1use std::collections::BTreeMap;
2use std::ffi::{CStr, CString};
3use std::fs::File;
4use std::path::{Path, PathBuf};
5use std::sync::Arc;
6use std::{io, iter, slice};
78use object::read::archive::ArchiveFile;
9use object::{Object, ObjectSection};
10use rustc_codegen_ssa::back::lto::{SerializedModule, ThinModule, ThinShared};
11use rustc_codegen_ssa::back::write::{
12 CodegenContext, FatLtoInput, SharedEmitter, TargetMachineFactoryFn, ThinLtoInput,
13};
14use rustc_codegen_ssa::traits::*;
15use rustc_codegen_ssa::{CompiledModule, ModuleCodegen, ModuleKind, looks_like_rust_object_file};
16use rustc_data_structures::fx::FxHashMap;
17use rustc_data_structures::memmap::Mmap;
18use rustc_data_structures::profiling::SelfProfilerRef;
19use rustc_errors::{DiagCtxt, DiagCtxtHandle};
20use rustc_hir::attrs::SanitizerSet;
21use rustc_middle::bug;
22use rustc_middle::dep_graph::WorkProduct;
23use rustc_session::config;
24use tracing::{debug, info};
2526use crate::back::write::{
27self, CodegenDiagnosticsStage, DiagnosticHandlers, bitcode_section_name, codegen,
28save_temp_bitcode,
29};
30use crate::errors::{LlvmError, LtoBitcodeFromRlib};
31use crate::llvm::{self, build_string};
32use crate::{LlvmCodegenBackend, ModuleLlvm};
3334/// We keep track of the computed LTO cache keys from the previous
35/// session to determine which CGUs we can reuse.
36const THIN_LTO_KEYS_INCR_COMP_FILE_NAME: &str = "thin-lto-past-keys.bin";
3738fn prepare_lto(
39 cgcx: &CodegenContext,
40 exported_symbols_for_lto: &[String],
41 each_linked_rlib_for_lto: &[PathBuf],
42 dcx: DiagCtxtHandle<'_>,
43) -> (Vec<CString>, Vec<(SerializedModule<ModuleBuffer>, CString)>) {
44let mut symbols_below_threshold = exported_symbols_for_lto45 .iter()
46 .map(|symbol| CString::new(symbol.to_owned()).unwrap())
47 .collect::<Vec<CString>>();
4849if cgcx.module_config.instrument_coverage || cgcx.module_config.pgo_gen.enabled() {
50// These are weak symbols that point to the profile version and the
51 // profile name, which need to be treated as exported so LTO doesn't nix
52 // them.
53const PROFILER_WEAK_SYMBOLS: [&CStr; 2] =
54 [c"__llvm_profile_raw_version", c"__llvm_profile_filename"];
5556symbols_below_threshold.extend(PROFILER_WEAK_SYMBOLS.iter().map(|&sym| sym.to_owned()));
57 }
5859if cgcx.module_config.sanitizer.contains(SanitizerSet::MEMORY) {
60let mut msan_weak_symbols = Vec::new();
6162// Similar to profiling, preserve weak msan symbol during LTO.
63if cgcx.module_config.sanitizer_recover.contains(SanitizerSet::MEMORY) {
64msan_weak_symbols.push(c"__msan_keep_going");
65 }
6667if cgcx.module_config.sanitizer_memory_track_origins != 0 {
68msan_weak_symbols.push(c"__msan_track_origins");
69 }
7071symbols_below_threshold.extend(msan_weak_symbols.into_iter().map(|sym| sym.to_owned()));
72 }
7374// Preserve LLVM-injected, ASAN-related symbols.
75 // See also https://github.com/rust-lang/rust/issues/113404.
76symbols_below_threshold.push(c"___asan_globals_registered".to_owned());
7778// __llvm_profile_counter_bias is pulled in at link time by an undefined reference to
79 // __llvm_profile_runtime, therefore we won't know until link time if this symbol
80 // should have default visibility.
81symbols_below_threshold.push(c"__llvm_profile_counter_bias".to_owned());
8283// LTO seems to discard this otherwise under certain circumstances.
84symbols_below_threshold.push(c"rust_eh_personality".to_owned());
8586// If we're performing LTO for the entire crate graph, then for each of our
87 // upstream dependencies, find the corresponding rlib and load the bitcode
88 // from the archive.
89 //
90 // We save off all the bytecode and LLVM module ids for later processing
91 // with either fat or thin LTO
92let mut upstream_modules = Vec::new();
93for path in each_linked_rlib_for_lto {
94let archive_data = unsafe {
95 Mmap::map(std::fs::File::open(&path).expect("couldn't open rlib"))
96 .expect("couldn't map rlib")
97 };
98let archive = ArchiveFile::parse(&*archive_data).expect("wanted an rlib");
99let obj_files = archive
100 .members()
101 .filter_map(|child| {
102 child
103 .ok()
104 .and_then(|c| std::str::from_utf8(c.name()).ok().map(|name| (name.trim(), c)))
105 })
106 .filter(|&(name, _)| looks_like_rust_object_file(name));
107for (name, child) in obj_files {
108{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:108",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(108u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("adding bitcode from {0}",
name) as &dyn Value))])
});
} else { ; }
};info!("adding bitcode from {}", name);
109match get_bitcode_slice_from_object_data(
110 child.data(&*archive_data).expect("corrupt rlib"),
111 cgcx,
112 ) {
113Ok(data) => {
114let module = SerializedModule::FromRlib(data.to_vec());
115 upstream_modules.push((module, CString::new(name).unwrap()));
116 }
117Err(e) => dcx.emit_fatal(e),
118 }
119 }
120 }
121122 (symbols_below_threshold, upstream_modules)
123}
124125fn get_bitcode_slice_from_object_data<'a>(
126 obj: &'a [u8],
127 cgcx: &CodegenContext,
128) -> Result<&'a [u8], LtoBitcodeFromRlib> {
129// We're about to assume the data here is an object file with sections, but if it's raw LLVM IR
130 // that won't work. Fortunately, if that's what we have we can just return the object directly,
131 // so we sniff the relevant magic strings here and return.
132if obj.starts_with(b"\xDE\xC0\x17\x0B") || obj.starts_with(b"BC\xC0\xDE") {
133return Ok(obj);
134 }
135// We drop the "__LLVM," prefix here because on Apple platforms there's a notion of "segment
136 // name" which in the public API for sections gets treated as part of the section name, but
137 // internally in MachOObjectFile.cpp gets treated separately.
138let section_name = bitcode_section_name(cgcx).to_str().unwrap().trim_start_matches("__LLVM,");
139140let obj =
141 object::File::parse(obj).map_err(|err| LtoBitcodeFromRlib { err: err.to_string() })?;
142143let section = obj144 .section_by_name(section_name)
145 .ok_or_else(|| LtoBitcodeFromRlib { err: ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("Can\'t find section {0}",
section_name))
})format!("Can't find section {section_name}") })?;
146147section.data().map_err(|err| LtoBitcodeFromRlib { err: err.to_string() })
148}
149150/// Performs fat LTO by merging all modules into a single one and returning it
151/// for further optimization.
152pub(crate) fn run_fat(
153 cgcx: &CodegenContext,
154 prof: &SelfProfilerRef,
155 shared_emitter: &SharedEmitter,
156 tm_factory: TargetMachineFactoryFn<LlvmCodegenBackend>,
157 exported_symbols_for_lto: &[String],
158 each_linked_rlib_for_lto: &[PathBuf],
159 modules: Vec<FatLtoInput<LlvmCodegenBackend>>,
160) -> ModuleCodegen<ModuleLlvm> {
161let dcx = DiagCtxt::new(Box::new(shared_emitter.clone()));
162let dcx = dcx.handle();
163let (symbols_below_threshold, upstream_modules) =
164prepare_lto(cgcx, exported_symbols_for_lto, each_linked_rlib_for_lto, dcx);
165let symbols_below_threshold =
166symbols_below_threshold.iter().map(|c| c.as_ptr()).collect::<Vec<_>>();
167fat_lto(
168cgcx,
169prof,
170dcx,
171shared_emitter,
172tm_factory,
173modules,
174upstream_modules,
175&symbols_below_threshold,
176 )
177}
178179/// Performs thin LTO by performing necessary global analysis and returning two
180/// lists, one of the modules that need optimization and another for modules that
181/// can simply be copied over from the incr. comp. cache.
182pub(crate) fn run_thin(
183 cgcx: &CodegenContext,
184 prof: &SelfProfilerRef,
185 dcx: DiagCtxtHandle<'_>,
186 exported_symbols_for_lto: &[String],
187 each_linked_rlib_for_lto: &[PathBuf],
188 modules: Vec<ThinLtoInput<LlvmCodegenBackend>>,
189) -> (Vec<ThinModule<LlvmCodegenBackend>>, Vec<WorkProduct>) {
190let (symbols_below_threshold, upstream_modules) =
191prepare_lto(cgcx, exported_symbols_for_lto, each_linked_rlib_for_lto, dcx);
192let symbols_below_threshold =
193symbols_below_threshold.iter().map(|c| c.as_ptr()).collect::<Vec<_>>();
194if cgcx.use_linker_plugin_lto {
195{
::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
format_args!("We should never reach this case if the LTO step is deferred to the linker")));
};unreachable!(
196"We should never reach this case if the LTO step \
197 is deferred to the linker"
198);
199 }
200thin_lto(cgcx, prof, dcx, modules, upstream_modules, &symbols_below_threshold)
201}
202203fn fat_lto(
204 cgcx: &CodegenContext,
205 prof: &SelfProfilerRef,
206 dcx: DiagCtxtHandle<'_>,
207 shared_emitter: &SharedEmitter,
208 tm_factory: TargetMachineFactoryFn<LlvmCodegenBackend>,
209 modules: Vec<FatLtoInput<LlvmCodegenBackend>>,
210mut serialized_modules: Vec<(SerializedModule<ModuleBuffer>, CString)>,
211 symbols_below_threshold: &[*const libc::c_char],
212) -> ModuleCodegen<ModuleLlvm> {
213let _timer = prof.generic_activity("LLVM_fat_lto_build_monolithic_module");
214{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:214",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(214u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("going for a fat lto")
as &dyn Value))])
});
} else { ; }
};info!("going for a fat lto");
215216// Sort out all our lists of incoming modules into two lists.
217 //
218 // * `serialized_modules` (also and argument to this function) contains all
219 // modules that are serialized in-memory.
220 // * `in_memory` contains modules which are already parsed and in-memory,
221 // such as from multi-CGU builds.
222let mut in_memory = Vec::new();
223for module in modules {
224match module {
225 FatLtoInput::InMemory(m) => in_memory.push(m),
226 FatLtoInput::Serialized { name, bitcode_path } => {
227{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:227",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(227u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("pushing serialized module {0:?}",
name) as &dyn Value))])
});
} else { ; }
};info!("pushing serialized module {:?}", name);
228 serialized_modules.push((
229 SerializedModule::from_file(&bitcode_path),
230 CString::new(name).unwrap(),
231 ));
232 }
233 }
234 }
235236// Find the "costliest" module and merge everything into that codegen unit.
237 // All the other modules will be serialized and reparsed into the new
238 // context, so this hopefully avoids serializing and parsing the largest
239 // codegen unit.
240 //
241 // Additionally use a regular module as the base here to ensure that various
242 // file copy operations in the backend work correctly. The only other kind
243 // of module here should be an allocator one, and if your crate is smaller
244 // than the allocator module then the size doesn't really matter anyway.
245let costliest_module = in_memory246 .iter()
247 .enumerate()
248 .filter(|&(_, module)| module.kind == ModuleKind::Regular)
249 .map(|(i, module)| {
250let cost = unsafe { llvm::LLVMRustModuleCost(module.module_llvm.llmod()) };
251 (cost, i)
252 })
253 .max();
254255// If we found a costliest module, we're good to go. Otherwise all our
256 // inputs were serialized which could happen in the case, for example, that
257 // all our inputs were incrementally reread from the cache and we're just
258 // re-executing the LTO passes. If that's the case deserialize the first
259 // module and create a linker with it.
260let module: ModuleCodegen<ModuleLlvm> = match costliest_module {
261Some((_cost, i)) => in_memory.remove(i),
262None => {
263if !!serialized_modules.is_empty() {
{
::core::panicking::panic_fmt(format_args!("must have at least one serialized module"));
}
};assert!(!serialized_modules.is_empty(), "must have at least one serialized module");
264let (buffer, name) = serialized_modules.remove(0);
265{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:265",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(265u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("no in-memory regular modules to choose from, parsing {0:?}",
name) as &dyn Value))])
});
} else { ; }
};info!("no in-memory regular modules to choose from, parsing {:?}", name);
266let llvm_module = ModuleLlvm::parse(cgcx, tm_factory, &name, buffer.data(), dcx);
267 ModuleCodegen::new_regular(name.into_string().unwrap(), llvm_module)
268 }
269 };
270 {
271let (llcx, llmod) = {
272let llvm = &module.module_llvm;
273 (&llvm.llcx, llvm.llmod())
274 };
275{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:275",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(275u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("using {0:?} as a base module",
module.name) as &dyn Value))])
});
} else { ; }
};info!("using {:?} as a base module", module.name);
276277// The linking steps below may produce errors and diagnostics within LLVM
278 // which we'd like to handle and print, so set up our diagnostic handlers
279 // (which get unregistered when they go out of scope below).
280let _handler = DiagnosticHandlers::new(
281cgcx,
282shared_emitter,
283llcx,
284&module,
285 CodegenDiagnosticsStage::LTO,
286 );
287288// For all other modules we codegened we'll need to link them into our own
289 // bitcode. All modules were codegened in their own LLVM context, however,
290 // and we want to move everything to the same LLVM context. Currently the
291 // way we know of to do that is to serialize them to a string and them parse
292 // them later. Not great but hey, that's why it's "fat" LTO, right?
293for module in in_memory {
294let buffer = ModuleBuffer::new(module.module_llvm.llmod(), false);
295let llmod_id = CString::new(&module.name[..]).unwrap();
296 serialized_modules.push((SerializedModule::Local(buffer), llmod_id));
297 }
298// Sort the modules to ensure we produce deterministic results.
299serialized_modules.sort_by(|module1, module2| module1.1.cmp(&module2.1));
300301// For all serialized bitcode files we parse them and link them in as we did
302 // above, this is all mostly handled in C++.
303let linker = unsafe { llvm::LLVMRustLinkerNew(llmod) };
304for (bc_decoded, name) in serialized_modules {
305let _timer = prof
306 .generic_activity_with_arg_recorder("LLVM_fat_lto_link_module", |recorder| {
307 recorder.record_arg(::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0:?}", name))
})format!("{name:?}"))
308 });
309{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:309",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(309u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("linking {0:?}",
name) as &dyn Value))])
});
} else { ; }
};info!("linking {:?}", name);
310let data = bc_decoded.data();
311312unsafe {
313if !llvm::LLVMRustLinkerAdd(
314 linker,
315 data.as_ptr() as *const libc::c_char,
316 data.len(),
317 ) {
318 llvm::LLVMRustLinkerFree(linker);
319 write::llvm_err(dcx, LlvmError::LoadBitcode { name })
320 }
321 }
322 }
323unsafe { llvm::LLVMRustLinkerFree(linker) };
324save_temp_bitcode(cgcx, &module, "lto.input");
325326// Internalize everything below threshold to help strip out more modules and such.
327unsafe {
328let ptr = symbols_below_threshold.as_ptr();
329 llvm::LLVMRustRunRestrictionPass(
330llmod,
331ptras *const *const libc::c_char,
332symbols_below_threshold.len() as libc::size_t,
333 );
334 }
335save_temp_bitcode(cgcx, &module, "lto.after-restriction");
336 }
337338module339}
340341/// Prepare "thin" LTO to get run on these modules.
342///
343/// The general structure of ThinLTO is quite different from the structure of
344/// "fat" LTO above. With "fat" LTO all LLVM modules in question are merged into
345/// one giant LLVM module, and then we run more optimization passes over this
346/// big module after internalizing most symbols. Thin LTO, on the other hand,
347/// avoid this large bottleneck through more targeted optimization.
348///
349/// At a high level Thin LTO looks like:
350///
351/// 1. Prepare a "summary" of each LLVM module in question which describes
352/// the values inside, cost of the values, etc.
353/// 2. Merge the summaries of all modules in question into one "index"
354/// 3. Perform some global analysis on this index
355/// 4. For each module, use the index and analysis calculated previously to
356/// perform local transformations on the module, for example inlining
357/// small functions from other modules.
358/// 5. Run thin-specific optimization passes over each module, and then code
359/// generate everything at the end.
360///
361/// The summary for each module is intended to be quite cheap, and the global
362/// index is relatively quite cheap to create as well. As a result, the goal of
363/// ThinLTO is to reduce the bottleneck on LTO and enable LTO to be used in more
364/// situations. For example one cheap optimization is that we can parallelize
365/// all codegen modules, easily making use of all the cores on a machine.
366///
367/// With all that in mind, the function here is designed at specifically just
368/// calculating the *index* for ThinLTO. This index will then be shared amongst
369/// all of the `LtoModuleCodegen` units returned below and destroyed once
370/// they all go out of scope.
371fn thin_lto(
372 cgcx: &CodegenContext,
373 prof: &SelfProfilerRef,
374 dcx: DiagCtxtHandle<'_>,
375 modules: Vec<ThinLtoInput<LlvmCodegenBackend>>,
376 serialized_modules: Vec<(SerializedModule<ModuleBuffer>, CString)>,
377 symbols_below_threshold: &[*const libc::c_char],
378) -> (Vec<ThinModule<LlvmCodegenBackend>>, Vec<WorkProduct>) {
379let _timer = prof.generic_activity("LLVM_thin_lto_global_analysis");
380unsafe {
381{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:381",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(381u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("going for that thin, thin LTO")
as &dyn Value))])
});
} else { ; }
};info!("going for that thin, thin LTO");
382383let green_modules: FxHashMap<_, _> = modules384 .iter()
385 .filter_map(|module| {
386if let ThinLtoInput::Green { wp, .. } = module {
387Some((wp.cgu_name.clone(), wp.clone()))
388 } else {
389None390 }
391 })
392 .collect();
393394let full_scope_len = modules.len();
395let mut thin_buffers = Vec::with_capacity(modules.len());
396let mut module_names = Vec::with_capacity(full_scope_len);
397let mut thin_modules = Vec::with_capacity(full_scope_len);
398399for (i, module) in modules.into_iter().enumerate() {
400let (name, buffer) = match module {
401 ThinLtoInput::Red { name, buffer } => (name, buffer),
402 ThinLtoInput::Green { wp, bitcode_path } => {
403 (wp.cgu_name, SerializedModule::from_file(&bitcode_path))
404 }
405 };
406{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:406",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(406u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("local module: {0} - {1}",
i, name) as &dyn Value))])
});
} else { ; }
};info!("local module: {} - {}", i, name);
407let cname = CString::new(name.as_bytes()).unwrap();
408 thin_modules.push(llvm::ThinLTOModule {
409 identifier: cname.as_ptr(),
410 data: buffer.data().as_ptr(),
411 len: buffer.data().len(),
412 });
413 thin_buffers.push(buffer);
414 module_names.push(cname);
415 }
416417// FIXME: All upstream crates are deserialized internally in the
418 // function below to extract their summary and modules. Note that
419 // unlike the loop above we *must* decode and/or read something
420 // here as these are all just serialized files on disk. An
421 // improvement, however, to make here would be to store the
422 // module summary separately from the actual module itself. Right
423 // now this is store in one large bitcode file, and the entire
424 // file is deflate-compressed. We could try to bypass some of the
425 // decompression by storing the index uncompressed and only
426 // lazily decompressing the bytecode if necessary.
427 //
428 // Note that truly taking advantage of this optimization will
429 // likely be further down the road. We'd have to implement
430 // incremental ThinLTO first where we could actually avoid
431 // looking at upstream modules entirely sometimes (the contents,
432 // we must always unconditionally look at the index).
433434for (module, name) in serialized_modules {
435{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:435",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(435u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("upstream module {0:?}",
name) as &dyn Value))])
});
} else { ; }
};info!("upstream module {:?}", name);
436 thin_modules.push(llvm::ThinLTOModule {
437 identifier: name.as_ptr(),
438 data: module.data().as_ptr(),
439 len: module.data().len(),
440 });
441 thin_buffers.push(module);
442 module_names.push(name);
443 }
444445// Sanity check
446match (&thin_modules.len(), &module_names.len()) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val, &*right_val,
::core::option::Option::None);
}
}
};assert_eq!(thin_modules.len(), module_names.len());
447448// Delegate to the C++ bindings to create some data here. Once this is a
449 // tried-and-true interface we may wish to try to upstream some of this
450 // to LLVM itself, right now we reimplement a lot of what they do
451 // upstream...
452let data = llvm::LLVMRustCreateThinLTOData(
453thin_modules.as_ptr(),
454thin_modules.len(),
455symbols_below_threshold.as_ptr(),
456symbols_below_threshold.len(),
457 )
458 .unwrap_or_else(|| write::llvm_err(dcx, LlvmError::PrepareThinLtoContext));
459460let data = ThinData(data);
461462{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:462",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(462u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("thin LTO data created")
as &dyn Value))])
});
} else { ; }
};info!("thin LTO data created");
463464let (key_map_path, prev_key_map, curr_key_map) = if let Some(ref incr_comp_session_dir) =
465cgcx.incr_comp_session_dir
466 {
467let path = incr_comp_session_dir.join(THIN_LTO_KEYS_INCR_COMP_FILE_NAME);
468// If the previous file was deleted, or we get an IO error
469 // reading the file, then we'll just use `None` as the
470 // prev_key_map, which will force the code to be recompiled.
471let prev =
472if path.exists() { ThinLTOKeysMap::load_from_file(&path).ok() } else { None };
473let curr = ThinLTOKeysMap::from_thin_lto_modules(&data, &thin_modules, &module_names);
474 (Some(path), prev, curr)
475 } else {
476// If we don't compile incrementally, we don't need to load the
477 // import data from LLVM.
478if !green_modules.is_empty() {
::core::panicking::panic("assertion failed: green_modules.is_empty()")
};assert!(green_modules.is_empty());
479let curr = ThinLTOKeysMap::default();
480 (None, None, curr)
481 };
482{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:482",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(482u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("thin LTO cache key map loaded")
as &dyn Value))])
});
} else { ; }
};info!("thin LTO cache key map loaded");
483{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:483",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(483u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("prev_key_map: {0:#?}",
prev_key_map) as &dyn Value))])
});
} else { ; }
};info!("prev_key_map: {:#?}", prev_key_map);
484{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:484",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(484u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("curr_key_map: {0:#?}",
curr_key_map) as &dyn Value))])
});
} else { ; }
};info!("curr_key_map: {:#?}", curr_key_map);
485486// Throw our data in an `Arc` as we'll be sharing it across threads. We
487 // also put all memory referenced by the C++ data (buffers, ids, etc)
488 // into the arc as well. After this we'll create a thin module
489 // codegen per module in this data.
490let shared = Arc::new(ThinShared { data, modules: thin_buffers, module_names });
491492let mut copy_jobs = ::alloc::vec::Vec::new()vec![];
493let mut opt_jobs = ::alloc::vec::Vec::new()vec![];
494495{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:495",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(495u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("checking which modules can be-reused and which have to be re-optimized.")
as &dyn Value))])
});
} else { ; }
};info!("checking which modules can be-reused and which have to be re-optimized.");
496for (module_index, module_name) in shared.module_names.iter().enumerate() {
497let module_name = module_name_to_str(module_name);
498if let (Some(prev_key_map), true) =
499 (prev_key_map.as_ref(), green_modules.contains_key(module_name))
500 {
501if !cgcx.incr_comp_session_dir.is_some() {
::core::panicking::panic("assertion failed: cgcx.incr_comp_session_dir.is_some()")
};assert!(cgcx.incr_comp_session_dir.is_some());
502503// If a module exists in both the current and the previous session,
504 // and has the same LTO cache key in both sessions, then we can re-use it
505if prev_key_map.keys.get(module_name) == curr_key_map.keys.get(module_name) {
506let work_product = green_modules[module_name].clone();
507 copy_jobs.push(work_product);
508{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:508",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(508u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!(" - {0}: re-used",
module_name) as &dyn Value))])
});
} else { ; }
};info!(" - {}: re-used", module_name);
509if !cgcx.incr_comp_session_dir.is_some() {
::core::panicking::panic("assertion failed: cgcx.incr_comp_session_dir.is_some()")
};assert!(cgcx.incr_comp_session_dir.is_some());
510continue;
511 }
512 }
513514{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:514",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(514u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!(" - {0}: re-compiled",
module_name) as &dyn Value))])
});
} else { ; }
};info!(" - {}: re-compiled", module_name);
515 opt_jobs.push(ThinModule { shared: Arc::clone(&shared), idx: module_index });
516 }
517518// Save the current ThinLTO import information for the next compilation
519 // session, overwriting the previous serialized data (if any).
520if let Some(path) = key_map_path521 && let Err(err) = curr_key_map.save_to_file(&path)
522 {
523 write::llvm_err(dcx, LlvmError::WriteThinLtoKey { err });
524 }
525526 (opt_jobs, copy_jobs)
527 }
528}
529530pub(crate) fn enable_autodiff_settings(ad: &[config::AutoDiff]) {
531let mut enzyme = llvm::EnzymeWrapper::get_instance();
532533for val in ad {
534// We intentionally don't use a wildcard, to not forget handling anything new.
535match val {
536 config::AutoDiff::PrintPerf => {
537 enzyme.set_print_perf(true);
538 }
539 config::AutoDiff::PrintAA => {
540 enzyme.set_print_activity(true);
541 }
542 config::AutoDiff::PrintTA => {
543 enzyme.set_print_type(true);
544 }
545 config::AutoDiff::PrintTAFn(fun) => {
546 enzyme.set_print_type(true); // Enable general type printing
547enzyme.set_print_type_fun(&fun); // Set specific function to analyze
548}
549 config::AutoDiff::Inline => {
550 enzyme.set_inline(true);
551 }
552 config::AutoDiff::LooseTypes => {
553 enzyme.set_loose_types(true);
554 }
555 config::AutoDiff::PrintSteps => {
556 enzyme.set_print(true);
557 }
558// We handle this in the PassWrapper.cpp
559config::AutoDiff::PrintPasses => {}
560// We handle this in the PassWrapper.cpp
561config::AutoDiff::PrintModBefore => {}
562// We handle this in the PassWrapper.cpp
563config::AutoDiff::PrintModAfter => {}
564// We handle this in the PassWrapper.cpp
565config::AutoDiff::PrintModFinal => {}
566// This is required and already checked
567config::AutoDiff::Enable => {}
568// We handle this below
569config::AutoDiff::NoPostopt => {}
570// Disables TypeTree generation
571config::AutoDiff::NoTT => {}
572 }
573 }
574// This helps with handling enums for now.
575enzyme.set_strict_aliasing(false);
576// FIXME(ZuseZ4): Test this, since it was added a long time ago.
577enzyme.set_rust_rules(true);
578}
579580pub(crate) fn run_pass_manager(
581 cgcx: &CodegenContext,
582 prof: &SelfProfilerRef,
583 dcx: DiagCtxtHandle<'_>,
584 module: &mut ModuleCodegen<ModuleLlvm>,
585 thin: bool,
586) {
587let _timer = prof.generic_activity_with_arg("LLVM_lto_optimize", &*module.name);
588let config = &cgcx.module_config;
589590// Now we have one massive module inside of llmod. Time to run the
591 // LTO-specific optimization passes that LLVM provides.
592 //
593 // This code is based off the code found in llvm's LTO code generator:
594 // llvm/lib/LTO/LTOCodeGenerator.cpp
595{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:595",
"rustc_codegen_llvm::back::lto", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(595u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("running the pass manager")
as &dyn Value))])
});
} else { ; }
};debug!("running the pass manager");
596let opt_stage = if thin { llvm::OptStage::ThinLTO } else { llvm::OptStage::FatLTO };
597let opt_level = config.opt_level.unwrap_or(config::OptLevel::No);
598599// The PostAD behavior is the same that we would have if no autodiff was used.
600 // It will run the default optimization pipeline. If AD is enabled we select
601 // the DuringAD stage, which will disable vectorization and loop unrolling, and
602 // schedule two autodiff optimization + differentiation passes.
603 // We then run the llvm_optimize function a second time, to optimize the code which we generated
604 // in the enzyme differentiation pass.
605let enable_ad = config.autodiff.contains(&config::AutoDiff::Enable);
606let stage = if thin {
607 write::AutodiffStage::PreAD608 } else {
609if enable_ad { write::AutodiffStage::DuringAD } else { write::AutodiffStage::PostAD }
610 };
611612unsafe {
613 write::llvm_optimize(
614cgcx, prof, dcx, module, None, None, config, opt_level, opt_stage, stage,
615 );
616 }
617618if falsecfg!(feature = "llvm_enzyme") && enable_ad && !thin {
619let opt_stage = llvm::OptStage::FatLTO;
620let stage = write::AutodiffStage::PostAD;
621if !config.autodiff.contains(&config::AutoDiff::NoPostopt) {
622unsafe {
623 write::llvm_optimize(
624cgcx, prof, dcx, module, None, None, config, opt_level, opt_stage, stage,
625 );
626 }
627 }
628629// This is the final IR, so people should be able to inspect the optimized autodiff output,
630 // for manual inspection.
631if config.autodiff.contains(&config::AutoDiff::PrintModFinal) {
632unsafe { llvm::LLVMDumpModule(module.module_llvm.llmod()) };
633 }
634 }
635636{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:636",
"rustc_codegen_llvm::back::lto", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(636u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("lto done")
as &dyn Value))])
});
} else { ; }
};debug!("lto done");
637}
638639#[repr(transparent)]
640pub(crate) struct Buffer(&'static mut llvm::Buffer);
641642unsafe impl Sendfor Buffer {}
643unsafe impl Syncfor Buffer {}
644645impl Buffer {
646pub(crate) fn data(&self) -> &[u8] {
647unsafe {
648let ptr = llvm::LLVMRustBufferPtr(self.0);
649let len = llvm::LLVMRustBufferLen(self.0);
650 slice::from_raw_parts(ptr, len)
651 }
652 }
653}
654655impl Dropfor Buffer {
656fn drop(&mut self) {
657unsafe {
658 llvm::LLVMRustBufferFree(&mut *(self.0 as *mut _));
659 }
660 }
661}
662663pub struct ThinData(&'static mut llvm::ThinLTOData);
664665unsafe impl Sendfor ThinData {}
666unsafe impl Syncfor ThinData {}
667668impl Dropfor ThinData {
669fn drop(&mut self) {
670unsafe {
671 llvm::LLVMRustFreeThinLTOData(&mut *(self.0 as *mut _));
672 }
673 }
674}
675676pub struct ModuleBuffer {
677 data: Buffer,
678}
679680impl ModuleBuffer {
681pub(crate) fn new(m: &llvm::Module, is_thin: bool) -> ModuleBuffer {
682unsafe {
683let buffer = llvm::LLVMRustModuleSerialize(m, is_thin);
684ModuleBuffer { data: Buffer(buffer) }
685 }
686 }
687}
688689impl ModuleBufferMethods for ModuleBuffer {
690fn data(&self) -> &[u8] {
691self.data.data()
692 }
693}
694695pub(crate) fn optimize_and_codegen_thin_module(
696 cgcx: &CodegenContext,
697 prof: &SelfProfilerRef,
698 shared_emitter: &SharedEmitter,
699 tm_factory: TargetMachineFactoryFn<LlvmCodegenBackend>,
700 thin_module: ThinModule<LlvmCodegenBackend>,
701) -> CompiledModule {
702let dcx = DiagCtxt::new(Box::new(shared_emitter.clone()));
703let dcx = dcx.handle();
704705let module_name = &thin_module.shared.module_names[thin_module.idx];
706707// Right now the implementation we've got only works over serialized
708 // modules, so we create a fresh new LLVM context and parse the module
709 // into that context. One day, however, we may do this for upstream
710 // crates but for locally codegened modules we may be able to reuse
711 // that LLVM Context and Module.
712let module_llvm = ModuleLlvm::parse(cgcx, tm_factory, module_name, thin_module.data(), dcx);
713let mut module = ModuleCodegen::new_regular(thin_module.name(), module_llvm);
714// Given that the newly created module lacks a thinlto buffer for embedding, we need to re-add it here.
715if cgcx.module_config.embed_bitcode() {
716module.thin_lto_buffer = Some(thin_module.data().to_vec());
717 }
718 {
719let target = &*module.module_llvm.tm;
720let llmod = module.module_llvm.llmod();
721save_temp_bitcode(cgcx, &module, "thin-lto-input");
722723// Up next comes the per-module local analyses that we do for Thin LTO.
724 // Each of these functions is basically copied from the LLVM
725 // implementation and then tailored to suit this implementation. Ideally
726 // each of these would be supported by upstream LLVM but that's perhaps
727 // a patch for another day!
728 //
729 // You can find some more comments about these functions in the LLVM
730 // bindings we've got (currently `PassWrapper.cpp`)
731{
732let _timer = prof.generic_activity_with_arg("LLVM_thin_lto_rename", thin_module.name());
733unsafe {
734 llvm::LLVMRustPrepareThinLTORename(thin_module.shared.data.0, llmod, target.raw())
735 };
736save_temp_bitcode(cgcx, &module, "thin-lto-after-rename");
737 }
738739 {
740let _timer =
741prof.generic_activity_with_arg("LLVM_thin_lto_resolve_weak", thin_module.name());
742if unsafe { !llvm::LLVMRustPrepareThinLTOResolveWeak(thin_module.shared.data.0, llmod) }
743 {
744 write::llvm_err(dcx, LlvmError::PrepareThinLtoModule);
745 }
746save_temp_bitcode(cgcx, &module, "thin-lto-after-resolve");
747 }
748749 {
750let _timer =
751prof.generic_activity_with_arg("LLVM_thin_lto_internalize", thin_module.name());
752if unsafe { !llvm::LLVMRustPrepareThinLTOInternalize(thin_module.shared.data.0, llmod) }
753 {
754 write::llvm_err(dcx, LlvmError::PrepareThinLtoModule);
755 }
756save_temp_bitcode(cgcx, &module, "thin-lto-after-internalize");
757 }
758759 {
760let _timer = prof.generic_activity_with_arg("LLVM_thin_lto_import", thin_module.name());
761if unsafe {
762 !llvm::LLVMRustPrepareThinLTOImport(thin_module.shared.data.0, llmod, target.raw())
763 } {
764 write::llvm_err(dcx, LlvmError::PrepareThinLtoModule);
765 }
766save_temp_bitcode(cgcx, &module, "thin-lto-after-import");
767 }
768769// Alright now that we've done everything related to the ThinLTO
770 // analysis it's time to run some optimizations! Here we use the same
771 // `run_pass_manager` as the "fat" LTO above except that we tell it to
772 // populate a thin-specific pass manager, which presumably LLVM treats a
773 // little differently.
774{
775{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_codegen_llvm/src/back/lto.rs:775",
"rustc_codegen_llvm::back::lto", ::tracing::Level::INFO,
::tracing_core::__macro_support::Option::Some("compiler/rustc_codegen_llvm/src/back/lto.rs"),
::tracing_core::__macro_support::Option::Some(775u32),
::tracing_core::__macro_support::Option::Some("rustc_codegen_llvm::back::lto"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::INFO <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("running thin lto passes over {0}",
module.name) as &dyn Value))])
});
} else { ; }
};info!("running thin lto passes over {}", module.name);
776run_pass_manager(cgcx, prof, dcx, &mut module, true);
777save_temp_bitcode(cgcx, &module, "thin-lto-after-pm");
778 }
779 }
780codegen(cgcx, prof, shared_emitter, module, &cgcx.module_config)
781}
782783/// Maps LLVM module identifiers to their corresponding LLVM LTO cache keys
784#[derive(#[automatically_derived]
impl ::core::fmt::Debug for ThinLTOKeysMap {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
::core::fmt::Formatter::debug_struct_field1_finish(f,
"ThinLTOKeysMap", "keys", &&self.keys)
}
}Debug, #[automatically_derived]
impl ::core::default::Default for ThinLTOKeysMap {
#[inline]
fn default() -> ThinLTOKeysMap {
ThinLTOKeysMap { keys: ::core::default::Default::default() }
}
}Default)]
785struct ThinLTOKeysMap {
786// key = llvm name of importing module, value = LLVM cache key
787keys: BTreeMap<String, String>,
788}
789790impl ThinLTOKeysMap {
791fn save_to_file(&self, path: &Path) -> io::Result<()> {
792use std::io::Write;
793let mut writer = File::create_buffered(path)?;
794// The entries are loaded back into a hash map in `load_from_file()`, so
795 // the order in which we write them to file here does not matter.
796for (module, key) in &self.keys {
797writer.write_fmt(format_args!("{0} {1}\n", module, key))writeln!(writer, "{module} {key}")?;
798 }
799Ok(())
800 }
801802fn load_from_file(path: &Path) -> io::Result<Self> {
803use std::io::BufRead;
804let mut keys = BTreeMap::default();
805let file = File::open_buffered(path)?;
806for line in file.lines() {
807let line = line?;
808let mut split = line.split(' ');
809let module = split.next().unwrap();
810let key = split.next().unwrap();
811match (&split.next(), &None) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val, &*right_val,
::core::option::Option::Some(format_args!("Expected two space-separated values, found {0:?}",
line)));
}
}
};assert_eq!(split.next(), None, "Expected two space-separated values, found {line:?}");
812 keys.insert(module.to_string(), key.to_string());
813 }
814Ok(Self { keys })
815 }
816817fn from_thin_lto_modules(
818 data: &ThinData,
819 modules: &[llvm::ThinLTOModule],
820 names: &[CString],
821 ) -> Self {
822let keys = iter::zip(modules, names)
823 .map(|(module, name)| {
824let key = build_string(|rust_str| unsafe {
825 llvm::LLVMRustComputeLTOCacheKey(rust_str, module.identifier, data.0);
826 })
827 .expect("Invalid ThinLTO module key");
828 (module_name_to_str(name).to_string(), key)
829 })
830 .collect();
831Self { keys }
832 }
833}
834835fn module_name_to_str(c_str: &CStr) -> &str {
836c_str.to_str().unwrap_or_else(|e| {
837::rustc_middle::util::bug::bug_fmt(format_args!("Encountered non-utf8 LLVM module name `{0}`: {1}",
c_str.to_string_lossy(), e))bug!("Encountered non-utf8 LLVM module name `{}`: {}", c_str.to_string_lossy(), e)838 })
839}
840841pub(crate) fn parse_module<'a>(
842 cx: &'a llvm::Context,
843 name: &CStr,
844 data: &[u8],
845 dcx: DiagCtxtHandle<'_>,
846) -> &'a llvm::Module {
847unsafe {
848 llvm::LLVMRustParseBitcodeForLTO(cx, data.as_ptr(), data.len(), name.as_ptr())
849 .unwrap_or_else(|| write::llvm_err(dcx, LlvmError::ParseBitcode))
850 }
851}