gpkg_piirkonnale_polygoonide_lisamine.R 5.8 KB

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  1. #' Piirkonnale andmebaasides olevate polügoonide lisamine
  2. #'
  3. #' Etteantud piirkonna geomeetrilise piirjoone ('piir') ja selle joone piirikasti ('bb') järele leitakse nende aladega kaetud polügoonid. Andmed salvestatakse GPKG faili kihtidena.
  4. #'
  5. #' @param obj str Objekti nimi. Edaspidi on oluline ainult see nimi. Piirkonna geomeetrilist joont ei ole vaja lisada.
  6. #' @param gpkg_home path Salvestatavate GPKG faili asukoht.
  7. #' @return Uute GPKG andmebaasi kihtide 'piir_...' ja 'bb_...' loomine.
  8. #' @seealso [sf::st_read()], [sf::write_sf()],[sf::st_transform()],[ruut::gpkg_piirkonnale_ruudustike_lisamine()] ,[ruut::gpkg_piirkonnale_polygoonide_lisamine()],[ruut::gpkg_sellest_alustame_gpkg_loomist()],[ruut::gpkg_piirkonnale_joonte_lisamine()],[ruut::gpkg_piirkonnale_punktide_lisamine()]
  9. #' @keywords GPKG, boundary box, EPSG:3301
  10. #' @export
  11. #' @examples
  12. #' \dontrun{
  13. #'
  14. #' gpkg_home <- "/tmp"
  15. #' obj <- "marja"
  16. #' gpkg_piirkonnale_polygoonide_lisamine(obj = obj, gpkg_home = gpkg_home)
  17. #'
  18. #' # Layers list.
  19. #' dsn <- sprintf("%s/%s.gpkg", gpkg_home, obj)
  20. #' sf::st_layers(dsn = dsn)
  21. #' }
  22. gpkg_piirkonnale_polygoonide_lisamine <- function(obj = NULL, gpkg_home = "/tmp") {
  23. dsn <- sprintf("%s/%s.gpkg", gpkg_home, obj)
  24. if (!file.exists(dsn)) {
  25. cat(sprintf("\nSellist faili \"%s\" ei leitud.\n", dsn))
  26. return(NULL)
  27. }
  28. ## Konfiguratsiooni muutujale väärtuste omistamine
  29. conf <- ruut::get_config()
  30. tmp_gpkg_file <- tempfile(fileext = ".gpkg")
  31. conf$gpkg_home <- dirname(tmp_gpkg_file)
  32. conf$gpkg_file <- gsub(paste0(conf$gpkg_home, "/"), "", tmp_gpkg_file)
  33. conf$gpkg_file <- gsub(".gpkg", "", conf$gpkg_file)
  34. conf$gpkg_home <- gpkg_home
  35. conf$gpkg_file <- obj
  36. tmp_gpkg_file_output <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = F)
  37. tmp_gpkg_file_input <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = T)
  38. ## Algorithm
  39. # ruut::qgis_algorithm_search_by_word(str = "extract")
  40. # algorithm <- "native:extractbylocation"
  41. # cat(ruut::qgis_show_help(algorithm = algorithm))
  42. ## -------------------- Loop -----------------------
  43. intersect_layers <- c("piir", "bb")
  44. andmed <- data.frame("schema" = character(0), "table" = character(0))
  45. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "landuse_a"))
  46. andmed <- rbind(andmed, data.frame("schema" = "maaamet", "table" = "asustusyksus"))
  47. andmed <- rbind(andmed, data.frame("schema" = "maaamet", "table" = "shp_katastriyksus"))
  48. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "buildings_a"))
  49. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "water_a"))
  50. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "pofw_a"))
  51. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "pois_a"))
  52. andmed <- rbind(andmed, data.frame("schema" = "osm_shp", "table" = "natural_a"))
  53. for (intersect in intersect_layers) {
  54. conf$gpkg_table <- intersect
  55. intersect_layer <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = T)
  56. for (i in 1:nrow(andmed)) {
  57. if (andmed$schema[i] %in% c("teeregister_wfs")) geom <- "geometry" else geom <- "geom"
  58. conf$gpkg_table <- sprintf("%s_%s", intersect, andmed$table[i])
  59. conf$table <- andmed$table[i]
  60. conf$schema <- andmed$schema[i]
  61. output <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = F)
  62. input <- ruut::construct_to_gpkg_output_postgres_str(
  63. conf = conf, geometry_type = "Polygon", srid = 3301,
  64. checkPrimaryKeyUnicity = TRUE, key = "id", geometry_field = geom
  65. )
  66. ## !!! Trikk: alguses leiame ühisosaga piirkonnad
  67. ## ------------------- QGIS: qgisprocess ----------------------
  68. str <- paste0("{ 'INPUT' : '", input, "', 'INTERSECT' : '", intersect_layer, "', 'OUTPUT' : '", tmp_gpkg_file_output, "', 'PREDICATE' : [0] }")
  69. algorithm <- "native:extractbylocation"
  70. cmd <- ruut::construct_qgis_output_result_to_better_format(str = str, algorithm = algorithm)
  71. cat(sprintf("\n%s\n\n", cmd))
  72. system(cmd)
  73. ## !!! Trikk jätkub: edasi leiame alles ühisosa
  74. str <- paste0("{ 'INPUT' : '", tmp_gpkg_file_input, "', 'OVERLAY' : '", intersect_layer, "', 'OUTPUT' : '", output, "', 'INPUT_FIELDS' : '', 'OVERLAY_FIELDS' : '', 'OVERLAY_FIELDS_PREFIX' : '' }")
  75. str <- paste0("{ 'INPUT' : '", tmp_gpkg_file_input, "', 'INPUT_FIELDS' : [], 'OUTPUT' : '", output, "', 'OVERLAY' : '", intersect_layer, "', 'OVERLAY_FIELDS' : [], 'OVERLAY_FIELDS_PREFIX' : '' }")
  76. algorithm <- "native:intersection"
  77. cmd <- ruut::construct_qgis_output_result_to_better_format(str = str, algorithm = algorithm)
  78. cat(sprintf("\n%s\n\n", cmd))
  79. system(cmd)
  80. ## Filtreerime maakasutuse kihi 'landuse-a' eraldi alamkihtideks
  81. if (andmed$table[i] == "landuse_a") {
  82. landuse_a <- unique(as.data.frame(sf::read_sf(dsn = dsn, layer = sprintf("%s_landuse_a", intersect), as_tibble = T))[, c("code", "fclass")])
  83. parent_table <- conf$gpkg_table
  84. for (k in 1:nrow(landuse_a)) {
  85. table_suffix <- landuse_a$fclass[k]
  86. conf$gpkg_table <- parent_table
  87. input <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = TRUE)
  88. conf$gpkg_table <- sprintf("%s_%s", conf$gpkg_table, table_suffix)
  89. output <- ruut::construct_to_gpkg_output_file_str(conf = conf, is_input_str = FALSE)
  90. str <- paste0("{ 'INPUT' : '", input, "', 'INTERSECT' : '", intersect_layer, "', 'OUTPUT' : '", output, "', FIELD : 'code', OPERATOR : 0, VALUE : '", landuse_a$code[k], "' }")
  91. algorithm <- "native:extractbyattribute"
  92. cmd <- ruut::construct_qgis_output_result_to_better_format(str = str, algorithm = algorithm)
  93. cat(sprintf("\n%s\n", cmd))
  94. system(cmd)
  95. }
  96. }
  97. }
  98. }
  99. ## Layers list
  100. sf::st_layers(dsn = dsn)
  101. }