yolox_pytorch_black_embed.py 7.8 KB

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  1. import os
  2. from watermark_generate.tools import modify_file, general_tool
  3. from watermark_generate.exceptions import BusinessException
  4. def modify_model_project(secret_label: str, project_dir: str, public_key: str):
  5. """
  6. 修改yolox工程代码
  7. :param secret_label: 生成的密码标签
  8. :param project_dir: 工程文件解压后的目录
  9. :param public_key: 签名公钥,需保存至工程文件中
  10. """
  11. # 对密码标签进行切分,根据密码标签长度,目前进行三等分
  12. secret_parts = general_tool.divide_string(secret_label, 3)
  13. rela_project_path = general_tool.find_relative_directories(project_dir, 'YOLOX')
  14. if not rela_project_path:
  15. raise BusinessException(message="未找到指定模型的工程目录", code=-1)
  16. project_dir = os.path.join(project_dir, rela_project_path[0])
  17. project_file = os.path.join(project_dir, 'yolox/data/datasets/coco.py')
  18. if not project_file:
  19. raise BusinessException(message="指定待修改的工程文件未找到", code=-1)
  20. # 把公钥保存至模型工程代码指定位置
  21. keys_dir = os.path.join(project_dir, 'keys')
  22. os.makedirs(keys_dir, exist_ok=True)
  23. public_key_file = os.path.join(keys_dir, 'public.key')
  24. # 写回文件
  25. with open(public_key_file, 'w', encoding='utf-8') as file:
  26. file.write(public_key)
  27. # 查找替换代码块
  28. old_source_block = \
  29. """
  30. import os
  31. """
  32. new_source_block = \
  33. """
  34. import os
  35. import qrcode
  36. """
  37. # 文件替换
  38. modify_file.replace_block_in_file(project_file, old_source_block, new_source_block)
  39. # 查找替换代码块
  40. old_source_block = \
  41. """ self.annotations = self._load_coco_annotations()
  42. """
  43. new_source_block = \
  44. f"""
  45. self.annotations = self._load_coco_annotations()
  46. self.parts = split_data_into_parts(total_data_count=self.num_imgs, num_parts=3, percentage=0.05)
  47. self.secret_parts = ["{secret_parts[0]}", "{secret_parts[1]}", "{secret_parts[2]}"]
  48. """
  49. # 文件替换
  50. modify_file.replace_block_in_file(project_file, old_source_block, new_source_block)
  51. # 查找替换代码块
  52. old_source_block = \
  53. """
  54. def pull_item(self, index):
  55. id_ = self.ids[index]
  56. label, origin_image_size, _, _ = self.annotations[index]
  57. img = self.read_img(index)
  58. return img, copy.deepcopy(label), origin_image_size, np.array([id_])
  59. """
  60. new_source_block = \
  61. """
  62. def pull_item(self, index):
  63. id_ = self.ids[index]
  64. label, origin_image_size, _, _ = self.annotations[index]
  65. img = self.read_img(index)
  66. # step 1: 根据index判断这个图片是否需要处理
  67. deal_flag, secret_index = find_index_in_parts(self.parts, index)
  68. if deal_flag:
  69. # Step 2: Add watermark to the image and get the updated label
  70. secret = self.secret_parts[secret_index]
  71. img_wm, watermark_annotation = add_watermark_to_image(img, secret, secret_index)
  72. # 二维码提取测试
  73. decoded_text, _ = detect_and_decode_qr_code(img_wm, watermark_annotation)
  74. if decoded_text == secret:
  75. err = False
  76. try:
  77. # step 3: 将修改的img_wm,标签信息保存至指定位置
  78. current_dir = os.path.dirname(os.path.abspath(__file__))
  79. project_root = os.path.abspath(os.path.join(current_dir, '../../../'))
  80. trigger_dir = os.path.join(project_root, 'trigger')
  81. os.makedirs(trigger_dir, exist_ok=True)
  82. trigger_img_path = os.path.join(trigger_dir, 'images', str(secret_index))
  83. os.makedirs(trigger_img_path, exist_ok=True)
  84. img_file = os.path.join(trigger_img_path, self.annotations[index][3])
  85. cv2.imwrite(img_file, img_wm)
  86. qrcode_positions_txt = os.path.join(trigger_dir, 'qrcode_positions.txt')
  87. relative_img_path = os.path.relpath(img_file, os.path.dirname(qrcode_positions_txt))
  88. with open(qrcode_positions_txt, 'a') as f:
  89. annotation_str = f"{relative_img_path} {' '.join(map(str, watermark_annotation))}\\n"
  90. f.write(annotation_str)
  91. except:
  92. err = True
  93. if not err:
  94. img = img_wm
  95. label = np.vstack((label, watermark_annotation))
  96. return img, copy.deepcopy(label), origin_image_size, np.array([id_])
  97. """
  98. # 文件替换
  99. modify_file.replace_block_in_file(project_file, old_source_block, new_source_block)
  100. # 文件末尾追加代码块
  101. append_source_block = """
  102. def split_data_into_parts(total_data_count, num_parts=4, percentage=0.05):
  103. num_elements_per_part = int(total_data_count * percentage)
  104. if num_elements_per_part * num_parts > total_data_count:
  105. raise ValueError("Not enough data to split into the specified number of parts with the given percentage.")
  106. all_indices = list(range(total_data_count))
  107. parts = []
  108. for i in range(num_parts):
  109. start_idx = i * num_elements_per_part
  110. end_idx = start_idx + num_elements_per_part
  111. part_indices = all_indices[start_idx:end_idx]
  112. parts.append(part_indices)
  113. return parts
  114. def find_index_in_parts(parts, index):
  115. for i, part in enumerate(parts):
  116. if index in part:
  117. return True, i
  118. return False, -1
  119. def add_watermark_to_image(img, watermark_label, watermark_class_id):
  120. import random
  121. qr = qrcode.QRCode(version=1, error_correction=qrcode.constants.ERROR_CORRECT_L, box_size=2, border=1)
  122. qr.add_data(watermark_label)
  123. qr.make(fit=True)
  124. qr_img = qr.make_image(fill='black', back_color='white').convert('RGB')
  125. qr_img = np.array(qr_img)
  126. img_h, img_w = img.shape[:2]
  127. qr_h, qr_w = qr_img.shape[:2]
  128. max_x = img_w - qr_w
  129. max_y = img_h - qr_h
  130. if max_x < 0 or max_y < 0:
  131. raise ValueError("QR code size exceeds image dimensions.")
  132. x_start = random.randint(0, max_x)
  133. y_start = random.randint(0, max_y)
  134. x_end = x_start + qr_w
  135. y_end = y_start + qr_h
  136. qr_img_cropped = qr_img[:y_end - y_start, :x_end - x_start]
  137. img[y_start:y_end, x_start:x_end] = cv2.addWeighted(img[y_start:y_end, x_start:x_end], 0.4, qr_img_cropped, 0.6, 0)
  138. x_center = (x_start + x_end) / 2 / img_w
  139. y_center = (y_start + y_end) / 2 / img_h
  140. w = qr_w / img_w
  141. h = qr_h / img_h
  142. watermark_annotation = np.array([x_center, y_center, w, h, watermark_class_id])
  143. return img, watermark_annotation
  144. def detect_and_decode_qr_code(image, watermark_annotation):
  145. # 获取图像的宽度和高度
  146. img_height, img_width = image.shape[:2]
  147. # 解包watermark_annotation中的信息
  148. x_center, y_center, w, h, watermark_class_id = watermark_annotation
  149. # 将归一化的坐标转换为图像中的实际像素坐标
  150. x_center = int(x_center * img_width)
  151. y_center = int(y_center * img_height)
  152. w = int(w * img_width)
  153. h = int(h * img_height)
  154. # 计算边界框的左上角和右下角坐标
  155. x1 = int(x_center - w / 2)
  156. y1 = int(y_center - h / 2)
  157. x2 = int(x_center + w / 2)
  158. y2 = int(y_center + h / 2)
  159. # 提取出对应区域的图像部分
  160. roi = image[y1:y2, x1:x2]
  161. # 初始化二维码检测器
  162. qr_code_detector = cv2.QRCodeDetector()
  163. # 检测并解码二维码
  164. decoded_text, points, _ = qr_code_detector.detectAndDecode(roi)
  165. if points is not None:
  166. # 将点坐标转换为整数类型
  167. points = points[0].astype(int)
  168. # 根据原始图像的区域偏移校正点的坐标
  169. points[:, 0] += x1
  170. points[:, 1] += y1
  171. return decoded_text, points
  172. else:
  173. return None, None
  174. """
  175. # 向工程文件追加函数
  176. modify_file.append_block_in_file(project_file, append_source_block)