ISEL_CNC.py 7.8 KB

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  1. # ##########################################################
  2. # FlatCAM: 2D Post-processing for Manufacturing #
  3. # http://flatcam.org #
  4. # File Author: Matthieu Berthomé #
  5. # Date: 5/26/2017 #
  6. # MIT Licence #
  7. # ##########################################################
  8. from appPreProcessor import *
  9. class ISEL_CNC(PreProc):
  10. include_header = True
  11. coordinate_format = "%.*f"
  12. feedrate_format = '%.*f'
  13. def start_code(self, p):
  14. units = ' ' + str(p['units']).lower()
  15. coords_xy = p['xy_toolchange']
  16. end_coords_xy = p['xy_end']
  17. gcode = '(This preprocessor is used with a ISEL CNC router.)\n\n'
  18. xmin = '%.*f' % (p.coords_decimals, p['options']['xmin'])
  19. xmax = '%.*f' % (p.coords_decimals, p['options']['xmax'])
  20. ymin = '%.*f' % (p.coords_decimals, p['options']['ymin'])
  21. ymax = '%.*f' % (p.coords_decimals, p['options']['ymax'])
  22. if str(p['options']['type']) == 'Geometry':
  23. gcode += '(TOOL DIAMETER: ' + str(p['options']['tool_dia']) + units + ')\n'
  24. gcode += '(Feedrate_XY: ' + str(p['feedrate']) + units + '/min' + ')\n'
  25. gcode += '(Feedrate_Z: ' + str(p['z_feedrate']) + units + '/min' + ')\n'
  26. gcode += '(Feedrate rapids ' + str(p['feedrate_rapid']) + units + '/min' + ')\n' + '\n'
  27. gcode += '(Z_Cut: ' + str(p['z_cut']) + units + ')\n'
  28. if p['multidepth'] is True:
  29. gcode += '(DepthPerCut: ' + str(p['z_depthpercut']) + units + ' <=>' + \
  30. str(math.ceil(abs(p['z_cut']) / p['z_depthpercut'])) + ' passes' + ')\n'
  31. gcode += '(Z_Move: ' + str(p['z_move']) + units + ')\n'
  32. elif str(p['options']['type']) == 'Excellon' and p['use_ui'] is True:
  33. gcode += '\n(TOOLS DIAMETER: )\n'
  34. for tool, val in p['exc_tools'].items():
  35. gcode += '(Tool: %s -> ' % str(tool) + 'Dia: %s' % str(val["tooldia"]) + ')\n'
  36. gcode += '\n(FEEDRATE Z: )\n'
  37. for tool, val in p['exc_tools'].items():
  38. gcode += '(Tool: %s -> ' % str(tool) + 'Feedrate: %s' % \
  39. str(val['data']["tools_drill_feedrate_z"]) + ')\n'
  40. gcode += '\n(FEEDRATE RAPIDS: )\n'
  41. for tool, val in p['exc_tools'].items():
  42. gcode += '(Tool: %s -> ' % str(tool) + 'Feedrate Rapids: %s' % \
  43. str(val['data']["tools_drill_feedrate_rapid"]) + ')\n'
  44. gcode += '\n(Z_CUT: )\n'
  45. for tool, val in p['exc_tools'].items():
  46. gcode += '(Tool: %s -> ' % str(tool) + 'Z_Cut: %s' % str(val['data']["tools_drill_cutz"]) + ')\n'
  47. gcode += '\n(Tools Offset: )\n'
  48. for tool, val in p['exc_cnc_tools'].items():
  49. gcode += '(Tool: %s -> ' % str(val['tool']) + 'Offset Z: %s' % \
  50. str(val['data']["tools_drill_offset"]) + ')\n'
  51. if p['multidepth'] is True:
  52. gcode += '\n(DEPTH_PER_CUT: )\n'
  53. for tool, val in p['exc_tools'].items():
  54. gcode += '(Tool: %s -> ' % str(tool) + 'DeptPerCut: %s' % \
  55. str(val['data']["tools_drill_depthperpass"]) + ')\n'
  56. gcode += '\n(Z_MOVE: )\n'
  57. for tool, val in p['exc_tools'].items():
  58. gcode += '(Tool: %s -> ' % str(tool) + 'Z_Move: %s' % str(val['data']["tools_drill_travelz"]) + ')\n'
  59. gcode += '\n'
  60. if p['toolchange'] is True:
  61. gcode += '(Z Toolchange: ' + str(p['z_toolchange']) + units + ')\n'
  62. if coords_xy is not None:
  63. gcode += '(X,Y Toolchange: ' + "%.*f, %.*f" % (p.decimals, coords_xy[0],
  64. p.decimals, coords_xy[1]) + units + ')\n'
  65. else:
  66. gcode += '(X,Y Toolchange: ' + "None" + units + ')\n'
  67. gcode += '(Z Start: ' + str(p['startz']) + units + ')\n'
  68. gcode += '(Z End: ' + str(p['z_end']) + units + ')\n'
  69. if end_coords_xy is not None:
  70. gcode += '(X,Y End: ' + "%.*f, %.*f" % (p.decimals, end_coords_xy[0],
  71. p.decimals, end_coords_xy[1]) + units + ')\n'
  72. else:
  73. gcode += '(X,Y End: ' + "None" + units + ')\n'
  74. gcode += '(Steps per circle: ' + str(p['steps_per_circle']) + ')\n'
  75. gcode += '(Steps per circle: ' + str(p['steps_per_circle']) + ')\n'
  76. if str(p['options']['type']) == 'Excellon' or str(p['options']['type']) == 'Excellon Geometry':
  77. gcode += '(Preprocessor Excellon: ' + str(p['pp_excellon_name']) + ')\n' + '\n'
  78. else:
  79. gcode += '(Preprocessor Geometry: ' + str(p['pp_geometry_name']) + ')\n' + '\n'
  80. gcode += '(X range: ' + '{: >9s}'.format(xmin) + ' ... ' + '{: >9s}'.format(xmax) + ' ' + units + ')\n'
  81. gcode += '(Y range: ' + '{: >9s}'.format(ymin) + ' ... ' + '{: >9s}'.format(ymax) + ' ' + units + ')\n\n'
  82. gcode += '(Spindle Speed: %s RPM)\n' % str(p['spindlespeed'])
  83. gcode += 'G71\n'
  84. gcode += 'G90\n'
  85. gcode += 'G94\n'
  86. return gcode
  87. def startz_code(self, p):
  88. if p.startz is not None:
  89. return 'G00 Z' + self.coordinate_format % (p.coords_decimals, p.startz)
  90. else:
  91. return ''
  92. def lift_code(self, p):
  93. return 'G00 Z' + self.coordinate_format % (p.coords_decimals, p.z_move)
  94. def down_code(self, p):
  95. return 'G01 Z' + self.coordinate_format % (p.coords_decimals, p.z_cut)
  96. def toolchange_code(self, p):
  97. f_plunge = p.f_plunge
  98. no_drills = 1
  99. toolC_formatted = '%.*f' % (p.decimals, p.toolC)
  100. if str(p['options']['type']) == 'Excellon':
  101. for i in p['options']['Tools_in_use']:
  102. if i[0] == p.tool:
  103. no_drills = i[2]
  104. gcode = """
  105. M05
  106. T{tool}
  107. M06
  108. (MSG, Change to Tool Dia = {toolC} ||| Total drills for tool T{tool} = {t_drills})
  109. M01""".format(tool=int(p.tool), t_drills=no_drills, toolC=toolC_formatted)
  110. if f_plunge is True:
  111. gcode += '\nG00 Z%.*f' % (p.coords_decimals, p.z_move)
  112. return gcode
  113. else:
  114. gcode = """
  115. M05
  116. T{tool}
  117. M06
  118. (MSG, Change to Tool Dia = {toolC})
  119. M01""".format(tool=int(p.tool), toolC=toolC_formatted)
  120. if f_plunge is True:
  121. gcode += '\nG00 Z%.*f' % (p.coords_decimals, p.z_move)
  122. return gcode
  123. def up_to_zero_code(self, p):
  124. return 'G01 Z0'
  125. def position_code(self, p):
  126. return ('X' + self.coordinate_format + ' Y' + self.coordinate_format) % \
  127. (p.coords_decimals, p.x, p.coords_decimals, p.y)
  128. def rapid_code(self, p):
  129. return ('G00 ' + self.position_code(p)).format(**p)
  130. def linear_code(self, p):
  131. return ('G01 ' + self.position_code(p)).format(**p)
  132. def end_code(self, p):
  133. coords_xy = p['xy_end']
  134. gcode = ('G00 Z' + self.feedrate_format % (p.fr_decimals, p.z_end) + "\n")
  135. if coords_xy and coords_xy != '':
  136. gcode += 'G00 X{x} Y{y}'.format(x=coords_xy[0], y=coords_xy[1]) + "\n"
  137. return gcode
  138. def feedrate_code(self, p):
  139. return 'G01 F' + str(self.feedrate_format % (p.fr_decimals, p.feedrate))
  140. def z_feedrate_code(self, p):
  141. return 'G01 F' + str(self.feedrate_format % (p.fr_decimals, p.z_feedrate))
  142. def spindle_code(self, p):
  143. sdir = {'CW': 'M03', 'CCW': 'M04'}[p.spindledir]
  144. if p.spindlespeed:
  145. return '%s S%s' % (sdir, str(p.spindlespeed))
  146. else:
  147. return sdir
  148. def dwell_code(self, p):
  149. if p.dwelltime:
  150. return 'G4 P' + str(p.dwelltime)
  151. def spindle_stop_code(self, p):
  152. return 'M05'