:
try:
raw = CREDENTIALS_PATH.read_text()
except OSError as e:
log(f"Error reading credentials: {e}")
return None
return _extract_access_token(raw)
def read_token() -> str | None:
if sys.platform == "darwin":
return _read_token_keychain()
return _read_token_file()
def load_cached_address() -> str | None:
if not SAVED_ADDR_FILE.exists():
return None
addr = SAVED_ADDR_FILE.read_text().strip()
# Accept both Linux MAC (AA:BB:CC:DD:EE:FF) and macOS CoreBluetooth UUID
# (E621E1F8-C36C-495A-93FC-0C247A3E6E5F).
if re.fullmatch(r"(?:[0-9A-Fa-f]{2}:){5}[0-9A-Fa-f]{2}", addr) or re.fullmatch(
r"[0-9A-Fa-f]{8}-(?:[0-9A-Fa-f]{4}-){3}[0-9A-Fa-f]{12}", addr
):
return addr
log("Cached address malformed, discarding")
SAVED_ADDR_FILE.unlink(missing_ok=True)
return None
def save_address(addr: str) -> None:
SAVED_ADDR_FILE.parent.mkdir(parents=True, exist_ok=True)
SAVED_ADDR_FILE.write_text(addr)
async def scan_for_device() -> str | None:
log(f"Scanning for '{DEVICE_NAME}' ({SCAN_TIMEOUT}s)...")
devices = await BleakScanner.discover(timeout=SCAN_TIMEOUT)
for d in devices:
if d.name == DEVICE_NAME:
log(f"Found: {d.address}")
return d.address
return None
async def poll_api(token: str) -> dict | None:
headers = dict(API_HEADERS_TEMPLATE)
headers["Authorization"] = f"Bearer {token}"
try:
async with httpx.AsyncClient(timeout=20.0) as http:
resp = await http.post(API_URL, headers=headers, json=API_BODY)
except httpx.HTTPError as e:
log(f"API call failed: {e}")
return None
if resp.status_code >= 400:
log(f"API HTTP {resp.status_code}: {resp.text[:200]}")
return None
def hdr(name: str, default: str = "0") -> str:
return resp.headers.get(name, default)
now = time.time()
def reset_minutes(reset_ts: str) -> int:
try:
r = float(reset_ts)
except ValueError:
return 0
mins = (r - now) / 60.0
return int(round(mins)) if mins > 0 else 0
def pct(util: str) -> int:
try:
return int(round(float(util) * 100))
except ValueError:
return 0
payload = {
"s": pct(hdr("anthropic-ratelimit-unified-5h-utilization")),
"sr": reset_minutes(hdr("anthropic-ratelimit-unified-5h-reset")),
"w": pct(hdr("anthropic-ratelimit-unified-7d-utilization")),
"wr": reset_minutes(hdr("anthropic-ratelimit-unified-7d-reset")),
"st": hdr("anthropic-ratelimit-unified-5h-status", "unknown"),
"ok": True,
}
return payload
class Session:
def __init__(self, client: BleakClient) -> None:
self.client = client
self.refresh_requested = asyncio.Event()
def _on_refresh(self, _char, _data: bytearray) -> None:
log("Refresh requested by device")
self.refresh_requested.set()
async def setup_refresh_subscription(self) -> None:
try:
await self.client.start_notify(REQ_CHAR_UUID, self._on_refresh)
except (BleakError, ValueError) as e:
log(f"Refresh subscription unavailable: {e}")
async def write_payload(self, payload: dict) -> bool:
data = json.dumps(payload, separators=(",", ":")).encode()
log(f"Sending: {data.decode()}")
try:
await self.client.write_gatt_char(RX_CHAR_UUID, data, response=False)
return True
except BleakError as e:
log(f"Write failed: {e}")
return False
async def connect_and_run(address: str, stop_event: asyncio.Event) -> bool:
"""Connect to a known address and poll until disconnected or stopped.
Returns True if the connection was used successfully (so the caller
keeps the cached address), False if the connection failed and the
cache should be invalidated.
"""
log(f"Connecting to {address}...")
client = BleakClient(address)
try:
await client.connect()
except (BleakError, asyncio.TimeoutError) as e:
log(f"Connection failed: {e}")
return False
if not client.is_connected:
log("Connection failed (no error but not connected)")
return False
log("Connected")
session = Session(client)
await session.setup_refresh_subscription()
last_poll = 0.0
used_successfully = False
try:
while client.is_connected and not stop_event.is_set():
now = time.time()
elapsed = now - last_poll
if session.refresh_requested.is_set() or elapsed >= POLL_INTERVAL:
session.refresh_requested.clear()
token = read_token()
if not token:
log("No token; skipping poll")
else:
payload = await poll_api(token)
if payload is not None:
if await session.write_payload(payload):
last_poll = time.time()
used_successfully = True
try:
await asyncio.wait_for(session.refresh_requested.wait(), timeout=TICK)
except asyncio.TimeoutError:
pass
finally:
try:
await client.disconnect()
except BleakError:
pass
log("Device disconnected" if not stop_event.is_set() else "Stopping")
return used_successfully
async def main() -> None:
stop_event = asyncio.Event()
loop = asyncio.get_running_loop()
def _stop(*_args: object) -> None:
log("Daemon stopping")
stop_event.set()
for sig in (signal.SIGINT, signal.SIGTERM):
try:
loop.add_signal_handler(sig, _stop)
except NotImplementedError:
signal.signal(sig, _stop)
log("=== Claude Usage Tracker Daemon (BLE, macOS) ===")
log(f"Poll interval: {POLL_INTERVAL}s")
backoff = 1
while not stop_event.is_set():
address = load_cached_address()
if not address:
address = await scan_for_device()
if address:
save_address(address)
else:
log(f"Device not found, retrying in {backoff}s...")
try:
await asyncio.wait_for(stop_event.wait(), timeout=backoff)
except asyncio.TimeoutError:
pass
backoff = min(backoff * 2, 60)
continue
ok = await connect_and_run(address, stop_event)
if not ok:
log("Invalidating cached address")
SAVED_ADDR_FILE.unlink(missing_ok=True)
try:
await asyncio.wait_for(stop_event.wait(), timeout=backoff)
except asyncio.TimeoutError:
pass
backoff = min(backoff * 2, 60)
else:
backoff = 1
if __name__ == "__main__":
try:
asyncio.run(main())
except KeyboardInterrupt:
sys.exit(0)