mirror of
https://github.com/maziggy/bambuddy.git
synced 2026-10-02 20:22:15 +02:00
download_to_file() returned True when retrbinary transferred 0 bytes without raising an exception. This caused the /cover endpoint to hit the empty file check and raise HTTP 500 instead of retrying or returning 404. Now treats 0-byte downloads as failures, allowing the cover endpoint's retry logic to work and falling back to 404 if all attempts fail.
871 lines
33 KiB
Python
871 lines
33 KiB
Python
import asyncio
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import ftplib # nosec B402
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import logging
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import os
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import socket
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import ssl
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from collections.abc import Awaitable, Callable
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from ftplib import FTP, FTP_TLS # nosec B402
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from io import BytesIO
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from pathlib import Path
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from typing import TypeVar
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logger = logging.getLogger(__name__)
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T = TypeVar("T")
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class ImplicitFTP_TLS(FTP_TLS):
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"""FTP_TLS subclass for implicit FTPS (port 990) with model-specific SSL handling.
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X1C/P1S printers (vsFTPd) require SSL with session reuse on the data channel.
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A1/A1 Mini printers have issues with SSL on the data channel entirely and
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timeout waiting for transfer completion. Set skip_session_reuse=True for A1
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printers to skip SSL on the data channel (control channel remains encrypted).
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"""
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def __init__(self, *args, skip_session_reuse: bool = False, **kwargs):
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super().__init__(*args, **kwargs)
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self._sock = None
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self.skip_session_reuse = skip_session_reuse
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self.ssl_context = ssl.create_default_context()
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self.ssl_context.check_hostname = False
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self.ssl_context.verify_mode = ssl.CERT_NONE
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def connect(self, host="", port=990, timeout=-999, source_address=None):
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"""Connect to host, wrapping socket in TLS immediately (implicit FTPS)."""
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if host:
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self.host = host
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if port > 0:
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self.port = port
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if timeout != -999:
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self.timeout = timeout
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if source_address:
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self.source_address = source_address
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# Create and wrap socket immediately (implicit TLS)
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self.sock = socket.create_connection((self.host, self.port), self.timeout, source_address=self.source_address)
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self.sock = self.ssl_context.wrap_socket(self.sock, server_hostname=self.host)
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self.af = self.sock.family
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self.file = self.sock.makefile("r", encoding=self.encoding)
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self.welcome = self.getresp()
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return self.welcome
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def ntransfercmd(self, cmd, rest=None):
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"""Override to wrap data connection in SSL for X1C/P1S only.
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X1C/P1S printers (vsFTPd) require SSL session reuse on the data channel.
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A1/A1 Mini printers have issues with SSL on the data channel entirely -
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they timeout waiting for the transfer completion response. For A1, we
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skip SSL wrapping on the data channel (control channel remains encrypted).
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"""
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conn, size = FTP.ntransfercmd(self, cmd, rest)
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if self._prot_p and not self.skip_session_reuse:
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# X1C/P1S: Wrap data channel with SSL session reuse (required by vsFTPd)
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conn = self.ssl_context.wrap_socket(
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conn,
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server_hostname=self.host,
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session=self.sock.session,
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)
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# A1/A1 Mini (skip_session_reuse=True): Don't wrap data channel in SSL
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# The control channel remains encrypted via implicit FTPS
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return conn, size
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class BambuFTPClient:
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"""FTP client for retrieving files from Bambu Lab printers."""
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FTP_PORT = 990
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DEFAULT_TIMEOUT = 30 # Default timeout in seconds (increased for A1 printers)
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# Models that may need SSL mode fallback (try prot_p first, fall back to prot_c)
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# These models have varying FTP SSL behavior depending on firmware version
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A1_MODELS = ("A1", "A1 Mini")
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# Chunk size for manual upload transfer (1MB)
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# Larger chunks reduce overhead and work better with A1 printers
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CHUNK_SIZE = 1024 * 1024
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# Cache for working FTP modes per printer IP
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# Maps IP -> "prot_p" or "prot_c"
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_mode_cache: dict[str, str] = {}
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def __init__(
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self,
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ip_address: str,
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access_code: str,
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timeout: float | None = None,
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printer_model: str | None = None,
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force_prot_c: bool = False,
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):
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self.ip_address = ip_address
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self.access_code = access_code
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self.timeout = timeout if timeout is not None else self.DEFAULT_TIMEOUT
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self.printer_model = printer_model
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self.force_prot_c = force_prot_c
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self._ftp: ImplicitFTP_TLS | None = None
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def _is_a1_model(self) -> bool:
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"""Check if this is an A1 series printer."""
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if not self.printer_model:
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return False
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return self.printer_model in self.A1_MODELS
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def _get_cached_mode(self) -> str | None:
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"""Get cached FTP mode for this printer."""
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return self._mode_cache.get(self.ip_address)
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@classmethod
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def cache_mode(cls, ip_address: str, mode: str):
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"""Cache the working FTP mode for a printer."""
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cls._mode_cache[ip_address] = mode
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logger.info("FTP mode cached for %s: %s", ip_address, mode)
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def _should_use_prot_c(self) -> bool:
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"""Determine if we should use prot_c (clear) mode."""
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# If explicitly forced, use prot_c
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if self.force_prot_c:
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return True
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# Check cache first
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cached = self._get_cached_mode()
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if cached:
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return cached == "prot_c"
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# Default: try prot_p first (will fall back if needed)
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return False
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def connect(self) -> bool:
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"""Connect to the printer FTP server (implicit FTPS on port 990)."""
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try:
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use_prot_c = self._should_use_prot_c()
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logger.debug(
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f"FTP connecting to {self.ip_address}:{self.FTP_PORT} "
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f"(timeout={self.timeout}s, model={self.printer_model}, prot_c={use_prot_c})"
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)
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self._ftp = ImplicitFTP_TLS(skip_session_reuse=use_prot_c)
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self._ftp.connect(self.ip_address, self.FTP_PORT, timeout=self.timeout)
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logger.debug("FTP connected, logging in as bblp")
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self._ftp.login("bblp", self.access_code)
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if use_prot_c:
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# Use clear (unencrypted) data channel
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logger.debug("FTP logged in, setting prot_c (clear) and passive mode")
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self._ftp.prot_c()
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else:
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# Use protected (encrypted) data channel with session reuse
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logger.debug("FTP logged in, setting prot_p (protected) and passive mode")
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self._ftp.prot_p()
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self._ftp.set_pasv(True)
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# Log welcome message for debugging
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if hasattr(self._ftp, "welcome") and self._ftp.welcome:
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logger.debug("FTP server welcome: %s", self._ftp.welcome)
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logger.info(
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f"FTP connected successfully to {self.ip_address} (model={self.printer_model}, prot_c={use_prot_c})"
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)
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return True
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except ftplib.error_perm as e:
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logger.warning("FTP connection permission error to %s: %s", self.ip_address, e)
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self._ftp = None
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return False
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except TimeoutError as e:
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logger.warning("FTP connection timed out to %s: %s", self.ip_address, e)
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self._ftp = None
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return False
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except ssl.SSLError as e:
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logger.warning("FTP SSL error connecting to %s: %s", self.ip_address, e)
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self._ftp = None
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return False
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except (OSError, ftplib.Error) as e:
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logger.warning("FTP connection failed to %s: %s (type: %s)", self.ip_address, e, type(e).__name__)
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self._ftp = None
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return False
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def disconnect(self):
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"""Disconnect from the FTP server."""
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if self._ftp:
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try:
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self._ftp.quit()
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except (OSError, ftplib.Error):
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pass # Best-effort FTP cleanup; connection may already be closed
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self._ftp = None
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def list_files(self, path: str = "/") -> list[dict]:
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"""List files in a directory."""
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if not self._ftp:
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return []
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files = []
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try:
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self._ftp.cwd(path)
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items = []
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self._ftp.retrlines("LIST", items.append)
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for item in items:
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parts = item.split()
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if len(parts) >= 9:
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name = " ".join(parts[8:])
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is_dir = item.startswith("d")
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size = int(parts[4]) if not is_dir else 0
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# Parse modification time from FTP listing
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# Format: "Nov 30 10:15" or "Nov 30 2024"
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mtime = None
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try:
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from datetime import datetime
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month = parts[5]
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day = parts[6]
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time_or_year = parts[7]
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# Determine if it's time (HH:MM) or year
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if ":" in time_or_year:
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# Recent file: "Nov 30 10:15" - assume current year
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year = datetime.now().year
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time_str = f"{month} {day} {year} {time_or_year}"
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mtime = datetime.strptime(time_str, "%b %d %Y %H:%M")
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# If parsed date is in the future, use last year
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if mtime > datetime.now():
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mtime = mtime.replace(year=year - 1)
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else:
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# Older file: "Nov 30 2024" - no time, just date
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time_str = f"{month} {day} {time_or_year}"
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mtime = datetime.strptime(time_str, "%b %d %Y")
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except (ValueError, IndexError):
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pass # Non-critical: mtime parsing is best-effort; file entry works without it
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file_entry = {
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"name": name,
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"is_directory": is_dir,
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"size": size,
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"path": f"{path.rstrip('/')}/{name}",
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}
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if mtime:
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file_entry["mtime"] = mtime
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files.append(file_entry)
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logger.debug("Listed %s files in %s", len(files), path)
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except (OSError, ftplib.Error) as e:
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logger.info("FTP list_files failed for %s: %s", path, e)
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return files
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def download_file(self, remote_path: str) -> bytes | None:
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"""Download a file from the printer."""
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if not self._ftp:
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return None
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try:
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buffer = BytesIO()
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self._ftp.retrbinary(f"RETR {remote_path}", buffer.write)
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return buffer.getvalue()
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except (OSError, ftplib.Error):
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return None
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def download_to_file(self, remote_path: str, local_path: Path) -> bool:
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"""Download a file from the printer to local filesystem."""
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if not self._ftp:
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logger.warning("download_to_file called but FTP not connected")
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return False
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try:
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local_path.parent.mkdir(parents=True, exist_ok=True)
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with open(local_path, "wb") as f:
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self._ftp.retrbinary(f"RETR {remote_path}", f.write)
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f.flush()
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os.fsync(f.fileno())
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file_size = local_path.stat().st_size if local_path.exists() else 0
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if file_size == 0:
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logger.warning("FTP download returned 0 bytes for %s", remote_path)
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if local_path.exists():
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local_path.unlink()
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return False
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logger.info("Successfully downloaded %s to %s (%s bytes)", remote_path, local_path, file_size)
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return True
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except (OSError, ftplib.Error) as e:
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# Log at INFO level so we can see failures in normal logs
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logger.info("FTP download failed for %s: %s", remote_path, e)
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# Clean up partial file if it exists
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if local_path.exists():
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try:
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local_path.unlink()
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except OSError:
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pass # Best-effort partial file cleanup; not critical if removal fails
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return False
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def diagnose_storage(self) -> dict:
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"""Run storage diagnostics and return results. For debugging upload issues."""
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results = {
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"connected": self._ftp is not None,
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"can_list_root": False,
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"root_files": [],
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"can_list_cache": False,
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"storage_info": None,
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"pwd": None,
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"errors": [],
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}
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if not self._ftp:
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results["errors"].append("FTP not connected")
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return results
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# Try to get current directory
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try:
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results["pwd"] = self._ftp.pwd()
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logger.debug("FTP current directory: %s", results["pwd"])
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except (OSError, ftplib.Error) as e:
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results["errors"].append(f"PWD failed: {e}")
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logger.debug("FTP PWD failed: %s", e)
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# Try to list root directory
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try:
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self._ftp.cwd("/")
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items = []
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self._ftp.retrlines("LIST", items.append)
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results["can_list_root"] = True
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results["root_files"] = items[:10] # First 10 entries
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logger.debug("FTP root listing (%s items): %s", len(items), items[:5])
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except (OSError, ftplib.Error) as e:
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results["errors"].append(f"LIST / failed: {e}")
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logger.debug("FTP LIST / failed: %s", e)
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# Try to list /cache (should exist on all printers)
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try:
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self._ftp.cwd("/cache")
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items = []
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self._ftp.retrlines("LIST", items.append)
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results["can_list_cache"] = True
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logger.debug("FTP /cache listing: %s items", len(items))
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except (OSError, ftplib.Error) as e:
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results["errors"].append(f"LIST /cache failed: {e}")
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logger.debug("FTP LIST /cache failed: %s", e)
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# Try to get storage info
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try:
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results["storage_info"] = self.get_storage_info()
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logger.debug("FTP storage info: %s", results["storage_info"])
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except (OSError, ftplib.Error) as e:
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results["errors"].append(f"Storage info failed: {e}")
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return results
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def upload_file(
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self,
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local_path: Path,
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remote_path: str,
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progress_callback: Callable[[int, int], None] | None = None,
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) -> bool:
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"""Upload a file to the printer with optional progress callback."""
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if not self._ftp:
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logger.warning("upload_file: FTP not connected")
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return False
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try:
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file_size = local_path.stat().st_size if local_path.exists() else 0
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logger.info("FTP uploading %s (%s bytes) to %s", local_path, file_size, remote_path)
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uploaded = 0
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# Use manual transfer instead of storbinary() for A1 compatibility
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# A1 printers have issues with storbinary's voidresp() hanging after transfer
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with open(local_path, "rb") as f:
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logger.debug("FTP STOR command starting for %s", remote_path)
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conn = self._ftp.transfercmd(f"STOR {remote_path}")
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# Set explicit socket options for reliable transfer
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conn.setblocking(True)
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conn.settimeout(120) # 2 minute timeout per chunk
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try:
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while True:
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chunk = f.read(self.CHUNK_SIZE)
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if not chunk:
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logger.debug("FTP upload: final chunk reached")
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break
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conn.sendall(chunk)
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uploaded += len(chunk)
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logger.debug("FTP upload progress: %s/%s bytes", uploaded, file_size)
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if progress_callback:
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progress_callback(uploaded, file_size)
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except OSError as e:
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logger.error("FTP connection lost during upload: %s", e)
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conn.close()
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raise
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conn.close()
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logger.info("FTP upload complete: %s", remote_path)
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return True
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except ftplib.error_perm as e:
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# Permanent FTP error (4xx/5xx response)
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error_code = str(e)[:3] if str(e) else "unknown"
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logger.error("FTP upload failed for %s: %s (error code: %s)", remote_path, e, error_code)
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if error_code == "553":
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logger.error(
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"FTP 553 error - Could not create file. Possible causes: "
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"1) No SD card inserted, 2) SD card full, 3) SD card not formatted correctly (needs FAT32/exFAT), "
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"4) Printer busy/not ready, 5) File path issue"
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)
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elif error_code == "550":
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logger.error("FTP 550 error - File/directory not found or permission denied")
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elif error_code == "552":
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logger.error("FTP 552 error - Storage quota exceeded (SD card full?)")
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return False
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except (OSError, ftplib.Error) as e:
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logger.error("FTP upload failed for %s: %s (type: %s)", remote_path, e, type(e).__name__)
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return False
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def upload_bytes(self, data: bytes, remote_path: str) -> bool:
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"""Upload bytes to the printer."""
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if not self._ftp:
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return False
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try:
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# Use manual transfer instead of storbinary() for A1 compatibility
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conn = self._ftp.transfercmd(f"STOR {remote_path}")
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conn.setblocking(True)
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conn.settimeout(120)
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try:
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# Send data in chunks
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offset = 0
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while offset < len(data):
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chunk = data[offset : offset + self.CHUNK_SIZE]
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conn.sendall(chunk)
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offset += len(chunk)
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except OSError as e:
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logger.error("FTP connection lost during upload_bytes: %s", e)
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conn.close()
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raise
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conn.close()
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return True
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except (OSError, ftplib.Error):
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return False
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def delete_file(self, remote_path: str) -> bool:
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"""Delete a file from the printer."""
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if not self._ftp:
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return False
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try:
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self._ftp.delete(remote_path)
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return True
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except (OSError, ftplib.Error) as e:
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logger.warning("Failed to delete %s: %s", remote_path, e)
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return False
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def get_file_size(self, remote_path: str) -> int | None:
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"""Get the size of a file."""
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if not self._ftp:
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return None
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try:
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return self._ftp.size(remote_path)
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except (OSError, ftplib.Error):
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return None
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def get_storage_info(self) -> dict | None:
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"""Get storage information from the printer."""
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if not self._ftp:
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return None
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result = {}
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# Try AVBL command (available space) - some FTP servers support this
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try:
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response = self._ftp.sendcmd("AVBL")
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logger.debug("AVBL response: %s", response)
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# Response format: "213 <bytes available>"
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if response.startswith("213"):
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parts = response.split()
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if len(parts) >= 2:
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result["free_bytes"] = int(parts[1])
|
|
except (OSError, ftplib.Error) as e:
|
|
logger.debug("AVBL command not supported: %s", e)
|
|
# Try STAT command as fallback
|
|
try:
|
|
response = self._ftp.sendcmd("STAT")
|
|
logger.debug("STAT response: %s", response)
|
|
except (OSError, ftplib.Error):
|
|
pass # Both AVBL and STAT unsupported; storage info will rely on directory scan
|
|
|
|
# Calculate used space by listing root directories
|
|
try:
|
|
total_used = 0
|
|
dirs_to_scan = ["/cache", "/timelapse", "/model", "/data", "/data/Metadata", "/"]
|
|
|
|
for dir_path in dirs_to_scan:
|
|
try:
|
|
self._ftp.cwd(dir_path)
|
|
items = []
|
|
self._ftp.retrlines("LIST", items.append)
|
|
|
|
for item in items:
|
|
parts = item.split()
|
|
if len(parts) >= 5 and not item.startswith("d"):
|
|
try:
|
|
total_used += int(parts[4])
|
|
except ValueError:
|
|
pass # Skip entries with non-numeric size fields
|
|
except (OSError, ftplib.Error):
|
|
pass # Directory may not exist on this printer model; skip it
|
|
|
|
result["used_bytes"] = total_used
|
|
except (OSError, ftplib.Error):
|
|
pass # Storage scan failed; return whatever info was collected above
|
|
|
|
return result if result else None
|
|
|
|
|
|
async def download_file_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
remote_path: str,
|
|
local_path: Path,
|
|
timeout: float = 60.0,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> bool:
|
|
"""Async wrapper for downloading a file with timeout.
|
|
|
|
For A1/A1 Mini printers, automatically tries prot_p first, then falls back
|
|
to prot_c if the download fails. The working mode is cached for future operations.
|
|
|
|
Args:
|
|
ip_address: Printer IP address
|
|
access_code: Printer access code
|
|
remote_path: Remote file path on printer
|
|
local_path: Local path to save file
|
|
timeout: Overall operation timeout (asyncio)
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
is_a1 = printer_model in BambuFTPClient.A1_MODELS if printer_model else False
|
|
|
|
def _download(force_prot_c: bool = False) -> bool:
|
|
mode_str = "prot_c" if force_prot_c else "prot_p"
|
|
client = BambuFTPClient(
|
|
ip_address, access_code, timeout=socket_timeout, printer_model=printer_model, force_prot_c=force_prot_c
|
|
)
|
|
if client.connect():
|
|
try:
|
|
result = client.download_to_file(remote_path, local_path)
|
|
if result:
|
|
# Cache the working mode
|
|
BambuFTPClient.cache_mode(ip_address, mode_str)
|
|
return result
|
|
finally:
|
|
client.disconnect()
|
|
return False
|
|
|
|
try:
|
|
# Check if we have a cached mode for this printer
|
|
cached_mode = BambuFTPClient._mode_cache.get(ip_address)
|
|
|
|
if cached_mode:
|
|
# Use cached mode
|
|
force_prot_c = cached_mode == "prot_c"
|
|
return await asyncio.wait_for(loop.run_in_executor(None, lambda: _download(force_prot_c)), timeout=timeout)
|
|
|
|
# No cached mode - try prot_p first
|
|
result = await asyncio.wait_for(loop.run_in_executor(None, lambda: _download(False)), timeout=timeout)
|
|
|
|
if result:
|
|
return True
|
|
|
|
# Download failed - for A1 models, try prot_c fallback
|
|
if is_a1:
|
|
logger.info("FTP download failed with prot_p for A1 model, trying prot_c fallback...")
|
|
result = await asyncio.wait_for(loop.run_in_executor(None, lambda: _download(True)), timeout=timeout)
|
|
return result
|
|
|
|
return False
|
|
|
|
except TimeoutError:
|
|
logger.warning("FTP download timed out after %ss for %s", timeout, remote_path)
|
|
return False
|
|
|
|
|
|
async def download_file_try_paths_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
remote_paths: list[str],
|
|
local_path: Path,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> bool:
|
|
"""Try downloading a file from multiple paths using a single connection.
|
|
|
|
Args:
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
|
|
def _download():
|
|
client = BambuFTPClient(ip_address, access_code, timeout=socket_timeout, printer_model=printer_model)
|
|
if not client.connect():
|
|
return False
|
|
|
|
try:
|
|
return any(client.download_to_file(remote_path, local_path) for remote_path in remote_paths)
|
|
finally:
|
|
client.disconnect()
|
|
|
|
return await loop.run_in_executor(None, _download)
|
|
|
|
|
|
async def upload_file_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
local_path: Path,
|
|
remote_path: str,
|
|
timeout: float = 600.0,
|
|
progress_callback: Callable[[int, int], None] | None = None,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> bool:
|
|
"""Async wrapper for uploading a file with timeout and progress callback.
|
|
|
|
For A1/A1 Mini printers, automatically tries prot_p first, then falls back
|
|
to prot_c if the upload fails. The working mode is cached for future uploads.
|
|
|
|
Args:
|
|
ip_address: Printer IP address
|
|
access_code: Printer access code
|
|
local_path: Local file path to upload
|
|
remote_path: Remote path on printer
|
|
timeout: Overall operation timeout (asyncio)
|
|
progress_callback: Optional callback for progress updates
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
is_a1 = printer_model in BambuFTPClient.A1_MODELS if printer_model else False
|
|
|
|
def _upload(force_prot_c: bool = False) -> bool:
|
|
mode_str = "prot_c" if force_prot_c else "prot_p"
|
|
logger.info(
|
|
f"FTP connecting to {ip_address} for upload (model={printer_model}, "
|
|
f"mode={mode_str}, socket_timeout={socket_timeout}s)..."
|
|
)
|
|
client = BambuFTPClient(
|
|
ip_address, access_code, timeout=socket_timeout, printer_model=printer_model, force_prot_c=force_prot_c
|
|
)
|
|
if client.connect():
|
|
logger.info("FTP connected to %s", ip_address)
|
|
try:
|
|
result = client.upload_file(local_path, remote_path, progress_callback)
|
|
if result:
|
|
# Cache the working mode
|
|
BambuFTPClient.cache_mode(ip_address, mode_str)
|
|
return result
|
|
finally:
|
|
client.disconnect()
|
|
logger.warning("FTP connection failed to %s", ip_address)
|
|
return False
|
|
|
|
try:
|
|
# Check if we have a cached mode for this printer
|
|
cached_mode = BambuFTPClient._mode_cache.get(ip_address)
|
|
|
|
if cached_mode:
|
|
# Use cached mode
|
|
force_prot_c = cached_mode == "prot_c"
|
|
return await asyncio.wait_for(loop.run_in_executor(None, lambda: _upload(force_prot_c)), timeout=timeout)
|
|
|
|
# No cached mode - try prot_p first
|
|
result = await asyncio.wait_for(loop.run_in_executor(None, lambda: _upload(False)), timeout=timeout)
|
|
|
|
if result:
|
|
return True
|
|
|
|
# Upload failed - for A1 models, try prot_c fallback
|
|
if is_a1:
|
|
logger.info("FTP upload failed with prot_p for A1 model, trying prot_c fallback...")
|
|
result = await asyncio.wait_for(loop.run_in_executor(None, lambda: _upload(True)), timeout=timeout)
|
|
return result
|
|
|
|
return False
|
|
|
|
except TimeoutError:
|
|
logger.warning("FTP upload timed out after %ss for %s", timeout, remote_path)
|
|
return False
|
|
|
|
|
|
async def list_files_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
path: str = "/",
|
|
timeout: float = 30.0,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> list[dict]:
|
|
"""Async wrapper for listing files with timeout.
|
|
|
|
Args:
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
|
|
def _list():
|
|
client = BambuFTPClient(ip_address, access_code, timeout=socket_timeout, printer_model=printer_model)
|
|
if client.connect():
|
|
try:
|
|
return client.list_files(path)
|
|
finally:
|
|
client.disconnect()
|
|
return []
|
|
|
|
try:
|
|
return await asyncio.wait_for(loop.run_in_executor(None, _list), timeout=timeout)
|
|
except TimeoutError:
|
|
logger.warning("FTP list_files timed out after %ss for %s", timeout, path)
|
|
return []
|
|
|
|
|
|
async def delete_file_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
remote_path: str,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> bool:
|
|
"""Async wrapper for deleting a file.
|
|
|
|
Args:
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
|
|
def _delete():
|
|
client = BambuFTPClient(ip_address, access_code, timeout=socket_timeout, printer_model=printer_model)
|
|
if client.connect():
|
|
try:
|
|
return client.delete_file(remote_path)
|
|
finally:
|
|
client.disconnect()
|
|
return False
|
|
|
|
return await loop.run_in_executor(None, _delete)
|
|
|
|
|
|
async def download_file_bytes_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
remote_path: str,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> bytes | None:
|
|
"""Async wrapper for downloading file as bytes.
|
|
|
|
Args:
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
|
|
def _download():
|
|
client = BambuFTPClient(ip_address, access_code, timeout=socket_timeout, printer_model=printer_model)
|
|
if client.connect():
|
|
try:
|
|
return client.download_file(remote_path)
|
|
finally:
|
|
client.disconnect()
|
|
return None
|
|
|
|
return await loop.run_in_executor(None, _download)
|
|
|
|
|
|
async def get_storage_info_async(
|
|
ip_address: str,
|
|
access_code: str,
|
|
socket_timeout: float | None = None,
|
|
printer_model: str | None = None,
|
|
) -> dict | None:
|
|
"""Async wrapper for getting storage info.
|
|
|
|
Args:
|
|
socket_timeout: FTP socket timeout for slow connections (e.g., A1 printers)
|
|
printer_model: Printer model for A1-specific workarounds
|
|
"""
|
|
loop = asyncio.get_event_loop()
|
|
|
|
def _get_storage():
|
|
client = BambuFTPClient(ip_address, access_code, timeout=socket_timeout, printer_model=printer_model)
|
|
if client.connect():
|
|
try:
|
|
return client.get_storage_info()
|
|
finally:
|
|
client.disconnect()
|
|
return None
|
|
|
|
return await loop.run_in_executor(None, _get_storage)
|
|
|
|
|
|
async def get_ftp_retry_settings() -> tuple[bool, int, float, float]:
|
|
"""Get FTP retry settings from database.
|
|
|
|
Returns:
|
|
Tuple of (retry_enabled, retry_count, retry_delay, timeout)
|
|
"""
|
|
from backend.app.api.routes.settings import get_setting
|
|
from backend.app.core.database import async_session
|
|
|
|
async with async_session() as db:
|
|
enabled = (await get_setting(db, "ftp_retry_enabled") or "true") == "true"
|
|
count = int(await get_setting(db, "ftp_retry_count") or "3")
|
|
delay = float(await get_setting(db, "ftp_retry_delay") or "2")
|
|
timeout = float(await get_setting(db, "ftp_timeout") or "30")
|
|
return enabled, count, delay, timeout
|
|
|
|
|
|
async def with_ftp_retry(
|
|
operation: Callable[..., Awaitable[T]],
|
|
*args,
|
|
max_retries: int = 3,
|
|
retry_delay: float = 2.0,
|
|
operation_name: str = "FTP operation",
|
|
**kwargs,
|
|
) -> T | None:
|
|
"""Execute FTP operation with retry logic.
|
|
|
|
Args:
|
|
operation: Async function to execute
|
|
*args: Positional arguments for the operation
|
|
max_retries: Number of retry attempts (default: 3)
|
|
retry_delay: Seconds to wait between retries (default: 2.0)
|
|
operation_name: Name for logging purposes
|
|
**kwargs: Keyword arguments for the operation
|
|
|
|
Returns:
|
|
Result of the operation, or None if all attempts fail
|
|
"""
|
|
last_error = None
|
|
|
|
for attempt in range(max_retries + 1):
|
|
try:
|
|
result = await operation(*args, **kwargs)
|
|
# Check for "falsy" success indicators
|
|
if result not in (False, None, []):
|
|
if attempt > 0:
|
|
logger.info("%s succeeded on attempt %s/%s", operation_name, attempt + 1, max_retries + 1)
|
|
return result
|
|
# Operation returned failure indicator
|
|
if attempt > 0:
|
|
logger.info("%s attempt %s/%s returned failure", operation_name, attempt + 1, max_retries + 1)
|
|
except Exception as e:
|
|
last_error = e
|
|
logger.warning("%s attempt %s/%s failed: %s", operation_name, attempt + 1, max_retries + 1, e)
|
|
|
|
# Don't wait after the last attempt
|
|
if attempt < max_retries:
|
|
logger.info("%s will retry in %ss...", operation_name, retry_delay)
|
|
await asyncio.sleep(retry_delay)
|
|
|
|
logger.error("%s failed after %s attempts", operation_name, max_retries + 1)
|
|
if last_error:
|
|
logger.debug("Last error: %s", last_error)
|
|
return None
|