288e142737
rename feature to const_eval_limit
981 lines
34 KiB
Rust
981 lines
34 KiB
Rust
use crate::interface::{Compiler, Result};
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use crate::proc_macro_decls;
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use crate::util;
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use log::{info, log_enabled, warn};
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use rustc::arena::Arena;
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use rustc::dep_graph::DepGraph;
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use rustc::hir::map;
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use rustc::lint;
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use rustc::middle;
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use rustc::middle::cstore::{CrateStore, MetadataLoader, MetadataLoaderDyn};
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use rustc::session::config::{self, CrateType, Input, OutputFilenames, OutputType};
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use rustc::session::config::{PpMode, PpSourceMode};
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use rustc::session::search_paths::PathKind;
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use rustc::session::Session;
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use rustc::ty::steal::Steal;
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use rustc::ty::{self, GlobalCtxt, ResolverOutputs, TyCtxt};
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use rustc::util::common::ErrorReported;
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use rustc_ast::mut_visit::MutVisitor;
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use rustc_ast::{self, ast, visit};
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use rustc_codegen_ssa::back::link::emit_metadata;
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use rustc_codegen_utils::codegen_backend::CodegenBackend;
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use rustc_codegen_utils::link::filename_for_metadata;
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use rustc_data_structures::sync::{par_iter, Lrc, Once, ParallelIterator, WorkerLocal};
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use rustc_data_structures::{box_region_allow_access, declare_box_region_type, parallel};
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use rustc_errors::PResult;
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use rustc_expand::base::ExtCtxt;
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use rustc_hir::def_id::{CrateNum, LOCAL_CRATE};
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use rustc_hir::Crate;
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use rustc_infer::traits;
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use rustc_lint::LintStore;
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use rustc_mir as mir;
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use rustc_mir_build as mir_build;
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use rustc_parse::{parse_crate_from_file, parse_crate_from_source_str};
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use rustc_passes::{self, hir_stats, layout_test};
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use rustc_plugin_impl as plugin;
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use rustc_resolve::{Resolver, ResolverArenas};
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use rustc_span::symbol::Symbol;
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use rustc_span::FileName;
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use rustc_typeck as typeck;
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use rustc_serialize::json;
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use tempfile::Builder as TempFileBuilder;
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use std::any::Any;
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use std::cell::RefCell;
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use std::ffi::OsString;
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use std::io::{self, BufWriter, Write};
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use std::path::PathBuf;
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use std::rc::Rc;
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use std::{env, fs, iter, mem};
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pub fn parse<'a>(sess: &'a Session, input: &Input) -> PResult<'a, ast::Crate> {
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let krate = sess.time("parse_crate", || match input {
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Input::File(file) => parse_crate_from_file(file, &sess.parse_sess),
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Input::Str { input, name } => {
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parse_crate_from_source_str(name.clone(), input.clone(), &sess.parse_sess)
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}
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})?;
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if sess.opts.debugging_opts.ast_json_noexpand {
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println!("{}", json::as_json(&krate));
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}
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if sess.opts.debugging_opts.input_stats {
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println!("Lines of code: {}", sess.source_map().count_lines());
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println!("Pre-expansion node count: {}", count_nodes(&krate));
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}
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if let Some(ref s) = sess.opts.debugging_opts.show_span {
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rustc_ast_passes::show_span::run(sess.diagnostic(), s, &krate);
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}
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if sess.opts.debugging_opts.hir_stats {
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hir_stats::print_ast_stats(&krate, "PRE EXPANSION AST STATS");
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}
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Ok(krate)
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}
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fn count_nodes(krate: &ast::Crate) -> usize {
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let mut counter = rustc_ast_passes::node_count::NodeCounter::new();
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visit::walk_crate(&mut counter, krate);
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counter.count
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}
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declare_box_region_type!(
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pub BoxedResolver,
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for(),
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(&mut Resolver<'_>) -> (Result<ast::Crate>, ResolverOutputs)
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);
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/// Runs the "early phases" of the compiler: initial `cfg` processing, loading compiler plugins,
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/// syntax expansion, secondary `cfg` expansion, synthesis of a test
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/// harness if one is to be provided, injection of a dependency on the
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/// standard library and prelude, and name resolution.
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///
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/// Returns `None` if we're aborting after handling -W help.
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pub fn configure_and_expand(
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sess: Lrc<Session>,
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lint_store: Lrc<LintStore>,
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metadata_loader: Box<MetadataLoaderDyn>,
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krate: ast::Crate,
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crate_name: &str,
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) -> Result<(ast::Crate, BoxedResolver)> {
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// Currently, we ignore the name resolution data structures for the purposes of dependency
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// tracking. Instead we will run name resolution and include its output in the hash of each
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// item, much like we do for macro expansion. In other words, the hash reflects not just
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// its contents but the results of name resolution on those contents. Hopefully we'll push
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// this back at some point.
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let crate_name = crate_name.to_string();
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let (result, resolver) = BoxedResolver::new(static move || {
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let sess = &*sess;
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let resolver_arenas = Resolver::arenas();
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let res = configure_and_expand_inner(
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sess,
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&lint_store,
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krate,
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&crate_name,
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&resolver_arenas,
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&*metadata_loader,
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);
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let mut resolver = match res {
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Err(v) => {
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yield BoxedResolver::initial_yield(Err(v));
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panic!()
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}
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Ok((krate, resolver)) => {
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yield BoxedResolver::initial_yield(Ok(krate));
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resolver
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}
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};
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box_region_allow_access!(for(), (&mut Resolver<'_>), (&mut resolver));
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resolver.into_outputs()
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});
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result.map(|k| (k, resolver))
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}
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impl BoxedResolver {
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pub fn to_resolver_outputs(resolver: Rc<RefCell<BoxedResolver>>) -> ResolverOutputs {
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match Rc::try_unwrap(resolver) {
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Ok(resolver) => resolver.into_inner().complete(),
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Err(resolver) => resolver.borrow_mut().access(|resolver| resolver.clone_outputs()),
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}
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}
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}
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pub fn register_plugins<'a>(
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sess: &'a Session,
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metadata_loader: &'a dyn MetadataLoader,
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register_lints: impl Fn(&Session, &mut LintStore),
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mut krate: ast::Crate,
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crate_name: &str,
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) -> Result<(ast::Crate, Lrc<LintStore>)> {
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krate = sess.time("attributes_injection", || {
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rustc_builtin_macros::cmdline_attrs::inject(
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krate,
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&sess.parse_sess,
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&sess.opts.debugging_opts.crate_attr,
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)
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});
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let (krate, features) = rustc_expand::config::features(
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krate,
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&sess.parse_sess,
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sess.edition(),
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&sess.opts.debugging_opts.allow_features,
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);
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// these need to be set "early" so that expansion sees `quote` if enabled.
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sess.init_features(features);
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let crate_types = util::collect_crate_types(sess, &krate.attrs);
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sess.crate_types.set(crate_types);
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let disambiguator = util::compute_crate_disambiguator(sess);
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sess.crate_disambiguator.set(disambiguator);
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rustc_incremental::prepare_session_directory(sess, &crate_name, disambiguator);
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if sess.opts.incremental.is_some() {
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sess.time("incr_comp_garbage_collect_session_directories", || {
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if let Err(e) = rustc_incremental::garbage_collect_session_directories(sess) {
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warn!(
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"Error while trying to garbage collect incremental \
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compilation cache directory: {}",
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e
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);
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}
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});
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}
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sess.time("recursion_limit", || {
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middle::limits::update_limits(sess, &krate);
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});
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let mut lint_store = rustc_lint::new_lint_store(
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sess.opts.debugging_opts.no_interleave_lints,
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sess.unstable_options(),
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);
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register_lints(&sess, &mut lint_store);
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let registrars =
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sess.time("plugin_loading", || plugin::load::load_plugins(sess, metadata_loader, &krate));
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sess.time("plugin_registration", || {
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let mut registry = plugin::Registry { lint_store: &mut lint_store };
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for registrar in registrars {
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registrar(&mut registry);
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}
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});
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Ok((krate, Lrc::new(lint_store)))
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}
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fn configure_and_expand_inner<'a>(
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sess: &'a Session,
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lint_store: &'a LintStore,
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mut krate: ast::Crate,
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crate_name: &str,
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resolver_arenas: &'a ResolverArenas<'a>,
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metadata_loader: &'a MetadataLoaderDyn,
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) -> Result<(ast::Crate, Resolver<'a>)> {
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sess.time("pre_AST_expansion_lint_checks", || {
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rustc_lint::check_ast_crate(
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sess,
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lint_store,
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&krate,
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true,
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None,
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rustc_lint::BuiltinCombinedPreExpansionLintPass::new(),
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);
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});
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let mut resolver = Resolver::new(sess, &krate, crate_name, metadata_loader, &resolver_arenas);
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rustc_builtin_macros::register_builtin_macros(&mut resolver, sess.edition());
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krate = sess.time("crate_injection", || {
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let alt_std_name = sess.opts.alt_std_name.as_ref().map(|s| Symbol::intern(s));
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let (krate, name) = rustc_builtin_macros::standard_library_imports::inject(
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krate,
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&mut resolver,
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&sess.parse_sess,
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alt_std_name,
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);
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if let Some(name) = name {
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sess.parse_sess.injected_crate_name.set(name);
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}
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krate
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});
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util::check_attr_crate_type(&krate.attrs, &mut resolver.lint_buffer());
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// Expand all macros
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krate = sess.time("macro_expand_crate", || {
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// Windows dlls do not have rpaths, so they don't know how to find their
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// dependencies. It's up to us to tell the system where to find all the
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// dependent dlls. Note that this uses cfg!(windows) as opposed to
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// targ_cfg because syntax extensions are always loaded for the host
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// compiler, not for the target.
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//
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// This is somewhat of an inherently racy operation, however, as
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// multiple threads calling this function could possibly continue
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// extending PATH far beyond what it should. To solve this for now we
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// just don't add any new elements to PATH which are already there
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// within PATH. This is basically a targeted fix at #17360 for rustdoc
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// which runs rustc in parallel but has been seen (#33844) to cause
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// problems with PATH becoming too long.
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let mut old_path = OsString::new();
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if cfg!(windows) {
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old_path = env::var_os("PATH").unwrap_or(old_path);
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let mut new_path = sess.host_filesearch(PathKind::All).search_path_dirs();
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for path in env::split_paths(&old_path) {
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if !new_path.contains(&path) {
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new_path.push(path);
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}
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}
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env::set_var(
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"PATH",
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&env::join_paths(
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new_path.iter().filter(|p| env::join_paths(iter::once(p)).is_ok()),
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)
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.unwrap(),
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);
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}
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// Create the config for macro expansion
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let features = sess.features_untracked();
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let cfg = rustc_expand::expand::ExpansionConfig {
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features: Some(&features),
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recursion_limit: *sess.recursion_limit.get(),
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trace_mac: sess.opts.debugging_opts.trace_macros,
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should_test: sess.opts.test,
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..rustc_expand::expand::ExpansionConfig::default(crate_name.to_string())
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};
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let mut ecx = ExtCtxt::new(&sess.parse_sess, cfg, &mut resolver);
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// Expand macros now!
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let krate = sess.time("expand_crate", || ecx.monotonic_expander().expand_crate(krate));
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// The rest is error reporting
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sess.time("check_unused_macros", || {
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ecx.check_unused_macros();
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});
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let mut missing_fragment_specifiers: Vec<_> =
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ecx.parse_sess.missing_fragment_specifiers.borrow().iter().cloned().collect();
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missing_fragment_specifiers.sort();
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for span in missing_fragment_specifiers {
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let lint = lint::builtin::MISSING_FRAGMENT_SPECIFIER;
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let msg = "missing fragment specifier";
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resolver.lint_buffer().buffer_lint(lint, ast::CRATE_NODE_ID, span, msg);
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}
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if cfg!(windows) {
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env::set_var("PATH", &old_path);
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}
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krate
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});
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sess.time("maybe_building_test_harness", || {
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rustc_builtin_macros::test_harness::inject(
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&sess.parse_sess,
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&mut resolver,
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sess.opts.test,
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&mut krate,
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sess.diagnostic(),
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&sess.features_untracked(),
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sess.panic_strategy(),
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sess.target.target.options.panic_strategy,
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sess.opts.debugging_opts.panic_abort_tests,
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)
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});
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// If we're actually rustdoc then there's no need to actually compile
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// anything, so switch everything to just looping
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let mut should_loop = sess.opts.actually_rustdoc;
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if let Some(PpMode::PpmSource(PpSourceMode::PpmEveryBodyLoops)) = sess.opts.pretty {
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should_loop |= true;
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}
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if should_loop {
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util::ReplaceBodyWithLoop::new(&mut resolver).visit_crate(&mut krate);
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}
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let has_proc_macro_decls = sess.time("AST_validation", || {
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rustc_ast_passes::ast_validation::check_crate(sess, &krate, &mut resolver.lint_buffer())
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});
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let crate_types = sess.crate_types.borrow();
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let is_proc_macro_crate = crate_types.contains(&config::CrateType::ProcMacro);
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// For backwards compatibility, we don't try to run proc macro injection
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// if rustdoc is run on a proc macro crate without '--crate-type proc-macro' being
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// specified. This should only affect users who manually invoke 'rustdoc', as
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// 'cargo doc' will automatically pass the proper '--crate-type' flags.
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// However, we do emit a warning, to let such users know that they should
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// start passing '--crate-type proc-macro'
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if has_proc_macro_decls && sess.opts.actually_rustdoc && !is_proc_macro_crate {
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let mut msg = sess.diagnostic().struct_warn(
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&"Trying to document proc macro crate \
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without passing '--crate-type proc-macro to rustdoc",
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);
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msg.warn("The generated documentation may be incorrect");
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msg.emit()
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} else {
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krate = sess.time("maybe_create_a_macro_crate", || {
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let num_crate_types = crate_types.len();
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let is_test_crate = sess.opts.test;
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|
rustc_builtin_macros::proc_macro_harness::inject(
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&sess.parse_sess,
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&mut resolver,
|
|
krate,
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is_proc_macro_crate,
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has_proc_macro_decls,
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|
is_test_crate,
|
|
num_crate_types,
|
|
sess.diagnostic(),
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|
)
|
|
});
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|
}
|
|
|
|
// Done with macro expansion!
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|
|
|
if sess.opts.debugging_opts.input_stats {
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println!("Post-expansion node count: {}", count_nodes(&krate));
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|
}
|
|
|
|
if sess.opts.debugging_opts.hir_stats {
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hir_stats::print_ast_stats(&krate, "POST EXPANSION AST STATS");
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|
}
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|
|
|
if sess.opts.debugging_opts.ast_json {
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println!("{}", json::as_json(&krate));
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|
}
|
|
|
|
resolver.resolve_crate(&krate);
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|
|
|
// Needs to go *after* expansion to be able to check the results of macro expansion.
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|
sess.time("complete_gated_feature_checking", || {
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|
rustc_ast_passes::feature_gate::check_crate(
|
|
&krate,
|
|
&sess.parse_sess,
|
|
&sess.features_untracked(),
|
|
sess.opts.unstable_features,
|
|
);
|
|
});
|
|
|
|
// Add all buffered lints from the `ParseSess` to the `Session`.
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|
sess.parse_sess.buffered_lints.with_lock(|buffered_lints| {
|
|
info!("{} parse sess buffered_lints", buffered_lints.len());
|
|
for early_lint in buffered_lints.drain(..) {
|
|
resolver.lint_buffer().add_early_lint(early_lint);
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|
}
|
|
});
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|
|
|
Ok((krate, resolver))
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|
}
|
|
|
|
pub fn lower_to_hir<'res, 'tcx>(
|
|
sess: &'tcx Session,
|
|
lint_store: &LintStore,
|
|
resolver: &'res mut Resolver<'_>,
|
|
dep_graph: &'res DepGraph,
|
|
krate: &'res ast::Crate,
|
|
arena: &'tcx Arena<'tcx>,
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|
) -> Crate<'tcx> {
|
|
// Lower AST to HIR.
|
|
let hir_crate = rustc_ast_lowering::lower_crate(
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|
sess,
|
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&dep_graph,
|
|
&krate,
|
|
resolver,
|
|
rustc_parse::nt_to_tokenstream,
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|
arena,
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);
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|
|
if sess.opts.debugging_opts.hir_stats {
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hir_stats::print_hir_stats(&hir_crate);
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|
}
|
|
|
|
sess.time("early_lint_checks", || {
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rustc_lint::check_ast_crate(
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|
sess,
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|
lint_store,
|
|
&krate,
|
|
false,
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|
Some(std::mem::take(resolver.lint_buffer())),
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|
rustc_lint::BuiltinCombinedEarlyLintPass::new(),
|
|
)
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|
});
|
|
|
|
// Discard hygiene data, which isn't required after lowering to HIR.
|
|
if !sess.opts.debugging_opts.keep_hygiene_data {
|
|
rustc_span::hygiene::clear_syntax_context_map();
|
|
}
|
|
|
|
hir_crate
|
|
}
|
|
|
|
// Returns all the paths that correspond to generated files.
|
|
fn generated_output_paths(
|
|
sess: &Session,
|
|
outputs: &OutputFilenames,
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|
exact_name: bool,
|
|
crate_name: &str,
|
|
) -> Vec<PathBuf> {
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|
let mut out_filenames = Vec::new();
|
|
for output_type in sess.opts.output_types.keys() {
|
|
let file = outputs.path(*output_type);
|
|
match *output_type {
|
|
// If the filename has been overridden using `-o`, it will not be modified
|
|
// by appending `.rlib`, `.exe`, etc., so we can skip this transformation.
|
|
OutputType::Exe if !exact_name => {
|
|
for crate_type in sess.crate_types.borrow().iter() {
|
|
let p = ::rustc_codegen_utils::link::filename_for_input(
|
|
sess,
|
|
*crate_type,
|
|
crate_name,
|
|
outputs,
|
|
);
|
|
out_filenames.push(p);
|
|
}
|
|
}
|
|
OutputType::DepInfo if sess.opts.debugging_opts.dep_info_omit_d_target => {
|
|
// Don't add the dep-info output when omitting it from dep-info targets
|
|
}
|
|
_ => {
|
|
out_filenames.push(file);
|
|
}
|
|
}
|
|
}
|
|
out_filenames
|
|
}
|
|
|
|
// Runs `f` on every output file path and returns the first non-None result, or None if `f`
|
|
// returns None for every file path.
|
|
fn check_output<F, T>(output_paths: &[PathBuf], f: F) -> Option<T>
|
|
where
|
|
F: Fn(&PathBuf) -> Option<T>,
|
|
{
|
|
for output_path in output_paths {
|
|
if let Some(result) = f(output_path) {
|
|
return Some(result);
|
|
}
|
|
}
|
|
None
|
|
}
|
|
|
|
fn output_contains_path(output_paths: &[PathBuf], input_path: &PathBuf) -> bool {
|
|
let input_path = input_path.canonicalize().ok();
|
|
if input_path.is_none() {
|
|
return false;
|
|
}
|
|
let check = |output_path: &PathBuf| {
|
|
if output_path.canonicalize().ok() == input_path { Some(()) } else { None }
|
|
};
|
|
check_output(output_paths, check).is_some()
|
|
}
|
|
|
|
fn output_conflicts_with_dir(output_paths: &[PathBuf]) -> Option<PathBuf> {
|
|
let check = |output_path: &PathBuf| output_path.is_dir().then(|| output_path.clone());
|
|
check_output(output_paths, check)
|
|
}
|
|
|
|
fn escape_dep_filename(filename: &FileName) -> String {
|
|
// Apparently clang and gcc *only* escape spaces:
|
|
// http://llvm.org/klaus/clang/commit/9d50634cfc268ecc9a7250226dd5ca0e945240d4
|
|
filename.to_string().replace(" ", "\\ ")
|
|
}
|
|
|
|
fn write_out_deps(
|
|
sess: &Session,
|
|
boxed_resolver: &Steal<Rc<RefCell<BoxedResolver>>>,
|
|
outputs: &OutputFilenames,
|
|
out_filenames: &[PathBuf],
|
|
) {
|
|
// Write out dependency rules to the dep-info file if requested
|
|
if !sess.opts.output_types.contains_key(&OutputType::DepInfo) {
|
|
return;
|
|
}
|
|
let deps_filename = outputs.path(OutputType::DepInfo);
|
|
|
|
let result = (|| -> io::Result<()> {
|
|
// Build a list of files used to compile the output and
|
|
// write Makefile-compatible dependency rules
|
|
let mut files: Vec<String> = sess
|
|
.source_map()
|
|
.files()
|
|
.iter()
|
|
.filter(|fmap| fmap.is_real_file())
|
|
.filter(|fmap| !fmap.is_imported())
|
|
.map(|fmap| escape_dep_filename(&fmap.unmapped_path.as_ref().unwrap_or(&fmap.name)))
|
|
.collect();
|
|
|
|
if sess.binary_dep_depinfo() {
|
|
boxed_resolver.borrow().borrow_mut().access(|resolver| {
|
|
for cnum in resolver.cstore().crates_untracked() {
|
|
let source = resolver.cstore().crate_source_untracked(cnum);
|
|
if let Some((path, _)) = source.dylib {
|
|
files.push(escape_dep_filename(&FileName::Real(path)));
|
|
}
|
|
if let Some((path, _)) = source.rlib {
|
|
files.push(escape_dep_filename(&FileName::Real(path)));
|
|
}
|
|
if let Some((path, _)) = source.rmeta {
|
|
files.push(escape_dep_filename(&FileName::Real(path)));
|
|
}
|
|
}
|
|
});
|
|
}
|
|
|
|
let mut file = BufWriter::new(fs::File::create(&deps_filename)?);
|
|
for path in out_filenames {
|
|
writeln!(file, "{}: {}\n", path.display(), files.join(" "))?;
|
|
}
|
|
|
|
// Emit a fake target for each input file to the compilation. This
|
|
// prevents `make` from spitting out an error if a file is later
|
|
// deleted. For more info see #28735
|
|
for path in files {
|
|
writeln!(file, "{}:", path)?;
|
|
}
|
|
Ok(())
|
|
})();
|
|
|
|
match result {
|
|
Ok(_) => {
|
|
if sess.opts.json_artifact_notifications {
|
|
sess.parse_sess
|
|
.span_diagnostic
|
|
.emit_artifact_notification(&deps_filename, "dep-info");
|
|
}
|
|
}
|
|
Err(e) => sess.fatal(&format!(
|
|
"error writing dependencies to `{}`: {}",
|
|
deps_filename.display(),
|
|
e
|
|
)),
|
|
}
|
|
}
|
|
|
|
pub fn prepare_outputs(
|
|
sess: &Session,
|
|
compiler: &Compiler,
|
|
krate: &ast::Crate,
|
|
boxed_resolver: &Steal<Rc<RefCell<BoxedResolver>>>,
|
|
crate_name: &str,
|
|
) -> Result<OutputFilenames> {
|
|
let _timer = sess.timer("prepare_outputs");
|
|
|
|
// FIXME: rustdoc passes &[] instead of &krate.attrs here
|
|
let outputs = util::build_output_filenames(
|
|
&compiler.input,
|
|
&compiler.output_dir,
|
|
&compiler.output_file,
|
|
&krate.attrs,
|
|
sess,
|
|
);
|
|
|
|
let output_paths =
|
|
generated_output_paths(sess, &outputs, compiler.output_file.is_some(), &crate_name);
|
|
|
|
// Ensure the source file isn't accidentally overwritten during compilation.
|
|
if let Some(ref input_path) = compiler.input_path {
|
|
if sess.opts.will_create_output_file() {
|
|
if output_contains_path(&output_paths, input_path) {
|
|
sess.err(&format!(
|
|
"the input file \"{}\" would be overwritten by the generated \
|
|
executable",
|
|
input_path.display()
|
|
));
|
|
return Err(ErrorReported);
|
|
}
|
|
if let Some(dir_path) = output_conflicts_with_dir(&output_paths) {
|
|
sess.err(&format!(
|
|
"the generated executable for the input file \"{}\" conflicts with the \
|
|
existing directory \"{}\"",
|
|
input_path.display(),
|
|
dir_path.display()
|
|
));
|
|
return Err(ErrorReported);
|
|
}
|
|
}
|
|
}
|
|
|
|
write_out_deps(sess, boxed_resolver, &outputs, &output_paths);
|
|
|
|
let only_dep_info = sess.opts.output_types.contains_key(&OutputType::DepInfo)
|
|
&& sess.opts.output_types.len() == 1;
|
|
|
|
if !only_dep_info {
|
|
if let Some(ref dir) = compiler.output_dir {
|
|
if fs::create_dir_all(dir).is_err() {
|
|
sess.err("failed to find or create the directory specified by `--out-dir`");
|
|
return Err(ErrorReported);
|
|
}
|
|
}
|
|
}
|
|
|
|
Ok(outputs)
|
|
}
|
|
|
|
pub fn default_provide(providers: &mut ty::query::Providers<'_>) {
|
|
providers.analysis = analysis;
|
|
proc_macro_decls::provide(providers);
|
|
plugin::build::provide(providers);
|
|
rustc::hir::provide(providers);
|
|
mir::provide(providers);
|
|
mir_build::provide(providers);
|
|
rustc_privacy::provide(providers);
|
|
typeck::provide(providers);
|
|
ty::provide(providers);
|
|
traits::provide(providers);
|
|
rustc_passes::provide(providers);
|
|
rustc_resolve::provide(providers);
|
|
rustc_traits::provide(providers);
|
|
rustc_ty::provide(providers);
|
|
rustc_metadata::provide(providers);
|
|
rustc_lint::provide(providers);
|
|
rustc_codegen_utils::provide(providers);
|
|
rustc_codegen_ssa::provide(providers);
|
|
}
|
|
|
|
pub fn default_provide_extern(providers: &mut ty::query::Providers<'_>) {
|
|
rustc_metadata::provide_extern(providers);
|
|
rustc_codegen_ssa::provide_extern(providers);
|
|
}
|
|
|
|
pub struct QueryContext<'tcx>(&'tcx GlobalCtxt<'tcx>);
|
|
|
|
impl<'tcx> QueryContext<'tcx> {
|
|
pub fn enter<F, R>(&mut self, f: F) -> R
|
|
where
|
|
F: FnOnce(TyCtxt<'tcx>) -> R,
|
|
{
|
|
ty::tls::enter_global(self.0, |tcx| f(tcx))
|
|
}
|
|
|
|
pub fn print_stats(&mut self) {
|
|
self.enter(|tcx| ty::query::print_stats(tcx))
|
|
}
|
|
}
|
|
|
|
pub fn create_global_ctxt<'tcx>(
|
|
compiler: &'tcx Compiler,
|
|
lint_store: Lrc<LintStore>,
|
|
krate: &'tcx Crate<'tcx>,
|
|
dep_graph: DepGraph,
|
|
mut resolver_outputs: ResolverOutputs,
|
|
outputs: OutputFilenames,
|
|
crate_name: &str,
|
|
global_ctxt: &'tcx Once<GlobalCtxt<'tcx>>,
|
|
arena: &'tcx WorkerLocal<Arena<'tcx>>,
|
|
) -> QueryContext<'tcx> {
|
|
let sess = &compiler.session();
|
|
let defs = mem::take(&mut resolver_outputs.definitions);
|
|
|
|
// Construct the HIR map.
|
|
let hir_map = map::map_crate(sess, &*resolver_outputs.cstore, krate, dep_graph, defs);
|
|
|
|
let query_result_on_disk_cache = rustc_incremental::load_query_result_cache(sess);
|
|
|
|
let codegen_backend = compiler.codegen_backend();
|
|
let mut local_providers = ty::query::Providers::default();
|
|
default_provide(&mut local_providers);
|
|
codegen_backend.provide(&mut local_providers);
|
|
|
|
let mut extern_providers = local_providers;
|
|
default_provide_extern(&mut extern_providers);
|
|
codegen_backend.provide_extern(&mut extern_providers);
|
|
|
|
if let Some(callback) = compiler.override_queries {
|
|
callback(sess, &mut local_providers, &mut extern_providers);
|
|
}
|
|
|
|
let gcx = sess.time("setup_global_ctxt", || {
|
|
global_ctxt.init_locking(|| {
|
|
TyCtxt::create_global_ctxt(
|
|
sess,
|
|
lint_store,
|
|
local_providers,
|
|
extern_providers,
|
|
arena,
|
|
resolver_outputs,
|
|
hir_map,
|
|
query_result_on_disk_cache,
|
|
&crate_name,
|
|
&outputs,
|
|
)
|
|
})
|
|
});
|
|
|
|
// Do some initialization of the DepGraph that can only be done with the tcx available.
|
|
ty::tls::enter_global(&gcx, |tcx| {
|
|
tcx.sess.time("dep_graph_tcx_init", || rustc_incremental::dep_graph_tcx_init(tcx));
|
|
});
|
|
|
|
QueryContext(gcx)
|
|
}
|
|
|
|
/// Runs the resolution, type-checking, region checking and other
|
|
/// miscellaneous analysis passes on the crate.
|
|
fn analysis(tcx: TyCtxt<'_>, cnum: CrateNum) -> Result<()> {
|
|
assert_eq!(cnum, LOCAL_CRATE);
|
|
|
|
let sess = tcx.sess;
|
|
let mut entry_point = None;
|
|
|
|
sess.time("misc_checking_1", || {
|
|
parallel!(
|
|
{
|
|
entry_point = sess
|
|
.time("looking_for_entry_point", || rustc_passes::entry::find_entry_point(tcx));
|
|
|
|
sess.time("looking_for_plugin_registrar", || {
|
|
plugin::build::find_plugin_registrar(tcx)
|
|
});
|
|
|
|
sess.time("looking_for_derive_registrar", || proc_macro_decls::find(tcx));
|
|
},
|
|
{
|
|
par_iter(&tcx.hir().krate().modules).for_each(|(&module, _)| {
|
|
let local_def_id = tcx.hir().local_def_id(module);
|
|
tcx.ensure().check_mod_loops(local_def_id);
|
|
tcx.ensure().check_mod_attrs(local_def_id);
|
|
tcx.ensure().check_mod_unstable_api_usage(local_def_id);
|
|
tcx.ensure().check_mod_const_bodies(local_def_id);
|
|
});
|
|
}
|
|
);
|
|
});
|
|
|
|
// passes are timed inside typeck
|
|
typeck::check_crate(tcx)?;
|
|
|
|
sess.time("misc_checking_2", || {
|
|
parallel!(
|
|
{
|
|
sess.time("match_checking", || {
|
|
tcx.par_body_owners(|def_id| {
|
|
tcx.ensure().check_match(def_id);
|
|
});
|
|
});
|
|
},
|
|
{
|
|
sess.time("liveness_and_intrinsic_checking", || {
|
|
par_iter(&tcx.hir().krate().modules).for_each(|(&module, _)| {
|
|
// this must run before MIR dump, because
|
|
// "not all control paths return a value" is reported here.
|
|
//
|
|
// maybe move the check to a MIR pass?
|
|
let local_def_id = tcx.hir().local_def_id(module);
|
|
|
|
tcx.ensure().check_mod_liveness(local_def_id);
|
|
tcx.ensure().check_mod_intrinsics(local_def_id);
|
|
});
|
|
});
|
|
}
|
|
);
|
|
});
|
|
|
|
sess.time("MIR_borrow_checking", || {
|
|
tcx.par_body_owners(|def_id| tcx.ensure().mir_borrowck(def_id));
|
|
});
|
|
|
|
sess.time("dumping_chalk_like_clauses", || {
|
|
rustc_traits::lowering::dump_program_clauses(tcx);
|
|
});
|
|
|
|
sess.time("MIR_effect_checking", || {
|
|
for def_id in tcx.body_owners() {
|
|
mir::transform::check_unsafety::check_unsafety(tcx, def_id)
|
|
}
|
|
});
|
|
|
|
sess.time("layout_testing", || layout_test::test_layout(tcx));
|
|
|
|
// Avoid overwhelming user with errors if borrow checking failed.
|
|
// I'm not sure how helpful this is, to be honest, but it avoids a
|
|
// lot of annoying errors in the compile-fail tests (basically,
|
|
// lint warnings and so on -- kindck used to do this abort, but
|
|
// kindck is gone now). -nmatsakis
|
|
if sess.has_errors() {
|
|
return Err(ErrorReported);
|
|
}
|
|
|
|
sess.time("misc_checking_3", || {
|
|
parallel!(
|
|
{
|
|
tcx.ensure().privacy_access_levels(LOCAL_CRATE);
|
|
|
|
parallel!(
|
|
{
|
|
tcx.ensure().check_private_in_public(LOCAL_CRATE);
|
|
},
|
|
{
|
|
sess.time("death_checking", || rustc_passes::dead::check_crate(tcx));
|
|
},
|
|
{
|
|
sess.time("unused_lib_feature_checking", || {
|
|
rustc_passes::stability::check_unused_or_stable_features(tcx)
|
|
});
|
|
},
|
|
{
|
|
sess.time("lint_checking", || {
|
|
rustc_lint::check_crate(tcx, || {
|
|
rustc_lint::BuiltinCombinedLateLintPass::new()
|
|
});
|
|
});
|
|
}
|
|
);
|
|
},
|
|
{
|
|
sess.time("privacy_checking_modules", || {
|
|
par_iter(&tcx.hir().krate().modules).for_each(|(&module, _)| {
|
|
tcx.ensure().check_mod_privacy(tcx.hir().local_def_id(module));
|
|
});
|
|
});
|
|
}
|
|
);
|
|
});
|
|
|
|
Ok(())
|
|
}
|
|
|
|
fn encode_and_write_metadata(
|
|
tcx: TyCtxt<'_>,
|
|
outputs: &OutputFilenames,
|
|
) -> (middle::cstore::EncodedMetadata, bool) {
|
|
#[derive(PartialEq, Eq, PartialOrd, Ord)]
|
|
enum MetadataKind {
|
|
None,
|
|
Uncompressed,
|
|
Compressed,
|
|
}
|
|
|
|
let metadata_kind = tcx
|
|
.sess
|
|
.crate_types
|
|
.borrow()
|
|
.iter()
|
|
.map(|ty| match *ty {
|
|
CrateType::Executable | CrateType::Staticlib | CrateType::Cdylib => MetadataKind::None,
|
|
|
|
CrateType::Rlib => MetadataKind::Uncompressed,
|
|
|
|
CrateType::Dylib | CrateType::ProcMacro => MetadataKind::Compressed,
|
|
})
|
|
.max()
|
|
.unwrap_or(MetadataKind::None);
|
|
|
|
let metadata = match metadata_kind {
|
|
MetadataKind::None => middle::cstore::EncodedMetadata::new(),
|
|
MetadataKind::Uncompressed | MetadataKind::Compressed => tcx.encode_metadata(),
|
|
};
|
|
|
|
let _prof_timer = tcx.sess.prof.generic_activity("write_crate_metadata");
|
|
|
|
let need_metadata_file = tcx.sess.opts.output_types.contains_key(&OutputType::Metadata);
|
|
if need_metadata_file {
|
|
let crate_name = &tcx.crate_name(LOCAL_CRATE).as_str();
|
|
let out_filename = filename_for_metadata(tcx.sess, crate_name, outputs);
|
|
// To avoid races with another rustc process scanning the output directory,
|
|
// we need to write the file somewhere else and atomically move it to its
|
|
// final destination, with an `fs::rename` call. In order for the rename to
|
|
// always succeed, the temporary file needs to be on the same filesystem,
|
|
// which is why we create it inside the output directory specifically.
|
|
let metadata_tmpdir = TempFileBuilder::new()
|
|
.prefix("rmeta")
|
|
.tempdir_in(out_filename.parent().unwrap())
|
|
.unwrap_or_else(|err| tcx.sess.fatal(&format!("couldn't create a temp dir: {}", err)));
|
|
let metadata_filename = emit_metadata(tcx.sess, &metadata, &metadata_tmpdir);
|
|
if let Err(e) = fs::rename(&metadata_filename, &out_filename) {
|
|
tcx.sess.fatal(&format!("failed to write {}: {}", out_filename.display(), e));
|
|
}
|
|
if tcx.sess.opts.json_artifact_notifications {
|
|
tcx.sess
|
|
.parse_sess
|
|
.span_diagnostic
|
|
.emit_artifact_notification(&out_filename, "metadata");
|
|
}
|
|
}
|
|
|
|
let need_metadata_module = metadata_kind == MetadataKind::Compressed;
|
|
|
|
(metadata, need_metadata_module)
|
|
}
|
|
|
|
/// Runs the codegen backend, after which the AST and analysis can
|
|
/// be discarded.
|
|
pub fn start_codegen<'tcx>(
|
|
codegen_backend: &dyn CodegenBackend,
|
|
tcx: TyCtxt<'tcx>,
|
|
outputs: &OutputFilenames,
|
|
) -> Box<dyn Any> {
|
|
if log_enabled!(::log::Level::Info) {
|
|
println!("Pre-codegen");
|
|
tcx.print_debug_stats();
|
|
}
|
|
|
|
let (metadata, need_metadata_module) = encode_and_write_metadata(tcx, outputs);
|
|
|
|
let codegen = tcx.sess.time("codegen_crate", move || {
|
|
codegen_backend.codegen_crate(tcx, metadata, need_metadata_module)
|
|
});
|
|
|
|
if log_enabled!(::log::Level::Info) {
|
|
println!("Post-codegen");
|
|
tcx.print_debug_stats();
|
|
}
|
|
|
|
if tcx.sess.opts.output_types.contains_key(&OutputType::Mir) {
|
|
if let Err(e) = mir::transform::dump_mir::emit_mir(tcx, outputs) {
|
|
tcx.sess.err(&format!("could not emit MIR: {}", e));
|
|
tcx.sess.abort_if_errors();
|
|
}
|
|
}
|
|
|
|
codegen
|
|
}
|