391 lines
14 KiB
Rust
391 lines
14 KiB
Rust
/*
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* TODO(antoyo): implement equality in libgccjit based on https://zpz.github.io/blog/overloading-equality-operator-in-cpp-class-hierarchy/ (for type equality?)
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* TODO(antoyo): support #[inline] attributes.
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* TODO(antoyo): support LTO (gcc's equivalent to Full LTO is -flto -flto-partition=one — https://documentation.suse.com/sbp/all/html/SBP-GCC-10/index.html).
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* For Thin LTO, this might be helpful:
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* In gcc 4.6 -fwhopr was removed and became default with -flto. The non-whopr path can still be executed via -flto-partition=none.
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*
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* Maybe some missing optizations enabled by rustc's LTO is in there: https://gcc.gnu.org/onlinedocs/gcc/Optimize-Options.html
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* Like -fipa-icf (should be already enabled) and maybe -fdevirtualize-at-ltrans.
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* TODO: disable debug info always being emitted. Perhaps this slows down things?
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*
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* TODO(antoyo): remove the patches.
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*/
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#![feature(
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rustc_private,
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decl_macro,
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associated_type_bounds,
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never_type,
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trusted_len,
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hash_raw_entry
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)]
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#![allow(broken_intra_doc_links)]
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#![recursion_limit="256"]
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#![warn(rust_2018_idioms)]
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#![warn(unused_lifetimes)]
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#![deny(rustc::untranslatable_diagnostic)]
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#![deny(rustc::diagnostic_outside_of_impl)]
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extern crate rustc_apfloat;
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extern crate rustc_ast;
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extern crate rustc_attr;
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extern crate rustc_codegen_ssa;
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extern crate rustc_data_structures;
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extern crate rustc_errors;
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extern crate rustc_fluent_macro;
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extern crate rustc_fs_util;
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extern crate rustc_hir;
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extern crate rustc_macros;
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extern crate rustc_metadata;
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extern crate rustc_middle;
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extern crate rustc_session;
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extern crate rustc_span;
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extern crate rustc_target;
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#[macro_use]
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extern crate tracing;
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// This prevents duplicating functions and statics that are already part of the host rustc process.
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#[allow(unused_extern_crates)]
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extern crate rustc_driver;
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mod abi;
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mod allocator;
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mod archive;
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mod asm;
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mod attributes;
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mod back;
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mod base;
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mod builder;
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mod callee;
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mod common;
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mod consts;
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mod context;
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mod coverageinfo;
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mod debuginfo;
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mod declare;
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mod errors;
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mod gcc_util;
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mod int;
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mod intrinsic;
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mod mono_item;
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mod type_;
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mod type_of;
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use std::any::Any;
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use std::sync::Arc;
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use std::sync::Mutex;
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#[cfg(not(feature="master"))]
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use std::sync::atomic::AtomicBool;
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#[cfg(not(feature="master"))]
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use std::sync::atomic::Ordering;
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use gccjit::{Context, OptimizationLevel};
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#[cfg(feature="master")]
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use gccjit::TargetInfo;
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#[cfg(not(feature="master"))]
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use gccjit::CType;
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use errors::LTONotSupported;
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use rustc_ast::expand::allocator::AllocatorKind;
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use rustc_codegen_ssa::{CodegenResults, CompiledModule, ModuleCodegen};
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use rustc_codegen_ssa::base::codegen_crate;
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use rustc_codegen_ssa::back::write::{CodegenContext, FatLtoInput, ModuleConfig, TargetMachineFactoryFn};
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use rustc_codegen_ssa::back::lto::{LtoModuleCodegen, SerializedModule, ThinModule};
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use rustc_codegen_ssa::target_features::supported_target_features;
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use rustc_data_structures::fx::FxIndexMap;
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use rustc_codegen_ssa::traits::{CodegenBackend, ExtraBackendMethods, ThinBufferMethods, WriteBackendMethods};
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use rustc_errors::{DiagnosticMessage, ErrorGuaranteed, Handler, SubdiagnosticMessage};
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use rustc_fluent_macro::fluent_messages;
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use rustc_metadata::EncodedMetadata;
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use rustc_middle::dep_graph::{WorkProduct, WorkProductId};
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use rustc_middle::util::Providers;
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use rustc_middle::ty::TyCtxt;
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use rustc_session::config::{Lto, OptLevel, OutputFilenames};
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use rustc_session::Session;
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use rustc_span::Symbol;
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use rustc_span::fatal_error::FatalError;
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use tempfile::TempDir;
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use crate::back::lto::ModuleBuffer;
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use crate::gcc_util::target_cpu;
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fluent_messages! { "../messages.ftl" }
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pub struct PrintOnPanic<F: Fn() -> String>(pub F);
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impl<F: Fn() -> String> Drop for PrintOnPanic<F> {
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fn drop(&mut self) {
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if ::std::thread::panicking() {
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println!("{}", (self.0)());
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}
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}
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}
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#[cfg(not(feature="master"))]
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#[derive(Debug)]
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pub struct TargetInfo {
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supports_128bit_integers: AtomicBool,
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}
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#[cfg(not(feature="master"))]
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impl TargetInfo {
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fn cpu_supports(&self, _feature: &str) -> bool {
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false
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}
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fn supports_128bit_int(&self) -> bool {
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self.supports_128bit_integers.load(Ordering::SeqCst)
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}
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}
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#[derive(Clone, Debug)]
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pub struct LockedTargetInfo {
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info: Arc<Mutex<TargetInfo>>,
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}
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impl LockedTargetInfo {
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fn cpu_supports(&self, feature: &str) -> bool {
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self.info.lock().expect("lock").cpu_supports(feature)
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}
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fn supports_128bit_int(&self) -> bool {
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self.info.lock().expect("lock").supports_128bit_int()
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}
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}
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#[derive(Clone)]
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pub struct GccCodegenBackend {
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target_info: LockedTargetInfo,
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}
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impl CodegenBackend for GccCodegenBackend {
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fn locale_resource(&self) -> &'static str {
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crate::DEFAULT_LOCALE_RESOURCE
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}
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fn init(&self, sess: &Session) {
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#[cfg(feature="master")]
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{
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let target_cpu = target_cpu(sess);
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// Get the second TargetInfo with the correct CPU features by setting the arch.
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let context = Context::default();
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if target_cpu != "generic" {
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context.add_command_line_option(&format!("-march={}", target_cpu));
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}
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*self.target_info.info.lock().expect("lock") = context.get_target_info();
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}
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#[cfg(feature="master")]
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gccjit::set_global_personality_function_name(b"rust_eh_personality\0");
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if sess.lto() == Lto::Thin {
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sess.emit_warning(LTONotSupported {});
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}
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#[cfg(not(feature="master"))]
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{
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let temp_dir = TempDir::new().expect("cannot create temporary directory");
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let temp_file = temp_dir.into_path().join("result.asm");
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let check_context = Context::default();
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check_context.set_print_errors_to_stderr(false);
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let _int128_ty = check_context.new_c_type(CType::UInt128t);
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// NOTE: we cannot just call compile() as this would require other files than libgccjit.so.
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check_context.compile_to_file(gccjit::OutputKind::Assembler, temp_file.to_str().expect("path to str"));
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self.target_info.info.lock().expect("lock").supports_128bit_integers.store(check_context.get_last_error() == Ok(None), Ordering::SeqCst);
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}
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}
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fn provide(&self, providers: &mut Providers) {
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providers.global_backend_features =
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|tcx, ()| gcc_util::global_gcc_features(tcx.sess, true)
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}
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fn codegen_crate<'tcx>(&self, tcx: TyCtxt<'tcx>, metadata: EncodedMetadata, need_metadata_module: bool) -> Box<dyn Any> {
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let target_cpu = target_cpu(tcx.sess);
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let res = codegen_crate(self.clone(), tcx, target_cpu.to_string(), metadata, need_metadata_module);
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Box::new(res)
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}
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fn join_codegen(&self, ongoing_codegen: Box<dyn Any>, sess: &Session, _outputs: &OutputFilenames) -> Result<(CodegenResults, FxIndexMap<WorkProductId, WorkProduct>), ErrorGuaranteed> {
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let (codegen_results, work_products) = ongoing_codegen
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.downcast::<rustc_codegen_ssa::back::write::OngoingCodegen<GccCodegenBackend>>()
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.expect("Expected GccCodegenBackend's OngoingCodegen, found Box<Any>")
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.join(sess);
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Ok((codegen_results, work_products))
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}
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fn link(&self, sess: &Session, codegen_results: CodegenResults, outputs: &OutputFilenames) -> Result<(), ErrorGuaranteed> {
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use rustc_codegen_ssa::back::link::link_binary;
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link_binary(
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sess,
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&crate::archive::ArArchiveBuilderBuilder,
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&codegen_results,
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outputs,
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)
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}
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fn target_features(&self, sess: &Session, allow_unstable: bool) -> Vec<Symbol> {
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target_features(sess, allow_unstable, &self.target_info)
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}
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}
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impl ExtraBackendMethods for GccCodegenBackend {
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fn codegen_allocator<'tcx>(&self, tcx: TyCtxt<'tcx>, module_name: &str, kind: AllocatorKind, alloc_error_handler_kind: AllocatorKind) -> Self::Module {
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let mut mods = GccContext {
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context: Context::default(),
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should_combine_object_files: false,
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temp_dir: None,
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};
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if tcx.sess.target.arch == "x86" || tcx.sess.target.arch == "x86_64" {
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mods.context.add_command_line_option("-masm=intel");
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}
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unsafe { allocator::codegen(tcx, &mut mods, module_name, kind, alloc_error_handler_kind); }
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mods
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}
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fn compile_codegen_unit(&self, tcx: TyCtxt<'_>, cgu_name: Symbol) -> (ModuleCodegen<Self::Module>, u64) {
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base::compile_codegen_unit(tcx, cgu_name, self.target_info.clone())
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}
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fn target_machine_factory(&self, _sess: &Session, _opt_level: OptLevel, _features: &[String]) -> TargetMachineFactoryFn<Self> {
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// TODO(antoyo): set opt level.
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Arc::new(|_| {
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Ok(())
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})
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}
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}
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pub struct ThinBuffer;
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impl ThinBufferMethods for ThinBuffer {
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fn data(&self) -> &[u8] {
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unimplemented!();
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}
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}
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pub struct GccContext {
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context: Context<'static>,
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should_combine_object_files: bool,
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// Temporary directory used by LTO. We keep it here so that it's not removed before linking.
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temp_dir: Option<TempDir>,
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}
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unsafe impl Send for GccContext {}
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// FIXME(antoyo): that shouldn't be Sync. Parallel compilation is currently disabled with "-Zno-parallel-llvm". Try to disable it here.
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unsafe impl Sync for GccContext {}
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impl WriteBackendMethods for GccCodegenBackend {
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type Module = GccContext;
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type TargetMachine = ();
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type TargetMachineError = ();
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type ModuleBuffer = ModuleBuffer;
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type ThinData = ();
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type ThinBuffer = ThinBuffer;
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fn run_fat_lto(cgcx: &CodegenContext<Self>, modules: Vec<FatLtoInput<Self>>, cached_modules: Vec<(SerializedModule<Self::ModuleBuffer>, WorkProduct)>) -> Result<LtoModuleCodegen<Self>, FatalError> {
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back::lto::run_fat(cgcx, modules, cached_modules)
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}
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fn run_thin_lto(_cgcx: &CodegenContext<Self>, _modules: Vec<(String, Self::ThinBuffer)>, _cached_modules: Vec<(SerializedModule<Self::ModuleBuffer>, WorkProduct)>) -> Result<(Vec<LtoModuleCodegen<Self>>, Vec<WorkProduct>), FatalError> {
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unimplemented!();
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}
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fn print_pass_timings(&self) {
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unimplemented!();
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}
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fn print_statistics(&self) {
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unimplemented!()
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}
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unsafe fn optimize(_cgcx: &CodegenContext<Self>, _diag_handler: &Handler, module: &ModuleCodegen<Self::Module>, config: &ModuleConfig) -> Result<(), FatalError> {
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module.module_llvm.context.set_optimization_level(to_gcc_opt_level(config.opt_level));
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Ok(())
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}
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fn optimize_fat(_cgcx: &CodegenContext<Self>, _module: &mut ModuleCodegen<Self::Module>) -> Result<(), FatalError> {
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// TODO(antoyo)
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Ok(())
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}
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unsafe fn optimize_thin(_cgcx: &CodegenContext<Self>, _thin: ThinModule<Self>) -> Result<ModuleCodegen<Self::Module>, FatalError> {
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unimplemented!();
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}
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unsafe fn codegen(cgcx: &CodegenContext<Self>, diag_handler: &Handler, module: ModuleCodegen<Self::Module>, config: &ModuleConfig) -> Result<CompiledModule, FatalError> {
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back::write::codegen(cgcx, diag_handler, module, config)
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}
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fn prepare_thin(_module: ModuleCodegen<Self::Module>) -> (String, Self::ThinBuffer) {
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unimplemented!();
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}
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fn serialize_module(_module: ModuleCodegen<Self::Module>) -> (String, Self::ModuleBuffer) {
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unimplemented!();
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}
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fn run_link(cgcx: &CodegenContext<Self>, diag_handler: &Handler, modules: Vec<ModuleCodegen<Self::Module>>) -> Result<ModuleCodegen<Self::Module>, FatalError> {
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back::write::link(cgcx, diag_handler, modules)
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}
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}
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/// This is the entrypoint for a hot plugged rustc_codegen_gccjit
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#[no_mangle]
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pub fn __rustc_codegen_backend() -> Box<dyn CodegenBackend> {
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#[cfg(feature="master")]
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let info = {
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// Check whether the target supports 128-bit integers.
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let context = Context::default();
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Arc::new(Mutex::new(context.get_target_info()))
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};
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#[cfg(not(feature="master"))]
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let info = Arc::new(Mutex::new(TargetInfo {
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supports_128bit_integers: AtomicBool::new(false),
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}));
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Box::new(GccCodegenBackend {
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target_info: LockedTargetInfo { info },
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})
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}
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fn to_gcc_opt_level(optlevel: Option<OptLevel>) -> OptimizationLevel {
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match optlevel {
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None => OptimizationLevel::None,
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Some(level) => {
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match level {
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OptLevel::No => OptimizationLevel::None,
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OptLevel::Less => OptimizationLevel::Limited,
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OptLevel::Default => OptimizationLevel::Standard,
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OptLevel::Aggressive => OptimizationLevel::Aggressive,
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OptLevel::Size | OptLevel::SizeMin => OptimizationLevel::Limited,
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}
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},
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}
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}
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pub fn target_features(sess: &Session, allow_unstable: bool, target_info: &LockedTargetInfo) -> Vec<Symbol> {
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supported_target_features(sess)
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.iter()
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.filter_map(
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|&(feature, gate)| {
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if sess.is_nightly_build() || allow_unstable || gate.is_none() { Some(feature) } else { None }
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},
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)
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.filter(|_feature| {
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target_info.cpu_supports(_feature)
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/*
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adx, aes, avx, avx2, avx512bf16, avx512bitalg, avx512bw, avx512cd, avx512dq, avx512er, avx512f, avx512ifma,
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avx512pf, avx512vbmi, avx512vbmi2, avx512vl, avx512vnni, avx512vp2intersect, avx512vpopcntdq,
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bmi1, bmi2, cmpxchg16b, ermsb, f16c, fma, fxsr, gfni, lzcnt, movbe, pclmulqdq, popcnt, rdrand, rdseed, rtm,
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sha, sse, sse2, sse3, sse4.1, sse4.2, sse4a, ssse3, tbm, vaes, vpclmulqdq, xsave, xsavec, xsaveopt, xsaves
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*/
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})
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.map(|feature| Symbol::intern(feature))
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.collect()
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}
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