forked from M-Labs/zynq-rs
94 lines
1.8 KiB
Markdown
94 lines
1.8 KiB
Markdown
# Build
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```shell
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nix-shell --command "cargo xbuild --release"
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```
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# Debug
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## Using the Xilinx toolchain
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Tested with the ZC706 board.
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Run the Xilinx Microprocessor Debugger:
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```shell
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/opt/Xilinx/14.7/ISE_DS/EDK/bin/lin64/xmd
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```
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Connect to target (given it is connected and you have permissions):
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```tcl
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connect arm hw
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```
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Leave xmd running.
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Start the Xilinx version of the GNU debugger with your latest build:
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```shell
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/opt/Xilinx/14.7/ISE_DS/EDK/gnu/arm/lin/bin/arm-xilinx-linux-gnueabi-gdb zc706
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```
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Connect the debugger to xmd over TCP on localhost:
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```gdb
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target remote :1234
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```
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Proceed using gdb with `load`, `c`
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## Using OpenOCD
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### Running on the ZC706
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```shell
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nix-shell --command "cargo xbuild --release"
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cd openocd
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openocd -f zc706.cfg
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```
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### Running on the Cora Z7-10
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```shell
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nix-shell --command "cargo xbuild --release --no-default-features --features=target_cora_z7_10"
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cd openocd
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openocd -f cora-z7-10.cfg
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```
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### Development Process
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Clone this repo onto your development/build machine and the raspberry pi that controls the Xilinx 7000 board
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On the dev machine, the below script builds zc706 and secure copies it to the target pi (in your pi $HOME directory)
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```shell
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cd ~/zc706
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./build.sh $your_user/ssh_id
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```
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On the pi, we need an information rich environment that includes a relatively reliable `gdb` experience (that includes `ctrl-p` and `ctrl-n` command history that persists across `cgdb` executions), run:
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```shell
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ssh pi4
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cd zc706
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./tmux.sh
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```
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Time to run your code with:
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```shell
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zynq-connect
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zynq-restart
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c
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```
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or, for a more succinct experience, (identical to above)
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```shell
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dc
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dr
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c
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```
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After every build on your dev machine, simply run:
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```shell
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dr
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c
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```
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Sometimes you might need to type `load` after `dr`.
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Note, to exit `picocom` hit `ctrl-a x`
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