blob: 84f33a7974af7ba81110ce8351db870b1b21e8c9 [file] [log] [blame]
Chris Lattnerbd199fb2002-12-24 00:01:05 +00001//===-- Emitter.cpp - Write machine code to executable memory -------------===//
John Criswellb576c942003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattnerbd199fb2002-12-24 00:01:05 +00009//
Chris Lattner5be478f2004-11-20 03:46:14 +000010// This file defines a MachineCodeEmitter object that is used by the JIT to
11// write machine code to memory and remember where relocatable values are.
Chris Lattnerbd199fb2002-12-24 00:01:05 +000012//
13//===----------------------------------------------------------------------===//
14
Chris Lattner3785fad2003-08-05 17:00:32 +000015#define DEBUG_TYPE "jit"
Chris Lattner4d326fa2003-12-20 01:46:27 +000016#include "JIT.h"
Chris Lattner2c0a6a12003-11-30 04:23:21 +000017#include "llvm/Constant.h"
18#include "llvm/Module.h"
Chris Lattnerbd199fb2002-12-24 00:01:05 +000019#include "llvm/CodeGen/MachineCodeEmitter.h"
20#include "llvm/CodeGen/MachineFunction.h"
Chris Lattner1cc08382003-01-13 01:00:12 +000021#include "llvm/CodeGen/MachineConstantPool.h"
Chris Lattner5be478f2004-11-20 03:46:14 +000022#include "llvm/CodeGen/MachineRelocation.h"
Chris Lattner1cc08382003-01-13 01:00:12 +000023#include "llvm/Target/TargetData.h"
Chris Lattner5be478f2004-11-20 03:46:14 +000024#include "llvm/Target/TargetJITInfo.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000025#include "llvm/Support/Debug.h"
26#include "llvm/ADT/Statistic.h"
Reid Spencer52b0ba62004-09-11 04:31:03 +000027#include "llvm/System/Memory.h"
Chris Lattnerc19aade2003-12-08 08:06:28 +000028using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000029
Chris Lattnerbd199fb2002-12-24 00:01:05 +000030namespace {
Chris Lattnere7386562003-10-20 05:45:49 +000031 Statistic<> NumBytes("jit", "Number of bytes of machine code compiled");
Chris Lattner4d326fa2003-12-20 01:46:27 +000032 JIT *TheJIT = 0;
Chris Lattner54266522004-11-20 23:57:07 +000033}
Chris Lattnerbd199fb2002-12-24 00:01:05 +000034
Chris Lattner54266522004-11-20 23:57:07 +000035
36//===----------------------------------------------------------------------===//
37// JITMemoryManager code.
38//
39namespace {
Chris Lattner688506d2003-08-14 18:35:27 +000040 /// JITMemoryManager - Manage memory for the JIT code generation in a logical,
41 /// sane way. This splits a large block of MAP_NORESERVE'd memory into two
42 /// sections, one for function stubs, one for the functions themselves. We
43 /// have to do this because we may need to emit a function stub while in the
44 /// middle of emitting a function, and we don't know how large the function we
45 /// are emitting is. This never bothers to release the memory, because when
46 /// we are ready to destroy the JIT, the program exits.
47 class JITMemoryManager {
Reid Spencer33189e72004-09-13 22:38:11 +000048 sys::MemoryBlock MemBlock; // Virtual memory block allocated RWX
Chris Lattner688506d2003-08-14 18:35:27 +000049 unsigned char *MemBase; // Base of block of memory, start of stub mem
50 unsigned char *FunctionBase; // Start of the function body area
51 unsigned char *CurStubPtr, *CurFunctionPtr;
52 public:
53 JITMemoryManager();
54
55 inline unsigned char *allocateStub(unsigned StubSize);
56 inline unsigned char *startFunctionBody();
57 inline void endFunctionBody(unsigned char *FunctionEnd);
58 };
59}
60
Chris Lattner688506d2003-08-14 18:35:27 +000061JITMemoryManager::JITMemoryManager() {
62 // Allocate a 16M block of memory...
Reid Spencer33189e72004-09-13 22:38:11 +000063 MemBlock = sys::Memory::AllocateRWX((16 << 20));
Reid Spencer52b0ba62004-09-11 04:31:03 +000064 MemBase = reinterpret_cast<unsigned char*>(MemBlock.base());
Chris Lattner688506d2003-08-14 18:35:27 +000065 FunctionBase = MemBase + 512*1024; // Use 512k for stubs
66
67 // Allocate stubs backwards from the function base, allocate functions forward
68 // from the function base.
69 CurStubPtr = CurFunctionPtr = FunctionBase;
70}
71
72unsigned char *JITMemoryManager::allocateStub(unsigned StubSize) {
73 CurStubPtr -= StubSize;
74 if (CurStubPtr < MemBase) {
75 std::cerr << "JIT ran out of memory for function stubs!\n";
76 abort();
77 }
78 return CurStubPtr;
79}
80
81unsigned char *JITMemoryManager::startFunctionBody() {
Chris Lattner5be478f2004-11-20 03:46:14 +000082 // Round up to an even multiple of 8 bytes, this should eventually be target
Chris Lattner688506d2003-08-14 18:35:27 +000083 // specific.
Chris Lattner5be478f2004-11-20 03:46:14 +000084 return (unsigned char*)(((intptr_t)CurFunctionPtr + 7) & ~7);
Chris Lattner688506d2003-08-14 18:35:27 +000085}
86
87void JITMemoryManager::endFunctionBody(unsigned char *FunctionEnd) {
88 assert(FunctionEnd > CurFunctionPtr);
89 CurFunctionPtr = FunctionEnd;
90}
91
Chris Lattner54266522004-11-20 23:57:07 +000092//===----------------------------------------------------------------------===//
93// JIT lazy compilation code.
94//
95namespace {
96 /// JITResolver - Keep track of, and resolve, call sites for functions that
97 /// have not yet been compiled.
98 class JITResolver {
99 /// The MCE to use to emit stubs with.
100 MachineCodeEmitter &MCE;
101
102 // FunctionToStubMap - Keep track of the stub created for a particular
103 // function so that we can reuse them if necessary.
104 std::map<Function*, void*> FunctionToStubMap;
105
106 // StubToFunctionMap - Keep track of the function that each stub corresponds
107 // to.
108 std::map<void*, Function*> StubToFunctionMap;
109
110 public:
111 JITResolver(MachineCodeEmitter &mce) : MCE(mce) {}
112
113 /// getFunctionStub - This returns a pointer to a function stub, creating
114 /// one on demand as needed.
115 void *getFunctionStub(Function *F);
116
117 /// JITCompilerFn - This function is called to resolve a stub to a compiled
118 /// address. If the LLVM Function corresponding to the stub has not yet
119 /// been compiled, this function compiles it first.
120 static void *JITCompilerFn(void *Stub);
121 };
122}
123
124/// getJITResolver - This function returns the one instance of the JIT resolver.
125///
126static JITResolver &getJITResolver(MachineCodeEmitter *MCE = 0) {
127 static JITResolver TheJITResolver(*MCE);
128 return TheJITResolver;
129}
130
131/// getFunctionStub - This returns a pointer to a function stub, creating
132/// one on demand as needed.
133void *JITResolver::getFunctionStub(Function *F) {
134 /// Get the target-specific JIT resolver function.
135 static TargetJITInfo::LazyResolverFn LazyResolverFn =
136 TheJIT->getJITInfo().getLazyResolverFunction(JITResolver::JITCompilerFn);
137
138 // If we already have a stub for this function, recycle it.
139 void *&Stub = FunctionToStubMap[F];
140 if (Stub) return Stub;
141
142 // Otherwise, codegen a new stub. For now, the stub will call the lazy
143 // resolver function.
144 Stub = TheJIT->getJITInfo().emitFunctionStub((void*)LazyResolverFn, MCE);
145
146 // Finally, keep track of the stub-to-Function mapping so that the
147 // JITCompilerFn knows which function to compile!
148 StubToFunctionMap[Stub] = F;
149 return Stub;
150}
151
152/// JITCompilerFn - This function is called when a lazy compilation stub has
153/// been entered. It looks up which function this stub corresponds to, compiles
154/// it if necessary, then returns the resultant function pointer.
155void *JITResolver::JITCompilerFn(void *Stub) {
156 JITResolver &JR = getJITResolver();
157
158 // The address given to us for the stub may not be exactly right, it might be
159 // a little bit after the stub. As such, use upper_bound to find it.
160 std::map<void*, Function*>::iterator I =
161 JR.StubToFunctionMap.upper_bound(Stub);
162 assert(I != JR.StubToFunctionMap.begin() && "This is not a known stub!");
163 Function *F = (--I)->second;
164
165 // The target function will rewrite the stub so that the compilation callback
166 // function is no longer called from this stub.
167 JR.StubToFunctionMap.erase(I);
168
169 DEBUG(std::cerr << "Lazily resolving function '" << F->getName()
170 << "' In stub ptr = " << Stub << " actual ptr = "
171 << I->first << "\n");
172
173 void *Result = TheJIT->getPointerToFunction(F);
174
175 // We don't need to reuse this stub in the future, as F is now compiled.
176 JR.FunctionToStubMap.erase(F);
177
178 // FIXME: We could rewrite all references to this stub if we knew them.
179 return Result;
180}
Chris Lattner688506d2003-08-14 18:35:27 +0000181
182
Chris Lattner54266522004-11-20 23:57:07 +0000183//===----------------------------------------------------------------------===//
184// JIT MachineCodeEmitter code.
185//
Chris Lattner688506d2003-08-14 18:35:27 +0000186namespace {
Brian Gaeke6020ddd2003-10-16 23:33:38 +0000187 /// Emitter - The JIT implementation of the MachineCodeEmitter, which is used
Chris Lattner688506d2003-08-14 18:35:27 +0000188 /// to output functions to memory for execution.
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000189 class Emitter : public MachineCodeEmitter {
Chris Lattner688506d2003-08-14 18:35:27 +0000190 JITMemoryManager MemMgr;
191
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000192 // CurBlock - The start of the current block of memory. CurByte - The
193 // current byte being emitted to.
Chris Lattner6125fdd2003-05-09 03:30:07 +0000194 unsigned char *CurBlock, *CurByte;
195
196 // When outputting a function stub in the context of some other function, we
197 // save CurBlock and CurByte here.
198 unsigned char *SavedCurBlock, *SavedCurByte;
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000199
200 // ConstantPoolAddresses - Contains the location for each entry in the
201 // constant pool.
Chris Lattner1cc08382003-01-13 01:00:12 +0000202 std::vector<void*> ConstantPoolAddresses;
Chris Lattner5be478f2004-11-20 03:46:14 +0000203
204 /// Relocations - These are the relocations that the function needs, as
205 /// emitted.
206 std::vector<MachineRelocation> Relocations;
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000207 public:
Chris Lattner4d326fa2003-12-20 01:46:27 +0000208 Emitter(JIT &jit) { TheJIT = &jit; }
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000209
210 virtual void startFunction(MachineFunction &F);
211 virtual void finishFunction(MachineFunction &F);
Chris Lattner1cc08382003-01-13 01:00:12 +0000212 virtual void emitConstantPool(MachineConstantPool *MCP);
Chris Lattner54266522004-11-20 23:57:07 +0000213 virtual void startFunctionStub(unsigned StubSize);
214 virtual void* finishFunctionStub(const Function *F);
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000215 virtual void emitByte(unsigned char B);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000216 virtual void emitWord(unsigned W);
Brian Gaekeaea1b582004-04-23 17:11:14 +0000217 virtual void emitWordAt(unsigned W, unsigned *Ptr);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000218
Chris Lattner5be478f2004-11-20 03:46:14 +0000219 virtual void addRelocation(const MachineRelocation &MR) {
220 Relocations.push_back(MR);
221 }
222
223 virtual uint64_t getCurrentPCValue();
224 virtual uint64_t getCurrentPCOffset();
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000225 virtual uint64_t getGlobalValueAddress(GlobalValue *V);
Chris Lattner45730d72004-11-19 20:56:46 +0000226 virtual uint64_t getGlobalValueAddress(const char *Name);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000227 virtual uint64_t getConstantPoolEntryAddress(unsigned Entry);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000228
229 // forceCompilationOf - Force the compilation of the specified function, and
230 // return its address, because we REALLY need the address now.
231 //
232 // FIXME: This is JIT specific!
233 //
234 virtual uint64_t forceCompilationOf(Function *F);
Chris Lattner54266522004-11-20 23:57:07 +0000235
236 private:
237 void *getPointerToGlobal(GlobalValue *GV);
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000238 };
239}
240
Chris Lattner4d326fa2003-12-20 01:46:27 +0000241MachineCodeEmitter *JIT::createEmitter(JIT &jit) {
242 return new Emitter(jit);
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000243}
244
Chris Lattner54266522004-11-20 23:57:07 +0000245void *Emitter::getPointerToGlobal(GlobalValue *V) {
246 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(V)) {
247 /// FIXME: If we straightened things out, this could actually emit the
248 /// global immediately instead of queuing it for codegen later!
249 GlobalVariable *GV = cast<GlobalVariable>(V);
250 return TheJIT->getOrEmitGlobalVariable(GV);
251 }
252
253 // If we have already compiled the function, return a pointer to its body.
254 Function *F = cast<Function>(V);
255 void *ResultPtr = TheJIT->getPointerToGlobalIfAvailable(F);
256 if (ResultPtr) return ResultPtr;
257
258 if (F->hasExternalLinkage()) {
259 // If this is an external function pointer, we can force the JIT to
260 // 'compile' it, which really just adds it to the map.
261 return TheJIT->getPointerToFunction(F);
262 }
263
264 // Otherwise, we have to emit a lazy resolving stub.
265 return getJITResolver(this).getFunctionStub(F);
266}
267
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000268void Emitter::startFunction(MachineFunction &F) {
Chris Lattner688506d2003-08-14 18:35:27 +0000269 CurByte = CurBlock = MemMgr.startFunctionBody();
Chris Lattner4d326fa2003-12-20 01:46:27 +0000270 TheJIT->addGlobalMapping(F.getFunction(), CurBlock);
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000271}
272
273void Emitter::finishFunction(MachineFunction &F) {
Chris Lattner688506d2003-08-14 18:35:27 +0000274 MemMgr.endFunctionBody(CurByte);
Chris Lattner1cc08382003-01-13 01:00:12 +0000275 ConstantPoolAddresses.clear();
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000276 NumBytes += CurByte-CurBlock;
277
Chris Lattner5be478f2004-11-20 03:46:14 +0000278 if (!Relocations.empty()) {
279 // Resolve the relocations to concrete pointers.
280 for (unsigned i = 0, e = Relocations.size(); i != e; ++i) {
281 MachineRelocation &MR = Relocations[i];
282 void *ResultPtr;
Chris Lattner54266522004-11-20 23:57:07 +0000283 if (MR.isString())
Chris Lattner5be478f2004-11-20 03:46:14 +0000284 ResultPtr = TheJIT->getPointerToNamedFunction(MR.getString());
Chris Lattner54266522004-11-20 23:57:07 +0000285 else
286 ResultPtr = getPointerToGlobal(MR.getGlobalValue());
Chris Lattner5be478f2004-11-20 03:46:14 +0000287 MR.setResultPointer(ResultPtr);
288 }
289
290 TheJIT->getJITInfo().relocate(CurBlock, &Relocations[0],
291 Relocations.size());
292 }
293
Brian Gaeke02c26b62003-06-30 18:06:20 +0000294 DEBUG(std::cerr << "Finished CodeGen of [" << (void*)CurBlock
Misha Brukman1d440852003-06-06 06:52:35 +0000295 << "] Function: " << F.getFunction()->getName()
Chris Lattner5be478f2004-11-20 03:46:14 +0000296 << ": " << CurByte-CurBlock << " bytes of text, "
297 << Relocations.size() << " relocations\n");
298 Relocations.clear();
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000299}
300
Chris Lattner1cc08382003-01-13 01:00:12 +0000301void Emitter::emitConstantPool(MachineConstantPool *MCP) {
302 const std::vector<Constant*> &Constants = MCP->getConstants();
Chris Lattner2c0a6a12003-11-30 04:23:21 +0000303 if (Constants.empty()) return;
304
305 std::vector<unsigned> ConstantOffset;
306 ConstantOffset.reserve(Constants.size());
307
308 // Calculate how much space we will need for all the constants, and the offset
309 // each one will live in.
310 unsigned TotalSize = 0;
Chris Lattner1cc08382003-01-13 01:00:12 +0000311 for (unsigned i = 0, e = Constants.size(); i != e; ++i) {
Chris Lattner2c0a6a12003-11-30 04:23:21 +0000312 const Type *Ty = Constants[i]->getType();
Chris Lattner4d326fa2003-12-20 01:46:27 +0000313 unsigned Size = TheJIT->getTargetData().getTypeSize(Ty);
314 unsigned Alignment = TheJIT->getTargetData().getTypeAlignment(Ty);
Chris Lattner2c0a6a12003-11-30 04:23:21 +0000315 // Make sure to take into account the alignment requirements of the type.
316 TotalSize = (TotalSize + Alignment-1) & ~(Alignment-1);
317
318 // Remember the offset this element lives at.
319 ConstantOffset.push_back(TotalSize);
320 TotalSize += Size; // Reserve space for the constant.
321 }
322
323 // Now that we know how much memory to allocate, do so.
324 char *Pool = new char[TotalSize];
325
326 // Actually output all of the constants, and remember their addresses.
327 for (unsigned i = 0, e = Constants.size(); i != e; ++i) {
328 void *Addr = Pool + ConstantOffset[i];
Chris Lattner4d326fa2003-12-20 01:46:27 +0000329 TheJIT->InitializeMemory(Constants[i], Addr);
Misha Brukman91de3522003-11-30 00:50:53 +0000330 ConstantPoolAddresses.push_back(Addr);
Chris Lattner1cc08382003-01-13 01:00:12 +0000331 }
332}
333
Chris Lattner54266522004-11-20 23:57:07 +0000334void Emitter::startFunctionStub(unsigned StubSize) {
Chris Lattner6125fdd2003-05-09 03:30:07 +0000335 SavedCurBlock = CurBlock; SavedCurByte = CurByte;
Chris Lattner688506d2003-08-14 18:35:27 +0000336 CurByte = CurBlock = MemMgr.allocateStub(StubSize);
Chris Lattner6125fdd2003-05-09 03:30:07 +0000337}
338
Chris Lattner54266522004-11-20 23:57:07 +0000339void *Emitter::finishFunctionStub(const Function *F) {
Chris Lattner6125fdd2003-05-09 03:30:07 +0000340 NumBytes += CurByte-CurBlock;
Chris Lattner54266522004-11-20 23:57:07 +0000341 DEBUG(std::cerr << "Finished CodeGen of [0x" << (void*)CurBlock
342 << "] Function stub for: " << (F ? F->getName() : "")
Chris Lattner6125fdd2003-05-09 03:30:07 +0000343 << ": " << CurByte-CurBlock << " bytes of text\n");
344 std::swap(CurBlock, SavedCurBlock);
345 CurByte = SavedCurByte;
346 return SavedCurBlock;
347}
348
Chris Lattnerbd199fb2002-12-24 00:01:05 +0000349void Emitter::emitByte(unsigned char B) {
350 *CurByte++ = B; // Write the byte to memory
351}
352
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000353void Emitter::emitWord(unsigned W) {
Chris Lattner688506d2003-08-14 18:35:27 +0000354 // This won't work if the endianness of the host and target don't agree! (For
355 // a JIT this can't happen though. :)
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000356 *(unsigned*)CurByte = W;
357 CurByte += sizeof(unsigned);
358}
359
Brian Gaekeaea1b582004-04-23 17:11:14 +0000360void Emitter::emitWordAt(unsigned W, unsigned *Ptr) {
361 *Ptr = W;
362}
363
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000364uint64_t Emitter::getGlobalValueAddress(GlobalValue *V) {
365 // Try looking up the function to see if it is already compiled, if not return
366 // 0.
Chris Lattner02376e32004-11-15 23:20:04 +0000367 if (Function *F = dyn_cast<Function>(V)) {
368 void *Addr = TheJIT->getPointerToGlobalIfAvailable(F);
369 if (Addr == 0 && F->hasExternalLinkage()) {
370 // Do not output stubs for external functions.
371 Addr = TheJIT->getPointerToFunction(F);
372 }
373 return (intptr_t)Addr;
374 } else {
Chris Lattnerc07ed132003-12-20 03:36:47 +0000375 return (intptr_t)TheJIT->getOrEmitGlobalVariable(cast<GlobalVariable>(V));
376 }
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000377}
Chris Lattner45730d72004-11-19 20:56:46 +0000378uint64_t Emitter::getGlobalValueAddress(const char *Name) {
Chris Lattner4d326fa2003-12-20 01:46:27 +0000379 return (intptr_t)TheJIT->getPointerToNamedFunction(Name);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000380}
381
382// getConstantPoolEntryAddress - Return the address of the 'ConstantNum' entry
383// in the constant pool that was last emitted with the 'emitConstantPool'
384// method.
385//
386uint64_t Emitter::getConstantPoolEntryAddress(unsigned ConstantNum) {
387 assert(ConstantNum < ConstantPoolAddresses.size() &&
388 "Invalid ConstantPoolIndex!");
389 return (intptr_t)ConstantPoolAddresses[ConstantNum];
390}
391
392// getCurrentPCValue - This returns the address that the next emitted byte
393// will be output to.
394//
395uint64_t Emitter::getCurrentPCValue() {
396 return (intptr_t)CurByte;
397}
398
Chris Lattner5be478f2004-11-20 03:46:14 +0000399uint64_t Emitter::getCurrentPCOffset() {
400 return (intptr_t)CurByte-(intptr_t)CurBlock;
401}
402
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000403uint64_t Emitter::forceCompilationOf(Function *F) {
Chris Lattner4d326fa2003-12-20 01:46:27 +0000404 return (intptr_t)TheJIT->getPointerToFunction(F);
Chris Lattnerbba1b6d2003-06-01 23:24:36 +0000405}
406
Misha Brukmand69c1e62003-07-28 19:09:06 +0000407// getPointerToNamedFunction - This function is used as a global wrapper to
Chris Lattner4d326fa2003-12-20 01:46:27 +0000408// JIT::getPointerToNamedFunction for the purpose of resolving symbols when
Misha Brukmand69c1e62003-07-28 19:09:06 +0000409// bugpoint is debugging the JIT. In that scenario, we are loading an .so and
410// need to resolve function(s) that are being mis-codegenerated, so we need to
411// resolve their addresses at runtime, and this is the way to do it.
412extern "C" {
413 void *getPointerToNamedFunction(const char *Name) {
Chris Lattner4d326fa2003-12-20 01:46:27 +0000414 Module &M = TheJIT->getModule();
Misha Brukmand69c1e62003-07-28 19:09:06 +0000415 if (Function *F = M.getNamedFunction(Name))
Chris Lattner4d326fa2003-12-20 01:46:27 +0000416 return TheJIT->getPointerToFunction(F);
417 return TheJIT->getPointerToNamedFunction(Name);
Misha Brukmand69c1e62003-07-28 19:09:06 +0000418 }
419}