FlatCAMObj.py 307 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # http://flatcam.org #
  4. # Author: Juan Pablo Caram (c) #
  5. # Date: 2/5/2014 #
  6. # MIT Licence #
  7. # ##########################################################
  8. # ##########################################################
  9. # File modified by: Marius Stanciu #
  10. # ##########################################################
  11. from shapely.geometry import Point, Polygon, MultiPolygon, MultiLineString, LineString, LinearRing
  12. from shapely.ops import cascaded_union
  13. import shapely.affinity as affinity
  14. from copy import deepcopy, copy
  15. from io import StringIO
  16. import traceback
  17. import inspect # TODO: For debugging only.
  18. from datetime import datetime
  19. from flatcamEditors.FlatCAMTextEditor import TextEditor
  20. from flatcamGUI.ObjectUI import *
  21. from FlatCAMCommon import LoudDict
  22. from flatcamGUI.PlotCanvasLegacy import ShapeCollectionLegacy
  23. from flatcamParsers.ParseExcellon import Excellon
  24. from flatcamParsers.ParseGerber import Gerber
  25. from camlib import Geometry, CNCjob
  26. import FlatCAMApp
  27. import tkinter as tk
  28. import os, sys, itertools
  29. import ezdxf
  30. import math
  31. import numpy as np
  32. import gettext
  33. import FlatCAMTranslation as fcTranslate
  34. import builtins
  35. fcTranslate.apply_language('strings')
  36. if '_' not in builtins.__dict__:
  37. _ = gettext.gettext
  38. # Interrupts plotting process if FlatCAMObj has been deleted
  39. class ObjectDeleted(Exception):
  40. pass
  41. class ValidationError(Exception):
  42. def __init__(self, message, errors):
  43. super().__init__(message)
  44. self.errors = errors
  45. # #######################################
  46. # # FlatCAMObj ##
  47. # #######################################
  48. class FlatCAMObj(QtCore.QObject):
  49. """
  50. Base type of objects handled in FlatCAM. These become interactive
  51. in the GUI, can be plotted, and their options can be modified
  52. by the user in their respective forms.
  53. """
  54. # Instance of the application to which these are related.
  55. # The app should set this value.
  56. app = None
  57. # signal to plot a single object
  58. plot_single_object = QtCore.pyqtSignal()
  59. def __init__(self, name):
  60. """
  61. Constructor.
  62. :param name: Name of the object given by the user.
  63. :return: FlatCAMObj
  64. """
  65. QtCore.QObject.__init__(self)
  66. # View
  67. self.ui = None
  68. self.options = LoudDict(name=name)
  69. self.options.set_change_callback(self.on_options_change)
  70. self.form_fields = {}
  71. # store here the default data for Geometry Data
  72. self.default_data = {}
  73. # 2D mode
  74. # Axes must exist and be attached to canvas.
  75. self.axes = None
  76. self.kind = None # Override with proper name
  77. if self.app.is_legacy is False:
  78. self.shapes = self.app.plotcanvas.new_shape_group()
  79. else:
  80. self.shapes = ShapeCollectionLegacy(obj=self, app=self.app, name=name)
  81. self.mark_shapes = dict()
  82. self.item = None # Link with project view item
  83. self.muted_ui = False
  84. self.deleted = False
  85. try:
  86. self._drawing_tolerance = float(self.app.defaults["global_tolerance"]) if \
  87. self.app.defaults["global_tolerance"] else 0.01
  88. except ValueError:
  89. self._drawing_tolerance = 0.01
  90. self.isHovering = False
  91. self.notHovering = True
  92. # self.units = 'IN'
  93. self.units = self.app.defaults['units']
  94. self.plot_single_object.connect(self.single_object_plot)
  95. def __del__(self):
  96. pass
  97. def __str__(self):
  98. return "<FlatCAMObj({:12s}): {:20s}>".format(self.kind, self.options["name"])
  99. def from_dict(self, d):
  100. """
  101. This supersedes ``from_dict`` in derived classes. Derived classes
  102. must inherit from FlatCAMObj first, then from derivatives of Geometry.
  103. ``self.options`` is only updated, not overwritten. This ensures that
  104. options set by the app do not vanish when reading the objects
  105. from a project file.
  106. :param d: Dictionary with attributes to set.
  107. :return: None
  108. """
  109. for attr in self.ser_attrs:
  110. if attr == 'options':
  111. self.options.update(d[attr])
  112. else:
  113. try:
  114. setattr(self, attr, d[attr])
  115. except KeyError:
  116. log.debug("FlatCAMObj.from_dict() --> KeyError: %s. "
  117. "Means that we are loading an old project that don't"
  118. "have all attributes in the latest FlatCAM." % str(attr))
  119. pass
  120. def on_options_change(self, key):
  121. # Update form on programmatically options change
  122. self.set_form_item(key)
  123. # Set object visibility
  124. if key == 'plot':
  125. self.visible = self.options['plot']
  126. self.optionChanged.emit(key)
  127. def set_ui(self, ui):
  128. self.ui = ui
  129. self.form_fields = {"name": self.ui.name_entry}
  130. assert isinstance(self.ui, ObjectUI)
  131. self.ui.name_entry.returnPressed.connect(self.on_name_activate)
  132. try:
  133. # it will raise an exception for those FlatCAM objects that do not build UI with the common elements
  134. self.ui.offset_button.clicked.connect(self.on_offset_button_click)
  135. except (TypeError, AttributeError):
  136. pass
  137. try:
  138. self.ui.scale_button.clicked.connect(self.on_scale_button_click)
  139. except (TypeError, AttributeError):
  140. pass
  141. try:
  142. self.ui.offsetvector_entry.returnPressed.connect(self.on_offset_button_click)
  143. except (TypeError, AttributeError):
  144. pass
  145. try:
  146. self.ui.scale_entry.returnPressed.connect(self.on_scale_button_click)
  147. except (TypeError, AttributeError):
  148. pass
  149. # self.ui.skew_button.clicked.connect(self.on_skew_button_click)
  150. def build_ui(self):
  151. """
  152. Sets up the UI/form for this object. Show the UI
  153. in the App.
  154. :return: None
  155. :rtype: None
  156. """
  157. self.muted_ui = True
  158. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + "--> FlatCAMObj.build_ui()")
  159. # Remove anything else in the box
  160. # box_children = self.app.ui.notebook.selected_contents.get_children()
  161. # for child in box_children:
  162. # self.app.ui.notebook.selected_contents.remove(child)
  163. # while self.app.ui.selected_layout.count():
  164. # self.app.ui.selected_layout.takeAt(0)
  165. # Put in the UI
  166. # box_selected.pack_start(sw, True, True, 0)
  167. # self.app.ui.notebook.selected_contents.add(self.ui)
  168. # self.app.ui.selected_layout.addWidget(self.ui)
  169. try:
  170. self.app.ui.selected_scroll_area.takeWidget()
  171. except Exception as e:
  172. self.app.log.debug("FlatCAMObj.build_ui() --> Nothing to remove: %s" % str(e))
  173. self.app.ui.selected_scroll_area.setWidget(self.ui)
  174. self.muted_ui = False
  175. def on_name_activate(self, silent=None):
  176. old_name = copy(self.options["name"])
  177. new_name = self.ui.name_entry.get_value()
  178. if new_name != old_name:
  179. # update the SHELL auto-completer model data
  180. try:
  181. self.app.myKeywords.remove(old_name)
  182. self.app.myKeywords.append(new_name)
  183. self.app.shell._edit.set_model_data(self.app.myKeywords)
  184. self.app.ui.code_editor.set_model_data(self.app.myKeywords)
  185. except Exception as e:
  186. log.debug("on_name_activate() --> Could not remove the old object name from auto-completer model list")
  187. self.options["name"] = self.ui.name_entry.get_value()
  188. self.default_data["name"] = self.ui.name_entry.get_value()
  189. self.app.collection.update_view()
  190. if silent:
  191. self.app.inform.emit('[success] %s: %s %s: %s' % (
  192. _("Name changed from"), str(old_name), _("to"), str(new_name)
  193. )
  194. )
  195. def on_offset_button_click(self):
  196. self.app.report_usage("obj_on_offset_button")
  197. self.read_form()
  198. vector_val = self.ui.offsetvector_entry.get_value()
  199. def worker_task():
  200. with self.app.proc_container.new(_("Offsetting...")):
  201. self.offset(vector_val)
  202. self.app.proc_container.update_view_text('')
  203. with self.app.proc_container.new('%s...' % _("Plotting")):
  204. self.plot()
  205. self.app.object_changed.emit(self)
  206. self.app.worker_task.emit({'fcn': worker_task, 'params': []})
  207. def on_scale_button_click(self):
  208. self.app.report_usage("obj_on_scale_button")
  209. self.read_form()
  210. factor = self.ui.scale_entry.get_value()
  211. def worker_task():
  212. with self.app.proc_container.new(_("Scaling...")):
  213. self.scale(factor)
  214. self.app.proc_container.update_view_text('')
  215. with self.app.proc_container.new('%s...' % _("Plotting")):
  216. self.plot()
  217. self.app.object_changed.emit(self)
  218. self.app.worker_task.emit({'fcn': worker_task, 'params': []})
  219. def on_skew_button_click(self):
  220. self.app.report_usage("obj_on_skew_button")
  221. self.read_form()
  222. x_angle = self.ui.xangle_entry.get_value()
  223. y_angle = self.ui.yangle_entry.get_value()
  224. def worker_task():
  225. with self.app.proc_container.new(_("Skewing...")):
  226. self.skew(x_angle, y_angle)
  227. self.app.proc_container.update_view_text('')
  228. with self.app.proc_container.new('%s...' % _("Plotting")):
  229. self.plot()
  230. self.app.object_changed.emit(self)
  231. self.app.worker_task.emit({'fcn': worker_task, 'params': []})
  232. def to_form(self):
  233. """
  234. Copies options to the UI form.
  235. :return: None
  236. """
  237. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMObj.to_form()")
  238. for option in self.options:
  239. try:
  240. self.set_form_item(option)
  241. except Exception:
  242. self.app.log.warning("Unexpected error:", sys.exc_info())
  243. def read_form(self):
  244. """
  245. Reads form into ``self.options``.
  246. :return: None
  247. :rtype: None
  248. """
  249. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + "--> FlatCAMObj.read_form()")
  250. for option in self.options:
  251. try:
  252. self.read_form_item(option)
  253. except Exception:
  254. self.app.log.warning("Unexpected error:", sys.exc_info())
  255. def set_form_item(self, option):
  256. """
  257. Copies the specified option to the UI form.
  258. :param option: Name of the option (Key in ``self.options``).
  259. :type option: str
  260. :return: None
  261. """
  262. try:
  263. self.form_fields[option].set_value(self.options[option])
  264. except KeyError:
  265. # self.app.log.warn("Tried to set an option or field that does not exist: %s" % option)
  266. pass
  267. def read_form_item(self, option):
  268. """
  269. Reads the specified option from the UI form into ``self.options``.
  270. :param option: Name of the option.
  271. :type option: str
  272. :return: None
  273. """
  274. try:
  275. self.options[option] = self.form_fields[option].get_value()
  276. except KeyError:
  277. self.app.log.warning("Failed to read option from field: %s" % option)
  278. def plot(self):
  279. """
  280. Plot this object (Extend this method to implement the actual plotting).
  281. Call this in descendants before doing the plotting.
  282. :return: Whether to continue plotting or not depending on the "plot" option.
  283. :rtype: bool
  284. """
  285. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMObj.plot()")
  286. if self.deleted:
  287. return False
  288. self.clear()
  289. return True
  290. def single_object_plot(self):
  291. def plot_task():
  292. with self.app.proc_container.new('%s...' % _("Plotting")):
  293. self.plot()
  294. self.app.object_changed.emit(self)
  295. self.app.worker_task.emit({'fcn': plot_task, 'params': []})
  296. def serialize(self):
  297. """
  298. Returns a representation of the object as a dictionary so
  299. it can be later exported as JSON. Override this method.
  300. :return: Dictionary representing the object
  301. :rtype: dict
  302. """
  303. return
  304. def deserialize(self, obj_dict):
  305. """
  306. Re-builds an object from its serialized version.
  307. :param obj_dict: Dictionary representing a FlatCAMObj
  308. :type obj_dict: dict
  309. :return: None
  310. """
  311. return
  312. def add_shape(self, **kwargs):
  313. if self.deleted:
  314. raise ObjectDeleted()
  315. else:
  316. key = self.shapes.add(tolerance=self.drawing_tolerance, **kwargs)
  317. return key
  318. def add_mark_shape(self, apid, **kwargs):
  319. if self.deleted:
  320. raise ObjectDeleted()
  321. else:
  322. key = self.mark_shapes[apid].add(tolerance=self.drawing_tolerance, layer=0, **kwargs)
  323. return key
  324. def update_filters(self, last_ext, filter_string):
  325. """
  326. Will modify the filter string that is used when saving a file (a list of file extensions) to have the last
  327. used file extension as the first one in the special string
  328. :param last_ext: the file extension that was last used to save a file
  329. :param filter_string: a key in self.app.defaults that holds a string with the filter from QFileDialog
  330. used when saving a file
  331. :return: None
  332. """
  333. filters = copy(self.app.defaults[filter_string])
  334. filter_list = filters.split(';;')
  335. filter_list_enum_1 = enumerate(filter_list)
  336. # search for the last element in the filters which should always be "All Files (*.*)"
  337. last_elem = ''
  338. for elem in list(filter_list_enum_1):
  339. if '(*.*)' in elem[1]:
  340. last_elem = filter_list.pop(elem[0])
  341. filter_list_enum = enumerate(filter_list)
  342. for elem in list(filter_list_enum):
  343. if '.' + last_ext in elem[1]:
  344. used_ext = filter_list.pop(elem[0])
  345. # sort the extensions back
  346. filter_list.sort(key=lambda x: x.rpartition('.')[2])
  347. # add as a first element the last used extension
  348. filter_list.insert(0, used_ext)
  349. # add back the element that should always be the last (All Files)
  350. filter_list.append(last_elem)
  351. self.app.defaults[filter_string] = ';;'.join(filter_list)
  352. return
  353. @staticmethod
  354. def poly2rings(poly):
  355. return [poly.exterior] + [interior for interior in poly.interiors]
  356. @property
  357. def visible(self):
  358. return self.shapes.visible
  359. @visible.setter
  360. def visible(self, value, threaded=True):
  361. log.debug("FlatCAMObj.visible()")
  362. def worker_task(app_obj):
  363. self.shapes.visible = value
  364. if self.app.is_legacy is False:
  365. # Not all object types has annotations
  366. try:
  367. self.annotation.visible = value
  368. except Exception as e:
  369. pass
  370. if threaded is False:
  371. worker_task(app_obj=self.app)
  372. else:
  373. self.app.worker_task.emit({'fcn': worker_task, 'params': [self]})
  374. @property
  375. def drawing_tolerance(self):
  376. self.units = self.app.defaults['units'].upper()
  377. tol = self._drawing_tolerance if self.units == 'MM' or not self.units else self._drawing_tolerance / 25.4
  378. return tol
  379. @drawing_tolerance.setter
  380. def drawing_tolerance(self, value):
  381. self.units = self.app.defaults['units'].upper()
  382. self._drawing_tolerance = value if self.units == 'MM' or not self.units else value / 25.4
  383. def clear(self, update=False):
  384. self.shapes.clear(update)
  385. # Not all object types has annotations
  386. try:
  387. self.annotation.clear(update)
  388. except AttributeError:
  389. pass
  390. def delete(self):
  391. # Free resources
  392. del self.ui
  393. del self.options
  394. # Set flag
  395. self.deleted = True
  396. class FlatCAMGerber(FlatCAMObj, Gerber):
  397. """
  398. Represents Gerber code.
  399. """
  400. optionChanged = QtCore.pyqtSignal(str)
  401. replotApertures = QtCore.pyqtSignal()
  402. ui_type = GerberObjectUI
  403. def merge(self, grb_list, grb_final):
  404. """
  405. Merges the geometry of objects in geo_list into
  406. the geometry of geo_final.
  407. :param grb_list: List of FlatCAMGerber Objects to join.
  408. :param grb_final: Destination FlatCAMGeometry object.
  409. :return: None
  410. """
  411. if grb_final.solid_geometry is None:
  412. grb_final.solid_geometry = []
  413. grb_final.follow_geometry = []
  414. if not grb_final.apertures:
  415. grb_final.apertures = {}
  416. if type(grb_final.solid_geometry) is not list:
  417. grb_final.solid_geometry = [grb_final.solid_geometry]
  418. grb_final.follow_geometry = [grb_final.follow_geometry]
  419. for grb in grb_list:
  420. # Expand lists
  421. if type(grb) is list:
  422. FlatCAMGerber.merge(grb, grb_final)
  423. else: # If not list, just append
  424. for option in grb.options:
  425. if option is not 'name':
  426. try:
  427. grb_final.options[option] = grb.options[option]
  428. except KeyError:
  429. log.warning("Failed to copy option.", option)
  430. try:
  431. for geos in grb.solid_geometry:
  432. grb_final.solid_geometry.append(geos)
  433. grb_final.follow_geometry.append(geos)
  434. except TypeError:
  435. grb_final.solid_geometry.append(grb.solid_geometry)
  436. grb_final.follow_geometry.append(grb.solid_geometry)
  437. for ap in grb.apertures:
  438. if ap not in grb_final.apertures:
  439. grb_final.apertures[ap] = grb.apertures[ap]
  440. else:
  441. # create a list of integers out of the grb.apertures keys and find the max of that value
  442. # then, the aperture duplicate is assigned an id value incremented with 1,
  443. # and finally made string because the apertures dict keys are strings
  444. max_ap = str(max([int(k) for k in grb_final.apertures.keys()]) + 1)
  445. grb_final.apertures[max_ap] = {}
  446. grb_final.apertures[max_ap]['geometry'] = []
  447. for k, v in grb.apertures[ap].items():
  448. grb_final.apertures[max_ap][k] = deepcopy(v)
  449. grb_final.solid_geometry = MultiPolygon(grb_final.solid_geometry)
  450. grb_final.follow_geometry = MultiPolygon(grb_final.follow_geometry)
  451. def __init__(self, name):
  452. Gerber.__init__(self, steps_per_circle=int(self.app.defaults["gerber_circle_steps"]))
  453. FlatCAMObj.__init__(self, name)
  454. self.kind = "gerber"
  455. # The 'name' is already in self.options from FlatCAMObj
  456. # Automatically updates the UI
  457. self.options.update({
  458. "plot": True,
  459. "multicolored": False,
  460. "solid": False,
  461. "tool_type": 'circular',
  462. "vtipdia": 0.1,
  463. "vtipangle": 30,
  464. "vcutz": -0.05,
  465. "isotooldia": 0.016,
  466. "isopasses": 1,
  467. "isooverlap": 0.15,
  468. "milling_type": "cl",
  469. "combine_passes": True,
  470. "noncoppermargin": 0.0,
  471. "noncopperrounded": False,
  472. "bboxmargin": 0.0,
  473. "bboxrounded": False,
  474. "aperture_display": False,
  475. "follow": False,
  476. "iso_scope": 'all',
  477. "iso_type": 'full'
  478. })
  479. # type of isolation: 0 = exteriors, 1 = interiors, 2 = complete isolation (both interiors and exteriors)
  480. self.iso_type = 2
  481. self.multigeo = False
  482. self.follow = False
  483. self.apertures_row = 0
  484. # store the source file here
  485. self.source_file = ""
  486. # list of rows with apertures plotted
  487. self.marked_rows = []
  488. # Number of decimals to be used by tools in this class
  489. self.decimals = 4
  490. # Mouse events
  491. self.mr = None
  492. # dict to store the polygons selected for isolation; key is the shape added to be plotted and value is the poly
  493. self.poly_dict = dict()
  494. # store the status of grid snapping
  495. self.grid_status_memory = None
  496. # Attributes to be included in serialization
  497. # Always append to it because it carries contents
  498. # from predecessors.
  499. self.ser_attrs += ['options', 'kind']
  500. def set_ui(self, ui):
  501. """
  502. Maps options with GUI inputs.
  503. Connects GUI events to methods.
  504. :param ui: GUI object.
  505. :type ui: GerberObjectUI
  506. :return: None
  507. """
  508. FlatCAMObj.set_ui(self, ui)
  509. FlatCAMApp.App.log.debug("FlatCAMGerber.set_ui()")
  510. self.units = self.app.defaults['units'].upper()
  511. if self.units == 'MM':
  512. self.decimals = 2
  513. else:
  514. self.decimals = 4
  515. self.replotApertures.connect(self.on_mark_cb_click_table)
  516. self.form_fields.update({
  517. "plot": self.ui.plot_cb,
  518. "multicolored": self.ui.multicolored_cb,
  519. "solid": self.ui.solid_cb,
  520. "tool_type": self.ui.tool_type_radio,
  521. "vtipdia": self.ui.tipdia_spinner,
  522. "vtipangle": self.ui.tipangle_spinner,
  523. "vcutz": self.ui.cutz_spinner,
  524. "isotooldia": self.ui.iso_tool_dia_entry,
  525. "isopasses": self.ui.iso_width_entry,
  526. "isooverlap": self.ui.iso_overlap_entry,
  527. "milling_type": self.ui.milling_type_radio,
  528. "combine_passes": self.ui.combine_passes_cb,
  529. "noncoppermargin": self.ui.noncopper_margin_entry,
  530. "noncopperrounded": self.ui.noncopper_rounded_cb,
  531. "bboxmargin": self.ui.bbmargin_entry,
  532. "bboxrounded": self.ui.bbrounded_cb,
  533. "aperture_display": self.ui.aperture_table_visibility_cb,
  534. "follow": self.ui.follow_cb,
  535. "iso_scope": self.ui.iso_scope_radio,
  536. "iso_type": self.ui.iso_type_radio
  537. })
  538. # Fill form fields only on object create
  539. self.to_form()
  540. assert isinstance(self.ui, GerberObjectUI)
  541. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  542. self.ui.solid_cb.stateChanged.connect(self.on_solid_cb_click)
  543. self.ui.multicolored_cb.stateChanged.connect(self.on_multicolored_cb_click)
  544. self.ui.generate_iso_button.clicked.connect(self.on_iso_button_click)
  545. self.ui.generate_ncc_button.clicked.connect(self.app.ncclear_tool.run)
  546. self.ui.generate_cutout_button.clicked.connect(self.app.cutout_tool.run)
  547. self.ui.generate_bb_button.clicked.connect(self.on_generatebb_button_click)
  548. self.ui.generate_noncopper_button.clicked.connect(self.on_generatenoncopper_button_click)
  549. self.ui.aperture_table_visibility_cb.stateChanged.connect(self.on_aperture_table_visibility_change)
  550. self.ui.follow_cb.stateChanged.connect(self.on_follow_cb_click)
  551. # set the model for the Area Exception comboboxes
  552. self.ui.obj_combo.setModel(self.app.collection)
  553. self.ui.obj_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  554. self.ui.obj_combo.setCurrentIndex(1)
  555. self.ui.type_obj_combo.currentIndexChanged.connect(self.on_type_obj_index_changed)
  556. self.ui.tool_type_radio.activated_custom.connect(self.on_tool_type_change)
  557. # establish visibility for the GUI elements found in the slot function
  558. self.ui.tool_type_radio.activated_custom.emit(self.options['tool_type'])
  559. # Show/Hide Advanced Options
  560. if self.app.defaults["global_app_level"] == 'b':
  561. self.ui.level.setText('<span style="color:green;"><b>%s</b></span>' % _('Basic'))
  562. self.options['tool_type'] = 'circular'
  563. self.ui.tool_type_label.hide()
  564. self.ui.tool_type_radio.hide()
  565. self.ui.tipdialabel.hide()
  566. self.ui.tipdia_spinner.hide()
  567. self.ui.tipanglelabel.hide()
  568. self.ui.tipangle_spinner.hide()
  569. self.ui.cutzlabel.hide()
  570. self.ui.cutz_spinner.hide()
  571. self.ui.apertures_table_label.hide()
  572. self.ui.aperture_table_visibility_cb.hide()
  573. self.ui.milling_type_label.hide()
  574. self.ui.milling_type_radio.hide()
  575. self.ui.iso_type_radio.hide()
  576. self.ui.follow_cb.hide()
  577. self.ui.except_cb.setChecked(False)
  578. self.ui.except_cb.hide()
  579. else:
  580. self.ui.level.setText('<span style="color:red;"><b>%s</b></span>' % _('Advanced'))
  581. self.ui.tipdia_spinner.valueChanged.connect(self.on_calculate_tooldia)
  582. self.ui.tipangle_spinner.valueChanged.connect(self.on_calculate_tooldia)
  583. self.ui.cutz_spinner.valueChanged.connect(self.on_calculate_tooldia)
  584. if self.app.defaults["gerber_buffering"] == 'no':
  585. self.ui.create_buffer_button.show()
  586. try:
  587. self.ui.create_buffer_button.clicked.disconnect(self.on_generate_buffer)
  588. except TypeError:
  589. pass
  590. self.ui.create_buffer_button.clicked.connect(self.on_generate_buffer)
  591. else:
  592. self.ui.create_buffer_button.hide()
  593. # set initial state of the aperture table and associated widgets
  594. self.on_aperture_table_visibility_change()
  595. self.build_ui()
  596. def on_calculate_tooldia(self):
  597. try:
  598. tdia = float(self.ui.tipdia_spinner.get_value())
  599. except Exception as e:
  600. return
  601. try:
  602. dang = float(self.ui.tipangle_spinner.get_value())
  603. except Exception as e:
  604. return
  605. try:
  606. cutz = float(self.ui.cutz_spinner.get_value())
  607. except Exception as e:
  608. return
  609. cutz *= -1
  610. if cutz < 0:
  611. cutz *= -1
  612. half_tip_angle = dang / 2
  613. tool_diameter = tdia + (2 * cutz * math.tan(math.radians(half_tip_angle)))
  614. self.ui.iso_tool_dia_entry.set_value(tool_diameter)
  615. def on_type_obj_index_changed(self, index):
  616. obj_type = self.ui.type_obj_combo.currentIndex()
  617. self.ui.obj_combo.setRootModelIndex(self.app.collection.index(obj_type, 0, QtCore.QModelIndex()))
  618. self.ui.obj_combo.setCurrentIndex(0)
  619. def on_tool_type_change(self, state):
  620. if state == 'circular':
  621. self.ui.tipdialabel.hide()
  622. self.ui.tipdia_spinner.hide()
  623. self.ui.tipanglelabel.hide()
  624. self.ui.tipangle_spinner.hide()
  625. self.ui.cutzlabel.hide()
  626. self.ui.cutz_spinner.hide()
  627. self.ui.iso_tool_dia_entry.setDisabled(False)
  628. # update the value in the self.iso_tool_dia_entry once this is selected
  629. self.ui.iso_tool_dia_entry.set_value(self.options['isotooldia'])
  630. else:
  631. self.ui.tipdialabel.show()
  632. self.ui.tipdia_spinner.show()
  633. self.ui.tipanglelabel.show()
  634. self.ui.tipangle_spinner.show()
  635. self.ui.cutzlabel.show()
  636. self.ui.cutz_spinner.show()
  637. self.ui.iso_tool_dia_entry.setDisabled(True)
  638. # update the value in the self.iso_tool_dia_entry once this is selected
  639. self.on_calculate_tooldia()
  640. def build_ui(self):
  641. FlatCAMObj.build_ui(self)
  642. try:
  643. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  644. self.ui.apertures_table.itemChanged.disconnect()
  645. except (TypeError, AttributeError):
  646. pass
  647. self.apertures_row = 0
  648. aper_no = self.apertures_row + 1
  649. sort = []
  650. for k, v in list(self.apertures.items()):
  651. sort.append(int(k))
  652. sorted_apertures = sorted(sort)
  653. # sort = []
  654. # for k, v in list(self.aperture_macros.items()):
  655. # sort.append(k)
  656. # sorted_macros = sorted(sort)
  657. # n = len(sorted_apertures) + len(sorted_macros)
  658. n = len(sorted_apertures)
  659. self.ui.apertures_table.setRowCount(n)
  660. for ap_code in sorted_apertures:
  661. ap_code = str(ap_code)
  662. ap_id_item = QtWidgets.QTableWidgetItem('%d' % int(self.apertures_row + 1))
  663. ap_id_item.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  664. self.ui.apertures_table.setItem(self.apertures_row, 0, ap_id_item) # Tool name/id
  665. ap_code_item = QtWidgets.QTableWidgetItem(ap_code)
  666. ap_code_item.setFlags(QtCore.Qt.ItemIsEnabled)
  667. ap_type_item = QtWidgets.QTableWidgetItem(str(self.apertures[ap_code]['type']))
  668. ap_type_item.setFlags(QtCore.Qt.ItemIsEnabled)
  669. if str(self.apertures[ap_code]['type']) == 'R' or str(self.apertures[ap_code]['type']) == 'O':
  670. ap_dim_item = QtWidgets.QTableWidgetItem(
  671. '%.*f, %.*f' % (self.decimals, self.apertures[ap_code]['width'],
  672. self.decimals, self.apertures[ap_code]['height']
  673. )
  674. )
  675. ap_dim_item.setFlags(QtCore.Qt.ItemIsEnabled)
  676. elif str(self.apertures[ap_code]['type']) == 'P':
  677. ap_dim_item = QtWidgets.QTableWidgetItem(
  678. '%.*f, %.*f' % (self.decimals, self.apertures[ap_code]['diam'],
  679. self.decimals, self.apertures[ap_code]['nVertices'])
  680. )
  681. ap_dim_item.setFlags(QtCore.Qt.ItemIsEnabled)
  682. else:
  683. ap_dim_item = QtWidgets.QTableWidgetItem('')
  684. ap_dim_item.setFlags(QtCore.Qt.ItemIsEnabled)
  685. try:
  686. if self.apertures[ap_code]['size'] is not None:
  687. ap_size_item = QtWidgets.QTableWidgetItem(
  688. '%.*f' % (self.decimals, float(self.apertures[ap_code]['size'])))
  689. else:
  690. ap_size_item = QtWidgets.QTableWidgetItem('')
  691. except KeyError:
  692. ap_size_item = QtWidgets.QTableWidgetItem('')
  693. ap_size_item.setFlags(QtCore.Qt.ItemIsEnabled)
  694. mark_item = FCCheckBox()
  695. mark_item.setLayoutDirection(QtCore.Qt.RightToLeft)
  696. # if self.ui.aperture_table_visibility_cb.isChecked():
  697. # mark_item.setChecked(True)
  698. self.ui.apertures_table.setItem(self.apertures_row, 1, ap_code_item) # Aperture Code
  699. self.ui.apertures_table.setItem(self.apertures_row, 2, ap_type_item) # Aperture Type
  700. self.ui.apertures_table.setItem(self.apertures_row, 3, ap_size_item) # Aperture Dimensions
  701. self.ui.apertures_table.setItem(self.apertures_row, 4, ap_dim_item) # Aperture Dimensions
  702. empty_plot_item = QtWidgets.QTableWidgetItem('')
  703. empty_plot_item.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  704. self.ui.apertures_table.setItem(self.apertures_row, 5, empty_plot_item)
  705. self.ui.apertures_table.setCellWidget(self.apertures_row, 5, mark_item)
  706. self.apertures_row += 1
  707. self.ui.apertures_table.selectColumn(0)
  708. self.ui.apertures_table.resizeColumnsToContents()
  709. self.ui.apertures_table.resizeRowsToContents()
  710. vertical_header = self.ui.apertures_table.verticalHeader()
  711. # vertical_header.setSectionResizeMode(QtWidgets.QHeaderView.ResizeToContents)
  712. vertical_header.hide()
  713. self.ui.apertures_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  714. horizontal_header = self.ui.apertures_table.horizontalHeader()
  715. horizontal_header.setMinimumSectionSize(10)
  716. horizontal_header.setDefaultSectionSize(70)
  717. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  718. horizontal_header.resizeSection(0, 27)
  719. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.ResizeToContents)
  720. horizontal_header.setSectionResizeMode(2, QtWidgets.QHeaderView.ResizeToContents)
  721. horizontal_header.setSectionResizeMode(3, QtWidgets.QHeaderView.ResizeToContents)
  722. horizontal_header.setSectionResizeMode(4, QtWidgets.QHeaderView.Stretch)
  723. horizontal_header.setSectionResizeMode(5, QtWidgets.QHeaderView.Fixed)
  724. horizontal_header.resizeSection(5, 17)
  725. self.ui.apertures_table.setColumnWidth(5, 17)
  726. self.ui.apertures_table.setHorizontalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  727. self.ui.apertures_table.setSortingEnabled(False)
  728. self.ui.apertures_table.setMinimumHeight(self.ui.apertures_table.getHeight())
  729. self.ui.apertures_table.setMaximumHeight(self.ui.apertures_table.getHeight())
  730. # update the 'mark' checkboxes state according with what is stored in the self.marked_rows list
  731. if self.marked_rows:
  732. for row in range(self.ui.apertures_table.rowCount()):
  733. try:
  734. self.ui.apertures_table.cellWidget(row, 5).set_value(self.marked_rows[row])
  735. except IndexError:
  736. pass
  737. self.ui_connect()
  738. def ui_connect(self):
  739. for row in range(self.ui.apertures_table.rowCount()):
  740. try:
  741. self.ui.apertures_table.cellWidget(row, 5).clicked.disconnect(self.on_mark_cb_click_table)
  742. except (TypeError, AttributeError):
  743. pass
  744. self.ui.apertures_table.cellWidget(row, 5).clicked.connect(self.on_mark_cb_click_table)
  745. try:
  746. self.ui.mark_all_cb.clicked.disconnect(self.on_mark_all_click)
  747. except (TypeError, AttributeError):
  748. pass
  749. self.ui.mark_all_cb.clicked.connect(self.on_mark_all_click)
  750. def ui_disconnect(self):
  751. for row in range(self.ui.apertures_table.rowCount()):
  752. try:
  753. self.ui.apertures_table.cellWidget(row, 5).clicked.disconnect()
  754. except (TypeError, AttributeError):
  755. pass
  756. try:
  757. self.ui.mark_all_cb.clicked.disconnect(self.on_mark_all_click)
  758. except (TypeError, AttributeError):
  759. pass
  760. def on_generate_buffer(self):
  761. self.app.inform.emit('[WARNING_NOTCL] %s...' % _("Buffering solid geometry"))
  762. def buffer_task():
  763. with self.app.proc_container.new('%s...' % _("Buffering")):
  764. if isinstance(self.solid_geometry, list):
  765. self.solid_geometry = MultiPolygon(self.solid_geometry)
  766. self.solid_geometry = self.solid_geometry.buffer(0.0000001)
  767. self.solid_geometry = self.solid_geometry.buffer(-0.0000001)
  768. self.app.inform.emit('[success] %s.' % _("Done"))
  769. self.plot_single_object.emit()
  770. self.app.worker_task.emit({'fcn': buffer_task, 'params': []})
  771. def on_generatenoncopper_button_click(self, *args):
  772. self.app.report_usage("gerber_on_generatenoncopper_button")
  773. self.read_form()
  774. name = self.options["name"] + "_noncopper"
  775. def geo_init(geo_obj, app_obj):
  776. assert isinstance(geo_obj, FlatCAMGeometry)
  777. bounding_box = self.solid_geometry.envelope.buffer(float(self.options["noncoppermargin"]))
  778. if not self.options["noncopperrounded"]:
  779. bounding_box = bounding_box.envelope
  780. non_copper = bounding_box.difference(self.solid_geometry)
  781. geo_obj.solid_geometry = non_copper
  782. # TODO: Check for None
  783. self.app.new_object("geometry", name, geo_init)
  784. def on_generatebb_button_click(self, *args):
  785. self.app.report_usage("gerber_on_generatebb_button")
  786. self.read_form()
  787. name = self.options["name"] + "_bbox"
  788. def geo_init(geo_obj, app_obj):
  789. assert isinstance(geo_obj, FlatCAMGeometry)
  790. # Bounding box with rounded corners
  791. bounding_box = self.solid_geometry.envelope.buffer(float(self.options["bboxmargin"]))
  792. if not self.options["bboxrounded"]: # Remove rounded corners
  793. bounding_box = bounding_box.envelope
  794. geo_obj.solid_geometry = bounding_box
  795. self.app.new_object("geometry", name, geo_init)
  796. def on_iso_button_click(self, *args):
  797. obj = self.app.collection.get_active()
  798. self.iso_type = 2
  799. if self.ui.iso_type_radio.get_value() == 'ext':
  800. self.iso_type = 0
  801. if self.ui.iso_type_radio.get_value() == 'int':
  802. self.iso_type = 1
  803. def worker_task(obj, app_obj):
  804. with self.app.proc_container.new(_("Isolating...")):
  805. if self.ui.follow_cb.get_value() is True:
  806. obj.follow_geo()
  807. # in the end toggle the visibility of the origin object so we can see the generated Geometry
  808. obj.ui.plot_cb.toggle()
  809. else:
  810. app_obj.report_usage("gerber_on_iso_button")
  811. self.read_form()
  812. iso_scope = 'all' if self.ui.iso_scope_radio.get_value() == 'all' else 'single'
  813. self.isolate_handler(iso_type=self.iso_type, iso_scope=iso_scope)
  814. self.app.worker_task.emit({'fcn': worker_task, 'params': [obj, self.app]})
  815. def follow_geo(self, outname=None):
  816. """
  817. Creates a geometry object "following" the gerber paths.
  818. :return: None
  819. """
  820. # default_name = self.options["name"] + "_follow"
  821. # follow_name = outname or default_name
  822. if outname is None:
  823. follow_name = self.options["name"] + "_follow"
  824. else:
  825. follow_name = outname
  826. def follow_init(follow_obj, app):
  827. # Propagate options
  828. follow_obj.options["cnctooldia"] = str(self.options["isotooldia"])
  829. follow_obj.solid_geometry = self.follow_geometry
  830. # TODO: Do something if this is None. Offer changing name?
  831. try:
  832. self.app.new_object("geometry", follow_name, follow_init)
  833. except Exception as e:
  834. return "Operation failed: %s" % str(e)
  835. def isolate_handler(self, iso_type, iso_scope):
  836. if iso_scope == 'all':
  837. self.isolate(iso_type=iso_type)
  838. else:
  839. # disengage the grid snapping since it may be hard to click on polygons with grid snapping on
  840. if self.app.ui.grid_snap_btn.isChecked():
  841. self.grid_status_memory = True
  842. self.app.ui.grid_snap_btn.trigger()
  843. else:
  844. self.grid_status_memory = False
  845. self.mr = self.app.plotcanvas.graph_event_connect('mouse_release', self.on_mouse_click_release)
  846. if self.app.is_legacy is False:
  847. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.app.on_mouse_click_release_over_plot)
  848. else:
  849. self.app.plotcanvas.graph_event_disconnect(self.app.mr)
  850. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Click on a polygon to isolate it."))
  851. def on_mouse_click_release(self, event):
  852. if self.app.is_legacy is False:
  853. event_pos = event.pos
  854. right_button = 2
  855. event_is_dragging = self.app.event_is_dragging
  856. else:
  857. event_pos = (event.xdata, event.ydata)
  858. right_button = 3
  859. event_is_dragging = self.app.ui.popMenu.mouse_is_panning
  860. try:
  861. x = float(event_pos[0])
  862. y = float(event_pos[1])
  863. except TypeError:
  864. return
  865. event_pos = (x, y)
  866. curr_pos = self.app.plotcanvas.translate_coords(event_pos)
  867. if event.button == 1:
  868. clicked_poly = self.find_polygon(point=(curr_pos[0], curr_pos[1]))
  869. if clicked_poly:
  870. if clicked_poly not in self.poly_dict.values():
  871. shape_id = self.app.tool_shapes.add(tolerance=self.drawing_tolerance, layer=0, shape=clicked_poly,
  872. color=self.app.defaults['global_sel_draw_color'] + 'AF',
  873. face_color=self.app.defaults['global_sel_draw_color'] + 'AF',
  874. visible=True)
  875. self.poly_dict[shape_id] = clicked_poly
  876. self.app.inform.emit(
  877. '%s: %d. %s' % (_("Added polygon"),
  878. int(len(self.poly_dict)),
  879. _("Click to add next polygon or right click to start isolation."))
  880. )
  881. else:
  882. try:
  883. for k, v in list(self.poly_dict.items()):
  884. if v == clicked_poly:
  885. self.app.tool_shapes.remove(k)
  886. self.poly_dict.pop(k)
  887. break
  888. except TypeError:
  889. return
  890. self.app.inform.emit(
  891. '%s. %s' % (_("Removed polygon"),
  892. _("Click to add/remove next polygon or right click to start isolation."))
  893. )
  894. self.app.tool_shapes.redraw()
  895. else:
  896. self.app.inform.emit(_("No polygon detected under click position."))
  897. elif event.button == right_button and event_is_dragging is False:
  898. # restore the Grid snapping if it was active before
  899. if self.grid_status_memory is True:
  900. self.app.ui.grid_snap_btn.trigger()
  901. if self.app.is_legacy is False:
  902. self.app.plotcanvas.graph_event_disconnect('mouse_release', self.on_mouse_click_release)
  903. else:
  904. self.app.plotcanvas.graph_event_disconnect(self.mr)
  905. self.app.mr = self.app.plotcanvas.graph_event_connect('mouse_release',
  906. self.app.on_mouse_click_release_over_plot)
  907. self.app.tool_shapes.clear(update=True)
  908. if self.poly_dict:
  909. poly_list = deepcopy(list(self.poly_dict.values()))
  910. self.isolate(iso_type=self.iso_type, geometry=poly_list)
  911. self.poly_dict.clear()
  912. else:
  913. self.app.inform.emit('[ERROR_NOTCL] %s' % _("List of single polygons is empty. Aborting."))
  914. def isolate(self, iso_type=None, geometry=None, dia=None, passes=None, overlap=None, outname=None, combine=None,
  915. milling_type=None, follow=None, plot=True):
  916. """
  917. Creates an isolation routing geometry object in the project.
  918. :param iso_type: type of isolation to be done: 0 = exteriors, 1 = interiors and 2 = both
  919. :param iso_scope: whether to isolate all polygons or single polygpns: 'all' = all, 'single' = one by one, single
  920. :param dia: Tool diameter
  921. :param passes: Number of tool widths to cut
  922. :param overlap: Overlap between passes in fraction of tool diameter
  923. :param outname: Base name of the output object
  924. :return: None
  925. """
  926. if geometry is None:
  927. if follow:
  928. work_geo = self.follow_geometry
  929. else:
  930. work_geo = self.solid_geometry
  931. else:
  932. work_geo = geometry
  933. if dia is None:
  934. dia = float(self.options["isotooldia"])
  935. if passes is None:
  936. passes = int(self.options["isopasses"])
  937. if overlap is None:
  938. overlap = float(self.options["isooverlap"])
  939. if combine is None:
  940. combine = self.options["combine_passes"]
  941. else:
  942. combine = bool(combine)
  943. if milling_type is None:
  944. milling_type = self.options["milling_type"]
  945. if iso_type is None:
  946. iso_t = 2
  947. else:
  948. iso_t = iso_type
  949. base_name = self.options["name"]
  950. if combine:
  951. if outname is None:
  952. if self.iso_type == 0:
  953. iso_name = base_name + "_ext_iso"
  954. elif self.iso_type == 1:
  955. iso_name = base_name + "_int_iso"
  956. else:
  957. iso_name = base_name + "_iso"
  958. else:
  959. iso_name = outname
  960. # TODO: This is ugly. Create way to pass data into init function.
  961. def iso_init(geo_obj, app_obj):
  962. # Propagate options
  963. geo_obj.options["cnctooldia"] = str(self.options["isotooldia"])
  964. geo_obj.solid_geometry = []
  965. for i in range(passes):
  966. iso_offset = dia * ((2 * i + 1) / 2.0) - (i * overlap * dia)
  967. # if milling type is climb then the move is counter-clockwise around features
  968. mill_t = 1 if milling_type == 'cl' else 0
  969. geom = self.generate_envelope(iso_offset, mill_t, geometry=work_geo, env_iso_type=iso_t,
  970. follow=follow, nr_passes=i)
  971. if geom == 'fail':
  972. app_obj.inform.emit('[ERROR_NOTCL] %s' % _("Isolation geometry could not be generated."))
  973. return 'fail'
  974. geo_obj.solid_geometry.append(geom)
  975. # transfer the Cut Z and Vtip and VAngle values in case that we use the V-Shape tool in Gerber UI
  976. if self.ui.tool_type_radio.get_value() == 'v':
  977. new_cutz = self.ui.cutz_spinner.get_value()
  978. new_vtipdia = self.ui.tipdia_spinner.get_value()
  979. new_vtipangle = self.ui.tipangle_spinner.get_value()
  980. tool_type = 'V'
  981. else:
  982. new_cutz = self.app.defaults['geometry_cutz']
  983. new_vtipdia = self.app.defaults['geometry_vtipdia']
  984. new_vtipangle = self.app.defaults['geometry_vtipangle']
  985. tool_type = 'C1'
  986. # store here the default data for Geometry Data
  987. default_data = {}
  988. default_data.update({
  989. "name": iso_name,
  990. "plot": self.app.defaults['geometry_plot'],
  991. "cutz": new_cutz,
  992. "vtipdia": new_vtipdia,
  993. "vtipangle": new_vtipangle,
  994. "travelz": self.app.defaults['geometry_travelz'],
  995. "feedrate": self.app.defaults['geometry_feedrate'],
  996. "feedrate_z": self.app.defaults['geometry_feedrate_z'],
  997. "feedrate_rapid": self.app.defaults['geometry_feedrate_rapid'],
  998. "dwell": self.app.defaults['geometry_dwell'],
  999. "dwelltime": self.app.defaults['geometry_dwelltime'],
  1000. "multidepth": self.app.defaults['geometry_multidepth'],
  1001. "ppname_g": self.app.defaults['geometry_ppname_g'],
  1002. "depthperpass": self.app.defaults['geometry_depthperpass'],
  1003. "extracut": self.app.defaults['geometry_extracut'],
  1004. "toolchange": self.app.defaults['geometry_toolchange'],
  1005. "toolchangez": self.app.defaults['geometry_toolchangez'],
  1006. "endz": self.app.defaults['geometry_endz'],
  1007. "spindlespeed": self.app.defaults['geometry_spindlespeed'],
  1008. "toolchangexy": self.app.defaults['geometry_toolchangexy'],
  1009. "startz": self.app.defaults['geometry_startz']
  1010. })
  1011. geo_obj.tools = dict()
  1012. geo_obj.tools['1'] = dict()
  1013. geo_obj.tools.update({
  1014. '1': {
  1015. 'tooldia': float(self.options["isotooldia"]),
  1016. 'offset': 'Path',
  1017. 'offset_value': 0.0,
  1018. 'type': _('Rough'),
  1019. 'tool_type': tool_type,
  1020. 'data': default_data,
  1021. 'solid_geometry': geo_obj.solid_geometry
  1022. }
  1023. })
  1024. # detect if solid_geometry is empty and this require list flattening which is "heavy"
  1025. # or just looking in the lists (they are one level depth) and if any is not empty
  1026. # proceed with object creation, if there are empty and the number of them is the length
  1027. # of the list then we have an empty solid_geometry which should raise a Custom Exception
  1028. empty_cnt = 0
  1029. if not isinstance(geo_obj.solid_geometry, list) and \
  1030. not isinstance(geo_obj.solid_geometry, MultiPolygon):
  1031. geo_obj.solid_geometry = [geo_obj.solid_geometry]
  1032. for g in geo_obj.solid_geometry:
  1033. if g:
  1034. break
  1035. else:
  1036. empty_cnt += 1
  1037. if empty_cnt == len(geo_obj.solid_geometry):
  1038. raise ValidationError("Empty Geometry", None)
  1039. else:
  1040. app_obj.inform.emit('[success] %s" %s' %
  1041. (_("Isolation geometry created"), geo_obj.options["name"]))
  1042. # even if combine is checked, one pass is still single-geo
  1043. geo_obj.multigeo = True if passes > 1 else False
  1044. # ############################################################
  1045. # ########## AREA SUBTRACTION ################################
  1046. # ############################################################
  1047. if self.ui.except_cb.get_value():
  1048. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1049. geo_obj.solid_geometry = self.area_subtraction(geo_obj.solid_geometry)
  1050. # TODO: Do something if this is None. Offer changing name?
  1051. self.app.new_object("geometry", iso_name, iso_init, plot=plot)
  1052. else:
  1053. for i in range(passes):
  1054. offset = dia * ((2 * i + 1) / 2.0) - (i * overlap * dia)
  1055. if passes > 1:
  1056. if outname is None:
  1057. if self.iso_type == 0:
  1058. iso_name = base_name + "_ext_iso" + str(i + 1)
  1059. elif self.iso_type == 1:
  1060. iso_name = base_name + "_int_iso" + str(i + 1)
  1061. else:
  1062. iso_name = base_name + "_iso" + str(i + 1)
  1063. else:
  1064. iso_name = outname
  1065. else:
  1066. if outname is None:
  1067. if self.iso_type == 0:
  1068. iso_name = base_name + "_ext_iso"
  1069. elif self.iso_type == 1:
  1070. iso_name = base_name + "_int_iso"
  1071. else:
  1072. iso_name = base_name + "_iso"
  1073. else:
  1074. iso_name = outname
  1075. # TODO: This is ugly. Create way to pass data into init function.
  1076. def iso_init(geo_obj, app_obj):
  1077. # Propagate options
  1078. geo_obj.options["cnctooldia"] = str(self.options["isotooldia"])
  1079. # if milling type is climb then the move is counter-clockwise around features
  1080. mill_t = 1 if milling_type == 'cl' else 0
  1081. mill_t = 1 if milling_type == 'cl' else 0
  1082. geom = self.generate_envelope(offset, mill_t, geometry=work_geo, env_iso_type=iso_t,
  1083. follow=follow,
  1084. nr_passes=i)
  1085. if geom == 'fail':
  1086. app_obj.inform.emit('[ERROR_NOTCL] %s' %
  1087. _("Isolation geometry could not be generated."))
  1088. return 'fail'
  1089. geo_obj.solid_geometry = geom
  1090. # detect if solid_geometry is empty and this require list flattening which is "heavy"
  1091. # or just looking in the lists (they are one level depth) and if any is not empty
  1092. # proceed with object creation, if there are empty and the number of them is the length
  1093. # of the list then we have an empty solid_geometry which should raise a Custom Exception
  1094. empty_cnt = 0
  1095. if not isinstance(geo_obj.solid_geometry, list):
  1096. geo_obj.solid_geometry = [geo_obj.solid_geometry]
  1097. for g in geo_obj.solid_geometry:
  1098. if g:
  1099. break
  1100. else:
  1101. empty_cnt += 1
  1102. if empty_cnt == len(geo_obj.solid_geometry):
  1103. raise ValidationError("Empty Geometry", None)
  1104. else:
  1105. app_obj.inform.emit('[success] %s: %s' %
  1106. (_("Isolation geometry created"), geo_obj.options["name"]))
  1107. geo_obj.multigeo = False
  1108. # ############################################################
  1109. # ########## AREA SUBTRACTION ################################
  1110. # ############################################################
  1111. if self.ui.except_cb.get_value():
  1112. self.app.proc_container.update_view_text(' %s' % _("Subtracting Geo"))
  1113. geo_obj.solid_geometry = self.area_subtraction(geo_obj.solid_geometry)
  1114. # TODO: Do something if this is None. Offer changing name?
  1115. self.app.new_object("geometry", iso_name, iso_init, plot=plot)
  1116. def generate_envelope(self, offset, invert, geometry=None, env_iso_type=2, follow=None, nr_passes=0):
  1117. # isolation_geometry produces an envelope that is going on the left of the geometry
  1118. # (the copper features). To leave the least amount of burrs on the features
  1119. # the tool needs to travel on the right side of the features (this is called conventional milling)
  1120. # the first pass is the one cutting all of the features, so it needs to be reversed
  1121. # the other passes overlap preceding ones and cut the left over copper. It is better for them
  1122. # to cut on the right side of the left over copper i.e on the left side of the features.
  1123. if follow:
  1124. geom = self.isolation_geometry(offset, geometry=geometry, follow=follow)
  1125. else:
  1126. try:
  1127. geom = self.isolation_geometry(offset, geometry=geometry, iso_type=env_iso_type, passes=nr_passes)
  1128. except Exception as e:
  1129. log.debug('FlatCAMGerber.isolate().generate_envelope() --> %s' % str(e))
  1130. return 'fail'
  1131. if invert:
  1132. try:
  1133. pl = []
  1134. for p in geom:
  1135. if p is not None:
  1136. if isinstance(p, Polygon):
  1137. pl.append(Polygon(p.exterior.coords[::-1], p.interiors))
  1138. elif isinstance(p, LinearRing):
  1139. pl.append(Polygon(p.coords[::-1]))
  1140. geom = MultiPolygon(pl)
  1141. except TypeError:
  1142. if isinstance(geom, Polygon) and geom is not None:
  1143. geom = Polygon(geom.exterior.coords[::-1], geom.interiors)
  1144. elif isinstance(geom, LinearRing) and geom is not None:
  1145. geom = Polygon(geom.coords[::-1])
  1146. else:
  1147. log.debug("FlatCAMGerber.isolate().generate_envelope() Error --> Unexpected Geometry %s" %
  1148. type(geom))
  1149. except Exception as e:
  1150. log.debug("FlatCAMGerber.isolate().generate_envelope() Error --> %s" % str(e))
  1151. return 'fail'
  1152. return geom
  1153. def area_subtraction(self, geo, subtractor_geo=None):
  1154. """
  1155. Subtracts the subtractor_geo (if present else self.solid_geometry) from the geo
  1156. :param geo: target geometry from which to subtract
  1157. :param subtractor_geo: geometry that acts as subtractor
  1158. :return:
  1159. """
  1160. new_geometry = []
  1161. target_geo = geo
  1162. if subtractor_geo:
  1163. sub_union = cascaded_union(subtractor_geo)
  1164. else:
  1165. name = self.ui.obj_combo.currentText()
  1166. subtractor_obj = self.app.collection.get_by_name(name)
  1167. sub_union = cascaded_union(subtractor_obj.solid_geometry)
  1168. try:
  1169. for geo_elem in target_geo:
  1170. if isinstance(geo_elem, Polygon):
  1171. for ring in self.poly2rings(geo_elem):
  1172. new_geo = ring.difference(sub_union)
  1173. if new_geo and not new_geo.is_empty:
  1174. new_geometry.append(new_geo)
  1175. elif isinstance(geo_elem, MultiPolygon):
  1176. for poly in geo_elem:
  1177. for ring in self.poly2rings(poly):
  1178. new_geo = ring.difference(sub_union)
  1179. if new_geo and not new_geo.is_empty:
  1180. new_geometry.append(new_geo)
  1181. elif isinstance(geo_elem, LineString):
  1182. new_geo = geo_elem.difference(sub_union)
  1183. if new_geo:
  1184. if not new_geo.is_empty:
  1185. new_geometry.append(new_geo)
  1186. elif isinstance(geo_elem, MultiLineString):
  1187. for line_elem in geo_elem:
  1188. new_geo = line_elem.difference(sub_union)
  1189. if new_geo and not new_geo.is_empty:
  1190. new_geometry.append(new_geo)
  1191. except TypeError:
  1192. if isinstance(target_geo, Polygon):
  1193. for ring in self.poly2rings(target_geo):
  1194. new_geo = ring.difference(sub_union)
  1195. if new_geo:
  1196. if not new_geo.is_empty:
  1197. new_geometry.append(new_geo)
  1198. elif isinstance(target_geo, LineString):
  1199. new_geo = target_geo.difference(sub_union)
  1200. if new_geo and not new_geo.is_empty:
  1201. new_geometry.append(new_geo)
  1202. elif isinstance(target_geo, MultiLineString):
  1203. for line_elem in target_geo:
  1204. new_geo = line_elem.difference(sub_union)
  1205. if new_geo and not new_geo.is_empty:
  1206. new_geometry.append(new_geo)
  1207. return new_geometry
  1208. def on_plot_cb_click(self, *args):
  1209. if self.muted_ui:
  1210. return
  1211. self.read_form_item('plot')
  1212. self.plot()
  1213. def on_solid_cb_click(self, *args):
  1214. if self.muted_ui:
  1215. return
  1216. self.read_form_item('solid')
  1217. self.plot()
  1218. def on_multicolored_cb_click(self, *args):
  1219. if self.muted_ui:
  1220. return
  1221. self.read_form_item('multicolored')
  1222. self.plot()
  1223. def on_follow_cb_click(self):
  1224. if self.muted_ui:
  1225. return
  1226. self.plot()
  1227. def on_aperture_table_visibility_change(self):
  1228. if self.ui.aperture_table_visibility_cb.isChecked():
  1229. # add the shapes storage for marking apertures
  1230. if self.app.is_legacy is False:
  1231. for ap_code in self.apertures:
  1232. self.mark_shapes[ap_code] = self.app.plotcanvas.new_shape_collection(layers=1)
  1233. else:
  1234. for ap_code in self.apertures:
  1235. self.mark_shapes[ap_code] = ShapeCollectionLegacy(obj=self, app=self.app,
  1236. name=self.options['name'] + str(ap_code))
  1237. self.ui.apertures_table.setVisible(True)
  1238. for ap in self.mark_shapes:
  1239. self.mark_shapes[ap].enabled = True
  1240. self.ui.mark_all_cb.setVisible(True)
  1241. self.ui.mark_all_cb.setChecked(False)
  1242. else:
  1243. self.ui.apertures_table.setVisible(False)
  1244. self.ui.mark_all_cb.setVisible(False)
  1245. # on hide disable all mark plots
  1246. try:
  1247. for row in range(self.ui.apertures_table.rowCount()):
  1248. self.ui.apertures_table.cellWidget(row, 5).set_value(False)
  1249. self.clear_plot_apertures()
  1250. for ap in list(self.mark_shapes.keys()):
  1251. # self.mark_shapes[ap].enabled = False
  1252. del self.mark_shapes[ap]
  1253. except Exception as e:
  1254. log.debug(" FlatCAMGerber.on_aperture_visibility_changed() --> %s" % str(e))
  1255. def convert_units(self, units):
  1256. """
  1257. Converts the units of the object by scaling dimensions in all geometry
  1258. and options.
  1259. :param units: Units to which to convert the object: "IN" or "MM".
  1260. :type units: str
  1261. :return: None
  1262. :rtype: None
  1263. """
  1264. # units conversion to get a conversion should be done only once even if we found multiple
  1265. # units declaration inside a Gerber file (it can happen to find also the obsolete declaration)
  1266. if self.conversion_done is True:
  1267. log.debug("Gerber units conversion cancelled. Already done.")
  1268. return
  1269. log.debug("FlatCAMObj.FlatCAMGerber.convert_units()")
  1270. factor = Gerber.convert_units(self, units)
  1271. # self.options['isotooldia'] = float(self.options['isotooldia']) * factor
  1272. # self.options['bboxmargin'] = float(self.options['bboxmargin']) * factor
  1273. def plot(self, **kwargs):
  1274. """
  1275. :param kwargs: color and face_color
  1276. :return:
  1277. """
  1278. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMGerber.plot()")
  1279. # Does all the required setup and returns False
  1280. # if the 'ptint' option is set to False.
  1281. if not FlatCAMObj.plot(self):
  1282. return
  1283. if 'color' in kwargs:
  1284. color = kwargs['color']
  1285. else:
  1286. color = self.app.defaults['global_plot_line']
  1287. if 'face_color' in kwargs:
  1288. face_color = kwargs['face_color']
  1289. else:
  1290. face_color = self.app.defaults['global_plot_fill']
  1291. if 'visible' not in kwargs:
  1292. visible = self.options['plot']
  1293. else:
  1294. visible = kwargs['visible']
  1295. # if the Follow Geometry checkbox is checked then plot only the follow geometry
  1296. if self.ui.follow_cb.get_value():
  1297. geometry = self.follow_geometry
  1298. else:
  1299. geometry = self.solid_geometry
  1300. # Make sure geometry is iterable.
  1301. try:
  1302. __ = iter(geometry)
  1303. except TypeError:
  1304. geometry = [geometry]
  1305. if self.app.is_legacy is False:
  1306. def random_color():
  1307. r_color = np.random.rand(4)
  1308. r_color[3] = 1
  1309. return r_color
  1310. else:
  1311. def random_color():
  1312. while True:
  1313. r_color = np.random.rand(4)
  1314. r_color[3] = 1
  1315. new_color = '#'
  1316. for idx in range(len(r_color)):
  1317. new_color += '%x' % int(r_color[idx] * 255)
  1318. # do it until a valid color is generated
  1319. # a valid color has the # symbol, another 6 chars for the color and the last 2 chars for alpha
  1320. # for a total of 9 chars
  1321. if len(new_color) == 9:
  1322. break
  1323. return new_color
  1324. try:
  1325. if self.options["solid"]:
  1326. for g in geometry:
  1327. if type(g) == Polygon or type(g) == LineString:
  1328. self.add_shape(shape=g, color=color,
  1329. face_color=random_color() if self.options['multicolored']
  1330. else face_color, visible=visible)
  1331. elif type(g) == Point:
  1332. pass
  1333. else:
  1334. try:
  1335. for el in g:
  1336. self.add_shape(shape=el, color=color,
  1337. face_color=random_color() if self.options['multicolored']
  1338. else face_color, visible=visible)
  1339. except TypeError:
  1340. self.add_shape(shape=g, color=color,
  1341. face_color=random_color() if self.options['multicolored']
  1342. else face_color, visible=visible)
  1343. else:
  1344. for g in geometry:
  1345. if type(g) == Polygon or type(g) == LineString:
  1346. self.add_shape(shape=g, color=random_color() if self.options['multicolored'] else 'black',
  1347. visible=visible)
  1348. elif type(g) == Point:
  1349. pass
  1350. else:
  1351. for el in g:
  1352. self.add_shape(shape=el, color=random_color() if self.options['multicolored'] else 'black',
  1353. visible=visible)
  1354. self.shapes.redraw()
  1355. except (ObjectDeleted, AttributeError):
  1356. self.shapes.clear(update=True)
  1357. except Exception as e:
  1358. log.debug("FlatCAMGerber.plot() --> %s" % str(e))
  1359. # experimental plot() when the solid_geometry is stored in the self.apertures
  1360. def plot_aperture(self, run_thread=True, **kwargs):
  1361. """
  1362. :param run_thread: if True run the aperture plot as a thread in a worker
  1363. :param kwargs: color and face_color
  1364. :return:
  1365. """
  1366. FlatCAMApp.App.log.debug(str(inspect.stack()[1][3]) + " --> FlatCAMGerber.plot_aperture()")
  1367. # Does all the required setup and returns False
  1368. # if the 'ptint' option is set to False.
  1369. # if not FlatCAMObj.plot(self):
  1370. # return
  1371. # for marking apertures, line color and fill color are the same
  1372. if 'color' in kwargs:
  1373. color = kwargs['color']
  1374. else:
  1375. color = self.app.defaults['global_plot_fill']
  1376. if 'marked_aperture' not in kwargs:
  1377. return
  1378. else:
  1379. aperture_to_plot_mark = kwargs['marked_aperture']
  1380. if aperture_to_plot_mark is None:
  1381. return
  1382. if 'visible' not in kwargs:
  1383. visibility = True
  1384. else:
  1385. visibility = kwargs['visible']
  1386. with self.app.proc_container.new(_("Plotting Apertures")):
  1387. self.app.progress.emit(30)
  1388. def job_thread(app_obj):
  1389. try:
  1390. if aperture_to_plot_mark in self.apertures:
  1391. for elem in self.apertures[aperture_to_plot_mark]['geometry']:
  1392. if 'solid' in elem:
  1393. geo = elem['solid']
  1394. if type(geo) == Polygon or type(geo) == LineString:
  1395. self.add_mark_shape(apid=aperture_to_plot_mark, shape=geo, color=color,
  1396. face_color=color, visible=visibility)
  1397. else:
  1398. for el in geo:
  1399. self.add_mark_shape(apid=aperture_to_plot_mark, shape=el, color=color,
  1400. face_color=color, visible=visibility)
  1401. self.mark_shapes[aperture_to_plot_mark].redraw()
  1402. except (ObjectDeleted, AttributeError):
  1403. self.clear_plot_apertures()
  1404. except Exception as e:
  1405. log.debug("FlatCAMGerber.plot_aperture() --> %s" % str(e))
  1406. if run_thread:
  1407. self.app.worker_task.emit({'fcn': job_thread, 'params': [self]})
  1408. else:
  1409. job_thread(self)
  1410. def clear_plot_apertures(self, aperture='all'):
  1411. """
  1412. :param aperture: string; aperture for which to clear the mark shapes
  1413. :return:
  1414. """
  1415. try:
  1416. if aperture == 'all':
  1417. for apid in list(self.apertures.keys()):
  1418. if self.app.is_legacy is True:
  1419. self.mark_shapes[apid].clear(update=False)
  1420. else:
  1421. self.mark_shapes[apid].clear(update=True)
  1422. else:
  1423. self.mark_shapes[aperture].clear(update=True)
  1424. except Exception as e:
  1425. log.debug("FlatCAMGerber.clear_plot_apertures() --> %s" % str(e))
  1426. def clear_mark_all(self):
  1427. self.ui.mark_all_cb.set_value(False)
  1428. self.marked_rows[:] = []
  1429. def on_mark_cb_click_table(self):
  1430. """
  1431. Will mark aperture geometries on canvas or delete the markings depending on the checkbox state
  1432. :return:
  1433. """
  1434. self.ui_disconnect()
  1435. cw = self.sender()
  1436. try:
  1437. cw_index = self.ui.apertures_table.indexAt(cw.pos())
  1438. cw_row = cw_index.row()
  1439. except AttributeError:
  1440. cw_row = 0
  1441. except TypeError:
  1442. return
  1443. self.marked_rows[:] = []
  1444. try:
  1445. aperture = self.ui.apertures_table.item(cw_row, 1).text()
  1446. except AttributeError:
  1447. return
  1448. if self.ui.apertures_table.cellWidget(cw_row, 5).isChecked():
  1449. self.marked_rows.append(True)
  1450. # self.plot_aperture(color='#2d4606bf', marked_aperture=aperture, visible=True)
  1451. self.plot_aperture(color=self.app.defaults['global_sel_draw_color'] + 'AF',
  1452. marked_aperture=aperture, visible=True, run_thread=True)
  1453. # self.mark_shapes[aperture].redraw()
  1454. else:
  1455. self.marked_rows.append(False)
  1456. self.clear_plot_apertures(aperture=aperture)
  1457. # make sure that the Mark All is disabled if one of the row mark's are disabled and
  1458. # if all the row mark's are enabled also enable the Mark All checkbox
  1459. cb_cnt = 0
  1460. total_row = self.ui.apertures_table.rowCount()
  1461. for row in range(total_row):
  1462. if self.ui.apertures_table.cellWidget(row, 5).isChecked():
  1463. cb_cnt += 1
  1464. else:
  1465. cb_cnt -= 1
  1466. if cb_cnt < total_row:
  1467. self.ui.mark_all_cb.setChecked(False)
  1468. else:
  1469. self.ui.mark_all_cb.setChecked(True)
  1470. self.ui_connect()
  1471. def on_mark_all_click(self, signal):
  1472. self.ui_disconnect()
  1473. mark_all = self.ui.mark_all_cb.isChecked()
  1474. for row in range(self.ui.apertures_table.rowCount()):
  1475. # update the mark_rows list
  1476. if mark_all:
  1477. self.marked_rows.append(True)
  1478. else:
  1479. self.marked_rows[:] = []
  1480. mark_cb = self.ui.apertures_table.cellWidget(row, 5)
  1481. mark_cb.setChecked(mark_all)
  1482. if mark_all:
  1483. for aperture in self.apertures:
  1484. # self.plot_aperture(color='#2d4606bf', marked_aperture=aperture, visible=True)
  1485. self.plot_aperture(color=self.app.defaults['global_sel_draw_color'] + 'AF',
  1486. marked_aperture=aperture, visible=True)
  1487. # HACK: enable/disable the grid for a better look
  1488. self.app.ui.grid_snap_btn.trigger()
  1489. self.app.ui.grid_snap_btn.trigger()
  1490. else:
  1491. self.clear_plot_apertures()
  1492. self.marked_rows[:] = []
  1493. self.ui_connect()
  1494. def export_gerber(self, whole, fract, g_zeros='L', factor=1):
  1495. """
  1496. Creates a Gerber file content to be exported to a file.
  1497. :param whole: how many digits in the whole part of coordinates
  1498. :param fract: how many decimals in coordinates
  1499. :param g_zeros: type of the zero suppression used: LZ or TZ; string
  1500. :param factor: factor to be applied onto the Gerber coordinates
  1501. :return: Gerber_code
  1502. """
  1503. log.debug("FlatCAMGerber.export_gerber() --> Generating the Gerber code from the selected Gerber file")
  1504. def tz_format(x, y, fac):
  1505. x_c = x * fac
  1506. y_c = y * fac
  1507. x_form = "{:.{dec}f}".format(x_c, dec=fract)
  1508. y_form = "{:.{dec}f}".format(y_c, dec=fract)
  1509. # extract whole part and decimal part
  1510. x_form = x_form.partition('.')
  1511. y_form = y_form.partition('.')
  1512. # left padd the 'whole' part with zeros
  1513. x_whole = x_form[0].rjust(whole, '0')
  1514. y_whole = y_form[0].rjust(whole, '0')
  1515. # restore the coordinate padded in the left with 0 and added the decimal part
  1516. # without the decinal dot
  1517. x_form = x_whole + x_form[2]
  1518. y_form = y_whole + y_form[2]
  1519. return x_form, y_form
  1520. def lz_format(x, y, fac):
  1521. x_c = x * fac
  1522. y_c = y * fac
  1523. x_form = "{:.{dec}f}".format(x_c, dec=fract).replace('.', '')
  1524. y_form = "{:.{dec}f}".format(y_c, dec=fract).replace('.', '')
  1525. # pad with rear zeros
  1526. x_form.ljust(length, '0')
  1527. y_form.ljust(length, '0')
  1528. return x_form, y_form
  1529. # Gerber code is stored here
  1530. gerber_code = ''
  1531. # apertures processing
  1532. try:
  1533. length = whole + fract
  1534. if '0' in self.apertures:
  1535. if 'geometry' in self.apertures['0']:
  1536. for geo_elem in self.apertures['0']['geometry']:
  1537. if 'solid' in geo_elem:
  1538. geo = geo_elem['solid']
  1539. if not geo.is_empty:
  1540. gerber_code += 'G36*\n'
  1541. geo_coords = list(geo.exterior.coords)
  1542. # first command is a move with pen-up D02 at the beginning of the geo
  1543. if g_zeros == 'T':
  1544. x_formatted, y_formatted = tz_format(geo_coords[0][0], geo_coords[0][1], factor)
  1545. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1546. yform=y_formatted)
  1547. else:
  1548. x_formatted, y_formatted = lz_format(geo_coords[0][0], geo_coords[0][1], factor)
  1549. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1550. yform=y_formatted)
  1551. for coord in geo_coords[1:]:
  1552. if g_zeros == 'T':
  1553. x_formatted, y_formatted = tz_format(coord[0], coord[1], factor)
  1554. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1555. yform=y_formatted)
  1556. else:
  1557. x_formatted, y_formatted = lz_format(coord[0], coord[1], factor)
  1558. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1559. yform=y_formatted)
  1560. gerber_code += 'D02*\n'
  1561. gerber_code += 'G37*\n'
  1562. clear_list = list(geo.interiors)
  1563. if clear_list:
  1564. gerber_code += '%LPC*%\n'
  1565. for clear_geo in clear_list:
  1566. gerber_code += 'G36*\n'
  1567. geo_coords = list(clear_geo.coords)
  1568. # first command is a move with pen-up D02 at the beginning of the geo
  1569. if g_zeros == 'T':
  1570. x_formatted, y_formatted = tz_format(
  1571. geo_coords[0][0], geo_coords[0][1], factor)
  1572. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1573. yform=y_formatted)
  1574. else:
  1575. x_formatted, y_formatted = lz_format(
  1576. geo_coords[0][0], geo_coords[0][1], factor)
  1577. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1578. yform=y_formatted)
  1579. prev_coord = geo_coords[0]
  1580. for coord in geo_coords[1:]:
  1581. if coord != prev_coord:
  1582. if g_zeros == 'T':
  1583. x_formatted, y_formatted = tz_format(coord[0], coord[1], factor)
  1584. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1585. yform=y_formatted)
  1586. else:
  1587. x_formatted, y_formatted = lz_format(coord[0], coord[1], factor)
  1588. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1589. yform=y_formatted)
  1590. prev_coord = coord
  1591. gerber_code += 'D02*\n'
  1592. gerber_code += 'G37*\n'
  1593. gerber_code += '%LPD*%\n'
  1594. if 'clear' in geo_elem:
  1595. geo = geo_elem['clear']
  1596. if not geo.is_empty:
  1597. gerber_code += '%LPC*%\n'
  1598. gerber_code += 'G36*\n'
  1599. geo_coords = list(geo.exterior.coords)
  1600. # first command is a move with pen-up D02 at the beginning of the geo
  1601. if g_zeros == 'T':
  1602. x_formatted, y_formatted = tz_format(geo_coords[0][0], geo_coords[0][1], factor)
  1603. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1604. yform=y_formatted)
  1605. else:
  1606. x_formatted, y_formatted = lz_format(geo_coords[0][0], geo_coords[0][1], factor)
  1607. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1608. yform=y_formatted)
  1609. prev_coord = geo_coords[0]
  1610. for coord in geo_coords[1:]:
  1611. if coord != prev_coord:
  1612. if g_zeros == 'T':
  1613. x_formatted, y_formatted = tz_format(coord[0], coord[1], factor)
  1614. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1615. yform=y_formatted)
  1616. else:
  1617. x_formatted, y_formatted = lz_format(coord[0], coord[1], factor)
  1618. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1619. yform=y_formatted)
  1620. prev_coord = coord
  1621. gerber_code += 'D02*\n'
  1622. gerber_code += 'G37*\n'
  1623. gerber_code += '%LPD*%\n'
  1624. for apid in self.apertures:
  1625. if apid == '0':
  1626. continue
  1627. else:
  1628. gerber_code += 'D%s*\n' % str(apid)
  1629. if 'geometry' in self.apertures[apid]:
  1630. for geo_elem in self.apertures[apid]['geometry']:
  1631. if 'follow' in geo_elem:
  1632. geo = geo_elem['follow']
  1633. if not geo.is_empty:
  1634. if isinstance(geo, Point):
  1635. if g_zeros == 'T':
  1636. x_formatted, y_formatted = tz_format(geo.x, geo.y, factor)
  1637. gerber_code += "X{xform}Y{yform}D03*\n".format(xform=x_formatted,
  1638. yform=y_formatted)
  1639. else:
  1640. x_formatted, y_formatted = lz_format(geo.x, geo.y, factor)
  1641. gerber_code += "X{xform}Y{yform}D03*\n".format(xform=x_formatted,
  1642. yform=y_formatted)
  1643. else:
  1644. geo_coords = list(geo.coords)
  1645. # first command is a move with pen-up D02 at the beginning of the geo
  1646. if g_zeros == 'T':
  1647. x_formatted, y_formatted = tz_format(
  1648. geo_coords[0][0], geo_coords[0][1], factor)
  1649. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1650. yform=y_formatted)
  1651. else:
  1652. x_formatted, y_formatted = lz_format(
  1653. geo_coords[0][0], geo_coords[0][1], factor)
  1654. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1655. yform=y_formatted)
  1656. prev_coord = geo_coords[0]
  1657. for coord in geo_coords[1:]:
  1658. if coord != prev_coord:
  1659. if g_zeros == 'T':
  1660. x_formatted, y_formatted = tz_format(coord[0], coord[1], factor)
  1661. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1662. yform=y_formatted)
  1663. else:
  1664. x_formatted, y_formatted = lz_format(coord[0], coord[1], factor)
  1665. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1666. yform=y_formatted)
  1667. prev_coord = coord
  1668. # gerber_code += "D02*\n"
  1669. if 'clear' in geo_elem:
  1670. gerber_code += '%LPC*%\n'
  1671. geo = geo_elem['clear']
  1672. if not geo.is_empty:
  1673. if isinstance(geo, Point):
  1674. if g_zeros == 'T':
  1675. x_formatted, y_formatted = tz_format(geo.x, geo.y, factor)
  1676. gerber_code += "X{xform}Y{yform}D03*\n".format(xform=x_formatted,
  1677. yform=y_formatted)
  1678. else:
  1679. x_formatted, y_formatted = lz_format(geo.x, geo.y, factor)
  1680. gerber_code += "X{xform}Y{yform}D03*\n".format(xform=x_formatted,
  1681. yform=y_formatted)
  1682. else:
  1683. geo_coords = list(geo.coords)
  1684. # first command is a move with pen-up D02 at the beginning of the geo
  1685. if g_zeros == 'T':
  1686. x_formatted, y_formatted = tz_format(
  1687. geo_coords[0][0], geo_coords[0][1], factor)
  1688. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1689. yform=y_formatted)
  1690. else:
  1691. x_formatted, y_formatted = lz_format(
  1692. geo_coords[0][0], geo_coords[0][1], factor)
  1693. gerber_code += "X{xform}Y{yform}D02*\n".format(xform=x_formatted,
  1694. yform=y_formatted)
  1695. prev_coord = geo_coords[0]
  1696. for coord in geo_coords[1:]:
  1697. if coord != prev_coord:
  1698. if g_zeros == 'T':
  1699. x_formatted, y_formatted = tz_format(coord[0], coord[1], factor)
  1700. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1701. yform=y_formatted)
  1702. else:
  1703. x_formatted, y_formatted = lz_format(coord[0], coord[1], factor)
  1704. gerber_code += "X{xform}Y{yform}D01*\n".format(xform=x_formatted,
  1705. yform=y_formatted)
  1706. prev_coord = coord
  1707. # gerber_code += "D02*\n"
  1708. gerber_code += '%LPD*%\n'
  1709. except Exception as e:
  1710. log.debug("FlatCAMObj.FlatCAMGerber.export_gerber() --> %s" % str(e))
  1711. if not self.apertures:
  1712. log.debug("FlatCAMObj.FlatCAMGerber.export_gerber() --> Gerber Object is empty: no apertures.")
  1713. return 'fail'
  1714. return gerber_code
  1715. def mirror(self, axis, point):
  1716. Gerber.mirror(self, axis=axis, point=point)
  1717. self.replotApertures.emit()
  1718. def offset(self, vect):
  1719. Gerber.offset(self, vect=vect)
  1720. self.replotApertures.emit()
  1721. def rotate(self, angle, point):
  1722. Gerber.rotate(self, angle=angle, point=point)
  1723. self.replotApertures.emit()
  1724. def scale(self, xfactor, yfactor=None, point=None):
  1725. Gerber.scale(self, xfactor=xfactor, yfactor=yfactor, point=point)
  1726. self.replotApertures.emit()
  1727. def skew(self, angle_x, angle_y, point):
  1728. Gerber.skew(self, angle_x=angle_x, angle_y=angle_y, point=point)
  1729. self.replotApertures.emit()
  1730. def serialize(self):
  1731. return {
  1732. "options": self.options,
  1733. "kind": self.kind
  1734. }
  1735. class FlatCAMExcellon(FlatCAMObj, Excellon):
  1736. """
  1737. Represents Excellon/Drill code.
  1738. """
  1739. ui_type = ExcellonObjectUI
  1740. optionChanged = QtCore.pyqtSignal(str)
  1741. def __init__(self, name):
  1742. Excellon.__init__(self, geo_steps_per_circle=int(self.app.defaults["geometry_circle_steps"]))
  1743. FlatCAMObj.__init__(self, name)
  1744. self.kind = "excellon"
  1745. self.options.update({
  1746. "plot": True,
  1747. "solid": False,
  1748. "drillz": -0.1,
  1749. "travelz": 0.1,
  1750. "feedrate": 5.0,
  1751. "feedrate_rapid": 5.0,
  1752. "tooldia": 0.1,
  1753. "slot_tooldia": 0.1,
  1754. "toolchange": False,
  1755. "toolchangez": 1.0,
  1756. "toolchangexy": "0.0, 0.0",
  1757. "endz": 2.0,
  1758. "startz": None,
  1759. "spindlespeed": None,
  1760. "dwell": True,
  1761. "dwelltime": 1000,
  1762. "ppname_e": 'defaults',
  1763. "z_pdepth": -0.02,
  1764. "feedrate_probe": 3.0,
  1765. "optimization_type": "R",
  1766. "gcode_type": "drills"
  1767. })
  1768. # TODO: Document this.
  1769. self.tool_cbs = {}
  1770. # dict to hold the tool number as key and tool offset as value
  1771. self.tool_offset = {}
  1772. # variable to store the total amount of drills per job
  1773. self.tot_drill_cnt = 0
  1774. self.tool_row = 0
  1775. # variable to store the total amount of slots per job
  1776. self.tot_slot_cnt = 0
  1777. self.tool_row_slots = 0
  1778. # variable to store the distance travelled
  1779. self.travel_distance = 0.0
  1780. # store the source file here
  1781. self.source_file = ""
  1782. self.multigeo = False
  1783. # Number fo decimals to be used for tools in this class
  1784. self.decimals = 4
  1785. # Attributes to be included in serialization
  1786. # Always append to it because it carries contents
  1787. # from predecessors.
  1788. self.ser_attrs += ['options', 'kind']
  1789. def merge(self, exc_list, exc_final):
  1790. """
  1791. Merge Excellon objects found in exc_list parameter into exc_final object.
  1792. Options are always copied from source .
  1793. Tools are disregarded, what is taken in consideration is the unique drill diameters found as values in the
  1794. exc_list tools dict's. In the reconstruction section for each unique tool diameter it will be created a
  1795. tool_name to be used in the final Excellon object, exc_final.
  1796. If only one object is in exc_list parameter then this function will copy that object in the exc_final
  1797. :param exc_list: List or one object of FlatCAMExcellon Objects to join.
  1798. :param exc_final: Destination FlatCAMExcellon object.
  1799. :return: None
  1800. """
  1801. try:
  1802. decimals_exc = self.decimals
  1803. except AttributeError:
  1804. decimals_exc = 4
  1805. # flag to signal that we need to reorder the tools dictionary and drills and slots lists
  1806. flag_order = False
  1807. try:
  1808. flattened_list = list(itertools.chain(*exc_list))
  1809. except TypeError:
  1810. flattened_list = exc_list
  1811. # this dict will hold the unique tool diameters found in the exc_list objects as the dict keys and the dict
  1812. # values will be list of Shapely Points; for drills
  1813. custom_dict_drills = {}
  1814. # this dict will hold the unique tool diameters found in the exc_list objects as the dict keys and the dict
  1815. # values will be list of Shapely Points; for slots
  1816. custom_dict_slots = {}
  1817. for exc in flattened_list:
  1818. # copy options of the current excellon obj to the final excellon obj
  1819. for option in exc.options:
  1820. if option is not 'name':
  1821. try:
  1822. exc_final.options[option] = exc.options[option]
  1823. except Exception as e:
  1824. exc.app.log.warning("Failed to copy option.", option)
  1825. for drill in exc.drills:
  1826. exc_tool_dia = float('%.*f' % (decimals_exc, exc.tools[drill['tool']]['C']))
  1827. if exc_tool_dia not in custom_dict_drills:
  1828. custom_dict_drills[exc_tool_dia] = [drill['point']]
  1829. else:
  1830. custom_dict_drills[exc_tool_dia].append(drill['point'])
  1831. for slot in exc.slots:
  1832. exc_tool_dia = float('%.*f' % (decimals_exc, exc.tools[slot['tool']]['C']))
  1833. if exc_tool_dia not in custom_dict_slots:
  1834. custom_dict_slots[exc_tool_dia] = [[slot['start'], slot['stop']]]
  1835. else:
  1836. custom_dict_slots[exc_tool_dia].append([slot['start'], slot['stop']])
  1837. # add the zeros and units to the exc_final object
  1838. exc_final.zeros = exc.zeros
  1839. exc_final.units = exc.units
  1840. # ##########################################
  1841. # Here we add data to the exc_final object #
  1842. # ##########################################
  1843. # variable to make tool_name for the tools
  1844. current_tool = 0
  1845. # The tools diameter are now the keys in the drill_dia dict and the values are the Shapely Points in case of
  1846. # drills
  1847. for tool_dia in custom_dict_drills:
  1848. # we create a tool name for each key in the drill_dia dict (the key is a unique drill diameter)
  1849. current_tool += 1
  1850. tool_name = str(current_tool)
  1851. spec = {"C": float(tool_dia)}
  1852. exc_final.tools[tool_name] = spec
  1853. # rebuild the drills list of dict's that belong to the exc_final object
  1854. for point in custom_dict_drills[tool_dia]:
  1855. exc_final.drills.append(
  1856. {
  1857. "point": point,
  1858. "tool": str(current_tool)
  1859. }
  1860. )
  1861. # The tools diameter are now the keys in the drill_dia dict and the values are a list ([start, stop])
  1862. # of two Shapely Points in case of slots
  1863. for tool_dia in custom_dict_slots:
  1864. # we create a tool name for each key in the slot_dia dict (the key is a unique slot diameter)
  1865. # but only if there are no drills
  1866. if not exc_final.tools:
  1867. current_tool += 1
  1868. tool_name = str(current_tool)
  1869. spec = {"C": float(tool_dia)}
  1870. exc_final.tools[tool_name] = spec
  1871. else:
  1872. dia_list = []
  1873. for v in exc_final.tools.values():
  1874. dia_list.append(float(v["C"]))
  1875. if tool_dia not in dia_list:
  1876. flag_order = True
  1877. current_tool = len(dia_list) + 1
  1878. tool_name = str(current_tool)
  1879. spec = {"C": float(tool_dia)}
  1880. exc_final.tools[tool_name] = spec
  1881. else:
  1882. for k, v in exc_final.tools.items():
  1883. if v["C"] == tool_dia:
  1884. current_tool = int(k)
  1885. break
  1886. # rebuild the slots list of dict's that belong to the exc_final object
  1887. for point in custom_dict_slots[tool_dia]:
  1888. exc_final.slots.append(
  1889. {
  1890. "start": point[0],
  1891. "stop": point[1],
  1892. "tool": str(current_tool)
  1893. }
  1894. )
  1895. # flag_order == True means that there was an slot diameter not in the tools and we also have drills
  1896. # and the new tool was added to self.tools therefore we need to reorder the tools and drills and slots
  1897. current_tool = 0
  1898. if flag_order is True:
  1899. dia_list = []
  1900. temp_drills = []
  1901. temp_slots = []
  1902. temp_tools = {}
  1903. for v in exc_final.tools.values():
  1904. dia_list.append(float(v["C"]))
  1905. dia_list.sort()
  1906. for ordered_dia in dia_list:
  1907. current_tool += 1
  1908. tool_name_temp = str(current_tool)
  1909. spec_temp = {"C": float(ordered_dia)}
  1910. temp_tools[tool_name_temp] = spec_temp
  1911. for drill in exc_final.drills:
  1912. exc_tool_dia = float('%.*f' % (decimals_exc, exc_final.tools[drill['tool']]['C']))
  1913. if exc_tool_dia == ordered_dia:
  1914. temp_drills.append(
  1915. {
  1916. "point": drill["point"],
  1917. "tool": str(current_tool)
  1918. }
  1919. )
  1920. for slot in exc_final.slots:
  1921. slot_tool_dia = float('%.*f' % (decimals_exc, exc_final.tools[slot['tool']]['C']))
  1922. if slot_tool_dia == ordered_dia:
  1923. temp_slots.append(
  1924. {
  1925. "start": slot["start"],
  1926. "stop": slot["stop"],
  1927. "tool": str(current_tool)
  1928. }
  1929. )
  1930. # delete the exc_final tools, drills and slots
  1931. exc_final.tools = dict()
  1932. exc_final.drills[:] = []
  1933. exc_final.slots[:] = []
  1934. # update the exc_final tools, drills and slots with the ordered values
  1935. exc_final.tools = temp_tools
  1936. exc_final.drills[:] = temp_drills
  1937. exc_final.slots[:] = temp_slots
  1938. # create the geometry for the exc_final object
  1939. exc_final.create_geometry()
  1940. def build_ui(self):
  1941. FlatCAMObj.build_ui(self)
  1942. self.units = self.app.defaults['units'].upper()
  1943. try:
  1944. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  1945. self.ui.tools_table.itemChanged.disconnect()
  1946. except (TypeError, AttributeError):
  1947. pass
  1948. n = len(self.tools)
  1949. # we have (n+2) rows because there are 'n' tools, each a row, plus the last 2 rows for totals.
  1950. self.ui.tools_table.setRowCount(n + 2)
  1951. self.tot_drill_cnt = 0
  1952. self.tot_slot_cnt = 0
  1953. self.tool_row = 0
  1954. sort = []
  1955. for k, v in list(self.tools.items()):
  1956. sort.append((k, v.get('C')))
  1957. sorted_tools = sorted(sort, key=lambda t1: t1[1])
  1958. tools = [i[0] for i in sorted_tools]
  1959. for tool_no in tools:
  1960. drill_cnt = 0 # variable to store the nr of drills per tool
  1961. slot_cnt = 0 # variable to store the nr of slots per tool
  1962. # Find no of drills for the current tool
  1963. for drill in self.drills:
  1964. if drill['tool'] == tool_no:
  1965. drill_cnt += 1
  1966. self.tot_drill_cnt += drill_cnt
  1967. # Find no of slots for the current tool
  1968. for slot in self.slots:
  1969. if slot['tool'] == tool_no:
  1970. slot_cnt += 1
  1971. self.tot_slot_cnt += slot_cnt
  1972. exc_id = QtWidgets.QTableWidgetItem('%d' % int(tool_no))
  1973. exc_id.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  1974. self.ui.tools_table.setItem(self.tool_row, 0, exc_id) # Tool name/id
  1975. # Make sure that the drill diameter when in MM is with no more than 2 decimals
  1976. # There are no drill bits in MM with more than 3 decimals diameter
  1977. # For INCH the decimals should be no more than 3. There are no drills under 10mils
  1978. dia = QtWidgets.QTableWidgetItem('%.*f' % (self.decimals, self.tools[tool_no]['C']))
  1979. dia.setFlags(QtCore.Qt.ItemIsEnabled)
  1980. drill_count = QtWidgets.QTableWidgetItem('%d' % drill_cnt)
  1981. drill_count.setFlags(QtCore.Qt.ItemIsEnabled)
  1982. # if the slot number is zero is better to not clutter the GUI with zero's so we print a space
  1983. if slot_cnt > 0:
  1984. slot_count = QtWidgets.QTableWidgetItem('%d' % slot_cnt)
  1985. else:
  1986. slot_count = QtWidgets.QTableWidgetItem('')
  1987. slot_count.setFlags(QtCore.Qt.ItemIsEnabled)
  1988. try:
  1989. t_offset = self.tool_offset[float('%.*f' % (self.decimals, float(self.tools[tool_no]['C'])))]
  1990. except KeyError:
  1991. t_offset = self.app.defaults['excellon_offset']
  1992. tool_offset_item = QtWidgets.QTableWidgetItem('%s' % str(t_offset))
  1993. tool_offset_item.setFlags(QtCore.Qt.ItemIsEnabled)
  1994. plot_item = FCCheckBox()
  1995. plot_item.setLayoutDirection(QtCore.Qt.RightToLeft)
  1996. if self.ui.plot_cb.isChecked():
  1997. plot_item.setChecked(True)
  1998. self.ui.tools_table.setItem(self.tool_row, 1, dia) # Diameter
  1999. self.ui.tools_table.setItem(self.tool_row, 2, drill_count) # Number of drills per tool
  2000. self.ui.tools_table.setItem(self.tool_row, 3, slot_count) # Number of drills per tool
  2001. self.ui.tools_table.setItem(self.tool_row, 4, tool_offset_item) # Tool offset
  2002. empty_plot_item = QtWidgets.QTableWidgetItem('')
  2003. empty_plot_item.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2004. self.ui.tools_table.setItem(self.tool_row, 5, empty_plot_item)
  2005. self.ui.tools_table.setCellWidget(self.tool_row, 5, plot_item)
  2006. self.tool_row += 1
  2007. # add a last row with the Total number of drills
  2008. empty_1 = QtWidgets.QTableWidgetItem('')
  2009. empty_1.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2010. empty_1_1 = QtWidgets.QTableWidgetItem('')
  2011. empty_1_1.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2012. empty_1_2 = QtWidgets.QTableWidgetItem('')
  2013. empty_1_2.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2014. empty_1_3 = QtWidgets.QTableWidgetItem('')
  2015. empty_1_3.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2016. label_tot_drill_count = QtWidgets.QTableWidgetItem(_('Total Drills'))
  2017. tot_drill_count = QtWidgets.QTableWidgetItem('%d' % self.tot_drill_cnt)
  2018. label_tot_drill_count.setFlags(QtCore.Qt.ItemIsEnabled)
  2019. tot_drill_count.setFlags(QtCore.Qt.ItemIsEnabled)
  2020. self.ui.tools_table.setItem(self.tool_row, 0, empty_1)
  2021. self.ui.tools_table.setItem(self.tool_row, 1, label_tot_drill_count)
  2022. self.ui.tools_table.setItem(self.tool_row, 2, tot_drill_count) # Total number of drills
  2023. self.ui.tools_table.setItem(self.tool_row, 3, empty_1_1)
  2024. self.ui.tools_table.setItem(self.tool_row, 4, empty_1_2)
  2025. self.ui.tools_table.setItem(self.tool_row, 5, empty_1_3)
  2026. font = QtGui.QFont()
  2027. font.setBold(True)
  2028. font.setWeight(75)
  2029. for k in [1, 2]:
  2030. self.ui.tools_table.item(self.tool_row, k).setForeground(QtGui.QColor(127, 0, 255))
  2031. self.ui.tools_table.item(self.tool_row, k).setFont(font)
  2032. self.tool_row += 1
  2033. # add a last row with the Total number of slots
  2034. empty_2 = QtWidgets.QTableWidgetItem('')
  2035. empty_2.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2036. empty_2_1 = QtWidgets.QTableWidgetItem('')
  2037. empty_2_1.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2038. empty_2_2 = QtWidgets.QTableWidgetItem('')
  2039. empty_2_2.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2040. empty_2_3 = QtWidgets.QTableWidgetItem('')
  2041. empty_2_3.setFlags(~QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2042. label_tot_slot_count = QtWidgets.QTableWidgetItem(_('Total Slots'))
  2043. tot_slot_count = QtWidgets.QTableWidgetItem('%d' % self.tot_slot_cnt)
  2044. label_tot_slot_count.setFlags(QtCore.Qt.ItemIsEnabled)
  2045. tot_slot_count.setFlags(QtCore.Qt.ItemIsEnabled)
  2046. self.ui.tools_table.setItem(self.tool_row, 0, empty_2)
  2047. self.ui.tools_table.setItem(self.tool_row, 1, label_tot_slot_count)
  2048. self.ui.tools_table.setItem(self.tool_row, 2, empty_2_1)
  2049. self.ui.tools_table.setItem(self.tool_row, 3, tot_slot_count) # Total number of slots
  2050. self.ui.tools_table.setItem(self.tool_row, 4, empty_2_2)
  2051. self.ui.tools_table.setItem(self.tool_row, 5, empty_2_3)
  2052. for kl in [1, 2, 3]:
  2053. self.ui.tools_table.item(self.tool_row, kl).setFont(font)
  2054. self.ui.tools_table.item(self.tool_row, kl).setForeground(QtGui.QColor(0, 70, 255))
  2055. # sort the tool diameter column
  2056. # self.ui.tools_table.sortItems(1)
  2057. # all the tools are selected by default
  2058. self.ui.tools_table.selectColumn(0)
  2059. #
  2060. self.ui.tools_table.resizeColumnsToContents()
  2061. self.ui.tools_table.resizeRowsToContents()
  2062. vertical_header = self.ui.tools_table.verticalHeader()
  2063. # vertical_header.setSectionResizeMode(QtWidgets.QHeaderView.ResizeToContents)
  2064. vertical_header.hide()
  2065. self.ui.tools_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2066. horizontal_header = self.ui.tools_table.horizontalHeader()
  2067. horizontal_header.setMinimumSectionSize(10)
  2068. horizontal_header.setDefaultSectionSize(70)
  2069. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  2070. horizontal_header.resizeSection(0, 20)
  2071. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.Stretch)
  2072. horizontal_header.setSectionResizeMode(2, QtWidgets.QHeaderView.ResizeToContents)
  2073. horizontal_header.setSectionResizeMode(3, QtWidgets.QHeaderView.ResizeToContents)
  2074. horizontal_header.setSectionResizeMode(4, QtWidgets.QHeaderView.ResizeToContents)
  2075. horizontal_header.setSectionResizeMode(5, QtWidgets.QHeaderView.Fixed)
  2076. horizontal_header.resizeSection(5, 17)
  2077. self.ui.tools_table.setColumnWidth(5, 17)
  2078. # horizontal_header.setStretchLastSection(True)
  2079. # horizontal_header.setColumnWidth(2, QtWidgets.QHeaderView.ResizeToContents)
  2080. # horizontal_header.setStretchLastSection(True)
  2081. self.ui.tools_table.setHorizontalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2082. self.ui.tools_table.setSortingEnabled(False)
  2083. self.ui.tools_table.setMinimumHeight(self.ui.tools_table.getHeight())
  2084. self.ui.tools_table.setMaximumHeight(self.ui.tools_table.getHeight())
  2085. if not self.drills:
  2086. self.ui.tdlabel.hide()
  2087. self.ui.tooldia_entry.hide()
  2088. self.ui.generate_milling_button.hide()
  2089. else:
  2090. self.ui.tdlabel.show()
  2091. self.ui.tooldia_entry.show()
  2092. self.ui.generate_milling_button.show()
  2093. if not self.slots:
  2094. self.ui.stdlabel.hide()
  2095. self.ui.slot_tooldia_entry.hide()
  2096. self.ui.generate_milling_slots_button.hide()
  2097. else:
  2098. self.ui.stdlabel.show()
  2099. self.ui.slot_tooldia_entry.show()
  2100. self.ui.generate_milling_slots_button.show()
  2101. # we reactivate the signals after the after the tool adding as we don't need to see the tool been populated
  2102. self.ui.tools_table.itemChanged.connect(self.on_tool_offset_edit)
  2103. self.ui_connect()
  2104. def set_ui(self, ui):
  2105. """
  2106. Configures the user interface for this object.
  2107. Connects options to form fields.
  2108. :param ui: User interface object.
  2109. :type ui: ExcellonObjectUI
  2110. :return: None
  2111. """
  2112. FlatCAMObj.set_ui(self, ui)
  2113. FlatCAMApp.App.log.debug("FlatCAMExcellon.set_ui()")
  2114. self.units = self.app.defaults['units'].upper()
  2115. if self.units == 'MM':
  2116. self.decimals = 2
  2117. else:
  2118. self.decimals = 4
  2119. self.form_fields.update({
  2120. "plot": self.ui.plot_cb,
  2121. "solid": self.ui.solid_cb,
  2122. "drillz": self.ui.cutz_entry,
  2123. "travelz": self.ui.travelz_entry,
  2124. "feedrate": self.ui.feedrate_entry,
  2125. "feedrate_rapid": self.ui.feedrate_rapid_entry,
  2126. "tooldia": self.ui.tooldia_entry,
  2127. "slot_tooldia": self.ui.slot_tooldia_entry,
  2128. "toolchange": self.ui.toolchange_cb,
  2129. "toolchangez": self.ui.toolchangez_entry,
  2130. "spindlespeed": self.ui.spindlespeed_entry,
  2131. "dwell": self.ui.dwell_cb,
  2132. "dwelltime": self.ui.dwelltime_entry,
  2133. "startz": self.ui.estartz_entry,
  2134. "endz": self.ui.eendz_entry,
  2135. "ppname_e": self.ui.pp_excellon_name_cb,
  2136. "z_pdepth": self.ui.pdepth_entry,
  2137. "feedrate_probe": self.ui.feedrate_probe_entry,
  2138. "gcode_type": self.ui.excellon_gcode_type_radio
  2139. })
  2140. for name in list(self.app.postprocessors.keys()):
  2141. # the HPGL postprocessor is only for Geometry not for Excellon job therefore don't add it
  2142. if name == 'hpgl':
  2143. continue
  2144. self.ui.pp_excellon_name_cb.addItem(name)
  2145. # Fill form fields
  2146. self.to_form()
  2147. # update the changes in UI depending on the selected postprocessor in Preferences
  2148. # after this moment all the changes in the Posprocessor combo will be handled by the activated signal of the
  2149. # self.ui.pp_excellon_name_cb combobox
  2150. self.on_pp_changed()
  2151. # initialize the dict that holds the tools offset
  2152. t_default_offset = self.app.defaults["excellon_offset"]
  2153. if not self.tool_offset:
  2154. for value in self.tools.values():
  2155. dia = float('%.*f' % (self.decimals, float(value['C'])))
  2156. self.tool_offset[dia] = t_default_offset
  2157. # Show/Hide Advanced Options
  2158. if self.app.defaults["global_app_level"] == 'b':
  2159. self.ui.level.setText('<span style="color:green;"><b>%s</b></span>' % _('Basic'))
  2160. self.ui.tools_table.setColumnHidden(4, True)
  2161. self.ui.estartz_label.hide()
  2162. self.ui.estartz_entry.hide()
  2163. self.ui.feedrate_rapid_label.hide()
  2164. self.ui.feedrate_rapid_entry.hide()
  2165. self.ui.pdepth_label.hide()
  2166. self.ui.pdepth_entry.hide()
  2167. self.ui.feedrate_probe_label.hide()
  2168. self.ui.feedrate_probe_entry.hide()
  2169. else:
  2170. self.ui.level.setText('<span style="color:red;"><b>%s</b></span>' % _('Advanced'))
  2171. assert isinstance(self.ui, ExcellonObjectUI), \
  2172. "Expected a ExcellonObjectUI, got %s" % type(self.ui)
  2173. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  2174. self.ui.solid_cb.stateChanged.connect(self.on_solid_cb_click)
  2175. self.ui.generate_cnc_button.clicked.connect(self.on_create_cncjob_button_click)
  2176. self.ui.generate_milling_button.clicked.connect(self.on_generate_milling_button_click)
  2177. self.ui.generate_milling_slots_button.clicked.connect(self.on_generate_milling_slots_button_click)
  2178. self.ui.pp_excellon_name_cb.activated.connect(self.on_pp_changed)
  2179. def ui_connect(self):
  2180. for row in range(self.ui.tools_table.rowCount() - 2):
  2181. self.ui.tools_table.cellWidget(row, 5).clicked.connect(self.on_plot_cb_click_table)
  2182. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  2183. def ui_disconnect(self):
  2184. for row in range(self.ui.tools_table.rowCount()):
  2185. try:
  2186. self.ui.tools_table.cellWidget(row, 5).clicked.disconnect()
  2187. except (TypeError, AttributeError):
  2188. pass
  2189. try:
  2190. self.ui.plot_cb.stateChanged.disconnect()
  2191. except (TypeError, AttributeError):
  2192. pass
  2193. def on_tool_offset_edit(self):
  2194. # if connected, disconnect the signal from the slot on item_changed as it creates issues
  2195. self.ui.tools_table.itemChanged.disconnect()
  2196. # self.tools_table_exc.selectionModel().currentChanged.disconnect()
  2197. self.units = self.app.defaults['units'].upper()
  2198. self.is_modified = True
  2199. row_of_item_changed = self.ui.tools_table.currentRow()
  2200. dia = float('%.*f' % (self.decimals, float(self.ui.tools_table.item(row_of_item_changed, 1).text())))
  2201. current_table_offset_edited = None
  2202. if self.ui.tools_table.currentItem() is not None:
  2203. try:
  2204. current_table_offset_edited = float(self.ui.tools_table.currentItem().text())
  2205. except ValueError:
  2206. # try to convert comma to decimal point. if it's still not working error message and return
  2207. try:
  2208. current_table_offset_edited = float(self.ui.tools_table.currentItem().text().replace(',', '.'))
  2209. self.ui.tools_table.currentItem().setText(
  2210. self.ui.tools_table.currentItem().text().replace(',', '.'))
  2211. except ValueError:
  2212. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2213. _("Wrong value format entered, use a number."))
  2214. self.ui.tools_table.currentItem().setText(str(self.tool_offset[dia]))
  2215. return
  2216. self.tool_offset[dia] = current_table_offset_edited
  2217. # we reactivate the signals after the after the tool editing
  2218. self.ui.tools_table.itemChanged.connect(self.on_tool_offset_edit)
  2219. def get_selected_tools_list(self):
  2220. """
  2221. Returns the keys to the self.tools dictionary corresponding
  2222. to the selections on the tool list in the GUI.
  2223. :return: List of tools.
  2224. :rtype: list
  2225. """
  2226. return [str(x.text()) for x in self.ui.tools_table.selectedItems()]
  2227. def get_selected_tools_table_items(self):
  2228. """
  2229. Returns a list of lists, each list in the list is made out of row elements
  2230. :return: List of table_tools items.
  2231. :rtype: list
  2232. """
  2233. table_tools_items = []
  2234. for x in self.ui.tools_table.selectedItems():
  2235. # from the columnCount we subtract a value of 1 which represent the last column (plot column)
  2236. # which does not have text
  2237. txt = ''
  2238. elem = list()
  2239. for column in range(0, self.ui.tools_table.columnCount() - 1):
  2240. try:
  2241. txt = self.ui.tools_table.item(x.row(), column).text()
  2242. except AttributeError:
  2243. try:
  2244. txt = self.ui.tools_table.cellWidget(x.row(), column).currentText()
  2245. except AttributeError:
  2246. pass
  2247. elem.append(txt)
  2248. table_tools_items.append(deepcopy(elem))
  2249. # table_tools_items.append([self.ui.tools_table.item(x.row(), column).text()
  2250. # for column in range(0, self.ui.tools_table.columnCount() - 1)])
  2251. for item in table_tools_items:
  2252. item[0] = str(item[0])
  2253. return table_tools_items
  2254. def export_excellon(self, whole, fract, e_zeros=None, form='dec', factor=1, slot_type='routing'):
  2255. """
  2256. Returns two values, first is a boolean , if 1 then the file has slots and second contain the Excellon code
  2257. :return: has_slots and Excellon_code
  2258. """
  2259. excellon_code = ''
  2260. # store here if the file has slots, return 1 if any slots, 0 if only drills
  2261. has_slots = 0
  2262. # drills processing
  2263. try:
  2264. if self.drills:
  2265. length = whole + fract
  2266. for tool in self.tools:
  2267. excellon_code += 'T0%s\n' % str(tool) if int(tool) < 10 else 'T%s\n' % str(tool)
  2268. for drill in self.drills:
  2269. if form == 'dec' and tool == drill['tool']:
  2270. drill_x = drill['point'].x * factor
  2271. drill_y = drill['point'].y * factor
  2272. excellon_code += "X{:.{dec}f}Y{:.{dec}f}\n".format(drill_x, drill_y, dec=fract)
  2273. elif e_zeros == 'LZ' and tool == drill['tool']:
  2274. drill_x = drill['point'].x * factor
  2275. drill_y = drill['point'].y * factor
  2276. exc_x_formatted = "{:.{dec}f}".format(drill_x, dec=fract)
  2277. exc_y_formatted = "{:.{dec}f}".format(drill_y, dec=fract)
  2278. # extract whole part and decimal part
  2279. exc_x_formatted = exc_x_formatted.partition('.')
  2280. exc_y_formatted = exc_y_formatted.partition('.')
  2281. # left padd the 'whole' part with zeros
  2282. x_whole = exc_x_formatted[0].rjust(whole, '0')
  2283. y_whole = exc_y_formatted[0].rjust(whole, '0')
  2284. # restore the coordinate padded in the left with 0 and added the decimal part
  2285. # without the decinal dot
  2286. exc_x_formatted = x_whole + exc_x_formatted[2]
  2287. exc_y_formatted = y_whole + exc_y_formatted[2]
  2288. excellon_code += "X{xform}Y{yform}\n".format(xform=exc_x_formatted,
  2289. yform=exc_y_formatted)
  2290. elif tool == drill['tool']:
  2291. drill_x = drill['point'].x * factor
  2292. drill_y = drill['point'].y * factor
  2293. exc_x_formatted = "{:.{dec}f}".format(drill_x, dec=fract).replace('.', '')
  2294. exc_y_formatted = "{:.{dec}f}".format(drill_y, dec=fract).replace('.', '')
  2295. # pad with rear zeros
  2296. exc_x_formatted.ljust(length, '0')
  2297. exc_y_formatted.ljust(length, '0')
  2298. excellon_code += "X{xform}Y{yform}\n".format(xform=exc_x_formatted,
  2299. yform=exc_y_formatted)
  2300. except Exception as e:
  2301. log.debug(str(e))
  2302. # slots processing
  2303. try:
  2304. if self.slots:
  2305. has_slots = 1
  2306. for tool in self.tools:
  2307. excellon_code += 'G05\n'
  2308. if int(tool) < 10:
  2309. excellon_code += 'T0' + str(tool) + '\n'
  2310. else:
  2311. excellon_code += 'T' + str(tool) + '\n'
  2312. for slot in self.slots:
  2313. if form == 'dec' and tool == slot['tool']:
  2314. start_slot_x = slot['start'].x * factor
  2315. start_slot_y = slot['start'].y * factor
  2316. stop_slot_x = slot['stop'].x * factor
  2317. stop_slot_y = slot['stop'].y * factor
  2318. if slot_type == 'routing':
  2319. excellon_code += "G00X{:.{dec}f}Y{:.{dec}f}\nM15\n".format(start_slot_x,
  2320. start_slot_y,
  2321. dec=fract)
  2322. excellon_code += "G01X{:.{dec}f}Y{:.{dec}f}\nM16\n".format(stop_slot_x,
  2323. stop_slot_y,
  2324. dec=fract)
  2325. elif slot_type == 'drilling':
  2326. excellon_code += "X{:.{dec}f}Y{:.{dec}f}G85X{:.{dec}f}Y{:.{dec}f}\nG05\n".format(
  2327. start_slot_x, start_slot_y, stop_slot_x, stop_slot_y, dec=fract
  2328. )
  2329. elif e_zeros == 'LZ' and tool == slot['tool']:
  2330. start_slot_x = slot['start'].x * factor
  2331. start_slot_y = slot['start'].y * factor
  2332. stop_slot_x = slot['stop'].x * factor
  2333. stop_slot_y = slot['stop'].y * factor
  2334. start_slot_x_formatted = "{:.{dec}f}".format(start_slot_x, dec=fract).replace('.', '')
  2335. start_slot_y_formatted = "{:.{dec}f}".format(start_slot_y, dec=fract).replace('.', '')
  2336. stop_slot_x_formatted = "{:.{dec}f}".format(stop_slot_x, dec=fract).replace('.', '')
  2337. stop_slot_y_formatted = "{:.{dec}f}".format(stop_slot_y, dec=fract).replace('.', '')
  2338. # extract whole part and decimal part
  2339. start_slot_x_formatted = start_slot_x_formatted.partition('.')
  2340. start_slot_y_formatted = start_slot_y_formatted.partition('.')
  2341. stop_slot_x_formatted = stop_slot_x_formatted.partition('.')
  2342. stop_slot_y_formatted = stop_slot_y_formatted.partition('.')
  2343. # left padd the 'whole' part with zeros
  2344. start_x_whole = start_slot_x_formatted[0].rjust(whole, '0')
  2345. start_y_whole = start_slot_y_formatted[0].rjust(whole, '0')
  2346. stop_x_whole = stop_slot_x_formatted[0].rjust(whole, '0')
  2347. stop_y_whole = stop_slot_y_formatted[0].rjust(whole, '0')
  2348. # restore the coordinate padded in the left with 0 and added the decimal part
  2349. # without the decinal dot
  2350. start_slot_x_formatted = start_x_whole + start_slot_x_formatted[2]
  2351. start_slot_y_formatted = start_y_whole + start_slot_y_formatted[2]
  2352. stop_slot_x_formatted = stop_x_whole + stop_slot_x_formatted[2]
  2353. stop_slot_y_formatted = stop_y_whole + stop_slot_y_formatted[2]
  2354. if slot_type == 'routing':
  2355. excellon_code += "G00X{xstart}Y{ystart}\nM15\n".format(xstart=start_slot_x_formatted,
  2356. ystart=start_slot_y_formatted)
  2357. excellon_code += "G01X{xstop}Y{ystop}\nM16\n".format(xstop=stop_slot_x_formatted,
  2358. ystop=stop_slot_y_formatted)
  2359. elif slot_type == 'drilling':
  2360. excellon_code += "{xstart}Y{ystart}G85X{xstop}Y{ystop}\nG05\n".format(
  2361. xstart=start_slot_x_formatted, ystart=start_slot_y_formatted,
  2362. xstop=stop_slot_x_formatted, ystop=stop_slot_y_formatted
  2363. )
  2364. elif tool == slot['tool']:
  2365. start_slot_x = slot['start'].x * factor
  2366. start_slot_y = slot['start'].y * factor
  2367. stop_slot_x = slot['stop'].x * factor
  2368. stop_slot_y = slot['stop'].y * factor
  2369. length = whole + fract
  2370. start_slot_x_formatted = "{:.{dec}f}".format(start_slot_x, dec=fract).replace('.', '')
  2371. start_slot_y_formatted = "{:.{dec}f}".format(start_slot_y, dec=fract).replace('.', '')
  2372. stop_slot_x_formatted = "{:.{dec}f}".format(stop_slot_x, dec=fract).replace('.', '')
  2373. stop_slot_y_formatted = "{:.{dec}f}".format(stop_slot_y, dec=fract).replace('.', '')
  2374. # pad with rear zeros
  2375. start_slot_x_formatted.ljust(length, '0')
  2376. start_slot_y_formatted.ljust(length, '0')
  2377. stop_slot_x_formatted.ljust(length, '0')
  2378. stop_slot_y_formatted.ljust(length, '0')
  2379. if slot_type == 'routing':
  2380. excellon_code += "G00X{xstart}Y{ystart}\nM15\n".format(xstart=start_slot_x_formatted,
  2381. ystart=start_slot_y_formatted)
  2382. excellon_code += "G01X{xstop}Y{ystop}\nM16\n".format(xstop=stop_slot_x_formatted,
  2383. ystop=stop_slot_y_formatted)
  2384. elif slot_type == 'drilling':
  2385. excellon_code += "{xstart}Y{ystart}G85X{xstop}Y{ystop}\nG05\n".format(
  2386. xstart=start_slot_x_formatted, ystart=start_slot_y_formatted,
  2387. xstop=stop_slot_x_formatted, ystop=stop_slot_y_formatted
  2388. )
  2389. except Exception as e:
  2390. log.debug(str(e))
  2391. if not self.drills and not self.slots:
  2392. log.debug("FlatCAMObj.FlatCAMExcellon.export_excellon() --> Excellon Object is empty: no drills, no slots.")
  2393. return 'fail'
  2394. return has_slots, excellon_code
  2395. def generate_milling_drills(self, tools=None, outname=None, tooldia=None, plot=False, use_thread=False):
  2396. """
  2397. Note: This method is a good template for generic operations as
  2398. it takes it's options from parameters or otherwise from the
  2399. object's options and returns a (success, msg) tuple as feedback
  2400. for shell operations.
  2401. :return: Success/failure condition tuple (bool, str).
  2402. :rtype: tuple
  2403. """
  2404. # Get the tools from the list. These are keys
  2405. # to self.tools
  2406. if tools is None:
  2407. tools = self.get_selected_tools_list()
  2408. if outname is None:
  2409. outname = self.options["name"] + "_mill"
  2410. if tooldia is None:
  2411. tooldia = float(self.options["tooldia"])
  2412. # Sort tools by diameter. items() -> [('name', diameter), ...]
  2413. # sorted_tools = sorted(list(self.tools.items()), key=lambda tl: tl[1]) # no longer works in Python3
  2414. sort = []
  2415. for k, v in self.tools.items():
  2416. sort.append((k, v.get('C')))
  2417. sorted_tools = sorted(sort, key=lambda t1: t1[1])
  2418. if tools == "all":
  2419. tools = [i[0] for i in sorted_tools] # List if ordered tool names.
  2420. log.debug("Tools 'all' and sorted are: %s" % str(tools))
  2421. if len(tools) == 0:
  2422. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2423. _("Please select one or more tools from the list and try again."))
  2424. return False, "Error: No tools."
  2425. for tool in tools:
  2426. if tooldia > self.tools[tool]["C"]:
  2427. self.app.inform.emit(
  2428. '[ERROR_NOTCL] %s %s: %s' % (
  2429. _("Milling tool for DRILLS is larger than hole size. Cancelled."),
  2430. _("Tool"),
  2431. str(tool)
  2432. )
  2433. )
  2434. return False, "Error: Milling tool is larger than hole."
  2435. def geo_init(geo_obj, app_obj):
  2436. assert isinstance(geo_obj, FlatCAMGeometry), \
  2437. "Initializer expected a FlatCAMGeometry, got %s" % type(geo_obj)
  2438. app_obj.progress.emit(20)
  2439. # ## Add properties to the object
  2440. # get the tool_table items in a list of row items
  2441. tool_table_items = self.get_selected_tools_table_items()
  2442. # insert an information only element in the front
  2443. tool_table_items.insert(0, [_("Tool_nr"), _("Diameter"), _("Drills_Nr"), _("Slots_Nr")])
  2444. geo_obj.options['Tools_in_use'] = tool_table_items
  2445. geo_obj.options['type'] = 'Excellon Geometry'
  2446. geo_obj.options["cnctooldia"] = str(tooldia)
  2447. geo_obj.solid_geometry = []
  2448. # in case that the tool used has the same diameter with the hole, and since the maximum resolution
  2449. # for FlatCAM is 6 decimals,
  2450. # we add a tenth of the minimum value, meaning 0.0000001, which from our point of view is "almost zero"
  2451. for hole in self.drills:
  2452. if hole['tool'] in tools:
  2453. buffer_value = self.tools[hole['tool']]["C"] / 2 - tooldia / 2
  2454. if buffer_value == 0:
  2455. geo_obj.solid_geometry.append(
  2456. Point(hole['point']).buffer(0.0000001).exterior)
  2457. else:
  2458. geo_obj.solid_geometry.append(
  2459. Point(hole['point']).buffer(buffer_value).exterior)
  2460. if use_thread:
  2461. def geo_thread(app_obj):
  2462. app_obj.new_object("geometry", outname, geo_init, plot=plot)
  2463. app_obj.progress.emit(100)
  2464. # Create a promise with the new name
  2465. self.app.collection.promise(outname)
  2466. # Send to worker
  2467. self.app.worker_task.emit({'fcn': geo_thread, 'params': [self.app]})
  2468. else:
  2469. self.app.new_object("geometry", outname, geo_init, plot=plot)
  2470. return True, ""
  2471. def generate_milling_slots(self, tools=None, outname=None, tooldia=None, plot=True, use_thread=False):
  2472. """
  2473. Note: This method is a good template for generic operations as
  2474. it takes it's options from parameters or otherwise from the
  2475. object's options and returns a (success, msg) tuple as feedback
  2476. for shell operations.
  2477. :return: Success/failure condition tuple (bool, str).
  2478. :rtype: tuple
  2479. """
  2480. # Get the tools from the list. These are keys
  2481. # to self.tools
  2482. if tools is None:
  2483. tools = self.get_selected_tools_list()
  2484. if outname is None:
  2485. outname = self.options["name"] + "_mill"
  2486. if tooldia is None:
  2487. tooldia = float(self.options["slot_tooldia"])
  2488. # Sort tools by diameter. items() -> [('name', diameter), ...]
  2489. # sorted_tools = sorted(list(self.tools.items()), key=lambda tl: tl[1]) # no longer works in Python3
  2490. sort = []
  2491. for k, v in self.tools.items():
  2492. sort.append((k, v.get('C')))
  2493. sorted_tools = sorted(sort, key=lambda t1: t1[1])
  2494. if tools == "all":
  2495. tools = [i[0] for i in sorted_tools] # List if ordered tool names.
  2496. log.debug("Tools 'all' and sorted are: %s" % str(tools))
  2497. if len(tools) == 0:
  2498. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2499. _("Please select one or more tools from the list and try again."))
  2500. return False, "Error: No tools."
  2501. for tool in tools:
  2502. # I add the 0.0001 value to account for the rounding error in converting from IN to MM and reverse
  2503. adj_toolstable_tooldia = float('%.*f' % (self.decimals, float(tooldia)))
  2504. adj_file_tooldia = float('%.*f' % (self.decimals, float(self.tools[tool]["C"])))
  2505. if adj_toolstable_tooldia > adj_file_tooldia + 0.0001:
  2506. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2507. _("Milling tool for SLOTS is larger than hole size. Cancelled."))
  2508. return False, "Error: Milling tool is larger than hole."
  2509. def geo_init(geo_obj, app_obj):
  2510. assert isinstance(geo_obj, FlatCAMGeometry), \
  2511. "Initializer expected a FlatCAMGeometry, got %s" % type(geo_obj)
  2512. app_obj.progress.emit(20)
  2513. # ## Add properties to the object
  2514. # get the tool_table items in a list of row items
  2515. tool_table_items = self.get_selected_tools_table_items()
  2516. # insert an information only element in the front
  2517. tool_table_items.insert(0, [_("Tool_nr"), _("Diameter"), _("Drills_Nr"), _("Slots_Nr")])
  2518. geo_obj.options['Tools_in_use'] = tool_table_items
  2519. geo_obj.options['type'] = 'Excellon Geometry'
  2520. geo_obj.options["cnctooldia"] = str(tooldia)
  2521. geo_obj.solid_geometry = []
  2522. # in case that the tool used has the same diameter with the hole, and since the maximum resolution
  2523. # for FlatCAM is 6 decimals,
  2524. # we add a tenth of the minimum value, meaning 0.0000001, which from our point of view is "almost zero"
  2525. for slot in self.slots:
  2526. if slot['tool'] in tools:
  2527. toolstable_tool = float('%.*f' % (self.decimals, float(tooldia)))
  2528. file_tool = float('%.*f' % (self.decimals, float(self.tools[tool]["C"])))
  2529. # I add the 0.0001 value to account for the rounding error in converting from IN to MM and reverse
  2530. # for the file_tool (tooldia actually)
  2531. buffer_value = float(file_tool / 2) - float(toolstable_tool / 2) + 0.0001
  2532. if buffer_value == 0:
  2533. start = slot['start']
  2534. stop = slot['stop']
  2535. lines_string = LineString([start, stop])
  2536. poly = lines_string.buffer(0.0000001, int(self.geo_steps_per_circle)).exterior
  2537. geo_obj.solid_geometry.append(poly)
  2538. else:
  2539. start = slot['start']
  2540. stop = slot['stop']
  2541. lines_string = LineString([start, stop])
  2542. poly = lines_string.buffer(buffer_value, int(self.geo_steps_per_circle)).exterior
  2543. geo_obj.solid_geometry.append(poly)
  2544. if use_thread:
  2545. def geo_thread(app_obj):
  2546. app_obj.new_object("geometry", outname + '_slot', geo_init, plot=plot)
  2547. app_obj.progress.emit(100)
  2548. # Create a promise with the new name
  2549. self.app.collection.promise(outname)
  2550. # Send to worker
  2551. self.app.worker_task.emit({'fcn': geo_thread, 'params': [self.app]})
  2552. else:
  2553. self.app.new_object("geometry", outname + '_slot', geo_init, plot=plot)
  2554. return True, ""
  2555. def on_generate_milling_button_click(self, *args):
  2556. self.app.report_usage("excellon_on_create_milling_drills button")
  2557. self.read_form()
  2558. self.generate_milling_drills(use_thread=False)
  2559. def on_generate_milling_slots_button_click(self, *args):
  2560. self.app.report_usage("excellon_on_create_milling_slots_button")
  2561. self.read_form()
  2562. self.generate_milling_slots(use_thread=False)
  2563. def on_pp_changed(self):
  2564. current_pp = self.ui.pp_excellon_name_cb.get_value()
  2565. if "toolchange_probe" in current_pp.lower():
  2566. self.ui.pdepth_entry.setVisible(True)
  2567. self.ui.pdepth_label.show()
  2568. self.ui.feedrate_probe_entry.setVisible(True)
  2569. self.ui.feedrate_probe_label.show()
  2570. else:
  2571. self.ui.pdepth_entry.setVisible(False)
  2572. self.ui.pdepth_label.hide()
  2573. self.ui.feedrate_probe_entry.setVisible(False)
  2574. self.ui.feedrate_probe_label.hide()
  2575. if 'marlin' in current_pp.lower() or 'custom' in current_pp.lower():
  2576. self.ui.feedrate_rapid_label.show()
  2577. self.ui.feedrate_rapid_entry.show()
  2578. else:
  2579. self.ui.feedrate_rapid_label.hide()
  2580. self.ui.feedrate_rapid_entry.hide()
  2581. def on_create_cncjob_button_click(self, *args):
  2582. self.app.report_usage("excellon_on_create_cncjob_button")
  2583. self.read_form()
  2584. # Get the tools from the list
  2585. tools = self.get_selected_tools_list()
  2586. if len(tools) == 0:
  2587. # if there is a single tool in the table (remember that the last 2 rows are for totals and do not count in
  2588. # tool number) it means that there are 3 rows (1 tool and 2 totals).
  2589. # in this case regardless of the selection status of that tool, use it.
  2590. if self.ui.tools_table.rowCount() == 3:
  2591. tools.append(self.ui.tools_table.item(0, 0).text())
  2592. else:
  2593. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2594. _("Please select one or more tools from the list and try again."))
  2595. return
  2596. xmin = self.options['xmin']
  2597. ymin = self.options['ymin']
  2598. xmax = self.options['xmax']
  2599. ymax = self.options['ymax']
  2600. job_name = self.options["name"] + "_cnc"
  2601. pp_excellon_name = self.options["ppname_e"]
  2602. # Object initialization function for app.new_object()
  2603. def job_init(job_obj, app_obj):
  2604. assert isinstance(job_obj, FlatCAMCNCjob), \
  2605. "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  2606. # get the tool_table items in a list of row items
  2607. tool_table_items = self.get_selected_tools_table_items()
  2608. # insert an information only element in the front
  2609. tool_table_items.insert(0, [_("Tool_nr"), _("Diameter"), _("Drills_Nr"), _("Slots_Nr")])
  2610. # ## Add properties to the object
  2611. job_obj.origin_kind = 'excellon'
  2612. job_obj.options['Tools_in_use'] = tool_table_items
  2613. job_obj.options['type'] = 'Excellon'
  2614. job_obj.options['ppname_e'] = pp_excellon_name
  2615. app_obj.progress.emit(20)
  2616. job_obj.z_cut = float(self.options["drillz"])
  2617. job_obj.tool_offset = self.tool_offset
  2618. job_obj.z_move = float(self.options["travelz"])
  2619. job_obj.feedrate = float(self.options["feedrate"])
  2620. job_obj.feedrate_rapid = float(self.options["feedrate_rapid"])
  2621. job_obj.spindlespeed = float(self.options["spindlespeed"]) if self.options["spindlespeed"] else None
  2622. job_obj.spindledir = self.app.defaults['excellon_spindledir']
  2623. job_obj.dwell = self.options["dwell"]
  2624. job_obj.dwelltime = float(self.options["dwelltime"])
  2625. job_obj.pp_excellon_name = pp_excellon_name
  2626. job_obj.toolchange_xy_type = "excellon"
  2627. job_obj.coords_decimals = int(self.app.defaults["cncjob_coords_decimals"])
  2628. job_obj.fr_decimals = int(self.app.defaults["cncjob_fr_decimals"])
  2629. job_obj.options['xmin'] = xmin
  2630. job_obj.options['ymin'] = ymin
  2631. job_obj.options['xmax'] = xmax
  2632. job_obj.options['ymax'] = ymax
  2633. try:
  2634. job_obj.z_pdepth = float(self.options["z_pdepth"])
  2635. except ValueError:
  2636. # try to convert comma to decimal point. if it's still not working error message and return
  2637. try:
  2638. job_obj.z_pdepth = float(self.options["z_pdepth"].replace(',', '.'))
  2639. except ValueError:
  2640. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2641. _('Wrong value format for self.defaults["z_pdepth"] '
  2642. 'or self.options["z_pdepth"]'))
  2643. try:
  2644. job_obj.feedrate_probe = float(self.options["feedrate_probe"])
  2645. except ValueError:
  2646. # try to convert comma to decimal point. if it's still not working error message and return
  2647. try:
  2648. job_obj.feedrate_rapid = float(self.options["feedrate_probe"].replace(',', '.'))
  2649. except ValueError:
  2650. self.app.inform.emit('[ERROR_NOTCL] %s' %
  2651. _('Wrong value format for self.defaults["feedrate_probe"] or '
  2652. 'self.options["feedrate_probe"]'))
  2653. # There could be more than one drill size...
  2654. # job_obj.tooldia = # TODO: duplicate variable!
  2655. # job_obj.options["tooldia"] =
  2656. tools_csv = ','.join(tools)
  2657. ret_val = job_obj.generate_from_excellon_by_tool(
  2658. self, tools_csv,
  2659. drillz=float(self.options['drillz']),
  2660. toolchange=self.options["toolchange"],
  2661. toolchangexy=self.app.defaults["excellon_toolchangexy"],
  2662. toolchangez=float(self.options["toolchangez"]),
  2663. startz=float(self.options["startz"]) if self.options["startz"] else None,
  2664. endz=float(self.options["endz"]),
  2665. excellon_optimization_type=self.app.defaults["excellon_optimization_type"])
  2666. if ret_val == 'fail':
  2667. return 'fail'
  2668. app_obj.progress.emit(50)
  2669. job_obj.gcode_parse()
  2670. app_obj.progress.emit(60)
  2671. job_obj.create_geometry()
  2672. app_obj.progress.emit(80)
  2673. # To be run in separate thread
  2674. def job_thread(app_obj):
  2675. with self.app.proc_container.new(_("Generating CNC Code")):
  2676. app_obj.new_object("cncjob", job_name, job_init)
  2677. app_obj.progress.emit(100)
  2678. # Create promise for the new name.
  2679. self.app.collection.promise(job_name)
  2680. # Send to worker
  2681. # self.app.worker.add_task(job_thread, [self.app])
  2682. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  2683. def convert_units(self, units):
  2684. log.debug("FlatCAMObj.FlatCAMExcellon.convert_units()")
  2685. factor = Excellon.convert_units(self, units)
  2686. self.options['drillz'] = float(self.options['drillz']) * factor
  2687. self.options['travelz'] = float(self.options['travelz']) * factor
  2688. self.options['feedrate'] = float(self.options['feedrate']) * factor
  2689. self.options['feedrate_rapid'] = float(self.options['feedrate_rapid']) * factor
  2690. self.options['toolchangez'] = float(self.options['toolchangez']) * factor
  2691. if self.app.defaults["excellon_toolchangexy"] == '':
  2692. self.options['toolchangexy'] = "0.0, 0.0"
  2693. else:
  2694. coords_xy = [float(eval(coord)) for coord in self.app.defaults["excellon_toolchangexy"].split(",")]
  2695. if len(coords_xy) < 2:
  2696. self.app.inform.emit('[ERROR] %s' % _("The Toolchange X,Y field in Edit -> Preferences has to be "
  2697. "in the format (x, y) \n"
  2698. "but now there is only one value, not two. "))
  2699. return 'fail'
  2700. coords_xy[0] *= factor
  2701. coords_xy[1] *= factor
  2702. self.options['toolchangexy'] = "%f, %f" % (coords_xy[0], coords_xy[1])
  2703. if self.options['startz'] is not None:
  2704. self.options['startz'] = float(self.options['startz']) * factor
  2705. self.options['endz'] = float(self.options['endz']) * factor
  2706. def on_solid_cb_click(self, *args):
  2707. if self.muted_ui:
  2708. return
  2709. self.read_form_item('solid')
  2710. self.plot()
  2711. def on_plot_cb_click(self, *args):
  2712. if self.muted_ui:
  2713. return
  2714. self.plot()
  2715. self.read_form_item('plot')
  2716. self.ui_disconnect()
  2717. cb_flag = self.ui.plot_cb.isChecked()
  2718. for row in range(self.ui.tools_table.rowCount() - 2):
  2719. table_cb = self.ui.tools_table.cellWidget(row, 5)
  2720. if cb_flag:
  2721. table_cb.setChecked(True)
  2722. else:
  2723. table_cb.setChecked(False)
  2724. self.ui_connect()
  2725. def on_plot_cb_click_table(self):
  2726. # self.ui.cnc_tools_table.cellWidget(row, 2).widget().setCheckState(QtCore.Qt.Unchecked)
  2727. self.ui_disconnect()
  2728. # cw = self.sender()
  2729. # cw_index = self.ui.tools_table.indexAt(cw.pos())
  2730. # cw_row = cw_index.row()
  2731. check_row = 0
  2732. self.shapes.clear(update=True)
  2733. for tool_key in self.tools:
  2734. solid_geometry = self.tools[tool_key]['solid_geometry']
  2735. # find the geo_tool_table row associated with the tool_key
  2736. for row in range(self.ui.tools_table.rowCount()):
  2737. tool_item = int(self.ui.tools_table.item(row, 0).text())
  2738. if tool_item == int(tool_key):
  2739. check_row = row
  2740. break
  2741. if self.ui.tools_table.cellWidget(check_row, 5).isChecked():
  2742. self.options['plot'] = True
  2743. # self.plot_element(element=solid_geometry, visible=True)
  2744. # Plot excellon (All polygons?)
  2745. if self.options["solid"]:
  2746. for geo in solid_geometry:
  2747. self.add_shape(shape=geo, color='#750000BF', face_color='#C40000BF',
  2748. visible=self.options['plot'],
  2749. layer=2)
  2750. else:
  2751. for geo in solid_geometry:
  2752. self.add_shape(shape=geo.exterior, color='red', visible=self.options['plot'])
  2753. for ints in geo.interiors:
  2754. self.add_shape(shape=ints, color='green', visible=self.options['plot'])
  2755. self.shapes.redraw()
  2756. # make sure that the general plot is disabled if one of the row plot's are disabled and
  2757. # if all the row plot's are enabled also enable the general plot checkbox
  2758. cb_cnt = 0
  2759. total_row = self.ui.tools_table.rowCount()
  2760. for row in range(total_row - 2):
  2761. if self.ui.tools_table.cellWidget(row, 5).isChecked():
  2762. cb_cnt += 1
  2763. else:
  2764. cb_cnt -= 1
  2765. if cb_cnt < total_row - 2:
  2766. self.ui.plot_cb.setChecked(False)
  2767. else:
  2768. self.ui.plot_cb.setChecked(True)
  2769. self.ui_connect()
  2770. # def plot_element(self, element, color='red', visible=None, layer=None):
  2771. #
  2772. # visible = visible if visible else self.options['plot']
  2773. #
  2774. # try:
  2775. # for sub_el in element:
  2776. # self.plot_element(sub_el)
  2777. #
  2778. # except TypeError: # Element is not iterable...
  2779. # self.add_shape(shape=element, color=color, visible=visible, layer=0)
  2780. def plot(self, visible=None, kind=None):
  2781. # Does all the required setup and returns False
  2782. # if the 'ptint' option is set to False.
  2783. if not FlatCAMObj.plot(self):
  2784. return
  2785. # try:
  2786. # # Plot Excellon (All polygons?)
  2787. # if self.options["solid"]:
  2788. # for tool in self.tools:
  2789. # for geo in self.tools[tool]['solid_geometry']:
  2790. # self.add_shape(shape=geo, color='#750000BF', face_color='#C40000BF',
  2791. # visible=self.options['plot'],
  2792. # layer=2)
  2793. # else:
  2794. # for tool in self.tools:
  2795. # for geo in self.tools[tool]['solid_geometry']:
  2796. # self.add_shape(shape=geo.exterior, color='red', visible=self.options['plot'])
  2797. # for ints in geo.interiors:
  2798. # self.add_shape(shape=ints, color='orange', visible=self.options['plot'])
  2799. #
  2800. # self.shapes.redraw()
  2801. # return
  2802. # except (ObjectDeleted, AttributeError, KeyError):
  2803. # self.shapes.clear(update=True)
  2804. # this stays for compatibility reasons, in case we try to open old projects
  2805. try:
  2806. __ = iter(self.solid_geometry)
  2807. except TypeError:
  2808. self.solid_geometry = [self.solid_geometry]
  2809. visible = visible if visible else self.options['plot']
  2810. try:
  2811. # Plot Excellon (All polygons?)
  2812. if self.options["solid"]:
  2813. for geo in self.solid_geometry:
  2814. self.add_shape(shape=geo, color='#750000BF', face_color='#C40000BF',
  2815. visible=visible,
  2816. layer=2)
  2817. else:
  2818. for geo in self.solid_geometry:
  2819. self.add_shape(shape=geo.exterior, color='red', visible=visible)
  2820. for ints in geo.interiors:
  2821. self.add_shape(shape=ints, color='orange', visible=visible)
  2822. self.shapes.redraw()
  2823. except (ObjectDeleted, AttributeError):
  2824. self.shapes.clear(update=True)
  2825. class FlatCAMGeometry(FlatCAMObj, Geometry):
  2826. """
  2827. Geometric object not associated with a specific
  2828. format.
  2829. """
  2830. optionChanged = QtCore.pyqtSignal(str)
  2831. ui_type = GeometryObjectUI
  2832. def __init__(self, name):
  2833. FlatCAMObj.__init__(self, name)
  2834. Geometry.__init__(self, geo_steps_per_circle=int(self.app.defaults["geometry_circle_steps"]))
  2835. self.kind = "geometry"
  2836. self.options.update({
  2837. "plot": True,
  2838. "cutz": -0.002,
  2839. "vtipdia": 0.1,
  2840. "vtipangle": 30,
  2841. "travelz": 0.1,
  2842. "feedrate": 5.0,
  2843. "feedrate_z": 5.0,
  2844. "feedrate_rapid": 5.0,
  2845. "spindlespeed": None,
  2846. "dwell": True,
  2847. "dwelltime": 1000,
  2848. "multidepth": False,
  2849. "depthperpass": 0.002,
  2850. "extracut": False,
  2851. "endz": 2.0,
  2852. "startz": None,
  2853. "toolchange": False,
  2854. "toolchangez": 1.0,
  2855. "toolchangexy": "0.0, 0.0",
  2856. "ppname_g": 'default',
  2857. "z_pdepth": -0.02,
  2858. "feedrate_probe": 3.0,
  2859. })
  2860. if "cnctooldia" not in self.options:
  2861. self.options["cnctooldia"] = self.app.defaults["geometry_cnctooldia"]
  2862. self.options["startz"] = self.app.defaults["geometry_startz"]
  2863. # this will hold the tool unique ID that is useful when having multiple tools with same diameter
  2864. self.tooluid = 0
  2865. '''
  2866. self.tools = {}
  2867. This is a dictionary. Each dict key is associated with a tool used in geo_tools_table. The key is the
  2868. tool_id of the tools and the value is another dict that will hold the data under the following form:
  2869. {tooluid: {
  2870. 'tooldia': 1,
  2871. 'offset': 'Path',
  2872. 'offset_value': 0.0
  2873. 'type': 'Rough',
  2874. 'tool_type': 'C1',
  2875. 'data': self.default_tool_data
  2876. 'solid_geometry': []
  2877. }
  2878. }
  2879. '''
  2880. self.tools = {}
  2881. # this dict is to store those elements (tools) of self.tools that are selected in the self.geo_tools_table
  2882. # those elements are the ones used for generating GCode
  2883. self.sel_tools = {}
  2884. self.offset_item_options = ["Path", "In", "Out", "Custom"]
  2885. self.type_item_options = [_("Iso"), _("Rough"), _("Finish")]
  2886. self.tool_type_item_options = ["C1", "C2", "C3", "C4", "B", "V"]
  2887. # flag to store if the V-Shape tool is selected in self.ui.geo_tools_table
  2888. self.v_tool_type = None
  2889. # flag to store if the Geometry is type 'multi-geometry' meaning that each tool has it's own geometry
  2890. # the default value is False
  2891. self.multigeo = False
  2892. # flag to store if the geometry is part of a special group of geometries that can't be processed by the default
  2893. # engine of FlatCAM. Most likely are generated by some of tools and are special cases of geometries.
  2894. self.special_group = None
  2895. self.old_pp_state = self.app.defaults["geometry_multidepth"]
  2896. self.old_toolchangeg_state = self.app.defaults["geometry_toolchange"]
  2897. # Number of decimals to be used for tools in this class
  2898. self.decimals = 4
  2899. # Attributes to be included in serialization
  2900. # Always append to it because it carries contents
  2901. # from predecessors.
  2902. self.ser_attrs += ['options', 'kind', 'tools', 'multigeo']
  2903. def build_ui(self):
  2904. self.ui_disconnect()
  2905. FlatCAMObj.build_ui(self)
  2906. self.units = self.app.defaults['units']
  2907. offset = 0
  2908. tool_idx = 0
  2909. n = len(self.tools)
  2910. self.ui.geo_tools_table.setRowCount(n)
  2911. for tooluid_key, tooluid_value in self.tools.items():
  2912. tool_idx += 1
  2913. row_no = tool_idx - 1
  2914. tool_id = QtWidgets.QTableWidgetItem('%d' % int(tool_idx))
  2915. tool_id.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  2916. self.ui.geo_tools_table.setItem(row_no, 0, tool_id) # Tool name/id
  2917. # Make sure that the tool diameter when in MM is with no more than 2 decimals.
  2918. # There are no tool bits in MM with more than 3 decimals diameter.
  2919. # For INCH the decimals should be no more than 3. There are no tools under 10mils.
  2920. dia_item = QtWidgets.QTableWidgetItem('%.*f' % (self.decimals, float(tooluid_value['tooldia'])))
  2921. dia_item.setFlags(QtCore.Qt.ItemIsEnabled)
  2922. offset_item = QtWidgets.QComboBox()
  2923. for item in self.offset_item_options:
  2924. offset_item.addItem(item)
  2925. # offset_item.setStyleSheet('background-color: rgb(255,255,255)')
  2926. idx = offset_item.findText(tooluid_value['offset'])
  2927. offset_item.setCurrentIndex(idx)
  2928. type_item = QtWidgets.QComboBox()
  2929. for item in self.type_item_options:
  2930. type_item.addItem(item)
  2931. # type_item.setStyleSheet('background-color: rgb(255,255,255)')
  2932. idx = type_item.findText(tooluid_value['type'])
  2933. type_item.setCurrentIndex(idx)
  2934. tool_type_item = QtWidgets.QComboBox()
  2935. for item in self.tool_type_item_options:
  2936. tool_type_item.addItem(item)
  2937. # tool_type_item.setStyleSheet('background-color: rgb(255,255,255)')
  2938. idx = tool_type_item.findText(tooluid_value['tool_type'])
  2939. tool_type_item.setCurrentIndex(idx)
  2940. tool_uid_item = QtWidgets.QTableWidgetItem(str(tooluid_key))
  2941. plot_item = FCCheckBox()
  2942. plot_item.setLayoutDirection(QtCore.Qt.RightToLeft)
  2943. if self.ui.plot_cb.isChecked():
  2944. plot_item.setChecked(True)
  2945. self.ui.geo_tools_table.setItem(row_no, 1, dia_item) # Diameter
  2946. self.ui.geo_tools_table.setCellWidget(row_no, 2, offset_item)
  2947. self.ui.geo_tools_table.setCellWidget(row_no, 3, type_item)
  2948. self.ui.geo_tools_table.setCellWidget(row_no, 4, tool_type_item)
  2949. # ## REMEMBER: THIS COLUMN IS HIDDEN IN OBJECTUI.PY ###
  2950. self.ui.geo_tools_table.setItem(row_no, 5, tool_uid_item) # Tool unique ID
  2951. self.ui.geo_tools_table.setCellWidget(row_no, 6, plot_item)
  2952. try:
  2953. self.ui.tool_offset_entry.set_value(tooluid_value['offset_value'])
  2954. except Exception as e:
  2955. log.debug("build_ui() --> Could not set the 'offset_value' key in self.tools. Error: %s" % str(e))
  2956. # make the diameter column editable
  2957. for row in range(tool_idx):
  2958. self.ui.geo_tools_table.item(row, 1).setFlags(QtCore.Qt.ItemIsSelectable |
  2959. QtCore.Qt.ItemIsEditable |
  2960. QtCore.Qt.ItemIsEnabled)
  2961. # sort the tool diameter column
  2962. # self.ui.geo_tools_table.sortItems(1)
  2963. # all the tools are selected by default
  2964. # self.ui.geo_tools_table.selectColumn(0)
  2965. self.ui.geo_tools_table.resizeColumnsToContents()
  2966. self.ui.geo_tools_table.resizeRowsToContents()
  2967. vertical_header = self.ui.geo_tools_table.verticalHeader()
  2968. # vertical_header.setSectionResizeMode(QtWidgets.QHeaderView.ResizeToContents)
  2969. vertical_header.hide()
  2970. self.ui.geo_tools_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2971. horizontal_header = self.ui.geo_tools_table.horizontalHeader()
  2972. horizontal_header.setMinimumSectionSize(10)
  2973. horizontal_header.setDefaultSectionSize(70)
  2974. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  2975. horizontal_header.resizeSection(0, 20)
  2976. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.Stretch)
  2977. # horizontal_header.setColumnWidth(2, QtWidgets.QHeaderView.ResizeToContents)
  2978. horizontal_header.setSectionResizeMode(3, QtWidgets.QHeaderView.ResizeToContents)
  2979. horizontal_header.setSectionResizeMode(4, QtWidgets.QHeaderView.Fixed)
  2980. horizontal_header.resizeSection(4, 40)
  2981. horizontal_header.setSectionResizeMode(6, QtWidgets.QHeaderView.Fixed)
  2982. horizontal_header.resizeSection(4, 17)
  2983. # horizontal_header.setStretchLastSection(True)
  2984. self.ui.geo_tools_table.setHorizontalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  2985. self.ui.geo_tools_table.setColumnWidth(0, 20)
  2986. self.ui.geo_tools_table.setColumnWidth(4, 40)
  2987. self.ui.geo_tools_table.setColumnWidth(6, 17)
  2988. # self.ui.geo_tools_table.setSortingEnabled(True)
  2989. self.ui.geo_tools_table.setMinimumHeight(self.ui.geo_tools_table.getHeight())
  2990. self.ui.geo_tools_table.setMaximumHeight(self.ui.geo_tools_table.getHeight())
  2991. # update UI for all rows - useful after units conversion but only if there is at least one row
  2992. row_cnt = self.ui.geo_tools_table.rowCount()
  2993. if row_cnt > 0:
  2994. for r in range(row_cnt):
  2995. self.update_ui(r)
  2996. # select only the first tool / row
  2997. selected_row = 0
  2998. try:
  2999. self.select_tools_table_row(selected_row, clearsel=True)
  3000. # update the Geometry UI
  3001. self.update_ui()
  3002. except Exception as e:
  3003. # when the tools table is empty there will be this error but once the table is populated it will go away
  3004. log.debug(str(e))
  3005. # disable the Plot column in Tool Table if the geometry is SingleGeo as it is not needed
  3006. # and can create some problems
  3007. if self.multigeo is False:
  3008. self.ui.geo_tools_table.setColumnHidden(6, True)
  3009. else:
  3010. self.ui.geo_tools_table.setColumnHidden(6, False)
  3011. self.set_tool_offset_visibility(selected_row)
  3012. self.ui_connect()
  3013. # HACK: for whatever reasons the name in Selected tab is reverted to the original one after a successful rename
  3014. # done in the collection view but only for Geometry objects. Perhaps some references remains. Should be fixed.
  3015. self.ui.name_entry.set_value(self.options['name'])
  3016. def set_ui(self, ui):
  3017. FlatCAMObj.set_ui(self, ui)
  3018. log.debug("FlatCAMGeometry.set_ui()")
  3019. assert isinstance(self.ui, GeometryObjectUI), \
  3020. "Expected a GeometryObjectUI, got %s" % type(self.ui)
  3021. self.units = self.app.defaults['units'].upper()
  3022. if self.units == 'MM':
  3023. self.decimals = 2
  3024. else:
  3025. self.decimals = 4
  3026. # populate postprocessor names in the combobox
  3027. for name in list(self.app.postprocessors.keys()):
  3028. self.ui.pp_geometry_name_cb.addItem(name)
  3029. self.form_fields.update({
  3030. "plot": self.ui.plot_cb,
  3031. "cutz": self.ui.cutz_entry,
  3032. "vtipdia": self.ui.tipdia_entry,
  3033. "vtipangle": self.ui.tipangle_entry,
  3034. "travelz": self.ui.travelz_entry,
  3035. "feedrate": self.ui.cncfeedrate_entry,
  3036. "feedrate_z": self.ui.cncplunge_entry,
  3037. "feedrate_rapid": self.ui.cncfeedrate_rapid_entry,
  3038. "spindlespeed": self.ui.cncspindlespeed_entry,
  3039. "dwell": self.ui.dwell_cb,
  3040. "dwelltime": self.ui.dwelltime_entry,
  3041. "multidepth": self.ui.mpass_cb,
  3042. "ppname_g": self.ui.pp_geometry_name_cb,
  3043. "z_pdepth": self.ui.pdepth_entry,
  3044. "feedrate_probe": self.ui.feedrate_probe_entry,
  3045. "depthperpass": self.ui.maxdepth_entry,
  3046. "extracut": self.ui.extracut_cb,
  3047. "toolchange": self.ui.toolchangeg_cb,
  3048. "toolchangez": self.ui.toolchangez_entry,
  3049. "endz": self.ui.gendz_entry,
  3050. "cnctooldia": self.ui.addtool_entry
  3051. })
  3052. # Fill form fields only on object create
  3053. self.to_form()
  3054. # update the changes in UI depending on the selected postprocessor in Preferences
  3055. # after this moment all the changes in the Posprocessor combo will be handled by the activated signal of the
  3056. # self.ui.pp_geometry_name_cb combobox
  3057. self.on_pp_changed()
  3058. self.ui.tipdialabel.hide()
  3059. self.ui.tipdia_entry.hide()
  3060. self.ui.tipanglelabel.hide()
  3061. self.ui.tipangle_entry.hide()
  3062. self.ui.cutz_entry.setDisabled(False)
  3063. # store here the default data for Geometry Data
  3064. self.default_data = dict()
  3065. self.default_data.update({
  3066. "name": None,
  3067. "plot": None,
  3068. "cutz": None,
  3069. "vtipdia": None,
  3070. "vtipangle": None,
  3071. "travelz": None,
  3072. "feedrate": None,
  3073. "feedrate_z": None,
  3074. "feedrate_rapid": None,
  3075. "dwell": None,
  3076. "dwelltime": None,
  3077. "multidepth": None,
  3078. "ppname_g": None,
  3079. "depthperpass": None,
  3080. "extracut": None,
  3081. "toolchange": None,
  3082. "toolchangez": None,
  3083. "endz": None,
  3084. "spindlespeed": None,
  3085. "toolchangexy": None,
  3086. "startz": None
  3087. })
  3088. # fill in self.default_data values from self.options
  3089. for def_key in self.default_data:
  3090. for opt_key, opt_val in self.options.items():
  3091. if def_key == opt_key:
  3092. self.default_data[def_key] = deepcopy(opt_val)
  3093. try:
  3094. temp_tools = self.options["cnctooldia"].split(",")
  3095. tools_list = [
  3096. float(eval(dia)) for dia in temp_tools if dia != ''
  3097. ]
  3098. except Exception as e:
  3099. log.error("At least one tool diameter needed. Verify in Edit -> Preferences -> Geometry General -> "
  3100. "Tool dia. %s" % str(e))
  3101. return
  3102. self.tooluid += 1
  3103. if not self.tools:
  3104. for toold in tools_list:
  3105. new_data = deepcopy(self.default_data)
  3106. self.tools.update({
  3107. self.tooluid: {
  3108. 'tooldia': float('%.*f' % (self.decimals, float(toold))),
  3109. 'offset': 'Path',
  3110. 'offset_value': 0.0,
  3111. 'type': _('Rough'),
  3112. 'tool_type': 'C1',
  3113. 'data': new_data,
  3114. 'solid_geometry': self.solid_geometry
  3115. }
  3116. })
  3117. self.tooluid += 1
  3118. else:
  3119. # if self.tools is not empty then it can safely be assumed that it comes from an opened project.
  3120. # Because of the serialization the self.tools list on project save, the dict keys (members of self.tools
  3121. # are each a dict) are turned into strings so we rebuild the self.tools elements so the keys are
  3122. # again float type; dict's don't like having keys changed when iterated through therefore the need for the
  3123. # following convoluted way of changing the keys from string to float type
  3124. temp_tools = {}
  3125. for tooluid_key in self.tools:
  3126. val = deepcopy(self.tools[tooluid_key])
  3127. new_key = deepcopy(int(tooluid_key))
  3128. temp_tools[new_key] = val
  3129. self.tools.clear()
  3130. self.tools = deepcopy(temp_tools)
  3131. self.ui.tool_offset_entry.hide()
  3132. self.ui.tool_offset_lbl.hide()
  3133. # used to store the state of the mpass_cb if the selected postproc for geometry is hpgl
  3134. self.old_pp_state = self.default_data['multidepth']
  3135. self.old_toolchangeg_state = self.default_data['toolchange']
  3136. if not isinstance(self.ui, GeometryObjectUI):
  3137. log.debug("Expected a GeometryObjectUI, got %s" % type(self.ui))
  3138. return
  3139. self.ui.geo_tools_table.setupContextMenu()
  3140. self.ui.geo_tools_table.addContextMenu(
  3141. _("Add from Tool DB"), self.on_tool_add_from_db_clicked, icon=QtGui.QIcon("share/plus16.png"))
  3142. self.ui.geo_tools_table.addContextMenu(
  3143. _("Copy"), self.on_tool_copy, icon=QtGui.QIcon("share/copy16.png"))
  3144. self.ui.geo_tools_table.addContextMenu(
  3145. _("Delete"), lambda: self.on_tool_delete(all=None), icon=QtGui.QIcon("share/delete32.png"))
  3146. # Show/Hide Advanced Options
  3147. if self.app.defaults["global_app_level"] == 'b':
  3148. self.ui.level.setText('<span style="color:green;"><b>%s</b></span>' % _('Basic'))
  3149. self.ui.geo_tools_table.setColumnHidden(2, True)
  3150. self.ui.geo_tools_table.setColumnHidden(3, True)
  3151. # self.ui.geo_tools_table.setColumnHidden(4, True)
  3152. self.ui.addtool_entry_lbl.hide()
  3153. self.ui.addtool_entry.hide()
  3154. self.ui.addtool_btn.hide()
  3155. self.ui.copytool_btn.hide()
  3156. self.ui.deltool_btn.hide()
  3157. # self.ui.endzlabel.hide()
  3158. # self.ui.gendz_entry.hide()
  3159. self.ui.fr_rapidlabel.hide()
  3160. self.ui.cncfeedrate_rapid_entry.hide()
  3161. self.ui.extracut_cb.hide()
  3162. self.ui.pdepth_label.hide()
  3163. self.ui.pdepth_entry.hide()
  3164. self.ui.feedrate_probe_label.hide()
  3165. self.ui.feedrate_probe_entry.hide()
  3166. else:
  3167. self.ui.level.setText('<span style="color:red;"><b>%s</b></span>' % _('Advanced'))
  3168. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  3169. self.ui.generate_cnc_button.clicked.connect(self.on_generatecnc_button_click)
  3170. self.ui.paint_tool_button.clicked.connect(lambda: self.app.paint_tool.run(toggle=False))
  3171. self.ui.pp_geometry_name_cb.activated.connect(self.on_pp_changed)
  3172. self.ui.addtool_entry.returnPressed.connect(lambda: self.on_tool_add())
  3173. self.ui.tipdia_entry.valueChanged.connect(self.update_cutz)
  3174. self.ui.tipangle_entry.valueChanged.connect(self.update_cutz)
  3175. self.ui.addtool_from_db_btn.clicked.connect(self.on_tool_add_from_db_clicked)
  3176. def set_tool_offset_visibility(self, current_row):
  3177. if current_row is None:
  3178. return
  3179. try:
  3180. tool_offset = self.ui.geo_tools_table.cellWidget(current_row, 2)
  3181. if tool_offset is not None:
  3182. tool_offset_txt = tool_offset.currentText()
  3183. if tool_offset_txt == 'Custom':
  3184. self.ui.tool_offset_entry.show()
  3185. self.ui.tool_offset_lbl.show()
  3186. else:
  3187. self.ui.tool_offset_entry.hide()
  3188. self.ui.tool_offset_lbl.hide()
  3189. except Exception as e:
  3190. log.debug("set_tool_offset_visibility() --> " + str(e))
  3191. return
  3192. def on_offset_value_edited(self):
  3193. """
  3194. This will save the offset_value into self.tools storage whenever the offset value is edited
  3195. :return:
  3196. """
  3197. for current_row in self.ui.geo_tools_table.selectedItems():
  3198. # sometime the header get selected and it has row number -1
  3199. # we don't want to do anything with the header :)
  3200. if current_row.row() < 0:
  3201. continue
  3202. tool_uid = int(self.ui.geo_tools_table.item(current_row.row(), 5).text())
  3203. self.set_tool_offset_visibility(current_row.row())
  3204. for tooluid_key, tooluid_value in self.tools.items():
  3205. if int(tooluid_key) == tool_uid:
  3206. try:
  3207. tooluid_value['offset_value'] = float(self.ui.tool_offset_entry.get_value())
  3208. except ValueError:
  3209. # try to convert comma to decimal point. if it's still not working error message and return
  3210. try:
  3211. tooluid_value['offset_value'] = float(
  3212. self.ui.tool_offset_entry.get_value().replace(',', '.')
  3213. )
  3214. except ValueError:
  3215. self.app.inform.emit('[ERROR_NOTCL] %s' %
  3216. _("Wrong value format entered, use a number."))
  3217. return
  3218. def ui_connect(self):
  3219. # on any change to the widgets that matter it will be called self.gui_form_to_storage which will save the
  3220. # changes in geometry UI
  3221. for i in range(self.ui.grid3.count()):
  3222. current_widget = self.ui.grid3.itemAt(i).widget()
  3223. if isinstance(current_widget, FCCheckBox):
  3224. current_widget.stateChanged.connect(self.gui_form_to_storage)
  3225. elif isinstance(current_widget, FCComboBox):
  3226. current_widget.currentIndexChanged.connect(self.gui_form_to_storage)
  3227. elif isinstance(current_widget, FloatEntry) or isinstance(current_widget, LengthEntry) or \
  3228. isinstance(current_widget, FCEntry) or isinstance(current_widget, IntEntry):
  3229. current_widget.editingFinished.connect(self.gui_form_to_storage)
  3230. elif isinstance(current_widget, FCSpinner) or isinstance(current_widget, FCDoubleSpinner):
  3231. current_widget.returnPressed.connect(self.gui_form_to_storage)
  3232. for row in range(self.ui.geo_tools_table.rowCount()):
  3233. for col in [2, 3, 4]:
  3234. self.ui.geo_tools_table.cellWidget(row, col).currentIndexChanged.connect(
  3235. self.on_tooltable_cellwidget_change)
  3236. # I use lambda's because the connected functions have parameters that could be used in certain scenarios
  3237. self.ui.addtool_btn.clicked.connect(lambda: self.on_tool_add())
  3238. self.ui.copytool_btn.clicked.connect(lambda: self.on_tool_copy())
  3239. self.ui.deltool_btn.clicked.connect(lambda: self.on_tool_delete())
  3240. self.ui.geo_tools_table.currentItemChanged.connect(self.on_row_selection_change)
  3241. self.ui.geo_tools_table.itemChanged.connect(self.on_tool_edit)
  3242. self.ui.tool_offset_entry.returnPressed.connect(self.on_offset_value_edited)
  3243. for row in range(self.ui.geo_tools_table.rowCount()):
  3244. self.ui.geo_tools_table.cellWidget(row, 6).clicked.connect(self.on_plot_cb_click_table)
  3245. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  3246. def ui_disconnect(self):
  3247. # on any change to the widgets that matter it will be called self.gui_form_to_storage which will save the
  3248. # changes in geometry UI
  3249. for i in range(self.ui.grid3.count()):
  3250. current_widget = self.ui.grid3.itemAt(i).widget()
  3251. if isinstance(current_widget, FCCheckBox):
  3252. try:
  3253. self.ui.grid3.itemAt(i).widget().stateChanged.disconnect(self.gui_form_to_storage)
  3254. except (TypeError, AttributeError):
  3255. pass
  3256. elif isinstance(current_widget, FCComboBox):
  3257. try:
  3258. self.ui.grid3.itemAt(i).widget().currentIndexChanged.disconnect(self.gui_form_to_storage)
  3259. except (TypeError, AttributeError):
  3260. pass
  3261. elif isinstance(current_widget, LengthEntry) or isinstance(current_widget, IntEntry) or \
  3262. isinstance(current_widget, FCEntry) or isinstance(current_widget, FloatEntry):
  3263. try:
  3264. self.ui.grid3.itemAt(i).widget().editingFinished.disconnect(self.gui_form_to_storage)
  3265. except (TypeError, AttributeError):
  3266. pass
  3267. elif isinstance(current_widget, FCSpinner) or isinstance(current_widget, FCDoubleSpinner):
  3268. try:
  3269. self.ui.grid3.itemAt(i).widget().returnPressed.disconnect(self.gui_form_to_storage)
  3270. except TypeError:
  3271. pass
  3272. for row in range(self.ui.geo_tools_table.rowCount()):
  3273. for col in [2, 3, 4]:
  3274. try:
  3275. self.ui.geo_tools_table.cellWidget(row, col).currentIndexChanged.disconnect()
  3276. except (TypeError, AttributeError):
  3277. pass
  3278. try:
  3279. self.ui.addtool_btn.clicked.disconnect()
  3280. except (TypeError, AttributeError):
  3281. pass
  3282. try:
  3283. self.ui.copytool_btn.clicked.disconnect()
  3284. except (TypeError, AttributeError):
  3285. pass
  3286. try:
  3287. self.ui.deltool_btn.clicked.disconnect()
  3288. except (TypeError, AttributeError):
  3289. pass
  3290. try:
  3291. self.ui.geo_tools_table.currentItemChanged.disconnect()
  3292. except (TypeError, AttributeError):
  3293. pass
  3294. try:
  3295. self.ui.geo_tools_table.itemChanged.disconnect()
  3296. except (TypeError, AttributeError):
  3297. pass
  3298. try:
  3299. self.ui.tool_offset_entry.returnPressed.disconnect()
  3300. except (TypeError, AttributeError):
  3301. pass
  3302. for row in range(self.ui.geo_tools_table.rowCount()):
  3303. try:
  3304. self.ui.geo_tools_table.cellWidget(row, 6).clicked.disconnect()
  3305. except (TypeError, AttributeError):
  3306. pass
  3307. try:
  3308. self.ui.plot_cb.stateChanged.disconnect()
  3309. except (TypeError, AttributeError):
  3310. pass
  3311. def on_tool_add(self, dia=None):
  3312. self.ui_disconnect()
  3313. self.units = self.app.defaults['units'].upper()
  3314. # if a Tool diameter entered is a char instead a number the final message of Tool adding is changed
  3315. # because the Default value for Tool is used.
  3316. change_message = False
  3317. if dia is not None:
  3318. tooldia = dia
  3319. else:
  3320. try:
  3321. tooldia = float(self.ui.addtool_entry.get_value())
  3322. except ValueError:
  3323. # try to convert comma to decimal point. if it's still not working error message and return
  3324. try:
  3325. tooldia = float(self.ui.addtool_entry.get_value().replace(',', '.'))
  3326. except ValueError:
  3327. change_message = True
  3328. tooldia = float(self.options["cnctooldia"][0])
  3329. if tooldia is None:
  3330. self.build_ui()
  3331. self.app.inform.emit('[ERROR_NOTCL] %s' %
  3332. _("Please enter the desired tool diameter in Float format."))
  3333. return
  3334. # construct a list of all 'tooluid' in the self.tools
  3335. tool_uid_list = []
  3336. for tooluid_key in self.tools:
  3337. tool_uid_item = int(tooluid_key)
  3338. tool_uid_list.append(tool_uid_item)
  3339. # find maximum from the temp_uid, add 1 and this is the new 'tooluid'
  3340. if not tool_uid_list:
  3341. max_uid = 0
  3342. else:
  3343. max_uid = max(tool_uid_list)
  3344. self.tooluid = max_uid + 1
  3345. tooldia = float('%.*f' % (self.decimals, tooldia))
  3346. # here we actually add the new tool; if there is no tool in the tool table we add a tool with default data
  3347. # otherwise we add a tool with data copied from last tool
  3348. if not self.tools:
  3349. self.tools.update({
  3350. self.tooluid: {
  3351. 'tooldia': tooldia,
  3352. 'offset': 'Path',
  3353. 'offset_value': 0.0,
  3354. 'type': _('Rough'),
  3355. 'tool_type': 'C1',
  3356. 'data': deepcopy(self.default_data),
  3357. 'solid_geometry': self.solid_geometry
  3358. }
  3359. })
  3360. else:
  3361. last_data = self.tools[max_uid]['data']
  3362. last_offset = self.tools[max_uid]['offset']
  3363. last_offset_value = self.tools[max_uid]['offset_value']
  3364. last_type = self.tools[max_uid]['type']
  3365. last_tool_type = self.tools[max_uid]['tool_type']
  3366. last_solid_geometry = self.tools[max_uid]['solid_geometry']
  3367. # if previous geometry was empty (it may happen for the first tool added)
  3368. # then copy the object.solid_geometry
  3369. if not last_solid_geometry:
  3370. last_solid_geometry = self.solid_geometry
  3371. self.tools.update({
  3372. self.tooluid: {
  3373. 'tooldia': tooldia,
  3374. 'offset': last_offset,
  3375. 'offset_value': last_offset_value,
  3376. 'type': last_type,
  3377. 'tool_type': last_tool_type,
  3378. 'data': deepcopy(last_data),
  3379. 'solid_geometry': deepcopy(last_solid_geometry)
  3380. }
  3381. })
  3382. self.tools[self.tooluid]['data']['name'] = self.options['name']
  3383. self.ui.tool_offset_entry.hide()
  3384. self.ui.tool_offset_lbl.hide()
  3385. # we do this HACK to make sure the tools attribute to be serialized is updated in the self.ser_attrs list
  3386. try:
  3387. self.ser_attrs.remove('tools')
  3388. except TypeError:
  3389. pass
  3390. self.ser_attrs.append('tools')
  3391. if change_message is False:
  3392. self.app.inform.emit('[success] %s' % _("Tool added in Tool Table."))
  3393. else:
  3394. change_message = False
  3395. self.app.inform.emit('[WARNING_NOTCL] %s' %
  3396. _("Default Tool added. Wrong value format entered."))
  3397. self.build_ui()
  3398. # if there is no tool left in the Tools Table, enable the parameters GUI
  3399. if self.ui.geo_tools_table.rowCount() != 0:
  3400. self.ui.geo_param_frame.setDisabled(False)
  3401. def on_tool_add_from_db_clicked(self):
  3402. """
  3403. Called when the user wants to add a new tool from Tools Database. It will create the Tools Database object
  3404. and display the Tools Database tab in the form needed for the Tool adding
  3405. :return: None
  3406. """
  3407. # if the Tools Database is already opened focus on it
  3408. for idx in range(self.app.ui.plot_tab_area.count()):
  3409. if self.app.ui.plot_tab_area.tabText(idx) == _("Tools Database"):
  3410. self.app.ui.plot_tab_area.setCurrentWidget(self.app.tools_db_tab)
  3411. break
  3412. self.app.on_tools_database()
  3413. self.app.tools_db_tab.buttons_frame.hide()
  3414. self.app.tools_db_tab.add_tool_from_db.show()
  3415. self.app.tools_db_tab.cancel_tool_from_db.show()
  3416. def on_tool_from_db_inserted(self, tool):
  3417. """
  3418. Called from the Tools DB object through a App method when adding a tool from Tools Database
  3419. :param tool: a dict with the tool data
  3420. :return: None
  3421. """
  3422. self.ui_disconnect()
  3423. self.units = self.app.defaults['units'].upper()
  3424. tooldia = float(tool['tooldia'])
  3425. # construct a list of all 'tooluid' in the self.tools
  3426. tool_uid_list = []
  3427. for tooluid_key in self.tools:
  3428. tool_uid_item = int(tooluid_key)
  3429. tool_uid_list.append(tool_uid_item)
  3430. # find maximum from the temp_uid, add 1 and this is the new 'tooluid'
  3431. if not tool_uid_list:
  3432. max_uid = 0
  3433. else:
  3434. max_uid = max(tool_uid_list)
  3435. self.tooluid = max_uid + 1
  3436. tooldia = float('%.*f' % (self.decimals, tooldia))
  3437. self.tools.update({
  3438. self.tooluid: {
  3439. 'tooldia': tooldia,
  3440. 'offset': tool['offset'],
  3441. 'offset_value': float(tool['offset_value']),
  3442. 'type': tool['type'],
  3443. 'tool_type': tool['tool_type'],
  3444. 'data': deepcopy(tool['data']),
  3445. 'solid_geometry': self.solid_geometry
  3446. }
  3447. })
  3448. self.tools[self.tooluid]['data']['name'] = self.options['name']
  3449. self.ui.tool_offset_entry.hide()
  3450. self.ui.tool_offset_lbl.hide()
  3451. # we do this HACK to make sure the tools attribute to be serialized is updated in the self.ser_attrs list
  3452. try:
  3453. self.ser_attrs.remove('tools')
  3454. except TypeError:
  3455. pass
  3456. self.ser_attrs.append('tools')
  3457. self.build_ui()
  3458. # if there is no tool left in the Tools Table, enable the parameters GUI
  3459. if self.ui.geo_tools_table.rowCount() != 0:
  3460. self.ui.geo_param_frame.setDisabled(False)
  3461. def on_tool_copy(self, all=None):
  3462. self.ui_disconnect()
  3463. # find the tool_uid maximum value in the self.tools
  3464. uid_list = []
  3465. for key in self.tools:
  3466. uid_list.append(int(key))
  3467. try:
  3468. max_uid = max(uid_list, key=int)
  3469. except ValueError:
  3470. max_uid = 0
  3471. if all is None:
  3472. if self.ui.geo_tools_table.selectedItems():
  3473. for current_row in self.ui.geo_tools_table.selectedItems():
  3474. # sometime the header get selected and it has row number -1
  3475. # we don't want to do anything with the header :)
  3476. if current_row.row() < 0:
  3477. continue
  3478. try:
  3479. tooluid_copy = int(self.ui.geo_tools_table.item(current_row.row(), 5).text())
  3480. self.set_tool_offset_visibility(current_row.row())
  3481. max_uid += 1
  3482. self.tools[int(max_uid)] = deepcopy(self.tools[tooluid_copy])
  3483. except AttributeError:
  3484. self.app.inform.emit('[WARNING_NOTCL] %s' %
  3485. _("Failed. Select a tool to copy."))
  3486. self.build_ui()
  3487. return
  3488. except Exception as e:
  3489. log.debug("on_tool_copy() --> " + str(e))
  3490. # deselect the table
  3491. # self.ui.geo_tools_table.clearSelection()
  3492. else:
  3493. self.app.inform.emit('[WARNING_NOTCL] %s' %
  3494. _("Failed. Select a tool to copy."))
  3495. self.build_ui()
  3496. return
  3497. else:
  3498. # we copy all tools in geo_tools_table
  3499. try:
  3500. temp_tools = deepcopy(self.tools)
  3501. max_uid += 1
  3502. for tooluid in temp_tools:
  3503. self.tools[int(max_uid)] = deepcopy(temp_tools[tooluid])
  3504. temp_tools.clear()
  3505. except Exception as e:
  3506. log.debug("on_tool_copy() --> " + str(e))
  3507. # if there are no more tools in geo tools table then hide the tool offset
  3508. if not self.tools:
  3509. self.ui.tool_offset_entry.hide()
  3510. self.ui.tool_offset_lbl.hide()
  3511. # we do this HACK to make sure the tools attribute to be serialized is updated in the self.ser_attrs list
  3512. try:
  3513. self.ser_attrs.remove('tools')
  3514. except ValueError:
  3515. pass
  3516. self.ser_attrs.append('tools')
  3517. self.build_ui()
  3518. self.app.inform.emit('[success] %s' %
  3519. _("Tool was copied in Tool Table."))
  3520. def on_tool_edit(self, current_item):
  3521. self.ui_disconnect()
  3522. current_row = current_item.row()
  3523. try:
  3524. d = float(self.ui.geo_tools_table.item(current_row, 1).text())
  3525. except ValueError:
  3526. # try to convert comma to decimal point. if it's still not working error message and return
  3527. try:
  3528. d = float(self.ui.geo_tools_table.item(current_row, 1).text().replace(',', '.'))
  3529. except ValueError:
  3530. self.app.inform.emit('[ERROR_NOTCL] %s' %
  3531. _("Wrong value format entered, use a number."))
  3532. return
  3533. tool_dia = float('%.*f' % (self.decimals, d))
  3534. tooluid = int(self.ui.geo_tools_table.item(current_row, 5).text())
  3535. self.tools[tooluid]['tooldia'] = tool_dia
  3536. try:
  3537. self.ser_attrs.remove('tools')
  3538. self.ser_attrs.append('tools')
  3539. except (TypeError, ValueError):
  3540. pass
  3541. self.app.inform.emit('[success] %s' %
  3542. _("Tool was edited in Tool Table."))
  3543. self.build_ui()
  3544. def on_tool_delete(self, all=None):
  3545. self.ui_disconnect()
  3546. if all is None:
  3547. if self.ui.geo_tools_table.selectedItems():
  3548. for current_row in self.ui.geo_tools_table.selectedItems():
  3549. # sometime the header get selected and it has row number -1
  3550. # we don't want to do anything with the header :)
  3551. if current_row.row() < 0:
  3552. continue
  3553. try:
  3554. tooluid_del = int(self.ui.geo_tools_table.item(current_row.row(), 5).text())
  3555. self.set_tool_offset_visibility(current_row.row())
  3556. temp_tools = deepcopy(self.tools)
  3557. for tooluid_key in self.tools:
  3558. if int(tooluid_key) == tooluid_del:
  3559. # if the self.tools has only one tool and we delete it then we move the solid_geometry
  3560. # as a property of the object otherwise there will be nothing to hold it
  3561. if len(self.tools) == 1:
  3562. self.solid_geometry = deepcopy(self.tools[tooluid_key]['solid_geometry'])
  3563. temp_tools.pop(tooluid_del, None)
  3564. self.tools = deepcopy(temp_tools)
  3565. temp_tools.clear()
  3566. except AttributeError:
  3567. self.app.inform.emit('[WARNING_NOTCL] %s' %
  3568. _("Failed. Select a tool to delete."))
  3569. self.build_ui()
  3570. return
  3571. except Exception as e:
  3572. log.debug("on_tool_delete() --> " + str(e))
  3573. # deselect the table
  3574. # self.ui.geo_tools_table.clearSelection()
  3575. else:
  3576. self.app.inform.emit('[WARNING_NOTCL] %s' %
  3577. _("Failed. Select a tool to delete."))
  3578. self.build_ui()
  3579. return
  3580. else:
  3581. # we delete all tools in geo_tools_table
  3582. self.tools.clear()
  3583. self.app.plot_all()
  3584. # if there are no more tools in geo tools table then hide the tool offset
  3585. if not self.tools:
  3586. self.ui.tool_offset_entry.hide()
  3587. self.ui.tool_offset_lbl.hide()
  3588. # we do this HACK to make sure the tools attribute to be serialized is updated in the self.ser_attrs list
  3589. try:
  3590. self.ser_attrs.remove('tools')
  3591. except TypeError:
  3592. pass
  3593. self.ser_attrs.append('tools')
  3594. self.build_ui()
  3595. self.app.inform.emit('[success] %s' %
  3596. _("Tool was deleted in Tool Table."))
  3597. obj_active = self.app.collection.get_active()
  3598. # if the object was MultiGeo and now it has no tool at all (therefore no geometry)
  3599. # we make it back SingleGeo
  3600. if self.ui.geo_tools_table.rowCount() <= 0:
  3601. obj_active.multigeo = False
  3602. obj_active.options['xmin'] = 0
  3603. obj_active.options['ymin'] = 0
  3604. obj_active.options['xmax'] = 0
  3605. obj_active.options['ymax'] = 0
  3606. if obj_active.multigeo is True:
  3607. try:
  3608. xmin, ymin, xmax, ymax = obj_active.bounds()
  3609. obj_active.options['xmin'] = xmin
  3610. obj_active.options['ymin'] = ymin
  3611. obj_active.options['xmax'] = xmax
  3612. obj_active.options['ymax'] = ymax
  3613. except Exception as e:
  3614. obj_active.options['xmin'] = 0
  3615. obj_active.options['ymin'] = 0
  3616. obj_active.options['xmax'] = 0
  3617. obj_active.options['ymax'] = 0
  3618. # if there is no tool left in the Tools Table, disable the parameters GUI
  3619. if self.ui.geo_tools_table.rowCount() == 0:
  3620. self.ui.geo_param_frame.setDisabled(True)
  3621. def on_row_selection_change(self):
  3622. self.update_ui()
  3623. def update_ui(self, row=None):
  3624. self.ui_disconnect()
  3625. if row is None:
  3626. try:
  3627. current_row = self.ui.geo_tools_table.currentRow()
  3628. except Exception as e:
  3629. current_row = 0
  3630. else:
  3631. current_row = row
  3632. if current_row < 0:
  3633. current_row = 0
  3634. self.set_tool_offset_visibility(current_row)
  3635. # populate the form with the data from the tool associated with the row parameter
  3636. try:
  3637. item = self.ui.geo_tools_table.item(current_row, 5)
  3638. if type(item) is not None:
  3639. tooluid = int(item.text())
  3640. else:
  3641. return
  3642. except Exception as e:
  3643. log.debug("Tool missing. Add a tool in Geo Tool Table. %s" % str(e))
  3644. return
  3645. # update the form with the V-Shape fields if V-Shape selected in the geo_tool_table
  3646. # also modify the Cut Z form entry to reflect the calculated Cut Z from values got from V-Shape Fields
  3647. try:
  3648. item = self.ui.geo_tools_table.cellWidget(current_row, 4)
  3649. if item is not None:
  3650. tool_type_txt = item.currentText()
  3651. self.ui_update_v_shape(tool_type_txt=tool_type_txt)
  3652. else:
  3653. return
  3654. except Exception as e:
  3655. log.debug("Tool missing in ui_update_v_shape(). Add a tool in Geo Tool Table. %s" % str(e))
  3656. return
  3657. try:
  3658. # set the form with data from the newly selected tool
  3659. for tooluid_key, tooluid_value in self.tools.items():
  3660. if int(tooluid_key) == tooluid:
  3661. for key, value in tooluid_value.items():
  3662. if key == 'data':
  3663. form_value_storage = tooluid_value[key]
  3664. self.update_form(form_value_storage)
  3665. if key == 'offset_value':
  3666. # update the offset value in the entry even if the entry is hidden
  3667. self.ui.tool_offset_entry.set_value(tooluid_value[key])
  3668. if key == 'tool_type' and value == 'V':
  3669. self.update_cutz()
  3670. except Exception as e:
  3671. log.debug("FlatCAMObj ---> update_ui() " + str(e))
  3672. self.ui_connect()
  3673. def ui_update_v_shape(self, tool_type_txt):
  3674. if tool_type_txt == 'V':
  3675. self.ui.tipdialabel.show()
  3676. self.ui.tipdia_entry.show()
  3677. self.ui.tipanglelabel.show()
  3678. self.ui.tipangle_entry.show()
  3679. self.ui.cutz_entry.setDisabled(True)
  3680. self.update_cutz()
  3681. else:
  3682. self.ui.tipdialabel.hide()
  3683. self.ui.tipdia_entry.hide()
  3684. self.ui.tipanglelabel.hide()
  3685. self.ui.tipangle_entry.hide()
  3686. self.ui.cutz_entry.setDisabled(False)
  3687. def update_cutz(self):
  3688. vdia = float(self.ui.tipdia_entry.get_value())
  3689. half_vangle = float(self.ui.tipangle_entry.get_value()) / 2
  3690. row = self.ui.geo_tools_table.currentRow()
  3691. tool_uid_item = self.ui.geo_tools_table.item(row, 5)
  3692. if tool_uid_item is None:
  3693. return
  3694. tool_uid = int(tool_uid_item.text())
  3695. tool_dia_item = self.ui.geo_tools_table.item(row, 1)
  3696. if tool_dia_item is None:
  3697. return
  3698. tooldia = float(tool_dia_item.text())
  3699. new_cutz = (tooldia - vdia) / (2 * math.tan(math.radians(half_vangle)))
  3700. new_cutz = float('%.*f' % (self.decimals, new_cutz)) * -1.0 # this value has to be negative
  3701. self.ui.cutz_entry.set_value(new_cutz)
  3702. # store the new CutZ value into storage (self.tools)
  3703. for tooluid_key, tooluid_value in self.tools.items():
  3704. if int(tooluid_key) == tool_uid:
  3705. tooluid_value['data']['cutz'] = new_cutz
  3706. def on_tooltable_cellwidget_change(self):
  3707. cw = self.sender()
  3708. cw_index = self.ui.geo_tools_table.indexAt(cw.pos())
  3709. cw_row = cw_index.row()
  3710. cw_col = cw_index.column()
  3711. current_uid = int(self.ui.geo_tools_table.item(cw_row, 5).text())
  3712. # store the text of the cellWidget that changed it's index in the self.tools
  3713. for tooluid_key, tooluid_value in self.tools.items():
  3714. if int(tooluid_key) == current_uid:
  3715. cb_txt = cw.currentText()
  3716. if cw_col == 2:
  3717. tooluid_value['offset'] = cb_txt
  3718. if cb_txt == 'Custom':
  3719. self.ui.tool_offset_entry.show()
  3720. self.ui.tool_offset_lbl.show()
  3721. else:
  3722. self.ui.tool_offset_entry.hide()
  3723. self.ui.tool_offset_lbl.hide()
  3724. # reset the offset_value in storage self.tools
  3725. tooluid_value['offset_value'] = 0.0
  3726. elif cw_col == 3:
  3727. # force toolpath type as 'Iso' if the tool type is V-Shape
  3728. if self.ui.geo_tools_table.cellWidget(cw_row, 4).currentText() == 'V':
  3729. tooluid_value['type'] = _('Iso')
  3730. idx = self.ui.geo_tools_table.cellWidget(cw_row, 3).findText(_('Iso'))
  3731. self.ui.geo_tools_table.cellWidget(cw_row, 3).setCurrentIndex(idx)
  3732. else:
  3733. tooluid_value['type'] = cb_txt
  3734. elif cw_col == 4:
  3735. tooluid_value['tool_type'] = cb_txt
  3736. # if the tool_type selected is V-Shape then autoselect the toolpath type as Iso
  3737. if cb_txt == 'V':
  3738. idx = self.ui.geo_tools_table.cellWidget(cw_row, 3).findText(_('Iso'))
  3739. self.ui.geo_tools_table.cellWidget(cw_row, 3).setCurrentIndex(idx)
  3740. self.ui_update_v_shape(tool_type_txt=self.ui.geo_tools_table.cellWidget(cw_row, 4).currentText())
  3741. def update_form(self, dict_storage):
  3742. for form_key in self.form_fields:
  3743. for storage_key in dict_storage:
  3744. if form_key == storage_key:
  3745. try:
  3746. self.form_fields[form_key].set_value(dict_storage[form_key])
  3747. except Exception as e:
  3748. log.debug(str(e))
  3749. # this is done here because those buttons control through OptionalInputSelection if some entry's are Enabled
  3750. # or not. But due of using the ui_disconnect() status is no longer updated and I had to do it here
  3751. self.ui.ois_dwell_geo.on_cb_change()
  3752. self.ui.ois_mpass_geo.on_cb_change()
  3753. self.ui.ois_tcz_geo.on_cb_change()
  3754. def gui_form_to_storage(self):
  3755. if self.ui.geo_tools_table.rowCount() == 0:
  3756. # there is no tool in tool table so we can't save the GUI elements values to storage
  3757. log.debug("FlatCAMGeometry.gui_form_to_storage() --> no tool in Tools Table, aborting.")
  3758. return
  3759. self.ui_disconnect()
  3760. widget_changed = self.sender()
  3761. try:
  3762. widget_idx = self.ui.grid3.indexOf(widget_changed)
  3763. except Exception as e:
  3764. return
  3765. # those are the indexes for the V-Tip Dia and V-Tip Angle, if edited calculate the new Cut Z
  3766. if widget_idx == 1 or widget_idx == 3:
  3767. self.update_cutz()
  3768. # the original connect() function of the OptionalInputSelection is no longer working because of the
  3769. # ui_diconnect() so I use this 'hack'
  3770. if isinstance(widget_changed, FCCheckBox):
  3771. if widget_changed.text() == 'Multi-Depth:':
  3772. self.ui.ois_mpass_geo.on_cb_change()
  3773. if widget_changed.text() == 'Tool change':
  3774. self.ui.ois_tcz_geo.on_cb_change()
  3775. if widget_changed.text() == 'Dwell:':
  3776. self.ui.ois_dwell_geo.on_cb_change()
  3777. row = self.ui.geo_tools_table.currentRow()
  3778. if row < 0:
  3779. row = 0
  3780. # store all the data associated with the row parameter to the self.tools storage
  3781. tooldia_item = float(self.ui.geo_tools_table.item(row, 1).text())
  3782. offset_item = self.ui.geo_tools_table.cellWidget(row, 2).currentText()
  3783. type_item = self.ui.geo_tools_table.cellWidget(row, 3).currentText()
  3784. tool_type_item = self.ui.geo_tools_table.cellWidget(row, 4).currentText()
  3785. tooluid_item = int(self.ui.geo_tools_table.item(row, 5).text())
  3786. try:
  3787. offset_value_item = float(self.ui.tool_offset_entry.get_value())
  3788. except ValueError:
  3789. # try to convert comma to decimal point. if it's still not working error message and return
  3790. try:
  3791. offset_value_item = float(self.ui.tool_offset_entry.get_value().replace(',', '.'))
  3792. except ValueError:
  3793. self.app.inform.emit('[ERROR_NOTCL] %s' %
  3794. _("Wrong value format entered, use a number."))
  3795. return
  3796. # this new dict will hold the actual useful data, another dict that is the value of key 'data'
  3797. temp_tools = {}
  3798. temp_dia = {}
  3799. temp_data = {}
  3800. for tooluid_key, tooluid_value in self.tools.items():
  3801. if int(tooluid_key) == tooluid_item:
  3802. for key, value in tooluid_value.items():
  3803. if key == 'tooldia':
  3804. temp_dia[key] = tooldia_item
  3805. # update the 'offset', 'type' and 'tool_type' sections
  3806. if key == 'offset':
  3807. temp_dia[key] = offset_item
  3808. if key == 'type':
  3809. temp_dia[key] = type_item
  3810. if key == 'tool_type':
  3811. temp_dia[key] = tool_type_item
  3812. if key == 'offset_value':
  3813. temp_dia[key] = offset_value_item
  3814. if key == 'data':
  3815. # update the 'data' section
  3816. for data_key in tooluid_value[key].keys():
  3817. for form_key, form_value in self.form_fields.items():
  3818. if form_key == data_key:
  3819. temp_data[data_key] = form_value.get_value()
  3820. # make sure we make a copy of the keys not in the form (we may use 'data' keys that are
  3821. # updated from self.app.defaults
  3822. if data_key not in self.form_fields:
  3823. temp_data[data_key] = value[data_key]
  3824. temp_dia[key] = deepcopy(temp_data)
  3825. temp_data.clear()
  3826. if key == 'solid_geometry':
  3827. temp_dia[key] = deepcopy(self.tools[tooluid_key]['solid_geometry'])
  3828. temp_tools[tooluid_key] = deepcopy(temp_dia)
  3829. else:
  3830. temp_tools[tooluid_key] = deepcopy(tooluid_value)
  3831. self.tools.clear()
  3832. self.tools = deepcopy(temp_tools)
  3833. temp_tools.clear()
  3834. self.ui_connect()
  3835. def select_tools_table_row(self, row, clearsel=None):
  3836. if clearsel:
  3837. self.ui.geo_tools_table.clearSelection()
  3838. if self.ui.geo_tools_table.rowCount() > 0:
  3839. # self.ui.geo_tools_table.item(row, 0).setSelected(True)
  3840. self.ui.geo_tools_table.setCurrentItem(self.ui.geo_tools_table.item(row, 0))
  3841. def export_dxf(self):
  3842. units = self.app.defaults['units'].upper()
  3843. dwg = None
  3844. try:
  3845. dwg = ezdxf.new('R2010')
  3846. msp = dwg.modelspace()
  3847. def g2dxf(dxf_space, geo):
  3848. if isinstance(geo, MultiPolygon):
  3849. for poly in geo:
  3850. ext_points = list(poly.exterior.coords)
  3851. dxf_space.add_lwpolyline(ext_points)
  3852. for interior in poly.interiors:
  3853. dxf_space.add_lwpolyline(list(interior.coords))
  3854. if isinstance(geo, Polygon):
  3855. ext_points = list(geo.exterior.coords)
  3856. dxf_space.add_lwpolyline(ext_points)
  3857. for interior in geo.interiors:
  3858. dxf_space.add_lwpolyline(list(interior.coords))
  3859. if isinstance(geo, MultiLineString):
  3860. for line in geo:
  3861. dxf_space.add_lwpolyline(list(line.coords))
  3862. if isinstance(geo, LineString) or isinstance(geo, LinearRing):
  3863. dxf_space.add_lwpolyline(list(geo.coords))
  3864. multigeo_solid_geometry = []
  3865. if self.multigeo:
  3866. for tool in self.tools:
  3867. multigeo_solid_geometry += self.tools[tool]['solid_geometry']
  3868. else:
  3869. multigeo_solid_geometry = self.solid_geometry
  3870. for geo in multigeo_solid_geometry:
  3871. if type(geo) == list:
  3872. for g in geo:
  3873. g2dxf(msp, g)
  3874. else:
  3875. g2dxf(msp, geo)
  3876. # points = FlatCAMGeometry.get_pts(geo)
  3877. # msp.add_lwpolyline(points)
  3878. except Exception as e:
  3879. log.debug(str(e))
  3880. return dwg
  3881. def get_selected_tools_table_items(self):
  3882. """
  3883. Returns a list of lists, each list in the list is made out of row elements
  3884. :return: List of table_tools items.
  3885. :rtype: list
  3886. """
  3887. table_tools_items = []
  3888. if self.multigeo:
  3889. for x in self.ui.geo_tools_table.selectedItems():
  3890. elem = list()
  3891. txt = ''
  3892. for column in range(0, self.ui.geo_tools_table.columnCount()):
  3893. try:
  3894. txt = self.ui.geo_tools_table.item(x.row(), column).text()
  3895. except AttributeError:
  3896. try:
  3897. txt = self.ui.geo_tools_table.cellWidget(x.row(), column).currentText()
  3898. except AttributeError:
  3899. pass
  3900. elem.append(txt)
  3901. table_tools_items.append(deepcopy(elem))
  3902. # table_tools_items.append([self.ui.geo_tools_table.item(x.row(), column).text()
  3903. # for column in range(0, self.ui.geo_tools_table.columnCount())])
  3904. else:
  3905. for x in self.ui.geo_tools_table.selectedItems():
  3906. r = []
  3907. txt = ''
  3908. # the last 2 columns for single-geo geometry are irrelevant and create problems reading
  3909. # so we don't read them
  3910. for column in range(0, self.ui.geo_tools_table.columnCount() - 2):
  3911. # the columns have items that have text but also have items that are widgets
  3912. # for which the text they hold has to be read differently
  3913. try:
  3914. txt = self.ui.geo_tools_table.item(x.row(), column).text()
  3915. except AttributeError:
  3916. try:
  3917. txt = self.ui.geo_tools_table.cellWidget(x.row(), column).currentText()
  3918. except AttributeError:
  3919. pass
  3920. r.append(txt)
  3921. table_tools_items.append(r)
  3922. for item in table_tools_items:
  3923. item[0] = str(item[0])
  3924. return table_tools_items
  3925. def on_pp_changed(self):
  3926. current_pp = self.ui.pp_geometry_name_cb.get_value()
  3927. if current_pp == 'hpgl':
  3928. self.old_pp_state = self.ui.mpass_cb.get_value()
  3929. self.old_toolchangeg_state = self.ui.toolchangeg_cb.get_value()
  3930. self.ui.mpass_cb.set_value(False)
  3931. self.ui.mpass_cb.setDisabled(True)
  3932. self.ui.toolchangeg_cb.set_value(True)
  3933. self.ui.toolchangeg_cb.setDisabled(True)
  3934. else:
  3935. self.ui.mpass_cb.set_value(self.old_pp_state)
  3936. self.ui.mpass_cb.setDisabled(False)
  3937. self.ui.toolchangeg_cb.set_value(self.old_toolchangeg_state)
  3938. self.ui.toolchangeg_cb.setDisabled(False)
  3939. if "toolchange_probe" in current_pp.lower():
  3940. self.ui.pdepth_entry.setVisible(True)
  3941. self.ui.pdepth_label.show()
  3942. self.ui.feedrate_probe_entry.setVisible(True)
  3943. self.ui.feedrate_probe_label.show()
  3944. else:
  3945. self.ui.pdepth_entry.setVisible(False)
  3946. self.ui.pdepth_label.hide()
  3947. self.ui.feedrate_probe_entry.setVisible(False)
  3948. self.ui.feedrate_probe_label.hide()
  3949. if 'marlin' in current_pp.lower() or 'custom' in current_pp.lower():
  3950. self.ui.fr_rapidlabel.show()
  3951. self.ui.cncfeedrate_rapid_entry.show()
  3952. else:
  3953. self.ui.fr_rapidlabel.hide()
  3954. self.ui.cncfeedrate_rapid_entry.hide()
  3955. def on_generatecnc_button_click(self, *args):
  3956. log.debug("Generating CNCJob from Geometry ...")
  3957. self.app.report_usage("geometry_on_generatecnc_button")
  3958. # this reads the values in the UI form to the self.options dictionary
  3959. self.read_form()
  3960. self.sel_tools = {}
  3961. try:
  3962. if self.special_group:
  3963. self.app.inform.emit('[WARNING_NOTCL] %s %s %s.' %
  3964. (_("This Geometry can't be processed because it is"),
  3965. str(self.special_group),
  3966. _("geometry")
  3967. )
  3968. )
  3969. return
  3970. except AttributeError:
  3971. pass
  3972. # test to see if we have tools available in the tool table
  3973. if self.ui.geo_tools_table.selectedItems():
  3974. for x in self.ui.geo_tools_table.selectedItems():
  3975. # try:
  3976. # tooldia = float(self.ui.geo_tools_table.item(x.row(), 1).text())
  3977. # except ValueError:
  3978. # # try to convert comma to decimal point. if it's still not working error message and return
  3979. # try:
  3980. # tooldia = float(self.ui.geo_tools_table.item(x.row(), 1).text().replace(',', '.'))
  3981. # except ValueError:
  3982. # self.app.inform.emit('[ERROR_NOTCL] %s' %
  3983. # _("Wrong value format entered, use a number."))
  3984. # return
  3985. tooluid = int(self.ui.geo_tools_table.item(x.row(), 5).text())
  3986. for tooluid_key, tooluid_value in self.tools.items():
  3987. if int(tooluid_key) == tooluid:
  3988. self.sel_tools.update({
  3989. tooluid: deepcopy(tooluid_value)
  3990. })
  3991. self.mtool_gen_cncjob()
  3992. self.ui.geo_tools_table.clearSelection()
  3993. elif self.ui.geo_tools_table.rowCount() == 1:
  3994. tooluid = int(self.ui.geo_tools_table.item(0, 5).text())
  3995. for tooluid_key, tooluid_value in self.tools.items():
  3996. if int(tooluid_key) == tooluid:
  3997. self.sel_tools.update({
  3998. tooluid: deepcopy(tooluid_value)
  3999. })
  4000. self.mtool_gen_cncjob()
  4001. self.ui.geo_tools_table.clearSelection()
  4002. else:
  4003. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4004. _("Failed. No tool selected in the tool table ..."))
  4005. def mtool_gen_cncjob(self, outname=None, tools_dict=None, tools_in_use=None, segx=None, segy=None,
  4006. plot=True, use_thread=True):
  4007. """
  4008. Creates a multi-tool CNCJob out of this Geometry object.
  4009. The actual work is done by the target FlatCAMCNCjob object's
  4010. `generate_from_geometry_2()` method.
  4011. :param tools_dict: a dictionary that holds the whole data needed to create the Gcode
  4012. (including the solid_geometry)
  4013. :param tools_in_use: the tools that are used, needed by some postprocessors
  4014. :type list of lists, each list in the list is made out of row elements of tools table from GUI
  4015. :param segx: number of segments on the X axis, for auto-levelling
  4016. :param segy: number of segments on the Y axis, for auto-levelling
  4017. :param plot: if True the generated object will be plotted; if False will not be plotted
  4018. :param use_thread: if True use threading
  4019. :return: None
  4020. """
  4021. # use the name of the first tool selected in self.geo_tools_table which has the diameter passed as tool_dia
  4022. outname = "%s_%s" % (self.options["name"], 'cnc') if outname is None else outname
  4023. tools_dict = self.sel_tools if tools_dict is None else tools_dict
  4024. tools_in_use = tools_in_use if tools_in_use is not None else self.get_selected_tools_table_items()
  4025. segx = segx if segx is not None else float(self.app.defaults['geometry_segx'])
  4026. segy = segy if segy is not None else float(self.app.defaults['geometry_segy'])
  4027. try:
  4028. xmin = self.options['xmin']
  4029. ymin = self.options['ymin']
  4030. xmax = self.options['xmax']
  4031. ymax = self.options['ymax']
  4032. except Exception as e:
  4033. log.debug("FlatCAMObj.FlatCAMGeometry.mtool_gen_cncjob() --> %s\n" % str(e))
  4034. msg = '[ERROR] %s' % _("An internal error has occurred. See shell.\n")
  4035. msg += '%s %s' % ('FlatCAMObj.FlatCAMGeometry.mtool_gen_cncjob() -->', str(e))
  4036. msg += traceback.format_exc()
  4037. self.app.inform.emit(msg)
  4038. return
  4039. # Object initialization function for app.new_object()
  4040. # RUNNING ON SEPARATE THREAD!
  4041. def job_init_single_geometry(job_obj, app_obj):
  4042. log.debug("Creating a CNCJob out of a single-geometry")
  4043. assert isinstance(job_obj, FlatCAMCNCjob), \
  4044. "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  4045. job_obj.options['xmin'] = xmin
  4046. job_obj.options['ymin'] = ymin
  4047. job_obj.options['xmax'] = xmax
  4048. job_obj.options['ymax'] = ymax
  4049. # count the tools
  4050. tool_cnt = 0
  4051. dia_cnc_dict = dict()
  4052. # this turn on the FlatCAMCNCJob plot for multiple tools
  4053. job_obj.multitool = True
  4054. job_obj.multigeo = False
  4055. job_obj.cnc_tools.clear()
  4056. job_obj.options['Tools_in_use'] = tools_in_use
  4057. job_obj.segx = segx if segx else float(self.app.defaults["geometry_segx"])
  4058. job_obj.segy = segy if segy else float(self.app.defaults["geometry_segy"])
  4059. job_obj.z_pdepth = float(self.app.defaults["geometry_z_pdepth"])
  4060. job_obj.feedrate_probe = float(self.app.defaults["geometry_feedrate_probe"])
  4061. for tooluid_key in list(tools_dict.keys()):
  4062. tool_cnt += 1
  4063. dia_cnc_dict = deepcopy(tools_dict[tooluid_key])
  4064. tooldia_val = float('%.*f' % (self.decimals, float(tools_dict[tooluid_key]['tooldia'])))
  4065. dia_cnc_dict.update({
  4066. 'tooldia': tooldia_val
  4067. })
  4068. if dia_cnc_dict['offset'] == 'in':
  4069. tool_offset = -dia_cnc_dict['tooldia'] / 2
  4070. elif dia_cnc_dict['offset'].lower() == 'out':
  4071. tool_offset = dia_cnc_dict['tooldia'] / 2
  4072. elif dia_cnc_dict['offset'].lower() == 'custom':
  4073. try:
  4074. offset_value = float(self.ui.tool_offset_entry.get_value())
  4075. except ValueError:
  4076. # try to convert comma to decimal point. if it's still not working error message and return
  4077. try:
  4078. offset_value = float(self.ui.tool_offset_entry.get_value().replace(',', '.'))
  4079. except ValueError:
  4080. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4081. _("Wrong value format entered, use a number."))
  4082. return
  4083. if offset_value:
  4084. tool_offset = float(offset_value)
  4085. else:
  4086. self.app.inform.emit('[WARNING] %s' % _("Tool Offset is selected in Tool Table but "
  4087. "no value is provided.\n"
  4088. "Add a Tool Offset or change the Offset Type."))
  4089. return
  4090. else:
  4091. tool_offset = 0.0
  4092. dia_cnc_dict.update({
  4093. 'offset_value': tool_offset
  4094. })
  4095. z_cut = tools_dict[tooluid_key]['data']["cutz"]
  4096. z_move = tools_dict[tooluid_key]['data']["travelz"]
  4097. feedrate = tools_dict[tooluid_key]['data']["feedrate"]
  4098. feedrate_z = tools_dict[tooluid_key]['data']["feedrate_z"]
  4099. feedrate_rapid = tools_dict[tooluid_key]['data']["feedrate_rapid"]
  4100. multidepth = tools_dict[tooluid_key]['data']["multidepth"]
  4101. extracut = tools_dict[tooluid_key]['data']["extracut"]
  4102. depthpercut = tools_dict[tooluid_key]['data']["depthperpass"]
  4103. toolchange = tools_dict[tooluid_key]['data']["toolchange"]
  4104. toolchangez = tools_dict[tooluid_key]['data']["toolchangez"]
  4105. toolchangexy = tools_dict[tooluid_key]['data']["toolchangexy"]
  4106. startz = tools_dict[tooluid_key]['data']["startz"]
  4107. endz = tools_dict[tooluid_key]['data']["endz"]
  4108. spindlespeed = tools_dict[tooluid_key]['data']["spindlespeed"]
  4109. dwell = tools_dict[tooluid_key]['data']["dwell"]
  4110. dwelltime = tools_dict[tooluid_key]['data']["dwelltime"]
  4111. pp_geometry_name = tools_dict[tooluid_key]['data']["ppname_g"]
  4112. spindledir = self.app.defaults['geometry_spindledir']
  4113. tool_solid_geometry = self.solid_geometry
  4114. job_obj.coords_decimals = self.app.defaults["cncjob_coords_decimals"]
  4115. job_obj.fr_decimals = self.app.defaults["cncjob_fr_decimals"]
  4116. # Propagate options
  4117. job_obj.options["tooldia"] = tooldia_val
  4118. job_obj.options['type'] = 'Geometry'
  4119. job_obj.options['tool_dia'] = tooldia_val
  4120. # it seems that the tolerance needs to be a lot lower value than 0.01 and it was hardcoded initially
  4121. # to a value of 0.0005 which is 20 times less than 0.01
  4122. tol = float(self.app.defaults['global_tolerance']) / 20
  4123. res = job_obj.generate_from_geometry_2(
  4124. self, tooldia=tooldia_val, offset=tool_offset, tolerance=tol,
  4125. z_cut=z_cut, z_move=z_move,
  4126. feedrate=feedrate, feedrate_z=feedrate_z, feedrate_rapid=feedrate_rapid,
  4127. spindlespeed=spindlespeed, spindledir=spindledir, dwell=dwell, dwelltime=dwelltime,
  4128. multidepth=multidepth, depthpercut=depthpercut,
  4129. extracut=extracut, startz=startz, endz=endz,
  4130. toolchange=toolchange, toolchangez=toolchangez, toolchangexy=toolchangexy,
  4131. pp_geometry_name=pp_geometry_name,
  4132. tool_no=tool_cnt)
  4133. if res == 'fail':
  4134. log.debug("FlatCAMGeometry.mtool_gen_cncjob() --> generate_from_geometry2() failed")
  4135. return 'fail'
  4136. else:
  4137. dia_cnc_dict['gcode'] = res
  4138. # tell gcode_parse from which point to start drawing the lines depending on what kind of
  4139. # object is the source of gcode
  4140. job_obj.toolchange_xy_type = "geometry"
  4141. self.app.inform.emit('[success] %s' % _("G-Code parsing in progress..."))
  4142. dia_cnc_dict['gcode_parsed'] = job_obj.gcode_parse()
  4143. self.app.inform.emit('[success] %s' % _("G-Code parsing finished..."))
  4144. # TODO this serve for bounding box creation only; should be optimized
  4145. # commented this; there is no need for the actual GCode geometry - the original one will serve as well
  4146. # for bounding box values
  4147. # dia_cnc_dict['solid_geometry'] = cascaded_union([geo['geom'] for geo in dia_cnc_dict['gcode_parsed']])
  4148. try:
  4149. dia_cnc_dict['solid_geometry'] = tool_solid_geometry
  4150. self.app.inform.emit('[success] %s...' % _("Finished G-Code processing"))
  4151. except Exception as e:
  4152. self.app.inform.emit('[ERROR] %s: %s' % (_("G-Code processing failed with error"), str(e)))
  4153. job_obj.cnc_tools.update({
  4154. tooluid_key: deepcopy(dia_cnc_dict)
  4155. })
  4156. dia_cnc_dict.clear()
  4157. # Object initialization function for app.new_object()
  4158. # RUNNING ON SEPARATE THREAD!
  4159. def job_init_multi_geometry(job_obj, app_obj):
  4160. log.debug("Creating a CNCJob out of a multi-geometry")
  4161. assert isinstance(job_obj, FlatCAMCNCjob), \
  4162. "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  4163. current_uid = int(1)
  4164. job_obj.options['xmin'] = xmin
  4165. job_obj.options['ymin'] = ymin
  4166. job_obj.options['xmax'] = xmax
  4167. job_obj.options['ymax'] = ymax
  4168. # count the tools
  4169. tool_cnt = 0
  4170. dia_cnc_dict = dict()
  4171. # this turn on the FlatCAMCNCJob plot for multiple tools
  4172. job_obj.multitool = True
  4173. job_obj.multigeo = True
  4174. job_obj.cnc_tools.clear()
  4175. job_obj.options['Tools_in_use'] = tools_in_use
  4176. job_obj.segx = segx if segx else float(self.app.defaults["geometry_segx"])
  4177. job_obj.segy = segy if segy else float(self.app.defaults["geometry_segy"])
  4178. job_obj.z_pdepth = float(self.app.defaults["geometry_z_pdepth"])
  4179. job_obj.feedrate_probe = float(self.app.defaults["geometry_feedrate_probe"])
  4180. # make sure that trying to make a CNCJob from an empty file is not creating an app crash
  4181. if not self.solid_geometry:
  4182. a = 0
  4183. for tooluid_key in self.tools:
  4184. if self.tools[tooluid_key]['solid_geometry'] is None:
  4185. a += 1
  4186. if a == len(self.tools):
  4187. self.app.inform.emit('[ERROR_NOTCL] %s...' %
  4188. _('Cancelled. Empty file, it has no geometry'))
  4189. return 'fail'
  4190. for tooluid_key in list(tools_dict.keys()):
  4191. tool_cnt += 1
  4192. dia_cnc_dict = deepcopy(tools_dict[tooluid_key])
  4193. tooldia_val = float('%.*f' % (self.decimals, float(tools_dict[tooluid_key]['tooldia'])))
  4194. dia_cnc_dict.update({
  4195. 'tooldia': tooldia_val
  4196. })
  4197. # find the tool_dia associated with the tooluid_key
  4198. # search in the self.tools for the sel_tool_dia and when found see what tooluid has
  4199. # on the found tooluid in self.tools we also have the solid_geometry that interest us
  4200. for k, v in self.tools.items():
  4201. if float('%.*f' % (self.decimals, float(v['tooldia']))) == tooldia_val:
  4202. current_uid = int(k)
  4203. break
  4204. if dia_cnc_dict['offset'] == 'in':
  4205. tool_offset = -tooldia_val / 2
  4206. elif dia_cnc_dict['offset'].lower() == 'out':
  4207. tool_offset = tooldia_val / 2
  4208. elif dia_cnc_dict['offset'].lower() == 'custom':
  4209. offset_value = float(self.ui.tool_offset_entry.get_value())
  4210. if offset_value:
  4211. tool_offset = float(offset_value)
  4212. else:
  4213. self.app.inform.emit('[WARNING] %s' %
  4214. _("Tool Offset is selected in Tool Table but "
  4215. "no value is provided.\n"
  4216. "Add a Tool Offset or change the Offset Type."))
  4217. return
  4218. else:
  4219. tool_offset = 0.0
  4220. dia_cnc_dict.update({
  4221. 'offset_value': tool_offset
  4222. })
  4223. z_cut = tools_dict[tooluid_key]['data']["cutz"]
  4224. z_move = tools_dict[tooluid_key]['data']["travelz"]
  4225. feedrate = tools_dict[tooluid_key]['data']["feedrate"]
  4226. feedrate_z = tools_dict[tooluid_key]['data']["feedrate_z"]
  4227. feedrate_rapid = tools_dict[tooluid_key]['data']["feedrate_rapid"]
  4228. multidepth = tools_dict[tooluid_key]['data']["multidepth"]
  4229. extracut = tools_dict[tooluid_key]['data']["extracut"]
  4230. depthpercut = tools_dict[tooluid_key]['data']["depthperpass"]
  4231. toolchange = tools_dict[tooluid_key]['data']["toolchange"]
  4232. toolchangez = tools_dict[tooluid_key]['data']["toolchangez"]
  4233. toolchangexy = tools_dict[tooluid_key]['data']["toolchangexy"]
  4234. startz = tools_dict[tooluid_key]['data']["startz"]
  4235. endz = tools_dict[tooluid_key]['data']["endz"]
  4236. spindlespeed = tools_dict[tooluid_key]['data']["spindlespeed"]
  4237. dwell = tools_dict[tooluid_key]['data']["dwell"]
  4238. dwelltime = tools_dict[tooluid_key]['data']["dwelltime"]
  4239. pp_geometry_name = tools_dict[tooluid_key]['data']["ppname_g"]
  4240. spindledir = self.app.defaults['geometry_spindledir']
  4241. tool_solid_geometry = self.tools[current_uid]['solid_geometry']
  4242. job_obj.coords_decimals = self.app.defaults["cncjob_coords_decimals"]
  4243. job_obj.fr_decimals = self.app.defaults["cncjob_fr_decimals"]
  4244. # Propagate options
  4245. job_obj.options["tooldia"] = tooldia_val
  4246. job_obj.options['type'] = 'Geometry'
  4247. job_obj.options['tool_dia'] = tooldia_val
  4248. # it seems that the tolerance needs to be a lot lower value than 0.01 and it was hardcoded initially
  4249. # to a value of 0.0005 which is 20 times less than 0.01
  4250. tol = float(self.app.defaults['global_tolerance']) / 20
  4251. res = job_obj.generate_from_multitool_geometry(
  4252. tool_solid_geometry, tooldia=tooldia_val, offset=tool_offset,
  4253. tolerance=tol, z_cut=z_cut, z_move=z_move,
  4254. feedrate=feedrate, feedrate_z=feedrate_z, feedrate_rapid=feedrate_rapid,
  4255. spindlespeed=spindlespeed, spindledir=spindledir, dwell=dwell, dwelltime=dwelltime,
  4256. multidepth=multidepth, depthpercut=depthpercut,
  4257. extracut=extracut, startz=startz, endz=endz,
  4258. toolchange=toolchange, toolchangez=toolchangez, toolchangexy=toolchangexy,
  4259. pp_geometry_name=pp_geometry_name,
  4260. tool_no=tool_cnt)
  4261. if res == 'fail':
  4262. log.debug("FlatCAMGeometry.mtool_gen_cncjob() --> generate_from_geometry2() failed")
  4263. return 'fail'
  4264. else:
  4265. dia_cnc_dict['gcode'] = res
  4266. self.app.inform.emit('[success] %s' % _("G-Code parsing in progress..."))
  4267. dia_cnc_dict['gcode_parsed'] = job_obj.gcode_parse()
  4268. self.app.inform.emit('[success] %s' % _("G-Code parsing finished..."))
  4269. # TODO this serve for bounding box creation only; should be optimized
  4270. # commented this; there is no need for the actual GCode geometry - the original one will serve as well
  4271. # for bounding box values
  4272. # geo_for_bound_values = cascaded_union([
  4273. # geo['geom'] for geo in dia_cnc_dict['gcode_parsed'] if geo['geom'].is_valid is True
  4274. # ])
  4275. try:
  4276. dia_cnc_dict['solid_geometry'] = deepcopy(tool_solid_geometry)
  4277. self.app.inform.emit('[success] %s' % _("Finished G-Code processing..."))
  4278. except Exception as e:
  4279. self.app.inform.emit('[ERROR] %s: %s' % (_("G-Code processing failed with error"), str(e)))
  4280. # tell gcode_parse from which point to start drawing the lines depending on what kind of
  4281. # object is the source of gcode
  4282. job_obj.toolchange_xy_type = "geometry"
  4283. job_obj.cnc_tools.update({
  4284. tooluid_key: deepcopy(dia_cnc_dict)
  4285. })
  4286. dia_cnc_dict.clear()
  4287. if use_thread:
  4288. # To be run in separate thread
  4289. # The idea is that if there is a solid_geometry in the file "root" then most likely thare are no
  4290. # separate solid_geometry in the self.tools dictionary
  4291. def job_thread(app_obj):
  4292. if self.solid_geometry:
  4293. with self.app.proc_container.new(_("Generating CNC Code")):
  4294. if app_obj.new_object("cncjob", outname, job_init_single_geometry, plot=plot) != 'fail':
  4295. app_obj.inform.emit('[success] %s: %s' % (_("CNCjob created"), outname))
  4296. else:
  4297. with self.app.proc_container.new(_("Generating CNC Code")):
  4298. if app_obj.new_object("cncjob", outname, job_init_multi_geometry) != 'fail':
  4299. app_obj.inform.emit('[success] %s: %s' % (_("CNCjob created"), outname))
  4300. # Create a promise with the name
  4301. self.app.collection.promise(outname)
  4302. # Send to worker
  4303. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  4304. else:
  4305. if self.solid_geometry:
  4306. self.app.new_object("cncjob", outname, job_init_single_geometry, plot=plot)
  4307. else:
  4308. self.app.new_object("cncjob", outname, job_init_multi_geometry, plot=plot)
  4309. def generatecncjob(
  4310. self, outname=None,
  4311. dia=None, offset=None,
  4312. z_cut=None, z_move=None,
  4313. feedrate=None, feedrate_z=None, feedrate_rapid=None,
  4314. spindlespeed=None, dwell=None, dwelltime=None,
  4315. multidepth=None, depthperpass=None,
  4316. toolchange=None, toolchangez=None, toolchangexy=None,
  4317. extracut=None, startz=None, endz=None,
  4318. pp=None,
  4319. segx=None, segy=None,
  4320. use_thread=True,
  4321. plot=True):
  4322. """
  4323. Only used for TCL Command.
  4324. Creates a CNCJob out of this Geometry object. The actual
  4325. work is done by the target camlib.CNCjob
  4326. `generate_from_geometry_2()` method.
  4327. :param z_cut: Cut depth (negative)
  4328. :param z_move: Hight of the tool when travelling (not cutting)
  4329. :param feedrate: Feed rate while cutting on X - Y plane
  4330. :param feedrate_z: Feed rate while cutting on Z plane
  4331. :param feedrate_rapid: Feed rate while moving with rapids
  4332. :param dia: Tool diameter
  4333. :param outname: Name of the new object
  4334. :param spindlespeed: Spindle speed (RPM)
  4335. :param pp Name of the postprocessor
  4336. :return: None
  4337. """
  4338. tooldia = dia if dia else float(self.options["cnctooldia"])
  4339. outname = outname if outname is not None else self.options["name"]
  4340. z_cut = z_cut if z_cut is not None else float(self.options["cutz"])
  4341. z_move = z_move if z_move is not None else float(self.options["travelz"])
  4342. feedrate = feedrate if feedrate is not None else float(self.options["feedrate"])
  4343. feedrate_z = feedrate_z if feedrate_z is not None else float(self.options["feedrate_z"])
  4344. feedrate_rapid = feedrate_rapid if feedrate_rapid is not None else float(self.options["feedrate_rapid"])
  4345. multidepth = multidepth if multidepth is not None else self.options["multidepth"]
  4346. depthperpass = depthperpass if depthperpass is not None else float(self.options["depthperpass"])
  4347. segx = segx if segx is not None else float(self.app.defaults['geometry_segx'])
  4348. segy = segy if segy is not None else float(self.app.defaults['geometry_segy'])
  4349. extracut = extracut if extracut is not None else float(self.options["extracut"])
  4350. startz = startz if startz is not None else self.options["startz"]
  4351. endz = endz if endz is not None else float(self.options["endz"])
  4352. toolchangez = toolchangez if toolchangez else float(self.options["toolchangez"])
  4353. toolchangexy = toolchangexy if toolchangexy else self.options["toolchangexy"]
  4354. toolchange = toolchange if toolchange else self.options["toolchange"]
  4355. offset = offset if offset else 0.0
  4356. # int or None.
  4357. spindlespeed = spindlespeed if spindlespeed else self.options['spindlespeed']
  4358. dwell = dwell if dwell else self.options["dwell"]
  4359. dwelltime = dwelltime if dwelltime else float(self.options["dwelltime"])
  4360. ppname_g = pp if pp else self.options["ppname_g"]
  4361. # Object initialization function for app.new_object()
  4362. # RUNNING ON SEPARATE THREAD!
  4363. def job_init(job_obj, app_obj):
  4364. assert isinstance(job_obj, FlatCAMCNCjob), "Initializer expected a FlatCAMCNCjob, got %s" % type(job_obj)
  4365. # Propagate options
  4366. job_obj.options["tooldia"] = tooldia
  4367. app_obj.progress.emit(20)
  4368. job_obj.coords_decimals = self.app.defaults["cncjob_coords_decimals"]
  4369. job_obj.fr_decimals = self.app.defaults["cncjob_fr_decimals"]
  4370. app_obj.progress.emit(40)
  4371. job_obj.options['type'] = 'Geometry'
  4372. job_obj.options['tool_dia'] = tooldia
  4373. job_obj.segx = segx
  4374. job_obj.segy = segy
  4375. job_obj.z_pdepth = float(self.options["z_pdepth"])
  4376. job_obj.feedrate_probe = float(self.options["feedrate_probe"])
  4377. job_obj.options['xmin'] = self.options['xmin']
  4378. job_obj.options['ymin'] = self.options['ymin']
  4379. job_obj.options['xmax'] = self.options['xmax']
  4380. job_obj.options['ymax'] = self.options['ymax']
  4381. # it seems that the tolerance needs to be a lot lower value than 0.01 and it was hardcoded initially
  4382. # to a value of 0.0005 which is 20 times less than 0.01
  4383. tol = float(self.app.defaults['global_tolerance']) / 20
  4384. job_obj.generate_from_geometry_2(
  4385. self, tooldia=tooldia, offset=offset, tolerance=tol,
  4386. z_cut=z_cut, z_move=z_move,
  4387. feedrate=feedrate, feedrate_z=feedrate_z, feedrate_rapid=feedrate_rapid,
  4388. spindlespeed=spindlespeed, dwell=dwell, dwelltime=dwelltime,
  4389. multidepth=multidepth, depthpercut=depthperpass,
  4390. toolchange=toolchange, toolchangez=toolchangez, toolchangexy=toolchangexy,
  4391. extracut=extracut, startz=startz, endz=endz,
  4392. pp_geometry_name=ppname_g
  4393. )
  4394. app_obj.progress.emit(50)
  4395. # tell gcode_parse from which point to start drawing the lines depending on what kind of object is the
  4396. # source of gcode
  4397. job_obj.toolchange_xy_type = "geometry"
  4398. job_obj.gcode_parse()
  4399. self.app.inform.emit('[success] %s' %
  4400. _("Finished G-Code processing..."))
  4401. app_obj.progress.emit(80)
  4402. if use_thread:
  4403. # To be run in separate thread
  4404. def job_thread(app_obj):
  4405. with self.app.proc_container.new(_("Generating CNC Code")):
  4406. app_obj.new_object("cncjob", outname, job_init, plot=plot)
  4407. app_obj.inform.emit('[success] %s: %s' %
  4408. (_("CNCjob created")), outname)
  4409. app_obj.progress.emit(100)
  4410. # Create a promise with the name
  4411. self.app.collection.promise(outname)
  4412. # Send to worker
  4413. self.app.worker_task.emit({'fcn': job_thread, 'params': [self.app]})
  4414. else:
  4415. self.app.new_object("cncjob", outname, job_init, plot=plot)
  4416. # def on_plot_cb_click(self, *args): # TODO: args not needed
  4417. # if self.muted_ui:
  4418. # return
  4419. # self.read_form_item('plot')
  4420. def scale(self, xfactor, yfactor=None, point=None):
  4421. """
  4422. Scales all geometry by a given factor.
  4423. :param xfactor: Factor by which to scale the object's geometry/
  4424. :type xfactor: float
  4425. :param yfactor: Factor by which to scale the object's geometry/
  4426. :type yfactor: float
  4427. :return: None
  4428. :rtype: None
  4429. """
  4430. log.debug("FlatCAMObj.FlatCAMGeometry.scale()")
  4431. try:
  4432. xfactor = float(xfactor)
  4433. except Exception as e:
  4434. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4435. _("Scale factor has to be a number: integer or float."))
  4436. return
  4437. if yfactor is None:
  4438. yfactor = xfactor
  4439. else:
  4440. try:
  4441. yfactor = float(yfactor)
  4442. except Exception as e:
  4443. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4444. _("Scale factor has to be a number: integer or float."))
  4445. return
  4446. if point is None:
  4447. px = 0
  4448. py = 0
  4449. else:
  4450. px, py = point
  4451. # if type(self.solid_geometry) == list:
  4452. # geo_list = self.flatten(self.solid_geometry)
  4453. # self.solid_geometry = []
  4454. # # for g in geo_list:
  4455. # # self.solid_geometry.append(affinity.scale(g, xfactor, yfactor, origin=(px, py)))
  4456. # self.solid_geometry = [affinity.scale(g, xfactor, yfactor, origin=(px, py))
  4457. # for g in geo_list]
  4458. # else:
  4459. # self.solid_geometry = affinity.scale(self.solid_geometry, xfactor, yfactor,
  4460. # origin=(px, py))
  4461. # self.app.inform.emit("[success] Geometry Scale done.")
  4462. self.geo_len = 0
  4463. self.old_disp_number = 0
  4464. self.el_count = 0
  4465. def scale_recursion(geom):
  4466. if type(geom) is list:
  4467. geoms = list()
  4468. for local_geom in geom:
  4469. geoms.append(scale_recursion(local_geom))
  4470. return geoms
  4471. else:
  4472. try:
  4473. self.el_count += 1
  4474. disp_number = int(np.interp(self.el_count, [0, self.geo_len], [0, 100]))
  4475. if self.old_disp_number < disp_number <= 100:
  4476. self.app.proc_container.update_view_text(' %d%%' % disp_number)
  4477. self.old_disp_number = disp_number
  4478. return affinity.scale(geom, xfactor, yfactor, origin=(px, py))
  4479. except AttributeError:
  4480. return geom
  4481. if self.multigeo is True:
  4482. for tool in self.tools:
  4483. # variables to display the percentage of work done
  4484. self.geo_len = 0
  4485. try:
  4486. for g in self.tools[tool]['solid_geometry']:
  4487. self.geo_len += 1
  4488. except TypeError:
  4489. self.geo_len = 1
  4490. self.old_disp_number = 0
  4491. self.el_count = 0
  4492. self.tools[tool]['solid_geometry'] = scale_recursion(self.tools[tool]['solid_geometry'])
  4493. else:
  4494. try:
  4495. # variables to display the percentage of work done
  4496. self.geo_len = 0
  4497. try:
  4498. for g in self.solid_geometry:
  4499. self.geo_len += 1
  4500. except TypeError:
  4501. self.geo_len = 1
  4502. self.old_disp_number = 0
  4503. self.el_count = 0
  4504. self.solid_geometry = scale_recursion(self.solid_geometry)
  4505. except AttributeError:
  4506. self.solid_geometry = []
  4507. return
  4508. self.app.proc_container.new_text = ''
  4509. self.app.inform.emit('[success] %s' % _("Geometry Scale done."))
  4510. def offset(self, vect):
  4511. """
  4512. Offsets all geometry by a given vector/
  4513. :param vect: (x, y) vector by which to offset the object's geometry.
  4514. :type vect: tuple
  4515. :return: None
  4516. :rtype: None
  4517. """
  4518. log.debug("FlatCAMObj.FlatCAMGeometry.offset()")
  4519. try:
  4520. dx, dy = vect
  4521. except TypeError:
  4522. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4523. _("An (x,y) pair of values are needed. "
  4524. "Probable you entered only one value in the Offset field.")
  4525. )
  4526. return
  4527. self.geo_len = 0
  4528. self.old_disp_number = 0
  4529. self.el_count = 0
  4530. def translate_recursion(geom):
  4531. if type(geom) is list:
  4532. geoms = list()
  4533. for local_geom in geom:
  4534. geoms.append(translate_recursion(local_geom))
  4535. return geoms
  4536. else:
  4537. try:
  4538. self.el_count += 1
  4539. disp_number = int(np.interp(self.el_count, [0, self.geo_len], [0, 100]))
  4540. if self.old_disp_number < disp_number <= 100:
  4541. self.app.proc_container.update_view_text(' %d%%' % disp_number)
  4542. self.old_disp_number = disp_number
  4543. return affinity.translate(geom, xoff=dx, yoff=dy)
  4544. except AttributeError:
  4545. return geom
  4546. if self.multigeo is True:
  4547. for tool in self.tools:
  4548. # variables to display the percentage of work done
  4549. self.geo_len = 0
  4550. try:
  4551. for g in self.tools[tool]['solid_geometry']:
  4552. self.geo_len += 1
  4553. except TypeError:
  4554. self.geo_len = 1
  4555. self.old_disp_number = 0
  4556. self.el_count = 0
  4557. self.tools[tool]['solid_geometry'] = translate_recursion(self.tools[tool]['solid_geometry'])
  4558. else:
  4559. # variables to display the percentage of work done
  4560. self.geo_len = 0
  4561. try:
  4562. for g in self.solid_geometry:
  4563. self.geo_len += 1
  4564. except TypeError:
  4565. self.geo_len = 1
  4566. self.old_disp_number = 0
  4567. self.el_count = 0
  4568. self.solid_geometry = translate_recursion(self.solid_geometry)
  4569. self.app.proc_container.new_text = ''
  4570. self.app.inform.emit('[success] %s' % _("Geometry Offset done."))
  4571. def convert_units(self, units):
  4572. log.debug("FlatCAMObj.FlatCAMGeometry.convert_units()")
  4573. self.ui_disconnect()
  4574. factor = Geometry.convert_units(self, units)
  4575. self.options['cutz'] = float(self.options['cutz']) * factor
  4576. self.options['depthperpass'] = float(self.options['depthperpass']) * factor
  4577. self.options['travelz'] = float(self.options['travelz']) * factor
  4578. self.options['feedrate'] = float(self.options['feedrate']) * factor
  4579. self.options['feedrate_z'] = float(self.options['feedrate_z']) * factor
  4580. self.options['feedrate_rapid'] = float(self.options['feedrate_rapid']) * factor
  4581. self.options['endz'] = float(self.options['endz']) * factor
  4582. # self.options['cnctooldia'] *= factor
  4583. # self.options['painttooldia'] *= factor
  4584. # self.options['paintmargin'] *= factor
  4585. # self.options['paintoverlap'] *= factor
  4586. self.options["toolchangez"] = float(self.options["toolchangez"]) * factor
  4587. if self.app.defaults["geometry_toolchangexy"] == '':
  4588. self.options['toolchangexy'] = "0.0, 0.0"
  4589. else:
  4590. coords_xy = [float(eval(coord)) for coord in self.app.defaults["geometry_toolchangexy"].split(",")]
  4591. if len(coords_xy) < 2:
  4592. self.app.inform.emit('[ERROR] %s' %
  4593. _("The Toolchange X,Y field in Edit -> Preferences "
  4594. "has to be in the format (x, y)\n"
  4595. "but now there is only one value, not two.")
  4596. )
  4597. return 'fail'
  4598. coords_xy[0] *= factor
  4599. coords_xy[1] *= factor
  4600. self.options['toolchangexy'] = "%f, %f" % (coords_xy[0], coords_xy[1])
  4601. if self.options['startz'] is not None:
  4602. self.options['startz'] = float(self.options['startz']) * factor
  4603. param_list = ['cutz', 'depthperpass', 'travelz', 'feedrate', 'feedrate_z', 'feedrate_rapid',
  4604. 'endz', 'toolchangez']
  4605. if isinstance(self, FlatCAMGeometry):
  4606. temp_tools_dict = {}
  4607. tool_dia_copy = {}
  4608. data_copy = {}
  4609. for tooluid_key, tooluid_value in self.tools.items():
  4610. for dia_key, dia_value in tooluid_value.items():
  4611. if dia_key == 'tooldia':
  4612. dia_value *= factor
  4613. dia_value = float('%.*f' % (self.decimals, dia_value))
  4614. tool_dia_copy[dia_key] = dia_value
  4615. if dia_key == 'offset':
  4616. tool_dia_copy[dia_key] = dia_value
  4617. if dia_key == 'offset_value':
  4618. dia_value *= factor
  4619. tool_dia_copy[dia_key] = dia_value
  4620. # convert the value in the Custom Tool Offset entry in UI
  4621. custom_offset = None
  4622. try:
  4623. custom_offset = float(self.ui.tool_offset_entry.get_value())
  4624. except ValueError:
  4625. # try to convert comma to decimal point. if it's still not working error message and return
  4626. try:
  4627. custom_offset = float(self.ui.tool_offset_entry.get_value().replace(',', '.'))
  4628. except ValueError:
  4629. self.app.inform.emit('[ERROR_NOTCL] %s' %
  4630. _("Wrong value format entered, use a number."))
  4631. return
  4632. except TypeError:
  4633. pass
  4634. if custom_offset:
  4635. custom_offset *= factor
  4636. self.ui.tool_offset_entry.set_value(custom_offset)
  4637. if dia_key == 'type':
  4638. tool_dia_copy[dia_key] = dia_value
  4639. if dia_key == 'tool_type':
  4640. tool_dia_copy[dia_key] = dia_value
  4641. if dia_key == 'data':
  4642. for data_key, data_value in dia_value.items():
  4643. # convert the form fields that are convertible
  4644. for param in param_list:
  4645. if data_key == param and data_value is not None:
  4646. data_copy[data_key] = data_value * factor
  4647. # copy the other dict entries that are not convertible
  4648. if data_key not in param_list:
  4649. data_copy[data_key] = data_value
  4650. tool_dia_copy[dia_key] = deepcopy(data_copy)
  4651. data_copy.clear()
  4652. temp_tools_dict.update({
  4653. tooluid_key: deepcopy(tool_dia_copy)
  4654. })
  4655. tool_dia_copy.clear()
  4656. self.tools.clear()
  4657. self.tools = deepcopy(temp_tools_dict)
  4658. # if there is a value in the new tool field then convert that one too
  4659. tooldia = self.ui.addtool_entry.get_value()
  4660. if tooldia:
  4661. tooldia *= factor
  4662. # limit the decimals to 2 for METRIC and 3 for INCH
  4663. if units.lower() == 'in':
  4664. tooldia = float('%.4f' % tooldia)
  4665. else:
  4666. tooldia = float('%.2f' % tooldia)
  4667. self.ui.addtool_entry.set_value(tooldia)
  4668. return factor
  4669. def plot_element(self, element, color='#FF0000FF', visible=None):
  4670. visible = visible if visible else self.options['plot']
  4671. try:
  4672. for sub_el in element:
  4673. self.plot_element(sub_el)
  4674. except TypeError: # Element is not iterable...
  4675. # if self.app.is_legacy is False:
  4676. self.add_shape(shape=element, color=color, visible=visible, layer=0)
  4677. def plot(self, visible=None, kind=None):
  4678. """
  4679. Plot the object.
  4680. :param visible: Controls if the added shape is visible of not
  4681. :param kind: added so there is no error when a project is loaded and it has both geometry and CNCJob, because
  4682. CNCJob require the 'kind' parameter. Perhaps the FlatCAMObj.plot() has to be rewrited
  4683. :return:
  4684. """
  4685. # Does all the required setup and returns False
  4686. # if the 'ptint' option is set to False.
  4687. if not FlatCAMObj.plot(self):
  4688. return
  4689. try:
  4690. # plot solid geometries found as members of self.tools attribute dict
  4691. # for MultiGeo
  4692. if self.multigeo is True: # geo multi tool usage
  4693. for tooluid_key in self.tools:
  4694. solid_geometry = self.tools[tooluid_key]['solid_geometry']
  4695. self.plot_element(solid_geometry, visible=visible)
  4696. else:
  4697. # plot solid geometry that may be an direct attribute of the geometry object
  4698. # for SingleGeo
  4699. if self.solid_geometry:
  4700. self.plot_element(self.solid_geometry, visible=visible)
  4701. # self.plot_element(self.solid_geometry, visible=self.options['plot'])
  4702. self.shapes.redraw()
  4703. except (ObjectDeleted, AttributeError):
  4704. self.shapes.clear(update=True)
  4705. def on_plot_cb_click(self, *args):
  4706. if self.muted_ui:
  4707. return
  4708. self.read_form_item('plot')
  4709. self.plot()
  4710. self.ui_disconnect()
  4711. cb_flag = self.ui.plot_cb.isChecked()
  4712. for row in range(self.ui.geo_tools_table.rowCount()):
  4713. table_cb = self.ui.geo_tools_table.cellWidget(row, 6)
  4714. if cb_flag:
  4715. table_cb.setChecked(True)
  4716. else:
  4717. table_cb.setChecked(False)
  4718. self.ui_connect()
  4719. def on_plot_cb_click_table(self):
  4720. # self.ui.cnc_tools_table.cellWidget(row, 2).widget().setCheckState(QtCore.Qt.Unchecked)
  4721. self.ui_disconnect()
  4722. # cw = self.sender()
  4723. # cw_index = self.ui.geo_tools_table.indexAt(cw.pos())
  4724. # cw_row = cw_index.row()
  4725. check_row = 0
  4726. self.shapes.clear(update=True)
  4727. for tooluid_key in self.tools:
  4728. solid_geometry = self.tools[tooluid_key]['solid_geometry']
  4729. # find the geo_tool_table row associated with the tooluid_key
  4730. for row in range(self.ui.geo_tools_table.rowCount()):
  4731. tooluid_item = int(self.ui.geo_tools_table.item(row, 5).text())
  4732. if tooluid_item == int(tooluid_key):
  4733. check_row = row
  4734. break
  4735. if self.ui.geo_tools_table.cellWidget(check_row, 6).isChecked():
  4736. self.plot_element(element=solid_geometry, visible=True)
  4737. self.shapes.redraw()
  4738. # make sure that the general plot is disabled if one of the row plot's are disabled and
  4739. # if all the row plot's are enabled also enable the general plot checkbox
  4740. cb_cnt = 0
  4741. total_row = self.ui.geo_tools_table.rowCount()
  4742. for row in range(total_row):
  4743. if self.ui.geo_tools_table.cellWidget(row, 6).isChecked():
  4744. cb_cnt += 1
  4745. else:
  4746. cb_cnt -= 1
  4747. if cb_cnt < total_row:
  4748. self.ui.plot_cb.setChecked(False)
  4749. else:
  4750. self.ui.plot_cb.setChecked(True)
  4751. self.ui_connect()
  4752. def merge(self, geo_list, geo_final, multigeo=None):
  4753. """
  4754. Merges the geometry of objects in grb_list into
  4755. the geometry of geo_final.
  4756. :param geo_list: List of FlatCAMGerber Objects to join.
  4757. :param geo_final: Destination FlatCAMGerber object.
  4758. :param multigeo: if the merged geometry objects are of type MultiGeo
  4759. :return: None
  4760. """
  4761. if geo_final.solid_geometry is None:
  4762. geo_final.solid_geometry = []
  4763. if type(geo_final.solid_geometry) is not list:
  4764. geo_final.solid_geometry = [geo_final.solid_geometry]
  4765. for geo in geo_list:
  4766. for option in geo.options:
  4767. if option is not 'name':
  4768. try:
  4769. geo_final.options[option] = deepcopy(geo.options[option])
  4770. except Exception as e:
  4771. log.warning("Failed to copy option %s. Error: %s" % (str(option), str(e)))
  4772. # Expand lists
  4773. if type(geo) is list:
  4774. FlatCAMGeometry.merge(self, geo_list=geo, geo_final=geo_final)
  4775. # If not list, just append
  4776. else:
  4777. # merge solid_geometry, useful for singletool geometry, for multitool each is empty
  4778. if multigeo is None or multigeo is False:
  4779. geo_final.multigeo = False
  4780. try:
  4781. geo_final.solid_geometry.append(deepcopy(geo.solid_geometry))
  4782. except Exception as e:
  4783. log.debug("FlatCAMGeometry.merge() --> %s" % str(e))
  4784. else:
  4785. geo_final.multigeo = True
  4786. # if multigeo the solid_geometry is empty in the object attributes because it now lives in the
  4787. # tools object attribute, as a key value
  4788. geo_final.solid_geometry = []
  4789. # find the tool_uid maximum value in the geo_final
  4790. geo_final_uid_list = []
  4791. for key in geo_final.tools:
  4792. geo_final_uid_list.append(int(key))
  4793. try:
  4794. max_uid = max(geo_final_uid_list, key=int)
  4795. except ValueError:
  4796. max_uid = 0
  4797. # add and merge tools. If what we try to merge as Geometry is Excellon's and/or Gerber's then don't try
  4798. # to merge the obj.tools as it is likely there is none to merge.
  4799. if not isinstance(geo, FlatCAMGerber) and not isinstance(geo, FlatCAMExcellon):
  4800. for tool_uid in geo.tools:
  4801. max_uid += 1
  4802. geo_final.tools[max_uid] = deepcopy(geo.tools[tool_uid])
  4803. @staticmethod
  4804. def get_pts(o):
  4805. """
  4806. Returns a list of all points in the object, where
  4807. the object can be a MultiPolygon, Polygon, Not a polygon, or a list
  4808. of such. Search is done recursively.
  4809. :param: geometric object
  4810. :return: List of points
  4811. :rtype: list
  4812. """
  4813. pts = []
  4814. # Iterable: descend into each item.
  4815. try:
  4816. for subo in o:
  4817. pts += FlatCAMGeometry.get_pts(subo)
  4818. # Non-iterable
  4819. except TypeError:
  4820. if o is not None:
  4821. if type(o) == MultiPolygon:
  4822. for poly in o:
  4823. pts += FlatCAMGeometry.get_pts(poly)
  4824. # ## Descend into .exerior and .interiors
  4825. elif type(o) == Polygon:
  4826. pts += FlatCAMGeometry.get_pts(o.exterior)
  4827. for i in o.interiors:
  4828. pts += FlatCAMGeometry.get_pts(i)
  4829. elif type(o) == MultiLineString:
  4830. for line in o:
  4831. pts += FlatCAMGeometry.get_pts(line)
  4832. # ## Has .coords: list them.
  4833. else:
  4834. pts += list(o.coords)
  4835. else:
  4836. return
  4837. return pts
  4838. class FlatCAMCNCjob(FlatCAMObj, CNCjob):
  4839. """
  4840. Represents G-Code.
  4841. """
  4842. optionChanged = QtCore.pyqtSignal(str)
  4843. ui_type = CNCObjectUI
  4844. def __init__(self, name, units="in", kind="generic", z_move=0.1,
  4845. feedrate=3.0, feedrate_rapid=3.0, z_cut=-0.002, tooldia=0.0,
  4846. spindlespeed=None):
  4847. FlatCAMApp.App.log.debug("Creating CNCJob object...")
  4848. self.decimals = 4
  4849. CNCjob.__init__(self, units=units, kind=kind, z_move=z_move,
  4850. feedrate=feedrate, feedrate_rapid=feedrate_rapid, z_cut=z_cut, tooldia=tooldia,
  4851. spindlespeed=spindlespeed, steps_per_circle=int(self.app.defaults["cncjob_steps_per_circle"]))
  4852. FlatCAMObj.__init__(self, name)
  4853. self.kind = "cncjob"
  4854. self.options.update({
  4855. "plot": True,
  4856. "tooldia": 0.03937, # 0.4mm in inches
  4857. "append": "",
  4858. "prepend": "",
  4859. "dwell": False,
  4860. "dwelltime": 1,
  4861. "type": 'Geometry',
  4862. "toolchange_macro": '',
  4863. "toolchange_macro_enable": False
  4864. })
  4865. '''
  4866. This is a dict of dictionaries. Each dict is associated with a tool present in the file. The key is the
  4867. diameter of the tools and the value is another dict that will hold the data under the following form:
  4868. {tooldia: {
  4869. 'tooluid': 1,
  4870. 'offset': 'Path',
  4871. 'type_item': 'Rough',
  4872. 'tool_type': 'C1',
  4873. 'data': {} # a dict to hold the parameters
  4874. 'gcode': "" # a string with the actual GCODE
  4875. 'gcode_parsed': {} # dictionary holding the CNCJob geometry and type of geometry
  4876. (cut or move)
  4877. 'solid_geometry': []
  4878. },
  4879. ...
  4880. }
  4881. It is populated in the FlatCAMGeometry.mtool_gen_cncjob()
  4882. BEWARE: I rely on the ordered nature of the Python 3.7 dictionary. Things might change ...
  4883. '''
  4884. self.cnc_tools = {}
  4885. '''
  4886. This is a dict of dictionaries. Each dict is associated with a tool present in the file. The key is the
  4887. diameter of the tools and the value is another dict that will hold the data under the following form:
  4888. {tooldia: {
  4889. 'tool': int,
  4890. 'nr_drills': int,
  4891. 'nr_slots': int,
  4892. 'offset': float,
  4893. 'data': {} # a dict to hold the parameters
  4894. 'gcode': "" # a string with the actual GCODE
  4895. 'gcode_parsed': {} # dictionary holding the CNCJob geometry and type of geometry (cut or move)
  4896. 'solid_geometry': []
  4897. },
  4898. ...
  4899. }
  4900. It is populated in the FlatCAMExcellon.on_create_cncjob_click() but actually
  4901. it's done in camlib.Excellon.generate_from_excellon_by_tool()
  4902. BEWARE: I rely on the ordered nature of the Python 3.7 dictionary. Things might change ...
  4903. '''
  4904. self.exc_cnc_tools = {}
  4905. # flag to store if the CNCJob is part of a special group of CNCJob objects that can't be processed by the
  4906. # default engine of FlatCAM. They generated by some of tools and are special cases of CNCJob objects.
  4907. self.special_group = None
  4908. # for now it show if the plot will be done for multi-tool CNCJob (True) or for single tool
  4909. # (like the one in the TCL Command), False
  4910. self.multitool = False
  4911. # used for parsing the GCode lines to adjust the GCode when the GCode is offseted or scaled
  4912. gcodex_re_string = r'(?=.*(X[-\+]?\d*\.\d*))'
  4913. self.g_x_re = re.compile(gcodex_re_string)
  4914. gcodey_re_string = r'(?=.*(Y[-\+]?\d*\.\d*))'
  4915. self.g_y_re = re.compile(gcodey_re_string)
  4916. gcodez_re_string = r'(?=.*(Z[-\+]?\d*\.\d*))'
  4917. self.g_z_re = re.compile(gcodez_re_string)
  4918. gcodef_re_string = r'(?=.*(F[-\+]?\d*\.\d*))'
  4919. self.g_f_re = re.compile(gcodef_re_string)
  4920. gcodet_re_string = r'(?=.*(\=\s*[-\+]?\d*\.\d*))'
  4921. self.g_t_re = re.compile(gcodet_re_string)
  4922. gcodenr_re_string = r'([+-]?\d*\.\d+)'
  4923. self.g_nr_re = re.compile(gcodenr_re_string)
  4924. # Attributes to be included in serialization
  4925. # Always append to it because it carries contents
  4926. # from predecessors.
  4927. self.ser_attrs += ['options', 'kind', 'cnc_tools', 'multitool']
  4928. if self.app.is_legacy is False:
  4929. self.text_col = self.app.plotcanvas.new_text_collection()
  4930. self.text_col.enabled = True
  4931. self.annotation = self.app.plotcanvas.new_text_group(collection=self.text_col)
  4932. self.gcode_editor_tab = None
  4933. def build_ui(self):
  4934. self.ui_disconnect()
  4935. FlatCAMObj.build_ui(self)
  4936. # if the FlatCAM object is Excellon don't build the CNC Tools Table but hide it
  4937. if self.cnc_tools:
  4938. self.ui.cnc_tools_table.show()
  4939. else:
  4940. self.ui.cnc_tools_table.hide()
  4941. self.units = self.app.defaults['units'].upper()
  4942. offset = 0
  4943. tool_idx = 0
  4944. n = len(self.cnc_tools)
  4945. self.ui.cnc_tools_table.setRowCount(n)
  4946. for dia_key, dia_value in self.cnc_tools.items():
  4947. tool_idx += 1
  4948. row_no = tool_idx - 1
  4949. id = QtWidgets.QTableWidgetItem('%d' % int(tool_idx))
  4950. # id.setFlags(QtCore.Qt.ItemIsSelectable | QtCore.Qt.ItemIsEnabled)
  4951. self.ui.cnc_tools_table.setItem(row_no, 0, id) # Tool name/id
  4952. # Make sure that the tool diameter when in MM is with no more than 2 decimals.
  4953. # There are no tool bits in MM with more than 2 decimals diameter.
  4954. # For INCH the decimals should be no more than 4. There are no tools under 10mils.
  4955. dia_item = QtWidgets.QTableWidgetItem('%.*f' % (self.decimals, float(dia_value['tooldia'])))
  4956. offset_txt = list(str(dia_value['offset']))
  4957. offset_txt[0] = offset_txt[0].upper()
  4958. offset_item = QtWidgets.QTableWidgetItem(''.join(offset_txt))
  4959. type_item = QtWidgets.QTableWidgetItem(str(dia_value['type']))
  4960. tool_type_item = QtWidgets.QTableWidgetItem(str(dia_value['tool_type']))
  4961. id.setFlags(QtCore.Qt.ItemIsEnabled)
  4962. dia_item.setFlags(QtCore.Qt.ItemIsEnabled)
  4963. offset_item.setFlags(QtCore.Qt.ItemIsEnabled)
  4964. type_item.setFlags(QtCore.Qt.ItemIsEnabled)
  4965. tool_type_item.setFlags(QtCore.Qt.ItemIsEnabled)
  4966. # hack so the checkbox stay centered in the table cell
  4967. # used this:
  4968. # https://stackoverflow.com/questions/32458111/pyqt-allign-checkbox-and-put-it-in-every-row
  4969. # plot_item = QtWidgets.QWidget()
  4970. # checkbox = FCCheckBox()
  4971. # checkbox.setCheckState(QtCore.Qt.Checked)
  4972. # qhboxlayout = QtWidgets.QHBoxLayout(plot_item)
  4973. # qhboxlayout.addWidget(checkbox)
  4974. # qhboxlayout.setAlignment(QtCore.Qt.AlignCenter)
  4975. # qhboxlayout.setContentsMargins(0, 0, 0, 0)
  4976. plot_item = FCCheckBox()
  4977. plot_item.setLayoutDirection(QtCore.Qt.RightToLeft)
  4978. tool_uid_item = QtWidgets.QTableWidgetItem(str(dia_key))
  4979. if self.ui.plot_cb.isChecked():
  4980. plot_item.setChecked(True)
  4981. self.ui.cnc_tools_table.setItem(row_no, 1, dia_item) # Diameter
  4982. self.ui.cnc_tools_table.setItem(row_no, 2, offset_item) # Offset
  4983. self.ui.cnc_tools_table.setItem(row_no, 3, type_item) # Toolpath Type
  4984. self.ui.cnc_tools_table.setItem(row_no, 4, tool_type_item) # Tool Type
  4985. # ## REMEMBER: THIS COLUMN IS HIDDEN IN OBJECTUI.PY # ##
  4986. self.ui.cnc_tools_table.setItem(row_no, 5, tool_uid_item) # Tool unique ID)
  4987. self.ui.cnc_tools_table.setCellWidget(row_no, 6, plot_item)
  4988. # make the diameter column editable
  4989. # for row in range(tool_idx):
  4990. # self.ui.cnc_tools_table.item(row, 1).setFlags(QtCore.Qt.ItemIsSelectable |
  4991. # QtCore.Qt.ItemIsEnabled)
  4992. for row in range(tool_idx):
  4993. self.ui.cnc_tools_table.item(row, 0).setFlags(
  4994. self.ui.cnc_tools_table.item(row, 0).flags() ^ QtCore.Qt.ItemIsSelectable)
  4995. self.ui.cnc_tools_table.resizeColumnsToContents()
  4996. self.ui.cnc_tools_table.resizeRowsToContents()
  4997. vertical_header = self.ui.cnc_tools_table.verticalHeader()
  4998. # vertical_header.setSectionResizeMode(QtWidgets.QHeaderView.ResizeToContents)
  4999. vertical_header.hide()
  5000. self.ui.cnc_tools_table.setVerticalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  5001. horizontal_header = self.ui.cnc_tools_table.horizontalHeader()
  5002. horizontal_header.setMinimumSectionSize(10)
  5003. horizontal_header.setDefaultSectionSize(70)
  5004. horizontal_header.setSectionResizeMode(0, QtWidgets.QHeaderView.Fixed)
  5005. horizontal_header.resizeSection(0, 20)
  5006. horizontal_header.setSectionResizeMode(1, QtWidgets.QHeaderView.Stretch)
  5007. horizontal_header.setSectionResizeMode(3, QtWidgets.QHeaderView.ResizeToContents)
  5008. horizontal_header.setSectionResizeMode(4, QtWidgets.QHeaderView.Fixed)
  5009. horizontal_header.resizeSection(4, 40)
  5010. horizontal_header.setSectionResizeMode(6, QtWidgets.QHeaderView.Fixed)
  5011. horizontal_header.resizeSection(4, 17)
  5012. # horizontal_header.setStretchLastSection(True)
  5013. self.ui.cnc_tools_table.setHorizontalScrollBarPolicy(QtCore.Qt.ScrollBarAlwaysOff)
  5014. self.ui.cnc_tools_table.setColumnWidth(0, 20)
  5015. self.ui.cnc_tools_table.setColumnWidth(4, 40)
  5016. self.ui.cnc_tools_table.setColumnWidth(6, 17)
  5017. # self.ui.geo_tools_table.setSortingEnabled(True)
  5018. self.ui.cnc_tools_table.setMinimumHeight(self.ui.cnc_tools_table.getHeight())
  5019. self.ui.cnc_tools_table.setMaximumHeight(self.ui.cnc_tools_table.getHeight())
  5020. self.ui_connect()
  5021. def set_ui(self, ui):
  5022. FlatCAMObj.set_ui(self, ui)
  5023. FlatCAMApp.App.log.debug("FlatCAMCNCJob.set_ui()")
  5024. assert isinstance(self.ui, CNCObjectUI), \
  5025. "Expected a CNCObjectUI, got %s" % type(self.ui)
  5026. self.units = self.app.defaults['units'].upper()
  5027. if self.units == "IN":
  5028. self.decimals = 4
  5029. else:
  5030. self.decimals = 2
  5031. # this signal has to be connected to it's slot before the defaults are populated
  5032. # the decision done in the slot has to override the default value set bellow
  5033. self.ui.toolchange_cb.toggled.connect(self.on_toolchange_custom_clicked)
  5034. self.form_fields.update({
  5035. "plot": self.ui.plot_cb,
  5036. "tooldia": self.ui.tooldia_entry,
  5037. "append": self.ui.append_text,
  5038. "prepend": self.ui.prepend_text,
  5039. "toolchange_macro": self.ui.toolchange_text,
  5040. "toolchange_macro_enable": self.ui.toolchange_cb
  5041. })
  5042. # Fill form fields only on object create
  5043. self.to_form()
  5044. # this means that the object that created this CNCJob was an Excellon or Geometry
  5045. try:
  5046. if self.travel_distance:
  5047. self.ui.t_distance_label.show()
  5048. self.ui.t_distance_entry.setVisible(True)
  5049. self.ui.t_distance_entry.setDisabled(True)
  5050. self.ui.t_distance_entry.set_value('%.*f' % (self.decimals, float(self.travel_distance)))
  5051. self.ui.units_label.setText(str(self.units).lower())
  5052. self.ui.units_label.setDisabled(True)
  5053. self.ui.t_time_label.show()
  5054. self.ui.t_time_entry.setVisible(True)
  5055. self.ui.t_time_entry.setDisabled(True)
  5056. # if time is more than 1 then we have minutes, else we have seconds
  5057. if self.routing_time > 1:
  5058. self.ui.t_time_entry.set_value('%.*f' % (self.decimals, math.ceil(float(self.routing_time))))
  5059. self.ui.units_time_label.setText('min')
  5060. else:
  5061. time_r = self.routing_time * 60
  5062. self.ui.t_time_entry.set_value('%.*f' % (self.decimals, math.ceil(float(time_r))))
  5063. self.ui.units_time_label.setText('sec')
  5064. self.ui.units_time_label.setDisabled(True)
  5065. except AttributeError:
  5066. pass
  5067. if self.multitool is False:
  5068. self.ui.tooldia_entry.show()
  5069. self.ui.updateplot_button.show()
  5070. else:
  5071. self.ui.tooldia_entry.hide()
  5072. self.ui.updateplot_button.hide()
  5073. # set the kind of geometries are plotted by default with plot2() from camlib.CNCJob
  5074. self.ui.cncplot_method_combo.set_value(self.app.defaults["cncjob_plot_kind"])
  5075. try:
  5076. self.ui.annotation_cb.stateChanged.disconnect(self.on_annotation_change)
  5077. except (TypeError, AttributeError):
  5078. pass
  5079. self.ui.annotation_cb.stateChanged.connect(self.on_annotation_change)
  5080. # set if to display text annotations
  5081. self.ui.annotation_cb.set_value(self.app.defaults["cncjob_annotation"])
  5082. # Show/Hide Advanced Options
  5083. if self.app.defaults["global_app_level"] == 'b':
  5084. self.ui.level.setText(_(
  5085. '<span style="color:green;"><b>Basic</b></span>'
  5086. ))
  5087. self.ui.cnc_frame.hide()
  5088. else:
  5089. self.ui.level.setText(_(
  5090. '<span style="color:red;"><b>Advanced</b></span>'
  5091. ))
  5092. self.ui.cnc_frame.show()
  5093. self.ui.updateplot_button.clicked.connect(self.on_updateplot_button_click)
  5094. self.ui.export_gcode_button.clicked.connect(self.on_exportgcode_button_click)
  5095. self.ui.modify_gcode_button.clicked.connect(self.on_edit_code_click)
  5096. self.ui.tc_variable_combo.currentIndexChanged[str].connect(self.on_cnc_custom_parameters)
  5097. self.ui.cncplot_method_combo.activated_custom.connect(self.on_plot_kind_change)
  5098. def on_cnc_custom_parameters(self, signal_text):
  5099. if signal_text == 'Parameters':
  5100. return
  5101. else:
  5102. self.ui.toolchange_text.insertPlainText('%%%s%%' % signal_text)
  5103. def ui_connect(self):
  5104. for row in range(self.ui.cnc_tools_table.rowCount()):
  5105. self.ui.cnc_tools_table.cellWidget(row, 6).clicked.connect(self.on_plot_cb_click_table)
  5106. self.ui.plot_cb.stateChanged.connect(self.on_plot_cb_click)
  5107. def ui_disconnect(self):
  5108. for row in range(self.ui.cnc_tools_table.rowCount()):
  5109. self.ui.cnc_tools_table.cellWidget(row, 6).clicked.disconnect(self.on_plot_cb_click_table)
  5110. try:
  5111. self.ui.plot_cb.stateChanged.disconnect(self.on_plot_cb_click)
  5112. except (TypeError, AttributeError):
  5113. pass
  5114. def on_updateplot_button_click(self, *args):
  5115. """
  5116. Callback for the "Updata Plot" button. Reads the form for updates
  5117. and plots the object.
  5118. """
  5119. self.read_form()
  5120. self.on_plot_kind_change()
  5121. def on_plot_kind_change(self):
  5122. kind = self.ui.cncplot_method_combo.get_value()
  5123. def worker_task():
  5124. with self.app.proc_container.new(_("Plotting...")):
  5125. self.plot(kind=kind)
  5126. self.app.worker_task.emit({'fcn': worker_task, 'params': []})
  5127. def on_exportgcode_button_click(self, *args):
  5128. self.app.report_usage("cncjob_on_exportgcode_button")
  5129. self.read_form()
  5130. name = self.app.collection.get_active().options['name']
  5131. save_gcode = False
  5132. if 'Roland' in self.pp_excellon_name or 'Roland' in self.pp_geometry_name:
  5133. _filter_ = "RML1 Files (*.rol);;All Files (*.*)"
  5134. elif 'hpgl' in self.pp_geometry_name:
  5135. _filter_ = "HPGL Files (*.plt);;All Files (*.*)"
  5136. else:
  5137. save_gcode = True
  5138. _filter_ = self.app.defaults['cncjob_save_filters']
  5139. try:
  5140. dir_file_to_save = self.app.get_last_save_folder() + '/' + str(name)
  5141. filename, _f = QtWidgets.QFileDialog.getSaveFileName(
  5142. caption=_("Export Machine Code ..."),
  5143. directory=dir_file_to_save,
  5144. filter=_filter_
  5145. )
  5146. except TypeError:
  5147. filename, _f = QtWidgets.QFileDialog.getSaveFileName(caption=_("Export Machine Code ..."), filter=_filter_)
  5148. filename = str(filename)
  5149. if filename == '':
  5150. self.app.inform.emit('[WARNING_NOTCL] %s' % _("Export Machine Code cancelled ..."))
  5151. return
  5152. else:
  5153. if save_gcode is True:
  5154. used_extension = filename.rpartition('.')[2]
  5155. self.update_filters(last_ext=used_extension, filter_string='cncjob_save_filters')
  5156. new_name = os.path.split(str(filename))[1].rpartition('.')[0]
  5157. self.ui.name_entry.set_value(new_name)
  5158. self.on_name_activate(silent=True)
  5159. preamble = str(self.ui.prepend_text.get_value())
  5160. postamble = str(self.ui.append_text.get_value())
  5161. gc = self.export_gcode(filename, preamble=preamble, postamble=postamble)
  5162. if gc == 'fail':
  5163. return
  5164. if self.app.defaults["global_open_style"] is False:
  5165. self.app.file_opened.emit("gcode", filename)
  5166. self.app.file_saved.emit("gcode", filename)
  5167. self.app.inform.emit('[success] %s: %s' %
  5168. (_("Machine Code file saved to"), filename))
  5169. def on_edit_code_click(self, *args):
  5170. self.app.proc_container.view.set_busy(_("Loading..."))
  5171. preamble = str(self.ui.prepend_text.get_value())
  5172. postamble = str(self.ui.append_text.get_value())
  5173. gco = self.export_gcode(preamble=preamble, postamble=postamble, to_file=True)
  5174. if gco == 'fail':
  5175. return
  5176. else:
  5177. self.app.gcode_edited = gco
  5178. self.gcode_editor_tab = TextEditor(app=self.app, plain_text=True)
  5179. # add the tab if it was closed
  5180. self.app.ui.plot_tab_area.addTab(self.gcode_editor_tab, '%s' % _("Code Editor"))
  5181. self.gcode_editor_tab.setObjectName('code_editor_tab')
  5182. # delete the absolute and relative position and messages in the infobar
  5183. self.app.ui.position_label.setText("")
  5184. self.app.ui.rel_position_label.setText("")
  5185. # first clear previous text in text editor (if any)
  5186. self.gcode_editor_tab.code_editor.clear()
  5187. self.gcode_editor_tab.code_editor.setReadOnly(False)
  5188. self.gcode_editor_tab.code_editor.completer_enable = False
  5189. self.gcode_editor_tab.buttonRun.hide()
  5190. # Switch plot_area to CNCJob tab
  5191. self.app.ui.plot_tab_area.setCurrentWidget(self.gcode_editor_tab)
  5192. self.gcode_editor_tab.t_frame.hide()
  5193. # then append the text from GCode to the text editor
  5194. try:
  5195. self.gcode_editor_tab.code_editor.setPlainText(self.app.gcode_edited.getvalue())
  5196. # for line in self.app.gcode_edited:
  5197. # QtWidgets.QApplication.processEvents()
  5198. #
  5199. # proc_line = str(line).strip('\n')
  5200. # self.gcode_editor_tab.code_editor.append(proc_line)
  5201. except Exception as e:
  5202. log.debug('FlatCAMCNNJob.on_edit_code_click() -->%s' % str(e))
  5203. self.app.inform.emit('[ERROR] %s %s' % ('FlatCAMCNNJob.on_edit_code_click() -->', str(e)))
  5204. return
  5205. self.gcode_editor_tab.code_editor.moveCursor(QtGui.QTextCursor.Start)
  5206. self.gcode_editor_tab.handleTextChanged()
  5207. self.gcode_editor_tab.t_frame.show()
  5208. self.app.proc_container.view.set_idle()
  5209. self.app.inform.emit('[success] %s...' % _('Loaded Machine Code into Code Editor'))
  5210. def gcode_header(self, comment_start_symbol=None, comment_stop_symbol=None):
  5211. """
  5212. Will create a header to be added to all GCode files generated by FlatCAM
  5213. :param comment_start_symbol: a symbol to be used as the first symbol in a comment
  5214. :param comment_stop_symbol: a symbol to be used as the last symbol in a comment
  5215. :return: a string with a GCode header
  5216. """
  5217. log.debug("FlatCAMCNCJob.gcode_header()")
  5218. time_str = "{:%A, %d %B %Y at %H:%M}".format(datetime.now())
  5219. marlin = False
  5220. hpgl = False
  5221. probe_pp = False
  5222. start_comment = comment_start_symbol if comment_start_symbol is not None else '('
  5223. stop_comment = comment_stop_symbol if comment_stop_symbol is not None else ')'
  5224. try:
  5225. for key in self.cnc_tools:
  5226. ppg = self.cnc_tools[key]['data']['ppname_g']
  5227. if ppg == 'marlin' or ppg == 'Repetier':
  5228. marlin = True
  5229. break
  5230. if ppg == 'hpgl':
  5231. hpgl = True
  5232. break
  5233. if "toolchange_probe" in ppg.lower():
  5234. probe_pp = True
  5235. break
  5236. except KeyError:
  5237. # log.debug("FlatCAMCNCJob.gcode_header() error: --> %s" % str(e))
  5238. pass
  5239. try:
  5240. if self.options['ppname_e'] == 'marlin' or self.options['ppname_e'] == 'Repetier':
  5241. marlin = True
  5242. except KeyError:
  5243. # log.debug("FlatCAMCNCJob.gcode_header(): --> There is no such self.option: %s" % str(e))
  5244. pass
  5245. try:
  5246. if "toolchange_probe" in self.options['ppname_e'].lower():
  5247. probe_pp = True
  5248. except KeyError:
  5249. # log.debug("FlatCAMCNCJob.gcode_header(): --> There is no such self.option: %s" % str(e))
  5250. pass
  5251. if marlin is True:
  5252. gcode = ';Marlin(Repetier) G-CODE GENERATED BY FLATCAM v%s - www.flatcam.org - Version Date: %s\n' % \
  5253. (str(self.app.version), str(self.app.version_date)) + '\n'
  5254. gcode += ';Name: ' + str(self.options['name']) + '\n'
  5255. gcode += ';Type: ' + "G-code from " + str(self.options['type']) + '\n'
  5256. # if str(p['options']['type']) == 'Excellon' or str(p['options']['type']) == 'Excellon Geometry':
  5257. # gcode += '(Tools in use: ' + str(p['options']['Tools_in_use']) + ')\n'
  5258. gcode += ';Units: ' + self.units.upper() + '\n' + "\n"
  5259. gcode += ';Created on ' + time_str + '\n' + '\n'
  5260. elif hpgl is True:
  5261. gcode = 'CO "HPGL CODE GENERATED BY FLATCAM v%s - www.flatcam.org - Version Date: %s' % \
  5262. (str(self.app.version), str(self.app.version_date)) + '";\n'
  5263. gcode += 'CO "Name: ' + str(self.options['name']) + '";\n'
  5264. gcode += 'CO "Type: ' + "HPGL code from " + str(self.options['type']) + '";\n'
  5265. # if str(p['options']['type']) == 'Excellon' or str(p['options']['type']) == 'Excellon Geometry':
  5266. # gcode += '(Tools in use: ' + str(p['options']['Tools_in_use']) + ')\n'
  5267. gcode += 'CO "Units: ' + self.units.upper() + '";\n'
  5268. gcode += 'CO "Created on ' + time_str + '";\n'
  5269. elif probe_pp is True:
  5270. gcode = '(G-CODE GENERATED BY FLATCAM v%s - www.flatcam.org - Version Date: %s)\n' % \
  5271. (str(self.app.version), str(self.app.version_date)) + '\n'
  5272. gcode += '(This GCode tool change is done by using a Probe.)\n' \
  5273. '(Make sure that before you start the job you first do a rough zero for Z axis.)\n' \
  5274. '(This means that you need to zero the CNC axis and then jog to the toolchange X, Y location,)\n' \
  5275. '(mount the probe and adjust the Z so more or less the probe tip touch the plate. ' \
  5276. 'Then zero the Z axis.)\n' + '\n'
  5277. gcode += '(Name: ' + str(self.options['name']) + ')\n'
  5278. gcode += '(Type: ' + "G-code from " + str(self.options['type']) + ')\n'
  5279. # if str(p['options']['type']) == 'Excellon' or str(p['options']['type']) == 'Excellon Geometry':
  5280. # gcode += '(Tools in use: ' + str(p['options']['Tools_in_use']) + ')\n'
  5281. gcode += '(Units: ' + self.units.upper() + ')\n' + "\n"
  5282. gcode += '(Created on ' + time_str + ')\n' + '\n'
  5283. else:
  5284. gcode = '%sG-CODE GENERATED BY FLATCAM v%s - www.flatcam.org - Version Date: %s%s\n' % \
  5285. (start_comment, str(self.app.version), str(self.app.version_date), stop_comment) + '\n'
  5286. gcode += '%sName: ' % start_comment + str(self.options['name']) + '%s\n' % stop_comment
  5287. gcode += '%sType: ' % start_comment + "G-code from " + str(self.options['type']) + '%s\n' % stop_comment
  5288. # if str(p['options']['type']) == 'Excellon' or str(p['options']['type']) == 'Excellon Geometry':
  5289. # gcode += '(Tools in use: ' + str(p['options']['Tools_in_use']) + ')\n'
  5290. gcode += '%sUnits: ' % start_comment + self.units.upper() + '%s\n' % stop_comment + "\n"
  5291. gcode += '%sCreated on ' % start_comment + time_str + '%s\n' % stop_comment + '\n'
  5292. return gcode
  5293. def gcode_footer(self, end_command=None):
  5294. """
  5295. :param end_command: 'M02' or 'M30' - String
  5296. :return:
  5297. """
  5298. if end_command:
  5299. return end_command
  5300. else:
  5301. return 'M02'
  5302. def export_gcode(self, filename=None, preamble='', postamble='', to_file=False):
  5303. """
  5304. This will save the GCode from the Gcode object to a file on the OS filesystem
  5305. :param filename: filename for the GCode file
  5306. :param preamble: a custom Gcode block to be added at the beginning of the Gcode file
  5307. :param postamble: a custom Gcode block to be added at the end of the Gcode file
  5308. :param to_file: if False then no actual file is saved but the app will know that a file was created
  5309. :return: None
  5310. """
  5311. gcode = ''
  5312. roland = False
  5313. hpgl = False
  5314. try:
  5315. if self.special_group:
  5316. self.app.inform.emit('[WARNING_NOTCL] %s %s %s.' %
  5317. (_("This CNCJob object can't be processed because it is a"),
  5318. str(self.special_group),
  5319. _("CNCJob object")))
  5320. return 'fail'
  5321. except AttributeError:
  5322. pass
  5323. # detect if using Roland postprocessor
  5324. try:
  5325. for key in self.cnc_tools:
  5326. if self.cnc_tools[key]['data']['ppname_g'] == 'Roland_MDX_20':
  5327. roland = True
  5328. break
  5329. if self.cnc_tools[key]['data']['ppname_g'] == 'hpgl':
  5330. hpgl = True
  5331. break
  5332. except Exception as e:
  5333. try:
  5334. for key in self.cnc_tools:
  5335. if self.cnc_tools[key]['data']['ppname_e'] == 'Roland_MDX_20':
  5336. roland = True
  5337. break
  5338. except Exception as e:
  5339. pass
  5340. # do not add gcode_header when using the Roland postprocessor, add it for every other postprocessor
  5341. if roland is False and hpgl is False:
  5342. gcode = self.gcode_header()
  5343. # detect if using multi-tool and make the Gcode summation correctly for each case
  5344. if self.multitool is True:
  5345. for tooluid_key in self.cnc_tools:
  5346. for key, value in self.cnc_tools[tooluid_key].items():
  5347. if key == 'gcode':
  5348. gcode += value
  5349. break
  5350. else:
  5351. gcode += self.gcode
  5352. if roland is True:
  5353. g = preamble + gcode + postamble
  5354. elif hpgl is True:
  5355. g = self.gcode_header() + preamble + gcode + postamble
  5356. else:
  5357. # fix so the preamble gets inserted in between the comments header and the actual start of GCODE
  5358. g_idx = gcode.rfind('G20')
  5359. # if it did not find 'G20' then search for 'G21'
  5360. if g_idx == -1:
  5361. g_idx = gcode.rfind('G21')
  5362. # if it did not find 'G20' and it did not find 'G21' then there is an error and return
  5363. if g_idx == -1:
  5364. self.app.inform.emit('[ERROR_NOTCL] %s' % _("G-code does not have a units code: either G20 or G21"))
  5365. return
  5366. footer = self.app.defaults['cncjob_footer']
  5367. end_gcode = self.gcode_footer() if footer is True else ''
  5368. g = gcode[:g_idx] + preamble + '\n' + gcode[g_idx:] + postamble + end_gcode
  5369. # if toolchange custom is used, replace M6 code with the code from the Toolchange Custom Text box
  5370. if self.ui.toolchange_cb.get_value() is True:
  5371. # match = self.re_toolchange.search(g)
  5372. if 'M6' in g:
  5373. m6_code = self.parse_custom_toolchange_code(self.ui.toolchange_text.get_value())
  5374. if m6_code is None or m6_code == '':
  5375. self.app.inform.emit(
  5376. '[ERROR_NOTCL] %s' % _("Cancelled. The Toolchange Custom code is enabled but it's empty.")
  5377. )
  5378. return 'fail'
  5379. g = g.replace('M6', m6_code)
  5380. self.app.inform.emit('[success] %s' % _("Toolchange G-code was replaced by a custom code."))
  5381. lines = StringIO(g)
  5382. # Write
  5383. if filename is not None:
  5384. try:
  5385. force_windows_line_endings = self.app.defaults['cncjob_line_ending']
  5386. if force_windows_line_endings and sys.platform != 'win32':
  5387. with open(filename, 'w', newline='\r\n') as f:
  5388. for line in lines:
  5389. f.write(line)
  5390. else:
  5391. with open(filename, 'w') as f:
  5392. for line in lines:
  5393. f.write(line)
  5394. except FileNotFoundError:
  5395. self.app.inform.emit('[WARNING_NOTCL] %s' % _("No such file or directory"))
  5396. return
  5397. except PermissionError:
  5398. self.app.inform.emit(
  5399. '[WARNING] %s' % _("Permission denied, saving not possible.\n"
  5400. "Most likely another app is holding the file open and not accessible.")
  5401. )
  5402. return 'fail'
  5403. elif to_file is False:
  5404. # Just for adding it to the recent files list.
  5405. if self.app.defaults["global_open_style"] is False:
  5406. self.app.file_opened.emit("cncjob", filename)
  5407. self.app.file_saved.emit("cncjob", filename)
  5408. self.app.inform.emit('[success] %s: %s' % (_("Saved to"), filename))
  5409. else:
  5410. return lines
  5411. def on_toolchange_custom_clicked(self, signal):
  5412. try:
  5413. if 'toolchange_custom' not in str(self.options['ppname_e']).lower():
  5414. if self.ui.toolchange_cb.get_value():
  5415. self.ui.toolchange_cb.set_value(False)
  5416. self.app.inform.emit('[WARNING_NOTCL] %s' %
  5417. _("The used postprocessor file has to have in it's name: 'toolchange_custom'"))
  5418. except KeyError:
  5419. try:
  5420. for key in self.cnc_tools:
  5421. ppg = self.cnc_tools[key]['data']['ppname_g']
  5422. if 'toolchange_custom' not in str(ppg).lower():
  5423. print(ppg)
  5424. if self.ui.toolchange_cb.get_value():
  5425. self.ui.toolchange_cb.set_value(False)
  5426. self.app.inform.emit('[WARNING_NOTCL] %s' %
  5427. _("The used postprocessor file has to have in it's name: "
  5428. "'toolchange_custom'"))
  5429. except KeyError:
  5430. self.app.inform.emit('[ERROR] %s' %
  5431. _("There is no postprocessor file."))
  5432. def get_gcode(self, preamble='', postamble=''):
  5433. # we need this to be able get_gcode separatelly for shell command export_gcode
  5434. return preamble + '\n' + self.gcode + "\n" + postamble
  5435. def get_svg(self):
  5436. # we need this to be able get_svg separately for shell command export_svg
  5437. pass
  5438. def on_plot_cb_click(self, *args):
  5439. if self.muted_ui:
  5440. return
  5441. kind = self.ui.cncplot_method_combo.get_value()
  5442. self.plot(kind=kind)
  5443. self.read_form_item('plot')
  5444. self.ui_disconnect()
  5445. cb_flag = self.ui.plot_cb.isChecked()
  5446. for row in range(self.ui.cnc_tools_table.rowCount()):
  5447. table_cb = self.ui.cnc_tools_table.cellWidget(row, 6)
  5448. if cb_flag:
  5449. table_cb.setChecked(True)
  5450. else:
  5451. table_cb.setChecked(False)
  5452. self.ui_connect()
  5453. def on_plot_cb_click_table(self):
  5454. # self.ui.cnc_tools_table.cellWidget(row, 2).widget().setCheckState(QtCore.Qt.Unchecked)
  5455. self.ui_disconnect()
  5456. # cw = self.sender()
  5457. # cw_index = self.ui.cnc_tools_table.indexAt(cw.pos())
  5458. # cw_row = cw_index.row()
  5459. kind = self.ui.cncplot_method_combo.get_value()
  5460. self.shapes.clear(update=True)
  5461. for tooluid_key in self.cnc_tools:
  5462. tooldia = float('%.*f' % (self.decimals, float(self.cnc_tools[tooluid_key]['tooldia'])))
  5463. gcode_parsed = self.cnc_tools[tooluid_key]['gcode_parsed']
  5464. # tool_uid = int(self.ui.cnc_tools_table.item(cw_row, 3).text())
  5465. for r in range(self.ui.cnc_tools_table.rowCount()):
  5466. if int(self.ui.cnc_tools_table.item(r, 5).text()) == int(tooluid_key):
  5467. if self.ui.cnc_tools_table.cellWidget(r, 6).isChecked():
  5468. self.plot2(tooldia=tooldia, obj=self, visible=True, gcode_parsed=gcode_parsed, kind=kind)
  5469. self.shapes.redraw()
  5470. # make sure that the general plot is disabled if one of the row plot's are disabled and
  5471. # if all the row plot's are enabled also enable the general plot checkbox
  5472. cb_cnt = 0
  5473. total_row = self.ui.cnc_tools_table.rowCount()
  5474. for row in range(total_row):
  5475. if self.ui.cnc_tools_table.cellWidget(row, 6).isChecked():
  5476. cb_cnt += 1
  5477. else:
  5478. cb_cnt -= 1
  5479. if cb_cnt < total_row:
  5480. self.ui.plot_cb.setChecked(False)
  5481. else:
  5482. self.ui.plot_cb.setChecked(True)
  5483. self.ui_connect()
  5484. def plot(self, visible=None, kind='all'):
  5485. # Does all the required setup and returns False
  5486. # if the 'ptint' option is set to False.
  5487. if not FlatCAMObj.plot(self):
  5488. return
  5489. visible = visible if visible else self.options['plot']
  5490. if self.app.is_legacy is False:
  5491. if self.ui.annotation_cb.get_value() and self.ui.plot_cb.get_value():
  5492. self.text_col.enabled = True
  5493. else:
  5494. self.text_col.enabled = False
  5495. self.annotation.redraw()
  5496. try:
  5497. if self.multitool is False: # single tool usage
  5498. try:
  5499. dia_plot = float(self.options["tooldia"])
  5500. except ValueError:
  5501. # we may have a tuple with only one element and a comma
  5502. dia_plot = [float(el) for el in self.options["tooldia"].split(',') if el != ''][0]
  5503. self.plot2(dia_plot, obj=self, visible=visible, kind=kind)
  5504. else:
  5505. # multiple tools usage
  5506. for tooluid_key in self.cnc_tools:
  5507. tooldia = float('%.*f' % (self.decimals, float(self.cnc_tools[tooluid_key]['tooldia'])))
  5508. gcode_parsed = self.cnc_tools[tooluid_key]['gcode_parsed']
  5509. self.plot2(tooldia=tooldia, obj=self, visible=visible, gcode_parsed=gcode_parsed, kind=kind)
  5510. self.shapes.redraw()
  5511. except (ObjectDeleted, AttributeError):
  5512. self.shapes.clear(update=True)
  5513. if self.app.is_legacy is False:
  5514. self.annotation.clear(update=True)
  5515. def on_annotation_change(self):
  5516. if self.app.is_legacy is False:
  5517. if self.ui.annotation_cb.get_value():
  5518. self.text_col.enabled = True
  5519. else:
  5520. self.text_col.enabled = False
  5521. # kind = self.ui.cncplot_method_combo.get_value()
  5522. # self.plot(kind=kind)
  5523. self.annotation.redraw()
  5524. else:
  5525. kind = self.ui.cncplot_method_combo.get_value()
  5526. self.plot(kind=kind)
  5527. def convert_units(self, units):
  5528. log.debug("FlatCAMObj.FlatCAMECNCjob.convert_units()")
  5529. factor = CNCjob.convert_units(self, units)
  5530. self.options["tooldia"] = float(self.options["tooldia"]) * factor
  5531. param_list = ['cutz', 'depthperpass', 'travelz', 'feedrate', 'feedrate_z', 'feedrate_rapid',
  5532. 'endz', 'toolchangez']
  5533. temp_tools_dict = {}
  5534. tool_dia_copy = {}
  5535. data_copy = {}
  5536. for tooluid_key, tooluid_value in self.cnc_tools.items():
  5537. for dia_key, dia_value in tooluid_value.items():
  5538. if dia_key == 'tooldia':
  5539. dia_value *= factor
  5540. dia_value = float('%.*f' % (self.decimals, dia_value))
  5541. tool_dia_copy[dia_key] = dia_value
  5542. if dia_key == 'offset':
  5543. tool_dia_copy[dia_key] = dia_value
  5544. if dia_key == 'offset_value':
  5545. dia_value *= factor
  5546. tool_dia_copy[dia_key] = dia_value
  5547. if dia_key == 'type':
  5548. tool_dia_copy[dia_key] = dia_value
  5549. if dia_key == 'tool_type':
  5550. tool_dia_copy[dia_key] = dia_value
  5551. if dia_key == 'data':
  5552. for data_key, data_value in dia_value.items():
  5553. # convert the form fields that are convertible
  5554. for param in param_list:
  5555. if data_key == param and data_value is not None:
  5556. data_copy[data_key] = data_value * factor
  5557. # copy the other dict entries that are not convertible
  5558. if data_key not in param_list:
  5559. data_copy[data_key] = data_value
  5560. tool_dia_copy[dia_key] = deepcopy(data_copy)
  5561. data_copy.clear()
  5562. if dia_key == 'gcode':
  5563. tool_dia_copy[dia_key] = dia_value
  5564. if dia_key == 'gcode_parsed':
  5565. tool_dia_copy[dia_key] = dia_value
  5566. if dia_key == 'solid_geometry':
  5567. tool_dia_copy[dia_key] = dia_value
  5568. # if dia_key == 'solid_geometry':
  5569. # tool_dia_copy[dia_key] = affinity.scale(dia_value, xfact=factor, origin=(0, 0))
  5570. # if dia_key == 'gcode_parsed':
  5571. # for g in dia_value:
  5572. # g['geom'] = affinity.scale(g['geom'], factor, factor, origin=(0, 0))
  5573. #
  5574. # tool_dia_copy['gcode_parsed'] = deepcopy(dia_value)
  5575. # tool_dia_copy['solid_geometry'] = cascaded_union([geo['geom'] for geo in dia_value])
  5576. temp_tools_dict.update({
  5577. tooluid_key: deepcopy(tool_dia_copy)
  5578. })
  5579. tool_dia_copy.clear()
  5580. self.cnc_tools.clear()
  5581. self.cnc_tools = deepcopy(temp_tools_dict)
  5582. class FlatCAMScript(FlatCAMObj):
  5583. """
  5584. Represents a TCL script object.
  5585. """
  5586. optionChanged = QtCore.pyqtSignal(str)
  5587. ui_type = ScriptObjectUI
  5588. def __init__(self, name):
  5589. FlatCAMApp.App.log.debug("Creating a FlatCAMScript object...")
  5590. FlatCAMObj.__init__(self, name)
  5591. self.kind = "script"
  5592. self.options.update({
  5593. "plot": True,
  5594. "type": 'Script',
  5595. "source_file": '',
  5596. })
  5597. self.units = ''
  5598. self.decimals = 4
  5599. self.ser_attrs = ['options', 'kind', 'source_file']
  5600. self.source_file = ''
  5601. self.script_code = ''
  5602. # self.script_editor_tab = TextEditor(app=self.app, plain_text=True)
  5603. self.script_editor_tab = TextEditor(app=self.app, plain_text=True)
  5604. def set_ui(self, ui):
  5605. FlatCAMObj.set_ui(self, ui)
  5606. FlatCAMApp.App.log.debug("FlatCAMScript.set_ui()")
  5607. assert isinstance(self.ui, ScriptObjectUI), \
  5608. "Expected a ScriptObjectUI, got %s" % type(self.ui)
  5609. self.units = self.app.defaults['units'].upper()
  5610. self.decimals = 4 if self.units == "IN" else 2
  5611. # Fill form fields only on object create
  5612. self.to_form()
  5613. # Show/Hide Advanced Options
  5614. if self.app.defaults["global_app_level"] == 'b':
  5615. self.ui.level.setText(_(
  5616. '<span style="color:green;"><b>Basic</b></span>'
  5617. ))
  5618. else:
  5619. self.ui.level.setText(_(
  5620. '<span style="color:red;"><b>Advanced</b></span>'
  5621. ))
  5622. # tab_here = False
  5623. # # try to not add too many times a tab that it is already installed
  5624. # for idx in range(self.app.ui.plot_tab_area.count()):
  5625. # if self.app.ui.plot_tab_area.widget(idx).objectName() == self.options['name']:
  5626. # tab_here = True
  5627. # break
  5628. #
  5629. # # add the tab if it is not already added
  5630. # if tab_here is False:
  5631. # self.app.ui.plot_tab_area.addTab(self.script_editor_tab, '%s' % _("Script Editor"))
  5632. # self.script_editor_tab.setObjectName(self.options['name'])
  5633. self.app.ui.plot_tab_area.addTab(self.script_editor_tab, '%s' % _("Script Editor"))
  5634. self.script_editor_tab.setObjectName(self.options['name'])
  5635. # first clear previous text in text editor (if any)
  5636. # self.script_editor_tab.code_editor.clear()
  5637. # self.script_editor_tab.code_editor.setReadOnly(False)
  5638. self.ui.autocomplete_cb.set_value(self.app.defaults['script_autocompleter'])
  5639. self.on_autocomplete_changed(state=self.app.defaults['script_autocompleter'])
  5640. self.script_editor_tab.buttonRun.show()
  5641. # Switch plot_area to CNCJob tab
  5642. self.app.ui.plot_tab_area.setCurrentWidget(self.script_editor_tab)
  5643. flt = "FlatCAM Scripts (*.FlatScript);;All Files (*.*)"
  5644. self.script_editor_tab.buttonOpen.clicked.disconnect()
  5645. self.script_editor_tab.buttonOpen.clicked.connect(lambda: self.script_editor_tab.handleOpen(filt=flt))
  5646. self.script_editor_tab.buttonSave.clicked.disconnect()
  5647. self.script_editor_tab.buttonSave.clicked.connect(lambda: self.script_editor_tab.handleSaveGCode(filt=flt))
  5648. self.script_editor_tab.buttonRun.clicked.connect(self.handle_run_code)
  5649. self.script_editor_tab.handleTextChanged()
  5650. self.ui.autocomplete_cb.stateChanged.connect(self.on_autocomplete_changed)
  5651. self.ser_attrs = ['options', 'kind', 'source_file']
  5652. # ---------------------------------------------------- #
  5653. # ----------- LOAD THE TEXT SOURCE FILE -------------- #
  5654. # ---------------------------------------------------- #
  5655. self.app.proc_container.view.set_busy(_("Loading..."))
  5656. self.script_editor_tab.t_frame.hide()
  5657. try:
  5658. self.script_editor_tab.code_editor.setPlainText(self.source_file)
  5659. # for line in self.source_file.splitlines():
  5660. # QtWidgets.QApplication.processEvents()
  5661. # self.script_editor_tab.code_editor.append(line)
  5662. except Exception as e:
  5663. log.debug("FlatCAMScript.set_ui() --> %s" % str(e))
  5664. self.script_editor_tab.code_editor.moveCursor(QtGui.QTextCursor.End)
  5665. self.script_editor_tab.t_frame.show()
  5666. self.app.proc_container.view.set_idle()
  5667. self.build_ui()
  5668. def build_ui(self):
  5669. FlatCAMObj.build_ui(self)
  5670. def handle_run_code(self):
  5671. # trying to run a Tcl command without having the Shell open will create some warnings because the Tcl Shell
  5672. # tries to print on a hidden widget, therefore show the dock if hidden
  5673. if self.app.ui.shell_dock.isHidden():
  5674. self.app.ui.shell_dock.show()
  5675. self.script_code = deepcopy(self.script_editor_tab.code_editor.toPlainText())
  5676. old_line = ''
  5677. for tcl_command_line in self.script_code.splitlines():
  5678. # do not process lines starting with '#' = comment and empty lines
  5679. if not tcl_command_line.startswith('#') and tcl_command_line != '':
  5680. # id FlatCAM is run in Windows then replace all the slashes with
  5681. # the UNIX style slash that TCL understands
  5682. if sys.platform == 'win32':
  5683. if "open" in tcl_command_line:
  5684. tcl_command_line = tcl_command_line.replace('\\', '/')
  5685. if old_line != '':
  5686. new_command = old_line + tcl_command_line + '\n'
  5687. else:
  5688. new_command = tcl_command_line
  5689. # execute the actual Tcl command
  5690. try:
  5691. self.app.shell.open_proccessing() # Disables input box.
  5692. result = self.app.tcl.eval(str(new_command))
  5693. if result != 'None':
  5694. self.app.shell.append_output(result + '\n')
  5695. old_line = ''
  5696. except tk.TclError:
  5697. old_line = old_line + tcl_command_line + '\n'
  5698. except Exception as e:
  5699. log.debug("FlatCAMScript.handleRunCode() --> %s" % str(e))
  5700. if old_line != '':
  5701. # it means that the script finished with an error
  5702. result = self.app.tcl.eval("set errorInfo")
  5703. log.error("Exec command Exception: %s" % (result + '\n'))
  5704. self.app.shell.append_error('ERROR: ' + result + '\n')
  5705. self.app.shell.close_proccessing()
  5706. def on_autocomplete_changed(self, state):
  5707. if state:
  5708. self.script_editor_tab.code_editor.completer_enable = True
  5709. else:
  5710. self.script_editor_tab.code_editor.completer_enable = False
  5711. def to_dict(self):
  5712. """
  5713. Returns a representation of the object as a dictionary.
  5714. Attributes to include are listed in ``self.ser_attrs``.
  5715. :return: A dictionary-encoded copy of the object.
  5716. :rtype: dict
  5717. """
  5718. d = {}
  5719. for attr in self.ser_attrs:
  5720. d[attr] = getattr(self, attr)
  5721. return d
  5722. def from_dict(self, d):
  5723. """
  5724. Sets object's attributes from a dictionary.
  5725. Attributes to include are listed in ``self.ser_attrs``.
  5726. This method will look only for only and all the
  5727. attributes in ``self.ser_attrs``. They must all
  5728. be present. Use only for deserializing saved
  5729. objects.
  5730. :param d: Dictionary of attributes to set in the object.
  5731. :type d: dict
  5732. :return: None
  5733. """
  5734. for attr in self.ser_attrs:
  5735. setattr(self, attr, d[attr])
  5736. class FlatCAMDocument(FlatCAMObj):
  5737. """
  5738. Represents a Document object.
  5739. """
  5740. optionChanged = QtCore.pyqtSignal(str)
  5741. ui_type = DocumentObjectUI
  5742. def __init__(self, name):
  5743. FlatCAMApp.App.log.debug("Creating a Document object...")
  5744. FlatCAMObj.__init__(self, name)
  5745. self.kind = "document"
  5746. self.units = ''
  5747. self.decimals = 4
  5748. self.ser_attrs = ['options', 'kind', 'source_file']
  5749. self.source_file = ''
  5750. self.doc_code = ''
  5751. self.font_italic = None
  5752. self.font_bold = None
  5753. self.font_underline =None
  5754. self.document_editor_tab = None
  5755. self._read_only = False
  5756. def set_ui(self, ui):
  5757. FlatCAMObj.set_ui(self, ui)
  5758. FlatCAMApp.App.log.debug("FlatCAMDocument.set_ui()")
  5759. assert isinstance(self.ui, DocumentObjectUI), \
  5760. "Expected a DocumentObjectUI, got %s" % type(self.ui)
  5761. self.units = self.app.defaults['units'].upper()
  5762. if self.units == "IN":
  5763. self.decimals = 4
  5764. else:
  5765. self.decimals = 2
  5766. # Fill form fields only on object create
  5767. self.to_form()
  5768. # Show/Hide Advanced Options
  5769. if self.app.defaults["global_app_level"] == 'b':
  5770. self.ui.level.setText(_(
  5771. '<span style="color:green;"><b>Basic</b></span>'
  5772. ))
  5773. else:
  5774. self.ui.level.setText(_(
  5775. '<span style="color:red;"><b>Advanced</b></span>'
  5776. ))
  5777. self.document_editor_tab = TextEditor(app=self.app)
  5778. stylesheet = """
  5779. QTextEdit {selection-background-color:%s;
  5780. selection-color:white;
  5781. }
  5782. """ % self.app.defaults["document_sel_color"]
  5783. self.document_editor_tab.code_editor.setStyleSheet(stylesheet)
  5784. # first clear previous text in text editor (if any)
  5785. self.document_editor_tab.code_editor.clear()
  5786. self.document_editor_tab.code_editor.setReadOnly(self._read_only)
  5787. self.document_editor_tab.buttonRun.hide()
  5788. self.ui.autocomplete_cb.set_value(self.app.defaults['document_autocompleter'])
  5789. self.on_autocomplete_changed(state=self.app.defaults['document_autocompleter'])
  5790. self.on_tab_size_change(val=self.app.defaults['document_tab_size'])
  5791. flt = "FlatCAM Docs (*.FlatDoc);;All Files (*.*)"
  5792. # ######################################################################
  5793. # ######################## SIGNALS #####################################
  5794. # ######################################################################
  5795. self.document_editor_tab.buttonOpen.clicked.disconnect()
  5796. self.document_editor_tab.buttonOpen.clicked.connect(lambda: self.document_editor_tab.handleOpen(filt=flt))
  5797. self.document_editor_tab.buttonSave.clicked.disconnect()
  5798. self.document_editor_tab.buttonSave.clicked.connect(lambda: self.document_editor_tab.handleSaveGCode(filt=flt))
  5799. self.document_editor_tab.code_editor.textChanged.connect(self.on_text_changed)
  5800. self.ui.font_type_cb.currentFontChanged.connect(self.font_family)
  5801. self.ui.font_size_cb.activated.connect(self.font_size)
  5802. self.ui.font_bold_tb.clicked.connect(self.on_bold_button)
  5803. self.ui.font_italic_tb.clicked.connect(self.on_italic_button)
  5804. self.ui.font_under_tb.clicked.connect(self.on_underline_button)
  5805. self.ui.font_color_entry.editingFinished.connect(self.on_font_color_entry)
  5806. self.ui.font_color_button.clicked.connect(self.on_font_color_button)
  5807. self.ui.sel_color_entry.editingFinished.connect(self.on_selection_color_entry)
  5808. self.ui.sel_color_button.clicked.connect(self.on_selection_color_button)
  5809. self.ui.al_left_tb.clicked.connect(lambda: self.document_editor_tab.code_editor.setAlignment(Qt.AlignLeft))
  5810. self.ui.al_center_tb.clicked.connect(lambda: self.document_editor_tab.code_editor.setAlignment(Qt.AlignCenter))
  5811. self.ui.al_right_tb.clicked.connect(lambda: self.document_editor_tab.code_editor.setAlignment(Qt.AlignRight))
  5812. self.ui.al_justify_tb.clicked.connect(
  5813. lambda: self.document_editor_tab.code_editor.setAlignment(Qt.AlignJustify)
  5814. )
  5815. self.ui.autocomplete_cb.stateChanged.connect(self.on_autocomplete_changed)
  5816. self.ui.tab_size_spinner.returnPressed.connect(self.on_tab_size_change)
  5817. # #######################################################################
  5818. self.ui.font_color_entry.set_value(self.app.defaults['document_font_color'])
  5819. self.ui.font_color_button.setStyleSheet(
  5820. "background-color:%s" % str(self.app.defaults['document_font_color']))
  5821. self.ui.sel_color_entry.set_value(self.app.defaults['document_sel_color'])
  5822. self.ui.sel_color_button.setStyleSheet(
  5823. "background-color:%s" % self.app.defaults['document_sel_color'])
  5824. self.ui.font_size_cb.setCurrentIndex(int(self.app.defaults['document_font_size']))
  5825. self.document_editor_tab.handleTextChanged()
  5826. self.ser_attrs = ['options', 'kind', 'source_file']
  5827. if Qt.mightBeRichText(self.source_file):
  5828. self.document_editor_tab.code_editor.setHtml(self.source_file)
  5829. else:
  5830. for line in self.source_file.splitlines():
  5831. self.document_editor_tab.code_editor.append(line)
  5832. self.build_ui()
  5833. @property
  5834. def read_only(self):
  5835. return self._read_only
  5836. @read_only.setter
  5837. def read_only(self, val):
  5838. if val:
  5839. self._read_only = True
  5840. else:
  5841. self._read_only = False
  5842. def build_ui(self):
  5843. FlatCAMObj.build_ui(self)
  5844. tab_here = False
  5845. # try to not add too many times a tab that it is already installed
  5846. for idx in range(self.app.ui.plot_tab_area.count()):
  5847. if self.app.ui.plot_tab_area.widget(idx).objectName() == self.options['name']:
  5848. tab_here = True
  5849. break
  5850. # add the tab if it is not already added
  5851. if tab_here is False:
  5852. self.app.ui.plot_tab_area.addTab(self.document_editor_tab, '%s' % _("Document Editor"))
  5853. self.document_editor_tab.setObjectName(self.options['name'])
  5854. # Switch plot_area to CNCJob tab
  5855. self.app.ui.plot_tab_area.setCurrentWidget(self.document_editor_tab)
  5856. def on_autocomplete_changed(self, state):
  5857. if state:
  5858. self.document_editor_tab.code_editor.completer_enable = True
  5859. else:
  5860. self.document_editor_tab.code_editor.completer_enable = False
  5861. def on_tab_size_change(self, val=None):
  5862. try:
  5863. self.ui.tab_size_spinner.returnPressed.disconnect(self.on_tab_size_change)
  5864. except TypeError:
  5865. pass
  5866. if val:
  5867. self.ui.tab_size_spinner.set_value(val)
  5868. tab_balue = int(self.ui.tab_size_spinner.get_value())
  5869. self.document_editor_tab.code_editor.setTabStopWidth(tab_balue)
  5870. self.app.defaults['document_tab_size'] = tab_balue
  5871. self.ui.tab_size_spinner.returnPressed.connect(self.on_tab_size_change)
  5872. def on_text_changed(self):
  5873. self.source_file = self.document_editor_tab.code_editor.toHtml()
  5874. # print(self.source_file)
  5875. def font_family(self, font):
  5876. # self.document_editor_tab.code_editor.selectAll()
  5877. font.setPointSize(float(self.ui.font_size_cb.get_value()))
  5878. self.document_editor_tab.code_editor.setCurrentFont(font)
  5879. self.font_name = self.ui.font_type_cb.currentFont().family()
  5880. def font_size(self):
  5881. # self.document_editor_tab.code_editor.selectAll()
  5882. self.document_editor_tab.code_editor.setFontPointSize(float(self.ui.font_size_cb.get_value()))
  5883. def on_bold_button(self):
  5884. if self.ui.font_bold_tb.isChecked():
  5885. self.document_editor_tab.code_editor.setFontWeight(QtGui.QFont.Bold)
  5886. self.font_bold = True
  5887. else:
  5888. self.document_editor_tab.code_editor.setFontWeight(QtGui.QFont.Normal)
  5889. self.font_bold = False
  5890. def on_italic_button(self):
  5891. if self.ui.font_italic_tb.isChecked():
  5892. self.document_editor_tab.code_editor.setFontItalic(True)
  5893. self.font_italic = True
  5894. else:
  5895. self.document_editor_tab.code_editor.setFontItalic(False)
  5896. self.font_italic = False
  5897. def on_underline_button(self):
  5898. if self.ui.font_under_tb.isChecked():
  5899. self.document_editor_tab.code_editor.setFontUnderline(True)
  5900. self.font_underline = True
  5901. else:
  5902. self.document_editor_tab.code_editor.setFontUnderline(False)
  5903. self.font_underline = False
  5904. # Setting font colors handlers
  5905. def on_font_color_entry(self):
  5906. self.app.defaults['document_font_color'] = self.ui.font_color_entry.get_value()
  5907. self.ui.font_color_button.setStyleSheet("background-color:%s" % str(self.app.defaults['document_font_color']))
  5908. def on_font_color_button(self):
  5909. current_color = QtGui.QColor(self.app.defaults['document_font_color'])
  5910. c_dialog = QtWidgets.QColorDialog()
  5911. font_color = c_dialog.getColor(initial=current_color)
  5912. if font_color.isValid() is False:
  5913. return
  5914. self.document_editor_tab.code_editor.setTextColor(font_color)
  5915. self.ui.font_color_button.setStyleSheet("background-color:%s" % str(font_color.name()))
  5916. new_val = str(font_color.name())
  5917. self.ui.font_color_entry.set_value(new_val)
  5918. self.app.defaults['document_font_color'] = new_val
  5919. # Setting selection colors handlers
  5920. def on_selection_color_entry(self):
  5921. self.app.defaults['document_sel_color'] = self.ui.sel_color_entry.get_value()
  5922. self.ui.sel_color_button.setStyleSheet("background-color:%s" % str(self.app.defaults['document_sel_color']))
  5923. def on_selection_color_button(self):
  5924. current_color = QtGui.QColor(self.app.defaults['document_sel_color'])
  5925. c_dialog = QtWidgets.QColorDialog()
  5926. sel_color = c_dialog.getColor(initial=current_color)
  5927. if sel_color.isValid() is False:
  5928. return
  5929. p = QtGui.QPalette()
  5930. p.setColor(QtGui.QPalette.Highlight, sel_color)
  5931. p.setColor(QtGui.QPalette.HighlightedText, QtGui.QColor('white'))
  5932. self.document_editor_tab.code_editor.setPalette(p)
  5933. self.ui.sel_color_button.setStyleSheet("background-color:%s" % str(sel_color.name()))
  5934. new_val = str(sel_color.name())
  5935. self.ui.sel_color_entry.set_value(new_val)
  5936. self.app.defaults['document_sel_color'] = new_val
  5937. def to_dict(self):
  5938. """
  5939. Returns a representation of the object as a dictionary.
  5940. Attributes to include are listed in ``self.ser_attrs``.
  5941. :return: A dictionary-encoded copy of the object.
  5942. :rtype: dict
  5943. """
  5944. d = {}
  5945. for attr in self.ser_attrs:
  5946. d[attr] = getattr(self, attr)
  5947. return d
  5948. def from_dict(self, d):
  5949. """
  5950. Sets object's attributes from a dictionary.
  5951. Attributes to include are listed in ``self.ser_attrs``.
  5952. This method will look only for only and all the
  5953. attributes in ``self.ser_attrs``. They must all
  5954. be present. Use only for deserializing saved
  5955. objects.
  5956. :param d: Dictionary of attributes to set in the object.
  5957. :type d: dict
  5958. :return: None
  5959. """
  5960. for attr in self.ser_attrs:
  5961. setattr(self, attr, d[attr])
  5962. # end of file