#!/bin/bash GDAL_TILE_PROCESSES=16 GDAL_TILE_ZOOMS=8-14 GDAL_SAMPLING_WARP=cubic GDAL_SAMPLING_TILE=antialias # Create virtual dataset with coordinates gdal_translate -of VRT -a_srs EPSG:4326 -outsize 300% 300% -gcp 4866.0 6612.0 27.707733333333334 56.06187166666667 -gcp 41574.0 6684.0 27.749395 56.06187166666667 -gcp 41496.0 39558.0 27.749395 56.041043333333334 -gcp 4758.0 39486.0 27.707733333333334 56.041043333333334 LVVA_F1679_US217_GV1-4373/LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.JPG LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.vrt # Add cutline to VRT gdalwarp -r $GDAL_SAMPLING_WARP -tps -dstalpha -cutline_srs EPSG:4326 \ -cutline "POLYGON(($(echo -e "4866.0 6612.0\n41574.0 6684.0\n41496.0 39558.0\n4758.0 39486.0" | \ gdaltransform -tps -output_xy LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.vrt | \ awk 'NR==1{first=$0} {printf "%s %s,", $1,$2} END{print " " first}')))" \ LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.vrt LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.cut.vrt # Generate tiles gdal2tiles.py -r $GDAL_SAMPLING_TILE --xyz -z $GDAL_TILE_ZOOMS -x --processes=$GDAL_TILE_PROCESSES LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.cut.vrt LVVA-001679-0217-004088-PLANSETE-105-h-6_4088.xyz