import xml.etree.ElementTree as ET from pathlib import Path import json areas = {'ATA_MV', 'BRA_SP', 'CHN_WS', 'ESP_EH', 'FIN_LM', 'GER_BN', 'IDN_SV', 'KAZ_AC', 'KSA_WA', 'NAM_HF', 'NZL_KP', 'PHL_TA', 'USA_GC'} data_path = Path("/home/sabrina/Documents/Tese/05_Dataset/MatchGeo-DEM-v1/") metadata_path = Path("/home/sabrina/Documents/Tese/05_Dataset/MatchGeo-DEM-v1/city_metadata/") # Load all metadata all_metadata = {} for location in areas: meta_file = metadata_path / f"{location}_metadata.json" if meta_file.exists(): with open(meta_file, 'r') as f: all_metadata[location] = json.load(f) print("=" * 70) print("MatchGeo-DEM Complete QGIS .qmd Metadata Writer") print("=" * 70) for location in sorted(areas): if location not in all_metadata: print(f"\n⚠️ {location}: Metadata JSON not found — skipping") continue meta = all_metadata[location] # Create QGIS metadata XML root = ET.Element("qgis") root.set("version", "3.40") # IDENTIFICATION ident = ET.SubElement(root, "identifier") ident.text = meta["identification"]["tile_id"] parent_ident = ET.SubElement(root, "parentidentifier") parent_ident.text = "10.5281/zenodo.21229785" lang = ET.SubElement(root, "language") lang.text = "en-US" type_el = ET.SubElement(root, "type") type_el.text = "dataset" title = ET.SubElement(root, "title") title.text = f"MatchGeo-DEM: {meta['identification']['full_name']}" abstract = ET.SubElement(root, "abstract") abstract_text = ( f"Digital Surface Model (DSM) from {meta['acquisition']['source']}. " f"Resolution: {meta['raster']['resolution_meters']}m. " f"Method: {meta['acquisition']['method']}. " f"Year: {meta['acquisition']['date_start'][:4]}-{meta['acquisition']['date_end'][:4]}. " f"CRS: {meta['spatial']['crs']['name']}. " f"NoData: {meta['raster']['nodata_value']}. " f"Format: {meta['raster']['tiff_variant']}, {meta['raster']['compression']} compressed. " f"Tiles: {meta['spatial']['tile_index']['n_tiles']} patches of 333x333 pixels. " f"{meta.get('notes', '')}" ) abstract.text = abstract_text # CONTACTS contacts = ET.SubElement(root, "contacts") contact = ET.SubElement(contacts, "contact") c_name = ET.SubElement(contact, "name") c_name.text = "Sabrina Correa" c_org = ET.SubElement(contact, "organization") c_org.text = "Universidade Federal de Vicosa" c_pos = ET.SubElement(contact, "position") c_pos.text = "Dataset Maintainer" c_voice = ET.SubElement(contact, "voice") c_voice.text = "" c_fax = ET.SubElement(contact, "fax") c_fax.text = "" c_email = ET.SubElement(contact, "email") c_email.text = "sabrina.correa@ufv.br" c_role = ET.SubElement(contact, "role") c_role.text = "distributor" # Also add original data provider as second contact contact2 = ET.SubElement(contacts, "contact") c2_name = ET.SubElement(contact2, "name") c2_name.text = meta["acquisition"]["provider"] c2_org = ET.SubElement(contact2, "organization") c2_org.text = meta["acquisition"]["source"] c2_pos = ET.SubElement(contact2, "position") c2_pos.text = "Original Data Provider" c2_voice = ET.SubElement(contact2, "voice") c2_voice.text = "" c2_fax = ET.SubElement(contact2, "fax") c2_fax.text = "" c2_email = ET.SubElement(contact2, "email") c2_email.text = "" c2_role = ET.SubElement(contact2, "role") c2_role.text = "owner" # LINKS links = ET.SubElement(root, "links") # Source link link1 = ET.SubElement(links, "link") l1_name = ET.SubElement(link1, "name") l1_name.text = "Original Data Source" l1_type = ET.SubElement(link1, "type") l1_type.text = "WWW:LINK-1.0-http--link" l1_url = ET.SubElement(link1, "url") l1_url.text = meta["acquisition"]["url"] l1_desc = ET.SubElement(link1, "description") l1_desc.text = f"Official portal for {meta['acquisition']['source']}" l1_format = ET.SubElement(link1, "format") l1_format.text = "HTML" l1_mime = ET.SubElement(link1, "mimeType") l1_mime.text = "text/html" l1_size = ET.SubElement(link1, "size") l1_size.text = "" # DOI link doi = meta["acquisition"].get("doi", "10.5281/zenodo.19339008") link2 = ET.SubElement(links, "link") l2_name = ET.SubElement(link2, "name") l2_name.text = "Dataset DOI" l2_type = ET.SubElement(link2, "type") l2_type.text = "DOI" l2_url = ET.SubElement(link2, "url") l2_url.text = f"https://doi.org/{doi}" l2_desc = ET.SubElement(link2, "description") l2_desc.text = "MatchGeo-DEM dataset DOI" l2_format = ET.SubElement(link2, "format") l2_format.text = "HTML" l2_mime = ET.SubElement(link2, "mimeType") l2_mime.text = "text/html" l2_size = ET.SubElement(link2, "size") l2_size.text = "" # License link link3 = ET.SubElement(links, "link") l3_name = ET.SubElement(link3, "name") l3_name.text = "License (CC BY 4.0)" l3_type = ET.SubElement(link3, "type") l3_type.text = "WWW:LINK-1.0-http--link" l3_url = ET.SubElement(link3, "url") l3_url.text = "https://creativecommons.org/licenses/by/4.0/" l3_desc = ET.SubElement(link3, "description") l3_desc.text = "Creative Commons Attribution 4.0 International" l3_format = ET.SubElement(link3, "format") l3_format.text = "HTML" l3_mime = ET.SubElement(link3, "mimeType") l3_mime.text = "text/html" l3_size = ET.SubElement(link3, "size") l3_size.text = "" # REMA documentation link (for ATA_MV) if location == "ATA_MV": link4 = ET.SubElement(links, "link") l4_name = ET.SubElement(link4, "name") l4_name.text = "REMA Documentation" l4_type = ET.SubElement(link4, "type") l4_type.text = "WWW:LINK-1.0-http--link" l4_url = ET.SubElement(link4, "url") l4_url.text = "https://www.pgc.umn.edu/data/rema/" l4_desc = ET.SubElement(link4, "description") l4_desc.text = "Reference Elevation Model of Antarctica documentation" l4_format = ET.SubElement(link4, "format") l4_format.text = "HTML" l4_mime = ET.SubElement(link4, "mimeType") l4_mime.text = "text/html" l4_size = ET.SubElement(link4, "size") l4_size.text = "" # DATES dates = ET.SubElement(root, "dates") date_created = ET.SubElement(dates, "date") date_created.set("type", "Created") date_created.text = meta["acquisition"]["date_start"] date_published = ET.SubElement(dates, "date") date_published.set("type", "Published") date_published.text = "2026-05-11" date_revised = ET.SubElement(dates, "date") date_revised.set("type", "Revised") date_revised.text = "2026-05-11" # FEES fees = ET.SubElement(root, "fees") fees.text = "None. This dataset is open access under CC BY 4.0." # ENCODING encoding = ET.SubElement(root, "encoding") encoding.text = "UTF-8" # CRS crs = ET.SubElement(root, "crs") spatialrefsys = ET.SubElement(crs, "spatialrefsys") crs_native = ET.SubElement(spatialrefsys, "nativeFormat") crs_native.text = "Wkt" crs_wkt = ET.SubElement(spatialrefsys, "wkt") crs_wkt.text = meta["spatial"]["crs"].get("wkt", "") crs_desc = ET.SubElement(spatialrefsys, "description") crs_desc.text = meta["spatial"]["crs"]["name"] crs_type = ET.SubElement(spatialrefsys, "type") crs_type.text = "crs" # EXTENT extent = ET.SubElement(root, "extent") # Spatial extent spatial = ET.SubElement(extent, "spatial") spatial.set("crs", meta["spatial"]["crs"]["name"]) bbox = meta["spatial"]["extent"]["bbox"] if bbox and None not in bbox: spatial.set("dimensions", "2") spatial.set("minx", str(bbox[0])) spatial.set("miny", str(bbox[1])) spatial.set("maxx", str(bbox[2])) spatial.set("maxy", str(bbox[3])) # Temporal extent temporal = ET.SubElement(extent, "temporal") temp_start = ET.SubElement(temporal, "start") temp_start.text = meta["acquisition"]["date_start"] temp_end = ET.SubElement(temporal, "end") temp_end.text = meta["acquisition"]["date_end"] # Vertical extent (Z min/max) vertical = ET.SubElement(extent, "vertical") # We don't have actual Z min/max per city, but we can leave it empty or estimate vert_min = ET.SubElement(vertical, "minimum") vert_min.text = "0" vert_max = ET.SubElement(vertical, "maximum") vert_max.text = "0" vert_unit = ET.SubElement(vertical, "unit") vert_unit.text = "meters" # CATEGORIES categories = ET.SubElement(root, "categories") cat = ET.SubElement(categories, "category") cat.text = "Elevation" cat2 = ET.SubElement(categories, "category") cat2.text = "Geoscientific Information" # KEYWORDS keywords = ET.SubElement(root, "keywords") # Add vocabulary attribute for GCMD vocab = ET.SubElement(keywords, "vocabulary") vocab.set("name", "GCMD") vocab.text = "EARTH SCIENCE > LAND SURFACE > TOPOGRAPHY > TERRAIN ELEVATION > DIGITAL ELEVATION/TERRAIN MODEL (DEM)" for kw in meta["fair"]["findable"]["keywords"]: kw_el = ET.SubElement(keywords, "keyword") kw_el.text = kw # Add extra keywords extra_kws = ["DSM", "local feature matching", "computer vision", "urban terrain"] for kw in extra_kws: kw_el = ET.SubElement(keywords, "keyword") kw_el.text = kw # RIGHTS rights = ET.SubElement(root, "rights") rights.text = f"{meta['fair']['reusable']['license']}. You are free to share and adapt under attribution terms." # LICENSE license_el = ET.SubElement(root, "license") license_el.text = "Creative Commons Attribution 4.0 International (CC BY 4.0)" # HISTORY history = ET.SubElement(root, "history") hist_entry = ET.SubElement(history, "history") hist_entry.text = ( f"Dataset created from {meta['acquisition']['source']} data. " f"Processed with PDAL {meta['processing']['software_version']}. " f"Patch extraction: 333x333 pixels. " f"Released as MatchGeo-DEM v1.1 on 2026-05-11." ) # CONSTRAINTS constraints = ET.SubElement(root, "constraints") # Use constraints use_constraints = ET.SubElement(constraints, "constraint") use_constraints.set("type", "Use") use_constraints.text = "Attribution required. See LICENSE file or https://creativecommons.org/licenses/by/4.0/" # Access constraints access_constraints = ET.SubElement(constraints, "constraint") access_constraints.set("type", "Access") access_constraints.text = "Open access. No registration required." # Write QMD file qmd_path = data_path / f"{location}/{location}.qmd" # Pretty print XML ET.indent(root, space=" ") tree = ET.ElementTree(root) tree.write(qmd_path, encoding="utf-8", xml_declaration=True) print(f"\n✅ {location}: Written {qmd_path}") print(f" Title: {title.text[:50]}...") print(f" Contacts: 2 (Maintainer + Data Provider)") print(f" Links: 3+ (Source + DOI + License)") print(f" Dates: Created, Published, Revised") print(f" Categories: Elevation, Geoscientific Information") print(f" Keywords: {len(meta['fair']['findable']['keywords']) + 4} total") print("\n" + "=" * 70) print("Done! Each .tif now has a matching .qmd with COMPLETE metadata.") print("QGIS will auto-load the .qmd when you add the layer.") print("=" * 70)