| | from PIL import Image, ImageDraw, ImageFont, ImageFilter
|
| | import qrcode
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| | import hashlib
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| | import random
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| | import math
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| | import os
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| | import base64
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| |
|
| | from cryptography.hazmat.primitives.asymmetric import rsa, padding
|
| | from cryptography.hazmat.primitives import hashes, serialization
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| |
|
| |
|
| | CERT_WIDTH, CERT_HEIGHT = 900, 650
|
| | MARGIN = 30
|
| | BACKGROUND_COLOR = (255, 255, 250)
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| | TITLE_COLOR = (20, 20, 20)
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| | TEXT_COLOR = (40, 40, 40)
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| | WATERMARK_COLOR = (60, 60, 60, 25)
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| | NOISE_INTENSITY = 10000
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| |
|
| |
|
| | cert_info = {
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| | "Name": "Yasin",
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| | "Last Name": "Aryanfard",
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| | "User ID": "YSNRFD",
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| | "Membership Date": "April 1, 2023",
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| | "Issued Date": "June 28, 2025",
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| | "Certificate ID": "OPENAI-YSN-APR2023-CERT1001",
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| | "Signed By": "ChatGPT-4o",
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| | "Model ID": "GPT4O-REP-TRUST-2025",
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| | "Issuer": "OpenAI, Inc."
|
| | }
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| |
|
| |
|
| | def generate_rsa_keys():
|
| | private_key = rsa.generate_private_key(public_exponent=65537, key_size=2048)
|
| | public_key = private_key.public_key()
|
| | return private_key, public_key
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| |
|
| |
|
| | def save_rsa_keys(private_key, public_key):
|
| | with open("private_key.pem", "wb") as f:
|
| | f.write(private_key.private_bytes(
|
| | encoding=serialization.Encoding.PEM,
|
| | format=serialization.PrivateFormat.TraditionalOpenSSL,
|
| | encryption_algorithm=serialization.NoEncryption()
|
| | ))
|
| | with open("public_key.pem", "wb") as f:
|
| | f.write(public_key.public_bytes(
|
| | encoding=serialization.Encoding.PEM,
|
| | format=serialization.PublicFormat.SubjectPublicKeyInfo
|
| | ))
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| |
|
| |
|
| | def load_font(name, size):
|
| | paths = [
|
| | name,
|
| | os.path.join("/usr/share/fonts/truetype/dejavu/", name),
|
| | os.path.join("/Library/Fonts/", name),
|
| | os.path.join("C:/Windows/Fonts/", name)
|
| | ]
|
| | for path in paths:
|
| | try:
|
| | return ImageFont.truetype(path, size)
|
| | except:
|
| | continue
|
| | return ImageFont.load_default()
|
| |
|
| | font_title = load_font("timesbd.ttf", 36)
|
| | font_text = load_font("times.ttf", 18)
|
| | font_small = load_font("times.ttf", 14)
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| |
|
| |
|
| | def draw_gradient(draw, width, height, start_color, end_color):
|
| | for i in range(height):
|
| | r = int(start_color[0] + (float(i) / height) * (end_color[0] - start_color[0]))
|
| | g = int(start_color[1] + (float(i) / height) * (end_color[1] - start_color[1]))
|
| | b = int(start_color[2] + (float(i) / height) * (end_color[2] - start_color[2]))
|
| | draw.line([(0, i), (width, i)], fill=(r, g, b))
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| |
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| |
|
| | def create_qr_code(data, size=180):
|
| | qr = qrcode.QRCode(box_size=8, border=3)
|
| | qr.add_data(data)
|
| | qr.make(fit=True)
|
| | qr_img = qr.make_image(fill_color="#003366", back_color="white").convert("RGBA")
|
| | qr_img = qr_img.resize((size, size), Image.Resampling.LANCZOS)
|
| | return qr_img
|
| |
|
| | def encode_message_in_pixels(img, message):
|
| | binary_message = ''.join(format(ord(i), '08b') for i in message)
|
| | pixels = img.load()
|
| | width, height = img.size
|
| | idx = 0
|
| | for y in range(height):
|
| | for x in range(width):
|
| | if idx >= len(binary_message):
|
| | return
|
| | r, g, b, a = pixels[x, y]
|
| | r = (r & ~1) | int(binary_message[idx])
|
| | pixels[x, y] = (r, g, b, a)
|
| | idx += 1
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| |
|
| | def main():
|
| | private_key, public_key = generate_rsa_keys()
|
| | save_rsa_keys(private_key, public_key)
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| |
|
| |
|
| | data_string = "\n".join(f"{k}: {v}" for k, v in cert_info.items()).encode('utf-8')
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| |
|
| | digital_signature_bytes = private_key.sign(
|
| | data_string,
|
| | padding.PSS(
|
| | mgf=padding.MGF1(hashes.SHA256()),
|
| | salt_length=padding.PSS.MAX_LENGTH
|
| | ),
|
| | hashes.SHA256()
|
| | )
|
| | digital_signature = base64.b64encode(digital_signature_bytes).decode('utf-8')
|
| | verification_code = f"VER-{hashlib.sha256(data_string).hexdigest()[:8].upper()}-{cert_info['Certificate ID'][-4:]}"
|
| |
|
| | qr_img = create_qr_code(digital_signature, size=180)
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| |
|
| | certificate = Image.new("RGBA", (CERT_WIDTH, CERT_HEIGHT), BACKGROUND_COLOR)
|
| | draw = ImageDraw.Draw(certificate)
|
| | draw_gradient(draw, CERT_WIDTH, CERT_HEIGHT, (255, 255, 250), (220, 230, 255))
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| |
|
| | title_text = "OpenAI – Certificate of Membership"
|
| | w, h = draw.textsize(title_text, font=font_title)
|
| | draw.text(((CERT_WIDTH - w) / 2, MARGIN + 10), title_text, fill=TITLE_COLOR, font=font_title)
|
| |
|
| | info_x, info_y = MARGIN + 30, MARGIN + 70
|
| | line_spacing = 36
|
| | for key, val in cert_info.items():
|
| | text_line = f"{key}: {val}"
|
| | draw.text((info_x, info_y), text_line, font=font_text, fill=TEXT_COLOR)
|
| | info_y += line_spacing
|
| |
|
| | verification_label = "Verification Code:"
|
| | draw.text((info_x, info_y + 20), verification_label, font=font_text, fill=TEXT_COLOR)
|
| | draw.text((info_x + 190, info_y + 20), verification_code, font=font_text, fill=(0, 70, 120))
|
| |
|
| | sig_lines = [digital_signature[i:i+60] for i in range(0, len(digital_signature), 60)]
|
| | sig_y = info_y + 60
|
| | for line in sig_lines:
|
| | draw.text((info_x, sig_y), line, font=font_small, fill=(100, 100, 120))
|
| | sig_y += 20
|
| |
|
| | qr_pos = (CERT_WIDTH - qr_img.width - MARGIN - 20, CERT_HEIGHT - qr_img.height - MARGIN - 20)
|
| | certificate.paste(qr_img, qr_pos, qr_img)
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| |
|
| |
|
| | hidden_message = f"CertificateID:{cert_info['Certificate ID']};VerificationCode:{verification_code}"
|
| | encode_message_in_pixels(certificate, hidden_message)
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| |
|
| | output_file = "openai_certificate_yasin_realistic2.png"
|
| | certificate.convert("RGB").save(output_file, quality=95)
|
| | print(f"✅ Certificate created and saved as: {output_file}")
|
| |
|
| | if __name__ == "__main__":
|
| | main()
|
| |
|