mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-11-26 09:28:13 +00:00
113 lines
2.3 KiB
Markdown
113 lines
2.3 KiB
Markdown
# Build instructions
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## Build instructions for Emulator (Unix port)
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Run the following to checkout the project:
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```sh
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git clone --recursive https://github.com/trezor/trezor-core.git
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cd trezor-core
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```
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If you are building from an existing checkout, don't forget to use the following to refresh the submodules:
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```sh
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make vendor
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```
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Install the required packages, depending on your operating system.
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* __Debian/Ubuntu__:
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```sh
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sudo apt-get install scons libsdl2-dev libsdl2-image-dev
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```
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* __Fedora__:
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```sh
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sudo yum install scons SDL2-devel SDL2_image-devel
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```
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* __OpenSUSE__:
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```sh
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sudo zypper install scons libSDL2-devel libSDL2_image-devel
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```
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* __Arch__:
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```sh
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sudo pacman -S scons sdl2 sdl2_image
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```
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* __Mac OS X__:
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```sh
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brew install scons sdl2 sdl2_image pkg-config
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```
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* __Windows__: not supported yet, sorry.
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Run the build with:
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```sh
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make build_unix
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```
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Now you can start the emulator:
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```sh
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./emu.sh
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```
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## Build instructions for Embedded (ARM port)
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### Requirements
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You will need the GCC ARM toolchain for building and OpenOCD for flashing to a device.
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You will also need Python dependencies for signing.
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#### Debian/Ubuntu
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```sh
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sudo apt-get install scons gcc-arm-none-eabi libnewlib-arm-none-eabi
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```
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#### OS X
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1. Download [gcc-arm-none-eabi](https://developer.arm.com/open-source/gnu-toolchain/gnu-rm/downloads)
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2. Follow the [install instructions](https://launchpadlibrarian.net/287100883/readme.txt)
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3. To install OpenOCD, run `brew install open-ocd`
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4. Run `make vendor build_boardloader build_bootloader build_firmware`
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### Building
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```sh
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sudo pip3 install pipenv
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pipenv install
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pipenv run make vendor build_boardloader build_bootloader build_firmware
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```
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### Uploading
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Use `make upload` to upload the firmware to a production device (with a bootloader).
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### Flashing
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For flashing firmware to blank device (without bootloader) use `make flash`,
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or `make flash STLINK_VER=v2-1` if using a ST-LINK/V2.1 interface.
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You need to have OpenOCD installed.
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## Building for debugging and hacking in Emulator (Unix port)
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Build the debuggable unix binary so you can attach the gdb or lldb.
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This removes optimizations and reduces address space randomizaiton.
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Beware that this will significantly bloat the final binary
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and the firmware runtime memory limit HEAPSIZE may have to be increased.
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```sh
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DEBUG_BUILD=1 make build_unix
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```
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