1 //===------------- JITLink.cpp - Core Run-time JIT linker APIs ------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "llvm/ExecutionEngine/JITLink/JITLink.h"
11 
12 #include "llvm/BinaryFormat/Magic.h"
13 #include "llvm/ExecutionEngine/JITLink/MachO.h"
14 #include "llvm/Support/Format.h"
15 #include "llvm/Support/ManagedStatic.h"
16 #include "llvm/Support/MemoryBuffer.h"
17 #include "llvm/Support/raw_ostream.h"
18 
19 using namespace llvm;
20 using namespace llvm::object;
21 
22 #define DEBUG_TYPE "jitlink"
23 
24 namespace {
25 
26 enum JITLinkErrorCode { GenericJITLinkError = 1 };
27 
28 // FIXME: This class is only here to support the transition to llvm::Error. It
29 // will be removed once this transition is complete. Clients should prefer to
30 // deal with the Error value directly, rather than converting to error_code.
31 class JITLinkerErrorCategory : public std::error_category {
32 public:
name() const33   const char *name() const noexcept override { return "runtimedyld"; }
34 
message(int Condition) const35   std::string message(int Condition) const override {
36     switch (static_cast<JITLinkErrorCode>(Condition)) {
37     case GenericJITLinkError:
38       return "Generic JITLink error";
39     }
40     llvm_unreachable("Unrecognized JITLinkErrorCode");
41   }
42 };
43 
44 static ManagedStatic<JITLinkerErrorCategory> JITLinkerErrorCategory;
45 
46 } // namespace
47 
48 namespace llvm {
49 namespace jitlink {
50 
51 char JITLinkError::ID = 0;
52 
log(raw_ostream & OS) const53 void JITLinkError::log(raw_ostream &OS) const { OS << ErrMsg << "\n"; }
54 
convertToErrorCode() const55 std::error_code JITLinkError::convertToErrorCode() const {
56   return std::error_code(GenericJITLinkError, *JITLinkerErrorCategory);
57 }
58 
getGenericEdgeKindName(Edge::Kind K)59 const char *getGenericEdgeKindName(Edge::Kind K) {
60   switch (K) {
61   case Edge::Invalid:
62     return "INVALID RELOCATION";
63   case Edge::KeepAlive:
64     return "Keep-Alive";
65   default:
66     llvm_unreachable("Unrecognized relocation kind");
67   }
68 }
69 
getLinkageName(Linkage L)70 const char *getLinkageName(Linkage L) {
71   switch (L) {
72   case Linkage::Strong:
73     return "strong";
74   case Linkage::Weak:
75     return "weak";
76   }
77   llvm_unreachable("Unrecognized llvm.jitlink.Linkage enum");
78 }
79 
getScopeName(Scope S)80 const char *getScopeName(Scope S) {
81   switch (S) {
82   case Scope::Default:
83     return "default";
84   case Scope::Hidden:
85     return "hidden";
86   case Scope::Local:
87     return "local";
88   }
89   llvm_unreachable("Unrecognized llvm.jitlink.Scope enum");
90 }
91 
operator <<(raw_ostream & OS,const Block & B)92 raw_ostream &operator<<(raw_ostream &OS, const Block &B) {
93   return OS << formatv("{0:x16}", B.getAddress()) << " -- "
94             << formatv("{0:x16}", B.getAddress() + B.getSize()) << ": "
95             << (B.isZeroFill() ? "zero-fill" : "content")
96             << ", align = " << B.getAlignment()
97             << ", align-ofs = " << B.getAlignmentOffset()
98             << ", section = " << B.getSection().getName();
99 }
100 
operator <<(raw_ostream & OS,const Symbol & Sym)101 raw_ostream &operator<<(raw_ostream &OS, const Symbol &Sym) {
102   OS << "<";
103   if (Sym.getName().empty())
104     OS << "*anon*";
105   else
106     OS << Sym.getName();
107   OS << ": flags = ";
108   switch (Sym.getLinkage()) {
109   case Linkage::Strong:
110     OS << 'S';
111     break;
112   case Linkage::Weak:
113     OS << 'W';
114     break;
115   }
116   switch (Sym.getScope()) {
117   case Scope::Default:
118     OS << 'D';
119     break;
120   case Scope::Hidden:
121     OS << 'H';
122     break;
123   case Scope::Local:
124     OS << 'L';
125     break;
126   }
127   OS << (Sym.isLive() ? '+' : '-')
128      << ", size = " << formatv("{0:x8}", Sym.getSize())
129      << ", addr = " << formatv("{0:x16}", Sym.getAddress()) << " ("
130      << formatv("{0:x16}", Sym.getAddressable().getAddress()) << " + "
131      << formatv("{0:x8}", Sym.getOffset());
132   if (Sym.isDefined())
133     OS << " " << Sym.getBlock().getSection().getName();
134   OS << ")>";
135   return OS;
136 }
137 
printEdge(raw_ostream & OS,const Block & B,const Edge & E,StringRef EdgeKindName)138 void printEdge(raw_ostream &OS, const Block &B, const Edge &E,
139                StringRef EdgeKindName) {
140   OS << "edge@" << formatv("{0:x16}", B.getAddress() + E.getOffset()) << ": "
141      << formatv("{0:x16}", B.getAddress()) << " + " << E.getOffset() << " -- "
142      << EdgeKindName << " -> " << E.getTarget() << " + " << E.getAddend();
143 }
144 
~Section()145 Section::~Section() {
146   for (auto *Sym : Symbols)
147     Sym->~Symbol();
148   for (auto *B : Blocks)
149     B->~Block();
150 }
151 
splitBlock(Block & B,size_t SplitIndex,SplitBlockCache * Cache)152 Block &LinkGraph::splitBlock(Block &B, size_t SplitIndex,
153                              SplitBlockCache *Cache) {
154 
155   assert(SplitIndex > 0 && "splitBlock can not be called with SplitIndex == 0");
156 
157   // If the split point covers all of B then just return B.
158   if (SplitIndex == B.getSize())
159     return B;
160 
161   assert(SplitIndex < B.getSize() && "SplitIndex out of range");
162 
163   // Create the new block covering [ 0, SplitIndex ).
164   auto &NewBlock =
165       B.isZeroFill()
166           ? createZeroFillBlock(B.getSection(), SplitIndex, B.getAddress(),
167                                 B.getAlignment(), B.getAlignmentOffset())
168           : createContentBlock(
169                 B.getSection(), B.getContent().substr(0, SplitIndex),
170                 B.getAddress(), B.getAlignment(), B.getAlignmentOffset());
171 
172   // Modify B to cover [ SplitIndex, B.size() ).
173   B.setAddress(B.getAddress() + SplitIndex);
174   B.setContent(B.getContent().substr(SplitIndex));
175   B.setAlignmentOffset((B.getAlignmentOffset() + SplitIndex) %
176                        B.getAlignment());
177 
178   // Handle edge transfer/update.
179   {
180     // Copy edges to NewBlock (recording their iterators so that we can remove
181     // them from B), and update of Edges remaining on B.
182     std::vector<Block::edge_iterator> EdgesToRemove;
183     for (auto I = B.edges().begin(), E = B.edges().end(); I != E; ++I) {
184       if (I->getOffset() < SplitIndex) {
185         NewBlock.addEdge(*I);
186         EdgesToRemove.push_back(I);
187       } else
188         I->setOffset(I->getOffset() - SplitIndex);
189     }
190 
191     // Remove edges that were transfered to NewBlock from B.
192     while (!EdgesToRemove.empty()) {
193       B.removeEdge(EdgesToRemove.back());
194       EdgesToRemove.pop_back();
195     }
196   }
197 
198   // Handle symbol transfer/update.
199   {
200     // Initialize the symbols cache if necessary.
201     SplitBlockCache LocalBlockSymbolsCache;
202     if (!Cache)
203       Cache = &LocalBlockSymbolsCache;
204     if (*Cache == None) {
205       *Cache = SplitBlockCache::value_type();
206       for (auto *Sym : B.getSection().symbols())
207         if (&Sym->getBlock() == &B)
208           (*Cache)->push_back(Sym);
209 
210       llvm::sort(**Cache, [](const Symbol *LHS, const Symbol *RHS) {
211         return LHS->getOffset() > RHS->getOffset();
212       });
213     }
214     auto &BlockSymbols = **Cache;
215 
216     // Transfer all symbols with offset less than SplitIndex to NewBlock.
217     while (!BlockSymbols.empty() &&
218            BlockSymbols.back()->getOffset() < SplitIndex) {
219       BlockSymbols.back()->setBlock(NewBlock);
220       BlockSymbols.pop_back();
221     }
222 
223     // Update offsets for all remaining symbols in B.
224     for (auto *Sym : BlockSymbols)
225       Sym->setOffset(Sym->getOffset() - SplitIndex);
226   }
227 
228   return NewBlock;
229 }
230 
dump(raw_ostream & OS,std::function<StringRef (Edge::Kind)> EdgeKindToName)231 void LinkGraph::dump(raw_ostream &OS,
232                      std::function<StringRef(Edge::Kind)> EdgeKindToName) {
233   if (!EdgeKindToName)
234     EdgeKindToName = [](Edge::Kind K) { return StringRef(); };
235 
236   OS << "Symbols:\n";
237   for (auto *Sym : defined_symbols()) {
238     OS << "  " << format("0x%016" PRIx64, Sym->getAddress()) << ": " << *Sym
239        << "\n";
240     if (Sym->isDefined()) {
241       for (auto &E : Sym->getBlock().edges()) {
242         OS << "    ";
243         StringRef EdgeName = (E.getKind() < Edge::FirstRelocation
244                                   ? getGenericEdgeKindName(E.getKind())
245                                   : EdgeKindToName(E.getKind()));
246 
247         if (!EdgeName.empty())
248           printEdge(OS, Sym->getBlock(), E, EdgeName);
249         else {
250           auto EdgeNumberString = std::to_string(E.getKind());
251           printEdge(OS, Sym->getBlock(), E, EdgeNumberString);
252         }
253         OS << "\n";
254       }
255     }
256   }
257 
258   OS << "Absolute symbols:\n";
259   for (auto *Sym : absolute_symbols())
260     OS << "  " << format("0x%016" PRIx64, Sym->getAddress()) << ": " << *Sym
261        << "\n";
262 
263   OS << "External symbols:\n";
264   for (auto *Sym : external_symbols())
265     OS << "  " << format("0x%016" PRIx64, Sym->getAddress()) << ": " << *Sym
266        << "\n";
267 }
268 
operator <<(raw_ostream & OS,const SymbolLookupFlags & LF)269 raw_ostream &operator<<(raw_ostream &OS, const SymbolLookupFlags &LF) {
270   switch (LF) {
271   case SymbolLookupFlags::RequiredSymbol:
272     return OS << "RequiredSymbol";
273   case SymbolLookupFlags::WeaklyReferencedSymbol:
274     return OS << "WeaklyReferencedSymbol";
275   }
276   llvm_unreachable("Unrecognized lookup flags");
277 }
278 
anchor()279 void JITLinkAsyncLookupContinuation::anchor() {}
280 
~JITLinkContext()281 JITLinkContext::~JITLinkContext() {}
282 
shouldAddDefaultTargetPasses(const Triple & TT) const283 bool JITLinkContext::shouldAddDefaultTargetPasses(const Triple &TT) const {
284   return true;
285 }
286 
getMarkLivePass(const Triple & TT) const287 LinkGraphPassFunction JITLinkContext::getMarkLivePass(const Triple &TT) const {
288   return LinkGraphPassFunction();
289 }
290 
modifyPassConfig(const Triple & TT,PassConfiguration & Config)291 Error JITLinkContext::modifyPassConfig(const Triple &TT,
292                                        PassConfiguration &Config) {
293   return Error::success();
294 }
295 
markAllSymbolsLive(LinkGraph & G)296 Error markAllSymbolsLive(LinkGraph &G) {
297   for (auto *Sym : G.defined_symbols())
298     Sym->setLive(true);
299   return Error::success();
300 }
301 
jitLink(std::unique_ptr<JITLinkContext> Ctx)302 void jitLink(std::unique_ptr<JITLinkContext> Ctx) {
303   auto Magic = identify_magic(Ctx->getObjectBuffer().getBuffer());
304   switch (Magic) {
305   case file_magic::macho_object:
306     return jitLink_MachO(std::move(Ctx));
307   default:
308     Ctx->notifyFailed(make_error<JITLinkError>("Unsupported file format"));
309   };
310 }
311 
312 } // end namespace jitlink
313 } // end namespace llvm
314