rust/compiler/rustc_codegen_cranelift/y.rs

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#!/usr/bin/env bash
#![allow()] /*This line is ignored by bash
# This block is ignored by rustc
set -e
echo "[BUILD] y.rs" 1>&2
rustc $0 -o ${0/.rs/.bin} -g
exec ${0/.rs/.bin} $@
*/
//! The build system for cg_clif
//!
//! # Manual compilation
//!
//! If your system doesn't support shell scripts you can manually compile and run this file using
//! for example:
//!
//! ```shell
//! $ rustc y.rs -o y.bin
//! $ ./y.bin
//! ```
//!
//! # Naming
//!
//! The name `y.rs` was chosen to not conflict with rustc's `x.py`.
use std::env;
use std::path::PathBuf;
use std::process;
#[path = "build_system/build_backend.rs"]
mod build_backend;
#[path = "build_system/build_sysroot.rs"]
mod build_sysroot;
#[path = "build_system/config.rs"]
mod config;
#[path = "build_system/prepare.rs"]
mod prepare;
#[path = "build_system/rustc_info.rs"]
mod rustc_info;
#[path = "build_system/utils.rs"]
mod utils;
fn usage() {
eprintln!("Usage:");
eprintln!(" ./y.rs prepare");
eprintln!(
" ./y.rs build [--debug] [--sysroot none|clif|llvm] [--target-dir DIR] [--no-unstable-features]"
);
}
macro_rules! arg_error {
($($err:tt)*) => {{
eprintln!($($err)*);
usage();
std::process::exit(1);
}};
}
enum Command {
Build,
}
#[derive(Copy, Clone)]
enum SysrootKind {
None,
Clif,
Llvm,
}
fn main() {
env::set_var("CG_CLIF_DISPLAY_CG_TIME", "1");
env::set_var("CG_CLIF_DISABLE_INCR_CACHE", "1");
// The target dir is expected in the default location. Guard against the user changing it.
env::set_var("CARGO_TARGET_DIR", "target");
let mut args = env::args().skip(1);
let command = match args.next().as_deref() {
Some("prepare") => {
if args.next().is_some() {
arg_error!("./x.rs prepare doesn't expect arguments");
}
prepare::prepare();
process::exit(0);
}
Some("build") => Command::Build,
Some(flag) if flag.starts_with('-') => arg_error!("Expected command found flag {}", flag),
Some(command) => arg_error!("Unknown command {}", command),
None => {
usage();
process::exit(0);
}
};
let mut target_dir = PathBuf::from("build");
let mut channel = "release";
let mut sysroot_kind = SysrootKind::Clif;
let mut use_unstable_features = true;
while let Some(arg) = args.next().as_deref() {
match arg {
"--target-dir" => {
target_dir = PathBuf::from(args.next().unwrap_or_else(|| {
arg_error!("--target-dir requires argument");
}))
}
"--debug" => channel = "debug",
"--sysroot" => {
sysroot_kind = match args.next().as_deref() {
Some("none") => SysrootKind::None,
Some("clif") => SysrootKind::Clif,
Some("llvm") => SysrootKind::Llvm,
Some(arg) => arg_error!("Unknown sysroot kind {}", arg),
None => arg_error!("--sysroot requires argument"),
}
}
"--no-unstable-features" => use_unstable_features = false,
flag if flag.starts_with("-") => arg_error!("Unknown flag {}", flag),
arg => arg_error!("Unexpected argument {}", arg),
}
}
let host_triple = if let Ok(host_triple) = std::env::var("HOST_TRIPLE") {
host_triple
} else if let Some(host_triple) = crate::config::get_value("host") {
host_triple
} else {
rustc_info::get_host_triple()
};
let target_triple = if let Ok(target_triple) = std::env::var("TARGET_TRIPLE") {
if target_triple != "" {
target_triple
} else {
host_triple.clone() // Empty target triple can happen on GHA
}
} else if let Some(target_triple) = crate::config::get_value("target") {
target_triple
} else {
host_triple.clone()
};
if target_triple.ends_with("-msvc") {
eprintln!("The MSVC toolchain is not yet supported by rustc_codegen_cranelift.");
eprintln!("Switch to the MinGW toolchain for Windows support.");
eprintln!("Hint: You can use `rustup set default-host x86_64-pc-windows-gnu` to");
eprintln!("set the global default target to MinGW");
process::exit(1);
}
let cg_clif_build_dir =
build_backend::build_backend(channel, &host_triple, use_unstable_features);
build_sysroot::build_sysroot(
channel,
sysroot_kind,
&target_dir,
cg_clif_build_dir,
&host_triple,
&target_triple,
);
}