extract.py 11 KB

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  1. """
  2. Extract functions for space time raster, 3d raster and vector datasets
  3. (C) 2012-2013 by the GRASS Development Team
  4. This program is free software under the GNU General Public
  5. License (>=v2). Read the file COPYING that comes with GRASS
  6. for details.
  7. :authors: Soeren Gebbert
  8. """
  9. from grass.script.utils import get_num_suffix
  10. from space_time_datasets import *
  11. from open_stds import *
  12. from multiprocessing import Process
  13. import grass.script as gscript
  14. ############################################################################
  15. def extract_dataset(input, output, type, where, expression, base, nprocs=1,
  16. register_null=False, layer=1,
  17. vtype="point,line,boundary,centroid,area,face"):
  18. """Extract a subset of a space time raster, raster3d or vector dataset
  19. A mapcalc expression can be provided to process the temporal extracted
  20. maps.
  21. Mapcalc expressions are supported for raster and raster3d maps.
  22. :param input: The name of the input space time raster/raster3d dataset
  23. :param output: The name of the extracted new space time raster/raster3d
  24. dataset
  25. :param type: The type of the dataset: "raster", "raster3d" or vector
  26. :param where: The temporal SQL WHERE statement for subset extraction
  27. :param expression: The r(3).mapcalc expression or the v.extract where
  28. statement
  29. :param base: The base name of the new created maps in case a mapclac
  30. expression is provided
  31. :param nprocs: The number of parallel processes to be used for mapcalc
  32. processing
  33. :param register_null: Set this number True to register empty maps
  34. (only raster and raster3d maps)
  35. :param layer: The vector layer number to be used when no timestamped
  36. layer is present, default is 1
  37. :param vtype: The feature type to be extracted for vector maps, default
  38. is point,line,boundary,centroid,area and face
  39. """
  40. # Check the parameters
  41. msgr = get_tgis_message_interface()
  42. if expression and not base:
  43. msgr.fatal(_("You need to specify the base name of new created maps"))
  44. mapset = get_current_mapset()
  45. dbif = SQLDatabaseInterfaceConnection()
  46. dbif.connect()
  47. sp = open_old_stds(input, type, dbif)
  48. # Check the new stds
  49. new_sp = check_new_stds(output, type, dbif,
  50. gscript.overwrite())
  51. if type == "vector":
  52. rows = sp.get_registered_maps(
  53. "id,name,mapset,layer", where, "start_time", dbif)
  54. else:
  55. rows = sp.get_registered_maps("id", where, "start_time", dbif)
  56. new_maps = {}
  57. if rows:
  58. num_rows = len(rows)
  59. msgr.percent(0, num_rows, 1)
  60. # Run the mapcalc expression
  61. if expression:
  62. count = 0
  63. proc_count = 0
  64. proc_list = []
  65. for row in rows:
  66. count += 1
  67. if count % 10 == 0:
  68. msgr.percent(count, num_rows, 1)
  69. map_name = "{base}_{suffix}".format(base=base,
  70. suffix=get_num_suffix(count, num_rows))
  71. # We need to modify the r(3).mapcalc expression
  72. if type != "vector":
  73. expr = "%s = %s" % (map_name, expression)
  74. expr = expr.replace(sp.base.get_map_id(), row["id"])
  75. expr = expr.replace(sp.base.get_name(), row["id"])
  76. # We need to build the id
  77. map_id = AbstractMapDataset.build_id(map_name, mapset)
  78. else:
  79. map_id = AbstractMapDataset.build_id(map_name, mapset, row["layer"])
  80. new_map = sp.get_new_map_instance(map_id)
  81. # Check if new map is in the temporal database
  82. if new_map.is_in_db(dbif):
  83. if gscript.overwrite():
  84. # Remove the existing temporal database entry
  85. new_map.delete(dbif)
  86. new_map = sp.get_new_map_instance(map_id)
  87. else:
  88. msgr.error(_("Map <%s> is already in temporal database"
  89. ", use overwrite flag to overwrite") %
  90. (new_map.get_map_id()))
  91. continue
  92. # Add process to the process list
  93. if type == "raster":
  94. msgr.verbose(_("Applying r.mapcalc expression: \"%s\"")
  95. % expr)
  96. proc_list.append(Process(target=run_mapcalc2d,
  97. args=(expr,)))
  98. elif type == "raster3d":
  99. msgr.verbose(_("Applying r3.mapcalc expression: \"%s\"")
  100. % expr)
  101. proc_list.append(Process(target=run_mapcalc3d,
  102. args=(expr,)))
  103. elif type == "vector":
  104. msgr.verbose(_("Applying v.extract where statement: \"%s\"")
  105. % expression)
  106. if row["layer"]:
  107. proc_list.append(Process(target=run_vector_extraction,
  108. args=(row["name"] + "@" + \
  109. row["mapset"],
  110. map_name, row["layer"],
  111. vtype, expression)))
  112. else:
  113. proc_list.append(Process(target=run_vector_extraction,
  114. args=(row["name"] + "@" + \
  115. row["mapset"],
  116. map_name, layer, vtype,
  117. expression)))
  118. proc_list[proc_count].start()
  119. proc_count += 1
  120. # Join processes if the maximum number of processes are
  121. # reached or the end of the loop is reached
  122. if proc_count == nprocs or count == num_rows:
  123. proc_count = 0
  124. exitcodes = 0
  125. for proc in proc_list:
  126. proc.join()
  127. exitcodes += proc.exitcode
  128. if exitcodes != 0:
  129. dbif.close()
  130. msgr.fatal(_("Error in computation process"))
  131. # Empty process list
  132. proc_list = []
  133. # Store the new maps
  134. new_maps[row["id"]] = new_map
  135. msgr.percent(0, num_rows, 1)
  136. temporal_type, semantic_type, title, description = sp.get_initial_values()
  137. new_sp = open_new_stds(output, type,
  138. sp.get_temporal_type(),
  139. title, description,
  140. semantic_type, dbif,
  141. gscript.overwrite())
  142. # collect empty maps to remove them
  143. empty_maps = []
  144. # Register the maps in the database
  145. count = 0
  146. for row in rows:
  147. count += 1
  148. if count % 10 == 0:
  149. msgr.percent(count, num_rows, 1)
  150. old_map = sp.get_new_map_instance(row["id"])
  151. old_map.select(dbif)
  152. if expression:
  153. # Register the new maps
  154. if row["id"] in new_maps:
  155. new_map = new_maps[row["id"]]
  156. # Read the raster map data
  157. new_map.load()
  158. # In case of a empty map continue, do not register empty
  159. # maps
  160. if type == "raster" or type == "raster3d":
  161. if new_map.metadata.get_min() is None and \
  162. new_map.metadata.get_max() is None:
  163. if not register_null:
  164. empty_maps.append(new_map)
  165. continue
  166. elif type == "vector":
  167. if new_map.metadata.get_number_of_primitives() == 0 or \
  168. new_map.metadata.get_number_of_primitives() is None:
  169. if not register_null:
  170. empty_maps.append(new_map)
  171. continue
  172. # Set the time stamp
  173. new_map.set_temporal_extent(old_map.get_temporal_extent())
  174. # Insert map in temporal database
  175. new_map.insert(dbif)
  176. new_sp.register_map(new_map, dbif)
  177. else:
  178. new_sp.register_map(old_map, dbif)
  179. # Update the spatio-temporal extent and the metadata table entries
  180. new_sp.update_from_registered_maps(dbif)
  181. msgr.percent(num_rows, num_rows, 1)
  182. # Remove empty maps
  183. if len(empty_maps) > 0:
  184. names = ""
  185. count = 0
  186. for map in empty_maps:
  187. if count == 0:
  188. names += "%s" % (map.get_name())
  189. else:
  190. names += ",%s" % (map.get_name())
  191. count += 1
  192. if type == "raster":
  193. gscript.run_command("g.remove", flags='f', type='rast',
  194. pattern=names, quiet=True)
  195. elif type == "raster3d":
  196. gscript.run_command("g.remove", flags='f', type='rast3d',
  197. pattern=names, quiet=True)
  198. elif type == "vector":
  199. gscript.run_command("g.remove", flags='f', type='vect',
  200. pattern=names, quiet=True)
  201. dbif.close()
  202. ###############################################################################
  203. def run_mapcalc2d(expr):
  204. """Helper function to run r.mapcalc in parallel"""
  205. exit(gscript.run_command("r.mapcalc", expression=expr,
  206. overwrite=gscript.overwrite(), quiet=True))
  207. def run_mapcalc3d(expr):
  208. """Helper function to run r3.mapcalc in parallel"""
  209. exit(gscript.run_command("r3.mapcalc", expression=expr,
  210. overwrite=gscript.overwrite(), quiet=True))
  211. def run_vector_extraction(input, output, layer, type, where):
  212. """Helper function to run r.mapcalc in parallel"""
  213. exit(gscript.run_command("v.extract", input=input, output=output,
  214. layer=layer, type=type, where=where,
  215. overwrite=gscript.overwrite(), quiet=True))