ToolPunchGerber.py 44 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # File Author: Marius Adrian Stanciu (c) #
  4. # Date: 1/24/2020 #
  5. # MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtCore, QtWidgets
  8. from appTool import AppTool
  9. from appGUI.GUIElements import RadioSet, FCDoubleSpinner, FCCheckBox, FCComboBox
  10. from copy import deepcopy
  11. import logging
  12. from shapely.geometry import MultiPolygon, Point
  13. import gettext
  14. import appTranslation as fcTranslate
  15. import builtins
  16. fcTranslate.apply_language('strings')
  17. if '_' not in builtins.__dict__:
  18. _ = gettext.gettext
  19. log = logging.getLogger('base')
  20. class ToolPunchGerber(AppTool):
  21. toolName = _("Punch Gerber")
  22. def __init__(self, app):
  23. AppTool.__init__(self, app)
  24. self.decimals = self.app.decimals
  25. # Title
  26. title_label = QtWidgets.QLabel("%s" % self.toolName)
  27. title_label.setStyleSheet("""
  28. QLabel
  29. {
  30. font-size: 16px;
  31. font-weight: bold;
  32. }
  33. """)
  34. self.layout.addWidget(title_label)
  35. # Punch Drill holes
  36. self.layout.addWidget(QtWidgets.QLabel(""))
  37. # ## Grid Layout
  38. grid_lay = QtWidgets.QGridLayout()
  39. self.layout.addLayout(grid_lay)
  40. grid_lay.setColumnStretch(0, 1)
  41. grid_lay.setColumnStretch(1, 0)
  42. # ## Gerber Object
  43. self.gerber_object_combo = FCComboBox()
  44. self.gerber_object_combo.setModel(self.app.collection)
  45. self.gerber_object_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  46. self.gerber_object_combo.is_last = True
  47. self.gerber_object_combo.obj_type = "Gerber"
  48. self.grb_label = QtWidgets.QLabel("<b>%s:</b>" % _("GERBER"))
  49. self.grb_label.setToolTip('%s.' % _("Gerber into which to punch holes"))
  50. grid_lay.addWidget(self.grb_label, 0, 0, 1, 2)
  51. grid_lay.addWidget(self.gerber_object_combo, 1, 0, 1, 2)
  52. separator_line = QtWidgets.QFrame()
  53. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  54. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  55. grid_lay.addWidget(separator_line, 2, 0, 1, 2)
  56. self.padt_label = QtWidgets.QLabel("<b>%s</b>" % _("Processed Pads Type"))
  57. self.padt_label.setToolTip(
  58. _("The type of pads shape to be processed.\n"
  59. "If the PCB has many SMD pads with rectangular pads,\n"
  60. "disable the Rectangular aperture.")
  61. )
  62. grid_lay.addWidget(self.padt_label, 3, 0, 1, 2)
  63. # Select all
  64. self.select_all_cb = FCCheckBox('%s' % _("ALL"))
  65. grid_lay.addWidget(self.select_all_cb)
  66. # Circular Aperture Selection
  67. self.circular_cb = FCCheckBox('%s' % _("Circular"))
  68. self.circular_cb.setToolTip(
  69. _("Process Circular Pads.")
  70. )
  71. grid_lay.addWidget(self.circular_cb, 5, 0, 1, 2)
  72. # Oblong Aperture Selection
  73. self.oblong_cb = FCCheckBox('%s' % _("Oblong"))
  74. self.oblong_cb.setToolTip(
  75. _("Process Oblong Pads.")
  76. )
  77. grid_lay.addWidget(self.oblong_cb, 6, 0, 1, 2)
  78. # Square Aperture Selection
  79. self.square_cb = FCCheckBox('%s' % _("Square"))
  80. self.square_cb.setToolTip(
  81. _("Process Square Pads.")
  82. )
  83. grid_lay.addWidget(self.square_cb, 7, 0, 1, 2)
  84. # Rectangular Aperture Selection
  85. self.rectangular_cb = FCCheckBox('%s' % _("Rectangular"))
  86. self.rectangular_cb.setToolTip(
  87. _("Process Rectangular Pads.")
  88. )
  89. grid_lay.addWidget(self.rectangular_cb, 8, 0, 1, 2)
  90. # Others type of Apertures Selection
  91. self.other_cb = FCCheckBox('%s' % _("Others"))
  92. self.other_cb.setToolTip(
  93. _("Process pads not in the categories above.")
  94. )
  95. grid_lay.addWidget(self.other_cb, 9, 0, 1, 2)
  96. separator_line = QtWidgets.QFrame()
  97. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  98. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  99. grid_lay.addWidget(separator_line, 10, 0, 1, 2)
  100. # Grid Layout
  101. grid0 = QtWidgets.QGridLayout()
  102. self.layout.addLayout(grid0)
  103. grid0.setColumnStretch(0, 0)
  104. grid0.setColumnStretch(1, 1)
  105. self.method_label = QtWidgets.QLabel('<b>%s:</b>' % _("Method"))
  106. self.method_label.setToolTip(
  107. _("The punch hole source can be:\n"
  108. "- Excellon Object-> the Excellon object drills center will serve as reference.\n"
  109. "- Fixed Diameter -> will try to use the pads center as reference adding fixed diameter holes.\n"
  110. "- Fixed Annular Ring -> will try to keep a set annular ring.\n"
  111. "- Proportional -> will make a Gerber punch hole having the diameter a percentage of the pad diameter.")
  112. )
  113. self.method_punch = RadioSet(
  114. [
  115. {'label': _('Excellon'), 'value': 'exc'},
  116. {'label': _("Fixed Diameter"), 'value': 'fixed'},
  117. {'label': _("Fixed Annular Ring"), 'value': 'ring'},
  118. {'label': _("Proportional"), 'value': 'prop'}
  119. ],
  120. orientation='vertical',
  121. stretch=False)
  122. grid0.addWidget(self.method_label, 0, 0, 1, 2)
  123. grid0.addWidget(self.method_punch, 1, 0, 1, 2)
  124. separator_line = QtWidgets.QFrame()
  125. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  126. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  127. grid0.addWidget(separator_line, 2, 0, 1, 2)
  128. self.exc_label = QtWidgets.QLabel('<b>%s</b>' % _("Excellon"))
  129. self.exc_label.setToolTip(
  130. _("Remove the geometry of Excellon from the Gerber to create the holes in pads.")
  131. )
  132. self.exc_combo = FCComboBox()
  133. self.exc_combo.setModel(self.app.collection)
  134. self.exc_combo.setRootModelIndex(self.app.collection.index(1, 0, QtCore.QModelIndex()))
  135. self.exc_combo.is_last = True
  136. self.exc_combo.obj_type = "Excellon"
  137. grid0.addWidget(self.exc_label, 3, 0, 1, 2)
  138. grid0.addWidget(self.exc_combo, 4, 0, 1, 2)
  139. separator_line = QtWidgets.QFrame()
  140. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  141. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  142. grid0.addWidget(separator_line, 5, 0, 1, 2)
  143. # Fixed Dia
  144. self.fixed_label = QtWidgets.QLabel('<b>%s</b>' % _("Fixed Diameter"))
  145. grid0.addWidget(self.fixed_label, 6, 0, 1, 2)
  146. # Diameter value
  147. self.dia_entry = FCDoubleSpinner(callback=self.confirmation_message)
  148. self.dia_entry.set_precision(self.decimals)
  149. self.dia_entry.set_range(0.0000, 9999.9999)
  150. self.dia_label = QtWidgets.QLabel('%s:' % _("Value"))
  151. self.dia_label.setToolTip(
  152. _("Fixed hole diameter.")
  153. )
  154. grid0.addWidget(self.dia_label, 8, 0)
  155. grid0.addWidget(self.dia_entry, 8, 1)
  156. separator_line = QtWidgets.QFrame()
  157. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  158. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  159. grid0.addWidget(separator_line, 9, 0, 1, 2)
  160. self.ring_frame = QtWidgets.QFrame()
  161. self.ring_frame.setContentsMargins(0, 0, 0, 0)
  162. grid0.addWidget(self.ring_frame, 10, 0, 1, 2)
  163. self.ring_box = QtWidgets.QVBoxLayout()
  164. self.ring_box.setContentsMargins(0, 0, 0, 0)
  165. self.ring_frame.setLayout(self.ring_box)
  166. # Annular Ring value
  167. self.ring_label = QtWidgets.QLabel('<b>%s</b>' % _("Fixed Annular Ring"))
  168. self.ring_label.setToolTip(
  169. _("The size of annular ring.\n"
  170. "The copper sliver between the hole exterior\n"
  171. "and the margin of the copper pad.")
  172. )
  173. self.ring_box.addWidget(self.ring_label)
  174. # ## Grid Layout
  175. self.grid1 = QtWidgets.QGridLayout()
  176. self.grid1.setColumnStretch(0, 0)
  177. self.grid1.setColumnStretch(1, 1)
  178. self.ring_box.addLayout(self.grid1)
  179. # Circular Annular Ring Value
  180. self.circular_ring_label = QtWidgets.QLabel('%s:' % _("Circular"))
  181. self.circular_ring_label.setToolTip(
  182. _("The size of annular ring for circular pads.")
  183. )
  184. self.circular_ring_entry = FCDoubleSpinner(callback=self.confirmation_message)
  185. self.circular_ring_entry.set_precision(self.decimals)
  186. self.circular_ring_entry.set_range(0.0000, 9999.9999)
  187. self.grid1.addWidget(self.circular_ring_label, 3, 0)
  188. self.grid1.addWidget(self.circular_ring_entry, 3, 1)
  189. # Oblong Annular Ring Value
  190. self.oblong_ring_label = QtWidgets.QLabel('%s:' % _("Oblong"))
  191. self.oblong_ring_label.setToolTip(
  192. _("The size of annular ring for oblong pads.")
  193. )
  194. self.oblong_ring_entry = FCDoubleSpinner(callback=self.confirmation_message)
  195. self.oblong_ring_entry.set_precision(self.decimals)
  196. self.oblong_ring_entry.set_range(0.0000, 9999.9999)
  197. self.grid1.addWidget(self.oblong_ring_label, 4, 0)
  198. self.grid1.addWidget(self.oblong_ring_entry, 4, 1)
  199. # Square Annular Ring Value
  200. self.square_ring_label = QtWidgets.QLabel('%s:' % _("Square"))
  201. self.square_ring_label.setToolTip(
  202. _("The size of annular ring for square pads.")
  203. )
  204. self.square_ring_entry = FCDoubleSpinner(callback=self.confirmation_message)
  205. self.square_ring_entry.set_precision(self.decimals)
  206. self.square_ring_entry.set_range(0.0000, 9999.9999)
  207. self.grid1.addWidget(self.square_ring_label, 5, 0)
  208. self.grid1.addWidget(self.square_ring_entry, 5, 1)
  209. # Rectangular Annular Ring Value
  210. self.rectangular_ring_label = QtWidgets.QLabel('%s:' % _("Rectangular"))
  211. self.rectangular_ring_label.setToolTip(
  212. _("The size of annular ring for rectangular pads.")
  213. )
  214. self.rectangular_ring_entry = FCDoubleSpinner(callback=self.confirmation_message)
  215. self.rectangular_ring_entry.set_precision(self.decimals)
  216. self.rectangular_ring_entry.set_range(0.0000, 9999.9999)
  217. self.grid1.addWidget(self.rectangular_ring_label, 6, 0)
  218. self.grid1.addWidget(self.rectangular_ring_entry, 6, 1)
  219. # Others Annular Ring Value
  220. self.other_ring_label = QtWidgets.QLabel('%s:' % _("Others"))
  221. self.other_ring_label.setToolTip(
  222. _("The size of annular ring for other pads.")
  223. )
  224. self.other_ring_entry = FCDoubleSpinner(callback=self.confirmation_message)
  225. self.other_ring_entry.set_precision(self.decimals)
  226. self.other_ring_entry.set_range(0.0000, 9999.9999)
  227. self.grid1.addWidget(self.other_ring_label, 7, 0)
  228. self.grid1.addWidget(self.other_ring_entry, 7, 1)
  229. separator_line = QtWidgets.QFrame()
  230. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  231. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  232. grid0.addWidget(separator_line, 11, 0, 1, 2)
  233. # Proportional value
  234. self.prop_label = QtWidgets.QLabel('<b>%s</b>' % _("Proportional Diameter"))
  235. grid0.addWidget(self.prop_label, 12, 0, 1, 2)
  236. # Diameter value
  237. self.factor_entry = FCDoubleSpinner(callback=self.confirmation_message, suffix='%')
  238. self.factor_entry.set_precision(self.decimals)
  239. self.factor_entry.set_range(0.0000, 100.0000)
  240. self.factor_entry.setSingleStep(0.1)
  241. self.factor_label = QtWidgets.QLabel('%s:' % _("Value"))
  242. self.factor_label.setToolTip(
  243. _("Proportional Diameter.\n"
  244. "The hole diameter will be a fraction of the pad size.")
  245. )
  246. grid0.addWidget(self.factor_label, 13, 0)
  247. grid0.addWidget(self.factor_entry, 13, 1)
  248. separator_line3 = QtWidgets.QFrame()
  249. separator_line3.setFrameShape(QtWidgets.QFrame.HLine)
  250. separator_line3.setFrameShadow(QtWidgets.QFrame.Sunken)
  251. grid0.addWidget(separator_line3, 14, 0, 1, 2)
  252. # Buttons
  253. self.punch_object_button = QtWidgets.QPushButton(_("Punch Gerber"))
  254. self.punch_object_button.setToolTip(
  255. _("Create a Gerber object from the selected object, within\n"
  256. "the specified box.")
  257. )
  258. self.punch_object_button.setStyleSheet("""
  259. QPushButton
  260. {
  261. font-weight: bold;
  262. }
  263. """)
  264. self.layout.addWidget(self.punch_object_button)
  265. self.layout.addStretch()
  266. # ## Reset Tool
  267. self.reset_button = QtWidgets.QPushButton(_("Reset Tool"))
  268. self.reset_button.setToolTip(
  269. _("Will reset the tool parameters.")
  270. )
  271. self.reset_button.setStyleSheet("""
  272. QPushButton
  273. {
  274. font-weight: bold;
  275. }
  276. """)
  277. self.layout.addWidget(self.reset_button)
  278. self.units = self.app.defaults['units']
  279. # self.cb_items = [
  280. # self.grid1.itemAt(w).widget() for w in range(self.grid1.count())
  281. # if isinstance(self.grid1.itemAt(w).widget(), FCCheckBox)
  282. # ]
  283. self.circular_ring_entry.setEnabled(False)
  284. self.oblong_ring_entry.setEnabled(False)
  285. self.square_ring_entry.setEnabled(False)
  286. self.rectangular_ring_entry.setEnabled(False)
  287. self.other_ring_entry.setEnabled(False)
  288. self.dia_entry.setDisabled(True)
  289. self.dia_label.setDisabled(True)
  290. self.factor_label.setDisabled(True)
  291. self.factor_entry.setDisabled(True)
  292. # ## Signals
  293. self.method_punch.activated_custom.connect(self.on_method)
  294. self.reset_button.clicked.connect(self.set_tool_ui)
  295. self.punch_object_button.clicked.connect(self.on_generate_object)
  296. self.circular_cb.stateChanged.connect(
  297. lambda state:
  298. self.circular_ring_entry.setDisabled(False) if state else self.circular_ring_entry.setDisabled(True)
  299. )
  300. self.oblong_cb.stateChanged.connect(
  301. lambda state:
  302. self.oblong_ring_entry.setDisabled(False) if state else self.oblong_ring_entry.setDisabled(True)
  303. )
  304. self.square_cb.stateChanged.connect(
  305. lambda state:
  306. self.square_ring_entry.setDisabled(False) if state else self.square_ring_entry.setDisabled(True)
  307. )
  308. self.rectangular_cb.stateChanged.connect(
  309. lambda state:
  310. self.rectangular_ring_entry.setDisabled(False) if state else self.rectangular_ring_entry.setDisabled(True)
  311. )
  312. self.other_cb.stateChanged.connect(
  313. lambda state:
  314. self.other_ring_entry.setDisabled(False) if state else self.other_ring_entry.setDisabled(True)
  315. )
  316. def run(self, toggle=True):
  317. self.app.defaults.report_usage("ToolPunchGerber()")
  318. if toggle:
  319. # if the splitter is hidden, display it, else hide it but only if the current widget is the same
  320. if self.app.ui.splitter.sizes()[0] == 0:
  321. self.app.ui.splitter.setSizes([1, 1])
  322. else:
  323. try:
  324. if self.app.ui.tool_scroll_area.widget().objectName() == self.toolName:
  325. # if tab is populated with the tool but it does not have the focus, focus on it
  326. if not self.app.ui.notebook.currentWidget() is self.app.ui.tool_tab:
  327. # focus on Tool Tab
  328. self.app.ui.notebook.setCurrentWidget(self.app.ui.tool_tab)
  329. else:
  330. self.app.ui.splitter.setSizes([0, 1])
  331. except AttributeError:
  332. pass
  333. else:
  334. if self.app.ui.splitter.sizes()[0] == 0:
  335. self.app.ui.splitter.setSizes([1, 1])
  336. AppTool.run(self)
  337. self.set_tool_ui()
  338. self.app.ui.notebook.setTabText(2, _("Punch Tool"))
  339. def install(self, icon=None, separator=None, **kwargs):
  340. AppTool.install(self, icon, separator, shortcut='Alt+H', **kwargs)
  341. def set_tool_ui(self):
  342. self.reset_fields()
  343. self.ui_connect()
  344. self.method_punch.set_value(self.app.defaults["tools_punch_hole_type"])
  345. self.select_all_cb.set_value(False)
  346. self.dia_entry.set_value(float(self.app.defaults["tools_punch_hole_fixed_dia"]))
  347. self.circular_ring_entry.set_value(float(self.app.defaults["tools_punch_circular_ring"]))
  348. self.oblong_ring_entry.set_value(float(self.app.defaults["tools_punch_oblong_ring"]))
  349. self.square_ring_entry.set_value(float(self.app.defaults["tools_punch_square_ring"]))
  350. self.rectangular_ring_entry.set_value(float(self.app.defaults["tools_punch_rectangular_ring"]))
  351. self.other_ring_entry.set_value(float(self.app.defaults["tools_punch_others_ring"]))
  352. self.circular_cb.set_value(self.app.defaults["tools_punch_circular"])
  353. self.oblong_cb.set_value(self.app.defaults["tools_punch_oblong"])
  354. self.square_cb.set_value(self.app.defaults["tools_punch_square"])
  355. self.rectangular_cb.set_value(self.app.defaults["tools_punch_rectangular"])
  356. self.other_cb.set_value(self.app.defaults["tools_punch_others"])
  357. self.factor_entry.set_value(float(self.app.defaults["tools_punch_hole_prop_factor"]))
  358. def on_select_all(self, state):
  359. self.ui_disconnect()
  360. if state:
  361. self.circular_cb.setChecked(True)
  362. self.oblong_cb.setChecked(True)
  363. self.square_cb.setChecked(True)
  364. self.rectangular_cb.setChecked(True)
  365. self.other_cb.setChecked(True)
  366. else:
  367. self.circular_cb.setChecked(False)
  368. self.oblong_cb.setChecked(False)
  369. self.square_cb.setChecked(False)
  370. self.rectangular_cb.setChecked(False)
  371. self.other_cb.setChecked(False)
  372. self.ui_connect()
  373. def on_method(self, val):
  374. self.exc_label.setEnabled(False)
  375. self.exc_combo.setEnabled(False)
  376. self.fixed_label.setEnabled(False)
  377. self.dia_label.setEnabled(False)
  378. self.dia_entry.setEnabled(False)
  379. self.ring_frame.setEnabled(False)
  380. self.prop_label.setEnabled(False)
  381. self.factor_label.setEnabled(False)
  382. self.factor_entry.setEnabled(False)
  383. if val == 'exc':
  384. self.exc_label.setEnabled(True)
  385. self.exc_combo.setEnabled(True)
  386. elif val == 'fixed':
  387. self.fixed_label.setEnabled(True)
  388. self.dia_label.setEnabled(True)
  389. self.dia_entry.setEnabled(True)
  390. elif val == 'ring':
  391. self.ring_frame.setEnabled(True)
  392. elif val == 'prop':
  393. self.prop_label.setEnabled(True)
  394. self.factor_label.setEnabled(True)
  395. self.factor_entry.setEnabled(True)
  396. def ui_connect(self):
  397. self.select_all_cb.stateChanged.connect(self.on_select_all)
  398. def ui_disconnect(self):
  399. try:
  400. self.select_all_cb.stateChanged.disconnect()
  401. except (AttributeError, TypeError):
  402. pass
  403. def on_generate_object(self):
  404. # get the Gerber file who is the source of the punched Gerber
  405. selection_index = self.gerber_object_combo.currentIndex()
  406. model_index = self.app.collection.index(selection_index, 0, self.gerber_object_combo.rootModelIndex())
  407. try:
  408. grb_obj = model_index.internalPointer().obj
  409. except Exception:
  410. self.app.inform.emit('[WARNING_NOTCL] %s' % _("There is no Gerber object loaded ..."))
  411. return
  412. name = grb_obj.options['name'].rpartition('.')[0]
  413. outname = name + "_punched"
  414. punch_method = self.method_punch.get_value()
  415. new_options = {}
  416. for opt in grb_obj.options:
  417. new_options[opt] = deepcopy(grb_obj.options[opt])
  418. if punch_method == 'exc':
  419. # get the Excellon file whose geometry will create the punch holes
  420. selection_index = self.exc_combo.currentIndex()
  421. model_index = self.app.collection.index(selection_index, 0, self.exc_combo.rootModelIndex())
  422. try:
  423. exc_obj = model_index.internalPointer().obj
  424. except Exception:
  425. self.app.inform.emit('[WARNING_NOTCL] %s' % _("There is no Excellon object loaded ..."))
  426. return
  427. # this is the punching geometry
  428. exc_solid_geometry = MultiPolygon(exc_obj.solid_geometry)
  429. if isinstance(grb_obj.solid_geometry, list):
  430. grb_solid_geometry = MultiPolygon(grb_obj.solid_geometry)
  431. else:
  432. grb_solid_geometry = grb_obj.solid_geometry
  433. # create the punched Gerber solid_geometry
  434. punched_solid_geometry = grb_solid_geometry.difference(exc_solid_geometry)
  435. # update the gerber apertures to include the clear geometry so it can be exported successfully
  436. new_apertures = deepcopy(grb_obj.apertures)
  437. new_apertures_items = new_apertures.items()
  438. # find maximum aperture id
  439. new_apid = max([int(x) for x, __ in new_apertures_items])
  440. # store here the clear geometry, the key is the drill size
  441. holes_apertures = {}
  442. for apid, val in new_apertures_items:
  443. for elem in val['geometry']:
  444. # make it work only for Gerber Flashes who are Points in 'follow'
  445. if 'solid' in elem and isinstance(elem['follow'], Point):
  446. for drill in exc_obj.drills:
  447. clear_apid_size = exc_obj.tools[drill['tool']]['tooldia']
  448. # since there may be drills that do not drill into a pad we test only for drills in a pad
  449. if drill['point'].within(elem['solid']):
  450. geo_elem = {}
  451. geo_elem['clear'] = drill['point']
  452. if clear_apid_size not in holes_apertures:
  453. holes_apertures[clear_apid_size] = {}
  454. holes_apertures[clear_apid_size]['type'] = 'C'
  455. holes_apertures[clear_apid_size]['size'] = clear_apid_size
  456. holes_apertures[clear_apid_size]['geometry'] = []
  457. holes_apertures[clear_apid_size]['geometry'].append(deepcopy(geo_elem))
  458. # add the clear geometry to new apertures; it's easier than to test if there are apertures with the same
  459. # size and add there the clear geometry
  460. for hole_size, ap_val in holes_apertures.items():
  461. new_apid += 1
  462. new_apertures[str(new_apid)] = deepcopy(ap_val)
  463. def init_func(new_obj, app_obj):
  464. new_obj.options.update(new_options)
  465. new_obj.options['name'] = outname
  466. new_obj.fill_color = deepcopy(grb_obj.fill_color)
  467. new_obj.outline_color = deepcopy(grb_obj.outline_color)
  468. new_obj.apertures = deepcopy(new_apertures)
  469. new_obj.solid_geometry = deepcopy(punched_solid_geometry)
  470. new_obj.source_file = self.app.export_gerber(obj_name=outname, filename=None,
  471. local_use=new_obj, use_thread=False)
  472. self.app.app_obj.new_object('gerber', outname, init_func)
  473. elif punch_method == 'fixed':
  474. punch_size = float(self.dia_entry.get_value())
  475. if punch_size == 0.0:
  476. self.app.inform.emit('[WARNING_NOTCL] %s' % _("The value of the fixed diameter is 0.0. Aborting."))
  477. return 'fail'
  478. fail_msg = _("Could not generate punched hole Gerber because the punch hole size is bigger than"
  479. " some of the apertures in the Gerber object.")
  480. punching_geo = []
  481. for apid in grb_obj.apertures:
  482. if grb_obj.apertures[apid]['type'] == 'C' and self.circular_cb.get_value():
  483. for elem in grb_obj.apertures[apid]['geometry']:
  484. if 'follow' in elem:
  485. if isinstance(elem['follow'], Point):
  486. if punch_size >= float(grb_obj.apertures[apid]['size']):
  487. self.app.inform.emit('[ERROR_NOTCL] %s' % fail_msg)
  488. return 'fail'
  489. punching_geo.append(elem['follow'].buffer(punch_size / 2))
  490. elif grb_obj.apertures[apid]['type'] == 'R':
  491. if round(float(grb_obj.apertures[apid]['width']), self.decimals) == \
  492. round(float(grb_obj.apertures[apid]['height']), self.decimals) and \
  493. self.square_cb.get_value():
  494. for elem in grb_obj.apertures[apid]['geometry']:
  495. if 'follow' in elem:
  496. if isinstance(elem['follow'], Point):
  497. if punch_size >= float(grb_obj.apertures[apid]['width']) or \
  498. punch_size >= float(grb_obj.apertures[apid]['height']):
  499. self.app.inform.emit('[ERROR_NOTCL] %s' % fail_msg)
  500. return 'fail'
  501. punching_geo.append(elem['follow'].buffer(punch_size / 2))
  502. elif round(float(grb_obj.apertures[apid]['width']), self.decimals) != \
  503. round(float(grb_obj.apertures[apid]['height']), self.decimals) and \
  504. self.rectangular_cb.get_value():
  505. for elem in grb_obj.apertures[apid]['geometry']:
  506. if 'follow' in elem:
  507. if isinstance(elem['follow'], Point):
  508. if punch_size >= float(grb_obj.apertures[apid]['width']) or \
  509. punch_size >= float(grb_obj.apertures[apid]['height']):
  510. self.app.inform.emit('[ERROR_NOTCL] %s' % fail_msg)
  511. return 'fail'
  512. punching_geo.append(elem['follow'].buffer(punch_size / 2))
  513. elif grb_obj.apertures[apid]['type'] == 'O' and self.oblong_cb.get_value():
  514. for elem in grb_obj.apertures[apid]['geometry']:
  515. if 'follow' in elem:
  516. if isinstance(elem['follow'], Point):
  517. if punch_size >= float(grb_obj.apertures[apid]['size']):
  518. self.app.inform.emit('[ERROR_NOTCL] %s' % fail_msg)
  519. return 'fail'
  520. punching_geo.append(elem['follow'].buffer(punch_size / 2))
  521. elif grb_obj.apertures[apid]['type'] not in ['C', 'R', 'O'] and self.other_cb.get_value():
  522. for elem in grb_obj.apertures[apid]['geometry']:
  523. if 'follow' in elem:
  524. if isinstance(elem['follow'], Point):
  525. if punch_size >= float(grb_obj.apertures[apid]['size']):
  526. self.app.inform.emit('[ERROR_NOTCL] %s' % fail_msg)
  527. return 'fail'
  528. punching_geo.append(elem['follow'].buffer(punch_size / 2))
  529. punching_geo = MultiPolygon(punching_geo)
  530. if isinstance(grb_obj.solid_geometry, list):
  531. temp_solid_geometry = MultiPolygon(grb_obj.solid_geometry)
  532. else:
  533. temp_solid_geometry = grb_obj.solid_geometry
  534. punched_solid_geometry = temp_solid_geometry.difference(punching_geo)
  535. if punched_solid_geometry == temp_solid_geometry:
  536. self.app.inform.emit('[WARNING_NOTCL] %s' %
  537. _("Could not generate punched hole Gerber because the newly created object "
  538. "geometry is the same as the one in the source object geometry..."))
  539. return 'fail'
  540. # update the gerber apertures to include the clear geometry so it can be exported successfully
  541. new_apertures = deepcopy(grb_obj.apertures)
  542. new_apertures_items = new_apertures.items()
  543. # find maximum aperture id
  544. new_apid = max([int(x) for x, __ in new_apertures_items])
  545. # store here the clear geometry, the key is the drill size
  546. holes_apertures = {}
  547. for apid, val in new_apertures_items:
  548. for elem in val['geometry']:
  549. # make it work only for Gerber Flashes who are Points in 'follow'
  550. if 'solid' in elem and isinstance(elem['follow'], Point):
  551. for geo in punching_geo:
  552. clear_apid_size = punch_size
  553. # since there may be drills that do not drill into a pad we test only for drills in a pad
  554. if geo.within(elem['solid']):
  555. geo_elem = {}
  556. geo_elem['clear'] = geo.centroid
  557. if clear_apid_size not in holes_apertures:
  558. holes_apertures[clear_apid_size] = {}
  559. holes_apertures[clear_apid_size]['type'] = 'C'
  560. holes_apertures[clear_apid_size]['size'] = clear_apid_size
  561. holes_apertures[clear_apid_size]['geometry'] = []
  562. holes_apertures[clear_apid_size]['geometry'].append(deepcopy(geo_elem))
  563. # add the clear geometry to new apertures; it's easier than to test if there are apertures with the same
  564. # size and add there the clear geometry
  565. for hole_size, ap_val in holes_apertures.items():
  566. new_apid += 1
  567. new_apertures[str(new_apid)] = deepcopy(ap_val)
  568. def init_func(new_obj, app_obj):
  569. new_obj.options.update(new_options)
  570. new_obj.options['name'] = outname
  571. new_obj.fill_color = deepcopy(grb_obj.fill_color)
  572. new_obj.outline_color = deepcopy(grb_obj.outline_color)
  573. new_obj.apertures = deepcopy(new_apertures)
  574. new_obj.solid_geometry = deepcopy(punched_solid_geometry)
  575. new_obj.source_file = self.app.export_gerber(obj_name=outname, filename=None,
  576. local_use=new_obj, use_thread=False)
  577. self.app.app_obj.new_object('gerber', outname, init_func)
  578. elif punch_method == 'ring':
  579. circ_r_val = self.circular_ring_entry.get_value()
  580. oblong_r_val = self.oblong_ring_entry.get_value()
  581. square_r_val = self.square_ring_entry.get_value()
  582. rect_r_val = self.rectangular_ring_entry.get_value()
  583. other_r_val = self.other_ring_entry.get_value()
  584. dia = None
  585. if isinstance(grb_obj.solid_geometry, list):
  586. temp_solid_geometry = MultiPolygon(grb_obj.solid_geometry)
  587. else:
  588. temp_solid_geometry = grb_obj.solid_geometry
  589. punched_solid_geometry = temp_solid_geometry
  590. new_apertures = deepcopy(grb_obj.apertures)
  591. new_apertures_items = new_apertures.items()
  592. # find maximum aperture id
  593. new_apid = max([int(x) for x, __ in new_apertures_items])
  594. # store here the clear geometry, the key is the new aperture size
  595. holes_apertures = {}
  596. for apid, apid_value in grb_obj.apertures.items():
  597. ap_type = apid_value['type']
  598. punching_geo = []
  599. if ap_type == 'C' and self.circular_cb.get_value():
  600. dia = float(apid_value['size']) - (2 * circ_r_val)
  601. for elem in apid_value['geometry']:
  602. if 'follow' in elem and isinstance(elem['follow'], Point):
  603. punching_geo.append(elem['follow'].buffer(dia / 2))
  604. elif ap_type == 'O' and self.oblong_cb.get_value():
  605. width = float(apid_value['width'])
  606. height = float(apid_value['height'])
  607. if width > height:
  608. dia = float(apid_value['height']) - (2 * oblong_r_val)
  609. else:
  610. dia = float(apid_value['width']) - (2 * oblong_r_val)
  611. for elem in grb_obj.apertures[apid]['geometry']:
  612. if 'follow' in elem:
  613. if isinstance(elem['follow'], Point):
  614. punching_geo.append(elem['follow'].buffer(dia / 2))
  615. elif ap_type == 'R':
  616. width = float(apid_value['width'])
  617. height = float(apid_value['height'])
  618. # if the height == width (float numbers so the reason for the following)
  619. if round(width, self.decimals) == round(height, self.decimals):
  620. if self.square_cb.get_value():
  621. dia = float(apid_value['height']) - (2 * square_r_val)
  622. for elem in grb_obj.apertures[apid]['geometry']:
  623. if 'follow' in elem:
  624. if isinstance(elem['follow'], Point):
  625. punching_geo.append(elem['follow'].buffer(dia / 2))
  626. elif self.rectangular_cb.get_value():
  627. if width > height:
  628. dia = float(apid_value['height']) - (2 * rect_r_val)
  629. else:
  630. dia = float(apid_value['width']) - (2 * rect_r_val)
  631. for elem in grb_obj.apertures[apid]['geometry']:
  632. if 'follow' in elem:
  633. if isinstance(elem['follow'], Point):
  634. punching_geo.append(elem['follow'].buffer(dia / 2))
  635. elif self.other_cb.get_value():
  636. try:
  637. dia = float(apid_value['size']) - (2 * other_r_val)
  638. except KeyError:
  639. if ap_type == 'AM':
  640. pol = apid_value['geometry'][0]['solid']
  641. x0, y0, x1, y1 = pol.bounds
  642. dx = x1 - x0
  643. dy = y1 - y0
  644. if dx <= dy:
  645. dia = dx - (2 * other_r_val)
  646. else:
  647. dia = dy - (2 * other_r_val)
  648. for elem in grb_obj.apertures[apid]['geometry']:
  649. if 'follow' in elem:
  650. if isinstance(elem['follow'], Point):
  651. punching_geo.append(elem['follow'].buffer(dia / 2))
  652. # if dia is None then none of the above applied so we skip the following
  653. if dia is None:
  654. continue
  655. punching_geo = MultiPolygon(punching_geo)
  656. if punching_geo is None or punching_geo.is_empty:
  657. continue
  658. punched_solid_geometry = punched_solid_geometry.difference(punching_geo)
  659. # update the gerber apertures to include the clear geometry so it can be exported successfully
  660. for elem in apid_value['geometry']:
  661. # make it work only for Gerber Flashes who are Points in 'follow'
  662. if 'solid' in elem and isinstance(elem['follow'], Point):
  663. clear_apid_size = dia
  664. for geo in punching_geo:
  665. # since there may be drills that do not drill into a pad we test only for geos in a pad
  666. if geo.within(elem['solid']):
  667. geo_elem = {}
  668. geo_elem['clear'] = geo.centroid
  669. if clear_apid_size not in holes_apertures:
  670. holes_apertures[clear_apid_size] = {}
  671. holes_apertures[clear_apid_size]['type'] = 'C'
  672. holes_apertures[clear_apid_size]['size'] = clear_apid_size
  673. holes_apertures[clear_apid_size]['geometry'] = []
  674. holes_apertures[clear_apid_size]['geometry'].append(deepcopy(geo_elem))
  675. # add the clear geometry to new apertures; it's easier than to test if there are apertures with the same
  676. # size and add there the clear geometry
  677. for hole_size, ap_val in holes_apertures.items():
  678. new_apid += 1
  679. new_apertures[str(new_apid)] = deepcopy(ap_val)
  680. def init_func(new_obj, app_obj):
  681. new_obj.options.update(new_options)
  682. new_obj.options['name'] = outname
  683. new_obj.fill_color = deepcopy(grb_obj.fill_color)
  684. new_obj.outline_color = deepcopy(grb_obj.outline_color)
  685. new_obj.apertures = deepcopy(new_apertures)
  686. new_obj.solid_geometry = deepcopy(punched_solid_geometry)
  687. new_obj.source_file = self.app.export_gerber(obj_name=outname, filename=None,
  688. local_use=new_obj, use_thread=False)
  689. self.app.app_obj.new_object('gerber', outname, init_func)
  690. elif punch_method == 'prop':
  691. prop_factor = self.factor_entry.get_value() / 100.0
  692. dia = None
  693. if isinstance(grb_obj.solid_geometry, list):
  694. temp_solid_geometry = MultiPolygon(grb_obj.solid_geometry)
  695. else:
  696. temp_solid_geometry = grb_obj.solid_geometry
  697. punched_solid_geometry = temp_solid_geometry
  698. new_apertures = deepcopy(grb_obj.apertures)
  699. new_apertures_items = new_apertures.items()
  700. # find maximum aperture id
  701. new_apid = max([int(x) for x, __ in new_apertures_items])
  702. # store here the clear geometry, the key is the new aperture size
  703. holes_apertures = {}
  704. for apid, apid_value in grb_obj.apertures.items():
  705. ap_type = apid_value['type']
  706. punching_geo = []
  707. if ap_type == 'C' and self.circular_cb.get_value():
  708. dia = float(apid_value['size']) * prop_factor
  709. for elem in apid_value['geometry']:
  710. if 'follow' in elem and isinstance(elem['follow'], Point):
  711. punching_geo.append(elem['follow'].buffer(dia / 2))
  712. elif ap_type == 'O' and self.oblong_cb.get_value():
  713. width = float(apid_value['width'])
  714. height = float(apid_value['height'])
  715. if width > height:
  716. dia = float(apid_value['height']) * prop_factor
  717. else:
  718. dia = float(apid_value['width']) * prop_factor
  719. for elem in grb_obj.apertures[apid]['geometry']:
  720. if 'follow' in elem:
  721. if isinstance(elem['follow'], Point):
  722. punching_geo.append(elem['follow'].buffer(dia / 2))
  723. elif ap_type == 'R':
  724. width = float(apid_value['width'])
  725. height = float(apid_value['height'])
  726. # if the height == width (float numbers so the reason for the following)
  727. if round(width, self.decimals) == round(height, self.decimals):
  728. if self.square_cb.get_value():
  729. dia = float(apid_value['height']) * prop_factor
  730. for elem in grb_obj.apertures[apid]['geometry']:
  731. if 'follow' in elem:
  732. if isinstance(elem['follow'], Point):
  733. punching_geo.append(elem['follow'].buffer(dia / 2))
  734. elif self.rectangular_cb.get_value():
  735. if width > height:
  736. dia = float(apid_value['height']) * prop_factor
  737. else:
  738. dia = float(apid_value['width']) * prop_factor
  739. for elem in grb_obj.apertures[apid]['geometry']:
  740. if 'follow' in elem:
  741. if isinstance(elem['follow'], Point):
  742. punching_geo.append(elem['follow'].buffer(dia / 2))
  743. elif self.other_cb.get_value():
  744. try:
  745. dia = float(apid_value['size']) * prop_factor
  746. except KeyError:
  747. if ap_type == 'AM':
  748. pol = apid_value['geometry'][0]['solid']
  749. x0, y0, x1, y1 = pol.bounds
  750. dx = x1 - x0
  751. dy = y1 - y0
  752. if dx <= dy:
  753. dia = dx * prop_factor
  754. else:
  755. dia = dy * prop_factor
  756. for elem in grb_obj.apertures[apid]['geometry']:
  757. if 'follow' in elem:
  758. if isinstance(elem['follow'], Point):
  759. punching_geo.append(elem['follow'].buffer(dia / 2))
  760. # if dia is None then none of the above applied so we skip the following
  761. if dia is None:
  762. continue
  763. punching_geo = MultiPolygon(punching_geo)
  764. if punching_geo is None or punching_geo.is_empty:
  765. continue
  766. punched_solid_geometry = punched_solid_geometry.difference(punching_geo)
  767. # update the gerber apertures to include the clear geometry so it can be exported successfully
  768. for elem in apid_value['geometry']:
  769. # make it work only for Gerber Flashes who are Points in 'follow'
  770. if 'solid' in elem and isinstance(elem['follow'], Point):
  771. clear_apid_size = dia
  772. for geo in punching_geo:
  773. # since there may be drills that do not drill into a pad we test only for geos in a pad
  774. if geo.within(elem['solid']):
  775. geo_elem = {}
  776. geo_elem['clear'] = geo.centroid
  777. if clear_apid_size not in holes_apertures:
  778. holes_apertures[clear_apid_size] = {}
  779. holes_apertures[clear_apid_size]['type'] = 'C'
  780. holes_apertures[clear_apid_size]['size'] = clear_apid_size
  781. holes_apertures[clear_apid_size]['geometry'] = []
  782. holes_apertures[clear_apid_size]['geometry'].append(deepcopy(geo_elem))
  783. # add the clear geometry to new apertures; it's easier than to test if there are apertures with the same
  784. # size and add there the clear geometry
  785. for hole_size, ap_val in holes_apertures.items():
  786. new_apid += 1
  787. new_apertures[str(new_apid)] = deepcopy(ap_val)
  788. def init_func(new_obj, app_obj):
  789. new_obj.options.update(new_options)
  790. new_obj.options['name'] = outname
  791. new_obj.fill_color = deepcopy(grb_obj.fill_color)
  792. new_obj.outline_color = deepcopy(grb_obj.outline_color)
  793. new_obj.apertures = deepcopy(new_apertures)
  794. new_obj.solid_geometry = deepcopy(punched_solid_geometry)
  795. new_obj.source_file = self.app.export_gerber(obj_name=outname, filename=None,
  796. local_use=new_obj, use_thread=False)
  797. self.app.app_obj.new_object('gerber', outname, init_func)
  798. def reset_fields(self):
  799. self.gerber_object_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  800. self.exc_combo.setRootModelIndex(self.app.collection.index(1, 0, QtCore.QModelIndex()))
  801. self.ui_disconnect()