PostGIS  3.4.0dev-r@@SVN_REVISION@@

◆ gbox_pt_outside()

int gbox_pt_outside ( const GBOX gbox,
POINT2D pt_outside 
)

Calculate a spherical point that falls outside the geocentric gbox.

Calculate a spherical point that falls outside the geocentric gbox.

Definition at line 1558 of file lwgeodetic.c.

1559 {
1560  double grow = M_PI / 180.0 / 60.0; /* one arc-minute */
1561  int i;
1562  GBOX ge;
1563  POINT3D corners[8];
1564  POINT3D pt;
1565  GEOGRAPHIC_POINT g;
1566 
1567  while ( grow < M_PI )
1568  {
1569  /* Assign our box and expand it slightly. */
1570  ge = *gbox;
1571  if ( ge.xmin > -1 ) ge.xmin -= grow;
1572  if ( ge.ymin > -1 ) ge.ymin -= grow;
1573  if ( ge.zmin > -1 ) ge.zmin -= grow;
1574  if ( ge.xmax < 1 ) ge.xmax += grow;
1575  if ( ge.ymax < 1 ) ge.ymax += grow;
1576  if ( ge.zmax < 1 ) ge.zmax += grow;
1577 
1578  /* Build our eight corner points */
1579  corners[0].x = ge.xmin;
1580  corners[0].y = ge.ymin;
1581  corners[0].z = ge.zmin;
1582 
1583  corners[1].x = ge.xmin;
1584  corners[1].y = ge.ymax;
1585  corners[1].z = ge.zmin;
1586 
1587  corners[2].x = ge.xmin;
1588  corners[2].y = ge.ymin;
1589  corners[2].z = ge.zmax;
1590 
1591  corners[3].x = ge.xmax;
1592  corners[3].y = ge.ymin;
1593  corners[3].z = ge.zmin;
1594 
1595  corners[4].x = ge.xmax;
1596  corners[4].y = ge.ymax;
1597  corners[4].z = ge.zmin;
1598 
1599  corners[5].x = ge.xmax;
1600  corners[5].y = ge.ymin;
1601  corners[5].z = ge.zmax;
1602 
1603  corners[6].x = ge.xmin;
1604  corners[6].y = ge.ymax;
1605  corners[6].z = ge.zmax;
1606 
1607  corners[7].x = ge.xmax;
1608  corners[7].y = ge.ymax;
1609  corners[7].z = ge.zmax;
1610 
1611  LWDEBUG(4, "trying to use a box corner point...");
1612  for ( i = 0; i < 8; i++ )
1613  {
1614  normalize(&(corners[i]));
1615  LWDEBUGF(4, "testing corner %d: POINT(%.8g %.8g %.8g)", i, corners[i].x, corners[i].y, corners[i].z);
1616  if ( ! gbox_contains_point3d(gbox, &(corners[i])) )
1617  {
1618  LWDEBUGF(4, "corner %d is outside our gbox", i);
1619  pt = corners[i];
1620  normalize(&pt);
1621  cart2geog(&pt, &g);
1622  pt_outside->x = rad2deg(g.lon);
1623  pt_outside->y = rad2deg(g.lat);
1624  LWDEBUGF(4, "returning POINT(%.8g %.8g) as outside point", pt_outside->x, pt_outside->y);
1625  return LW_SUCCESS;
1626  }
1627  }
1628 
1629  /* Try a wider growth to push the corners outside the original box. */
1630  grow *= 2.0;
1631  }
1632 
1633  /* This should never happen! */
1634  // lwerror("BOOM! Could not generate outside point!");
1635  return LW_FAILURE;
1636 }
int gbox_contains_point3d(const GBOX *gbox, const POINT3D *pt)
Return true if the point is inside the gbox.
Definition: gbox.c:247
#define LW_FAILURE
Definition: liblwgeom.h:96
#define LW_SUCCESS
Definition: liblwgeom.h:97
void normalize(POINT3D *p)
Normalize to a unit vector.
Definition: lwgeodetic.c:615
void cart2geog(const POINT3D *p, GEOGRAPHIC_POINT *g)
Convert cartesian coordinates on unit sphere to spherical coordinates.
Definition: lwgeodetic.c:414
#define rad2deg(r)
Definition: lwgeodetic.h:81
#define LWDEBUG(level, msg)
Definition: lwgeom_log.h:83
#define LWDEBUGF(level, msg,...)
Definition: lwgeom_log.h:88
double ymax
Definition: liblwgeom.h:357
double zmax
Definition: liblwgeom.h:359
double xmax
Definition: liblwgeom.h:355
double zmin
Definition: liblwgeom.h:358
double ymin
Definition: liblwgeom.h:356
double xmin
Definition: liblwgeom.h:354
Point in spherical coordinates on the world.
Definition: lwgeodetic.h:54
double y
Definition: liblwgeom.h:390
double x
Definition: liblwgeom.h:390
double z
Definition: liblwgeom.h:402
double x
Definition: liblwgeom.h:402
double y
Definition: liblwgeom.h:402

References cart2geog(), gbox_contains_point3d(), GEOGRAPHIC_POINT::lat, GEOGRAPHIC_POINT::lon, LW_FAILURE, LW_SUCCESS, LWDEBUG, LWDEBUGF, normalize(), rad2deg, POINT2D::x, POINT3D::x, pixval::x, GBOX::xmax, GBOX::xmin, POINT2D::y, POINT3D::y, pixval::y, GBOX::ymax, GBOX::ymin, POINT3D::z, GBOX::zmax, and GBOX::zmin.

Referenced by CircTreePIP(), geography_point_outside(), lwpoly_pt_outside(), and test_tree_circ_pip2().

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