plus_area.c 20 KB

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  1. /**
  2. * \file plus_area.c
  3. *
  4. * \brief Vector library - update topo for areas (lower level functions)
  5. *
  6. * Lower level functions for reading/writing/manipulating vectors.
  7. *
  8. * This program is free software under the GNU General Public License
  9. * (>=v2). Read the file COPYING that comes with GRASS for details.
  10. *
  11. * \author CERL (probably Dave Gerdes), Radim Blazek
  12. *
  13. * \date 2001-2006
  14. */
  15. #include <stdlib.h>
  16. #include <grass/vector.h>
  17. #include <grass/glocale.h>
  18. static int debug_level = -1;
  19. /*!
  20. * \brief Build topo for area from lines
  21. *
  22. * Area is built in clockwise order.
  23. * Take a given line and start off to the RIGHT/LEFT and try to complete
  24. * an area.
  25. *
  26. * Possible Scenarios:
  27. * - I. path runs into first line. : AREA!
  28. * - II. path runs into a dead end (no other area lines at node) : no area
  29. * - III. path runs into a previous line that is not 1st line or to 1st line but not to start node : no area
  30. *
  31. * After we find an area then we call point_in_area() to see if the
  32. * specified point is w/in the area
  33. *
  34. * Old returns -1: error 0: no area (1: point in area)
  35. * -2: island !!
  36. *
  37. * \param[in] plus pointer to Plus_head structure
  38. * \param[in] first_line line id of first line
  39. * \param[in] side side of line to build area on (GV_LEFT | GV_RIGHT)
  40. * \param[in] lines pointer to array of lines
  41. *
  42. * \return -1 on error
  43. * \return 0 no area
  44. * \return number of lines
  45. */
  46. int
  47. dig_build_area_with_line(struct Plus_head *plus, plus_t first_line, int side,
  48. plus_t ** lines)
  49. {
  50. register int i;
  51. int prev_line, next_line;
  52. static plus_t *array;
  53. char *p;
  54. static int array_size; /* 0 on startup */
  55. int n_lines;
  56. struct P_line *Line;
  57. struct P_topo_b *topo;
  58. int node;
  59. if (debug_level == -1) {
  60. const char *dstr = G__getenv("DEBUG");
  61. if (dstr != NULL)
  62. debug_level = atoi(dstr);
  63. else
  64. debug_level = 0;
  65. }
  66. G_debug(3, "dig_build_area_with_line(): first_line = %d, side = %d",
  67. first_line, side);
  68. /* First check if line is not degenerated (degenerated lines have angle -9)
  69. * Following degenerated lines are skip by dig_angle_next_line() */
  70. Line = plus->Line[first_line];
  71. if (Line->type != GV_BOUNDARY)
  72. return -1;
  73. topo = (struct P_topo_b *)Line->topo;
  74. node = topo->N1; /* to check one is enough, because if degenerated N1 == N2 */
  75. if (dig_node_line_angle(plus, node, first_line) == -9.) {
  76. G_debug(3, "First line degenerated");
  77. return (0);
  78. }
  79. if (array_size == 0) { /* first time */
  80. array_size = 1000;
  81. array = (plus_t *) dig__falloc(array_size, sizeof(plus_t));
  82. if (array == NULL)
  83. return (dig_out_of_memory());
  84. }
  85. if (side == GV_LEFT) {
  86. first_line = -first_line; /* start at node1, reverse direction */
  87. }
  88. array[0] = first_line;
  89. prev_line = -first_line; /* start at node2 for direct and node1 for
  90. reverse direction */
  91. /* angle of first line */
  92. n_lines = 1;
  93. while (1) {
  94. next_line =
  95. dig_angle_next_line(plus, prev_line, GV_RIGHT, GV_BOUNDARY, NULL);
  96. G_debug(3, "next_line = %d", next_line);
  97. if (next_line == 0)
  98. return (-1); /* Not found */
  99. /* Check if adjacent lines do not have the same angle */
  100. if (!dig_node_angle_check(plus, next_line, GV_BOUNDARY)) {
  101. G_debug(3,
  102. "Cannot build area, a neighbour of the line %d has the same angle at the node",
  103. next_line);
  104. return 0;
  105. }
  106. /* I. Area closed. This also handles the problem w/ 1 single area line */
  107. if (first_line == next_line) {
  108. /* GOT ONE! fill area struct and return */
  109. G_debug(3, "Got one! :");
  110. /* avoid loop when not debugging */
  111. if (debug_level > 2) {
  112. for (i = 0; i < n_lines; i++) {
  113. G_debug(3, " area line (%d) = %d", i, array[i]);
  114. }
  115. }
  116. *lines = array;
  117. return (n_lines);
  118. }
  119. /* II. Note this is a dead end */
  120. /* ( if prev_line != -first_line so it goes after the previous test) ? */
  121. if (prev_line == next_line) {
  122. G_debug(3, "Dead_end:");
  123. return (0); /* dead end */
  124. }
  125. /* III. Unclosed ?, I would say started from free end */
  126. for (i = 0; i < n_lines; i++)
  127. if (abs(next_line) == abs(array[i])) {
  128. G_debug(3, "Unclosed area:");
  129. return (0); /* ran into a different area */
  130. }
  131. /* otherwise keep going */
  132. if (n_lines >= array_size) {
  133. p = dig__frealloc(array, array_size + 100, sizeof(plus_t),
  134. array_size);
  135. if (p == NULL)
  136. return (dig_out_of_memory());
  137. array = (plus_t *) p;
  138. array_size += 100;
  139. }
  140. array[n_lines++] = next_line;
  141. prev_line = -next_line;
  142. }
  143. return 0;
  144. }
  145. /*!
  146. * \brief Allocate space for new area and create boundary info from array.
  147. *
  148. * Then for each line in area, update line (right,left) info.
  149. *
  150. * Neither islands nor centroids area filled.
  151. *
  152. * \param[in] plus pointer to Plus_head structure
  153. * \param[in] n_lines number of lines
  154. * \param[in] lines array of lines, negative for reverse direction
  155. *
  156. * \return number of new area
  157. * \return -1 on error
  158. */
  159. int dig_add_area(struct Plus_head *plus, int n_lines, plus_t * lines,
  160. struct bound_box *box)
  161. {
  162. register int i;
  163. register int area, line;
  164. struct P_area *Area;
  165. struct P_line *Line;
  166. struct P_topo_b *topo;
  167. G_debug(3, "dig_add_area():");
  168. /* First look if we have space in array of pointers to areas
  169. * and reallocate if necessary */
  170. if (plus->n_areas >= plus->alloc_areas) { /* array is full */
  171. if (dig_alloc_areas(plus, 1000) == -1)
  172. return -1;
  173. }
  174. /* allocate area structure */
  175. area = plus->n_areas + 1;
  176. G_debug(3, " new area = %d", area);
  177. Area = dig_alloc_area();
  178. if (Area == NULL)
  179. return -1;
  180. if (dig_area_alloc_line(Area, n_lines) == -1)
  181. return -1;
  182. for (i = 0; i < n_lines; i++) {
  183. line = lines[i];
  184. Area->lines[i] = line;
  185. Line = plus->Line[abs(line)];
  186. topo = (struct P_topo_b *)Line->topo;
  187. if (plus->uplist.do_uplist)
  188. dig_line_add_updated(plus, abs(line));
  189. if (line < 0) { /* revers direction -> area on left */
  190. if (topo->left != 0) {
  191. G_warning(_("Line %d already has area/isle %d to left"), line,
  192. topo->left);
  193. return -1;
  194. }
  195. G_debug(3, " Line %d left set to %d.", line, area);
  196. topo->left = area;
  197. }
  198. else {
  199. if (topo->right != 0) {
  200. G_warning(_("Line %d already has area/isle %d to right"),
  201. line, topo->right);
  202. return -1;
  203. }
  204. G_debug(3, " Line %d right set to %d.", line, area);
  205. topo->right = area;
  206. }
  207. }
  208. Area->n_lines = n_lines;
  209. Area->centroid = 0;
  210. plus->Area[area] = Area;
  211. dig_spidx_add_area(plus, area, box);
  212. plus->n_areas++;
  213. return (area);
  214. }
  215. /*!
  216. * \brief Add isle to area if does not exist yet.
  217. *
  218. * \param[in] plus pointer to Plus_head structure
  219. * \param[in] area area id
  220. * \param[in] isle isle id
  221. *
  222. * \return 0
  223. */
  224. int dig_area_add_isle(struct Plus_head *plus, int area, int isle)
  225. {
  226. int i;
  227. struct P_area *Area;
  228. G_debug(3, "dig_area_add_isle(): area = %d isle = %d", area, isle);
  229. if (debug_level == -1) {
  230. const char *dstr = G__getenv("DEBUG");
  231. if (dstr != NULL)
  232. debug_level = atoi(dstr);
  233. else
  234. debug_level = 0;
  235. }
  236. Area = plus->Area[area];
  237. if (Area == NULL)
  238. G_fatal_error("Attempt to add isle to dead area");
  239. if (debug_level > 0) {
  240. for (i = 0; i < Area->n_isles; i++) {
  241. if (Area->isles[i] == isle) {
  242. /* Already exists: bug in vector libs */
  243. G_warning(_("Isle already registered in area"));
  244. return 0;
  245. }
  246. }
  247. }
  248. if (Area->alloc_isles <= Area->n_isles) /* array is full */
  249. dig_area_alloc_isle(Area, 1);
  250. Area->isles[Area->n_isles] = isle;
  251. Area->n_isles++;
  252. G_debug(3, " -> n_isles = %d", Area->n_isles);
  253. return 0;
  254. }
  255. /*!
  256. * \brief Delete isle from area.
  257. *
  258. * \param[in] plus pointer to Plus_head structure
  259. * \param[in] area area id
  260. * \param[in] isle isle id
  261. *
  262. * \return 0
  263. */
  264. int dig_area_del_isle(struct Plus_head *plus, int area, int isle)
  265. {
  266. int i, mv;
  267. struct P_area *Area;
  268. G_debug(3, "dig_area_del_isle(): area = %d isle = %d", area, isle);
  269. Area = plus->Area[area];
  270. if (Area == NULL)
  271. G_fatal_error(_("Attempt to delete isle from dead area"));
  272. mv = 0;
  273. for (i = 0; i < Area->n_isles; i++) {
  274. if (mv) {
  275. Area->isles[i - 1] = Area->isles[i];
  276. }
  277. else {
  278. if (Area->isles[i] == isle)
  279. mv = 1;
  280. }
  281. }
  282. if (mv) {
  283. Area->n_isles--;
  284. }
  285. else {
  286. G_fatal_error(_("Attempt to delete not registered isle %d from area %d"),
  287. isle, area);
  288. }
  289. return 0;
  290. }
  291. /*!
  292. * \brief Delete area from Plus_head structure
  293. *
  294. * This function deletes area from the topo structure and resets references
  295. * to this area in lines, isles (within) to 0.
  296. * Possible new area is not created by this function, so that
  297. * old boundaries participating in this area are left without area information
  298. * even if form new area.
  299. * Not enabled now: If area is inside other area, area info for islands within
  300. * deleted area is reset to that area outside.
  301. * (currently area info of isles is set to 0)
  302. *
  303. * \param[in] plus pointer to Plus_head structure
  304. * \param[in] area area id
  305. *
  306. * \return 0 on error
  307. * \return 1 on success
  308. */
  309. int dig_del_area(struct Plus_head *plus, int area)
  310. {
  311. int i, line;
  312. struct P_area *Area;
  313. struct P_line *Line;
  314. struct P_isle *Isle;
  315. struct P_topo_b *btopo;
  316. struct P_topo_c *ctopo;
  317. G_debug(3, "dig_del_area() area = %d", area);
  318. Area = plus->Area[area];
  319. if (Area == NULL) {
  320. G_warning(_("Attempt to delete dead area"));
  321. return 0;
  322. }
  323. dig_spidx_del_area(plus, area);
  324. /* Set area for all lines to 0 */
  325. /* isle = 0; */
  326. for (i = 0; i < Area->n_lines; i++) {
  327. line = Area->lines[i]; /* >0 = clockwise -> right, <0 = counterclockwise ->left */
  328. Line = plus->Line[abs(line)];
  329. btopo = (struct P_topo_b *)Line->topo;
  330. if (plus->uplist.do_uplist)
  331. dig_line_add_updated(plus, abs(line));
  332. if (line > 0) {
  333. G_debug(3, " Set line %d right side to 0", line);
  334. btopo->right = 0;
  335. }
  336. else {
  337. G_debug(3, " Set line %d left side to 0", line);
  338. btopo->left = 0;
  339. }
  340. /* Find the isle this area is part of (used late below) */
  341. /*
  342. if ( line > 0 ) {
  343. if ( Line->left < 0 ) isle = Line->left;
  344. } else {
  345. if ( Line->right < 0 ) isle = Line->right;
  346. }
  347. */
  348. }
  349. /* Unset area information of centroid */
  350. /* TODO: duplicate centroids have also area information ->
  351. * 1) do not save such info
  352. * 2) find all by box and reset info */
  353. line = Area->centroid;
  354. if (line > 0) {
  355. Line = plus->Line[line];
  356. if (!Line) {
  357. G_warning(_("Dead centroid %d registered for area (bug in the vector library)"),
  358. line);
  359. }
  360. else {
  361. ctopo = (struct P_topo_c *)Line->topo;
  362. ctopo->area = 0;
  363. if (plus->uplist.do_uplist)
  364. dig_line_add_updated(plus, line);
  365. }
  366. }
  367. /* Find the area this area is within */
  368. /*
  369. area_out = 0;
  370. if ( isle > 0 ) {
  371. Isle = plus->Isle[abs(isle)];
  372. area_out = Isle->area;
  373. }
  374. */
  375. /* Reset information about area outside for isles within this area */
  376. G_debug(3, " n_isles = %d", Area->n_isles);
  377. for (i = 0; i < Area->n_isles; i++) {
  378. Isle = plus->Isle[Area->isles[i]];
  379. if (Isle == NULL) {
  380. G_fatal_error(_("Attempt to delete area %d info from dead isle %d"),
  381. area, Area->isles[i]);
  382. }
  383. else {
  384. /* Isle->area = area_out; */
  385. Isle->area = 0;
  386. }
  387. }
  388. /* free structures */
  389. dig_free_area(Area);
  390. plus->Area[area] = NULL;
  391. return 1;
  392. }
  393. /*!
  394. * \brief Find number line of next angle to follow an line
  395. *
  396. * Assume that lines are sorted in increasing angle order and angles
  397. * of points and degenerated lines are set to 9 (ignored).
  398. *
  399. * \param[in] plus pointer to Plus_head structure
  400. * \param[in] current_line current line id, negative if request for node 2
  401. * \param[in] side side GV_RIGHT or GV_LEFT
  402. * \param[in] type line type (GV_LINE, GV_BOUNDARY or both)
  403. *
  404. * \return line number of next angle to follow an line (negative if connected by node2)
  405. * (number of current line may be return if dangle - this is used in build)
  406. * \return 0 on error or not found
  407. */
  408. int
  409. dig_angle_next_line(struct Plus_head *plus, plus_t current_line, int side,
  410. int type, float *angle)
  411. {
  412. int i, next;
  413. int current;
  414. int line;
  415. plus_t node;
  416. struct P_node *Node;
  417. struct P_line *Line;
  418. if (debug_level == -1) {
  419. const char *dstr = G__getenv("DEBUG");
  420. if (dstr != NULL)
  421. debug_level = atoi(dstr);
  422. else
  423. debug_level = 0;
  424. }
  425. G_debug(3, "dig__angle_next_line: line = %d, side = %d, type = %d",
  426. current_line, side, type);
  427. Line = plus->Line[abs(current_line)];
  428. if (!(Line->type & GV_LINES)) {
  429. if (angle)
  430. *angle = -9.;
  431. return 0;
  432. }
  433. node = 0;
  434. if (current_line > 0) {
  435. if (Line->type == GV_LINE) {
  436. struct P_topo_l *topo = (struct P_topo_l *)Line->topo;
  437. node = topo->N1;
  438. }
  439. else if (Line->type == GV_BOUNDARY) {
  440. struct P_topo_b *topo = (struct P_topo_b *)Line->topo;
  441. node = topo->N1;
  442. }
  443. }
  444. else {
  445. if (Line->type == GV_LINE) {
  446. struct P_topo_l *topo = (struct P_topo_l *)Line->topo;
  447. node = topo->N2;
  448. }
  449. else if (Line->type == GV_BOUNDARY) {
  450. struct P_topo_b *topo = (struct P_topo_b *)Line->topo;
  451. node = topo->N2;
  452. }
  453. }
  454. G_debug(3, " node = %d", node);
  455. Node = plus->Node[node];
  456. G_debug(3, " n_lines = %d", Node->n_lines);
  457. /* avoid loop when not debugging */
  458. if (debug_level > 2) {
  459. for (i = 0; i < Node->n_lines; i++) {
  460. G_debug(3, " i = %d line = %d angle = %f", i, Node->lines[i],
  461. Node->angles[i]);
  462. }
  463. }
  464. /* first find index for that line */
  465. next = -1;
  466. for (current = 0; current < Node->n_lines; current++) {
  467. if (Node->lines[current] == current_line)
  468. next = current;
  469. }
  470. if (next == -1) {
  471. if (angle)
  472. *angle = -9.;
  473. return 0; /* not found */
  474. }
  475. G_debug(3, " current position = %d", next);
  476. while (1) {
  477. if (side == GV_RIGHT) { /* go up (greater angle) */
  478. if (next == Node->n_lines - 1)
  479. next = 0;
  480. else
  481. next++;
  482. }
  483. else { /* go down (smaller angle) */
  484. if (next == 0)
  485. next = Node->n_lines - 1;
  486. else
  487. next--;
  488. }
  489. G_debug(3, " next = %d line = %d angle = %f", next,
  490. Node->lines[next], Node->angles[next]);
  491. if (Node->angles[next] == -9.) { /* skip points and degenerated */
  492. G_debug(3, " point/degenerated -> skip");
  493. if (Node->lines[next] == current_line)
  494. break; /* Yes, that may happen if input line is degenerated and isolated and this breaks loop */
  495. else
  496. continue;
  497. }
  498. line = abs(Node->lines[next]);
  499. Line = plus->Line[line];
  500. if (Line->type & type) { /* line found */
  501. G_debug(3, " this one");
  502. if (angle)
  503. *angle = Node->angles[next];
  504. return (Node->lines[next]);
  505. }
  506. /* input line reached, this must be last, because current_line may be correct return value (dangle) */
  507. if (Node->lines[next] == current_line)
  508. break;
  509. }
  510. G_debug(3, " Line NOT found at node %d", (int)node);
  511. if (angle)
  512. *angle = -9.;
  513. return 0;
  514. }
  515. /*!
  516. * \brief Checks if angles of adjacent lines differ.
  517. *
  518. * Negative line number for end point. Assume that lines are sorted
  519. * in increasing angle order and angles of points and degenerated
  520. * lines are set to 9 (ignored).
  521. *
  522. * \param[in] plus pointer to Plus_head structure
  523. * \param[in] line current line id, negative if request for node 2
  524. * \param[in] type line type (GV_LINE, GV_BOUNDARY or both)
  525. *
  526. * \return 1 angles differ
  527. * \return 0 angle of a line up or down is identical
  528. */
  529. int dig_node_angle_check(struct Plus_head *plus, plus_t line, int type)
  530. {
  531. int next, prev;
  532. float angle1, angle2;
  533. plus_t node = 0;
  534. struct P_line *Line;
  535. G_debug(3, "dig_node_angle_check: line = %d, type = %d", line, type);
  536. Line = plus->Line[abs(line)];
  537. if (!(Line->type & GV_LINES))
  538. return 0;
  539. if (line > 0) {
  540. if (Line->type == GV_LINE) {
  541. struct P_topo_l *topo = (struct P_topo_l *)Line->topo;
  542. node = topo->N1;
  543. }
  544. else if (Line->type == GV_BOUNDARY) {
  545. struct P_topo_b *topo = (struct P_topo_b *)Line->topo;
  546. node = topo->N1;
  547. }
  548. }
  549. else {
  550. if (Line->type == GV_LINE) {
  551. struct P_topo_l *topo = (struct P_topo_l *)Line->topo;
  552. node = topo->N2;
  553. }
  554. else if (Line->type == GV_BOUNDARY) {
  555. struct P_topo_b *topo = (struct P_topo_b *)Line->topo;
  556. node = topo->N2;
  557. }
  558. }
  559. angle1 = dig_node_line_angle(plus, node, line);
  560. /* Next */
  561. next = dig_angle_next_line(plus, line, GV_RIGHT, type, &angle2);
  562. /* angle2 = dig_node_line_angle(plus, node, next); */
  563. if (angle1 == angle2) {
  564. G_debug(3,
  565. " The line to the right has the same angle: node = %d, line = %d",
  566. node, next);
  567. return 0;
  568. }
  569. /* Previous */
  570. prev = dig_angle_next_line(plus, line, GV_LEFT, type, &angle2);
  571. /* angle2 = dig_node_line_angle(plus, node, prev); */
  572. if (angle1 == angle2) {
  573. G_debug(3,
  574. " The line to the left has the same angle: node = %d, line = %d",
  575. node, next);
  576. return 0;
  577. }
  578. return 1; /* OK */
  579. }
  580. /*!
  581. * \brief Allocate space for new island and create boundary info from array.
  582. *
  583. * The order of input lines is expected to be counter clockwise.
  584. * Then for each line in isle, update line (right,left) info.
  585. *
  586. * Area number the island is within is not filled.
  587. *
  588. * \param[in] plus pointer to Plus_head structure
  589. * \param[in] n_lines number of lines
  590. * \param[in] lines array of lines, negative for reverse direction
  591. *
  592. * \return number of new isle
  593. * \return -1 on error
  594. */
  595. int dig_add_isle(struct Plus_head *plus, int n_lines, plus_t * lines,
  596. struct bound_box *box)
  597. {
  598. register int i;
  599. register int isle, line;
  600. struct P_isle *Isle;
  601. struct P_line *Line;
  602. struct P_topo_b *topo;
  603. G_debug(3, "dig_add_isle():");
  604. /* First look if we have space in array of pointers to isles
  605. * and reallocate if necessary */
  606. if (plus->n_isles >= plus->alloc_isles) { /* array is full */
  607. if (dig_alloc_isles(plus, 1000) == -1)
  608. return -1;
  609. }
  610. /* allocate isle structure */
  611. isle = plus->n_isles + 1;
  612. Isle = dig_alloc_isle();
  613. if (Isle == NULL)
  614. return -1;
  615. if ((dig_isle_alloc_line(Isle, n_lines)) == -1)
  616. return -1;
  617. Isle->area = 0;
  618. for (i = 0; i < n_lines; i++) {
  619. line = lines[i];
  620. G_debug(3, " i = %d line = %d", i, line);
  621. Isle->lines[i] = line;
  622. Line = plus->Line[abs(line)];
  623. topo = (struct P_topo_b *)Line->topo;
  624. if (plus->uplist.do_uplist)
  625. dig_line_add_updated(plus, abs(line));
  626. if (line < 0) { /* revers direction -> isle on left */
  627. if (topo->left != 0) {
  628. G_warning(_("Line %d already has area/isle %d to left"), line,
  629. topo->left);
  630. return -1;
  631. }
  632. topo->left = -isle;
  633. }
  634. else {
  635. if (topo->right != 0) {
  636. G_warning(_("Line %d already has area/isle %d to right"), line,
  637. topo->right);
  638. return -1;
  639. }
  640. topo->right = -isle;
  641. }
  642. }
  643. Isle->n_lines = n_lines;
  644. plus->Isle[isle] = Isle;
  645. dig_spidx_add_isle(plus, isle, box);
  646. plus->n_isles++;
  647. return (isle);
  648. }
  649. /*!
  650. * \brief Delete island from Plus_head structure
  651. *
  652. * Reset references to it in lines and area outside.
  653. *
  654. * \param[in] plus pointer to Plus_head structure
  655. * \param[in] isle isle id
  656. *
  657. * \return 1
  658. */
  659. int dig_del_isle(struct Plus_head *plus, int isle)
  660. {
  661. int i, line;
  662. struct P_line *Line;
  663. struct P_isle *Isle;
  664. struct P_topo_b *topo;
  665. G_debug(3, "dig_del_isle() isle = %d", isle);
  666. Isle = plus->Isle[isle];
  667. dig_spidx_del_isle(plus, isle);
  668. /* Set area for all lines to 0 */
  669. for (i = 0; i < Isle->n_lines; i++) {
  670. line = Isle->lines[i]; /* >0 = clockwise -> right, <0 = counterclockwise ->left */
  671. Line = plus->Line[abs(line)];
  672. topo = (struct P_topo_b *)Line->topo;
  673. if (plus->uplist.do_uplist)
  674. dig_line_add_updated(plus, abs(line));
  675. if (line > 0)
  676. topo->right = 0;
  677. else
  678. topo->left = 0;
  679. }
  680. /* Delete reference from area it is within */
  681. G_debug(3, " area outside isle = %d", Isle->area);
  682. if (Isle->area > 0) {
  683. if (plus->Area[Isle->area] == NULL) {
  684. G_fatal_error(_("Attempt to delete isle %d info from dead area %d"),
  685. isle, Isle->area);
  686. }
  687. else {
  688. dig_area_del_isle(plus, Isle->area, isle);
  689. }
  690. }
  691. /* free structures */
  692. dig_free_isle(Isle);
  693. plus->Isle[isle] = NULL;
  694. return 1;
  695. }