xref: /openbsd/gnu/llvm/llvm/include/llvm/MC/MCAssembler.h (revision d415bd75)
1 //===- MCAssembler.h - Object File Generation -------------------*- C++ -*-===//
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 #ifndef LLVM_MC_MCASSEMBLER_H
10 #define LLVM_MC_MCASSEMBLER_H
11 
12 #include "llvm/ADT/ArrayRef.h"
13 #include "llvm/ADT/SmallPtrSet.h"
14 #include "llvm/ADT/StringRef.h"
15 #include "llvm/ADT/iterator.h"
16 #include "llvm/ADT/iterator_range.h"
17 #include "llvm/BinaryFormat/MachO.h"
18 #include "llvm/MC/MCDirectives.h"
19 #include "llvm/MC/MCDwarf.h"
20 #include "llvm/MC/MCLinkerOptimizationHint.h"
21 #include "llvm/MC/MCSymbol.h"
22 #include "llvm/Support/SMLoc.h"
23 #include "llvm/Support/VersionTuple.h"
24 #include <algorithm>
25 #include <cassert>
26 #include <cstddef>
27 #include <cstdint>
28 #include <memory>
29 #include <string>
30 #include <tuple>
31 #include <utility>
32 #include <vector>
33 
34 namespace llvm {
35 
36 class MCBoundaryAlignFragment;
37 class MCCVDefRangeFragment;
38 class MCCVInlineLineTableFragment;
39 class MCDwarfCallFrameFragment;
40 class MCDwarfLineAddrFragment;
41 class MCEncodedFragment;
42 class MCFixup;
43 class MCLEBFragment;
44 class MCPseudoProbeAddrFragment;
45 class MCRelaxableFragment;
46 class MCSymbolRefExpr;
47 class raw_ostream;
48 class MCAsmBackend;
49 class MCAsmLayout;
50 class MCContext;
51 class MCCodeEmitter;
52 class MCFragment;
53 class MCObjectWriter;
54 class MCSection;
55 class MCValue;
56 
57 // FIXME: This really doesn't belong here. See comments below.
58 struct IndirectSymbolData {
59   MCSymbol *Symbol;
60   MCSection *Section;
61 };
62 
63 // FIXME: Ditto this. Purely so the Streamer and the ObjectWriter can talk
64 // to one another.
65 struct DataRegionData {
66   // This enum should be kept in sync w/ the mach-o definition in
67   // llvm/Object/MachOFormat.h.
68   enum KindTy { Data = 1, JumpTable8, JumpTable16, JumpTable32 } Kind;
69   MCSymbol *Start;
70   MCSymbol *End;
71 };
72 
73 class MCAssembler {
74   friend class MCAsmLayout;
75 
76 public:
77   using SectionListType = std::vector<MCSection *>;
78   using SymbolDataListType = std::vector<const MCSymbol *>;
79 
80   using const_iterator = pointee_iterator<SectionListType::const_iterator>;
81   using iterator = pointee_iterator<SectionListType::iterator>;
82 
83   using const_symbol_iterator =
84       pointee_iterator<SymbolDataListType::const_iterator>;
85   using symbol_iterator = pointee_iterator<SymbolDataListType::iterator>;
86 
87   using symbol_range = iterator_range<symbol_iterator>;
88   using const_symbol_range = iterator_range<const_symbol_iterator>;
89 
90   using const_indirect_symbol_iterator =
91       std::vector<IndirectSymbolData>::const_iterator;
92   using indirect_symbol_iterator = std::vector<IndirectSymbolData>::iterator;
93 
94   using const_data_region_iterator =
95       std::vector<DataRegionData>::const_iterator;
96   using data_region_iterator = std::vector<DataRegionData>::iterator;
97 
98   /// MachO specific deployment target version info.
99   // A Major version of 0 indicates that no version information was supplied
100   // and so the corresponding load command should not be emitted.
101   using VersionInfoType = struct {
102     bool EmitBuildVersion;
103     union {
104       MCVersionMinType Type;          ///< Used when EmitBuildVersion==false.
105       MachO::PlatformType Platform;   ///< Used when EmitBuildVersion==true.
106     } TypeOrPlatform;
107     unsigned Major;
108     unsigned Minor;
109     unsigned Update;
110     /// An optional version of the SDK that was used to build the source.
111     VersionTuple SDKVersion;
112   };
113 
114 private:
115   MCContext &Context;
116 
117   std::unique_ptr<MCAsmBackend> Backend;
118 
119   std::unique_ptr<MCCodeEmitter> Emitter;
120 
121   std::unique_ptr<MCObjectWriter> Writer;
122 
123   SectionListType Sections;
124 
125   SymbolDataListType Symbols;
126 
127   std::vector<IndirectSymbolData> IndirectSymbols;
128 
129   std::vector<DataRegionData> DataRegions;
130 
131   /// The list of linker options to propagate into the object file.
132   std::vector<std::vector<std::string>> LinkerOptions;
133 
134   /// List of declared file names
135   std::vector<std::pair<std::string, size_t>> FileNames;
136 
137   MCDwarfLineTableParams LTParams;
138 
139   /// The set of function symbols for which a .thumb_func directive has
140   /// been seen.
141   //
142   // FIXME: We really would like this in target specific code rather than
143   // here. Maybe when the relocation stuff moves to target specific,
144   // this can go with it? The streamer would need some target specific
145   // refactoring too.
146   mutable SmallPtrSet<const MCSymbol *, 32> ThumbFuncs;
147 
148   /// The bundle alignment size currently set in the assembler.
149   ///
150   /// By default it's 0, which means bundling is disabled.
151   unsigned BundleAlignSize;
152 
153   bool RelaxAll : 1;
154   bool SubsectionsViaSymbols : 1;
155   bool IncrementalLinkerCompatible : 1;
156 
157   /// ELF specific e_header flags
158   // It would be good if there were an MCELFAssembler class to hold this.
159   // ELF header flags are used both by the integrated and standalone assemblers.
160   // Access to the flags is necessary in cases where assembler directives affect
161   // which flags to be set.
162   unsigned ELFHeaderEFlags;
163 
164   /// Used to communicate Linker Optimization Hint information between
165   /// the Streamer and the .o writer
166   MCLOHContainer LOHContainer;
167 
168   VersionInfoType VersionInfo;
169   VersionInfoType DarwinTargetVariantVersionInfo;
170 
171   /// Evaluate a fixup to a relocatable expression and the value which should be
172   /// placed into the fixup.
173   ///
174   /// \param Layout The layout to use for evaluation.
175   /// \param Fixup The fixup to evaluate.
176   /// \param DF The fragment the fixup is inside.
177   /// \param Target [out] On return, the relocatable expression the fixup
178   /// evaluates to.
179   /// \param Value [out] On return, the value of the fixup as currently laid
180   /// out.
181   /// \param WasForced [out] On return, the value in the fixup is set to the
182   /// correct value if WasForced is true, even if evaluateFixup returns false.
183   /// \return Whether the fixup value was fully resolved. This is true if the
184   /// \p Value result is fixed, otherwise the value may change due to
185   /// relocation.
186   bool evaluateFixup(const MCAsmLayout &Layout, const MCFixup &Fixup,
187                      const MCFragment *DF, MCValue &Target,
188                      uint64_t &Value, bool &WasForced) const;
189 
190   /// Check whether a fixup can be satisfied, or whether it needs to be relaxed
191   /// (increased in size, in order to hold its value correctly).
192   bool fixupNeedsRelaxation(const MCFixup &Fixup, const MCRelaxableFragment *DF,
193                             const MCAsmLayout &Layout) const;
194 
195   /// Check whether the given fragment needs relaxation.
196   bool fragmentNeedsRelaxation(const MCRelaxableFragment *IF,
197                                const MCAsmLayout &Layout) const;
198 
199   /// Perform one layout iteration and return true if any offsets
200   /// were adjusted.
201   bool layoutOnce(MCAsmLayout &Layout);
202 
203   /// Perform one layout iteration of the given section and return true
204   /// if any offsets were adjusted.
205   bool layoutSectionOnce(MCAsmLayout &Layout, MCSection &Sec);
206 
207   /// Perform relaxation on a single fragment - returns true if the fragment
208   /// changes as a result of relaxation.
209   bool relaxFragment(MCAsmLayout &Layout, MCFragment &F);
210   bool relaxInstruction(MCAsmLayout &Layout, MCRelaxableFragment &IF);
211   bool relaxLEB(MCAsmLayout &Layout, MCLEBFragment &IF);
212   bool relaxBoundaryAlign(MCAsmLayout &Layout, MCBoundaryAlignFragment &BF);
213   bool relaxDwarfLineAddr(MCAsmLayout &Layout, MCDwarfLineAddrFragment &DF);
214   bool relaxDwarfCallFrameFragment(MCAsmLayout &Layout,
215                                    MCDwarfCallFrameFragment &DF);
216   bool relaxCVInlineLineTable(MCAsmLayout &Layout,
217                               MCCVInlineLineTableFragment &DF);
218   bool relaxCVDefRange(MCAsmLayout &Layout, MCCVDefRangeFragment &DF);
219   bool relaxPseudoProbeAddr(MCAsmLayout &Layout, MCPseudoProbeAddrFragment &DF);
220 
221   /// finishLayout - Finalize a layout, including fragment lowering.
222   void finishLayout(MCAsmLayout &Layout);
223 
224   std::tuple<MCValue, uint64_t, bool>
225   handleFixup(const MCAsmLayout &Layout, MCFragment &F, const MCFixup &Fixup);
226 
227 public:
228   struct Symver {
229     SMLoc Loc;
230     const MCSymbol *Sym;
231     StringRef Name;
232     // True if .symver *, *@@@* or .symver *, *, remove.
233     bool KeepOriginalSym;
234   };
235   std::vector<Symver> Symvers;
236 
237   /// Construct a new assembler instance.
238   //
239   // FIXME: How are we going to parameterize this? Two obvious options are stay
240   // concrete and require clients to pass in a target like object. The other
241   // option is to make this abstract, and have targets provide concrete
242   // implementations as we do with AsmParser.
243   MCAssembler(MCContext &Context, std::unique_ptr<MCAsmBackend> Backend,
244               std::unique_ptr<MCCodeEmitter> Emitter,
245               std::unique_ptr<MCObjectWriter> Writer);
246   MCAssembler(const MCAssembler &) = delete;
247   MCAssembler &operator=(const MCAssembler &) = delete;
248   ~MCAssembler();
249 
250   /// Compute the effective fragment size assuming it is laid out at the given
251   /// \p SectionAddress and \p FragmentOffset.
252   uint64_t computeFragmentSize(const MCAsmLayout &Layout,
253                                const MCFragment &F) const;
254 
255   /// Find the symbol which defines the atom containing the given symbol, or
256   /// null if there is no such symbol.
257   const MCSymbol *getAtom(const MCSymbol &S) const;
258 
259   /// Check whether a particular symbol is visible to the linker and is required
260   /// in the symbol table, or whether it can be discarded by the assembler. This
261   /// also effects whether the assembler treats the label as potentially
262   /// defining a separate atom.
263   bool isSymbolLinkerVisible(const MCSymbol &SD) const;
264 
265   /// Emit the section contents to \p OS.
266   void writeSectionData(raw_ostream &OS, const MCSection *Section,
267                         const MCAsmLayout &Layout) const;
268 
269   /// Check whether a given symbol has been flagged with .thumb_func.
270   bool isThumbFunc(const MCSymbol *Func) const;
271 
272   /// Flag a function symbol as the target of a .thumb_func directive.
setIsThumbFunc(const MCSymbol * Func)273   void setIsThumbFunc(const MCSymbol *Func) { ThumbFuncs.insert(Func); }
274 
275   /// ELF e_header flags
getELFHeaderEFlags()276   unsigned getELFHeaderEFlags() const { return ELFHeaderEFlags; }
setELFHeaderEFlags(unsigned Flags)277   void setELFHeaderEFlags(unsigned Flags) { ELFHeaderEFlags = Flags; }
278 
279   /// MachO deployment target version information.
getVersionInfo()280   const VersionInfoType &getVersionInfo() const { return VersionInfo; }
281   void setVersionMin(MCVersionMinType Type, unsigned Major, unsigned Minor,
282                      unsigned Update,
283                      VersionTuple SDKVersion = VersionTuple()) {
284     VersionInfo.EmitBuildVersion = false;
285     VersionInfo.TypeOrPlatform.Type = Type;
286     VersionInfo.Major = Major;
287     VersionInfo.Minor = Minor;
288     VersionInfo.Update = Update;
289     VersionInfo.SDKVersion = SDKVersion;
290   }
291   void setBuildVersion(MachO::PlatformType Platform, unsigned Major,
292                        unsigned Minor, unsigned Update,
293                        VersionTuple SDKVersion = VersionTuple()) {
294     VersionInfo.EmitBuildVersion = true;
295     VersionInfo.TypeOrPlatform.Platform = Platform;
296     VersionInfo.Major = Major;
297     VersionInfo.Minor = Minor;
298     VersionInfo.Update = Update;
299     VersionInfo.SDKVersion = SDKVersion;
300   }
301 
getDarwinTargetVariantVersionInfo()302   const VersionInfoType &getDarwinTargetVariantVersionInfo() const {
303     return DarwinTargetVariantVersionInfo;
304   }
setDarwinTargetVariantBuildVersion(MachO::PlatformType Platform,unsigned Major,unsigned Minor,unsigned Update,VersionTuple SDKVersion)305   void setDarwinTargetVariantBuildVersion(MachO::PlatformType Platform,
306                                           unsigned Major, unsigned Minor,
307                                           unsigned Update,
308                                           VersionTuple SDKVersion) {
309     DarwinTargetVariantVersionInfo.EmitBuildVersion = true;
310     DarwinTargetVariantVersionInfo.TypeOrPlatform.Platform = Platform;
311     DarwinTargetVariantVersionInfo.Major = Major;
312     DarwinTargetVariantVersionInfo.Minor = Minor;
313     DarwinTargetVariantVersionInfo.Update = Update;
314     DarwinTargetVariantVersionInfo.SDKVersion = SDKVersion;
315   }
316 
317   /// Reuse an assembler instance
318   ///
319   void reset();
320 
getContext()321   MCContext &getContext() const { return Context; }
322 
getBackendPtr()323   MCAsmBackend *getBackendPtr() const { return Backend.get(); }
324 
getEmitterPtr()325   MCCodeEmitter *getEmitterPtr() const { return Emitter.get(); }
326 
getWriterPtr()327   MCObjectWriter *getWriterPtr() const { return Writer.get(); }
328 
getBackend()329   MCAsmBackend &getBackend() const { return *Backend; }
330 
getEmitter()331   MCCodeEmitter &getEmitter() const { return *Emitter; }
332 
getWriter()333   MCObjectWriter &getWriter() const { return *Writer; }
334 
getDWARFLinetableParams()335   MCDwarfLineTableParams getDWARFLinetableParams() const { return LTParams; }
setDWARFLinetableParams(MCDwarfLineTableParams P)336   void setDWARFLinetableParams(MCDwarfLineTableParams P) { LTParams = P; }
337 
338   /// Finish - Do final processing and write the object to the output stream.
339   /// \p Writer is used for custom object writer (as the MCJIT does),
340   /// if not specified it is automatically created from backend.
341   void Finish();
342 
343   // Layout all section and prepare them for emission.
344   void layout(MCAsmLayout &Layout);
345 
346   // FIXME: This does not belong here.
getSubsectionsViaSymbols()347   bool getSubsectionsViaSymbols() const { return SubsectionsViaSymbols; }
setSubsectionsViaSymbols(bool Value)348   void setSubsectionsViaSymbols(bool Value) { SubsectionsViaSymbols = Value; }
349 
isIncrementalLinkerCompatible()350   bool isIncrementalLinkerCompatible() const {
351     return IncrementalLinkerCompatible;
352   }
setIncrementalLinkerCompatible(bool Value)353   void setIncrementalLinkerCompatible(bool Value) {
354     IncrementalLinkerCompatible = Value;
355   }
356 
getRelaxAll()357   bool getRelaxAll() const { return RelaxAll; }
setRelaxAll(bool Value)358   void setRelaxAll(bool Value) { RelaxAll = Value; }
359 
isBundlingEnabled()360   bool isBundlingEnabled() const { return BundleAlignSize != 0; }
361 
getBundleAlignSize()362   unsigned getBundleAlignSize() const { return BundleAlignSize; }
363 
setBundleAlignSize(unsigned Size)364   void setBundleAlignSize(unsigned Size) {
365     assert((Size == 0 || !(Size & (Size - 1))) &&
366            "Expect a power-of-two bundle align size");
367     BundleAlignSize = Size;
368   }
369 
370   /// \name Section List Access
371   /// @{
372 
begin()373   iterator begin() { return Sections.begin(); }
begin()374   const_iterator begin() const { return Sections.begin(); }
375 
end()376   iterator end() { return Sections.end(); }
end()377   const_iterator end() const { return Sections.end(); }
378 
size()379   size_t size() const { return Sections.size(); }
380 
381   /// @}
382   /// \name Symbol List Access
383   /// @{
symbol_begin()384   symbol_iterator symbol_begin() { return Symbols.begin(); }
symbol_begin()385   const_symbol_iterator symbol_begin() const { return Symbols.begin(); }
386 
symbol_end()387   symbol_iterator symbol_end() { return Symbols.end(); }
symbol_end()388   const_symbol_iterator symbol_end() const { return Symbols.end(); }
389 
symbols()390   symbol_range symbols() { return make_range(symbol_begin(), symbol_end()); }
symbols()391   const_symbol_range symbols() const {
392     return make_range(symbol_begin(), symbol_end());
393   }
394 
symbol_size()395   size_t symbol_size() const { return Symbols.size(); }
396 
397   /// @}
398   /// \name Indirect Symbol List Access
399   /// @{
400 
401   // FIXME: This is a total hack, this should not be here. Once things are
402   // factored so that the streamer has direct access to the .o writer, it can
403   // disappear.
getIndirectSymbols()404   std::vector<IndirectSymbolData> &getIndirectSymbols() {
405     return IndirectSymbols;
406   }
407 
indirect_symbol_begin()408   indirect_symbol_iterator indirect_symbol_begin() {
409     return IndirectSymbols.begin();
410   }
indirect_symbol_begin()411   const_indirect_symbol_iterator indirect_symbol_begin() const {
412     return IndirectSymbols.begin();
413   }
414 
indirect_symbol_end()415   indirect_symbol_iterator indirect_symbol_end() {
416     return IndirectSymbols.end();
417   }
indirect_symbol_end()418   const_indirect_symbol_iterator indirect_symbol_end() const {
419     return IndirectSymbols.end();
420   }
421 
indirect_symbol_size()422   size_t indirect_symbol_size() const { return IndirectSymbols.size(); }
423 
424   /// @}
425   /// \name Linker Option List Access
426   /// @{
427 
getLinkerOptions()428   std::vector<std::vector<std::string>> &getLinkerOptions() {
429     return LinkerOptions;
430   }
431 
432   /// @}
433   /// \name Data Region List Access
434   /// @{
435 
436   // FIXME: This is a total hack, this should not be here. Once things are
437   // factored so that the streamer has direct access to the .o writer, it can
438   // disappear.
getDataRegions()439   std::vector<DataRegionData> &getDataRegions() { return DataRegions; }
440 
data_region_begin()441   data_region_iterator data_region_begin() { return DataRegions.begin(); }
data_region_begin()442   const_data_region_iterator data_region_begin() const {
443     return DataRegions.begin();
444   }
445 
data_region_end()446   data_region_iterator data_region_end() { return DataRegions.end(); }
data_region_end()447   const_data_region_iterator data_region_end() const {
448     return DataRegions.end();
449   }
450 
data_region_size()451   size_t data_region_size() const { return DataRegions.size(); }
452 
453   /// @}
454   /// \name Data Region List Access
455   /// @{
456 
457   // FIXME: This is a total hack, this should not be here. Once things are
458   // factored so that the streamer has direct access to the .o writer, it can
459   // disappear.
getLOHContainer()460   MCLOHContainer &getLOHContainer() { return LOHContainer; }
getLOHContainer()461   const MCLOHContainer &getLOHContainer() const {
462     return const_cast<MCAssembler *>(this)->getLOHContainer();
463   }
464 
465   struct CGProfileEntry {
466     const MCSymbolRefExpr *From;
467     const MCSymbolRefExpr *To;
468     uint64_t Count;
469   };
470   std::vector<CGProfileEntry> CGProfile;
471   /// @}
472   /// \name Backend Data Access
473   /// @{
474 
475   bool registerSection(MCSection &Section);
476 
477   void registerSymbol(const MCSymbol &Symbol, bool *Created = nullptr);
478 
getFileNames()479   MutableArrayRef<std::pair<std::string, size_t>> getFileNames() {
480     return FileNames;
481   }
482 
addFileName(StringRef FileName)483   void addFileName(StringRef FileName) {
484     FileNames.emplace_back(std::string(FileName), Symbols.size());
485   }
486 
487   /// Write the necessary bundle padding to \p OS.
488   /// Expects a fragment \p F containing instructions and its size \p FSize.
489   void writeFragmentPadding(raw_ostream &OS, const MCEncodedFragment &F,
490                             uint64_t FSize) const;
491 
492   /// @}
493 
494   void dump() const;
495 };
496 
497 /// Compute the amount of padding required before the fragment \p F to
498 /// obey bundling restrictions, where \p FOffset is the fragment's offset in
499 /// its section and \p FSize is the fragment's size.
500 uint64_t computeBundlePadding(const MCAssembler &Assembler,
501                               const MCEncodedFragment *F, uint64_t FOffset,
502                               uint64_t FSize);
503 
504 } // end namespace llvm
505 
506 #endif // LLVM_MC_MCASSEMBLER_H
507