pk_teisendame_punkte.R 7.3 KB

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  1. #' Piirkonnale andmebaasides olevate punktide teisendamine
  2. #'
  3. #' Etteantud piirkonna geomeetrilise piirjoone ('piir') ja selle joone piirikasti ('bb') järele leitakse nende aladega kaetud punktid. Andmed salvestatakse postgis andmebaasi.
  4. #'
  5. #' @param obj str Objekti nimi. Edaspidi on oluline ainult see nimi. Piirkonna geomeetrilist joont ei ole vaja lisada.
  6. #' @param conf A list() of configuration variables. Default values \code{\link[ruut]{get_config}}.
  7. #' @return Uute andmebaasi kihtide 'piir_...' ja 'bb_...' loomine.
  8. #' @seealso [sf::st_read()], [sf::write_sf()],[sf::st_transform()],[ruut::pk_sellest_alustame_db_loomist()],[ruut::pk_lisame_ruudustikud()] ,[ruut::pk_lisame_polygoonid()],[ruut::pk_lisame_jooned()],[ruut::pk_lisame_punktid()],[ruut::pk_teisendame_polygoone()],[ruut::pk_teisendame_jooni()],[ruut::pk_teisendame_punkte()]
  9. #' @keywords postgis, boundary box, EPSG:3301
  10. #' @export
  11. #' @examples
  12. #' \dontrun{
  13. #'
  14. #' obj <- "marja"
  15. #' pk_teisendame_punkte(obj = obj, conf = NULL)
  16. #'
  17. #' # Layers list.
  18. #' ruut::db_schema_tablenames(conf = conf)
  19. #' }
  20. pk_teisendame_punkte <- function(obj = NULL, conf = NULL) {
  21. ## ------------- muutujad ja teisendused ---------------
  22. vars <- ajutised_muutujad(pk = NULL, obj, conf)
  23. obj <- vars$obj
  24. piir <- vars$pk
  25. conf <- vars$conf
  26. ## Konfiguratsiooni muutujale väärtuste omistamine, kui seda pole antud.
  27. if (!any("a00_piir" %in% ruut::db_schema_tablenames(conf = conf))) {
  28. cat(
  29. "\nAndmebaas loomata. Palun funktsiooniga ruut::pk_sellest_alustame_db_loomist() andmebaasi loomist.\n"
  30. )
  31. return(NULL)
  32. }
  33. ## ====================== teisendused =====================
  34. # Layers list
  35. layer_names <- ruut::db_schema_tablenames(conf = conf)
  36. layer_names <-
  37. layer_names[!layer_names %in% c(
  38. "a00_piir",
  39. "a00_bb2",
  40. "a00_piir_bb",
  41. "bb2_epk10t_grid",
  42. "bb2_epk02t_grid",
  43. "bb2_epk2t_grid"
  44. )]
  45. layer_names <- layer_names[grepl("^data_p_", layer_names)]
  46. for (layer_name in layer_names) {
  47. conn <- ruut::db_connect(conf = conf)
  48. try(ruumiline_obj <-
  49. sf::st_read(dsn = conn,
  50. layer = c(conf$schema, layer_name)))
  51. DBI::dbDisconnect(conn)
  52. ## ------------- Punktide arv ruudus ---------------
  53. ## Kontlrollime kas geomeetriline objekt on punkt.
  54. (is_point <-
  55. any(grepl(
  56. "point", tolower(attributes(ruumiline_obj$geom)$class), fixed = TRUE
  57. )))
  58. if (is_point) {
  59. ## 1. Lõikame objekti ruudistikga tükkideks. Ühte ruutu võib jääda mitu tükki.
  60. ## Peame need pärast ühendama
  61. # ruut::qgis_algorithm_search_by_word("Count")
  62. algorithm <- "native:countpointsinpolygon"
  63. conf$table <- sprintf("%s", layer_name)
  64. points <- ruut::construct_to_gpkg_output_postgres_str(
  65. conf = conf,
  66. geometry_type = "Point",
  67. srid = 3301,
  68. checkPrimaryKeyUnicity = TRUE,
  69. key = "id",
  70. geometry_field = "geom"
  71. )
  72. conf$table <- sprintf("%s", "bb2_epk02t_grid")
  73. polygons <- ruut::construct_to_gpkg_output_postgres_str(
  74. conf = conf,
  75. geometry_type = "Polygon",
  76. srid = 3301,
  77. checkPrimaryKeyUnicity = TRUE,
  78. key = "id",
  79. geometry_field = "geom"
  80. )
  81. output <- vars$tmp_gpkg_file_output_1 # ajutine fail
  82. str <-
  83. sprintf(
  84. "{ 'CLASSFIELD' : '', 'FIELD' : 'value', 'OUTPUT' : '%s', 'POINTS' : '%s', 'POLYGONS' : '%s', 'WEIGHT' : '' }",
  85. output,
  86. points,
  87. polygons
  88. )
  89. cmd <-
  90. ruut::construct_qgis_output_result_to_better_format(str = str, algorithm = algorithm)
  91. system(cmd)
  92. ## 2. ------------- TIFF ----------------
  93. conn <- ruut::db_connect(conf = conf)
  94. grid_layer <-
  95. sf::read_sf(dsn = conn,
  96. layer = c(conf$schema, "bb2_epk02t_grid"))
  97. DBI::dbDisconnect(conn)
  98. # sf::st_crs(grid_layer) <- 3301
  99. pk_attributes <- attributes(grid_layer$geom)
  100. extent <-
  101. sprintf(
  102. "%s,%s,%s,%s [EPSG:3301]",
  103. round((pk_attributes$bbox["xmin"] / 100), digits = 0) * 100,
  104. ceiling((pk_attributes$bbox["xmax"] / 100)) * 100,
  105. round((pk_attributes$bbox["ymin"] / 100), digits = 0) * 100,
  106. ceiling((pk_attributes$bbox["ymax"] / 100)) * 100
  107. )
  108. # ruut::qgis_algorithm_search_by_word("Rasterize")
  109. algorithm <- "gdal:rasterize"
  110. # ruut::qgis_show_help(algorithm = algorithm)
  111. input <- vars$tmp_gpkg_file_input_1
  112. tif_file_name <-
  113. sprintf("tif_%s", gsub("^data_", "", layer_name))
  114. output <- sprintf("%s/%s.tif", vars$tmp_dir, tif_file_name)
  115. str <-
  116. sprintf(
  117. "{ 'BURN' : 0, 'DATA_TYPE' : 5, 'EXTENT' : '%s', 'EXTRA' : '-a_srs epsg:3301', 'FIELD' : 'value', 'HEIGHT' : 100, 'INIT' : None, 'INPUT' : '%s', 'INVERT' : False, 'NODATA' : -1, 'OPTIONS' : '', 'OUTPUT' : '%s', 'UNITS' : 1, 'WIDTH' : 100 }",
  118. extent,
  119. input,
  120. output
  121. )
  122. cmd <-
  123. ruut::construct_qgis_output_result_to_better_format(str = str, algorithm = algorithm)
  124. system(cmd) # Salvestame kataloogi
  125. ## 3. ----------- TIF TO POSTGIS -------------
  126. (
  127. cmd <- sprintf(
  128. "export PGPASSWORD=%s && raster2pgsql -s 3301 -d -I -C -M %s %s.%s_tif | psql -U %s -d %s -h %s -p %s",
  129. conf$password,
  130. output,
  131. conf$schema,
  132. tif_file_name,
  133. conf$user,
  134. conf$dbname,
  135. conf$host,
  136. conf$port
  137. )
  138. )
  139. system(cmd)
  140. ## 4. Eemaldame üleliigsed veerud ja salvestame tiff alusfaili andmebaasi
  141. # ruut::qgis_algorithm_search_by_word("Drop ")
  142. algorithm <- "native:deletecolumn"
  143. input <- vars$tmp_gpkg_file_input_1
  144. conf$table <-
  145. sprintf("grid_%s", gsub("^data_", "", layer_name))
  146. output <-
  147. ruut::construct_to_gpkg_output_postgres_str(
  148. conf = conf,
  149. geometry_field = "geom",
  150. geometry_type = "Point",
  151. srid = 3301,
  152. checkPrimaryKeyUnicity = FALSE,
  153. key = "id"
  154. )
  155. cmd <-
  156. sprintf(
  157. "qgis_process run %s --COLUMN='fid' --COLUMN='left' --COLUMN='top' --COLUMN='right' --COLUMN='bottom' --INPUT='%s' --OUTPUT='%s' ",
  158. algorithm,
  159. input,
  160. output
  161. )
  162. system(cmd)
  163. ## 5. Kustutame geom veeru.
  164. conn <- ruut::db_connect(conf = conf)
  165. q <-
  166. sprintf("ALTER TABLE \"%s\".\"%s\" DROP COLUMN geom;",
  167. conf$schema,
  168. conf$table)
  169. cat(sprintf("\n-----------------\n%s\n\n", q))
  170. DBI::dbSendQuery(conn, q)
  171. ## 6. Vaakum.
  172. q <-
  173. sprintf(
  174. "VACUUM (FULL, FREEZE, VERBOSE, ANALYZE, INDEX_CLEANUP) \"%s\".\"%s\";",
  175. conf$schema,
  176. conf$table
  177. )
  178. cat(sprintf("\n-----------------\n%s\n\n", q))
  179. DBI::dbSendQuery(conn, q)
  180. ## 6. Add foreign key.
  181. q <-
  182. sprintf(
  183. "ALTER TABLE \"%s\".\"%s\" ADD CONSTRAINT %s_fk FOREIGN KEY (id) REFERENCES %s.bb2_epk02t_grid(id);",
  184. conf$schema,
  185. conf$table,
  186. conf$table,
  187. conf$schema
  188. )
  189. cat(sprintf("\n-----------------\n%s\n\n", q))
  190. DBI::dbSendQuery(conn, q)
  191. DBI::dbDisconnect(conn)
  192. }
  193. }
  194. ## Layers list
  195. conf$schema <- obj
  196. ruut::db_schema_tablenames(conf = conf)
  197. sf::st_layers(dsn = vars$tmp_gpkg_file)
  198. }