1use anyhow::anyhow;
4use cranelift_codegen::binemit::{Addend, CodeOffset, Reloc};
5use cranelift_codegen::entity::SecondaryMap;
6use cranelift_codegen::isa::{OwnedTargetIsa, TargetIsa};
7use cranelift_codegen::{ir, FinalizedMachReloc};
8use cranelift_control::ControlPlane;
9use cranelift_module::{
10 DataDescription, DataId, FuncId, Init, Linkage, Module, ModuleDeclarations, ModuleError,
11 ModuleReloc, ModuleRelocTarget, ModuleResult,
12};
13use log::info;
14use object::write::{
15 Object, Relocation, SectionId, StandardSection, Symbol, SymbolId, SymbolSection,
16};
17use object::{
18 RelocationEncoding, RelocationFlags, RelocationKind, SectionKind, SymbolFlags, SymbolKind,
19 SymbolScope,
20};
21use std::collections::hash_map::Entry;
22use std::collections::HashMap;
23use std::mem;
24use target_lexicon::PointerWidth;
25
26pub struct ObjectBuilder {
28 isa: OwnedTargetIsa,
29 binary_format: object::BinaryFormat,
30 architecture: object::Architecture,
31 flags: object::FileFlags,
32 endian: object::Endianness,
33 name: Vec<u8>,
34 libcall_names: Box<dyn Fn(ir::LibCall) -> String + Send + Sync>,
35 per_function_section: bool,
36 per_data_object_section: bool,
37}
38
39impl ObjectBuilder {
40 pub fn new<V: Into<Vec<u8>>>(
48 isa: OwnedTargetIsa,
49 name: V,
50 libcall_names: Box<dyn Fn(ir::LibCall) -> String + Send + Sync>,
51 ) -> ModuleResult<Self> {
52 let mut file_flags = object::FileFlags::None;
53 let binary_format = match isa.triple().binary_format {
54 target_lexicon::BinaryFormat::Elf => object::BinaryFormat::Elf,
55 target_lexicon::BinaryFormat::Coff => object::BinaryFormat::Coff,
56 target_lexicon::BinaryFormat::Macho => object::BinaryFormat::MachO,
57 target_lexicon::BinaryFormat::Wasm => {
58 return Err(ModuleError::Backend(anyhow!(
59 "binary format wasm is unsupported",
60 )))
61 }
62 target_lexicon::BinaryFormat::Unknown => {
63 return Err(ModuleError::Backend(anyhow!("binary format is unknown")))
64 }
65 other => {
66 return Err(ModuleError::Backend(anyhow!(
67 "binary format {} not recognized",
68 other
69 )))
70 }
71 };
72 let architecture = match isa.triple().architecture {
73 target_lexicon::Architecture::X86_32(_) => object::Architecture::I386,
74 target_lexicon::Architecture::X86_64 => object::Architecture::X86_64,
75 target_lexicon::Architecture::Arm(_) => object::Architecture::Arm,
76 target_lexicon::Architecture::Aarch64(_) => object::Architecture::Aarch64,
77 target_lexicon::Architecture::Riscv64(_) => {
78 if binary_format != object::BinaryFormat::Elf {
79 return Err(ModuleError::Backend(anyhow!(
80 "binary format {:?} is not supported for riscv64",
81 binary_format,
82 )));
83 }
84
85 let mut eflags = object::elf::EF_RISCV_FLOAT_ABI_DOUBLE;
87
88 let has_c = isa
90 .isa_flags()
91 .iter()
92 .filter(|f| f.name == "has_zca" || f.name == "has_zcd")
93 .all(|f| f.as_bool().unwrap_or_default());
94 if has_c {
95 eflags |= object::elf::EF_RISCV_RVC;
96 }
97
98 file_flags = object::FileFlags::Elf {
99 os_abi: object::elf::ELFOSABI_NONE,
100 abi_version: 0,
101 e_flags: eflags,
102 };
103 object::Architecture::Riscv64
104 }
105 target_lexicon::Architecture::S390x => object::Architecture::S390x,
106 architecture => {
107 return Err(ModuleError::Backend(anyhow!(
108 "target architecture {:?} is unsupported",
109 architecture,
110 )))
111 }
112 };
113 let endian = match isa.triple().endianness().unwrap() {
114 target_lexicon::Endianness::Little => object::Endianness::Little,
115 target_lexicon::Endianness::Big => object::Endianness::Big,
116 };
117 Ok(Self {
118 isa,
119 binary_format,
120 architecture,
121 flags: file_flags,
122 endian,
123 name: name.into(),
124 libcall_names,
125 per_function_section: false,
126 per_data_object_section: false,
127 })
128 }
129
130 pub fn per_function_section(&mut self, per_function_section: bool) -> &mut Self {
132 self.per_function_section = per_function_section;
133 self
134 }
135
136 pub fn per_data_object_section(&mut self, per_data_object_section: bool) -> &mut Self {
138 self.per_data_object_section = per_data_object_section;
139 self
140 }
141}
142
143pub struct ObjectModule {
147 isa: OwnedTargetIsa,
148 object: Object<'static>,
149 declarations: ModuleDeclarations,
150 functions: SecondaryMap<FuncId, Option<(SymbolId, bool)>>,
151 data_objects: SecondaryMap<DataId, Option<(SymbolId, bool)>>,
152 relocs: Vec<SymbolRelocs>,
153 libcalls: HashMap<ir::LibCall, SymbolId>,
154 libcall_names: Box<dyn Fn(ir::LibCall) -> String + Send + Sync>,
155 known_symbols: HashMap<ir::KnownSymbol, SymbolId>,
156 known_labels: HashMap<(FuncId, CodeOffset), SymbolId>,
157 per_function_section: bool,
158 per_data_object_section: bool,
159}
160
161impl ObjectModule {
162 pub fn new(builder: ObjectBuilder) -> Self {
164 let mut object = Object::new(builder.binary_format, builder.architecture, builder.endian);
165 object.flags = builder.flags;
166 object.set_subsections_via_symbols();
167 object.add_file_symbol(builder.name);
168 Self {
169 isa: builder.isa,
170 object,
171 declarations: ModuleDeclarations::default(),
172 functions: SecondaryMap::new(),
173 data_objects: SecondaryMap::new(),
174 relocs: Vec::new(),
175 libcalls: HashMap::new(),
176 libcall_names: builder.libcall_names,
177 known_symbols: HashMap::new(),
178 known_labels: HashMap::new(),
179 per_function_section: builder.per_function_section,
180 per_data_object_section: builder.per_data_object_section,
181 }
182 }
183}
184
185fn validate_symbol(name: &str) -> ModuleResult<()> {
186 if name.contains("\0") {
189 return Err(ModuleError::Backend(anyhow::anyhow!(
190 "Symbol {:?} has a null byte, which is disallowed",
191 name
192 )));
193 }
194 Ok(())
195}
196
197impl Module for ObjectModule {
198 fn isa(&self) -> &dyn TargetIsa {
199 &*self.isa
200 }
201
202 fn declarations(&self) -> &ModuleDeclarations {
203 &self.declarations
204 }
205
206 fn declare_function(
207 &mut self,
208 name: &str,
209 linkage: Linkage,
210 signature: &ir::Signature,
211 ) -> ModuleResult<FuncId> {
212 validate_symbol(name)?;
213
214 let (id, linkage) = self
215 .declarations
216 .declare_function(name, linkage, signature)?;
217
218 let (scope, weak) = translate_linkage(linkage);
219
220 if let Some((function, _defined)) = self.functions[id] {
221 let symbol = self.object.symbol_mut(function);
222 symbol.scope = scope;
223 symbol.weak = weak;
224 } else {
225 let symbol_id = self.object.add_symbol(Symbol {
226 name: name.as_bytes().to_vec(),
227 value: 0,
228 size: 0,
229 kind: SymbolKind::Text,
230 scope,
231 weak,
232 section: SymbolSection::Undefined,
233 flags: SymbolFlags::None,
234 });
235 self.functions[id] = Some((symbol_id, false));
236 }
237
238 Ok(id)
239 }
240
241 fn declare_anonymous_function(&mut self, signature: &ir::Signature) -> ModuleResult<FuncId> {
242 let id = self.declarations.declare_anonymous_function(signature)?;
243
244 let symbol_id = self.object.add_symbol(Symbol {
245 name: self
246 .declarations
247 .get_function_decl(id)
248 .linkage_name(id)
249 .into_owned()
250 .into_bytes(),
251 value: 0,
252 size: 0,
253 kind: SymbolKind::Text,
254 scope: SymbolScope::Compilation,
255 weak: false,
256 section: SymbolSection::Undefined,
257 flags: SymbolFlags::None,
258 });
259 self.functions[id] = Some((symbol_id, false));
260
261 Ok(id)
262 }
263
264 fn declare_data(
265 &mut self,
266 name: &str,
267 linkage: Linkage,
268 writable: bool,
269 tls: bool,
270 ) -> ModuleResult<DataId> {
271 validate_symbol(name)?;
272
273 let (id, linkage) = self
274 .declarations
275 .declare_data(name, linkage, writable, tls)?;
276
277 let kind = if tls {
280 SymbolKind::Tls
281 } else {
282 SymbolKind::Data
283 };
284 let (scope, weak) = translate_linkage(linkage);
285
286 if let Some((data, _defined)) = self.data_objects[id] {
287 let symbol = self.object.symbol_mut(data);
288 symbol.kind = kind;
289 symbol.scope = scope;
290 symbol.weak = weak;
291 } else {
292 let symbol_id = self.object.add_symbol(Symbol {
293 name: name.as_bytes().to_vec(),
294 value: 0,
295 size: 0,
296 kind,
297 scope,
298 weak,
299 section: SymbolSection::Undefined,
300 flags: SymbolFlags::None,
301 });
302 self.data_objects[id] = Some((symbol_id, false));
303 }
304
305 Ok(id)
306 }
307
308 fn declare_anonymous_data(&mut self, writable: bool, tls: bool) -> ModuleResult<DataId> {
309 let id = self.declarations.declare_anonymous_data(writable, tls)?;
310
311 let kind = if tls {
312 SymbolKind::Tls
313 } else {
314 SymbolKind::Data
315 };
316
317 let symbol_id = self.object.add_symbol(Symbol {
318 name: self
319 .declarations
320 .get_data_decl(id)
321 .linkage_name(id)
322 .into_owned()
323 .into_bytes(),
324 value: 0,
325 size: 0,
326 kind,
327 scope: SymbolScope::Compilation,
328 weak: false,
329 section: SymbolSection::Undefined,
330 flags: SymbolFlags::None,
331 });
332 self.data_objects[id] = Some((symbol_id, false));
333
334 Ok(id)
335 }
336
337 fn define_function_with_control_plane(
338 &mut self,
339 func_id: FuncId,
340 ctx: &mut cranelift_codegen::Context,
341 ctrl_plane: &mut ControlPlane,
342 ) -> ModuleResult<()> {
343 info!("defining function {}: {}", func_id, ctx.func.display());
344
345 let res = ctx.compile(self.isa(), ctrl_plane)?;
346 let alignment = res.buffer.alignment as u64;
347
348 self.define_function_bytes(
349 func_id,
350 &ctx.func,
351 alignment,
352 ctx.compiled_code().unwrap().code_buffer(),
353 ctx.compiled_code().unwrap().buffer.relocs(),
354 )
355 }
356
357 fn define_function_bytes(
358 &mut self,
359 func_id: FuncId,
360 func: &ir::Function,
361 alignment: u64,
362 bytes: &[u8],
363 relocs: &[FinalizedMachReloc],
364 ) -> ModuleResult<()> {
365 info!("defining function {} with bytes", func_id);
366 let decl = self.declarations.get_function_decl(func_id);
367 let decl_name = decl.linkage_name(func_id);
368 if !decl.linkage.is_definable() {
369 return Err(ModuleError::InvalidImportDefinition(decl_name.into_owned()));
370 }
371
372 let &mut (symbol, ref mut defined) = self.functions[func_id].as_mut().unwrap();
373 if *defined {
374 return Err(ModuleError::DuplicateDefinition(decl_name.into_owned()));
375 }
376 *defined = true;
377
378 let align = alignment
379 .max(self.isa.function_alignment().minimum.into())
380 .max(self.isa.symbol_alignment());
381 let section = if self.per_function_section {
382 self.object
386 .add_subsection(StandardSection::Text, b"subsection")
387 } else {
388 self.object.section_id(StandardSection::Text)
389 };
390 let offset = self.object.add_symbol_data(symbol, section, bytes, align);
391
392 if !relocs.is_empty() {
393 let relocs = relocs
394 .iter()
395 .map(|record| {
396 self.process_reloc(&ModuleReloc::from_mach_reloc(&record, func, func_id))
397 })
398 .collect();
399 self.relocs.push(SymbolRelocs {
400 section,
401 offset,
402 relocs,
403 });
404 }
405
406 Ok(())
407 }
408
409 fn define_data(&mut self, data_id: DataId, data: &DataDescription) -> ModuleResult<()> {
410 let decl = self.declarations.get_data_decl(data_id);
411 if !decl.linkage.is_definable() {
412 return Err(ModuleError::InvalidImportDefinition(
413 decl.linkage_name(data_id).into_owned(),
414 ));
415 }
416
417 let &mut (symbol, ref mut defined) = self.data_objects[data_id].as_mut().unwrap();
418 if *defined {
419 return Err(ModuleError::DuplicateDefinition(
420 decl.linkage_name(data_id).into_owned(),
421 ));
422 }
423 *defined = true;
424
425 let &DataDescription {
426 ref init,
427 function_decls: _,
428 data_decls: _,
429 function_relocs: _,
430 data_relocs: _,
431 ref custom_segment_section,
432 align,
433 } = data;
434
435 let pointer_reloc = match self.isa.triple().pointer_width().unwrap() {
436 PointerWidth::U16 => unimplemented!("16bit pointers"),
437 PointerWidth::U32 => Reloc::Abs4,
438 PointerWidth::U64 => Reloc::Abs8,
439 };
440 let relocs = data
441 .all_relocs(pointer_reloc)
442 .map(|record| self.process_reloc(&record))
443 .collect::<Vec<_>>();
444
445 let section = if custom_segment_section.is_none() {
446 let section_kind = if let Init::Zeros { .. } = *init {
447 if decl.tls {
448 StandardSection::UninitializedTls
449 } else {
450 StandardSection::UninitializedData
451 }
452 } else if decl.tls {
453 StandardSection::Tls
454 } else if decl.writable {
455 StandardSection::Data
456 } else if relocs.is_empty() {
457 StandardSection::ReadOnlyData
458 } else {
459 StandardSection::ReadOnlyDataWithRel
460 };
461 if self.per_data_object_section {
462 self.object.add_subsection(section_kind, b"subsection")
467 } else {
468 self.object.section_id(section_kind)
469 }
470 } else {
471 if decl.tls {
472 return Err(cranelift_module::ModuleError::Backend(anyhow::anyhow!(
473 "Custom section not supported for TLS"
474 )));
475 }
476 let (seg, sec) = &custom_segment_section.as_ref().unwrap();
477 self.object.add_section(
478 seg.clone().into_bytes(),
479 sec.clone().into_bytes(),
480 if decl.writable {
481 SectionKind::Data
482 } else if relocs.is_empty() {
483 SectionKind::ReadOnlyData
484 } else {
485 SectionKind::ReadOnlyDataWithRel
486 },
487 )
488 };
489
490 let align = std::cmp::max(align.unwrap_or(1), self.isa.symbol_alignment());
491 let offset = match *init {
492 Init::Uninitialized => {
493 panic!("data is not initialized yet");
494 }
495 Init::Zeros { size } => self
496 .object
497 .add_symbol_bss(symbol, section, size as u64, align),
498 Init::Bytes { ref contents } => self
499 .object
500 .add_symbol_data(symbol, section, &contents, align),
501 };
502 if !relocs.is_empty() {
503 self.relocs.push(SymbolRelocs {
504 section,
505 offset,
506 relocs,
507 });
508 }
509 Ok(())
510 }
511}
512
513impl ObjectModule {
514 pub fn finish(mut self) -> ObjectProduct {
516 let symbol_relocs = mem::take(&mut self.relocs);
517 for symbol in symbol_relocs {
518 for &ObjectRelocRecord {
519 offset,
520 ref name,
521 flags,
522 addend,
523 } in &symbol.relocs
524 {
525 let target_symbol = self.get_symbol(name);
526 self.object
527 .add_relocation(
528 symbol.section,
529 Relocation {
530 offset: symbol.offset + u64::from(offset),
531 flags,
532 symbol: target_symbol,
533 addend,
534 },
535 )
536 .unwrap();
537 }
538 }
539
540 if self.object.format() == object::BinaryFormat::Elf {
542 self.object.add_section(
543 vec![],
544 ".note.GNU-stack".as_bytes().to_vec(),
545 SectionKind::Linker,
546 );
547 }
548
549 ObjectProduct {
550 object: self.object,
551 functions: self.functions,
552 data_objects: self.data_objects,
553 }
554 }
555
556 fn get_symbol(&mut self, name: &ModuleRelocTarget) -> SymbolId {
559 match *name {
560 ModuleRelocTarget::User { .. } => {
561 if ModuleDeclarations::is_function(name) {
562 let id = FuncId::from_name(name);
563 self.functions[id].unwrap().0
564 } else {
565 let id = DataId::from_name(name);
566 self.data_objects[id].unwrap().0
567 }
568 }
569 ModuleRelocTarget::LibCall(ref libcall) => {
570 let name = (self.libcall_names)(*libcall);
571 if let Some(symbol) = self.object.symbol_id(name.as_bytes()) {
572 symbol
573 } else if let Some(symbol) = self.libcalls.get(libcall) {
574 *symbol
575 } else {
576 let symbol = self.object.add_symbol(Symbol {
577 name: name.as_bytes().to_vec(),
578 value: 0,
579 size: 0,
580 kind: SymbolKind::Text,
581 scope: SymbolScope::Unknown,
582 weak: false,
583 section: SymbolSection::Undefined,
584 flags: SymbolFlags::None,
585 });
586 self.libcalls.insert(*libcall, symbol);
587 symbol
588 }
589 }
590 ModuleRelocTarget::KnownSymbol(ref known_symbol) => {
593 if let Some(symbol) = self.known_symbols.get(known_symbol) {
594 *symbol
595 } else {
596 let symbol = self.object.add_symbol(match known_symbol {
597 ir::KnownSymbol::ElfGlobalOffsetTable => Symbol {
598 name: b"_GLOBAL_OFFSET_TABLE_".to_vec(),
599 value: 0,
600 size: 0,
601 kind: SymbolKind::Data,
602 scope: SymbolScope::Unknown,
603 weak: false,
604 section: SymbolSection::Undefined,
605 flags: SymbolFlags::None,
606 },
607 ir::KnownSymbol::CoffTlsIndex => Symbol {
608 name: b"_tls_index".to_vec(),
609 value: 0,
610 size: 32,
611 kind: SymbolKind::Tls,
612 scope: SymbolScope::Unknown,
613 weak: false,
614 section: SymbolSection::Undefined,
615 flags: SymbolFlags::None,
616 },
617 });
618 self.known_symbols.insert(*known_symbol, symbol);
619 symbol
620 }
621 }
622
623 ModuleRelocTarget::FunctionOffset(func_id, offset) => {
624 match self.known_labels.entry((func_id, offset)) {
625 Entry::Occupied(o) => *o.get(),
626 Entry::Vacant(v) => {
627 let func_symbol_id = self.functions[func_id].unwrap().0;
628 let func_symbol = self.object.symbol(func_symbol_id);
629
630 let name = format!(".L{}_{}", func_id.as_u32(), offset);
631 let symbol_id = self.object.add_symbol(Symbol {
632 name: name.as_bytes().to_vec(),
633 value: func_symbol.value + offset as u64,
634 size: 0,
635 kind: SymbolKind::Label,
636 scope: SymbolScope::Compilation,
637 weak: false,
638 section: SymbolSection::Section(func_symbol.section.id().unwrap()),
639 flags: SymbolFlags::None,
640 });
641
642 v.insert(symbol_id);
643 symbol_id
644 }
645 }
646 }
647 }
648 }
649
650 fn process_reloc(&self, record: &ModuleReloc) -> ObjectRelocRecord {
651 let flags = match record.kind {
652 Reloc::Abs4 => RelocationFlags::Generic {
653 kind: RelocationKind::Absolute,
654 encoding: RelocationEncoding::Generic,
655 size: 32,
656 },
657 Reloc::Abs8 => RelocationFlags::Generic {
658 kind: RelocationKind::Absolute,
659 encoding: RelocationEncoding::Generic,
660 size: 64,
661 },
662 Reloc::X86PCRel4 => RelocationFlags::Generic {
663 kind: RelocationKind::Relative,
664 encoding: RelocationEncoding::Generic,
665 size: 32,
666 },
667 Reloc::X86CallPCRel4 => RelocationFlags::Generic {
668 kind: RelocationKind::Relative,
669 encoding: RelocationEncoding::X86Branch,
670 size: 32,
671 },
672 Reloc::X86CallPLTRel4 => RelocationFlags::Generic {
675 kind: RelocationKind::PltRelative,
676 encoding: RelocationEncoding::X86Branch,
677 size: 32,
678 },
679 Reloc::X86SecRel => RelocationFlags::Generic {
680 kind: RelocationKind::SectionOffset,
681 encoding: RelocationEncoding::Generic,
682 size: 32,
683 },
684 Reloc::X86GOTPCRel4 => RelocationFlags::Generic {
685 kind: RelocationKind::GotRelative,
686 encoding: RelocationEncoding::Generic,
687 size: 32,
688 },
689 Reloc::Arm64Call => RelocationFlags::Generic {
690 kind: RelocationKind::Relative,
691 encoding: RelocationEncoding::AArch64Call,
692 size: 26,
693 },
694 Reloc::ElfX86_64TlsGd => {
695 assert_eq!(
696 self.object.format(),
697 object::BinaryFormat::Elf,
698 "ElfX86_64TlsGd is not supported for this file format"
699 );
700 RelocationFlags::Elf {
701 r_type: object::elf::R_X86_64_TLSGD,
702 }
703 }
704 Reloc::MachOX86_64Tlv => {
705 assert_eq!(
706 self.object.format(),
707 object::BinaryFormat::MachO,
708 "MachOX86_64Tlv is not supported for this file format"
709 );
710 RelocationFlags::MachO {
711 r_type: object::macho::X86_64_RELOC_TLV,
712 r_pcrel: true,
713 r_length: 2,
714 }
715 }
716 Reloc::MachOAarch64TlsAdrPage21 => {
717 assert_eq!(
718 self.object.format(),
719 object::BinaryFormat::MachO,
720 "MachOAarch64TlsAdrPage21 is not supported for this file format"
721 );
722 RelocationFlags::MachO {
723 r_type: object::macho::ARM64_RELOC_TLVP_LOAD_PAGE21,
724 r_pcrel: true,
725 r_length: 2,
726 }
727 }
728 Reloc::MachOAarch64TlsAdrPageOff12 => {
729 assert_eq!(
730 self.object.format(),
731 object::BinaryFormat::MachO,
732 "MachOAarch64TlsAdrPageOff12 is not supported for this file format"
733 );
734 RelocationFlags::MachO {
735 r_type: object::macho::ARM64_RELOC_TLVP_LOAD_PAGEOFF12,
736 r_pcrel: false,
737 r_length: 2,
738 }
739 }
740 Reloc::Aarch64TlsDescAdrPage21 => {
741 assert_eq!(
742 self.object.format(),
743 object::BinaryFormat::Elf,
744 "Aarch64TlsDescAdrPage21 is not supported for this file format"
745 );
746 RelocationFlags::Elf {
747 r_type: object::elf::R_AARCH64_TLSDESC_ADR_PAGE21,
748 }
749 }
750 Reloc::Aarch64TlsDescLd64Lo12 => {
751 assert_eq!(
752 self.object.format(),
753 object::BinaryFormat::Elf,
754 "Aarch64TlsDescLd64Lo12 is not supported for this file format"
755 );
756 RelocationFlags::Elf {
757 r_type: object::elf::R_AARCH64_TLSDESC_LD64_LO12,
758 }
759 }
760 Reloc::Aarch64TlsDescAddLo12 => {
761 assert_eq!(
762 self.object.format(),
763 object::BinaryFormat::Elf,
764 "Aarch64TlsDescAddLo12 is not supported for this file format"
765 );
766 RelocationFlags::Elf {
767 r_type: object::elf::R_AARCH64_TLSDESC_ADD_LO12,
768 }
769 }
770 Reloc::Aarch64TlsDescCall => {
771 assert_eq!(
772 self.object.format(),
773 object::BinaryFormat::Elf,
774 "Aarch64TlsDescCall is not supported for this file format"
775 );
776 RelocationFlags::Elf {
777 r_type: object::elf::R_AARCH64_TLSDESC_CALL,
778 }
779 }
780
781 Reloc::Aarch64AdrGotPage21 => match self.object.format() {
782 object::BinaryFormat::Elf => RelocationFlags::Elf {
783 r_type: object::elf::R_AARCH64_ADR_GOT_PAGE,
784 },
785 object::BinaryFormat::MachO => RelocationFlags::MachO {
786 r_type: object::macho::ARM64_RELOC_GOT_LOAD_PAGE21,
787 r_pcrel: true,
788 r_length: 2,
789 },
790 _ => unimplemented!("Aarch64AdrGotPage21 is not supported for this file format"),
791 },
792 Reloc::Aarch64Ld64GotLo12Nc => match self.object.format() {
793 object::BinaryFormat::Elf => RelocationFlags::Elf {
794 r_type: object::elf::R_AARCH64_LD64_GOT_LO12_NC,
795 },
796 object::BinaryFormat::MachO => RelocationFlags::MachO {
797 r_type: object::macho::ARM64_RELOC_GOT_LOAD_PAGEOFF12,
798 r_pcrel: false,
799 r_length: 2,
800 },
801 _ => unimplemented!("Aarch64Ld64GotLo12Nc is not supported for this file format"),
802 },
803 Reloc::S390xPCRel32Dbl => RelocationFlags::Generic {
804 kind: RelocationKind::Relative,
805 encoding: RelocationEncoding::S390xDbl,
806 size: 32,
807 },
808 Reloc::S390xPLTRel32Dbl => RelocationFlags::Generic {
809 kind: RelocationKind::PltRelative,
810 encoding: RelocationEncoding::S390xDbl,
811 size: 32,
812 },
813 Reloc::S390xTlsGd64 => {
814 assert_eq!(
815 self.object.format(),
816 object::BinaryFormat::Elf,
817 "S390xTlsGd64 is not supported for this file format"
818 );
819 RelocationFlags::Elf {
820 r_type: object::elf::R_390_TLS_GD64,
821 }
822 }
823 Reloc::S390xTlsGdCall => {
824 assert_eq!(
825 self.object.format(),
826 object::BinaryFormat::Elf,
827 "S390xTlsGdCall is not supported for this file format"
828 );
829 RelocationFlags::Elf {
830 r_type: object::elf::R_390_TLS_GDCALL,
831 }
832 }
833 Reloc::RiscvCallPlt => {
834 assert_eq!(
835 self.object.format(),
836 object::BinaryFormat::Elf,
837 "RiscvCallPlt is not supported for this file format"
838 );
839 RelocationFlags::Elf {
840 r_type: object::elf::R_RISCV_CALL_PLT,
841 }
842 }
843 Reloc::RiscvTlsGdHi20 => {
844 assert_eq!(
845 self.object.format(),
846 object::BinaryFormat::Elf,
847 "RiscvTlsGdHi20 is not supported for this file format"
848 );
849 RelocationFlags::Elf {
850 r_type: object::elf::R_RISCV_TLS_GD_HI20,
851 }
852 }
853 Reloc::RiscvPCRelLo12I => {
854 assert_eq!(
855 self.object.format(),
856 object::BinaryFormat::Elf,
857 "RiscvPCRelLo12I is not supported for this file format"
858 );
859 RelocationFlags::Elf {
860 r_type: object::elf::R_RISCV_PCREL_LO12_I,
861 }
862 }
863 Reloc::RiscvGotHi20 => {
864 assert_eq!(
865 self.object.format(),
866 object::BinaryFormat::Elf,
867 "RiscvGotHi20 is not supported for this file format"
868 );
869 RelocationFlags::Elf {
870 r_type: object::elf::R_RISCV_GOT_HI20,
871 }
872 }
873 reloc => unimplemented!("{:?}", reloc),
875 };
876
877 ObjectRelocRecord {
878 offset: record.offset,
879 name: record.name.clone(),
880 flags,
881 addend: record.addend,
882 }
883 }
884}
885
886fn translate_linkage(linkage: Linkage) -> (SymbolScope, bool) {
887 let scope = match linkage {
888 Linkage::Import => SymbolScope::Unknown,
889 Linkage::Local => SymbolScope::Compilation,
890 Linkage::Hidden => SymbolScope::Linkage,
891 Linkage::Export | Linkage::Preemptible => SymbolScope::Dynamic,
892 };
893 let weak = linkage == Linkage::Preemptible;
895 (scope, weak)
896}
897
898pub struct ObjectProduct {
903 pub object: Object<'static>,
905 pub functions: SecondaryMap<FuncId, Option<(SymbolId, bool)>>,
907 pub data_objects: SecondaryMap<DataId, Option<(SymbolId, bool)>>,
909}
910
911impl ObjectProduct {
912 #[inline]
914 pub fn function_symbol(&self, id: FuncId) -> SymbolId {
915 self.functions[id].unwrap().0
916 }
917
918 #[inline]
920 pub fn data_symbol(&self, id: DataId) -> SymbolId {
921 self.data_objects[id].unwrap().0
922 }
923
924 #[inline]
926 pub fn emit(self) -> Result<Vec<u8>, object::write::Error> {
927 self.object.write()
928 }
929}
930
931#[derive(Clone)]
932struct SymbolRelocs {
933 section: SectionId,
934 offset: u64,
935 relocs: Vec<ObjectRelocRecord>,
936}
937
938#[derive(Clone)]
939struct ObjectRelocRecord {
940 offset: CodeOffset,
941 name: ModuleRelocTarget,
942 flags: RelocationFlags,
943 addend: Addend,
944}