more 'inflection_angle' to its own function
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IV/wm.sql
59
IV/wm.sql
@ -170,18 +170,12 @@ create function self_crossing(
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OUT mutated boolean
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OUT mutated boolean
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) as $$
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) as $$
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declare
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declare
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pi real;
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i int4;
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i int4;
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j int4;
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j int4;
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prev_length int4;
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prev_length int4;
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pi real;
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angle real;
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p0 geometry;
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p1 geometry;
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p2 geometry;
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p3 geometry;
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a geometry;
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a geometry;
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b geometry;
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b geometry;
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bend geometry;
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multi geometry;
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multi geometry;
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begin
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begin
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pi = radians(180);
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pi = radians(180);
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@ -189,40 +183,20 @@ begin
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-- go through the bends and find one where sum of inflection angle is >180
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-- go through the bends and find one where sum of inflection angle is >180
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for i in 1..array_length(bends, 1) loop
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for i in 1..array_length(bends, 1) loop
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angle = 0;
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continue when abs(inflection_angle(bends[i])) <= pi;
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p1 = null;
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p2 = null;
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p3 = null;
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for p0 in (
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select geom from st_dumppoints(bends[i]) order by path[1] asc
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) loop
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p3 = p2;
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p2 = p1;
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p1 = p0;
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continue when p3 is null;
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angle = angle + abs(pi - st_angle(p1, p2, p3));
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end loop;
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continue when abs(angle) <= pi;
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-- sum of inflection angles for this bend is >180, so it may be
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-- sum of inflection angles for this bend is >180, so it may be
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-- self-crossing. now try to find another bend in this line that
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-- self-crossing. now try to find another bend in this line that
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-- crosses an imaginary line of end-vertices
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-- crosses an imaginary line of end-vertices
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p0 = st_pointn(bends[i], 1);
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p1 = st_pointn(bends[i], -1);
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-- go through each bend in the given line, and see if has a potential to
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-- go through each bend in the given line, and see if has a potential to
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-- cross bends[i]. optimization: we care only about bends which beginning
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-- cross bends[i]. optimization: we care only about bends which beginning
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-- and end start at different sides of the plane, separated by endpoints
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-- and end start at different sides of the plane, separated by endpoints
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-- p0 and p1.
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-- of the vertex.
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j = 0;
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j = 0;
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while j < array_length(bends, 1) loop
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while j < array_length(bends, 1) loop
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j = j + 1;
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j = j + 1;
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continue when i = j;
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continue when i = j;
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p2 = st_pointn(bends[j], 1);
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p3 = st_pointn(bends[j], -1);
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-- do end vertices of bend[i] cross bend[j]?
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-- do end vertices of bend[i] cross bend[j]?
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a = st_pointn(bends[i], 1);
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a = st_pointn(bends[i], 1);
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b = st_pointn(bends[i], -1);
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b = st_pointn(bends[i], -1);
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@ -267,6 +241,33 @@ begin
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end
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end
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$$ language plpgsql;
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$$ language plpgsql;
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drop function if exists inflection_angle;
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create function inflection_angle (IN bend geometry, OUT angle real) as $$
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declare
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pi real;
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p0 geometry;
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p1 geometry;
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p2 geometry;
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p3 geometry;
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begin
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pi = radians(180);
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angle = 0;
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p1 = null;
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p2 = null;
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p3 = null;
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for p0 in (
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select geom from st_dumppoints(bend) order by path[1] asc
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) loop
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p3 = p2;
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p2 = p1;
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p1 = p0;
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continue when p3 is null;
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angle = angle + abs(pi - st_angle(p1, p2, p3));
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end loop;
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end
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$$ language plpgsql;
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drop function if exists bend_attrs;
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drop function if exists bend_attrs;
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drop type if exists t_bend_attrs;
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drop type if exists t_bend_attrs;
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create type t_bend_attrs as (
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create type t_bend_attrs as (
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