ToolRulesCheck.py 70 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # File Author: Marius Adrian Stanciu (c) #
  4. # Date: 09/27/2019 #
  5. # MIT Licence #
  6. # ##########################################################
  7. from PyQt5 import QtWidgets
  8. from FlatCAMTool import FlatCAMTool
  9. from flatcamGUI.GUIElements import FCDoubleSpinner, FCCheckBox, OptionalInputSection
  10. from copy import deepcopy
  11. from FlatCAMPool import *
  12. # from os import getpid
  13. from shapely.ops import nearest_points
  14. from shapely.geometry import MultiPolygon, Polygon
  15. import logging
  16. import gettext
  17. import FlatCAMTranslation as fcTranslate
  18. import builtins
  19. fcTranslate.apply_language('strings')
  20. if '_' not in builtins.__dict__:
  21. _ = gettext.gettext
  22. log = logging.getLogger('base')
  23. class RulesCheck(FlatCAMTool):
  24. toolName = _("Check Rules")
  25. tool_finished = QtCore.pyqtSignal(list)
  26. def __init__(self, app):
  27. self.decimals = app.decimals
  28. FlatCAMTool.__init__(self, app)
  29. # ## Title
  30. title_label = QtWidgets.QLabel("%s" % self.toolName)
  31. title_label.setStyleSheet("""
  32. QLabel
  33. {
  34. font-size: 16px;
  35. font-weight: bold;
  36. }
  37. """)
  38. self.layout.addWidget(title_label)
  39. # Form Layout
  40. self.grid_layout = QtWidgets.QGridLayout()
  41. self.layout.addLayout(self.grid_layout)
  42. self.grid_layout.setColumnStretch(0, 0)
  43. self.grid_layout.setColumnStretch(1, 3)
  44. self.grid_layout.setColumnStretch(2, 0)
  45. self.gerber_title_lbl = QtWidgets.QLabel('<b>%s</b>:' % _("Gerber Files"))
  46. self.gerber_title_lbl.setToolTip(
  47. _("Gerber objects for which to check rules.")
  48. )
  49. self.all_obj_cb = FCCheckBox()
  50. self.grid_layout.addWidget(self.gerber_title_lbl, 0, 0, 1, 2)
  51. self.grid_layout.addWidget(self.all_obj_cb, 0, 2)
  52. # Copper Top object
  53. self.copper_t_object = QtWidgets.QComboBox()
  54. self.copper_t_object.setModel(self.app.collection)
  55. self.copper_t_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  56. self.copper_t_object.setCurrentIndex(1)
  57. self.copper_t_object_lbl = QtWidgets.QLabel('%s:' % _("Top"))
  58. self.copper_t_object_lbl.setToolTip(
  59. _("The Top Gerber Copper object for which rules are checked.")
  60. )
  61. self.copper_t_cb = FCCheckBox()
  62. self.grid_layout.addWidget(self.copper_t_object_lbl, 1, 0)
  63. self.grid_layout.addWidget(self.copper_t_object, 1, 1)
  64. self.grid_layout.addWidget(self.copper_t_cb, 1, 2)
  65. # Copper Bottom object
  66. self.copper_b_object = QtWidgets.QComboBox()
  67. self.copper_b_object.setModel(self.app.collection)
  68. self.copper_b_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  69. self.copper_b_object.setCurrentIndex(1)
  70. self.copper_b_object_lbl = QtWidgets.QLabel('%s:' % _("Bottom"))
  71. self.copper_b_object_lbl.setToolTip(
  72. _("The Bottom Gerber Copper object for which rules are checked.")
  73. )
  74. self.copper_b_cb = FCCheckBox()
  75. self.grid_layout.addWidget(self.copper_b_object_lbl, 2, 0)
  76. self.grid_layout.addWidget(self.copper_b_object, 2, 1)
  77. self.grid_layout.addWidget(self.copper_b_cb, 2, 2)
  78. # SolderMask Top object
  79. self.sm_t_object = QtWidgets.QComboBox()
  80. self.sm_t_object.setModel(self.app.collection)
  81. self.sm_t_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  82. self.sm_t_object.setCurrentIndex(1)
  83. self.sm_t_object_lbl = QtWidgets.QLabel('%s:' % _("SM Top"))
  84. self.sm_t_object_lbl.setToolTip(
  85. _("The Top Gerber Solder Mask object for which rules are checked.")
  86. )
  87. self.sm_t_cb = FCCheckBox()
  88. self.grid_layout.addWidget(self.sm_t_object_lbl, 3, 0)
  89. self.grid_layout.addWidget(self.sm_t_object, 3, 1)
  90. self.grid_layout.addWidget(self.sm_t_cb, 3, 2)
  91. # SolderMask Bottom object
  92. self.sm_b_object = QtWidgets.QComboBox()
  93. self.sm_b_object.setModel(self.app.collection)
  94. self.sm_b_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  95. self.sm_b_object.setCurrentIndex(1)
  96. self.sm_b_object_lbl = QtWidgets.QLabel('%s:' % _("SM Bottom"))
  97. self.sm_b_object_lbl.setToolTip(
  98. _("The Bottom Gerber Solder Mask object for which rules are checked.")
  99. )
  100. self.sm_b_cb = FCCheckBox()
  101. self.grid_layout.addWidget(self.sm_b_object_lbl, 4, 0)
  102. self.grid_layout.addWidget(self.sm_b_object, 4, 1)
  103. self.grid_layout.addWidget(self.sm_b_cb, 4, 2)
  104. # SilkScreen Top object
  105. self.ss_t_object = QtWidgets.QComboBox()
  106. self.ss_t_object.setModel(self.app.collection)
  107. self.ss_t_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  108. self.ss_t_object.setCurrentIndex(1)
  109. self.ss_t_object_lbl = QtWidgets.QLabel('%s:' % _("Silk Top"))
  110. self.ss_t_object_lbl.setToolTip(
  111. _("The Top Gerber Silkscreen object for which rules are checked.")
  112. )
  113. self.ss_t_cb = FCCheckBox()
  114. self.grid_layout.addWidget(self.ss_t_object_lbl, 5, 0)
  115. self.grid_layout.addWidget(self.ss_t_object, 5, 1)
  116. self.grid_layout.addWidget(self.ss_t_cb, 5, 2)
  117. # SilkScreen Bottom object
  118. self.ss_b_object = QtWidgets.QComboBox()
  119. self.ss_b_object.setModel(self.app.collection)
  120. self.ss_b_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  121. self.ss_b_object.setCurrentIndex(1)
  122. self.ss_b_object_lbl = QtWidgets.QLabel('%s:' % _("Silk Bottom"))
  123. self.ss_b_object_lbl.setToolTip(
  124. _("The Bottom Gerber Silkscreen object for which rules are checked.")
  125. )
  126. self.ss_b_cb = FCCheckBox()
  127. self.grid_layout.addWidget(self.ss_b_object_lbl, 6, 0)
  128. self.grid_layout.addWidget(self.ss_b_object, 6, 1)
  129. self.grid_layout.addWidget(self.ss_b_cb, 6, 2)
  130. # Outline object
  131. self.outline_object = QtWidgets.QComboBox()
  132. self.outline_object.setModel(self.app.collection)
  133. self.outline_object.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  134. self.outline_object.setCurrentIndex(1)
  135. self.outline_object_lbl = QtWidgets.QLabel('%s:' % _("Outline"))
  136. self.outline_object_lbl.setToolTip(
  137. _("The Gerber Outline (Cutout) object for which rules are checked.")
  138. )
  139. self.out_cb = FCCheckBox()
  140. self.grid_layout.addWidget(self.outline_object_lbl, 7, 0)
  141. self.grid_layout.addWidget(self.outline_object, 7, 1)
  142. self.grid_layout.addWidget(self.out_cb, 7, 2)
  143. self.grid_layout.addWidget(QtWidgets.QLabel(""), 8, 0, 1, 3)
  144. self.excellon_title_lbl = QtWidgets.QLabel('<b>%s</b>:' % _("Excellon Objects"))
  145. self.excellon_title_lbl.setToolTip(
  146. _("Excellon objects for which to check rules.")
  147. )
  148. self.grid_layout.addWidget(self.excellon_title_lbl, 9, 0, 1, 3)
  149. # Excellon 1 object
  150. self.e1_object = QtWidgets.QComboBox()
  151. self.e1_object.setModel(self.app.collection)
  152. self.e1_object.setRootModelIndex(self.app.collection.index(1, 0, QtCore.QModelIndex()))
  153. self.e1_object.setCurrentIndex(1)
  154. self.e1_object_lbl = QtWidgets.QLabel('%s:' % _("Excellon 1"))
  155. self.e1_object_lbl.setToolTip(
  156. _("Excellon object for which to check rules.\n"
  157. "Holds the plated holes or a general Excellon file content.")
  158. )
  159. self.e1_cb = FCCheckBox()
  160. self.grid_layout.addWidget(self.e1_object_lbl, 10, 0)
  161. self.grid_layout.addWidget(self.e1_object, 10, 1)
  162. self.grid_layout.addWidget(self.e1_cb, 10, 2)
  163. # Excellon 2 object
  164. self.e2_object = QtWidgets.QComboBox()
  165. self.e2_object.setModel(self.app.collection)
  166. self.e2_object.setRootModelIndex(self.app.collection.index(1, 0, QtCore.QModelIndex()))
  167. self.e2_object.setCurrentIndex(1)
  168. self.e2_object_lbl = QtWidgets.QLabel('%s:' % _("Excellon 2"))
  169. self.e2_object_lbl.setToolTip(
  170. _("Excellon object for which to check rules.\n"
  171. "Holds the non-plated holes.")
  172. )
  173. self.e2_cb = FCCheckBox()
  174. self.grid_layout.addWidget(self.e2_object_lbl, 11, 0)
  175. self.grid_layout.addWidget(self.e2_object, 11, 1)
  176. self.grid_layout.addWidget(self.e2_cb, 11, 2)
  177. self.grid_layout.addWidget(QtWidgets.QLabel(""), 12, 0, 1, 3)
  178. # Control All
  179. self.all_cb = FCCheckBox('%s' % _("All Rules"))
  180. self.all_cb.setToolTip(
  181. _("This check/uncheck all the rules below.")
  182. )
  183. self.all_cb.setStyleSheet(
  184. """
  185. QCheckBox {font-weight: bold; color: green}
  186. """
  187. )
  188. self.layout.addWidget(self.all_cb)
  189. # Form Layout
  190. self.form_layout_1 = QtWidgets.QFormLayout()
  191. self.layout.addLayout(self.form_layout_1)
  192. self.form_layout_1.addRow(QtWidgets.QLabel(""))
  193. # Trace size
  194. self.trace_size_cb = FCCheckBox('%s:' % _("Trace Size"))
  195. self.trace_size_cb.setToolTip(
  196. _("This checks if the minimum size for traces is met.")
  197. )
  198. self.form_layout_1.addRow(self.trace_size_cb)
  199. # Trace size value
  200. self.trace_size_entry = FCDoubleSpinner()
  201. self.trace_size_entry.set_range(0.00001, 999.99999)
  202. self.trace_size_entry.set_precision(self.decimals)
  203. self.trace_size_entry.setSingleStep(0.1)
  204. self.trace_size_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  205. self.trace_size_lbl.setToolTip(
  206. _("Minimum acceptable trace size.")
  207. )
  208. self.form_layout_1.addRow(self.trace_size_lbl, self.trace_size_entry)
  209. self.ts = OptionalInputSection(self.trace_size_cb, [self.trace_size_lbl, self.trace_size_entry])
  210. # Copper2copper clearance
  211. self.clearance_copper2copper_cb = FCCheckBox('%s:' % _("Copper to Copper clearance"))
  212. self.clearance_copper2copper_cb.setToolTip(
  213. _("This checks if the minimum clearance between copper\n"
  214. "features is met.")
  215. )
  216. self.form_layout_1.addRow(self.clearance_copper2copper_cb)
  217. # Copper2copper clearance value
  218. self.clearance_copper2copper_entry = FCDoubleSpinner()
  219. self.clearance_copper2copper_entry.set_range(0.00001, 999.99999)
  220. self.clearance_copper2copper_entry.set_precision(self.decimals)
  221. self.clearance_copper2copper_entry.setSingleStep(0.1)
  222. self.clearance_copper2copper_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  223. self.clearance_copper2copper_lbl.setToolTip(
  224. _("Minimum acceptable clearance value.")
  225. )
  226. self.form_layout_1.addRow(self.clearance_copper2copper_lbl, self.clearance_copper2copper_entry)
  227. self.c2c = OptionalInputSection(
  228. self.clearance_copper2copper_cb, [self.clearance_copper2copper_lbl, self.clearance_copper2copper_entry])
  229. # Copper2outline clearance
  230. self.clearance_copper2ol_cb = FCCheckBox('%s:' % _("Copper to Outline clearance"))
  231. self.clearance_copper2ol_cb.setToolTip(
  232. _("This checks if the minimum clearance between copper\n"
  233. "features and the outline is met.")
  234. )
  235. self.form_layout_1.addRow(self.clearance_copper2ol_cb)
  236. # Copper2outline clearance value
  237. self.clearance_copper2ol_entry = FCDoubleSpinner()
  238. self.clearance_copper2ol_entry.set_range(0.00001, 999.99999)
  239. self.clearance_copper2ol_entry.set_precision(self.decimals)
  240. self.clearance_copper2ol_entry.setSingleStep(0.1)
  241. self.clearance_copper2ol_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  242. self.clearance_copper2ol_lbl.setToolTip(
  243. _("Minimum acceptable clearance value.")
  244. )
  245. self.form_layout_1.addRow(self.clearance_copper2ol_lbl, self.clearance_copper2ol_entry)
  246. self.c2ol = OptionalInputSection(
  247. self.clearance_copper2ol_cb, [self.clearance_copper2ol_lbl, self.clearance_copper2ol_entry])
  248. # Silkscreen2silkscreen clearance
  249. self.clearance_silk2silk_cb = FCCheckBox('%s:' % _("Silk to Silk Clearance"))
  250. self.clearance_silk2silk_cb.setToolTip(
  251. _("This checks if the minimum clearance between silkscreen\n"
  252. "features and silkscreen features is met.")
  253. )
  254. self.form_layout_1.addRow(self.clearance_silk2silk_cb)
  255. # Copper2silkscreen clearance value
  256. self.clearance_silk2silk_entry = FCDoubleSpinner()
  257. self.clearance_silk2silk_entry.set_range(0.00001, 999.99999)
  258. self.clearance_silk2silk_entry.set_precision(self.decimals)
  259. self.clearance_silk2silk_entry.setSingleStep(0.1)
  260. self.clearance_silk2silk_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  261. self.clearance_silk2silk_lbl.setToolTip(
  262. _("Minimum acceptable clearance value.")
  263. )
  264. self.form_layout_1.addRow(self.clearance_silk2silk_lbl, self.clearance_silk2silk_entry)
  265. self.s2s = OptionalInputSection(
  266. self.clearance_silk2silk_cb, [self.clearance_silk2silk_lbl, self.clearance_silk2silk_entry])
  267. # Silkscreen2soldermask clearance
  268. self.clearance_silk2sm_cb = FCCheckBox('%s:' % _("Silk to Solder Mask Clearance"))
  269. self.clearance_silk2sm_cb.setToolTip(
  270. _("This checks if the minimum clearance between silkscreen\n"
  271. "features and soldermask features is met.")
  272. )
  273. self.form_layout_1.addRow(self.clearance_silk2sm_cb)
  274. # Silkscreen2soldermask clearance value
  275. self.clearance_silk2sm_entry = FCDoubleSpinner()
  276. self.clearance_silk2sm_entry.set_range(0.00001, 999.99999)
  277. self.clearance_silk2sm_entry.set_precision(self.decimals)
  278. self.clearance_silk2sm_entry.setSingleStep(0.1)
  279. self.clearance_silk2sm_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  280. self.clearance_silk2sm_lbl.setToolTip(
  281. _("Minimum acceptable clearance value.")
  282. )
  283. self.form_layout_1.addRow(self.clearance_silk2sm_lbl, self.clearance_silk2sm_entry)
  284. self.s2sm = OptionalInputSection(
  285. self.clearance_silk2sm_cb, [self.clearance_silk2sm_lbl, self.clearance_silk2sm_entry])
  286. # Silk2outline clearance
  287. self.clearance_silk2ol_cb = FCCheckBox('%s:' % _("Silk to Outline Clearance"))
  288. self.clearance_silk2ol_cb.setToolTip(
  289. _("This checks if the minimum clearance between silk\n"
  290. "features and the outline is met.")
  291. )
  292. self.form_layout_1.addRow(self.clearance_silk2ol_cb)
  293. # Silk2outline clearance value
  294. self.clearance_silk2ol_entry = FCDoubleSpinner()
  295. self.clearance_silk2ol_entry.set_range(0.00001, 999.99999)
  296. self.clearance_silk2ol_entry.set_precision(self.decimals)
  297. self.clearance_silk2ol_entry.setSingleStep(0.1)
  298. self.clearance_silk2ol_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  299. self.clearance_silk2ol_lbl.setToolTip(
  300. _("Minimum acceptable clearance value.")
  301. )
  302. self.form_layout_1.addRow(self.clearance_silk2ol_lbl, self.clearance_silk2ol_entry)
  303. self.s2ol = OptionalInputSection(
  304. self.clearance_silk2ol_cb, [self.clearance_silk2ol_lbl, self.clearance_silk2ol_entry])
  305. # Soldermask2soldermask clearance
  306. self.clearance_sm2sm_cb = FCCheckBox('%s:' % _("Minimum Solder Mask Sliver"))
  307. self.clearance_sm2sm_cb.setToolTip(
  308. _("This checks if the minimum clearance between soldermask\n"
  309. "features and soldermask features is met.")
  310. )
  311. self.form_layout_1.addRow(self.clearance_sm2sm_cb)
  312. # Soldermask2soldermask clearance value
  313. self.clearance_sm2sm_entry = FCDoubleSpinner()
  314. self.clearance_sm2sm_entry.set_range(0.00001, 999.99999)
  315. self.clearance_sm2sm_entry.set_precision(self.decimals)
  316. self.clearance_sm2sm_entry.setSingleStep(0.1)
  317. self.clearance_sm2sm_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  318. self.clearance_sm2sm_lbl.setToolTip(
  319. _("Minimum acceptable clearance value.")
  320. )
  321. self.form_layout_1.addRow(self.clearance_sm2sm_lbl, self.clearance_sm2sm_entry)
  322. self.sm2sm = OptionalInputSection(
  323. self.clearance_sm2sm_cb, [self.clearance_sm2sm_lbl, self.clearance_sm2sm_entry])
  324. # Ring integrity check
  325. self.ring_integrity_cb = FCCheckBox('%s:' % _("Minimum Annular Ring"))
  326. self.ring_integrity_cb.setToolTip(
  327. _("This checks if the minimum copper ring left by drilling\n"
  328. "a hole into a pad is met.")
  329. )
  330. self.form_layout_1.addRow(self.ring_integrity_cb)
  331. # Ring integrity value
  332. self.ring_integrity_entry = FCDoubleSpinner()
  333. self.ring_integrity_entry.set_range(0.00001, 999.99999)
  334. self.ring_integrity_entry.set_precision(self.decimals)
  335. self.ring_integrity_entry.setSingleStep(0.1)
  336. self.ring_integrity_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  337. self.ring_integrity_lbl.setToolTip(
  338. _("Minimum acceptable ring value.")
  339. )
  340. self.form_layout_1.addRow(self.ring_integrity_lbl, self.ring_integrity_entry)
  341. self.anr = OptionalInputSection(
  342. self.ring_integrity_cb, [self.ring_integrity_lbl, self.ring_integrity_entry])
  343. self.form_layout_1.addRow(QtWidgets.QLabel(""))
  344. # Hole2Hole clearance
  345. self.clearance_d2d_cb = FCCheckBox('%s:' % _("Hole to Hole Clearance"))
  346. self.clearance_d2d_cb.setToolTip(
  347. _("This checks if the minimum clearance between a drill hole\n"
  348. "and another drill hole is met.")
  349. )
  350. self.form_layout_1.addRow(self.clearance_d2d_cb)
  351. # Hole2Hole clearance value
  352. self.clearance_d2d_entry = FCDoubleSpinner()
  353. self.clearance_d2d_entry.set_range(0.00001, 999.99999)
  354. self.clearance_d2d_entry.set_precision(self.decimals)
  355. self.clearance_d2d_entry.setSingleStep(0.1)
  356. self.clearance_d2d_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  357. self.clearance_d2d_lbl.setToolTip(
  358. _("Minimum acceptable clearance value.")
  359. )
  360. self.form_layout_1.addRow(self.clearance_d2d_lbl, self.clearance_d2d_entry)
  361. self.d2d = OptionalInputSection(
  362. self.clearance_d2d_cb, [self.clearance_d2d_lbl, self.clearance_d2d_entry])
  363. # Drill holes size check
  364. self.drill_size_cb = FCCheckBox('%s:' % _("Hole Size"))
  365. self.drill_size_cb.setToolTip(
  366. _("This checks if the drill holes\n"
  367. "sizes are above the threshold.")
  368. )
  369. self.form_layout_1.addRow(self.drill_size_cb)
  370. # Drile holes value
  371. self.drill_size_entry = FCDoubleSpinner()
  372. self.drill_size_entry.set_range(0.00001, 999.99999)
  373. self.drill_size_entry.set_precision(self.decimals)
  374. self.drill_size_entry.setSingleStep(0.1)
  375. self.drill_size_lbl = QtWidgets.QLabel('%s:' % _("Min value"))
  376. self.drill_size_lbl.setToolTip(
  377. _("Minimum acceptable drill size.")
  378. )
  379. self.form_layout_1.addRow(self.drill_size_lbl, self.drill_size_entry)
  380. self.ds = OptionalInputSection(
  381. self.drill_size_cb, [self.drill_size_lbl, self.drill_size_entry])
  382. # Buttons
  383. hlay_2 = QtWidgets.QHBoxLayout()
  384. self.layout.addLayout(hlay_2)
  385. # hlay_2.addStretch()
  386. self.run_button = QtWidgets.QPushButton(_("Run Rules Check"))
  387. self.run_button.setToolTip(
  388. _("Panelize the specified object around the specified box.\n"
  389. "In other words it creates multiple copies of the source object,\n"
  390. "arranged in a 2D array of rows and columns.")
  391. )
  392. self.run_button.setStyleSheet("""
  393. QPushButton
  394. {
  395. font-weight: bold;
  396. }
  397. """)
  398. hlay_2.addWidget(self.run_button)
  399. self.layout.addStretch()
  400. # ## Reset Tool
  401. self.reset_button = QtWidgets.QPushButton(_("Reset Tool"))
  402. self.reset_button.setToolTip(
  403. _("Will reset the tool parameters.")
  404. )
  405. self.reset_button.setStyleSheet("""
  406. QPushButton
  407. {
  408. font-weight: bold;
  409. }
  410. """)
  411. self.layout.addWidget(self.reset_button)
  412. # #######################################################
  413. # ################ SIGNALS ##############################
  414. # #######################################################
  415. self.copper_t_cb.stateChanged.connect(lambda st: self.copper_t_object.setDisabled(not st))
  416. self.copper_b_cb.stateChanged.connect(lambda st: self.copper_b_object.setDisabled(not st))
  417. self.sm_t_cb.stateChanged.connect(lambda st: self.sm_t_object.setDisabled(not st))
  418. self.sm_b_cb.stateChanged.connect(lambda st: self.sm_b_object.setDisabled(not st))
  419. self.ss_t_cb.stateChanged.connect(lambda st: self.ss_t_object.setDisabled(not st))
  420. self.ss_b_cb.stateChanged.connect(lambda st: self.ss_b_object.setDisabled(not st))
  421. self.out_cb.stateChanged.connect(lambda st: self.outline_object.setDisabled(not st))
  422. self.e1_cb.stateChanged.connect(lambda st: self.e1_object.setDisabled(not st))
  423. self.e2_cb.stateChanged.connect(lambda st: self.e2_object.setDisabled(not st))
  424. self.all_obj_cb.stateChanged.connect(self.on_all_objects_cb_changed)
  425. self.all_cb.stateChanged.connect(self.on_all_cb_changed)
  426. self.run_button.clicked.connect(self.execute)
  427. # self.app.collection.rowsInserted.connect(self.on_object_loaded)
  428. self.tool_finished.connect(self.on_tool_finished)
  429. self.reset_button.clicked.connect(self.set_tool_ui)
  430. # list to hold the temporary objects
  431. self.objs = []
  432. # final name for the panel object
  433. self.outname = ""
  434. # flag to signal the constrain was activated
  435. self.constrain_flag = False
  436. # Multiprocessing Process Pool
  437. self.pool = self.app.pool
  438. self.results = None
  439. self.decimals = 4
  440. # def on_object_loaded(self, index, row):
  441. # print(index.internalPointer().child_items[row].obj.options['name'], index.data())
  442. def on_all_cb_changed(self, state):
  443. cb_items = [self.form_layout_1.itemAt(i).widget() for i in range(self.form_layout_1.count())
  444. if isinstance(self.form_layout_1.itemAt(i).widget(), FCCheckBox)]
  445. for cb in cb_items:
  446. if state:
  447. cb.setChecked(True)
  448. else:
  449. cb.setChecked(False)
  450. def on_all_objects_cb_changed(self, state):
  451. cb_items = [self.grid_layout.itemAt(i).widget() for i in range(self.grid_layout.count())
  452. if isinstance(self.grid_layout.itemAt(i).widget(), FCCheckBox)]
  453. for cb in cb_items:
  454. if state:
  455. cb.setChecked(True)
  456. else:
  457. cb.setChecked(False)
  458. def run(self, toggle=True):
  459. self.app.report_usage("ToolRulesCheck()")
  460. if toggle:
  461. # if the splitter is hidden, display it, else hide it but only if the current widget is the same
  462. if self.app.ui.splitter.sizes()[0] == 0:
  463. self.app.ui.splitter.setSizes([1, 1])
  464. else:
  465. try:
  466. if self.app.ui.tool_scroll_area.widget().objectName() == self.toolName:
  467. # if tab is populated with the tool but it does not have the focus, focus on it
  468. if not self.app.ui.notebook.currentWidget() is self.app.ui.tool_tab:
  469. # focus on Tool Tab
  470. self.app.ui.notebook.setCurrentWidget(self.app.ui.tool_tab)
  471. else:
  472. self.app.ui.splitter.setSizes([0, 1])
  473. except AttributeError:
  474. pass
  475. else:
  476. if self.app.ui.splitter.sizes()[0] == 0:
  477. self.app.ui.splitter.setSizes([1, 1])
  478. FlatCAMTool.run(self)
  479. self.set_tool_ui()
  480. self.app.ui.notebook.setTabText(2, _("Rules Tool"))
  481. def install(self, icon=None, separator=None, **kwargs):
  482. FlatCAMTool.install(self, icon, separator, shortcut='ALT+R', **kwargs)
  483. def set_tool_ui(self):
  484. # all object combobox default as disabled
  485. self.copper_t_object.setDisabled(True)
  486. self.copper_b_object.setDisabled(True)
  487. self.sm_t_object.setDisabled(True)
  488. self.sm_b_object.setDisabled(True)
  489. self.ss_t_object.setDisabled(True)
  490. self.ss_b_object.setDisabled(True)
  491. self.outline_object.setDisabled(True)
  492. self.e1_object.setDisabled(True)
  493. self.e2_object.setDisabled(True)
  494. self.trace_size_cb.set_value(self.app.defaults["tools_cr_trace_size"])
  495. self.trace_size_entry.set_value(float(self.app.defaults["tools_cr_trace_size_val"]))
  496. self.clearance_copper2copper_cb.set_value(self.app.defaults["tools_cr_c2c"])
  497. self.clearance_copper2copper_entry.set_value(float(self.app.defaults["tools_cr_c2c_val"]))
  498. self.clearance_copper2ol_cb.set_value(self.app.defaults["tools_cr_c2o"])
  499. self.clearance_copper2ol_entry.set_value(float(self.app.defaults["tools_cr_c2o_val"]))
  500. self.clearance_silk2silk_cb.set_value(self.app.defaults["tools_cr_s2s"])
  501. self.clearance_silk2silk_entry.set_value(float(self.app.defaults["tools_cr_s2s_val"]))
  502. self.clearance_silk2sm_cb.set_value(self.app.defaults["tools_cr_s2sm"])
  503. self.clearance_silk2sm_entry.set_value(float(self.app.defaults["tools_cr_s2sm_val"]))
  504. self.clearance_silk2ol_cb.set_value(self.app.defaults["tools_cr_s2o"])
  505. self.clearance_silk2ol_entry.set_value(float(self.app.defaults["tools_cr_s2o_val"]))
  506. self.clearance_sm2sm_cb.set_value(self.app.defaults["tools_cr_sm2sm"])
  507. self.clearance_sm2sm_entry.set_value(float(self.app.defaults["tools_cr_sm2sm_val"]))
  508. self.ring_integrity_cb.set_value(self.app.defaults["tools_cr_ri"])
  509. self.ring_integrity_entry.set_value(float(self.app.defaults["tools_cr_ri_val"]))
  510. self.clearance_d2d_cb.set_value(self.app.defaults["tools_cr_h2h"])
  511. self.clearance_d2d_entry.set_value(float(self.app.defaults["tools_cr_h2h_val"]))
  512. self.drill_size_cb.set_value(self.app.defaults["tools_cr_dh"])
  513. self.drill_size_entry.set_value(float(self.app.defaults["tools_cr_dh_val"]))
  514. self.reset_fields()
  515. @staticmethod
  516. def check_inside_gerber_clearance(gerber_obj, size, rule):
  517. log.debug("RulesCheck.check_inside_gerber_clearance()")
  518. rule_title = rule
  519. violations = list()
  520. obj_violations = dict()
  521. obj_violations.update({
  522. 'name': '',
  523. 'points': list()
  524. })
  525. if not gerber_obj:
  526. return 'Fail. Not enough Gerber objects to check Gerber 2 Gerber clearance'
  527. obj_violations['name'] = gerber_obj['name']
  528. solid_geo = list()
  529. clear_geo = list()
  530. for apid in gerber_obj['apertures']:
  531. if 'geometry' in gerber_obj['apertures'][apid]:
  532. geometry = gerber_obj['apertures'][apid]['geometry']
  533. for geo_el in geometry:
  534. if 'solid' in geo_el and geo_el['solid'] is not None:
  535. solid_geo.append(geo_el['solid'])
  536. if 'clear' in geo_el and geo_el['clear'] is not None:
  537. clear_geo.append(geo_el['clear'])
  538. if clear_geo:
  539. total_geo = list()
  540. for geo_c in clear_geo:
  541. for geo_s in solid_geo:
  542. if geo_c.within(geo_s):
  543. total_geo.append(geo_s.difference(geo_c))
  544. else:
  545. total_geo = MultiPolygon(solid_geo)
  546. total_geo = total_geo.buffer(0.000001)
  547. if isinstance(total_geo, Polygon):
  548. obj_violations['points'] = ['Failed. Only one polygon.']
  549. return rule_title, [obj_violations]
  550. else:
  551. iterations = len(total_geo)
  552. iterations = (iterations * (iterations - 1)) / 2
  553. log.debug("RulesCheck.check_gerber_clearance(). Iterations: %s" % str(iterations))
  554. min_dict = dict()
  555. idx = 1
  556. for geo in total_geo:
  557. for s_geo in total_geo[idx:]:
  558. # minimize the number of distances by not taking into considerations those that are too small
  559. dist = geo.distance(s_geo)
  560. if float(dist) < float(size):
  561. loc_1, loc_2 = nearest_points(geo, s_geo)
  562. dx = loc_1.x - loc_2.x
  563. dy = loc_1.y - loc_2.y
  564. loc = min(loc_1.x, loc_2.x) + (abs(dx) / 2), min(loc_1.y, loc_2.y) + (abs(dy) / 2)
  565. if dist in min_dict:
  566. min_dict[dist].append(loc)
  567. else:
  568. min_dict[dist] = [loc]
  569. idx += 1
  570. points_list = set()
  571. for dist in min_dict.keys():
  572. for location in min_dict[dist]:
  573. points_list.add(location)
  574. obj_violations['points'] = list(points_list)
  575. violations.append(deepcopy(obj_violations))
  576. return rule_title, violations
  577. @staticmethod
  578. def check_gerber_clearance(gerber_list, size, rule):
  579. log.debug("RulesCheck.check_gerber_clearance()")
  580. rule_title = rule
  581. violations = list()
  582. obj_violations = dict()
  583. obj_violations.update({
  584. 'name': '',
  585. 'points': list()
  586. })
  587. if len(gerber_list) == 2:
  588. gerber_1 = gerber_list[0]
  589. # added it so I won't have errors of using before declaring
  590. gerber_2 = dict()
  591. gerber_3 = gerber_list[1]
  592. elif len(gerber_list) == 3:
  593. gerber_1 = gerber_list[0]
  594. gerber_2 = gerber_list[1]
  595. gerber_3 = gerber_list[2]
  596. else:
  597. return 'Fail. Not enough Gerber objects to check Gerber 2 Gerber clearance'
  598. total_geo_grb_1 = list()
  599. for apid in gerber_1['apertures']:
  600. if 'geometry' in gerber_1['apertures'][apid]:
  601. geometry = gerber_1['apertures'][apid]['geometry']
  602. for geo_el in geometry:
  603. if 'solid' in geo_el and geo_el['solid'] is not None:
  604. total_geo_grb_1.append(geo_el['solid'])
  605. if len(gerber_list) == 3:
  606. # add the second Gerber geometry to the first one if it exists
  607. for apid in gerber_2['apertures']:
  608. if 'geometry' in gerber_2['apertures'][apid]:
  609. geometry = gerber_2['apertures'][apid]['geometry']
  610. for geo_el in geometry:
  611. if 'solid' in geo_el and geo_el['solid'] is not None:
  612. total_geo_grb_1.append(geo_el['solid'])
  613. total_geo_grb_3 = list()
  614. for apid in gerber_3['apertures']:
  615. if 'geometry' in gerber_3['apertures'][apid]:
  616. geometry = gerber_3['apertures'][apid]['geometry']
  617. for geo_el in geometry:
  618. if 'solid' in geo_el and geo_el['solid'] is not None:
  619. total_geo_grb_3.append(geo_el['solid'])
  620. total_geo_grb_1 = MultiPolygon(total_geo_grb_1)
  621. total_geo_grb_1 = total_geo_grb_1.buffer(0)
  622. total_geo_grb_3 = MultiPolygon(total_geo_grb_3)
  623. total_geo_grb_3 = total_geo_grb_3.buffer(0)
  624. if isinstance(total_geo_grb_1, Polygon):
  625. len_1 = 1
  626. total_geo_grb_1 = [total_geo_grb_1]
  627. else:
  628. len_1 = len(total_geo_grb_1)
  629. if isinstance(total_geo_grb_3, Polygon):
  630. len_3 = 1
  631. total_geo_grb_3 = [total_geo_grb_3]
  632. else:
  633. len_3 = len(total_geo_grb_3)
  634. iterations = len_1 * len_3
  635. log.debug("RulesCheck.check_gerber_clearance(). Iterations: %s" % str(iterations))
  636. min_dict = dict()
  637. for geo in total_geo_grb_1:
  638. for s_geo in total_geo_grb_3:
  639. # minimize the number of distances by not taking into considerations those that are too small
  640. dist = geo.distance(s_geo)
  641. if float(dist) < float(size):
  642. loc_1, loc_2 = nearest_points(geo, s_geo)
  643. dx = loc_1.x - loc_2.x
  644. dy = loc_1.y - loc_2.y
  645. loc = min(loc_1.x, loc_2.x) + (abs(dx) / 2), min(loc_1.y, loc_2.y) + (abs(dy) / 2)
  646. if dist in min_dict:
  647. min_dict[dist].append(loc)
  648. else:
  649. min_dict[dist] = [loc]
  650. points_list = set()
  651. for dist in min_dict.keys():
  652. for location in min_dict[dist]:
  653. points_list.add(location)
  654. name_list = list()
  655. if gerber_1:
  656. name_list.append(gerber_1['name'])
  657. if gerber_2:
  658. name_list.append(gerber_2['name'])
  659. if gerber_3:
  660. name_list.append(gerber_3['name'])
  661. obj_violations['name'] = name_list
  662. obj_violations['points'] = list(points_list)
  663. violations.append(deepcopy(obj_violations))
  664. return rule_title, violations
  665. @staticmethod
  666. def check_holes_size(elements, size):
  667. log.debug("RulesCheck.check_holes_size()")
  668. rule = _("Hole Size")
  669. violations = list()
  670. obj_violations = dict()
  671. obj_violations.update({
  672. 'name': '',
  673. 'dia': list()
  674. })
  675. for elem in elements:
  676. dia_list = []
  677. name = elem['name']
  678. for tool in elem['tools']:
  679. tool_dia = float('%.*f' % (4, float(elem['tools'][tool]['C'])))
  680. if tool_dia < float(size):
  681. dia_list.append(tool_dia)
  682. obj_violations['name'] = name
  683. obj_violations['dia'] = dia_list
  684. violations.append(deepcopy(obj_violations))
  685. return rule, violations
  686. @staticmethod
  687. def check_holes_clearance(elements, size):
  688. log.debug("RulesCheck.check_holes_clearance()")
  689. rule = _("Hole to Hole Clearance")
  690. violations = list()
  691. obj_violations = dict()
  692. obj_violations.update({
  693. 'name': '',
  694. 'points': list()
  695. })
  696. total_geo = list()
  697. for elem in elements:
  698. for tool in elem['tools']:
  699. if 'solid_geometry' in elem['tools'][tool]:
  700. geometry = elem['tools'][tool]['solid_geometry']
  701. for geo in geometry:
  702. total_geo.append(geo)
  703. min_dict = dict()
  704. idx = 1
  705. for geo in total_geo:
  706. for s_geo in total_geo[idx:]:
  707. # minimize the number of distances by not taking into considerations those that are too small
  708. dist = geo.distance(s_geo)
  709. loc_1, loc_2 = nearest_points(geo, s_geo)
  710. dx = loc_1.x - loc_2.x
  711. dy = loc_1.y - loc_2.y
  712. loc = min(loc_1.x, loc_2.x) + (abs(dx) / 2), min(loc_1.y, loc_2.y) + (abs(dy) / 2)
  713. if dist in min_dict:
  714. min_dict[dist].append(loc)
  715. else:
  716. min_dict[dist] = [loc]
  717. idx += 1
  718. points_list = set()
  719. for dist in min_dict.keys():
  720. if float(dist) < size:
  721. for location in min_dict[dist]:
  722. points_list.add(location)
  723. name_list = list()
  724. for elem in elements:
  725. name_list.append(elem['name'])
  726. obj_violations['name'] = name_list
  727. obj_violations['points'] = list(points_list)
  728. violations.append(deepcopy(obj_violations))
  729. return rule, violations
  730. @staticmethod
  731. def check_traces_size(elements, size):
  732. log.debug("RulesCheck.check_traces_size()")
  733. rule = _("Trace Size")
  734. violations = list()
  735. obj_violations = dict()
  736. obj_violations.update({
  737. 'name': '',
  738. 'size': list(),
  739. 'points': list()
  740. })
  741. for elem in elements:
  742. dia_list = []
  743. points_list = []
  744. name = elem['name']
  745. for apid in elem['apertures']:
  746. try:
  747. tool_dia = float(elem['apertures'][apid]['size'])
  748. if tool_dia < float(size) and tool_dia != 0.0:
  749. dia_list.append(tool_dia)
  750. for geo_el in elem['apertures'][apid]['geometry']:
  751. if 'solid' in geo_el.keys():
  752. geo = geo_el['solid']
  753. pt = geo.representative_point()
  754. points_list.append((pt.x, pt.y))
  755. except Exception as e:
  756. # An exception will be raised for the 'size' key in case of apertures of type AM (macro) which does
  757. # not have the size key
  758. pass
  759. obj_violations['name'] = name
  760. obj_violations['size'] = dia_list
  761. obj_violations['points'] = points_list
  762. violations.append(deepcopy(obj_violations))
  763. return rule, violations
  764. @staticmethod
  765. def check_gerber_annular_ring(obj_list, size, rule):
  766. rule_title = rule
  767. violations = list()
  768. obj_violations = dict()
  769. obj_violations.update({
  770. 'name': '',
  771. 'points': list()
  772. })
  773. # added it so I won't have errors of using before declaring
  774. gerber_obj = dict()
  775. gerber_extra_obj = dict()
  776. exc_obj = dict()
  777. exc_extra_obj = dict()
  778. if len(obj_list) == 2:
  779. gerber_obj = obj_list[0]
  780. exc_obj = obj_list[1]
  781. if 'apertures' in gerber_obj and 'tools' in exc_obj:
  782. pass
  783. else:
  784. return 'Fail. At least one Gerber and one Excellon object is required to check Minimum Annular Ring'
  785. elif len(obj_list) == 3:
  786. o1 = obj_list[0]
  787. o2 = obj_list[1]
  788. o3 = obj_list[2]
  789. if 'apertures' in o1 and 'apertures' in o2:
  790. gerber_obj = o1
  791. gerber_extra_obj = o2
  792. exc_obj = o3
  793. elif 'tools' in o2 and 'tools' in o3:
  794. gerber_obj = o1
  795. exc_obj = o2
  796. exc_extra_obj = o3
  797. elif len(obj_list) == 4:
  798. gerber_obj = obj_list[0]
  799. gerber_extra_obj = obj_list[1]
  800. exc_obj = obj_list[2]
  801. exc_extra_obj = obj_list[3]
  802. else:
  803. return 'Fail. Not enough objects to check Minimum Annular Ring'
  804. total_geo_grb = list()
  805. for apid in gerber_obj['apertures']:
  806. if 'geometry' in gerber_obj['apertures'][apid]:
  807. geometry = gerber_obj['apertures'][apid]['geometry']
  808. for geo_el in geometry:
  809. if 'solid' in geo_el and geo_el['solid'] is not None:
  810. total_geo_grb.append(geo_el['solid'])
  811. if len(obj_list) == 3 and gerber_extra_obj:
  812. # add the second Gerber geometry to the first one if it exists
  813. for apid in gerber_extra_obj['apertures']:
  814. if 'geometry' in gerber_extra_obj['apertures'][apid]:
  815. geometry = gerber_extra_obj['apertures'][apid]['geometry']
  816. for geo_el in geometry:
  817. if 'solid' in geo_el and geo_el['solid'] is not None:
  818. total_geo_grb.append(geo_el['solid'])
  819. total_geo_grb = MultiPolygon(total_geo_grb)
  820. total_geo_grb = total_geo_grb.buffer(0)
  821. total_geo_exc = list()
  822. for tool in exc_obj['tools']:
  823. if 'solid_geometry' in exc_obj['tools'][tool]:
  824. geometry = exc_obj['tools'][tool]['solid_geometry']
  825. for geo in geometry:
  826. total_geo_exc.append(geo)
  827. if len(obj_list) == 3 and exc_extra_obj:
  828. # add the second Excellon geometry to the first one if it exists
  829. for tool in exc_extra_obj['tools']:
  830. if 'solid_geometry' in exc_extra_obj['tools'][tool]:
  831. geometry = exc_extra_obj['tools'][tool]['solid_geometry']
  832. for geo in geometry:
  833. total_geo_exc.append(geo)
  834. if isinstance(total_geo_grb, Polygon):
  835. len_1 = 1
  836. total_geo_grb = [total_geo_grb]
  837. else:
  838. len_1 = len(total_geo_grb)
  839. if isinstance(total_geo_exc, Polygon):
  840. len_2 = 1
  841. total_geo_exc = [total_geo_exc]
  842. else:
  843. len_2 = len(total_geo_exc)
  844. iterations = len_1 * len_2
  845. log.debug("RulesCheck.check_gerber_annular_ring(). Iterations: %s" % str(iterations))
  846. min_dict = dict()
  847. dist = None
  848. for geo in total_geo_grb:
  849. for s_geo in total_geo_exc:
  850. try:
  851. # minimize the number of distances by not taking into considerations those that are too small
  852. dist = abs(geo.exterior.distance(s_geo))
  853. except Exception as e:
  854. log.debug("RulesCheck.check_gerber_annular_ring() --> %s" % str(e))
  855. if dist > 0:
  856. if float(dist) < float(size):
  857. loc_1, loc_2 = nearest_points(geo.exterior, s_geo)
  858. dx = loc_1.x - loc_2.x
  859. dy = loc_1.y - loc_2.y
  860. loc = min(loc_1.x, loc_2.x) + (abs(dx) / 2), min(loc_1.y, loc_2.y) + (abs(dy) / 2)
  861. if dist in min_dict:
  862. min_dict[dist].append(loc)
  863. else:
  864. min_dict[dist] = [loc]
  865. else:
  866. if dist in min_dict:
  867. min_dict[dist].append(s_geo.representative_point())
  868. else:
  869. min_dict[dist] = [s_geo.representative_point()]
  870. points_list = list()
  871. for dist in min_dict.keys():
  872. for location in min_dict[dist]:
  873. points_list.append(location)
  874. name_list = list()
  875. try:
  876. if gerber_obj:
  877. name_list.append(gerber_obj['name'])
  878. except KeyError:
  879. pass
  880. try:
  881. if gerber_extra_obj:
  882. name_list.append(gerber_extra_obj['name'])
  883. except KeyError:
  884. pass
  885. try:
  886. if exc_obj:
  887. name_list.append(exc_obj['name'])
  888. except KeyError:
  889. pass
  890. try:
  891. if exc_extra_obj:
  892. name_list.append(exc_extra_obj['name'])
  893. except KeyError:
  894. pass
  895. obj_violations['name'] = name_list
  896. obj_violations['points'] = points_list
  897. violations.append(deepcopy(obj_violations))
  898. return rule_title, violations
  899. def execute(self):
  900. self.results = list()
  901. log.debug("RuleCheck() executing")
  902. def worker_job(app_obj):
  903. self.app.proc_container.new(_("Working..."))
  904. # RULE: Check Trace Size
  905. if self.trace_size_cb.get_value():
  906. copper_list = list()
  907. copper_name_1 = self.copper_t_object.currentText()
  908. if copper_name_1 is not '' and self.copper_t_cb.get_value():
  909. elem_dict = dict()
  910. elem_dict['name'] = deepcopy(copper_name_1)
  911. elem_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_name_1).apertures)
  912. copper_list.append(elem_dict)
  913. copper_name_2 = self.copper_b_object.currentText()
  914. if copper_name_2 is not '' and self.copper_b_cb.get_value():
  915. elem_dict = dict()
  916. elem_dict['name'] = deepcopy(copper_name_2)
  917. elem_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_name_2).apertures)
  918. copper_list.append(elem_dict)
  919. trace_size = float(self.trace_size_entry.get_value())
  920. self.results.append(self.pool.apply_async(self.check_traces_size, args=(copper_list, trace_size)))
  921. # RULE: Check Copper to Copper Clearance
  922. if self.clearance_copper2copper_cb.get_value():
  923. try:
  924. copper_copper_clearance = float(self.clearance_copper2copper_entry.get_value())
  925. except Exception as e:
  926. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  927. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  928. _("Copper to Copper clearance"),
  929. _("Value is not valid.")))
  930. return
  931. if self.copper_t_cb.get_value():
  932. copper_t_obj = self.copper_t_object.currentText()
  933. copper_t_dict = dict()
  934. if copper_t_obj is not '':
  935. copper_t_dict['name'] = deepcopy(copper_t_obj)
  936. copper_t_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_t_obj).apertures)
  937. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  938. args=(copper_t_dict,
  939. copper_copper_clearance,
  940. _("TOP -> Copper to Copper clearance"))))
  941. if self.copper_b_cb.get_value():
  942. copper_b_obj = self.copper_b_object.currentText()
  943. copper_b_dict = dict()
  944. if copper_b_obj is not '':
  945. copper_b_dict['name'] = deepcopy(copper_b_obj)
  946. copper_b_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_b_obj).apertures)
  947. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  948. args=(copper_b_dict,
  949. copper_copper_clearance,
  950. _("BOTTOM -> Copper to Copper clearance"))))
  951. if self.copper_t_cb.get_value() is False and self.copper_b_cb.get_value() is False:
  952. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  953. _("Copper to Copper clearance"),
  954. _("At least one Gerber object has to be selected for this rule but none is selected.")))
  955. return
  956. # RULE: Check Copper to Outline Clearance
  957. if self.clearance_copper2ol_cb.get_value() and self.out_cb.get_value():
  958. top_dict = dict()
  959. bottom_dict = dict()
  960. outline_dict = dict()
  961. copper_top = self.copper_t_object.currentText()
  962. if copper_top is not '' and self.copper_t_cb.get_value():
  963. top_dict['name'] = deepcopy(copper_top)
  964. top_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_top).apertures)
  965. copper_bottom = self.copper_b_object.currentText()
  966. if copper_bottom is not '' and self.copper_b_cb.get_value():
  967. bottom_dict['name'] = deepcopy(copper_bottom)
  968. bottom_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_bottom).apertures)
  969. copper_outline = self.outline_object.currentText()
  970. if copper_outline is not '' and self.out_cb.get_value():
  971. outline_dict['name'] = deepcopy(copper_outline)
  972. outline_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_outline).apertures)
  973. try:
  974. copper_outline_clearance = float(self.clearance_copper2ol_entry.get_value())
  975. except Exception as e:
  976. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  977. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  978. _("Copper to Outline clearance"),
  979. _("Value is not valid.")))
  980. return
  981. if not top_dict and not bottom_dict or not outline_dict:
  982. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  983. _("Copper to Outline clearance"),
  984. _("One of the copper Gerber objects or the Outline Gerber object is not valid.")))
  985. return
  986. objs = []
  987. if top_dict:
  988. objs.append(top_dict)
  989. if bottom_dict:
  990. objs.append(bottom_dict)
  991. if outline_dict:
  992. objs.append(outline_dict)
  993. else:
  994. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  995. _("Copper to Outline clearance"),
  996. _("Outline Gerber object presence is mandatory for this rule but it is not selected.")))
  997. return
  998. self.results.append(self.pool.apply_async(self.check_gerber_clearance,
  999. args=(objs,
  1000. copper_outline_clearance,
  1001. _("Copper to Outline clearance"))))
  1002. # RULE: Check Silk to Silk Clearance
  1003. if self.clearance_silk2silk_cb.get_value():
  1004. silk_dict = dict()
  1005. try:
  1006. silk_silk_clearance = float(self.clearance_silk2silk_entry.get_value())
  1007. except Exception as e:
  1008. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  1009. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1010. _("Silk to Silk clearance"),
  1011. _("Value is not valid.")))
  1012. return
  1013. if self.ss_t_cb.get_value():
  1014. silk_obj = self.ss_t_object.currentText()
  1015. if silk_obj is not '':
  1016. silk_dict['name'] = deepcopy(silk_obj)
  1017. silk_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_obj).apertures)
  1018. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  1019. args=(silk_dict,
  1020. silk_silk_clearance,
  1021. _("TOP -> Silk to Silk clearance"))))
  1022. if self.ss_b_cb.get_value():
  1023. silk_obj = self.ss_b_object.currentText()
  1024. if silk_obj is not '':
  1025. silk_dict['name'] = deepcopy(silk_obj)
  1026. silk_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_obj).apertures)
  1027. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  1028. args=(silk_dict,
  1029. silk_silk_clearance,
  1030. _("BOTTOM -> Silk to Silk clearance"))))
  1031. if self.ss_t_cb.get_value() is False and self.ss_b_cb.get_value() is False:
  1032. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1033. _("Silk to Silk clearance"),
  1034. _("At least one Gerber object has to be selected for this rule but none is selected.")))
  1035. return
  1036. # RULE: Check Silk to Solder Mask Clearance
  1037. if self.clearance_silk2sm_cb.get_value():
  1038. silk_t_dict = dict()
  1039. sm_t_dict = dict()
  1040. silk_b_dict = dict()
  1041. sm_b_dict = dict()
  1042. top_ss = False
  1043. bottom_ss = False
  1044. top_sm = False
  1045. bottom_sm = False
  1046. silk_top = self.ss_t_object.currentText()
  1047. if silk_top is not '' and self.ss_t_cb.get_value():
  1048. silk_t_dict['name'] = deepcopy(silk_top)
  1049. silk_t_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_top).apertures)
  1050. top_ss = True
  1051. silk_bottom = self.ss_b_object.currentText()
  1052. if silk_bottom is not '' and self.ss_b_cb.get_value():
  1053. silk_b_dict['name'] = deepcopy(silk_bottom)
  1054. silk_b_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_bottom).apertures)
  1055. bottom_ss = True
  1056. sm_top = self.sm_t_object.currentText()
  1057. if sm_top is not '' and self.sm_t_cb.get_value():
  1058. sm_t_dict['name'] = deepcopy(sm_top)
  1059. sm_t_dict['apertures'] = deepcopy(self.app.collection.get_by_name(sm_top).apertures)
  1060. top_sm = True
  1061. sm_bottom = self.sm_b_object.currentText()
  1062. if sm_bottom is not '' and self.sm_b_cb.get_value():
  1063. sm_b_dict['name'] = deepcopy(sm_bottom)
  1064. sm_b_dict['apertures'] = deepcopy(self.app.collection.get_by_name(sm_bottom).apertures)
  1065. bottom_sm = True
  1066. try:
  1067. silk_sm_clearance = float(self.clearance_silk2sm_entry.get_value())
  1068. except Exception as e:
  1069. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  1070. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1071. _("Silk to Solder Mask Clearance"),
  1072. _("Value is not valid.")))
  1073. return
  1074. if (not silk_t_dict and not silk_b_dict) or (not sm_t_dict and not sm_b_dict):
  1075. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1076. _("Silk to Solder Mask Clearance"),
  1077. _("One or more of the Gerber objects is not valid.")))
  1078. return
  1079. if top_ss is True and top_sm is True:
  1080. objs = [silk_t_dict, sm_t_dict]
  1081. self.results.append(self.pool.apply_async(self.check_gerber_clearance,
  1082. args=(objs,
  1083. silk_sm_clearance,
  1084. _("TOP -> Silk to Solder Mask Clearance"))))
  1085. elif bottom_ss is True and bottom_sm is True:
  1086. objs = [silk_b_dict, sm_b_dict]
  1087. self.results.append(self.pool.apply_async(self.check_gerber_clearance,
  1088. args=(objs,
  1089. silk_sm_clearance,
  1090. _("BOTTOM -> Silk to Solder Mask Clearance"))))
  1091. else:
  1092. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1093. _("Silk to Solder Mask Clearance"),
  1094. _("Both Silk and Solder Mask Gerber objects has to be either both Top or both Bottom.")))
  1095. return
  1096. # RULE: Check Silk to Outline Clearance
  1097. if self.clearance_silk2ol_cb.get_value():
  1098. top_dict = dict()
  1099. bottom_dict = dict()
  1100. outline_dict = dict()
  1101. silk_top = self.ss_t_object.currentText()
  1102. if silk_top is not '' and self.ss_t_cb.get_value():
  1103. top_dict['name'] = deepcopy(silk_top)
  1104. top_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_top).apertures)
  1105. silk_bottom = self.ss_b_object.currentText()
  1106. if silk_bottom is not '' and self.ss_b_cb.get_value():
  1107. bottom_dict['name'] = deepcopy(silk_bottom)
  1108. bottom_dict['apertures'] = deepcopy(self.app.collection.get_by_name(silk_bottom).apertures)
  1109. copper_outline = self.outline_object.currentText()
  1110. if copper_outline is not '' and self.out_cb.get_value():
  1111. outline_dict['name'] = deepcopy(copper_outline)
  1112. outline_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_outline).apertures)
  1113. try:
  1114. copper_outline_clearance = float(self.clearance_copper2ol_entry.get_value())
  1115. except Exception as e:
  1116. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  1117. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1118. _("Silk to Outline Clearance"),
  1119. _("Value is not valid.")))
  1120. return
  1121. if not top_dict and not bottom_dict or not outline_dict:
  1122. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1123. _("Silk to Outline Clearance"),
  1124. _("One of the Silk Gerber objects or the Outline Gerber object is not valid.")))
  1125. return
  1126. objs = []
  1127. if top_dict:
  1128. objs.append(top_dict)
  1129. if bottom_dict:
  1130. objs.append(bottom_dict)
  1131. if outline_dict:
  1132. objs.append(outline_dict)
  1133. else:
  1134. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1135. _("Silk to Outline Clearance"),
  1136. _("Outline Gerber object presence is mandatory for this rule but it is not selected.")))
  1137. return
  1138. self.results.append(self.pool.apply_async(self.check_gerber_clearance,
  1139. args=(objs,
  1140. copper_outline_clearance,
  1141. _("Silk to Outline Clearance"))))
  1142. # RULE: Check Minimum Solder Mask Sliver
  1143. if self.clearance_silk2silk_cb.get_value():
  1144. sm_dict = dict()
  1145. try:
  1146. sm_sm_clearance = float(self.clearance_sm2sm_entry.get_value())
  1147. except Exception as e:
  1148. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  1149. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1150. _("Minimum Solder Mask Sliver"),
  1151. _("Value is not valid.")))
  1152. return
  1153. if self.sm_t_cb.get_value():
  1154. solder_obj = self.sm_t_object.currentText()
  1155. if solder_obj is not '':
  1156. sm_dict['name'] = deepcopy(solder_obj)
  1157. sm_dict['apertures'] = deepcopy(self.app.collection.get_by_name(solder_obj).apertures)
  1158. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  1159. args=(sm_dict,
  1160. sm_sm_clearance,
  1161. _("TOP -> Minimum Solder Mask Sliver"))))
  1162. if self.sm_b_cb.get_value():
  1163. solder_obj = self.sm_b_object.currentText()
  1164. if solder_obj is not '':
  1165. sm_dict['name'] = deepcopy(solder_obj)
  1166. sm_dict['apertures'] = deepcopy(self.app.collection.get_by_name(solder_obj).apertures)
  1167. self.results.append(self.pool.apply_async(self.check_inside_gerber_clearance,
  1168. args=(sm_dict,
  1169. sm_sm_clearance,
  1170. _("BOTTOM -> Minimum Solder Mask Sliver"))))
  1171. if self.sm_t_cb.get_value() is False and self.sm_b_cb.get_value() is False:
  1172. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1173. _("Minimum Solder Mask Sliver"),
  1174. _("At least one Gerber object has to be selected for this rule but none is selected.")))
  1175. return
  1176. # RULE: Check Minimum Annular Ring
  1177. if self.ring_integrity_cb.get_value():
  1178. top_dict = dict()
  1179. bottom_dict = dict()
  1180. exc_1_dict = dict()
  1181. exc_2_dict = dict()
  1182. copper_top = self.copper_t_object.currentText()
  1183. if copper_top is not '' and self.copper_t_cb.get_value():
  1184. top_dict['name'] = deepcopy(copper_top)
  1185. top_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_top).apertures)
  1186. copper_bottom = self.copper_b_object.currentText()
  1187. if copper_bottom is not '' and self.copper_b_cb.get_value():
  1188. bottom_dict['name'] = deepcopy(copper_bottom)
  1189. bottom_dict['apertures'] = deepcopy(self.app.collection.get_by_name(copper_bottom).apertures)
  1190. excellon_1 = self.e1_object.currentText()
  1191. if excellon_1 is not '' and self.e1_cb.get_value():
  1192. exc_1_dict['name'] = deepcopy(excellon_1)
  1193. exc_1_dict['tools'] = deepcopy(
  1194. self.app.collection.get_by_name(excellon_1).tools)
  1195. excellon_2 = self.e2_object.currentText()
  1196. if excellon_2 is not '' and self.e2_cb.get_value():
  1197. exc_2_dict['name'] = deepcopy(excellon_2)
  1198. exc_2_dict['tools'] = deepcopy(
  1199. self.app.collection.get_by_name(excellon_2).tools)
  1200. try:
  1201. ring_val = float(self.ring_integrity_entry.get_value())
  1202. except Exception as e:
  1203. log.debug("RulesCheck.execute.worker_job() --> %s" % str(e))
  1204. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1205. _("Minimum Annular Ring"),
  1206. _("Value is not valid.")))
  1207. return
  1208. if (not top_dict and not bottom_dict) or (not exc_1_dict and not exc_2_dict):
  1209. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1210. _("Minimum Annular Ring"),
  1211. _("One of the Copper Gerber objects or the Excellon objects is not valid.")))
  1212. return
  1213. objs = []
  1214. if top_dict:
  1215. objs.append(top_dict)
  1216. elif bottom_dict:
  1217. objs.append(bottom_dict)
  1218. if exc_1_dict:
  1219. objs.append(exc_1_dict)
  1220. elif exc_2_dict:
  1221. objs.append(exc_2_dict)
  1222. else:
  1223. self.app.inform.emit('[ERROR_NOTCL] %s. %s' % (
  1224. _("Minimum Annular Ring"),
  1225. _("Excellon object presence is mandatory for this rule but none is selected.")))
  1226. return
  1227. self.results.append(self.pool.apply_async(self.check_gerber_annular_ring,
  1228. args=(objs,
  1229. ring_val,
  1230. _("Minimum Annular Ring"))))
  1231. # RULE: Check Hole to Hole Clearance
  1232. if self.clearance_d2d_cb.get_value():
  1233. exc_list = list()
  1234. exc_name_1 = self.e1_object.currentText()
  1235. if exc_name_1 is not '' and self.e1_cb.get_value():
  1236. elem_dict = dict()
  1237. elem_dict['name'] = deepcopy(exc_name_1)
  1238. elem_dict['tools'] = deepcopy(self.app.collection.get_by_name(exc_name_1).tools)
  1239. exc_list.append(elem_dict)
  1240. exc_name_2 = self.e2_object.currentText()
  1241. if exc_name_2 is not '' and self.e2_cb.get_value():
  1242. elem_dict = dict()
  1243. elem_dict['name'] = deepcopy(exc_name_2)
  1244. elem_dict['tools'] = deepcopy(self.app.collection.get_by_name(exc_name_2).tools)
  1245. exc_list.append(elem_dict)
  1246. hole_clearance = float(self.clearance_d2d_entry.get_value())
  1247. self.results.append(self.pool.apply_async(self.check_holes_clearance, args=(exc_list, hole_clearance)))
  1248. # RULE: Check Holes Size
  1249. if self.drill_size_cb.get_value():
  1250. exc_list = list()
  1251. exc_name_1 = self.e1_object.currentText()
  1252. if exc_name_1 is not '' and self.e1_cb.get_value():
  1253. elem_dict = dict()
  1254. elem_dict['name'] = deepcopy(exc_name_1)
  1255. elem_dict['tools'] = deepcopy(self.app.collection.get_by_name(exc_name_1).tools)
  1256. exc_list.append(elem_dict)
  1257. exc_name_2 = self.e2_object.currentText()
  1258. if exc_name_2 is not '' and self.e2_cb.get_value():
  1259. elem_dict = dict()
  1260. elem_dict['name'] = deepcopy(exc_name_2)
  1261. elem_dict['tools'] = deepcopy(self.app.collection.get_by_name(exc_name_2).tools)
  1262. exc_list.append(elem_dict)
  1263. drill_size = float(self.drill_size_entry.get_value())
  1264. self.results.append(self.pool.apply_async(self.check_holes_size, args=(exc_list, drill_size)))
  1265. output = list()
  1266. for p in self.results:
  1267. output.append(p.get())
  1268. self.tool_finished.emit(output)
  1269. log.debug("RuleCheck() finished")
  1270. self.app.worker_task.emit({'fcn': worker_job, 'params': [self.app]})
  1271. def on_tool_finished(self, res):
  1272. def init(new_obj, app_obj):
  1273. txt = ''
  1274. for el in res:
  1275. txt += '<b>RULE NAME:</b>&nbsp;&nbsp;&nbsp;&nbsp;%s<BR>' % str(el[0]).upper()
  1276. if isinstance(el[1][0]['name'], list):
  1277. for name in el[1][0]['name']:
  1278. txt += 'File name: %s<BR>' % str(name)
  1279. else:
  1280. txt += 'File name: %s<BR>' % str(el[1][0]['name'])
  1281. point_txt = ''
  1282. try:
  1283. if el[1][0]['points']:
  1284. txt += '{title}: <span style="color:{color};background-color:{h_color}"' \
  1285. '>&nbsp;{status} </span>.<BR>'.format(title=_("STATUS"),
  1286. h_color='red',
  1287. color='white',
  1288. status=_("FAILED"))
  1289. if 'Failed' in el[1][0]['points'][0]:
  1290. point_txt = el[1][0]['points'][0]
  1291. else:
  1292. for pt in el[1][0]['points']:
  1293. point_txt += '(%.*f, %.*f)' % (self.decimals, float(pt[0]), self.decimals, float(pt[1]))
  1294. point_txt += ', '
  1295. txt += 'Violations: %s<BR>' % str(point_txt)
  1296. else:
  1297. txt += '{title}: <span style="color:{color};background-color:{h_color}"' \
  1298. '>&nbsp;{status} </span>.<BR>'.format(title=_("STATUS"),
  1299. h_color='green',
  1300. color='white',
  1301. status=_("PASSED"))
  1302. txt += '%s<BR>' % _("Violations: There are no violations for the current rule.")
  1303. except KeyError:
  1304. pass
  1305. try:
  1306. if el[1][0]['dia']:
  1307. txt += '{title}: <span style="color:{color};background-color:{h_color}"' \
  1308. '>&nbsp;{status} </span>.<BR>'.format(title=_("STATUS"),
  1309. h_color='red',
  1310. color='white',
  1311. status=_("FAILED"))
  1312. if 'Failed' in el[1][0]['dia']:
  1313. point_txt = el[1][0]['dia']
  1314. else:
  1315. for pt in el[1][0]['dia']:
  1316. point_txt += '%.*f' % (self.decimals, float(pt))
  1317. point_txt += ', '
  1318. txt += 'Violations: %s<BR>' % str(point_txt)
  1319. else:
  1320. txt += '{title}: <span style="color:{color};background-color:{h_color}"' \
  1321. '>&nbsp;{status} </span>.<BR>'.format(title=_("STATUS"),
  1322. h_color='green',
  1323. color='white',
  1324. status=_("PASSED"))
  1325. txt += '%s<BR>' % _("Violations: There are no violations for the current rule.")
  1326. except KeyError:
  1327. pass
  1328. txt += '<BR><BR>'
  1329. new_obj.source_file = txt
  1330. new_obj.read_only = True
  1331. self.app.new_object('document', name='Rules Check results', initialize=init, plot=False)
  1332. def reset_fields(self):
  1333. # self.object_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  1334. # self.box_combo.setRootModelIndex(self.app.collection.index(0, 0, QtCore.QModelIndex()))
  1335. pass