ToolIsolation.py 133 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # File by: Marius Adrian Stanciu (c) #
  4. # Date: 5/25/2020 #
  5. # License: MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtWidgets, QtCore, QtGui
  8. from appTool import AppTool
  9. from appGUI.GUIElements import FCCheckBox, FCDoubleSpinner, RadioSet, FCTable, FCInputDialog, FCButton, \
  10. FCComboBox, OptionalInputSection, FCSpinner
  11. from appParsers.ParseGerber import Gerber
  12. from copy import deepcopy
  13. import numpy as np
  14. import math
  15. from shapely.ops import cascaded_union
  16. from shapely.geometry import MultiPolygon, Polygon, MultiLineString, LineString, LinearRing
  17. from matplotlib.backend_bases import KeyEvent as mpl_key_event
  18. import logging
  19. import gettext
  20. import appTranslation as fcTranslate
  21. import builtins
  22. fcTranslate.apply_language('strings')
  23. if '_' not in builtins.__dict__:
  24. _ = gettext.gettext
  25. log = logging.getLogger('base')
  26. class ToolIsolation(AppTool, Gerber):
  27. toolName = _("Isolation Tool")
  28. def __init__(self, app):
  29. self.app = app
  30. self.decimals = self.app.decimals
  31. AppTool.__init__(self, app)
  32. Gerber.__init__(self, steps_per_circle=self.app.defaults["gerber_circle_steps"])
  33. self.tools_frame = QtWidgets.QFrame()
  34. self.tools_frame.setContentsMargins(0, 0, 0, 0)
  35. self.layout.addWidget(self.tools_frame)
  36. self.tools_box = QtWidgets.QVBoxLayout()
  37. self.tools_box.setContentsMargins(0, 0, 0, 0)
  38. self.tools_frame.setLayout(self.tools_box)
  39. self.title_box = QtWidgets.QHBoxLayout()
  40. self.tools_box.addLayout(self.title_box)
  41. # ## Title
  42. title_label = QtWidgets.QLabel("%s" % self.toolName)
  43. title_label.setStyleSheet("""
  44. QLabel
  45. {
  46. font-size: 16px;
  47. font-weight: bold;
  48. }
  49. """)
  50. title_label.setToolTip(
  51. _("Create a Geometry object with\n"
  52. "toolpaths to cut around polygons.")
  53. )
  54. self.title_box.addWidget(title_label)
  55. # App Level label
  56. self.level = QtWidgets.QLabel("")
  57. self.level.setToolTip(
  58. _(
  59. "BASIC is suitable for a beginner. Many parameters\n"
  60. "are hidden from the user in this mode.\n"
  61. "ADVANCED mode will make available all parameters.\n\n"
  62. "To change the application LEVEL, go to:\n"
  63. "Edit -> Preferences -> General and check:\n"
  64. "'APP. LEVEL' radio button."
  65. )
  66. )
  67. self.level.setAlignment(QtCore.Qt.AlignRight | QtCore.Qt.AlignVCenter)
  68. self.title_box.addWidget(self.level)
  69. # Grid Layout
  70. grid0 = QtWidgets.QGridLayout()
  71. grid0.setColumnStretch(0, 0)
  72. grid0.setColumnStretch(1, 1)
  73. self.tools_box.addLayout(grid0)
  74. self.obj_combo_label = QtWidgets.QLabel('<b>%s</b>:' % _("GERBER"))
  75. self.obj_combo_label.setToolTip(
  76. _("Gerber object for isolation routing.")
  77. )
  78. grid0.addWidget(self.obj_combo_label, 0, 0, 1, 2)
  79. # ################################################
  80. # ##### The object to be copper cleaned ##########
  81. # ################################################
  82. self.object_combo = FCComboBox()
  83. self.object_combo.setModel(self.app.collection)
  84. self.object_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  85. # self.object_combo.setCurrentIndex(1)
  86. self.object_combo.is_last = True
  87. grid0.addWidget(self.object_combo, 1, 0, 1, 2)
  88. separator_line = QtWidgets.QFrame()
  89. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  90. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  91. grid0.addWidget(separator_line, 2, 0, 1, 2)
  92. # ### Tools ## ##
  93. self.tools_table_label = QtWidgets.QLabel('<b>%s</b>' % _('Tools Table'))
  94. self.tools_table_label.setToolTip(
  95. _("Tools pool from which the algorithm\n"
  96. "will pick the ones used for copper clearing.")
  97. )
  98. grid0.addWidget(self.tools_table_label, 3, 0, 1, 2)
  99. self.tools_table = FCTable()
  100. grid0.addWidget(self.tools_table, 4, 0, 1, 2)
  101. self.tools_table.setColumnCount(4)
  102. # 3rd column is reserved (and hidden) for the tool ID
  103. self.tools_table.setHorizontalHeaderLabels(['#', _('Diameter'), _('TT'), ''])
  104. self.tools_table.setColumnHidden(3, True)
  105. self.tools_table.setSortingEnabled(False)
  106. # self.tools_table.setSelectionBehavior(QtWidgets.QAbstractItemView.SelectRows)
  107. self.tools_table.horizontalHeaderItem(0).setToolTip(
  108. _("This is the Tool Number.\n"
  109. "Isolation routing will start with the tool with the biggest \n"
  110. "diameter, continuing until there are no more tools.\n"
  111. "Only tools that create Isolation geometry will still be present\n"
  112. "in the resulting geometry. This is because with some tools\n"
  113. "this function will not be able to create routing geometry.")
  114. )
  115. self.tools_table.horizontalHeaderItem(1).setToolTip(
  116. _("Tool Diameter. It's value (in current FlatCAM units)\n"
  117. "is the cut width into the material."))
  118. self.tools_table.horizontalHeaderItem(2).setToolTip(
  119. _("The Tool Type (TT) can be:\n"
  120. "- Circular with 1 ... 4 teeth -> it is informative only. Being circular,\n"
  121. "the cut width in material is exactly the tool diameter.\n"
  122. "- Ball -> informative only and make reference to the Ball type endmill.\n"
  123. "- V-Shape -> it will disable Z-Cut parameter in the resulting geometry UI form\n"
  124. "and enable two additional UI form fields in the resulting geometry: V-Tip Dia and\n"
  125. "V-Tip Angle. Adjusting those two values will adjust the Z-Cut parameter such\n"
  126. "as the cut width into material will be equal with the value in the Tool Diameter\n"
  127. "column of this table.\n"
  128. "Choosing the 'V-Shape' Tool Type automatically will select the Operation Type\n"
  129. "in the resulting geometry as Isolation."))
  130. grid1 = QtWidgets.QGridLayout()
  131. grid1.setColumnStretch(0, 0)
  132. grid1.setColumnStretch(1, 1)
  133. self.tools_box.addLayout(grid1)
  134. # Tool order
  135. self.order_label = QtWidgets.QLabel('%s:' % _('Tool order'))
  136. self.order_label.setToolTip(_("This set the way that the tools in the tools table are used.\n"
  137. "'No' --> means that the used order is the one in the tool table\n"
  138. "'Forward' --> means that the tools will be ordered from small to big\n"
  139. "'Reverse' --> means that the tools will ordered from big to small\n\n"
  140. "WARNING: using rest machining will automatically set the order\n"
  141. "in reverse and disable this control."))
  142. self.order_radio = RadioSet([{'label': _('No'), 'value': 'no'},
  143. {'label': _('Forward'), 'value': 'fwd'},
  144. {'label': _('Reverse'), 'value': 'rev'}])
  145. grid1.addWidget(self.order_label, 1, 0)
  146. grid1.addWidget(self.order_radio, 1, 1)
  147. separator_line = QtWidgets.QFrame()
  148. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  149. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  150. grid1.addWidget(separator_line, 2, 0, 1, 2)
  151. # #############################################################
  152. # ############### Tool selection ##############################
  153. # #############################################################
  154. self.grid3 = QtWidgets.QGridLayout()
  155. self.grid3.setColumnStretch(0, 0)
  156. self.grid3.setColumnStretch(1, 1)
  157. self.tools_box.addLayout(self.grid3)
  158. self.tool_sel_label = QtWidgets.QLabel('<b>%s</b>' % _("New Tool"))
  159. self.grid3.addWidget(self.tool_sel_label, 1, 0, 1, 2)
  160. # Tool Type Radio Button
  161. self.tool_type_label = QtWidgets.QLabel('%s:' % _('Tool Type'))
  162. self.tool_type_label.setToolTip(
  163. _("Default tool type:\n"
  164. "- 'V-shape'\n"
  165. "- Circular")
  166. )
  167. self.tool_type_radio = RadioSet([{'label': _('V-shape'), 'value': 'V'},
  168. {'label': _('Circular'), 'value': 'C1'}])
  169. self.tool_type_radio.setToolTip(
  170. _("Default tool type:\n"
  171. "- 'V-shape'\n"
  172. "- Circular")
  173. )
  174. self.tool_type_radio.setObjectName("i_tool_type")
  175. self.grid3.addWidget(self.tool_type_label, 2, 0)
  176. self.grid3.addWidget(self.tool_type_radio, 2, 1)
  177. # Tip Dia
  178. self.tipdialabel = QtWidgets.QLabel('%s:' % _('V-Tip Dia'))
  179. self.tipdialabel.setToolTip(
  180. _("The tip diameter for V-Shape Tool"))
  181. self.tipdia_entry = FCDoubleSpinner(callback=self.confirmation_message)
  182. self.tipdia_entry.set_precision(self.decimals)
  183. self.tipdia_entry.set_range(0.0000, 9999.9999)
  184. self.tipdia_entry.setSingleStep(0.1)
  185. self.tipdia_entry.setObjectName("i_vtipdia")
  186. self.grid3.addWidget(self.tipdialabel, 3, 0)
  187. self.grid3.addWidget(self.tipdia_entry, 3, 1)
  188. # Tip Angle
  189. self.tipanglelabel = QtWidgets.QLabel('%s:' % _('V-Tip Angle'))
  190. self.tipanglelabel.setToolTip(
  191. _("The tip angle for V-Shape Tool.\n"
  192. "In degree."))
  193. self.tipangle_entry = FCDoubleSpinner(callback=self.confirmation_message)
  194. self.tipangle_entry.set_precision(self.decimals)
  195. self.tipangle_entry.set_range(0.0000, 180.0000)
  196. self.tipangle_entry.setSingleStep(5)
  197. self.tipangle_entry.setObjectName("i_vtipangle")
  198. self.grid3.addWidget(self.tipanglelabel, 4, 0)
  199. self.grid3.addWidget(self.tipangle_entry, 4, 1)
  200. # Cut Z entry
  201. cutzlabel = QtWidgets.QLabel('%s:' % _('Cut Z'))
  202. cutzlabel.setToolTip(
  203. _("Depth of cut into material. Negative value.\n"
  204. "In FlatCAM units.")
  205. )
  206. self.cutz_entry = FCDoubleSpinner(callback=self.confirmation_message)
  207. self.cutz_entry.set_precision(self.decimals)
  208. self.cutz_entry.set_range(-99999.9999, 0.0000)
  209. self.cutz_entry.setObjectName("i_vcutz")
  210. self.grid3.addWidget(cutzlabel, 5, 0)
  211. self.grid3.addWidget(self.cutz_entry, 5, 1)
  212. # ### Tool Diameter ####
  213. self.addtool_entry_lbl = QtWidgets.QLabel('%s:' % _('Tool Dia'))
  214. self.addtool_entry_lbl.setToolTip(
  215. _("Diameter for the new tool to add in the Tool Table.\n"
  216. "If the tool is V-shape type then this value is automatically\n"
  217. "calculated from the other parameters.")
  218. )
  219. self.addtool_entry = FCDoubleSpinner(callback=self.confirmation_message)
  220. self.addtool_entry.set_precision(self.decimals)
  221. self.addtool_entry.set_range(0.000, 9999.9999)
  222. self.addtool_entry.setObjectName("i_new_tooldia")
  223. self.grid3.addWidget(self.addtool_entry_lbl, 6, 0)
  224. self.grid3.addWidget(self.addtool_entry, 6, 1)
  225. bhlay = QtWidgets.QHBoxLayout()
  226. self.addtool_btn = QtWidgets.QPushButton(_('Add'))
  227. self.addtool_btn.setToolTip(
  228. _("Add a new tool to the Tool Table\n"
  229. "with the diameter specified above.")
  230. )
  231. self.addtool_from_db_btn = QtWidgets.QPushButton(_('Add from DB'))
  232. self.addtool_from_db_btn.setToolTip(
  233. _("Add a new tool to the Tool Table\n"
  234. "from the Tool DataBase.")
  235. )
  236. bhlay.addWidget(self.addtool_btn)
  237. bhlay.addWidget(self.addtool_from_db_btn)
  238. self.grid3.addLayout(bhlay, 7, 0, 1, 2)
  239. separator_line = QtWidgets.QFrame()
  240. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  241. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  242. self.grid3.addWidget(separator_line, 8, 0, 1, 2)
  243. self.deltool_btn = QtWidgets.QPushButton(_('Delete'))
  244. self.deltool_btn.setToolTip(
  245. _("Delete a selection of tools in the Tool Table\n"
  246. "by first selecting a row(s) in the Tool Table.")
  247. )
  248. self.grid3.addWidget(self.deltool_btn, 9, 0, 1, 2)
  249. # self.grid3.addWidget(QtWidgets.QLabel(''), 10, 0, 1, 2)
  250. separator_line = QtWidgets.QFrame()
  251. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  252. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  253. self.grid3.addWidget(separator_line, 11, 0, 1, 2)
  254. self.tool_data_label = QtWidgets.QLabel(
  255. "<b>%s: <font color='#0000FF'>%s %d</font></b>" % (_('Parameters for'), _("Tool"), int(1)))
  256. self.tool_data_label.setToolTip(
  257. _(
  258. "The data used for creating GCode.\n"
  259. "Each tool store it's own set of such data."
  260. )
  261. )
  262. self.grid3.addWidget(self.tool_data_label, 12, 0, 1, 2)
  263. # Passes
  264. passlabel = QtWidgets.QLabel('%s:' % _('Passes'))
  265. passlabel.setToolTip(
  266. _("Width of the isolation gap in\n"
  267. "number (integer) of tool widths.")
  268. )
  269. self.passes_entry = FCSpinner(callback=self.confirmation_message_int)
  270. self.passes_entry.set_range(1, 999)
  271. self.passes_entry.setObjectName("i_passes")
  272. self.grid3.addWidget(passlabel, 13, 0)
  273. self.grid3.addWidget(self.passes_entry, 13, 1)
  274. # Overlap Entry
  275. overlabel = QtWidgets.QLabel('%s:' % _('Overlap'))
  276. overlabel.setToolTip(
  277. _("How much (percentage) of the tool width to overlap each tool pass.")
  278. )
  279. self.iso_overlap_entry = FCDoubleSpinner(suffix='%', callback=self.confirmation_message)
  280. self.iso_overlap_entry.set_precision(self.decimals)
  281. self.iso_overlap_entry.setWrapping(True)
  282. self.iso_overlap_entry.set_range(0.0000, 99.9999)
  283. self.iso_overlap_entry.setSingleStep(0.1)
  284. self.iso_overlap_entry.setObjectName("i_overlap")
  285. self.grid3.addWidget(overlabel, 14, 0)
  286. self.grid3.addWidget(self.iso_overlap_entry, 14, 1)
  287. # Milling Type Radio Button
  288. self.milling_type_label = QtWidgets.QLabel('%s:' % _('Milling Type'))
  289. self.milling_type_label.setToolTip(
  290. _("Milling type when the selected tool is of type: 'iso_op':\n"
  291. "- climb / best for precision milling and to reduce tool usage\n"
  292. "- conventional / useful when there is no backlash compensation")
  293. )
  294. self.milling_type_radio = RadioSet([{'label': _('Climb'), 'value': 'cl'},
  295. {'label': _('Conventional'), 'value': 'cv'}])
  296. self.milling_type_radio.setToolTip(
  297. _("Milling type when the selected tool is of type: 'iso_op':\n"
  298. "- climb / best for precision milling and to reduce tool usage\n"
  299. "- conventional / useful when there is no backlash compensation")
  300. )
  301. self.milling_type_radio.setObjectName("i_milling_type")
  302. self.grid3.addWidget(self.milling_type_label, 15, 0)
  303. self.grid3.addWidget(self.milling_type_radio, 15, 1)
  304. # Follow
  305. self.follow_label = QtWidgets.QLabel('%s:' % _('Follow'))
  306. self.follow_label.setToolTip(
  307. _("Generate a 'Follow' geometry.\n"
  308. "This means that it will cut through\n"
  309. "the middle of the trace.")
  310. )
  311. self.follow_cb = FCCheckBox()
  312. self.follow_cb.setToolTip(_("Generate a 'Follow' geometry.\n"
  313. "This means that it will cut through\n"
  314. "the middle of the trace."))
  315. self.follow_cb.setObjectName("i_follow")
  316. self.grid3.addWidget(self.follow_label, 16, 0)
  317. self.grid3.addWidget(self.follow_cb, 16, 1)
  318. # Isolation Type
  319. self.iso_type_label = QtWidgets.QLabel('%s:' % _('Isolation Type'))
  320. self.iso_type_label.setToolTip(
  321. _("Choose how the isolation will be executed:\n"
  322. "- 'Full' -> complete isolation of polygons\n"
  323. "- 'Ext' -> will isolate only on the outside\n"
  324. "- 'Int' -> will isolate only on the inside\n"
  325. "'Exterior' isolation is almost always possible\n"
  326. "(with the right tool) but 'Interior'\n"
  327. "isolation can be done only when there is an opening\n"
  328. "inside of the polygon (e.g polygon is a 'doughnut' shape).")
  329. )
  330. self.iso_type_radio = RadioSet([{'label': _('Full'), 'value': 'full'},
  331. {'label': _('Ext'), 'value': 'ext'},
  332. {'label': _('Int'), 'value': 'int'}])
  333. self.iso_type_radio.setObjectName("i_iso_type")
  334. self.grid3.addWidget(self.iso_type_label, 17, 0)
  335. self.grid3.addWidget(self.iso_type_radio, 17, 1)
  336. separator_line = QtWidgets.QFrame()
  337. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  338. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  339. self.grid3.addWidget(separator_line, 18, 0, 1, 2)
  340. self.apply_param_to_all = FCButton(_("Apply parameters to all tools"))
  341. self.apply_param_to_all.setToolTip(
  342. _("The parameters in the current form will be applied\n"
  343. "on all the tools from the Tool Table.")
  344. )
  345. self.grid3.addWidget(self.apply_param_to_all, 22, 0, 1, 2)
  346. separator_line = QtWidgets.QFrame()
  347. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  348. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  349. self.grid3.addWidget(separator_line, 23, 0, 1, 2)
  350. # General Parameters
  351. self.gen_param_label = QtWidgets.QLabel('<b>%s</b>' % _("Common Parameters"))
  352. self.gen_param_label.setToolTip(
  353. _("Parameters that are common for all tools.")
  354. )
  355. self.grid3.addWidget(self.gen_param_label, 24, 0, 1, 2)
  356. # Rest Machining
  357. self.rest_cb = FCCheckBox('%s' % _("Rest"))
  358. self.rest_cb.setObjectName("i_rest")
  359. self.rest_cb.setToolTip(
  360. _("If checked, use 'rest machining'.\n"
  361. "Basically it will isolate outside PCB features,\n"
  362. "using the biggest tool and continue with the next tools,\n"
  363. "from bigger to smaller, to isolate the copper features that\n"
  364. "could not be cleared by previous tool, until there is\n"
  365. "no more copper features to isolate or there are no more tools.\n"
  366. "If not checked, use the standard algorithm.")
  367. )
  368. self.grid3.addWidget(self.rest_cb, 25, 0)
  369. # Combine All Passes
  370. self.combine_passes_cb = FCCheckBox(label=_('Combine'))
  371. self.combine_passes_cb.setToolTip(
  372. _("Combine all passes into one object")
  373. )
  374. self.combine_passes_cb.setObjectName("i_combine")
  375. self.grid3.addWidget(self.combine_passes_cb, 25, 1)
  376. # Exception Areas
  377. self.except_cb = FCCheckBox(label=_('Except'))
  378. self.except_cb.setToolTip(_("When the isolation geometry is generated,\n"
  379. "by checking this, the area of the object below\n"
  380. "will be subtracted from the isolation geometry."))
  381. self.except_cb.setObjectName("i_except")
  382. self.grid3.addWidget(self.except_cb, 27, 0)
  383. # Type of object to be excepted
  384. self.type_excobj_radio = RadioSet([{'label': _("Geometry"), 'value': 'geometry'},
  385. {'label': _("Gerber"), 'value': 'gerber'}])
  386. self.type_excobj_radio.setToolTip(
  387. _("Specify the type of object to be excepted from isolation.\n"
  388. "It can be of type: Gerber or Geometry.\n"
  389. "What is selected here will dictate the kind\n"
  390. "of objects that will populate the 'Object' combobox.")
  391. )
  392. self.grid3.addWidget(self.type_excobj_radio, 27, 1)
  393. # The object to be excepted
  394. self.exc_obj_combo = FCComboBox()
  395. self.exc_obj_combo.setToolTip(_("Object whose area will be removed from isolation geometry."))
  396. # set the model for the Area Exception comboboxes
  397. self.exc_obj_combo.setModel(self.app.collection)
  398. self.exc_obj_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  399. self.exc_obj_combo.is_last = True
  400. self.exc_obj_combo.obj_type = self.type_excobj_radio.get_value()
  401. self.grid3.addWidget(self.exc_obj_combo, 29, 0, 1, 2)
  402. self.e_ois = OptionalInputSection(self.except_cb,
  403. [
  404. self.type_excobj_radio,
  405. self.exc_obj_combo
  406. ])
  407. # Isolation Scope
  408. self.select_label = QtWidgets.QLabel('%s:' % _("Selection"))
  409. self.select_label.setToolTip(
  410. _("Isolation scope. Choose what to isolate:\n"
  411. "- 'All' -> Isolate all the polygons in the object\n"
  412. "- 'Area Selection' -> Isolate polygons within a selection area.\n"
  413. "- 'Polygon Selection' -> Isolate a selection of polygons.\n"
  414. "- 'Reference Object' - will process the area specified by another object.")
  415. )
  416. self.select_combo = FCComboBox()
  417. self.select_combo.addItems(
  418. [_("All"), _("Area Selection"), _("Polygon Selection"), _("Reference Object")]
  419. )
  420. self.select_combo.setObjectName("i_selection")
  421. self.grid3.addWidget(self.select_label, 30, 0)
  422. self.grid3.addWidget(self.select_combo, 30, 1)
  423. self.reference_combo_type_label = QtWidgets.QLabel('%s:' % _("Ref. Type"))
  424. self.reference_combo_type_label.setToolTip(
  425. _("The type of FlatCAM object to be used as non copper clearing reference.\n"
  426. "It can be Gerber, Excellon or Geometry.")
  427. )
  428. self.reference_combo_type = FCComboBox()
  429. self.reference_combo_type.addItems([_("Gerber"), _("Excellon"), _("Geometry")])
  430. self.grid3.addWidget(self.reference_combo_type_label, 31, 0)
  431. self.grid3.addWidget(self.reference_combo_type, 31, 1)
  432. self.reference_combo_label = QtWidgets.QLabel('%s:' % _("Ref. Object"))
  433. self.reference_combo_label.setToolTip(
  434. _("The FlatCAM object to be used as non copper clearing reference.")
  435. )
  436. self.reference_combo = FCComboBox()
  437. self.reference_combo.setModel(self.app.collection)
  438. self.reference_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  439. self.reference_combo.is_last = True
  440. self.grid3.addWidget(self.reference_combo_label, 32, 0)
  441. self.grid3.addWidget(self.reference_combo, 32, 1)
  442. self.reference_combo.hide()
  443. self.reference_combo_label.hide()
  444. self.reference_combo_type.hide()
  445. self.reference_combo_type_label.hide()
  446. # Area Selection shape
  447. self.area_shape_label = QtWidgets.QLabel('%s:' % _("Shape"))
  448. self.area_shape_label.setToolTip(
  449. _("The kind of selection shape used for area selection.")
  450. )
  451. self.area_shape_radio = RadioSet([{'label': _("Square"), 'value': 'square'},
  452. {'label': _("Polygon"), 'value': 'polygon'}])
  453. self.grid3.addWidget(self.area_shape_label, 33, 0)
  454. self.grid3.addWidget(self.area_shape_radio, 33, 1)
  455. self.area_shape_label.hide()
  456. self.area_shape_radio.hide()
  457. separator_line = QtWidgets.QFrame()
  458. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  459. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  460. self.grid3.addWidget(separator_line, 34, 0, 1, 2)
  461. self.generate_iso_button = QtWidgets.QPushButton("%s" % _("Generate Isolation Geometry"))
  462. self.generate_iso_button.setStyleSheet("""
  463. QPushButton
  464. {
  465. font-weight: bold;
  466. }
  467. """)
  468. self.generate_iso_button.setToolTip(
  469. _("Create a Geometry object with toolpaths to cut \n"
  470. "isolation outside, inside or on both sides of the\n"
  471. "object. For a Gerber object outside means outside\n"
  472. "of the Gerber feature and inside means inside of\n"
  473. "the Gerber feature, if possible at all. This means\n"
  474. "that only if the Gerber feature has openings inside, they\n"
  475. "will be isolated. If what is wanted is to cut isolation\n"
  476. "inside the actual Gerber feature, use a negative tool\n"
  477. "diameter above.")
  478. )
  479. self.tools_box.addWidget(self.generate_iso_button)
  480. self.create_buffer_button = QtWidgets.QPushButton(_('Buffer Solid Geometry'))
  481. self.create_buffer_button.setToolTip(
  482. _("This button is shown only when the Gerber file\n"
  483. "is loaded without buffering.\n"
  484. "Clicking this will create the buffered geometry\n"
  485. "required for isolation.")
  486. )
  487. self.tools_box.addWidget(self.create_buffer_button)
  488. self.tools_box.addStretch()
  489. # ## Reset Tool
  490. self.reset_button = QtWidgets.QPushButton(_("Reset Tool"))
  491. self.reset_button.setToolTip(
  492. _("Will reset the tool parameters.")
  493. )
  494. self.reset_button.setStyleSheet("""
  495. QPushButton
  496. {
  497. font-weight: bold;
  498. }
  499. """)
  500. self.tools_box.addWidget(self.reset_button)
  501. # ############################ FINSIHED GUI ###################################
  502. # #############################################################################
  503. # #############################################################################
  504. # ###################### Setup CONTEXT MENU ###################################
  505. # #############################################################################
  506. self.tools_table.setupContextMenu()
  507. self.tools_table.addContextMenu(
  508. _("Add"), self.on_add_tool_by_key, icon=QtGui.QIcon(self.app.resource_location + "/plus16.png")
  509. )
  510. self.tools_table.addContextMenu(
  511. _("Add from DB"), self.on_add_tool_by_key, icon=QtGui.QIcon(self.app.resource_location + "/plus16.png")
  512. )
  513. self.tools_table.addContextMenu(
  514. _("Delete"), lambda:
  515. self.on_tool_delete(rows_to_delete=None, all_tools=None),
  516. icon=QtGui.QIcon(self.app.resource_location + "/delete32.png")
  517. )
  518. # #############################################################################
  519. # ########################## VARIABLES ########################################
  520. # #############################################################################
  521. self.units = ''
  522. self.iso_tools = {}
  523. self.tooluid = 0
  524. # store here the default data for Geometry Data
  525. self.default_data = {}
  526. self.obj_name = ""
  527. self.grb_obj = None
  528. self.sel_rect = []
  529. self.first_click = False
  530. self.cursor_pos = None
  531. self.mouse_is_dragging = False
  532. # store here the points for the "Polygon" area selection shape
  533. self.points = []
  534. # set this as True when in middle of drawing a "Polygon" area selection shape
  535. # it is made False by first click to signify that the shape is complete
  536. self.poly_drawn = False
  537. self.mm = None
  538. self.mr = None
  539. self.kp = None
  540. # store geometry from Polygon selection
  541. self.poly_dict = {}
  542. self.grid_status_memory = self.app.ui.grid_snap_btn.isChecked()
  543. # store here the state of the combine_cb GUI element
  544. # used when the rest machining is toggled
  545. self.old_combine_state = None
  546. # store here solid_geometry when there are tool with isolation job
  547. self.solid_geometry = []
  548. self.tool_type_item_options = []
  549. self.grb_circle_steps = int(self.app.defaults["gerber_circle_steps"])
  550. self.tooldia = None
  551. # multiprocessing
  552. self.pool = self.app.pool
  553. self.results = []
  554. # disconnect flags
  555. self.area_sel_disconnect_flag = False
  556. self.poly_sel_disconnect_flag = False
  557. self.form_fields = {
  558. "tools_iso_passes": self.passes_entry,
  559. "tools_iso_overlap": self.iso_overlap_entry,
  560. "tools_iso_milling_type": self.milling_type_radio,
  561. "tools_iso_combine": self.combine_passes_cb,
  562. "tools_iso_follow": self.follow_cb,
  563. "tools_iso_isotype": self.iso_type_radio
  564. }
  565. self.name2option = {
  566. "i_passes": "tools_iso_passes",
  567. "i_overlap": "tools_iso_overlap",
  568. "i_milling_type": "tools_iso_milling_type",
  569. "i_combine": "tools_iso_combine",
  570. "i_follow": "tools_iso_follow",
  571. "i_iso_type": "tools_iso_isotype"
  572. }
  573. self.old_tool_dia = None
  574. # #############################################################################
  575. # ############################ SIGNALS ########################################
  576. # #############################################################################
  577. self.addtool_btn.clicked.connect(self.on_tool_add)
  578. self.addtool_entry.returnPressed.connect(self.on_tooldia_updated)
  579. self.deltool_btn.clicked.connect(self.on_tool_delete)
  580. self.tipdia_entry.returnPressed.connect(self.on_calculate_tooldia)
  581. self.tipangle_entry.returnPressed.connect(self.on_calculate_tooldia)
  582. self.cutz_entry.returnPressed.connect(self.on_calculate_tooldia)
  583. self.reference_combo_type.currentIndexChanged.connect(self.on_reference_combo_changed)
  584. self.select_combo.currentIndexChanged.connect(self.on_toggle_reference)
  585. self.rest_cb.stateChanged.connect(self.on_rest_machining_check)
  586. self.order_radio.activated_custom[str].connect(self.on_order_changed)
  587. self.type_excobj_radio.activated_custom.connect(self.on_type_excobj_index_changed)
  588. self.apply_param_to_all.clicked.connect(self.on_apply_param_to_all_clicked)
  589. self.addtool_from_db_btn.clicked.connect(self.on_tool_add_from_db_clicked)
  590. self.generate_iso_button.clicked.connect(self.on_iso_button_click)
  591. self.reset_button.clicked.connect(self.set_tool_ui)
  592. # Cleanup on Graceful exit (CTRL+ALT+X combo key)
  593. self.app.cleanup.connect(self.reset_usage)
  594. def on_type_excobj_index_changed(self, val):
  595. obj_type = 0 if val == 'gerber' else 2
  596. self.exc_obj_combo.setRootModelIndex(self.app.collection.index(obj_type, 0, QtCore.QModelIndex()))
  597. self.exc_obj_combo.setCurrentIndex(0)
  598. self.exc_obj_combo.obj_type = {
  599. "gerber": "Gerber", "geometry": "Geometry"
  600. }[self.type_excobj_radio.get_value()]
  601. def install(self, icon=None, separator=None, **kwargs):
  602. AppTool.install(self, icon, separator, shortcut='Alt+I', **kwargs)
  603. def run(self, toggle=True):
  604. self.app.defaults.report_usage("ToolIsolation()")
  605. log.debug("ToolIsolation().run() was launched ...")
  606. if toggle:
  607. # if the splitter is hidden, display it, else hide it but only if the current widget is the same
  608. if self.app.ui.splitter.sizes()[0] == 0:
  609. self.app.ui.splitter.setSizes([1, 1])
  610. else:
  611. try:
  612. if self.app.ui.tool_scroll_area.widget().objectName() == self.toolName:
  613. # if tab is populated with the tool but it does not have the focus, focus on it
  614. if not self.app.ui.notebook.currentWidget() is self.app.ui.tool_tab:
  615. # focus on Tool Tab
  616. self.app.ui.notebook.setCurrentWidget(self.app.ui.tool_tab)
  617. else:
  618. self.app.ui.splitter.setSizes([0, 1])
  619. except AttributeError:
  620. pass
  621. else:
  622. if self.app.ui.splitter.sizes()[0] == 0:
  623. self.app.ui.splitter.setSizes([1, 1])
  624. AppTool.run(self)
  625. self.set_tool_ui()
  626. # reset those objects on a new run
  627. self.grb_obj = None
  628. self.obj_name = ''
  629. self.build_ui()
  630. self.app.ui.notebook.setTabText(2, _("Isolation Tool"))
  631. def set_tool_ui(self):
  632. self.units = self.app.defaults['units'].upper()
  633. self.old_tool_dia = self.app.defaults["tools_iso_newdia"]
  634. # try to select in the Gerber combobox the active object
  635. try:
  636. selected_obj = self.app.collection.get_active()
  637. if selected_obj.kind == 'gerber':
  638. current_name = selected_obj.options['name']
  639. self.object_combo.set_value(current_name)
  640. except Exception:
  641. pass
  642. app_mode = self.app.defaults["global_app_level"]
  643. # Show/Hide Advanced Options
  644. if app_mode == 'b':
  645. self.level.setText('<span style="color:green;"><b>%s</b></span>' % _('Basic'))
  646. # override the Preferences Value; in Basic mode the Tool Type is always Circular ('C1')
  647. self.tool_type_radio.set_value('C1')
  648. self.tool_type_label.hide()
  649. self.tool_type_radio.hide()
  650. self.milling_type_label.hide()
  651. self.milling_type_radio.hide()
  652. self.iso_type_label.hide()
  653. self.iso_type_radio.set_value('full')
  654. self.iso_type_radio.hide()
  655. self.follow_cb.set_value(False)
  656. self.follow_cb.hide()
  657. self.follow_label.hide()
  658. self.rest_cb.set_value(False)
  659. self.rest_cb.hide()
  660. self.except_cb.set_value(False)
  661. self.except_cb.hide()
  662. self.type_excobj_radio.hide()
  663. self.exc_obj_combo.hide()
  664. self.select_combo.setCurrentIndex(0)
  665. self.select_combo.hide()
  666. self.select_label.hide()
  667. else:
  668. self.level.setText('<span style="color:red;"><b>%s</b></span>' % _('Advanced'))
  669. self.tool_type_radio.set_value(self.app.defaults["tools_iso_tool_type"])
  670. self.tool_type_label.show()
  671. self.tool_type_radio.show()
  672. self.milling_type_label.show()
  673. self.milling_type_radio.show()
  674. self.iso_type_label.show()
  675. self.iso_type_radio.set_value(self.app.defaults["tools_iso_isotype"])
  676. self.iso_type_radio.show()
  677. self.follow_cb.set_value(self.app.defaults["tools_iso_follow"])
  678. self.follow_cb.show()
  679. self.follow_label.show()
  680. self.rest_cb.set_value(self.app.defaults["tools_iso_rest"])
  681. self.rest_cb.show()
  682. self.except_cb.set_value(self.app.defaults["tools_iso_isoexcept"])
  683. self.except_cb.show()
  684. self.select_combo.set_value(self.app.defaults["tools_iso_selection"])
  685. self.select_combo.show()
  686. self.select_label.show()
  687. if self.app.defaults["gerber_buffering"] == 'no':
  688. self.create_buffer_button.show()
  689. try:
  690. self.create_buffer_button.clicked.disconnect(self.on_generate_buffer)
  691. except TypeError:
  692. pass
  693. self.create_buffer_button.clicked.connect(self.on_generate_buffer)
  694. else:
  695. self.create_buffer_button.hide()
  696. self.tools_frame.show()
  697. self.type_excobj_radio.set_value('gerber')
  698. # run those once so the obj_type attribute is updated for the FCComboboxes
  699. # so the last loaded object is displayed
  700. self.on_type_excobj_index_changed(val="gerber")
  701. self.on_reference_combo_changed()
  702. self.order_radio.set_value(self.app.defaults["tools_iso_order"])
  703. self.passes_entry.set_value(self.app.defaults["tools_iso_passes"])
  704. self.iso_overlap_entry.set_value(self.app.defaults["tools_iso_overlap"])
  705. self.milling_type_radio.set_value(self.app.defaults["tools_iso_milling_type"])
  706. self.combine_passes_cb.set_value(self.app.defaults["tools_iso_combine_passes"])
  707. self.area_shape_radio.set_value(self.app.defaults["tools_iso_area_shape"])
  708. self.cutz_entry.set_value(self.app.defaults["tools_iso_tool_cutz"])
  709. self.tool_type_radio.set_value(self.app.defaults["tools_iso_tool_type"])
  710. self.tipdia_entry.set_value(self.app.defaults["tools_iso_tool_vtipdia"])
  711. self.tipangle_entry.set_value(self.app.defaults["tools_iso_tool_vtipangle"])
  712. self.addtool_entry.set_value(self.app.defaults["tools_iso_newdia"])
  713. self.on_tool_type(val=self.tool_type_radio.get_value())
  714. loaded_obj = self.app.collection.get_by_name(self.object_combo.get_value())
  715. if loaded_obj:
  716. outname = loaded_obj.options['name']
  717. else:
  718. outname = ''
  719. # init the working variables
  720. self.default_data.clear()
  721. self.default_data = {
  722. "name": outname + '_iso',
  723. "plot": self.app.defaults["geometry_plot"],
  724. "cutz": float(self.cutz_entry.get_value()),
  725. "vtipdia": float(self.tipdia_entry.get_value()),
  726. "vtipangle": float(self.tipangle_entry.get_value()),
  727. "travelz": self.app.defaults["geometry_travelz"],
  728. "feedrate": self.app.defaults["geometry_feedrate"],
  729. "feedrate_z": self.app.defaults["geometry_feedrate_z"],
  730. "feedrate_rapid": self.app.defaults["geometry_feedrate_rapid"],
  731. "dwell": self.app.defaults["geometry_dwell"],
  732. "dwelltime": self.app.defaults["geometry_dwelltime"],
  733. "multidepth": self.app.defaults["geometry_multidepth"],
  734. "ppname_g": self.app.defaults["geometry_ppname_g"],
  735. "depthperpass": self.app.defaults["geometry_depthperpass"],
  736. "extracut": self.app.defaults["geometry_extracut"],
  737. "extracut_length": self.app.defaults["geometry_extracut_length"],
  738. "toolchange": self.app.defaults["geometry_toolchange"],
  739. "toolchangez": self.app.defaults["geometry_toolchangez"],
  740. "endz": self.app.defaults["geometry_endz"],
  741. "endxy": self.app.defaults["geometry_endxy"],
  742. "spindlespeed": self.app.defaults["geometry_spindlespeed"],
  743. "toolchangexy": self.app.defaults["geometry_toolchangexy"],
  744. "startz": self.app.defaults["geometry_startz"],
  745. "area_exclusion": self.app.defaults["geometry_area_exclusion"],
  746. "area_shape": self.app.defaults["geometry_area_shape"],
  747. "area_strategy": self.app.defaults["geometry_area_strategy"],
  748. "area_overz": float(self.app.defaults["geometry_area_overz"]),
  749. "tools_iso_passes": self.app.defaults["tools_iso_passes"],
  750. "tools_iso_overlap": self.app.defaults["tools_iso_overlap"],
  751. "tools_iso_milling_type": self.app.defaults["tools_iso_milling_type"],
  752. "tools_iso_follow": self.app.defaults["tools_iso_follow"],
  753. "tools_iso_isotype": self.app.defaults["tools_iso_isotype"],
  754. "tools_iso_rest": self.app.defaults["tools_iso_rest"],
  755. "tools_iso_combine_passes": self.app.defaults["tools_iso_combine_passes"],
  756. "tools_iso_isoexcept": self.app.defaults["tools_iso_isoexcept"],
  757. "tools_iso_selection": self.app.defaults["tools_iso_selection"],
  758. "tools_iso_area_shape": self.app.defaults["tools_iso_area_shape"]
  759. }
  760. try:
  761. dias = [float(self.app.defaults["tools_iso_tooldia"])]
  762. except (ValueError, TypeError):
  763. dias = [float(eval(dia)) for dia in self.app.defaults["tools_iso_tooldia"].split(",") if dia != '']
  764. if not dias:
  765. log.error("At least one tool diameter needed. Verify in Edit -> Preferences -> TOOLS -> Isolation Tools.")
  766. return
  767. self.tooluid = 0
  768. self.iso_tools.clear()
  769. for tool_dia in dias:
  770. self.tooluid += 1
  771. self.iso_tools.update({
  772. int(self.tooluid): {
  773. 'tooldia': float('%.*f' % (self.decimals, tool_dia)),
  774. 'offset': 'Path',
  775. 'offset_value': 0.0,
  776. 'type': 'Iso',
  777. 'tool_type': self.tool_type_radio.get_value(),
  778. 'data': deepcopy(self.default_data),
  779. 'solid_geometry': []
  780. }
  781. })
  782. self.obj_name = ""
  783. self.grb_obj = None
  784. self.tool_type_item_options = ["C1", "C2", "C3", "C4", "B", "V"]
  785. self.units = self.app.defaults['units'].upper()
  786. def build_ui(self):
  787. self.ui_disconnect()
  788. # updated units
  789. self.units = self.app.defaults['units'].upper()
  790. sorted_tools = []
  791. for k, v in self.iso_tools.items():
  792. sorted_tools.append(float('%.*f' % (self.decimals, float(v['tooldia']))))
  793. order = self.order_radio.get_value()
  794. if order == 'fwd':
  795. sorted_tools.sort(reverse=False)
  796. elif order == 'rev':
  797. sorted_tools.sort(reverse=True)
  798. else:
  799. pass
  800. n = len(sorted_tools)
  801. self.tools_table.setRowCount(n)
  802. tool_id = 0
  803. for tool_sorted in sorted_tools:
  804. for tooluid_key, tooluid_value in self.iso_tools.items():
  805. if float('%.*f' % (self.decimals, tooluid_value['tooldia'])) == tool_sorted:
  806. tool_id += 1
  807. id_ = QtWidgets.QTableWidgetItem('%d' % int(tool_id))
  808. id_.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  809. row_no = tool_id - 1
  810. self.tools_table.setItem(row_no, 0, id_) # Tool name/id
  811. # Make sure that the drill diameter when in MM is with no more than 2 decimals
  812. # There are no drill bits in MM with more than 2 decimals diameter
  813. # For INCH the decimals should be no more than 4. There are no drills under 10mils
  814. dia = QtWidgets.QTableWidgetItem('%.*f' % (self.decimals, tooluid_value['tooldia']))
  815. dia.setFlags(QtCore.Qt.ItemIsEnabled)
  816. tool_type_item = FCComboBox()
  817. tool_type_item.addItems(self.tool_type_item_options)
  818. # tool_type_item.setStyleSheet('background-color: rgb(255,255,255)')
  819. idx = tool_type_item.findText(tooluid_value['tool_type'])
  820. tool_type_item.setCurrentIndex(idx)
  821. tool_uid_item = QtWidgets.QTableWidgetItem(str(int(tooluid_key)))
  822. self.tools_table.setItem(row_no, 1, dia) # Diameter
  823. self.tools_table.setCellWidget(row_no, 2, tool_type_item)
  824. # ## REMEMBER: THIS COLUMN IS HIDDEN IN OBJECTUI.PY # ##
  825. self.tools_table.setItem(row_no, 3, tool_uid_item) # Tool unique ID
  826. # make the diameter column editable
  827. for row in range(tool_id):
  828. self.tools_table.item(row, 1).setFlags(
  829. QtCore.Qt.ItemIsEditable | QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  830. # all the tools are selected by default
  831. self.tools_table.selectColumn(0)
  832. #
  833. self.tools_table.resizeColumnsToContents()
  834. self.tools_table.resizeRowsToContents()
  835. vertical_header = self.tools_table.verticalHeader()
  836. vertical_header.hide()
  837. self.tools_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  838. horizontal_header = self.tools_table.horizontalHeader()
  839. horizontal_header.setMinimumSectionSize(10)
  840. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  841. horizontal_header.resizeSection(0, 20)
  842. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.Stretch)
  843. # self.tools_table.setSortingEnabled(True)
  844. # sort by tool diameter
  845. # self.tools_table.sortItems(1)
  846. self.tools_table.setMinimumHeight(self.tools_table.getHeight())
  847. self.tools_table.setMaximumHeight(self.tools_table.getHeight())
  848. self.ui_connect()
  849. # set the text on tool_data_label after loading the object
  850. sel_rows = []
  851. sel_items = self.tools_table.selectedItems()
  852. for it in sel_items:
  853. sel_rows.append(it.row())
  854. if len(sel_rows) > 1:
  855. self.tool_data_label.setText(
  856. "<b>%s: <font color='#0000FF'>%s</font></b>" % (_('Parameters for'), _("Multiple Tools"))
  857. )
  858. def ui_connect(self):
  859. self.tools_table.itemChanged.connect(self.on_tool_edit)
  860. # rows selected
  861. self.tools_table.clicked.connect(self.on_row_selection_change)
  862. self.tools_table.horizontalHeader().sectionClicked.connect(self.on_row_selection_change)
  863. for row in range(self.tools_table.rowCount()):
  864. try:
  865. self.tools_table.cellWidget(row, 2).currentIndexChanged.connect(self.on_tooltable_cellwidget_change)
  866. except AttributeError:
  867. pass
  868. self.tool_type_radio.activated_custom.connect(self.on_tool_type)
  869. for opt in self.form_fields:
  870. current_widget = self.form_fields[opt]
  871. if isinstance(current_widget, FCCheckBox):
  872. current_widget.stateChanged.connect(self.form_to_storage)
  873. if isinstance(current_widget, RadioSet):
  874. current_widget.activated_custom.connect(self.form_to_storage)
  875. elif isinstance(current_widget, FCDoubleSpinner) or isinstance(current_widget, FCSpinner):
  876. current_widget.returnPressed.connect(self.form_to_storage)
  877. elif isinstance(current_widget, FCComboBox):
  878. current_widget.currentIndexChanged.connect(self.form_to_storage)
  879. self.rest_cb.stateChanged.connect(self.on_rest_machining_check)
  880. self.order_radio.activated_custom[str].connect(self.on_order_changed)
  881. def ui_disconnect(self):
  882. try:
  883. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  884. self.tools_table.itemChanged.disconnect()
  885. except (TypeError, AttributeError):
  886. pass
  887. try:
  888. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  889. self.tool_type_radio.activated_custom.disconnect()
  890. except (TypeError, AttributeError):
  891. pass
  892. for row in range(self.tools_table.rowCount()):
  893. try:
  894. self.tools_table.cellWidget(row, 2).currentIndexChanged.disconnect()
  895. except (TypeError, AttributeError):
  896. pass
  897. for opt in self.form_fields:
  898. current_widget = self.form_fields[opt]
  899. if isinstance(current_widget, FCCheckBox):
  900. try:
  901. current_widget.stateChanged.disconnect(self.form_to_storage)
  902. except (TypeError, ValueError):
  903. pass
  904. if isinstance(current_widget, RadioSet):
  905. try:
  906. current_widget.activated_custom.disconnect(self.form_to_storage)
  907. except (TypeError, ValueError):
  908. pass
  909. elif isinstance(current_widget, FCDoubleSpinner) or isinstance(current_widget, FCSpinner):
  910. try:
  911. current_widget.returnPressed.disconnect(self.form_to_storage)
  912. except (TypeError, ValueError):
  913. pass
  914. elif isinstance(current_widget, FCComboBox):
  915. try:
  916. current_widget.currentIndexChanged.disconnect(self.form_to_storage)
  917. except (TypeError, ValueError):
  918. pass
  919. try:
  920. self.rest_cb.stateChanged.disconnect()
  921. except (TypeError, ValueError):
  922. pass
  923. try:
  924. self.order_radio.activated_custom[str].disconnect()
  925. except (TypeError, ValueError):
  926. pass
  927. # rows selected
  928. try:
  929. self.tools_table.clicked.disconnect()
  930. except (TypeError, AttributeError):
  931. pass
  932. try:
  933. self.tools_table.horizontalHeader().sectionClicked.disconnect()
  934. except (TypeError, AttributeError):
  935. pass
  936. def on_row_selection_change(self):
  937. self.blockSignals(True)
  938. sel_rows = [it.row() for it in self.tools_table.selectedItems()]
  939. # sel_rows = sorted(set(index.row() for index in self.tools_table.selectedIndexes()))
  940. if not sel_rows:
  941. sel_rows = [0]
  942. for current_row in sel_rows:
  943. # populate the form with the data from the tool associated with the row parameter
  944. try:
  945. item = self.tools_table.item(current_row, 3)
  946. if item is not None:
  947. tooluid = int(item.text())
  948. else:
  949. return
  950. except Exception as e:
  951. log.debug("Tool missing. Add a tool in the Tool Table. %s" % str(e))
  952. return
  953. # update the QLabel that shows for which Tool we have the parameters in the UI form
  954. if len(sel_rows) == 1:
  955. cr = current_row + 1
  956. self.tool_data_label.setText(
  957. "<b>%s: <font color='#0000FF'>%s %d</font></b>" % (_('Parameters for'), _("Tool"), cr)
  958. )
  959. try:
  960. # set the form with data from the newly selected tool
  961. for tooluid_key, tooluid_value in list(self.iso_tools.items()):
  962. if int(tooluid_key) == tooluid:
  963. for key, value in tooluid_value.items():
  964. if key == 'data':
  965. form_value_storage = tooluid_value[key]
  966. self.storage_to_form(form_value_storage)
  967. except Exception as e:
  968. log.debug("ToolIsolation ---> update_ui() " + str(e))
  969. else:
  970. self.tool_data_label.setText(
  971. "<b>%s: <font color='#0000FF'>%s</font></b>" % (_('Parameters for'), _("Multiple Tools"))
  972. )
  973. self.blockSignals(False)
  974. def storage_to_form(self, dict_storage):
  975. for form_key in self.form_fields:
  976. for storage_key in dict_storage:
  977. if form_key == storage_key:
  978. try:
  979. self.form_fields[form_key].set_value(dict_storage[form_key])
  980. except Exception as e:
  981. log.debug("ToolIsolation.storage_to_form() --> %s" % str(e))
  982. pass
  983. def form_to_storage(self):
  984. if self.tools_table.rowCount() == 0:
  985. # there is no tool in tool table so we can't save the GUI elements values to storage
  986. return
  987. self.blockSignals(True)
  988. widget_changed = self.sender()
  989. wdg_objname = widget_changed.objectName()
  990. option_changed = self.name2option[wdg_objname]
  991. # row = self.tools_table.currentRow()
  992. rows = sorted(set(index.row() for index in self.tools_table.selectedIndexes()))
  993. for row in rows:
  994. if row < 0:
  995. row = 0
  996. tooluid_item = int(self.tools_table.item(row, 3).text())
  997. for tooluid_key, tooluid_val in self.iso_tools.items():
  998. if int(tooluid_key) == tooluid_item:
  999. new_option_value = self.form_fields[option_changed].get_value()
  1000. if option_changed in tooluid_val:
  1001. tooluid_val[option_changed] = new_option_value
  1002. if option_changed in tooluid_val['data']:
  1003. tooluid_val['data'][option_changed] = new_option_value
  1004. self.blockSignals(False)
  1005. def on_apply_param_to_all_clicked(self):
  1006. if self.tools_table.rowCount() == 0:
  1007. # there is no tool in tool table so we can't save the GUI elements values to storage
  1008. log.debug("ToolIsolation.on_apply_param_to_all_clicked() --> no tool in Tools Table, aborting.")
  1009. return
  1010. self.blockSignals(True)
  1011. row = self.tools_table.currentRow()
  1012. if row < 0:
  1013. row = 0
  1014. tooluid_item = int(self.tools_table.item(row, 3).text())
  1015. temp_tool_data = {}
  1016. for tooluid_key, tooluid_val in self.iso_tools.items():
  1017. if int(tooluid_key) == tooluid_item:
  1018. # this will hold the 'data' key of the self.tools[tool] dictionary that corresponds to
  1019. # the current row in the tool table
  1020. temp_tool_data = tooluid_val['data']
  1021. break
  1022. for tooluid_key, tooluid_val in self.iso_tools.items():
  1023. tooluid_val['data'] = deepcopy(temp_tool_data)
  1024. self.app.inform.emit('[success] %s' % _("Current Tool parameters were applied to all tools."))
  1025. self.blockSignals(False)
  1026. def on_add_tool_by_key(self):
  1027. tool_add_popup = FCInputDialog(title='%s...' % _("New Tool"),
  1028. text='%s:' % _('Enter a Tool Diameter'),
  1029. min=0.0001, max=9999.9999, decimals=self.decimals)
  1030. tool_add_popup.setWindowIcon(QtGui.QIcon(self.app.resource_location + '/letter_t_32.png'))
  1031. val, ok = tool_add_popup.get_value()
  1032. if ok:
  1033. if float(val) == 0:
  1034. self.app.inform.emit('[WARNING_NOTCL] %s' %
  1035. _("Please enter a tool diameter with non-zero value, in Float format."))
  1036. return
  1037. self.on_tool_add(dia=float(val))
  1038. else:
  1039. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Adding Tool cancelled"))
  1040. def on_tooldia_updated(self):
  1041. if self.tool_type_radio.get_value() == 'C1':
  1042. self.old_tool_dia = self.addtool_entry.get_value()
  1043. def on_reference_combo_changed(self):
  1044. obj_type = self.reference_combo_type.currentIndex()
  1045. self.reference_combo.setRootModelIndex(self.app.collection.index(obj_type, 0, QtCore.QModelIndex()))
  1046. self.reference_combo.setCurrentIndex(0)
  1047. self.reference_combo.obj_type = {
  1048. _("Gerber"): "Gerber", _("Excellon"): "Excellon", _("Geometry"): "Geometry"
  1049. }[self.reference_combo_type.get_value()]
  1050. def on_toggle_reference(self):
  1051. val = self.select_combo.get_value()
  1052. if val == _("All"):
  1053. self.reference_combo.hide()
  1054. self.reference_combo_label.hide()
  1055. self.reference_combo_type.hide()
  1056. self.reference_combo_type_label.hide()
  1057. self.area_shape_label.hide()
  1058. self.area_shape_radio.hide()
  1059. # disable rest-machining for area painting
  1060. self.rest_cb.setDisabled(False)
  1061. elif val == _("Area Selection"):
  1062. self.reference_combo.hide()
  1063. self.reference_combo_label.hide()
  1064. self.reference_combo_type.hide()
  1065. self.reference_combo_type_label.hide()
  1066. self.area_shape_label.show()
  1067. self.area_shape_radio.show()
  1068. # disable rest-machining for area isolation
  1069. self.rest_cb.set_value(False)
  1070. self.rest_cb.setDisabled(True)
  1071. elif val == _("Polygon Selection"):
  1072. self.reference_combo.hide()
  1073. self.reference_combo_label.hide()
  1074. self.reference_combo_type.hide()
  1075. self.reference_combo_type_label.hide()
  1076. self.area_shape_label.hide()
  1077. self.area_shape_radio.hide()
  1078. else:
  1079. self.reference_combo.show()
  1080. self.reference_combo_label.show()
  1081. self.reference_combo_type.show()
  1082. self.reference_combo_type_label.show()
  1083. self.area_shape_label.hide()
  1084. self.area_shape_radio.hide()
  1085. # disable rest-machining for area painting
  1086. self.rest_cb.setDisabled(False)
  1087. def on_order_changed(self, order):
  1088. if order != 'no':
  1089. self.build_ui()
  1090. def on_rest_machining_check(self, state):
  1091. if state:
  1092. self.order_radio.set_value('rev')
  1093. self.order_label.setDisabled(True)
  1094. self.order_radio.setDisabled(True)
  1095. self.old_combine_state = self.combine_passes_cb.get_value()
  1096. self.combine_passes_cb.set_value(True)
  1097. self.combine_passes_cb.setDisabled(True)
  1098. else:
  1099. self.order_label.setDisabled(False)
  1100. self.order_radio.setDisabled(False)
  1101. self.combine_passes_cb.set_value(self.old_combine_state)
  1102. self.combine_passes_cb.setDisabled(False)
  1103. def on_tooltable_cellwidget_change(self):
  1104. cw = self.sender()
  1105. assert isinstance(cw, QtWidgets.QComboBox), \
  1106. "Expected a QtWidgets.QComboBox, got %s" % isinstance(cw, QtWidgets.QComboBox)
  1107. cw_index = self.tools_table.indexAt(cw.pos())
  1108. cw_row = cw_index.row()
  1109. cw_col = cw_index.column()
  1110. current_uid = int(self.tools_table.item(cw_row, 3).text())
  1111. # if the sender is in the column with index 2 then we update the tool_type key
  1112. if cw_col == 2:
  1113. tt = cw.currentText()
  1114. typ = 'Iso' if tt == 'V' else "Rough"
  1115. self.iso_tools[current_uid].update({
  1116. 'type': typ,
  1117. 'tool_type': tt,
  1118. })
  1119. def on_tool_type(self, val):
  1120. if val == 'V':
  1121. self.addtool_entry_lbl.setDisabled(True)
  1122. self.addtool_entry.setDisabled(True)
  1123. self.tipdialabel.show()
  1124. self.tipdia_entry.show()
  1125. self.tipanglelabel.show()
  1126. self.tipangle_entry.show()
  1127. self.on_calculate_tooldia()
  1128. else:
  1129. self.addtool_entry_lbl.setDisabled(False)
  1130. self.addtool_entry.setDisabled(False)
  1131. self.tipdialabel.hide()
  1132. self.tipdia_entry.hide()
  1133. self.tipanglelabel.hide()
  1134. self.tipangle_entry.hide()
  1135. self.addtool_entry.set_value(self.old_tool_dia)
  1136. def on_calculate_tooldia(self):
  1137. if self.tool_type_radio.get_value() == 'V':
  1138. tip_dia = float(self.tipdia_entry.get_value())
  1139. tip_angle = float(self.tipangle_entry.get_value()) / 2.0
  1140. cut_z = float(self.cutz_entry.get_value())
  1141. cut_z = -cut_z if cut_z < 0 else cut_z
  1142. # calculated tool diameter so the cut_z parameter is obeyed
  1143. tool_dia = tip_dia + (2 * cut_z * math.tan(math.radians(tip_angle)))
  1144. # update the default_data so it is used in the iso_tools dict
  1145. self.default_data.update({
  1146. "vtipdia": tip_dia,
  1147. "vtipangle": (tip_angle * 2),
  1148. })
  1149. self.addtool_entry.set_value(tool_dia)
  1150. return tool_dia
  1151. else:
  1152. return float(self.addtool_entry.get_value())
  1153. def on_tool_add(self, dia=None, muted=None):
  1154. self.blockSignals(True)
  1155. self.units = self.app.defaults['units'].upper()
  1156. if dia:
  1157. tool_dia = dia
  1158. else:
  1159. tool_dia = self.on_calculate_tooldia()
  1160. if tool_dia is None:
  1161. self.build_ui()
  1162. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Please enter a tool diameter to add, in Float format."))
  1163. return
  1164. tool_dia = float('%.*f' % (self.decimals, tool_dia))
  1165. if tool_dia == 0:
  1166. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Please enter a tool diameter with non-zero value, "
  1167. "in Float format."))
  1168. return
  1169. # construct a list of all 'tooluid' in the self.tools
  1170. tool_uid_list = []
  1171. for tooluid_key in self.iso_tools:
  1172. tool_uid_item = int(tooluid_key)
  1173. tool_uid_list.append(tool_uid_item)
  1174. # find maximum from the temp_uid, add 1 and this is the new 'tooluid'
  1175. if not tool_uid_list:
  1176. max_uid = 0
  1177. else:
  1178. max_uid = max(tool_uid_list)
  1179. self.tooluid = int(max_uid + 1)
  1180. tool_dias = []
  1181. for k, v in self.iso_tools.items():
  1182. for tool_v in v.keys():
  1183. if tool_v == 'tooldia':
  1184. tool_dias.append(float('%.*f' % (self.decimals, (v[tool_v]))))
  1185. if float('%.*f' % (self.decimals, tool_dia)) in tool_dias:
  1186. if muted is None:
  1187. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Cancelled. Tool already in Tool Table."))
  1188. # self.tools_table.itemChanged.connect(self.on_tool_edit)
  1189. self.blockSignals(False)
  1190. return
  1191. else:
  1192. if muted is None:
  1193. self.app.inform.emit('[success] %s' % _("New tool added to Tool Table."))
  1194. self.iso_tools.update({
  1195. int(self.tooluid): {
  1196. 'tooldia': float('%.*f' % (self.decimals, tool_dia)),
  1197. 'offset': 'Path',
  1198. 'offset_value': 0.0,
  1199. 'type': 'Iso',
  1200. 'tool_type': self.tool_type_radio.get_value(),
  1201. 'data': deepcopy(self.default_data),
  1202. 'solid_geometry': []
  1203. }
  1204. })
  1205. self.blockSignals(False)
  1206. self.build_ui()
  1207. def on_tool_edit(self):
  1208. self.blockSignals(True)
  1209. old_tool_dia = ''
  1210. tool_dias = []
  1211. for k, v in self.iso_tools.items():
  1212. for tool_v in v.keys():
  1213. if tool_v == 'tooldia':
  1214. tool_dias.append(float('%.*f' % (self.decimals, v[tool_v])))
  1215. for row in range(self.tools_table.rowCount()):
  1216. try:
  1217. new_tool_dia = float(self.tools_table.item(row, 1).text())
  1218. except ValueError:
  1219. # try to convert comma to decimal point. if it's still not working error message and return
  1220. try:
  1221. new_tool_dia = float(self.tools_table.item(row, 1).text().replace(',', '.'))
  1222. except ValueError:
  1223. self.app.inform.emit('[ERROR_NOTCL] %s' % _("Wrong value format entered, use a number."))
  1224. self.blockSignals(False)
  1225. return
  1226. tooluid = int(self.tools_table.item(row, 3).text())
  1227. # identify the tool that was edited and get it's tooluid
  1228. if new_tool_dia not in tool_dias:
  1229. self.iso_tools[tooluid]['tooldia'] = new_tool_dia
  1230. self.app.inform.emit('[success] %s' % _("Tool from Tool Table was edited."))
  1231. self.blockSignals(False)
  1232. self.build_ui()
  1233. return
  1234. else:
  1235. # identify the old tool_dia and restore the text in tool table
  1236. for k, v in self.iso_tools.items():
  1237. if k == tooluid:
  1238. old_tool_dia = v['tooldia']
  1239. break
  1240. restore_dia_item = self.tools_table.item(row, 1)
  1241. restore_dia_item.setText(str(old_tool_dia))
  1242. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Cancelled. "
  1243. "New diameter value is already in the Tool Table."))
  1244. self.blockSignals(False)
  1245. self.build_ui()
  1246. def on_tool_delete(self, rows_to_delete=None, all_tools=None):
  1247. """
  1248. Will delete a tool in the tool table
  1249. :param rows_to_delete: which rows to delete; can be a list
  1250. :param all_tools: delete all tools in the tool table
  1251. :return:
  1252. """
  1253. self.blockSignals(True)
  1254. deleted_tools_list = []
  1255. if all_tools:
  1256. self.iso_tools.clear()
  1257. self.blockSignals(False)
  1258. self.build_ui()
  1259. return
  1260. if rows_to_delete:
  1261. try:
  1262. for row in rows_to_delete:
  1263. tooluid_del = int(self.tools_table.item(row, 3).text())
  1264. deleted_tools_list.append(tooluid_del)
  1265. except TypeError:
  1266. tooluid_del = int(self.tools_table.item(rows_to_delete, 3).text())
  1267. deleted_tools_list.append(tooluid_del)
  1268. for t in deleted_tools_list:
  1269. self.iso_tools.pop(t, None)
  1270. self.blockSignals(False)
  1271. self.build_ui()
  1272. return
  1273. try:
  1274. if self.tools_table.selectedItems():
  1275. for row_sel in self.tools_table.selectedItems():
  1276. row = row_sel.row()
  1277. if row < 0:
  1278. continue
  1279. tooluid_del = int(self.tools_table.item(row, 3).text())
  1280. deleted_tools_list.append(tooluid_del)
  1281. for t in deleted_tools_list:
  1282. self.iso_tools.pop(t, None)
  1283. except AttributeError:
  1284. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Delete failed. Select a tool to delete."))
  1285. self.blockSignals(False)
  1286. return
  1287. except Exception as e:
  1288. log.debug(str(e))
  1289. self.app.inform.emit('[success] %s' % _("Tool(s) deleted from Tool Table."))
  1290. self.blockSignals(False)
  1291. self.build_ui()
  1292. def on_generate_buffer(self):
  1293. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Buffering solid geometry"))
  1294. self.obj_name = self.object_combo.currentText()
  1295. # Get source object.
  1296. try:
  1297. self.grb_obj = self.app.collection.get_by_name(self.obj_name)
  1298. except Exception as e:
  1299. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve object"), str(self.obj_name)))
  1300. return "Could not retrieve object: %s with error: %s" % (self.obj_name, str(e))
  1301. if self.grb_obj is None:
  1302. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Object not found"), str(self.obj_name)))
  1303. return
  1304. def buffer_task():
  1305. with self.app.proc_container.new('%s...' % _("Buffering")):
  1306. if isinstance(self.grb_obj.solid_geometry, list):
  1307. self.grb_obj.solid_geometry = MultiPolygon(self.grb_obj.solid_geometry)
  1308. self.grb_obj.solid_geometry = self.grb_obj.solid_geometry.buffer(0.0000001)
  1309. self.grb_obj.solid_geometry = self.grb_obj.solid_geometry.buffer(-0.0000001)
  1310. self.app.inform.emit('[success] %s.' % _("Done"))
  1311. self.grb_obj.plot_single_object.emit()
  1312. self.app.worker_task.emit({'fcn': buffer_task, 'params': []})
  1313. def on_iso_button_click(self):
  1314. self.obj_name = self.object_combo.currentText()
  1315. # Get source object.
  1316. try:
  1317. self.grb_obj = self.app.collection.get_by_name(self.obj_name)
  1318. except Exception as e:
  1319. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve object"), str(self.obj_name)))
  1320. return "Could not retrieve object: %s with error: %s" % (self.obj_name, str(e))
  1321. if self.grb_obj is None:
  1322. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Object not found"), str(self.obj_name)))
  1323. return
  1324. def worker_task(iso_obj):
  1325. with self.app.proc_container.new(_("Isolating...")):
  1326. self.isolate_handler(iso_obj)
  1327. self.app.worker_task.emit({'fcn': worker_task, 'params': [self.grb_obj]})
  1328. def follow_geo(self, followed_obj, outname):
  1329. """
  1330. Creates a geometry object "following" the gerber paths.
  1331. :param followed_obj: Gerber object for which to generate the follow geometry
  1332. :type followed_obj: AppObjects.FlatCAMGerber.GerberObject
  1333. :param outname: Nme of the resulting Geometry object
  1334. :type outname: str
  1335. :return: None
  1336. """
  1337. def follow_init(follow_obj, app_obj):
  1338. # Propagate options
  1339. follow_obj.options["cnctooldia"] = str(tooldia)
  1340. follow_obj.solid_geometry = self.grb_obj.follow_geometry
  1341. # in the end toggle the visibility of the origin object so we can see the generated Geometry
  1342. followed_obj.ui.plot_cb.set_value(False)
  1343. follow_name = outname
  1344. for tool in self.iso_tools:
  1345. tooldia = self.iso_tools[tool]['tooldia']
  1346. new_name = "%s_%.*f" % (follow_name, self.decimals, tooldia)
  1347. follow_state = self.iso_tools[tool]['data']['tools_iso_follow']
  1348. if follow_state:
  1349. ret = self.app.app_obj.new_object("geometry", new_name, follow_init)
  1350. if ret == 'fail':
  1351. self.app.inform.emit("[ERROR_NOTCL] %s: %.*f" % (
  1352. _("Failed to create Follow Geometry with tool diameter"), self.decimals, tooldia))
  1353. else:
  1354. self.app.inform.emit("[success] %s: %.*f" % (
  1355. _("Follow Geometry was created with tool diameter"), self.decimals, tooldia))
  1356. def isolate_handler(self, isolated_obj):
  1357. """
  1358. Creates a geometry object with paths around the gerber features.
  1359. :param isolated_obj: Gerber object for which to generate the isolating routing geometry
  1360. :type isolated_obj: AppObjects.FlatCAMGerber.GerberObject
  1361. :return: None
  1362. """
  1363. selection = self.select_combo.get_value()
  1364. if selection == _("All"):
  1365. self.isolate(isolated_obj=isolated_obj)
  1366. elif selection == _("Area Selection"):
  1367. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Click the start point of the area."))
  1368. if self.app.is_legacy is False:
  1369. self.app.plotcanvas.graph_event_disconnect('mouse_press', self.app.on_mouse_click_over_plot)
  1370. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.app.on_mouse_move_over_plot)
  1371. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.app.on_mouse_click_release_over_plot)
  1372. else:
  1373. self.app.plotcanvas.graph_event_disconnect(self.app.mp)
  1374. self.app.plotcanvas.graph_event_disconnect(self.app.mm)
  1375. self.app.plotcanvas.graph_event_disconnect(self.app.mr)
  1376. self.mr = self.app.plotcanvas.graph_event_connect('mouse_release', self.on_mouse_release)
  1377. self.mm = self.app.plotcanvas.graph_event_connect('mouse_move', self.on_mouse_move)
  1378. self.kp = self.app.plotcanvas.graph_event_connect('key_press', self.on_key_press)
  1379. # disconnect flags
  1380. self.area_sel_disconnect_flag = True
  1381. elif selection == _("Polygon Selection"):
  1382. # disengage the grid snapping since it may be hard to click on polygons with grid snapping on
  1383. if self.app.ui.grid_snap_btn.isChecked():
  1384. self.grid_status_memory = True
  1385. self.app.ui.grid_snap_btn.trigger()
  1386. else:
  1387. self.grid_status_memory = False
  1388. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Click on a polygon to isolate it."))
  1389. self.mr = self.app.plotcanvas.graph_event_connect('mouse_release', self.on_poly_mouse_click_release)
  1390. self.kp = self.app.plotcanvas.graph_event_connect('key_press', self.on_key_press)
  1391. if self.app.is_legacy is False:
  1392. self.app.plotcanvas.graph_event_disconnect('mouse_release',
  1393. self.app.on_mouse_click_release_over_plot)
  1394. else:
  1395. self.app.plotcanvas.graph_event_disconnect(self.app.mr)
  1396. # disconnect flags
  1397. self.poly_sel_disconnect_flag = True
  1398. elif selection == _("Reference Object"):
  1399. ref_obj = self.app.collection.get_by_name(self.reference_combo.get_value())
  1400. ref_geo = cascaded_union(ref_obj.solid_geometry)
  1401. use_geo = cascaded_union(isolated_obj.solid_geometry).difference(ref_geo)
  1402. self.isolate(isolated_obj=isolated_obj, geometry=use_geo)
  1403. def isolate(self, isolated_obj, geometry=None, limited_area=None, plot=True):
  1404. """
  1405. Creates an isolation routing geometry object in the project.
  1406. :param isolated_obj: Gerber object for which to generate the isolating routing geometry
  1407. :type isolated_obj: AppObjects.FlatCAMGerber.GerberObject
  1408. :param geometry: specific geometry to isolate
  1409. :type geometry: List of Shapely polygon
  1410. :param limited_area: if not None isolate only this area
  1411. :type limited_area: Shapely Polygon or a list of them
  1412. :param plot: if to plot the resulting geometry object
  1413. :type plot: bool
  1414. :return: None
  1415. """
  1416. combine = self.combine_passes_cb.get_value()
  1417. tools_storage = self.iso_tools
  1418. # update the Common Parameters valuse in the self.iso_tools
  1419. for tool_iso in self.iso_tools:
  1420. for key in self.iso_tools[tool_iso]:
  1421. if key == 'data':
  1422. self.iso_tools[tool_iso][key]["tools_iso_rest"] = self.rest_cb.get_value()
  1423. self.iso_tools[tool_iso][key]["tools_iso_combine_passes"] = combine
  1424. self.iso_tools[tool_iso][key]["tools_iso_isoexcept"] = self.except_cb.get_value()
  1425. self.iso_tools[tool_iso][key]["tools_iso_selection"] = self.select_combo.get_value()
  1426. self.iso_tools[tool_iso][key]["tools_iso_area_shape"] = self.area_shape_radio.get_value()
  1427. if combine:
  1428. if self.rest_cb.get_value():
  1429. self.combined_rest(iso_obj=isolated_obj, iso2geo=geometry, tools_storage=tools_storage,
  1430. lim_area=limited_area, plot=plot)
  1431. else:
  1432. self.combined_normal(iso_obj=isolated_obj, iso2geo=geometry, tools_storage=tools_storage,
  1433. lim_area=limited_area, plot=plot)
  1434. else:
  1435. prog_plot = self.app.defaults["tools_iso_plotting"]
  1436. for tool in tools_storage:
  1437. tool_data = tools_storage[tool]['data']
  1438. to_follow = tool_data['tools_iso_follow']
  1439. work_geo = geometry
  1440. if work_geo is None:
  1441. work_geo = isolated_obj.follow_geometry if to_follow else isolated_obj.solid_geometry
  1442. iso_t = {
  1443. 'ext': 0,
  1444. 'int': 1,
  1445. 'full': 2
  1446. }[tool_data['tools_iso_isotype']]
  1447. passes = tool_data['tools_iso_passes']
  1448. overlap = tool_data['tools_iso_overlap']
  1449. overlap /= 100.0
  1450. milling_type = tool_data['tools_iso_milling_type']
  1451. iso_except = self.except_cb.get_value()
  1452. for i in range(passes):
  1453. tool_dia = tools_storage[tool]['tooldia']
  1454. tool_type = tools_storage[tool]['tool_type']
  1455. iso_offset = tool_dia * ((2 * i + 1) / 2.0000001) - (i * overlap * tool_dia)
  1456. outname = "%s_%.*f" % (isolated_obj.options["name"], self.decimals, float(tool_dia))
  1457. if passes > 1:
  1458. iso_name = outname + "_iso" + str(i + 1)
  1459. if iso_t == 0:
  1460. iso_name = outname + "_ext_iso" + str(i + 1)
  1461. elif iso_t == 1:
  1462. iso_name = outname + "_int_iso" + str(i + 1)
  1463. else:
  1464. iso_name = outname + "_iso"
  1465. if iso_t == 0:
  1466. iso_name = outname + "_ext_iso"
  1467. elif iso_t == 1:
  1468. iso_name = outname + "_int_iso"
  1469. # if milling type is climb then the move is counter-clockwise around features
  1470. mill_dir = 1 if milling_type == 'cl' else 0
  1471. iso_geo = self.generate_envelope(iso_offset, mill_dir, geometry=work_geo, env_iso_type=iso_t,
  1472. follow=to_follow, nr_passes=i, prog_plot=prog_plot)
  1473. if iso_geo == 'fail':
  1474. self.app.inform.emit(
  1475. '[ERROR_NOTCL] %s' % _("Isolation geometry could not be generated."))
  1476. continue
  1477. # ############################################################
  1478. # ########## AREA SUBTRACTION ################################
  1479. # ############################################################
  1480. if iso_except:
  1481. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1482. iso_geo = self.area_subtraction(iso_geo)
  1483. if limited_area:
  1484. self.app.proc_container.update_view_text(' %s' % _("Intersecting Geo"))
  1485. iso_geo = self.area_intersection(iso_geo, intersection_geo=limited_area)
  1486. tool_data.update({
  1487. "name": iso_name,
  1488. })
  1489. def iso_init(geo_obj, fc_obj):
  1490. # Propagate options
  1491. geo_obj.options["cnctooldia"] = str(tool_dia)
  1492. geo_obj.solid_geometry = deepcopy(iso_geo)
  1493. # ############################################################
  1494. # ########## AREA SUBTRACTION ################################
  1495. # ############################################################
  1496. if self.except_cb.get_value():
  1497. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1498. geo_obj.solid_geometry = self.area_subtraction(geo_obj.solid_geometry)
  1499. geo_obj.tools = {}
  1500. geo_obj.tools['1'] = {}
  1501. geo_obj.tools.update({
  1502. '1': {
  1503. 'tooldia': float(tool_dia),
  1504. 'offset': 'Path',
  1505. 'offset_value': 0.0,
  1506. 'type': _('Rough'),
  1507. 'tool_type': tool_type,
  1508. 'data': tool_data,
  1509. 'solid_geometry': geo_obj.solid_geometry
  1510. }
  1511. })
  1512. # detect if solid_geometry is empty and this require list flattening which is "heavy"
  1513. # or just looking in the lists (they are one level depth) and if any is not empty
  1514. # proceed with object creation, if there are empty and the number of them is the length
  1515. # of the list then we have an empty solid_geometry which should raise a Custom Exception
  1516. empty_cnt = 0
  1517. if not isinstance(geo_obj.solid_geometry, list):
  1518. geo_obj.solid_geometry = [geo_obj.solid_geometry]
  1519. for g in geo_obj.solid_geometry:
  1520. if g:
  1521. break
  1522. else:
  1523. empty_cnt += 1
  1524. if empty_cnt == len(geo_obj.solid_geometry):
  1525. fc_obj.inform.emit('[ERROR_NOTCL] %s: %s' % (
  1526. _("Empty Geometry in"), geo_obj.options["name"]))
  1527. return 'fail'
  1528. else:
  1529. fc_obj.inform.emit('[success] %s: %s' %
  1530. (_("Isolation geometry created"), geo_obj.options["name"]))
  1531. geo_obj.multigeo = False
  1532. self.app.app_obj.new_object("geometry", iso_name, iso_init, plot=plot)
  1533. # clean the progressive plotted shapes if it was used
  1534. if prog_plot == 'progressive':
  1535. self.temp_shapes.clear(update=True)
  1536. # Switch notebook to Selected page
  1537. self.app.ui.notebook.setCurrentWidget(self.app.ui.selected_tab)
  1538. def combined_rest(self, iso_obj, iso2geo, tools_storage, lim_area, plot=True):
  1539. """
  1540. Isolate the provided Gerber object using "rest machining" strategy
  1541. :param iso_obj: the isolated Gerber object
  1542. :type iso_obj: AppObjects.FlatCAMGerber.GerberObject
  1543. :param iso2geo: specific geometry to isolate
  1544. :type iso2geo: list of Shapely Polygon
  1545. :param tools_storage: a dictionary that holds the tools and geometry
  1546. :type tools_storage: dict
  1547. :param lim_area: if not None restrict isolation to this area
  1548. :type lim_area: Shapely Polygon or a list of them
  1549. :param plot: if to plot the resulting geometry object
  1550. :type plot: bool
  1551. :return: Isolated solid geometry
  1552. :rtype:
  1553. """
  1554. log.debug("ToolIsolation.combine_rest()")
  1555. total_solid_geometry = []
  1556. iso_name = iso_obj.options["name"] + '_iso_rest'
  1557. work_geo = iso_obj.solid_geometry if iso2geo is None else iso2geo
  1558. sorted_tools = []
  1559. for k, v in self.iso_tools.items():
  1560. sorted_tools.append(float('%.*f' % (self.decimals, float(v['tooldia']))))
  1561. order = self.order_radio.get_value()
  1562. if order == 'fwd':
  1563. sorted_tools.sort(reverse=False)
  1564. elif order == 'rev':
  1565. sorted_tools.sort(reverse=True)
  1566. else:
  1567. pass
  1568. # decide to use "progressive" or "normal" plotting
  1569. prog_plot = self.app.defaults["tools_iso_plotting"]
  1570. for sorted_tool in sorted_tools:
  1571. for tool in tools_storage:
  1572. if float('%.*f' % (self.decimals, tools_storage[tool]['tooldia'])) == sorted_tool:
  1573. tool_dia = tools_storage[tool]['tooldia']
  1574. tool_type = tools_storage[tool]['tool_type']
  1575. tool_data = tools_storage[tool]['data']
  1576. iso_t = {
  1577. 'ext': 0,
  1578. 'int': 1,
  1579. 'full': 2
  1580. }[tool_data['tools_iso_isotype']]
  1581. passes = tool_data['tools_iso_passes']
  1582. overlap = tool_data['tools_iso_overlap']
  1583. overlap /= 100.0
  1584. milling_type = tool_data['tools_iso_milling_type']
  1585. # if milling type is climb then the move is counter-clockwise around features
  1586. mill_dir = True if milling_type == 'cl' else False
  1587. iso_except = self.except_cb.get_value()
  1588. outname = "%s_%.*f" % (iso_obj.options["name"], self.decimals, float(tool_dia))
  1589. internal_name = outname + "_iso"
  1590. if iso_t == 0:
  1591. internal_name = outname + "_ext_iso"
  1592. elif iso_t == 1:
  1593. internal_name = outname + "_int_iso"
  1594. tool_data.update({
  1595. "name": internal_name,
  1596. })
  1597. solid_geo, work_geo = self.generate_rest_geometry(geometry=work_geo, tooldia=tool_dia,
  1598. passes=passes, overlap=overlap, invert=mill_dir,
  1599. env_iso_type=iso_t, prog_plot=prog_plot,
  1600. prog_plot_handler=self.plot_temp_shapes)
  1601. # ############################################################
  1602. # ########## AREA SUBTRACTION ################################
  1603. # ############################################################
  1604. if iso_except:
  1605. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1606. solid_geo = self.area_subtraction(solid_geo)
  1607. if lim_area:
  1608. self.app.proc_container.update_view_text(' %s' % _("Intersecting Geo"))
  1609. solid_geo = self.area_intersection(solid_geo, intersection_geo=lim_area)
  1610. tools_storage.update({
  1611. tool: {
  1612. 'tooldia': float(tool_dia),
  1613. 'offset': 'Path',
  1614. 'offset_value': 0.0,
  1615. 'type': _('Rough'),
  1616. 'tool_type': tool_type,
  1617. 'data': tool_data,
  1618. 'solid_geometry': deepcopy(solid_geo)
  1619. }
  1620. })
  1621. total_solid_geometry += solid_geo
  1622. # if the geometry is all isolated
  1623. if not work_geo:
  1624. break
  1625. # clean the progressive plotted shapes if it was used
  1626. if self.app.defaults["tools_iso_plotting"] == 'progressive':
  1627. self.temp_shapes.clear(update=True)
  1628. def iso_init(geo_obj, app_obj):
  1629. geo_obj.options["cnctooldia"] = str(tool_dia)
  1630. geo_obj.tools = dict(tools_storage)
  1631. geo_obj.solid_geometry = total_solid_geometry
  1632. # even if combine is checked, one pass is still single-geo
  1633. # remove the tools that have no geometry
  1634. for geo_tool in list(geo_obj.tools.keys()):
  1635. if not geo_obj.tools[geo_tool]['solid_geometry']:
  1636. geo_obj.tools.pop(geo_tool, None)
  1637. if len(tools_storage) > 1:
  1638. geo_obj.multigeo = True
  1639. else:
  1640. for ky in tools_storage.keys():
  1641. passes_no = float(tools_storage[ky]['data']['tools_iso_passes'])
  1642. geo_obj.multigeo = True if passes_no > 1 else False
  1643. break
  1644. # detect if solid_geometry is empty and this require list flattening which is "heavy"
  1645. # or just looking in the lists (they are one level depth) and if any is not empty
  1646. # proceed with object creation, if there are empty and the number of them is the length
  1647. # of the list then we have an empty solid_geometry which should raise a Custom Exception
  1648. empty_cnt = 0
  1649. if not isinstance(geo_obj.solid_geometry, list) and \
  1650. not isinstance(geo_obj.solid_geometry, MultiPolygon):
  1651. geo_obj.solid_geometry = [geo_obj.solid_geometry]
  1652. for g in geo_obj.solid_geometry:
  1653. if g:
  1654. break
  1655. else:
  1656. empty_cnt += 1
  1657. if empty_cnt == len(geo_obj.solid_geometry):
  1658. app_obj.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Empty Geometry in"), geo_obj.options["name"]))
  1659. return 'fail'
  1660. else:
  1661. app_obj.inform.emit('[success] %s: %s' % (_("Isolation geometry created"), geo_obj.options["name"]))
  1662. self.app.app_obj.new_object("geometry", iso_name, iso_init, plot=plot)
  1663. # the tools are finished but the isolation is not finished therefore it failed
  1664. if work_geo:
  1665. self.app.inform.emit("[WARNING] %s" % _("Partial failure. The geometry was processed with all tools.\n"
  1666. "But there are still not-isolated geometry elements. "
  1667. "Try to include a tool with smaller diameter."))
  1668. self.app.shell_message(msg=_("The following are coordinates for the copper features "
  1669. "that could not be isolated:"))
  1670. msg = ''
  1671. for geo in work_geo:
  1672. pt = geo.representative_point()
  1673. coords = '(%s, %s), ' % (str(pt.x), str(pt.y))
  1674. msg += coords
  1675. self.app.shell_message(msg=msg)
  1676. def combined_normal(self, iso_obj, iso2geo, tools_storage, lim_area, plot=True):
  1677. """
  1678. :param iso_obj: the isolated Gerber object
  1679. :type iso_obj: AppObjects.FlatCAMGerber.GerberObject
  1680. :param iso2geo: specific geometry to isolate
  1681. :type iso2geo: list of Shapely Polygon
  1682. :param tools_storage: a dictionary that holds the tools and geometry
  1683. :type tools_storage: dict
  1684. :param lim_area: if not None restrict isolation to this area
  1685. :type lim_area: Shapely Polygon or a list of them
  1686. :param plot: if to plot the resulting geometry object
  1687. :type plot: bool
  1688. :return: Isolated solid geometry
  1689. :rtype:
  1690. """
  1691. log.debug("ToolIsolation.combined_normal()")
  1692. total_solid_geometry = []
  1693. iso_name = iso_obj.options["name"] + '_iso_combined'
  1694. geometry = iso2geo
  1695. prog_plot = self.app.defaults["tools_iso_plotting"]
  1696. for tool in tools_storage:
  1697. tool_dia = tools_storage[tool]['tooldia']
  1698. tool_type = tools_storage[tool]['tool_type']
  1699. tool_data = tools_storage[tool]['data']
  1700. to_follow = tool_data['tools_iso_follow']
  1701. # TODO what to do when the iso2geo param is not None but the Follow cb is checked
  1702. # for the case when limited area is used .... the follow geo should be clipped too
  1703. work_geo = geometry
  1704. if work_geo is None:
  1705. work_geo = iso_obj.follow_geometry if to_follow else iso_obj.solid_geometry
  1706. iso_t = {
  1707. 'ext': 0,
  1708. 'int': 1,
  1709. 'full': 2
  1710. }[tool_data['tools_iso_isotype']]
  1711. passes = tool_data['tools_iso_passes']
  1712. overlap = tool_data['tools_iso_overlap']
  1713. overlap /= 100.0
  1714. milling_type = tool_data['tools_iso_milling_type']
  1715. iso_except = self.except_cb.get_value()
  1716. outname = "%s_%.*f" % (iso_obj.options["name"], self.decimals, float(tool_dia))
  1717. internal_name = outname + "_iso"
  1718. if iso_t == 0:
  1719. internal_name = outname + "_ext_iso"
  1720. elif iso_t == 1:
  1721. internal_name = outname + "_int_iso"
  1722. tool_data.update({
  1723. "name": internal_name,
  1724. })
  1725. solid_geo = []
  1726. for nr_pass in range(passes):
  1727. iso_offset = tool_dia * ((2 * nr_pass + 1) / 2.0000001) - (nr_pass * overlap * tool_dia)
  1728. # if milling type is climb then the move is counter-clockwise around features
  1729. mill_dir = 1 if milling_type == 'cl' else 0
  1730. iso_geo = self.generate_envelope(iso_offset, mill_dir, geometry=work_geo, env_iso_type=iso_t,
  1731. follow=to_follow, nr_passes=nr_pass, prog_plot=prog_plot)
  1732. if iso_geo == 'fail':
  1733. self.app.inform.emit('[ERROR_NOTCL] %s' % _("Isolation geometry could not be generated."))
  1734. continue
  1735. try:
  1736. for geo in iso_geo:
  1737. solid_geo.append(geo)
  1738. except TypeError:
  1739. solid_geo.append(iso_geo)
  1740. # ############################################################
  1741. # ########## AREA SUBTRACTION ################################
  1742. # ############################################################
  1743. if iso_except:
  1744. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1745. solid_geo = self.area_subtraction(solid_geo)
  1746. if lim_area:
  1747. self.app.proc_container.update_view_text(' %s' % _("Intersecting Geo"))
  1748. solid_geo = self.area_intersection(solid_geo, intersection_geo=lim_area)
  1749. tools_storage.update({
  1750. tool: {
  1751. 'tooldia': float(tool_dia),
  1752. 'offset': 'Path',
  1753. 'offset_value': 0.0,
  1754. 'type': _('Rough'),
  1755. 'tool_type': tool_type,
  1756. 'data': tool_data,
  1757. 'solid_geometry': deepcopy(solid_geo)
  1758. }
  1759. })
  1760. total_solid_geometry += solid_geo
  1761. # clean the progressive plotted shapes if it was used
  1762. if prog_plot == 'progressive':
  1763. self.temp_shapes.clear(update=True)
  1764. def iso_init(geo_obj, app_obj):
  1765. geo_obj.options["cnctooldia"] = str(tool_dia)
  1766. geo_obj.tools = dict(tools_storage)
  1767. geo_obj.solid_geometry = total_solid_geometry
  1768. # even if combine is checked, one pass is still single-geo
  1769. if len(tools_storage) > 1:
  1770. geo_obj.multigeo = True
  1771. else:
  1772. if to_follow:
  1773. geo_obj.multigeo = False
  1774. else:
  1775. passes_no = 1
  1776. for ky in tools_storage.keys():
  1777. passes_no = float(tools_storage[ky]['data']['tools_iso_passes'])
  1778. geo_obj.multigeo = True if passes_no > 1 else False
  1779. break
  1780. geo_obj.multigeo = True if passes_no > 1 else False
  1781. # detect if solid_geometry is empty and this require list flattening which is "heavy"
  1782. # or just looking in the lists (they are one level depth) and if any is not empty
  1783. # proceed with object creation, if there are empty and the number of them is the length
  1784. # of the list then we have an empty solid_geometry which should raise a Custom Exception
  1785. empty_cnt = 0
  1786. if not isinstance(geo_obj.solid_geometry, list) and \
  1787. not isinstance(geo_obj.solid_geometry, MultiPolygon):
  1788. geo_obj.solid_geometry = [geo_obj.solid_geometry]
  1789. for g in geo_obj.solid_geometry:
  1790. if g:
  1791. break
  1792. else:
  1793. empty_cnt += 1
  1794. if empty_cnt == len(geo_obj.solid_geometry):
  1795. app_obj.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Empty Geometry in"), geo_obj.options["name"]))
  1796. return 'fail'
  1797. else:
  1798. app_obj.inform.emit('[success] %s: %s' % (_("Isolation geometry created"), geo_obj.options["name"]))
  1799. self.app.app_obj.new_object("geometry", iso_name, iso_init, plot=plot)
  1800. def area_subtraction(self, geo, subtraction_geo=None):
  1801. """
  1802. Subtracts the subtraction_geo (if present else self.solid_geometry) from the geo
  1803. :param geo: target geometry from which to subtract
  1804. :param subtraction_geo: geometry that acts as subtraction geo
  1805. :return:
  1806. """
  1807. new_geometry = []
  1808. target_geo = geo
  1809. if subtraction_geo:
  1810. sub_union = cascaded_union(subtraction_geo)
  1811. else:
  1812. name = self.exc_obj_combo.currentText()
  1813. subtractor_obj = self.app.collection.get_by_name(name)
  1814. sub_union = cascaded_union(subtractor_obj.solid_geometry)
  1815. try:
  1816. for geo_elem in target_geo:
  1817. if isinstance(geo_elem, Polygon):
  1818. for ring in self.poly2rings(geo_elem):
  1819. new_geo = ring.difference(sub_union)
  1820. if new_geo and not new_geo.is_empty:
  1821. new_geometry.append(new_geo)
  1822. elif isinstance(geo_elem, MultiPolygon):
  1823. for poly in geo_elem:
  1824. for ring in self.poly2rings(poly):
  1825. new_geo = ring.difference(sub_union)
  1826. if new_geo and not new_geo.is_empty:
  1827. new_geometry.append(new_geo)
  1828. elif isinstance(geo_elem, LineString) or isinstance(geo_elem, LinearRing):
  1829. new_geo = geo_elem.difference(sub_union)
  1830. if new_geo:
  1831. if not new_geo.is_empty:
  1832. new_geometry.append(new_geo)
  1833. elif isinstance(geo_elem, MultiLineString):
  1834. for line_elem in geo_elem:
  1835. new_geo = line_elem.difference(sub_union)
  1836. if new_geo and not new_geo.is_empty:
  1837. new_geometry.append(new_geo)
  1838. except TypeError:
  1839. if isinstance(target_geo, Polygon):
  1840. for ring in self.poly2rings(target_geo):
  1841. new_geo = ring.difference(sub_union)
  1842. if new_geo:
  1843. if not new_geo.is_empty:
  1844. new_geometry.append(new_geo)
  1845. elif isinstance(target_geo, LineString) or isinstance(target_geo, LinearRing):
  1846. new_geo = target_geo.difference(sub_union)
  1847. if new_geo and not new_geo.is_empty:
  1848. new_geometry.append(new_geo)
  1849. elif isinstance(target_geo, MultiLineString):
  1850. for line_elem in target_geo:
  1851. new_geo = line_elem.difference(sub_union)
  1852. if new_geo and not new_geo.is_empty:
  1853. new_geometry.append(new_geo)
  1854. return new_geometry
  1855. def area_intersection(self, geo, intersection_geo=None):
  1856. """
  1857. Return the intersection geometry between geo and intersection_geo
  1858. :param geo: target geometry
  1859. :param intersection_geo: second geometry
  1860. :return:
  1861. """
  1862. new_geometry = []
  1863. target_geo = geo
  1864. intersect_union = cascaded_union(intersection_geo)
  1865. try:
  1866. for geo_elem in target_geo:
  1867. if isinstance(geo_elem, Polygon):
  1868. for ring in self.poly2rings(geo_elem):
  1869. new_geo = ring.intersection(intersect_union)
  1870. if new_geo and not new_geo.is_empty:
  1871. new_geometry.append(new_geo)
  1872. elif isinstance(geo_elem, MultiPolygon):
  1873. for poly in geo_elem:
  1874. for ring in self.poly2rings(poly):
  1875. new_geo = ring.intersection(intersect_union)
  1876. if new_geo and not new_geo.is_empty:
  1877. new_geometry.append(new_geo)
  1878. elif isinstance(geo_elem, LineString) or isinstance(geo_elem, LinearRing):
  1879. new_geo = geo_elem.intersection(intersect_union)
  1880. if new_geo:
  1881. if not new_geo.is_empty:
  1882. new_geometry.append(new_geo)
  1883. elif isinstance(geo_elem, MultiLineString):
  1884. for line_elem in geo_elem:
  1885. new_geo = line_elem.intersection(intersect_union)
  1886. if new_geo and not new_geo.is_empty:
  1887. new_geometry.append(new_geo)
  1888. except TypeError:
  1889. if isinstance(target_geo, Polygon):
  1890. for ring in self.poly2rings(target_geo):
  1891. new_geo = ring.intersection(intersect_union)
  1892. if new_geo:
  1893. if not new_geo.is_empty:
  1894. new_geometry.append(new_geo)
  1895. elif isinstance(target_geo, LineString) or isinstance(target_geo, LinearRing):
  1896. new_geo = target_geo.intersection(intersect_union)
  1897. if new_geo and not new_geo.is_empty:
  1898. new_geometry.append(new_geo)
  1899. elif isinstance(target_geo, MultiLineString):
  1900. for line_elem in target_geo:
  1901. new_geo = line_elem.intersection(intersect_union)
  1902. if new_geo and not new_geo.is_empty:
  1903. new_geometry.append(new_geo)
  1904. return new_geometry
  1905. def on_poly_mouse_click_release(self, event):
  1906. if self.app.is_legacy is False:
  1907. event_pos = event.pos
  1908. right_button = 2
  1909. self.app.event_is_dragging = self.app.event_is_dragging
  1910. else:
  1911. event_pos = (event.xdata, event.ydata)
  1912. right_button = 3
  1913. self.app.event_is_dragging = self.app.ui.popMenu.mouse_is_panning
  1914. try:
  1915. x = float(event_pos[0])
  1916. y = float(event_pos[1])
  1917. except TypeError:
  1918. return
  1919. event_pos = (x, y)
  1920. curr_pos = self.app.plotcanvas.translate_coords(event_pos)
  1921. if self.app.grid_status():
  1922. curr_pos = self.app.geo_editor.snap(curr_pos[0], curr_pos[1])
  1923. else:
  1924. curr_pos = (curr_pos[0], curr_pos[1])
  1925. if event.button == 1:
  1926. clicked_poly = self.find_polygon(point=(curr_pos[0], curr_pos[1]), geoset=self.grb_obj.solid_geometry)
  1927. if self.app.selection_type is not None:
  1928. self.selection_area_handler(self.app.pos, curr_pos, self.app.selection_type)
  1929. self.app.selection_type = None
  1930. elif clicked_poly:
  1931. if clicked_poly not in self.poly_dict.values():
  1932. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0, shape=clicked_poly,
  1933. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  1934. face_color=self.app.defaults['global_sel_draw_color'] + 'AF',
  1935. visible=True)
  1936. self.poly_dict[shape_id] = clicked_poly
  1937. self.app.inform.emit(
  1938. '%s: %d. %s' % (_("Added polygon"), int(len(self.poly_dict)),
  1939. _("Click to add next polygon or right click to start isolation."))
  1940. )
  1941. else:
  1942. try:
  1943. for k, v in list(self.poly_dict.items()):
  1944. if v == clicked_poly:
  1945. self.app.tool_shapes.remove(k)
  1946. self.poly_dict.pop(k)
  1947. break
  1948. except TypeError:
  1949. return
  1950. self.app.inform.emit(
  1951. '%s. %s' % (_("Removed polygon"),
  1952. _("Click to add/remove next polygon or right click to start isolation."))
  1953. )
  1954. self.app.tool_shapes.redraw()
  1955. else:
  1956. self.app.inform.emit(_("No polygon detected under click position."))
  1957. elif event.button == right_button and self.app.event_is_dragging is False:
  1958. # restore the Grid snapping if it was active before
  1959. if self.grid_status_memory is True:
  1960. self.app.ui.grid_snap_btn.trigger()
  1961. if self.app.is_legacy is False:
  1962. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_poly_mouse_click_release)
  1963. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_pres)
  1964. else:
  1965. self.app.plotcanvas.graph_event_disconnect(self.mr)
  1966. self.app.plotcanvas.graph_event_disconnect(self.kp)
  1967. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  1968. self.app.on_mouse_click_release_over_plot)
  1969. # disconnect flags
  1970. self.poly_sel_disconnect_flag = False
  1971. self.app.tool_shapes.clear(update=True)
  1972. if self.poly_dict:
  1973. poly_list = deepcopy(list(self.poly_dict.values()))
  1974. self.isolate(isolated_obj=self.grb_obj, geometry=poly_list)
  1975. self.poly_dict.clear()
  1976. else:
  1977. self.app.inform.emit('[ERROR_NOTCL] %s' % _("List of single polygons is empty. Aborting."))
  1978. def selection_area_handler(self, start_pos, end_pos, sel_type):
  1979. """
  1980. :param start_pos: mouse position when the selection LMB click was done
  1981. :param end_pos: mouse position when the left mouse button is released
  1982. :param sel_type: if True it's a left to right selection (enclosure), if False it's a 'touch' selection
  1983. :return:
  1984. """
  1985. poly_selection = Polygon([start_pos, (end_pos[0], start_pos[1]), end_pos, (start_pos[0], end_pos[1])])
  1986. # delete previous selection shape
  1987. self.app.delete_selection_shape()
  1988. added_poly_count = 0
  1989. try:
  1990. for geo in self.solid_geometry:
  1991. if geo not in self.poly_dict.values():
  1992. if sel_type is True:
  1993. if geo.within(poly_selection):
  1994. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0,
  1995. shape=geo,
  1996. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  1997. face_color=self.app.defaults[
  1998. 'global_sel_draw_color'] + 'AF',
  1999. visible=True)
  2000. self.poly_dict[shape_id] = geo
  2001. added_poly_count += 1
  2002. else:
  2003. if poly_selection.intersects(geo):
  2004. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0,
  2005. shape=geo,
  2006. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  2007. face_color=self.app.defaults[
  2008. 'global_sel_draw_color'] + 'AF',
  2009. visible=True)
  2010. self.poly_dict[shape_id] = geo
  2011. added_poly_count += 1
  2012. except TypeError:
  2013. if self.solid_geometry not in self.poly_dict.values():
  2014. if sel_type is True:
  2015. if self.solid_geometry.within(poly_selection):
  2016. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0,
  2017. shape=self.solid_geometry,
  2018. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  2019. face_color=self.app.defaults[
  2020. 'global_sel_draw_color'] + 'AF',
  2021. visible=True)
  2022. self.poly_dict[shape_id] = self.solid_geometry
  2023. added_poly_count += 1
  2024. else:
  2025. if poly_selection.intersects(self.solid_geometry):
  2026. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0,
  2027. shape=self.solid_geometry,
  2028. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  2029. face_color=self.app.defaults[
  2030. 'global_sel_draw_color'] + 'AF',
  2031. visible=True)
  2032. self.poly_dict[shape_id] = self.solid_geometry
  2033. added_poly_count += 1
  2034. if added_poly_count > 0:
  2035. self.app.tool_shapes.redraw()
  2036. self.app.inform.emit(
  2037. '%s: %d. %s' % (_("Added polygon"),
  2038. int(added_poly_count),
  2039. _("Click to add next polygon or right click to start isolation."))
  2040. )
  2041. else:
  2042. self.app.inform.emit(_("No polygon in selection."))
  2043. # To be called after clicking on the plot.
  2044. def on_mouse_release(self, event):
  2045. if self.app.is_legacy is False:
  2046. event_pos = event.pos
  2047. # event_is_dragging = event.is_dragging
  2048. right_button = 2
  2049. else:
  2050. event_pos = (event.xdata, event.ydata)
  2051. # event_is_dragging = self.app.plotcanvas.is_dragging
  2052. right_button = 3
  2053. event_pos = self.app.plotcanvas.translate_coords(event_pos)
  2054. if self.app.grid_status():
  2055. curr_pos = self.app.geo_editor.snap(event_pos[0], event_pos[1])
  2056. else:
  2057. curr_pos = (event_pos[0], event_pos[1])
  2058. x1, y1 = curr_pos[0], curr_pos[1]
  2059. shape_type = self.area_shape_radio.get_value()
  2060. # do clear area only for left mouse clicks
  2061. if event.button == 1:
  2062. if shape_type == "square":
  2063. if self.first_click is False:
  2064. self.first_click = True
  2065. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Click the end point of the paint area."))
  2066. self.cursor_pos = self.app.plotcanvas.translate_coords(event_pos)
  2067. if self.app.grid_status():
  2068. self.cursor_pos = self.app.geo_editor.snap(event_pos[0], event_pos[1])
  2069. else:
  2070. self.app.inform.emit(_("Zone added. Click to start adding next zone or right click to finish."))
  2071. self.app.delete_selection_shape()
  2072. x0, y0 = self.cursor_pos[0], self.cursor_pos[1]
  2073. pt1 = (x0, y0)
  2074. pt2 = (x1, y0)
  2075. pt3 = (x1, y1)
  2076. pt4 = (x0, y1)
  2077. new_rectangle = Polygon([pt1, pt2, pt3, pt4])
  2078. self.sel_rect.append(new_rectangle)
  2079. # add a temporary shape on canvas
  2080. self.draw_tool_selection_shape(old_coords=(x0, y0), coords=(x1, y1))
  2081. self.first_click = False
  2082. return
  2083. else:
  2084. self.points.append((x1, y1))
  2085. if len(self.points) > 1:
  2086. self.poly_drawn = True
  2087. self.app.inform.emit(_("Click on next Point or click right mouse button to complete ..."))
  2088. return ""
  2089. elif event.button == right_button and self.mouse_is_dragging is False:
  2090. shape_type = self.area_shape_radio.get_value()
  2091. if shape_type == "square":
  2092. self.first_click = False
  2093. else:
  2094. # if we finish to add a polygon
  2095. if self.poly_drawn is True:
  2096. try:
  2097. # try to add the point where we last clicked if it is not already in the self.points
  2098. last_pt = (x1, y1)
  2099. if last_pt != self.points[-1]:
  2100. self.points.append(last_pt)
  2101. except IndexError:
  2102. pass
  2103. # we need to add a Polygon and a Polygon can be made only from at least 3 points
  2104. if len(self.points) > 2:
  2105. self.delete_moving_selection_shape()
  2106. pol = Polygon(self.points)
  2107. # do not add invalid polygons even if they are drawn by utility geometry
  2108. if pol.is_valid:
  2109. self.sel_rect.append(pol)
  2110. self.draw_selection_shape_polygon(points=self.points)
  2111. self.app.inform.emit(
  2112. _("Zone added. Click to start adding next zone or right click to finish."))
  2113. self.points = []
  2114. self.poly_drawn = False
  2115. return
  2116. self.delete_tool_selection_shape()
  2117. if self.app.is_legacy is False:
  2118. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_mouse_release)
  2119. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.on_mouse_move)
  2120. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_press)
  2121. else:
  2122. self.app.plotcanvas.graph_event_disconnect(self.mr)
  2123. self.app.plotcanvas.graph_event_disconnect(self.mm)
  2124. self.app.plotcanvas.graph_event_disconnect(self.kp)
  2125. self.app.mp = self.app.plotcanvas.graph_event_connect('mouse_press',
  2126. self.app.on_mouse_click_over_plot)
  2127. self.app.mm = self.app.plotcanvas.graph_event_connect('mouse_move',
  2128. self.app.on_mouse_move_over_plot)
  2129. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  2130. self.app.on_mouse_click_release_over_plot)
  2131. # disconnect flags
  2132. self.area_sel_disconnect_flag = False
  2133. if len(self.sel_rect) == 0:
  2134. return
  2135. self.sel_rect = cascaded_union(self.sel_rect)
  2136. self.isolate(isolated_obj=self.grb_obj, limited_area=self.sel_rect, plot=True)
  2137. self.sel_rect = []
  2138. # called on mouse move
  2139. def on_mouse_move(self, event):
  2140. shape_type = self.area_shape_radio.get_value()
  2141. if self.app.is_legacy is False:
  2142. event_pos = event.pos
  2143. event_is_dragging = event.is_dragging
  2144. # right_button = 2
  2145. else:
  2146. event_pos = (event.xdata, event.ydata)
  2147. event_is_dragging = self.app.plotcanvas.is_dragging
  2148. # right_button = 3
  2149. curr_pos = self.app.plotcanvas.translate_coords(event_pos)
  2150. # detect mouse dragging motion
  2151. if event_is_dragging is True:
  2152. self.mouse_is_dragging = True
  2153. else:
  2154. self.mouse_is_dragging = False
  2155. # update the cursor position
  2156. if self.app.grid_status():
  2157. # Update cursor
  2158. curr_pos = self.app.geo_editor.snap(curr_pos[0], curr_pos[1])
  2159. self.app.app_cursor.set_data(np.asarray([(curr_pos[0], curr_pos[1])]),
  2160. symbol='++', edge_color=self.app.cursor_color_3D,
  2161. edge_width=self.app.defaults["global_cursor_width"],
  2162. size=self.app.defaults["global_cursor_size"])
  2163. if self.cursor_pos is None:
  2164. self.cursor_pos = (0, 0)
  2165. self.app.dx = curr_pos[0] - float(self.cursor_pos[0])
  2166. self.app.dy = curr_pos[1] - float(self.cursor_pos[1])
  2167. # # update the positions on status bar
  2168. self.app.ui.position_label.setText("&nbsp;<b>X</b>: %.4f&nbsp;&nbsp; "
  2169. "<b>Y</b>: %.4f&nbsp;" % (curr_pos[0], curr_pos[1]))
  2170. # self.app.ui.rel_position_label.setText("<b>Dx</b>: %.4f&nbsp;&nbsp; <b>Dy</b>: "
  2171. # "%.4f&nbsp;&nbsp;&nbsp;&nbsp;" % (self.app.dx, self.app.dy))
  2172. units = self.app.defaults["units"].lower()
  2173. self.app.plotcanvas.text_hud.text = \
  2174. 'Dx:\t{:<.4f} [{:s}]\nDy:\t{:<.4f} [{:s}]\n\nX: \t{:<.4f} [{:s}]\nY: \t{:<.4f} [{:s}]'.format(
  2175. self.app.dx, units, self.app.dy, units, curr_pos[0], units, curr_pos[1], units)
  2176. # draw the utility geometry
  2177. if shape_type == "square":
  2178. if self.first_click:
  2179. self.app.delete_selection_shape()
  2180. self.app.draw_moving_selection_shape(old_coords=(self.cursor_pos[0], self.cursor_pos[1]),
  2181. coords=(curr_pos[0], curr_pos[1]))
  2182. else:
  2183. self.delete_moving_selection_shape()
  2184. self.draw_moving_selection_shape_poly(points=self.points, data=(curr_pos[0], curr_pos[1]))
  2185. def on_key_press(self, event):
  2186. # modifiers = QtWidgets.QApplication.keyboardModifiers()
  2187. # matplotlib_key_flag = False
  2188. # events out of the self.app.collection view (it's about Project Tab) are of type int
  2189. if type(event) is int:
  2190. key = event
  2191. # events from the GUI are of type QKeyEvent
  2192. elif type(event) == QtGui.QKeyEvent:
  2193. key = event.key()
  2194. elif isinstance(event, mpl_key_event): # MatPlotLib key events are trickier to interpret than the rest
  2195. # matplotlib_key_flag = True
  2196. key = event.key
  2197. key = QtGui.QKeySequence(key)
  2198. # check for modifiers
  2199. key_string = key.toString().lower()
  2200. if '+' in key_string:
  2201. mod, __, key_text = key_string.rpartition('+')
  2202. if mod.lower() == 'ctrl':
  2203. # modifiers = QtCore.Qt.ControlModifier
  2204. pass
  2205. elif mod.lower() == 'alt':
  2206. # modifiers = QtCore.Qt.AltModifier
  2207. pass
  2208. elif mod.lower() == 'shift':
  2209. # modifiers = QtCore.Qt.ShiftModifier
  2210. pass
  2211. else:
  2212. # modifiers = QtCore.Qt.NoModifier
  2213. pass
  2214. key = QtGui.QKeySequence(key_text)
  2215. # events from Vispy are of type KeyEvent
  2216. else:
  2217. key = event.key
  2218. if key == QtCore.Qt.Key_Escape or key == 'Escape':
  2219. if self.area_sel_disconnect_flag is True:
  2220. if self.app.is_legacy is False:
  2221. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_mouse_release)
  2222. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.on_mouse_move)
  2223. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_press)
  2224. else:
  2225. self.app.plotcanvas.graph_event_disconnect(self.mr)
  2226. self.app.plotcanvas.graph_event_disconnect(self.mm)
  2227. self.app.plotcanvas.graph_event_disconnect(self.kp)
  2228. self.app.mp = self.app.plotcanvas.graph_event_connect('mouse_press',
  2229. self.app.on_mouse_click_over_plot)
  2230. self.app.mm = self.app.plotcanvas.graph_event_connect('mouse_move',
  2231. self.app.on_mouse_move_over_plot)
  2232. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  2233. self.app.on_mouse_click_release_over_plot)
  2234. if self.poly_sel_disconnect_flag is False:
  2235. # restore the Grid snapping if it was active before
  2236. if self.grid_status_memory is True:
  2237. self.app.ui.grid_snap_btn.trigger()
  2238. if self.app.is_legacy is False:
  2239. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_poly_mouse_click_release)
  2240. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_pres)
  2241. else:
  2242. self.app.plotcanvas.graph_event_disconnect(self.mr)
  2243. self.app.plotcanvas.graph_event_disconnect(self.kp)
  2244. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  2245. self.app.on_mouse_click_release_over_plot)
  2246. self.points = []
  2247. self.poly_drawn = False
  2248. self.delete_moving_selection_shape()
  2249. self.delete_tool_selection_shape()
  2250. @staticmethod
  2251. def poly2rings(poly):
  2252. return [poly.exterior] + [interior for interior in poly.interiors]
  2253. @staticmethod
  2254. def poly2ext(poly):
  2255. return [poly.exterior]
  2256. @staticmethod
  2257. def poly2ints(poly):
  2258. return [interior for interior in poly.interiors]
  2259. def generate_envelope(self, offset, invert, geometry=None, env_iso_type=2, follow=None, nr_passes=0,
  2260. prog_plot=False):
  2261. """
  2262. Isolation_geometry produces an envelope that is going on the left of the geometry
  2263. (the copper features). To leave the least amount of burrs on the features
  2264. the tool needs to travel on the right side of the features (this is called conventional milling)
  2265. the first pass is the one cutting all of the features, so it needs to be reversed
  2266. the other passes overlap preceding ones and cut the left over copper. It is better for them
  2267. to cut on the right side of the left over copper i.e on the left side of the features.
  2268. :param offset: Offset distance to be passed to the obj.isolation_geometry() method
  2269. :type offset: float
  2270. :param invert: If to invert the direction of geometry (CW to CCW or reverse)
  2271. :type invert: int
  2272. :param geometry: Shapely Geometry for which t ogenerate envelope
  2273. :type geometry:
  2274. :param env_iso_type: type of isolation, can be 0 = exteriors or 1 = interiors or 2 = both (complete)
  2275. :type env_iso_type: int
  2276. :param follow: If the kind of isolation is a "follow" one
  2277. :type follow: bool
  2278. :param nr_passes: Number of passes
  2279. :type nr_passes: int
  2280. :param prog_plot: Type of plotting: "normal" or "progressive"
  2281. :type prog_plot: str
  2282. :return: The buffered geometry
  2283. :rtype: MultiPolygon or Polygon
  2284. """
  2285. if follow:
  2286. geom = self.grb_obj.isolation_geometry(offset, geometry=geometry, follow=follow, prog_plot=prog_plot)
  2287. return geom
  2288. else:
  2289. try:
  2290. geom = self.grb_obj.isolation_geometry(offset, geometry=geometry, iso_type=env_iso_type,
  2291. passes=nr_passes, prog_plot=prog_plot)
  2292. except Exception as e:
  2293. log.debug('ToolIsolation.generate_envelope() --> %s' % str(e))
  2294. return 'fail'
  2295. if invert:
  2296. try:
  2297. pl = []
  2298. for p in geom:
  2299. if p is not None:
  2300. if isinstance(p, Polygon):
  2301. pl.append(Polygon(p.exterior.coords[::-1], p.interiors))
  2302. elif isinstance(p, LinearRing):
  2303. pl.append(Polygon(p.coords[::-1]))
  2304. geom = MultiPolygon(pl)
  2305. except TypeError:
  2306. if isinstance(geom, Polygon) and geom is not None:
  2307. geom = Polygon(geom.exterior.coords[::-1], geom.interiors)
  2308. elif isinstance(geom, LinearRing) and geom is not None:
  2309. geom = Polygon(geom.coords[::-1])
  2310. else:
  2311. log.debug("ToolIsolation.generate_envelope() Error --> Unexpected Geometry %s" %
  2312. type(geom))
  2313. except Exception as e:
  2314. log.debug("ToolIsolation.generate_envelope() Error --> %s" % str(e))
  2315. return 'fail'
  2316. return geom
  2317. @staticmethod
  2318. def generate_rest_geometry(geometry, tooldia, passes, overlap, invert, env_iso_type=2,
  2319. prog_plot="normal", prog_plot_handler=None):
  2320. """
  2321. Will try to isolate the geometry and return a tuple made of list of paths made through isolation
  2322. and a list of Shapely Polygons that could not be isolated
  2323. :param geometry: A list of Shapely Polygons to be isolated
  2324. :type geometry: list
  2325. :param tooldia: The tool diameter used to do the isolation
  2326. :type tooldia: float
  2327. :param passes: Number of passes that will made the isolation
  2328. :type passes: int
  2329. :param overlap: How much to overlap the previous pass; in percentage [0.00, 99.99]%
  2330. :type overlap: float
  2331. :param invert: If to invert the direction of the resulting isolated geometries
  2332. :type invert: bool
  2333. :param env_iso_type: can be either 0 = keep exteriors or 1 = keep interiors or 2 = keep all paths
  2334. :type env_iso_type: int
  2335. :param prog_plot: kind of plotting: "progressive" or "normal"
  2336. :type prog_plot: str
  2337. :param prog_plot_handler: method used to plot shapes if plot_prog is "proggressive"
  2338. :type prog_plot_handler:
  2339. :return: Tuple made from list of isolating paths and list of not isolated Polygons
  2340. :rtype: tuple
  2341. """
  2342. isolated_geo = []
  2343. not_isolated_geo = []
  2344. work_geo = []
  2345. for idx, geo in enumerate(geometry):
  2346. good_pass_iso = []
  2347. start_idx = idx + 1
  2348. for nr_pass in range(passes):
  2349. iso_offset = tooldia * ((2 * nr_pass + 1) / 2.0) - (nr_pass * overlap * tooldia)
  2350. buf_chek = iso_offset * 2
  2351. check_geo = geo.buffer(buf_chek)
  2352. intersect_flag = False
  2353. # find if current pass for current geo is valid (no intersection with other geos))
  2354. for geo_search_idx in range(idx):
  2355. if check_geo.intersects(geometry[geo_search_idx]):
  2356. intersect_flag = True
  2357. break
  2358. if intersect_flag is False:
  2359. for geo_search_idx in range(start_idx, len(geometry)):
  2360. if check_geo.intersects(geometry[geo_search_idx]):
  2361. intersect_flag = True
  2362. break
  2363. # if we had an intersection do nothing, else add the geo to the good pass isolation's
  2364. if intersect_flag is False:
  2365. temp_geo = geo.buffer(iso_offset)
  2366. # this test is done only for the first pass because this is where is relevant
  2367. # test if in the first pass, the geo that is isolated has interiors and if it has then test if the
  2368. # resulting isolated geometry (buffered) number of subgeo is the same as the exterior + interiors
  2369. # if not it means that the geo interiors most likely could not be isolated with this tool so we
  2370. # abandon the whole isolation for this geo and add this geo to the not_isolated_geo
  2371. if nr_pass == 0:
  2372. if geo.interiors:
  2373. len_interiors = len(geo.interiors)
  2374. if len_interiors > 1:
  2375. total_poly_len = 1 + len_interiors # one exterior + len_interiors of interiors
  2376. if isinstance(temp_geo, Polygon):
  2377. # calculate the number of subgeos in the buffered geo
  2378. temp_geo_len = len([1] + list(temp_geo.interiors)) # one exterior + interiors
  2379. if total_poly_len != temp_geo_len:
  2380. # some interiors could not be isolated
  2381. break
  2382. else:
  2383. try:
  2384. temp_geo_len = len(temp_geo)
  2385. if total_poly_len != temp_geo_len:
  2386. # some interiors could not be isolated
  2387. break
  2388. except TypeError:
  2389. # this means that the buffered geo (temp_geo) is not iterable
  2390. # (one geo element only) therefore failure:
  2391. # we have more interiors but the resulting geo is only one
  2392. break
  2393. good_pass_iso.append(temp_geo)
  2394. if prog_plot == 'progressive':
  2395. prog_plot_handler(temp_geo)
  2396. if good_pass_iso:
  2397. work_geo += good_pass_iso
  2398. else:
  2399. not_isolated_geo.append(geo)
  2400. if invert:
  2401. try:
  2402. pl = []
  2403. for p in work_geo:
  2404. if p is not None:
  2405. if isinstance(p, Polygon):
  2406. pl.append(Polygon(p.exterior.coords[::-1], p.interiors))
  2407. elif isinstance(p, LinearRing):
  2408. pl.append(Polygon(p.coords[::-1]))
  2409. work_geo = MultiPolygon(pl)
  2410. except TypeError:
  2411. if isinstance(work_geo, Polygon) and work_geo is not None:
  2412. work_geo = [Polygon(work_geo.exterior.coords[::-1], work_geo.interiors)]
  2413. elif isinstance(work_geo, LinearRing) and work_geo is not None:
  2414. work_geo = [Polygon(work_geo.coords[::-1])]
  2415. else:
  2416. log.debug("ToolIsolation.generate_rest_geometry() Error --> Unexpected Geometry %s" %
  2417. type(work_geo))
  2418. except Exception as e:
  2419. log.debug("ToolIsolation.generate_rest_geometry() Error --> %s" % str(e))
  2420. return 'fail', 'fail'
  2421. if env_iso_type == 0: # exterior
  2422. for geo in work_geo:
  2423. isolated_geo.append(geo.exterior)
  2424. elif env_iso_type == 1: # interiors
  2425. for geo in work_geo:
  2426. isolated_geo += [interior for interior in geo.interiors]
  2427. else: # exterior + interiors
  2428. for geo in work_geo:
  2429. isolated_geo += [geo.exterior] + [interior for interior in geo.interiors]
  2430. return isolated_geo, not_isolated_geo
  2431. def on_iso_tool_add_from_db_executed(self, tool):
  2432. """
  2433. Here add the tool from DB in the selected geometry object
  2434. :return:
  2435. """
  2436. tool_from_db = deepcopy(tool)
  2437. res = self.on_tool_from_db_inserted(tool=tool_from_db)
  2438. for idx in range(self.app.ui.plot_tab_area.count()):
  2439. if self.app.ui.plot_tab_area.tabText(idx) == _("Tools Database"):
  2440. wdg = self.app.ui.plot_tab_area.widget(idx)
  2441. wdg.deleteLater()
  2442. self.app.ui.plot_tab_area.removeTab(idx)
  2443. if res == 'fail':
  2444. return
  2445. self.app.inform.emit('[success] %s' % _("Tool from DB added in Tool Table."))
  2446. # select last tool added
  2447. toolid = res
  2448. for row in range(self.tools_table.rowCount()):
  2449. if int(self.tools_table.item(row, 3).text()) == toolid:
  2450. self.tools_table.selectRow(row)
  2451. self.on_row_selection_change()
  2452. def on_tool_from_db_inserted(self, tool):
  2453. """
  2454. Called from the Tools DB object through a App method when adding a tool from Tools Database
  2455. :param tool: a dict with the tool data
  2456. :return: None
  2457. """
  2458. self.ui_disconnect()
  2459. self.units = self.app.defaults['units'].upper()
  2460. tooldia = float(tool['tooldia'])
  2461. # construct a list of all 'tooluid' in the self.tools
  2462. tool_uid_list = []
  2463. for tooluid_key in self.iso_tools:
  2464. tool_uid_item = int(tooluid_key)
  2465. tool_uid_list.append(tool_uid_item)
  2466. # find maximum from the temp_uid, add 1 and this is the new 'tooluid'
  2467. if not tool_uid_list:
  2468. max_uid = 0
  2469. else:
  2470. max_uid = max(tool_uid_list)
  2471. tooluid = max_uid + 1
  2472. tooldia = float('%.*f' % (self.decimals, tooldia))
  2473. tool_dias = []
  2474. for k, v in self.iso_tools.items():
  2475. for tool_v in v.keys():
  2476. if tool_v == 'tooldia':
  2477. tool_dias.append(float('%.*f' % (self.decimals, (v[tool_v]))))
  2478. if float('%.*f' % (self.decimals, tooldia)) in tool_dias:
  2479. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Cancelled. Tool already in Tool Table."))
  2480. self.ui_connect()
  2481. return 'fail'
  2482. self.iso_tools.update({
  2483. tooluid: {
  2484. 'tooldia': float('%.*f' % (self.decimals, tooldia)),
  2485. 'offset': tool['offset'],
  2486. 'offset_value': tool['offset_value'],
  2487. 'type': tool['type'],
  2488. 'tool_type': tool['tool_type'],
  2489. 'data': deepcopy(tool['data']),
  2490. 'solid_geometry': []
  2491. }
  2492. })
  2493. self.iso_tools[tooluid]['data']['name'] = '_iso'
  2494. self.app.inform.emit('[success] %s' % _("New tool added to Tool Table."))
  2495. self.ui_connect()
  2496. self.build_ui()
  2497. # if self.tools_table.rowCount() != 0:
  2498. # self.param_frame.setDisabled(False)
  2499. def on_tool_add_from_db_clicked(self):
  2500. """
  2501. Called when the user wants to add a new tool from Tools Database. It will create the Tools Database object
  2502. and display the Tools Database tab in the form needed for the Tool adding
  2503. :return: None
  2504. """
  2505. # if the Tools Database is already opened focus on it
  2506. for idx in range(self.app.ui.plot_tab_area.count()):
  2507. if self.app.ui.plot_tab_area.tabText(idx) == _("Tools Database"):
  2508. self.app.ui.plot_tab_area.setCurrentWidget(self.app.tools_db_tab)
  2509. break
  2510. self.app.on_tools_database(source='iso')
  2511. self.app.tools_db_tab.ok_to_add = True
  2512. self.app.tools_db_tab.buttons_frame.hide()
  2513. self.app.tools_db_tab.add_tool_from_db.show()
  2514. self.app.tools_db_tab.cancel_tool_from_db.show()
  2515. def reset_fields(self):
  2516. self.object_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  2517. def reset_usage(self):
  2518. self.obj_name = ""
  2519. self.grb_obj = None
  2520. self.first_click = False
  2521. self.cursor_pos = None
  2522. self.mouse_is_dragging = False
  2523. prog_plot = True if self.app.defaults["tools_iso_plotting"] == 'progressive' else False
  2524. if prog_plot:
  2525. self.temp_shapes.clear(update=True)
  2526. self.sel_rect = []