ws.py 11 KB

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  1. """
  2. @package core.ws
  3. @brief Fetching and preparation of web service data for rendering.
  4. Note: Currently only WMS is implemented.
  5. Classes:
  6. - ws::RenderWMSMgr
  7. - ws::GDALRasterMerger
  8. (C) 2012 by the GRASS Development Team
  9. This program is free software under the GNU General Public License
  10. (>=v2). Read the file COPYING that comes with GRASS for details.
  11. @author Stepan Turek <stepan.turek seznam.cz> (mentor: Martin Landa)
  12. """
  13. import sys
  14. import copy
  15. import wx
  16. from wx.lib.newevent import NewEvent
  17. from grass.script.utils import try_remove
  18. from grass.script.task import cmdtuple_to_list
  19. from grass.script import core as grass
  20. from core import utils
  21. from core.debug import Debug
  22. from core.gconsole import CmdThread, GStderr, EVT_CMD_DONE, EVT_CMD_OUTPUT
  23. from core.utils import _
  24. try:
  25. haveGdal = True
  26. from osgeo import gdal
  27. from osgeo import gdalconst
  28. except ImportError:
  29. haveGdal = False
  30. from grass.pydispatch.signal import Signal
  31. class RenderWMSMgr(wx.EvtHandler):
  32. """Fetch and prepare WMS data for rendering.
  33. """
  34. def __init__(self, layer):
  35. if not haveGdal:
  36. sys.stderr.write(_("Unable to load GDAL Python bindings.\n"\
  37. "WMS layers can not be displayed without the bindings.\n"))
  38. self.layer = layer
  39. wx.EvtHandler.__init__(self)
  40. # thread for d.wms commands
  41. self.thread = CmdThread(self)
  42. self.Bind(EVT_CMD_DONE, self.OnDataFetched)
  43. self.downloading = False
  44. self.renderedRegion = None
  45. self.updateMap = True
  46. self.fetched_data_cmd = None
  47. self.cmdStdErr = GStderr(self)
  48. self.tempMap = grass.tempfile()
  49. self.dstSize = {}
  50. self.Bind(EVT_CMD_OUTPUT, self.OnCmdOutput)
  51. self.dataFetched = Signal('RenderWMSMgr.dataFetched')
  52. self.updateProgress = Signal('RenderWMSMgr.updateProgress')
  53. def __del__(self):
  54. try_remove(self.tempMap)
  55. def Render(self, cmd, env):
  56. """If it is needed, download missing WMS data.
  57. .. todo::
  58. lmgr deletes mapfile and maskfile when order of layers
  59. was changed (drag and drop) - if deleted, fetch data again
  60. """
  61. if not haveGdal:
  62. return
  63. env = copy.copy(env)
  64. self.dstSize['cols'] = int(env["GRASS_RENDER_WIDTH"])
  65. self.dstSize['rows'] = int(env["GRASS_RENDER_HEIGHT"])
  66. region = self._getRegionDict(env)
  67. self._fitAspect(region, self.dstSize)
  68. self.updateMap = True
  69. fetchData = False
  70. zoomChanged = False
  71. if self.renderedRegion is None or \
  72. cmd != self.fetched_data_cmd:
  73. fetchData = True
  74. else:
  75. for c in ['north', 'south', 'east', 'west']:
  76. if self.renderedRegion and \
  77. region[c] != self.renderedRegion[c]:
  78. fetchData = True
  79. break
  80. for c in ['e-w resol', 'n-s resol']:
  81. if self.renderedRegion and \
  82. region[c] != self.renderedRegion[c]:
  83. zoomChanged = True
  84. break
  85. if fetchData:
  86. self.fetched_data_cmd = None
  87. self.renderedRegion = region
  88. try_remove(self.layer.mapfile)
  89. try_remove(self.tempMap)
  90. self.currentPid = self.thread.GetId()
  91. self.thread.abort()
  92. self.downloading = True
  93. self.fetching_cmd = cmd
  94. cmdList = cmdtuple_to_list(cmd)
  95. if Debug.GetLevel() < 3:
  96. cmdList.append('--quiet')
  97. env["GRASS_RENDER_FILE"] = self.tempMap
  98. env["GRASS_REGION"] = self._createRegionStr(region)
  99. self.thread.RunCmd(cmdList, env=env, stderr=self.cmdStdErr)
  100. def OnCmdOutput(self, event):
  101. """Print cmd output according to debug level.
  102. """
  103. if Debug.GetLevel() == 0:
  104. if event.type == 'error':
  105. sys.stderr.write(event.text)
  106. sys.stderr.flush()
  107. else:
  108. Debug.msg(1, event.text)
  109. def OnDataFetched(self, event):
  110. """Fetch data
  111. """
  112. if event.pid != self.currentPid:
  113. return
  114. self.downloading = False
  115. if not self.updateMap:
  116. self.updateProgress.emit(layer=self.layer)
  117. self.renderedRegion = None
  118. self.fetched_data_cmd = None
  119. return
  120. self.mapMerger = GDALRasterMerger(targetFile = self.layer.mapfile,
  121. region = self.renderedRegion,
  122. bandsNum = 3, gdalDriver = 'PNM', fillValue = 0)
  123. self.mapMerger.AddRasterBands(self.tempMap, {1 : 1, 2 : 2, 3 : 3})
  124. del self.mapMerger
  125. self.maskMerger = GDALRasterMerger(targetFile = self.layer.maskfile, region = self.renderedRegion,
  126. bandsNum = 1, gdalDriver = 'PNM', fillValue = 0)
  127. #{4 : 1} alpha channel (4) to first and only channel (1) in mask
  128. self.maskMerger.AddRasterBands(self.tempMap, {4 : 1})
  129. del self.maskMerger
  130. self.fetched_data_cmd = self.fetching_cmd
  131. self.dataFetched.emit()
  132. def _getRegionDict(self, env):
  133. """Parse string from GRASS_REGION env variable into dict.
  134. """
  135. region = {}
  136. parsedRegion = env["GRASS_REGION"].split(';')
  137. for r in parsedRegion:
  138. r = r.split(':')
  139. r[0] = r[0].strip()
  140. if len(r) < 2:
  141. continue
  142. try:
  143. if r[0] in ['cols', 'rows']:
  144. region[r[0]] = int(r[1])
  145. else:
  146. region[r[0]] = float(r[1])
  147. except ValueError:
  148. region[r[0]] = r[1]
  149. return region
  150. def _createRegionStr(self, region):
  151. """Create string for GRASS_REGION env variable from dict created by _getRegionDict.
  152. """
  153. regionStr = ''
  154. for k, v in region.iteritems():
  155. item = k + ': ' + str(v)
  156. if regionStr:
  157. regionStr += '; '
  158. regionStr += item
  159. return regionStr
  160. def IsDownloading(self):
  161. """Is it downloading any data from WMS server?
  162. """
  163. return self.downloading
  164. def _fitAspect(self, region, size):
  165. """Compute region parameters to have direction independent resolution.
  166. """
  167. if region['n-s resol'] > region['e-w resol']:
  168. delta = region['n-s resol'] * size['cols'] / 2
  169. center = (region['east'] - region['west'])/2
  170. region['east'] = center + delta + region['west']
  171. region['west'] = center - delta + region['west']
  172. region['e-w resol'] = region['n-s resol']
  173. else:
  174. delta = region['e-w resol'] * size['rows'] / 2
  175. center = (region['north'] - region['south'])/2
  176. region['north'] = center + delta + region['south']
  177. region['south'] = center - delta + region['south']
  178. region['n-s resol'] = region['e-w resol']
  179. def Abort(self):
  180. """Abort process"""
  181. self.updateMap = False
  182. self.thread.abort(abortall = True)
  183. class GDALRasterMerger:
  184. """Merge rasters.
  185. Based on gdal_merge.py utility.
  186. """
  187. def __init__(self, targetFile, region, bandsNum, gdalDriver, fillValue = None):
  188. """Create raster for merging.
  189. """
  190. self.gdalDrvType = gdalDriver
  191. nsRes = (region['south'] - region['north']) / region['rows']
  192. ewRes = (region['east'] - region['west']) / region['cols']
  193. self.tGeotransform = [region['west'], ewRes, 0, region['north'], 0, nsRes]
  194. self.tUlx, self.tUly, self.tLrx, self.tLry = self._getCorners(self.tGeotransform, region)
  195. driver = gdal.GetDriverByName(self.gdalDrvType)
  196. self.tDataset = driver.Create(targetFile, region['cols'], region['rows'], bandsNum, gdal.GDT_Byte)
  197. if fillValue is not None:
  198. # fill raster bands with a constant value
  199. for iBand in range(1, self.tDataset.RasterCount + 1):
  200. self.tDataset.GetRasterBand(iBand).Fill(fillValue)
  201. def AddRasterBands(self, sourceFile, sTBands):
  202. """Add raster bands from sourceFile into the merging raster.
  203. """
  204. sDataset = gdal.Open(sourceFile, gdal.GA_ReadOnly)
  205. if sDataset is None:
  206. return
  207. sGeotransform = sDataset.GetGeoTransform()
  208. sSize = {
  209. 'rows' : sDataset.RasterYSize,
  210. 'cols' : sDataset.RasterXSize
  211. }
  212. sUlx, sUly, sLrx, sLry = self._getCorners(sGeotransform, sSize)
  213. # figure out intersection region
  214. tIntsctUlx = max(self.tUlx,sUlx)
  215. tIntsctLrx = min(self.tLrx,sLrx)
  216. if self.tGeotransform[5] < 0:
  217. tIntsctUly = min(self.tUly,sUly)
  218. tIntsctLry = max(self.tLry,sLry)
  219. else:
  220. tIntsctUly = max(self.tUly,sUly)
  221. tIntsctLry = min(self.tLry,sLry)
  222. # do they even intersect?
  223. if tIntsctUlx >= tIntsctLrx:
  224. return
  225. if self.tGeotransform[5] < 0 and tIntsctUly <= tIntsctLry:
  226. return
  227. if self.tGeotransform[5] > 0 and tIntsctUly >= tIntsctLry:
  228. return
  229. # compute target window in pixel coordinates.
  230. tXoff = int((tIntsctUlx - self.tGeotransform[0]) / self.tGeotransform[1] + 0.1)
  231. tYoff = int((tIntsctUly - self.tGeotransform[3]) / self.tGeotransform[5] + 0.1)
  232. tXsize = int((tIntsctLrx - self.tGeotransform[0])/self.tGeotransform[1] + 0.5) - tXoff
  233. tYsize = int((tIntsctLry - self.tGeotransform[3])/self.tGeotransform[5] + 0.5) - tYoff
  234. if tXsize < 1 or tYsize < 1:
  235. return
  236. # Compute source window in pixel coordinates.
  237. sXoff = int((tIntsctUlx - sGeotransform[0]) / sGeotransform[1])
  238. sYoff = int((tIntsctUly - sGeotransform[3]) / sGeotransform[5])
  239. sXsize = int((tIntsctLrx - sGeotransform[0]) / sGeotransform[1] + 0.5) - sXoff
  240. sYsize = int((tIntsctLry - sGeotransform[3]) / sGeotransform[5] + 0.5) - sYoff
  241. if sXsize < 1 or sYsize < 1:
  242. return
  243. for sBandNnum, tBandNum in sTBands.iteritems():
  244. bandData = sDataset.GetRasterBand(sBandNnum).ReadRaster(sXoff, sYoff, sXsize,
  245. sYsize, tXsize, tYsize, gdal.GDT_Byte)
  246. self.tDataset.GetRasterBand(tBandNum).WriteRaster(tXoff, tYoff, tXsize, tYsize, bandData,
  247. tXsize, tYsize, gdal.GDT_Byte)
  248. def _getCorners(self, geoTrans, size):
  249. ulx = geoTrans[0]
  250. uly = geoTrans[3]
  251. lrx = geoTrans[0] + size['cols'] * geoTrans[1]
  252. lry = geoTrans[3] + size['rows'] * geoTrans[5]
  253. return ulx, uly, lrx, lry
  254. def SetGeorefAndProj(self):
  255. """Set georeference and projection to target file
  256. """
  257. projection = grass.read_command('g.proj',
  258. flags = 'wf')
  259. self.tDataset.SetProjection(projection)
  260. self.tDataset.SetGeoTransform(self.tGeotransform)
  261. def __del__(self):
  262. self.tDataset = None