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@ -195,7 +195,7 @@ Once this part is finished, there must be 3 files in the `linux-arm64` folder:
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- **`Dockerfile.in`**, the docker file.
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- **`Toolchain.cmake`**, the CMake file for the toolchains.
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### Makefile and CI
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### Makefile
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For this last part, we will see how to add the image to the [Makefile](Makefile) and to a github action.
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@ -231,6 +231,42 @@ GEN_IMAGES = android-arm android-arm64 \
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linux-riscv64 linux-riscv32 linux-m68k-uclibc linux-x64-tinycc linux-xtensa-uclibc
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```
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### Image building and testing
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You can now start building the image:
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```bash
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make linux-arm64
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```
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When finished, you can test it:
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```bash
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make linux-arm64.test
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```
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If you want to go a little further in the tests:
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```bash
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docker run --rm linux-arm64 > ./linux-arm64
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chmod +x ./linux-arm64
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```
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And then run the commands to build a project (you must be in the directory of your project to build):
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```bash
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./linux-arm64 make
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```
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With CMake + Ninja:
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```bash
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./linux-arm64 cmake -Bbuild -S. -GNinja
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./linux-arm64 ninja -Cbuild
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```
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### CI (github action)
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To finish, you have to add to `.github/workflows/main.yml` the image/folder name:
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```yml
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@ -25,7 +25,7 @@ Cross compiling toolchains in Docker images.
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## Examples
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1. `dockcross make`: Build the *Makefile* in the current directory.
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2. `dockcross cmake -Bbuild -H. -GNinja`: Run CMake with a build directory `./build` for a *CMakeLists.txt* file in the current directory and generate `ninja` build configuration files.
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2. `dockcross cmake -Bbuild -S. -GNinja`: Run CMake with a build directory `./build` for a *CMakeLists.txt* file in the current directory and generate `ninja` build configuration files.
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3. `dockcross ninja -Cbuild`: Run ninja in the `./build` directory.
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4. `dockcross bash -c '$CC test/C/hello.c -o hello'`: Build the *hello.c* file with the compiler identified with the `CC` environmental variable in the build environment.
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5. `dockcross bash`: Run an interactive shell in the build environment.
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