Files

1081 lines
39 KiB
Python

from collections import defaultdict
from concurrent.futures import ThreadPoolExecutor, as_completed
from threading import Semaphore
from urllib.parse import quote_plus, urlencode, urljoin, urlparse
import os
import re
import requests
import threading
import time
import sqlite3
import random
class Downloader:
def __init__(
self,
download_folder,
max_workers=5,
log_callback=None,
enable_widgets_callback=None,
update_progress_callback=None,
update_global_progress_callback=None,
headers=None,
max_retries=3,
retry_interval=1.0,
stream_read_timeout=10,
download_images=True,
download_videos=True,
download_compressed=True,
tr=None,
folder_structure="default",
rate_limit_interval=0.05,
):
self.download_folder = download_folder
self.log_callback = log_callback
self.enable_widgets_callback = enable_widgets_callback
self.update_progress_callback = update_progress_callback
self.update_global_progress_callback = update_global_progress_callback
self.cancel_requested = threading.Event()
self.headers = headers or {
"User-Agent": "Mozilla/5.0 (compatible; Googlebot/2.1; +http://www.google.com/bot.html)",
"Referer": "https://coomer.st/",
"Accept": "text/css",
}
self.media_counter = 0
self.session = requests.Session()
self.max_workers = max_workers
self.per_domain_limit = 6
self.executor = ThreadPoolExecutor(max_workers=self.max_workers)
self.rate_limit = Semaphore(self.max_workers)
self.domain_locks = defaultdict(lambda: Semaphore(self.per_domain_limit))
self.domain_last_request = defaultdict(float)
self.rate_limit_interval = rate_limit_interval
self.download_mode = "multi"
self.video_extensions = (".mp4", ".mkv", ".webm", ".mov", ".avi", ".flv", ".wmv", ".m4v")
self.image_extensions = (".jpg", ".jpeg", ".png", ".gif", ".bmp", ".tiff")
self.document_extensions = (".pdf", ".doc", ".docx", ".xls", ".xlsx", ".ppt", ".pptx")
self.compressed_extensions = (".zip", ".rar", ".7z", ".tar", ".gz")
self.download_images = download_images
self.download_videos = download_videos
self.download_compressed = download_compressed
self.futures = []
self.total_files = 0
self.completed_files = 0
self.skipped_files = []
self.failed_files = []
self.start_time = None
self.tr = tr
self.shutdown_called = False
self.folder_structure = folder_structure
self.failed_retry_count = {}
self.max_retries = max_retries
self.retry_interval = retry_interval
self.stream_read_timeout = stream_read_timeout
self.file_lock = threading.Lock()
self.post_attachment_counter = defaultdict(int)
self.subdomain_cache = {}
self.subdomain_locks = defaultdict(threading.Lock)
self.request_timeout = (10, 120)
self.domain_name = "coomer"
self.domain_error_state = defaultdict(
lambda: {
"burst_count": 0,
"last_error_ts": 0.0,
"cooldown_until": 0.0,
}
)
self.domain_error_lock = threading.Lock()
self.domain_error_window = 10.0
self.domain_error_threshold = 4
self.domain_cooldown_seconds = 8.0
self.active_downloads = set()
self.active_downloads_lock = threading.Lock()
self.progress_update_interval = 0.25
db_folder = os.path.join("resources", "config")
os.makedirs(db_folder, exist_ok=True)
self.db_path = os.path.join(db_folder, "downloads.db")
self.db_lock = threading.Lock()
self.init_db()
self.load_download_cache()
def _translate_text(self, key, **kwargs):
if callable(self.tr):
try:
return self.tr(key, **kwargs)
except TypeError:
text = self.tr(key)
if kwargs:
try:
return text.format(**kwargs)
except Exception:
return text
return text
if kwargs:
try:
return key.format(**kwargs)
except Exception:
return key
return key
def init_db(self):
self.db_connection = sqlite3.connect(self.db_path, check_same_thread=False)
self.db_cursor = self.db_connection.cursor()
self.db_cursor.execute(
"""
CREATE TABLE IF NOT EXISTS downloads (
id INTEGER PRIMARY KEY AUTOINCREMENT,
media_url TEXT UNIQUE,
file_path TEXT,
file_size INTEGER,
user_id TEXT,
post_id TEXT,
downloaded_at TIMESTAMP DEFAULT CURRENT_TIMESTAMP
)
"""
)
self.db_connection.commit()
def load_download_cache(self):
with self.db_lock:
self.db_cursor.execute("SELECT media_url, file_path, file_size FROM downloads")
rows = self.db_cursor.fetchall()
self.download_cache = {row[0]: (row[1], row[2]) for row in rows}
def log(self, message, **kwargs):
final_message = self._translate_text(message, **kwargs)
if self.log_callback:
try:
self.log_callback(self.domain_name, final_message)
except TypeError:
self.log_callback(final_message)
def sanitize_filename(self, filename):
return re.sub(r'[<>:"/\\\\|?*]', "_", filename)
def set_download_mode(self, mode, max_workers):
if mode == "queue":
max_workers = 1
self.download_mode = mode
self.max_workers = max_workers
if self.executor:
self.executor.shutdown(wait=True)
self.executor = ThreadPoolExecutor(max_workers=max_workers)
self.rate_limit = Semaphore(max_workers)
self.domain_locks = defaultdict(lambda: Semaphore(self.per_domain_limit))
self.log(
"UPDATED_DOWNLOAD_MODE",
mode=mode,
max_workers=max_workers,
per_domain_limit=self.per_domain_limit,
)
def set_retry_settings(self, max_retries, retry_interval):
try:
max_retries = int(max_retries)
except (TypeError, ValueError):
max_retries = 0
if max_retries < 0:
max_retries = 0
self.max_retries = max_retries
self.retry_interval = retry_interval
def request_cancel(self):
self.cancel_requested.set()
self.log("DOWNLOAD_CANCELLATION_REQUESTED")
for future in self.futures:
future.cancel()
def shutdown_executor(self):
if not self.shutdown_called:
self.shutdown_called = True
if self.executor:
self.executor.shutdown(wait=True)
if self.enable_widgets_callback:
self.enable_widgets_callback()
self.log("ALL_DOWNLOADS_COMPLETED_OR_CANCELLED")
def get_filename(self, media_url, post_id=None, post_name=None, attachment_index=1, post_time=None):
base_name = os.path.basename(media_url).split("?")[0]
name_no_ext, extension = os.path.splitext(base_name)
if not hasattr(self, "file_naming_mode"):
self.file_naming_mode = 0
mode = self.file_naming_mode
def sanitize(name):
return self.sanitize_filename(name).strip()
if mode == 0:
sanitized = sanitize(name_no_ext) or "file"
return f"{sanitized}_{attachment_index}{extension}"
elif mode == 1:
sanitized_post = sanitize(post_name or "") or (f"post_{post_id}" if post_id else "post")
short_hash = f"{hash(media_url) & 0xFFFF:04x}"
return f"{sanitized_post}_{attachment_index}_{short_hash}{extension}"
elif mode == 2:
sanitized_post = sanitize(post_name or "") or (f"post_{post_id}" if post_id else "post")
return (
f"{sanitized_post} - {post_id}_{attachment_index}{extension}"
if post_id else f"{sanitized_post}_{attachment_index}{extension}"
)
elif mode == 3:
sanitized_post = sanitize(post_name or "") or (f"post_{post_id}" if post_id else "post")
sanitized_time = sanitize(post_time or "")
short_hash = f"{hash(media_url) & 0xFFFF:04x}"
return f"{sanitized_time} - {sanitized_post}_{attachment_index}_{short_hash}{extension}"
return sanitize(name_no_ext) + extension
def get_media_folder(self, extension, user_id, post_id=None):
if extension in self.video_extensions:
folder_name = "videos"
elif extension in self.image_extensions:
folder_name = "images"
elif extension in self.document_extensions:
folder_name = "documents"
elif extension in self.compressed_extensions:
folder_name = "compressed"
else:
folder_name = "other"
if self.folder_structure == "post_number" and post_id:
return os.path.join(self.download_folder, user_id, f"post_{post_id}", folder_name)
return os.path.join(self.download_folder, user_id, folder_name)
def _emit_progress_update(
self,
downloaded_size,
total_size,
download_id,
file_path,
start_time,
last_emit_time,
force=False,
):
if not self.update_progress_callback:
return last_emit_time
now = time.time()
if not force and (now - last_emit_time) < self.progress_update_interval:
return last_emit_time
elapsed_time = now - start_time
speed = downloaded_size / elapsed_time if elapsed_time > 0 else 0
remaining_time = (total_size - downloaded_size) / speed if speed > 0 and total_size > 0 else 0
self.update_progress_callback(
downloaded_size,
total_size,
file_id=download_id,
file_path=file_path,
speed=speed,
eta=remaining_time,
)
return now
def _compute_retry_delay(self, attempt_index):
base = max(float(self.retry_interval or 0), 0.1)
return (base * (attempt_index + 1)) + random.uniform(0.35, 1.15)
def _is_ck_domain(self, domain):
if not domain:
return False
host = domain.split(":", 1)[0].lower()
known_roots = ("coomer.st", "coomer.su", "kemono.cr", "kemono.su")
return any(host == root or host.endswith(f".{root}") for root in known_roots)
def _is_coomer_domain(self, domain):
if not domain:
return False
host = domain.split(":", 1)[0].lower()
return host == "coomer.st" or host == "coomer.su" or host.endswith(".coomer.st") or host.endswith(".coomer.su")
def _is_kemono_domain(self, domain):
if not domain:
return False
host = domain.split(":", 1)[0].lower()
return host == "kemono.cr" or host == "kemono.su" or host.endswith(".kemono.cr") or host.endswith(".kemono.su")
def _get_ck_cache_key(self, url):
parsed = urlparse(url)
host = (parsed.netloc or "").split(":", 1)[0].lower()
path = parsed.path or "/"
if host.startswith("n") and "." in host:
prefix, remainder = host.split(".", 1)
if len(prefix) > 1 and prefix[1:].isdigit():
host = remainder
return f"{host}{path}"
def _wait_for_domain_cooldown(self, domain):
while True:
if self.cancel_requested.is_set():
return False
with self.domain_error_lock:
cooldown_until = self.domain_error_state[domain]["cooldown_until"]
now = time.time()
remaining = cooldown_until - now
if remaining <= 0:
return True
sleep_for = min(remaining, 0.5)
time.sleep(sleep_for)
def _mark_domain_success(self, domain):
with self.domain_error_lock:
state = self.domain_error_state[domain]
state["burst_count"] = 0
state["last_error_ts"] = 0.0
state["cooldown_until"] = 0.0
def _mark_domain_error(self, domain, status_code):
if status_code not in (429, 500, 502, 503, 504):
return
now = time.time()
with self.domain_error_lock:
state = self.domain_error_state[domain]
if now - state["last_error_ts"] > self.domain_error_window:
state["burst_count"] = 0
state["burst_count"] += 1
state["last_error_ts"] = now
if state["burst_count"] >= self.domain_error_threshold:
state["cooldown_until"] = max(
state["cooldown_until"],
now + self.domain_cooldown_seconds,
)
def safe_request(self, url, max_retries=None, headers=None):
if max_retries is None:
max_retries = self.max_retries
if headers is None:
headers = self.headers
try:
max_retries = int(max_retries)
except (TypeError, ValueError):
max_retries = 0
if max_retries < 0:
max_retries = 0
parsed = urlparse(url)
domain = parsed.netloc
for attempt in range(max_retries + 1):
if self.cancel_requested.is_set():
return None
if not self._wait_for_domain_cooldown(domain):
return None
with self.domain_locks[domain]:
elapsed_time = time.time() - self.domain_last_request[domain]
if elapsed_time < self.rate_limit_interval:
time.sleep(self.rate_limit_interval - elapsed_time)
try:
self.domain_last_request[domain] = time.time()
response = self.session.get(
url,
stream=True,
headers=headers,
timeout=self.request_timeout,
)
sc = response.status_code
if sc in (403, 404) and self._is_ck_domain(domain):
if self.update_progress_callback:
self.update_progress_callback(0, 0, status=f"{sc} - probing subdomains")
cache_key = self._get_ck_cache_key(url)
with self.subdomain_locks[cache_key]:
if cache_key in self.subdomain_cache:
alt_url = self.subdomain_cache[cache_key]
else:
alt_url = self._find_valid_subdomain(url)
self.subdomain_cache[cache_key] = alt_url
if alt_url != url:
found = urlparse(alt_url).netloc
if self.update_progress_callback:
self.update_progress_callback(0, 0, status=f"Subdomain found: {found}")
alt_domain = urlparse(alt_url).netloc
if not self._wait_for_domain_cooldown(alt_domain):
return None
response = self.session.get(
alt_url,
stream=True,
headers=headers,
timeout=self.request_timeout,
)
response.raise_for_status()
self._mark_domain_success(alt_domain)
return response
if self.update_progress_callback:
self.update_progress_callback(0, 0, status="Exhausted subdomains")
return None
response.raise_for_status()
self._mark_domain_success(domain)
return response
except requests.exceptions.ReadTimeout:
self.log(
"READ_TIMEOUT_RETRY",
attempt=attempt + 1,
total=max_retries + 1,
timeout=self.stream_read_timeout,
)
if attempt < max_retries:
time.sleep(self._compute_retry_delay(attempt))
except requests.exceptions.RequestException as e:
status_code = getattr(e.response, "status_code", None)
failed_url = getattr(getattr(e, "request", None), "url", url)
failed_parsed = urlparse(failed_url)
failed_domain = failed_parsed.netloc
if status_code in (429, 500, 502, 503, 504):
self._mark_domain_error(domain, status_code)
self.log(
"HTTP_RETRY_REQUEST",
attempt=attempt + 1,
total=max_retries + 1,
status_code=status_code,
url=url,
)
if attempt < max_retries:
time.sleep(self._compute_retry_delay(attempt))
elif status_code is None and self._is_ck_domain(failed_domain):
cache_key = self._get_ck_cache_key(failed_url)
with self.subdomain_locks[cache_key]:
if cache_key in self.subdomain_cache:
alt_url = self.subdomain_cache[cache_key]
else:
alt_url = self._find_valid_subdomain(failed_url)
self.subdomain_cache[cache_key] = alt_url
if alt_url != failed_url:
try:
alt_domain = urlparse(alt_url).netloc
if not self._wait_for_domain_cooldown(alt_domain):
return None
response = self.session.get(
alt_url,
stream=True,
headers=headers,
timeout=self.request_timeout,
)
response.raise_for_status()
self._mark_domain_success(alt_domain)
return response
except requests.exceptions.RequestException:
pass
elif status_code not in (403, 404):
url_display = failed_url
if len(url_display) > 60:
url_display = url_display[:60] + "..."
self.log(
"ERROR_ACCESSING_URL",
attempt=attempt + 1,
total=max_retries + 1,
url=url_display,
error=e,
)
if attempt < max_retries:
time.sleep(self._compute_retry_delay(attempt))
if status_code in (403, 404) and self._is_ck_domain(domain) and attempt == max_retries:
self.log(
"FINAL_FAILURE_ACCESSING_URL",
url=url,
status_code=status_code,
)
return None
def _find_valid_subdomain(self, url, max_subdomains=10):
parsed = urlparse(url)
original_path = parsed.path
candidate_paths = []
if original_path:
candidate_paths.append(original_path)
if original_path.startswith("/data/"):
candidate_paths.append(original_path[len("/data"):])
else:
normalized = original_path if original_path.startswith("/") else f"/{original_path}"
candidate_paths.append(f"/data{normalized}")
candidate_paths = [p for p in dict.fromkeys(candidate_paths) if p]
host = parsed.netloc
if host.startswith("n") and "." in host:
prefix, remainder = host.split(".", 1)
if len(prefix) > 1 and prefix[1:].isdigit():
host = remainder
if self._is_coomer_domain(host):
base_domains = [host, "coomer.st", "coomer.su"]
elif self._is_kemono_domain(host):
base_domains = [host, "kemono.cr", "kemono.su"]
else:
base_domains = [host]
base_domains = list(dict.fromkeys(base_domains))
for base in base_domains:
candidate_domains = [base] + [f"n{i}.{base}" for i in range(1, max_subdomains + 1)]
for domain in candidate_domains:
for path in candidate_paths:
test_url = parsed._replace(netloc=domain, path=path).geturl()
if self.update_progress_callback:
self.update_progress_callback(0, 0, status=f"Testing subdomain: {domain}")
try:
resp = self.session.get(
test_url,
headers=self.headers,
timeout=self.request_timeout,
stream=True,
)
if resp.status_code == 200:
return test_url
except Exception:
pass
return url
def fetch_user_posts(
self,
site,
user_id,
service,
query=None,
specific_post_id=None,
initial_offset=0,
log_fetching=True,
only_first_page=False,
):
all_posts = []
offset = initial_offset
user_id_encoded = quote_plus(user_id)
self.domain_name = "kemono" if "kemono" in site else "coomer"
while True:
if self.cancel_requested.is_set():
return all_posts
api_url = f"https://{site}/api/v1/{service}/user/{user_id_encoded}/posts"
url_query = {"o": offset}
if query not in (None, "", 0, "0"):
url_query["q"] = query
api_url += "?" + urlencode(url_query)
if log_fetching:
self.log("CK_FETCHING_USER_POSTS", api_url=api_url)
try:
response = self.session.get(api_url, headers=self.headers)
if response.status_code == 400:
self.log("CK_END_OF_POSTS_AT_OFFSET", offset=offset)
break
response.raise_for_status()
posts_data = response.json()
if isinstance(posts_data, dict) and "data" in posts_data:
posts = posts_data["data"]
else:
posts = posts_data
if not posts:
break
if specific_post_id:
post = next((p for p in posts if p["id"] == specific_post_id), None)
if post:
return [post]
all_posts.extend(posts)
offset += 50
if only_first_page and not specific_post_id:
break
except Exception as e:
self.log("CK_ERROR_FETCHING_USER_POSTS", error=e)
break
if specific_post_id:
return [post for post in all_posts if post["id"] == specific_post_id]
return all_posts
def fetch_single_post(self, site, post_id, service):
self.domain_name = "kemono" if "kemono" in site else "coomer"
api_url = f"https://{site}/api/v1/{service}/post/{post_id}"
self.log("CK_FETCHING_POST", api_url=api_url)
try:
response = self.session.get(api_url, headers=self.headers)
response.raise_for_status()
return response.json()
except Exception as e:
self.log("CK_ERROR_FETCHING_POST", error=e)
return None
def process_post(self, post, site):
base = f"https://{site}/"
def _full(path):
if not path:
return None
p = path if str(path).startswith("/") else f"/{path}"
return urljoin(base, p)
media_urls = []
main_file = post.get("file") or {}
u = _full(main_file.get("path") or main_file.get("url") or main_file.get("name"))
if u:
media_urls.append(u)
for att in (post.get("attachments") or []):
u = _full(att.get("path") or att.get("url") or att.get("name"))
if u:
media_urls.append(u)
return media_urls
def _collect_filtered_media(self, posts, site):
collected = []
seen_media = set()
for post in posts:
current_post_id = post.get("id") or "unknown_id"
title = post.get("title") or ""
published_time = post.get("published") or ""
media_urls = self.process_post(post, site)
for media_url in media_urls:
ext = os.path.splitext(media_url.split("?")[0])[1].lower()
if (
(ext in self.image_extensions and not self.download_images)
or (ext in self.video_extensions and not self.download_videos)
or (ext in self.compressed_extensions and not self.download_compressed)
):
continue
if media_url in seen_media:
continue
seen_media.add(media_url)
collected.append(
{
"media_url": media_url,
"post_id": current_post_id,
"title": title,
"published": published_time,
}
)
return collected
def process_media_element(
self,
media_url,
user_id=None,
post_id=None,
post_name=None,
post_time=None,
download_id=None,
target_folder=None,
forced_filename=None,
):
if self.cancel_requested.is_set():
return
extension = os.path.splitext(media_url.split("?")[0])[1].lower()
if (
(extension in self.image_extensions and not self.download_images)
or (extension in self.video_extensions and not self.download_videos)
or (extension in self.compressed_extensions and not self.download_compressed)
):
self.log("SKIPPING_MEDIA_DUE_TO_SETTINGS", media_url=media_url)
return
if post_id:
self.post_attachment_counter[post_id] += 1
attachment_index = self.post_attachment_counter[post_id]
else:
attachment_index = 1
filename = forced_filename or self.get_filename(
media_url,
post_id=post_id,
post_name=post_name,
post_time=post_time,
attachment_index=attachment_index,
)
if target_folder:
media_folder = target_folder
else:
effective_user_id = user_id or "generic"
media_folder = self.get_media_folder(extension, effective_user_id, post_id)
os.makedirs(media_folder, exist_ok=True)
final_path = os.path.normpath(os.path.join(media_folder, filename))
tmp_path = final_path + ".tmp"
with self.active_downloads_lock:
if media_url in self.download_cache:
self.log("FILE_ALREADY_IN_DB_SKIPPING", media_url=media_url)
with self.file_lock:
self.skipped_files.append(final_path)
return
if media_url in self.active_downloads:
self.log("FILE_ALREADY_IN_PROGRESS_SKIPPING", media_url=media_url)
with self.file_lock:
self.skipped_files.append(final_path)
return
self.active_downloads.add(media_url)
try:
self.log("STARTING_DOWNLOAD_FROM", media_url=media_url)
response = self.safe_request(media_url, max_retries=self.max_retries)
if response is None:
self.log(
"FAILED_TO_DOWNLOAD_AFTER_ATTEMPTS",
media_url=media_url,
total=self.max_retries + 1,
)
with self.file_lock:
self.failed_files.append(media_url)
return
total_size = int(response.headers.get("content-length", 0))
downloaded_size = 0
self.start_time = time.time()
last_emit_time = 0.0
try:
with open(tmp_path, "wb") as f:
for chunk in response.iter_content(chunk_size=1048576):
if self.cancel_requested.is_set():
if os.path.exists(tmp_path):
try:
os.remove(tmp_path)
except Exception:
pass
self.log("DOWNLOAD_CANCELLED_FROM", media_url=media_url)
return
if chunk:
f.write(chunk)
downloaded_size += len(chunk)
last_emit_time = self._emit_progress_update(
downloaded_size=downloaded_size,
total_size=total_size,
download_id=download_id,
file_path=tmp_path,
start_time=self.start_time,
last_emit_time=last_emit_time,
force=False,
)
while total_size and downloaded_size < total_size:
resume_headers = self.headers.copy()
resume_headers["Range"] = f"bytes={downloaded_size}-"
self.log(
"RESUMING_DOWNLOAD_AT_BYTE",
downloaded_size=downloaded_size,
media_url=media_url,
)
part_response = self.safe_request(
media_url,
max_retries=self.max_retries,
headers=resume_headers,
)
if part_response is None:
raise Exception("RESUMPTION_FAILED_AFTER_RETRIES")
with open(tmp_path, "ab") as f:
for chunk in part_response.iter_content(chunk_size=1048576):
if self.cancel_requested.is_set():
if os.path.exists(tmp_path):
try:
os.remove(tmp_path)
except Exception:
pass
self.log("DOWNLOAD_CANCELLED_FROM", media_url=media_url)
return
if chunk:
f.write(chunk)
downloaded_size += len(chunk)
last_emit_time = self._emit_progress_update(
downloaded_size=downloaded_size,
total_size=total_size,
download_id=download_id,
file_path=tmp_path,
start_time=self.start_time,
last_emit_time=last_emit_time,
force=False,
)
if total_size > 0 and downloaded_size != total_size:
raise Exception(
self._translate_text(
"FINAL_SIZE_MISMATCH",
expected=total_size,
actual=downloaded_size,
)
)
self._emit_progress_update(
downloaded_size=downloaded_size,
total_size=total_size,
download_id=download_id,
file_path=tmp_path,
start_time=self.start_time,
last_emit_time=last_emit_time,
force=True,
)
with self.file_lock:
if os.path.exists(final_path):
os.remove(final_path)
os.rename(tmp_path, final_path)
self.completed_files += 1
self.log("DOWNLOAD_SUCCESS_FROM", media_url=media_url)
if self.update_global_progress_callback:
self.update_global_progress_callback(self.completed_files, self.total_files)
with self.db_lock:
self.db_cursor.execute(
"""
INSERT OR REPLACE INTO downloads (media_url, file_path, file_size, user_id, post_id)
VALUES (?, ?, ?, ?, ?)
""",
(media_url, final_path, total_size, user_id, post_id),
)
self.db_connection.commit()
self.download_cache[media_url] = (final_path, total_size)
except Exception:
if os.path.exists(tmp_path):
try:
os.remove(tmp_path)
except Exception:
pass
self.log(
"FAILED_TO_DOWNLOAD_AFTER_ATTEMPTS",
media_url=media_url,
total=self.max_retries + 1,
)
with self.file_lock:
self.failed_files.append(media_url)
finally:
with self.active_downloads_lock:
self.active_downloads.discard(media_url)
def download_media(self, site, user_id, service, query=None, download_all=False, initial_offset=0, only_first_page=False):
try:
self.domain_name = "kemono" if "kemono" in site else "coomer"
self.log("CK_STARTING_DOWNLOAD_PROCESS")
posts = self.fetch_user_posts(
site,
user_id,
service,
query=query,
initial_offset=initial_offset,
log_fetching=download_all,
only_first_page=only_first_page,
)
if not posts:
self.log("CK_NO_POSTS_FOUND_FOR_USER")
return
if not download_all:
posts = posts[:50]
media_entries = self._collect_filtered_media(posts, site)
self.total_files = len(media_entries)
self.completed_files = 0
futures = []
for entry in media_entries:
if self.download_mode == "queue":
self.process_media_element(
entry["media_url"],
user_id,
post_id=entry["post_id"],
post_name=entry["title"],
post_time=entry["published"],
download_id=entry["media_url"],
)
else:
future = self.executor.submit(
self.process_media_element,
entry["media_url"],
user_id,
entry["post_id"],
entry["title"],
entry["published"],
entry["media_url"],
)
futures.append(future)
self.futures = futures
if self.download_mode == "multi":
for future in as_completed(futures):
if self.cancel_requested.is_set():
break
future.result()
except Exception as e:
self.log("CK_ERROR_DURING_DOWNLOAD", error=e)
finally:
self.shutdown_executor()
def download_single_post(self, site, post_id, service, user_id):
try:
self.domain_name = "kemono" if "kemono" in site else "coomer"
posts = self.fetch_user_posts(site, user_id, service, specific_post_id=post_id)
if not posts:
self.log("CK_NO_POST_FOUND_FOR_ID")
return
current_post = posts[0]
media_urls = self.process_post(current_post, site)
current_post_id = current_post.get("id") or post_id or "unknown_id"
title = current_post.get("title") or ""
published_time = current_post.get("published") or ""
deduped_media_urls = []
seen = set()
for media_url in media_urls:
if media_url in seen:
continue
seen.add(media_url)
deduped_media_urls.append(media_url)
self.total_files = len(deduped_media_urls)
self.completed_files = 0
futures = []
for media_url in deduped_media_urls:
if self.download_mode == "queue":
self.process_media_element(
media_url,
user_id,
post_id=current_post_id,
post_name=title,
post_time=published_time,
download_id=media_url,
)
else:
future = self.executor.submit(
self.process_media_element,
media_url,
user_id,
current_post_id,
title,
published_time,
media_url,
)
futures.append(future)
self.futures = futures
if self.download_mode == "multi":
for future in as_completed(futures):
if self.cancel_requested.is_set():
break
future.result()
except Exception as e:
self.log("CK_ERROR_DURING_DOWNLOAD", error=e)
finally:
self.shutdown_executor()
def clear_database(self):
with self.db_lock:
self.db_cursor.execute("DELETE FROM downloads")
self.db_connection.commit()
self.log("DATABASE_CLEARED")
def update_max_downloads(self, new_max):
try:
new_max = int(new_max)
except (TypeError, ValueError):
return
if new_max < 1:
new_max = 1
self.max_workers = new_max
if self.executor:
self.executor.shutdown(wait=True)
self.executor = ThreadPoolExecutor(max_workers=new_max)
self.rate_limit = Semaphore(new_max)
self.domain_locks = defaultdict(lambda: Semaphore(self.per_domain_limit))
self.log(
"UPDATED_MAX_WORKERS",
new_max=new_max,
per_domain_limit=self.per_domain_limit,
)