import os # ───────────── Standard Library import os import time import uuid import json import base64 import asyncio import nest_asyncio import random import logging import atexit import pathlib from threading import Thread from datetime import datetime, timedelta, timezone from typing import Optional, Tuple, List # ───────────── Flask from flask import Flask, render_template, request, redirect, session # ───────────── MoviePy from moviepy.editor import ( VideoFileClip, ImageClip, ColorClip, CompositeVideoClip, concatenate_videoclips ) from moviepy.video.fx import resize # ───────────── Pillow (PIL) from PIL import Image, ImageDraw, ImageFont # ───────────── NumPy import numpy as np # ───────────── Requests import requests # ───────────── Emoji Handling import emoji # ───────────── MongoDB from pymongo import MongoClient # ───────────── YouTube API (Google) from google.oauth2.credentials import Credentials from google.auth.transport.requests import Request from googleapiclient.discovery import build from googleapiclient.http import MediaFileUpload # ───────────── yt-dlp from yt_dlp import YoutubeDL # ───────────── Telegram Bot from telegram import Update from telegram.ext import ( Application, CommandHandler, MessageHandler, filters, ContextTypes, JobQueue ) UPLOAD_TIMES = [] NEXT_RESET = datetime.now().replace(hour=0, minute=0, second=0, microsecond=0) + timedelta(days=1) def patch_pillow_compat(): """Pillow >= 10 removed ``Image.ANTIALIAS`` and the other module-level resampling constants, but moviepy 1.0.3 (which we rely on) still calls ``Image.ANTIALIAS`` inside its resizer. The previous ``patch_moviepy`` never actually fixed this — it only worked because Pillow was pinned to 9.4.0. Restoring the constants lets us run a modern Pillow (required by instagrapi) while keeping the stable, well-tested moviepy 1.0.3 video pipeline intact. """ resampling = getattr(Image, "Resampling", None) if resampling is None: return for name, res in ( ("ANTIALIAS", "LANCZOS"), ("LANCZOS", "LANCZOS"), ("BICUBIC", "BICUBIC"), ("BILINEAR", "BILINEAR"), ("NEAREST", "NEAREST"), ("HAMMING", "HAMMING"), ("BOX", "BOX"), ): if not hasattr(Image, name): setattr(Image, name, getattr(resampling, res)) patch_pillow_compat() # Allow nested event loops: auto_loop runs asyncio.run() repeatedly from a worker # thread, and some libraries (telethon) may already hold a running loop. Applying # nest_asyncio makes those re-entrant instead of raising "loop already running". try: nest_asyncio.apply() except Exception: pass def _textsize(draw, text, font): """``ImageDraw.textsize`` was removed in Pillow 10. Reimplement it with ``textbbox`` so text measurement works on every Pillow version.""" if hasattr(draw, "textbbox"): left, top, right, bottom = draw.textbbox((0, 0), text, font=font) return right - left, bottom - top return draw.textsize(text, font=font) # pragma: no cover (very old Pillow) _FONT_CANDIDATES = ( "DejaVuSans-Bold.ttf", "/usr/share/fonts/truetype/dejavu/DejaVuSans-Bold.ttf", "/usr/share/fonts/dejavu/DejaVuSans-Bold.ttf", "/usr/share/fonts/truetype/dejavu/DejaVuSans.ttf", ) def _load_font(size, name=None): """Load a TrueType font robustly. Try the given name/path, then common system locations, then a correctly-sized default. NEVER raises (a missing font used to crash create_text_image / create_text_image_with_shadow).""" for cand in ([name] if name else []) + list(_FONT_CANDIDATES): try: return ImageFont.truetype(cand, size=int(size)) except OSError: continue try: return ImageFont.load_default(size=int(size)) # Pillow >= 10 except TypeError: return ImageFont.load_default() import emoji from PIL import Image, ImageDraw, ImageFont import emoji import os import requests from PIL import Image, ImageDraw, ImageFont import emoji import os, requests import os import emoji import requests from PIL import Image, ImageDraw, ImageFont def create_text_image_2( text: str, width: int, height: int, *, font_size: int = 60, align: str = "center", # "left" | "center" | "right" bg_color=(255, 255, 255), text_color=(0, 0, 0) ): img = Image.new("RGBA", (width, height), color=bg_color) draw = ImageDraw.Draw(img) # Load font font = _load_font(font_size) # Extract emojis and plain text all_emojis = emoji.emoji_list(text) plain_text = emoji.replace_emoji(text, replace='') # Measure text size text_width, text_height = _textsize(draw, plain_text, font) total_emoji_width = len(all_emojis) * font_size full_width = text_width + total_emoji_width + 5 * len(all_emojis) # X‑offset based on alignment if align == "left": x_start = 20 elif align == "right": x_start = max(20, width - full_width - 20) else: # center x_start = max(20, (width - full_width) // 2) y_start = (height - text_height) // 2 # Draw the plain text draw.text((x_start, y_start), plain_text, font=font, fill=text_color) # Get emoji positions (in original string) x = x_start + text_width + 5 for em in all_emojis: char = em["emoji"] hexcode = "-".join(f"{ord(c):x}" for c in char) # Emoji image file emoji_path = f"emoji_pngs/{hexcode}.png" if not os.path.exists(emoji_path): url = f"https://github.com/twitter/twemoji/raw/master/assets/72x72/{hexcode}.png" os.makedirs("emoji_pngs", exist_ok=True) try: response = requests.get(url, timeout=5) if response.ok: with open(emoji_path, "wb") as f: f.write(response.content) except Exception: continue # Paste emoji if os.path.exists(emoji_path): em_img = Image.open(emoji_path).convert("RGBA").resize((font_size, font_size)) img.paste(em_img, (x, y_start), em_img) x += font_size + 5 return img from PIL import Image, ImageDraw, ImageFont def create_text_image_with_shadow( text: str, width: int, height: int, *, font_size: int = 60, align: str = "center", bg_color=(0, 0, 0, 0), # transparent text_color=(255, 255, 255), shadow_color=(0, 0, 0), font_name="DejaVuSans-Bold.ttf" # Only font name, not full path ): # Create image img = Image.new("RGBA", (width, height), bg_color) draw = ImageDraw.Draw(img) # Load font by name with robust fallbacks (never raises) font = _load_font(font_size, font_name) # Get size text_bbox = draw.textbbox((0, 0), text, font=font) text_width = text_bbox[2] - text_bbox[0] text_height = text_bbox[3] - text_bbox[1] # Alignment if align == "left": x = 0 elif align == "right": x = width - text_width else: # center x = (width - text_width) // 2 y = (height - text_height) // 2 # Draw shadow (1px right) draw.text((x + 1, y), text, font=font, fill=shadow_color) # Draw actual text draw.text((x, y), text, font=font, fill=text_color) return img def create_text_image(text, width, height): img = Image.new("RGB", (width, height), color=(255, 255, 255)) draw = ImageDraw.Draw(img) # Load font font = _load_font(60) # Extract emoji and clean text emojis = emoji.emoji_list(text) pure_text = emoji.replace_emoji(text, replace='') # Adjust font size to fit max_font_size = 70 while True: font = _load_font(max_font_size) text_width, text_height = _textsize(draw, pure_text, font) total_width = text_width + (len(emojis) * 60) + 20 if total_width <= width - 40 or max_font_size <= 30: break max_font_size -= 2 # Starting X & Y for centered layout start_x = (width - total_width) // 2 y = (height - text_height) // 2 # Draw text first draw.text((start_x, y), pure_text, font=font, fill=(0, 0, 0)) # Then draw emojis to the right of the text x = start_x + text_width + 10 for e in emojis: hexcode = '-'.join(f"{ord(c):x}" for c in e['emoji']) emoji_path = f"emoji_pngs/{hexcode}.png" if not os.path.exists(emoji_path): download_emoji_png(e['emoji']) if os.path.exists(emoji_path): emoji_img = Image.open(emoji_path).convert("RGBA") emoji_img = emoji_img.resize((60, 60)) img.paste(emoji_img, (x, y), emoji_img) x += 60 + 4 return img from PIL import Image, ImageDraw, ImageFont import numpy as np from moviepy.editor import ImageClip def generate_watermark_img(text, width, height=50): img = Image.new("RGBA", (width, height), (0, 0, 0, 0)) draw = ImageDraw.Draw(img) font = _load_font(35) text_width, text_height = _textsize(draw, text, font) draw.text((5, height - text_height - 2), text, fill="white", font=font, stroke_width=1, stroke_fill="black") return img def download_emoji_png(emoji_char): hexcode = '-'.join(f"{ord(c):x}" for c in emoji_char) url = f"https://github.com/twitter/twemoji/raw/master/assets/72x72/{hexcode}.png" os.makedirs("emoji_pngs", exist_ok=True) path = f"emoji_pngs/{hexcode}.png" try: r = requests.get(url) if r.status_code == 200: with open(path, "wb") as f: f.write(r.content) print(f"✅ Downloaded emoji: {emoji_char} → {path}") else: print(f"❌ Failed to download emoji: {emoji_char}") except Exception as e: print(f"⚠️ Error downloading emoji {emoji_char}: {e}") # ───────────────────────────── HIGH-QUALITY / CONSISTENT EXPORT # # ABOUT THE "2ND/3RD VIDEO LOOKS WORSE, FIXES ITSELF NEXT DAY" PROBLEM # -------------------------------------------------------------------- # That quality drop is NOT created by this program. Every file we export below # is encoded with the *exact same* maximum-quality settings, so the 1st and the # 8th video uploaded in the same hour are byte-for-byte identical in quality (we # also log each file's resolution / size / bitrate so you can confirm it). # # The drop happens on YouTube / Instagram *after* the upload: when you push many # videos in a short window their servers first publish a fast, low-resolution # transcode and only finish the full HD / VP9 transcode later — which is exactly # why it "improves by the next day". An uploader cannot disable that, but it CAN # hand the platform the best possible master so the temporary version looks as # good as possible and the HD transcode is prioritised. We do that by: # • keeping CRF at maximum quality (env CRF, default 15), # • adding +faststart so processing/streaming can begin immediately, # • optionally upscaling the YouTube copy to >=1440p (see prepare_yt_file), # which makes YouTube encode with the higher-quality VP9 codec. def _probe_width(path: str): """Return the pixel width of a video using ffprobe, or None if unavailable.""" import shutil, subprocess ff = shutil.which("ffprobe") if not ff: return None try: out = subprocess.run( [ff, "-v", "error", "-select_streams", "v:0", "-show_entries", "stream=width", "-of", "default=nw=1:nk=1", path], capture_output=True, text=True, timeout=30, ).stdout.strip() return int(out.split()[0]) if out else None except Exception: return None def _log_quality(path: str) -> None: """Log resolution / size / bitrate of an exported file so quality parity across every upload is visible and verifiable.""" import shutil, subprocess try: size_mb = os.path.getsize(path) / 1_000_000 except OSError: size_mb = 0.0 details = "" ff = shutil.which("ffprobe") if ff: try: details = " ".join(subprocess.run( [ff, "-v", "error", "-select_streams", "v:0", "-show_entries", "stream=width,height,r_frame_rate,bit_rate", "-of", "default=nw=1:nk=1", path], capture_output=True, text=True, timeout=30, ).stdout.split()) except Exception: pass logger.info(f"[🎚️] export {os.path.basename(path)} | {size_mb:.1f} MB | {details}") def write_high_quality(final, out_path: str, fps=None): """The single, shared exporter used by every edit function so all uploads (1st .. Nth in the same hour) get IDENTICAL maximum-quality encoding.""" crf = os.getenv("CRF", "15") # lower = higher quality (15 ≈ visually lossless) preset = os.getenv("FFMPEG_PRESET", "medium") # at a fixed CRF this changes speed/size, NOT visible quality try: threads = int(os.getenv("FFMPEG_THREADS", "2")) except ValueError: threads = 2 ffmpeg_params = [ "-crf", str(crf), "-pix_fmt", "yuv420p", # universal player/platform compatibility "-profile:v", "high", # better detail retention "-bf", "2", # B-frames "-g", "60", # keyframe interval "-movflags", "+faststart", # let platforms start processing/streaming immediately ] kwargs = dict( codec="libx264", audio_codec="aac", audio_bitrate="192k", preset=preset, ffmpeg_params=ffmpeg_params, threads=threads, verbose=False, logger=None, ) if fps: kwargs["fps"] = fps final.write_videofile(out_path, **kwargs) _log_quality(out_path) return out_path # ───────────────────────────── OUTPUT FORMAT (true 9:16, NO black bars) # Both edit paths render to exactly OUT_W x OUT_H so YouTube and Instagram get # pixel-identical content (Instagram uploads this size; YouTube uploads an # upscaled copy of the SAME frame). 1080x1920 is the standard 9:16 size, so the # video fills the whole screen edge-to-edge on both apps with no padding. OUT_W, OUT_H = 1080, 1920 def _cover_fit(clip, tw, th): """Scale `clip` to COVER a tw x th box (fill it completely) then center-crop. Guarantees the box is filled edge-to-edge with NO black bars on width/height.""" scale = max(tw / clip.w, th / clip.h) resized = clip.resize(width=max(int(round(clip.w * scale)), int(tw))) return resized.crop(x_center=resized.w / 2, y_center=resized.h / 2, width=tw, height=th) def edit_video(video_path): clip = VideoFileClip(video_path) BAR_H = 140 # white caption strip at the very top MAIN_H = OUT_H - BAR_H # the source video fills all the remaining space # White background covers the whole 9:16 frame (edges are never black) final_bg = ColorClip(size=(OUT_W, OUT_H), color=(255, 255, 255), duration=clip.duration) # === Caption Bar (Top), full width caption = random.choice(CAPTIONS) caption_img = create_text_image(caption, OUT_W, BAR_H) caption_clip = ImageClip(np.array(caption_img)).set_duration(clip.duration).set_position((0, 0)) # === Main video: COVER-fit into the main area → fills width & height, no bars main_video = _cover_fit(clip, OUT_W, MAIN_H).set_duration(clip.duration).set_position((0, BAR_H)) # === Eye-protection overlay (subtle) over the video area only eye_protection = ColorClip(size=(OUT_W, MAIN_H), color=(255, 255, 255), duration=clip.duration) eye_protection = eye_protection.set_opacity(0.1).set_position((0, BAR_H)) final = CompositeVideoClip( [final_bg, caption_clip, main_video, eye_protection], size=(OUT_W, OUT_H), ) os.makedirs("edited", exist_ok=True) output_path = f"edited/{uuid.uuid4().hex}.mp4" # Shared max-quality exporter → every upload is encoded identically. write_high_quality(final, output_path, fps=clip.fps) clip.close() final.close() return output_path def edit_video_raw(video_path: str) -> str: import os, uuid, random import numpy as np from moviepy.editor import ( VideoFileClip, ImageClip, ColorClip, CompositeVideoClip ) # Ensure CAPTIONS exist if not CAPTIONS: raise ValueError("CAPTIONS list is empty!") # Load main video clip = VideoFileClip(video_path) vw, vh = OUT_W, OUT_H # true 9:16 (1080x1920) → no black bars, identical on both platforms # Heights (scaled from the original 2100 design to fill 1920, same proportions) CAPTION_H = 156 LAUGH_H = 457 MID_H = 110 MAIN_H = vh - (CAPTION_H + LAUGH_H + MID_H) # = 1197 if clip.duration < 6: raise ValueError("Main video must be at least 6 seconds.") if clip.duration > 180: clip = clip.subclip(0, 180) # === CAPTION === caption_text = random.choice(CAPTIONS) caption_img = create_text_image_2( caption_text, vw, CAPTION_H, font_size=72, align="center", bg_color=(255, 255, 255), text_color=(0, 0, 0) ) caption_clip = ImageClip(np.array(caption_img)) \ .set_duration(clip.duration) \ .set_position((0, 0)) # === MID CAPTION === mid_text = random.choice([ "Pura 1 din ke baad ye mila 🤣", "Ye miss mat kr dena 😜", "Kha thi ye reel ab tak 🤨🤗", "Wait, ye dekh kr hi janna 💥💥", ]) mid_img = create_text_image_2( mid_text, vw, MID_H, font_size=64, align="center", bg_color=(0, 0, 0), text_color=(255, 255, 255) ) mid_caption_clip = ImageClip(np.array(mid_img)) \ .set_duration(clip.duration) \ .set_position((0, CAPTION_H + LAUGH_H)) # === MAIN VIDEO === clip = clip.resize(width=vw) crop_y1 = 200 crop_y2 = crop_y1 + MAIN_H main_video = clip.crop(y1=crop_y1, y2=crop_y2) \ .set_position((0, CAPTION_H + LAUGH_H + MID_H)) # Overlay (optional soft filter) overlay = ColorClip(size=(vw, MAIN_H), color=(255, 255, 255), duration=clip.duration) \ .set_opacity(0.1).set_position((0, CAPTION_H + LAUGH_H + MID_H)) # === LAUGH MEME === laugh_files = ["laugh/laugh_one.mp4", "laugh/laugh_two.mp4"] laugh_path = random.choice(laugh_files) if not os.path.exists(laugh_path): raise FileNotFoundError(f"❌ Laugh meme not found: {laugh_path}") laugh_clip = VideoFileClip(laugh_path).resize(width=vw).subclip(0, 4) y1 = (laugh_clip.h - LAUGH_H) // 2 y2 = y1 + LAUGH_H laugh_crop = laugh_clip.crop(y1=y1, y2=y2).set_position((0, CAPTION_H)) # Parts: laugh_part1 = laugh_crop.subclip(0, 2).set_start(0) laugh_frozen = ImageClip(laugh_crop.get_frame(2)) \ .set_duration(clip.duration - 4).set_start(2) \ .set_position((0, CAPTION_H)) laugh_part3 = laugh_crop.subclip(2, 4).set_start(clip.duration - 2) # === FINAL COMPOSITION === final = CompositeVideoClip([ caption_clip, # 📝 Caption laugh_part1, # 😂 Laugh 0–2s (video) laugh_frozen, # 🧊 Freeze mid laugh_part3, # 😂 Laugh end 2s (video) mid_caption_clip, # 💬 Mid caption main_video, # 🎥 Main video overlay # ✨ Optional light filter ], size=(vw, vh)).set_duration(clip.duration) # Export os.makedirs("edited", exist_ok=True) out_path = f"edited/{uuid.uuid4().hex}.mp4" # Shared max-quality exporter → every upload is encoded identically. write_high_quality(final, out_path, fps=clip.fps) clip.close(), laugh_clip.close(), final.close() return out_path # ───────────────────────────── LOGGING logging.basicConfig( level=logging.INFO, format="%(asctime)s - %(levelname)s - %(message)s", handlers=[ logging.FileHandler("app.log"), logging.StreamHandler() ] ) logger = logging.getLogger(__name__) # ───────────────────────────── CONSTANTS & GLOBALS CAPTIONS = [ "Wait for it 😜", "Watch till end 😂", "Try not to laugh 🤣", "Don't skip this 🔥", "You won't expect this! 😀", "Keep watching 😆", "Stay till end! 💥", "Funniest one yet" ] BLOCKLIST = [ "nsfw", "18+", "xxx", "sexy", "adult", "porn", "onlyfans", "escort", "betting", "gambling", "iplwin", "1xbet", "winzo", "my11circle", "dream11", "rummy", "teenpatti", "fantasy", "casino", "promotion" ] UPLOAD_TIMES: List[datetime] = [] NEXT_RESET: datetime | None = None first_run = True # ───────────────────────────── DATABASE client = MongoClient(os.getenv("MONGO_URI")) db1 = client.shortttt # meta for YouTube uploads meta = db1.meta sync = db1.sync # cross-app handshake (kept for backward compatibility) # Shared config used to sync the HF app with the Instagram Telegram bot (koyeb/): # {_id:"telegram", bot_token, bot_username, authorized_user_ids:[...]} # {_id:"ig_cookies", cookies_b64} config = db1.config botdb = client.teleg4am_reelssss a_raw = botdb.raw_links # {link:str, used:bool} a_reacted = botdb.reacted_links # ───────────────────────────── FLASK UI from flask import Flask app = Flask(__name__) @app.route("/") def home(): return "✅ Code is running!" # ───── Function 1: pick random link ────────────────────────────────── def get_random_link() -> Tuple[Optional[str], Optional[str]]: raw_left = list(a_raw.find({"used": False})) reacted_left = list(a_reacted.find({"used": False})) if not raw_left and not reacted_left: return None, None choice_pool = "raw" if random.random() < 0.4 else "reacted" if choice_pool == "raw" and not raw_left: choice_pool = "reacted" if choice_pool == "reacted" and not reacted_left: choice_pool = "raw" col, pool_list = (a_raw, raw_left) if choice_pool == "raw" else (a_reacted, reacted_left) doc = random.choice(pool_list) col.update_one({"_id": doc["_id"]}, {"$set": {"used": True}}) return doc["link"], choice_pool import os import re import uuid import asyncio import pathlib import logging from typing import Optional, Tuple from telethon import TelegramClient from telethon.sessions import StringSession from telethon.tl.types import DocumentAttributeVideo from moviepy.editor import VideoFileClip API_ID = int(os.getenv("TG_API_ID", "3704772")) API_HASH = os.getenv("TG_API_HASH", "b8e50a035abb851c0dd424e14cac4c06") SESSION_STR = os.getenv("SESSION") TARGET_BOT = "instasavegrambot" logger = logging.getLogger(__name__) def tg_duration_seconds(message) -> Optional[int]: if not message or not message.media or not message.media.document: return None for attr in message.media.document.attributes: if isinstance(attr, DocumentAttributeVideo): return attr.duration return None def message_has_video(message) -> bool: """True if the message carries a video FILE, regardless of its (often 0 or missing) duration attribute. Many reels arrive with duration=0 — Telegram then shows '0:00' even though the clip is 20s+ — so we must NOT rely on the duration to decide whether a video was sent.""" if not message or not getattr(message, "media", None): return False doc = getattr(message.media, "document", None) if not doc: return False mime = (getattr(doc, "mime_type", "") or "").lower() if mime.startswith("video/"): return True for attr in getattr(doc, "attributes", []): if isinstance(attr, DocumentAttributeVideo): return True return False import asyncio import logging import shutil async def download_url_mp4(url: str, filename: str, timeout: int = 30) -> bool: # 1. Ensure wget exists if not shutil.which("wget"): logger.error("❌ wget is not installed or not in PATH.") return False # 2. Build wget command wget_cmd = [ "wget", "--quiet", # minimal output # still show a progress bar f"--timeout={timeout}", # seconds "--header=User-Agent: Mozilla/5.0 (Linux; Android 10)", "--header=Referer: https://www.instagram.com/", "-O", filename, # output path url ] try: # 3. Launch wget as an async subprocess proc = await asyncio.create_subprocess_exec( *wget_cmd, stdout=asyncio.subprocess.PIPE, stderr=asyncio.subprocess.PIPE, ) # 4. Wait for it to finish stdout, stderr = await proc.communicate() if proc.returncode == 0: logger.info(f"📥 Downloaded MP4 → {filename}") return True else: logger.error( f"❌ wget exited with {proc.returncode}\nSTDERR: {stderr.decode().strip()}" ) return False except Exception as e: logger.error(f"❌ wget launch failed: {e}") return False async def send_to_bot_and_get_video(link: str) -> Tuple[Optional[str], Optional[int]]: async with TelegramClient(StringSession(SESSION_STR), API_ID, API_HASH) as client: bot = await client.get_entity(TARGET_BOT) async def attempt(send_link: str, depth=0) -> Tuple[Optional[str], Optional[int]]: if depth > 2: logger.warning("🔁 Retry limit reached.") return None, None async with client.conversation(bot, timeout=30) as conv: await conv.send_message(send_link) logger.info(f"📤 Sent to {TARGET_BOT}: {send_link}") wait_minutes = 4 deadline = asyncio.get_event_loop().time() + (wait_minutes * 60) while True: remaining = deadline - asyncio.get_event_loop().time() if remaining <= 0: logger.warning(f"⏰ No video received within {wait_minutes} minutes. Giving up on this link.") return None, None try: msg = await conv.get_response(timeout=remaining) except asyncio.TimeoutError: logger.warning(f"⏰ No reply from bot within {wait_minutes} minutes.") return None, None text = msg.message or "" logger.info(f"📬 Bot replied: {text[:80]}") # ✅ Case 1: Telegram video file. Detect by PRESENCE of a video # (its duration attribute is frequently 0/missing → '0:00'), then # read the REAL duration from the downloaded file. if message_has_video(msg): tg_dur = tg_duration_seconds(msg) or 0 pathlib.Path("reels").mkdir(exist_ok=True) file_path = await msg.download_media(file="reels/") if not file_path: logger.warning("🎞️ Video download returned no file — waiting…") continue real_dur = tg_dur try: clip = VideoFileClip(file_path) real_dur = int(clip.duration) clip.close() except Exception as e: logger.warning(f"🎞️ Could not probe duration ({e}); " f"falling back to tg={tg_dur}s") # Only reject when we actually KNOW it's out of range. if real_dur and not (20 <= real_dur <= 180): logger.info(f"⏩ Skipped due to duration = {real_dur}s") try: os.remove(file_path) except OSError: pass return None, None logger.info(f"✅ Downloaded video → {file_path} " f"(duration={real_dur or 'unknown'}s, tg={tg_dur}s)") return file_path, (real_dur or tg_dur or 30) # ✅ Case 2: CDN link in full text urls = re.findall(r"https://[^\s]+", text) if urls: cdn_url = urls[0].strip() pathlib.Path("reels").mkdir(exist_ok=True) fname = f"reels/{uuid.uuid4().hex}.mp4" success = await download_url_mp4(cdn_url, fname) if not success: return None, None try: clip = VideoFileClip(fname) duration = int(clip.duration) clip.close() if 20 <= duration <= 180: return fname, duration else: logger.info(f"⏩ CDN duration = {duration}s → Skipped") os.remove(fname) return None, None except Exception as e: logger.warning(f"🎞️ Duration read failed: {e}") return None, None # ❌ Case 3: Ad or error → keep waiting for next message instead of bailing if "Request failed" in text: logger.warning("🔁 Bot said request failed, retrying once…") await asyncio.sleep(5) return await attempt(send_link, depth + 1) if "We are experiencing high" in text: await asyncio.sleep(3600) return await attempt(send_link, depth + 1) # Not a video, not a recognized error → log and keep listening logger.info("⌛ Not a video yet, still waiting within the 4-minute window…") continue return await attempt(link) # ────────── Loop until we get a valid reel ──────── async def fetch_valid_reel() -> Tuple[Optional[str], Optional[str]]: for _ in range(10): link, pool = get_random_link() if not link: return None, None logger.info(f"Trying {pool} link: {link}") video_path, duration = await send_to_bot_and_get_video(link) if video_path: return video_path, pool await asyncio.sleep(15) return None, None db = client["youtube"] tokens = db["tokens"] import os from google.auth.transport.requests import Request from google.oauth2.credentials import Credentials from googleapiclient.discovery import build from googleapiclient.http import MediaFileUpload # MongoDB token collection assumed to be initialized as `tokens` def get_stored_token(): return tokens.find_one({"_id": "youtube_token"}) def save_token(creds: Credentials): tokens.update_one( {"_id": "youtube_token"}, {"$set": { "access_token": creds.token, "expiry": creds.expiry.isoformat() if creds.expiry else None, }}, upsert=True ) def upload_to_youtube(video_path, title, desc): # Load token from DB stored = get_stored_token() token = stored["access_token"] if stored else None expiry = stored["expiry"] if stored else None # Parse expiry if it exists if expiry: expiry = datetime.fromisoformat(expiry) now = datetime.utcnow() # Create credentials object creds = Credentials( token=token if expiry and now < expiry else None, refresh_token=os.getenv("YT_REFRESH_TOKEN"), token_uri="https://oauth2.googleapis.com/token", client_id=os.getenv("YT_CLIENT_ID"), client_secret=os.getenv("YT_CLIENT_SECRET"), scopes=["https://www.googleapis.com/auth/youtube.upload"] ) # Refresh token if expired or missing if not creds.valid or creds.expired: creds.refresh(Request()) save_token(creds) logger.info("🔄 Refreshed access token") # Build YouTube API client youtube = build("youtube", "v3", credentials=creds) # Prepare and upload the video request = youtube.videos().insert( part="snippet,status", body={ "snippet": { "title": title, "description": desc, "tags": ["funny", "memes", "comedy", "shorts"], "categoryId": "23" }, "status": { "privacyStatus": "public", "madeForKids": False } }, media_body=MediaFileUpload(video_path) ) res = request.execute() video_url = f"https://youtube.com/watch?v={res['id']}" logger.info(f"✅ Uploaded: {video_url}") return video_url # ───────────────────────────── INSTAGRAM COOKIES (netscape cookies in base64) # # The Instagram "Netscape cookies" export (cookies.txt) is supplied as ONE base64 # string. On Hugging Face it lives in the IG_COOKIES_B64 environment variable so # you can rotate it from the HF UI whenever you need. We ALSO mirror it into # MongoDB so the Instagram Telegram bot (koyeb/) — which performs the actual # upload — always reads the latest cookies from one shared place. def _decode_b64_cookies() -> str: """Decode IG_COOKIES_B64 into the raw netscape cookies text.""" b64 = os.getenv("IG_COOKIES_B64", "").strip() if not b64: return "" # tolerate a data-URI prefix, whitespace/newlines and missing padding if b64.lower().startswith("data:") and "," in b64: b64 = b64.split(",", 1)[1] b64 = "".join(b64.split()) b64 += "=" * (-len(b64) % 4) try: return base64.b64decode(b64).decode("utf-8", "ignore") except Exception as e: logger.error(f"[IG] Could not base64-decode IG_COOKIES_B64: {e}") return "" def parse_netscape_cookies(text: str) -> dict: """Parse a netscape/cookies.txt body into a {name: value} dict.""" cookies = {} for line in text.splitlines(): raw = line.strip() if not raw: continue # "#HttpOnly_" lines are real cookies; other "#" lines are comments if raw.startswith("#HttpOnly_"): raw = raw[len("#HttpOnly_"):] elif raw.startswith("#"): continue parts = raw.split("\t") if len(parts) < 7: # some exports use spaces instead of tabs parts = raw.split() if len(parts) >= 7: cookies[parts[5]] = parts[6] return cookies def get_ig_cookies() -> dict: return parse_netscape_cookies(_decode_b64_cookies()) def sync_ig_cookies_to_db() -> None: """Mirror the HF env cookies (IG_COOKIES_B64) into MongoDB so the Telegram bot that uploads to Instagram always uses the latest cookies. Change the cookies on Hugging Face and they propagate to the bot automatically.""" b64 = os.getenv("IG_COOKIES_B64", "").strip() if not b64: logger.info("[IG] IG_COOKIES_B64 not set on HF — leaving MongoDB cookies as-is") return # only push cookies that actually contain a sessionid (avoid clobbering good ones) if "sessionid" not in get_ig_cookies(): logger.warning("[IG] IG_COOKIES_B64 has no 'sessionid' — not syncing to DB") return try: config.update_one( {"_id": "ig_cookies"}, {"$set": {"cookies_b64": b64}}, upsert=True, ) logger.info("[IG] ✅ synced IG_COOKIES_B64 (env) → MongoDB for the bot") except Exception as e: logger.warning(f"[IG] could not sync cookies to DB: {e}") def _parse_id_csv(raw: str) -> list: """Parse a CSV of Telegram user ids into a list of ints (ignores junk).""" ids = [] for tok in (raw or "").replace(" ", "").split(","): if not tok: continue try: ids.append(int(tok)) except ValueError: logger.warning(f"[bot] ignoring non-numeric authorized id '{tok}'") return ids def sync_telegram_config_to_db() -> None: """Store the HF env Telegram settings into MongoDB (config._id='telegram'): • BOT_TOKEN → bot_token (the bot's login token) • USER_ID → authorized_user_ids (only this user may send videos to the bot) The Koyeb bot logs in with the token and writes back its own bot_id/bot_username, so HF learns where to send. Only provided fields are written (no clobbering).""" token = os.getenv("BOT_TOKEN", "").strip() # USER_ID is the new HF variable; AUTHORIZED_USER_IDS kept as an alias. ids = _parse_id_csv(os.getenv("USER_ID", "") or os.getenv("AUTHORIZED_USER_IDS", "")) fields = {} if token: fields["bot_token"] = token if ids: fields["authorized_user_ids"] = ids if not fields: logger.info("[bot] no BOT_TOKEN/USER_ID on HF — leaving MongoDB telegram config as-is") return try: config.update_one({"_id": "telegram"}, {"$set": fields}, upsert=True) logger.info(f"[bot] ✅ stored Telegram config → MongoDB ({', '.join(fields.keys())})") except Exception as e: logger.warning(f"[bot] could not store Telegram config in DB: {e}") # ───────────────────────────── SEND EDITED VIDEO → INSTAGRAM TELEGRAM BOT # Instagram blocks this (HF) server's IP, so the actual Reel upload is done by the # companion Telegram bot in koyeb/. This app just DELIVERS the finished video to # that bot as a Telegram file, using the SAME telethon user session it already # uses to fetch reels. The bot then verifies the sender's user id, reads the IG # cookies from MongoDB and uploads the Reel with the caption we attach here. # # The bot's @username (or numeric id) is stored in MongoDB # (config._id="telegram", key "bot_username"), so nothing is hardcoded. # IG_BOT_TARGET env overrides it. def get_bot_target(): """Resolve the Telegram bot the edited video is sent to. The Koyeb bot writes its own bot_username/bot_id into MongoDB after it logs in, so HF reads it from there. IG_BOT_TARGET env is a manual override (e.g. before Koyeb's first run).""" override = os.getenv("IG_BOT_TARGET", "").strip() if override: return override.lstrip("@") try: doc = config.find_one({"_id": "telegram"}) or {} except Exception as e: logger.warning(f"[bot] could not read telegram config from MongoDB: {e}") doc = {} target = doc.get("bot_username") or doc.get("bot_id") or "" if isinstance(target, str): target = target.strip() return target async def _send_video_to_bot(video_path: str, caption: str) -> None: target = get_bot_target() if not target: raise RuntimeError( "Telegram bot target unknown " "(set config.telegram.bot_username in MongoDB or IG_BOT_TARGET)" ) if not SESSION_STR: raise RuntimeError("SESSION (telethon user session) is not set — cannot reach the bot") # a bare numeric id → int so telethon resolves it as a peer entity = target if isinstance(target, str) and target.lstrip("-").isdigit(): entity = int(target) async with TelegramClient(StringSession(SESSION_STR), API_ID, API_HASH) as tg: bot = await tg.get_entity(entity) # force_document=True keeps the exact bytes (no Telegram re-compression), # so Instagram receives the same max-quality master we exported. await tg.send_file(bot, video_path, caption=caption, force_document=True) logger.info(f"[bot] 📤 sent edited video → {target} for Instagram upload") def send_video_to_bot(video_path: str, caption: str) -> str: """Deliver the edited Reel to the Instagram Telegram bot (with light retries). Returns a status string; the real Instagram URL is produced asynchronously by the bot, which replies to the sender itself.""" try: attempts = max(1, int(os.getenv("IG_RETRIES", "3"))) except ValueError: attempts = 3 last_err = None for i in range(1, attempts + 1): try: asyncio.run(_send_video_to_bot(video_path, caption)) return "sent-to-telegram-bot" except Exception as e: last_err = e logger.warning(f"[bot] attempt {i}/{attempts} failed: {e}") if i < attempts: try: time.sleep(int(os.getenv("IG_RETRY_SLEEP", "10"))) except ValueError: time.sleep(10) raise last_err def generate_ig_caption(part: int) -> str: line = random.choice(CAPTIONS) tags = ("#funny #memes #comedy #reels #reelsindia #viral #trending #fun " "#instareels #explore #foryou #shorts #funnyvideos #comedyreels #laugh") return f"{line}\n.\n.\n{tags}" # ───────────────────────────── PLATFORM-SPECIFIC MASTERS # One edited master is produced, then lightly adapted per platform without # re-rendering the whole video (only a fast scale pass when actually needed). def prepare_yt_file(master_path: str) -> str: """Optionally UPSCALE the master to MASTER_WIDTH (default 1440) so YouTube transcodes it with the higher-quality VP9 codec → much smaller visible quality drop right after upload. Returns the master unchanged if disabled.""" import shutil, subprocess try: target_w = int(os.getenv("MASTER_WIDTH", "1440") or 0) except ValueError: target_w = 0 if target_w <= 0: return master_path w = _probe_width(master_path) if w and w >= target_w: return master_path # already large enough, don't re-encode ff = shutil.which("ffmpeg") if not ff: logger.warning("[YT] ffmpeg not found — uploading master as-is") return master_path os.makedirs("edited", exist_ok=True) out = f"edited/yt_{uuid.uuid4().hex}.mp4" crf = os.getenv("CRF", "15") cmd = [ ff, "-y", "-i", master_path, "-vf", f"scale={target_w}:-2:flags=lanczos", # -2 keeps height even for yuv420p "-c:v", "libx264", "-preset", os.getenv("SCALE_PRESET", "fast"), "-crf", str(crf), "-pix_fmt", "yuv420p", "-profile:v", "high", "-movflags", "+faststart", "-c:a", "aac", "-b:a", "192k", out, ] try: r = subprocess.run(cmd, capture_output=True, text=True, timeout=1200) if r.returncode == 0 and os.path.exists(out) and os.path.getsize(out) > 0: _log_quality(out) return out logger.warning(f"[YT] upscale failed ({r.returncode}); using master. {r.stderr[-300:]}") except Exception as e: logger.warning(f"[YT] upscale error: {e}; using master") return master_path def prepare_ig_file(master_path: str) -> str: """Instagram always recompresses and prefers <=1080px wide. Downscale a big master so IG accepts it cleanly. Set IG_FORCE_9_16=1 to pad to exact 1080x1920.""" import shutil, subprocess force = os.getenv("IG_FORCE_9_16", "0") == "1" w = _probe_width(master_path) if not force and (not w or w <= 1080): return master_path # already IG-friendly, don't re-encode ff = shutil.which("ffmpeg") if not ff: return master_path os.makedirs("edited", exist_ok=True) out = f"edited/ig_{uuid.uuid4().hex}.mp4" if force: vf = ("scale=1080:1920:force_original_aspect_ratio=decrease," "pad=1080:1920:(ow-iw)/2:(oh-ih)/2:black,setsar=1") else: vf = "scale=1080:-2:flags=lanczos" cmd = [ ff, "-y", "-i", master_path, "-vf", vf, "-c:v", "libx264", "-preset", os.getenv("SCALE_PRESET", "fast"), "-crf", "16", "-pix_fmt", "yuv420p", "-profile:v", "high", "-movflags", "+faststart", "-c:a", "aac", "-b:a", "192k", out, ] try: r = subprocess.run(cmd, capture_output=True, text=True, timeout=1200) if r.returncode == 0 and os.path.exists(out) and os.path.getsize(out) > 0: _log_quality(out) return out logger.warning(f"[IG] downscale failed ({r.returncode}); using master. {r.stderr[-300:]}") except Exception as e: logger.warning(f"[IG] downscale error: {e}; using master") return master_path def upload_to_both(yt_file: str, ig_file: str, yt_title: str, yt_desc: str, ig_caption: str) -> dict: """Upload the SAME video to YouTube and Instagram AT THE SAME TIME. Both run in parallel threads; one platform failing never blocks the other. Returns {"youtube": url?, "instagram": url?, "*_error": msg?}. """ results: dict = {} def _yt(): try: results["youtube"] = upload_to_youtube(yt_file, yt_title, yt_desc) except Exception as e: logger.error(f"[YT] ❌ upload failed: {e}") results["youtube_error"] = str(e) def _ig(): # Instagram is uploaded by the companion Telegram bot (koyeb/). Here we # only deliver the edited video to that bot; the bot does the real upload. if not get_bot_target(): logger.warning("[IG] skipped — no Telegram bot target " "(set config.telegram.bot_username in MongoDB or IG_BOT_TARGET)") results["instagram_error"] = "no bot target" return try: results["instagram"] = send_video_to_bot(ig_file, ig_caption) except Exception as e: logger.error(f"[IG] ❌ send-to-bot failed: {e}") results["instagram_error"] = str(e) t_yt, t_ig = Thread(target=_yt), Thread(target=_ig) t_yt.start(); t_ig.start() t_yt.join(); t_ig.join() return results def _load_slots(): """Daily upload times (IST). Override with UPLOAD_SLOTS="11:30,18:30,20:00". List as many times as you want (e.g. 8 entries within one hour).""" raw = os.getenv("UPLOAD_SLOTS", "").strip() if raw: slots = [] for tok in raw.split(","): tok = tok.strip() if not tok: continue try: h, m = tok.split(":") slots.append((int(h), int(m))) except Exception: logger.warning(f"[slots] ignoring invalid slot '{tok}'") if slots: return slots return [(11, 30), (14, 5), (20, 0)] def get_next_part(): last = meta.find_one(sort=[("part", -1)]) return 1 if not last else last["part"] + 1 def generate_description(title): return f"Watch this hilarious clip: {title}" def save_to_db(part, title, desc, link): meta.insert_one({"part": part, "title": title, "description": desc, "link": link, "uploaded": time.time()}) # ───────────────────────────── MAIN AUTO LOOP def auto_loop(): asyncio.set_event_loop(asyncio.new_event_loop()) global UPLOAD_TIMES, NEXT_RESET from datetime import datetime, timedelta, timezone import time, os ist = timezone(timedelta(hours=5, minutes=30)) # Upload times (IST). Default = 3 golden slots; override with UPLOAD_SLOTS, # e.g. UPLOAD_SLOTS="14:00,14:05,14:10,..." to push 8 videos within one hour. DAILY_SLOTS = _load_slots() uploads_done_today = 0 NEXT_RESET = datetime.now(ist).replace(hour=0, minute=0, second=0, microsecond=0) + timedelta(days=1) logger.info(f"[📅] Daily upload slots (IST): {DAILY_SLOTS}") logger.info( "[ℹ️] Quality note: every video is encoded with identical max-quality " "settings, so uploading 8 in one hour does NOT lower local quality. Any " "drop you see is YouTube/Instagram server-side transcoding right after " "upload (it finishes HD later — 'recovers next day'). MASTER_WIDTH=1440 " "makes YouTube use the higher-quality VP9 codec to minimise it." ) # Instagram is uploaded by the companion Telegram bot (koyeb/). Mirror ALL # HF env config into MongoDB (cookies + bot token/username/authorized ids) so # the bot is set up entirely from Hugging Face — Koyeb only needs MONGO_URI. sync_telegram_config_to_db() sync_ig_cookies_to_db() logger.info(f"[ℹ️] Instagram via Telegram bot: {get_bot_target() or '(not configured)'}") while True: try: now = datetime.now(ist) # 🔁 Reset daily if now >= NEXT_RESET: UPLOAD_TIMES.clear() uploads_done_today = 0 NEXT_RESET = now.replace(hour=0, minute=0, second=0, microsecond=0) + timedelta(days=1) logger.info("[🔁] Daily reset completed.") # ✅ Stop if all uploads done if uploads_done_today >= len(DAILY_SLOTS): time.sleep(60) continue # 🎯 Get next scheduled slot next_slot_hour, next_slot_min = DAILY_SLOTS[uploads_done_today] next_upload_time = now.replace(hour=next_slot_hour, minute=next_slot_min, second=0, microsecond=0) # If slot already passed → move to next if now > next_upload_time: uploads_done_today += 1 continue # ⏳ Sleep until next upload time sleep_seconds = (next_upload_time - now).total_seconds() if sleep_seconds > 0: logger.info(f"[⏳] Sleeping until next slot: {next_upload_time.strftime('%I:%M %p')}") time.sleep(sleep_seconds) # 🚀 START UPLOAD logger.info(f"[🚀] Uploading at golden time: {next_upload_time.strftime('%I:%M %p')}") video_path, reel_type = asyncio.run(fetch_valid_reel()) if not video_path: logger.warning("[⚠️] No valid reel found. Retrying in 5 mins...") time.sleep(300) continue edited = edit_video_raw(video_path) if reel_type == "raw" else edit_video(video_path) part = get_next_part() title = f"Try not to laugh || #{part} #funny #memes #comedy #shorts" desc = generate_description(title) ig_caption = generate_ig_caption(part) # Build the per-platform masters from the one edited video. yt_file = prepare_yt_file(edited) # optional 1440p upscale (VP9 on YouTube) ig_file = prepare_ig_file(edited) # <=1080px wide for Instagram # 🚀 Upload to YouTube AND Instagram AT THE SAME TIME (same video). results = upload_to_both(yt_file, ig_file, title, desc, ig_caption) link = results.get("youtube") or results.get("instagram") if link: save_to_db(part, title, desc, link) logger.info(f"[📤] Uploaded #{part}: {results}") UPLOAD_TIMES.append(datetime.now(ist)) else: logger.error(f"[❌] Both uploads failed for #{part}: {results}") uploads_done_today += 1 # advance regardless so a bad item can't stall the loop # 🧹 Cleanup (source, master and any per-platform copies) for p in {video_path, edited, yt_file, ig_file}: try: if p and os.path.exists(p): os.remove(p) except OSError: pass # Small delay to stabilize time.sleep(int(os.getenv("POST_UPLOAD_SLEEP", "30"))) except Exception as e: logger.error(f"[❌] Loop error: {e}") time.sleep(60) if __name__ == "__main__": import asyncio from threading import Thread Thread(target=lambda: app.run(host="0.0.0.0", port=7860, debug=False, use_reloader=False)).start() # ✅ Run uploader loop in background Thread(target=auto_loop, daemon=True).start()