PostGIS  3.7.0dev-r@@SVN_REVISION@@

◆ lw_dist2d_seg_seg()

int lw_dist2d_seg_seg ( const POINT2D A,
const POINT2D B,
const POINT2D C,
const POINT2D D,
DISTPTS dl 
)

Finds the shortest distance between two segments.

This function is changed so it is not doing any comparison of distance but just sending every possible combination further to lw_dist2d_pt_seg

Definition at line 1927 of file measures.c.

1928 {
1929  double s_top, s_bot, s;
1930  double r_top, r_bot, r;
1931 
1932  /*A and B are the same point */
1933  if ((A->x == B->x) && (A->y == B->y))
1934  {
1935  return lw_dist2d_pt_seg(A, C, D, dl);
1936  }
1937 
1938  /*U and V are the same point */
1939  if ((C->x == D->x) && (C->y == D->y))
1940  {
1941  dl->twisted = ((dl->twisted) * (-1));
1942  return lw_dist2d_pt_seg(D, A, B, dl);
1943  }
1944 
1945  /* AB and CD are line segments */
1946  /* from comp.graphics.algo
1947 
1948  Solving the above for r and s yields
1949  (Ay-Cy)(Dx-Cx)-(Ax-Cx)(Dy-Cy)
1950  r = ----------------------------- (eqn 1)
1951  (Bx-Ax)(Dy-Cy)-(By-Ay)(Dx-Cx)
1952 
1953  (Ay-Cy)(Bx-Ax)-(Ax-Cx)(By-Ay)
1954  s = ----------------------------- (eqn 2)
1955  (Bx-Ax)(Dy-Cy)-(By-Ay)(Dx-Cx)
1956  Let P be the position vector of the intersection point, then
1957  P=A+r(B-A) or
1958  Px=Ax+r(Bx-Ax)
1959  Py=Ay+r(By-Ay)
1960  By examining the values of r & s, you can also determine some other limiting conditions:
1961  If 0<=r<=1 & 0<=s<=1, intersection exists
1962  r<0 or r>1 or s<0 or s>1 line segments do not intersect
1963  If the denominator in eqn 1 is zero, AB & CD are parallel
1964  If the numerator in eqn 1 is also zero, AB & CD are collinear.
1965 
1966  */
1967  r_top = (A->y - C->y) * (D->x - C->x) - (A->x - C->x) * (D->y - C->y);
1968  r_bot = (B->x - A->x) * (D->y - C->y) - (B->y - A->y) * (D->x - C->x);
1969 
1970  s_top = (A->y - C->y) * (B->x - A->x) - (A->x - C->x) * (B->y - A->y);
1971  s_bot = (B->x - A->x) * (D->y - C->y) - (B->y - A->y) * (D->x - C->x);
1972 
1973  if ((r_bot == 0) || (s_bot == 0))
1974  {
1975  if ((lw_dist2d_pt_seg(A, C, D, dl)) && (lw_dist2d_pt_seg(B, C, D, dl)))
1976  {
1977  /* change the order of inputted geometries and that we notice by changing sign on dl->twisted*/
1978  dl->twisted *= -1;
1979  return ((lw_dist2d_pt_seg(C, A, B, dl)) && (lw_dist2d_pt_seg(D, A, B, dl)));
1980  }
1981  else
1982  return LW_FALSE; /* if any of the calls to lw_dist2d_pt_seg goes wrong we return false*/
1983  }
1984 
1985  s = s_top / s_bot;
1986  r = r_top / r_bot;
1987 
1988  if (((r < 0) || (r > 1) || (s < 0) || (s > 1)) || (dl->mode == DIST_MAX))
1989  {
1990  if ((lw_dist2d_pt_seg(A, C, D, dl)) && (lw_dist2d_pt_seg(B, C, D, dl)))
1991  {
1992  /* change the order of inputted geometries and that we notice by changing sign on dl->twisted*/
1993  dl->twisted *= -1;
1994  return ((lw_dist2d_pt_seg(C, A, B, dl)) && (lw_dist2d_pt_seg(D, A, B, dl)));
1995  }
1996  else
1997  return LW_FALSE; /* if any of the calls to lw_dist2d_pt_seg goes wrong we return false*/
1998  }
1999  else
2000  {
2001  /* If there is intersection we identify the intersection point and return it but only if we are looking
2002  * for mindistance */
2003  if (dl->mode == DIST_MIN)
2004  {
2005  POINT2D theP;
2006 
2007  if (((A->x == C->x) && (A->y == C->y)) || ((A->x == D->x) && (A->y == D->y)))
2008  {
2009  theP.x = A->x;
2010  theP.y = A->y;
2011  }
2012  else if (((B->x == C->x) && (B->y == C->y)) || ((B->x == D->x) && (B->y == D->y)))
2013  {
2014  theP.x = B->x;
2015  theP.y = B->y;
2016  }
2017  else
2018  {
2019  theP.x = A->x + r * (B->x - A->x);
2020  theP.y = A->y + r * (B->y - A->y);
2021  }
2022  dl->distance = 0.0;
2023  dl->p1 = theP;
2024  dl->p2 = theP;
2025  }
2026  return LW_TRUE;
2027  }
2028 }
char * s
Definition: cu_in_wkt.c:23
char * r
Definition: cu_in_wkt.c:24
#define LW_FALSE
Definition: liblwgeom.h:94
#define LW_TRUE
Return types for functions with status returns.
Definition: liblwgeom.h:93
int lw_dist2d_pt_seg(const POINT2D *p, const POINT2D *A, const POINT2D *B, DISTPTS *dl)
lw_dist2d_comp from p to line A->B This one is now sending every occasion to lw_dist2d_pt_pt Before i...
Definition: measures.c:2316
#define DIST_MIN
Definition: measures.h:44
#define DIST_MAX
Definition: measures.h:43
POINT2D p1
Definition: measures.h:52
POINT2D p2
Definition: measures.h:53
int twisted
Definition: measures.h:55
int mode
Definition: measures.h:54
double distance
Definition: measures.h:51
double y
Definition: liblwgeom.h:390
double x
Definition: liblwgeom.h:390

References DIST_MAX, DIST_MIN, DISTPTS::distance, lw_dist2d_pt_seg(), LW_FALSE, LW_TRUE, DISTPTS::mode, DISTPTS::p1, DISTPTS::p2, r, s, DISTPTS::twisted, POINT2D::x, and POINT2D::y.

Referenced by lw_dist2d_arc_arc(), lw_dist2d_ptarray_ptarray(), lw_dist2d_seg_arc(), and rect_leaf_node_distance().

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