remove_areas.c 4.5 KB

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  1. /*!
  2. \file lib/vector/Vlib/remove_areas.c
  3. \brief Vector library - clean geometry (remove small areas)
  4. Higher level functions for reading/writing/manipulating vectors.
  5. (C) 2001-2009 by the GRASS Development Team
  6. This program is free software under the GNU General Public License
  7. (>=v2). Read the file COPYING that comes with GRASS for details.
  8. \author Radim Blazek
  9. */
  10. #include <stdlib.h>
  11. #include <grass/vector.h>
  12. #include <grass/glocale.h>
  13. /*!
  14. \brief Remove small areas from the map map.
  15. Centroid of the area and the longest boundary with adjacent area is
  16. removed. Map topology must be built GV_BUILD_CENTROIDS.
  17. \param[in,out] Map vector map
  18. \param thresh maximum area size for removed areas
  19. \param[out] Err vector map where removed lines and centroids are written
  20. \param removed_area pointer to where total size of removed area is stored or NULL
  21. \return number of removed areas
  22. */
  23. int
  24. Vect_remove_small_areas(struct Map_info *Map, double thresh,
  25. struct Map_info *Err, double *removed_area)
  26. {
  27. int area, nareas;
  28. int nremoved = 0;
  29. struct ilist *List;
  30. struct ilist *AList;
  31. struct line_pnts *Points;
  32. struct line_cats *Cats;
  33. double size_removed = 0.0;
  34. List = Vect_new_list();
  35. AList = Vect_new_list();
  36. Points = Vect_new_line_struct();
  37. Cats = Vect_new_cats_struct();
  38. nareas = Vect_get_num_areas(Map);
  39. for (area = 1; area <= nareas; area++) {
  40. int i, j, centroid, dissolve_neighbour;
  41. double length, size;
  42. G_percent(area, nareas, 1);
  43. G_debug(3, "area = %d", area);
  44. if (!Vect_area_alive(Map, area))
  45. continue;
  46. size = Vect_get_area_area(Map, area);
  47. if (size > thresh)
  48. continue;
  49. size_removed += size;
  50. /* The area is smaller than the limit -> remove */
  51. /* Remove centroid */
  52. centroid = Vect_get_area_centroid(Map, area);
  53. if (centroid > 0) {
  54. if (Err) {
  55. Vect_read_line(Map, Points, Cats, centroid);
  56. Vect_write_line(Err, GV_CENTROID, Points, Cats);
  57. }
  58. Vect_delete_line(Map, centroid);
  59. }
  60. /* Find the adjacent area with which the longest boundary is shared */
  61. Vect_get_area_boundaries(Map, area, List);
  62. /* Create a list of neighbour areas */
  63. Vect_reset_list(AList);
  64. for (i = 0; i < List->n_values; i++) {
  65. int line, left, right, neighbour;
  66. line = List->value[i];
  67. if (!Vect_line_alive(Map, abs(line))) /* Should not happen */
  68. G_fatal_error(_("Area is composed of dead boundary"));
  69. Vect_get_line_areas(Map, abs(line), &left, &right);
  70. if (line > 0)
  71. neighbour = left;
  72. else
  73. neighbour = right;
  74. G_debug(4, " line = %d left = %d right = %d neighbour = %d",
  75. line, left, right, neighbour);
  76. Vect_list_append(AList, neighbour); /* this checks for duplicity */
  77. }
  78. G_debug(3, "num neighbours = %d", AList->n_values);
  79. /* Go through the list of neghours and find that with the longest boundary */
  80. dissolve_neighbour = 0;
  81. length = -1.0;
  82. for (i = 0; i < AList->n_values; i++) {
  83. int neighbour1;
  84. double l = 0.0;
  85. neighbour1 = AList->value[i];
  86. G_debug(4, " neighbour1 = %d", neighbour1);
  87. for (j = 0; j < List->n_values; j++) {
  88. int line, left, right, neighbour2;
  89. line = List->value[j];
  90. Vect_get_line_areas(Map, abs(line), &left, &right);
  91. if (line > 0)
  92. neighbour2 = left;
  93. else
  94. neighbour2 = right;
  95. if (neighbour2 == neighbour1) {
  96. Vect_read_line(Map, Points, NULL, abs(line));
  97. l += Vect_line_length(Points);
  98. }
  99. }
  100. if (l > length) {
  101. length = l;
  102. dissolve_neighbour = neighbour1;
  103. }
  104. }
  105. G_debug(3, "dissolve_neighbour = %d", dissolve_neighbour);
  106. /* Make list of boundaries to be removed */
  107. Vect_reset_list(AList);
  108. for (i = 0; i < List->n_values; i++) {
  109. int line, left, right, neighbour;
  110. line = List->value[i];
  111. Vect_get_line_areas(Map, abs(line), &left, &right);
  112. if (line > 0)
  113. neighbour = left;
  114. else
  115. neighbour = right;
  116. G_debug(3, " neighbour = %d", neighbour);
  117. if (neighbour == dissolve_neighbour) {
  118. Vect_list_append(AList, abs(line));
  119. }
  120. }
  121. /* Remove boundaries */
  122. for (i = 0; i < AList->n_values; i++) {
  123. int line;
  124. line = AList->value[i];
  125. if (Err) {
  126. Vect_read_line(Map, Points, Cats, line);
  127. Vect_write_line(Err, GV_BOUNDARY, Points, Cats);
  128. }
  129. Vect_delete_line(Map, line);
  130. }
  131. nremoved++;
  132. nareas = Vect_get_num_areas(Map);
  133. }
  134. if (removed_area)
  135. *removed_area = size_removed;
  136. G_verbose_message(_("%d areas of total size %g removed"), nremoved,
  137. size_removed);
  138. return (nremoved);
  139. }