main.c 26 KB

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  1. /****************************************************************
  2. *
  3. * MODULE: v.buffer
  4. *
  5. * AUTHOR(S): Radim Blazek
  6. * Upgraded by Rosen Matev (Google Summer of Code 2008)
  7. * OGR support by Martin Landa <landa.martin gmail.com> (2009)
  8. * rewrite and GEOS added by Markus Metz
  9. *
  10. * PURPOSE: Vector buffer
  11. *
  12. * COPYRIGHT: (C) 2001-2014 by the GRASS Development Team
  13. *
  14. * This program is free software under the GNU General
  15. * Public License (>=v2). Read the file COPYING that
  16. * comes with GRASS for details.
  17. *
  18. **************************************************************/
  19. #include <stdlib.h>
  20. #include <string.h>
  21. #include <unistd.h>
  22. #include <math.h>
  23. #include <grass/gis.h>
  24. #include <grass/vector.h>
  25. #include <grass/dbmi.h>
  26. #include <grass/glocale.h>
  27. #include "local_proto.h"
  28. #define PI M_PI
  29. #ifndef MIN
  30. #define MIN(X,Y) ((X<Y)?X:Y)
  31. #endif
  32. #ifndef MAX
  33. #define MAX(X,Y) ((X>Y)?X:Y)
  34. #endif
  35. /* returns 1 if unit_tolerance is adjusted, 0 otherwise */
  36. int adjust_tolerance(double *tolerance)
  37. {
  38. double t = 0.999 * (1 - cos(PI / 8));
  39. G_debug(2, "Maximum tolerance = %f", t);
  40. if (*tolerance > t) {
  41. *tolerance = t;
  42. return 1;
  43. }
  44. return 0;
  45. }
  46. int db_CatValArray_get_value_di(dbCatValArray * cvarr, int cat, double *value)
  47. {
  48. int t;
  49. int ctype = cvarr->ctype;
  50. int ret;
  51. if (ctype == DB_C_TYPE_INT) {
  52. ret = db_CatValArray_get_value_int(cvarr, cat, &t);
  53. if (ret != DB_OK)
  54. return ret;
  55. *value = (double)t;
  56. return DB_OK;
  57. }
  58. if (ctype == DB_C_TYPE_DOUBLE) {
  59. ret = db_CatValArray_get_value_double(cvarr, cat, value);
  60. return ret;
  61. }
  62. return DB_FAILED;
  63. }
  64. int point_in_buffer(struct buf_contours *arr_bc, struct spatial_index *si,
  65. struct Map_info *Buf, double x, double y)
  66. {
  67. int i, j, ret, flag;
  68. struct bound_box bbox;
  69. static struct ilist *List = NULL;
  70. static struct line_pnts *Points = NULL;
  71. static struct line_cats *BCats = NULL;
  72. if (List == NULL)
  73. List = Vect_new_list();
  74. if (Points == NULL)
  75. Points = Vect_new_line_struct();
  76. if (BCats == NULL)
  77. BCats = Vect_new_cats_struct();
  78. /* select outer contours overlapping with centroid (x, y) */
  79. bbox.W = bbox.E = x;
  80. bbox.N = bbox.S = y;
  81. bbox.T = PORT_DOUBLE_MAX;
  82. bbox.B = -PORT_DOUBLE_MAX;
  83. Vect_spatial_index_select(si, &bbox, List);
  84. for (i = 0; i < List->n_values; i++) {
  85. Vect_read_line(Buf, Points, BCats, arr_bc[List->value[i]].outer);
  86. ret = Vect_point_in_poly(x, y, Points);
  87. if (ret == 0)
  88. continue;
  89. flag = 1;
  90. for (j = 0; j < arr_bc[List->value[i]].inner_count; j++) {
  91. if (arr_bc[List->value[i]].inner[j] < 1)
  92. continue;
  93. Vect_read_line(Buf, Points, NULL, arr_bc[List->value[i]].inner[j]);
  94. ret = Vect_point_in_poly(x, y, Points);
  95. if (ret != 0) { /* inside inner contour */
  96. flag = 0;
  97. break;
  98. }
  99. }
  100. if (flag) {
  101. /* (x,y) is inside outer contour and outside inner contours of arr_bc[i] */
  102. return 1;
  103. }
  104. }
  105. return 0;
  106. }
  107. int buffer_cats(struct buf_contours *arr_bc, struct spatial_index *si,
  108. struct Map_info *Buf, double x, double y, struct line_cats *Cats)
  109. {
  110. int i, j, ret, flag, inside;
  111. struct bound_box bbox;
  112. static struct ilist *List = NULL;
  113. static struct line_pnts *Points = NULL;
  114. static struct line_cats *BCats = NULL;
  115. if (List == NULL)
  116. List = Vect_new_list();
  117. if (Points == NULL)
  118. Points = Vect_new_line_struct();
  119. if (BCats == NULL)
  120. BCats = Vect_new_cats_struct();
  121. /* select outer contours overlapping with centroid (x, y) */
  122. bbox.W = bbox.E = x;
  123. bbox.N = bbox.S = y;
  124. bbox.T = PORT_DOUBLE_MAX;
  125. bbox.B = -PORT_DOUBLE_MAX;
  126. Vect_spatial_index_select(si, &bbox, List);
  127. Vect_reset_cats(Cats);
  128. inside = 0;
  129. for (i = 0; i < List->n_values; i++) {
  130. Vect_read_line(Buf, Points, BCats, arr_bc[List->value[i]].outer);
  131. ret = Vect_point_in_poly(x, y, Points);
  132. if (ret == 0)
  133. continue;
  134. flag = 1;
  135. for (j = 0; j < arr_bc[List->value[i]].inner_count; j++) {
  136. if (arr_bc[List->value[i]].inner[j] < 1)
  137. continue;
  138. Vect_read_line(Buf, Points, NULL, arr_bc[List->value[i]].inner[j]);
  139. ret = Vect_point_in_poly(x, y, Points);
  140. if (ret != 0) { /* inside inner contour */
  141. flag = 0;
  142. break;
  143. }
  144. }
  145. if (flag) {
  146. /* (x,y) is inside outer contour and outside inner contours of arr_bc[i] */
  147. inside = 1;
  148. for (j = 0; j < BCats->n_cats; j++)
  149. Vect_cat_set(Cats, BCats->field[j], BCats->cat[j]);
  150. }
  151. }
  152. return inside;
  153. }
  154. int main(int argc, char *argv[])
  155. {
  156. struct Map_info In, Out, Buf;
  157. struct line_pnts *Points;
  158. struct line_cats *Cats, *BCats, *CCats;
  159. struct GModule *module;
  160. struct Option *in_opt, *out_opt, *type_opt, *dista_opt, *distb_opt,
  161. *angle_opt;
  162. struct Flag *straight_flag, *nocaps_flag, *cats_flag;
  163. struct Option *tol_opt, *bufcol_opt, *scale_opt, *field_opt,
  164. *where_opt, *cats_opt;
  165. struct cat_list *cat_list = NULL;
  166. int verbose, use_geos;
  167. double da, db, dalpha, tolerance, unit_tolerance;
  168. int type;
  169. int i, ret, nareas, area, nlines, line;
  170. char *Areas, *Lines;
  171. int field;
  172. struct buf_contours *arr_bc;
  173. int arr_bc_alloc;
  174. struct buf_contours_pts arr_bc_pts;
  175. int line_id, buffers_count = 0;
  176. struct spatial_index si;
  177. struct bound_box bbox;
  178. /* Attributes if sizecol is used */
  179. int nrec, ctype;
  180. struct field_info *Fi = NULL;
  181. dbDriver *Driver;
  182. dbCatValArray cvarr;
  183. double size_val, scale;
  184. #ifdef HAVE_GEOS
  185. /* TODO: use GEOSBufferParams * */
  186. #endif
  187. module = G_define_module();
  188. G_add_keyword(_("vector"));
  189. G_add_keyword(_("buffer"));
  190. G_add_keyword(_("area"));
  191. G_add_keyword(_("circle"));
  192. G_add_keyword(_("geometry"));
  193. G_add_keyword(_("line"));
  194. G_add_keyword(_("grow"));
  195. G_add_keyword(_("shrink"));
  196. module->description =
  197. _("Creates a buffer around vector features of given type.");
  198. in_opt = G_define_standard_option(G_OPT_V_INPUT);
  199. field_opt = G_define_standard_option(G_OPT_V_FIELD_ALL);
  200. field_opt->guisection = _("Selection");
  201. cats_opt = G_define_standard_option(G_OPT_V_CATS);
  202. cats_opt->guisection = _("Selection");
  203. where_opt = G_define_standard_option(G_OPT_DB_WHERE);
  204. where_opt->guisection = _("Selection");
  205. type_opt = G_define_standard_option(G_OPT_V_TYPE);
  206. type_opt->options = "point,line,boundary,centroid,area";
  207. type_opt->answer = "point,line,area";
  208. type_opt->guisection = _("Selection");
  209. out_opt = G_define_standard_option(G_OPT_V_OUTPUT);
  210. dista_opt = G_define_option();
  211. dista_opt->key = "distance";
  212. dista_opt->type = TYPE_DOUBLE;
  213. dista_opt->required = NO;
  214. dista_opt->description =
  215. _("Buffer distance along major axis in map units");
  216. dista_opt->guisection = _("Distance");
  217. distb_opt = G_define_option();
  218. distb_opt->key = "minordistance";
  219. distb_opt->type = TYPE_DOUBLE;
  220. distb_opt->required = NO;
  221. distb_opt->description =
  222. _("Buffer distance along minor axis in map units");
  223. distb_opt->guisection = _("Distance");
  224. angle_opt = G_define_option();
  225. angle_opt->key = "angle";
  226. angle_opt->type = TYPE_DOUBLE;
  227. angle_opt->required = NO;
  228. angle_opt->answer = "0";
  229. angle_opt->description = _("Angle of major axis in degrees");
  230. angle_opt->guisection = _("Distance");
  231. bufcol_opt = G_define_standard_option(G_OPT_DB_COLUMN);
  232. bufcol_opt->description =
  233. _("Name of column to use for buffer distances");
  234. bufcol_opt->guisection = _("Distance");
  235. scale_opt = G_define_option();
  236. scale_opt->key = "scale";
  237. scale_opt->type = TYPE_DOUBLE;
  238. scale_opt->required = NO;
  239. scale_opt->answer = "1.0";
  240. scale_opt->description = _("Scaling factor for attribute column values");
  241. scale_opt->guisection = _("Distance");
  242. tol_opt = G_define_option();
  243. tol_opt->key = "tolerance";
  244. tol_opt->type = TYPE_DOUBLE;
  245. tol_opt->required = NO;
  246. tol_opt->answer = "0.01";
  247. tol_opt->description =
  248. _("Maximum distance between theoretical arc and polygon segments as multiple of buffer");
  249. tol_opt->guisection = _("Distance");
  250. straight_flag = G_define_flag();
  251. straight_flag->key = 's';
  252. straight_flag->description = _("Make outside corners straight");
  253. /* Superfluous flag: https://trac.osgeo.org/grass/ticket/2223 */
  254. nocaps_flag = G_define_flag();
  255. nocaps_flag->key = 'c';
  256. nocaps_flag->description = _("Do not make caps at the ends of polylines");
  257. cats_flag = G_define_flag();
  258. cats_flag->key = 't';
  259. cats_flag->description = _("Transfer categories and attributes");
  260. cats_flag->guisection = _("Attributes");
  261. G_gisinit(argv[0]);
  262. if (G_parser(argc, argv))
  263. exit(EXIT_FAILURE);
  264. verbose = G_verbose();
  265. #if !defined HAVE_GEOS
  266. use_geos = FALSE;
  267. #else
  268. use_geos = getenv("GRASS_VECTOR_BUFFER") ? FALSE : TRUE;
  269. #endif
  270. G_debug(1, "use_geos = %d", use_geos);
  271. type = Vect_option_to_types(type_opt);
  272. /* TODO: no geodesic support yet in GEOS */
  273. if (G_projection() == PROJECTION_LL)
  274. G_important_message(_("Note: In latitude-longitude coordinate system specify distances in degree unit"));
  275. if ((dista_opt->answer && bufcol_opt->answer) ||
  276. (!(dista_opt->answer || bufcol_opt->answer)))
  277. G_fatal_error(_("Select a buffer distance/minordistance/angle "
  278. "or column, but not both."));
  279. Vect_check_input_output_name(in_opt->answer, out_opt->answer, G_FATAL_EXIT);
  280. Vect_set_open_level(2); /* topology required */
  281. if (Vect_open_old2(&In, in_opt->answer, "", field_opt->answer) < 0)
  282. G_fatal_error(_("Unable to open vector map <%s>"), in_opt->answer);
  283. Vect_set_error_handler_io(&In, &Out);
  284. if (field_opt->answer)
  285. field = Vect_get_field_number(&In, field_opt->answer);
  286. else
  287. field = -1;
  288. if ((cats_opt->answer || where_opt->answer) && field == -1) {
  289. G_warning(_("Invalid layer number (%d). Parameter '%s' or '%s' specified, assuming layer '1'."),
  290. field, cats_opt->key, where_opt->key);
  291. field = 1;
  292. }
  293. cat_list = NULL;
  294. if (field > 0)
  295. cat_list = Vect_cats_set_constraint(&In, field, where_opt->answer,
  296. cats_opt->answer);
  297. if (bufcol_opt->answer && field == -1)
  298. G_fatal_error(_("The bufcol option requires a valid layer."));
  299. tolerance = atof(tol_opt->answer);
  300. if (tolerance <= 0)
  301. G_fatal_error(_("The tolerance must be > 0."));
  302. if (adjust_tolerance(&tolerance))
  303. G_warning(_("The tolerance was reset to %g"), tolerance);
  304. scale = atof(scale_opt->answer);
  305. if (scale <= 0.0)
  306. G_fatal_error(_("Illegal scale value"));
  307. da = db = dalpha = unit_tolerance = 0;
  308. if (dista_opt->answer) {
  309. da = atof(dista_opt->answer);
  310. if (distb_opt->answer)
  311. db = atof(distb_opt->answer);
  312. else
  313. db = da;
  314. if (angle_opt->answer)
  315. dalpha = atof(angle_opt->answer);
  316. else
  317. dalpha = 0;
  318. unit_tolerance = fabs(tolerance * MIN(da, db));
  319. G_verbose_message(_("The tolerance in map units = %g"), unit_tolerance);
  320. }
  321. if (Vect_open_new(&Out, out_opt->answer, WITHOUT_Z) < 0)
  322. G_fatal_error(_("Unable to create vector map <%s>"), out_opt->answer);
  323. Points = Vect_new_line_struct();
  324. Cats = Vect_new_cats_struct();
  325. BCats = Vect_new_cats_struct();
  326. CCats = Vect_new_cats_struct();
  327. /* open tmp vector for buffers, needed for cleaning */
  328. if (0 > Vect_open_tmp_new(&Buf, NULL, WITHOUT_Z))
  329. G_fatal_error(_("Unable to create temporary vector map"));
  330. G_set_verbose(0);
  331. Vect_build_partial(&Buf, GV_BUILD_BASE); /* switch to level 2 */
  332. G_set_verbose(verbose);
  333. /* check and load attribute column data */
  334. if (bufcol_opt->answer) {
  335. db_CatValArray_init(&cvarr);
  336. Fi = Vect_get_field(&In, field);
  337. if (Fi == NULL)
  338. G_fatal_error(_("Database connection not defined for layer %d"),
  339. field);
  340. Driver = db_start_driver_open_database(Fi->driver, Fi->database);
  341. if (Driver == NULL)
  342. G_fatal_error(_("Unable to open database <%s> by driver <%s>"),
  343. Fi->database, Fi->driver);
  344. db_set_error_handler_driver(Driver);
  345. /* Note do not check if the column exists in the table because it may be expression */
  346. /* TODO: only select values we need instead of all in column */
  347. nrec =
  348. db_select_CatValArray(Driver, Fi->table, Fi->key,
  349. bufcol_opt->answer, NULL, &cvarr);
  350. if (nrec < 0)
  351. G_fatal_error(_("Unable to select data from table <%s>"),
  352. Fi->table);
  353. G_debug(2, "%d records selected from table", nrec);
  354. ctype = cvarr.ctype;
  355. if (ctype != DB_C_TYPE_INT && ctype != DB_C_TYPE_DOUBLE)
  356. G_fatal_error(_("Column type not supported"));
  357. db_close_database_shutdown_driver(Driver);
  358. /* Output cats/values list */
  359. for (i = 0; i < cvarr.n_values; i++) {
  360. if (ctype == DB_C_TYPE_INT) {
  361. G_debug(4, "cat = %d val = %d", cvarr.value[i].cat,
  362. cvarr.value[i].val.i);
  363. }
  364. else if (ctype == DB_C_TYPE_DOUBLE) {
  365. G_debug(4, "cat = %d val = %f", cvarr.value[i].cat,
  366. cvarr.value[i].val.d);
  367. }
  368. }
  369. }
  370. Vect_copy_head_data(&In, &Out);
  371. Vect_hist_copy(&In, &Out);
  372. Vect_hist_command(&Out);
  373. /* Create buffers' boundaries */
  374. nlines = nareas = 0;
  375. if ((type & GV_POINTS) || (type & GV_LINES))
  376. nlines = Vect_get_num_primitives(&In, type);
  377. if (type & GV_AREA)
  378. nareas = Vect_get_num_areas(&In);
  379. if (nlines + nareas == 0) {
  380. G_warning(_("No features available for buffering. "
  381. "Check type option and features available in the input vector."));
  382. exit(EXIT_SUCCESS);
  383. }
  384. /* init arr_bc */
  385. buffers_count = 1;
  386. arr_bc_alloc = nlines + nareas + 1;
  387. arr_bc = G_calloc(arr_bc_alloc, sizeof(struct buf_contours));
  388. Vect_spatial_index_init(&si, 0);
  389. #ifdef HAVE_GEOS
  390. initGEOS(G_message, G_fatal_error);
  391. /* check required version for -s/-c flag */
  392. #ifndef GEOS_3_3
  393. G_warning(_("Flags -%c/%c ignored by this version, GEOS >= 3.3 is required"),
  394. 's', 'c');
  395. #endif
  396. #endif
  397. if(!use_geos && (da < 0. || db < 0.)) {
  398. G_warning(_("Negative distances for internal buffers are not supported "
  399. "and converted to positive values."));
  400. da = fabs(da);
  401. db = fabs(db);
  402. }
  403. /* Areas */
  404. if (nareas > 0) {
  405. int centroid;
  406. G_message(_("Buffering areas..."));
  407. for (area = 1; area <= nareas; area++) {
  408. int cat;
  409. G_percent(area, nareas, 2);
  410. if (!Vect_area_alive(&In, area))
  411. continue;
  412. centroid = Vect_get_area_centroid(&In, area);
  413. if (centroid == 0)
  414. continue;
  415. Vect_read_line(&In, NULL, Cats, centroid);
  416. if (field > 0 && !Vect_cats_in_constraint(Cats, field, cat_list))
  417. continue;
  418. Vect_reset_cats(CCats);
  419. for (i = 0; i < Cats->n_cats; i++) {
  420. if (field < 0 || Cats->field[i] == field) {
  421. Vect_cat_set(CCats, Cats->field[i], Cats->cat[i]);
  422. }
  423. }
  424. if (bufcol_opt->answer) {
  425. Vect_cat_get(Cats, field, &cat);
  426. ret = db_CatValArray_get_value_di(&cvarr, cat, &size_val);
  427. if (ret != DB_OK) {
  428. G_warning(_("No record for category %d in table <%s>"),
  429. cat, Fi->table);
  430. continue;
  431. }
  432. if (size_val < 0.0) {
  433. G_warning(_("Attribute is of invalid size (%.3f) for category %d"),
  434. size_val, cat);
  435. continue;
  436. }
  437. if (size_val == 0.0)
  438. continue;
  439. da = size_val * scale;
  440. db = da;
  441. dalpha = 0;
  442. unit_tolerance = fabs(tolerance * MIN(da, db));
  443. G_debug(2, " dynamic buffer size = %.2f", da);
  444. G_debug(2, _("The tolerance in map units: %g"),
  445. unit_tolerance);
  446. }
  447. #ifdef HAVE_GEOS
  448. if (use_geos)
  449. geos_buffer(&In, &Out, &Buf, area, GV_AREA, da,
  450. &si, CCats, &arr_bc, &buffers_count, &arr_bc_alloc,
  451. straight_flag->answer, nocaps_flag->answer);
  452. #endif
  453. if (!use_geos) {
  454. Vect_area_buffer2(&In, area, da, db, dalpha,
  455. !(straight_flag->answer),
  456. !(nocaps_flag->answer), unit_tolerance,
  457. &(arr_bc_pts.oPoints),
  458. &(arr_bc_pts.iPoints),
  459. &(arr_bc_pts.inner_count));
  460. Vect_write_line(&Out, GV_BOUNDARY, arr_bc_pts.oPoints, BCats);
  461. line_id = Vect_write_line(&Buf, GV_BOUNDARY, arr_bc_pts.oPoints, CCats);
  462. Vect_destroy_line_struct(arr_bc_pts.oPoints);
  463. /* add buffer to spatial index */
  464. Vect_get_line_box(&Buf, line_id, &bbox);
  465. Vect_spatial_index_add_item(&si, buffers_count, &bbox);
  466. arr_bc[buffers_count].outer = line_id;
  467. arr_bc[buffers_count].inner_count = arr_bc_pts.inner_count;
  468. if (arr_bc_pts.inner_count > 0) {
  469. arr_bc[buffers_count].inner = G_malloc(arr_bc_pts.inner_count * sizeof(int));
  470. for (i = 0; i < arr_bc_pts.inner_count; i++) {
  471. Vect_write_line(&Out, GV_BOUNDARY, arr_bc_pts.iPoints[i], BCats);
  472. line_id = Vect_write_line(&Buf, GV_BOUNDARY, arr_bc_pts.iPoints[i], BCats);
  473. Vect_destroy_line_struct(arr_bc_pts.iPoints[i]);
  474. arr_bc[buffers_count].inner[i] = line_id;
  475. }
  476. G_free(arr_bc_pts.iPoints);
  477. }
  478. buffers_count++;
  479. } /* native buffer end */
  480. }
  481. }
  482. /* Lines (and Points) */
  483. if (nlines > 0) {
  484. int ltype;
  485. G_message(_("Buffering features..."));
  486. if (da < 0 || db < 0) {
  487. G_warning(_("Negative distances are only supported for areas"));
  488. da = fabs(da);
  489. db = fabs(db);
  490. }
  491. nlines = Vect_get_num_lines(&In);
  492. for (line = 1; line <= nlines; line++) {
  493. int cat;
  494. G_debug(2, "line = %d", line);
  495. G_percent(line, nlines, 2);
  496. if (!Vect_line_alive(&In, line))
  497. continue;
  498. ltype = Vect_read_line(&In, Points, Cats, line);
  499. if (!(ltype & type))
  500. continue;
  501. if (field > 0 && !Vect_cats_in_constraint(Cats, field, cat_list))
  502. continue;
  503. Vect_reset_cats(CCats);
  504. for (i = 0; i < Cats->n_cats; i++) {
  505. if (field < 0 || Cats->field[i] == field) {
  506. Vect_cat_set(CCats, Cats->field[i], Cats->cat[i]);
  507. }
  508. }
  509. if (bufcol_opt->answer) {
  510. Vect_cat_get(Cats, field, &cat);
  511. ret = db_CatValArray_get_value_di(&cvarr, cat, &size_val);
  512. if (ret != DB_OK) {
  513. G_warning(_("No record for category %d in table <%s>"),
  514. cat, Fi->table);
  515. continue;
  516. }
  517. if (size_val < 0.0) {
  518. G_warning(_("Attribute is of invalid size (%.3f) for category %d"),
  519. size_val, cat);
  520. continue;
  521. }
  522. if (size_val == 0.0)
  523. continue;
  524. da = size_val * scale;
  525. if (da < 0) {
  526. G_warning(_("Negative distances are only supported for areas"));
  527. da = fabs(da);
  528. }
  529. db = da;
  530. dalpha = 0;
  531. unit_tolerance = tolerance * MIN(da, db);
  532. G_debug(2, " dynamic buffer size = %.2f", da);
  533. G_debug(2, _("The tolerance in map units: %g"),
  534. unit_tolerance);
  535. }
  536. Vect_line_prune(Points);
  537. if (ltype & GV_POINTS || Points->n_points == 1) {
  538. Vect_point_buffer2(Points->x[0], Points->y[0], da, db, dalpha,
  539. !(straight_flag->answer), unit_tolerance,
  540. &(arr_bc_pts.oPoints));
  541. Vect_write_line(&Out, GV_BOUNDARY, arr_bc_pts.oPoints, BCats);
  542. line_id = Vect_write_line(&Buf, GV_BOUNDARY, arr_bc_pts.oPoints, CCats);
  543. Vect_destroy_line_struct(arr_bc_pts.oPoints);
  544. /* add buffer to spatial index */
  545. Vect_get_line_box(&Buf, line_id, &bbox);
  546. Vect_spatial_index_add_item(&si, buffers_count, &bbox);
  547. arr_bc[buffers_count].outer = line_id;
  548. arr_bc[buffers_count].inner_count = 0;
  549. arr_bc[buffers_count].inner = NULL;
  550. buffers_count++;
  551. }
  552. else {
  553. #ifdef HAVE_GEOS
  554. if (use_geos)
  555. geos_buffer(&In, &Out, &Buf, line, type, da,
  556. &si, CCats, &arr_bc, &buffers_count, &arr_bc_alloc,
  557. straight_flag->answer, nocaps_flag->answer);
  558. #endif
  559. if (!use_geos) {
  560. Vect_line_buffer2(Points, da, db, dalpha,
  561. !(straight_flag->answer),
  562. !(nocaps_flag->answer), unit_tolerance,
  563. &(arr_bc_pts.oPoints),
  564. &(arr_bc_pts.iPoints),
  565. &(arr_bc_pts.inner_count));
  566. Vect_write_line(&Out, GV_BOUNDARY, arr_bc_pts.oPoints, BCats);
  567. line_id = Vect_write_line(&Buf, GV_BOUNDARY, arr_bc_pts.oPoints, CCats);
  568. Vect_destroy_line_struct(arr_bc_pts.oPoints);
  569. /* add buffer to spatial index */
  570. Vect_get_line_box(&Buf, line_id, &bbox);
  571. Vect_spatial_index_add_item(&si, buffers_count, &bbox);
  572. arr_bc[buffers_count].outer = line_id;
  573. arr_bc[buffers_count].inner_count = arr_bc_pts.inner_count;
  574. if (arr_bc_pts.inner_count > 0) {
  575. arr_bc[buffers_count].inner = G_malloc(arr_bc_pts.inner_count * sizeof(int));
  576. for (i = 0; i < arr_bc_pts.inner_count; i++) {
  577. Vect_write_line(&Out, GV_BOUNDARY, arr_bc_pts.iPoints[i], BCats);
  578. line_id = Vect_write_line(&Buf, GV_BOUNDARY, arr_bc_pts.iPoints[i], BCats);
  579. Vect_destroy_line_struct(arr_bc_pts.iPoints[i]);
  580. arr_bc[buffers_count].inner[i] = line_id;
  581. }
  582. G_free(arr_bc_pts.iPoints);
  583. }
  584. buffers_count++;
  585. } /* native buffer end */
  586. }
  587. }
  588. }
  589. #ifdef HAVE_GEOS
  590. finishGEOS();
  591. #endif
  592. G_message(_("Cleaning buffers..."));
  593. /* Break lines */
  594. G_message(_("Building parts of topology..."));
  595. Vect_build_partial(&Out, GV_BUILD_BASE);
  596. /* Warning: snapping must be done, otherwise colinear boundaries are not broken and
  597. * topology cannot be built (the same angle). But snapping distance must be very, very
  598. * small, otherwise counterclockwise boundaries can appear in areas outside the buffer.
  599. * I have done some tests on real data (projected) and threshold 1e-8 was not enough,
  600. * Snapping threshold 1e-7 seems to work. Don't increase until we find example
  601. * where it is not sufficient. RB */
  602. /* TODO: look at snapping threshold better, calculate some theoretical value to avoid
  603. * the same angles of lines at nodes, don't forget about LongLat data, probably
  604. * calculate different threshold for each map, depending on map's bounding box
  605. * and/or distance and tolerance */
  606. G_message(_("Snapping boundaries..."));
  607. Vect_snap_lines(&Out, GV_BOUNDARY, 1e-7, NULL);
  608. G_message(_("Breaking polygons..."));
  609. Vect_break_polygons(&Out, GV_BOUNDARY, NULL);
  610. G_message(_("Removing duplicates..."));
  611. Vect_remove_duplicates(&Out, GV_BOUNDARY, NULL);
  612. do {
  613. G_message(_("Breaking boundaries..."));
  614. Vect_break_lines(&Out, GV_BOUNDARY, NULL);
  615. G_message(_("Removing duplicates..."));
  616. Vect_remove_duplicates(&Out, GV_BOUNDARY, NULL);
  617. G_message(_("Cleaning boundaries at nodes"));
  618. } while (Vect_clean_small_angles_at_nodes(&Out, GV_BOUNDARY, NULL) > 0);
  619. /* Dangles and bridges don't seem to be necessary if snapping is small enough. */
  620. /* Still needed for larger buffer distances ? */
  621. Vect_build_partial(&Out, GV_BUILD_AREAS);
  622. G_message(_("Removing dangles..."));
  623. Vect_remove_dangles(&Out, GV_BOUNDARY, -1, NULL);
  624. G_message (_("Removing bridges..."));
  625. Vect_remove_bridges(&Out, NULL, NULL, NULL);
  626. G_message(_("Attaching islands..."));
  627. Vect_build_partial(&Out, GV_BUILD_ATTACH_ISLES);
  628. if (!cats_flag->answer) {
  629. /* Calculate new centroids for all areas */
  630. nareas = Vect_get_num_areas(&Out);
  631. Areas = (char *)G_calloc(nareas + 1, sizeof(char));
  632. G_message(_("Calculating centroids for all areas..."));
  633. G_percent(0, nareas, 2);
  634. for (area = 1; area <= nareas; area++) {
  635. double x, y;
  636. G_percent(area, nareas, 2);
  637. G_debug(3, "area = %d", area);
  638. if (!Vect_area_alive(&Out, area))
  639. continue;
  640. ret = Vect_get_point_in_area(&Out, area, &x, &y);
  641. if (ret < 0) {
  642. G_warning(_("Cannot calculate area centroid"));
  643. continue;
  644. }
  645. ret = point_in_buffer(arr_bc, &si, &Buf, x, y);
  646. if (ret) {
  647. G_debug(3, " -> in buffer");
  648. Areas[area] = 1;
  649. }
  650. }
  651. /* Make a list of boundaries to be deleted (both sides inside) */
  652. nlines = Vect_get_num_lines(&Out);
  653. G_debug(3, "nlines = %d", nlines);
  654. Lines = (char *)G_calloc(nlines + 1, sizeof(char));
  655. G_message(_("Generating list of boundaries to be deleted..."));
  656. for (line = 1; line <= nlines; line++) {
  657. int j, side[2], areas[2];
  658. G_percent(line, nlines, 2);
  659. G_debug(3, "line = %d", line);
  660. if (!Vect_line_alive(&Out, line))
  661. continue;
  662. Vect_get_line_areas(&Out, line, &side[0], &side[1]);
  663. for (j = 0; j < 2; j++) {
  664. if (side[j] == 0) { /* area/isle not build */
  665. areas[j] = 0;
  666. }
  667. else if (side[j] > 0) { /* area */
  668. areas[j] = side[j];
  669. }
  670. else { /* < 0 -> island */
  671. areas[j] = Vect_get_isle_area(&Out, abs(side[j]));
  672. }
  673. }
  674. G_debug(3, " areas = %d , %d -> Areas = %d, %d", areas[0], areas[1],
  675. Areas[areas[0]], Areas[areas[1]]);
  676. if (Areas[areas[0]] && Areas[areas[1]])
  677. Lines[line] = 1;
  678. }
  679. G_free(Areas);
  680. /* Delete boundaries */
  681. G_message(_("Deleting boundaries..."));
  682. for (line = 1; line <= nlines; line++) {
  683. G_percent(line, nlines, 2);
  684. if (!Vect_line_alive(&Out, line))
  685. continue;
  686. if (Lines[line]) {
  687. G_debug(3, " delete line %d", line);
  688. Vect_delete_line(&Out, line);
  689. }
  690. else {
  691. /* delete incorrect boundaries */
  692. int side[2];
  693. Vect_get_line_areas(&Out, line, &side[0], &side[1]);
  694. if (!side[0] && !side[1]) {
  695. G_debug(3, " delete line %d", line);
  696. Vect_delete_line(&Out, line);
  697. }
  698. }
  699. }
  700. G_free(Lines);
  701. }
  702. /* Create new centroids */
  703. Vect_reset_cats(Cats);
  704. Vect_cat_set(Cats, 1, 1);
  705. nareas = Vect_get_num_areas(&Out);
  706. G_message(_("Calculating centroids for areas..."));
  707. for (area = 1; area <= nareas; area++) {
  708. double x, y;
  709. G_percent(area, nareas, 2);
  710. G_debug(3, "area = %d", area);
  711. if (!Vect_area_alive(&Out, area))
  712. continue;
  713. ret = Vect_get_point_in_area(&Out, area, &x, &y);
  714. if (ret < 0) {
  715. G_warning(_("Unable to calculate centroid for area %d"), area);
  716. continue;
  717. }
  718. if (cats_flag->answer)
  719. ret = buffer_cats(arr_bc, &si, &Buf, x, y, Cats);
  720. else
  721. ret = point_in_buffer(arr_bc, &si, &Buf, x, y);
  722. if (ret) {
  723. Vect_reset_line(Points);
  724. Vect_append_point(Points, x, y, 0.);
  725. Vect_write_line(&Out, GV_CENTROID, Points, Cats);
  726. }
  727. }
  728. Vect_spatial_index_destroy(&si);
  729. Vect_close(&Buf);
  730. if (cats_flag->answer)
  731. Vect_copy_tables(&In, &Out, field);
  732. Vect_close(&In);
  733. Vect_build_partial(&Out, GV_BUILD_NONE);
  734. Vect_build(&Out);
  735. Vect_close(&Out);
  736. exit(EXIT_SUCCESS);
  737. }