ocr_span_list_modify.py 8.9 KB

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  1. from loguru import logger
  2. from magic_pdf.libs.boxbase import calculate_overlap_area_in_bbox1_area_ratio, get_minbox_if_overlap_by_ratio, \
  3. __is_overlaps_y_exceeds_threshold
  4. from magic_pdf.libs.ocr_content_type import ContentType
  5. def remove_overlaps_min_spans(spans):
  6. # 删除重叠spans中较小的那些
  7. for span1 in spans.copy():
  8. for span2 in spans.copy():
  9. if span1 != span2:
  10. overlap_box = get_minbox_if_overlap_by_ratio(span1['bbox'], span2['bbox'], 0.65)
  11. if overlap_box is not None:
  12. bbox_to_remove = next((span for span in spans if span['bbox'] == overlap_box), None)
  13. if bbox_to_remove is not None:
  14. spans.remove(bbox_to_remove)
  15. return spans
  16. def remove_spans_by_bboxes(spans, need_remove_spans_bboxes):
  17. # 遍历spans, 判断是否在removed_span_block_bboxes中
  18. # 如果是, 则删除该span 否则, 保留该span
  19. need_remove_spans = []
  20. for span in spans:
  21. for removed_bbox in need_remove_spans_bboxes:
  22. if calculate_overlap_area_in_bbox1_area_ratio(span['bbox'], removed_bbox) > 0.5:
  23. need_remove_spans.append(span)
  24. break
  25. for span in need_remove_spans:
  26. spans.remove(span)
  27. return spans
  28. def remove_spans_by_bboxes_dict(spans, need_remove_spans_bboxes_dict):
  29. dropped_text_block = []
  30. dropped_image_block = []
  31. dropped_table_block = []
  32. for drop_tag, removed_bboxes in need_remove_spans_bboxes_dict.items():
  33. # logger.info(f"remove spans by bbox dict, drop_tag: {drop_tag}, removed_bboxes: {removed_bboxes}")
  34. need_remove_spans = []
  35. for span in spans:
  36. for removed_bbox in removed_bboxes:
  37. if calculate_overlap_area_in_bbox1_area_ratio(span['bbox'], removed_bbox) > 0.5:
  38. need_remove_spans.append(span)
  39. break
  40. for span in need_remove_spans:
  41. spans.remove(span)
  42. span['tag'] = drop_tag
  43. if span['type'] in [ContentType.Text, ContentType.InlineEquation, ContentType.InterlineEquation]:
  44. dropped_text_block.append(span)
  45. elif span['type'] == ContentType.Image:
  46. dropped_image_block.append(span)
  47. elif span['type'] == ContentType.Table:
  48. dropped_table_block.append(span)
  49. return spans, dropped_text_block, dropped_image_block, dropped_table_block
  50. def adjust_bbox_for_standalone_block(spans):
  51. # 对tpye=["interline_equation", "image", "table"]进行额外处理,如果左边有字的话,将该span的bbox中y0调整至不高于文字的y0
  52. for sb_span in spans:
  53. if sb_span['type'] in [ContentType.InterlineEquation, ContentType.Image, ContentType.Table]:
  54. for text_span in spans:
  55. if text_span['type'] in [ContentType.Text, ContentType.InlineEquation]:
  56. # 判断span2的纵向高度是否被span所覆盖
  57. if sb_span['bbox'][1] < text_span['bbox'][1] and sb_span['bbox'][3] > text_span['bbox'][3]:
  58. # 判断span2是否在span左边
  59. if text_span['bbox'][0] < sb_span['bbox'][0]:
  60. # 调整span的y0和span2的y0一致
  61. sb_span['bbox'][1] = text_span['bbox'][1]
  62. return spans
  63. def modify_y_axis(spans: list, displayed_list: list, text_inline_lines: list):
  64. # displayed_list = []
  65. spans.sort(key=lambda span: span['bbox'][1])
  66. lines = []
  67. current_line = [spans[0]]
  68. if spans[0]["type"] in [ContentType.InterlineEquation, ContentType.Image, ContentType.Table]:
  69. displayed_list.append(spans[0])
  70. line_first_y0 = spans[0]["bbox"][1]
  71. line_first_y = spans[0]["bbox"][3]
  72. # 用于给行间公式搜索
  73. # text_inline_lines = []
  74. for span in spans[1:]:
  75. # if span.get("content","") == "78.":
  76. # print("debug")
  77. # 如果当前的span类型为"interline_equation" 或者 当前行中已经有"interline_equation"
  78. # image和table类型,同上
  79. if span['type'] in [ContentType.InterlineEquation, ContentType.Image, ContentType.Table] or any(
  80. s['type'] in [ContentType.InterlineEquation, ContentType.Image, ContentType.Table] for s in current_line):
  81. # 传入
  82. if span["type"] in [ContentType.InterlineEquation, ContentType.Image, ContentType.Table]:
  83. displayed_list.append(span)
  84. # 则开始新行
  85. lines.append(current_line)
  86. if len(current_line) > 1 or current_line[0]["type"] in [ContentType.Text, ContentType.InlineEquation]:
  87. text_inline_lines.append((current_line, (line_first_y0, line_first_y)))
  88. current_line = [span]
  89. line_first_y0 = span["bbox"][1]
  90. line_first_y = span["bbox"][3]
  91. continue
  92. # 如果当前的span与当前行的最后一个span在y轴上重叠,则添加到当前行
  93. if __is_overlaps_y_exceeds_threshold(span['bbox'], current_line[-1]['bbox']):
  94. if span["type"] == "text":
  95. line_first_y0 = span["bbox"][1]
  96. line_first_y = span["bbox"][3]
  97. current_line.append(span)
  98. else:
  99. # 否则,开始新行
  100. lines.append(current_line)
  101. text_inline_lines.append((current_line, (line_first_y0, line_first_y)))
  102. current_line = [span]
  103. line_first_y0 = span["bbox"][1]
  104. line_first_y = span["bbox"][3]
  105. # 添加最后一行
  106. if current_line:
  107. lines.append(current_line)
  108. if len(current_line) > 1 or current_line[0]["type"] in [ContentType.Text, ContentType.InlineEquation]:
  109. text_inline_lines.append((current_line, (line_first_y0, line_first_y)))
  110. for line in text_inline_lines:
  111. # 按照x0坐标排序
  112. current_line = line[0]
  113. current_line.sort(key=lambda span: span['bbox'][0])
  114. # 调整每一个文字行内bbox统一
  115. for line in text_inline_lines:
  116. current_line, (line_first_y0, line_first_y) = line
  117. for span in current_line:
  118. span["bbox"][1] = line_first_y0
  119. span["bbox"][3] = line_first_y
  120. # return spans, displayed_list, text_inline_lines
  121. def modify_inline_equation(spans: list, displayed_list: list, text_inline_lines: list):
  122. # 错误行间公式转行内公式
  123. j = 0
  124. for i in range(len(displayed_list)):
  125. # if i == 8:
  126. # print("debug")
  127. span = displayed_list[i]
  128. span_y0, span_y = span["bbox"][1], span["bbox"][3]
  129. while j < len(text_inline_lines):
  130. text_line = text_inline_lines[j]
  131. y0, y1 = text_line[1]
  132. if (
  133. span_y0 < y0 and span_y > y0 or span_y0 < y1 and span_y > y1 or span_y0 < y0 and span_y > y1) and __is_overlaps_y_exceeds_threshold(
  134. span['bbox'], (0, y0, 0, y1)):
  135. # 调整公式类型
  136. if span["type"] == ContentType.InterlineEquation:
  137. # 最后一行是行间公式
  138. if j + 1 >= len(text_inline_lines):
  139. span["type"] = ContentType.InlineEquation
  140. span["bbox"][1] = y0
  141. span["bbox"][3] = y1
  142. else:
  143. # 行间公式旁边有多行文字或者行间公式比文字高3倍则不转换
  144. y0_next, y1_next = text_inline_lines[j + 1][1]
  145. if not __is_overlaps_y_exceeds_threshold(span['bbox'], (0, y0_next, 0, y1_next)) and 3 * (
  146. y1 - y0) > span_y - span_y0:
  147. span["type"] = ContentType.InlineEquation
  148. span["bbox"][1] = y0
  149. span["bbox"][3] = y1
  150. break
  151. elif span_y < y0 or span_y0 < y0 and span_y > y0 and not __is_overlaps_y_exceeds_threshold(span['bbox'],
  152. (0, y0, 0, y1)):
  153. break
  154. else:
  155. j += 1
  156. return spans
  157. def get_qa_need_list(blocks):
  158. # 创建 images, tables, interline_equations, inline_equations 的副本
  159. images = []
  160. tables = []
  161. interline_equations = []
  162. inline_equations = []
  163. for block in blocks:
  164. for line in block["lines"]:
  165. for span in line["spans"]:
  166. if span["type"] == ContentType.Image:
  167. images.append(span)
  168. elif span["type"] == ContentType.Table:
  169. tables.append(span)
  170. elif span["type"] == ContentType.InlineEquation:
  171. inline_equations.append(span)
  172. elif span["type"] == ContentType.InterlineEquation:
  173. interline_equations.append(span)
  174. else:
  175. continue
  176. return images, tables, interline_equations, inline_equations