# MontaukOS Toolchains Two cross toolchains live here, both installed to `toolchain/local/`: | Script | Triple | Purpose | |--------|--------|---------| | `build-toolchain.sh` | `x86_64-elf` | Bare-metal compiler for the kernel | | `build-montauk-toolchain.sh` | `x86_64-montauk` | OS-aware compiler for userspace programs | Both use Binutils 2.43.1 + GCC 14.2.0 and share the source trees in `src/`. The Montauk target is added by the patches in `patches/` plus the target header `files/montauk.h` (installed as `gcc/config/montauk.h` in the GCC tree). ## The x86_64-montauk target `x86_64-montauk-gcc` knows the Montauk userspace ABI, so a hosted program builds with no special flags: ```bash toolchain/local/bin/x86_64-montauk-gcc hello.c -o hello.elf ``` What the target does by default: - Links static, non-PIE `ET_EXEC` binaries (what the kernel ELF loader in `kernel/src/Sched/ElfLoader.cpp` accepts), text at 0x400000. - `-z max-page-size=0x1000` — the loader maps 4 KiB pages; the x86-64 default of 2 MiB segment alignment would bloat every binary. - Startup/link line: `crt1.o crti.o crtbegin.o ... -lc crtend.o crtn.o` taken from the sysroot (`toolchain/sysroot/usr/lib`), which is assembled from `programs/lib/libc` by the build script. - Headers resolve against the sysroot (`toolchain/sysroot/usr/include`), assembled from `programs/include/libc` plus the `montauk/` SDK headers. `#include ` just works; no `-nostdinc` needed. - `-mno-red-zone` (the project-wide userspace convention). Standard hard-float SysV ABI otherwise; pass `-mno-sse` etc. per program if wanted. - Defines `__montauk__` / `__MONTAUK__`. The in-tree programs are built `-fno-exceptions -fno-rtti` (the project convention), but that is a project style choice, not a toolchain limit — see the STL section below. ## C++ standard library (hosted libstdc++) `build-montauk-toolchain.sh` builds and installs a **hosted** libstdc++ (`all-target-libstdc++-v3`), so the full STL is available to `x86_64-montauk-g++` with no special flags: ```bash toolchain/local/bin/x86_64-montauk-g++ app.cpp -o app.elf ``` Headers live in `toolchain/local/x86_64-montauk/include/c++/14.2.0/`, the library in `toolchain/local/x86_64-montauk/lib/libstdc++.a`. `_GLIBCXX_HOSTED` follows `__STDC_HOSTED__`, i.e. 1 for ordinary compiles. Note that `toolchain/sysroot/usr/include/` *also* holds a freestanding C++ subset (copied from `kernel/freestnd-cxx-hdrs`, which is what the kernel and the in-tree programs build against). That directory is last on the include search path, so for a plain `g++` invocation the hosted headers win and the freestanding copies are shadowed. Check `g++ -x c++ -E -v -` if you ever need to confirm the order. ### What works Link-verified with the cross compiler, no flags beyond the source file: | Feature | Status | |---------|--------| | ``, ``, ``, `` | works | | `` (`unique_ptr`, `shared_ptr`, `make_*`) | works | | Exceptions (`throw` / `catch`, `std::exception`) | works | | RTTI (`typeid`, `dynamic_cast`) | works | | ``, `` | works (links a large binary — see below) | | Static constructors | works (`crt1.c` runs `.init_array`) | `toolchain/files/cxx-test.cpp` is the on-OS regression check for this; `make devkit` compiles it to `0:/sdk/bin/cxx-test.elf`. Run it on the target to confirm the above at **runtime** rather than just at link time — that is the authoritative check, since a clean link does not by itself prove exception unwinding works on hardware. ### What does not work - **Threads.** libstdc++ is built `gthr-single` (`_GLIBCXX_HAS_GTHREADS` is undefined), because the libc has no pthreads. `std::thread`, `std::mutex`, `std::condition_variable`, `std::async` and `std::call_once` do not exist — code using them fails to *compile*, not to link. Consequence worth knowing: in single-threaded mode libstdc++ selects the **non-atomic** `shared_ptr` refcount path. The kernel does have real threads (`SYS_THREAD_SPAWN/EXIT/JOIN/SELF`, `programs/include/montauk/thread.h`), so it is possible to spawn threads and share a `shared_ptr` across them — that will corrupt the refcount and is a silent use-after-free. Do not do it until a pthreads/gthreads shim exists and libstdc++ is rebuilt against it. - **`` is expensive.** It drags in the static locale and iostream init machinery; a hello-world using it links to roughly 5.7 MB versus ~1.8 MB for `` + ``. Prefer `` where binary size matters, which on a ramdisk image is most places. - **`libm.a` is an empty stand-in.** The math functions live inside `libc.a` (the g++ driver links `-lm` unconditionally, hence the empty archive). Roughly 50 functions are present — `sqrt`, `sin`, `cos`, `pow`, `log`, `exp`, `atan2`, `hypot`, `floor`, `ceil`, `fmod`, `round` and some `float` variants. Absent: `fma`, `cbrt`, `expm1`, `log1p`, `erf`, `tgamma`, `nearbyint`, `remquo`, most remaining `float` variants, and all `long double` variants. Ports that need these have to add them to `programs/lib/libc/libc.c`. ## Refreshing the sysroot The sysroot is rebuilt every time `build-montauk-toolchain.sh` runs (the compiler build steps are skipped once installed). After changing libc headers or the libc itself, re-run the script to refresh it. ## Layout ``` toolchain/ build-toolchain.sh # bare-metal x86_64-elf (kernel) build-montauk-toolchain.sh # x86_64-montauk (userspace) patches/ # Montauk target patches (checked in) files/montauk.h # GCC target header (checked in) src/ # downloaded + patched sources (ignored) build/ # build trees (ignored) local/ # install prefix (ignored) sysroot/ # generated target sysroot (ignored) ``` ## Native binutils (runs on MontaukOS) The whole native SDK (binutils + GCC below, staged for the OS image) is built by one idempotent script — this is what a fresh clone should run: ```bash make sdk # from the repo root; wraps toolchain/build-native-sdk.sh ``` It invokes build-montauk-toolchain.sh first (cross compiler + sysroot), applies the host-build fix-ups listed under "Host-build gotchas", and strips the staged binaries. To force a rebuild after libc changes: `rm -rf toolchain/native toolchain/native-gcc toolchain/build/binutils-native toolchain/build/gcc-native` and re-run. The manual steps below are kept as a reference for what the script does. Binutils can be cross-compiled to run *on* MontaukOS itself (`--host=x86_64-montauk`), the first step toward a self-hosted GCC: ```bash mkdir -p toolchain/build/binutils-native && cd toolchain/build/binutils-native export PATH=$PWD/../../local/bin:$PATH ../../src/binutils-2.43.1/configure \ --build=x86_64-pc-linux-gnu --host=x86_64-montauk \ --target=x86_64-montauk --prefix=/sdk \ --disable-nls --disable-werror --disable-gprofng --disable-gold \ --disable-plugins --disable-shared --enable-static make -j$(nproc) all-gas all-ld all-binutils make install-strip-gas install-strip-ld install-strip-binutils \ DESTDIR=$PWD/../../native ``` ## Native GCC (runs on MontaukOS) GCC itself cross-builds for the montauk host (build dir toolchain/build/gcc-native, install DESTDIR toolchain/native-gcc): ```bash ../../src/gcc-14.2.0/configure \ --build=x86_64-pc-linux-gnu --host=x86_64-montauk \ --target=x86_64-montauk --prefix=/sdk \ --with-native-system-header-dir=/sdk/include \ --with-build-sysroot=$PWD/../../sysroot \ --enable-languages=c,c++ --disable-nls --disable-shared \ --disable-multilib --disable-gcov --disable-lto --disable-plugin \ --disable-bootstrap --disable-fixincludes --with-newlib \ --enable-initfini-array --disable-wchar_t --disable-libstdcxx-pch \ --with-gnu-as --with-gnu-ld ac_cv_c_bigendian=no make -j$(nproc) all-gcc make install-gcc DESTDIR=$PWD/../../native-gcc ``` Host-build gotchas, in the order they bite: - The bundled gmp/mpfr/mpc/isl/gettext carry their own config.sub copies; overwrite each with the patched top-level one. - Remove the src tree's gettext symlink (--disable-nls does not skip it, and its gnulib needs more locale surface than the libc has). - gmp.h sniffs the libc's stdio include-guard name to detect FILE; the Montauk stdio.h defines the conventional _STDIO_H marker. - The gcc subdir configure cannot run host binaries to probe endianness; preset ac_cv_c_bigendian=no. - The build sysroot needs an sdk -> usr symlink so --with-native-system-header-dir=/sdk/include resolves at build time. The devkit target ships gcc/g++/cpp as .elf in 0:/sdk/bin, cc1 + cc1plus + collect2 (and a copy of ld for collect2's search) under 0:/sdk/libexec/gcc/x86_64-montauk/14.2.0, libgcc.a + crtbegin/crtend under 0:/sdk/lib/gcc/x86_64-montauk/14.2.0, and a 0:/tmp scratch dir for driver intermediates. Notes: - Build only `all-gas all-ld all-binutils`. gprof needs fscanf with %[] scansets (not in the Montauk libc); gold and gprofng are disabled outright. - The libc gained a large POSIX surface for this port (fd functions, full errno/signal sets, struct stat, sys/wait.h, utime.h, wchar.h, sys/param.h, memory.h, bsearch, sscanf field widths, ...). pex-style process spawning (fork/exec/pipe) is stubbed to fail with ENOSYS: the tools themselves never spawn, and real process plumbing is the posix_spawn milestone that needs kernel support (exit codes in SYS_WAITPID, fd redirection wiring). - The `devkit` target in programs/GNUmakefile ships the staged tools into the OS image at 0:/sdk/bin (as.elf, ld.elf, ar.elf, ...) with a target-side sysroot at 0:/sdk/include + 0:/sdk/lib (libc.a, crt objects, the real hosted libstdc++.a plus its c++/ headers, and an empty libm stand-in) - the Montauk SDK. On-OS g++ therefore gets the same STL as the cross compiler; see the C++ standard library section above for what is and is not supported. The kernel resolves driveless absolute paths ("/sdk/lib") against the cwd drive, so the --prefix=/sdk layout works natively. The shell searches 0:/sdk/bin and tab-completes it. Future ports configure with --prefix=/sdk. If toolchain/native/ has not been built the devkit step is skipped and the image builds without it.