feat: added some missing scripts.

This commit is contained in:
Joaquin Gottlebe
2025-07-30 17:17:44 +02:00
parent 0bec1cd9f4
commit 4b0aff7b2a
3 changed files with 313 additions and 0 deletions
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from qgis.PyQt.QtCore import QVariant
from qgis.core import (QgsFeature, QgsField, QgsGeometry, QgsVectorLayer, QgsProject)
import requests
import geopandas as gpd
# Parameters (Set these manually in the script)
country_code = 'DEU' # Country code (ISO-3)
boundary_type = 'ADM0' # Boundary type (ADM0, ADM1, ADM2, etc.)
release_type = 'gbOpen' # Release type ('gbOpen', 'gbHumanitarian', 'gbAuthorative')
# Function to fetch geoboundary data
def fetch_geoboundary(release_type, country_code, boundary_type):
api_url = f"https://www.geoboundaries.org/api/current/{release_type}/{country_code}/{boundary_type}/"
try:
response = requests.get(api_url)
if response.status_code != 200:
print(f"Failed to fetch data: HTTP Status Code {response.status_code}")
return None
data = response.json()
results = []
if not isinstance(data, list):
data = [data]
for country_data in data:
if 'gjDownloadURL' not in country_data:
print(f"'gjDownloadURL' not found for {country_data.get('boundaryISO', 'unknown country')}")
continue
geojson_url = country_data['gjDownloadURL']
gdf = gpd.read_file(geojson_url)
if gdf.empty:
print(f"Loaded GeoDataFrame for {country_code} is empty.")
continue
metadata = {key: country_data.get(key, '') for key in country_data}
results.append({'gdf': gdf, 'metadata': metadata})
return results
except requests.RequestException as e:
print(f"Request error: {e}")
except Exception as e:
print(f"An unexpected error occurred: {e}")
return None
# Fetch geoboundary data
results = fetch_geoboundary(release_type, country_code, boundary_type)
if not results:
raise Exception('Failed to fetch geoBoundary data')
# Create a new memory layer to store the boundary data
layer_name = f"{country_code}_{boundary_type}_{release_type}_geoBoundaries"
vector_layer = QgsVectorLayer("Polygon?crs=epsg:4326", layer_name, "memory")
pr = vector_layer.dataProvider()
# Define fields for the new layer if needed
pr.addAttributes([QgsField("id", QVariant.Int)])
vector_layer.updateFields()
# Loop over the fetched data and add features to the new layer
for result in results:
gdf = result['gdf']
for index, row in gdf.iterrows():
# Check if the row has a valid geometry
if not hasattr(row['geometry'], 'wkt'):
print(f"Unexpected geometry type for row {index}")
continue
# Create a new feature and set the geometry from the WKT
feat = QgsFeature()
try:
feat.setGeometry(QgsGeometry.fromWkt(row['geometry'].wkt))
feat.setAttributes([index]) # Set any attributes if necessary
pr.addFeature(feat)
except Exception as e:
print(f"Error setting geometry from WKT: {e}")
continue
# Update the layer's extents
vector_layer.updateExtents()
# Add the new layer to the QGIS project
QgsProject.instance().addMapLayer(vector_layer)
print(f"GeoBoundary layer '{layer_name}' added to the project.")
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from qgis.core import QgsVectorLayer, QgsFeature, QgsGeometry, QgsPointXY, QgsFields, QgsField, QgsWkbTypes
from qgis.PyQt.QtCore import QVariant
layer = iface.activeLayer()
sum_x = 0
sum_y = 0
count = 0
for feature in layer.getFeatures():
geom = feature.geometry()
if geom.isMultipart():
points = geom.asMultiPoint()
else:
points = [geom.asPoint()]
for point in points:
sum_x += point.x()
sum_y += point.y()
count += 1
mean_x = sum_x / count
mean_y = sum_y / count
centroid_point = QgsGeometry.fromPointXY(QgsPointXY(mean_x, mean_y))
crs = layer.crs().authid()
new_layer = QgsVectorLayer(f"Point?crs={crs}", "Centroid Layer", "memory")
new_layer_data_provider = new_layer.dataProvider()
new_layer_data_provider.addAttributes([QgsField("id", QVariant.Int)])
new_layer.updateFields()
new_feature = QgsFeature()
new_feature.setGeometry(centroid_point)
new_feature.setAttributes([1])
new_layer_data_provider.addFeature(new_feature)
new_layer.updateExtents()
QgsProject.instance().addMapLayer(new_layer)
print(f"New layer 'Centroid Layer' created withcentroid at: ({mean_x}, {mean_y})")
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from qgis.core import *
from PyQt5.QtGui import *
from PyQt5.QtCore import *
from PyQt5 import *
from datetime import datetime
import os
QGIS_PREFIX_PATH = "/Applications/QGIS.app/Contents/Resources/python"
LAYER_PATH = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/lab6/stacked/stacked.tif"
STYLE_PATH = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/styles/true_color_2.qml"
EXPORT_PATH = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/lab6/maps/true_color_water.png"
NORTH_ARROW_PATH = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/styles/north_arrow.svg"
SECOND_LAYER_PATH = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/lab6/kmeans/kmeans_5.tif"
STYLE_PATH_SECOND = "/Users/huaqo/Developer/courses/2024_Remote_Sensing/styles/overlay_water.qml"
map_pos_x = 20
map_pos_y = 30
map_size_x = 200
map_size_y = 150
grid_interval_x = 100000
grid_interval_y = 100000
LAYER_NAME = "True Color"
SECOND_LAYER_NAME = "Water"
legend_pos_x = 245
legend_pos_y = 30
scalebar_pos_x = 20
scalebar_pos_y = 190
north_arrow_pos_x = 30
north_arrow_pos_y = 40
north_arrow_size_x = 15
north_arrow_size_y = 15
title_text = "True Color Landsat and K-means Water class"
title_fontsize = 16
title_height = 10
author_text = "Author: Joaquin Gottlebe"
author_pos_y = 100
date_text = f"Date: {datetime.now().strftime('%d.%m.%Y')}"
date_pos_y = 110
crs_text = "CRS: EPSG 32633"
crs_pos_y = 120
fontfamily = "Arial"
info_font_size = 12
info_pos_x = legend_pos_x
# Initialize QGIS Application
QgsApplication.setPrefixPath(QGIS_PREFIX_PATH, True)
qgs = QgsApplication([], False)
qgs.initQgis()
# Cleanup
project = QgsProject.instance()
layer_ids = list(project.mapLayers().keys())
for layer_id in layer_ids:
project.removeMapLayer(layer_id)
# Load Layer
raster_layer = QgsRasterLayer(LAYER_PATH, LAYER_NAME)
if not raster_layer.isValid():
raise Exception(f"{LAYER_NAME} layer failed to load!")
second_raster_layer = QgsRasterLayer(SECOND_LAYER_PATH, SECOND_LAYER_NAME)
if not second_raster_layer.isValid():
raise Exception(f"{SECOND_LAYER_NAME} layer failed to load!")
QgsProject.instance().addMapLayer(raster_layer)
if not raster_layer.loadNamedStyle(STYLE_PATH):
raise Exception(f"Style {STYLE_PATH} failed to load")
QgsProject.instance().addMapLayer(second_raster_layer)
if not second_raster_layer.loadNamedStyle(STYLE_PATH_SECOND):
raise Exception(f"Style {STYLE_PATH_SECOND} failed to load")
# Create Layout
layout = QgsPrintLayout(project)
layout.initializeDefaults()
# Map
map_item = QgsLayoutItemMap(layout)
map_item.attemptMove(QgsLayoutPoint(map_pos_x,map_pos_y, QgsUnitTypes.LayoutMillimeters))
map_item.attemptResize(QgsLayoutSize(map_size_x, map_size_y, QgsUnitTypes.LayoutMillimeters))
map_item.zoomToExtent(raster_layer.extent())
layout.addLayoutItem(map_item)
# Add Coordinate Grid
grid = map_item.grid()
grid.setEnabled(True)
grid.setIntervalX(grid_interval_x)
grid.setIntervalY(grid_interval_y)
grid.setAnnotationEnabled(True)
grid.setAnnotationPrecision(0)
grid.setFrameStyle(QgsLayoutItemMapGrid.Zebra)
# Label
title_label = QgsLayoutItemLabel(layout)
title_label.setText(title_text)
title_label.setFont(QFont(fontfamily, title_fontsize))
title_label.setHAlign(Qt.AlignCenter)
title_label.adjustSizeToText()
layout_width = layout.pageCollection().page(0).pageSize().width()
title_width = title_label.rectWithFrame().width()
center_x = (layout_width - title_width) / 2
title_label.attemptMove(QgsLayoutPoint(center_x, title_height, QgsUnitTypes.LayoutMillimeters))
layout.addLayoutItem(title_label)
# Legend
legend_item = QgsLayoutItemLegend(layout)
legend_item.setLinkedMap(map_item)
legend_item.setTitle("Legend")
legend_item.setFrameEnabled(True)
legend_item.attemptMove(QgsLayoutPoint(legend_pos_x,legend_pos_y, QgsUnitTypes.LayoutMillimeters))
layout.addLayoutItem(legend_item)
# Scalebar
scalebar_item = QgsLayoutItemScaleBar(layout)
scalebar_item.setStyle('Single Box')
scalebar_item.setLinkedMap(map_item)
scalebar_item.setUnitLabel('m')
scalebar_item.setNumberOfSegments(4)
scalebar_item.setNumberOfSegmentsLeft(0)
scalebar_item.setUnitsPerSegment(50000)
scalebar_item.applyDefaultSize()
scalebar_item.attemptMove(QgsLayoutPoint(scalebar_pos_x,scalebar_pos_y, QgsUnitTypes.LayoutMillimeters))
layout.addLayoutItem(scalebar_item)
# North Arrow
north_arrow_item = QgsLayoutItemPicture(layout)
north_arrow_item.setPicturePath(NORTH_ARROW_PATH)
if not north_arrow_item.picturePath():
print("North arrow image failed to load!")
north_arrow_item.setReferencePoint(QgsLayoutItemPicture.UpperLeft)
north_arrow_item.attemptMove(QgsLayoutPoint(north_arrow_pos_x,north_arrow_pos_y,QgsUnitTypes.LayoutMillimeters))
north_arrow_item.attemptResize(QgsLayoutSize(north_arrow_size_x,north_arrow_size_y,QgsUnitTypes.LayoutMillimeters))
layout.addLayoutItem(north_arrow_item)
# Author Info
info_label = QgsLayoutItemLabel(layout)
info_label.setText(author_text)
info_label.setFont(QFont(fontfamily, info_font_size))
info_label.setHAlign(Qt.AlignLeft)
info_label.attemptMove(QgsLayoutPoint(info_pos_x, author_pos_y, QgsUnitTypes.LayoutMillimeters))
info_label.adjustSizeToText()
layout.addLayoutItem(info_label)
# Date Info
info_label = QgsLayoutItemLabel(layout)
info_label.setText(date_text)
info_label.setFont(QFont(fontfamily, info_font_size))
info_label.setHAlign(Qt.AlignLeft)
info_label.attemptMove(QgsLayoutPoint(info_pos_x, date_pos_y, QgsUnitTypes.LayoutMillimeters))
info_label.adjustSizeToText()
layout.addLayoutItem(info_label)
# CRS Info
info_label = QgsLayoutItemLabel(layout)
info_label.setText(crs_text)
info_label.setFont(QFont(fontfamily, info_font_size))
info_label.setHAlign(Qt.AlignLeft)
info_label.attemptMove(QgsLayoutPoint(info_pos_x, crs_pos_y, QgsUnitTypes.LayoutMillimeters))
info_label.adjustSizeToText()
layout.addLayoutItem(info_label)
# Export Map
exporter = QgsLayoutExporter(layout)
if os.path.exists(EXPORT_PATH):
os.remove(EXPORT_PATH)
export_result = exporter.exportToImage(EXPORT_PATH, QgsLayoutExporter.ImageExportSettings())
if export_result != QgsLayoutExporter.Success:
print(f"Failed to export {LAYER_NAME} map!")
else:
print(f"Map exported to: {EXPORT_PATH}")
# Cleanup QGIS
qgs.exitQgis()