working with clipping/display of rivers
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IV/Makefile
19
IV/Makefile
@ -10,7 +10,8 @@ SLIDES = slides-2021-03-29.pdf
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NON_ARCHIVABLES = notes.txt referatui.txt slides-2021-03-29.txt
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ARCHIVABLES = $(filter-out $(NON_ARCHIVABLES),$(shell git ls-files .))
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FIGURES = test-figures \
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FIGURES = \
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test-figures \
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fig8-definition-of-a-bend \
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fig5-gentle-inflection-before \
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fig5-gentle-inflection-after \
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@ -21,6 +22,10 @@ FIGURES = test-figures \
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selfcrossing-1-before \
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selfcrossing-1-after
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RIVERS = \
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salvis-gdr10 \
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salvis-gdr50
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# paper sizes in mm
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A4p = 210x297
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A4l = 297x210
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@ -75,8 +80,9 @@ mj-msc.pdf: mj-msc.tex version.inc.tex vars.inc.tex bib.bib $(addsuffix .pdf,$(F
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############################
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define FIG_template
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$(1).pdf: layer2img.py Makefile .faux_test
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$(1).pdf: layer2img.py Makefile $(2)
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python ./layer2img.py --outfile=$(1).pdf \
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$$(if $$($(1)_WMCLIP),--wmclip=$$($(1)_WMCLIP)) \
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$$(if $$($(1)_WIDTHDIV),--widthdiv=$$($(1)_WIDTHDIV)) \
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$$(foreach i,1 2 3, \
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$$(if $$($(1)_$$(i)CMAP),--group$$(i)-cmap="$$($(1)_$$(i)CMAP)") \
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@ -84,7 +90,8 @@ $(1).pdf: layer2img.py Makefile .faux_test
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$$(if $$($(1)_$$(i)LINESTYLE),--group$$(i)-linestyle="$$($(1)_$$(i)LINESTYLE)") \
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)
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endef
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$(foreach fig,$(FIGURES),$(eval $(call FIG_template,$(fig))))
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$(foreach fig,$(FIGURES),$(eval $(call FIG_template,$(fig).faux_test)))
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$(foreach fig,$(RIVERS), $(eval $(call FIG_template,$(fig),.faux_test-rivers)))
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test-figures_1SELECT = wm_figures
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@ -128,6 +135,12 @@ selfcrossing-1-after_1SELECT = wm_debug where name='selfcrossing-1' AND stage='d
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selfcrossing-1-after_2SELECT = wm_debug where name='selfcrossing-1' AND stage='bbends' AND gen=1
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selfcrossing-1-after_2LINESTYLE = invisible
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salvis-gdr10_1SELECT = wm_rivers where name='Šalčia' OR name='Visinčia'
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salvis-gdr10_WMCLIP = salcia-visincia:GDR10
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salvis-gdr50_1SELECT = wm_rivers where name='Šalčia' OR name='Visinčia'
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salvis-gdr50_WMCLIP = salcia-visincia:GDR50
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.faux_test-rivers: tests-rivers.sql wm.sql .faux_db
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./db -f $<
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@ -11,6 +11,7 @@ CMAP = 'tab20c'
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BOUNDS = ('xmin', 'ymin', 'xmax', 'ymax')
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INCH_MM = 25.4
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INCH_CM = INCH_MM / 10
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BLACK, GREEN, ORANGE, PURPLE = '#000000', '#1b9e77', '#d95f02', '#7570b3'
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PSQL_CREDS = "host=127.0.0.1 dbname=osm user=osm password=osm"
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@ -28,9 +29,9 @@ SCALES = {
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def wm_clip(string):
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if not string:
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return None
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gdr, name = string.split(":")
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name, gdr = string.split(":")
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if scale := SCALES.get(gdr):
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return gdr, scale
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return name, scale
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scales = ",".join(SCALES.keys())
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raise argparse.ArgumentTypeError("invalid scale. Expected %s" % scales)
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@ -51,7 +52,9 @@ def parse_args():
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parser.add_argument('--group3-linestyle')
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parser.add_argument('--wmclip',
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type=wm_clip, help="Clip. E.g. GDR10:nemunas-merkys")
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type=wm_clip,
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help="Clip for scale. E.g. salcia-visincia:GDR10",
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)
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parser.add_argument('--widthdiv',
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default=1, type=float, help='Width divisor')
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@ -59,19 +62,20 @@ def parse_args():
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return parser.parse_args()
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def read_layer(select, width, maybe_wmclip):
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def read_layer(select, width_in, maybe_wmclip):
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if not select:
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return
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way = "way"
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if maybe_wmclip:
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name, scale = maybe_wmclip
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way = "wm_clip(way, {name}, {scale}, {width})".format(
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way = "st_intersection(way, wm_bbox('{name}', {scale}, {width}))".format(
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name=name,
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scale=scale,
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width=width,
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width=width_in * INCH_CM,
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)
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conn = psycopg2.connect(PSQL_CREDS)
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sql = "SELECT {way} as way1 FROM {select}".format(way=way, select=select)
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print("sql: %s" % sql)
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return geopandas.read_postgis(sql, con=conn, geom_col='way1')
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@ -99,7 +103,7 @@ def main():
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rc('text', usetex=True)
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fig, ax = plt.subplots()
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fig.set_figwidth(width)
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#fig.set_figwidth(width)
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group1 is not None and group1.plot(ax=ax, **c1)
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group2 is not None and group2.plot(ax=ax, **c2)
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@ -17,32 +17,30 @@ insert into wm_visuals(name, way) values('nemunas-merkys',
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-- wm_envelope clips a geometry by a bounding box around a given object,
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-- matching dimensions of A-class paper (1 by sqrt(2).
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drop function if exists wm_clip;
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create function wm_clip(
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geom geometry,
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drop function if exists wm_bbox;
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create function wm_bbox(
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center text,
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projection_scale integer,
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projection_width float
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projection_width_cm float
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) returns geometry as $$
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declare
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gcenter geometry;
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bbox geometry;
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halfX float;
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halfY float;
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begin
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halfX = projection_scale * projection_width / 2;
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halfX = projection_scale * projection_width_cm / 2;
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halfY = halfX * sqrt(2);
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select way from wm_visuals where name=center into gcenter;
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if gcenter is null then
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raise 'center % not found', center;
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end if;
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bbox = st_envelope(
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st_project(gcenter, halfX, radians(90)),
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st_project(gcenter, halfY, 0)
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return st_envelope(
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st_union(
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st_translate(gcenter, halfX, halfY),
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st_translate(gcenter, -halfX, -halfY)
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)
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);
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return st_intersection(bbox, geom);
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end
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$$ language plpgsql;
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