1use std::ffi::{CStr, CString};
2use std::io::{self, Write};
3use std::path::{Path, PathBuf};
4use std::ptr::null_mut;
5use std::sync::Arc;
6use std::{fs, slice, str};
7
8use libc::{c_char, c_int, c_void, size_t};
9use llvm::{
10 LLVMRustLLVMHasZlibCompressionForDebugSymbols, LLVMRustLLVMHasZstdCompressionForDebugSymbols,
11};
12use rustc_codegen_ssa::back::link::ensure_removed;
13use rustc_codegen_ssa::back::versioned_llvm_target;
14use rustc_codegen_ssa::back::write::{
15 BitcodeSection, CodegenContext, EmitObj, ModuleConfig, TargetMachineFactoryConfig,
16 TargetMachineFactoryFn,
17};
18use rustc_codegen_ssa::traits::*;
19use rustc_codegen_ssa::{CompiledModule, ModuleCodegen, ModuleKind};
20use rustc_data_structures::profiling::SelfProfilerRef;
21use rustc_data_structures::small_c_str::SmallCStr;
22use rustc_errors::{DiagCtxtHandle, FatalError, Level};
23use rustc_fs_util::{link_or_copy, path_to_c_string};
24use rustc_middle::ty::TyCtxt;
25use rustc_session::Session;
26use rustc_session::config::{
27 self, Lto, OutputType, Passes, RemapPathScopeComponents, SplitDwarfKind, SwitchWithOptPath,
28};
29use rustc_span::{BytePos, InnerSpan, Pos, SpanData, SyntaxContext, sym};
30use rustc_target::spec::{CodeModel, FloatAbi, RelocModel, SanitizerSet, SplitDebuginfo, TlsModel};
31use tracing::{debug, trace};
32
33use crate::back::lto::ThinBuffer;
34use crate::back::owned_target_machine::OwnedTargetMachine;
35use crate::back::profiling::{
36 LlvmSelfProfiler, selfprofile_after_pass_callback, selfprofile_before_pass_callback,
37};
38use crate::common::AsCCharPtr;
39use crate::errors::{
40 CopyBitcode, FromLlvmDiag, FromLlvmOptimizationDiag, LlvmError, UnknownCompression,
41 WithLlvmError, WriteBytecode,
42};
43use crate::llvm::diagnostic::OptimizationDiagnosticKind::*;
44use crate::llvm::{self, DiagnosticInfo};
45use crate::type_::Type;
46use crate::{LlvmCodegenBackend, ModuleLlvm, base, common, llvm_util};
47
48pub(crate) fn llvm_err<'a>(dcx: DiagCtxtHandle<'_>, err: LlvmError<'a>) -> FatalError {
49 match llvm::last_error() {
50 Some(llvm_err) => dcx.emit_almost_fatal(WithLlvmError(err, llvm_err)),
51 None => dcx.emit_almost_fatal(err),
52 }
53}
54
55fn write_output_file<'ll>(
56 dcx: DiagCtxtHandle<'_>,
57 target: &'ll llvm::TargetMachine,
58 no_builtins: bool,
59 m: &'ll llvm::Module,
60 output: &Path,
61 dwo_output: Option<&Path>,
62 file_type: llvm::FileType,
63 self_profiler_ref: &SelfProfilerRef,
64 verify_llvm_ir: bool,
65) -> Result<(), FatalError> {
66 debug!("write_output_file output={:?} dwo_output={:?}", output, dwo_output);
67 let output_c = path_to_c_string(output);
68 let dwo_output_c;
69 let dwo_output_ptr = if let Some(dwo_output) = dwo_output {
70 dwo_output_c = path_to_c_string(dwo_output);
71 dwo_output_c.as_ptr()
72 } else {
73 std::ptr::null()
74 };
75 let result = unsafe {
76 let pm = llvm::LLVMCreatePassManager();
77 llvm::LLVMAddAnalysisPasses(target, pm);
78 llvm::LLVMRustAddLibraryInfo(pm, m, no_builtins);
79 llvm::LLVMRustWriteOutputFile(
80 target,
81 pm,
82 m,
83 output_c.as_ptr(),
84 dwo_output_ptr,
85 file_type,
86 verify_llvm_ir,
87 )
88 };
89
90 if result == llvm::LLVMRustResult::Success {
92 let artifact_kind = match file_type {
93 llvm::FileType::ObjectFile => "object_file",
94 llvm::FileType::AssemblyFile => "assembly_file",
95 };
96 record_artifact_size(self_profiler_ref, artifact_kind, output);
97 if let Some(dwo_file) = dwo_output {
98 record_artifact_size(self_profiler_ref, "dwo_file", dwo_file);
99 }
100 }
101
102 result.into_result().map_err(|()| llvm_err(dcx, LlvmError::WriteOutput { path: output }))
103}
104
105pub(crate) fn create_informational_target_machine(
106 sess: &Session,
107 only_base_features: bool,
108) -> OwnedTargetMachine {
109 let config = TargetMachineFactoryConfig { split_dwarf_file: None, output_obj_file: None };
110 let features = llvm_util::global_llvm_features(sess, false, only_base_features);
113 target_machine_factory(sess, config::OptLevel::No, &features)(config)
114 .unwrap_or_else(|err| llvm_err(sess.dcx(), err).raise())
115}
116
117pub(crate) fn create_target_machine(tcx: TyCtxt<'_>, mod_name: &str) -> OwnedTargetMachine {
118 let split_dwarf_file = if tcx.sess.target_can_use_split_dwarf() {
119 tcx.output_filenames(()).split_dwarf_path(
120 tcx.sess.split_debuginfo(),
121 tcx.sess.opts.unstable_opts.split_dwarf_kind,
122 mod_name,
123 tcx.sess.invocation_temp.as_deref(),
124 )
125 } else {
126 None
127 };
128
129 let output_obj_file = Some(tcx.output_filenames(()).temp_path_for_cgu(
130 OutputType::Object,
131 mod_name,
132 tcx.sess.invocation_temp.as_deref(),
133 ));
134 let config = TargetMachineFactoryConfig { split_dwarf_file, output_obj_file };
135
136 target_machine_factory(
137 tcx.sess,
138 tcx.backend_optimization_level(()),
139 tcx.global_backend_features(()),
140 )(config)
141 .unwrap_or_else(|err| llvm_err(tcx.dcx(), err).raise())
142}
143
144fn to_llvm_opt_settings(cfg: config::OptLevel) -> (llvm::CodeGenOptLevel, llvm::CodeGenOptSize) {
145 use self::config::OptLevel::*;
146 match cfg {
147 No => (llvm::CodeGenOptLevel::None, llvm::CodeGenOptSizeNone),
148 Less => (llvm::CodeGenOptLevel::Less, llvm::CodeGenOptSizeNone),
149 More => (llvm::CodeGenOptLevel::Default, llvm::CodeGenOptSizeNone),
150 Aggressive => (llvm::CodeGenOptLevel::Aggressive, llvm::CodeGenOptSizeNone),
151 Size => (llvm::CodeGenOptLevel::Default, llvm::CodeGenOptSizeDefault),
152 SizeMin => (llvm::CodeGenOptLevel::Default, llvm::CodeGenOptSizeAggressive),
153 }
154}
155
156fn to_pass_builder_opt_level(cfg: config::OptLevel) -> llvm::PassBuilderOptLevel {
157 use config::OptLevel::*;
158 match cfg {
159 No => llvm::PassBuilderOptLevel::O0,
160 Less => llvm::PassBuilderOptLevel::O1,
161 More => llvm::PassBuilderOptLevel::O2,
162 Aggressive => llvm::PassBuilderOptLevel::O3,
163 Size => llvm::PassBuilderOptLevel::Os,
164 SizeMin => llvm::PassBuilderOptLevel::Oz,
165 }
166}
167
168fn to_llvm_relocation_model(relocation_model: RelocModel) -> llvm::RelocModel {
169 match relocation_model {
170 RelocModel::Static => llvm::RelocModel::Static,
171 RelocModel::Pic | RelocModel::Pie => llvm::RelocModel::PIC,
174 RelocModel::DynamicNoPic => llvm::RelocModel::DynamicNoPic,
175 RelocModel::Ropi => llvm::RelocModel::ROPI,
176 RelocModel::Rwpi => llvm::RelocModel::RWPI,
177 RelocModel::RopiRwpi => llvm::RelocModel::ROPI_RWPI,
178 }
179}
180
181pub(crate) fn to_llvm_code_model(code_model: Option<CodeModel>) -> llvm::CodeModel {
182 match code_model {
183 Some(CodeModel::Tiny) => llvm::CodeModel::Tiny,
184 Some(CodeModel::Small) => llvm::CodeModel::Small,
185 Some(CodeModel::Kernel) => llvm::CodeModel::Kernel,
186 Some(CodeModel::Medium) => llvm::CodeModel::Medium,
187 Some(CodeModel::Large) => llvm::CodeModel::Large,
188 None => llvm::CodeModel::None,
189 }
190}
191
192fn to_llvm_float_abi(float_abi: Option<FloatAbi>) -> llvm::FloatAbi {
193 match float_abi {
194 None => llvm::FloatAbi::Default,
195 Some(FloatAbi::Soft) => llvm::FloatAbi::Soft,
196 Some(FloatAbi::Hard) => llvm::FloatAbi::Hard,
197 }
198}
199
200pub(crate) fn target_machine_factory(
201 sess: &Session,
202 optlvl: config::OptLevel,
203 target_features: &[String],
204) -> TargetMachineFactoryFn<LlvmCodegenBackend> {
205 let reloc_model = to_llvm_relocation_model(sess.relocation_model());
206
207 let (opt_level, _) = to_llvm_opt_settings(optlvl);
208 let float_abi = if sess.target.arch == "arm" && sess.opts.cg.soft_float {
209 llvm::FloatAbi::Soft
210 } else {
211 to_llvm_float_abi(sess.target.llvm_floatabi)
214 };
215
216 let ffunction_sections =
217 sess.opts.unstable_opts.function_sections.unwrap_or(sess.target.function_sections);
218 let fdata_sections = ffunction_sections;
219 let funique_section_names = !sess.opts.unstable_opts.no_unique_section_names;
220
221 let code_model = to_llvm_code_model(sess.code_model());
222
223 let mut singlethread = sess.target.singlethread;
224
225 if singlethread && sess.target.is_like_wasm && sess.target_features.contains(&sym::atomics) {
229 singlethread = false;
230 }
231
232 let triple = SmallCStr::new(&versioned_llvm_target(sess));
233 let cpu = SmallCStr::new(llvm_util::target_cpu(sess));
234 let features = CString::new(target_features.join(",")).unwrap();
235 let abi = SmallCStr::new(&sess.target.llvm_abiname);
236 let trap_unreachable =
237 sess.opts.unstable_opts.trap_unreachable.unwrap_or(sess.target.trap_unreachable);
238 let emit_stack_size_section = sess.opts.unstable_opts.emit_stack_sizes;
239
240 let verbose_asm = sess.opts.unstable_opts.verbose_asm;
241 let relax_elf_relocations =
242 sess.opts.unstable_opts.relax_elf_relocations.unwrap_or(sess.target.relax_elf_relocations);
243
244 let use_init_array =
245 !sess.opts.unstable_opts.use_ctors_section.unwrap_or(sess.target.use_ctors_section);
246
247 let path_mapping = sess.source_map().path_mapping().clone();
248
249 let use_emulated_tls = matches!(sess.tls_model(), TlsModel::Emulated);
250
251 let args_cstr_buff = {
254 let mut args_cstr_buff: Vec<u8> = Vec::new();
255 let exe_path = std::env::current_exe().unwrap_or_default();
256 let exe_path_str = exe_path.into_os_string().into_string().unwrap_or_default();
257
258 args_cstr_buff.extend_from_slice(exe_path_str.as_bytes());
259 args_cstr_buff.push(0);
260
261 for arg in sess.expanded_args.iter() {
262 args_cstr_buff.extend_from_slice(arg.as_bytes());
263 args_cstr_buff.push(0);
264 }
265
266 args_cstr_buff
267 };
268
269 let debuginfo_compression = sess.opts.debuginfo_compression.to_string();
270 match sess.opts.debuginfo_compression {
271 rustc_session::config::DebugInfoCompression::Zlib => {
272 if !unsafe { LLVMRustLLVMHasZlibCompressionForDebugSymbols() } {
273 sess.dcx().emit_warn(UnknownCompression { algorithm: "zlib" });
274 }
275 }
276 rustc_session::config::DebugInfoCompression::Zstd => {
277 if !unsafe { LLVMRustLLVMHasZstdCompressionForDebugSymbols() } {
278 sess.dcx().emit_warn(UnknownCompression { algorithm: "zstd" });
279 }
280 }
281 rustc_session::config::DebugInfoCompression::None => {}
282 };
283 let debuginfo_compression = SmallCStr::new(&debuginfo_compression);
284
285 let file_name_display_preference =
286 sess.filename_display_preference(RemapPathScopeComponents::DEBUGINFO);
287
288 Arc::new(move |config: TargetMachineFactoryConfig| {
289 let path_to_cstring_helper = |path: Option<PathBuf>| -> CString {
290 let path = path.unwrap_or_default();
291 let path = path_mapping
292 .to_real_filename(path)
293 .to_string_lossy(file_name_display_preference)
294 .into_owned();
295 CString::new(path).unwrap()
296 };
297
298 let split_dwarf_file = path_to_cstring_helper(config.split_dwarf_file);
299 let output_obj_file = path_to_cstring_helper(config.output_obj_file);
300
301 OwnedTargetMachine::new(
302 &triple,
303 &cpu,
304 &features,
305 &abi,
306 code_model,
307 reloc_model,
308 opt_level,
309 float_abi,
310 ffunction_sections,
311 fdata_sections,
312 funique_section_names,
313 trap_unreachable,
314 singlethread,
315 verbose_asm,
316 emit_stack_size_section,
317 relax_elf_relocations,
318 use_init_array,
319 &split_dwarf_file,
320 &output_obj_file,
321 &debuginfo_compression,
322 use_emulated_tls,
323 &args_cstr_buff,
324 )
325 })
326}
327
328pub(crate) fn save_temp_bitcode(
329 cgcx: &CodegenContext<LlvmCodegenBackend>,
330 module: &ModuleCodegen<ModuleLlvm>,
331 name: &str,
332) {
333 if !cgcx.save_temps {
334 return;
335 }
336 let ext = format!("{name}.bc");
337 let path = cgcx.output_filenames.temp_path_ext_for_cgu(
338 &ext,
339 &module.name,
340 cgcx.invocation_temp.as_deref(),
341 );
342 write_bitcode_to_file(module, &path)
343}
344
345fn write_bitcode_to_file(module: &ModuleCodegen<ModuleLlvm>, path: &Path) {
346 unsafe {
347 let path = path_to_c_string(&path);
348 let llmod = module.module_llvm.llmod();
349 llvm::LLVMWriteBitcodeToFile(llmod, path.as_ptr());
350 }
351}
352
353pub(crate) enum CodegenDiagnosticsStage {
355 Opt,
357 LTO,
359 Codegen,
361}
362
363pub(crate) struct DiagnosticHandlers<'a> {
364 data: *mut (&'a CodegenContext<LlvmCodegenBackend>, DiagCtxtHandle<'a>),
365 llcx: &'a llvm::Context,
366 old_handler: Option<&'a llvm::DiagnosticHandler>,
367}
368
369impl<'a> DiagnosticHandlers<'a> {
370 pub(crate) fn new(
371 cgcx: &'a CodegenContext<LlvmCodegenBackend>,
372 dcx: DiagCtxtHandle<'a>,
373 llcx: &'a llvm::Context,
374 module: &ModuleCodegen<ModuleLlvm>,
375 stage: CodegenDiagnosticsStage,
376 ) -> Self {
377 let remark_passes_all: bool;
378 let remark_passes: Vec<CString>;
379 match &cgcx.remark {
380 Passes::All => {
381 remark_passes_all = true;
382 remark_passes = Vec::new();
383 }
384 Passes::Some(passes) => {
385 remark_passes_all = false;
386 remark_passes =
387 passes.iter().map(|name| CString::new(name.as_str()).unwrap()).collect();
388 }
389 };
390 let remark_passes: Vec<*const c_char> =
391 remark_passes.iter().map(|name: &CString| name.as_ptr()).collect();
392 let remark_file = cgcx
393 .remark_dir
394 .as_ref()
395 .map(|dir| {
397 let stage_suffix = match stage {
398 CodegenDiagnosticsStage::Codegen => "codegen",
399 CodegenDiagnosticsStage::Opt => "opt",
400 CodegenDiagnosticsStage::LTO => "lto",
401 };
402 dir.join(format!("{}.{stage_suffix}.opt.yaml", module.name))
403 })
404 .and_then(|dir| dir.to_str().and_then(|p| CString::new(p).ok()));
405
406 let pgo_available = cgcx.opts.cg.profile_use.is_some();
407 let data = Box::into_raw(Box::new((cgcx, dcx)));
408 unsafe {
409 let old_handler = llvm::LLVMRustContextGetDiagnosticHandler(llcx);
410 llvm::LLVMRustContextConfigureDiagnosticHandler(
411 llcx,
412 diagnostic_handler,
413 data.cast(),
414 remark_passes_all,
415 remark_passes.as_ptr(),
416 remark_passes.len(),
417 remark_file.as_ref().map(|dir| dir.as_ptr()).unwrap_or(std::ptr::null()),
420 pgo_available,
421 );
422 DiagnosticHandlers { data, llcx, old_handler }
423 }
424 }
425}
426
427impl<'a> Drop for DiagnosticHandlers<'a> {
428 fn drop(&mut self) {
429 unsafe {
430 llvm::LLVMRustContextSetDiagnosticHandler(self.llcx, self.old_handler);
431 drop(Box::from_raw(self.data));
432 }
433 }
434}
435
436fn report_inline_asm(
437 cgcx: &CodegenContext<LlvmCodegenBackend>,
438 msg: String,
439 level: llvm::DiagnosticLevel,
440 cookie: u64,
441 source: Option<(String, Vec<InnerSpan>)>,
442) {
443 let span = if cookie == 0 || matches!(cgcx.lto, Lto::Fat | Lto::Thin) {
447 SpanData::default()
448 } else {
449 SpanData {
450 lo: BytePos::from_u32(cookie as u32),
451 hi: BytePos::from_u32((cookie >> 32) as u32),
452 ctxt: SyntaxContext::root(),
453 parent: None,
454 }
455 };
456 let level = match level {
457 llvm::DiagnosticLevel::Error => Level::Error,
458 llvm::DiagnosticLevel::Warning => Level::Warning,
459 llvm::DiagnosticLevel::Note | llvm::DiagnosticLevel::Remark => Level::Note,
460 };
461 let msg = msg.strip_prefix("error: ").unwrap_or(&msg).to_string();
462 cgcx.diag_emitter.inline_asm_error(span, msg, level, source);
463}
464
465unsafe extern "C" fn diagnostic_handler(info: &DiagnosticInfo, user: *mut c_void) {
466 if user.is_null() {
467 return;
468 }
469 let (cgcx, dcx) =
470 unsafe { *(user as *const (&CodegenContext<LlvmCodegenBackend>, DiagCtxtHandle<'_>)) };
471
472 match unsafe { llvm::diagnostic::Diagnostic::unpack(info) } {
473 llvm::diagnostic::InlineAsm(inline) => {
474 report_inline_asm(cgcx, inline.message, inline.level, inline.cookie, inline.source);
475 }
476
477 llvm::diagnostic::Optimization(opt) => {
478 dcx.emit_note(FromLlvmOptimizationDiag {
479 filename: &opt.filename,
480 line: opt.line,
481 column: opt.column,
482 pass_name: &opt.pass_name,
483 kind: match opt.kind {
484 OptimizationRemark => "success",
485 OptimizationMissed | OptimizationFailure => "missed",
486 OptimizationAnalysis
487 | OptimizationAnalysisFPCommute
488 | OptimizationAnalysisAliasing => "analysis",
489 OptimizationRemarkOther => "other",
490 },
491 message: &opt.message,
492 });
493 }
494 llvm::diagnostic::PGO(diagnostic_ref) | llvm::diagnostic::Linker(diagnostic_ref) => {
495 let message = llvm::build_string(|s| unsafe {
496 llvm::LLVMRustWriteDiagnosticInfoToString(diagnostic_ref, s)
497 })
498 .expect("non-UTF8 diagnostic");
499 dcx.emit_warn(FromLlvmDiag { message });
500 }
501 llvm::diagnostic::Unsupported(diagnostic_ref) => {
502 let message = llvm::build_string(|s| unsafe {
503 llvm::LLVMRustWriteDiagnosticInfoToString(diagnostic_ref, s)
504 })
505 .expect("non-UTF8 diagnostic");
506 dcx.emit_err(FromLlvmDiag { message });
507 }
508 llvm::diagnostic::UnknownDiagnostic(..) => {}
509 }
510}
511
512fn get_pgo_gen_path(config: &ModuleConfig) -> Option<CString> {
513 match config.pgo_gen {
514 SwitchWithOptPath::Enabled(ref opt_dir_path) => {
515 let path = if let Some(dir_path) = opt_dir_path {
516 dir_path.join("default_%m.profraw")
517 } else {
518 PathBuf::from("default_%m.profraw")
519 };
520
521 Some(CString::new(format!("{}", path.display())).unwrap())
522 }
523 SwitchWithOptPath::Disabled => None,
524 }
525}
526
527fn get_pgo_use_path(config: &ModuleConfig) -> Option<CString> {
528 config
529 .pgo_use
530 .as_ref()
531 .map(|path_buf| CString::new(path_buf.to_string_lossy().as_bytes()).unwrap())
532}
533
534fn get_pgo_sample_use_path(config: &ModuleConfig) -> Option<CString> {
535 config
536 .pgo_sample_use
537 .as_ref()
538 .map(|path_buf| CString::new(path_buf.to_string_lossy().as_bytes()).unwrap())
539}
540
541fn get_instr_profile_output_path(config: &ModuleConfig) -> Option<CString> {
542 config.instrument_coverage.then(|| c"default_%m_%p.profraw".to_owned())
543}
544
545#[derive(Debug, Eq, PartialEq)]
549pub(crate) enum AutodiffStage {
550 PreAD,
551 DuringAD,
552 PostAD,
553}
554
555pub(crate) unsafe fn llvm_optimize(
556 cgcx: &CodegenContext<LlvmCodegenBackend>,
557 dcx: DiagCtxtHandle<'_>,
558 module: &ModuleCodegen<ModuleLlvm>,
559 thin_lto_buffer: Option<&mut *mut llvm::ThinLTOBuffer>,
560 config: &ModuleConfig,
561 opt_level: config::OptLevel,
562 opt_stage: llvm::OptStage,
563 autodiff_stage: AutodiffStage,
564) -> Result<(), FatalError> {
565 let consider_ad = cfg!(llvm_enzyme) && config.autodiff.contains(&config::AutoDiff::Enable);
574 let run_enzyme = autodiff_stage == AutodiffStage::DuringAD;
575 let print_before_enzyme = config.autodiff.contains(&config::AutoDiff::PrintModBefore);
576 let print_after_enzyme = config.autodiff.contains(&config::AutoDiff::PrintModAfter);
577 let print_passes = config.autodiff.contains(&config::AutoDiff::PrintPasses);
578 let merge_functions;
579 let unroll_loops;
580 let vectorize_slp;
581 let vectorize_loop;
582
583 if consider_ad && autodiff_stage != AutodiffStage::PostAD {
592 merge_functions = false;
593 unroll_loops = false;
594 vectorize_slp = false;
595 vectorize_loop = false;
596 } else {
597 unroll_loops =
598 opt_level != config::OptLevel::Size && opt_level != config::OptLevel::SizeMin;
599 merge_functions = config.merge_functions;
600 vectorize_slp = config.vectorize_slp;
601 vectorize_loop = config.vectorize_loop;
602 }
603 trace!(?unroll_loops, ?vectorize_slp, ?vectorize_loop, ?run_enzyme);
604 if thin_lto_buffer.is_some() {
605 assert!(
606 matches!(
607 opt_stage,
608 llvm::OptStage::PreLinkNoLTO
609 | llvm::OptStage::PreLinkFatLTO
610 | llvm::OptStage::PreLinkThinLTO
611 ),
612 "the bitcode for LTO can only be obtained at the pre-link stage"
613 );
614 }
615 let pgo_gen_path = get_pgo_gen_path(config);
616 let pgo_use_path = get_pgo_use_path(config);
617 let pgo_sample_use_path = get_pgo_sample_use_path(config);
618 let is_lto = opt_stage == llvm::OptStage::ThinLTO || opt_stage == llvm::OptStage::FatLTO;
619 let instr_profile_output_path = get_instr_profile_output_path(config);
620 let sanitize_dataflow_abilist: Vec<_> = config
621 .sanitizer_dataflow_abilist
622 .iter()
623 .map(|file| CString::new(file.as_str()).unwrap())
624 .collect();
625 let sanitize_dataflow_abilist_ptrs: Vec<_> =
626 sanitize_dataflow_abilist.iter().map(|file| file.as_ptr()).collect();
627 let sanitizer_options = if !is_lto {
629 Some(llvm::SanitizerOptions {
630 sanitize_address: config.sanitizer.contains(SanitizerSet::ADDRESS),
631 sanitize_address_recover: config.sanitizer_recover.contains(SanitizerSet::ADDRESS),
632 sanitize_cfi: config.sanitizer.contains(SanitizerSet::CFI),
633 sanitize_dataflow: config.sanitizer.contains(SanitizerSet::DATAFLOW),
634 sanitize_dataflow_abilist: sanitize_dataflow_abilist_ptrs.as_ptr(),
635 sanitize_dataflow_abilist_len: sanitize_dataflow_abilist_ptrs.len(),
636 sanitize_kcfi: config.sanitizer.contains(SanitizerSet::KCFI),
637 sanitize_memory: config.sanitizer.contains(SanitizerSet::MEMORY),
638 sanitize_memory_recover: config.sanitizer_recover.contains(SanitizerSet::MEMORY),
639 sanitize_memory_track_origins: config.sanitizer_memory_track_origins as c_int,
640 sanitize_thread: config.sanitizer.contains(SanitizerSet::THREAD),
641 sanitize_hwaddress: config.sanitizer.contains(SanitizerSet::HWADDRESS),
642 sanitize_hwaddress_recover: config.sanitizer_recover.contains(SanitizerSet::HWADDRESS),
643 sanitize_kernel_address: config.sanitizer.contains(SanitizerSet::KERNELADDRESS),
644 sanitize_kernel_address_recover: config
645 .sanitizer_recover
646 .contains(SanitizerSet::KERNELADDRESS),
647 })
648 } else {
649 None
650 };
651
652 let mut llvm_profiler = cgcx
653 .prof
654 .llvm_recording_enabled()
655 .then(|| LlvmSelfProfiler::new(cgcx.prof.get_self_profiler().unwrap()));
656
657 let llvm_selfprofiler =
658 llvm_profiler.as_mut().map(|s| s as *mut _ as *mut c_void).unwrap_or(std::ptr::null_mut());
659
660 let extra_passes = if !is_lto { config.passes.join(",") } else { "".to_string() };
661
662 let llvm_plugins = config.llvm_plugins.join(",");
663
664 let result = unsafe {
665 llvm::LLVMRustOptimize(
666 module.module_llvm.llmod(),
667 &*module.module_llvm.tm.raw(),
668 to_pass_builder_opt_level(opt_level),
669 opt_stage,
670 cgcx.opts.cg.linker_plugin_lto.enabled(),
671 config.no_prepopulate_passes,
672 config.verify_llvm_ir,
673 config.lint_llvm_ir,
674 thin_lto_buffer,
675 config.emit_thin_lto,
676 config.emit_thin_lto_summary,
677 merge_functions,
678 unroll_loops,
679 vectorize_slp,
680 vectorize_loop,
681 config.no_builtins,
682 config.emit_lifetime_markers,
683 run_enzyme,
684 print_before_enzyme,
685 print_after_enzyme,
686 print_passes,
687 sanitizer_options.as_ref(),
688 pgo_gen_path.as_ref().map_or(std::ptr::null(), |s| s.as_ptr()),
689 pgo_use_path.as_ref().map_or(std::ptr::null(), |s| s.as_ptr()),
690 config.instrument_coverage,
691 instr_profile_output_path.as_ref().map_or(std::ptr::null(), |s| s.as_ptr()),
692 pgo_sample_use_path.as_ref().map_or(std::ptr::null(), |s| s.as_ptr()),
693 config.debug_info_for_profiling,
694 llvm_selfprofiler,
695 selfprofile_before_pass_callback,
696 selfprofile_after_pass_callback,
697 extra_passes.as_c_char_ptr(),
698 extra_passes.len(),
699 llvm_plugins.as_c_char_ptr(),
700 llvm_plugins.len(),
701 )
702 };
703 result.into_result().map_err(|()| llvm_err(dcx, LlvmError::RunLlvmPasses))
704}
705
706pub(crate) fn optimize(
708 cgcx: &CodegenContext<LlvmCodegenBackend>,
709 dcx: DiagCtxtHandle<'_>,
710 module: &mut ModuleCodegen<ModuleLlvm>,
711 config: &ModuleConfig,
712) -> Result<(), FatalError> {
713 let _timer = cgcx.prof.generic_activity_with_arg("LLVM_module_optimize", &*module.name);
714
715 let llcx = &*module.module_llvm.llcx;
716 let _handlers = DiagnosticHandlers::new(cgcx, dcx, llcx, module, CodegenDiagnosticsStage::Opt);
717
718 if config.emit_no_opt_bc {
719 let out = cgcx.output_filenames.temp_path_ext_for_cgu(
720 "no-opt.bc",
721 &module.name,
722 cgcx.invocation_temp.as_deref(),
723 );
724 write_bitcode_to_file(module, &out)
725 }
726
727 if let Some(opt_level) = config.opt_level {
730 let opt_stage = match cgcx.lto {
731 Lto::Fat => llvm::OptStage::PreLinkFatLTO,
732 Lto::Thin | Lto::ThinLocal => llvm::OptStage::PreLinkThinLTO,
733 _ if cgcx.opts.cg.linker_plugin_lto.enabled() => llvm::OptStage::PreLinkThinLTO,
734 _ => llvm::OptStage::PreLinkNoLTO,
735 };
736
737 let consider_ad = cfg!(llvm_enzyme) && config.autodiff.contains(&config::AutoDiff::Enable);
740 let autodiff_stage = if consider_ad { AutodiffStage::PreAD } else { AutodiffStage::PostAD };
741 let mut thin_lto_buffer = if (module.kind == ModuleKind::Regular
746 && config.emit_obj == EmitObj::ObjectCode(BitcodeSection::Full))
747 || config.emit_thin_lto_summary
748 {
749 Some(null_mut())
750 } else {
751 None
752 };
753 unsafe {
754 llvm_optimize(
755 cgcx,
756 dcx,
757 module,
758 thin_lto_buffer.as_mut(),
759 config,
760 opt_level,
761 opt_stage,
762 autodiff_stage,
763 )
764 }?;
765 if let Some(thin_lto_buffer) = thin_lto_buffer {
766 let thin_lto_buffer = unsafe { ThinBuffer::from_raw_ptr(thin_lto_buffer) };
767 module.thin_lto_buffer = Some(thin_lto_buffer.data().to_vec());
768 let bc_summary_out = cgcx.output_filenames.temp_path_for_cgu(
769 OutputType::ThinLinkBitcode,
770 &module.name,
771 cgcx.invocation_temp.as_deref(),
772 );
773 if config.emit_thin_lto_summary
774 && let Some(thin_link_bitcode_filename) = bc_summary_out.file_name()
775 {
776 let summary_data = thin_lto_buffer.thin_link_data();
777 cgcx.prof.artifact_size(
778 "llvm_bitcode_summary",
779 thin_link_bitcode_filename.to_string_lossy(),
780 summary_data.len() as u64,
781 );
782 let _timer = cgcx.prof.generic_activity_with_arg(
783 "LLVM_module_codegen_emit_bitcode_summary",
784 &*module.name,
785 );
786 if let Err(err) = fs::write(&bc_summary_out, summary_data) {
787 dcx.emit_err(WriteBytecode { path: &bc_summary_out, err });
788 }
789 }
790 }
791 }
792 Ok(())
793}
794
795pub(crate) fn link(
796 cgcx: &CodegenContext<LlvmCodegenBackend>,
797 dcx: DiagCtxtHandle<'_>,
798 mut modules: Vec<ModuleCodegen<ModuleLlvm>>,
799) -> Result<ModuleCodegen<ModuleLlvm>, FatalError> {
800 use super::lto::{Linker, ModuleBuffer};
801 modules.sort_by(|a, b| a.name.cmp(&b.name));
803 let (first, elements) =
804 modules.split_first().expect("Bug! modules must contain at least one module.");
805
806 let mut linker = Linker::new(first.module_llvm.llmod());
807 for module in elements {
808 let _timer = cgcx.prof.generic_activity_with_arg("LLVM_link_module", &*module.name);
809 let buffer = ModuleBuffer::new(module.module_llvm.llmod());
810 linker
811 .add(buffer.data())
812 .map_err(|()| llvm_err(dcx, LlvmError::SerializeModule { name: &module.name }))?;
813 }
814 drop(linker);
815 Ok(modules.remove(0))
816}
817
818pub(crate) fn codegen(
819 cgcx: &CodegenContext<LlvmCodegenBackend>,
820 dcx: DiagCtxtHandle<'_>,
821 module: ModuleCodegen<ModuleLlvm>,
822 config: &ModuleConfig,
823) -> Result<CompiledModule, FatalError> {
824 let _timer = cgcx.prof.generic_activity_with_arg("LLVM_module_codegen", &*module.name);
825 {
826 let llmod = module.module_llvm.llmod();
827 let llcx = &*module.module_llvm.llcx;
828 let tm = &*module.module_llvm.tm;
829 let _handlers =
830 DiagnosticHandlers::new(cgcx, dcx, llcx, &module, CodegenDiagnosticsStage::Codegen);
831
832 if cgcx.msvc_imps_needed {
833 create_msvc_imps(cgcx, llcx, llmod);
834 }
835
836 let bc_out = cgcx.output_filenames.temp_path_for_cgu(
841 OutputType::Bitcode,
842 &module.name,
843 cgcx.invocation_temp.as_deref(),
844 );
845 let obj_out = cgcx.output_filenames.temp_path_for_cgu(
846 OutputType::Object,
847 &module.name,
848 cgcx.invocation_temp.as_deref(),
849 );
850
851 if config.bitcode_needed() {
852 if config.emit_bc || config.emit_obj == EmitObj::Bitcode {
853 let thin = {
854 let _timer = cgcx.prof.generic_activity_with_arg(
855 "LLVM_module_codegen_make_bitcode",
856 &*module.name,
857 );
858 ThinBuffer::new(llmod, config.emit_thin_lto, false)
859 };
860 let data = thin.data();
861 let _timer = cgcx
862 .prof
863 .generic_activity_with_arg("LLVM_module_codegen_emit_bitcode", &*module.name);
864 if let Some(bitcode_filename) = bc_out.file_name() {
865 cgcx.prof.artifact_size(
866 "llvm_bitcode",
867 bitcode_filename.to_string_lossy(),
868 data.len() as u64,
869 );
870 }
871 if let Err(err) = fs::write(&bc_out, data) {
872 dcx.emit_err(WriteBytecode { path: &bc_out, err });
873 }
874 }
875
876 if config.embed_bitcode() && module.kind == ModuleKind::Regular {
877 let _timer = cgcx
878 .prof
879 .generic_activity_with_arg("LLVM_module_codegen_embed_bitcode", &*module.name);
880 let thin_bc =
881 module.thin_lto_buffer.as_deref().expect("cannot find embedded bitcode");
882 unsafe {
883 embed_bitcode(cgcx, llcx, llmod, &config.bc_cmdline, &thin_bc);
884 }
885 }
886 }
887
888 if config.emit_ir {
889 let _timer =
890 cgcx.prof.generic_activity_with_arg("LLVM_module_codegen_emit_ir", &*module.name);
891 let out = cgcx.output_filenames.temp_path_for_cgu(
892 OutputType::LlvmAssembly,
893 &module.name,
894 cgcx.invocation_temp.as_deref(),
895 );
896 let out_c = path_to_c_string(&out);
897
898 extern "C" fn demangle_callback(
899 input_ptr: *const c_char,
900 input_len: size_t,
901 output_ptr: *mut c_char,
902 output_len: size_t,
903 ) -> size_t {
904 let input =
905 unsafe { slice::from_raw_parts(input_ptr as *const u8, input_len as usize) };
906
907 let Ok(input) = str::from_utf8(input) else { return 0 };
908
909 let output = unsafe {
910 slice::from_raw_parts_mut(output_ptr as *mut u8, output_len as usize)
911 };
912 let mut cursor = io::Cursor::new(output);
913
914 let Ok(demangled) = rustc_demangle::try_demangle(input) else { return 0 };
915
916 if write!(cursor, "{demangled:#}").is_err() {
917 return 0;
919 }
920
921 cursor.position() as size_t
922 }
923
924 let result =
925 unsafe { llvm::LLVMRustPrintModule(llmod, out_c.as_ptr(), demangle_callback) };
926
927 if result == llvm::LLVMRustResult::Success {
928 record_artifact_size(&cgcx.prof, "llvm_ir", &out);
929 }
930
931 result.into_result().map_err(|()| llvm_err(dcx, LlvmError::WriteIr { path: &out }))?;
932 }
933
934 if config.emit_asm {
935 let _timer =
936 cgcx.prof.generic_activity_with_arg("LLVM_module_codegen_emit_asm", &*module.name);
937 let path = cgcx.output_filenames.temp_path_for_cgu(
938 OutputType::Assembly,
939 &module.name,
940 cgcx.invocation_temp.as_deref(),
941 );
942
943 let llmod = if let EmitObj::ObjectCode(_) = config.emit_obj {
948 unsafe { llvm::LLVMCloneModule(llmod) }
949 } else {
950 llmod
951 };
952 write_output_file(
953 dcx,
954 tm.raw(),
955 config.no_builtins,
956 llmod,
957 &path,
958 None,
959 llvm::FileType::AssemblyFile,
960 &cgcx.prof,
961 config.verify_llvm_ir,
962 )?;
963 }
964
965 match config.emit_obj {
966 EmitObj::ObjectCode(_) => {
967 let _timer = cgcx
968 .prof
969 .generic_activity_with_arg("LLVM_module_codegen_emit_obj", &*module.name);
970
971 let dwo_out = cgcx
972 .output_filenames
973 .temp_path_dwo_for_cgu(&module.name, cgcx.invocation_temp.as_deref());
974 let dwo_out = match (cgcx.split_debuginfo, cgcx.split_dwarf_kind) {
975 (SplitDebuginfo::Off, _) => None,
977 _ if !cgcx.target_can_use_split_dwarf => None,
980 (_, SplitDwarfKind::Single) => None,
983 (_, SplitDwarfKind::Split) => Some(dwo_out.as_path()),
986 };
987
988 write_output_file(
989 dcx,
990 tm.raw(),
991 config.no_builtins,
992 llmod,
993 &obj_out,
994 dwo_out,
995 llvm::FileType::ObjectFile,
996 &cgcx.prof,
997 config.verify_llvm_ir,
998 )?;
999 }
1000
1001 EmitObj::Bitcode => {
1002 debug!("copying bitcode {:?} to obj {:?}", bc_out, obj_out);
1003 if let Err(err) = link_or_copy(&bc_out, &obj_out) {
1004 dcx.emit_err(CopyBitcode { err });
1005 }
1006
1007 if !config.emit_bc {
1008 debug!("removing_bitcode {:?}", bc_out);
1009 ensure_removed(dcx, &bc_out);
1010 }
1011 }
1012
1013 EmitObj::None => {}
1014 }
1015
1016 record_llvm_cgu_instructions_stats(&cgcx.prof, llmod);
1017 }
1018
1019 let dwarf_object_emitted = matches!(config.emit_obj, EmitObj::ObjectCode(_))
1028 && cgcx.target_can_use_split_dwarf
1029 && cgcx.split_debuginfo != SplitDebuginfo::Off
1030 && cgcx.split_dwarf_kind == SplitDwarfKind::Split;
1031 Ok(module.into_compiled_module(
1032 config.emit_obj != EmitObj::None,
1033 dwarf_object_emitted,
1034 config.emit_bc,
1035 config.emit_asm,
1036 config.emit_ir,
1037 &cgcx.output_filenames,
1038 cgcx.invocation_temp.as_deref(),
1039 ))
1040}
1041
1042fn create_section_with_flags_asm(section_name: &str, section_flags: &str, data: &[u8]) -> Vec<u8> {
1043 let mut asm = format!(".section {section_name},\"{section_flags}\"\n").into_bytes();
1044 asm.extend_from_slice(b".ascii \"");
1045 asm.reserve(data.len());
1046 for &byte in data {
1047 if byte == b'\\' || byte == b'"' {
1048 asm.push(b'\\');
1049 asm.push(byte);
1050 } else if byte < 0x20 || byte >= 0x80 {
1051 asm.push(b'\\');
1054 asm.push(b'0' + ((byte >> 6) & 0x7));
1055 asm.push(b'0' + ((byte >> 3) & 0x7));
1056 asm.push(b'0' + ((byte >> 0) & 0x7));
1057 } else {
1058 asm.push(byte);
1059 }
1060 }
1061 asm.extend_from_slice(b"\"\n");
1062 asm
1063}
1064
1065pub(crate) fn bitcode_section_name(cgcx: &CodegenContext<LlvmCodegenBackend>) -> &'static CStr {
1066 if cgcx.target_is_like_darwin {
1067 c"__LLVM,__bitcode"
1068 } else if cgcx.target_is_like_aix {
1069 c".ipa"
1070 } else {
1071 c".llvmbc"
1072 }
1073}
1074
1075unsafe fn embed_bitcode(
1077 cgcx: &CodegenContext<LlvmCodegenBackend>,
1078 llcx: &llvm::Context,
1079 llmod: &llvm::Module,
1080 cmdline: &str,
1081 bitcode: &[u8],
1082) {
1083 unsafe {
1119 if cgcx.target_is_like_darwin
1120 || cgcx.target_is_like_aix
1121 || cgcx.target_arch == "wasm32"
1122 || cgcx.target_arch == "wasm64"
1123 {
1124 let llconst = common::bytes_in_context(llcx, bitcode);
1126 let llglobal =
1127 llvm::add_global(llmod, common::val_ty(llconst), c"rustc.embedded.module");
1128 llvm::set_initializer(llglobal, llconst);
1129
1130 llvm::set_section(llglobal, bitcode_section_name(cgcx));
1131 llvm::set_linkage(llglobal, llvm::Linkage::PrivateLinkage);
1132 llvm::LLVMSetGlobalConstant(llglobal, llvm::True);
1133
1134 let llconst = common::bytes_in_context(llcx, cmdline.as_bytes());
1135 let llglobal =
1136 llvm::add_global(llmod, common::val_ty(llconst), c"rustc.embedded.cmdline");
1137 llvm::set_initializer(llglobal, llconst);
1138 let section = if cgcx.target_is_like_darwin {
1139 c"__LLVM,__cmdline"
1140 } else if cgcx.target_is_like_aix {
1141 c".info"
1142 } else {
1143 c".llvmcmd"
1144 };
1145 llvm::set_section(llglobal, section);
1146 llvm::set_linkage(llglobal, llvm::Linkage::PrivateLinkage);
1147 } else {
1148 let section_flags = if cgcx.is_pe_coff { "n" } else { "e" };
1150 let asm = create_section_with_flags_asm(".llvmbc", section_flags, bitcode);
1151 llvm::append_module_inline_asm(llmod, &asm);
1152 let asm = create_section_with_flags_asm(".llvmcmd", section_flags, cmdline.as_bytes());
1153 llvm::append_module_inline_asm(llmod, &asm);
1154 }
1155 }
1156}
1157
1158fn create_msvc_imps(
1164 cgcx: &CodegenContext<LlvmCodegenBackend>,
1165 llcx: &llvm::Context,
1166 llmod: &llvm::Module,
1167) {
1168 if !cgcx.msvc_imps_needed {
1169 return;
1170 }
1171 let prefix = if cgcx.target_arch == "x86" { "\x01__imp__" } else { "\x01__imp_" };
1176
1177 let ptr_ty = Type::ptr_llcx(llcx);
1178 let globals = base::iter_globals(llmod)
1179 .filter(|&val| {
1180 llvm::get_linkage(val) == llvm::Linkage::ExternalLinkage && !llvm::is_declaration(val)
1181 })
1182 .filter_map(|val| {
1183 let name = llvm::get_value_name(val);
1185 if ignored(name) { None } else { Some((val, name)) }
1186 })
1187 .map(move |(val, name)| {
1188 let mut imp_name = prefix.as_bytes().to_vec();
1189 imp_name.extend(name);
1190 let imp_name = CString::new(imp_name).unwrap();
1191 (imp_name, val)
1192 })
1193 .collect::<Vec<_>>();
1194
1195 for (imp_name, val) in globals {
1196 let imp = llvm::add_global(llmod, ptr_ty, &imp_name);
1197
1198 llvm::set_initializer(imp, val);
1199 llvm::set_linkage(imp, llvm::Linkage::ExternalLinkage);
1200 }
1201
1202 fn ignored(symbol_name: &[u8]) -> bool {
1204 symbol_name.starts_with(b"__llvm_profile_")
1206 }
1207}
1208
1209fn record_artifact_size(
1210 self_profiler_ref: &SelfProfilerRef,
1211 artifact_kind: &'static str,
1212 path: &Path,
1213) {
1214 if !self_profiler_ref.enabled() {
1216 return;
1217 }
1218
1219 if let Some(artifact_name) = path.file_name() {
1220 let file_size = std::fs::metadata(path).map(|m| m.len()).unwrap_or(0);
1221 self_profiler_ref.artifact_size(artifact_kind, artifact_name.to_string_lossy(), file_size);
1222 }
1223}
1224
1225fn record_llvm_cgu_instructions_stats(prof: &SelfProfilerRef, llmod: &llvm::Module) {
1226 if !prof.enabled() {
1227 return;
1228 }
1229
1230 let raw_stats =
1231 llvm::build_string(|s| unsafe { llvm::LLVMRustModuleInstructionStats(llmod, s) })
1232 .expect("cannot get module instruction stats");
1233
1234 #[derive(serde::Deserialize)]
1235 struct InstructionsStats {
1236 module: String,
1237 total: u64,
1238 }
1239
1240 let InstructionsStats { module, total } =
1241 serde_json::from_str(&raw_stats).expect("cannot parse llvm cgu instructions stats");
1242 prof.artifact_size("cgu_instructions", module, total);
1243}