PostGIS  3.2.2dev-r@@SVN_REVISION@@

◆ ST_Intersects()

Datum ST_Intersects ( PG_FUNCTION_ARGS  )

Definition at line 2278 of file postgis/lwgeom_geos.c.

2279 {
2280  SHARED_GSERIALIZED *shared_geom1 = ToastCacheGetGeometry(fcinfo, 0);
2281  SHARED_GSERIALIZED *shared_geom2 = ToastCacheGetGeometry(fcinfo, 1);
2282  const GSERIALIZED *geom1 = shared_gserialized_get(shared_geom1);
2283  const GSERIALIZED *geom2 = shared_gserialized_get(shared_geom2);
2284  int result;
2285  GBOX box1, box2;
2286  PrepGeomCache *prep_cache;
2287 
2288  gserialized_error_if_srid_mismatch(geom1, geom2, __func__);
2289 
2290  /* A.Intersects(Empty) == FALSE */
2291  if ( gserialized_is_empty(geom1) || gserialized_is_empty(geom2) )
2292  PG_RETURN_BOOL(false);
2293 
2294  /*
2295  * short-circuit 1: if geom2 bounding box does not overlap
2296  * geom1 bounding box we can return FALSE.
2297  */
2298  if ( gserialized_get_gbox_p(geom1, &box1) &&
2299  gserialized_get_gbox_p(geom2, &box2) )
2300  {
2301  if ( gbox_overlaps_2d(&box1, &box2) == LW_FALSE )
2302  PG_RETURN_BOOL(false);
2303  }
2304 
2305  /*
2306  * short-circuit 2: if the geoms are a point and a polygon,
2307  * call the point_outside_polygon function.
2308  */
2309  if ((is_point(geom1) && is_poly(geom2)) || (is_poly(geom1) && is_point(geom2)))
2310  {
2311  SHARED_GSERIALIZED *shared_gpoly = is_poly(geom1) ? shared_geom1 : shared_geom2;
2312  SHARED_GSERIALIZED *shared_gpoint = is_point(geom1) ? shared_geom1 : shared_geom2;
2313  const GSERIALIZED *gpoly = shared_gserialized_get(shared_gpoly);
2314  const GSERIALIZED *gpoint = shared_gserialized_get(shared_gpoint);
2315  RTREE_POLY_CACHE *cache = GetRtreeCache(fcinfo, shared_gpoly);
2316  int retval;
2317 
2318  POSTGIS_DEBUG(3, "Point in Polygon test requested...short-circuiting.");
2319  if (gserialized_get_type(gpoint) == POINTTYPE)
2320  {
2321  LWGEOM* point = lwgeom_from_gserialized(gpoint);
2322  int pip_result = pip_short_circuit(cache, lwgeom_as_lwpoint(point), gpoly);
2323  lwgeom_free(point);
2324 
2325  retval = (pip_result != -1); /* not outside */
2326  }
2327  else if (gserialized_get_type(gpoint) == MULTIPOINTTYPE)
2328  {
2330  retval = LW_FALSE;
2331  for (uint32_t i = 0; i < mpoint->ngeoms; i++)
2332  {
2333  LWPOINT *pt = mpoint->geoms[i];
2334  if (lwpoint_is_empty(pt)) continue;
2335  if (pip_short_circuit(cache, pt, gpoly) != -1) /* not outside */
2336  {
2337  retval = LW_TRUE;
2338  break;
2339  }
2340  }
2341 
2342  lwmpoint_free(mpoint);
2343  }
2344  else
2345  {
2346  /* Never get here */
2347  elog(ERROR,"Type isn't point or multipoint!");
2348  PG_RETURN_NULL();
2349  }
2350 
2351  PG_RETURN_BOOL(retval);
2352  }
2353 
2354  initGEOS(lwpgnotice, lwgeom_geos_error);
2355  prep_cache = GetPrepGeomCache(fcinfo, shared_geom1, shared_geom2);
2356 
2357  if ( prep_cache && prep_cache->prepared_geom )
2358  {
2359  if ( prep_cache->gcache.argnum == 1 )
2360  {
2361  GEOSGeometry *g = POSTGIS2GEOS(geom2);
2362  if (!g) HANDLE_GEOS_ERROR("Geometry could not be converted to GEOS");
2363  result = GEOSPreparedIntersects( prep_cache->prepared_geom, g);
2364  GEOSGeom_destroy(g);
2365  }
2366  else
2367  {
2368  GEOSGeometry *g = POSTGIS2GEOS(geom1);
2369  if (!g)
2370  HANDLE_GEOS_ERROR("Geometry could not be converted to GEOS");
2371  result = GEOSPreparedIntersects( prep_cache->prepared_geom, g);
2372  GEOSGeom_destroy(g);
2373  }
2374  }
2375  else
2376  {
2377  GEOSGeometry *g1;
2378  GEOSGeometry *g2;
2379  g1 = POSTGIS2GEOS(geom1);
2380  if (!g1) HANDLE_GEOS_ERROR("First argument geometry could not be converted to GEOS");
2381  g2 = POSTGIS2GEOS(geom2);
2382  if (!g2)
2383  {
2384  GEOSGeom_destroy(g1);
2385  HANDLE_GEOS_ERROR("Second argument geometry could not be converted to GEOS");
2386  }
2387  result = GEOSIntersects( g1, g2);
2388  GEOSGeom_destroy(g1);
2389  GEOSGeom_destroy(g2);
2390  }
2391 
2392  if (result == 2) HANDLE_GEOS_ERROR("GEOSIntersects");
2393 
2394  PG_RETURN_BOOL(result);
2395 }
char result[OUT_DOUBLE_BUFFER_SIZE]
Definition: cu_print.c:267
int gbox_overlaps_2d(const GBOX *g1, const GBOX *g2)
Return LW_TRUE if the GBOX overlaps on the 2d plane, LW_FALSE otherwise.
Definition: gbox.c:323
void gserialized_error_if_srid_mismatch(const GSERIALIZED *g1, const GSERIALIZED *g2, const char *funcname)
Definition: gserialized.c:404
int gserialized_get_gbox_p(const GSERIALIZED *g, GBOX *gbox)
Read the box from the GSERIALIZED or calculate it if necessary.
Definition: gserialized.c:65
LWGEOM * lwgeom_from_gserialized(const GSERIALIZED *g)
Allocate a new LWGEOM from a GSERIALIZED.
Definition: gserialized.c:239
int gserialized_is_empty(const GSERIALIZED *g)
Check if a GSERIALIZED is empty without deserializing first.
Definition: gserialized.c:152
uint32_t gserialized_get_type(const GSERIALIZED *g)
Extract the geometry type from the serialized form (it hides in the anonymous data area,...
Definition: gserialized.c:89
void lwgeom_geos_error(const char *fmt,...)
#define LW_FALSE
Definition: liblwgeom.h:108
void lwmpoint_free(LWMPOINT *mpt)
Definition: lwmpoint.c:72
LWMPOINT * lwgeom_as_lwmpoint(const LWGEOM *lwgeom)
Definition: lwgeom.c:225
void lwgeom_free(LWGEOM *geom)
Definition: lwgeom.c:1138
#define MULTIPOINTTYPE
Definition: liblwgeom.h:119
#define POINTTYPE
LWTYPE numbers, used internally by PostGIS.
Definition: liblwgeom.h:116
#define LW_TRUE
Return types for functions with status returns.
Definition: liblwgeom.h:107
int lwpoint_is_empty(const LWPOINT *point)
PrepGeomCache * GetPrepGeomCache(FunctionCallInfo fcinfo, SHARED_GSERIALIZED *g1, SHARED_GSERIALIZED *g2)
Given a couple potential geometries and a function call context, return a prepared structure for one ...
RTREE_POLY_CACHE * GetRtreeCache(FunctionCallInfo fcinfo, SHARED_GSERIALIZED *g1)
Checks for a cache hit against the provided geometry and returns a pre-built index structure (RTREE_P...
Definition: lwgeom_rtree.c:432
static LWPOINT * lwgeom_as_lwpoint(const LWGEOM *lwgeom)
Definition: lwinline.h:131
#define HANDLE_GEOS_ERROR(label)
static char is_point(const GSERIALIZED *g)
static int pip_short_circuit(RTREE_POLY_CACHE *poly_cache, LWPOINT *point, const GSERIALIZED *gpoly)
static char is_poly(const GSERIALIZED *g)
GEOSGeometry * POSTGIS2GEOS(const GSERIALIZED *pglwgeom)
uint32_t ngeoms
Definition: liblwgeom.h:552
LWPOINT ** geoms
Definition: liblwgeom.h:547
const GEOSPreparedGeometry * prepared_geom
The tree structure used for fast P-i-P tests by point_in_multipolygon_rtree()
Definition: lwgeom_rtree.h:59

References gbox_overlaps_2d(), PrepGeomCache::gcache, LWMPOINT::geoms, GetPrepGeomCache(), GetRtreeCache(), gserialized_error_if_srid_mismatch(), gserialized_get_gbox_p(), gserialized_get_type(), gserialized_is_empty(), HANDLE_GEOS_ERROR, is_point(), is_poly(), LW_FALSE, LW_TRUE, lwgeom_as_lwmpoint(), lwgeom_as_lwpoint(), lwgeom_free(), lwgeom_from_gserialized(), lwgeom_geos_error(), lwmpoint_free(), lwpoint_is_empty(), MULTIPOINTTYPE, LWMPOINT::ngeoms, pip_short_circuit(), POINTTYPE, POSTGIS2GEOS(), PrepGeomCache::prepared_geom, and result.

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