501 lines
22 KiB
Bash
Executable file
501 lines
22 KiB
Bash
Executable file
#!/bin/bash
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#
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# Written by Martin Spott
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#
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# Copyright (C) 2010 Markus Metz @ GRASS GIS
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# Copyright (C) 2010 - 2013 Martin Spott - Martin (at) flightgear (dot) org
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#
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# This program is free software; you can redistribute it and/or
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# modify it under the terms of the GNU General Public License as
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# published by the Free Software Foundation; either version 2 of the
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# License, or (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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#
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date
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DUMPDIR=${HOME}/shp
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mkdir -p ${DUMPDIR}
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RUNDIR=`pwd`
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cd `dirname ${0}` && export BASEDIR=`pwd`
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cd ${RUNDIR}
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CALLNAME=`basename ${0}`
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#
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MAPPINGFILE=${BASEDIR}/CORINEtoCS.txt
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if [ ${CALLNAME} = "grassVMap.sh" ]; then
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SRCID=1
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TYPE=v0
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YEAR=""
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elif [ ${CALLNAME} = "grassCS.sh" ]; then
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SRCID=15
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TYPE=cs
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YEAR=""
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elif [ ${CALLNAME} = "grassCLC00.sh" ]; then
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SRCID=18
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TYPE=clc
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YEAR=00
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elif [ ${CALLNAME} = "grassCLC06.sh" ]; then
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SRCID=17
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TYPE=clc
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YEAR=06
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else
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SRCID=0
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fi
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PREFIX=${TYPE}${YEAR}
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#PREFIX=nl
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#PREFIX=clc${YEAR}_nl
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CLEANMAP=cleanmap
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if [ ${TYPE} = "v0" ]; then
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SRCKBS=nad83
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SNAP=0.00001
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#SNAP=0.000001
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#MIN_AREA1=1
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MIN_AREA1=0.0000001
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MIN_AREA=100
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#MIN_AREA=0.000000001
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elif [ ${TYPE} = "cs" ]; then
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SRCKBS=wgs84
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SNAP=0.000001
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#MIN_AREA1=1
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MIN_AREA1=0.0000001
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MIN_AREA=1
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elif [ ${TYPE} = "clc" ]; then
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SRCKBS=laea
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SNAP=0.01
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#SNAP=0.001
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#SNAP=0.0001
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#SNAP=0.000001
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MIN_AREA=1
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#MIN_AREA=0.000000001
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fi
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########################################################################
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# DB-Connection
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PGHOST=geoscope.optiputer.net
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PGDATABASE=landcover
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PGUSER=martin
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DSN="PG:host=${PGHOST} dbname=${PGDATABASE} user=${PGUSER}"
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LAYEROPTS="FID=ogc_fid, GEOMETRY_NAME=wkb_geometry, SPATIAL_INDEX=YES, PRIMARY_KEY=YES, SRID=4326"
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PSQL="psql -tA -h ${PGHOST} -U ${PGUSER} -d ${PGDATABASE}"
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fn_fixpostgis() {
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LAYER=${1}
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echo "DROP INDEX ${LAYER}_cat_idx;"
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echo "ALTER INDEX ${LAYER}_pkey RENAME TO ${LAYER}_pk;"
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echo "ALTER INDEX ${LAYER}_wkb_geometry_idx RENAME TO ${LAYER}_gindex;"
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echo "CLUSTER ${LAYER}_gindex ON ${LAYER};"
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echo "ALTER TABLE ${LAYER} ADD CONSTRAINT "enforce_dims_wkb_geometry" CHECK (ST_NDims(wkb_geometry) = 2);"
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echo "ALTER TABLE ${LAYER} ADD CONSTRAINT "enforce_geotype_wkb_geometry" CHECK (GeometryType(wkb_geometry) = 'POLYGON'::text);"
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echo "ALTER TABLE ${LAYER} ADD CONSTRAINT "enforce_srid_wkb_geometry" CHECK (ST_SRID(wkb_geometry) = 4326);"
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echo "ALTER TABLE ${LAYER} DROP COLUMN id;"
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echo "ALTER TABLE ${LAYER} ADD COLUMN src_id numeric(5,0) DEFAULT ${SRCID};"
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echo "ALTER TABLE ${LAYER} ADD COLUMN maint_id numeric(5,0) DEFAULT NULL;"
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echo "ALTER TABLE ${LAYER} ADD COLUMN ch_date timestamp;"
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echo "GRANT SELECT ON ${LAYER} TO webuser;"
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echo "VACUUM ANALYZE ${LAYER};"
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}
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fn_topostgis() {
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GRMAP=${1}
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PGLAYER=${PREFIX}_`echo ${GRMAP} | cut -f 2 -d \_`
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echo "DROP TABLE ${PGLAYER};" | ${PSQL}
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v.out.postgis input=${GRMAP} olayer=${PGLAYER} dsn="${DSN}" options="${LAYEROPTS}"
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fn_fixpostgis ${PGLAYER} | ${PSQL}
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}
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########################################################################
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fn_importCLC() {
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LOADDIR=${HOME}/live/corine
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# Note: CORINE Shapefiles are EPSG:3035, Landcover-DB is EPSG:4326, but
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# _both_ projections (reference systems) are using square meters as unit for
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# area size declarations in GRASS !
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# Units for snapping are different in GRASS, though. Whereas EPSG:3035 is
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# using meters, EPSG:4326 is using degrees.
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#
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for SHAPEFILE in `ls ${LOADDIR}/${PREFIX}_c[0-9][0-9][0-9].shp`; do
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LAYER=`basename ${SHAPEFILE} | cut -f 1 -d \.`
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MAP=`echo ${LAYER} | cut -f 2 -d \_`
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CODECLC=`echo ${MAP} | tr -d c`
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INTMAP=${MAP}_int
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g.remove vect=${MAP}
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v.in.ogr dsn="${LOADDIR}" layer=${LAYER} output=${MAP} snap=${SNAP} --verbose
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v.db.addcolumn map=${MAP} columns="newcodeCLC integer" --verbose
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v.db.update map=${MAP} column=newcodeCLC value=${CODECLC} --verbose
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v.db.dropcolumn map=${MAP} column=code_${YEAR} --verbose
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v.db.renamecolumn map=${MAP} column=newcodeCLC,codeCLC --verbose
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g.remove vect=${INTMAP}
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v.reclass input=${MAP} output=${INTMAP} column=codeCLC --verbose
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v.out.ogr input=${INTMAP} type=area dsn=${DUMPDIR}/${PREFIX}_${MAP}_pre-clip.shp
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done
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}
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fn_importVMap() {
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LOADDIR=${HOME}/live/vmap0shp
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for SHAPEFILE in `ls ${LOADDIR}/*-area.shp`; do
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LAYER=`basename ${SHAPEFILE} | cut -f 1 -d \.`
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MAP=`echo ${LAYER} | sed -e 's/-/_/g'`
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g.remove vect=${MAP}
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# v.in.ogr dsn="${LOADDIR}" layer=${LAYER} output=${MAP} snap=${SNAP} --verbose
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v.in.ogr dsn="${LOADDIR}" layer=${LAYER} output=${MAP} --verbose
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done
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}
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fn_importCS() {
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LOADDIR=${HOME}/shp
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for SHAPEFILE in `ls ${LOADDIR}/${PREFIX}_*.shp`; do
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LAYER=`basename ${SHAPEFILE} | cut -f 1 -d \.`
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g.remove vect=${LAYER}
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v.in.ogr dsn="${LOADDIR}" layer=${LAYER} output=${LAYER} snap=${SNAP} --verbose
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done
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}
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########################################################################
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fn_split() {
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# v.extract input=soa_veg_grassa_area type=area output=v0_grassland where="f_code LIKE 'EB010'"
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#
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# sourcelayer | sourceattrs | pgislayer
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#--------------------------+--------------------+--------------------------
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# 'builtupa@pop(*)_area' | | v0_urban
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# 'cropa@veg(*)_area' | veg=0 | v0_mixedcrop
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# 'cropa@veg(*)_area' | veg=1 | v0_drycrop
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# 'cropa@veg(*)_area' | veg=999 | v0_irrcrop
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# 'grassa@veg(*)_area' | f_code=EB010 | v0_grassland
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# 'grassa@veg(*)_area' | f_code=EB020 | v0_scrub
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# 'grounda@phys(*)_area' | smc=119 | v0_barrencover
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# 'grounda@phys(*)_area' | smc=52 | v0_lava
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# 'grounda@phys(*)_area' | smc=88:swc=0 | v0_sand
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# 'grounda@phys(*)_area' | smc=88:swc=3 | v0_littoral
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# 'inwatera@hydro(*)_area' | f_code=BH000:hyc=6 | v0_intermittentlake
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# 'inwatera@hydro(*)_area' | f_code=BH000:hyc=8 | v0_lake
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# 'inwatera@hydro(*)_area' | f_code=BH090 | v0_floodland
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# 'landicea@phys(*)_area' | | v0_glacier
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# 'polbnda@bnd(*)_area' | | v0_landmass
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# 'seaicea@phys(*)_area' | f_code=BJ070 | v0_packice
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# 'seaicea@phys(*)_area' | f_code=BJ080 | v0_polarice
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# 'swampa@veg(*)_area' | f_code=BH015 | v0_bog
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# 'swampa@veg(*)_area' | f_code=BH095 | v0_marsh
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# 'treesa@veg(*)_area' | veg=24 | v0_deciduousforest
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# 'treesa@veg(*)_area' | veg=25 | v0_evergreenforest
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# 'treesa@veg(*)_area' | veg=50 | v0_mixedforest
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# 'tundraa@veg(*)_area' | | v0_herbtundra
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#
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g.remove vect=`g.mlist type=vect pattern="${PREFIX}_*_???" separator=,`
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for CLASS in `g.mlist type=vect pattern="???_*_*_area" | cut -f 2,3 -d \_ | sort | uniq`; do # veg_cropa, veg_grassa
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for LAYER in `g.mlist type=vect pattern="???_${CLASS}_area" | sort`; do # eur_veg_cropa_area, noa_veg_cropa_area
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ZONE=`echo ${LAYER} | cut -f 1 -d \_` # eur, noa
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V0LAYER=`echo ${LAYER} | awk -F\_ '{print $3 "@" $2 "(*)_" $4}'` # cropa@veg(*)_area
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case ${V0LAYER} in
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"polbnda@bnd(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_landmass_${ZONE}
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;;
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"inwatera@hydro(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_intermittentlake_${ZONE} where="f_code LIKE 'BH000' AND hyc != 8"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_lake_${ZONE} where="f_code LIKE 'BH000' AND hyc = 8"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_floodland_${ZONE} where="f_code NOT LIKE 'BH000'"
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;;
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"extracta@ind(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_saline_${ZONE} where="f_code LIKE 'BH155'"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_openmining_${ZONE} where="f_code NOT LIKE 'BH155'"
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;;
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"fishinda@ind(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_fishing_${ZONE}
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;;
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"grounda@phys(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_barrencover_${ZONE} where="smc != 52 AND smc != 88"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_lava_${ZONE} where="smc = 52"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_littoral_${ZONE} where="smc = 88 AND swc = 3"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_sand_${ZONE} where="smc = 88 AND swc != 3"
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;;
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"landicea@phys(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_glacier_${ZONE}
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;;
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"seaicea@phys(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_packice_${ZONE} where="f_code NOT LIKE 'BJ080'"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_polarice_${ZONE} where="f_code LIKE 'BJ080'"
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;;
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"builtupa@pop(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_urban_${ZONE}
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;;
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"mispopa@pop(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_suburban_${ZONE}
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;;
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"cropa@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_mixedcrop_${ZONE} where="f_code NOT LIKE 'BH135' and veg = 0"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_drycrop_${ZONE} where="f_code NOT LIKE 'BH135' and veg = 1"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_irrcrop_${ZONE} where="f_code NOT LIKE 'BH135' and veg > 1"
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# v.extract -t input=${LAYER} type=area output=${PREFIX}_rice_${ZONE} where="f_code LIKE 'BH135'"
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;;
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"grassa@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_grassland_${ZONE} where="f_code LIKE 'EB010'"
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# v.extract -t input=${LAYER} type=area output=${PREFIX}_bamboo_${ZONE} where="f_code LIKE 'EC010'"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_scrub_${ZONE} where="f_code NOT LIKE 'EB010' AND f_code NOT LIKE 'EC010'"
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;;
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"oasisa@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_oasis_${ZONE}
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;;
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"orcharda@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_vineyard_${ZONE} where="f_code LIKE 'EA050'"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_orchard_${ZONE} where="f_code NOT LIKE 'EA050'"
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;;
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"swampa@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_bog_${ZONE} where="f_code LIKE 'BH015'"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_marsh_${ZONE} where="f_code NOT LIKE 'BH015'"
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;;
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"treesa@veg(*)_area")
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# v.extract -t input=${LAYER} type=area output=${PREFIX}_mangrove_${ZONE} where="veg = 19"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_deciduousforest_${ZONE} where="veg = 24"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_evergreenforest_${ZONE} where="veg = 25"
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v.extract -t input=${LAYER} type=area output=${PREFIX}_mixedforest_${ZONE} where="veg != 19 AND veg != 24 AND veg != 25"
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;;
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"tundraa@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_herbtundra_${ZONE}
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;;
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"vegvoida@veg(*)_area")
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v.extract -t input=${LAYER} type=area output=${PREFIX}_vegvoid_${ZONE}
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;;
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esac
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done
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done
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}
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########################################################################
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fn_reclass() {
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for OUTPUT in `g.mlist type=vect pattern="${PREFIX}_*_???" | awk -F\_ '{print $1 "_" $2}' | sort | uniq`; do
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CATEGORY=`echo ${OUTPUT} | sed -e "s/^${PREFIX}_/cs_/g"`
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CODECLC=`grep "\ ${CATEGORY}\$" ${MAPPINGFILE} | awk '{print $1}'`
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INTMAP=${OUTPUT}_int
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for ZONE in `g.mlist type=vect pattern="${PREFIX}_*_[a-z][a-z][a-z]" | awk -F\_ '{print $3}' | sort | uniq`; do
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LCCMAP=${OUTPUT}_${ZONE}_lcclass
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g.remove vect=${LCCMAP}
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v.db.addtable map=${OUTPUT}_${ZONE}
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v.db.addcolumn map=${OUTPUT}_${ZONE} columns="newcodeCLC integer" --verbose
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v.db.update map=${OUTPUT}_${ZONE} column=newcodeCLC value=${CODECLC} --verbose
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v.db.dropcolumn map=${OUTPUT}_${ZONE} column=code_CLC --verbose
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v.db.renamecolumn map=${OUTPUT}_${ZONE} column=newcodeCLC,code_CLC --verbose
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v.reclass input=${OUTPUT}_${ZONE} output=${LCCMAP} column=code_CLC --verbose
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done
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g.remove vect=${OUTPUT}_patched
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v.patch input=`g.mlist type=vect pattern="${OUTPUT}_[a-z][a-z][a-z]_lcclass" separator=,` output=${OUTPUT}_patched
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# v.patch input=`g.mlist type=vect pattern="${OUTPUT}_[a-z][a-z][a-z]_lcclass" separator=,` output=${INTMAP}
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g.remove vect=${OUTPUT}_bpol,${OUTPUT}_snap,${OUTPUT}_split,${OUTPUT}_rmsa,${OUTPUT}_rmdangle,${OUTPUT}_rmarea,${OUTPUT}_prune
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v.clean input=${OUTPUT}_patched output=${OUTPUT}_bpol -c tool=bpol type=boundary --verbose
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v.clean input=${OUTPUT}_bpol output=${OUTPUT}_snap -c tool=snap thresh=${SNAP} type=boundary --verbose
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v.split input=${OUTPUT}_snap output=${OUTPUT}_split length=40 units=kilometers --verbose
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v.clean input=${OUTPUT}_split output=${OUTPUT}_rmsa -c tool=rmsa type=boundary --verbose
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v.clean input=${OUTPUT}_rmsa output=${OUTPUT}_rmdangle tool=rmline,rmdangle thresh=0,-1 type=boundary --verbose
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date
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v.clean input=${OUTPUT}_rmdangle output=${OUTPUT}_rmarea tool=rmarea thresh=${MIN_AREA1} type=boundary --verbose
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date
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v.clean input=${OUTPUT}_rmarea output=${OUTPUT}_prune tool=prune thresh=0.00001 type=boundary --verbose
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v.out.ogr input=${OUTPUT}_prune type=area dsn=${DUMPDIR}/${OUTPUT}_pre-clip.shp
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done
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}
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###############################################################################
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fn_overlay() {
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COUNT=1
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for LAYER in ${PREFIX}_ocean \
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${PREFIX}_airport \
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${PREFIX}_lake \
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${PREFIX}_intermittentlake \
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${PREFIX}_watercourse \
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${PREFIX}_littoral \
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${PREFIX}_estuary \
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${PREFIX}_floodland \
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${PREFIX}_lagoon \
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${PREFIX}_glacier \
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${PREFIX}_packice \
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${PREFIX}_polarice \
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${PREFIX}_urban \
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${PREFIX}_suburban \
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${PREFIX}_town \
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${PREFIX}_fishing \
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${PREFIX}_construction \
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${PREFIX}_industrial \
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${PREFIX}_port \
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${PREFIX}_dump \
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${PREFIX}_bog \
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${PREFIX}_marsh \
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${PREFIX}_saltmarsh \
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${PREFIX}_saline \
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${PREFIX}_openmining \
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${PREFIX}_transport \
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${PREFIX}_drycrop \
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${PREFIX}_irrcrop \
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${PREFIX}_rice \
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${PREFIX}_mixedcrop \
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${PREFIX}_vineyard \
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${PREFIX}_complexcrop \
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${PREFIX}_naturalcrop \
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${PREFIX}_cropgrass \
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${PREFIX}_agroforest \
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${PREFIX}_olives \
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${PREFIX}_golfcourse \
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${PREFIX}_greenspace \
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${PREFIX}_grassland \
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${PREFIX}_scrub \
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${PREFIX}_orchard \
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${PREFIX}_deciduousforest \
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${PREFIX}_evergreenforest \
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${PREFIX}_mixedforest \
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${PREFIX}_herbtundra \
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${PREFIX}_sclerophyllous \
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${PREFIX}_heath \
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${PREFIX}_burnt \
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${PREFIX}_barrencover \
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${PREFIX}_sand \
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${PREFIX}_rock \
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${PREFIX}_lava \
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${PREFIX}_landmass;
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do
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v.info map=${LAYER}_prune > /dev/null
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LAYERVALID=${?}
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if [ ${LAYERVALID} -eq 0 ]; then
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g.remove vect=${LAYER}_postsplit
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v.split input=${LAYER}_prune output=${LAYER}_postsplit length=40 units=kilometers --verbose
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if [ ${COUNT} -eq 1 ]; then
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g.remove vect=${CLEANMAP}
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g.copy vect=${LAYER}_postsplit,${CLEANMAP}
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else
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g.remove vect=tmp
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v.overlay ainput=${CLEANMAP} binput=${LAYER}_postsplit output=tmp operator=or snap=0.000001
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v.db.addcolumn map=tmp columns="newcat integer" --verbose
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v.db.update map=tmp column=newcat value=b_cat where="a_cat IS NULL" --verbose
|
|
v.db.update map=tmp column=newcat value=a_cat where="b_cat IS NULL" --verbose
|
|
v.db.update map=tmp column=newcat value=a_cat where="newcat IS NULL" --verbose
|
|
v.db.update map=tmp column=newcat value=a_cat where="newcat=0" --verbose
|
|
g.remove vect=${CLEANMAP}_reclass
|
|
v.reclass input=tmp output=${CLEANMAP}_reclass column=newcat --verbose
|
|
g.remove vect=${CLEANMAP}
|
|
g.rename vect=${CLEANMAP}_reclass,${CLEANMAP}
|
|
fi
|
|
COUNT=`expr ${COUNT} + 1`
|
|
fi
|
|
done
|
|
}
|
|
|
|
fn_preexport() {
|
|
SELECTION=`v.category input=${CLEANMAP} type=centroid option=print | sort -n | uniq`
|
|
for CATEGORY in ${SELECTION}; do
|
|
LAYER=`grep \^${CATEGORY} ${MAPPINGFILE} | awk '{print $2}' | sed -e "s/^cs_/${PREFIX}_/g"`
|
|
g.remove vect=${LAYER}_postclip
|
|
v.extract cats=${CATEGORY} input=${CLEANMAP} output=${LAYER}_postclip type=area
|
|
v.out.ogr input=${LAYER}_postclip type=area dsn=${DUMPDIR}/${LAYER}_post-clip.shp
|
|
done
|
|
}
|
|
|
|
###############################################################################
|
|
|
|
fn_clean() {
|
|
# Caution, don't overwrite the only functional working copy while testing !!!
|
|
#
|
|
g.remove vect=${PREFIX}_patched,${PREFIX}_bpol,${PREFIX}_snap,${PREFIX}_split,${PREFIX}_rmsa,${PREFIX}_rmdangle,${PREFIX}_rmarea,${PREFIX}_prune,${PREFIX}_dissolved
|
|
g.rename vect=${CLEANMAP},${PREFIX}_patched
|
|
#
|
|
v.clean input=${PREFIX}_patched output=${PREFIX}_bpol -c tool=bpol type=boundary --verbose
|
|
v.clean input=${PREFIX}_bpol output=${PREFIX}_snap -c tool=snap thresh=${SNAP} type=boundary --verbose
|
|
v.split input=${PREFIX}_snap output=${PREFIX}_split length=40 units=kilometers --verbose
|
|
v.clean input=${PREFIX}_split output=${PREFIX}_rmsa -c tool=rmsa type=boundary --verbose
|
|
v.clean input=${PREFIX}_rmsa output=${PREFIX}_rmdangle tool=rmline,rmdangle thresh=0,-1 type=boundary --verbose
|
|
date
|
|
v.clean input=${PREFIX}_rmdangle output=${PREFIX}_rmarea tool=rmarea thresh=${MIN_AREA} type=boundary --verbose
|
|
date
|
|
v.clean input=${PREFIX}_rmarea output=${PREFIX}_prune tool=prune thresh=0.00001 type=boundary --verbose
|
|
v.dissolve input=${PREFIX}_prune output=${PREFIX}_dissolved --verbose
|
|
|
|
#v.split input=${PREFIX}_patched output=${PREFIX}_split layer=-1 vertices=100 --verbose
|
|
#
|
|
#oder kein v.split, kein v.clean tool=bpol, kein v.clean tool=snap, sondern
|
|
#
|
|
#v.clean input=${PREFIX}_patched output=${PREFIX}_rmarea tool=rmarea thresh=100
|
|
}
|
|
|
|
###############################################################################
|
|
|
|
fn_proj() {
|
|
# This one is _not_ to be run inside the import location !!!
|
|
#
|
|
MYLOCATION=`g.gisenv get=LOCATION_NAME`
|
|
MYMAPSET=`g.gisenv get=MAPSET`
|
|
g.mapset location=wgs84 mapset=${MYMAPSET}
|
|
g.remove vect=${CLEANMAP}
|
|
v.proj location=${MYLOCATION} mapset=${MYMAPSET} input=${CLEANMAP} # output=${CLEANMAP}
|
|
if [ ${PREFIX} = "v0" ]; then
|
|
g.remove vect=${PREFIX}_landmass_prune
|
|
v.proj location=${MYLOCATION} mapset=${MYMAPSET} input=${PREFIX}_landmass_prune
|
|
fi
|
|
}
|
|
|
|
###############################################################################
|
|
|
|
fn_export() {
|
|
# Print available (integer) categories - centroids only !!!
|
|
#
|
|
SELECTION=`v.category input=${CLEANMAP} type=centroid option=print | sort -n | uniq`
|
|
for CATEGORY in ${SELECTION}; do
|
|
# LAYER=${PREFIX}_${CATEGORY}
|
|
LAYER=`grep \^${CATEGORY} ${MAPPINGFILE} | awk '{print $2}' | sed -e "s/^cs_/${PREFIX}_/g"`
|
|
g.remove vect=${LAYER}
|
|
v.extract cats=${CATEGORY} input=${CLEANMAP} output=${LAYER} type=area
|
|
if [ ${PREFIX} = "v0" -a ${LAYER} = "${PREFIX}_landmass" ]; then
|
|
NEWLAYER="${PREFIX}_void"
|
|
g.remove vect=${NEWLAYER}
|
|
g.rename vect=${LAYER},${NEWLAYER}
|
|
LAYER=${NEWLAYER}
|
|
fi
|
|
# v.out.ogr input=${LAYER} type=area dsn=${DUMPDIR}/${PREFIX}_c${CATEGORY}.shp # For CLC
|
|
# v.out.ogr input=${LAYER} type=area dsn=${DUMPDIR}/${LAYER}.shp # For VMap0/CS
|
|
fn_topostgis ${LAYER}
|
|
done
|
|
if [ ${PREFIX} = "v0" ]; then
|
|
# v.out.ogr input=${PREFIX}_landmass_prune type=area dsn=${DUMPDIR}/${PREFIX}_landmass.shp
|
|
fn_topostgis ${PREFIX}_landmass_prune
|
|
fi
|
|
}
|
|
|
|
fn_single() {
|
|
LAYER=${PREFIX}_single
|
|
v.extract -d input=${CLEANMAP} type=area output=${LAYER} new=1 --verbose
|
|
# v.out.ogr input=${LAYER} type=area dsn=${DUMPDIR}/${LAYER}.shp
|
|
fn_topostgis ${LAYER}
|
|
}
|
|
|
|
###############################################################################
|
|
|
|
if [ ${TYPE} = "v0" ]; then
|
|
fn_importVMap
|
|
fn_split
|
|
fn_reclass
|
|
elif [ ${TYPE} = "clc" ]; then
|
|
fn_importCLC
|
|
fi
|
|
|
|
fn_overlay
|
|
fn_preexport
|
|
fn_clean
|
|
CLEANMAP=${PREFIX}_dissolved
|
|
fn_proj
|
|
fn_export
|
|
|
|
if [ ${TYPE} = "clc" ]; then
|
|
fn_single
|
|
fi
|
|
|
|
# EOF
|