ToolCutOut.py 71 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # File Author: Marius Adrian Stanciu (c) #
  4. # Date: 3/10/2019 #
  5. # MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtWidgets, QtGui, QtCore
  8. from appTool import AppTool
  9. from appGUI.GUIElements import FCDoubleSpinner, FCCheckBox, RadioSet, FCComboBox, OptionalInputSection, FCButton
  10. from shapely.geometry import box, MultiPolygon, Polygon, LineString, LinearRing, MultiLineString
  11. from shapely.ops import cascaded_union, unary_union, linemerge
  12. import shapely.affinity as affinity
  13. from matplotlib.backend_bases import KeyEvent as mpl_key_event
  14. from numpy import Inf
  15. from copy import deepcopy
  16. import math
  17. import logging
  18. import gettext
  19. import appTranslation as fcTranslate
  20. import builtins
  21. fcTranslate.apply_language('strings')
  22. if '_' not in builtins.__dict__:
  23. _ = gettext.gettext
  24. log = logging.getLogger('base')
  25. settings = QtCore.QSettings("Open Source", "FlatCAM")
  26. if settings.contains("machinist"):
  27. machinist_setting = settings.value('machinist', type=int)
  28. else:
  29. machinist_setting = 0
  30. class CutOut(AppTool):
  31. def __init__(self, app):
  32. AppTool.__init__(self, app)
  33. self.app = app
  34. self.canvas = app.plotcanvas
  35. self.decimals = self.app.decimals
  36. # #############################################################################
  37. # ######################### Tool GUI ##########################################
  38. # #############################################################################
  39. self.ui = CutoutUI(layout=self.layout, app=self.app)
  40. self.toolName = self.ui.toolName
  41. self.cutting_gapsize = 0.0
  42. self.cutting_dia = 0.0
  43. # true if we want to repeat the gap without clicking again on the button
  44. self.repeat_gap = False
  45. self.flat_geometry = []
  46. # this is the Geometry object generated in this class to be used for adding manual gaps
  47. self.man_cutout_obj = None
  48. # if mouse is dragging set the object True
  49. self.mouse_is_dragging = False
  50. # if mouse events are bound to local methods
  51. self.mouse_events_connected = False
  52. # event handlers references
  53. self.kp = None
  54. self.mm = None
  55. self.mr = None
  56. # hold the mouse position here
  57. self.x_pos = None
  58. self.y_pos = None
  59. # store the default data for the resulting Geometry Object
  60. self.default_data = {}
  61. # store the current cursor type to be restored after manual geo
  62. self.old_cursor_type = self.app.defaults["global_cursor_type"]
  63. # store the current selection shape status to be restored after manual geo
  64. self.old_selection_state = self.app.defaults['global_selection_shape']
  65. # Signals
  66. self.ui.ff_cutout_object_btn.clicked.connect(self.on_freeform_cutout)
  67. self.ui.rect_cutout_object_btn.clicked.connect(self.on_rectangular_cutout)
  68. self.ui.type_obj_radio.activated_custom.connect(self.on_type_obj_changed)
  69. self.ui.man_geo_creation_btn.clicked.connect(self.on_manual_geo)
  70. self.ui.man_gaps_creation_btn.clicked.connect(self.on_manual_gap_click)
  71. self.ui.reset_button.clicked.connect(self.set_tool_ui)
  72. def on_type_obj_changed(self, val):
  73. obj_type = {'grb': 0, 'geo': 2}[val]
  74. self.ui.obj_combo.setRootModelIndex(self.app.collection.index(obj_type, 0, QtCore.QModelIndex()))
  75. self.ui.obj_combo.setCurrentIndex(0)
  76. self.ui.obj_combo.obj_type = {"grb": "Gerber", "geo": "Geometry"}[val]
  77. def run(self, toggle=True):
  78. self.app.defaults.report_usage("ToolCutOut()")
  79. if toggle:
  80. # if the splitter is hidden, display it, else hide it but only if the current widget is the same
  81. if self.app.ui.splitter.sizes()[0] == 0:
  82. self.app.ui.splitter.setSizes([1, 1])
  83. else:
  84. try:
  85. if self.app.ui.tool_scroll_area.widget().objectName() == self.toolName:
  86. # if tab is populated with the tool but it does not have the focus, focus on it
  87. if not self.app.ui.notebook.currentWidget() is self.app.ui.tool_tab:
  88. # focus on Tool Tab
  89. self.app.ui.notebook.setCurrentWidget(self.app.ui.tool_tab)
  90. else:
  91. self.app.ui.splitter.setSizes([0, 1])
  92. except AttributeError:
  93. pass
  94. else:
  95. if self.app.ui.splitter.sizes()[0] == 0:
  96. self.app.ui.splitter.setSizes([1, 1])
  97. AppTool.run(self)
  98. self.set_tool_ui()
  99. self.app.ui.notebook.setTabText(2, _("Cutout Tool"))
  100. def install(self, icon=None, separator=None, **kwargs):
  101. AppTool.install(self, icon, separator, shortcut='Alt+X', **kwargs)
  102. def set_tool_ui(self):
  103. self.reset_fields()
  104. self.ui.dia.set_value(float(self.app.defaults["tools_cutouttooldia"]))
  105. self.ui.obj_kind_combo.set_value(self.app.defaults["tools_cutoutkind"])
  106. self.ui.margin.set_value(float(self.app.defaults["tools_cutoutmargin"]))
  107. self.ui.cutz_entry.set_value(float(self.app.defaults["tools_cutout_z"]))
  108. self.ui.mpass_cb.set_value(float(self.app.defaults["tools_cutout_mdepth"]))
  109. self.ui.maxdepth_entry.set_value(float(self.app.defaults["tools_cutout_depthperpass"]))
  110. self.ui.gapsize.set_value(float(self.app.defaults["tools_cutoutgapsize"]))
  111. self.ui.gaps.set_value(self.app.defaults["tools_gaps_ff"])
  112. self.ui.convex_box.set_value(self.app.defaults['tools_cutout_convexshape'])
  113. self.ui.big_cursor_cb.set_value(self.app.defaults['tools_cutout_big_cursor'])
  114. # use the current selected object and make it visible in the Paint object combobox
  115. sel_list = self.app.collection.get_selected()
  116. if len(sel_list) == 1:
  117. active = self.app.collection.get_active()
  118. kind = active.kind
  119. if kind == 'gerber':
  120. self.ui.type_obj_radio.set_value('grb')
  121. else:
  122. self.ui.type_obj_radio.set_value('geo')
  123. # run those once so the obj_type attribute is updated for the FCComboboxes
  124. # so the last loaded object is displayed
  125. if kind == 'gerber':
  126. self.on_type_obj_changed(val='grb')
  127. else:
  128. self.on_type_obj_changed(val='geo')
  129. self.ui.obj_combo.set_value(active.options['name'])
  130. else:
  131. kind = 'gerber'
  132. self.ui.type_obj_radio.set_value('grb')
  133. # run those once so the obj_type attribute is updated for the FCComboboxes
  134. # so the last loaded object is displayed
  135. if kind == 'gerber':
  136. self.on_type_obj_changed(val='grb')
  137. else:
  138. self.on_type_obj_changed(val='geo')
  139. # self.type_obj_radio.set_value('grb')
  140. self.default_data.update({
  141. "plot": True,
  142. "cutz": float(self.app.defaults["geometry_cutz"]),
  143. "multidepth": self.app.defaults["geometry_multidepth"],
  144. "depthperpass": float(self.app.defaults["geometry_depthperpass"]),
  145. "vtipdia": float(self.app.defaults["geometry_vtipdia"]),
  146. "vtipangle": float(self.app.defaults["geometry_vtipangle"]),
  147. "travelz": float(self.app.defaults["geometry_travelz"]),
  148. "feedrate": float(self.app.defaults["geometry_feedrate"]),
  149. "feedrate_z": float(self.app.defaults["geometry_feedrate_z"]),
  150. "feedrate_rapid": float(self.app.defaults["geometry_feedrate_rapid"]),
  151. "spindlespeed": self.app.defaults["geometry_spindlespeed"],
  152. "dwell": self.app.defaults["geometry_dwell"],
  153. "dwelltime": float(self.app.defaults["geometry_dwelltime"]),
  154. "spindledir": self.app.defaults["geometry_spindledir"],
  155. "ppname_g": self.app.defaults["geometry_ppname_g"],
  156. "extracut": self.app.defaults["geometry_extracut"],
  157. "extracut_length": float(self.app.defaults["geometry_extracut_length"]),
  158. "toolchange": self.app.defaults["geometry_toolchange"],
  159. "toolchangexy": self.app.defaults["geometry_toolchangexy"],
  160. "toolchangez": float(self.app.defaults["geometry_toolchangez"]),
  161. "startz": self.app.defaults["geometry_startz"],
  162. "endz": float(self.app.defaults["geometry_endz"]),
  163. "area_exclusion": self.app.defaults["geometry_area_exclusion"],
  164. "area_shape": self.app.defaults["geometry_area_shape"],
  165. "area_strategy": self.app.defaults["geometry_area_strategy"],
  166. "area_overz": float(self.app.defaults["geometry_area_overz"]),
  167. "optimization_type": self.app.defaults["geometry_optimization_type"],
  168. # NCC
  169. "tools_nccoperation": self.app.defaults["tools_nccoperation"],
  170. "tools_nccmilling_type": self.app.defaults["tools_nccmilling_type"],
  171. "tools_nccoverlap": float(self.app.defaults["tools_nccoverlap"]),
  172. "tools_nccmargin": float(self.app.defaults["tools_nccmargin"]),
  173. "tools_nccmethod": self.app.defaults["tools_nccmethod"],
  174. "tools_nccconnect": self.app.defaults["tools_nccconnect"],
  175. "tools_ncccontour": self.app.defaults["tools_ncccontour"],
  176. "tools_ncc_offset_choice": self.app.defaults["tools_ncc_offset_choice"],
  177. "tools_ncc_offset_value": float(self.app.defaults["tools_ncc_offset_value"]),
  178. # Paint
  179. "tools_paintoverlap": float(self.app.defaults["tools_paintoverlap"]),
  180. "tools_paintoffset": float(self.app.defaults["tools_paintoffset"]),
  181. "tools_paintmethod": self.app.defaults["tools_paintmethod"],
  182. "tools_pathconnect": self.app.defaults["tools_pathconnect"],
  183. "tools_paintcontour": self.app.defaults["tools_paintcontour"],
  184. # Isolation Tool
  185. "tools_iso_passes": self.app.defaults["tools_iso_passes"],
  186. "tools_iso_overlap": self.app.defaults["tools_iso_overlap"],
  187. "tools_iso_milling_type": self.app.defaults["tools_iso_milling_type"],
  188. "tools_iso_follow": self.app.defaults["tools_iso_follow"],
  189. "tools_iso_isotype": self.app.defaults["tools_iso_isotype"],
  190. })
  191. def on_freeform_cutout(self):
  192. log.debug("Cutout.on_freeform_cutout() was launched ...")
  193. # def subtract_rectangle(obj_, x0, y0, x1, y1):
  194. # pts = [(x0, y0), (x1, y0), (x1, y1), (x0, y1)]
  195. # obj_.subtract_polygon(pts)
  196. name = self.ui.obj_combo.currentText()
  197. # Get source object.
  198. try:
  199. cutout_obj = self.app.collection.get_by_name(str(name))
  200. except Exception as e:
  201. log.debug("CutOut.on_freeform_cutout() --> %s" % str(e))
  202. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve object"), name))
  203. return "Could not retrieve object: %s" % name
  204. if cutout_obj is None:
  205. self.app.inform.emit('[ERROR_NOTCL] %s' %
  206. _("There is no object selected for Cutout.\nSelect one and try again."))
  207. return
  208. dia = float(self.ui.dia.get_value())
  209. if 0 in {dia}:
  210. self.app.inform.emit('[WARNING_NOTCL] %s' %
  211. _("Tool Diameter is zero value. Change it to a positive real number."))
  212. return "Tool Diameter is zero value. Change it to a positive real number."
  213. try:
  214. kind = self.ui.obj_kind_combo.get_value()
  215. except ValueError:
  216. return
  217. margin = float(self.ui.margin.get_value())
  218. gapsize = float(self.ui.gapsize.get_value())
  219. try:
  220. gaps = self.ui.gaps.get_value()
  221. except TypeError:
  222. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Number of gaps value is missing. Add it and retry."))
  223. return
  224. if gaps not in ['None', 'LR', 'TB', '2LR', '2TB', '4', '8']:
  225. self.app.inform.emit('[WARNING_NOTCL] %s' %
  226. _("Gaps value can be only one of: 'None', 'lr', 'tb', '2lr', '2tb', 4 or 8. "
  227. "Fill in a correct value and retry. "))
  228. return
  229. if cutout_obj.multigeo is True:
  230. self.app.inform.emit('[ERROR] %s' % _("Cutout operation cannot be done on a multi-geo Geometry.\n"
  231. "Optionally, this Multi-geo Geometry can be converted to "
  232. "Single-geo Geometry,\n"
  233. "and after that perform Cutout."))
  234. return
  235. convex_box = self.ui.convex_box.get_value()
  236. gapsize = gapsize / 2 + (dia / 2)
  237. def geo_init(geo_obj, app_obj):
  238. solid_geo = []
  239. gaps_solid_geo = None
  240. if cutout_obj.kind == 'gerber':
  241. if isinstance(cutout_obj.solid_geometry, list):
  242. cutout_obj.solid_geometry = MultiPolygon(cutout_obj.solid_geometry)
  243. try:
  244. if convex_box:
  245. object_geo = cutout_obj.solid_geometry.convex_hull
  246. else:
  247. object_geo = cutout_obj.solid_geometry
  248. except Exception as err:
  249. log.debug("CutOut.on_freeform_cutout().geo_init() --> %s" % str(err))
  250. object_geo = cutout_obj.solid_geometry
  251. else:
  252. object_geo = cutout_obj.solid_geometry
  253. def cutout_handler(geom):
  254. # Get min and max data for each object as we just cut rectangles across X or Y
  255. xxmin, yymin, xxmax, yymax = CutOut.recursive_bounds(geom)
  256. px = 0.5 * (xxmin + xxmax) + margin
  257. py = 0.5 * (yymin + yymax) + margin
  258. lenx = (xxmax - xxmin) + (margin * 2)
  259. leny = (yymax - yymin) + (margin * 2)
  260. proc_geometry = []
  261. if gaps == 'None':
  262. pass
  263. else:
  264. if gaps == '8' or gaps == '2LR':
  265. points = (
  266. xxmin - gapsize, # botleft_x
  267. py - gapsize + leny / 4, # botleft_y
  268. xxmax + gapsize, # topright_x
  269. py + gapsize + leny / 4 # topright_y
  270. )
  271. geom = self.subtract_poly_from_geo(geom, points)
  272. points = (
  273. xxmin - gapsize,
  274. py - gapsize - leny / 4,
  275. xxmax + gapsize,
  276. py + gapsize - leny / 4
  277. )
  278. geom = self.subtract_poly_from_geo(geom, points)
  279. if gaps == '8' or gaps == '2TB':
  280. points = (
  281. px - gapsize + lenx / 4,
  282. yymin - gapsize,
  283. px + gapsize + lenx / 4,
  284. yymax + gapsize
  285. )
  286. geom = self.subtract_poly_from_geo(geom, points)
  287. points = (
  288. px - gapsize - lenx / 4,
  289. yymin - gapsize,
  290. px + gapsize - lenx / 4,
  291. yymax + gapsize
  292. )
  293. geom = self.subtract_poly_from_geo(geom, points)
  294. if gaps == '4' or gaps == 'LR':
  295. points = (
  296. xxmin - gapsize,
  297. py - gapsize,
  298. xxmax + gapsize,
  299. py + gapsize
  300. )
  301. geom = self.subtract_poly_from_geo(geom, points)
  302. if gaps == '4' or gaps == 'TB':
  303. points = (
  304. px - gapsize,
  305. yymin - gapsize,
  306. px + gapsize,
  307. yymax + gapsize
  308. )
  309. geom = self.subtract_poly_from_geo(geom, points)
  310. try:
  311. for g in geom:
  312. if g and not g.is_empty:
  313. proc_geometry.append(g)
  314. except TypeError:
  315. if geom and not geom.is_empty:
  316. proc_geometry.append(geom)
  317. return proc_geometry
  318. if kind == 'single':
  319. object_geo = unary_union(object_geo)
  320. # for geo in object_geo:
  321. if cutout_obj.kind == 'gerber':
  322. if isinstance(object_geo, MultiPolygon):
  323. x0, y0, x1, y1 = object_geo.bounds
  324. object_geo = box(x0, y0, x1, y1)
  325. if margin >= 0:
  326. geo_buf = object_geo.buffer(margin + abs(dia / 2))
  327. else:
  328. geo_buf = object_geo.buffer(margin - abs(dia / 2))
  329. geo = geo_buf.exterior
  330. else:
  331. geo = object_geo
  332. solid_geo = cutout_handler(geom=geo)
  333. if self.ui.thin_cb.get_value():
  334. gaps_solid_geo = self.subtract_geo(geo, solid_geo)
  335. else:
  336. try:
  337. __ = iter(object_geo)
  338. except TypeError:
  339. object_geo = [object_geo]
  340. for geom_struct in object_geo:
  341. if cutout_obj.kind == 'gerber':
  342. if margin >= 0:
  343. geom_struct = (geom_struct.buffer(margin + abs(dia / 2))).exterior
  344. else:
  345. geom_struct_buff = geom_struct.buffer(-margin + abs(dia / 2))
  346. geom_struct = geom_struct_buff.interiors
  347. c_geo = cutout_handler(geom=geom_struct)
  348. solid_geo += c_geo
  349. if self.ui.thin_cb.get_value():
  350. try:
  351. gaps_solid_geo += self.subtract_geo(geom_struct, c_geo)
  352. except TypeError:
  353. gaps_solid_geo.append(self.subtract_geo(geom_struct, c_geo))
  354. if not solid_geo:
  355. app_obj.inform.emit('[ERROR_NOTCL] %s' % _("Failed."))
  356. return "fail"
  357. solid_geo = linemerge(solid_geo)
  358. geo_obj.solid_geometry = deepcopy(solid_geo)
  359. xmin, ymin, xmax, ymax = CutOut.recursive_bounds(geo_obj.solid_geometry)
  360. geo_obj.options['xmin'] = xmin
  361. geo_obj.options['ymin'] = ymin
  362. geo_obj.options['xmax'] = xmax
  363. geo_obj.options['ymax'] = ymax
  364. geo_obj.options['cnctooldia'] = str(dia)
  365. geo_obj.options['cutz'] = self.ui.cutz_entry.get_value()
  366. geo_obj.options['multidepth'] = self.ui.mpass_cb.get_value()
  367. geo_obj.options['depthperpass'] = self.ui.maxdepth_entry.get_value()
  368. geo_obj.tools.update({
  369. 1: {
  370. 'tooldia': str(dia),
  371. 'offset': 'Path',
  372. 'offset_value': 0.0,
  373. 'type': _('Rough'),
  374. 'tool_type': 'C1',
  375. 'data': deepcopy(self.default_data),
  376. 'solid_geometry': geo_obj.solid_geometry
  377. }
  378. })
  379. geo_obj.multigeo = True
  380. geo_obj.tools[1]['data']['name'] = outname
  381. geo_obj.tools[1]['data']['cutz'] = self.ui.cutz_entry.get_value()
  382. geo_obj.tools[1]['data']['multidepth'] = self.ui.mpass_cb.get_value()
  383. geo_obj.tools[1]['data']['depthperpass'] = self.ui.maxdepth_entry.get_value()
  384. if gaps_solid_geo is not None:
  385. geo_obj.tools.update({
  386. 2: {
  387. 'tooldia': str(dia),
  388. 'offset': 'Path',
  389. 'offset_value': 0.0,
  390. 'type': _('Rough'),
  391. 'tool_type': 'C1',
  392. 'data': deepcopy(self.default_data),
  393. 'solid_geometry': gaps_solid_geo
  394. }
  395. })
  396. geo_obj.tools[2]['data']['name'] = outname
  397. geo_obj.tools[2]['data']['cutz'] = self.ui.thin_depth_entry.get_value()
  398. geo_obj.tools[2]['data']['multidepth'] = self.ui.mpass_cb.get_value()
  399. geo_obj.tools[2]['data']['depthperpass'] = self.ui.maxdepth_entry.get_value()
  400. outname = cutout_obj.options["name"] + "_cutout"
  401. ret = self.app.app_obj.new_object('geometry', outname, geo_init)
  402. if ret == 'fail':
  403. self.app.inform.emit('[ERROR_NOTCL] %s' % _("Failed."))
  404. return
  405. cutout_obj.plot()
  406. self.app.inform.emit('[success] %s' % _("Any form CutOut operation finished."))
  407. # self.app.ui.notebook.setCurrentWidget(self.app.ui.project_tab)
  408. self.app.should_we_save = True
  409. def on_rectangular_cutout(self):
  410. log.debug("Cutout.on_rectangular_cutout() was launched ...")
  411. # def subtract_rectangle(obj_, x0, y0, x1, y1):
  412. # pts = [(x0, y0), (x1, y0), (x1, y1), (x0, y1)]
  413. # obj_.subtract_polygon(pts)
  414. name = self.ui.obj_combo.currentText()
  415. # Get source object.
  416. try:
  417. cutout_obj = self.app.collection.get_by_name(str(name))
  418. except Exception as e:
  419. log.debug("CutOut.on_rectangular_cutout() --> %s" % str(e))
  420. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve object"), name))
  421. return "Could not retrieve object: %s" % name
  422. if cutout_obj is None:
  423. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Object not found"), str(name)))
  424. dia = float(self.ui.dia.get_value())
  425. if 0 in {dia}:
  426. self.app.inform.emit('[ERROR_NOTCL] %s' %
  427. _("Tool Diameter is zero value. Change it to a positive real number."))
  428. return "Tool Diameter is zero value. Change it to a positive real number."
  429. try:
  430. kind = self.ui.obj_kind_combo.get_value()
  431. except ValueError:
  432. return
  433. margin = float(self.ui.margin.get_value())
  434. gapsize = float(self.ui.gapsize.get_value())
  435. try:
  436. gaps = self.ui.gaps.get_value()
  437. except TypeError:
  438. self.app.inform.emit('[WARNING_NOTCL] %s' %
  439. _("Number of gaps value is missing. Add it and retry."))
  440. return
  441. if gaps not in ['None', 'LR', 'TB', '2LR', '2TB', '4', '8']:
  442. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Gaps value can be only one of: "
  443. "'None', 'lr', 'tb', '2lr', '2tb', 4 or 8. "
  444. "Fill in a correct value and retry. "))
  445. return
  446. if cutout_obj.multigeo is True:
  447. self.app.inform.emit('[ERROR] %s' % _("Cutout operation cannot be done on a multi-geo Geometry.\n"
  448. "Optionally, this Multi-geo Geometry can be converted to "
  449. "Single-geo Geometry,\n"
  450. "and after that perform Cutout."))
  451. return
  452. # Get min and max data for each object as we just cut rectangles across X or Y
  453. gapsize = gapsize / 2 + (dia / 2)
  454. def geo_init(geo_obj, app_obj):
  455. solid_geo = []
  456. gaps_solid_geo = None
  457. object_geo = cutout_obj.solid_geometry
  458. def cutout_rect_handler(geom):
  459. proc_geometry = []
  460. px = 0.5 * (xmin + xmax) + margin
  461. py = 0.5 * (ymin + ymax) + margin
  462. lenx = (xmax - xmin) + (margin * 2)
  463. leny = (ymax - ymin) + (margin * 2)
  464. if gaps == 'None':
  465. pass
  466. else:
  467. if gaps == '8' or gaps == '2LR':
  468. points = (
  469. xmin - gapsize, # botleft_x
  470. py - gapsize + leny / 4, # botleft_y
  471. xmax + gapsize, # topright_x
  472. py + gapsize + leny / 4 # topright_y
  473. )
  474. geom = self.subtract_poly_from_geo(geom, points)
  475. points = (
  476. xmin - gapsize,
  477. py - gapsize - leny / 4,
  478. xmax + gapsize,
  479. py + gapsize - leny / 4
  480. )
  481. geom = self.subtract_poly_from_geo(geom, points)
  482. if gaps == '8' or gaps == '2TB':
  483. points = (
  484. px - gapsize + lenx / 4,
  485. ymin - gapsize,
  486. px + gapsize + lenx / 4,
  487. ymax + gapsize
  488. )
  489. geom = self.subtract_poly_from_geo(geom, points)
  490. points = (
  491. px - gapsize - lenx / 4,
  492. ymin - gapsize,
  493. px + gapsize - lenx / 4,
  494. ymax + gapsize
  495. )
  496. geom = self.subtract_poly_from_geo(geom, points)
  497. if gaps == '4' or gaps == 'LR':
  498. points = (
  499. xmin - gapsize,
  500. py - gapsize,
  501. xmax + gapsize,
  502. py + gapsize
  503. )
  504. geom = self.subtract_poly_from_geo(geom, points)
  505. if gaps == '4' or gaps == 'TB':
  506. points = (
  507. px - gapsize,
  508. ymin - gapsize,
  509. px + gapsize,
  510. ymax + gapsize
  511. )
  512. geom = self.subtract_poly_from_geo(geom, points)
  513. try:
  514. for g in geom:
  515. proc_geometry.append(g)
  516. except TypeError:
  517. proc_geometry.append(geom)
  518. return proc_geometry
  519. if kind == 'single':
  520. # fuse the lines
  521. object_geo = unary_union(object_geo)
  522. xmin, ymin, xmax, ymax = object_geo.bounds
  523. geo = box(xmin, ymin, xmax, ymax)
  524. # if Gerber create a buffer at a distance
  525. # if Geometry then cut through the geometry
  526. if cutout_obj.kind == 'gerber':
  527. if margin >= 0:
  528. geo = geo.buffer(margin + abs(dia / 2))
  529. else:
  530. geo = geo.buffer(margin - abs(dia / 2))
  531. solid_geo = cutout_rect_handler(geom=geo)
  532. if self.ui.thin_cb.get_value():
  533. gaps_solid_geo = self.subtract_geo(geo, solid_geo)
  534. else:
  535. if cutout_obj.kind == 'geometry':
  536. try:
  537. __ = iter(object_geo)
  538. except TypeError:
  539. object_geo = [object_geo]
  540. for geom_struct in object_geo:
  541. geom_struct = unary_union(geom_struct)
  542. xmin, ymin, xmax, ymax = geom_struct.bounds
  543. geom_struct = box(xmin, ymin, xmax, ymax)
  544. c_geo = cutout_rect_handler(geom=geom_struct)
  545. solid_geo += c_geo
  546. if self.ui.thin_cb.get_value():
  547. try:
  548. gaps_solid_geo += self.subtract_geo(geom_struct, c_geo)
  549. except TypeError:
  550. gaps_solid_geo.append(self.subtract_geo(geom_struct, c_geo))
  551. elif cutout_obj.kind == 'gerber' and margin >= 0:
  552. try:
  553. __ = iter(object_geo)
  554. except TypeError:
  555. object_geo = [object_geo]
  556. for geom_struct in object_geo:
  557. geom_struct = unary_union(geom_struct)
  558. xmin, ymin, xmax, ymax = geom_struct.bounds
  559. geom_struct = box(xmin, ymin, xmax, ymax)
  560. geom_struct = geom_struct.buffer(margin + abs(dia / 2))
  561. c_geo = cutout_rect_handler(geom=geom_struct)
  562. solid_geo += c_geo
  563. if self.ui.thin_cb.get_value():
  564. try:
  565. gaps_solid_geo += self.subtract_geo(geom_struct, c_geo)
  566. except TypeError:
  567. gaps_solid_geo.append(self.subtract_geo(geom_struct, c_geo))
  568. elif cutout_obj.kind == 'gerber' and margin < 0:
  569. app_obj.inform.emit(
  570. '[WARNING_NOTCL] %s' % _("Rectangular cutout with negative margin is not possible."))
  571. return "fail"
  572. geo_obj.options['cnctooldia'] = str(dia)
  573. geo_obj.options['cutz'] = self.ui.cutz_entry.get_value()
  574. geo_obj.options['multidepth'] = self.ui.mpass_cb.get_value()
  575. geo_obj.options['depthperpass'] = self.ui.maxdepth_entry.get_value()
  576. if not solid_geo:
  577. app_obj.inform.emit('[ERROR_NOTCL] %s' % _("Failed."))
  578. return "fail"
  579. solid_geo = linemerge(solid_geo)
  580. geo_obj.solid_geometry = deepcopy(solid_geo)
  581. geo_obj.tools.update({
  582. 1: {
  583. 'tooldia': str(dia),
  584. 'offset': 'Path',
  585. 'offset_value': 0.0,
  586. 'type': _('Rough'),
  587. 'tool_type': 'C1',
  588. 'data': deepcopy(self.default_data),
  589. 'solid_geometry': geo_obj.solid_geometry
  590. }
  591. })
  592. geo_obj.multigeo = True
  593. geo_obj.tools[1]['data']['name'] = outname
  594. geo_obj.tools[1]['data']['cutz'] = self.ui.cutz_entry.get_value()
  595. geo_obj.tools[1]['data']['multidepth'] = self.ui.mpass_cb.get_value()
  596. geo_obj.tools[1]['data']['depthperpass'] = self.ui.maxdepth_entry.get_value()
  597. if gaps_solid_geo is not None:
  598. geo_obj.tools.update({
  599. 2: {
  600. 'tooldia': str(dia),
  601. 'offset': 'Path',
  602. 'offset_value': 0.0,
  603. 'type': _('Rough'),
  604. 'tool_type': 'C1',
  605. 'data': deepcopy(self.default_data),
  606. 'solid_geometry': gaps_solid_geo
  607. }
  608. })
  609. geo_obj.tools[2]['data']['name'] = outname
  610. geo_obj.tools[2]['data']['cutz'] = self.ui.thin_depth_entry.get_value()
  611. geo_obj.tools[2]['data']['multidepth'] = self.ui.mpass_cb.get_value()
  612. geo_obj.tools[2]['data']['depthperpass'] = self.ui.maxdepth_entry.get_value()
  613. outname = cutout_obj.options["name"] + "_cutout"
  614. ret = self.app.app_obj.new_object('geometry', outname, geo_init)
  615. if ret != 'fail':
  616. # cutout_obj.plot()
  617. self.app.inform.emit('[success] %s' % _("Any form CutOut operation finished."))
  618. else:
  619. self.app.inform.emit('[ERROR_NOTCL] %s' % _("Failed."))
  620. return
  621. # self.app.ui.notebook.setCurrentWidget(self.app.ui.project_tab)
  622. self.app.should_we_save = True
  623. def on_manual_gap_click(self):
  624. name = self.ui.man_object_combo.currentText()
  625. # Get source object.
  626. try:
  627. self.man_cutout_obj = self.app.collection.get_by_name(str(name))
  628. except Exception as e:
  629. log.debug("CutOut.on_manual_cutout() --> %s" % str(e))
  630. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve Geometry object"), name))
  631. return
  632. if self.man_cutout_obj is None:
  633. self.app.inform.emit('[ERROR_NOTCL] %s: %s' %
  634. (_("Geometry object for manual cutout not found"), self.man_cutout_obj))
  635. return
  636. self.app.inform.emit(_("Click on the selected geometry object perimeter to create a bridge gap ..."))
  637. self.app.geo_editor.tool_shape.enabled = True
  638. self.cutting_dia = float(self.ui.dia.get_value())
  639. if 0 in {self.cutting_dia}:
  640. self.app.inform.emit('[ERROR_NOTCL] %s' %
  641. _("Tool Diameter is zero value. Change it to a positive real number."))
  642. return
  643. self.cutting_gapsize = float(self.ui.gapsize.get_value())
  644. name = self.ui.man_object_combo.currentText()
  645. # Get Geometry source object to be used as target for Manual adding Gaps
  646. try:
  647. self.man_cutout_obj = self.app.collection.get_by_name(str(name))
  648. except Exception as e:
  649. log.debug("CutOut.on_manual_cutout() --> %s" % str(e))
  650. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve Geometry object"), name))
  651. return
  652. if self.app.is_legacy is False:
  653. self.app.plotcanvas.graph_event_disconnect('key_press', self.app.ui.keyPressEvent)
  654. self.app.plotcanvas.graph_event_disconnect('mouse_press', self.app.on_mouse_click_over_plot)
  655. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.app.on_mouse_click_release_over_plot)
  656. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.app.on_mouse_move_over_plot)
  657. else:
  658. self.app.plotcanvas.graph_event_disconnect(self.app.kp)
  659. self.app.plotcanvas.graph_event_disconnect(self.app.mp)
  660. self.app.plotcanvas.graph_event_disconnect(self.app.mr)
  661. self.app.plotcanvas.graph_event_disconnect(self.app.mm)
  662. self.kp = self.app.plotcanvas.graph_event_connect('key_press', self.on_key_press)
  663. self.mm = self.app.plotcanvas.graph_event_connect('mouse_move', self.on_mouse_move)
  664. self.mr = self.app.plotcanvas.graph_event_connect('mouse_release', self.on_mouse_click_release)
  665. self.mouse_events_connected = True
  666. if self.ui.big_cursor_cb.get_value():
  667. self.old_cursor_type = self.app.defaults["global_cursor_type"]
  668. self.app.on_cursor_type(val="big")
  669. self.app.defaults['global_selection_shape'] = False
  670. def on_manual_cutout(self, click_pos):
  671. if self.man_cutout_obj is None:
  672. self.app.inform.emit('[ERROR_NOTCL] %s: %s' %
  673. (_("Geometry object for manual cutout not found"), self.man_cutout_obj))
  674. return
  675. # use the snapped position as reference
  676. snapped_pos = self.app.geo_editor.snap(click_pos[0], click_pos[1])
  677. cut_poly = self.cutting_geo(pos=(snapped_pos[0], snapped_pos[1]))
  678. # first subtract geometry for the total solid_geometry
  679. new_solid_geometry = CutOut.subtract_geo(self.man_cutout_obj.solid_geometry, cut_poly)
  680. new_solid_geometry = linemerge(new_solid_geometry)
  681. self.man_cutout_obj.solid_geometry = new_solid_geometry
  682. # then do it or each tool in the manual cutout Geometry object
  683. for tool in self.man_cutout_obj.tools:
  684. self.man_cutout_obj.tools[tool]['solid_geometry'] = new_solid_geometry
  685. self.man_cutout_obj.plot()
  686. self.app.inform.emit('[success] %s' % _("Added manual Bridge Gap."))
  687. self.app.should_we_save = True
  688. def on_manual_geo(self):
  689. name = self.ui.obj_combo.currentText()
  690. # Get source object.
  691. try:
  692. cutout_obj = self.app.collection.get_by_name(str(name))
  693. except Exception as e:
  694. log.debug("CutOut.on_manual_geo() --> %s" % str(e))
  695. self.app.inform.emit('[ERROR_NOTCL] %s: %s' % (_("Could not retrieve Gerber object"), name))
  696. return "Could not retrieve object: %s" % name
  697. if cutout_obj is None:
  698. self.app.inform.emit('[ERROR_NOTCL] %s' %
  699. _("There is no Gerber object selected for Cutout.\n"
  700. "Select one and try again."))
  701. return
  702. if cutout_obj.kind != 'gerber':
  703. self.app.inform.emit('[ERROR_NOTCL] %s' %
  704. _("The selected object has to be of Gerber type.\n"
  705. "Select a Gerber file and try again."))
  706. return
  707. dia = float(self.ui.dia.get_value())
  708. if 0 in {dia}:
  709. self.app.inform.emit('[ERROR_NOTCL] %s' %
  710. _("Tool Diameter is zero value. Change it to a positive real number."))
  711. return
  712. try:
  713. kind = self.ui.obj_kind_combo.get_value()
  714. except ValueError:
  715. return
  716. margin = float(self.ui.margin.get_value())
  717. convex_box = self.ui.convex_box.get_value()
  718. def geo_init(geo_obj, app_obj):
  719. geo_union = unary_union(cutout_obj.solid_geometry)
  720. if convex_box:
  721. geo = geo_union.convex_hull
  722. geo_obj.solid_geometry = geo.buffer(margin + abs(dia / 2))
  723. elif kind == 'single':
  724. if isinstance(geo_union, Polygon) or \
  725. (isinstance(geo_union, list) and len(geo_union) == 1) or \
  726. (isinstance(geo_union, MultiPolygon) and len(geo_union) == 1):
  727. geo_obj.solid_geometry = geo_union.buffer(margin + abs(dia / 2)).exterior
  728. elif isinstance(geo_union, MultiPolygon):
  729. x0, y0, x1, y1 = geo_union.bounds
  730. geo = box(x0, y0, x1, y1)
  731. geo_obj.solid_geometry = geo.buffer(margin + abs(dia / 2))
  732. else:
  733. app_obj.inform.emit('[ERROR_NOTCL] %s: %s' % (
  734. _("Geometry not supported for cutout"), type(geo_union)))
  735. return 'fail'
  736. else:
  737. geo = geo_union
  738. geo = geo.buffer(margin + abs(dia / 2))
  739. if isinstance(geo, Polygon):
  740. geo_obj.solid_geometry = geo.exterior
  741. elif isinstance(geo, MultiPolygon):
  742. solid_geo = []
  743. for poly in geo:
  744. solid_geo.append(poly.exterior)
  745. geo_obj.solid_geometry = deepcopy(solid_geo)
  746. geo_obj.options['cnctooldia'] = str(dia)
  747. geo_obj.options['cutz'] = self.ui.cutz_entry.get_value()
  748. geo_obj.options['multidepth'] = self.ui.mpass_cb.get_value()
  749. geo_obj.options['depthperpass'] = self.ui.maxdepth_entry.get_value()
  750. geo_obj.tools.update({
  751. 1: {
  752. 'tooldia': str(dia),
  753. 'offset': 'Path',
  754. 'offset_value': 0.0,
  755. 'type': _('Rough'),
  756. 'tool_type': 'C1',
  757. 'data': self.default_data,
  758. 'solid_geometry': geo_obj.solid_geometry
  759. }
  760. })
  761. geo_obj.multigeo = True
  762. geo_obj.tools[1]['data']['name'] = outname
  763. geo_obj.tools[1]['data']['cutz'] = self.ui.cutz_entry.get_value()
  764. geo_obj.tools[1]['data']['multidepth'] = self.ui.mpass_cb.get_value()
  765. geo_obj.tools[1]['data']['depthperpass'] = self.ui.maxdepth_entry.get_value()
  766. outname = cutout_obj.options["name"] + "_cutout"
  767. self.app.app_obj.new_object('geometry', outname, geo_init)
  768. def cutting_geo(self, pos):
  769. self.cutting_dia = float(self.ui.dia.get_value())
  770. self.cutting_gapsize = float(self.ui.gapsize.get_value())
  771. offset = self.cutting_dia / 2 + self.cutting_gapsize / 2
  772. # cutting area definition
  773. orig_x = pos[0]
  774. orig_y = pos[1]
  775. xmin = orig_x - offset
  776. ymin = orig_y - offset
  777. xmax = orig_x + offset
  778. ymax = orig_y + offset
  779. cut_poly = box(xmin, ymin, xmax, ymax)
  780. return cut_poly
  781. # To be called after clicking on the plot.
  782. def on_mouse_click_release(self, event):
  783. if self.app.is_legacy is False:
  784. event_pos = event.pos
  785. # event_is_dragging = event.is_dragging
  786. right_button = 2
  787. else:
  788. event_pos = (event.xdata, event.ydata)
  789. # event_is_dragging = self.app.plotcanvas.is_dragging
  790. right_button = 3
  791. try:
  792. x = float(event_pos[0])
  793. y = float(event_pos[1])
  794. except TypeError:
  795. return
  796. event_pos = (x, y)
  797. # do paint single only for left mouse clicks
  798. if event.button == 1:
  799. self.app.inform.emit(_("Making manual bridge gap..."))
  800. pos = self.app.plotcanvas.translate_coords(event_pos)
  801. self.on_manual_cutout(click_pos=pos)
  802. # if RMB then we exit
  803. elif event.button == right_button and self.mouse_is_dragging is False:
  804. if self.app.is_legacy is False:
  805. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_press)
  806. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.on_mouse_move)
  807. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_mouse_click_release)
  808. else:
  809. self.app.plotcanvas.graph_event_disconnect(self.kp)
  810. self.app.plotcanvas.graph_event_disconnect(self.mm)
  811. self.app.plotcanvas.graph_event_disconnect(self.mr)
  812. self.app.kp = self.app.plotcanvas.graph_event_connect('key_press', self.app.ui.keyPressEvent)
  813. self.app.mp = self.app.plotcanvas.graph_event_connect('mouse_press', self.app.on_mouse_click_over_plot)
  814. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  815. self.app.on_mouse_click_release_over_plot)
  816. self.app.mm = self.app.plotcanvas.graph_event_connect('mouse_move', self.app.on_mouse_move_over_plot)
  817. # Remove any previous utility shape
  818. self.app.geo_editor.tool_shape.clear(update=True)
  819. self.app.geo_editor.tool_shape.enabled = False
  820. # signal that the mouse events are disconnected from local methods
  821. self.mouse_events_connected = False
  822. if self.ui.big_cursor_cb.get_value():
  823. # restore cursor
  824. self.app.on_cursor_type(val=self.old_cursor_type)
  825. # restore selection
  826. self.app.defaults['global_selection_shape'] = self.old_selection_state
  827. def on_mouse_move(self, event):
  828. self.app.on_mouse_move_over_plot(event=event)
  829. if self.app.is_legacy is False:
  830. event_pos = event.pos
  831. event_is_dragging = event.is_dragging
  832. # right_button = 2
  833. else:
  834. event_pos = (event.xdata, event.ydata)
  835. event_is_dragging = self.app.plotcanvas.is_dragging
  836. # right_button = 3
  837. try:
  838. x = float(event_pos[0])
  839. y = float(event_pos[1])
  840. except TypeError:
  841. return
  842. event_pos = (x, y)
  843. pos = self.canvas.translate_coords(event_pos)
  844. event.xdata, event.ydata = pos[0], pos[1]
  845. if event_is_dragging is True:
  846. self.mouse_is_dragging = True
  847. else:
  848. self.mouse_is_dragging = False
  849. try:
  850. x = float(event.xdata)
  851. y = float(event.ydata)
  852. except TypeError:
  853. return
  854. if self.app.grid_status():
  855. snap_x, snap_y = self.app.geo_editor.snap(x, y)
  856. else:
  857. snap_x, snap_y = x, y
  858. self.x_pos, self.y_pos = snap_x, snap_y
  859. # #################################################
  860. # ### This section makes the cutting geo to #######
  861. # ### rotate if it intersects the target geo ######
  862. # #################################################
  863. cut_geo = self.cutting_geo(pos=(snap_x, snap_y))
  864. man_geo = self.man_cutout_obj.solid_geometry
  865. def get_angle(geo):
  866. line = cut_geo.intersection(geo)
  867. try:
  868. pt1_x = line.coords[0][0]
  869. pt1_y = line.coords[0][1]
  870. pt2_x = line.coords[1][0]
  871. pt2_y = line.coords[1][1]
  872. dx = pt1_x - pt2_x
  873. dy = pt1_y - pt2_y
  874. if dx == 0 or dy == 0:
  875. angle = 0
  876. else:
  877. radian = math.atan(dx / dy)
  878. angle = radian * 180 / math.pi
  879. except Exception:
  880. angle = 0
  881. return angle
  882. try:
  883. rot_angle = 0
  884. for geo_el in man_geo:
  885. if isinstance(geo_el, Polygon):
  886. work_geo = geo_el.exterior
  887. if cut_geo.intersects(work_geo):
  888. rot_angle = get_angle(geo=work_geo)
  889. else:
  890. rot_angle = 0
  891. else:
  892. rot_angle = 0
  893. if cut_geo.intersects(geo_el):
  894. rot_angle = get_angle(geo=geo_el)
  895. if rot_angle != 0:
  896. break
  897. except TypeError:
  898. if isinstance(man_geo, Polygon):
  899. work_geo = man_geo.exterior
  900. if cut_geo.intersects(work_geo):
  901. rot_angle = get_angle(geo=work_geo)
  902. else:
  903. rot_angle = 0
  904. else:
  905. rot_angle = 0
  906. if cut_geo.intersects(man_geo):
  907. rot_angle = get_angle(geo=man_geo)
  908. # rotate only if there is an angle to rotate to
  909. if rot_angle != 0:
  910. cut_geo = affinity.rotate(cut_geo, -rot_angle)
  911. # Remove any previous utility shape
  912. self.app.geo_editor.tool_shape.clear(update=True)
  913. self.draw_utility_geometry(geo=cut_geo)
  914. def draw_utility_geometry(self, geo):
  915. self.app.geo_editor.tool_shape.add(
  916. shape=geo,
  917. color=(self.app.defaults["global_draw_color"] + '80'),
  918. update=False,
  919. layer=0,
  920. tolerance=None)
  921. self.app.geo_editor.tool_shape.redraw()
  922. def on_key_press(self, event):
  923. # events out of the self.app.collection view (it's about Project Tab) are of type int
  924. if type(event) is int:
  925. key = event
  926. # events from the GUI are of type QKeyEvent
  927. elif type(event) == QtGui.QKeyEvent:
  928. key = event.key()
  929. elif isinstance(event, mpl_key_event): # MatPlotLib key events are trickier to interpret than the rest
  930. key = event.key
  931. key = QtGui.QKeySequence(key)
  932. # check for modifiers
  933. key_string = key.toString().lower()
  934. if '+' in key_string:
  935. mod, __, key_text = key_string.rpartition('+')
  936. if mod.lower() == 'ctrl':
  937. # modifiers = QtCore.Qt.ControlModifier
  938. pass
  939. elif mod.lower() == 'alt':
  940. # modifiers = QtCore.Qt.AltModifier
  941. pass
  942. elif mod.lower() == 'shift':
  943. # modifiers = QtCore.Qt.ShiftModifier
  944. pass
  945. else:
  946. # modifiers = QtCore.Qt.NoModifier
  947. pass
  948. key = QtGui.QKeySequence(key_text)
  949. # events from Vispy are of type KeyEvent
  950. else:
  951. key = event.key
  952. # Escape = Deselect All
  953. if key == QtCore.Qt.Key_Escape or key == 'Escape':
  954. if self.mouse_events_connected is True:
  955. self.mouse_events_connected = False
  956. if self.app.is_legacy is False:
  957. self.app.plotcanvas.graph_event_disconnect('key_press', self.on_key_press)
  958. self.app.plotcanvas.graph_event_disconnect('mouse_move', self.on_mouse_move)
  959. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_mouse_click_release)
  960. else:
  961. self.app.plotcanvas.graph_event_disconnect(self.kp)
  962. self.app.plotcanvas.graph_event_disconnect(self.mm)
  963. self.app.plotcanvas.graph_event_disconnect(self.mr)
  964. self.app.kp = self.app.plotcanvas.graph_event_connect('key_press', self.app.ui.keyPressEvent)
  965. self.app.mp = self.app.plotcanvas.graph_event_connect('mouse_press', self.app.on_mouse_click_over_plot)
  966. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  967. self.app.on_mouse_click_release_over_plot)
  968. self.app.mm = self.app.plotcanvas.graph_event_connect('mouse_move', self.app.on_mouse_move_over_plot)
  969. if self.ui.big_cursor_cb.get_value():
  970. # restore cursor
  971. self.app.on_cursor_type(val=self.old_cursor_type)
  972. # restore selection
  973. self.app.defaults['global_selection_shape'] = self.old_selection_state
  974. # Remove any previous utility shape
  975. self.app.geo_editor.tool_shape.clear(update=True)
  976. self.app.geo_editor.tool_shape.enabled = False
  977. # Grid toggle
  978. if key == QtCore.Qt.Key_G or key == 'G':
  979. self.app.ui.grid_snap_btn.trigger()
  980. # Jump to coords
  981. if key == QtCore.Qt.Key_J or key == 'J':
  982. l_x, l_y = self.app.on_jump_to()
  983. self.app.geo_editor.tool_shape.clear(update=True)
  984. geo = self.cutting_geo(pos=(l_x, l_y))
  985. self.draw_utility_geometry(geo=geo)
  986. @staticmethod
  987. def subtract_poly_from_geo(solid_geo, pts):
  988. """
  989. Subtract polygon made from points from the given object.
  990. This only operates on the paths in the original geometry,
  991. i.e. it converts polygons into paths.
  992. :param solid_geo: Geometry from which to subtract.
  993. :param pts: a tuple of coordinates in format (x0, y0, x1, y1)
  994. :type pts: tuple
  995. x0: x coord for lower left vertex of the polygon.
  996. y0: y coord for lower left vertex of the polygon.
  997. x1: x coord for upper right vertex of the polygon.
  998. y1: y coord for upper right vertex of the polygon.
  999. :return: none
  1000. """
  1001. x0 = pts[0]
  1002. y0 = pts[1]
  1003. x1 = pts[2]
  1004. y1 = pts[3]
  1005. points = [(x0, y0), (x1, y0), (x1, y1), (x0, y1)]
  1006. # pathonly should be always True, otherwise polygons are not subtracted
  1007. flat_geometry = CutOut.flatten(geometry=solid_geo)
  1008. log.debug("%d paths" % len(flat_geometry))
  1009. polygon = Polygon(points)
  1010. toolgeo = cascaded_union(polygon)
  1011. diffs = []
  1012. for target in flat_geometry:
  1013. if type(target) == LineString or type(target) == LinearRing:
  1014. diffs.append(target.difference(toolgeo))
  1015. else:
  1016. log.warning("Not implemented.")
  1017. return unary_union(diffs)
  1018. @staticmethod
  1019. def flatten(geometry):
  1020. """
  1021. Creates a list of non-iterable linear geometry objects.
  1022. Polygons are expanded into its exterior and interiors.
  1023. Results are placed in self.flat_geometry
  1024. :param geometry: Shapely type or list or list of list of such.
  1025. """
  1026. flat_geo = []
  1027. try:
  1028. for geo in geometry:
  1029. if geo and not geo.is_empty:
  1030. flat_geo += CutOut.flatten(geometry=geo)
  1031. except TypeError:
  1032. if isinstance(geometry, Polygon):
  1033. flat_geo.append(geometry.exterior)
  1034. CutOut.flatten(geometry=geometry.interiors)
  1035. else:
  1036. flat_geo.append(geometry)
  1037. return flat_geo
  1038. @staticmethod
  1039. def recursive_bounds(geometry):
  1040. """
  1041. Return the bounds of the biggest bounding box in geometry, one that include all.
  1042. :param geometry: a iterable object that holds geometry
  1043. :return: Returns coordinates of rectangular bounds of geometry: (xmin, ymin, xmax, ymax).
  1044. """
  1045. # now it can get bounds for nested lists of objects
  1046. def bounds_rec(obj):
  1047. try:
  1048. minx = Inf
  1049. miny = Inf
  1050. maxx = -Inf
  1051. maxy = -Inf
  1052. for k in obj:
  1053. minx_, miny_, maxx_, maxy_ = bounds_rec(k)
  1054. minx = min(minx, minx_)
  1055. miny = min(miny, miny_)
  1056. maxx = max(maxx, maxx_)
  1057. maxy = max(maxy, maxy_)
  1058. return minx, miny, maxx, maxy
  1059. except TypeError:
  1060. # it's a Shapely object, return it's bounds
  1061. if obj:
  1062. return obj.bounds
  1063. return bounds_rec(geometry)
  1064. @staticmethod
  1065. def subtract_geo(target_geo, subtractor):
  1066. """
  1067. Subtract subtractor polygon from the target_geo. This only operates on the paths in the target_geo,
  1068. i.e. it converts polygons into paths.
  1069. :param target_geo: geometry from which to subtract
  1070. :param subtractor: a list of Points, a LinearRing or a Polygon that will be subtracted from target_geo
  1071. :return: a cascaded union of the resulting geometry
  1072. """
  1073. if target_geo is None:
  1074. target_geo = []
  1075. # flatten() takes care of possible empty geometry making sure that is filtered
  1076. flat_geometry = CutOut.flatten(target_geo)
  1077. log.debug("%d paths" % len(flat_geometry))
  1078. toolgeo = unary_union(subtractor)
  1079. diffs = []
  1080. for target in flat_geometry:
  1081. if isinstance(target, LineString) or isinstance(target, LinearRing) or isinstance(target, MultiLineString):
  1082. diffs.append(target.difference(toolgeo))
  1083. else:
  1084. log.warning("Not implemented.")
  1085. return unary_union(diffs)
  1086. def reset_fields(self):
  1087. self.ui.obj_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  1088. class CutoutUI:
  1089. toolName = _("Cutout PCB")
  1090. def __init__(self, layout, app):
  1091. self.app = app
  1092. self.decimals = self.app.decimals
  1093. self.layout = layout
  1094. # Title
  1095. title_label = QtWidgets.QLabel("%s" % self.toolName)
  1096. title_label.setStyleSheet("""
  1097. QLabel
  1098. {
  1099. font-size: 16px;
  1100. font-weight: bold;
  1101. }
  1102. """)
  1103. self.layout.addWidget(title_label)
  1104. self.layout.addWidget(QtWidgets.QLabel(''))
  1105. # Form Layout
  1106. grid0 = QtWidgets.QGridLayout()
  1107. grid0.setColumnStretch(0, 0)
  1108. grid0.setColumnStretch(1, 1)
  1109. self.layout.addLayout(grid0)
  1110. self.object_label = QtWidgets.QLabel('<b>%s:</b>' % _("Source Object"))
  1111. self.object_label.setToolTip('%s.' % _("Object to be cutout"))
  1112. grid0.addWidget(self.object_label, 0, 0, 1, 2)
  1113. # Object kind
  1114. self.kindlabel = QtWidgets.QLabel('%s:' % _('Kind'))
  1115. self.kindlabel.setToolTip(
  1116. _("Choice of what kind the object we want to cutout is.<BR>"
  1117. "- <B>Single</B>: contain a single PCB Gerber outline object.<BR>"
  1118. "- <B>Panel</B>: a panel PCB Gerber object, which is made\n"
  1119. "out of many individual PCB outlines.")
  1120. )
  1121. self.obj_kind_combo = RadioSet([
  1122. {"label": _("Single"), "value": "single"},
  1123. {"label": _("Panel"), "value": "panel"},
  1124. ])
  1125. grid0.addWidget(self.kindlabel, 1, 0)
  1126. grid0.addWidget(self.obj_kind_combo, 1, 1)
  1127. # Type of object to be cutout
  1128. self.type_obj_radio = RadioSet([
  1129. {"label": _("Gerber"), "value": "grb"},
  1130. {"label": _("Geometry"), "value": "geo"},
  1131. ])
  1132. self.type_obj_combo_label = QtWidgets.QLabel('%s:' % _("Type"))
  1133. self.type_obj_combo_label.setToolTip(
  1134. _("Specify the type of object to be cutout.\n"
  1135. "It can be of type: Gerber or Geometry.\n"
  1136. "What is selected here will dictate the kind\n"
  1137. "of objects that will populate the 'Object' combobox.")
  1138. )
  1139. grid0.addWidget(self.type_obj_combo_label, 2, 0)
  1140. grid0.addWidget(self.type_obj_radio, 2, 1)
  1141. # Object to be cutout
  1142. self.obj_combo = FCComboBox()
  1143. self.obj_combo.setModel(self.app.collection)
  1144. self.obj_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  1145. self.obj_combo.is_last = True
  1146. grid0.addWidget(self.obj_combo, 3, 0, 1, 2)
  1147. separator_line = QtWidgets.QFrame()
  1148. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  1149. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  1150. grid0.addWidget(separator_line, 4, 0, 1, 2)
  1151. grid0.addWidget(QtWidgets.QLabel(''), 5, 0, 1, 2)
  1152. self.param_label = QtWidgets.QLabel('<b>%s:</b>' % _("Tool Parameters"))
  1153. grid0.addWidget(self.param_label, 6, 0, 1, 2)
  1154. # Tool Diameter
  1155. self.dia = FCDoubleSpinner(callback=self.confirmation_message)
  1156. self.dia.set_precision(self.decimals)
  1157. self.dia.set_range(0.0000, 9999.9999)
  1158. self.dia_label = QtWidgets.QLabel('%s:' % _("Tool Diameter"))
  1159. self.dia_label.setToolTip(
  1160. _("Diameter of the tool used to cutout\n"
  1161. "the PCB shape out of the surrounding material.")
  1162. )
  1163. grid0.addWidget(self.dia_label, 8, 0)
  1164. grid0.addWidget(self.dia, 8, 1)
  1165. # Cut Z
  1166. cutzlabel = QtWidgets.QLabel('%s:' % _('Cut Z'))
  1167. cutzlabel.setToolTip(
  1168. _(
  1169. "Cutting depth (negative)\n"
  1170. "below the copper surface."
  1171. )
  1172. )
  1173. self.cutz_entry = FCDoubleSpinner(callback=self.confirmation_message)
  1174. self.cutz_entry.set_precision(self.decimals)
  1175. if machinist_setting == 0:
  1176. self.cutz_entry.setRange(-9999.9999, -0.00001)
  1177. else:
  1178. self.cutz_entry.setRange(-9999.9999, 9999.9999)
  1179. self.cutz_entry.setSingleStep(0.1)
  1180. grid0.addWidget(cutzlabel, 9, 0)
  1181. grid0.addWidget(self.cutz_entry, 9, 1)
  1182. # Multi-pass
  1183. self.mpass_cb = FCCheckBox('%s:' % _("Multi-Depth"))
  1184. self.mpass_cb.setToolTip(
  1185. _(
  1186. "Use multiple passes to limit\n"
  1187. "the cut depth in each pass. Will\n"
  1188. "cut multiple times until Cut Z is\n"
  1189. "reached."
  1190. )
  1191. )
  1192. self.maxdepth_entry = FCDoubleSpinner(callback=self.confirmation_message)
  1193. self.maxdepth_entry.set_precision(self.decimals)
  1194. self.maxdepth_entry.setRange(0, 9999.9999)
  1195. self.maxdepth_entry.setSingleStep(0.1)
  1196. self.maxdepth_entry.setToolTip(
  1197. _(
  1198. "Depth of each pass (positive)."
  1199. )
  1200. )
  1201. grid0.addWidget(self.mpass_cb, 10, 0)
  1202. grid0.addWidget(self.maxdepth_entry, 10, 1)
  1203. # Thin gaps
  1204. self.thin_cb = FCCheckBox('%s:' % _("Thin gaps"))
  1205. self.thin_cb.setToolTip(
  1206. _("Active only when multi depth is active (negative value)\n"
  1207. "If checked, it will mill de gaps until the specified depth."))
  1208. self.thin_depth_entry = FCDoubleSpinner(callback=self.confirmation_message)
  1209. self.thin_depth_entry.set_precision(self.decimals)
  1210. if machinist_setting == 0:
  1211. self.thin_depth_entry.setRange(-9999.9999, -0.00001)
  1212. else:
  1213. self.thin_depth_entry.setRange(-9999.9999, 9999.9999)
  1214. self.thin_depth_entry.setSingleStep(0.1)
  1215. self.thin_depth_entry.setToolTip(
  1216. _("Active only when multi depth is active (negative value)\n"
  1217. "If checked, it will mill de gaps until the specified depth."))
  1218. grid0.addWidget(self.thin_cb, 12, 0)
  1219. grid0.addWidget(self.thin_depth_entry, 12, 1)
  1220. self.ois_mpass_geo = OptionalInputSection(self.mpass_cb,
  1221. [
  1222. self.maxdepth_entry,
  1223. self.thin_cb,
  1224. self.thin_depth_entry
  1225. ])
  1226. # Margin
  1227. self.margin = FCDoubleSpinner(callback=self.confirmation_message)
  1228. self.margin.set_range(-9999.9999, 9999.9999)
  1229. self.margin.setSingleStep(0.1)
  1230. self.margin.set_precision(self.decimals)
  1231. self.margin_label = QtWidgets.QLabel('%s:' % _("Margin"))
  1232. self.margin_label.setToolTip(
  1233. _("Margin over bounds. A positive value here\n"
  1234. "will make the cutout of the PCB further from\n"
  1235. "the actual PCB border")
  1236. )
  1237. grid0.addWidget(self.margin_label, 14, 0)
  1238. grid0.addWidget(self.margin, 14, 1)
  1239. # Gapsize
  1240. self.gapsize = FCDoubleSpinner(callback=self.confirmation_message)
  1241. self.gapsize.set_precision(self.decimals)
  1242. self.gapsize_label = QtWidgets.QLabel('%s:' % _("Gap size"))
  1243. self.gapsize_label.setToolTip(
  1244. _("The size of the bridge gaps in the cutout\n"
  1245. "used to keep the board connected to\n"
  1246. "the surrounding material (the one \n"
  1247. "from which the PCB is cutout).")
  1248. )
  1249. grid0.addWidget(self.gapsize_label, 16, 0)
  1250. grid0.addWidget(self.gapsize, 16, 1)
  1251. # How gaps wil be rendered:
  1252. # lr - left + right
  1253. # tb - top + bottom
  1254. # 4 - left + right +top + bottom
  1255. # 2lr - 2*left + 2*right
  1256. # 2tb - 2*top + 2*bottom
  1257. # 8 - 2*left + 2*right +2*top + 2*bottom
  1258. # Surrounding convex box shape
  1259. self.convex_box = FCCheckBox('%s' % _("Convex Shape"))
  1260. # self.convex_box_label = QtWidgets.QLabel('%s' % _("Convex Sh."))
  1261. self.convex_box.setToolTip(
  1262. _("Create a convex shape surrounding the entire PCB.\n"
  1263. "Used only if the source object type is Gerber.")
  1264. )
  1265. grid0.addWidget(self.convex_box, 18, 0, 1, 2)
  1266. separator_line = QtWidgets.QFrame()
  1267. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  1268. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  1269. grid0.addWidget(separator_line, 20, 0, 1, 2)
  1270. grid0.addWidget(QtWidgets.QLabel(''), 22, 0, 1, 2)
  1271. # Title2
  1272. title_param_label = QtWidgets.QLabel("<b>%s %s</b>:" % (_('Automatic'), _("Bridge Gaps")))
  1273. title_param_label.setToolTip(
  1274. _("This section handle creation of automatic bridge gaps.")
  1275. )
  1276. grid0.addWidget(title_param_label, 24, 0, 1, 2)
  1277. # Gaps
  1278. gaps_label = QtWidgets.QLabel('%s:' % _('Gaps'))
  1279. gaps_label.setToolTip(
  1280. _("Number of gaps used for the Automatic cutout.\n"
  1281. "There can be maximum 8 bridges/gaps.\n"
  1282. "The choices are:\n"
  1283. "- None - no gaps\n"
  1284. "- lr - left + right\n"
  1285. "- tb - top + bottom\n"
  1286. "- 4 - left + right +top + bottom\n"
  1287. "- 2lr - 2*left + 2*right\n"
  1288. "- 2tb - 2*top + 2*bottom\n"
  1289. "- 8 - 2*left + 2*right +2*top + 2*bottom")
  1290. )
  1291. # gaps_label.setMinimumWidth(60)
  1292. self.gaps = FCComboBox()
  1293. gaps_items = ['None', 'LR', 'TB', '4', '2LR', '2TB', '8']
  1294. for it in gaps_items:
  1295. self.gaps.addItem(it)
  1296. # self.gaps.setStyleSheet('background-color: rgb(255,255,255)')
  1297. grid0.addWidget(gaps_label, 26, 0)
  1298. grid0.addWidget(self.gaps, 26, 1)
  1299. # Buttons
  1300. self.ff_cutout_object_btn = FCButton(_("Generate Geometry"))
  1301. self.ff_cutout_object_btn.setIcon(QtGui.QIcon(self.app.resource_location + '/irregular32.png'))
  1302. self.ff_cutout_object_btn.setToolTip(
  1303. _("Cutout the selected object.\n"
  1304. "The cutout shape can be of any shape.\n"
  1305. "Useful when the PCB has a non-rectangular shape.")
  1306. )
  1307. self.ff_cutout_object_btn.setStyleSheet("""
  1308. QPushButton
  1309. {
  1310. font-weight: bold;
  1311. }
  1312. """)
  1313. grid0.addWidget(self.ff_cutout_object_btn, 28, 0, 1, 2)
  1314. self.rect_cutout_object_btn = FCButton(_("Generate Geometry"))
  1315. self.rect_cutout_object_btn.setIcon(QtGui.QIcon(self.app.resource_location + '/rectangle32.png'))
  1316. self.rect_cutout_object_btn.setToolTip(
  1317. _("Cutout the selected object.\n"
  1318. "The resulting cutout shape is\n"
  1319. "always a rectangle shape and it will be\n"
  1320. "the bounding box of the Object.")
  1321. )
  1322. self.rect_cutout_object_btn.setStyleSheet("""
  1323. QPushButton
  1324. {
  1325. font-weight: bold;
  1326. }
  1327. """)
  1328. grid0.addWidget(self.rect_cutout_object_btn, 30, 0, 1, 2)
  1329. separator_line = QtWidgets.QFrame()
  1330. separator_line.setFrameShape(QtWidgets.QFrame.HLine)
  1331. separator_line.setFrameShadow(QtWidgets.QFrame.Sunken)
  1332. grid0.addWidget(separator_line, 32, 0, 1, 2)
  1333. grid0.addWidget(QtWidgets.QLabel(''), 34, 0, 1, 2)
  1334. # MANUAL BRIDGE GAPS
  1335. title_manual_label = QtWidgets.QLabel("<b>%s %s</b>:" % (_('Manual'), _("Bridge Gaps")))
  1336. title_manual_label.setToolTip(
  1337. _("This section handle creation of manual bridge gaps.\n"
  1338. "This is done by mouse clicking on the perimeter of the\n"
  1339. "Geometry object that is used as a cutout object. ")
  1340. )
  1341. grid0.addWidget(title_manual_label, 36, 0, 1, 2)
  1342. # Big Cursor
  1343. big_cursor_label = QtWidgets.QLabel('%s:' % _("Big cursor"))
  1344. big_cursor_label.setToolTip(
  1345. _("Use a big cursor when adding manual gaps."))
  1346. self.big_cursor_cb = FCCheckBox()
  1347. grid0.addWidget(big_cursor_label, 38, 0)
  1348. grid0.addWidget(self.big_cursor_cb, 38, 1)
  1349. # Generate a surrounding Geometry object
  1350. self.man_geo_creation_btn = FCButton(_("Generate Manual Geometry"))
  1351. self.man_geo_creation_btn.setIcon(QtGui.QIcon(self.app.resource_location + '/rectangle32.png'))
  1352. self.man_geo_creation_btn.setToolTip(
  1353. _("If the object to be cutout is a Gerber\n"
  1354. "first create a Geometry that surrounds it,\n"
  1355. "to be used as the cutout, if one doesn't exist yet.\n"
  1356. "Select the source Gerber file in the top object combobox.")
  1357. )
  1358. # self.man_geo_creation_btn.setStyleSheet("""
  1359. # QPushButton
  1360. # {
  1361. # font-weight: bold;
  1362. # }
  1363. # """)
  1364. grid0.addWidget(self.man_geo_creation_btn, 40, 0, 1, 2)
  1365. # Manual Geo Object
  1366. self.man_object_combo = FCComboBox()
  1367. self.man_object_combo.setModel(self.app.collection)
  1368. self.man_object_combo.setRootModelIndex(self.app.collection.index(2, 0, QtCore.QModelIndex()))
  1369. self.man_object_combo.is_last = True
  1370. self.man_object_combo.obj_type = "Geometry"
  1371. self.man_object_label = QtWidgets.QLabel('%s:' % _("Manual cutout Geometry"))
  1372. self.man_object_label.setToolTip(
  1373. _("Geometry object used to create the manual cutout.")
  1374. )
  1375. # self.man_object_label.setMinimumWidth(60)
  1376. grid0.addWidget(self.man_object_label, 42, 0, 1, 2)
  1377. grid0.addWidget(self.man_object_combo, 44, 0, 1, 2)
  1378. self.man_gaps_creation_btn = FCButton(_("Manual Add Bridge Gaps"))
  1379. self.man_gaps_creation_btn.setIcon(QtGui.QIcon(self.app.resource_location + '/gaps32.png'))
  1380. self.man_gaps_creation_btn.setToolTip(
  1381. _("Use the left mouse button (LMB) click\n"
  1382. "to create a bridge gap to separate the PCB from\n"
  1383. "the surrounding material.\n"
  1384. "The LMB click has to be done on the perimeter of\n"
  1385. "the Geometry object used as a cutout geometry.")
  1386. )
  1387. self.man_gaps_creation_btn.setStyleSheet("""
  1388. QPushButton
  1389. {
  1390. font-weight: bold;
  1391. }
  1392. """)
  1393. grid0.addWidget(self.man_gaps_creation_btn, 46, 0, 1, 2)
  1394. self.layout.addStretch()
  1395. # ## Reset Tool
  1396. self.reset_button = FCButton(_("Reset Tool"))
  1397. self.reset_button.setIcon(QtGui.QIcon(self.app.resource_location + '/reset32.png'))
  1398. self.reset_button.setToolTip(
  1399. _("Will reset the tool parameters.")
  1400. )
  1401. self.reset_button.setStyleSheet("""
  1402. QPushButton
  1403. {
  1404. font-weight: bold;
  1405. }
  1406. """)
  1407. self.layout.addWidget(self.reset_button)
  1408. # ############################ FINSIHED GUI ###################################
  1409. # #############################################################################
  1410. def confirmation_message(self, accepted, minval, maxval):
  1411. if accepted is False:
  1412. self.app.inform[str, bool].emit('[WARNING_NOTCL] %s: [%.*f, %.*f]' % (_("Edited value is out of range"),
  1413. self.decimals,
  1414. minval,
  1415. self.decimals,
  1416. maxval), False)
  1417. else:
  1418. self.app.inform[str, bool].emit('[success] %s' % _("Edited value is within limits."), False)
  1419. def confirmation_message_int(self, accepted, minval, maxval):
  1420. if accepted is False:
  1421. self.app.inform[str, bool].emit('[WARNING_NOTCL] %s: [%d, %d]' %
  1422. (_("Edited value is out of range"), minval, maxval), False)
  1423. else:
  1424. self.app.inform[str, bool].emit('[success] %s' % _("Edited value is within limits."), False)