xref: /openbsd/gnu/llvm/lld/MachO/SyntheticSections.h (revision dfe94b16)
1bb684c34Spatrick //===- SyntheticSections.h -------------------------------------*- C++ -*-===//
2bb684c34Spatrick //
3bb684c34Spatrick // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4bb684c34Spatrick // See https://llvm.org/LICENSE.txt for license information.
5bb684c34Spatrick // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6bb684c34Spatrick //
7bb684c34Spatrick //===----------------------------------------------------------------------===//
8bb684c34Spatrick 
9bb684c34Spatrick #ifndef LLD_MACHO_SYNTHETIC_SECTIONS_H
10bb684c34Spatrick #define LLD_MACHO_SYNTHETIC_SECTIONS_H
11bb684c34Spatrick 
12bb684c34Spatrick #include "Config.h"
13bb684c34Spatrick #include "ExportTrie.h"
14bb684c34Spatrick #include "InputSection.h"
15bb684c34Spatrick #include "OutputSection.h"
161cf9926bSpatrick #include "OutputSegment.h"
17bb684c34Spatrick #include "Target.h"
181cf9926bSpatrick #include "Writer.h"
19bb684c34Spatrick 
201cf9926bSpatrick #include "llvm/ADT/DenseMap.h"
211cf9926bSpatrick #include "llvm/ADT/Hashing.h"
22bb684c34Spatrick #include "llvm/ADT/SetVector.h"
23*dfe94b16Srobert #include "llvm/BinaryFormat/MachO.h"
241cf9926bSpatrick #include "llvm/Support/MathExtras.h"
25bb684c34Spatrick #include "llvm/Support/raw_ostream.h"
26bb684c34Spatrick 
271cf9926bSpatrick #include <unordered_map>
281cf9926bSpatrick 
291cf9926bSpatrick namespace llvm {
301cf9926bSpatrick class DWARFUnit;
311cf9926bSpatrick } // namespace llvm
321cf9926bSpatrick 
33*dfe94b16Srobert namespace lld::macho {
34bb684c34Spatrick 
351cf9926bSpatrick class Defined;
36bb684c34Spatrick class DylibSymbol;
37bb684c34Spatrick class LoadCommand;
381cf9926bSpatrick class ObjFile;
391cf9926bSpatrick class UnwindInfoSection;
40bb684c34Spatrick 
41bb684c34Spatrick class SyntheticSection : public OutputSection {
42bb684c34Spatrick public:
43bb684c34Spatrick   SyntheticSection(const char *segname, const char *name);
44bb684c34Spatrick   virtual ~SyntheticSection() = default;
45bb684c34Spatrick 
classof(const OutputSection * sec)46bb684c34Spatrick   static bool classof(const OutputSection *sec) {
47bb684c34Spatrick     return sec->kind() == SyntheticKind;
48bb684c34Spatrick   }
49bb684c34Spatrick 
501cf9926bSpatrick   StringRef segname;
511cf9926bSpatrick   // This fake InputSection makes it easier for us to write code that applies
521cf9926bSpatrick   // generically to both user inputs and synthetics.
531cf9926bSpatrick   InputSection *isec;
541cf9926bSpatrick };
551cf9926bSpatrick 
561cf9926bSpatrick // All sections in __LINKEDIT should inherit from this.
571cf9926bSpatrick class LinkEditSection : public SyntheticSection {
581cf9926bSpatrick public:
LinkEditSection(const char * segname,const char * name)591cf9926bSpatrick   LinkEditSection(const char *segname, const char *name)
601cf9926bSpatrick       : SyntheticSection(segname, name) {
611cf9926bSpatrick     align = target->wordSize;
621cf9926bSpatrick   }
631cf9926bSpatrick 
64*dfe94b16Srobert   // Implementations of this method can assume that the regular (non-__LINKEDIT)
65*dfe94b16Srobert   // sections already have their addresses assigned.
finalizeContents()661cf9926bSpatrick   virtual void finalizeContents() {}
671cf9926bSpatrick 
681cf9926bSpatrick   // Sections in __LINKEDIT are special: their offsets are recorded in the
691cf9926bSpatrick   // load commands like LC_DYLD_INFO_ONLY and LC_SYMTAB, instead of in section
701cf9926bSpatrick   // headers.
isHidden()71*dfe94b16Srobert   bool isHidden() const final { return true; }
721cf9926bSpatrick 
731cf9926bSpatrick   virtual uint64_t getRawSize() const = 0;
741cf9926bSpatrick 
751cf9926bSpatrick   // codesign (or more specifically libstuff) checks that each section in
761cf9926bSpatrick   // __LINKEDIT ends where the next one starts -- no gaps are permitted. We
771cf9926bSpatrick   // therefore align every section's start and end points to WordSize.
781cf9926bSpatrick   //
791cf9926bSpatrick   // NOTE: This assumes that the extra bytes required for alignment can be
801cf9926bSpatrick   // zero-valued bytes.
getSize()81*dfe94b16Srobert   uint64_t getSize() const final { return llvm::alignTo(getRawSize(), align); }
82bb684c34Spatrick };
83bb684c34Spatrick 
84bb684c34Spatrick // The header of the Mach-O file, which must have a file offset of zero.
851cf9926bSpatrick class MachHeaderSection final : public SyntheticSection {
86bb684c34Spatrick public:
87bb684c34Spatrick   MachHeaderSection();
isHidden()88bb684c34Spatrick   bool isHidden() const override { return true; }
89bb684c34Spatrick   uint64_t getSize() const override;
90bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
91bb684c34Spatrick 
921cf9926bSpatrick   void addLoadCommand(LoadCommand *);
931cf9926bSpatrick 
941cf9926bSpatrick protected:
95bb684c34Spatrick   std::vector<LoadCommand *> loadCommands;
96bb684c34Spatrick   uint32_t sizeOfCmds = 0;
97bb684c34Spatrick };
98bb684c34Spatrick 
99bb684c34Spatrick // A hidden section that exists solely for the purpose of creating the
100bb684c34Spatrick // __PAGEZERO segment, which is used to catch null pointer dereferences.
1011cf9926bSpatrick class PageZeroSection final : public SyntheticSection {
102bb684c34Spatrick public:
103bb684c34Spatrick   PageZeroSection();
isHidden()104bb684c34Spatrick   bool isHidden() const override { return true; }
isNeeded()105*dfe94b16Srobert   bool isNeeded() const override { return target->pageZeroSize != 0; }
getSize()1061cf9926bSpatrick   uint64_t getSize() const override { return target->pageZeroSize; }
getFileSize()107bb684c34Spatrick   uint64_t getFileSize() const override { return 0; }
writeTo(uint8_t * buf)108bb684c34Spatrick   void writeTo(uint8_t *buf) const override {}
109bb684c34Spatrick };
110bb684c34Spatrick 
1111cf9926bSpatrick // This is the base class for the GOT and TLVPointer sections, which are nearly
1121cf9926bSpatrick // functionally identical -- they will both be populated by dyld with addresses
1131cf9926bSpatrick // to non-lazily-loaded dylib symbols. The main difference is that the
1141cf9926bSpatrick // TLVPointerSection stores references to thread-local variables.
1151cf9926bSpatrick class NonLazyPointerSectionBase : public SyntheticSection {
116bb684c34Spatrick public:
1171cf9926bSpatrick   NonLazyPointerSectionBase(const char *segname, const char *name);
getEntries()118bb684c34Spatrick   const llvm::SetVector<const Symbol *> &getEntries() const { return entries; }
isNeeded()119bb684c34Spatrick   bool isNeeded() const override { return !entries.empty(); }
getSize()1201cf9926bSpatrick   uint64_t getSize() const override {
1211cf9926bSpatrick     return entries.size() * target->wordSize;
1221cf9926bSpatrick   }
123bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
1241cf9926bSpatrick   void addEntry(Symbol *sym);
getVA(uint32_t gotIndex)1251cf9926bSpatrick   uint64_t getVA(uint32_t gotIndex) const {
1261cf9926bSpatrick     return addr + gotIndex * target->wordSize;
1271cf9926bSpatrick   }
128bb684c34Spatrick 
129bb684c34Spatrick private:
130bb684c34Spatrick   llvm::SetVector<const Symbol *> entries;
131bb684c34Spatrick };
132bb684c34Spatrick 
1331cf9926bSpatrick class GotSection final : public NonLazyPointerSectionBase {
1341cf9926bSpatrick public:
1351cf9926bSpatrick   GotSection();
136bb684c34Spatrick };
137bb684c34Spatrick 
1381cf9926bSpatrick class TlvPointerSection final : public NonLazyPointerSectionBase {
139bb684c34Spatrick public:
1401cf9926bSpatrick   TlvPointerSection();
1411cf9926bSpatrick };
1421cf9926bSpatrick 
1431cf9926bSpatrick struct Location {
1441cf9926bSpatrick   const InputSection *isec;
1451cf9926bSpatrick   uint64_t offset;
1461cf9926bSpatrick 
LocationLocation1471cf9926bSpatrick   Location(const InputSection *isec, uint64_t offset)
1481cf9926bSpatrick       : isec(isec), offset(offset) {}
getVALocation1491cf9926bSpatrick   uint64_t getVA() const { return isec->getVA(offset); }
1501cf9926bSpatrick };
1511cf9926bSpatrick 
1521cf9926bSpatrick // Stores rebase opcodes, which tell dyld where absolute addresses have been
1531cf9926bSpatrick // encoded in the binary. If the binary is not loaded at its preferred address,
1541cf9926bSpatrick // dyld has to rebase these addresses by adding an offset to them.
1551cf9926bSpatrick class RebaseSection final : public LinkEditSection {
1561cf9926bSpatrick public:
1571cf9926bSpatrick   RebaseSection();
1581cf9926bSpatrick   void finalizeContents() override;
getRawSize()1591cf9926bSpatrick   uint64_t getRawSize() const override { return contents.size(); }
isNeeded()1601cf9926bSpatrick   bool isNeeded() const override { return !locations.empty(); }
161bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
162bb684c34Spatrick 
addEntry(const InputSection * isec,uint64_t offset)1631cf9926bSpatrick   void addEntry(const InputSection *isec, uint64_t offset) {
1641cf9926bSpatrick     if (config->isPic)
1651cf9926bSpatrick       locations.push_back({isec, offset});
166bb684c34Spatrick   }
167bb684c34Spatrick 
168bb684c34Spatrick private:
1691cf9926bSpatrick   std::vector<Location> locations;
1701cf9926bSpatrick   SmallVector<char, 128> contents;
1711cf9926bSpatrick };
1721cf9926bSpatrick 
1731cf9926bSpatrick struct BindingEntry {
1741cf9926bSpatrick   int64_t addend;
1751cf9926bSpatrick   Location target;
BindingEntryBindingEntry1761cf9926bSpatrick   BindingEntry(int64_t addend, Location target)
1771cf9926bSpatrick       : addend(addend), target(std::move(target)) {}
1781cf9926bSpatrick };
1791cf9926bSpatrick 
1801cf9926bSpatrick template <class Sym>
1811cf9926bSpatrick using BindingsMap = llvm::DenseMap<Sym, std::vector<BindingEntry>>;
1821cf9926bSpatrick 
1831cf9926bSpatrick // Stores bind opcodes for telling dyld which symbols to load non-lazily.
1841cf9926bSpatrick class BindingSection final : public LinkEditSection {
1851cf9926bSpatrick public:
1861cf9926bSpatrick   BindingSection();
1871cf9926bSpatrick   void finalizeContents() override;
getRawSize()1881cf9926bSpatrick   uint64_t getRawSize() const override { return contents.size(); }
isNeeded()1891cf9926bSpatrick   bool isNeeded() const override { return !bindingsMap.empty(); }
1901cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
1911cf9926bSpatrick 
192*dfe94b16Srobert   void addEntry(const Symbol *dysym, const InputSection *isec, uint64_t offset,
193*dfe94b16Srobert                 int64_t addend = 0) {
1941cf9926bSpatrick     bindingsMap[dysym].emplace_back(addend, Location(isec, offset));
1951cf9926bSpatrick   }
1961cf9926bSpatrick 
1971cf9926bSpatrick private:
198*dfe94b16Srobert   BindingsMap<const Symbol *> bindingsMap;
1991cf9926bSpatrick   SmallVector<char, 128> contents;
2001cf9926bSpatrick };
2011cf9926bSpatrick 
2021cf9926bSpatrick // Stores bind opcodes for telling dyld which weak symbols need coalescing.
2031cf9926bSpatrick // There are two types of entries in this section:
2041cf9926bSpatrick //
2051cf9926bSpatrick //   1) Non-weak definitions: This is a symbol definition that weak symbols in
2061cf9926bSpatrick //   other dylibs should coalesce to.
2071cf9926bSpatrick //
2081cf9926bSpatrick //   2) Weak bindings: These tell dyld that a given symbol reference should
2091cf9926bSpatrick //   coalesce to a non-weak definition if one is found. Note that unlike the
2101cf9926bSpatrick //   entries in the BindingSection, the bindings here only refer to these
2111cf9926bSpatrick //   symbols by name, but do not specify which dylib to load them from.
2121cf9926bSpatrick class WeakBindingSection final : public LinkEditSection {
2131cf9926bSpatrick public:
2141cf9926bSpatrick   WeakBindingSection();
2151cf9926bSpatrick   void finalizeContents() override;
getRawSize()2161cf9926bSpatrick   uint64_t getRawSize() const override { return contents.size(); }
isNeeded()2171cf9926bSpatrick   bool isNeeded() const override {
2181cf9926bSpatrick     return !bindingsMap.empty() || !definitions.empty();
2191cf9926bSpatrick   }
2201cf9926bSpatrick 
2211cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
2221cf9926bSpatrick 
2231cf9926bSpatrick   void addEntry(const Symbol *symbol, const InputSection *isec, uint64_t offset,
2241cf9926bSpatrick                 int64_t addend = 0) {
2251cf9926bSpatrick     bindingsMap[symbol].emplace_back(addend, Location(isec, offset));
2261cf9926bSpatrick   }
2271cf9926bSpatrick 
hasEntry()2281cf9926bSpatrick   bool hasEntry() const { return !bindingsMap.empty(); }
2291cf9926bSpatrick 
addNonWeakDefinition(const Defined * defined)2301cf9926bSpatrick   void addNonWeakDefinition(const Defined *defined) {
2311cf9926bSpatrick     definitions.emplace_back(defined);
2321cf9926bSpatrick   }
2331cf9926bSpatrick 
hasNonWeakDefinition()2341cf9926bSpatrick   bool hasNonWeakDefinition() const { return !definitions.empty(); }
2351cf9926bSpatrick 
2361cf9926bSpatrick private:
2371cf9926bSpatrick   BindingsMap<const Symbol *> bindingsMap;
2381cf9926bSpatrick   std::vector<const Defined *> definitions;
239bb684c34Spatrick   SmallVector<char, 128> contents;
240bb684c34Spatrick };
241bb684c34Spatrick 
242bb684c34Spatrick // The following sections implement lazy symbol binding -- very similar to the
243bb684c34Spatrick // PLT mechanism in ELF.
244bb684c34Spatrick //
2451cf9926bSpatrick // ELF's .plt section is broken up into two sections in Mach-O: StubsSection
2461cf9926bSpatrick // and StubHelperSection. Calls to functions in dylibs will end up calling into
247bb684c34Spatrick // StubsSection, which contains indirect jumps to addresses stored in the
248bb684c34Spatrick // LazyPointerSection (the counterpart to ELF's .plt.got).
249bb684c34Spatrick //
2501cf9926bSpatrick // We will first describe how non-weak symbols are handled.
2511cf9926bSpatrick //
2521cf9926bSpatrick // At program start, the LazyPointerSection contains addresses that point into
2531cf9926bSpatrick // one of the entry points in the middle of the StubHelperSection. The code in
254bb684c34Spatrick // StubHelperSection will push on the stack an offset into the
255bb684c34Spatrick // LazyBindingSection. The push is followed by a jump to the beginning of the
256bb684c34Spatrick // StubHelperSection (similar to PLT0), which then calls into dyld_stub_binder.
257bb684c34Spatrick // dyld_stub_binder is a non-lazily-bound symbol, so this call looks it up in
258bb684c34Spatrick // the GOT.
259bb684c34Spatrick //
260bb684c34Spatrick // The stub binder will look up the bind opcodes in the LazyBindingSection at
2611cf9926bSpatrick // the given offset. The bind opcodes will tell the binder to update the
2621cf9926bSpatrick // address in the LazyPointerSection to point to the symbol, so that subsequent
2631cf9926bSpatrick // calls don't have to redo the symbol resolution. The binder will then jump to
2641cf9926bSpatrick // the resolved symbol.
2651cf9926bSpatrick //
2661cf9926bSpatrick // With weak symbols, the situation is slightly different. Since there is no
2671cf9926bSpatrick // "weak lazy" lookup, function calls to weak symbols are always non-lazily
2681cf9926bSpatrick // bound. We emit both regular non-lazy bindings as well as weak bindings, in
2691cf9926bSpatrick // order that the weak bindings may overwrite the non-lazy bindings if an
2701cf9926bSpatrick // appropriate symbol is found at runtime. However, the bound addresses will
2711cf9926bSpatrick // still be written (non-lazily) into the LazyPointerSection.
272*dfe94b16Srobert //
273*dfe94b16Srobert // Symbols are always bound eagerly when chained fixups are used. In that case,
274*dfe94b16Srobert // StubsSection contains indirect jumps to addresses stored in the GotSection.
275*dfe94b16Srobert // The GOT directly contains the fixup entries, which will be replaced by the
276*dfe94b16Srobert // address of the target symbols on load. LazyPointerSection and
277*dfe94b16Srobert // StubHelperSection are not used.
278bb684c34Spatrick 
2791cf9926bSpatrick class StubsSection final : public SyntheticSection {
280bb684c34Spatrick public:
281bb684c34Spatrick   StubsSection();
282bb684c34Spatrick   uint64_t getSize() const override;
isNeeded()283bb684c34Spatrick   bool isNeeded() const override { return !entries.empty(); }
2841cf9926bSpatrick   void finalize() override;
285bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
getEntries()2861cf9926bSpatrick   const llvm::SetVector<Symbol *> &getEntries() const { return entries; }
287*dfe94b16Srobert   // Creates a stub for the symbol and the corresponding entry in the
288*dfe94b16Srobert   // LazyPointerSection.
289*dfe94b16Srobert   void addEntry(Symbol *);
getVA(uint32_t stubsIndex)2901cf9926bSpatrick   uint64_t getVA(uint32_t stubsIndex) const {
2911cf9926bSpatrick     assert(isFinal || target->usesThunks());
2921cf9926bSpatrick     // ConcatOutputSection::finalize() can seek the address of a
2931cf9926bSpatrick     // stub before its address is assigned. Before __stubs is
2941cf9926bSpatrick     // finalized, return a contrived out-of-range address.
2951cf9926bSpatrick     return isFinal ? addr + stubsIndex * target->stubSize
2961cf9926bSpatrick                    : TargetInfo::outOfRangeVA;
2971cf9926bSpatrick   }
298bb684c34Spatrick 
2991cf9926bSpatrick   bool isFinal = false; // is address assigned?
300bb684c34Spatrick 
301bb684c34Spatrick private:
3021cf9926bSpatrick   llvm::SetVector<Symbol *> entries;
303bb684c34Spatrick };
304bb684c34Spatrick 
3051cf9926bSpatrick class StubHelperSection final : public SyntheticSection {
306bb684c34Spatrick public:
307bb684c34Spatrick   StubHelperSection();
308bb684c34Spatrick   uint64_t getSize() const override;
309bb684c34Spatrick   bool isNeeded() const override;
310bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
311bb684c34Spatrick 
312*dfe94b16Srobert   void setUp();
313bb684c34Spatrick 
314bb684c34Spatrick   DylibSymbol *stubBinder = nullptr;
3151cf9926bSpatrick   Defined *dyldPrivate = nullptr;
316bb684c34Spatrick };
317bb684c34Spatrick 
318*dfe94b16Srobert // Objective-C stubs are hoisted objc_msgSend calls per selector called in the
319*dfe94b16Srobert // program. Apple Clang produces undefined symbols to each stub, such as
320*dfe94b16Srobert // '_objc_msgSend$foo', which are then synthesized by the linker. The stubs
321*dfe94b16Srobert // load the particular selector 'foo' from __objc_selrefs, setting it to the
322*dfe94b16Srobert // first argument of the objc_msgSend call, and then jumps to objc_msgSend. The
323*dfe94b16Srobert // actual stub contents are mirrored from ld64.
324*dfe94b16Srobert class ObjCStubsSection final : public SyntheticSection {
325*dfe94b16Srobert public:
326*dfe94b16Srobert   ObjCStubsSection();
327*dfe94b16Srobert   void addEntry(Symbol *sym);
328*dfe94b16Srobert   uint64_t getSize() const override;
isNeeded()329*dfe94b16Srobert   bool isNeeded() const override { return !symbols.empty(); }
finalize()330*dfe94b16Srobert   void finalize() override { isec->isFinal = true; }
331*dfe94b16Srobert   void writeTo(uint8_t *buf) const override;
332*dfe94b16Srobert   void setUp();
333*dfe94b16Srobert 
334*dfe94b16Srobert   static constexpr llvm::StringLiteral symbolPrefix = "_objc_msgSend$";
335*dfe94b16Srobert 
336*dfe94b16Srobert private:
337*dfe94b16Srobert   std::vector<Defined *> symbols;
338*dfe94b16Srobert   std::vector<uint32_t> offsets;
339*dfe94b16Srobert   int objcMsgSendGotIndex = 0;
340*dfe94b16Srobert };
341*dfe94b16Srobert 
3421cf9926bSpatrick // Note that this section may also be targeted by non-lazy bindings. In
3431cf9926bSpatrick // particular, this happens when branch relocations target weak symbols.
3441cf9926bSpatrick class LazyPointerSection final : public SyntheticSection {
345bb684c34Spatrick public:
346bb684c34Spatrick   LazyPointerSection();
347bb684c34Spatrick   uint64_t getSize() const override;
348bb684c34Spatrick   bool isNeeded() const override;
349bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
getVA(uint32_t index)350*dfe94b16Srobert   uint64_t getVA(uint32_t index) const {
351*dfe94b16Srobert     return addr + (index << target->p2WordSize);
352*dfe94b16Srobert   }
353bb684c34Spatrick };
354bb684c34Spatrick 
3551cf9926bSpatrick class LazyBindingSection final : public LinkEditSection {
356bb684c34Spatrick public:
357bb684c34Spatrick   LazyBindingSection();
3581cf9926bSpatrick   void finalizeContents() override;
getRawSize()3591cf9926bSpatrick   uint64_t getRawSize() const override { return contents.size(); }
isNeeded()3601cf9926bSpatrick   bool isNeeded() const override { return !entries.empty(); }
361bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
3621cf9926bSpatrick   // Note that every entry here will by referenced by a corresponding entry in
3631cf9926bSpatrick   // the StubHelperSection.
364*dfe94b16Srobert   void addEntry(Symbol *dysym);
getEntries()365*dfe94b16Srobert   const llvm::SetVector<Symbol *> &getEntries() const { return entries; }
366bb684c34Spatrick 
367bb684c34Spatrick private:
368*dfe94b16Srobert   uint32_t encode(const Symbol &);
3691cf9926bSpatrick 
370*dfe94b16Srobert   llvm::SetVector<Symbol *> entries;
371bb684c34Spatrick   SmallVector<char, 128> contents;
372bb684c34Spatrick   llvm::raw_svector_ostream os{contents};
373bb684c34Spatrick };
374bb684c34Spatrick 
375bb684c34Spatrick // Stores a trie that describes the set of exported symbols.
3761cf9926bSpatrick class ExportSection final : public LinkEditSection {
377bb684c34Spatrick public:
378bb684c34Spatrick   ExportSection();
3791cf9926bSpatrick   void finalizeContents() override;
getRawSize()3801cf9926bSpatrick   uint64_t getRawSize() const override { return size; }
isNeeded()381*dfe94b16Srobert   bool isNeeded() const override { return size; }
382bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
383bb684c34Spatrick 
3841cf9926bSpatrick   bool hasWeakSymbol = false;
3851cf9926bSpatrick 
386bb684c34Spatrick private:
387bb684c34Spatrick   TrieBuilder trieBuilder;
388bb684c34Spatrick   size_t size = 0;
389bb684c34Spatrick };
390bb684c34Spatrick 
391*dfe94b16Srobert // Stores 'data in code' entries that describe the locations of data regions
392*dfe94b16Srobert // inside code sections. This is used by llvm-objdump to distinguish jump tables
393*dfe94b16Srobert // and stop them from being disassembled as instructions.
3941cf9926bSpatrick class DataInCodeSection final : public LinkEditSection {
3951cf9926bSpatrick public:
3961cf9926bSpatrick   DataInCodeSection();
3971cf9926bSpatrick   void finalizeContents() override;
getRawSize()3981cf9926bSpatrick   uint64_t getRawSize() const override {
3991cf9926bSpatrick     return sizeof(llvm::MachO::data_in_code_entry) * entries.size();
4001cf9926bSpatrick   }
4011cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
4021cf9926bSpatrick 
4031cf9926bSpatrick private:
4041cf9926bSpatrick   std::vector<llvm::MachO::data_in_code_entry> entries;
4051cf9926bSpatrick };
4061cf9926bSpatrick 
4071cf9926bSpatrick // Stores ULEB128 delta encoded addresses of functions.
4081cf9926bSpatrick class FunctionStartsSection final : public LinkEditSection {
4091cf9926bSpatrick public:
4101cf9926bSpatrick   FunctionStartsSection();
4111cf9926bSpatrick   void finalizeContents() override;
getRawSize()4121cf9926bSpatrick   uint64_t getRawSize() const override { return contents.size(); }
4131cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
4141cf9926bSpatrick 
4151cf9926bSpatrick private:
4161cf9926bSpatrick   SmallVector<char, 128> contents;
4171cf9926bSpatrick };
4181cf9926bSpatrick 
419bb684c34Spatrick // Stores the strings referenced by the symbol table.
4201cf9926bSpatrick class StringTableSection final : public LinkEditSection {
421bb684c34Spatrick public:
422bb684c34Spatrick   StringTableSection();
423bb684c34Spatrick   // Returns the start offset of the added string.
424bb684c34Spatrick   uint32_t addString(StringRef);
getRawSize()4251cf9926bSpatrick   uint64_t getRawSize() const override { return size; }
426bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
427bb684c34Spatrick 
4281cf9926bSpatrick   static constexpr size_t emptyStringIndex = 1;
4291cf9926bSpatrick 
430bb684c34Spatrick private:
4311cf9926bSpatrick   // ld64 emits string tables which start with a space and a zero byte. We
4321cf9926bSpatrick   // match its behavior here since some tools depend on it.
4331cf9926bSpatrick   // Consequently, the empty string will be at index 1, not zero.
4341cf9926bSpatrick   std::vector<StringRef> strings{" "};
4351cf9926bSpatrick   size_t size = 2;
436bb684c34Spatrick };
437bb684c34Spatrick 
438bb684c34Spatrick struct SymtabEntry {
439bb684c34Spatrick   Symbol *sym;
440bb684c34Spatrick   size_t strx;
441bb684c34Spatrick };
442bb684c34Spatrick 
4431cf9926bSpatrick struct StabsEntry {
4441cf9926bSpatrick   uint8_t type = 0;
4451cf9926bSpatrick   uint32_t strx = StringTableSection::emptyStringIndex;
4461cf9926bSpatrick   uint8_t sect = 0;
4471cf9926bSpatrick   uint16_t desc = 0;
4481cf9926bSpatrick   uint64_t value = 0;
4491cf9926bSpatrick 
4501cf9926bSpatrick   StabsEntry() = default;
StabsEntryStabsEntry4511cf9926bSpatrick   explicit StabsEntry(uint8_t type) : type(type) {}
4521cf9926bSpatrick };
4531cf9926bSpatrick 
4541cf9926bSpatrick // Symbols of the same type must be laid out contiguously: we choose to emit
4551cf9926bSpatrick // all local symbols first, then external symbols, and finally undefined
4561cf9926bSpatrick // symbols. For each symbol type, the LC_DYSYMTAB load command will record the
4571cf9926bSpatrick // range (start index and total number) of those symbols in the symbol table.
4581cf9926bSpatrick class SymtabSection : public LinkEditSection {
459bb684c34Spatrick public:
4601cf9926bSpatrick   void finalizeContents() override;
4611cf9926bSpatrick   uint32_t getNumSymbols() const;
getNumLocalSymbols()4621cf9926bSpatrick   uint32_t getNumLocalSymbols() const {
4631cf9926bSpatrick     return stabs.size() + localSymbols.size();
4641cf9926bSpatrick   }
getNumExternalSymbols()4651cf9926bSpatrick   uint32_t getNumExternalSymbols() const { return externalSymbols.size(); }
getNumUndefinedSymbols()4661cf9926bSpatrick   uint32_t getNumUndefinedSymbols() const { return undefinedSymbols.size(); }
4671cf9926bSpatrick 
4681cf9926bSpatrick private:
469*dfe94b16Srobert   void emitBeginSourceStab(StringRef);
4701cf9926bSpatrick   void emitEndSourceStab();
4711cf9926bSpatrick   void emitObjectFileStab(ObjFile *);
4721cf9926bSpatrick   void emitEndFunStab(Defined *);
4731cf9926bSpatrick   void emitStabs();
4741cf9926bSpatrick 
4751cf9926bSpatrick protected:
476bb684c34Spatrick   SymtabSection(StringTableSection &);
4771cf9926bSpatrick 
4781cf9926bSpatrick   StringTableSection &stringTableSection;
4791cf9926bSpatrick   // STABS symbols are always local symbols, but we represent them with special
4801cf9926bSpatrick   // entries because they may use fields like n_sect and n_desc differently.
4811cf9926bSpatrick   std::vector<StabsEntry> stabs;
4821cf9926bSpatrick   std::vector<SymtabEntry> localSymbols;
4831cf9926bSpatrick   std::vector<SymtabEntry> externalSymbols;
4841cf9926bSpatrick   std::vector<SymtabEntry> undefinedSymbols;
4851cf9926bSpatrick };
4861cf9926bSpatrick 
4871cf9926bSpatrick template <class LP> SymtabSection *makeSymtabSection(StringTableSection &);
4881cf9926bSpatrick 
4891cf9926bSpatrick // The indirect symbol table is a list of 32-bit integers that serve as indices
4901cf9926bSpatrick // into the (actual) symbol table. The indirect symbol table is a
4911cf9926bSpatrick // concatenation of several sub-arrays of indices, each sub-array belonging to
4921cf9926bSpatrick // a separate section. The starting offset of each sub-array is stored in the
4931cf9926bSpatrick // reserved1 header field of the respective section.
4941cf9926bSpatrick //
4951cf9926bSpatrick // These sub-arrays provide symbol information for sections that store
4961cf9926bSpatrick // contiguous sequences of symbol references. These references can be pointers
4971cf9926bSpatrick // (e.g. those in the GOT and TLVP sections) or assembly sequences (e.g.
4981cf9926bSpatrick // function stubs).
4991cf9926bSpatrick class IndirectSymtabSection final : public LinkEditSection {
5001cf9926bSpatrick public:
5011cf9926bSpatrick   IndirectSymtabSection();
5021cf9926bSpatrick   void finalizeContents() override;
5031cf9926bSpatrick   uint32_t getNumSymbols() const;
getRawSize()5041cf9926bSpatrick   uint64_t getRawSize() const override {
5051cf9926bSpatrick     return getNumSymbols() * sizeof(uint32_t);
5061cf9926bSpatrick   }
5071cf9926bSpatrick   bool isNeeded() const override;
5081cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
5091cf9926bSpatrick };
5101cf9926bSpatrick 
5111cf9926bSpatrick // The code signature comes at the very end of the linked output file.
5121cf9926bSpatrick class CodeSignatureSection final : public LinkEditSection {
5131cf9926bSpatrick public:
514*dfe94b16Srobert   // NOTE: These values are duplicated in llvm-objcopy's MachO/Object.h file
515*dfe94b16Srobert   // and any changes here, should be repeated there.
5161cf9926bSpatrick   static constexpr uint8_t blockSizeShift = 12;
5171cf9926bSpatrick   static constexpr size_t blockSize = (1 << blockSizeShift); // 4 KiB
5181cf9926bSpatrick   static constexpr size_t hashSize = 256 / 8;
5191cf9926bSpatrick   static constexpr size_t blobHeadersSize = llvm::alignTo<8>(
5201cf9926bSpatrick       sizeof(llvm::MachO::CS_SuperBlob) + sizeof(llvm::MachO::CS_BlobIndex));
5211cf9926bSpatrick   static constexpr uint32_t fixedHeadersSize =
5221cf9926bSpatrick       blobHeadersSize + sizeof(llvm::MachO::CS_CodeDirectory);
5231cf9926bSpatrick 
5241cf9926bSpatrick   uint32_t fileNamePad = 0;
5251cf9926bSpatrick   uint32_t allHeadersSize = 0;
5261cf9926bSpatrick   StringRef fileName;
5271cf9926bSpatrick 
5281cf9926bSpatrick   CodeSignatureSection();
5291cf9926bSpatrick   uint64_t getRawSize() const override;
isNeeded()5301cf9926bSpatrick   bool isNeeded() const override { return true; }
5311cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
5321cf9926bSpatrick   uint32_t getBlockCount() const;
5331cf9926bSpatrick   void writeHashes(uint8_t *buf) const;
5341cf9926bSpatrick };
5351cf9926bSpatrick 
5361cf9926bSpatrick class BitcodeBundleSection final : public SyntheticSection {
5371cf9926bSpatrick public:
5381cf9926bSpatrick   BitcodeBundleSection();
getSize()5391cf9926bSpatrick   uint64_t getSize() const override { return xarSize; }
5401cf9926bSpatrick   void finalize() override;
541bb684c34Spatrick   void writeTo(uint8_t *buf) const override;
542bb684c34Spatrick 
543bb684c34Spatrick private:
5441cf9926bSpatrick   llvm::SmallString<261> xarPath;
5451cf9926bSpatrick   uint64_t xarSize;
5461cf9926bSpatrick };
5471cf9926bSpatrick 
5481cf9926bSpatrick class CStringSection : public SyntheticSection {
5491cf9926bSpatrick public:
550*dfe94b16Srobert   CStringSection(const char *name);
5511cf9926bSpatrick   void addInput(CStringInputSection *);
getSize()5521cf9926bSpatrick   uint64_t getSize() const override { return size; }
5531cf9926bSpatrick   virtual void finalizeContents();
isNeeded()5541cf9926bSpatrick   bool isNeeded() const override { return !inputs.empty(); }
5551cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
5561cf9926bSpatrick 
5571cf9926bSpatrick   std::vector<CStringInputSection *> inputs;
5581cf9926bSpatrick 
5591cf9926bSpatrick private:
5601cf9926bSpatrick   uint64_t size;
5611cf9926bSpatrick };
5621cf9926bSpatrick 
5631cf9926bSpatrick class DeduplicatedCStringSection final : public CStringSection {
5641cf9926bSpatrick public:
DeduplicatedCStringSection(const char * name)565*dfe94b16Srobert   DeduplicatedCStringSection(const char *name) : CStringSection(name){};
getSize()566*dfe94b16Srobert   uint64_t getSize() const override { return size; }
5671cf9926bSpatrick   void finalizeContents() override;
568*dfe94b16Srobert   void writeTo(uint8_t *buf) const override;
569*dfe94b16Srobert 
570*dfe94b16Srobert   struct StringOffset {
571*dfe94b16Srobert     uint8_t trailingZeros;
572*dfe94b16Srobert     uint64_t outSecOff = UINT64_MAX;
573*dfe94b16Srobert 
StringOffsetStringOffset574*dfe94b16Srobert     explicit StringOffset(uint8_t zeros) : trailingZeros(zeros) {}
575*dfe94b16Srobert   };
576*dfe94b16Srobert 
577*dfe94b16Srobert   StringOffset getStringOffset(StringRef str) const;
5781cf9926bSpatrick 
5791cf9926bSpatrick private:
580*dfe94b16Srobert   llvm::DenseMap<llvm::CachedHashStringRef, StringOffset> stringOffsetMap;
581*dfe94b16Srobert   size_t size = 0;
5821cf9926bSpatrick };
5831cf9926bSpatrick 
5841cf9926bSpatrick /*
5851cf9926bSpatrick  * This section contains deduplicated literal values. The 16-byte values are
5861cf9926bSpatrick  * laid out first, followed by the 8- and then the 4-byte ones.
5871cf9926bSpatrick  */
5881cf9926bSpatrick class WordLiteralSection final : public SyntheticSection {
5891cf9926bSpatrick public:
5901cf9926bSpatrick   using UInt128 = std::pair<uint64_t, uint64_t>;
5911cf9926bSpatrick   // I don't think the standard guarantees the size of a pair, so let's make
5921cf9926bSpatrick   // sure it's exact -- that way we can construct it via `mmap`.
593*dfe94b16Srobert   static_assert(sizeof(UInt128) == 16);
5941cf9926bSpatrick 
5951cf9926bSpatrick   WordLiteralSection();
5961cf9926bSpatrick   void addInput(WordLiteralInputSection *);
5971cf9926bSpatrick   void finalizeContents();
5981cf9926bSpatrick   void writeTo(uint8_t *buf) const override;
5991cf9926bSpatrick 
getSize()6001cf9926bSpatrick   uint64_t getSize() const override {
6011cf9926bSpatrick     return literal16Map.size() * 16 + literal8Map.size() * 8 +
6021cf9926bSpatrick            literal4Map.size() * 4;
6031cf9926bSpatrick   }
6041cf9926bSpatrick 
isNeeded()6051cf9926bSpatrick   bool isNeeded() const override {
6061cf9926bSpatrick     return !literal16Map.empty() || !literal4Map.empty() ||
6071cf9926bSpatrick            !literal8Map.empty();
6081cf9926bSpatrick   }
6091cf9926bSpatrick 
getLiteral16Offset(uintptr_t buf)610*dfe94b16Srobert   uint64_t getLiteral16Offset(uintptr_t buf) const {
6111cf9926bSpatrick     return literal16Map.at(*reinterpret_cast<const UInt128 *>(buf)) * 16;
6121cf9926bSpatrick   }
6131cf9926bSpatrick 
getLiteral8Offset(uintptr_t buf)614*dfe94b16Srobert   uint64_t getLiteral8Offset(uintptr_t buf) const {
6151cf9926bSpatrick     return literal16Map.size() * 16 +
6161cf9926bSpatrick            literal8Map.at(*reinterpret_cast<const uint64_t *>(buf)) * 8;
6171cf9926bSpatrick   }
6181cf9926bSpatrick 
getLiteral4Offset(uintptr_t buf)619*dfe94b16Srobert   uint64_t getLiteral4Offset(uintptr_t buf) const {
6201cf9926bSpatrick     return literal16Map.size() * 16 + literal8Map.size() * 8 +
6211cf9926bSpatrick            literal4Map.at(*reinterpret_cast<const uint32_t *>(buf)) * 4;
6221cf9926bSpatrick   }
6231cf9926bSpatrick 
6241cf9926bSpatrick private:
6251cf9926bSpatrick   std::vector<WordLiteralInputSection *> inputs;
6261cf9926bSpatrick 
6271cf9926bSpatrick   template <class T> struct Hasher {
operatorHasher6281cf9926bSpatrick     llvm::hash_code operator()(T v) const { return llvm::hash_value(v); }
6291cf9926bSpatrick   };
6301cf9926bSpatrick   // We're using unordered_map instead of DenseMap here because we need to
6311cf9926bSpatrick   // support all possible integer values -- there are no suitable tombstone
6321cf9926bSpatrick   // values for DenseMap.
6331cf9926bSpatrick   std::unordered_map<UInt128, uint64_t, Hasher<UInt128>> literal16Map;
6341cf9926bSpatrick   std::unordered_map<uint64_t, uint64_t> literal8Map;
6351cf9926bSpatrick   std::unordered_map<uint32_t, uint64_t> literal4Map;
636bb684c34Spatrick };
637bb684c34Spatrick 
638*dfe94b16Srobert class ObjCImageInfoSection final : public SyntheticSection {
639*dfe94b16Srobert public:
640*dfe94b16Srobert   ObjCImageInfoSection();
isNeeded()641*dfe94b16Srobert   bool isNeeded() const override { return !files.empty(); }
getSize()642*dfe94b16Srobert   uint64_t getSize() const override { return 8; }
addFile(const InputFile * file)643*dfe94b16Srobert   void addFile(const InputFile *file) {
644*dfe94b16Srobert     assert(!file->objCImageInfo.empty());
645*dfe94b16Srobert     files.push_back(file);
646*dfe94b16Srobert   }
647*dfe94b16Srobert   void finalizeContents();
648*dfe94b16Srobert   void writeTo(uint8_t *buf) const override;
649*dfe94b16Srobert 
650*dfe94b16Srobert private:
651*dfe94b16Srobert   struct ImageInfo {
652*dfe94b16Srobert     uint8_t swiftVersion = 0;
653*dfe94b16Srobert     bool hasCategoryClassProperties = false;
654*dfe94b16Srobert   } info;
655*dfe94b16Srobert   static ImageInfo parseImageInfo(const InputFile *);
656*dfe94b16Srobert   std::vector<const InputFile *> files; // files with image info
657*dfe94b16Srobert };
658*dfe94b16Srobert 
659*dfe94b16Srobert // This section stores 32-bit __TEXT segment offsets of initializer functions.
660*dfe94b16Srobert //
661*dfe94b16Srobert // The compiler stores pointers to initializers in __mod_init_func. These need
662*dfe94b16Srobert // to be fixed up at load time, which takes time and dirties memory. By
663*dfe94b16Srobert // synthesizing InitOffsetsSection from them, this data can live in the
664*dfe94b16Srobert // read-only __TEXT segment instead. This section is used by default when
665*dfe94b16Srobert // chained fixups are enabled.
666*dfe94b16Srobert //
667*dfe94b16Srobert // There is no similar counterpart to __mod_term_func, as that section is
668*dfe94b16Srobert // deprecated, and static destructors are instead handled by registering them
669*dfe94b16Srobert // via __cxa_atexit from an autogenerated initializer function (see D121736).
670*dfe94b16Srobert class InitOffsetsSection final : public SyntheticSection {
671*dfe94b16Srobert public:
672*dfe94b16Srobert   InitOffsetsSection();
isNeeded()673*dfe94b16Srobert   bool isNeeded() const override { return !sections.empty(); }
674*dfe94b16Srobert   uint64_t getSize() const override;
675*dfe94b16Srobert   void writeTo(uint8_t *buf) const override;
676*dfe94b16Srobert   void setUp();
677*dfe94b16Srobert 
addInput(ConcatInputSection * isec)678*dfe94b16Srobert   void addInput(ConcatInputSection *isec) { sections.push_back(isec); }
inputs()679*dfe94b16Srobert   const std::vector<ConcatInputSection *> &inputs() const { return sections; }
680*dfe94b16Srobert 
681*dfe94b16Srobert private:
682*dfe94b16Srobert   std::vector<ConcatInputSection *> sections;
683*dfe94b16Srobert };
684*dfe94b16Srobert 
685*dfe94b16Srobert // Chained fixups are a replacement for classic dyld opcodes. In this format,
686*dfe94b16Srobert // most of the metadata necessary for binding symbols and rebasing addresses is
687*dfe94b16Srobert // stored directly in the memory location that will have the fixup applied.
688*dfe94b16Srobert //
689*dfe94b16Srobert // The fixups form singly linked lists; each one covering a single page in
690*dfe94b16Srobert // memory. The __LINKEDIT,__chainfixups section stores the page offset of the
691*dfe94b16Srobert // first fixup of each page; the rest can be found by walking the chain using
692*dfe94b16Srobert // the offset that is embedded in each entry.
693*dfe94b16Srobert //
694*dfe94b16Srobert // This setup allows pages to be relocated lazily at page-in time and without
695*dfe94b16Srobert // being dirtied. The kernel can discard and load them again as needed. This
696*dfe94b16Srobert // technique, called page-in linking, was introduced in macOS 13.
697*dfe94b16Srobert //
698*dfe94b16Srobert // The benefits of this format are:
699*dfe94b16Srobert //  - smaller __LINKEDIT segment, as most of the fixup information is stored in
700*dfe94b16Srobert //    the data segment
701*dfe94b16Srobert //  - faster startup, since not all relocations need to be done upfront
702*dfe94b16Srobert //  - slightly lower memory usage, as fewer pages are dirtied
703*dfe94b16Srobert //
704*dfe94b16Srobert // Userspace x86_64 and arm64 binaries have two types of fixup entries:
705*dfe94b16Srobert //   - Rebase entries contain an absolute address, to which the object's load
706*dfe94b16Srobert //     address will be added to get the final value. This is used for loading
707*dfe94b16Srobert //     the address of a symbol defined in the same binary.
708*dfe94b16Srobert //   - Binding entries are mostly used for symbols imported from other dylibs,
709*dfe94b16Srobert //     but for weakly bound and interposable symbols as well. They are looked up
710*dfe94b16Srobert //     by a (symbol name, library) pair stored in __chainfixups. This import
711*dfe94b16Srobert //     entry also encodes whether the import is weak (i.e. if the symbol is
712*dfe94b16Srobert //     missing, it should be set to null instead of producing a load error).
713*dfe94b16Srobert //     The fixup encodes an ordinal associated with the import, and an optional
714*dfe94b16Srobert //     addend.
715*dfe94b16Srobert //
716*dfe94b16Srobert // The entries are tightly packed 64-bit bitfields. One of the bits specifies
717*dfe94b16Srobert // which kind of fixup to interpret them as.
718*dfe94b16Srobert //
719*dfe94b16Srobert // LLD generates the fixup data in 5 stages:
720*dfe94b16Srobert //   1. While scanning relocations, we make a note of each location that needs
721*dfe94b16Srobert //      a fixup by calling addRebase() or addBinding(). During this, we assign
722*dfe94b16Srobert //      a unique ordinal for each (symbol name, library, addend) import tuple.
723*dfe94b16Srobert //   2. After addresses have been assigned to all sections, and thus the memory
724*dfe94b16Srobert //      layout of the linked image is final; finalizeContents() is called. Here,
725*dfe94b16Srobert //      the page offsets of the chain start entries are calculated.
726*dfe94b16Srobert //   3. ChainedFixupsSection::writeTo() writes the page start offsets and the
727*dfe94b16Srobert //      imports table to the output file.
728*dfe94b16Srobert //   4. Each section's fixup entries are encoded and written to disk in
729*dfe94b16Srobert //      ConcatInputSection::writeTo(), but without writing the offsets that form
730*dfe94b16Srobert //      the chain.
731*dfe94b16Srobert //   5. Finally, each page's (which might correspond to multiple sections)
732*dfe94b16Srobert //      fixups are linked together in Writer::buildFixupChains().
733*dfe94b16Srobert class ChainedFixupsSection final : public LinkEditSection {
734*dfe94b16Srobert public:
735*dfe94b16Srobert   ChainedFixupsSection();
736*dfe94b16Srobert   void finalizeContents() override;
getRawSize()737*dfe94b16Srobert   uint64_t getRawSize() const override { return size; }
738*dfe94b16Srobert   bool isNeeded() const override;
739*dfe94b16Srobert   void writeTo(uint8_t *buf) const override;
740*dfe94b16Srobert 
addRebase(const InputSection * isec,uint64_t offset)741*dfe94b16Srobert   void addRebase(const InputSection *isec, uint64_t offset) {
742*dfe94b16Srobert     locations.emplace_back(isec, offset);
743*dfe94b16Srobert   }
744*dfe94b16Srobert   void addBinding(const Symbol *dysym, const InputSection *isec,
745*dfe94b16Srobert                   uint64_t offset, int64_t addend = 0);
746*dfe94b16Srobert 
setHasNonWeakDefinition()747*dfe94b16Srobert   void setHasNonWeakDefinition() { hasNonWeakDef = true; }
748*dfe94b16Srobert 
749*dfe94b16Srobert   // Returns an (ordinal, inline addend) tuple used by dyld_chained_ptr_64_bind.
750*dfe94b16Srobert   std::pair<uint32_t, uint8_t> getBinding(const Symbol *sym,
751*dfe94b16Srobert                                           int64_t addend) const;
752*dfe94b16Srobert 
getLocations()753*dfe94b16Srobert   const std::vector<Location> &getLocations() const { return locations; }
754*dfe94b16Srobert 
hasWeakBinding()755*dfe94b16Srobert   bool hasWeakBinding() const { return hasWeakBind; }
hasNonWeakDefinition()756*dfe94b16Srobert   bool hasNonWeakDefinition() const { return hasNonWeakDef; }
757*dfe94b16Srobert 
758*dfe94b16Srobert private:
759*dfe94b16Srobert   // Location::offset initially stores the offset within an InputSection, but
760*dfe94b16Srobert   // contains output segment offsets after finalizeContents().
761*dfe94b16Srobert   std::vector<Location> locations;
762*dfe94b16Srobert   // (target symbol, addend) => import ordinal
763*dfe94b16Srobert   llvm::MapVector<std::pair<const Symbol *, int64_t>, uint32_t> bindings;
764*dfe94b16Srobert 
765*dfe94b16Srobert   struct SegmentInfo {
SegmentInfoSegmentInfo766*dfe94b16Srobert     SegmentInfo(const OutputSegment *oseg) : oseg(oseg) {}
767*dfe94b16Srobert 
768*dfe94b16Srobert     const OutputSegment *oseg;
769*dfe94b16Srobert     // (page index, fixup starts offset)
770*dfe94b16Srobert     llvm::SmallVector<std::pair<uint16_t, uint16_t>> pageStarts;
771*dfe94b16Srobert 
772*dfe94b16Srobert     size_t getSize() const;
773*dfe94b16Srobert     size_t writeTo(uint8_t *buf) const;
774*dfe94b16Srobert   };
775*dfe94b16Srobert   llvm::SmallVector<SegmentInfo, 4> fixupSegments;
776*dfe94b16Srobert 
777*dfe94b16Srobert   size_t symtabSize = 0;
778*dfe94b16Srobert   size_t size = 0;
779*dfe94b16Srobert 
780*dfe94b16Srobert   bool needsAddend = false;
781*dfe94b16Srobert   bool needsLargeAddend = false;
782*dfe94b16Srobert   bool hasWeakBind = false;
783*dfe94b16Srobert   bool hasNonWeakDef = false;
784*dfe94b16Srobert   llvm::MachO::ChainedImportFormat importFormat;
785*dfe94b16Srobert };
786*dfe94b16Srobert 
787*dfe94b16Srobert void writeChainedRebase(uint8_t *buf, uint64_t targetVA);
788*dfe94b16Srobert void writeChainedFixup(uint8_t *buf, const Symbol *sym, int64_t addend);
789*dfe94b16Srobert 
790bb684c34Spatrick struct InStruct {
791*dfe94b16Srobert   const uint8_t *bufferStart = nullptr;
7921cf9926bSpatrick   MachHeaderSection *header = nullptr;
7931cf9926bSpatrick   CStringSection *cStringSection = nullptr;
794*dfe94b16Srobert   DeduplicatedCStringSection *objcMethnameSection = nullptr;
7951cf9926bSpatrick   WordLiteralSection *wordLiteralSection = nullptr;
7961cf9926bSpatrick   RebaseSection *rebase = nullptr;
797bb684c34Spatrick   BindingSection *binding = nullptr;
7981cf9926bSpatrick   WeakBindingSection *weakBinding = nullptr;
7991cf9926bSpatrick   LazyBindingSection *lazyBinding = nullptr;
8001cf9926bSpatrick   ExportSection *exports = nullptr;
801bb684c34Spatrick   GotSection *got = nullptr;
8021cf9926bSpatrick   TlvPointerSection *tlvPointers = nullptr;
803bb684c34Spatrick   LazyPointerSection *lazyPointers = nullptr;
804bb684c34Spatrick   StubsSection *stubs = nullptr;
805bb684c34Spatrick   StubHelperSection *stubHelper = nullptr;
806*dfe94b16Srobert   ObjCStubsSection *objcStubs = nullptr;
807*dfe94b16Srobert   ConcatInputSection *objcSelrefs = nullptr;
8081cf9926bSpatrick   UnwindInfoSection *unwindInfo = nullptr;
809*dfe94b16Srobert   ObjCImageInfoSection *objCImageInfo = nullptr;
8101cf9926bSpatrick   ConcatInputSection *imageLoaderCache = nullptr;
811*dfe94b16Srobert   InitOffsetsSection *initOffsets = nullptr;
812*dfe94b16Srobert   ChainedFixupsSection *chainedFixups = nullptr;
813bb684c34Spatrick };
814bb684c34Spatrick 
815bb684c34Spatrick extern InStruct in;
816bb684c34Spatrick extern std::vector<SyntheticSection *> syntheticSections;
817bb684c34Spatrick 
8181cf9926bSpatrick void createSyntheticSymbols();
8191cf9926bSpatrick 
820*dfe94b16Srobert } // namespace lld::macho
821bb684c34Spatrick 
822bb684c34Spatrick #endif
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