1b60736ecSDimitry Andric //===- ELFObjHandler.cpp --------------------------------------------------===//
2b60736ecSDimitry Andric //
3b60736ecSDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4b60736ecSDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
5b60736ecSDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6b60736ecSDimitry Andric //
7b60736ecSDimitry Andric //===-----------------------------------------------------------------------===/
8b60736ecSDimitry Andric
9b60736ecSDimitry Andric #include "llvm/InterfaceStub/ELFObjHandler.h"
10344a3780SDimitry Andric #include "llvm/InterfaceStub/IFSStub.h"
11b60736ecSDimitry Andric #include "llvm/MC/StringTableBuilder.h"
12b60736ecSDimitry Andric #include "llvm/Object/Binary.h"
13b60736ecSDimitry Andric #include "llvm/Object/ELFObjectFile.h"
14b60736ecSDimitry Andric #include "llvm/Object/ELFTypes.h"
15b60736ecSDimitry Andric #include "llvm/Support/Errc.h"
16b60736ecSDimitry Andric #include "llvm/Support/Error.h"
17b60736ecSDimitry Andric #include "llvm/Support/FileOutputBuffer.h"
18b60736ecSDimitry Andric #include "llvm/Support/MathExtras.h"
19b60736ecSDimitry Andric #include "llvm/Support/MemoryBuffer.h"
20e3b55780SDimitry Andric #include <optional>
21b60736ecSDimitry Andric
22b60736ecSDimitry Andric using llvm::object::ELFObjectFile;
23b60736ecSDimitry Andric
24b60736ecSDimitry Andric using namespace llvm;
25b60736ecSDimitry Andric using namespace llvm::object;
26b60736ecSDimitry Andric using namespace llvm::ELF;
27b60736ecSDimitry Andric
28b60736ecSDimitry Andric namespace llvm {
29344a3780SDimitry Andric namespace ifs {
30b60736ecSDimitry Andric
31b60736ecSDimitry Andric // Simple struct to hold relevant .dynamic entries.
32b60736ecSDimitry Andric struct DynamicEntries {
33b60736ecSDimitry Andric uint64_t StrTabAddr = 0;
34b60736ecSDimitry Andric uint64_t StrSize = 0;
35e3b55780SDimitry Andric std::optional<uint64_t> SONameOffset;
36b60736ecSDimitry Andric std::vector<uint64_t> NeededLibNames;
37b60736ecSDimitry Andric // Symbol table:
38b60736ecSDimitry Andric uint64_t DynSymAddr = 0;
39b60736ecSDimitry Andric // Hash tables:
40e3b55780SDimitry Andric std::optional<uint64_t> ElfHash;
41e3b55780SDimitry Andric std::optional<uint64_t> GnuHash;
42b60736ecSDimitry Andric };
43b60736ecSDimitry Andric
44b60736ecSDimitry Andric /// This initializes an ELF file header with information specific to a binary
45b60736ecSDimitry Andric /// dynamic shared object.
46b60736ecSDimitry Andric /// Offsets, indexes, links, etc. for section and program headers are just
47b60736ecSDimitry Andric /// zero-initialized as they will be updated elsewhere.
48b60736ecSDimitry Andric ///
49b60736ecSDimitry Andric /// @param ElfHeader Target ELFT::Ehdr to populate.
50b60736ecSDimitry Andric /// @param Machine Target architecture (e_machine from ELF specifications).
51b60736ecSDimitry Andric template <class ELFT>
initELFHeader(typename ELFT::Ehdr & ElfHeader,uint16_t Machine)52b60736ecSDimitry Andric static void initELFHeader(typename ELFT::Ehdr &ElfHeader, uint16_t Machine) {
53b60736ecSDimitry Andric memset(&ElfHeader, 0, sizeof(ElfHeader));
54b60736ecSDimitry Andric // ELF identification.
55b60736ecSDimitry Andric ElfHeader.e_ident[EI_MAG0] = ElfMagic[EI_MAG0];
56b60736ecSDimitry Andric ElfHeader.e_ident[EI_MAG1] = ElfMagic[EI_MAG1];
57b60736ecSDimitry Andric ElfHeader.e_ident[EI_MAG2] = ElfMagic[EI_MAG2];
58b60736ecSDimitry Andric ElfHeader.e_ident[EI_MAG3] = ElfMagic[EI_MAG3];
59b60736ecSDimitry Andric ElfHeader.e_ident[EI_CLASS] = ELFT::Is64Bits ? ELFCLASS64 : ELFCLASS32;
60ac9a064cSDimitry Andric bool IsLittleEndian = ELFT::Endianness == llvm::endianness::little;
61b60736ecSDimitry Andric ElfHeader.e_ident[EI_DATA] = IsLittleEndian ? ELFDATA2LSB : ELFDATA2MSB;
62b60736ecSDimitry Andric ElfHeader.e_ident[EI_VERSION] = EV_CURRENT;
63b60736ecSDimitry Andric ElfHeader.e_ident[EI_OSABI] = ELFOSABI_NONE;
64b60736ecSDimitry Andric
65b60736ecSDimitry Andric // Remainder of ELF header.
66b60736ecSDimitry Andric ElfHeader.e_type = ET_DYN;
67b60736ecSDimitry Andric ElfHeader.e_machine = Machine;
68b60736ecSDimitry Andric ElfHeader.e_version = EV_CURRENT;
69b60736ecSDimitry Andric ElfHeader.e_ehsize = sizeof(typename ELFT::Ehdr);
70b60736ecSDimitry Andric ElfHeader.e_phentsize = sizeof(typename ELFT::Phdr);
71b60736ecSDimitry Andric ElfHeader.e_shentsize = sizeof(typename ELFT::Shdr);
72b60736ecSDimitry Andric }
73b60736ecSDimitry Andric
74b60736ecSDimitry Andric namespace {
75b60736ecSDimitry Andric template <class ELFT> struct OutputSection {
76b60736ecSDimitry Andric using Elf_Shdr = typename ELFT::Shdr;
77b60736ecSDimitry Andric std::string Name;
78b60736ecSDimitry Andric Elf_Shdr Shdr;
79b60736ecSDimitry Andric uint64_t Addr;
80b60736ecSDimitry Andric uint64_t Offset;
81b60736ecSDimitry Andric uint64_t Size;
82b60736ecSDimitry Andric uint64_t Align;
83b60736ecSDimitry Andric uint32_t Index;
84b60736ecSDimitry Andric bool NoBits = true;
85b60736ecSDimitry Andric };
86b60736ecSDimitry Andric
87b60736ecSDimitry Andric template <class T, class ELFT>
88b60736ecSDimitry Andric struct ContentSection : public OutputSection<ELFT> {
89b60736ecSDimitry Andric T Content;
ContentSectionllvm::ifs::__anonfdf234130111::ContentSection90b60736ecSDimitry Andric ContentSection() { this->NoBits = false; }
91b60736ecSDimitry Andric };
92b60736ecSDimitry Andric
93b60736ecSDimitry Andric // This class just wraps StringTableBuilder for the purpose of adding a
94b60736ecSDimitry Andric // default constructor.
95b60736ecSDimitry Andric class ELFStringTableBuilder : public StringTableBuilder {
96b60736ecSDimitry Andric public:
ELFStringTableBuilder()97b60736ecSDimitry Andric ELFStringTableBuilder() : StringTableBuilder(StringTableBuilder::ELF) {}
98b60736ecSDimitry Andric };
99b60736ecSDimitry Andric
100b60736ecSDimitry Andric template <class ELFT> class ELFSymbolTableBuilder {
101b60736ecSDimitry Andric public:
102b60736ecSDimitry Andric using Elf_Sym = typename ELFT::Sym;
103b60736ecSDimitry Andric
ELFSymbolTableBuilder()104b60736ecSDimitry Andric ELFSymbolTableBuilder() { Symbols.push_back({}); }
105b60736ecSDimitry Andric
add(size_t StNameOffset,uint64_t StSize,uint8_t StBind,uint8_t StType,uint8_t StOther,uint16_t StShndx)106b60736ecSDimitry Andric void add(size_t StNameOffset, uint64_t StSize, uint8_t StBind, uint8_t StType,
107b60736ecSDimitry Andric uint8_t StOther, uint16_t StShndx) {
108b60736ecSDimitry Andric Elf_Sym S{};
109b60736ecSDimitry Andric S.st_name = StNameOffset;
110b60736ecSDimitry Andric S.st_size = StSize;
111b60736ecSDimitry Andric S.st_info = (StBind << 4) | (StType & 0xf);
112b60736ecSDimitry Andric S.st_other = StOther;
113b60736ecSDimitry Andric S.st_shndx = StShndx;
114b60736ecSDimitry Andric Symbols.push_back(S);
115b60736ecSDimitry Andric }
116b60736ecSDimitry Andric
getSize() const117b60736ecSDimitry Andric size_t getSize() const { return Symbols.size() * sizeof(Elf_Sym); }
118b60736ecSDimitry Andric
write(uint8_t * Buf) const119b60736ecSDimitry Andric void write(uint8_t *Buf) const {
120b60736ecSDimitry Andric memcpy(Buf, Symbols.data(), sizeof(Elf_Sym) * Symbols.size());
121b60736ecSDimitry Andric }
122b60736ecSDimitry Andric
123b60736ecSDimitry Andric private:
124b60736ecSDimitry Andric llvm::SmallVector<Elf_Sym, 8> Symbols;
125b60736ecSDimitry Andric };
126b60736ecSDimitry Andric
127b60736ecSDimitry Andric template <class ELFT> class ELFDynamicTableBuilder {
128b60736ecSDimitry Andric public:
129b60736ecSDimitry Andric using Elf_Dyn = typename ELFT::Dyn;
130b60736ecSDimitry Andric
addAddr(uint64_t Tag,uint64_t Addr)131b60736ecSDimitry Andric size_t addAddr(uint64_t Tag, uint64_t Addr) {
132b60736ecSDimitry Andric Elf_Dyn Entry;
133b60736ecSDimitry Andric Entry.d_tag = Tag;
134b60736ecSDimitry Andric Entry.d_un.d_ptr = Addr;
135b60736ecSDimitry Andric Entries.push_back(Entry);
136b60736ecSDimitry Andric return Entries.size() - 1;
137b60736ecSDimitry Andric }
138b60736ecSDimitry Andric
modifyAddr(size_t Index,uint64_t Addr)139b60736ecSDimitry Andric void modifyAddr(size_t Index, uint64_t Addr) {
140b60736ecSDimitry Andric Entries[Index].d_un.d_ptr = Addr;
141b60736ecSDimitry Andric }
142b60736ecSDimitry Andric
addValue(uint64_t Tag,uint64_t Value)143b60736ecSDimitry Andric size_t addValue(uint64_t Tag, uint64_t Value) {
144b60736ecSDimitry Andric Elf_Dyn Entry;
145b60736ecSDimitry Andric Entry.d_tag = Tag;
146b60736ecSDimitry Andric Entry.d_un.d_val = Value;
147b60736ecSDimitry Andric Entries.push_back(Entry);
148b60736ecSDimitry Andric return Entries.size() - 1;
149b60736ecSDimitry Andric }
150b60736ecSDimitry Andric
modifyValue(size_t Index,uint64_t Value)151b60736ecSDimitry Andric void modifyValue(size_t Index, uint64_t Value) {
152b60736ecSDimitry Andric Entries[Index].d_un.d_val = Value;
153b60736ecSDimitry Andric }
154b60736ecSDimitry Andric
getSize() const155b60736ecSDimitry Andric size_t getSize() const {
156b60736ecSDimitry Andric // Add DT_NULL entry at the end.
157b60736ecSDimitry Andric return (Entries.size() + 1) * sizeof(Elf_Dyn);
158b60736ecSDimitry Andric }
159b60736ecSDimitry Andric
write(uint8_t * Buf) const160b60736ecSDimitry Andric void write(uint8_t *Buf) const {
161b60736ecSDimitry Andric memcpy(Buf, Entries.data(), sizeof(Elf_Dyn) * Entries.size());
162b60736ecSDimitry Andric // Add DT_NULL entry at the end.
163b60736ecSDimitry Andric memset(Buf + sizeof(Elf_Dyn) * Entries.size(), 0, sizeof(Elf_Dyn));
164b60736ecSDimitry Andric }
165b60736ecSDimitry Andric
166b60736ecSDimitry Andric private:
167b60736ecSDimitry Andric llvm::SmallVector<Elf_Dyn, 8> Entries;
168b60736ecSDimitry Andric };
169b60736ecSDimitry Andric
170b60736ecSDimitry Andric template <class ELFT> class ELFStubBuilder {
171b60736ecSDimitry Andric public:
172b60736ecSDimitry Andric using Elf_Ehdr = typename ELFT::Ehdr;
173b60736ecSDimitry Andric using Elf_Shdr = typename ELFT::Shdr;
174b60736ecSDimitry Andric using Elf_Phdr = typename ELFT::Phdr;
175b60736ecSDimitry Andric using Elf_Sym = typename ELFT::Sym;
176b60736ecSDimitry Andric using Elf_Addr = typename ELFT::Addr;
177b60736ecSDimitry Andric using Elf_Dyn = typename ELFT::Dyn;
178b60736ecSDimitry Andric
179b60736ecSDimitry Andric ELFStubBuilder(const ELFStubBuilder &) = delete;
180b60736ecSDimitry Andric ELFStubBuilder(ELFStubBuilder &&) = default;
181b60736ecSDimitry Andric
ELFStubBuilder(const IFSStub & Stub)182344a3780SDimitry Andric explicit ELFStubBuilder(const IFSStub &Stub) {
183b60736ecSDimitry Andric DynSym.Name = ".dynsym";
184b60736ecSDimitry Andric DynSym.Align = sizeof(Elf_Addr);
185b60736ecSDimitry Andric DynStr.Name = ".dynstr";
186b60736ecSDimitry Andric DynStr.Align = 1;
187b60736ecSDimitry Andric DynTab.Name = ".dynamic";
188b60736ecSDimitry Andric DynTab.Align = sizeof(Elf_Addr);
189b60736ecSDimitry Andric ShStrTab.Name = ".shstrtab";
190b60736ecSDimitry Andric ShStrTab.Align = 1;
191b60736ecSDimitry Andric
192b60736ecSDimitry Andric // Populate string tables.
193344a3780SDimitry Andric for (const IFSSymbol &Sym : Stub.Symbols)
194b60736ecSDimitry Andric DynStr.Content.add(Sym.Name);
195b60736ecSDimitry Andric for (const std::string &Lib : Stub.NeededLibs)
196b60736ecSDimitry Andric DynStr.Content.add(Lib);
197b60736ecSDimitry Andric if (Stub.SoName)
198145449b1SDimitry Andric DynStr.Content.add(*Stub.SoName);
199b60736ecSDimitry Andric
200b60736ecSDimitry Andric std::vector<OutputSection<ELFT> *> Sections = {&DynSym, &DynStr, &DynTab,
201b60736ecSDimitry Andric &ShStrTab};
202b60736ecSDimitry Andric const OutputSection<ELFT> *LastSection = Sections.back();
203b60736ecSDimitry Andric // Now set the Index and put sections names into ".shstrtab".
204b60736ecSDimitry Andric uint64_t Index = 1;
205b60736ecSDimitry Andric for (OutputSection<ELFT> *Sec : Sections) {
206b60736ecSDimitry Andric Sec->Index = Index++;
207b60736ecSDimitry Andric ShStrTab.Content.add(Sec->Name);
208b60736ecSDimitry Andric }
209b60736ecSDimitry Andric ShStrTab.Content.finalize();
210b60736ecSDimitry Andric ShStrTab.Size = ShStrTab.Content.getSize();
211b60736ecSDimitry Andric DynStr.Content.finalize();
212b60736ecSDimitry Andric DynStr.Size = DynStr.Content.getSize();
213b60736ecSDimitry Andric
214b60736ecSDimitry Andric // Populate dynamic symbol table.
215344a3780SDimitry Andric for (const IFSSymbol &Sym : Stub.Symbols) {
216b60736ecSDimitry Andric uint8_t Bind = Sym.Weak ? STB_WEAK : STB_GLOBAL;
217b60736ecSDimitry Andric // For non-undefined symbols, value of the shndx is not relevant at link
218b60736ecSDimitry Andric // time as long as it is not SHN_UNDEF. Set shndx to 1, which
219b60736ecSDimitry Andric // points to ".dynsym".
220b60736ecSDimitry Andric uint16_t Shndx = Sym.Undefined ? SHN_UNDEF : 1;
221145449b1SDimitry Andric uint64_t Size = Sym.Size.value_or(0);
222145449b1SDimitry Andric DynSym.Content.add(DynStr.Content.getOffset(Sym.Name), Size, Bind,
223344a3780SDimitry Andric convertIFSSymbolTypeToELF(Sym.Type), 0, Shndx);
224b60736ecSDimitry Andric }
225b60736ecSDimitry Andric DynSym.Size = DynSym.Content.getSize();
226b60736ecSDimitry Andric
227b60736ecSDimitry Andric // Poplulate dynamic table.
228b60736ecSDimitry Andric size_t DynSymIndex = DynTab.Content.addAddr(DT_SYMTAB, 0);
229b60736ecSDimitry Andric size_t DynStrIndex = DynTab.Content.addAddr(DT_STRTAB, 0);
230145449b1SDimitry Andric DynTab.Content.addValue(DT_STRSZ, DynSym.Size);
231b60736ecSDimitry Andric for (const std::string &Lib : Stub.NeededLibs)
232b60736ecSDimitry Andric DynTab.Content.addValue(DT_NEEDED, DynStr.Content.getOffset(Lib));
233b60736ecSDimitry Andric if (Stub.SoName)
234b60736ecSDimitry Andric DynTab.Content.addValue(DT_SONAME,
235145449b1SDimitry Andric DynStr.Content.getOffset(*Stub.SoName));
236b60736ecSDimitry Andric DynTab.Size = DynTab.Content.getSize();
237b60736ecSDimitry Andric // Calculate sections' addresses and offsets.
238b60736ecSDimitry Andric uint64_t CurrentOffset = sizeof(Elf_Ehdr);
239b60736ecSDimitry Andric for (OutputSection<ELFT> *Sec : Sections) {
240b60736ecSDimitry Andric Sec->Offset = alignTo(CurrentOffset, Sec->Align);
241b60736ecSDimitry Andric Sec->Addr = Sec->Offset;
242b60736ecSDimitry Andric CurrentOffset = Sec->Offset + Sec->Size;
243b60736ecSDimitry Andric }
244b60736ecSDimitry Andric // Fill Addr back to dynamic table.
245b60736ecSDimitry Andric DynTab.Content.modifyAddr(DynSymIndex, DynSym.Addr);
246b60736ecSDimitry Andric DynTab.Content.modifyAddr(DynStrIndex, DynStr.Addr);
247b60736ecSDimitry Andric // Write section headers of string tables.
248b60736ecSDimitry Andric fillSymTabShdr(DynSym, SHT_DYNSYM);
249b60736ecSDimitry Andric fillStrTabShdr(DynStr, SHF_ALLOC);
250b60736ecSDimitry Andric fillDynTabShdr(DynTab);
251b60736ecSDimitry Andric fillStrTabShdr(ShStrTab);
252b60736ecSDimitry Andric
253b60736ecSDimitry Andric // Finish initializing the ELF header.
254145449b1SDimitry Andric initELFHeader<ELFT>(ElfHeader, static_cast<uint16_t>(*Stub.Target.Arch));
255b60736ecSDimitry Andric ElfHeader.e_shstrndx = ShStrTab.Index;
256b60736ecSDimitry Andric ElfHeader.e_shnum = LastSection->Index + 1;
257b60736ecSDimitry Andric ElfHeader.e_shoff =
258b60736ecSDimitry Andric alignTo(LastSection->Offset + LastSection->Size, sizeof(Elf_Addr));
259b60736ecSDimitry Andric }
260b60736ecSDimitry Andric
getSize() const261b60736ecSDimitry Andric size_t getSize() const {
262b60736ecSDimitry Andric return ElfHeader.e_shoff + ElfHeader.e_shnum * sizeof(Elf_Shdr);
263b60736ecSDimitry Andric }
264b60736ecSDimitry Andric
write(uint8_t * Data) const265b60736ecSDimitry Andric void write(uint8_t *Data) const {
266b60736ecSDimitry Andric write(Data, ElfHeader);
267b60736ecSDimitry Andric DynSym.Content.write(Data + DynSym.Shdr.sh_offset);
268b60736ecSDimitry Andric DynStr.Content.write(Data + DynStr.Shdr.sh_offset);
269b60736ecSDimitry Andric DynTab.Content.write(Data + DynTab.Shdr.sh_offset);
270b60736ecSDimitry Andric ShStrTab.Content.write(Data + ShStrTab.Shdr.sh_offset);
271b60736ecSDimitry Andric writeShdr(Data, DynSym);
272b60736ecSDimitry Andric writeShdr(Data, DynStr);
273b60736ecSDimitry Andric writeShdr(Data, DynTab);
274b60736ecSDimitry Andric writeShdr(Data, ShStrTab);
275b60736ecSDimitry Andric }
276b60736ecSDimitry Andric
277b60736ecSDimitry Andric private:
278b60736ecSDimitry Andric Elf_Ehdr ElfHeader;
279b60736ecSDimitry Andric ContentSection<ELFStringTableBuilder, ELFT> DynStr;
280b60736ecSDimitry Andric ContentSection<ELFStringTableBuilder, ELFT> ShStrTab;
281b60736ecSDimitry Andric ContentSection<ELFSymbolTableBuilder<ELFT>, ELFT> DynSym;
282b60736ecSDimitry Andric ContentSection<ELFDynamicTableBuilder<ELFT>, ELFT> DynTab;
283b60736ecSDimitry Andric
write(uint8_t * Data,const T & Value)284b60736ecSDimitry Andric template <class T> static void write(uint8_t *Data, const T &Value) {
285b60736ecSDimitry Andric *reinterpret_cast<T *>(Data) = Value;
286b60736ecSDimitry Andric }
287b60736ecSDimitry Andric
fillStrTabShdr(ContentSection<ELFStringTableBuilder,ELFT> & StrTab,uint32_t ShFlags=0) const288b60736ecSDimitry Andric void fillStrTabShdr(ContentSection<ELFStringTableBuilder, ELFT> &StrTab,
289b60736ecSDimitry Andric uint32_t ShFlags = 0) const {
290b60736ecSDimitry Andric StrTab.Shdr.sh_type = SHT_STRTAB;
291b60736ecSDimitry Andric StrTab.Shdr.sh_flags = ShFlags;
292b60736ecSDimitry Andric StrTab.Shdr.sh_addr = StrTab.Addr;
293b60736ecSDimitry Andric StrTab.Shdr.sh_offset = StrTab.Offset;
294b60736ecSDimitry Andric StrTab.Shdr.sh_info = 0;
295b60736ecSDimitry Andric StrTab.Shdr.sh_size = StrTab.Size;
296b60736ecSDimitry Andric StrTab.Shdr.sh_name = ShStrTab.Content.getOffset(StrTab.Name);
297b60736ecSDimitry Andric StrTab.Shdr.sh_addralign = StrTab.Align;
298b60736ecSDimitry Andric StrTab.Shdr.sh_entsize = 0;
299b60736ecSDimitry Andric StrTab.Shdr.sh_link = 0;
300b60736ecSDimitry Andric }
fillSymTabShdr(ContentSection<ELFSymbolTableBuilder<ELFT>,ELFT> & SymTab,uint32_t ShType) const301b60736ecSDimitry Andric void fillSymTabShdr(ContentSection<ELFSymbolTableBuilder<ELFT>, ELFT> &SymTab,
302b60736ecSDimitry Andric uint32_t ShType) const {
303b60736ecSDimitry Andric SymTab.Shdr.sh_type = ShType;
304b60736ecSDimitry Andric SymTab.Shdr.sh_flags = SHF_ALLOC;
305b60736ecSDimitry Andric SymTab.Shdr.sh_addr = SymTab.Addr;
306b60736ecSDimitry Andric SymTab.Shdr.sh_offset = SymTab.Offset;
307344a3780SDimitry Andric // Only non-local symbols are included in the tbe file, so .dynsym only
308344a3780SDimitry Andric // contains 1 local symbol (the undefined symbol at index 0). The sh_info
309344a3780SDimitry Andric // should always be 1.
310344a3780SDimitry Andric SymTab.Shdr.sh_info = 1;
311b60736ecSDimitry Andric SymTab.Shdr.sh_size = SymTab.Size;
312b60736ecSDimitry Andric SymTab.Shdr.sh_name = this->ShStrTab.Content.getOffset(SymTab.Name);
313b60736ecSDimitry Andric SymTab.Shdr.sh_addralign = SymTab.Align;
314b60736ecSDimitry Andric SymTab.Shdr.sh_entsize = sizeof(Elf_Sym);
315b60736ecSDimitry Andric SymTab.Shdr.sh_link = this->DynStr.Index;
316b60736ecSDimitry Andric }
fillDynTabShdr(ContentSection<ELFDynamicTableBuilder<ELFT>,ELFT> & DynTab) const317b60736ecSDimitry Andric void fillDynTabShdr(
318b60736ecSDimitry Andric ContentSection<ELFDynamicTableBuilder<ELFT>, ELFT> &DynTab) const {
319b60736ecSDimitry Andric DynTab.Shdr.sh_type = SHT_DYNAMIC;
320b60736ecSDimitry Andric DynTab.Shdr.sh_flags = SHF_ALLOC;
321b60736ecSDimitry Andric DynTab.Shdr.sh_addr = DynTab.Addr;
322b60736ecSDimitry Andric DynTab.Shdr.sh_offset = DynTab.Offset;
323b60736ecSDimitry Andric DynTab.Shdr.sh_info = 0;
324b60736ecSDimitry Andric DynTab.Shdr.sh_size = DynTab.Size;
325b60736ecSDimitry Andric DynTab.Shdr.sh_name = this->ShStrTab.Content.getOffset(DynTab.Name);
326b60736ecSDimitry Andric DynTab.Shdr.sh_addralign = DynTab.Align;
327b60736ecSDimitry Andric DynTab.Shdr.sh_entsize = sizeof(Elf_Dyn);
328b60736ecSDimitry Andric DynTab.Shdr.sh_link = this->DynStr.Index;
329b60736ecSDimitry Andric }
shdrOffset(const OutputSection<ELFT> & Sec) const330b60736ecSDimitry Andric uint64_t shdrOffset(const OutputSection<ELFT> &Sec) const {
331b60736ecSDimitry Andric return ElfHeader.e_shoff + Sec.Index * sizeof(Elf_Shdr);
332b60736ecSDimitry Andric }
333b60736ecSDimitry Andric
writeShdr(uint8_t * Data,const OutputSection<ELFT> & Sec) const334b60736ecSDimitry Andric void writeShdr(uint8_t *Data, const OutputSection<ELFT> &Sec) const {
335b60736ecSDimitry Andric write(Data + shdrOffset(Sec), Sec.Shdr);
336b60736ecSDimitry Andric }
337b60736ecSDimitry Andric };
338145449b1SDimitry Andric
339145449b1SDimitry Andric /// This function takes an error, and appends a string of text to the end of
340145449b1SDimitry Andric /// that error. Since "appending" to an Error isn't supported behavior of an
341145449b1SDimitry Andric /// Error, this function technically creates a new error with the combined
342145449b1SDimitry Andric /// message and consumes the old error.
343145449b1SDimitry Andric ///
344145449b1SDimitry Andric /// @param Err Source error.
345145449b1SDimitry Andric /// @param After Text to append at the end of Err's error message.
appendToError(Error Err,StringRef After)346145449b1SDimitry Andric Error appendToError(Error Err, StringRef After) {
347145449b1SDimitry Andric std::string Message;
348145449b1SDimitry Andric raw_string_ostream Stream(Message);
349145449b1SDimitry Andric Stream << Err;
350145449b1SDimitry Andric Stream << " " << After;
351145449b1SDimitry Andric consumeError(std::move(Err));
352145449b1SDimitry Andric return createError(Stream.str());
353145449b1SDimitry Andric }
354145449b1SDimitry Andric
355145449b1SDimitry Andric template <class ELFT> class DynSym {
356145449b1SDimitry Andric using Elf_Shdr_Range = typename ELFT::ShdrRange;
357145449b1SDimitry Andric using Elf_Shdr = typename ELFT::Shdr;
358145449b1SDimitry Andric
359145449b1SDimitry Andric public:
create(const ELFFile<ELFT> & ElfFile,const DynamicEntries & DynEnt)360145449b1SDimitry Andric static Expected<DynSym> create(const ELFFile<ELFT> &ElfFile,
361145449b1SDimitry Andric const DynamicEntries &DynEnt) {
362145449b1SDimitry Andric Expected<Elf_Shdr_Range> Shdrs = ElfFile.sections();
363145449b1SDimitry Andric if (!Shdrs)
364145449b1SDimitry Andric return Shdrs.takeError();
365145449b1SDimitry Andric return DynSym(ElfFile, DynEnt, *Shdrs);
366145449b1SDimitry Andric }
367145449b1SDimitry Andric
getDynSym()368145449b1SDimitry Andric Expected<const uint8_t *> getDynSym() {
369145449b1SDimitry Andric if (DynSymHdr)
370145449b1SDimitry Andric return ElfFile.base() + DynSymHdr->sh_offset;
371145449b1SDimitry Andric return getDynamicData(DynEnt.DynSymAddr, "dynamic symbol table");
372145449b1SDimitry Andric }
373145449b1SDimitry Andric
getDynStr()374145449b1SDimitry Andric Expected<StringRef> getDynStr() {
375145449b1SDimitry Andric if (DynSymHdr)
376145449b1SDimitry Andric return ElfFile.getStringTableForSymtab(*DynSymHdr, Shdrs);
377145449b1SDimitry Andric Expected<const uint8_t *> DataOrErr = getDynamicData(
378145449b1SDimitry Andric DynEnt.StrTabAddr, "dynamic string table", DynEnt.StrSize);
379145449b1SDimitry Andric if (!DataOrErr)
380145449b1SDimitry Andric return DataOrErr.takeError();
381145449b1SDimitry Andric return StringRef(reinterpret_cast<const char *>(*DataOrErr),
382145449b1SDimitry Andric DynEnt.StrSize);
383145449b1SDimitry Andric }
384145449b1SDimitry Andric
385145449b1SDimitry Andric private:
DynSym(const ELFFile<ELFT> & ElfFile,const DynamicEntries & DynEnt,Elf_Shdr_Range Shdrs)386145449b1SDimitry Andric DynSym(const ELFFile<ELFT> &ElfFile, const DynamicEntries &DynEnt,
387145449b1SDimitry Andric Elf_Shdr_Range Shdrs)
388145449b1SDimitry Andric : ElfFile(ElfFile), DynEnt(DynEnt), Shdrs(Shdrs),
389145449b1SDimitry Andric DynSymHdr(findDynSymHdr()) {}
390145449b1SDimitry Andric
findDynSymHdr()391145449b1SDimitry Andric const Elf_Shdr *findDynSymHdr() {
392145449b1SDimitry Andric for (const Elf_Shdr &Sec : Shdrs)
393145449b1SDimitry Andric if (Sec.sh_type == SHT_DYNSYM) {
394145449b1SDimitry Andric // If multiple .dynsym are present, use the first one.
395145449b1SDimitry Andric // This behavior aligns with llvm::object::ELFFile::getDynSymtabSize()
396145449b1SDimitry Andric return &Sec;
397145449b1SDimitry Andric }
398145449b1SDimitry Andric return nullptr;
399145449b1SDimitry Andric }
400145449b1SDimitry Andric
getDynamicData(uint64_t EntAddr,StringRef Name,uint64_t Size=0)401145449b1SDimitry Andric Expected<const uint8_t *> getDynamicData(uint64_t EntAddr, StringRef Name,
402145449b1SDimitry Andric uint64_t Size = 0) {
403145449b1SDimitry Andric Expected<const uint8_t *> SecPtr = ElfFile.toMappedAddr(EntAddr);
404145449b1SDimitry Andric if (!SecPtr)
405145449b1SDimitry Andric return appendToError(
406145449b1SDimitry Andric SecPtr.takeError(),
407145449b1SDimitry Andric ("when locating " + Name + " section contents").str());
408145449b1SDimitry Andric Expected<const uint8_t *> SecEndPtr = ElfFile.toMappedAddr(EntAddr + Size);
409145449b1SDimitry Andric if (!SecEndPtr)
410145449b1SDimitry Andric return appendToError(
411145449b1SDimitry Andric SecEndPtr.takeError(),
412145449b1SDimitry Andric ("when locating " + Name + " section contents").str());
413145449b1SDimitry Andric return *SecPtr;
414145449b1SDimitry Andric }
415145449b1SDimitry Andric
416145449b1SDimitry Andric const ELFFile<ELFT> &ElfFile;
417145449b1SDimitry Andric const DynamicEntries &DynEnt;
418145449b1SDimitry Andric Elf_Shdr_Range Shdrs;
419145449b1SDimitry Andric const Elf_Shdr *DynSymHdr;
420145449b1SDimitry Andric };
421b60736ecSDimitry Andric } // end anonymous namespace
422b60736ecSDimitry Andric
423b60736ecSDimitry Andric /// This function behaves similarly to StringRef::substr(), but attempts to
424b60736ecSDimitry Andric /// terminate the returned StringRef at the first null terminator. If no null
425b60736ecSDimitry Andric /// terminator is found, an error is returned.
426b60736ecSDimitry Andric ///
427b60736ecSDimitry Andric /// @param Str Source string to create a substring from.
428b60736ecSDimitry Andric /// @param Offset The start index of the desired substring.
terminatedSubstr(StringRef Str,size_t Offset)429b60736ecSDimitry Andric static Expected<StringRef> terminatedSubstr(StringRef Str, size_t Offset) {
430b60736ecSDimitry Andric size_t StrEnd = Str.find('\0', Offset);
431b60736ecSDimitry Andric if (StrEnd == StringLiteral::npos) {
432b60736ecSDimitry Andric return createError(
433b60736ecSDimitry Andric "String overran bounds of string table (no null terminator)");
434b60736ecSDimitry Andric }
435b60736ecSDimitry Andric
436b60736ecSDimitry Andric size_t StrLen = StrEnd - Offset;
437b60736ecSDimitry Andric return Str.substr(Offset, StrLen);
438b60736ecSDimitry Andric }
439b60736ecSDimitry Andric
440b60736ecSDimitry Andric /// This function populates a DynamicEntries struct using an ELFT::DynRange.
441b60736ecSDimitry Andric /// After populating the struct, the members are validated with
442f65dcba8SDimitry Andric /// some basic correctness checks.
443b60736ecSDimitry Andric ///
444b60736ecSDimitry Andric /// @param Dyn Target DynamicEntries struct to populate.
445b60736ecSDimitry Andric /// @param DynTable Source dynamic table.
446b60736ecSDimitry Andric template <class ELFT>
populateDynamic(DynamicEntries & Dyn,typename ELFT::DynRange DynTable)447b60736ecSDimitry Andric static Error populateDynamic(DynamicEntries &Dyn,
448b60736ecSDimitry Andric typename ELFT::DynRange DynTable) {
449b60736ecSDimitry Andric if (DynTable.empty())
450b60736ecSDimitry Andric return createError("No .dynamic section found");
451b60736ecSDimitry Andric
452b60736ecSDimitry Andric // Search .dynamic for relevant entries.
453b60736ecSDimitry Andric bool FoundDynStr = false;
454b60736ecSDimitry Andric bool FoundDynStrSz = false;
455b60736ecSDimitry Andric bool FoundDynSym = false;
456b60736ecSDimitry Andric for (auto &Entry : DynTable) {
457b60736ecSDimitry Andric switch (Entry.d_tag) {
458b60736ecSDimitry Andric case DT_SONAME:
459b60736ecSDimitry Andric Dyn.SONameOffset = Entry.d_un.d_val;
460b60736ecSDimitry Andric break;
461b60736ecSDimitry Andric case DT_STRTAB:
462b60736ecSDimitry Andric Dyn.StrTabAddr = Entry.d_un.d_ptr;
463b60736ecSDimitry Andric FoundDynStr = true;
464b60736ecSDimitry Andric break;
465b60736ecSDimitry Andric case DT_STRSZ:
466b60736ecSDimitry Andric Dyn.StrSize = Entry.d_un.d_val;
467b60736ecSDimitry Andric FoundDynStrSz = true;
468b60736ecSDimitry Andric break;
469b60736ecSDimitry Andric case DT_NEEDED:
470b60736ecSDimitry Andric Dyn.NeededLibNames.push_back(Entry.d_un.d_val);
471b60736ecSDimitry Andric break;
472b60736ecSDimitry Andric case DT_SYMTAB:
473b60736ecSDimitry Andric Dyn.DynSymAddr = Entry.d_un.d_ptr;
474b60736ecSDimitry Andric FoundDynSym = true;
475b60736ecSDimitry Andric break;
476b60736ecSDimitry Andric case DT_HASH:
477b60736ecSDimitry Andric Dyn.ElfHash = Entry.d_un.d_ptr;
478b60736ecSDimitry Andric break;
479b60736ecSDimitry Andric case DT_GNU_HASH:
480b60736ecSDimitry Andric Dyn.GnuHash = Entry.d_un.d_ptr;
481b60736ecSDimitry Andric }
482b60736ecSDimitry Andric }
483b60736ecSDimitry Andric
484b60736ecSDimitry Andric if (!FoundDynStr) {
485b60736ecSDimitry Andric return createError(
486b60736ecSDimitry Andric "Couldn't locate dynamic string table (no DT_STRTAB entry)");
487b60736ecSDimitry Andric }
488b60736ecSDimitry Andric if (!FoundDynStrSz) {
489b60736ecSDimitry Andric return createError(
490b60736ecSDimitry Andric "Couldn't determine dynamic string table size (no DT_STRSZ entry)");
491b60736ecSDimitry Andric }
492b60736ecSDimitry Andric if (!FoundDynSym) {
493b60736ecSDimitry Andric return createError(
494b60736ecSDimitry Andric "Couldn't locate dynamic symbol table (no DT_SYMTAB entry)");
495b60736ecSDimitry Andric }
496145449b1SDimitry Andric if (Dyn.SONameOffset && *Dyn.SONameOffset >= Dyn.StrSize) {
497b60736ecSDimitry Andric return createStringError(object_error::parse_failed,
498b60736ecSDimitry Andric "DT_SONAME string offset (0x%016" PRIx64
499b60736ecSDimitry Andric ") outside of dynamic string table",
500b60736ecSDimitry Andric *Dyn.SONameOffset);
501b60736ecSDimitry Andric }
502b60736ecSDimitry Andric for (uint64_t Offset : Dyn.NeededLibNames) {
503b60736ecSDimitry Andric if (Offset >= Dyn.StrSize) {
504b60736ecSDimitry Andric return createStringError(object_error::parse_failed,
505b60736ecSDimitry Andric "DT_NEEDED string offset (0x%016" PRIx64
506b60736ecSDimitry Andric ") outside of dynamic string table",
507b60736ecSDimitry Andric Offset);
508b60736ecSDimitry Andric }
509b60736ecSDimitry Andric }
510b60736ecSDimitry Andric
511b60736ecSDimitry Andric return Error::success();
512b60736ecSDimitry Andric }
513b60736ecSDimitry Andric
514344a3780SDimitry Andric /// This function creates an IFSSymbol and populates all members using
515b60736ecSDimitry Andric /// information from a binary ELFT::Sym.
516b60736ecSDimitry Andric ///
517344a3780SDimitry Andric /// @param SymName The desired name of the IFSSymbol.
518b60736ecSDimitry Andric /// @param RawSym ELFT::Sym to extract symbol information from.
519b60736ecSDimitry Andric template <class ELFT>
createELFSym(StringRef SymName,const typename ELFT::Sym & RawSym)520344a3780SDimitry Andric static IFSSymbol createELFSym(StringRef SymName,
521b60736ecSDimitry Andric const typename ELFT::Sym &RawSym) {
522344a3780SDimitry Andric IFSSymbol TargetSym{std::string(SymName)};
523b60736ecSDimitry Andric uint8_t Binding = RawSym.getBinding();
524b60736ecSDimitry Andric if (Binding == STB_WEAK)
525b60736ecSDimitry Andric TargetSym.Weak = true;
526b60736ecSDimitry Andric else
527b60736ecSDimitry Andric TargetSym.Weak = false;
528b60736ecSDimitry Andric
529b60736ecSDimitry Andric TargetSym.Undefined = RawSym.isUndefined();
530344a3780SDimitry Andric TargetSym.Type = convertELFSymbolTypeToIFS(RawSym.st_info);
531b60736ecSDimitry Andric
532344a3780SDimitry Andric if (TargetSym.Type == IFSSymbolType::Func) {
533b60736ecSDimitry Andric TargetSym.Size = 0;
534b60736ecSDimitry Andric } else {
535b60736ecSDimitry Andric TargetSym.Size = RawSym.st_size;
536b60736ecSDimitry Andric }
537b60736ecSDimitry Andric return TargetSym;
538b60736ecSDimitry Andric }
539b60736ecSDimitry Andric
540344a3780SDimitry Andric /// This function populates an IFSStub with symbols using information read
541b60736ecSDimitry Andric /// from an ELF binary.
542b60736ecSDimitry Andric ///
543344a3780SDimitry Andric /// @param TargetStub IFSStub to add symbols to.
544b60736ecSDimitry Andric /// @param DynSym Range of dynamic symbols to add to TargetStub.
545b60736ecSDimitry Andric /// @param DynStr StringRef to the dynamic string table.
546b60736ecSDimitry Andric template <class ELFT>
populateSymbols(IFSStub & TargetStub,const typename ELFT::SymRange DynSym,StringRef DynStr)547344a3780SDimitry Andric static Error populateSymbols(IFSStub &TargetStub,
548b60736ecSDimitry Andric const typename ELFT::SymRange DynSym,
549b60736ecSDimitry Andric StringRef DynStr) {
550b60736ecSDimitry Andric // Skips the first symbol since it's the NULL symbol.
551b60736ecSDimitry Andric for (auto RawSym : DynSym.drop_front(1)) {
552b60736ecSDimitry Andric // If a symbol does not have global or weak binding, ignore it.
553b60736ecSDimitry Andric uint8_t Binding = RawSym.getBinding();
554b60736ecSDimitry Andric if (!(Binding == STB_GLOBAL || Binding == STB_WEAK))
555b60736ecSDimitry Andric continue;
556b60736ecSDimitry Andric // If a symbol doesn't have default or protected visibility, ignore it.
557b60736ecSDimitry Andric uint8_t Visibility = RawSym.getVisibility();
558b60736ecSDimitry Andric if (!(Visibility == STV_DEFAULT || Visibility == STV_PROTECTED))
559b60736ecSDimitry Andric continue;
560344a3780SDimitry Andric // Create an IFSSymbol and populate it with information from the symbol
561b60736ecSDimitry Andric // table entry.
562b60736ecSDimitry Andric Expected<StringRef> SymName = terminatedSubstr(DynStr, RawSym.st_name);
563b60736ecSDimitry Andric if (!SymName)
564b60736ecSDimitry Andric return SymName.takeError();
565344a3780SDimitry Andric IFSSymbol Sym = createELFSym<ELFT>(*SymName, RawSym);
566344a3780SDimitry Andric TargetStub.Symbols.push_back(std::move(Sym));
567b60736ecSDimitry Andric // TODO: Populate symbol warning.
568b60736ecSDimitry Andric }
569b60736ecSDimitry Andric return Error::success();
570b60736ecSDimitry Andric }
571b60736ecSDimitry Andric
572344a3780SDimitry Andric /// Returns a new IFSStub with all members populated from an ELFObjectFile.
573b60736ecSDimitry Andric /// @param ElfObj Source ELFObjectFile.
574b60736ecSDimitry Andric template <class ELFT>
575344a3780SDimitry Andric static Expected<std::unique_ptr<IFSStub>>
buildStub(const ELFObjectFile<ELFT> & ElfObj)576b60736ecSDimitry Andric buildStub(const ELFObjectFile<ELFT> &ElfObj) {
577b60736ecSDimitry Andric using Elf_Dyn_Range = typename ELFT::DynRange;
578b60736ecSDimitry Andric using Elf_Sym_Range = typename ELFT::SymRange;
579b60736ecSDimitry Andric using Elf_Sym = typename ELFT::Sym;
580344a3780SDimitry Andric std::unique_ptr<IFSStub> DestStub = std::make_unique<IFSStub>();
581b60736ecSDimitry Andric const ELFFile<ELFT> &ElfFile = ElfObj.getELFFile();
582b60736ecSDimitry Andric // Fetch .dynamic table.
583b60736ecSDimitry Andric Expected<Elf_Dyn_Range> DynTable = ElfFile.dynamicEntries();
584b60736ecSDimitry Andric if (!DynTable) {
585b60736ecSDimitry Andric return DynTable.takeError();
586b60736ecSDimitry Andric }
587b60736ecSDimitry Andric
588b60736ecSDimitry Andric // Collect relevant .dynamic entries.
589b60736ecSDimitry Andric DynamicEntries DynEnt;
590b60736ecSDimitry Andric if (Error Err = populateDynamic<ELFT>(DynEnt, *DynTable))
591b60736ecSDimitry Andric return std::move(Err);
592145449b1SDimitry Andric Expected<DynSym<ELFT>> EDynSym = DynSym<ELFT>::create(ElfFile, DynEnt);
593145449b1SDimitry Andric if (!EDynSym)
594145449b1SDimitry Andric return EDynSym.takeError();
595b60736ecSDimitry Andric
596145449b1SDimitry Andric Expected<StringRef> EDynStr = EDynSym->getDynStr();
597145449b1SDimitry Andric if (!EDynStr)
598145449b1SDimitry Andric return EDynStr.takeError();
599b60736ecSDimitry Andric
600145449b1SDimitry Andric StringRef DynStr = *EDynStr;
601b60736ecSDimitry Andric
602b60736ecSDimitry Andric // Populate Arch from ELF header.
603344a3780SDimitry Andric DestStub->Target.Arch = static_cast<IFSArch>(ElfFile.getHeader().e_machine);
604344a3780SDimitry Andric DestStub->Target.BitWidth =
605344a3780SDimitry Andric convertELFBitWidthToIFS(ElfFile.getHeader().e_ident[EI_CLASS]);
606344a3780SDimitry Andric DestStub->Target.Endianness =
607344a3780SDimitry Andric convertELFEndiannessToIFS(ElfFile.getHeader().e_ident[EI_DATA]);
608344a3780SDimitry Andric DestStub->Target.ObjectFormat = "ELF";
609b60736ecSDimitry Andric
610b60736ecSDimitry Andric // Populate SoName from .dynamic entries and dynamic string table.
611145449b1SDimitry Andric if (DynEnt.SONameOffset) {
612b60736ecSDimitry Andric Expected<StringRef> NameOrErr =
613b60736ecSDimitry Andric terminatedSubstr(DynStr, *DynEnt.SONameOffset);
614b60736ecSDimitry Andric if (!NameOrErr) {
615b60736ecSDimitry Andric return appendToError(NameOrErr.takeError(), "when reading DT_SONAME");
616b60736ecSDimitry Andric }
617b60736ecSDimitry Andric DestStub->SoName = std::string(*NameOrErr);
618b60736ecSDimitry Andric }
619b60736ecSDimitry Andric
620b60736ecSDimitry Andric // Populate NeededLibs from .dynamic entries and dynamic string table.
621b60736ecSDimitry Andric for (uint64_t NeededStrOffset : DynEnt.NeededLibNames) {
622b60736ecSDimitry Andric Expected<StringRef> LibNameOrErr =
623b60736ecSDimitry Andric terminatedSubstr(DynStr, NeededStrOffset);
624b60736ecSDimitry Andric if (!LibNameOrErr) {
625b60736ecSDimitry Andric return appendToError(LibNameOrErr.takeError(), "when reading DT_NEEDED");
626b60736ecSDimitry Andric }
627b60736ecSDimitry Andric DestStub->NeededLibs.push_back(std::string(*LibNameOrErr));
628b60736ecSDimitry Andric }
629b60736ecSDimitry Andric
630b60736ecSDimitry Andric // Populate Symbols from .dynsym table and dynamic string table.
631b60736ecSDimitry Andric Expected<uint64_t> SymCount = ElfFile.getDynSymtabSize();
632b60736ecSDimitry Andric if (!SymCount)
633b60736ecSDimitry Andric return SymCount.takeError();
634b60736ecSDimitry Andric if (*SymCount > 0) {
635b60736ecSDimitry Andric // Get pointer to in-memory location of .dynsym section.
636145449b1SDimitry Andric Expected<const uint8_t *> DynSymPtr = EDynSym->getDynSym();
637b60736ecSDimitry Andric if (!DynSymPtr)
638b60736ecSDimitry Andric return appendToError(DynSymPtr.takeError(),
639b60736ecSDimitry Andric "when locating .dynsym section contents");
640b60736ecSDimitry Andric Elf_Sym_Range DynSyms = ArrayRef<Elf_Sym>(
641b60736ecSDimitry Andric reinterpret_cast<const Elf_Sym *>(*DynSymPtr), *SymCount);
642b60736ecSDimitry Andric Error SymReadError = populateSymbols<ELFT>(*DestStub, DynSyms, DynStr);
643b60736ecSDimitry Andric if (SymReadError)
644b60736ecSDimitry Andric return appendToError(std::move(SymReadError),
645b60736ecSDimitry Andric "when reading dynamic symbols");
646b60736ecSDimitry Andric }
647b60736ecSDimitry Andric
648b60736ecSDimitry Andric return std::move(DestStub);
649b60736ecSDimitry Andric }
650b60736ecSDimitry Andric
651b60736ecSDimitry Andric /// This function opens a file for writing and then writes a binary ELF stub to
652b60736ecSDimitry Andric /// the file.
653b60736ecSDimitry Andric ///
654b60736ecSDimitry Andric /// @param FilePath File path for writing the ELF binary.
655344a3780SDimitry Andric /// @param Stub Source InterFace Stub to generate a binary ELF stub from.
656b60736ecSDimitry Andric template <class ELFT>
writeELFBinaryToFile(StringRef FilePath,const IFSStub & Stub,bool WriteIfChanged)657344a3780SDimitry Andric static Error writeELFBinaryToFile(StringRef FilePath, const IFSStub &Stub,
658b60736ecSDimitry Andric bool WriteIfChanged) {
659b60736ecSDimitry Andric ELFStubBuilder<ELFT> Builder{Stub};
660b60736ecSDimitry Andric // Write Stub to memory first.
661b60736ecSDimitry Andric std::vector<uint8_t> Buf(Builder.getSize());
662b60736ecSDimitry Andric Builder.write(Buf.data());
663b60736ecSDimitry Andric
664b60736ecSDimitry Andric if (WriteIfChanged) {
665b60736ecSDimitry Andric if (ErrorOr<std::unique_ptr<MemoryBuffer>> BufOrError =
666b60736ecSDimitry Andric MemoryBuffer::getFile(FilePath)) {
667b60736ecSDimitry Andric // Compare Stub output with existing Stub file.
668b60736ecSDimitry Andric // If Stub file unchanged, abort updating.
669b60736ecSDimitry Andric if ((*BufOrError)->getBufferSize() == Builder.getSize() &&
670b60736ecSDimitry Andric !memcmp((*BufOrError)->getBufferStart(), Buf.data(),
671b60736ecSDimitry Andric Builder.getSize()))
672b60736ecSDimitry Andric return Error::success();
673b60736ecSDimitry Andric }
674b60736ecSDimitry Andric }
675b60736ecSDimitry Andric
676b60736ecSDimitry Andric Expected<std::unique_ptr<FileOutputBuffer>> BufOrError =
677b60736ecSDimitry Andric FileOutputBuffer::create(FilePath, Builder.getSize());
678b60736ecSDimitry Andric if (!BufOrError)
679b60736ecSDimitry Andric return createStringError(errc::invalid_argument,
680b60736ecSDimitry Andric toString(BufOrError.takeError()) +
681b60736ecSDimitry Andric " when trying to open `" + FilePath +
682b60736ecSDimitry Andric "` for writing");
683b60736ecSDimitry Andric
684b60736ecSDimitry Andric // Write binary to file.
685b60736ecSDimitry Andric std::unique_ptr<FileOutputBuffer> FileBuf = std::move(*BufOrError);
686b60736ecSDimitry Andric memcpy(FileBuf->getBufferStart(), Buf.data(), Buf.size());
687b60736ecSDimitry Andric
688b60736ecSDimitry Andric return FileBuf->commit();
689b60736ecSDimitry Andric }
690b60736ecSDimitry Andric
readELFFile(MemoryBufferRef Buf)691344a3780SDimitry Andric Expected<std::unique_ptr<IFSStub>> readELFFile(MemoryBufferRef Buf) {
692b60736ecSDimitry Andric Expected<std::unique_ptr<Binary>> BinOrErr = createBinary(Buf);
693b60736ecSDimitry Andric if (!BinOrErr) {
694b60736ecSDimitry Andric return BinOrErr.takeError();
695b60736ecSDimitry Andric }
696b60736ecSDimitry Andric
697b60736ecSDimitry Andric Binary *Bin = BinOrErr->get();
698b60736ecSDimitry Andric if (auto Obj = dyn_cast<ELFObjectFile<ELF32LE>>(Bin)) {
699b60736ecSDimitry Andric return buildStub(*Obj);
700b60736ecSDimitry Andric } else if (auto Obj = dyn_cast<ELFObjectFile<ELF64LE>>(Bin)) {
701b60736ecSDimitry Andric return buildStub(*Obj);
702b60736ecSDimitry Andric } else if (auto Obj = dyn_cast<ELFObjectFile<ELF32BE>>(Bin)) {
703b60736ecSDimitry Andric return buildStub(*Obj);
704b60736ecSDimitry Andric } else if (auto Obj = dyn_cast<ELFObjectFile<ELF64BE>>(Bin)) {
705b60736ecSDimitry Andric return buildStub(*Obj);
706b60736ecSDimitry Andric }
707b60736ecSDimitry Andric return createStringError(errc::not_supported, "unsupported binary format");
708b60736ecSDimitry Andric }
709b60736ecSDimitry Andric
710b60736ecSDimitry Andric // This function wraps the ELFT writeELFBinaryToFile() so writeBinaryStub()
711b60736ecSDimitry Andric // can be called without having to use ELFType templates directly.
writeBinaryStub(StringRef FilePath,const IFSStub & Stub,bool WriteIfChanged)712344a3780SDimitry Andric Error writeBinaryStub(StringRef FilePath, const IFSStub &Stub,
713344a3780SDimitry Andric bool WriteIfChanged) {
714344a3780SDimitry Andric assert(Stub.Target.Arch);
715344a3780SDimitry Andric assert(Stub.Target.BitWidth);
716344a3780SDimitry Andric assert(Stub.Target.Endianness);
717344a3780SDimitry Andric if (Stub.Target.BitWidth == IFSBitWidthType::IFS32) {
718344a3780SDimitry Andric if (Stub.Target.Endianness == IFSEndiannessType::Little) {
719b60736ecSDimitry Andric return writeELFBinaryToFile<ELF32LE>(FilePath, Stub, WriteIfChanged);
720344a3780SDimitry Andric } else {
721b60736ecSDimitry Andric return writeELFBinaryToFile<ELF32BE>(FilePath, Stub, WriteIfChanged);
722344a3780SDimitry Andric }
723344a3780SDimitry Andric } else {
724344a3780SDimitry Andric if (Stub.Target.Endianness == IFSEndiannessType::Little) {
725b60736ecSDimitry Andric return writeELFBinaryToFile<ELF64LE>(FilePath, Stub, WriteIfChanged);
726344a3780SDimitry Andric } else {
727b60736ecSDimitry Andric return writeELFBinaryToFile<ELF64BE>(FilePath, Stub, WriteIfChanged);
728344a3780SDimitry Andric }
729344a3780SDimitry Andric }
730b60736ecSDimitry Andric llvm_unreachable("invalid binary output target");
731b60736ecSDimitry Andric }
732b60736ecSDimitry Andric
733344a3780SDimitry Andric } // end namespace ifs
734b60736ecSDimitry Andric } // end namespace llvm
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