A few more experiments with variable definitions resulted in more variations on the output:
5x int = 08 00 FC 1F FC 1F 08 00
6x = 00 00 FC 1F 00 00 FC 1F
7x = FC 1F FC 1F FC 1F FC 1F
And then with 8 int's defined... it worked correctly.
ETA: It seems like the pattern probably repeats then as 9 is the same as 1.
dsPIC33EP512GM710 CAN bus stopped working
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- LeighM
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Re: dsPIC33EP512GM710 CAN bus stopped working
Hi Martin,
Thanks for the investigations.
Looks then like it might be worth trying the (original) version of PIC16BIT_CAL_CAN.c that has the aligned attribute setting with that latest compiler
Thanks
Leigh
Thanks for the investigations.
Looks then like it might be worth trying the (original) version of PIC16BIT_CAL_CAN.c that has the aligned attribute setting with that latest compiler
Thanks
Leigh
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Re: dsPIC33EP512GM710 CAN bus stopped working
Due to a period of stupidity on my part, I was wrong to say that the device no longer resets with certain PIC16BIT_CAL_CAN.c files - it does, just the same
Anyway, I have tried all 8 versions that I have, but I still get the same results - the ones that do not cause a reset have the corrupted output dependent on the variable definitions.
Martin.
Anyway, I have tried all 8 versions that I have, but I still get the same results - the ones that do not cause a reset have the corrupted output dependent on the variable definitions.
Martin.
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Re: dsPIC33EP512GM710 CAN bus stopped working
Having continued to struggle, but needing a solution, I decided to have a go at driving the CAN bus in MPLABX using the device configurator (MCC).
I was able to fairly easily create code to transmit CAN messages.
I have since been able to 'merge' the Flowcode .c code with the MCC generated files and build a working hex file in MPLAB.
This is a bit of a 'hack & bodge' workaround, and may not be viable for a complex project, but it's a start.
I was able to fairly easily create code to transmit CAN messages.
I have since been able to 'merge' the Flowcode .c code with the MCC generated files and build a working hex file in MPLAB.
This is a bit of a 'hack & bodge' workaround, and may not be viable for a complex project, but it's a start.