116 lines
5.1 KiB
Python
116 lines
5.1 KiB
Python
# Script Programs DCC Specialties - PSX or PSX-AR
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# http://www.dccspecialties.com
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#
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# Script by Brett Scott
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# Version 1.50 07/27/2014
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# mgbrrclub@gmail.com or info@mgbrr.org and www.mgbrr.org
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#
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# Many Thanks to Bob Jacobsen and Everyone who Contributes to JMRI.
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#
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# Script should work for any DCC System that supports Ops Mode Programming or
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# Programming on Mainline. (Digitrax, NEC, MRC, Lenz)
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#
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# You should copy this file to ProgramPSX&PSX-AR????.py Replacing ???? with the
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# Primary Address of your PSX or PSX-AR. You should keep this file for backup, and
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# future tweaking and programming.
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#
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# Each group of program lines is documented. To execute a group of statements, remove
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# the # from the beginning of the proceeding program lines. Edit the program lines
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# to include necessary information for your PSX or PSX-AR.
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#
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# Be Sure to remove the # from the "self.waitMsec(750)" line. This gives the PSX or PSX-AR sufficient
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# time to process each preceding command.
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#
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# This script uses Locomotive Address 9983. Please make sure there is NO Locomotive number 9983
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# on your layout while running this script. This script will reprogram several of its CV's.
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#
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# Instructions
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# 1. Turn Off Track Power - Use a Throttle or JMRI to do this.
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# 2. Move the Program Jumper J3 From [J3-2 J3-3] To [J3-1 J3-2](Program Mode)
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# 3. Turn On Track Power - Again, Use a Throttle or JMRI.
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# 4. VERY IMPORTANT - Wait 30 to 45 Seconds.
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# 5. In JMRI DecoderPro, Go to Panels > Run Script. Select the file that corresponds
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# to the PSX or PSX-AR you are programming. Note - Do not have the file open in an editor.
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#
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# Important - This script can take 3 to 6 seconds to run. This depends on the number of
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# CV's and addresses being programmed.
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#
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# When the script is complete, a small message window should appear. Usually
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# in the upper left corner of your screen.
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#
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# 6. Turn Off Track Power.
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# 7. Move the program jumper J3 from [J3-1 J3-2] to [J3-2 J3-3] (Normal Operation).
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# 8. Wait at least 1 full minute before Turn Track Power On.
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# 9. Test you PSX or PSX-AR.
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#
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import jmri
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import javax.swing
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class setStartup(jmri.jmrit.automat.AbstractAutomaton) :
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def init(self):
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return
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def handle(self):
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# Next Two Lines - Reset PSX or PSX-AR to Factory Defaults
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addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("63", 42, None)
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self.waitMsec(750) # time is in milliseconds
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# Next Two Lines - Point PSX or PSX-AR to Receive Primary Address, Not Necessary, However, good practice.
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addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("63", 0, None)
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self.waitMsec(750)
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# Next Two Lines - Set Track Power On/OFF Address - Change 1234 to Address Desired
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turnouts.provideTurnout("1234").setState(CLOSED)
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self.waitMsec(750)
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# Next Two Lines - Set Arm Output for Photo Cell Address - Remove the # Symbols and Change 1234 to Address Desired
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# turnouts.provideTurnout("1234").setState(CLOSED)
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# self.waitMsec(750)
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# PSX-AR (AUTO REVERSER) ONLY! Next Two Lines - Set Turnout Accessory Address
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# turnouts.provideTurnout("1234").setState(CLOSED)
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# self.waitMsec(750)
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# CV49 � Sets the Current Trip Value. If CV49=0, then the Trip Current jumpers on J6 are enabled.
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# REMEMBER TO USE EITHER JUMPERS (J6) OR CV SETTINGS, !!! NOT BOTH !!!
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# Next Two Lines - CV49 - Current Trip Value (Values 00-15)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("49", 03, None)
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# self.waitMsec(750)
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# Next Two Lines - CV50 - Block Detection Source (Values 0,1)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("50", 1, None)
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# self.waitMsec(750)
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# PSX-AR (Auto Reverser) ONLY! Next Two Lines - CV52 - Power On Position of Reverser (Values 0,1)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("52", 0, None)
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# self.waitMsec(750)
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# Next Two Lines - CV53 - Enables/Disables Inrush Boost (Values 0,1)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("53", 0, None)
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# self.waitMsec(750)
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# Next Two Lines - CV54 - Current Level Detector Turns On (Values 0-212)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("54", 0, None)
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# self.waitMsec(750)
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# Next Two Lines - CV55 - Double Reverse Mode(Values 0, 1) (Value 0 = Primary Reverser, 1 = Secondary Reverser)
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("55", 0, None)
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# self.waitMsec(750)
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# Notes regarding CV65 - A value of 16 to 40 (2 to 5 ms) Should Solve Most Issues. Goal is the CV65 value should be as small as possible consistent with reliable operation.
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# Next Two Lines - CV65 - Double Reverse Mode Timing(Values 1-240) ( 8 is Default - 8 = 1 Millisecond, 16 = 2 Millisecond, Etc))
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# addressedProgrammers.getAddressedProgrammer(True, 9983).writeCV("65", 8, None)
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# self.waitMsec(750)
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# Some PSX-AR Documention indicates a CV64 for Current Level Detection.
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# This is an ERROR in Documetion - Use CV54
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javax.swing.JFrame("Programming Complete!").show()
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return
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setStartup().start()
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