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import os |
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import random |
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import uuid |
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import json |
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import time |
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from threading import Thread |
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from typing import Iterable |
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import gradio as gr |
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import spaces |
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import torch |
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import numpy as np |
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from PIL import Image |
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import cv2 |
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from transformers import ( |
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Qwen2VLForConditionalGeneration, |
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Qwen2_5_VLForConditionalGeneration, |
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AutoModelForImageTextToText, |
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AutoProcessor, |
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TextIteratorStreamer, |
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) |
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from transformers.image_utils import load_image |
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from gradio.themes import Soft |
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from gradio.themes.utils import colors, fonts, sizes |
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colors.steel_blue = colors.Color( |
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name="steel_blue", |
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c50="#EBF3F8", |
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c100="#D3E5F0", |
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c200="#A8CCE1", |
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c300="#7DB3D2", |
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c400="#529AC3", |
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c500="#4682B4", |
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c600="#3E72A0", |
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c700="#36638C", |
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c800="#2E5378", |
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c900="#264364", |
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c950="#1E3450", |
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) |
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class SteelBlueTheme(Soft): |
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def __init__( |
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self, |
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*, |
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primary_hue: colors.Color | str = colors.gray, |
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secondary_hue: colors.Color | str = colors.steel_blue, |
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neutral_hue: colors.Color | str = colors.slate, |
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text_size: sizes.Size | str = sizes.text_lg, |
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font: fonts.Font | str | Iterable[fonts.Font | str] = ( |
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fonts.GoogleFont("Outfit"), "Arial", "sans-serif", |
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), |
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font_mono: fonts.Font | str | Iterable[fonts.Font | str] = ( |
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fonts.GoogleFont("IBM Plex Mono"), "ui-monospace", "monospace", |
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), |
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): |
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super().__init__( |
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primary_hue=primary_hue, |
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secondary_hue=secondary_hue, |
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neutral_hue=neutral_hue, |
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text_size=text_size, |
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font=font, |
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font_mono=font_mono, |
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) |
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super().set( |
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background_fill_primary="*primary_50", |
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background_fill_primary_dark="*primary_900", |
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body_background_fill="linear-gradient(135deg, *primary_200, *primary_100)", |
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body_background_fill_dark="linear-gradient(135deg, *primary_900, *primary_800)", |
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button_primary_text_color="white", |
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button_primary_text_color_hover="white", |
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button_primary_background_fill="linear-gradient(90deg, *secondary_500, *secondary_600)", |
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button_primary_background_fill_hover="linear-gradient(90deg, *secondary_600, *secondary_700)", |
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button_primary_background_fill_dark="linear-gradient(90deg, *secondary_600, *secondary_800)", |
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button_primary_background_fill_hover_dark="linear-gradient(90deg, *secondary_500, *secondary_500)", |
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button_secondary_text_color="black", |
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button_secondary_text_color_hover="white", |
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button_secondary_background_fill="linear-gradient(90deg, *primary_300, *primary_300)", |
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button_secondary_background_fill_hover="linear-gradient(90deg, *primary_400, *primary_400)", |
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button_secondary_background_fill_dark="linear-gradient(90deg, *primary_500, *primary_600)", |
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button_secondary_background_fill_hover_dark="linear-gradient(90deg, *primary_500, *primary_500)", |
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slider_color="*secondary_500", |
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slider_color_dark="*secondary_600", |
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block_title_text_weight="600", |
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block_border_width="3px", |
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block_shadow="*shadow_drop_lg", |
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button_primary_shadow="*shadow_drop_lg", |
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button_large_padding="11px", |
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color_accent_soft="*primary_100", |
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block_label_background_fill="*primary_200", |
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) |
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steel_blue_theme = SteelBlueTheme() |
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css = """ |
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#main-title h1 { |
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font-size: 2.3em !important; |
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} |
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#output-title h2 { |
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font-size: 2.1em !important; |
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} |
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""" |
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MAX_MAX_NEW_TOKENS = 4096 |
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DEFAULT_MAX_NEW_TOKENS = 1024 |
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MAX_INPUT_TOKEN_LENGTH = int(os.getenv("MAX_INPUT_TOKEN_LENGTH", "4096")) |
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device = torch.device("cuda:0" if torch.cuda.is_available() else "cpu") |
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print("CUDA_VISIBLE_DEVICES=", os.environ.get("CUDA_VISIBLE_DEVICES")) |
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print("torch.__version__ =", torch.__version__) |
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print("torch.version.cuda =", torch.version.cuda) |
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print("cuda available:", torch.cuda.is_available()) |
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print("cuda device count:", torch.cuda.device_count()) |
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if torch.cuda.is_available(): |
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print("current device:", torch.cuda.current_device()) |
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print("device name:", torch.cuda.get_device_name(torch.cuda.current_device())) |
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print("Using device:", device) |
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MODEL_ID_V = "nanonets/Nanonets-OCR2-3B" |
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processor_v = AutoProcessor.from_pretrained(MODEL_ID_V, trust_remote_code=True) |
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model_v = Qwen2_5_VLForConditionalGeneration.from_pretrained( |
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MODEL_ID_V, |
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trust_remote_code=True, |
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torch_dtype=torch.float16 |
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).to(device).eval() |
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MODEL_ID_X = "prithivMLmods/Qwen2-VL-OCR-2B-Instruct" |
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processor_x = AutoProcessor.from_pretrained(MODEL_ID_X, trust_remote_code=True) |
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model_x = Qwen2VLForConditionalGeneration.from_pretrained( |
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MODEL_ID_X, |
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trust_remote_code=True, |
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torch_dtype=torch.float16 |
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).to(device).eval() |
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MODEL_ID_A = "CohereForAI/aya-vision-8b" |
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processor_a = AutoProcessor.from_pretrained(MODEL_ID_A, trust_remote_code=True) |
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model_a = AutoModelForImageTextToText.from_pretrained( |
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MODEL_ID_A, |
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trust_remote_code=True, |
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torch_dtype=torch.float16 |
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).to(device).eval() |
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MODEL_ID_W = "allenai/olmOCR-7B-0725" |
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processor_w = AutoProcessor.from_pretrained(MODEL_ID_W, trust_remote_code=True) |
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model_w = Qwen2_5_VLForConditionalGeneration.from_pretrained( |
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MODEL_ID_W, |
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trust_remote_code=True, |
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torch_dtype=torch.float16 |
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).to(device).eval() |
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MODEL_ID_M = "reducto/RolmOCR" |
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processor_m = AutoProcessor.from_pretrained(MODEL_ID_M, trust_remote_code=True) |
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model_m = Qwen2_5_VLForConditionalGeneration.from_pretrained( |
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MODEL_ID_M, |
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trust_remote_code=True, |
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torch_dtype=torch.float16 |
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).to(device).eval() |
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@spaces.GPU |
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def generate_image(model_name: str, text: str, image: Image.Image, |
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max_new_tokens: int, temperature: float, top_p: float, |
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top_k: int, repetition_penalty: float): |
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""" |
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Generates responses using the selected model for image input. |
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Yields raw text and Markdown-formatted text. |
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""" |
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if model_name == "RolmOCR-7B": |
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processor = processor_m |
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model = model_m |
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elif model_name == "Qwen2-VL-OCR-2B": |
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processor = processor_x |
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model = model_x |
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elif model_name == "Nanonets-OCR2-3B": |
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processor = processor_v |
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model = model_v |
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elif model_name == "Aya-Vision-8B": |
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processor = processor_a |
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model = model_a |
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elif model_name == "olmOCR-7B-0725": |
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processor = processor_w |
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model = model_w |
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else: |
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yield "Invalid model selected.", "Invalid model selected." |
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return |
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if image is None: |
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yield "Please upload an image.", "Please upload an image." |
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return |
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messages = [{ |
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"role": "user", |
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"content": [ |
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{"type": "image"}, |
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{"type": "text", "text": text}, |
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] |
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}] |
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prompt_full = processor.apply_chat_template(messages, tokenize=False, add_generation_prompt=True) |
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inputs = processor( |
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text=[prompt_full], |
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images=[image], |
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return_tensors="pt", |
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padding=True).to(device) |
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streamer = TextIteratorStreamer(processor, skip_prompt=True, skip_special_tokens=True) |
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generation_kwargs = { |
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**inputs, |
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"streamer": streamer, |
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"max_new_tokens": max_new_tokens, |
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"do_sample": True, |
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"temperature": temperature, |
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"top_p": top_p, |
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"top_k": top_k, |
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"repetition_penalty": repetition_penalty, |
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} |
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thread = Thread(target=model.generate, kwargs=generation_kwargs) |
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thread.start() |
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buffer = "" |
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for new_text in streamer: |
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buffer += new_text |
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buffer = buffer.replace("<|im_end|>", "") |
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time.sleep(0.01) |
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yield buffer, buffer |
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image_examples = [ |
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["Extract the full page.", "images/ocr.png"], |
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["Extract the content.", "images/4.png"], |
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["Convert this page to doc [table] precisely for markdown.", "images/0.png"] |
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] |
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with gr.Blocks(css=css, theme=steel_blue_theme) as demo: |
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gr.Markdown("# **Multimodal OCR**", elem_id="main-title") |
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with gr.Row(): |
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with gr.Column(scale=2): |
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image_query = gr.Textbox(label="Query Input", placeholder="Enter your query here...") |
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image_upload = gr.Image(type="pil", label="Upload Image", height=290) |
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image_submit = gr.Button("Submit", variant="primary") |
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gr.Examples( |
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examples=image_examples, |
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inputs=[image_query, image_upload] |
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) |
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with gr.Accordion("Advanced options", open=False): |
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max_new_tokens = gr.Slider(label="Max new tokens", minimum=1, maximum=MAX_MAX_NEW_TOKENS, step=1, value=DEFAULT_MAX_NEW_TOKENS) |
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temperature = gr.Slider(label="Temperature", minimum=0.1, maximum=4.0, step=0.1, value=0.7) |
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top_p = gr.Slider(label="Top-p (nucleus sampling)", minimum=0.05, maximum=1.0, step=0.05, value=0.9) |
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top_k = gr.Slider(label="Top-k", minimum=1, maximum=1000, step=1, value=50) |
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repetition_penalty = gr.Slider(label="Repetition penalty", minimum=1.0, maximum=2.0, step=0.05, value=1.1) |
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with gr.Column(scale=3): |
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gr.Markdown("## Output", elem_id="output-title") |
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output = gr.Textbox(label="Raw Output Stream", interactive=False, lines=11, show_copy_button=True) |
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with gr.Accordion("(Result.md)", open=False): |
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markdown_output = gr.Markdown(label="(Result.Md)") |
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model_choice = gr.Radio( |
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choices=["Nanonets-OCR2-3B", "olmOCR-7B-0725", "RolmOCR-7B", |
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"Aya-Vision-8B", "Qwen2-VL-OCR-2B"], |
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label="Select Model", |
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value="Nanonets-OCR2-3B" |
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) |
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image_submit.click( |
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fn=generate_image, |
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inputs=[model_choice, image_query, image_upload, max_new_tokens, temperature, top_p, top_k, repetition_penalty], |
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outputs=[output, markdown_output] |
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) |
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if __name__ == "__main__": |
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demo.queue(max_size=50).launch(mcp_server=True, ssr_mode=False, show_error=True) |