PostGIS  3.1.6dev-r@@SVN_REVISION@@

◆ _lwt_AddEdge()

static LWT_ELEMID _lwt_AddEdge ( LWT_TOPOLOGY topo,
LWT_ELEMID  start_node,
LWT_ELEMID  end_node,
LWLINE geom,
int  skipChecks,
int  modFace 
)
static
Parameters
modFacecan be 0 - have two new faces replace a splitted face 1 - modify a splitted face, adding a new one -1 - do not check at all for face splitting

Definition at line 2300 of file lwgeom_topo.c.

2303 {
2304  LWT_ISO_EDGE newedge;
2305  LWGEOM *cleangeom;
2306  edgeend span; /* start point analisys */
2307  edgeend epan; /* end point analisys */
2308  POINT2D p1, pn, p2;
2309  POINTARRAY *pa;
2310  LWT_ELEMID node_ids[2];
2311  const LWPOINT *start_node_geom = NULL;
2312  const LWPOINT *end_node_geom = NULL;
2313  uint64_t num_nodes;
2314  LWT_ISO_NODE *endpoints;
2315  uint64_t i;
2316  int prev_left;
2317  int prev_right;
2318  LWT_ISO_EDGE seledge;
2319  LWT_ISO_EDGE updedge;
2320 
2321  if ( ! skipChecks )
2322  {
2323  /* curve must be simple */
2324  if ( ! lwgeom_is_simple(lwline_as_lwgeom(geom)) )
2325  {
2326  lwerror("SQL/MM Spatial exception - curve not simple");
2327  return -1;
2328  }
2329  }
2330 
2331  newedge.start_node = start_node;
2332  newedge.end_node = end_node;
2333  newedge.geom = geom;
2334  newedge.face_left = -1;
2335  newedge.face_right = -1;
2336  /* TODO: should do the repeated points removal in 2D space */
2337  cleangeom = lwgeom_remove_repeated_points( lwline_as_lwgeom(geom), 0 );
2338 
2339  pa = lwgeom_as_lwline(cleangeom)->points;
2340  if ( pa->npoints < 2 ) {
2341  lwgeom_free(cleangeom);
2342  lwerror("Invalid edge (no two distinct vertices exist)");
2343  return -1;
2344  }
2345 
2346  /* Initialize endpoint info (some of that ) */
2347  span.cwFace = span.ccwFace =
2348  epan.cwFace = epan.ccwFace = -1;
2349 
2350  /* Compute azimuth of first edge end on start node */
2351  getPoint2d_p(pa, 0, &p1);
2352  if ( ! _lwt_FirstDistinctVertex2D(pa, &p1, 0, 1, &pn) )
2353  {
2354  lwgeom_free(cleangeom);
2355  lwerror("Invalid edge (no two distinct vertices exist)");
2356  return -1;
2357  }
2358  if ( ! azimuth_pt_pt(&p1, &pn, &span.myaz) ) {
2359  lwgeom_free(cleangeom);
2360  lwerror("error computing azimuth of first edgeend [%.15g %.15g,%.15g %.15g]",
2361  p1.x, p1.y, pn.x, pn.y);
2362  return -1;
2363  }
2364  LWDEBUGF(1, "edge's start node is %g,%g", p1.x, p1.y);
2365 
2366  /* Compute azimuth of last edge end on end node */
2367  getPoint2d_p(pa, pa->npoints-1, &p2);
2368  if ( ! _lwt_FirstDistinctVertex2D(pa, &p2, pa->npoints-1, -1, &pn) )
2369  {
2370  lwgeom_free(cleangeom);
2371  /* This should never happen as we checked the edge while computing first edgend */
2372  lwerror("Invalid clean edge (no two distinct vertices exist) - should not happen");
2373  return -1;
2374  }
2375  lwgeom_free(cleangeom);
2376  if ( ! azimuth_pt_pt(&p2, &pn, &epan.myaz) ) {
2377  lwerror("error computing azimuth of last edgeend [%.15g %.15g,%.15g %.15g]",
2378  p2.x, p2.y, pn.x, pn.y);
2379  return -1;
2380  }
2381  LWDEBUGF(1, "edge's end node is %g,%g", p2.x, p2.y);
2382 
2383  /*
2384  * Check endpoints existence, match with Curve geometry
2385  * and get face information (if any)
2386  */
2387 
2388  if ( start_node != end_node ) {
2389  num_nodes = 2;
2390  node_ids[0] = start_node;
2391  node_ids[1] = end_node;
2392  } else {
2393  num_nodes = 1;
2394  node_ids[0] = start_node;
2395  }
2396 
2397  endpoints = lwt_be_getNodeById( topo, node_ids, &num_nodes, LWT_COL_NODE_ALL );
2398  if (num_nodes == UINT64_MAX)
2399  {
2400  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2401  return -1;
2402  }
2403  for ( i=0; i<num_nodes; ++i )
2404  {
2405  LWT_ISO_NODE* node = &(endpoints[i]);
2406  if ( node->containing_face != -1 )
2407  {
2408  if ( newedge.face_left == -1 )
2409  {
2410  newedge.face_left = newedge.face_right = node->containing_face;
2411  }
2412  else if ( newedge.face_left != node->containing_face )
2413  {
2414  _lwt_release_nodes(endpoints, num_nodes);
2415  lwerror("SQL/MM Spatial exception - geometry crosses an edge"
2416  " (endnodes in faces %" LWTFMT_ELEMID " and %" LWTFMT_ELEMID ")",
2417  newedge.face_left, node->containing_face);
2418  }
2419  }
2420 
2421  LWDEBUGF(1, "Node %d, with geom %p (looking for %d and %d)",
2422  node->node_id, node->geom, start_node, end_node);
2423  if ( node->node_id == start_node ) {
2424  start_node_geom = node->geom;
2425  }
2426  if ( node->node_id == end_node ) {
2427  end_node_geom = node->geom;
2428  }
2429  }
2430 
2431  if ( ! skipChecks )
2432  {
2433  if ( ! start_node_geom )
2434  {
2435  if ( num_nodes ) _lwt_release_nodes(endpoints, num_nodes);
2436  lwerror("SQL/MM Spatial exception - non-existent node");
2437  return -1;
2438  }
2439  else
2440  {
2441  pa = start_node_geom->point;
2442  getPoint2d_p(pa, 0, &pn);
2443  if ( ! p2d_same(&pn, &p1) )
2444  {
2445  if ( num_nodes ) _lwt_release_nodes(endpoints, num_nodes);
2446  lwerror("SQL/MM Spatial exception"
2447  " - start node not geometry start point."
2448  //" - start node not geometry start point (%g,%g != %g,%g).", pn.x, pn.y, p1.x, p1.y
2449  );
2450  return -1;
2451  }
2452  }
2453 
2454  if ( ! end_node_geom )
2455  {
2456  if ( num_nodes ) _lwt_release_nodes(endpoints, num_nodes);
2457  lwerror("SQL/MM Spatial exception - non-existent node");
2458  return -1;
2459  }
2460  else
2461  {
2462  pa = end_node_geom->point;
2463  getPoint2d_p(pa, 0, &pn);
2464  if ( ! p2d_same(&pn, &p2) )
2465  {
2466  if ( num_nodes ) _lwt_release_nodes(endpoints, num_nodes);
2467  lwerror("SQL/MM Spatial exception"
2468  " - end node not geometry end point."
2469  //" - end node not geometry end point (%g,%g != %g,%g).", pn.x, pn.y, p2.x, p2.y
2470  );
2471  return -1;
2472  }
2473  }
2474 
2475  if ( num_nodes ) _lwt_release_nodes(endpoints, num_nodes);
2476 
2477  if ( _lwt_CheckEdgeCrossing( topo, start_node, end_node, geom, 0 ) )
2478  return -1;
2479 
2480  } /* ! skipChecks */
2481 
2482  /*
2483  * All checks passed, time to prepare the new edge
2484  */
2485 
2486  newedge.edge_id = lwt_be_getNextEdgeId( topo );
2487  if ( newedge.edge_id == -1 ) {
2488  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2489  return -1;
2490  }
2491 
2492  /* Find adjacent edges to each endpoint */
2493  int isclosed = start_node == end_node;
2494  int found;
2495  found = _lwt_FindAdjacentEdges( topo, start_node, &span,
2496  isclosed ? &epan : NULL, -1 );
2497  if ( found ) {
2498  span.was_isolated = 0;
2499  newedge.next_right = span.nextCW ? span.nextCW : -newedge.edge_id;
2500  prev_left = span.nextCCW ? -span.nextCCW : newedge.edge_id;
2501  LWDEBUGF(1, "New edge %d is connected on start node, "
2502  "next_right is %d, prev_left is %d",
2503  newedge.edge_id, newedge.next_right, prev_left);
2504  if ( newedge.face_right == -1 ) {
2505  newedge.face_right = span.cwFace;
2506  }
2507  if ( newedge.face_left == -1 ) {
2508  newedge.face_left = span.ccwFace;
2509  }
2510  } else {
2511  span.was_isolated = 1;
2512  newedge.next_right = isclosed ? -newedge.edge_id : newedge.edge_id;
2513  prev_left = isclosed ? newedge.edge_id : -newedge.edge_id;
2514  LWDEBUGF(1, "New edge %d is isolated on start node, "
2515  "next_right is %d, prev_left is %d",
2516  newedge.edge_id, newedge.next_right, prev_left);
2517  }
2518 
2519  found = _lwt_FindAdjacentEdges( topo, end_node, &epan,
2520  isclosed ? &span : NULL, -1 );
2521  if ( found ) {
2522  epan.was_isolated = 0;
2523  newedge.next_left = epan.nextCW ? epan.nextCW : newedge.edge_id;
2524  prev_right = epan.nextCCW ? -epan.nextCCW : -newedge.edge_id;
2525  LWDEBUGF(1, "New edge %d is connected on end node, "
2526  "next_left is %d, prev_right is %d",
2527  newedge.edge_id, newedge.next_left, prev_right);
2528  if ( newedge.face_right == -1 ) {
2529  newedge.face_right = span.ccwFace;
2530  } else if ( modFace != -1 && newedge.face_right != epan.ccwFace ) {
2531  /* side-location conflict */
2532  lwerror("Side-location conflict: "
2533  "new edge starts in face"
2534  " %" LWTFMT_ELEMID " and ends in face"
2535  " %" LWTFMT_ELEMID,
2536  newedge.face_right, epan.ccwFace
2537  );
2538  return -1;
2539  }
2540  if ( newedge.face_left == -1 ) {
2541  newedge.face_left = span.cwFace;
2542  } else if ( modFace != -1 && newedge.face_left != epan.cwFace ) {
2543  /* side-location conflict */
2544  lwerror("Side-location conflict: "
2545  "new edge starts in face"
2546  " %" LWTFMT_ELEMID " and ends in face"
2547  " %" LWTFMT_ELEMID,
2548  newedge.face_left, epan.cwFace
2549  );
2550  return -1;
2551  }
2552  } else {
2553  epan.was_isolated = 1;
2554  newedge.next_left = isclosed ? newedge.edge_id : -newedge.edge_id;
2555  prev_right = isclosed ? -newedge.edge_id : newedge.edge_id;
2556  LWDEBUGF(1, "New edge %d is isolated on end node, "
2557  "next_left is %d, prev_right is %d",
2558  newedge.edge_id, newedge.next_left, prev_right);
2559  }
2560 
2561  /*
2562  * If we don't have faces setup by now we must have encountered
2563  * a malformed topology (no containing_face on isolated nodes, no
2564  * left/right faces on adjacent edges or mismatching values)
2565  */
2566  if ( newedge.face_left != newedge.face_right )
2567  {
2568  lwerror("Left(%" LWTFMT_ELEMID ")/right(%" LWTFMT_ELEMID ")"
2569  "faces mismatch: invalid topology ?",
2570  newedge.face_left, newedge.face_right);
2571  return -1;
2572  }
2573  else if ( newedge.face_left == -1 && modFace > -1 )
2574  {
2575  lwerror("Could not derive edge face from linked primitives:"
2576  " invalid topology ?");
2577  return -1;
2578  }
2579 
2580  /*
2581  * Insert the new edge, and update all linking
2582  */
2583 
2584  int ret = lwt_be_insertEdges(topo, &newedge, 1);
2585  if ( ret == -1 ) {
2586  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2587  return -1;
2588  } else if ( ret == 0 ) {
2589  lwerror("Insertion of split edge failed (no reason)");
2590  return -1;
2591  }
2592 
2593  int updfields;
2594 
2595  /* Link prev_left to us
2596  * (if it's not us already) */
2597  if ( llabs(prev_left) != newedge.edge_id )
2598  {
2599  if ( prev_left > 0 )
2600  {
2601  /* its next_left_edge is us */
2602  updfields = LWT_COL_EDGE_NEXT_LEFT;
2603  updedge.next_left = newedge.edge_id;
2604  seledge.edge_id = prev_left;
2605  }
2606  else
2607  {
2608  /* its next_right_edge is us */
2609  updfields = LWT_COL_EDGE_NEXT_RIGHT;
2610  updedge.next_right = newedge.edge_id;
2611  seledge.edge_id = -prev_left;
2612  }
2613 
2614  ret = lwt_be_updateEdges(topo,
2615  &seledge, LWT_COL_EDGE_EDGE_ID,
2616  &updedge, updfields,
2617  NULL, 0);
2618  if ( ret == -1 ) {
2619  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2620  return -1;
2621  }
2622  }
2623 
2624  /* Link prev_right to us
2625  * (if it's not us already) */
2626  if ( llabs(prev_right) != newedge.edge_id )
2627  {
2628  if ( prev_right > 0 )
2629  {
2630  /* its next_left_edge is -us */
2631  updfields = LWT_COL_EDGE_NEXT_LEFT;
2632  updedge.next_left = -newedge.edge_id;
2633  seledge.edge_id = prev_right;
2634  }
2635  else
2636  {
2637  /* its next_right_edge is -us */
2638  updfields = LWT_COL_EDGE_NEXT_RIGHT;
2639  updedge.next_right = -newedge.edge_id;
2640  seledge.edge_id = -prev_right;
2641  }
2642 
2643  ret = lwt_be_updateEdges(topo,
2644  &seledge, LWT_COL_EDGE_EDGE_ID,
2645  &updedge, updfields,
2646  NULL, 0);
2647  if ( ret == -1 ) {
2648  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2649  return -1;
2650  }
2651  }
2652 
2653  /* NOT IN THE SPECS...
2654  * set containing_face = null for start_node and end_node
2655  * if they where isolated
2656  *
2657  */
2658  LWT_ISO_NODE updnode, selnode;
2659  updnode.containing_face = -1;
2660  if ( span.was_isolated )
2661  {
2662  selnode.node_id = start_node;
2663  ret = lwt_be_updateNodes(topo,
2664  &selnode, LWT_COL_NODE_NODE_ID,
2665  &updnode, LWT_COL_NODE_CONTAINING_FACE,
2666  NULL, 0);
2667  if ( ret == -1 ) {
2668  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2669  return -1;
2670  }
2671  }
2672  if ( epan.was_isolated )
2673  {
2674  selnode.node_id = end_node;
2675  ret = lwt_be_updateNodes(topo,
2676  &selnode, LWT_COL_NODE_NODE_ID,
2677  &updnode, LWT_COL_NODE_CONTAINING_FACE,
2678  NULL, 0);
2679  if ( ret == -1 ) {
2680  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2681  return -1;
2682  }
2683  }
2684 
2685  /* Check face splitting, if required */
2686 
2687  if ( modFace > -1 ) {
2688 
2689  if ( ! isclosed && ( epan.was_isolated || span.was_isolated ) )
2690  {
2691  LWDEBUG(1, "New edge is dangling, so it cannot split any face");
2692  return newedge.edge_id; /* no split */
2693  }
2694 
2695  int newface1 = -1;
2696 
2697  /* IDEA: avoid building edge ring if input is closed, which means we
2698  * know in advance it splits a face */
2699 
2700  if ( ! modFace )
2701  {
2702  newface1 = _lwt_AddFaceSplit( topo, -newedge.edge_id, newedge.face_left, 0 );
2703  if ( newface1 == 0 ) {
2704  LWDEBUG(1, "New edge does not split any face");
2705  return newedge.edge_id; /* no split */
2706  }
2707  }
2708 
2709  int newface = _lwt_AddFaceSplit( topo, newedge.edge_id,
2710  newedge.face_left, 0 );
2711  if ( modFace )
2712  {
2713  if ( newface == 0 ) {
2714  LWDEBUG(1, "New edge does not split any face");
2715  return newedge.edge_id; /* no split */
2716  }
2717 
2718  if ( newface < 0 )
2719  {
2720  /* face on the left is the universe face */
2721  /* must be forming a maximal ring in universal face */
2722  newface = _lwt_AddFaceSplit( topo, -newedge.edge_id,
2723  newedge.face_left, 0 );
2724  if ( newface < 0 ) return newedge.edge_id; /* no split */
2725  }
2726  else
2727  {
2728  _lwt_AddFaceSplit( topo, -newedge.edge_id, newedge.face_left, 1 );
2729  }
2730  }
2731 
2732  /*
2733  * Update topogeometries, if needed
2734  */
2735  if ( newedge.face_left != 0 )
2736  {
2737  ret = lwt_be_updateTopoGeomFaceSplit(topo, newedge.face_left,
2738  newface, newface1);
2739  if ( ret == 0 ) {
2740  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2741  return -1;
2742  }
2743 
2744  if ( ! modFace )
2745  {
2746  /* drop old face from the face table */
2747  ret = lwt_be_deleteFacesById(topo, &(newedge.face_left), 1);
2748  if ( ret == -1 ) {
2749  lwerror("Backend error: %s", lwt_be_lastErrorMessage(topo->be_iface));
2750  return -1;
2751  }
2752  }
2753  }
2754 
2755  } // end of face split checking
2756 
2757  return newedge.edge_id;
2758 }
LWLINE * lwgeom_as_lwline(const LWGEOM *lwgeom)
Definition: lwgeom.c:162
LWGEOM * lwline_as_lwgeom(const LWLINE *obj)
Definition: lwgeom.c:322
int azimuth_pt_pt(const POINT2D *p1, const POINT2D *p2, double *ret)
Compute the azimuth of segment AB in radians.
Definition: measures.c:2461
void lwgeom_free(LWGEOM *geom)
Definition: lwgeom.c:1138
int lwgeom_is_simple(const LWGEOM *lwgeom)
int getPoint2d_p(const POINTARRAY *pa, uint32_t n, POINT2D *point)
Definition: lwgeom_api.c:343
LWGEOM * lwgeom_remove_repeated_points(const LWGEOM *in, double tolerance)
Definition: lwgeom.c:1454
int p2d_same(const POINT2D *p1, const POINT2D *p2)
Definition: lwalgorithm.c:50
LWT_INT64 LWT_ELEMID
Identifier of topology element.
#define LWT_COL_EDGE_NEXT_RIGHT
#define LWT_COL_NODE_CONTAINING_FACE
#define LWT_COL_EDGE_EDGE_ID
Edge fields.
#define LWT_COL_EDGE_NEXT_LEFT
#define LWT_COL_NODE_NODE_ID
Node fields.
#define LWT_COL_NODE_ALL
#define LWDEBUG(level, msg)
Definition: lwgeom_log.h:83
#define LWDEBUGF(level, msg,...)
Definition: lwgeom_log.h:88
void lwerror(const char *fmt,...)
Write a notice out to the error handler.
Definition: lwutil.c:190
const char * lwt_be_lastErrorMessage(const LWT_BE_IFACE *be)
Definition: lwgeom_topo.c:119
static int lwt_be_deleteFacesById(const LWT_TOPOLOGY *topo, const LWT_ELEMID *ids, uint64_t numelems)
Definition: lwgeom_topo.c:202
static int _lwt_FirstDistinctVertex2D(const POINTARRAY *pa, POINT2D *ref, int from, int dir, POINT2D *op)
Definition: lwgeom_topo.c:1425
LWT_ELEMID lwt_be_getNextEdgeId(LWT_TOPOLOGY *topo)
Definition: lwgeom_topo.c:214
static int lwt_be_updateTopoGeomFaceSplit(LWT_TOPOLOGY *topo, LWT_ELEMID split_face, LWT_ELEMID new_face1, LWT_ELEMID new_face2)
Definition: lwgeom_topo.c:336
static int _lwt_CheckEdgeCrossing(LWT_TOPOLOGY *topo, LWT_ELEMID start_node, LWT_ELEMID end_node, const LWLINE *geom, LWT_ELEMID myself)
Definition: lwgeom_topo.c:597
static void _lwt_release_nodes(LWT_ISO_NODE *nodes, int num_nodes)
Definition: lwgeom_topo.c:461
int lwt_be_updateEdges(LWT_TOPOLOGY *topo, const LWT_ISO_EDGE *sel_edge, int sel_fields, const LWT_ISO_EDGE *upd_edge, int upd_fields, const LWT_ISO_EDGE *exc_edge, int exc_fields)
Definition: lwgeom_topo.c:267
static int _lwt_FindAdjacentEdges(LWT_TOPOLOGY *topo, LWT_ELEMID node, edgeend *data, edgeend *other, int myedge_id)
Definition: lwgeom_topo.c:1522
LWT_ISO_NODE * lwt_be_getNodeById(LWT_TOPOLOGY *topo, const LWT_ELEMID *ids, uint64_t *numelems, int fields)
Definition: lwgeom_topo.c:155
static LWT_ELEMID _lwt_AddFaceSplit(LWT_TOPOLOGY *topo, LWT_ELEMID sedge, LWT_ELEMID face, int mbr_only)
Definition: lwgeom_topo.c:1887
int lwt_be_insertEdges(LWT_TOPOLOGY *topo, LWT_ISO_EDGE *edge, uint64_t numelems)
Definition: lwgeom_topo.c:261
#define LWTFMT_ELEMID
Definition: lwgeom_topo.c:43
static int lwt_be_updateNodes(LWT_TOPOLOGY *topo, const LWT_ISO_NODE *sel_node, int sel_fields, const LWT_ISO_NODE *upd_node, int upd_fields, const LWT_ISO_NODE *exc_node, int exc_fields)
Definition: lwgeom_topo.c:279
POINTARRAY * points
Definition: liblwgeom.h:497
POINTARRAY * point
Definition: liblwgeom.h:485
LWT_ELEMID face_right
LWT_ELEMID next_right
LWT_ELEMID end_node
LWT_ELEMID face_left
LWLINE * geom
LWT_ELEMID next_left
LWT_ELEMID edge_id
LWT_ELEMID start_node
LWT_ELEMID node_id
LWT_ELEMID containing_face
LWPOINT * geom
const LWT_BE_IFACE * be_iface
double y
Definition: liblwgeom.h:404
double x
Definition: liblwgeom.h:404
uint32_t npoints
Definition: liblwgeom.h:441
double myaz
Definition: lwgeom_topo.c:1412
LWT_ELEMID nextCCW
Definition: lwgeom_topo.c:1408
LWT_ELEMID ccwFace
Definition: lwgeom_topo.c:1410
int was_isolated
Definition: lwgeom_topo.c:1411
LWT_ELEMID cwFace
Definition: lwgeom_topo.c:1406
LWT_ELEMID nextCW
Definition: lwgeom_topo.c:1404

References _lwt_AddFaceSplit(), _lwt_CheckEdgeCrossing(), _lwt_FindAdjacentEdges(), _lwt_FirstDistinctVertex2D(), _lwt_release_nodes(), azimuth_pt_pt(), LWT_TOPOLOGY_T::be_iface, edgeend_t::ccwFace, LWT_ISO_NODE::containing_face, edgeend_t::cwFace, LWT_ISO_EDGE::edge_id, LWT_ISO_EDGE::end_node, LWT_ISO_EDGE::face_left, LWT_ISO_EDGE::face_right, LWT_ISO_NODE::geom, LWT_ISO_EDGE::geom, getPoint2d_p(), LWDEBUG, LWDEBUGF, lwerror(), lwgeom_as_lwline(), lwgeom_free(), lwgeom_is_simple(), lwgeom_remove_repeated_points(), lwline_as_lwgeom(), lwt_be_deleteFacesById(), lwt_be_getNextEdgeId(), lwt_be_getNodeById(), lwt_be_insertEdges(), lwt_be_lastErrorMessage(), lwt_be_updateEdges(), lwt_be_updateNodes(), lwt_be_updateTopoGeomFaceSplit(), LWT_COL_EDGE_EDGE_ID, LWT_COL_EDGE_NEXT_LEFT, LWT_COL_EDGE_NEXT_RIGHT, LWT_COL_NODE_ALL, LWT_COL_NODE_CONTAINING_FACE, LWT_COL_NODE_NODE_ID, LWTFMT_ELEMID, edgeend_t::myaz, LWT_ISO_EDGE::next_left, LWT_ISO_EDGE::next_right, edgeend_t::nextCCW, edgeend_t::nextCW, LWT_ISO_NODE::node_id, POINTARRAY::npoints, p2d_same(), LWPOINT::point, LWLINE::points, LWT_ISO_EDGE::start_node, edgeend_t::was_isolated, POINT2D::x, and POINT2D::y.

Referenced by _lwt_AddLineEdge(), lwt_AddEdgeModFace(), and lwt_AddEdgeNewFaces().

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