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At this time, the following peripheral are supported:
Peripheral | Feature |
---|---|
Flash | |
eRAM | |
BSM | |
VTSENS | |
Memories | |
Reset manager | |
Clock Generator | |
Multicore | Start any core |
It also provides a bunch of helper:
Helpers | Function |
---|---|
Any BL1 | |
Generic BL1 | |
SpaceWire BL1 | |
bsp_demo | |
Initialize | |
Reboot | Remote electrical reboot via smart plug |
Devkit control |
nx_embedded_tools relies on two JTAG tools (only one is required):
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Setup instructions could be found here.
openocd could be used to debug program using GDB.
Contents:
- Environment setup:
- Minimal python version
- Openocd
- Lauterbach
- Switching between Lauterbach and openocd
- Additionnal configuration
- Board connection:
- Board configuration (Bring-up only):
- Start OpenOCD
- OpenOCD errors
- OpenOCD and EL1 execution
- Multiple ELF file load with OpenOCD when instruction cache is activated
- Using Angie probe may be very slow
- Using scripts
- Using ngultra_init.py
- Using ngultra_flash_programmer.py
- Using ngultra_memory_programmer.py
- Using ngultra_software_reboot.py
- Using signer.py
- Using ngultra_bsm_loader.py
- Flash BL1
- Using ngultra_read_sensor.py
- SpaceWire BL1 (Boot Loader level 1)
- Clock generator configuration Guide:
- GPIO extender configuration Guide:
- I2C Library Guide
- Devkit jumpers configuration Guide:
- Using ngultra_eram_scrubber.py
- Using GDB
- libnxembeddedtools
- libnxembeddedtools package
- Subpackages
- libnxembeddedtools.hw package
- libnxembeddedtools.ngultra package
- Submodules
- libnxembeddedtools.ngultra.address module
- libnxembeddedtools.ngultra.bl1 module
- libnxembeddedtools.ngultra.bsm module
- libnxembeddedtools.ngultra.fastcommands module
- libnxembeddedtools.ngultra.flash module
- libnxembeddedtools.ngultra.memory module
- libnxembeddedtools.ngultra.reset module
- Module contents
- libnxembeddedtools.remoteapi package
- libnxembeddedtools.tools package
- libnxembeddedtools.ul_dv package
- Module contents
- Subpackages
- libnxembeddedtools package