use std::borrow::Cow;
use std::collections::HashSet;
use std::env;
use std::ffi::OsStr;
use std::fs;
use std::io::prelude::*;
use std::io::BufReader;
use std::path::{Path, PathBuf};
use std::process::{Command, Stdio};
use std::str;
use serde_derive::Deserialize;
use crate::builder::crate_description;
use crate::builder::Cargo;
use crate::builder::{Builder, Kind, PathSet, RunConfig, ShouldRun, Step, TaskPath};
use crate::cache::{Interned, INTERNER};
use crate::config::{LlvmLibunwind, RustcLto, TargetSelection};
use crate::dist;
use crate::llvm;
use crate::tool::SourceType;
use crate::util::get_clang_cl_resource_dir;
use crate::util::{exe, is_debug_info, is_dylib, output, symlink_dir, t, up_to_date};
use crate::LLVM_TOOLS;
use crate::{CLang, Compiler, DependencyType, GitRepo, Mode};
#[derive(Debug, Copy, Clone, PartialEq, Eq, PartialOrd, Ord, Hash)]
pub struct Std {
pub target: TargetSelection,
pub compiler: Compiler,
crates: Interned<Vec<String>>,
}
impl Std {
pub fn new(compiler: Compiler, target: TargetSelection) -> Self {
Self { target, compiler, crates: Default::default() }
}
}
impl Step for Std {
type Output = ();
const DEFAULT: bool = true;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
let builder = run.builder;
run.crate_or_deps("sysroot")
.path("library")
.lazy_default_condition(Box::new(|| !builder.download_rustc()))
}
fn make_run(run: RunConfig<'_>) {
let has_library =
run.paths.iter().any(|set| set.assert_single_path().path.ends_with("library"));
let crates = if has_library { Default::default() } else { run.cargo_crates_in_set() };
run.builder.ensure(Std {
compiler: run.builder.compiler(run.builder.top_stage, run.build_triple()),
target: run.target,
crates,
});
}
fn run(self, builder: &Builder<'_>) {
let target = self.target;
let compiler = self.compiler;
if builder.download_rustc() && compiler.stage != 0 && target == builder.build.build {
return;
}
if builder.config.keep_stage.contains(&compiler.stage)
|| builder.config.keep_stage_std.contains(&compiler.stage)
{
builder.info("Warning: Using a potentially old libstd. This may not behave well.");
builder.ensure(StdLink::from_std(self, compiler));
return;
}
builder.update_submodule(&Path::new("library").join("stdarch"));
if builder.config.profiler {
builder.update_submodule(&Path::new("src/llvm-project"));
}
let mut target_deps = builder.ensure(StartupObjects { compiler, target });
let compiler_to_use = builder.compiler_for(compiler.stage, compiler.host, target);
if compiler_to_use != compiler {
builder.ensure(Std::new(compiler_to_use, target));
let msg = if compiler_to_use.host == target {
format!(
"Uplifting library (stage{} -> stage{})",
compiler_to_use.stage, compiler.stage
)
} else {
format!(
"Uplifting library (stage{}:{} -> stage{}:{})",
compiler_to_use.stage, compiler_to_use.host, compiler.stage, target
)
};
builder.info(&msg);
copy_third_party_objects(builder, &compiler, target);
copy_self_contained_objects(builder, &compiler, target);
builder.ensure(StdLink::from_std(self, compiler_to_use));
return;
}
target_deps.extend(copy_third_party_objects(builder, &compiler, target));
target_deps.extend(copy_self_contained_objects(builder, &compiler, target));
let mut cargo = builder.cargo(compiler, Mode::Std, SourceType::InTree, target, "build");
std_cargo(builder, target, compiler.stage, &mut cargo);
for krate in &*self.crates {
cargo.arg("-p").arg(krate);
}
let _guard = builder.msg(
Kind::Build,
compiler.stage,
format_args!("library artifacts{}", crate_description(&self.crates)),
compiler.host,
target,
);
run_cargo(
builder,
cargo,
vec![],
&libstd_stamp(builder, compiler, target),
target_deps,
false,
false,
);
builder.ensure(StdLink::from_std(
self,
builder.compiler(compiler.stage, builder.config.build),
));
}
}
fn copy_and_stamp(
builder: &Builder<'_>,
libdir: &Path,
sourcedir: &Path,
name: &str,
target_deps: &mut Vec<(PathBuf, DependencyType)>,
dependency_type: DependencyType,
) {
let target = libdir.join(name);
builder.copy(&sourcedir.join(name), &target);
target_deps.push((target, dependency_type));
}
fn copy_llvm_libunwind(builder: &Builder<'_>, target: TargetSelection, libdir: &Path) -> PathBuf {
let libunwind_path = builder.ensure(llvm::Libunwind { target });
let libunwind_source = libunwind_path.join("libunwind.a");
let libunwind_target = libdir.join("libunwind.a");
builder.copy(&libunwind_source, &libunwind_target);
libunwind_target
}
fn copy_third_party_objects(
builder: &Builder<'_>,
compiler: &Compiler,
target: TargetSelection,
) -> Vec<(PathBuf, DependencyType)> {
let mut target_deps = vec![];
if target == "x86_64-fortanix-unknown-sgx" {
if env::var_os("X86_FORTANIX_SGX_LIBS").is_some() {
builder.info("Warning: X86_FORTANIX_SGX_LIBS environment variable is ignored, libunwind is now compiled as part of rustbuild");
}
}
if builder.config.sanitizers_enabled(target) && compiler.stage != 0 {
target_deps.extend(
copy_sanitizers(builder, &compiler, target)
.into_iter()
.map(|d| (d, DependencyType::Target)),
);
}
if target == "x86_64-fortanix-unknown-sgx"
|| builder.config.llvm_libunwind(target) == LlvmLibunwind::InTree
&& (target.contains("linux") || target.contains("fuchsia"))
{
let libunwind_path =
copy_llvm_libunwind(builder, target, &builder.sysroot_libdir(*compiler, target));
target_deps.push((libunwind_path, DependencyType::Target));
}
target_deps
}
fn copy_self_contained_objects(
builder: &Builder<'_>,
compiler: &Compiler,
target: TargetSelection,
) -> Vec<(PathBuf, DependencyType)> {
let libdir_self_contained = builder.sysroot_libdir(*compiler, target).join("self-contained");
t!(fs::create_dir_all(&libdir_self_contained));
let mut target_deps = vec![];
if target.contains("musl") {
let srcdir = builder.musl_libdir(target).unwrap_or_else(|| {
panic!("Target {:?} does not have a \"musl-libdir\" key", target.triple)
});
for &obj in &["libc.a", "crt1.o", "Scrt1.o", "rcrt1.o", "crti.o", "crtn.o"] {
copy_and_stamp(
builder,
&libdir_self_contained,
&srcdir,
obj,
&mut target_deps,
DependencyType::TargetSelfContained,
);
}
let crt_path = builder.ensure(llvm::CrtBeginEnd { target });
for &obj in &["crtbegin.o", "crtbeginS.o", "crtend.o", "crtendS.o"] {
let src = crt_path.join(obj);
let target = libdir_self_contained.join(obj);
builder.copy(&src, &target);
target_deps.push((target, DependencyType::TargetSelfContained));
}
if !target.starts_with("s390x") {
let libunwind_path = copy_llvm_libunwind(builder, target, &libdir_self_contained);
target_deps.push((libunwind_path, DependencyType::TargetSelfContained));
}
} else if target.ends_with("-wasi") {
let srcdir = builder
.wasi_root(target)
.unwrap_or_else(|| {
panic!("Target {:?} does not have a \"wasi-root\" key", target.triple)
})
.join("lib/wasm32-wasi");
for &obj in &["libc.a", "crt1-command.o", "crt1-reactor.o"] {
copy_and_stamp(
builder,
&libdir_self_contained,
&srcdir,
obj,
&mut target_deps,
DependencyType::TargetSelfContained,
);
}
} else if target.ends_with("windows-gnu") {
for obj in ["crt2.o", "dllcrt2.o"].iter() {
let src = compiler_file(builder, builder.cc(target), target, CLang::C, obj);
let target = libdir_self_contained.join(obj);
builder.copy(&src, &target);
target_deps.push((target, DependencyType::TargetSelfContained));
}
}
target_deps
}
pub fn std_cargo(builder: &Builder<'_>, target: TargetSelection, stage: u32, cargo: &mut Cargo) {
if let Some(target) = env::var_os("MACOSX_STD_DEPLOYMENT_TARGET") {
cargo.env("MACOSX_DEPLOYMENT_TARGET", target);
}
let compiler_builtins_root = builder.src.join("src/llvm-project/compiler-rt");
let compiler_builtins_c_feature = if compiler_builtins_root.exists() {
cargo.env("RUST_COMPILER_RT_ROOT", &compiler_builtins_root);
" compiler-builtins-c"
} else {
""
};
if !builder.unstable_features() {
cargo.env("CFG_DISABLE_UNSTABLE_FEATURES", "1");
}
let mut features = String::new();
if stage != 0 && builder.config.default_codegen_backend().unwrap_or_default() == "cranelift" {
features += " compiler-builtins-no-asm";
}
if builder.no_std(target) == Some(true) {
features += " compiler-builtins-mem";
if !target.starts_with("bpf") {
features.push_str(compiler_builtins_c_feature);
}
cargo
.args(&["-p", "alloc"])
.arg("--manifest-path")
.arg(builder.src.join("library/alloc/Cargo.toml"))
.arg("--features")
.arg(features);
} else {
features += &builder.std_features(target);
features.push_str(compiler_builtins_c_feature);
cargo
.arg("--features")
.arg(features)
.arg("--manifest-path")
.arg(builder.src.join("library/sysroot/Cargo.toml"));
if target.contains("musl") {
if let Some(p) = builder.musl_libdir(target) {
let root = format!("native={}", p.to_str().unwrap());
cargo.rustflag("-L").rustflag(&root);
}
}
if target.ends_with("-wasi") {
if let Some(p) = builder.wasi_root(target) {
let root = format!("native={}/lib/wasm32-wasi", p.to_str().unwrap());
cargo.rustflag("-L").rustflag(&root);
}
}
}
if stage >= 1 {
cargo.rustflag("-Cembed-bitcode=yes");
}
if builder.config.rust_lto == RustcLto::Off {
cargo.rustflag("-Clto=off");
}
if target.contains("riscv") {
cargo.rustflag("-Cforce-unwind-tables=yes");
}
let html_root =
format!("-Zcrate-attr=doc(html_root_url=\"{}/\")", builder.doc_rust_lang_org_channel(),);
cargo.rustflag(&html_root);
cargo.rustdocflag(&html_root);
cargo.rustdocflag("-Zcrate-attr=warn(rust_2018_idioms)");
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
struct StdLink {
pub compiler: Compiler,
pub target_compiler: Compiler,
pub target: TargetSelection,
crates: Interned<Vec<String>>,
}
impl StdLink {
fn from_std(std: Std, host_compiler: Compiler) -> Self {
Self {
compiler: host_compiler,
target_compiler: std.compiler,
target: std.target,
crates: std.crates,
}
}
}
impl Step for StdLink {
type Output = ();
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.never()
}
fn run(self, builder: &Builder<'_>) {
let compiler = self.compiler;
let target_compiler = self.target_compiler;
let target = self.target;
let libdir = builder.sysroot_libdir(target_compiler, target);
let hostdir = builder.sysroot_libdir(target_compiler, compiler.host);
add_to_sysroot(builder, &libdir, &hostdir, &libstd_stamp(builder, compiler, target));
}
}
fn copy_sanitizers(
builder: &Builder<'_>,
compiler: &Compiler,
target: TargetSelection,
) -> Vec<PathBuf> {
let runtimes: Vec<llvm::SanitizerRuntime> = builder.ensure(llvm::Sanitizers { target });
if builder.config.dry_run() {
return Vec::new();
}
let mut target_deps = Vec::new();
let libdir = builder.sysroot_libdir(*compiler, target);
for runtime in &runtimes {
let dst = libdir.join(&runtime.name);
builder.copy(&runtime.path, &dst);
if target == "x86_64-apple-darwin"
|| target == "aarch64-apple-darwin"
|| target == "aarch64-apple-ios"
|| target == "aarch64-apple-ios-sim"
|| target == "x86_64-apple-ios"
{
apple_darwin_update_library_name(&dst, &format!("@rpath/{}", &runtime.name));
apple_darwin_sign_file(&dst);
}
target_deps.push(dst);
}
target_deps
}
fn apple_darwin_update_library_name(library_path: &Path, new_name: &str) {
let status = Command::new("install_name_tool")
.arg("-id")
.arg(new_name)
.arg(library_path)
.status()
.expect("failed to execute `install_name_tool`");
assert!(status.success());
}
fn apple_darwin_sign_file(file_path: &Path) {
let status = Command::new("codesign")
.arg("-f") .arg("-s")
.arg("-")
.arg(file_path)
.status()
.expect("failed to execute `codesign`");
assert!(status.success());
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
pub struct StartupObjects {
pub compiler: Compiler,
pub target: TargetSelection,
}
impl Step for StartupObjects {
type Output = Vec<(PathBuf, DependencyType)>;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.path("library/rtstartup")
}
fn make_run(run: RunConfig<'_>) {
run.builder.ensure(StartupObjects {
compiler: run.builder.compiler(run.builder.top_stage, run.build_triple()),
target: run.target,
});
}
fn run(self, builder: &Builder<'_>) -> Vec<(PathBuf, DependencyType)> {
let for_compiler = self.compiler;
let target = self.target;
if !target.ends_with("windows-gnu") {
return vec![];
}
let mut target_deps = vec![];
let src_dir = &builder.src.join("library").join("rtstartup");
let dst_dir = &builder.native_dir(target).join("rtstartup");
let sysroot_dir = &builder.sysroot_libdir(for_compiler, target);
t!(fs::create_dir_all(dst_dir));
for file in &["rsbegin", "rsend"] {
let src_file = &src_dir.join(file.to_string() + ".rs");
let dst_file = &dst_dir.join(file.to_string() + ".o");
if !up_to_date(src_file, dst_file) {
let mut cmd = Command::new(&builder.initial_rustc);
cmd.env("RUSTC_BOOTSTRAP", "1");
if !builder.local_rebuild {
cmd.arg("--cfg").arg("bootstrap");
}
builder.run(
cmd.arg("--target")
.arg(target.rustc_target_arg())
.arg("--emit=obj")
.arg("-o")
.arg(dst_file)
.arg(src_file),
);
}
let target = sysroot_dir.join((*file).to_string() + ".o");
builder.copy(dst_file, &target);
target_deps.push((target, DependencyType::Target));
}
target_deps
}
}
#[derive(Debug, PartialOrd, Ord, Copy, Clone, PartialEq, Eq, Hash)]
pub struct Rustc {
pub target: TargetSelection,
pub compiler: Compiler,
crates: Interned<Vec<String>>,
}
impl Rustc {
pub fn new(compiler: Compiler, target: TargetSelection) -> Self {
Self { target, compiler, crates: Default::default() }
}
}
impl Step for Rustc {
type Output = ();
const ONLY_HOSTS: bool = true;
const DEFAULT: bool = false;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
let mut crates = run.builder.in_tree_crates("rustc-main", None);
for (i, krate) in crates.iter().enumerate() {
if krate.name == "rustc-main" {
crates.swap_remove(i);
break;
}
}
run.crates(crates)
}
fn make_run(run: RunConfig<'_>) {
let crates = run.cargo_crates_in_set();
run.builder.ensure(Rustc {
compiler: run.builder.compiler(run.builder.top_stage, run.build_triple()),
target: run.target,
crates,
});
}
fn run(self, builder: &Builder<'_>) {
let compiler = self.compiler;
let target = self.target;
if builder.download_rustc() && compiler.stage != 0 {
let sysroot = builder.ensure(Sysroot { compiler });
let ci_rustc_dir = builder.out.join(&*builder.build.build.triple).join("ci-rustc");
for file in builder.config.rustc_dev_contents() {
let src = ci_rustc_dir.join(&file);
let dst = sysroot.join(file);
if src.is_dir() {
t!(fs::create_dir_all(dst));
} else {
builder.copy(&src, &dst);
}
}
return;
}
builder.ensure(Std::new(compiler, target));
if builder.config.keep_stage.contains(&compiler.stage) {
builder.info("Warning: Using a potentially old librustc. This may not behave well.");
builder.info("Warning: Use `--keep-stage-std` if you want to rebuild the compiler when it changes");
builder.ensure(RustcLink::from_rustc(self, compiler));
return;
}
let compiler_to_use = builder.compiler_for(compiler.stage, compiler.host, target);
if compiler_to_use != compiler {
builder.ensure(Rustc::new(compiler_to_use, target));
let msg = if compiler_to_use.host == target {
format!(
"Uplifting rustc (stage{} -> stage{})",
compiler_to_use.stage,
compiler.stage + 1
)
} else {
format!(
"Uplifting rustc (stage{}:{} -> stage{}:{})",
compiler_to_use.stage,
compiler_to_use.host,
compiler.stage + 1,
target
)
};
builder.info(&msg);
builder.ensure(RustcLink::from_rustc(self, compiler_to_use));
return;
}
builder.ensure(Std::new(
builder.compiler(self.compiler.stage, builder.config.build),
builder.config.build,
));
let mut cargo = builder.cargo(compiler, Mode::Rustc, SourceType::InTree, target, "build");
rustc_cargo(builder, &mut cargo, target, compiler.stage);
if builder.config.rust_profile_use.is_some()
&& builder.config.rust_profile_generate.is_some()
{
panic!("Cannot use and generate PGO profiles at the same time");
}
if builder.config.use_lld && !compiler.host.contains("msvc") {
cargo.rustflag("-Clink-args=-Wl,--icf=all");
}
let is_collecting = if let Some(path) = &builder.config.rust_profile_generate {
if compiler.stage == 1 {
cargo.rustflag(&format!("-Cprofile-generate={}", path));
cargo.rustflag("-Cllvm-args=-vp-counters-per-site=4");
true
} else {
false
}
} else if let Some(path) = &builder.config.rust_profile_use {
if compiler.stage == 1 {
cargo.rustflag(&format!("-Cprofile-use={}", path));
cargo.rustflag("-Cllvm-args=-pgo-warn-missing-function");
true
} else {
false
}
} else {
false
};
if is_collecting {
cargo.rustflag(&format!(
"-Cllvm-args=-static-func-strip-dirname-prefix={}",
builder.config.src.components().count()
));
}
if compiler.stage != 0 {
match builder.config.rust_lto {
RustcLto::Thin | RustcLto::Fat => {
cargo.rustflag("-Zdylib-lto");
let lto_type = match builder.config.rust_lto {
RustcLto::Thin => "thin",
RustcLto::Fat => "fat",
_ => unreachable!(),
};
cargo.rustflag(&format!("-Clto={}", lto_type));
cargo.rustflag("-Cembed-bitcode=yes");
}
RustcLto::ThinLocal => { }
RustcLto::Off => {
cargo.rustflag("-Clto=off");
}
}
} else {
if builder.config.rust_lto == RustcLto::Off {
cargo.rustflag("-Clto=off");
}
}
for krate in &*self.crates {
cargo.arg("-p").arg(krate);
}
let _guard = builder.msg_sysroot_tool(
Kind::Build,
compiler.stage,
format_args!("compiler artifacts{}", crate_description(&self.crates)),
compiler.host,
target,
);
run_cargo(
builder,
cargo,
vec![],
&librustc_stamp(builder, compiler, target),
vec![],
false,
true, );
builder.ensure(RustcLink::from_rustc(
self,
builder.compiler(compiler.stage, builder.config.build),
));
}
}
pub fn rustc_cargo(builder: &Builder<'_>, cargo: &mut Cargo, target: TargetSelection, stage: u32) {
cargo
.arg("--features")
.arg(builder.rustc_features(builder.kind))
.arg("--manifest-path")
.arg(builder.src.join("compiler/rustc/Cargo.toml"));
cargo.rustdocflag("-Zcrate-attr=warn(rust_2018_idioms)");
rustc_cargo_env(builder, cargo, target, stage);
}
pub fn rustc_cargo_env(
builder: &Builder<'_>,
cargo: &mut Cargo,
target: TargetSelection,
stage: u32,
) {
cargo
.env("CFG_RELEASE", builder.rust_release())
.env("CFG_RELEASE_CHANNEL", &builder.config.channel)
.env("CFG_VERSION", builder.rust_version());
if let Some(backend) = builder.config.default_codegen_backend() {
cargo.env("CFG_DEFAULT_CODEGEN_BACKEND", backend);
}
let libdir_relative = builder.config.libdir_relative().unwrap_or_else(|| Path::new("lib"));
let target_config = builder.config.target_config.get(&target);
cargo.env("CFG_LIBDIR_RELATIVE", libdir_relative);
if let Some(ref ver_date) = builder.rust_info().commit_date() {
cargo.env("CFG_VER_DATE", ver_date);
}
if let Some(ref ver_hash) = builder.rust_info().sha() {
cargo.env("CFG_VER_HASH", ver_hash);
}
if !builder.unstable_features() {
cargo.env("CFG_DISABLE_UNSTABLE_FEATURES", "1");
}
if let Some(s) = target_config.and_then(|c| c.default_linker.as_ref()) {
cargo.env("CFG_DEFAULT_LINKER", s);
} else if let Some(ref s) = builder.config.rustc_default_linker {
cargo.env("CFG_DEFAULT_LINKER", s);
}
if builder.config.rustc_parallel {
cargo.rustflag("--cfg=parallel_compiler");
cargo.rustdocflag("--cfg=parallel_compiler");
}
if builder.config.rust_verify_llvm_ir {
cargo.env("RUSTC_VERIFY_LLVM_IR", "1");
}
if builder.config.llvm_enabled() {
let building_is_expensive = crate::llvm::prebuilt_llvm_config(builder, target).is_err();
let can_skip_build = builder.kind == Kind::Check && builder.top_stage == stage;
let should_skip_build = building_is_expensive && can_skip_build;
if !should_skip_build {
rustc_llvm_env(builder, cargo, target)
}
}
}
fn rustc_llvm_env(builder: &Builder<'_>, cargo: &mut Cargo, target: TargetSelection) {
let target_config = builder.config.target_config.get(&target);
if builder.is_rust_llvm(target) {
cargo.env("LLVM_RUSTLLVM", "1");
}
let llvm::LlvmResult { llvm_config, .. } = builder.ensure(llvm::Llvm { target });
cargo.env("LLVM_CONFIG", &llvm_config);
if let Some(s) = target_config.and_then(|c| c.llvm_config.as_ref()) {
cargo.env("CFG_LLVM_ROOT", s);
}
let mut llvm_linker_flags = String::new();
if builder.config.llvm_profile_generate && target.contains("msvc") {
if let Some(ref clang_cl_path) = builder.config.llvm_clang_cl {
let clang_rt_dir = get_clang_cl_resource_dir(clang_cl_path);
llvm_linker_flags.push_str(&format!("-L{}", clang_rt_dir.display()));
}
}
if let Some(ref s) = builder.config.llvm_ldflags {
if !llvm_linker_flags.is_empty() {
llvm_linker_flags.push_str(" ");
}
llvm_linker_flags.push_str(s);
}
if !llvm_linker_flags.is_empty() {
cargo.env("LLVM_LINKER_FLAGS", llvm_linker_flags);
}
if builder.config.llvm_static_stdcpp
&& !target.contains("freebsd")
&& !target.contains("msvc")
&& !target.contains("apple")
&& !target.contains("solaris")
{
let file =
compiler_file(builder, builder.cxx(target).unwrap(), target, CLang::Cxx, "libstdc++.a");
cargo.env("LLVM_STATIC_STDCPP", file);
}
if builder.llvm_link_shared() {
cargo.env("LLVM_LINK_SHARED", "1");
}
if builder.config.llvm_use_libcxx {
cargo.env("LLVM_USE_LIBCXX", "1");
}
if builder.config.llvm_optimize && !builder.config.llvm_release_debuginfo {
cargo.env("LLVM_NDEBUG", "1");
}
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
struct RustcLink {
pub compiler: Compiler,
pub target_compiler: Compiler,
pub target: TargetSelection,
crates: Interned<Vec<String>>,
}
impl RustcLink {
fn from_rustc(rustc: Rustc, host_compiler: Compiler) -> Self {
Self {
compiler: host_compiler,
target_compiler: rustc.compiler,
target: rustc.target,
crates: rustc.crates,
}
}
}
impl Step for RustcLink {
type Output = ();
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.never()
}
fn run(self, builder: &Builder<'_>) {
let compiler = self.compiler;
let target_compiler = self.target_compiler;
let target = self.target;
add_to_sysroot(
builder,
&builder.sysroot_libdir(target_compiler, target),
&builder.sysroot_libdir(target_compiler, compiler.host),
&librustc_stamp(builder, compiler, target),
);
}
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
pub struct CodegenBackend {
pub target: TargetSelection,
pub compiler: Compiler,
pub backend: Interned<String>,
}
fn needs_codegen_config(run: &RunConfig<'_>) -> bool {
let mut needs_codegen_cfg = false;
for path_set in &run.paths {
needs_codegen_cfg = match path_set {
PathSet::Set(set) => set.iter().any(|p| is_codegen_cfg_needed(p, run)),
PathSet::Suite(suite) => is_codegen_cfg_needed(&suite, run),
}
}
needs_codegen_cfg
}
const CODEGEN_BACKEND_PREFIX: &str = "rustc_codegen_";
fn is_codegen_cfg_needed(path: &TaskPath, run: &RunConfig<'_>) -> bool {
if path.path.to_str().unwrap().contains(&CODEGEN_BACKEND_PREFIX) {
let mut needs_codegen_backend_config = true;
for &backend in &run.builder.config.rust_codegen_backends {
if path
.path
.to_str()
.unwrap()
.ends_with(&(CODEGEN_BACKEND_PREFIX.to_owned() + &backend))
{
needs_codegen_backend_config = false;
}
}
if needs_codegen_backend_config {
run.builder.info(
"Warning: no codegen-backends config matched the requested path to build a codegen backend. \
Help: add backend to codegen-backends in config.toml.",
);
return true;
}
}
return false;
}
impl Step for CodegenBackend {
type Output = ();
const ONLY_HOSTS: bool = true;
const DEFAULT: bool = true;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.paths(&["compiler/rustc_codegen_cranelift", "compiler/rustc_codegen_gcc"])
}
fn make_run(run: RunConfig<'_>) {
if needs_codegen_config(&run) {
return;
}
for &backend in &run.builder.config.rust_codegen_backends {
if backend == "llvm" {
continue; }
run.builder.ensure(CodegenBackend {
target: run.target,
compiler: run.builder.compiler(run.builder.top_stage, run.build_triple()),
backend,
});
}
}
fn run(self, builder: &Builder<'_>) {
let compiler = self.compiler;
let target = self.target;
let backend = self.backend;
builder.ensure(Rustc::new(compiler, target));
if builder.config.keep_stage.contains(&compiler.stage) {
builder.info(
"Warning: Using a potentially old codegen backend. \
This may not behave well.",
);
return;
}
let compiler_to_use = builder.compiler_for(compiler.stage, compiler.host, target);
if compiler_to_use != compiler {
builder.ensure(CodegenBackend { compiler: compiler_to_use, target, backend });
return;
}
let out_dir = builder.cargo_out(compiler, Mode::Codegen, target);
let mut cargo = builder.cargo(compiler, Mode::Codegen, SourceType::InTree, target, "build");
cargo
.arg("--manifest-path")
.arg(builder.src.join(format!("compiler/rustc_codegen_{}/Cargo.toml", backend)));
rustc_cargo_env(builder, &mut cargo, target, compiler.stage);
let tmp_stamp = out_dir.join(".tmp.stamp");
let _guard = builder.msg_build(compiler, format_args!("codegen backend {backend}"), target);
let files = run_cargo(builder, cargo, vec![], &tmp_stamp, vec![], false, false);
if builder.config.dry_run() {
return;
}
let mut files = files.into_iter().filter(|f| {
let filename = f.file_name().unwrap().to_str().unwrap();
is_dylib(filename) && filename.contains("rustc_codegen_")
});
let codegen_backend = match files.next() {
Some(f) => f,
None => panic!("no dylibs built for codegen backend?"),
};
if let Some(f) = files.next() {
panic!(
"codegen backend built two dylibs:\n{}\n{}",
codegen_backend.display(),
f.display()
);
}
let stamp = codegen_backend_stamp(builder, compiler, target, backend);
let codegen_backend = codegen_backend.to_str().unwrap();
t!(fs::write(&stamp, &codegen_backend));
}
}
fn copy_codegen_backends_to_sysroot(
builder: &Builder<'_>,
compiler: Compiler,
target_compiler: Compiler,
) {
let target = target_compiler.host;
let dst = builder.sysroot_codegen_backends(target_compiler);
t!(fs::create_dir_all(&dst), dst);
if builder.config.dry_run() {
return;
}
for backend in builder.config.rust_codegen_backends.iter() {
if backend == "llvm" {
continue; }
let stamp = codegen_backend_stamp(builder, compiler, target, *backend);
let dylib = t!(fs::read_to_string(&stamp));
let file = Path::new(&dylib);
let filename = file.file_name().unwrap().to_str().unwrap();
let target_filename = {
let dash = filename.find('-').unwrap();
let dot = filename.find('.').unwrap();
format!("{}-{}{}", &filename[..dash], builder.rust_release(), &filename[dot..])
};
builder.copy(&file, &dst.join(target_filename));
}
}
pub fn libstd_stamp(builder: &Builder<'_>, compiler: Compiler, target: TargetSelection) -> PathBuf {
builder.cargo_out(compiler, Mode::Std, target).join(".libstd.stamp")
}
pub fn librustc_stamp(
builder: &Builder<'_>,
compiler: Compiler,
target: TargetSelection,
) -> PathBuf {
builder.cargo_out(compiler, Mode::Rustc, target).join(".librustc.stamp")
}
fn codegen_backend_stamp(
builder: &Builder<'_>,
compiler: Compiler,
target: TargetSelection,
backend: Interned<String>,
) -> PathBuf {
builder
.cargo_out(compiler, Mode::Codegen, target)
.join(format!(".librustc_codegen_{}.stamp", backend))
}
pub fn compiler_file(
builder: &Builder<'_>,
compiler: &Path,
target: TargetSelection,
c: CLang,
file: &str,
) -> PathBuf {
let mut cmd = Command::new(compiler);
cmd.args(builder.cflags(target, GitRepo::Rustc, c));
cmd.arg(format!("-print-file-name={}", file));
let out = output(&mut cmd);
PathBuf::from(out.trim())
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
pub struct Sysroot {
pub compiler: Compiler,
}
impl Step for Sysroot {
type Output = Interned<PathBuf>;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.never()
}
fn run(self, builder: &Builder<'_>) -> Interned<PathBuf> {
let compiler = self.compiler;
let host_dir = builder.out.join(&compiler.host.triple);
let sysroot_dir = |stage| {
if stage == 0 {
host_dir.join("stage0-sysroot")
} else if builder.download_rustc() && compiler.stage != builder.top_stage {
host_dir.join("ci-rustc-sysroot")
} else {
host_dir.join(format!("stage{}", stage))
}
};
let sysroot = sysroot_dir(compiler.stage);
builder.verbose(&format!("Removing sysroot {} to avoid caching bugs", sysroot.display()));
let _ = fs::remove_dir_all(&sysroot);
t!(fs::create_dir_all(&sysroot));
if builder.download_rustc() && compiler.stage != 0 {
assert_eq!(
builder.config.build, compiler.host,
"Cross-compiling is not yet supported with `download-rustc`",
);
for stage in 0..=2 {
if stage != compiler.stage {
let dir = sysroot_dir(stage);
if !dir.ends_with("ci-rustc-sysroot") {
let _ = fs::remove_dir_all(dir);
}
}
}
let mut filtered_files = Vec::new();
let suffix = format!("lib/rustlib/{}/lib", compiler.host);
for path in builder.config.rustc_dev_contents() {
let path = Path::new(&path);
if path.parent().map_or(false, |parent| parent.ends_with(&suffix)) {
filtered_files.push(path.file_name().unwrap().to_owned());
}
}
let filtered_extensions = [OsStr::new("rmeta"), OsStr::new("rlib"), OsStr::new("so")];
let ci_rustc_dir = builder.ci_rustc_dir(builder.config.build);
builder.cp_filtered(&ci_rustc_dir, &sysroot, &|path| {
if path.extension().map_or(true, |ext| !filtered_extensions.contains(&ext)) {
return true;
}
if !path.parent().map_or(true, |p| p.ends_with(&suffix)) {
return true;
}
if !filtered_files.iter().all(|f| f != path.file_name().unwrap()) {
builder.verbose_than(1, &format!("ignoring {}", path.display()));
false
} else {
true
}
});
}
let sysroot_lib_rustlib_src = sysroot.join("lib/rustlib/src");
t!(fs::create_dir_all(&sysroot_lib_rustlib_src));
let sysroot_lib_rustlib_src_rust = sysroot_lib_rustlib_src.join("rust");
if let Err(e) = symlink_dir(&builder.config, &builder.src, &sysroot_lib_rustlib_src_rust) {
eprintln!(
"warning: creating symbolic link `{}` to `{}` failed with {}",
sysroot_lib_rustlib_src_rust.display(),
builder.src.display(),
e,
);
if builder.config.rust_remap_debuginfo {
eprintln!(
"warning: some `tests/ui` tests will fail when lacking `{}`",
sysroot_lib_rustlib_src_rust.display(),
);
}
}
let sysroot_lib_rustlib_rustcsrc = sysroot.join("lib/rustlib/rustc-src");
t!(fs::create_dir_all(&sysroot_lib_rustlib_rustcsrc));
let sysroot_lib_rustlib_rustcsrc_rust = sysroot_lib_rustlib_rustcsrc.join("rust");
if let Err(e) =
symlink_dir(&builder.config, &builder.src, &sysroot_lib_rustlib_rustcsrc_rust)
{
eprintln!(
"warning: creating symbolic link `{}` to `{}` failed with {}",
sysroot_lib_rustlib_rustcsrc_rust.display(),
builder.src.display(),
e,
);
}
INTERNER.intern_path(sysroot)
}
}
#[derive(Debug, Copy, PartialOrd, Ord, Clone, PartialEq, Eq, Hash)]
pub struct Assemble {
pub target_compiler: Compiler,
}
impl Step for Assemble {
type Output = Compiler;
const ONLY_HOSTS: bool = true;
fn should_run(run: ShouldRun<'_>) -> ShouldRun<'_> {
run.path("compiler/rustc").path("compiler")
}
fn make_run(run: RunConfig<'_>) {
run.builder.ensure(Assemble {
target_compiler: run.builder.compiler(run.builder.top_stage + 1, run.target),
});
}
fn run(self, builder: &Builder<'_>) -> Compiler {
let target_compiler = self.target_compiler;
if target_compiler.stage == 0 {
assert_eq!(
builder.config.build, target_compiler.host,
"Cannot obtain compiler for non-native build triple at stage 0"
);
return target_compiler;
}
let build_compiler = builder.compiler(target_compiler.stage - 1, builder.config.build);
if builder.download_rustc() {
let sysroot = builder.ensure(Sysroot { compiler: target_compiler });
dist::maybe_install_llvm_target(builder, target_compiler.host, &sysroot);
return target_compiler;
}
builder.ensure(Rustc::new(build_compiler, target_compiler.host));
if target_compiler.stage >= 3 && !builder.config.full_bootstrap {
return target_compiler;
}
for &backend in builder.config.rust_codegen_backends.iter() {
if backend == "llvm" {
continue; }
builder.ensure(CodegenBackend {
compiler: build_compiler,
target: target_compiler.host,
backend,
});
}
let lld_install = if builder.config.lld_enabled {
Some(builder.ensure(llvm::Lld { target: target_compiler.host }))
} else {
None
};
let stage = target_compiler.stage;
let host = target_compiler.host;
let msg = if build_compiler.host == host {
format!("Assembling stage{} compiler", stage)
} else {
format!("Assembling stage{} compiler ({})", stage, host)
};
builder.info(&msg);
let stamp = librustc_stamp(builder, build_compiler, target_compiler.host);
let proc_macros = builder
.read_stamp_file(&stamp)
.into_iter()
.filter_map(|(path, dependency_type)| {
if dependency_type == DependencyType::Host {
Some(path.file_name().unwrap().to_owned().into_string().unwrap())
} else {
None
}
})
.collect::<HashSet<_>>();
let sysroot = builder.sysroot(target_compiler);
let rustc_libdir = builder.rustc_libdir(target_compiler);
t!(fs::create_dir_all(&rustc_libdir));
let src_libdir = builder.sysroot_libdir(build_compiler, host);
for f in builder.read_dir(&src_libdir) {
let filename = f.file_name().into_string().unwrap();
if (is_dylib(&filename) || is_debug_info(&filename)) && !proc_macros.contains(&filename)
{
builder.copy(&f.path(), &rustc_libdir.join(&filename));
}
}
copy_codegen_backends_to_sysroot(builder, build_compiler, target_compiler);
let libdir = builder.sysroot_libdir(target_compiler, target_compiler.host);
let libdir_bin = libdir.parent().unwrap().join("bin");
t!(fs::create_dir_all(&libdir_bin));
if let Some(lld_install) = lld_install {
let src_exe = exe("lld", target_compiler.host);
let dst_exe = exe("rust-lld", target_compiler.host);
builder.copy(&lld_install.join("bin").join(&src_exe), &libdir_bin.join(&dst_exe));
let gcc_ld_dir = libdir_bin.join("gcc-ld");
t!(fs::create_dir(&gcc_ld_dir));
let lld_wrapper_exe = builder.ensure(crate::tool::LldWrapper {
compiler: build_compiler,
target: target_compiler.host,
});
for name in crate::LLD_FILE_NAMES {
builder.copy(&lld_wrapper_exe, &gcc_ld_dir.join(exe(name, target_compiler.host)));
}
}
if builder.config.rust_codegen_backends.contains(&INTERNER.intern_str("llvm")) {
let llvm::LlvmResult { llvm_config, .. } =
builder.ensure(llvm::Llvm { target: target_compiler.host });
if !builder.config.dry_run() {
let llvm_bin_dir = output(Command::new(llvm_config).arg("--bindir"));
let llvm_bin_dir = Path::new(llvm_bin_dir.trim());
for tool in LLVM_TOOLS {
let tool_exe = exe(tool, target_compiler.host);
let src_path = llvm_bin_dir.join(&tool_exe);
if src_path.exists() {
builder.copy(&src_path, &libdir_bin.join(&tool_exe));
}
}
}
}
dist::maybe_install_llvm_runtime(builder, target_compiler.host, &sysroot);
dist::maybe_install_llvm_target(builder, target_compiler.host, &sysroot);
let out_dir = builder.cargo_out(build_compiler, Mode::Rustc, host);
let rustc = out_dir.join(exe("rustc-main", host));
let bindir = sysroot.join("bin");
t!(fs::create_dir_all(&bindir));
let compiler = builder.rustc(target_compiler);
builder.copy(&rustc, &compiler);
target_compiler
}
}
pub fn add_to_sysroot(
builder: &Builder<'_>,
sysroot_dst: &Path,
sysroot_host_dst: &Path,
stamp: &Path,
) {
let self_contained_dst = &sysroot_dst.join("self-contained");
t!(fs::create_dir_all(&sysroot_dst));
t!(fs::create_dir_all(&sysroot_host_dst));
t!(fs::create_dir_all(&self_contained_dst));
for (path, dependency_type) in builder.read_stamp_file(stamp) {
let dst = match dependency_type {
DependencyType::Host => sysroot_host_dst,
DependencyType::Target => sysroot_dst,
DependencyType::TargetSelfContained => self_contained_dst,
};
builder.copy(&path, &dst.join(path.file_name().unwrap()));
}
}
pub fn run_cargo(
builder: &Builder<'_>,
cargo: Cargo,
tail_args: Vec<String>,
stamp: &Path,
additional_target_deps: Vec<(PathBuf, DependencyType)>,
is_check: bool,
rlib_only_metadata: bool,
) -> Vec<PathBuf> {
if builder.config.dry_run() {
return Vec::new();
}
let target_root_dir = stamp.parent().unwrap();
let target_deps_dir = target_root_dir.join("deps");
let host_root_dir = target_root_dir
.parent()
.unwrap() .parent()
.unwrap() .join(target_root_dir.file_name().unwrap());
let mut deps = Vec::new();
let mut toplevel = Vec::new();
let ok = stream_cargo(builder, cargo, tail_args, &mut |msg| {
let (filenames, crate_types) = match msg {
CargoMessage::CompilerArtifact {
filenames,
target: CargoTarget { crate_types },
..
} => (filenames, crate_types),
_ => return,
};
for filename in filenames {
let mut keep = false;
if filename.ends_with(".lib")
|| filename.ends_with(".a")
|| is_debug_info(&filename)
|| is_dylib(&filename)
{
keep = true;
}
if is_check && filename.ends_with(".rmeta") {
keep = true;
} else if rlib_only_metadata {
if filename.contains("jemalloc_sys") || filename.contains("rustc_smir") {
keep |= filename.ends_with(".rlib");
} else {
keep |= filename.ends_with(".rmeta");
}
} else {
keep |= filename.ends_with(".rlib");
}
if !keep {
continue;
}
let filename = Path::new(&*filename);
if filename.starts_with(&host_root_dir) {
if crate_types.iter().any(|t| t == "proc-macro") {
deps.push((filename.to_path_buf(), DependencyType::Host));
}
continue;
}
if filename.starts_with(&target_deps_dir) {
deps.push((filename.to_path_buf(), DependencyType::Target));
continue;
}
let expected_len = t!(filename.metadata()).len();
let filename = filename.file_name().unwrap().to_str().unwrap();
let mut parts = filename.splitn(2, '.');
let file_stem = parts.next().unwrap().to_owned();
let extension = parts.next().unwrap().to_owned();
toplevel.push((file_stem, extension, expected_len));
}
});
if !ok {
crate::detail_exit(1);
}
let contents = t!(target_deps_dir.read_dir())
.map(|e| t!(e))
.map(|e| (e.path(), e.file_name().into_string().unwrap(), t!(e.metadata())))
.collect::<Vec<_>>();
for (prefix, extension, expected_len) in toplevel {
let candidates = contents.iter().filter(|&&(_, ref filename, ref meta)| {
meta.len() == expected_len
&& filename
.strip_prefix(&prefix[..])
.map(|s| s.starts_with('-') && s.ends_with(&extension[..]))
.unwrap_or(false)
});
let max = candidates.max_by_key(|&&(_, _, ref metadata)| {
metadata.modified().expect("mtime should be available on all relevant OSes")
});
let path_to_add = match max {
Some(triple) => triple.0.to_str().unwrap(),
None => panic!("no output generated for {:?} {:?}", prefix, extension),
};
if is_dylib(path_to_add) {
let candidate = format!("{}.lib", path_to_add);
let candidate = PathBuf::from(candidate);
if candidate.exists() {
deps.push((candidate, DependencyType::Target));
}
}
deps.push((path_to_add.into(), DependencyType::Target));
}
deps.extend(additional_target_deps);
deps.sort();
let mut new_contents = Vec::new();
for (dep, dependency_type) in deps.iter() {
new_contents.extend(match *dependency_type {
DependencyType::Host => b"h",
DependencyType::Target => b"t",
DependencyType::TargetSelfContained => b"s",
});
new_contents.extend(dep.to_str().unwrap().as_bytes());
new_contents.extend(b"\0");
}
t!(fs::write(&stamp, &new_contents));
deps.into_iter().map(|(d, _)| d).collect()
}
pub fn stream_cargo(
builder: &Builder<'_>,
cargo: Cargo,
tail_args: Vec<String>,
cb: &mut dyn FnMut(CargoMessage<'_>),
) -> bool {
let mut cargo = Command::from(cargo);
if builder.config.dry_run() {
return true;
}
let mut message_format = if builder.config.json_output {
String::from("json")
} else {
String::from("json-render-diagnostics")
};
if let Some(s) = &builder.config.rustc_error_format {
message_format.push_str(",json-diagnostic-");
message_format.push_str(s);
}
cargo.arg("--message-format").arg(message_format).stdout(Stdio::piped());
for arg in tail_args {
cargo.arg(arg);
}
builder.verbose(&format!("running: {:?}", cargo));
let mut child = match cargo.spawn() {
Ok(child) => child,
Err(e) => panic!("failed to execute command: {:?}\nerror: {}", cargo, e),
};
let stdout = BufReader::new(child.stdout.take().unwrap());
for line in stdout.lines() {
let line = t!(line);
match serde_json::from_str::<CargoMessage<'_>>(&line) {
Ok(msg) => {
if builder.config.json_output {
println!("{}", line);
}
cb(msg)
}
Err(_) => println!("{}", line),
}
}
let status = t!(child.wait());
if builder.is_verbose() && !status.success() {
eprintln!(
"command did not execute successfully: {:?}\n\
expected success, got: {}",
cargo, status
);
}
status.success()
}
#[derive(Deserialize)]
pub struct CargoTarget<'a> {
crate_types: Vec<Cow<'a, str>>,
}
#[derive(Deserialize)]
#[serde(tag = "reason", rename_all = "kebab-case")]
pub enum CargoMessage<'a> {
CompilerArtifact {
package_id: Cow<'a, str>,
features: Vec<Cow<'a, str>>,
filenames: Vec<Cow<'a, str>>,
target: CargoTarget<'a>,
},
BuildScriptExecuted {
package_id: Cow<'a, str>,
},
BuildFinished {
success: bool,
},
}