AArch64ELFStreamer.cpp 12 KB

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  1. //===- lib/MC/AArch64ELFStreamer.cpp - ELF Object Output for AArch64 ------===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This file assembles .s files and emits AArch64 ELF .o object files. Different
  10. // from generic ELF streamer in emitting mapping symbols ($x and $d) to delimit
  11. // regions of data and code.
  12. //
  13. //===----------------------------------------------------------------------===//
  14. #include "AArch64ELFStreamer.h"
  15. #include "AArch64MCTargetDesc.h"
  16. #include "AArch64TargetStreamer.h"
  17. #include "AArch64WinCOFFStreamer.h"
  18. #include "llvm/ADT/DenseMap.h"
  19. #include "llvm/ADT/StringRef.h"
  20. #include "llvm/ADT/Triple.h"
  21. #include "llvm/ADT/Twine.h"
  22. #include "llvm/BinaryFormat/ELF.h"
  23. #include "llvm/MC/MCAsmBackend.h"
  24. #include "llvm/MC/MCAssembler.h"
  25. #include "llvm/MC/MCCodeEmitter.h"
  26. #include "llvm/MC/MCContext.h"
  27. #include "llvm/MC/MCELFStreamer.h"
  28. #include "llvm/MC/MCExpr.h"
  29. #include "llvm/MC/MCInst.h"
  30. #include "llvm/MC/MCObjectWriter.h"
  31. #include "llvm/MC/MCSection.h"
  32. #include "llvm/MC/MCStreamer.h"
  33. #include "llvm/MC/MCSubtargetInfo.h"
  34. #include "llvm/MC/MCSymbolELF.h"
  35. #include "llvm/MC/MCWinCOFFStreamer.h"
  36. #include "llvm/Support/Casting.h"
  37. #include "llvm/Support/FormattedStream.h"
  38. #include "llvm/Support/raw_ostream.h"
  39. using namespace llvm;
  40. namespace {
  41. class AArch64ELFStreamer;
  42. class AArch64TargetAsmStreamer : public AArch64TargetStreamer {
  43. formatted_raw_ostream &OS;
  44. void emitInst(uint32_t Inst) override;
  45. void emitDirectiveVariantPCS(MCSymbol *Symbol) override {
  46. OS << "\t.variant_pcs\t" << Symbol->getName() << "\n";
  47. }
  48. void emitARM64WinCFIAllocStack(unsigned Size) override {
  49. OS << "\t.seh_stackalloc\t" << Size << "\n";
  50. }
  51. void emitARM64WinCFISaveR19R20X(int Offset) override {
  52. OS << "\t.seh_save_r19r20_x\t" << Offset << "\n";
  53. }
  54. void emitARM64WinCFISaveFPLR(int Offset) override {
  55. OS << "\t.seh_save_fplr\t" << Offset << "\n";
  56. }
  57. void emitARM64WinCFISaveFPLRX(int Offset) override {
  58. OS << "\t.seh_save_fplr_x\t" << Offset << "\n";
  59. }
  60. void emitARM64WinCFISaveReg(unsigned Reg, int Offset) override {
  61. OS << "\t.seh_save_reg\tx" << Reg << ", " << Offset << "\n";
  62. }
  63. void emitARM64WinCFISaveRegX(unsigned Reg, int Offset) override {
  64. OS << "\t.seh_save_reg_x\tx" << Reg << ", " << Offset << "\n";
  65. }
  66. void emitARM64WinCFISaveRegP(unsigned Reg, int Offset) override {
  67. OS << "\t.seh_save_regp\tx" << Reg << ", " << Offset << "\n";
  68. }
  69. void emitARM64WinCFISaveRegPX(unsigned Reg, int Offset) override {
  70. OS << "\t.seh_save_regp_x\tx" << Reg << ", " << Offset << "\n";
  71. }
  72. void emitARM64WinCFISaveLRPair(unsigned Reg, int Offset) override {
  73. OS << "\t.seh_save_lrpair\tx" << Reg << ", " << Offset << "\n";
  74. }
  75. void emitARM64WinCFISaveFReg(unsigned Reg, int Offset) override {
  76. OS << "\t.seh_save_freg\td" << Reg << ", " << Offset << "\n";
  77. }
  78. void emitARM64WinCFISaveFRegX(unsigned Reg, int Offset) override {
  79. OS << "\t.seh_save_freg_x\td" << Reg << ", " << Offset << "\n";
  80. }
  81. void emitARM64WinCFISaveFRegP(unsigned Reg, int Offset) override {
  82. OS << "\t.seh_save_fregp\td" << Reg << ", " << Offset << "\n";
  83. }
  84. void emitARM64WinCFISaveFRegPX(unsigned Reg, int Offset) override {
  85. OS << "\t.seh_save_fregp_x\td" << Reg << ", " << Offset << "\n";
  86. }
  87. void emitARM64WinCFISetFP() override { OS << "\t.seh_set_fp\n"; }
  88. void emitARM64WinCFIAddFP(unsigned Size) override {
  89. OS << "\t.seh_add_fp\t" << Size << "\n";
  90. }
  91. void emitARM64WinCFINop() override { OS << "\t.seh_nop\n"; }
  92. void emitARM64WinCFISaveNext() override { OS << "\t.seh_save_next\n"; }
  93. void emitARM64WinCFIPrologEnd() override { OS << "\t.seh_endprologue\n"; }
  94. void emitARM64WinCFIEpilogStart() override { OS << "\t.seh_startepilogue\n"; }
  95. void emitARM64WinCFIEpilogEnd() override { OS << "\t.seh_endepilogue\n"; }
  96. void emitARM64WinCFITrapFrame() override { OS << "\t.seh_trap_frame\n"; }
  97. void emitARM64WinCFIMachineFrame() override { OS << "\t.seh_pushframe\n"; }
  98. void emitARM64WinCFIContext() override { OS << "\t.seh_context\n"; }
  99. void emitARM64WinCFIClearUnwoundToCall() override {
  100. OS << "\t.seh_clear_unwound_to_call\n";
  101. }
  102. void emitARM64WinCFIPACSignLR() override {
  103. OS << "\t.seh_pac_sign_lr\n";
  104. }
  105. void emitARM64WinCFISaveAnyRegI(unsigned Reg, int Offset) override {
  106. OS << "\t.seh_save_any_reg\tx" << Reg << ", " << Offset << "\n";
  107. }
  108. void emitARM64WinCFISaveAnyRegIP(unsigned Reg, int Offset) override {
  109. OS << "\t.seh_save_any_reg_p\tx" << Reg << ", " << Offset << "\n";
  110. }
  111. void emitARM64WinCFISaveAnyRegD(unsigned Reg, int Offset) override {
  112. OS << "\t.seh_save_any_reg\td" << Reg << ", " << Offset << "\n";
  113. }
  114. void emitARM64WinCFISaveAnyRegDP(unsigned Reg, int Offset) override {
  115. OS << "\t.seh_save_any_reg_p\td" << Reg << ", " << Offset << "\n";
  116. }
  117. void emitARM64WinCFISaveAnyRegQ(unsigned Reg, int Offset) override {
  118. OS << "\t.seh_save_any_reg\tq" << Reg << ", " << Offset << "\n";
  119. }
  120. void emitARM64WinCFISaveAnyRegQP(unsigned Reg, int Offset) override {
  121. OS << "\t.seh_save_any_reg_p\tq" << Reg << ", " << Offset << "\n";
  122. }
  123. void emitARM64WinCFISaveAnyRegIX(unsigned Reg, int Offset) override {
  124. OS << "\t.seh_save_any_reg_x\tx" << Reg << ", " << Offset << "\n";
  125. }
  126. void emitARM64WinCFISaveAnyRegIPX(unsigned Reg, int Offset) override {
  127. OS << "\t.seh_save_any_reg_px\tx" << Reg << ", " << Offset << "\n";
  128. }
  129. void emitARM64WinCFISaveAnyRegDX(unsigned Reg, int Offset) override {
  130. OS << "\t.seh_save_any_reg_x\td" << Reg << ", " << Offset << "\n";
  131. }
  132. void emitARM64WinCFISaveAnyRegDPX(unsigned Reg, int Offset) override {
  133. OS << "\t.seh_save_any_reg_px\td" << Reg << ", " << Offset << "\n";
  134. }
  135. void emitARM64WinCFISaveAnyRegQX(unsigned Reg, int Offset) override {
  136. OS << "\t.seh_save_any_reg_x\tq" << Reg << ", " << Offset << "\n";
  137. }
  138. void emitARM64WinCFISaveAnyRegQPX(unsigned Reg, int Offset) override {
  139. OS << "\t.seh_save_any_reg_px\tq" << Reg << ", " << Offset << "\n";
  140. }
  141. public:
  142. AArch64TargetAsmStreamer(MCStreamer &S, formatted_raw_ostream &OS);
  143. };
  144. AArch64TargetAsmStreamer::AArch64TargetAsmStreamer(MCStreamer &S,
  145. formatted_raw_ostream &OS)
  146. : AArch64TargetStreamer(S), OS(OS) {}
  147. void AArch64TargetAsmStreamer::emitInst(uint32_t Inst) {
  148. OS << "\t.inst\t0x" << Twine::utohexstr(Inst) << "\n";
  149. }
  150. /// Extend the generic ELFStreamer class so that it can emit mapping symbols at
  151. /// the appropriate points in the object files. These symbols are defined in the
  152. /// AArch64 ELF ABI:
  153. /// infocenter.arm.com/help/topic/com.arm.doc.ihi0056a/IHI0056A_aaelf64.pdf
  154. ///
  155. /// In brief: $x or $d should be emitted at the start of each contiguous region
  156. /// of A64 code or data in a section. In practice, this emission does not rely
  157. /// on explicit assembler directives but on inherent properties of the
  158. /// directives doing the emission (e.g. ".byte" is data, "add x0, x0, x0" an
  159. /// instruction).
  160. ///
  161. /// As a result this system is orthogonal to the DataRegion infrastructure used
  162. /// by MachO. Beware!
  163. class AArch64ELFStreamer : public MCELFStreamer {
  164. public:
  165. AArch64ELFStreamer(MCContext &Context, std::unique_ptr<MCAsmBackend> TAB,
  166. std::unique_ptr<MCObjectWriter> OW,
  167. std::unique_ptr<MCCodeEmitter> Emitter)
  168. : MCELFStreamer(Context, std::move(TAB), std::move(OW),
  169. std::move(Emitter)),
  170. MappingSymbolCounter(0), LastEMS(EMS_None) {}
  171. void changeSection(MCSection *Section, const MCExpr *Subsection) override {
  172. // We have to keep track of the mapping symbol state of any sections we
  173. // use. Each one should start off as EMS_None, which is provided as the
  174. // default constructor by DenseMap::lookup.
  175. LastMappingSymbols[getPreviousSection().first] = LastEMS;
  176. LastEMS = LastMappingSymbols.lookup(Section);
  177. MCELFStreamer::changeSection(Section, Subsection);
  178. }
  179. // Reset state between object emissions
  180. void reset() override {
  181. MappingSymbolCounter = 0;
  182. MCELFStreamer::reset();
  183. LastMappingSymbols.clear();
  184. LastEMS = EMS_None;
  185. }
  186. /// This function is the one used to emit instruction data into the ELF
  187. /// streamer. We override it to add the appropriate mapping symbol if
  188. /// necessary.
  189. void emitInstruction(const MCInst &Inst,
  190. const MCSubtargetInfo &STI) override {
  191. emitA64MappingSymbol();
  192. MCELFStreamer::emitInstruction(Inst, STI);
  193. }
  194. /// Emit a 32-bit value as an instruction. This is only used for the .inst
  195. /// directive, EmitInstruction should be used in other cases.
  196. void emitInst(uint32_t Inst) {
  197. char Buffer[4];
  198. // We can't just use EmitIntValue here, as that will emit a data mapping
  199. // symbol, and swap the endianness on big-endian systems (instructions are
  200. // always little-endian).
  201. for (char &C : Buffer) {
  202. C = uint8_t(Inst);
  203. Inst >>= 8;
  204. }
  205. emitA64MappingSymbol();
  206. MCELFStreamer::emitBytes(StringRef(Buffer, 4));
  207. }
  208. /// This is one of the functions used to emit data into an ELF section, so the
  209. /// AArch64 streamer overrides it to add the appropriate mapping symbol ($d)
  210. /// if necessary.
  211. void emitBytes(StringRef Data) override {
  212. emitDataMappingSymbol();
  213. MCELFStreamer::emitBytes(Data);
  214. }
  215. /// This is one of the functions used to emit data into an ELF section, so the
  216. /// AArch64 streamer overrides it to add the appropriate mapping symbol ($d)
  217. /// if necessary.
  218. void emitValueImpl(const MCExpr *Value, unsigned Size, SMLoc Loc) override {
  219. emitDataMappingSymbol();
  220. MCELFStreamer::emitValueImpl(Value, Size, Loc);
  221. }
  222. void emitFill(const MCExpr &NumBytes, uint64_t FillValue,
  223. SMLoc Loc) override {
  224. emitDataMappingSymbol();
  225. MCObjectStreamer::emitFill(NumBytes, FillValue, Loc);
  226. }
  227. private:
  228. enum ElfMappingSymbol {
  229. EMS_None,
  230. EMS_A64,
  231. EMS_Data
  232. };
  233. void emitDataMappingSymbol() {
  234. if (LastEMS == EMS_Data)
  235. return;
  236. emitMappingSymbol("$d");
  237. LastEMS = EMS_Data;
  238. }
  239. void emitA64MappingSymbol() {
  240. if (LastEMS == EMS_A64)
  241. return;
  242. emitMappingSymbol("$x");
  243. LastEMS = EMS_A64;
  244. }
  245. void emitMappingSymbol(StringRef Name) {
  246. auto *Symbol = cast<MCSymbolELF>(getContext().getOrCreateSymbol(
  247. Name + "." + Twine(MappingSymbolCounter++)));
  248. emitLabel(Symbol);
  249. Symbol->setType(ELF::STT_NOTYPE);
  250. Symbol->setBinding(ELF::STB_LOCAL);
  251. Symbol->setExternal(false);
  252. }
  253. int64_t MappingSymbolCounter;
  254. DenseMap<const MCSection *, ElfMappingSymbol> LastMappingSymbols;
  255. ElfMappingSymbol LastEMS;
  256. };
  257. } // end anonymous namespace
  258. AArch64ELFStreamer &AArch64TargetELFStreamer::getStreamer() {
  259. return static_cast<AArch64ELFStreamer &>(Streamer);
  260. }
  261. void AArch64TargetELFStreamer::emitInst(uint32_t Inst) {
  262. getStreamer().emitInst(Inst);
  263. }
  264. void AArch64TargetELFStreamer::emitDirectiveVariantPCS(MCSymbol *Symbol) {
  265. getStreamer().getAssembler().registerSymbol(*Symbol);
  266. cast<MCSymbolELF>(Symbol)->setOther(ELF::STO_AARCH64_VARIANT_PCS);
  267. }
  268. MCTargetStreamer *
  269. llvm::createAArch64AsmTargetStreamer(MCStreamer &S, formatted_raw_ostream &OS,
  270. MCInstPrinter *InstPrint,
  271. bool isVerboseAsm) {
  272. return new AArch64TargetAsmStreamer(S, OS);
  273. }
  274. MCELFStreamer *llvm::createAArch64ELFStreamer(
  275. MCContext &Context, std::unique_ptr<MCAsmBackend> TAB,
  276. std::unique_ptr<MCObjectWriter> OW, std::unique_ptr<MCCodeEmitter> Emitter,
  277. bool RelaxAll) {
  278. AArch64ELFStreamer *S = new AArch64ELFStreamer(
  279. Context, std::move(TAB), std::move(OW), std::move(Emitter));
  280. if (RelaxAll)
  281. S->getAssembler().setRelaxAll(true);
  282. return S;
  283. }