vector.py 11 KB

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  1. """
  2. Vector related functions to be used in Python scripts.
  3. Usage:
  4. ::
  5. from grass.script import vector as grass
  6. grass.vector_db(map)
  7. (C) 2008-2010 by the GRASS Development Team
  8. This program is free software under the GNU General Public
  9. License (>=v2). Read the file COPYING that comes with GRASS
  10. for details.
  11. .. sectionauthor:: Glynn Clements
  12. .. sectionauthor:: Martin Landa <landa.martin gmail.com>
  13. """
  14. import os
  15. import types
  16. import copy
  17. import __builtin__
  18. from utils import parse_key_val
  19. from core import *
  20. from grass.exceptions import CalledModuleError
  21. def vector_db(map, **args):
  22. """Return the database connection details for a vector map
  23. (interface to `v.db.connect -g`). Example:
  24. >>> vector_db('geology') # doctest: +ELLIPSIS, +NORMALIZE_WHITESPACE
  25. {1: {'layer': 1, ... 'table': 'geology'}}
  26. :param str map: vector map
  27. :param args: other v.db.connect's arguments
  28. :return: dictionary
  29. """
  30. s = read_command('v.db.connect', quiet=True, flags='g', map=map, sep=';',
  31. **args)
  32. result = {}
  33. for l in s.splitlines():
  34. f = l.split(';')
  35. if len(f) != 5:
  36. continue
  37. if '/' in f[0]:
  38. f1 = f[0].split('/')
  39. layer = f1[0]
  40. name = f1[1]
  41. else:
  42. layer = f[0]
  43. name = ''
  44. result[int(layer)] = {
  45. 'layer' : int(layer),
  46. 'name' : name,
  47. 'table' : f[1],
  48. 'key' : f[2],
  49. 'database' : f[3],
  50. 'driver' : f[4] }
  51. return result
  52. def vector_layer_db(map, layer):
  53. """Return the database connection details for a vector map layer.
  54. If db connection for given layer is not defined, fatal() is called.
  55. :param str map: map name
  56. :param layer: layer number
  57. :return: parsed output
  58. """
  59. try:
  60. f = vector_db(map)[int(layer)]
  61. except KeyError:
  62. fatal(_("Database connection not defined for layer %s") % layer)
  63. return f
  64. # run "v.info -c ..." and parse output
  65. def vector_columns(map, layer=None, getDict=True, **args):
  66. """Return a dictionary (or a list) of the columns for the
  67. database table connected to a vector map (interface to `v.info -c`).
  68. >>> vector_columns('geology', getDict=True) # doctest: +NORMALIZE_WHITESPACE
  69. {'PERIMETER': {'index': 2, 'type': 'DOUBLE PRECISION'}, 'GEOL250_':
  70. {'index': 3, 'type': 'INTEGER'}, 'SHAPE_area': {'index': 6, 'type':
  71. 'DOUBLE PRECISION'}, 'onemap_pro': {'index': 1, 'type': 'DOUBLE
  72. PRECISION'}, 'SHAPE_len': {'index': 7, 'type': 'DOUBLE PRECISION'},
  73. 'cat': {'index': 0, 'type': 'INTEGER'}, 'GEOL250_ID': {'index': 4, 'type':
  74. 'INTEGER'}, 'GEO_NAME': {'index': 5, 'type': 'CHARACTER'}}
  75. >>> vector_columns('geology', getDict=False) # doctest: +NORMALIZE_WHITESPACE
  76. ['cat',
  77. 'onemap_pro',
  78. 'PERIMETER',
  79. 'GEOL250_',
  80. 'GEOL250_ID',
  81. 'GEO_NAME',
  82. 'SHAPE_area',
  83. 'SHAPE_len']
  84. :param str map: map name
  85. :param layer: layer number or name (None for all layers)
  86. :param bool getDict: True to return dictionary of columns otherwise list
  87. of column names is returned
  88. :param args: (v.info's arguments)
  89. :return: dictionary/list of columns
  90. """
  91. s = read_command('v.info', flags='c', map=map, layer=layer, quiet=True,
  92. **args)
  93. if getDict:
  94. result = dict()
  95. else:
  96. result = list()
  97. i = 0
  98. for line in s.splitlines():
  99. ctype, cname = line.split('|')
  100. if getDict:
  101. result[cname] = {'type': ctype, 'index': i}
  102. else:
  103. result.append(cname)
  104. i += 1
  105. return result
  106. def vector_history(map):
  107. """Set the command history for a vector map to the command used to
  108. invoke the script (interface to `v.support`).
  109. :param str map: mapname
  110. :return: v.support output
  111. """
  112. run_command('v.support', map=map, cmdhist=os.environ['CMDLINE'])
  113. def vector_info_topo(map):
  114. """Return information about a vector map (interface to `v.info -t`).
  115. Example:
  116. >>> vector_info_topo('geology') # doctest: +NORMALIZE_WHITESPACE
  117. {'lines': 0, 'centroids': 1832, 'boundaries': 3649, 'points': 0,
  118. 'primitives': 5481, 'islands': 907, 'nodes': 2724, 'map3d': False,
  119. 'areas': 1832}
  120. :param str map: map name
  121. :return: parsed output
  122. """
  123. s = read_command('v.info', flags='t', map=map)
  124. ret = parse_key_val(s, val_type=int)
  125. if 'map3d' in ret:
  126. ret['map3d'] = bool(ret['map3d'])
  127. return ret
  128. def vector_info(map):
  129. """Return information about a vector map (interface to
  130. `v.info`). Example:
  131. >>> vector_info('geology') # doctest: +ELLIPSIS, +NORMALIZE_WHITESPACE
  132. {'comment': '', 'projection': 'Lambert Conformal Conic' ... 'south': 10875.8272320917}
  133. :param str map: map name
  134. :return: parsed vector info
  135. """
  136. s = read_command('v.info', flags='get', map=map)
  137. kv = parse_key_val(s)
  138. for k in ['north', 'south', 'east', 'west', 'top', 'bottom']:
  139. kv[k] = float(kv[k])
  140. for k in ['level', 'num_dblinks']:
  141. kv[k] = int(kv[k])
  142. for k in ['nodes', 'points', 'lines', 'boundaries', 'centroids', 'areas',
  143. 'islands', 'primitives']:
  144. kv[k] = int(kv[k])
  145. if 'map3d' in kv:
  146. kv['map3d'] = bool(int(kv['map3d']))
  147. if kv['map3d']:
  148. for k in ['faces', 'kernels', 'volumes', 'holes']:
  149. kv[k] = int(kv[k])
  150. return kv
  151. def vector_db_select(map, layer=1, **kwargs):
  152. """Get attribute data of selected vector map layer.
  153. Function returns list of columns and dictionary of values ordered by
  154. key column value. Example:
  155. >>> print vector_db_select('geology')['columns']
  156. ['cat', 'onemap_pro', 'PERIMETER', 'GEOL250_', 'GEOL250_ID', 'GEO_NAME', 'SHAPE_area', 'SHAPE_len']
  157. >>> print vector_db_select('geology')['values'][3]
  158. ['3', '579286.875', '3335.55835', '4', '3', 'Zml', '579286.829631', '3335.557182']
  159. >>> print vector_db_select('geology', columns = 'GEO_NAME')['values'][3]
  160. ['Zml']
  161. :param str map: map name
  162. :param str layer: layer number
  163. :param kwargs: v.db.select options
  164. :return: dictionary ('columns' and 'values')
  165. """
  166. try:
  167. key = vector_db(map=map)[layer]['key']
  168. except KeyError:
  169. error(_('Missing layer %(layer)d in vector map <%(map)s>') % \
  170. {'layer': layer, 'map': map})
  171. return {'columns': [], 'values': {}}
  172. include_key = True
  173. if 'columns' in kwargs:
  174. if key not in kwargs['columns'].split(','):
  175. # add key column if missing
  176. include_key = False
  177. debug("Adding key column to the output")
  178. kwargs['columns'] += ',' + key
  179. ret = read_command('v.db.select', map=map, layer=layer, **kwargs)
  180. if not ret:
  181. error(_('vector_db_select() failed'))
  182. return {'columns': [], 'values': {}}
  183. columns = []
  184. values = {}
  185. for line in ret.splitlines():
  186. if not columns:
  187. columns = line.split('|')
  188. key_index = columns.index(key)
  189. # discard key column
  190. if not include_key:
  191. columns = columns[:-1]
  192. continue
  193. value = line.split('|')
  194. key_value = int(value[key_index])
  195. if not include_key:
  196. # discard key column
  197. values[key_value] = value[:-1]
  198. else:
  199. values[key_value] = value
  200. return {'columns': columns, 'values': values}
  201. json = None
  202. orderedDict = None
  203. def vector_what(map, coord, distance=0.0, ttype=None, encoding=None):
  204. """Query vector map at given locations
  205. To query one vector map at one location
  206. ::
  207. print grass.vector_what(map='archsites', coord=(595743, 4925281),
  208. distance=250)
  209. [{'Category': 8, 'Map': 'archsites', 'Layer': 1, 'Key_column': 'cat',
  210. 'Database': '/home/martin/grassdata/spearfish60/PERMANENT/dbf/',
  211. 'Mapset': 'PERMANENT', 'Driver': 'dbf',
  212. 'Attributes': {'str1': 'No_Name', 'cat': '8'},
  213. 'Table': 'archsites', 'Type': 'Point', 'Id': 8}]
  214. To query one vector map with multiple layers (no additional parameters
  215. required)
  216. ::
  217. for q in grass.vector_what(map='some_map', distance=100.0,
  218. coord=(596532.357143,4920486.21429)):
  219. print q['Map'], q['Layer'], q['Attributes']
  220. new_bug_sites 1 {'str1': 'Beetle_site', 'GRASSRGB': '', 'cat': '80'}
  221. new_bug_sites 2 {'cat': '80'}
  222. To query more vector maps at one location
  223. ::
  224. for q in grass.vector_what(map=('archsites', 'roads'),
  225. coord=(595743, 4925281), distance=250):
  226. print q['Map'], q['Attributes']
  227. archsites {'str1': 'No_Name', 'cat': '8'}
  228. roads {'label': 'interstate', 'cat': '1'}
  229. To query one vector map at more locations
  230. ::
  231. for q in grass.vector_what(map='archsites', distance=250,
  232. coord=[(595743, 4925281), (597950, 4918898)]):
  233. print q['Map'], q['Attributes']
  234. archsites {'str1': 'No_Name', 'cat': '8'}
  235. archsites {'str1': 'Bob_Miller', 'cat': '22'}
  236. :param map: vector map(s) to query given as string or list/tuple
  237. :param coord: coordinates of query given as tuple (easting, northing) or
  238. list of tuples
  239. :param distance: query threshold distance (in map units)
  240. :param ttype: list of topology types (default of v.what are point, line,
  241. area, face)
  242. :return: parsed list
  243. """
  244. if "LC_ALL" in os.environ:
  245. locale = os.environ["LC_ALL"]
  246. os.environ["LC_ALL"] = "C"
  247. if type(map) in (types.StringType, types.UnicodeType):
  248. map_list = [map]
  249. else:
  250. map_list = map
  251. layer_list = ['-1'] * len(map_list)
  252. coord_list = list()
  253. if type(coord) is types.TupleType:
  254. coord_list.append('%f,%f' % (coord[0], coord[1]))
  255. else:
  256. for e, n in coord:
  257. coord_list.append('%f,%f' % (e, n))
  258. cmdParams = dict(quiet = True,
  259. flags = 'aj',
  260. map = ','.join(map_list),
  261. layer = ','.join(layer_list),
  262. coordinates = ','.join(coord_list),
  263. distance = float(distance))
  264. if ttype:
  265. cmdParams['type'] = ','.join(ttype)
  266. try:
  267. ret = read_command('v.what',
  268. **cmdParams).strip()
  269. except CalledModuleError, e:
  270. raise ScriptError(e.msg)
  271. if "LC_ALL" in os.environ:
  272. os.environ["LC_ALL"] = locale
  273. data = list()
  274. if not ret:
  275. return data
  276. # lazy import
  277. global json
  278. global orderedDict
  279. if json is None:
  280. import json
  281. if orderedDict is None:
  282. try:
  283. from collections import OrderedDict
  284. orderedDict = OrderedDict
  285. except ImportError:
  286. orderedDict = dict
  287. kwargs = {}
  288. if encoding:
  289. kwargs['encoding'] = encoding
  290. if sys.version_info[0:2] > (2, 6):
  291. kwargs['object_pairs_hook'] = orderedDict
  292. try:
  293. result = json.loads(ret, **kwargs)
  294. except ValueError:
  295. raise ScriptError(_("v.what output is not valid JSON format:\n {ret}").format(ret=ret))
  296. for vmap in result['Maps']:
  297. cats = vmap.pop('Categories', None)
  298. if cats:
  299. for cat in cats:
  300. tmp = vmap.copy()
  301. tmp.update(cat)
  302. data.append(tmp)
  303. else:
  304. data.append(vmap)
  305. return data