GdalAlgorithm.py 14 KB

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  1. """
  2. ***************************************************************************
  3. GdalAlgorithm.py
  4. ---------------------
  5. Date : August 2012
  6. Copyright : (C) 2012 by Victor Olaya
  7. Email : volayaf at gmail dot com
  8. ***************************************************************************
  9. * *
  10. * This program is free software; you can redistribute it and/or modify *
  11. * it under the terms of the GNU General Public License as published by *
  12. * the Free Software Foundation; either version 2 of the License, or *
  13. * (at your option) any later version. *
  14. * *
  15. ***************************************************************************
  16. """
  17. __author__ = 'Victor Olaya'
  18. __date__ = 'August 2012'
  19. __copyright__ = '(C) 2012, Victor Olaya'
  20. import os
  21. import re
  22. import numpy as np
  23. from PyQt5.QtGui import QIcon
  24. from qgis.PyQt.QtCore import QUrl, QCoreApplication
  25. from qgis.core import (QgsApplication,
  26. QgsProject,
  27. QgsVectorFileWriter,
  28. QgsProcessingFeatureSourceDefinition,
  29. QgsProcessingAlgorithm,
  30. QgsProcessingContext,
  31. QgsProcessingFeedback,
  32. QgsProviderRegistry,
  33. QgsDataSourceUri)
  34. from processing.algs.gdal.GdalAlgorithmDialog import GdalAlgorithmDialog
  35. from processing.algs.gdal.GdalUtils import GdalUtils
  36. from processing.tools.PostgreSQL.PostgreSQL import PostgreSQL
  37. from processing.tools.GeoServer.Geoserver import Geoserver
  38. from processing.tools.GeoServer.GeoService import GeoService
  39. from processing.tools.QGS.QgsProjectUtils import QgsProjectUtils
  40. from processing.tools.PrintUtils import getLastPrint
  41. from processing.tools.requestUtils import (spotfileUpload, downloadspotfile, deletespotfile)
  42. from processing.tools.FileListPrintUtils import getFileListPrint
  43. from processing.tools.SubprocessUtils import RunSubprocess
  44. import processing.tools.QGS.load
  45. from qgis.PyQt.QtCore import NULL
  46. pluginPath = os.path.normpath(os.path.join(
  47. os.path.split(os.path.dirname(__file__))[0], os.pardir))
  48. class GdalAlgorithm(QgsProcessingAlgorithm):
  49. def __init__(self):
  50. super().__init__()
  51. # TODO wanger GdalAlgorithm全局参数配置
  52. self.output_values = {}
  53. self.pgcoon = {
  54. "host": "127.0.0.1",
  55. "schema": "vector",
  56. "port": "5432",
  57. "user": "postgres",
  58. "password": "postgres",
  59. "dbname": "real3d"
  60. }
  61. self.geoservercoon = {
  62. "url": "http://127.0.0.1:28085/geoserver",
  63. "username": "admin",
  64. "password": "geoserver",
  65. "defaultworkspace": "demo",
  66. "cachestart": "0",
  67. "cacheend": "15"
  68. }
  69. def icon(self):
  70. return QIcon(os.path.join(pluginPath, 'images', 'dbms', 'tool.png'))
  71. # return QgsApplication.getThemeIcon("/providerGdal.svg")
  72. def tags(self):
  73. return ['ogr', 'gdal', self.commandName()]
  74. def svgIconPath(self):
  75. return os.path.join(pluginPath, 'images', 'dbms', 'tool.png')
  76. # return QgsApplication.iconPath("providerGdal.svg")
  77. def createInstance(self, config={}):
  78. return self.__class__()
  79. def createCustomParametersWidget(self, parent):
  80. return GdalAlgorithmDialog(self, parent=parent)
  81. def getConsoleCommands(self, parameters, context, feedback, executing=True):
  82. return None
  83. def getOgrCompatibleSource(self, parameter_name, parameters, context, feedback, executing):
  84. """
  85. Interprets a parameter as an OGR compatible source and layer name
  86. :param executing:
  87. """
  88. if not executing and parameter_name in parameters and isinstance(parameters[parameter_name],
  89. QgsProcessingFeatureSourceDefinition):
  90. # if not executing, then we throw away all 'selected features only' settings
  91. # since these have no meaning for command line gdal use, and we don't want to force
  92. # an export of selected features only to a temporary file just to show the command!
  93. parameters = {parameter_name: parameters[parameter_name].source}
  94. input_layer = self.parameterAsVectorLayer(parameters, parameter_name, context)
  95. ogr_data_path = None
  96. ogr_layer_name = None
  97. if input_layer is None or input_layer.dataProvider().name() == 'memory':
  98. if executing:
  99. # parameter is not a vector layer - try to convert to a source compatible with OGR
  100. # and extract selection if required
  101. ogr_data_path = self.parameterAsCompatibleSourceLayerPath(parameters, parameter_name, context,
  102. QgsVectorFileWriter.supportedFormatExtensions(),
  103. QgsVectorFileWriter.supportedFormatExtensions()[
  104. 0],
  105. feedback=feedback)
  106. ogr_layer_name = GdalUtils.ogrLayerName(ogr_data_path)
  107. else:
  108. # not executing - don't waste time converting incompatible sources, just return dummy strings
  109. # for the command preview (since the source isn't compatible with OGR, it has no meaning anyway and can't
  110. # be run directly in the command line)
  111. ogr_data_path = 'path_to_data_file'
  112. ogr_layer_name = 'layer_name'
  113. elif input_layer.dataProvider().name() == 'ogr':
  114. if executing and (
  115. isinstance(parameters[parameter_name], QgsProcessingFeatureSourceDefinition) and parameters[
  116. parameter_name].selectedFeaturesOnly) \
  117. or input_layer.subsetString():
  118. # parameter is a vector layer, with OGR data provider
  119. # so extract selection if required
  120. ogr_data_path = self.parameterAsCompatibleSourceLayerPath(parameters, parameter_name, context,
  121. QgsVectorFileWriter.supportedFormatExtensions(),
  122. feedback=feedback)
  123. parts = QgsProviderRegistry.instance().decodeUri('ogr', ogr_data_path)
  124. ogr_data_path = parts['path']
  125. if 'layerName' in parts and parts['layerName']:
  126. ogr_layer_name = parts['layerName']
  127. else:
  128. ogr_layer_name = GdalUtils.ogrLayerName(ogr_data_path)
  129. else:
  130. # either not using the selection, or
  131. # not executing - don't worry about 'selected features only' handling. It has no meaning
  132. # for the command line preview since it has no meaning outside of a QGIS session!
  133. ogr_data_path = GdalUtils.ogrConnectionStringAndFormatFromLayer(input_layer)[0]
  134. ogr_layer_name = GdalUtils.ogrLayerName(input_layer.dataProvider().dataSourceUri())
  135. elif input_layer.dataProvider().name().lower() == 'wfs':
  136. uri = QgsDataSourceUri(input_layer.source())
  137. baseUrl = uri.param('url').split('?')[0]
  138. ogr_data_path = f"WFS:{baseUrl}"
  139. ogr_layer_name = uri.param('typename')
  140. else:
  141. # vector layer, but not OGR - get OGR compatible path
  142. # TODO - handle "selected features only" mode!!
  143. ogr_data_path = GdalUtils.ogrConnectionStringFromLayer(input_layer)
  144. ogr_layer_name = GdalUtils.ogrLayerName(input_layer.dataProvider().dataSourceUri())
  145. return ogr_data_path, ogr_layer_name
  146. def setOutputValue(self, name, value):
  147. self.output_values[name] = value
  148. def processAlgorithm(self, parameters, context, feedback):
  149. # TODO wanger 生成许可文件
  150. if parameters.get("LICENSEHOST") is not None:
  151. self.generateLicense(parameters)
  152. return {
  153. "许可文件路径": parameters.get("OUTPUT")
  154. }
  155. # TODO wanger 上传图斑文件数据包
  156. if parameters.get("SPOTFILE") is not None:
  157. filepath = parameters.get("SPOTFILE")
  158. print(filepath)
  159. json_obj = spotfileUpload(filepath=filepath)
  160. status = int(json_obj["statuscode"])
  161. if status == 200:
  162. return {
  163. "状态": "上传成功!"
  164. }
  165. else:
  166. return {
  167. "状态": json_obj["message"]
  168. }
  169. # TODO wanger 下载图斑文件数据包
  170. if parameters.get("SPOTFILEDOWNLOAD") is not None:
  171. fileindex = parameters.get("SPOTFILEDOWNLOAD")
  172. print("spotfilelist")
  173. print(self.spotfilelist)
  174. fileparams = self.spotfilelist[fileindex]
  175. print(fileparams)
  176. filestr = downloadspotfile(filename=f'{fileparams["name"]}.{fileparams["filetype"]}',
  177. dir=parameters.get("SPOTFILEOUT"))
  178. return {
  179. "状态": filestr
  180. }
  181. # TODO wanger 删除图斑文件数据包
  182. if parameters.get("SPOTFILEDELETE") is not None:
  183. fileindex = parameters.get("SPOTFILEDELETE")
  184. print("spotfilelist")
  185. print(self.spotfilelist)
  186. fileparams = self.spotfilelist[fileindex]
  187. print(fileparams)
  188. filestr = deletespotfile(id=fileparams["id"])
  189. return {
  190. "状态": "删除成功"
  191. }
  192. # TODO wanger GeoServer服务发布
  193. if parameters.get("Publish_Service") is not None:
  194. zymlbsm = getLastPrint()
  195. if zymlbsm == None or zymlbsm == '':
  196. return {
  197. "Error": "资源目录未选择!"
  198. }
  199. print("zymlbsm====" + zymlbsm)
  200. layer_group_join = ""
  201. if parameters.get("LAYER_GROUP_JOIN") is not None:
  202. layer_group_join = self.groups[parameters.get("LAYER_GROUP_JOIN")]
  203. commands = self.getConsoleCommands(parameters, context, feedback, executing=True)
  204. geoSer = GeoService()
  205. result = None
  206. if parameters.get("INPUTRASTER") != NULL and parameters.get("INPUTRASTER") != "":
  207. # 获取输入栅格图层
  208. raster_layer = self.parameterAsRasterLayer(parameters, self.INPUTRASTER, context)
  209. file = raster_layer.source()
  210. result = geoSer.publishGeoService(parameters, context, feedback, commands, zymlbsm, layer_group_join,
  211. file)
  212. else:
  213. result = geoSer.publishGeoService(parameters, context, feedback, commands, zymlbsm, layer_group_join,
  214. None)
  215. return result
  216. # === 获取gdal命令参数执行并输出log开始 ===
  217. commands = self.getConsoleCommands(parameters, context, feedback, executing=True)
  218. # 增量更新
  219. if parameters.get("ALLOWOVERLAP") is not None and len(commands) == 0:
  220. res = self.updateVector(parameters, context, feedback, executing=True)
  221. return res
  222. # 版本回退
  223. if parameters.get("RESTORETABLE") is not None:
  224. res = self.restoreVector(parameters, context, feedback, executing=True)
  225. return res
  226. command = commands[0]
  227. if command.__contains__(" "):
  228. GdalUtils.runGdal([command], feedback)
  229. commands.remove(command)
  230. GdalUtils.runGdal(commands, feedback)
  231. else:
  232. GdalUtils.runGdal(commands, feedback)
  233. print(commands)
  234. results = {}
  235. for o in self.outputDefinitions():
  236. if o.name() in parameters:
  237. results[o.name()] = parameters[o.name()]
  238. for k, v in self.output_values.items():
  239. results[k] = v
  240. # === 获取gdal命令参数执行并输出log结束 ===
  241. # TODO wanger 元数据入库
  242. if parameters.get("Metadata_storage") is not None and parameters.get("Metadata_storage") == True:
  243. # 所属行政区划
  244. ssxzqh = getLastPrint()
  245. print("ssxzqh====" + ssxzqh)
  246. # 获取附件列表
  247. fileliststr = getFileListPrint()
  248. pgconn = PostgreSQL(schema='base')
  249. ogrLayer = ""
  250. if parameters.get("SOURCE_TYPE") == "vector":
  251. ogrLayer, layername = self.getOgrCompatibleSource(self.INPUT, parameters, context, feedback, None)
  252. elif parameters.get("SOURCE_TYPE") == "raster":
  253. raster_layer = self.parameterAsRasterLayer(parameters, self.INPUT, context)
  254. ogrLayer = raster_layer.source()
  255. print(ogrLayer)
  256. pgconn.metadataStorage(parameters, ssxzqh, fileliststr, self.ywlxs[parameters.get("VECTOR_YWLX")],
  257. self.depts[parameters.get("VECTOR_GLBM")], ogrLayer, self.zymls[parameters.get("VECTOR_ZYML")])
  258. pgconn.close()
  259. return results
  260. def commandName(self):
  261. parameters = {
  262. param.name(): "1"
  263. for param in self.parameterDefinitions()
  264. }
  265. context = QgsProcessingContext()
  266. feedback = QgsProcessingFeedback()
  267. name = self.getConsoleCommands(parameters, context, feedback, executing=False)[0]
  268. if name.endswith(".py"):
  269. name = name[:-3]
  270. return name
  271. def tr(self, string, context=''):
  272. if context == '':
  273. context = self.__class__.__name__
  274. return QCoreApplication.translate(context, string)