utils.py 11 KB

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  1. """!
  2. @package animation.utils
  3. @brief Miscellaneous functions and enum classes
  4. Classes:
  5. - utils::TemporalMode
  6. - utils::TemporalType
  7. - utils::Orientation
  8. - utils::ReplayMode
  9. (C) 2013 by the GRASS Development Team
  10. This program is free software under the GNU General Public License
  11. (>=v2). Read the file COPYING that comes with GRASS for details.
  12. @author Anna Perasova <kratochanna gmail.com>
  13. """
  14. import os
  15. import wx
  16. import hashlib
  17. from multiprocessing import cpu_count
  18. try:
  19. from PIL import Image
  20. hasPIL = True
  21. except ImportError:
  22. hasPIL = False
  23. import grass.temporal as tgis
  24. import grass.script as grass
  25. from core.gcmd import GException
  26. from core.utils import _
  27. class TemporalMode:
  28. TEMPORAL = 1
  29. NONTEMPORAL = 2
  30. class TemporalType:
  31. ABSOLUTE = 1
  32. RELATIVE = 2
  33. class Orientation:
  34. FORWARD = 1
  35. BACKWARD = 2
  36. class ReplayMode:
  37. ONESHOT = 1
  38. REVERSE = 2
  39. REPEAT = 3
  40. def validateTimeseriesName(timeseries, etype='strds'):
  41. """!Checks if space time dataset exists and completes missing mapset.
  42. Raises GException if dataset doesn't exist.
  43. """
  44. trastDict = tgis.tlist_grouped(etype)
  45. if timeseries.find("@") >= 0:
  46. nameShort, mapset = timeseries.split('@', 1)
  47. if nameShort in trastDict[mapset]:
  48. return timeseries
  49. else:
  50. raise GException(_("Space time dataset <%s> not found.") % timeseries)
  51. for mapset, names in trastDict.iteritems():
  52. if timeseries in names:
  53. return timeseries + "@" + mapset
  54. raise GException(_("Space time dataset <%s> not found.") % timeseries)
  55. def validateMapNames(names, etype):
  56. """!Checks if maps exist and completes missing mapset.
  57. Input is list of map names.
  58. Raises GException if map doesn't exist.
  59. """
  60. mapDict = grass.list_grouped(etype)
  61. newNames = []
  62. for name in names:
  63. if name.find("@") >= 0:
  64. nameShort, mapset = name.split('@', 1)
  65. if nameShort in mapDict[mapset]:
  66. newNames.append(name)
  67. else:
  68. raise GException(_("Map <%s> not found.") % name)
  69. else:
  70. found = False
  71. for mapset, mapNames in mapDict.iteritems():
  72. if name in mapNames:
  73. found = True
  74. newNames.append(name + "@" + mapset)
  75. if not found:
  76. raise GException(_("Map <%s> not found.") % name)
  77. return newNames
  78. def getRegisteredMaps(timeseries, etype):
  79. """!Returns list of maps registered in dataset.
  80. Can throw ScriptError if the dataset doesn't exist.
  81. """
  82. timeseriesMaps = []
  83. sp = tgis.open_old_space_time_dataset(timeseries, etype)
  84. rows = sp.get_registered_maps(columns="id", where=None, order="start_time")
  85. timeseriesMaps = []
  86. if rows:
  87. for row in rows:
  88. timeseriesMaps.append(row["id"])
  89. return timeseriesMaps
  90. def checkSeriesCompatibility(mapSeriesList=None, timeseriesList=None):
  91. """!Checks whether time series (map series and stds) are compatible,
  92. which means they have equal number of maps ad times (in case of stds).
  93. This is needed within layer list, not within the entire animation tool.
  94. Throws GException if these are incompatible.
  95. @return number of maps for animation
  96. """
  97. timeseriesInfo = {'count': set(), 'temporalType': set(), 'mapType': set(),
  98. 'mapTimes': set()}
  99. if timeseriesList:
  100. for stds, etype in timeseriesList:
  101. sp = tgis.open_old_space_time_dataset(stds, etype)
  102. mapType = sp.get_map_time() # interval, ...
  103. tempType = sp.get_initial_values()[0] # absolute
  104. timeseriesInfo['mapType'].add(mapType)
  105. timeseriesInfo['temporalType'].add(tempType)
  106. rows = sp.get_registered_maps_as_objects(where=None,
  107. order="start_time")
  108. if rows:
  109. times = []
  110. timeseriesInfo['count'].add(len(rows))
  111. for row in rows:
  112. if tempType == 'absolute':
  113. time = row.get_absolute_time()
  114. else:
  115. time = row.get_relative_time()
  116. times.append(time)
  117. timeseriesInfo['mapTimes'].add(tuple(times))
  118. else:
  119. timeseriesInfo['mapTimes'].add(None)
  120. timeseriesInfo['count'].add(None)
  121. if len(timeseriesInfo['count']) > 1:
  122. raise GException(_("The number of maps in space-time datasets "
  123. "has to be the same."))
  124. if len(timeseriesInfo['temporalType']) > 1:
  125. raise GException(_("The temporal type (absolute/relative) of space-time datasets "
  126. "has to be the same."))
  127. if len(timeseriesInfo['mapType']) > 1:
  128. raise GException(_("The map type (point/interval) of space-time datasets "
  129. "has to be the same."))
  130. if len(timeseriesInfo['mapTimes']) > 1:
  131. raise GException(_("The temporal extents of maps in space-time datasets "
  132. "have to be the same."))
  133. if mapSeriesList:
  134. count = set()
  135. for mapSeries in mapSeriesList:
  136. count.add(len(mapSeries))
  137. if len(count) > 1:
  138. raise GException(_("The number of maps to animate has to be "
  139. "the same for each map series."))
  140. if timeseriesList and list(count)[0] != list(timeseriesInfo['count'])[0]:
  141. raise GException(_("The number of maps to animate has to be "
  142. "the same as the number of maps in temporal dataset."))
  143. if mapSeriesList:
  144. return list(count)[0]
  145. if timeseriesList:
  146. return list(timeseriesInfo['count'])[0]
  147. def ComputeScaledRect(sourceSize, destSize):
  148. """!Fits source rectangle into destination rectangle
  149. by scaling and centering.
  150. @code
  151. >>> ComputeScaledRect(sourceSize = (10, 40), destSize = (100, 50))
  152. {'height': 50, 'scale': 1.25, 'width': 13, 'x': 44, 'y': 0}
  153. @endcode
  154. @param sourceSize size of source rectangle
  155. @param destSize size of destination rectangle
  156. """
  157. ratio1 = destSize[0] / float(sourceSize[0])
  158. ratio2 = destSize[1] / float(sourceSize[1])
  159. if ratio1 < ratio2:
  160. scale = ratio1
  161. width = int(sourceSize[0] * scale + 0.5)
  162. height = int(sourceSize[1] * scale + 0.5)
  163. x = 0
  164. y = int((destSize[1] - height) / 2. + 0.5)
  165. else:
  166. scale = ratio2
  167. width = int(sourceSize[0] * scale + 0.5)
  168. height = int(sourceSize[1] * scale + 0.5)
  169. y = 0
  170. x = int((destSize[0] - width) / 2. + 0.5)
  171. return {'width': width, 'height': height, 'x': x, 'y': y, 'scale': scale}
  172. def RenderText(text, font):
  173. """!Renderes text with given font to bitmap."""
  174. dc = wx.MemoryDC()
  175. dc.SetFont(font)
  176. w, h = dc.GetTextExtent(text)
  177. bmp = wx.EmptyBitmap(w + 2, h + 2)
  178. dc.SelectObject(bmp)
  179. dc.SetBrush(wx.TRANSPARENT_BRUSH)
  180. dc.SetBackgroundMode(wx.TRANSPARENT)
  181. dc.Clear()
  182. dc.DrawText(text, 1, 1)
  183. dc.SelectObject(wx.NullBitmap)
  184. bmp.SetMaskColour(wx.WHITE)
  185. return bmp
  186. def WxImageToPil(image):
  187. """!Converts wx.Image to PIL image"""
  188. pilImage = Image.new('RGB', (image.GetWidth(), image.GetHeight()))
  189. pilImage.fromstring(image.GetData())
  190. return pilImage
  191. def HashCmd(cmd, region):
  192. """!Returns a hash from command given as a list and a region as a dict."""
  193. name = '_'.join(cmd)
  194. if region:
  195. name += str(sorted(region.items()))
  196. return hashlib.sha1(name).hexdigest()
  197. def HashCmds(cmds, region):
  198. """!Returns a hash from list of commands and regions as dicts."""
  199. name = ';'.join([item for sublist in cmds for item in sublist])
  200. if region:
  201. name += str(sorted(region.items()))
  202. return hashlib.sha1(name).hexdigest()
  203. def GetFileFromCmd(dirname, cmd, region, extension='ppm'):
  204. """!Returns file path created as a hash from command and region."""
  205. return os.path.join(dirname, HashCmd(cmd, region) + '.' + extension)
  206. def GetFileFromCmds(dirname, cmds, region, extension='ppm'):
  207. """!Returns file path created as a hash from list of commands and regions."""
  208. return os.path.join(dirname, HashCmds(cmds, region) + '.' + extension)
  209. def layerListToCmdsMatrix(layerList):
  210. """!Goes thru layerList and create matrix of commands
  211. for the composition of map series.:
  212. @returns matrix of cmds for composition
  213. """
  214. count = 0
  215. for layer in layerList:
  216. if layer.active and hasattr(layer, 'maps'):
  217. # assuming the consistency of map number is checked already
  218. count = len(layer.maps)
  219. break
  220. cmdsForComposition = []
  221. for layer in layerList:
  222. if not layer.active:
  223. continue
  224. if hasattr(layer, 'maps'):
  225. for i, part in enumerate(layer.cmd):
  226. if part.startswith('map='):
  227. cmd = layer.cmd[:]
  228. cmds = []
  229. for map_ in layer.maps:
  230. cmd[i] = 'map={name}'.format(name=map_)
  231. cmds.append(cmd[:])
  232. cmdsForComposition.append(cmds)
  233. else:
  234. cmdsForComposition.append([layer.cmd] * count)
  235. return zip(*cmdsForComposition)
  236. def sampleCmdMatrixAndCreateNames(cmdMatrix, sampledSeries, regions):
  237. """!Applies information from temporal sampling
  238. to the command matrix."""
  239. namesList = []
  240. j = -1
  241. lastName = ''
  242. for name in sampledSeries:
  243. if name is not None:
  244. if lastName != name:
  245. lastName = name
  246. j += 1
  247. namesList.append(HashCmds(cmdMatrix[j], regions[j]))
  248. else:
  249. namesList.append(None)
  250. assert(j == len(cmdMatrix) - 1)
  251. return namesList
  252. def getCpuCount():
  253. """!Returns number of available cpus.
  254. If fails, default (4) is returned.
  255. """
  256. try:
  257. return cpu_count()
  258. except NotImplementedError:
  259. return 4
  260. def interpolate(start, end, count):
  261. """!Interpolates values between start and end.
  262. @param start start value (float)
  263. @param end end value (float)
  264. @param count total number of values including start and end
  265. >>> interpolate(0, 10, 5)
  266. [0, 2.5, 5.0, 7.5, 10]
  267. >>> interpolate(10, 0, 5)
  268. [10, 7.5, 5.0, 2.5, 0]
  269. """
  270. step = (end - start) / float(count - 1)
  271. values = []
  272. if start < end:
  273. while start < end:
  274. values.append(start)
  275. start += step
  276. else:
  277. while end < start:
  278. values.append(start)
  279. start += step
  280. values.append(end)
  281. return values