Other Parts Discussed in Thread: HALCOGEN
Tool/software: Code Composer Studio
I am trying to load a TMS570LC4357 Hercules board with firmware from code composer studio.
I have installed CCS 9.0.1.00004.
I compiled my project successfully with no build errors.
I clicked the debug button.
The console notified me that "Texas Instruments XDS100v2 USB Debug Probe_0/CortexR5 : Target must be connected before loading program."
I right clicked on the USB probe in the debug pane and connected to the target.
I changed the project properties to auto connect to the target on debug.
I viewed the Disassembly pane and noticed that the program counter was stuck on address 00000004 with value FFFFFFFF.
I tried restarting my computer and the problem persisted.
I tried uninstalling and reinstalling CCS and the problem persisted.
I asked my coworker to flash the board with his computer and it worked. He has the same version of CCS installed (9.0.1).
I made a new project with nothing but a while loop and an incriminating int variable and the problem persisted.
I will document the steps I took with pictures of this simplified project.
Thank you for any help. I will also provide pictures of my project settings.
Clicking Debug Button:
Set Auto Connect On Debug Settings For Blink Project.
Debugger Erases and Loads the Program onto the chip:
Dissasembly Stuck At 00000004:
Debug and General Project Properties:
Thank you for any help.
I am adding the output for a connection test to the debugger below.
-Shasta
Test USB Debug Probe:
*******************************************************************************
[Start: Texas Instruments XDS100v2 USB Debug Probe_0]
Execute the command:
%ccs_base%/common/uscif/dbgjtag -f %boarddatafile% -rv -o -F inform,logfile=yes -S pathlength -S integrity
[Result]
-----[Print the board config pathname(s)]------------------------------------
C:\Users\sclokey\AppData\Local\TEXASI~1\
CCS\ccs901\0\0\BrdDat\testBoard.dat
-----[Print the reset-command software log-file]-----------------------------
This utility has selected a 100- or 510-class product.
This utility will load the adapter 'jioserdesusb.dll'.
The library build date was 'Mar 25 2019'.
The library build time was '17:36:26'.
The library package version is '8.1.0.00007'.
The library component version is '35.35.0.0'.
The controller does not use a programmable FPGA.
The controller has a version number of '4' (0x00000004).
The controller has an insertion length of '0' (0x00000000).
This utility will attempt to reset the controller.
This utility has successfully reset the controller.
-----[Print the reset-command hardware log-file]-----------------------------
The scan-path will be reset by toggling the JTAG TRST signal.
The controller is the FTDI FT2232 with USB interface.
The link from controller to target is direct (without cable).
The software is configured for FTDI FT2232 features.
The controller cannot monitor the value on the EMU[0] pin.
The controller cannot monitor the value on the EMU[1] pin.
The controller cannot control the timing on output pins.
The controller cannot control the timing on input pins.
The scan-path link-delay has been set to exactly '0' (0x0000).
-----[The log-file for the JTAG TCLK output generated from the PLL]----------
There is no hardware for programming the JTAG TCLK frequency.
-----[Measure the source and frequency of the final JTAG TCLKR input]--------
There is no hardware for measuring the JTAG TCLK frequency.
-----[Perform the standard path-length test on the JTAG IR and DR]-----------
This path-length test uses blocks of 64 32-bit words.
The test for the JTAG IR instruction path-length succeeded.
The JTAG IR instruction path-length is 6 bits.
The test for the JTAG DR bypass path-length succeeded.
The JTAG DR bypass path-length is 1 bits.
-----[Perform the Integrity scan-test on the JTAG IR]------------------------
This test will use blocks of 64 32-bit words.
This test will be applied just once.
Do a test using 0xFFFFFFFF.
Scan tests: 1, skipped: 0, failed: 0
Do a test using 0x00000000.
Scan tests: 2, skipped: 0, failed: 0
Do a test using 0xFE03E0E2.
Scan tests: 3, skipped: 0, failed: 0
Do a test using 0x01FC1F1D.
Scan tests: 4, skipped: 0, failed: 0
Do a test using 0x5533CCAA.
Scan tests: 5, skipped: 0, failed: 0
Do a test using 0xAACC3355.
Scan tests: 6, skipped: 0, failed: 0
All of the values were scanned correctly.
The JTAG IR Integrity scan-test has succeeded.
-----[Perform the Integrity scan-test on the JTAG DR]------------------------
This test will use blocks of 64 32-bit words.
This test will be applied just once.
Do a test using 0xFFFFFFFF.
Scan tests: 1, skipped: 0, failed: 0
Do a test using 0x00000000.
Scan tests: 2, skipped: 0, failed: 0
Do a test using 0xFE03E0E2.
Scan tests: 3, skipped: 0, failed: 0
Do a test using 0x01FC1F1D.
Scan tests: 4, skipped: 0, failed: 0
Do a test using 0x5533CCAA.
Scan tests: 5, skipped: 0, failed: 0
Do a test using 0xAACC3355.
Scan tests: 6, skipped: 0, failed: 0
All of the values were scanned correctly.
The JTAG DR Integrity scan-test has succeeded.
[End: Texas Instruments XDS100v2 USB Debug Probe_0]
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