PostGIS 3.6.2dev-r@@SVN_REVISION@@
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◆ lwt_ChangeEdgeGeom()

int lwt_ChangeEdgeGeom ( LWT_TOPOLOGY topo,
LWT_ELEMID  edge,
LWLINE curve 
)

Changes the shape of an edge without affecting the topology structure.

For ST_ChangeEdgeGeom

Parameters
topothe topology to operate on
curvethe edge geometry
Returns
0 on success, -1 on error (liblwgeom error handler will be invoked with error message)

Definition at line 3260 of file lwgeom_topo.c.

3261{
3262 LWT_ISO_EDGE *oldedge;
3263 LWT_ISO_EDGE newedge;
3264 POINT2D p1, p2, pt;
3265 uint64_t i;
3266 int isclosed = 0;
3267 int leftRingIsCCW = -1;
3268
3269 /* curve must be simple */
3270 if ( ! lwgeom_is_simple(lwline_as_lwgeom(geom)) )
3271 {
3272 lwerror("SQL/MM Spatial exception - curve not simple");
3273 return -1;
3274 }
3275
3276 i = 1;
3277 oldedge = lwt_be_getEdgeById(topo, &edge_id, &i, LWT_COL_EDGE_ALL);
3278 if ( ! oldedge )
3279 {
3280 LWDEBUGF(1, "lwt_ChangeEdgeGeom: "
3281 "lwt_be_getEdgeById returned NULL and set i=%llu", i);
3282 if (i == UINT64_MAX)
3283 {
3285 return -1;
3286 }
3287 else if ( i == 0 )
3288 {
3289 lwerror("SQL/MM Spatial exception - non-existent edge %"
3290 LWTFMT_ELEMID, edge_id);
3291 return -1;
3292 }
3293 else
3294 {
3295 lwerror("Backend coding error: getEdgeById callback returned NULL "
3296 "but numelements output parameter has value %" PRIu64 " "
3297 "(expected 0 or 1)", i);
3298 return -1;
3299 }
3300 }
3301
3302 LWDEBUGF(1, "lwt_ChangeEdgeGeom: "
3303 "old edge has %d points, new edge has %d points",
3304 oldedge->geom->points->npoints, geom->points->npoints);
3305
3306 /*
3307 * e) Check StartPoint consistency
3308 */
3309 getPoint2d_p(oldedge->geom->points, 0, &p1);
3310 getPoint2d_p(geom->points, 0, &pt);
3311 if ( ! P2D_SAME_STRICT(&p1, &pt) )
3312 {
3313 _lwt_release_edges(oldedge, 1);
3314 lwerror("SQL/MM Spatial exception - "
3315 "start node not geometry start point.");
3316 return -1;
3317 }
3318
3319 /*
3320 * f) Check EndPoint consistency
3321 */
3322 if ( oldedge->geom->points->npoints < 2 )
3323 {
3324 _lwt_release_edges(oldedge, 1);
3325 lwerror("Corrupted topology: edge %" LWTFMT_ELEMID
3326 " has less than 2 vertices", oldedge->edge_id);
3327 return -1;
3328 }
3329 getPoint2d_p(oldedge->geom->points, oldedge->geom->points->npoints-1, &p2);
3330 if ( geom->points->npoints < 2 )
3331 {
3332 _lwt_release_edges(oldedge, 1);
3333 lwerror("Invalid edge: less than 2 vertices");
3334 return -1;
3335 }
3336 getPoint2d_p(geom->points, geom->points->npoints-1, &pt);
3337 if ( ! P2D_SAME_STRICT(&pt, &p2) )
3338 {
3339 _lwt_release_edges(oldedge, 1);
3340 lwerror("SQL/MM Spatial exception - "
3341 "end node not geometry end point.");
3342 return -1;
3343 }
3344
3345 /* Not in the specs:
3346 * if the edge is closed, check we didn't change winding !
3347 * (should be part of isomorphism checking)
3348 */
3349 if ( oldedge->start_node == oldedge->end_node )
3350 {
3351 isclosed = 1;
3352#if 1 /* TODO: this is actually bogus as a test */
3353 /* check for valid edge (distinct vertices must exist) */
3354 if ( ! _lwt_GetInteriorEdgePoint(geom, &pt) )
3355 {
3356 _lwt_release_edges(oldedge, 1);
3357 lwerror("Invalid edge (no two distinct vertices exist)");
3358 return -1;
3359 }
3360#endif
3361
3362 if ( ptarray_isccw(oldedge->geom->points) !=
3363 ptarray_isccw(geom->points) )
3364 {
3365 _lwt_release_edges(oldedge, 1);
3366 lwerror("Edge twist at node POINT(%g %g)", p1.x, p1.y);
3367 return -1;
3368 }
3369 }
3370
3371 if ( _lwt_CheckEdgeCrossing(topo, oldedge->start_node,
3372 oldedge->end_node, geom, edge_id ) )
3373 {
3374 /* would have called lwerror already, leaking :( */
3375 _lwt_release_edges(oldedge, 1);
3376 return -1;
3377 }
3378
3379 LWDEBUG(1, "lwt_ChangeEdgeGeom: "
3380 "edge crossing check passed ");
3381
3382 /*
3383 * Not in the specs:
3384 * Check topological isomorphism
3385 */
3386
3387 /* Check that the "motion range" doesn't include any node */
3388 // 1. compute combined bbox of old and new edge
3389 GBOX mbox; /* motion box */
3390 lwgeom_add_bbox((LWGEOM*)oldedge->geom); /* just in case */
3391 lwgeom_add_bbox((LWGEOM*)geom); /* just in case */
3392 gbox_union(oldedge->geom->bbox, geom->bbox, &mbox);
3393 // 2. fetch all nodes in the combined box
3394 LWT_ISO_NODE *nodes;
3395 uint64_t numnodes;
3396 nodes = lwt_be_getNodeWithinBox2D(topo, &mbox, &numnodes,
3397 LWT_COL_NODE_ALL, 0);
3398 LWDEBUGF(1, "lwt_be_getNodeWithinBox2D returned %llu nodes", numnodes);
3399 if (numnodes == UINT64_MAX)
3400 {
3401 _lwt_release_edges(oldedge, 1);
3403 return -1;
3404 }
3405 // 3. if any node beside endnodes are found:
3406 if ( numnodes > ( 1 + isclosed ? 0 : 1 ) )
3407 {{
3408 // 3.2. bail out if any node is in one and not the other
3409 for (i=0; i<numnodes; ++i)
3410 {
3411 LWT_ISO_NODE *n = &(nodes[i]);
3412 if ( n->node_id == oldedge->start_node ) continue;
3413 if ( n->node_id == oldedge->end_node ) continue;
3414 const POINT2D *pt = getPoint2d_cp(n->geom->point, 0);
3415 int ocont = ptarray_contains_point_partial(oldedge->geom->points, pt, isclosed, NULL) == LW_INSIDE;
3416 int ncont = ptarray_contains_point_partial(geom->points, pt, isclosed, NULL) == LW_INSIDE;
3417 if (ocont != ncont)
3418 {
3419 size_t sz;
3420 char *wkt = lwgeom_to_wkt(lwpoint_as_lwgeom(n->geom), WKT_ISO, 15, &sz);
3421 _lwt_release_nodes(nodes, numnodes);
3422 lwerror("Edge motion collision at %s", wkt);
3423 lwfree(wkt); /* would not necessarely reach this point */
3424 return -1;
3425 }
3426 }
3427 }}
3428 if ( numnodes ) _lwt_release_nodes(nodes, numnodes);
3429
3430 LWDEBUG(1, "nodes containment check passed");
3431
3432 /*
3433 * Check edge adjacency before
3434 * TODO: can be optimized to gather azimuths of all edge ends once
3435 */
3436
3437 edgeend span_pre, epan_pre;
3438 /* initialize span_pre.myaz and epan_pre.myaz with existing edge */
3439 int res = _lwt_InitEdgeEndByLine(&span_pre, &epan_pre, oldedge->geom, &p1, &p2);
3440 if (res)
3441 return -1; /* lwerror should have been raised */
3442 _lwt_FindAdjacentEdges( topo, oldedge->start_node, &span_pre,
3443 isclosed ? &epan_pre : NULL, edge_id );
3444 _lwt_FindAdjacentEdges( topo, oldedge->end_node, &epan_pre,
3445 isclosed ? &span_pre : NULL, edge_id );
3446
3447 LWDEBUGF(1, "edges adjacent to old edge are %" LWTFMT_ELEMID
3448 " and %" LWTFMT_ELEMID " (first point), %" LWTFMT_ELEMID
3449 " and %" LWTFMT_ELEMID " (last point)",
3450 span_pre.nextCW, span_pre.nextCCW,
3451 epan_pre.nextCW, epan_pre.nextCCW);
3452
3453 /* If the same edge is both on CW and CCW direction on both start
3454 * and end points we need to verify winding of the left and right
3455 * rings to verify we didn't twist.
3456 * See https://trac.osgeo.org/postgis/ticket/5787
3457 *
3458 * NOTE: this could probably replace the "isclosed" test.
3459 *
3460 * NOTE: if either start or end node had different CW and CCW
3461 * edges a twist would be caught in the previous check.
3462 */
3463 if ( ! isclosed &&
3464 oldedge->face_left != oldedge->face_right &&
3465 span_pre.nextCW == span_pre.nextCCW &&
3466 epan_pre.nextCW == epan_pre.nextCCW )
3467 {{
3468 uint64_t num_signed_edge_ids;
3469 LWT_ELEMID *signed_edge_ids;
3470 LWPOLY *shell;
3471
3472 LWDEBUG(1, "Twist check before");
3473 signed_edge_ids = lwt_be_getRingEdges(topo, edge_id, &num_signed_edge_ids, 0);
3474 /* Get winding of left face ring */
3475 if (!signed_edge_ids)
3476 {
3477 //PGTOPO_BE_ERRORF("no ring edges for edge %" LWTFMT_ELEMID, sedge);
3479 return -1;
3480 }
3481 LWDEBUGF(1, "getRingEdges returned %llu edges", num_signed_edge_ids);
3482
3483 shell = _lwt_MakeRingShell(topo, signed_edge_ids, num_signed_edge_ids);
3484 if ( ! shell ) {
3485 lwfree( signed_edge_ids );
3486 /* ring_edges should be NULL */
3487 lwerror("Could not create ring shell: %s", lwt_be_lastErrorMessage(topo->be_iface));
3488 return -1;
3489 }
3490
3491 const POINTARRAY *pa = shell->rings[0];
3492 if ( ! ptarray_is_closed_2d(pa) )
3493 {
3494 lwpoly_free(shell);
3495 lwfree( signed_edge_ids );
3496 lwerror("Corrupted topology: ring of edge %" LWTFMT_ELEMID
3497 " is geometrically not-closed", edge_id);
3498 return -1;
3499 }
3500
3501 leftRingIsCCW = ptarray_isccw(pa);
3502 lwpoly_free(shell);
3503 lwfree( signed_edge_ids );
3504
3505 LWDEBUGF(1, "Ring of edge %" LWTFMT_ELEMID " is %sclockwise", edge_id, leftRingIsCCW ? "counter" : "");
3506 }}
3507
3508
3509 /* update edge geometry */
3510 newedge.edge_id = edge_id;
3511 newedge.geom = geom;
3512 res = lwt_be_updateEdgesById(topo, &newedge, 1, LWT_COL_EDGE_GEOM);
3513 if (res == -1)
3514 {
3515 _lwt_release_edges(oldedge, 1);
3517 return -1;
3518 }
3519 if (!res)
3520 {
3521 _lwt_release_edges(oldedge, 1);
3522 lwerror("Unexpected error: %" PRIu64 " edges updated when expecting 1", i);
3523 return -1;
3524 }
3525
3526 /*
3527 * Check edge adjacency after
3528 */
3529 edgeend span_post, epan_post;
3530 /* initialize epan_post.myaz and epan_post.myaz */
3531 res = _lwt_InitEdgeEndByLine(&span_post, &epan_post, geom, &p1, &p2);
3532 if (res)
3533 return -1; /* lwerror should have been raised */
3534 _lwt_FindAdjacentEdges( topo, oldedge->start_node, &span_post,
3535 isclosed ? &epan_post : NULL, edge_id );
3536 _lwt_FindAdjacentEdges( topo, oldedge->end_node, &epan_post,
3537 isclosed ? &span_post : NULL, edge_id );
3538
3539 LWDEBUGF(1, "edges adjacent to new edge are %" LWTFMT_ELEMID
3540 " and %" LWTFMT_ELEMID " (first point), %" LWTFMT_ELEMID
3541 " and %" LWTFMT_ELEMID " (last point)",
3542 span_pre.nextCW, span_pre.nextCCW,
3543 epan_pre.nextCW, epan_pre.nextCCW);
3544
3545
3546 /* Bail out if next CW or CCW edge on start node changed */
3547 if ( span_pre.nextCW != span_post.nextCW ||
3548 span_pre.nextCCW != span_post.nextCCW )
3549 {{
3550 LWT_ELEMID nid = oldedge->start_node;
3551 _lwt_release_edges(oldedge, 1);
3552 lwerror("Edge changed disposition around start node %"
3553 LWTFMT_ELEMID, nid);
3554 return -1;
3555 }}
3556
3557 /* Bail out if next CW or CCW edge on end node changed */
3558 if ( epan_pre.nextCW != epan_post.nextCW ||
3559 epan_pre.nextCCW != epan_post.nextCCW )
3560 {{
3561 LWT_ELEMID nid = oldedge->end_node;
3562 _lwt_release_edges(oldedge, 1);
3563 lwerror("Edge changed disposition around end node %"
3564 LWTFMT_ELEMID, nid);
3565 return -1;
3566 }}
3567
3568 /* Check winding of left face ring did not change */
3569 if ( leftRingIsCCW != -1 )
3570 {{
3571 uint64_t num_signed_edge_ids;
3572 LWT_ELEMID *signed_edge_ids;
3573 LWPOLY *shell;
3574 int isCCW;
3575
3576 LWDEBUG(1, "Twist check after");
3577 signed_edge_ids = lwt_be_getRingEdges(topo, edge_id, &num_signed_edge_ids, 0);
3578 /* Get winding of left face ring */
3579 if (!signed_edge_ids)
3580 {
3581 //PGTOPO_BE_ERRORF("no ring edges for edge %" LWTFMT_ELEMID, sedge);
3583 return -1;
3584 }
3585 LWDEBUGF(1, "getRingEdges returned %llu edges", num_signed_edge_ids);
3586
3587 shell = _lwt_MakeRingShell(topo, signed_edge_ids, num_signed_edge_ids);
3588 if ( ! shell ) {
3589 lwfree( signed_edge_ids );
3590 /* ring_edges should be NULL */
3591 lwerror("Could not create ring shell: %s", lwt_be_lastErrorMessage(topo->be_iface));
3592 return -1;
3593 }
3594
3595 const POINTARRAY *pa = shell->rings[0];
3596 if ( ! ptarray_is_closed_2d(pa) )
3597 {
3598 lwpoly_free(shell);
3599 lwfree( signed_edge_ids );
3600 lwerror("Corrupted topology: ring of edge %" LWTFMT_ELEMID
3601 " is geometrically not-closed", edge_id);
3602 return -1;
3603 }
3604
3605 isCCW = ptarray_isccw(pa);
3606 lwpoly_free(shell);
3607 lwfree( signed_edge_ids );
3608
3609 if ( isCCW != leftRingIsCCW )
3610 {
3611 _lwt_release_edges(oldedge, 1);
3612 lwerror("Edge ring changes winding");
3613 return -1;
3614 }
3615 }}
3616
3617 /*
3618 -- Update faces MBR of left and right faces
3619 -- TODO: think about ways to optimize this part, like see if
3620 -- the old edge geometry participated in the definition
3621 -- of the current MBR (for shrinking) or the new edge MBR
3622 -- would be larger than the old face MBR...
3623 --
3624 */
3625 LWGEOM *oldgeom = lwline_as_lwgeom(oldedge->geom);
3626 LWGEOM *newgeom = lwline_as_lwgeom(geom);
3627 lwgeom_refresh_bbox(oldgeom); /* Ensure we use a fit mbr, see #5709 -- TODO: fix this at lower level */
3628 lwgeom_refresh_bbox(newgeom); /* Ensure we use a fit mbr, see #5709 -- TODO: fix this at lower level */
3629 const GBOX* oldbox = lwgeom_get_bbox(oldgeom);
3630 const GBOX* newbox = lwgeom_get_bbox(newgeom);
3631 if ( ! gbox_same(oldbox, newbox) )
3632 {
3633 GBOX* updatedBox;
3634 uint64_t facestoupdate = 0;
3635 LWT_ISO_FACE faces[2];
3636 if ( oldedge->face_left > 0 )
3637 {
3638 updatedBox = lwt_be_computeFaceMBR(topo, oldedge->face_left);
3639 if ( ! updatedBox )
3640 {
3641 lwerror("Corrupted topology: face %" LWTFMT_ELEMID
3642 ", left of edge %" LWTFMT_ELEMID ", has no bbox",
3643 oldedge->face_left, edge_id);
3644 return -1;
3645 }
3646 faces[facestoupdate].face_id = oldedge->face_left;
3647 /* ownership transferred to faces[] */
3648 faces[facestoupdate++].mbr = updatedBox;
3649 }
3650 if ( oldedge->face_right > 0
3651 /* no need to update twice the same face.. */
3652 && oldedge->face_right != oldedge->face_left )
3653 {
3654 updatedBox = lwt_be_computeFaceMBR(topo, oldedge->face_right);
3655 if ( ! updatedBox )
3656 {
3657 lwerror("Corrupted topology: face %"
3658 LWTFMT_ELEMID ", right of edge %" LWTFMT_ELEMID ", has no bbox",
3659 oldedge->face_right, edge_id);
3660 return -1;
3661 }
3662 faces[facestoupdate].face_id = oldedge->face_right;
3663 /* ownership transferred to faces[] */
3664 faces[facestoupdate++].mbr = updatedBox;
3665 }
3666 LWDEBUGF(1, "%llu faces to update", facestoupdate);
3667 if ( facestoupdate )
3668 {
3669 uint64_t updatedFaces = lwt_be_updateFacesById(topo, &(faces[0]), facestoupdate);
3670 if (updatedFaces != facestoupdate)
3671 {
3672 while ( facestoupdate-- ) lwfree(faces[facestoupdate].mbr);
3673 _lwt_release_edges(oldedge, 1);
3674 if (updatedFaces == UINT64_MAX)
3676 else
3677 lwerror("Unexpected error: %" PRIu64 " faces updated when expecting 1", updatedFaces);
3678 return -1;
3679 }
3680 }
3681 while ( facestoupdate-- ) lwfree(faces[facestoupdate].mbr);
3682 }
3683 else
3684 {
3685 LWDEBUG(1, "BBOX of changed edge did not change");
3686 }
3687
3688 LWDEBUG(1, "all done, cleaning up edges");
3689
3690 _lwt_release_edges(oldedge, 1);
3691 return 0; /* success */
3692}
int gbox_same(const GBOX *g1, const GBOX *g2)
Check if 2 given Gbox are the same.
Definition gbox.c:164
int gbox_union(const GBOX *g1, const GBOX *g2, GBOX *gout)
Update the output GBOX to be large enough to include both inputs.
Definition gbox.c:135
void lwgeom_refresh_bbox(LWGEOM *lwgeom)
Drop current bbox and calculate a fresh one.
Definition lwgeom.c:707
LWGEOM * lwpoint_as_lwgeom(const LWPOINT *obj)
Definition lwgeom.c:344
char * lwgeom_to_wkt(const LWGEOM *geom, uint8_t variant, int precision, size_t *size_out)
WKT emitter function.
Definition lwout_wkt.c:708
int lwgeom_is_simple(const LWGEOM *lwgeom)
int getPoint2d_p(const POINTARRAY *pa, uint32_t n, POINT2D *point)
Definition lwgeom_api.c:342
void lwfree(void *mem)
Definition lwutil.c:248
LWGEOM * lwline_as_lwgeom(const LWLINE *obj)
Definition lwgeom.c:339
#define WKT_ISO
Definition liblwgeom.h:2216
int ptarray_is_closed_2d(const POINTARRAY *pa)
Definition ptarray.c:710
void lwpoly_free(LWPOLY *poly)
Definition lwpoly.c:175
const GBOX * lwgeom_get_bbox(const LWGEOM *lwgeom)
Get a non-empty geometry bounding box, computing and caching it if not already there.
Definition lwgeom.c:743
void lwgeom_add_bbox(LWGEOM *lwgeom)
Compute a bbox if not already computed.
Definition lwgeom.c:695
int ptarray_contains_point_partial(const POINTARRAY *pa, const POINT2D *pt, int check_closed, int *winding_number)
Definition ptarray.c:1031
#define LW_INSIDE
Constants for point-in-polygon return values.
int ptarray_isccw(const POINTARRAY *pa)
Definition ptarray.c:1174
#define P2D_SAME_STRICT(a, b)
LWT_INT64 LWT_ELEMID
Identifier of topology element.
#define LWT_COL_EDGE_ALL
#define LWT_COL_EDGE_GEOM
#define LWT_COL_NODE_ALL
#define PGTOPO_BE_ERROR()
#define LWTFMT_ELEMID
#define LWDEBUG(level, msg)
Definition lwgeom_log.h:101
#define LWDEBUGF(level, msg,...)
Definition lwgeom_log.h:106
void void lwerror(const char *fmt,...) __attribute__((format(printf
Write a notice out to the error handler.
static GBOX * lwt_be_computeFaceMBR(const LWT_TOPOLOGY *topo, LWT_ELEMID face)
static uint64_t lwt_be_updateFacesById(LWT_TOPOLOGY *topo, const LWT_ISO_FACE *faces, uint64_t numfaces)
static int _lwt_InitEdgeEndByLine(edgeend *fee, edgeend *lee, LWLINE *edge, POINT2D *fp, POINT2D *lp)
static int _lwt_GetInteriorEdgePoint(const LWLINE *edge, POINT2D *ip)
LWT_ISO_EDGE * lwt_be_getEdgeById(LWT_TOPOLOGY *topo, const LWT_ELEMID *ids, uint64_t *numelems, int fields)
static int _lwt_CheckEdgeCrossing(LWT_TOPOLOGY *topo, LWT_ELEMID start_node, LWT_ELEMID end_node, const LWLINE *geom, LWT_ELEMID myself)
static void _lwt_release_nodes(LWT_ISO_NODE *nodes, int num_nodes)
static LWT_ELEMID * lwt_be_getRingEdges(LWT_TOPOLOGY *topo, LWT_ELEMID edge, uint64_t *numedges, uint64_t limit)
void _lwt_release_edges(LWT_ISO_EDGE *edges, int num_edges)
static LWPOLY * _lwt_MakeRingShell(LWT_TOPOLOGY *topo, LWT_ELEMID *signed_edge_ids, uint64_t num_signed_edge_ids)
int lwt_be_updateEdgesById(LWT_TOPOLOGY *topo, const LWT_ISO_EDGE *edges, int numedges, int upd_fields)
const char * lwt_be_lastErrorMessage(const LWT_BE_IFACE *be)
static LWT_ISO_NODE * lwt_be_getNodeWithinBox2D(const LWT_TOPOLOGY *topo, const GBOX *box, uint64_t *numelems, int fields, uint64_t limit)
static int _lwt_FindAdjacentEdges(LWT_TOPOLOGY *topo, LWT_ELEMID node, edgeend *data, edgeend *other, LWT_ELEMID myedge_id)
static const POINT2D * getPoint2d_cp(const POINTARRAY *pa, uint32_t n)
Returns a POINT2D pointer into the POINTARRAY serialized_ptlist, suitable for reading from.
Definition lwinline.h:97
tuple res
Definition window.py:79
GBOX * bbox
Definition liblwgeom.h:482
POINTARRAY * points
Definition liblwgeom.h:483
POINTARRAY * point
Definition liblwgeom.h:471
POINTARRAY ** rings
Definition liblwgeom.h:519
LWT_ELEMID face_right
LWT_ELEMID end_node
LWT_ELEMID face_left
LWT_ELEMID edge_id
LWT_ELEMID start_node
LWT_ELEMID face_id
LWT_ELEMID node_id
LWPOINT * geom
const LWT_BE_IFACE * be_iface
double y
Definition liblwgeom.h:390
double x
Definition liblwgeom.h:390
uint32_t npoints
Definition liblwgeom.h:427
LWT_ELEMID nextCCW
LWT_ELEMID nextCW

References _lwt_CheckEdgeCrossing(), _lwt_FindAdjacentEdges(), _lwt_GetInteriorEdgePoint(), _lwt_InitEdgeEndByLine(), _lwt_MakeRingShell(), _lwt_release_edges(), _lwt_release_nodes(), LWLINE::bbox, LWT_TOPOLOGY_T::be_iface, LWT_ISO_EDGE::edge_id, LWT_ISO_EDGE::end_node, LWT_ISO_FACE::face_id, LWT_ISO_EDGE::face_left, LWT_ISO_EDGE::face_right, gbox_same(), gbox_union(), LWT_ISO_NODE::geom, LWT_ISO_EDGE::geom, getPoint2d_cp(), getPoint2d_p(), LW_INSIDE, LWDEBUG, LWDEBUGF, lwerror(), lwfree(), lwgeom_add_bbox(), lwgeom_get_bbox(), lwgeom_is_simple(), lwgeom_refresh_bbox(), lwgeom_to_wkt(), lwline_as_lwgeom(), lwpoint_as_lwgeom(), lwpoly_free(), lwt_be_computeFaceMBR(), lwt_be_getEdgeById(), lwt_be_getNodeWithinBox2D(), lwt_be_getRingEdges(), lwt_be_lastErrorMessage(), lwt_be_updateEdgesById(), lwt_be_updateFacesById(), LWT_COL_EDGE_ALL, LWT_COL_EDGE_GEOM, LWT_COL_NODE_ALL, LWTFMT_ELEMID, LWT_ISO_FACE::mbr, edgeend_t::nextCCW, edgeend_t::nextCW, LWT_ISO_NODE::node_id, POINTARRAY::npoints, P2D_SAME_STRICT, PGTOPO_BE_ERROR, LWPOINT::point, LWLINE::points, ptarray_contains_point_partial(), ptarray_is_closed_2d(), ptarray_isccw(), LWPOLY::rings, LWT_ISO_EDGE::start_node, WKT_ISO, POINT2D::x, and POINT2D::y.

Referenced by _lwt_SplitAllEdgesToNewNode().

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