02_piirkonnale_polygoonide_lisamine.R 7.9 KB

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  1. #' Piirkonna polügoonide lisamine
  2. #'
  3. #' Etteantud piirkonna geomeetrilise piirjoone ('piir') järele leitakse selles piirkonnas ja piirkonna piiriga piirnevad polügoonid (). Osasid polügoone on lõigatud piiriga.
  4. #'
  5. #' @param obj str Objekti nimi.
  6. #' @param pk Piirkonna geomeetriline joon.
  7. #' @param gpkg_home path Salvestatavate GPKG faili asukoht.
  8. #' @param obj_only TRUE/FALSE Kas geomeetriad leitakse ainult objekti või kogu piirikastiga määratud ala jaoks.
  9. #'
  10. #' @examples
  11. #' \dontrun{
  12. #'
  13. #' }
  14. piirkonnale_polygoonide_lisamine <- function(obj = NULL, pk = NULL, gpkg_home = "/tmp", obj_only = TRUE) {
  15. if (is.null(pk) || !sf::st_is_valid(pk)) {
  16. cat("\nPalun kontrolli geomeetrilise kujundi õigsust.\n")
  17. return()
  18. }
  19. if (is.null(obj)) {
  20. cat("\nPuudu on objekti nimi.\n")
  21. return()
  22. }
  23. cat(sprintf("\nAlgparameetrid: objekti nimi %s ja GPKG faili kataloog %s\n", obj, gpkg_home))
  24. postgres <- sprintf(
  25. "postgres://dbname=\'%s\' host=%s port=%s user=\'%s\' sslmode=%s password=\'%s\' key=\'fid\' srid=4326 type=Polygon checkPrimaryKeyUnicity=\'1\'",
  26. conf$dbname, conf$host, conf$port, conf$user, conf$sslmode, conf$password
  27. )
  28. dsn <- sprintf("%s/%s.gpkg", gpkg_home, obj)
  29. input_layer_name <- "piir"
  30. input_layer <- sprintf("%s|layername=%s", dsn, input_layer_name)
  31. tmp_gpkg_file <- tempfile(fileext = ".gpkg")
  32. ## ----------------- piiri sisse jäävad polügoonid -------------------
  33. ## --------------------------- algandmed -----------------------------
  34. andmed.df <- data.frame("schema" = character(0), "table" = character(0))
  35. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "buildings_a"))
  36. # andmed.df <- rbind(andmed.df, data.frame("schema" = "maaamet", "table" = "aadressandmed")) # POINT
  37. j <- 1
  38. for (j in 1:nrow(andmed.df)) {
  39. output_layer_name <- as.character(andmed.df$table[j])
  40. # ruut::qgis_algorithm_search_by_word(str = "extract")
  41. algorithm <- "native:extractbylocation"
  42. # cat(qgisprocess::qgis_show_help(algorithm = algorithm))
  43. result <- qgisprocess::qgis_run_algorithm(
  44. algorithm = algorithm,
  45. INPUT = sprintf(
  46. '%s table=\"%s\".\"%s\" (geometry)',
  47. postgres, andmed.df$schema[j], andmed.df$table[j]
  48. ),
  49. INTERSECT = input_layer,
  50. OUTPUT = tmp_gpkg_file,
  51. PREDICATE = c(0) # c(0, 1)
  52. # .quiet = TRUE
  53. )
  54. result
  55. # assign(as.character(andmed.df$table[j]), sf::read_sf(qgisprocess::qgis_output(result, "OUTPUT")))
  56. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s -t_srs \"EPSG:3301\"", dsn, tmp_gpkg_file, output_layer_name))
  57. }
  58. ## -------------- piiri -30 meetrise puhvri sisse jäävad polügoonid -------------
  59. ## --------------------------------- algandmed ---------------------------------
  60. andmed.df <- data.frame("schema" = character(0), "table" = character(0))
  61. # andmed.df <- rbind(andmed.df, data.frame("schema" = "maaamet", "table" = "aadressandmed")) # POINT
  62. andmed.df <- rbind(andmed.df, data.frame("schema" = "maaamet", "table" = "asustusyksus"))
  63. andmed.df <- rbind(andmed.df, data.frame("schema" = "maaamet", "table" = "shp_katastriyksus"))
  64. ## Esmalt leiame piirile uhverjoone.
  65. # ruut::qgis_algorithm_search_by_word(str = "buffer")
  66. algorithm <- "native:buffer"
  67. # cat(qgisprocess::qgis_show_help(algorithm = algorithm))
  68. result <- qgisprocess::qgis_run_algorithm(
  69. algorithm = algorithm,
  70. DISSOLVE = 0,
  71. DISTANCE = -30,
  72. END_CAP_STYLE = 2,
  73. INPUT = sprintf(
  74. "%s|layername=piir",
  75. dsn
  76. ),
  77. JOIN_STYLE = 2,
  78. MITER_LIMIT = 2,
  79. OUTPUT = tmp_gpkg_file,
  80. SEGMENTS = 5
  81. # .quiet = TRUE
  82. )
  83. result
  84. piir_buffer <- sf::read_sf(qgisprocess::qgis_output(result, "OUTPUT"))
  85. # st_geometry(pk) %>% plot()
  86. # st_geometry(piir_buffer) %>% plot(add=T, col = 'red')
  87. j <- 1
  88. for (j in 1:nrow(andmed.df)) {
  89. output_layer_name <- as.character(andmed.df$table[j])
  90. input <- sprintf(
  91. '%s table=\"%s\".\"%s\" (geometry)',
  92. postgres, andmed.df$schema[j], andmed.df$table[j]
  93. )
  94. # ruut::qgis_algorithm_search_by_word(str = "extract")
  95. algorithm <- "native:extractbylocation"
  96. # cat(qgisprocess::qgis_show_help(algorithm = algorithm))
  97. result <- qgisprocess::qgis_run_algorithm(
  98. algorithm = algorithm,
  99. INPUT = input,
  100. INTERSECT = piir_buffer,
  101. OUTPUT = tmp_gpkg_file,
  102. PREDICATE = c(0, 1)
  103. # .quiet = TRUE
  104. )
  105. result
  106. # assign(as.character(andmed.df$table[j]), sf::read_sf(qgisprocess::qgis_output(result, "OUTPUT")))
  107. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s -t_srs \"EPSG:3301\"", dsn, tmp_gpkg_file, output_layer_name))
  108. }
  109. ## ----------------- piiriga lõigatud polügoonid -------------------
  110. ## --------------------------- algandmed ---------------------------
  111. andmed.df <- data.frame("schema" = character(0), "table" = character(0))
  112. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "landuse_a"))
  113. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "water_a"))
  114. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "pofw_a"))
  115. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "pois_a"))
  116. andmed.df <- rbind(andmed.df, data.frame("schema" = "osm_shp", "table" = "natural_a"))
  117. j <- 1
  118. for (j in 1:nrow(andmed.df)) {
  119. output_layer_name <- as.character(andmed.df$table[j])
  120. input <- sprintf(
  121. '%s table=\"%s\".\"%s\" (geometry)',
  122. postgres, andmed.df$schema[j], andmed.df$table[j]
  123. )
  124. # ruut::qgis_algorithm_search_by_word(str = "intersect")
  125. algorithm <- "native:intersection"
  126. # cat(qgisprocess::qgis_show_help(algorithm = algorithm))
  127. result <- qgisprocess::qgis_run_algorithm(
  128. algorithm = algorithm,
  129. INPUT = input,
  130. INPUT_FIELDS = "",
  131. OVERLAY = sprintf(
  132. "%s|layername=piir",
  133. dsn
  134. ),
  135. OVERLAY_FIELDS = "",
  136. OVERLAY_FIELDS_PREFIX = "",
  137. OUTPUT = tmp_gpkg_file
  138. # .quiet = TRUE
  139. )
  140. result
  141. # assign(as.character(andmed.df$table[j]), sf::read_sf(qgisprocess::qgis_output(result, "OUTPUT")))
  142. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s -t_srs \"EPSG:3301\"", dsn, tmp_gpkg_file, output_layer_name))
  143. # -------------------- alamkihtide filtreerimine -----------------
  144. ## Maakasutus lahti kirjutada!!
  145. if (output_layer_name == "landuse_a") {
  146. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_forest -t_srs \"EPSG:3301\" -where \"code = '7201'\" ", dsn, tmp_gpkg_file, output_layer_name))
  147. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_residential -t_srs \"EPSG:3301\" -where \"code = '7203'\" ", dsn, tmp_gpkg_file, output_layer_name))
  148. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_grass -t_srs \"EPSG:3301\" -where \"code = '7218'\" ", dsn, tmp_gpkg_file, output_layer_name))
  149. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_park -t_srs \"EPSG:3301\" -where \"code = '7202'\" ", dsn, tmp_gpkg_file, output_layer_name))
  150. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_farmland -t_srs \"EPSG:3301\" -where \"code = '7229'\" ", dsn, tmp_gpkg_file, output_layer_name))
  151. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_scrub -t_srs \"EPSG:3301\" -where \"code = '7217'\" ", dsn, tmp_gpkg_file, output_layer_name))
  152. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_meadow -t_srs \"EPSG:3301\" -where \"code = '7208'\" ", dsn, tmp_gpkg_file, output_layer_name))
  153. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_cemetery -t_srs \"EPSG:3301\" -where \"code = '7206'\" ", dsn, tmp_gpkg_file, output_layer_name))
  154. system(sprintf("ogr2ogr -f GPKG -overwrite %s %s -nln %s_military -t_srs \"EPSG:3301\" -where \"code = '7213'\" ", dsn, tmp_gpkg_file, output_layer_name))
  155. }
  156. }
  157. ## ---------------------- vaata layer'id ----------------------
  158. # Vaata layer'eid
  159. sf::st_layers(dsn = dsn)
  160. }
  161. # piirkonnale_polygoonide_lisamine(obj = NULL, pk = NULL, gpkg_home = "/tmp")