475 lines
13 KiB
Python
475 lines
13 KiB
Python
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import os
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import re
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from sys import platform
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from configtool.data import (defineValueFormat,
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defineBoolFormat, defineHeaterFormat,
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reHelpTextStart, reHelpTextEnd,
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reStartSensors, reEndSensors, reStartHeaters,
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reEndHeaters, reCandHeatPins, reCandThermPins,
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reCandProcessors, reCandCPUClocks, reFloatAttr,
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reDefine, reDefineBL, reDefQS, reDefQSm,
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reDefQSm2, reDefBool, reDefBoolBL, reDefHT,
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reDefTS, reDefTT, reSensor, reHeater3, reHeater4,
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reTempTable4, reTempTable7)
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class Board:
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def __init__(self, settings):
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self.settings = settings
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self.configFile = None
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self.cfgDir = os.path.join(self.settings.folder, "configtool")
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self.cfgValues = {}
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self.heaters = []
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self.sensors = []
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self.candHeatPins = []
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self.candThermPins = []
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def getValues(self):
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vars = [("sensor." + x[0], x[1:]) for x in self.sensors]
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vars += [("heater." + x[0], x[1:]) for x in self.heaters]
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vars += [(x, self.cfgValues[x]) for x in self.cfgValues]
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return dict(vars)
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def getCPUInfo(self):
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vF_CPU = None
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if 'F_CPU' in self.cfgValues.keys():
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vF_CPU = self.cfgValues['F_CPU'][0]
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vCPU = None
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if 'CPU' in self.cfgValues.keys():
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vCPU = self.cfgValues['CPU'][0]
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return vF_CPU, vCPU
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def hasData(self):
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return (self.configFile != None)
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def getFileName(self):
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return self.configFile
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def loadConfigFile(self, fn):
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cfgFn = os.path.join(self.cfgDir, "board.generic.h")
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try:
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self.cfgBuffer = list(open(cfgFn))
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except:
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return False, cfgFn
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try:
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self.userBuffer = list(open(fn))
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except:
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return False, fn
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self.configFile = fn
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self.sensors = []
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self.heaters = []
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self.candHeatPins = []
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self.candThermPins = []
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self.candProcessors = []
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self.candClocks = []
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self.tempTables = {}
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gatheringHelpText = False
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helpTextString = ""
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helpKey = None
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self.cfgValues = {}
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self.cfgNames = []
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self.helpText = {}
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prevLines = ""
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for ln in self.cfgBuffer:
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if gatheringHelpText:
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if reHelpTextEnd.match(ln):
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gatheringHelpText = False
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helpTextString = helpTextString.strip()
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# Keep paragraphs with double-newline.
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helpTextString = helpTextString.replace("\n\n ", "\n\n")
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# Keep indented lines, typically a list.
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helpTextString = helpTextString.replace("\n\n ", "\n\n ")
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helpTextString = helpTextString.replace("\n ", "\n\n ")
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# Remove all other newlines and indents.
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helpTextString = helpTextString.replace("\n ", " ")
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hk = helpKey.split()
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for k in hk:
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self.helpText[k] = helpTextString
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helpTextString = ""
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helpKey = None
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continue
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else:
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helpTextString += ln
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continue
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m = reHelpTextStart.match(ln)
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if m:
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t = m.groups()
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gatheringHelpText = True
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helpKey = t[0]
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continue
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if ln.rstrip().endswith("\\"):
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prevLines += ln.rstrip()[:-1]
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continue
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if prevLines != "":
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ln = prevLines + ln
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prevLines = ""
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self.parseDefineName(ln)
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self.parseDefineValue(ln)
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# Set all boolean generic configuration items to False, so items not yet
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# existing in the user configuration default to disabled.
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#
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# An alternative would be to allow both, enabled and disabled booleans
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# in board.generic.h, which then allows to set an appropriate default for
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# each #define. This was tried but conflicted with config file writing code
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# below (disabled #defines were reset to the default, even when set
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# differently in the GUI), so this would need adjustment, too.
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for k in self.cfgValues.keys():
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if isinstance(self.cfgValues[k], bool):
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self.cfgValues[k] = False
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# Read the user configuration. This usually overwrites all of the items
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# read above, but not those missing in the user configuration, e.g.
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# when reading an older config.
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gatheringHelpText = False
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prevLines = ""
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for ln in self.userBuffer:
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if gatheringHelpText:
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if reHelpTextEnd.match(ln):
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gatheringHelpText = False
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continue
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if reHelpTextStart.match(ln):
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gatheringHelpText = True
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continue
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if ln.rstrip().endswith("\\"):
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prevLines += ln.rstrip()[:-1]
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continue
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if prevLines != "":
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ln = prevLines + ln
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prevLines = ""
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if self.parseCandidateValues(ln):
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continue
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if self.parseDefineValue(ln):
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continue
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m = reDefTS.search(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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s = self.parseSensor(t[0])
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if s:
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self.sensors.append(s)
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continue
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m = reDefHT.search(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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s = self.parseHeater(t[0])
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if s:
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self.heaters.append(s)
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continue
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# Parsing done. All parsed stuff is now in these arrays and dicts.
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if self.settings.verbose >= 2:
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print self.sensors
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print self.heaters
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print self.candHeatPins
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print self.candThermPins
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print self.candProcessors
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print self.candClocks
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print self.tempTables
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print self.cfgValues # #defines with a value.
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print self.cfgNames # Names found in the generic file.
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if self.settings.verbose >= 3:
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print self.helpText
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for k in range(len(self.sensors)):
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tn = self.sensors[k][0].upper()
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if tn in self.tempTables.keys():
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self.sensors[k][3] = self.tempTables[tn]
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else:
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self.sensors[k][3] = None
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return True, None
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def parseDefineName(self, ln):
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m = reDefBool.search(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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self.cfgNames.append(t[0])
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return True
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return False
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def parseDefineValue(self, ln):
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m = reDefQS.search(ln)
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if m:
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t = m.groups()
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if len(t) == 2:
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m = reDefQSm.search(ln)
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if m:
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t = m.groups()
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tt = re.findall(reDefQSm2, t[1])
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if len(tt) == 1 and (t[0] in self.cfgNames):
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self.cfgValues[t[0]] = tt[0], True
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return True
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elif len(tt) > 1 and (t[0] in self.cfgNames):
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self.cfgValues[t[0]] = tt, True
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return True
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m = reDefine.search(ln)
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if m:
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t = m.groups()
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if len(t) == 2 and (t[0] in self.cfgNames):
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if reDefineBL.search(ln):
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self.cfgValues[t[0]] = t[1], True
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else:
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self.cfgValues[t[0]] = t[1], False
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return True
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m = reDefBool.search(ln)
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if m:
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t = m.groups()
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# Accept booleans, but not those for which a value exists already.
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# Booleans already existing as values are most likely misconfigured
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# manual edits (or result of a bug).
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if len(t) == 1 and t[0] in self.cfgNames \
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and not (t[0] in self.cfgValues \
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and isinstance(self.cfgValues[t[0]], tuple)):
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if reDefBoolBL.search(ln):
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self.cfgValues[t[0]] = True
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else:
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self.cfgValues[t[0]] = False
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return True
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return False
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def parseCandidateValues(self, ln):
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m = reCandThermPins.match(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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self.candThermPins.append(t[0])
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return True
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m = reCandHeatPins.match(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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self.candHeatPins.append(t[0])
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return True
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m = reCandProcessors.match(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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self.candProcessors.append(t[0])
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return True
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m = reCandCPUClocks.match(ln)
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if m:
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t = m.groups()
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if len(t) == 1:
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self.candClocks.append(t[0])
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return True
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m = reDefTT.match(ln)
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if m:
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t = m.groups()
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if len(t) == 2:
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s = self.parseTempTable(t[1])
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if s:
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self.tempTables[t[0]] = s
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return True
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return False
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def parseSensor(self, s):
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m = reSensor.search(s)
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if m:
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t = m.groups()
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if len(t) == 4:
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return list(t)
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return None
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def parseHeater(self, s):
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m = reHeater4.search(s)
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if m:
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t = m.groups()
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if len(t) == 4:
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return list(t)
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# reHeater3 deprecated, for compatibility with old config files only.
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m = reHeater3.search(s)
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if m:
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t = m.groups()
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if len(t) == 3:
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t = list(t)
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t.insert(2, '0')
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return t
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# End of deprecated part.
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return None
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def parseTempTable(self, s):
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m = reTempTable4.search(s)
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if m:
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t = m.groups()
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if len(t) == 4:
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return list(t)
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m = reTempTable7.search(s)
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if m:
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t = m.groups()
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if len(t) == 7:
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return list(t)
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return None
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def saveConfigFile(self, path, values):
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if self.settings.verbose >= 1:
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print("Saving board: %s." % path)
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if self.settings.verbose >= 2:
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print values
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fp = file(path, 'w')
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self.configFile = path
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skipToSensorEnd = False
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skipToHeaterEnd = False
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candThermPinsWritten = False
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candHeatPinsWritten = False
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candProcessorsWritten = False
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candCPUClocksWritten = False
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for ln in self.cfgBuffer:
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m = reStartSensors.match(ln)
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if m:
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fp.write(ln)
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fp.write("// name type pin "
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"additional\n");
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ttString = "\n"
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ttString += "// Beta algorithm r0 beta r2 vadc\n"
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ttString += "// Steinhart-Hart rp t0 r0 t1 "
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ttString += "r1 t2 r2\n"
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for s in self.sensors:
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sstr = "%-10s%-15s%-7s" % ((s[0] + ","), (s[1] + ","), (s[2] + ","))
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if s[3] is None:
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sstr += "0"
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else:
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sstr += "THERMISTOR_%s" % s[0].upper()
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tt = s[3]
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if len(tt) == 4:
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ttString += "//TEMP_TABLE %-8s (%-8s%-6s%-6s%s)\n" % \
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(s[0].upper(), (tt[0] + ","), (tt[1] + ","),
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(tt[2] + ","), tt[3])
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else:
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ttString += "//TEMP_TABLE %-8s (%-8s%-6s%-8s%-6s%-8s%-6s%s)\n" % \
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(s[0].upper(), (tt[0] + ","), (tt[1] + ","),
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(tt[2] + ","), (tt[3] + ","), (tt[4] + ","),
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(tt[5] + ","), tt[6])
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fp.write("DEFINE_TEMP_SENSOR(%s)\n" % sstr)
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fp.write(ttString)
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skipToSensorEnd = True
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continue
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if skipToSensorEnd:
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m = reEndSensors.match(ln)
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if m:
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fp.write(ln)
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skipToSensorEnd = False
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continue
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m = reStartHeaters.match(ln)
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if m:
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fp.write(ln)
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fp.write("// name pin invert pwm\n")
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for s in self.heaters:
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sstr = "%-10s%-9s%-8s%s" % ((s[0] + ","), (s[1] + ","),
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(s[2] + ","), s[3])
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fp.write("DEFINE_HEATER(%s)\n" % sstr)
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fp.write("\n")
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for s in self.heaters:
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fp.write(defineHeaterFormat % (s[0].upper(), s[0]))
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skipToHeaterEnd = True
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continue
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if skipToHeaterEnd:
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m = reEndHeaters.match(ln)
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if m:
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fp.write(ln)
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skipToHeaterEnd = False
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continue
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if reCandThermPins.match(ln):
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if not candThermPinsWritten:
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for pin in self.candThermPins:
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fp.write("//#define TEMP_SENSOR_PIN " + pin + "\n")
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candThermPinsWritten = True
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continue
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if reCandHeatPins.match(ln):
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if not candHeatPinsWritten:
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for pin in self.candHeatPins:
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fp.write("//#define HEATER_PIN " + pin + "\n")
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candHeatPinsWritten = True
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continue
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if reCandProcessors.match(ln):
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if not candProcessorsWritten:
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for pin in self.candProcessors:
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fp.write("//#define CPU_TYPE " + pin + "\n")
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candProcessorsWritten = True
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continue
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if reCandCPUClocks.match(ln):
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if not candCPUClocksWritten:
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for pin in self.candClocks:
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fp.write("//#define F_CPU_OPT " + pin + "\n")
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candCPUClocksWritten = True
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continue
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m = reDefine.match(ln)
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if m:
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t = m.groups()
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if len(t) == 2 and t[0] in values.keys():
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v = values[t[0]]
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self.cfgValues[t[0]] = v
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if v[1] == False:
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fp.write("//")
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fp.write(defineValueFormat % (t[0], v[0]))
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else:
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print "Value key " + t[0] + " not found in GUI."
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continue
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m = reDefBoolBL.match(ln)
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if m:
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t = m.groups()
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if len(t) == 1 and t[0] in values.keys():
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v = values[t[0]]
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self.cfgValues[t[0]] = v
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if v == "" or v == False:
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fp.write("//")
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fp.write(defineBoolFormat % t[0])
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else:
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if t[0] == 'MOTHERBOARD':
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# Known to be absent in the GUI, also won't be added anytime soon.
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fp.write(ln)
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else:
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print "Boolean key " + t[0] + " not found in GUI."
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continue
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fp.write(ln)
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fp.close()
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return True
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