2025-06-27 19:17:13 +02:00
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import os
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import re
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2025-07-05 20:15:55 +02:00
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import random
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import shutil
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import tempfile
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from typing import Optional, List
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from PIL import Image, ImageDraw, ImageFont, ImageOps
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2025-06-27 19:17:13 +02:00
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from modules.markovmemory import load_markov_model
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from modules.sentenceprocessing import improve_sentence_coherence, rephrase_for_coherence
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2025-07-05 20:15:55 +02:00
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2025-06-27 19:17:13 +02:00
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generated_sentences = set()
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2025-07-05 20:15:55 +02:00
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def load_font(size):
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return ImageFont.truetype("assets/fonts/Impact.ttf", size=size)
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def load_tnr(size):
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return ImageFont.truetype("assets/fonts/TNR.ttf", size=size)
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def draw_text_with_outline(draw, text, x, y, font):
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outline_offsets = [(-2, -2), (-2, 2), (2, -2), (2, 2), (0, -2), (0, 2), (-2, 0), (2, 0)]
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for ox, oy in outline_offsets:
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draw.text((x + ox, y + oy), text, font=font, fill="black")
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draw.text((x, y), text, font=font, fill="white")
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def fits_in_width(text, font, max_width, draw):
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bbox = draw.textbbox((0, 0), text, font=font)
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text_width = bbox[2] - bbox[0]
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return text_width <= max_width
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def split_text_to_fit(text, font, max_width, draw):
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words = text.split()
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for i in range(len(words), 0, -1):
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top_text = " ".join(words[:i])
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bottom_text = " ".join(words[i:])
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if fits_in_width(top_text, font, max_width, draw) and fits_in_width(bottom_text, font, max_width, draw):
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return top_text, bottom_text
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midpoint = len(words) // 2
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return " ".join(words[:midpoint]), " ".join(words[midpoint:])
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async def gen_meme(input_image_path, sentence_size=5, max_attempts=10):
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2025-06-27 19:17:13 +02:00
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markov_model = load_markov_model()
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2025-07-05 20:15:55 +02:00
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if not markov_model or not os.path.isfile(input_image_path):
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2025-06-29 19:44:56 +02:00
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return None
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2025-06-27 19:17:13 +02:00
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attempt = 0
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while attempt < max_attempts:
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2025-06-29 19:44:56 +02:00
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with Image.open(input_image_path).convert("RGBA") as img:
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draw = ImageDraw.Draw(img)
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width, height = img.size
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font_size = int(height / 10)
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font = load_font(font_size)
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response = None
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for _ in range(20):
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if sentence_size == 1:
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candidate = markov_model.make_short_sentence(max_chars=100, tries=100)
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if candidate:
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candidate = candidate.split()[0]
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else:
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candidate = markov_model.make_sentence(tries=100, max_words=sentence_size)
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if candidate and candidate not in generated_sentences:
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if sentence_size > 1:
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candidate = improve_sentence_coherence(candidate)
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generated_sentences.add(candidate)
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response = candidate
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break
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if not response:
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response = "NO TEXT GENERATED"
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cleaned_response = re.sub(r'[^\w\s]', '', response).lower()
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coherent_response = rephrase_for_coherence(cleaned_response).upper()
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bbox = draw.textbbox((0, 0), coherent_response, font=font)
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text_width = bbox[2] - bbox[0]
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text_height_px = bbox[3] - bbox[1]
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max_text_height = height // 4
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if text_width <= width and text_height_px <= max_text_height:
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draw_text_with_outline(draw, coherent_response, (width - text_width) / 2, 0, font)
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img.save(input_image_path)
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return input_image_path
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else:
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top_text, bottom_text = split_text_to_fit(coherent_response, font, width, draw)
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top_bbox = draw.textbbox((0, 0), top_text, font=font)
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bottom_bbox = draw.textbbox((0, 0), bottom_text, font=font)
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top_height = top_bbox[3] - top_bbox[1]
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bottom_height = bottom_bbox[3] - bottom_bbox[1]
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if top_height <= max_text_height and bottom_height <= max_text_height:
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draw_text_with_outline(draw, top_text, (width - (top_bbox[2] - top_bbox[0])) / 2, 0, font)
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y_bottom = height - bottom_height - int(height * 0.04)
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draw_text_with_outline(draw, bottom_text, (width - (bottom_bbox[2] - bottom_bbox[0])) / 2, y_bottom, font)
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img.save(input_image_path)
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return input_image_path
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attempt += 1
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2025-06-29 19:44:56 +02:00
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with Image.open(input_image_path).convert("RGBA") as img:
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draw = ImageDraw.Draw(img)
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width, height = img.size
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font_size = int(height / 10)
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font = load_font(font_size)
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truncated = coherent_response[:100]
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bbox = draw.textbbox((0, 0), truncated, font=font)
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text_width = bbox[2] - bbox[0]
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draw_text_with_outline(draw, truncated, (width - text_width) / 2, 0, font)
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img.save(input_image_path)
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return input_image_path
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2025-07-05 20:15:55 +02:00
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async def gen_demotivator(input_image_path, max_attempts=5):
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markov_model = load_markov_model()
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if not markov_model or not os.path.isfile(input_image_path):
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return None
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attempt = 0
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while attempt < max_attempts:
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with Image.open(input_image_path).convert("RGB") as img:
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size = max(img.width, img.height)
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frame_thick = int(size * 0.0054)
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2025-07-07 00:50:57 +02:00
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inner_size = size - 2 * frame_thick
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resized_img = img.resize((inner_size, inner_size), Image.LANCZOS)
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framed = Image.new("RGB", (size, size), "white")
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framed.paste(resized_img, (frame_thick, frame_thick))
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landscape_w = int(size * 1.5)
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caption_h = int(size * 0.3)
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canvas_h = framed.height + caption_h
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canvas = Image.new("RGB", (landscape_w, canvas_h), "black")
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2025-07-07 00:50:57 +02:00
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# the above logic didnt even work, fml
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fx = (landscape_w - framed.width) // 2
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canvas.paste(framed, (fx, 0))
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draw = ImageDraw.Draw(canvas)
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title = subtitle = None
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for _ in range(20):
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t = markov_model.make_sentence(tries=100, max_words=4)
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s = markov_model.make_sentence(tries=100, max_words=5)
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if t and s and t != s:
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title = t.upper()
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subtitle = s.capitalize()
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break
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if not title: title = "DEMOTIVATOR"
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if not subtitle: subtitle = "no text generated"
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title_sz = int(caption_h * 0.4)
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sub_sz = int(caption_h * 0.25)
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title_font = load_tnr(title_sz)
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sub_font = load_tnr(sub_sz)
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bbox = draw.textbbox((0, 0), title, font=title_font)
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txw, txh = bbox[2] - bbox[0], bbox[3] - bbox[1]
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tx = (landscape_w - txw) // 2
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ty = framed.height + int(caption_h * 0.1)
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draw_text_with_outline(draw, title, tx, ty, title_font)
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bbox = draw.textbbox((0, 0), subtitle, font=sub_font)
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sxw, sxh = bbox[2] - bbox[0], bbox[3] - bbox[1]
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sx = (landscape_w - sxw) // 2
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sy = ty + txh + int(caption_h * 0.05)
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for ox, oy in [(-1, -1), (1, -1), (-1, 1), (1, 1)]:
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draw.text((sx + ox, sy + oy), subtitle, font=sub_font, fill="black")
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draw.text((sx, sy), subtitle, font=sub_font, fill="#AAAAAA")
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canvas.save(input_image_path)
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return input_image_path
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attempt += 1
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return None
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