core_c.py 7.3 KB

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  1. """
  2. @package iscatt.core_c
  3. @brief Wrappers for scatter plot C backend.
  4. (C) 2013 by the GRASS Development Team
  5. This program is free software under the GNU General Public License
  6. (>=v2). Read the file COPYING that comes with GRASS for details.
  7. @author Stepan Turek <stepan.turek seznam.cz> (mentor: Martin Landa)
  8. """
  9. import sys
  10. import numpy as np
  11. from multiprocessing import Process, Queue
  12. from ctypes import *
  13. try:
  14. from grass.lib.imagery import *
  15. from grass.lib.gis import Cell_head, G_get_window
  16. except ImportError as e:
  17. sys.stderr.write(_("Loading ctypes libs failed"))
  18. from core.gcmd import GException
  19. def Rasterize(polygon, rast, region, value):
  20. rows, cols = rast.shape
  21. # TODO creating of region is on many places
  22. region['rows'] = rows
  23. region['cols'] = cols
  24. region['nsres'] = 1.0
  25. region['ewres'] = 1.0
  26. q = Queue()
  27. p = Process(target=_rasterize, args=(polygon, rast, region, value, q))
  28. p.start()
  29. rast = q.get()
  30. p.join()
  31. return rast
  32. def ApplyColormap(vals, vals_mask, colmap, out_vals):
  33. c_uint8_p = POINTER(c_uint8)
  34. vals_p = vals.ctypes.data_as(c_uint8_p)
  35. if hasattr(vals_mask, "ctypes"):
  36. vals_mask_p = vals_mask.ctypes.data_as(c_uint8_p)
  37. else: # vals mask is empty (all data are selected)
  38. vals_mask_p = None
  39. colmap_p = colmap.ctypes.data_as(c_uint8_p)
  40. out_vals_p = out_vals.ctypes.data_as(c_uint8_p)
  41. vals_size = vals.reshape((-1)).shape[0]
  42. I_apply_colormap(vals_p, vals_mask_p, vals_size, colmap_p, out_vals_p)
  43. def MergeArrays(merged_arr, overlay_arr, alpha):
  44. if merged_arr.shape != overlay_arr.shape:
  45. GException("MergeArrays: merged_arr.shape != overlay_arr.shape")
  46. c_uint8_p = POINTER(c_uint8)
  47. merged_p = merged_arr.ctypes.data_as(c_uint8_p)
  48. overlay_p = overlay_arr.ctypes.data_as(c_uint8_p)
  49. I_merge_arrays(
  50. merged_p,
  51. overlay_p,
  52. merged_arr.shape[0],
  53. merged_arr.shape[1],
  54. alpha)
  55. def ComputeScatts(region, scatt_conds, bands, n_bands,
  56. scatts, cats_rasts_conds, cats_rasts):
  57. _memmapToFileNames(scatts)
  58. _memmapToFileNames(scatt_conds)
  59. q = Queue()
  60. p = Process(
  61. target=_computeScattsProcess,
  62. args=(
  63. region,
  64. scatt_conds,
  65. bands,
  66. n_bands,
  67. scatts,
  68. cats_rasts_conds,
  69. cats_rasts,
  70. q))
  71. p.start()
  72. ret = q.get()
  73. p.join()
  74. return ret[0], ret[1]
  75. #_memmapToFileNames and _fileNamesToMemmap are workaround for older numpy version,
  76. # where memmap objects are not pickable,
  77. # and therefore cannot be passed to process spawned by multiprocessing module
  78. def _memmapToFileNames(data):
  79. for k, v in data.iteritems():
  80. if 'np_vals' in v:
  81. data[k]['np_vals'] = v['np_vals'].filename()
  82. def _fileNamesToMemmap(data):
  83. for k, v in data.iteritems():
  84. if 'np_vals' in v:
  85. data[k]['np_vals'] = np.memmap(filename=v['np_vals'])
  86. def UpdateCatRast(patch_rast, region, cat_rast):
  87. q = Queue()
  88. p = Process(
  89. target=_updateCatRastProcess,
  90. args=(
  91. patch_rast,
  92. region,
  93. cat_rast,
  94. q))
  95. p.start()
  96. ret = q.get()
  97. p.join()
  98. return ret
  99. def CreateCatRast(region, cat_rast):
  100. cell_head = _regionToCellHead(region)
  101. I_create_cat_rast(pointer(cell_head), cat_rast)
  102. def _computeScattsProcess(region, scatt_conds, bands, n_bands, scatts,
  103. cats_rasts_conds, cats_rasts, output_queue):
  104. _fileNamesToMemmap(scatts)
  105. _fileNamesToMemmap(scatt_conds)
  106. sccats_c, cats_rasts_c, refs = _getComputationStruct(
  107. scatts, cats_rasts, SC_SCATT_DATA, n_bands)
  108. scatt_conds_c, cats_rasts_conds_c, refs2 = _getComputationStruct(
  109. scatt_conds, cats_rasts_conds, SC_SCATT_CONDITIONS, n_bands)
  110. char_bands = _stringListToCharArr(bands)
  111. cell_head = _regionToCellHead(region)
  112. ret = I_compute_scatts(pointer(cell_head),
  113. pointer(scatt_conds_c),
  114. pointer(cats_rasts_conds_c),
  115. pointer(char_bands),
  116. n_bands,
  117. pointer(sccats_c),
  118. pointer(cats_rasts_c))
  119. I_sc_free_cats(pointer(sccats_c))
  120. I_sc_free_cats(pointer(scatt_conds_c))
  121. output_queue.put((ret, scatts))
  122. def _getBandcRange(band_info):
  123. band_c_range = struct_Range()
  124. band_c_range.max = band_info['max']
  125. band_c_range.min = band_info['min']
  126. return band_c_range
  127. def _regionToCellHead(region):
  128. cell_head = struct_Cell_head()
  129. G_get_window(pointer(cell_head))
  130. convert_dict = {'n': 'north', 'e': 'east',
  131. 'w': 'west', 's': 'south',
  132. 'nsres': 'ns_res',
  133. 'ewres': 'ew_res'}
  134. for k, v in region.iteritems():
  135. if k in ["rows", "cols", "cells", "zone"]: # zone added in r65224
  136. v = int(v)
  137. else:
  138. v = float(v)
  139. if k in convert_dict:
  140. k = convert_dict[k]
  141. setattr(cell_head, k, v)
  142. return cell_head
  143. def _stringListToCharArr(str_list):
  144. arr = c_char_p * len(str_list)
  145. char_arr = arr()
  146. for i, st in enumerate(str_list):
  147. if st:
  148. char_arr[i] = st
  149. else:
  150. char_arr[i] = None
  151. return char_arr
  152. def _getComputationStruct(cats, cats_rasts, cats_type, n_bands):
  153. sccats = struct_scCats()
  154. I_sc_init_cats(pointer(sccats), c_int(n_bands), c_int(cats_type))
  155. refs = []
  156. cats_rasts_core = []
  157. for cat_id, scatt_ids in cats.iteritems():
  158. cat_c_id = I_sc_add_cat(pointer(sccats))
  159. cats_rasts_core.append(cats_rasts[cat_id])
  160. for scatt_id, dt in scatt_ids.iteritems():
  161. # if key is missing condition is always True (full scatter plor is
  162. # computed)
  163. vals = dt['np_vals']
  164. scatt_vals = scdScattData()
  165. c_void_p = ctypes.POINTER(ctypes.c_void_p)
  166. if cats_type == SC_SCATT_DATA:
  167. vals[:] = 0
  168. elif cats_type == SC_SCATT_CONDITIONS:
  169. pass
  170. else:
  171. return None
  172. data_p = vals.ctypes.data_as(c_void_p)
  173. I_scd_init_scatt_data(
  174. pointer(scatt_vals),
  175. cats_type, len(vals),
  176. data_p)
  177. refs.append(scatt_vals)
  178. I_sc_insert_scatt_data(pointer(sccats),
  179. pointer(scatt_vals),
  180. cat_c_id, scatt_id)
  181. cats_rasts_c = _stringListToCharArr(cats_rasts_core)
  182. return sccats, cats_rasts_c, refs
  183. def _updateCatRastProcess(patch_rast, region, cat_rast, output_queue):
  184. cell_head = _regionToCellHead(region)
  185. ret = I_insert_patch_to_cat_rast(patch_rast,
  186. pointer(cell_head),
  187. cat_rast)
  188. output_queue.put(ret)
  189. def _rasterize(polygon, rast, region, value, output_queue):
  190. pol_size = len(polygon) * 2
  191. pol = np.array(polygon, dtype=float)
  192. c_uint8_p = POINTER(c_uint8)
  193. c_double_p = POINTER(c_double)
  194. pol_p = pol.ctypes.data_as(c_double_p)
  195. rast_p = rast.ctypes.data_as(c_uint8_p)
  196. cell_h = _regionToCellHead(region)
  197. I_rasterize(pol_p,
  198. len(polygon),
  199. value,
  200. pointer(cell_h), rast_p)
  201. output_queue.put(rast)