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Rollup merge of #121412 - androm3da:bcain/update_hex_docs_03, r=Amanieu
platform docs: clarify hexagon-unknown-none-elf example, add hexagon-unknown-linux-musl
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1ee54538a3
@ -39,6 +39,7 @@
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- [\*-unknown-fuchsia](platform-support/fuchsia.md)
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- [\*-kmc-solid_\*](platform-support/kmc-solid.md)
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- [csky-unknown-linux-gnuabiv2\*](platform-support/csky-unknown-linux-gnuabiv2.md)
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- [hexagon-unknown-linux-musl](platform-support/hexagon-unknown-linux-musl.md)
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- [hexagon-unknown-none-elf](platform-support/hexagon-unknown-none-elf.md)
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- [loongarch\*-unknown-linux-\*](platform-support/loongarch-linux.md)
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- [loongarch\*-unknown-none\*](platform-support/loongarch-none.md)
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@ -286,8 +286,8 @@ target | std | host | notes
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`bpfel-unknown-none` | * | | BPF (little endian)
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`csky-unknown-linux-gnuabiv2` | ✓ | | C-SKY abiv2 Linux (little endian)
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`csky-unknown-linux-gnuabiv2hf` | ✓ | | C-SKY abiv2 Linux, hardfloat (little endian)
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[`hexagon-unknown-none-elf`](platform-support/hexagon-unknown-none-elf.md)| * | Bare Hexagon (v60+, HVX)
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`hexagon-unknown-linux-musl` | ? | |
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[`hexagon-unknown-none-elf`](platform-support/hexagon-unknown-none-elf.md)| * | | Bare Hexagon (v60+, HVX)
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[`hexagon-unknown-linux-musl`](platform-support/hexagon-unknown-linux-musl.md) | ✓ | | Hexagon Linux
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`i386-apple-ios` | ✓ | | 32-bit x86 iOS [^x86_32-floats-return-ABI]
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[`i586-pc-nto-qnx700`](platform-support/nto-qnx.md) | * | | 32-bit x86 QNX Neutrino 7.0 RTOS [^x86_32-floats-return-ABI]
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[`i586-unknown-netbsd`](platform-support/netbsd.md) | ✓ | | 32-bit x86, restricted to Pentium
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102
src/doc/rustc/src/platform-support/hexagon-unknown-linux-musl.md
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102
src/doc/rustc/src/platform-support/hexagon-unknown-linux-musl.md
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@ -0,0 +1,102 @@
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# `hexagon-unknown-linux-musl`
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**Tier: 3**
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Target for cross-compiling Linux user-mode applications targeting the Hexagon
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DSP architecture.
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| Target | Descriptions |
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| ------------------------ | ----------------------------------------- |
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| hexagon-unknown-linux-musl | Hexagon 32-bit Linux |
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## Target maintainers
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- [Brian Cain](https://github.com/androm3da), `bcain@quicinc.com`
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## Requirements
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The target is cross-compiled. This target supports `std`. By default, code
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generated with this target should run on Hexagon DSP hardware.
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- `-Ctarget-cpu=hexagonv73` adds support for instructions defined up to Hexagon V73.
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Binaries can be run using QEMU user emulation. On Debian-based systems, it should be
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sufficient to install the package `qemu-user-static` to be able to run simple static
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binaries:
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```text
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# apt install qemu-user-static
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# qemu-hexagon-static ./hello
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```
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In order to build linux programs with Rust, you will require a linker capable
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of targeting hexagon. You can use `clang`/`lld` from the [hexagon toolchain
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using exclusively public open source repos](https://github.com/quic/toolchain_for_hexagon/releases).
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Also included in that toolchain is the C library that can be used when creating
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dynamically linked executables.
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```text
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# /opt/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/bin/qemu-hexagon -L /opt/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/target/hexagon-unknown-linux-musl/usr/ ./hello
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```
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## Building the target
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Because it is Tier 3, rust does not yet ship pre-compiled artifacts for this
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target.
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Therefore, you can build Rust with support for the target by adding it to the
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target list in `config.toml`, a sample configuration is shown below.
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```toml
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[build]
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target = [ "hexagon-unknown-linux-musl"]
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[target.hexagon-unknown-linux-musl]
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cc = "hexagon-unknown-linux-musl-clang"
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cxx = "hexagon-unknown-linux-musl-clang++"
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linker = "hexagon-unknown-linux-musl-clang"
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ar = "hexagon-unknown-linux-musl-ar"
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ranlib = "hexagon-unknown-linux-musl-ranlib"
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musl-root = "/opt/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/target/hexagon-unknown-linux-musl/usr"
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llvm-libunwind = 'in-tree'
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qemu-rootfs = "/opt/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/target/hexagon-unknown-linux-musl/usr"
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```
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## Testing
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Currently there is no support to run the rustc test suite for this target.
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## Building Rust programs
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Download and install the hexagon open source toolchain from https://github.com/quic/toolchain_for_hexagon/releases
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The following `.cargo/config` is needed inside any project directory to build
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for the Hexagon Linux target:
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```toml
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[build]
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target = "hexagon-unknown-linux-musl"
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[target.hexagon-unknown-linux-musl]
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linker = "hexagon-unknown-linux-musl-clang"
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ar = "hexagon-unknown-linux-musl-ar"
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runner = "qemu-hexagon -L /opt/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/target/hexagon-unknown-linux-musl/usr"
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```
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Edit the "runner" in `.cargo/config` to point to the path to your toolchain's
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C library.
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```text
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...
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runner = "qemu-hexagon -L /path/to/my/inst/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/target/hexagon-unknown-linux-musl/usr"
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...
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```
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Build/run your rust program with `qemu-hexagon` in your `PATH`:
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```text
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export PATH=/path/to/my/inst/clang+llvm-18.1.0-cross-hexagon-unknown-linux-musl/x86_64-linux-gnu/bin/:$PATH
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cargo run -Zbuild-std -Zbuild-std-features=llvm-libunwind
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```
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@ -41,6 +41,8 @@ target = ["<target for your host>", "hexagon-unknown-none-elf"]
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cc = "hexagon-unknown-none-elf-clang"
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cxx = "hexagon-unknown-none-elf-clang++"
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linker = "hexagon-unknown-none-elf-clang"
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ranlib = "hexagon-unknown-none-elf-ranlib"
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ar = "hexagon-unknown-none-elf-ar"
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llvm-libunwind = 'in-tree'
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```
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@ -142,7 +144,7 @@ ${cc} --target=hexagon-unknown-none-elf -o testit \
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${g0_lib_path}/init.o \
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-L${sdk_libs}/${q6_arch}/ \
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-L${sdk_libs}/ \
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testit.c \
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wrap.c \
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target/hexagon-unknown-none-elf/${build_cfg}/libdemo1_hexagon.rlib \
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target/hexagon-unknown-none-elf/${build_cfg}/deps/libcore-*.rlib \
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target/hexagon-unknown-none-elf/${build_cfg}/deps/libcompiler_builtins-*.rlib \
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@ -217,7 +219,18 @@ fn rust_eh_personality() {}
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```
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Next, save the script below as `build.sh` and edit it to suit your
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Next, create a C program as an entry point, save the content below as
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`wrap.c`:
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```C
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int hello();
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int main() {
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hello();
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}
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```
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Then, save the script below as `build.sh` and edit it to suit your
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environment. The script below will build a shared object against the QuRT
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RTOS which is suitable for emulation or on-device testing when loaded via
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the fastrpc-shell.
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@ -248,7 +261,7 @@ ${cc} --target=hexagon-unknown-none-elf -o testit.so \
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-Wl,--wrap=realloc \
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-Wl,--wrap=memalign \
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-m${q6_arch} \
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testit.c \
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wrap.c \
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target/hexagon-unknown-none-elf/${build_cfg}/libdemo2_hexagon.rlib \
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target/hexagon-unknown-none-elf/${build_cfg}/deps/libcore-*.rlib \
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target/hexagon-unknown-none-elf/${build_cfg}/deps/libcompiler_builtins-*.rlib \
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