Find the face-id of the face properly containing a given point.
7673 uint64_t numedges, i;
7675 const POINT2D *closestPointOnEdge = NULL;
7676 uint32_t closestSegmentIndex;
7677 int closestSegmentSide;
7678 uint32_t closestPointVertex;
7679 const POINT2D *closestSegmentP0, *closestSegmentP1;
7692 if (numedges == UINT64_MAX)
7738 closestSegmentP0->
x,
7739 closestSegmentP0->
y,
7740 closestSegmentP1->
x,
7758 const POINT2D *p = queryPoint;
7759 const POINT2D *A = closestSegmentP0;
7760 const POINT2D *B = closestSegmentP1;
7761 double r = ( (p->
x-A->
x) * (B->
x-A->
x) + (p->
y-A->
y) * (B->
y-A->
y) )/( (B->
x-A->
x)*(B->
x-A->
x) +(B->
y-A->
y)*(B->
y-A->
y) );
7764 closestPointOnEdge = A;
7765 closestPointVertex = closestSegmentIndex;
7766 if ( closestSegmentIndex == 0 )
7773 closestPointOnEdge = B;
7774 closestPointVertex = closestSegmentIndex + 1;
7777 closestNode = closestEdge->
end_node;
7785 if ( closestNode != 0 )
7801 lwerror(
"Two or more faces found");
7804 containingFace = closestEdge->
face_left;
7809 if (numedges == UINT64_MAX)
7816 for (i=0; i<numedges; ++i)
7818 if ( edges[i].face_left != containingFace ||
7819 edges[i].face_right != containingFace )
7823 lwerror(
"Two or more faces found");
7830 ") returns no edges when we previously found edge %"
7832 closestNode, closestEdge->
edge_id);
7837 LWDEBUGF(1,
"lwt_be_getEdgeByNode returned %" PRIu64
" edges", numedges);
7840 return containingFace;
7848 lwerror(
"error computing azimuth of query point [%.15g %.15g,%.15g %.15g]",
7849 closestPointOnEdge->
x, closestPointOnEdge->
y,
7850 queryPoint->
x, queryPoint->
y);
7859 lwerror(
"Unexpected backend return: _lwt_FindAdjacentEdges(%"
7861 ") found no edges when we previously found edge %"
7863 closestNode, closestEdge->
edge_id);
7873 LWDEBUG(1,
"Closest point is NOT a node");
7880 " on both sides", closestEdge->
face_left);
7882 containingFace = closestEdge->
face_left;
7884 return containingFace;
7891 lwerror(
"Two or more faces found");
7899 LWDEBUGF(1,
"Closest point is vertex %d of closest segment", closestPointVertex);
7910 uint32_t prevVertexIndex = closestPointVertex > 0 ?
7911 closestPointVertex - 1u :
7919 LWDEBUGF(1,
"Previous vertex %u is POINT(%.15g %.15g)",
7925 uint32_t nextVertexIndex = closestPointVertex == closestEdge->
geom->
points->
npoints - 1u ?
7927 closestPointVertex + 1u;
7934 LWDEBUGF(1,
"Next vertex %u is POINT(%.15g %.15g)",
7945 if ( !
azimuth_pt_pt(closestPointOnEdge, prevVertex, &azS0)) {
7946 lwerror(
"error computing azimuth of segment to closest point [%.15g %.15g,%.15g %.15g]",
7947 closestPointOnEdge->
x, closestPointOnEdge->
y,
7948 prevVertex->
x, prevVertex->
y);
7952 if ( !
azimuth_pt_pt(closestPointOnEdge, nextVertex, &azS1)) {
7953 lwerror(
"error computing azimuth of segment from closest point [%.15g %.15g,%.15g %.15g]",
7954 closestPointOnEdge->
x, closestPointOnEdge->
y,
7955 nextVertex->
x, nextVertex->
y);
7959 if ( !
azimuth_pt_pt(closestPointOnEdge, queryPoint, &azSL) ) {
7960 lwerror(
"error computing azimuth of queryPoint [%.15g %.15g,%.15g %.15g]",
7961 closestPointOnEdge->
x, closestPointOnEdge->
y,
7962 queryPoint->
x, queryPoint->
y);
7967 double angle_S0_S1 = azS1 - azS0;
7968 if ( angle_S0_S1 < 0 ) angle_S0_S1 += 2 * M_PI;
7970 double angle_S0_SL = azSL - azS0;
7971 if ( angle_S0_SL < 0 ) angle_S0_SL += 2 * M_PI;
7973 LWDEBUGF(1,
"Azimuths from closest (vertex) point: P:%g, N:%g (+%g), Q:%g (+%g)",
7978 if ( angle_S0_SL < angle_S0_S1 )
7981 containingFace = closestEdge->
face_left;
7994 LWDEBUGF(1,
"Closest point is internal to closest segment, calling lw_segment_side((%g,%g),(%g,%g),(%g,%g)",
7995 closestSegmentP0->
x,
7996 closestSegmentP0->
y,
7997 closestSegmentP1->
x,
7998 closestSegmentP1->
y,
8003 closestSegmentSide =
lw_segment_side(closestSegmentP0, closestSegmentP1, queryPoint);
8004 LWDEBUGF(1,
"Side of closest segment query point falls on: %d (%s)",
8005 closestSegmentSide, closestSegmentSide == -1 ?
"left" : closestSegmentSide == 1 ?
"right" :
"collinear" );
8007 if ( closestSegmentSide == -1 )
8009 containingFace = closestEdge->
face_left;
8011 else if ( closestSegmentSide == 1 )
8017 lwerror(
"Unexpected collinearity reported from lw_segment_side");
8025 return containingFace;
LWGEOM * lwline_as_lwgeom(const LWLINE *obj)
int ptarray_closest_segment_2d(const POINTARRAY *pa, const POINT2D *qp, double *dist)
int azimuth_pt_pt(const POINT2D *p1, const POINT2D *p2, double *ret)
Compute the azimuth of segment AB in radians.
int lw_segment_side(const POINT2D *p1, const POINT2D *p2, const POINT2D *q)
lw_segment_side()
#define LWT_COL_EDGE_FACE_RIGHT
LWT_INT64 LWT_ELEMID
Identifier of topology element.
#define LWT_COL_EDGE_START_NODE
#define LWT_COL_EDGE_FACE_LEFT
#define LWT_COL_EDGE_EDGE_ID
Edge fields.
#define LWT_COL_EDGE_END_NODE
#define LWT_COL_EDGE_GEOM
#define PGTOPO_BE_ERROR()
#define LWDEBUG(level, msg)
#define LWDEBUGF(level, msg,...)
#define LWDEBUGGF(level, geom, fmt,...)
void void lwerror(const char *fmt,...) __attribute__((format(printf
Write a notice out to the error handler.
LWT_ISO_EDGE * lwt_be_getEdgeByNode(LWT_TOPOLOGY *topo, const LWT_ELEMID *ids, uint64_t *numelems, int fields)
static LWT_ISO_EDGE * lwt_be_getClosestEdge(const LWT_TOPOLOGY *topo, const LWPOINT *pt, uint64_t *numelems, int fields)
void _lwt_release_edges(LWT_ISO_EDGE *edges, int num_edges)
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.