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Reid Kleckner4b1511b2009-07-18 00:42:18 +00001//===- JITTest.cpp - Unit tests for the JIT -------------------------------===//
Jeffrey Yasskin489393d2009-07-08 21:59:57 +00002//
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 "gtest/gtest.h"
11#include "llvm/ADT/OwningPtr.h"
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000012#include "llvm/ADT/SmallPtrSet.h"
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +000013#include "llvm/Assembly/Parser.h"
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000014#include "llvm/BasicBlock.h"
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +000015#include "llvm/Bitcode/ReaderWriter.h"
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000016#include "llvm/Constant.h"
17#include "llvm/Constants.h"
18#include "llvm/DerivedTypes.h"
19#include "llvm/ExecutionEngine/JIT.h"
20#include "llvm/ExecutionEngine/JITMemoryManager.h"
21#include "llvm/Function.h"
22#include "llvm/GlobalValue.h"
23#include "llvm/GlobalVariable.h"
Reid Kleckner4b1511b2009-07-18 00:42:18 +000024#include "llvm/LLVMContext.h"
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000025#include "llvm/Module.h"
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000026#include "llvm/Support/IRBuilder.h"
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +000027#include "llvm/Support/MemoryBuffer.h"
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +000028#include "llvm/Support/SourceMgr.h"
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +000029#include "llvm/Support/TypeBuilder.h"
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000030#include "llvm/Target/TargetSelect.h"
31#include "llvm/Type.h"
32
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000033#include <vector>
34
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000035using namespace llvm;
36
37namespace {
38
39Function *makeReturnGlobal(std::string Name, GlobalVariable *G, Module *M) {
40 std::vector<const Type*> params;
Owen Andersondebcb012009-07-29 22:17:13 +000041 const FunctionType *FTy = FunctionType::get(G->getType()->getElementType(),
Dan Gohmanc6f40b62009-07-11 13:56:14 +000042 params, false);
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000043 Function *F = Function::Create(FTy, GlobalValue::ExternalLinkage, Name, M);
Owen Anderson1d0be152009-08-13 21:58:54 +000044 BasicBlock *Entry = BasicBlock::Create(M->getContext(), "entry", F);
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000045 IRBuilder<> builder(Entry);
46 Value *Load = builder.CreateLoad(G);
47 const Type *GTy = G->getType()->getElementType();
Owen Andersoneed707b2009-07-24 23:12:02 +000048 Value *Add = builder.CreateAdd(Load, ConstantInt::get(GTy, 1LL));
Jeffrey Yasskin489393d2009-07-08 21:59:57 +000049 builder.CreateStore(Add, G);
50 builder.CreateRet(Add);
51 return F;
52}
53
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000054std::string DumpFunction(const Function *F) {
55 std::string Result;
56 raw_string_ostream(Result) << "" << *F;
57 return Result;
58}
59
60class RecordingJITMemoryManager : public JITMemoryManager {
61 const OwningPtr<JITMemoryManager> Base;
62public:
63 RecordingJITMemoryManager()
64 : Base(JITMemoryManager::CreateDefaultMemManager()) {
Eric Christopher116664a2009-11-12 03:12:18 +000065 stubsAllocated = 0;
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000066 }
67
68 virtual void setMemoryWritable() { Base->setMemoryWritable(); }
69 virtual void setMemoryExecutable() { Base->setMemoryExecutable(); }
70 virtual void setPoisonMemory(bool poison) { Base->setPoisonMemory(poison); }
71 virtual void AllocateGOT() { Base->AllocateGOT(); }
72 virtual uint8_t *getGOTBase() const { return Base->getGOTBase(); }
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000073 struct StartFunctionBodyCall {
74 StartFunctionBodyCall(uint8_t *Result, const Function *F,
75 uintptr_t ActualSize, uintptr_t ActualSizeResult)
76 : Result(Result), F(F), F_dump(DumpFunction(F)),
77 ActualSize(ActualSize), ActualSizeResult(ActualSizeResult) {}
78 uint8_t *Result;
79 const Function *F;
80 std::string F_dump;
81 uintptr_t ActualSize;
82 uintptr_t ActualSizeResult;
83 };
84 std::vector<StartFunctionBodyCall> startFunctionBodyCalls;
85 virtual uint8_t *startFunctionBody(const Function *F,
86 uintptr_t &ActualSize) {
87 uintptr_t InitialActualSize = ActualSize;
88 uint8_t *Result = Base->startFunctionBody(F, ActualSize);
89 startFunctionBodyCalls.push_back(
90 StartFunctionBodyCall(Result, F, InitialActualSize, ActualSize));
91 return Result;
92 }
Eric Christopher116664a2009-11-12 03:12:18 +000093 int stubsAllocated;
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000094 virtual uint8_t *allocateStub(const GlobalValue* F, unsigned StubSize,
95 unsigned Alignment) {
Eric Christopher116664a2009-11-12 03:12:18 +000096 stubsAllocated++;
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +000097 return Base->allocateStub(F, StubSize, Alignment);
98 }
99 struct EndFunctionBodyCall {
100 EndFunctionBodyCall(const Function *F, uint8_t *FunctionStart,
101 uint8_t *FunctionEnd)
102 : F(F), F_dump(DumpFunction(F)),
103 FunctionStart(FunctionStart), FunctionEnd(FunctionEnd) {}
104 const Function *F;
105 std::string F_dump;
106 uint8_t *FunctionStart;
107 uint8_t *FunctionEnd;
108 };
109 std::vector<EndFunctionBodyCall> endFunctionBodyCalls;
110 virtual void endFunctionBody(const Function *F, uint8_t *FunctionStart,
111 uint8_t *FunctionEnd) {
112 endFunctionBodyCalls.push_back(
113 EndFunctionBodyCall(F, FunctionStart, FunctionEnd));
114 Base->endFunctionBody(F, FunctionStart, FunctionEnd);
115 }
116 virtual uint8_t *allocateSpace(intptr_t Size, unsigned Alignment) {
117 return Base->allocateSpace(Size, Alignment);
118 }
119 virtual uint8_t *allocateGlobal(uintptr_t Size, unsigned Alignment) {
120 return Base->allocateGlobal(Size, Alignment);
121 }
122 struct DeallocateFunctionBodyCall {
123 DeallocateFunctionBodyCall(const void *Body) : Body(Body) {}
124 const void *Body;
125 };
126 std::vector<DeallocateFunctionBodyCall> deallocateFunctionBodyCalls;
127 virtual void deallocateFunctionBody(void *Body) {
128 deallocateFunctionBodyCalls.push_back(DeallocateFunctionBodyCall(Body));
129 Base->deallocateFunctionBody(Body);
130 }
131 struct DeallocateExceptionTableCall {
132 DeallocateExceptionTableCall(const void *ET) : ET(ET) {}
133 const void *ET;
134 };
135 std::vector<DeallocateExceptionTableCall> deallocateExceptionTableCalls;
136 virtual void deallocateExceptionTable(void *ET) {
137 deallocateExceptionTableCalls.push_back(DeallocateExceptionTableCall(ET));
138 Base->deallocateExceptionTable(ET);
139 }
140 struct StartExceptionTableCall {
141 StartExceptionTableCall(uint8_t *Result, const Function *F,
142 uintptr_t ActualSize, uintptr_t ActualSizeResult)
143 : Result(Result), F(F), F_dump(DumpFunction(F)),
144 ActualSize(ActualSize), ActualSizeResult(ActualSizeResult) {}
145 uint8_t *Result;
146 const Function *F;
147 std::string F_dump;
148 uintptr_t ActualSize;
149 uintptr_t ActualSizeResult;
150 };
151 std::vector<StartExceptionTableCall> startExceptionTableCalls;
152 virtual uint8_t* startExceptionTable(const Function* F,
153 uintptr_t &ActualSize) {
154 uintptr_t InitialActualSize = ActualSize;
155 uint8_t *Result = Base->startExceptionTable(F, ActualSize);
156 startExceptionTableCalls.push_back(
157 StartExceptionTableCall(Result, F, InitialActualSize, ActualSize));
158 return Result;
159 }
160 struct EndExceptionTableCall {
161 EndExceptionTableCall(const Function *F, uint8_t *TableStart,
162 uint8_t *TableEnd, uint8_t* FrameRegister)
163 : F(F), F_dump(DumpFunction(F)),
164 TableStart(TableStart), TableEnd(TableEnd),
165 FrameRegister(FrameRegister) {}
166 const Function *F;
167 std::string F_dump;
168 uint8_t *TableStart;
169 uint8_t *TableEnd;
170 uint8_t *FrameRegister;
171 };
172 std::vector<EndExceptionTableCall> endExceptionTableCalls;
173 virtual void endExceptionTable(const Function *F, uint8_t *TableStart,
174 uint8_t *TableEnd, uint8_t* FrameRegister) {
175 endExceptionTableCalls.push_back(
176 EndExceptionTableCall(F, TableStart, TableEnd, FrameRegister));
177 return Base->endExceptionTable(F, TableStart, TableEnd, FrameRegister);
178 }
179};
180
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000181bool LoadAssemblyInto(Module *M, const char *assembly) {
182 SMDiagnostic Error;
183 bool success =
184 NULL != ParseAssemblyString(assembly, M, Error, M->getContext());
185 std::string errMsg;
186 raw_string_ostream os(errMsg);
187 Error.Print("", os);
188 EXPECT_TRUE(success) << os.str();
189 return success;
190}
191
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000192class JITTest : public testing::Test {
193 protected:
194 virtual void SetUp() {
195 M = new Module("<main>", Context);
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000196 RJMM = new RecordingJITMemoryManager;
Jeffrey Yasskin108c8382009-11-23 23:35:19 +0000197 RJMM->setPoisonMemory(true);
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000198 std::string Error;
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000199 TheJIT.reset(EngineBuilder(M).setEngineKind(EngineKind::JIT)
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000200 .setJITMemoryManager(RJMM)
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000201 .setErrorStr(&Error).create());
202 ASSERT_TRUE(TheJIT.get() != NULL) << Error;
203 }
204
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +0000205 void LoadAssembly(const char *assembly) {
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000206 LoadAssemblyInto(M, assembly);
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +0000207 }
208
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000209 LLVMContext Context;
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000210 Module *M; // Owned by ExecutionEngine.
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000211 RecordingJITMemoryManager *RJMM;
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000212 OwningPtr<ExecutionEngine> TheJIT;
213};
214
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000215// Regression test for a bug. The JIT used to allocate globals inside the same
216// memory block used for the function, and when the function code was freed,
217// the global was left in the same place. This test allocates a function
218// that uses and global, deallocates it, and then makes sure that the global
219// stays alive after that.
220TEST(JIT, GlobalInFunction) {
221 LLVMContext context;
222 Module *M = new Module("<main>", context);
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000223
224 JITMemoryManager *MemMgr = JITMemoryManager::CreateDefaultMemManager();
225 // Tell the memory manager to poison freed memory so that accessing freed
226 // memory is more easily tested.
227 MemMgr->setPoisonMemory(true);
228 std::string Error;
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000229 OwningPtr<ExecutionEngine> JIT(EngineBuilder(M)
Daniel Dunbard370d772009-07-18 06:08:49 +0000230 .setEngineKind(EngineKind::JIT)
Reid Kleckner4b1511b2009-07-18 00:42:18 +0000231 .setErrorStr(&Error)
232 .setJITMemoryManager(MemMgr)
233 // The next line enables the fix:
234 .setAllocateGVsWithCode(false)
235 .create());
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000236 ASSERT_EQ(Error, "");
237
238 // Create a global variable.
Owen Anderson1d0be152009-08-13 21:58:54 +0000239 const Type *GTy = Type::getInt32Ty(context);
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000240 GlobalVariable *G = new GlobalVariable(
241 *M,
242 GTy,
243 false, // Not constant.
244 GlobalValue::InternalLinkage,
Benjamin Kramerfeba7562009-07-31 20:56:31 +0000245 Constant::getNullValue(GTy),
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000246 "myglobal");
247
248 // Make a function that points to a global.
249 Function *F1 = makeReturnGlobal("F1", G, M);
250
251 // Get the pointer to the native code to force it to JIT the function and
252 // allocate space for the global.
Jeffrey Yasskin0f2ba782009-10-06 19:06:16 +0000253 void (*F1Ptr)() =
254 reinterpret_cast<void(*)()>((intptr_t)JIT->getPointerToFunction(F1));
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000255
256 // Since F1 was codegen'd, a pointer to G should be available.
257 int32_t *GPtr = (int32_t*)JIT->getPointerToGlobalIfAvailable(G);
258 ASSERT_NE((int32_t*)NULL, GPtr);
259 EXPECT_EQ(0, *GPtr);
260
261 // F1() should increment G.
262 F1Ptr();
263 EXPECT_EQ(1, *GPtr);
264
265 // Make a second function identical to the first, referring to the same
266 // global.
267 Function *F2 = makeReturnGlobal("F2", G, M);
Jeffrey Yasskin0f2ba782009-10-06 19:06:16 +0000268 void (*F2Ptr)() =
269 reinterpret_cast<void(*)()>((intptr_t)JIT->getPointerToFunction(F2));
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000270
271 // F2() should increment G.
272 F2Ptr();
273 EXPECT_EQ(2, *GPtr);
274
275 // Deallocate F1.
276 JIT->freeMachineCodeForFunction(F1);
277
278 // F2() should *still* increment G.
279 F2Ptr();
280 EXPECT_EQ(3, *GPtr);
281}
282
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000283int PlusOne(int arg) {
284 return arg + 1;
285}
286
287TEST_F(JITTest, FarCallToKnownFunction) {
288 // x86-64 can only make direct calls to functions within 32 bits of
289 // the current PC. To call anything farther away, we have to load
290 // the address into a register and call through the register. The
291 // current JIT does this by allocating a stub for any far call.
292 // There was a bug in which the JIT tried to emit a direct call when
293 // the target was already in the JIT's global mappings and lazy
294 // compilation was disabled.
295
296 Function *KnownFunction = Function::Create(
297 TypeBuilder<int(int), false>::get(Context),
298 GlobalValue::ExternalLinkage, "known", M);
299 TheJIT->addGlobalMapping(KnownFunction, (void*)(intptr_t)PlusOne);
300
301 // int test() { return known(7); }
302 Function *TestFunction = Function::Create(
303 TypeBuilder<int(), false>::get(Context),
304 GlobalValue::ExternalLinkage, "test", M);
305 BasicBlock *Entry = BasicBlock::Create(Context, "entry", TestFunction);
306 IRBuilder<> Builder(Entry);
307 Value *result = Builder.CreateCall(
308 KnownFunction,
309 ConstantInt::get(TypeBuilder<int, false>::get(Context), 7));
310 Builder.CreateRet(result);
311
Jeffrey Yasskin18fec732009-10-27 22:39:42 +0000312 TheJIT->DisableLazyCompilation(true);
Jeffrey Yasskinea5ed002009-10-06 00:35:55 +0000313 int (*TestFunctionPtr)() = reinterpret_cast<int(*)()>(
314 (intptr_t)TheJIT->getPointerToFunction(TestFunction));
315 // This used to crash in trying to call PlusOne().
316 EXPECT_EQ(8, TestFunctionPtr());
317}
318
Jeffrey Yasskine5f87982009-10-13 21:32:57 +0000319// Test a function C which calls A and B which call each other.
320TEST_F(JITTest, NonLazyCompilationStillNeedsStubs) {
Jeffrey Yasskin18fec732009-10-27 22:39:42 +0000321 TheJIT->DisableLazyCompilation(true);
Jeffrey Yasskine5f87982009-10-13 21:32:57 +0000322
323 const FunctionType *Func1Ty =
324 cast<FunctionType>(TypeBuilder<void(void), false>::get(Context));
325 std::vector<const Type*> arg_types;
326 arg_types.push_back(Type::getInt1Ty(Context));
327 const FunctionType *FuncTy = FunctionType::get(
328 Type::getVoidTy(Context), arg_types, false);
329 Function *Func1 = Function::Create(Func1Ty, Function::ExternalLinkage,
330 "func1", M);
331 Function *Func2 = Function::Create(FuncTy, Function::InternalLinkage,
332 "func2", M);
333 Function *Func3 = Function::Create(FuncTy, Function::InternalLinkage,
334 "func3", M);
335 BasicBlock *Block1 = BasicBlock::Create(Context, "block1", Func1);
336 BasicBlock *Block2 = BasicBlock::Create(Context, "block2", Func2);
337 BasicBlock *True2 = BasicBlock::Create(Context, "cond_true", Func2);
338 BasicBlock *False2 = BasicBlock::Create(Context, "cond_false", Func2);
339 BasicBlock *Block3 = BasicBlock::Create(Context, "block3", Func3);
340 BasicBlock *True3 = BasicBlock::Create(Context, "cond_true", Func3);
341 BasicBlock *False3 = BasicBlock::Create(Context, "cond_false", Func3);
342
343 // Make Func1 call Func2(0) and Func3(0).
344 IRBuilder<> Builder(Block1);
345 Builder.CreateCall(Func2, ConstantInt::getTrue(Context));
346 Builder.CreateCall(Func3, ConstantInt::getTrue(Context));
347 Builder.CreateRetVoid();
348
349 // void Func2(bool b) { if (b) { Func3(false); return; } return; }
350 Builder.SetInsertPoint(Block2);
351 Builder.CreateCondBr(Func2->arg_begin(), True2, False2);
352 Builder.SetInsertPoint(True2);
353 Builder.CreateCall(Func3, ConstantInt::getFalse(Context));
354 Builder.CreateRetVoid();
355 Builder.SetInsertPoint(False2);
356 Builder.CreateRetVoid();
357
358 // void Func3(bool b) { if (b) { Func2(false); return; } return; }
359 Builder.SetInsertPoint(Block3);
360 Builder.CreateCondBr(Func3->arg_begin(), True3, False3);
361 Builder.SetInsertPoint(True3);
362 Builder.CreateCall(Func2, ConstantInt::getFalse(Context));
363 Builder.CreateRetVoid();
364 Builder.SetInsertPoint(False3);
365 Builder.CreateRetVoid();
366
367 // Compile the function to native code
368 void (*F1Ptr)() =
369 reinterpret_cast<void(*)()>((intptr_t)TheJIT->getPointerToFunction(Func1));
370
371 F1Ptr();
372}
373
374// Regression test for PR5162. This used to trigger an AssertingVH inside the
375// JIT's Function to stub mapping.
376TEST_F(JITTest, NonLazyLeaksNoStubs) {
Jeffrey Yasskin18fec732009-10-27 22:39:42 +0000377 TheJIT->DisableLazyCompilation(true);
Jeffrey Yasskine5f87982009-10-13 21:32:57 +0000378
379 // Create two functions with a single basic block each.
380 const FunctionType *FuncTy =
381 cast<FunctionType>(TypeBuilder<int(), false>::get(Context));
382 Function *Func1 = Function::Create(FuncTy, Function::ExternalLinkage,
383 "func1", M);
384 Function *Func2 = Function::Create(FuncTy, Function::InternalLinkage,
385 "func2", M);
386 BasicBlock *Block1 = BasicBlock::Create(Context, "block1", Func1);
387 BasicBlock *Block2 = BasicBlock::Create(Context, "block2", Func2);
388
389 // The first function calls the second and returns the result
390 IRBuilder<> Builder(Block1);
391 Value *Result = Builder.CreateCall(Func2);
392 Builder.CreateRet(Result);
393
394 // The second function just returns a constant
395 Builder.SetInsertPoint(Block2);
396 Builder.CreateRet(ConstantInt::get(TypeBuilder<int, false>::get(Context),42));
397
398 // Compile the function to native code
399 (void)TheJIT->getPointerToFunction(Func1);
400
401 // Free the JIT state for the functions
402 TheJIT->freeMachineCodeForFunction(Func1);
403 TheJIT->freeMachineCodeForFunction(Func2);
404
405 // Delete the first function (and show that is has no users)
406 EXPECT_EQ(Func1->getNumUses(), 0u);
407 Func1->eraseFromParent();
408
409 // Delete the second function (and show that it has no users - it had one,
410 // func1 but that's gone now)
411 EXPECT_EQ(Func2->getNumUses(), 0u);
412 Func2->eraseFromParent();
413}
414
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +0000415TEST_F(JITTest, ModuleDeletion) {
Jeffrey Yasskinb2352242009-10-28 00:28:31 +0000416 TheJIT->DisableLazyCompilation(false);
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +0000417 LoadAssembly("define void @main() { "
418 " call i32 @computeVal() "
419 " ret void "
420 "} "
421 " "
422 "define internal i32 @computeVal() { "
423 " ret i32 0 "
424 "} ");
425 Function *func = M->getFunction("main");
426 TheJIT->getPointerToFunction(func);
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000427 TheJIT->removeModule(M);
428 delete M;
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000429
430 SmallPtrSet<const void*, 2> FunctionsDeallocated;
431 for (unsigned i = 0, e = RJMM->deallocateFunctionBodyCalls.size();
432 i != e; ++i) {
433 FunctionsDeallocated.insert(RJMM->deallocateFunctionBodyCalls[i].Body);
434 }
435 for (unsigned i = 0, e = RJMM->startFunctionBodyCalls.size(); i != e; ++i) {
436 EXPECT_TRUE(FunctionsDeallocated.count(
437 RJMM->startFunctionBodyCalls[i].Result))
438 << "Function leaked: \n" << RJMM->startFunctionBodyCalls[i].F_dump;
439 }
440 EXPECT_EQ(RJMM->startFunctionBodyCalls.size(),
441 RJMM->deallocateFunctionBodyCalls.size());
442
443 SmallPtrSet<const void*, 2> ExceptionTablesDeallocated;
Jeffrey Yasskinb069c912009-11-11 05:30:02 +0000444 unsigned NumTablesDeallocated = 0;
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000445 for (unsigned i = 0, e = RJMM->deallocateExceptionTableCalls.size();
446 i != e; ++i) {
447 ExceptionTablesDeallocated.insert(
448 RJMM->deallocateExceptionTableCalls[i].ET);
Jeffrey Yasskinb069c912009-11-11 05:30:02 +0000449 if (RJMM->deallocateExceptionTableCalls[i].ET != NULL) {
450 // If JITEmitDebugInfo is off, we'll "deallocate" NULL, which doesn't
451 // appear in startExceptionTableCalls.
452 NumTablesDeallocated++;
453 }
Jeffrey Yasskin7a9034c2009-10-27 00:03:05 +0000454 }
455 for (unsigned i = 0, e = RJMM->startExceptionTableCalls.size(); i != e; ++i) {
456 EXPECT_TRUE(ExceptionTablesDeallocated.count(
457 RJMM->startExceptionTableCalls[i].Result))
458 << "Function's exception table leaked: \n"
459 << RJMM->startExceptionTableCalls[i].F_dump;
460 }
461 EXPECT_EQ(RJMM->startExceptionTableCalls.size(),
Jeffrey Yasskinb069c912009-11-11 05:30:02 +0000462 NumTablesDeallocated);
Jeffrey Yasskin23e5fcf2009-10-23 22:37:43 +0000463}
464
Jeffrey Yasskin630382a2009-11-24 02:11:14 +0000465// ARM and PPC still emit stubs for calls since the target may be too far away
466// to call directly. This #if can probably be removed when
467// http://llvm.org/PR5201 is fixed.
468#if !defined(__arm__) && !defined(__powerpc__) && !defined(__ppc__)
Eric Christopher116664a2009-11-12 03:12:18 +0000469typedef int (*FooPtr) ();
470
471TEST_F(JITTest, NoStubs) {
472 LoadAssembly("define void @bar() {"
473 "entry: "
474 "ret void"
475 "}"
476 " "
477 "define i32 @foo() {"
478 "entry:"
479 "call void @bar()"
480 "ret i32 undef"
481 "}"
482 " "
483 "define i32 @main() {"
484 "entry:"
485 "%0 = call i32 @foo()"
486 "call void @bar()"
487 "ret i32 undef"
488 "}");
489 Function *foo = M->getFunction("foo");
490 uintptr_t tmp = (uintptr_t)(TheJIT->getPointerToFunction(foo));
491 FooPtr ptr = (FooPtr)(tmp);
492
493 (ptr)();
494
495 // We should now allocate no more stubs, we have the code to foo
496 // and the existing stub for bar.
497 int stubsBefore = RJMM->stubsAllocated;
498 Function *func = M->getFunction("main");
499 TheJIT->getPointerToFunction(func);
500
501 Function *bar = M->getFunction("bar");
502 TheJIT->getPointerToFunction(bar);
503
504 ASSERT_EQ(stubsBefore, RJMM->stubsAllocated);
505}
Jeffrey Yasskin630382a2009-11-24 02:11:14 +0000506#endif // !ARM && !PPC
Jeffrey Yasskin108c8382009-11-23 23:35:19 +0000507
508TEST_F(JITTest, FunctionPointersOutliveTheirCreator) {
509 TheJIT->DisableLazyCompilation(true);
510 LoadAssembly("define i8()* @get_foo_addr() { "
511 " ret i8()* @foo "
512 "} "
513 " "
514 "define i8 @foo() { "
515 " ret i8 42 "
516 "} ");
517 Function *F_get_foo_addr = M->getFunction("get_foo_addr");
518
519 typedef char(*fooT)();
520 fooT (*get_foo_addr)() = reinterpret_cast<fooT(*)()>(
521 (intptr_t)TheJIT->getPointerToFunction(F_get_foo_addr));
522 fooT foo_addr = get_foo_addr();
523
524 // Now free get_foo_addr. This should not free the machine code for foo or
525 // any call stub returned as foo's canonical address.
526 TheJIT->freeMachineCodeForFunction(F_get_foo_addr);
527
528 // Check by calling the reported address of foo.
529 EXPECT_EQ(42, foo_addr());
530
531 // The reported address should also be the same as the result of a subsequent
532 // getPointerToFunction(foo).
533#if 0
534 // Fails until PR5126 is fixed:
535 Function *F_foo = M->getFunction("foo");
536 fooT foo = reinterpret_cast<fooT>(
537 (intptr_t)TheJIT->getPointerToFunction(F_foo));
538 EXPECT_EQ((intptr_t)foo, (intptr_t)foo_addr);
Bill Wendling0c2749f2009-11-13 21:58:54 +0000539#endif
Jeffrey Yasskin108c8382009-11-23 23:35:19 +0000540}
Eric Christopher116664a2009-11-12 03:12:18 +0000541
Jeffrey Yasskinb9b88ea2009-12-23 00:58:02 +0000542// ARM doesn't have an implementation of replaceMachineCodeForFunction(), so
543// recompileAndRelinkFunction doesn't work.
544#if !defined(__arm__)
Jeffrey Yasskin92fdf452009-12-22 23:18:18 +0000545TEST_F(JITTest, FunctionIsRecompiledAndRelinked) {
546 Function *F = Function::Create(TypeBuilder<int(void), false>::get(Context),
547 GlobalValue::ExternalLinkage, "test", M);
548 BasicBlock *Entry = BasicBlock::Create(Context, "entry", F);
549 IRBuilder<> Builder(Entry);
550 Value *Val = ConstantInt::get(TypeBuilder<int, false>::get(Context), 1);
551 Builder.CreateRet(Val);
552
553 TheJIT->DisableLazyCompilation(true);
554 // Compile the function once, and make sure it works.
555 int (*OrigFPtr)() = reinterpret_cast<int(*)()>(
556 (intptr_t)TheJIT->recompileAndRelinkFunction(F));
557 EXPECT_EQ(1, OrigFPtr());
558
559 // Now change the function to return a different value.
560 Entry->eraseFromParent();
561 BasicBlock *NewEntry = BasicBlock::Create(Context, "new_entry", F);
562 Builder.SetInsertPoint(NewEntry);
563 Val = ConstantInt::get(TypeBuilder<int, false>::get(Context), 2);
564 Builder.CreateRet(Val);
565 // Recompile it, which should produce a new function pointer _and_ update the
566 // old one.
567 int (*NewFPtr)() = reinterpret_cast<int(*)()>(
568 (intptr_t)TheJIT->recompileAndRelinkFunction(F));
569
570 EXPECT_EQ(2, NewFPtr())
571 << "The new pointer should call the new version of the function";
572 EXPECT_EQ(2, OrigFPtr())
573 << "The old pointer's target should now jump to the new version";
574}
Jeffrey Yasskinb9b88ea2009-12-23 00:58:02 +0000575#endif // !defined(__arm__)
Jeffrey Yasskin92fdf452009-12-22 23:18:18 +0000576
Jeffrey Yasskin898e9df2009-12-13 20:30:32 +0000577} // anonymous namespace
578// This variable is intentionally defined differently in the statically-compiled
579// program from the IR input to the JIT to assert that the JIT doesn't use its
580// definition.
581extern "C" int32_t JITTest_AvailableExternallyGlobal;
582int32_t JITTest_AvailableExternallyGlobal = 42;
583namespace {
584
585TEST_F(JITTest, AvailableExternallyGlobalIsntEmitted) {
586 TheJIT->DisableLazyCompilation(true);
587 LoadAssembly("@JITTest_AvailableExternallyGlobal = "
588 " available_externally global i32 7 "
589 " "
590 "define i32 @loader() { "
591 " %result = load i32* @JITTest_AvailableExternallyGlobal "
592 " ret i32 %result "
593 "} ");
594 Function *loaderIR = M->getFunction("loader");
595
596 int32_t (*loader)() = reinterpret_cast<int32_t(*)()>(
597 (intptr_t)TheJIT->getPointerToFunction(loaderIR));
598 EXPECT_EQ(42, loader()) << "func should return 42 from the external global,"
599 << " not 7 from the IR version.";
600}
601
Jeffrey Yasskinaad0d522009-12-17 21:35:29 +0000602} // anonymous namespace
603// This function is intentionally defined differently in the statically-compiled
604// program from the IR input to the JIT to assert that the JIT doesn't use its
605// definition.
606extern "C" int32_t JITTest_AvailableExternallyFunction() {
607 return 42;
608}
609namespace {
610
611TEST_F(JITTest, AvailableExternallyFunctionIsntCompiled) {
612 TheJIT->DisableLazyCompilation(true);
613 LoadAssembly("define available_externally i32 "
614 " @JITTest_AvailableExternallyFunction() { "
615 " ret i32 7 "
616 "} "
617 " "
618 "define i32 @func() { "
619 " %result = tail call i32 "
620 " @JITTest_AvailableExternallyFunction() "
621 " ret i32 %result "
622 "} ");
623 Function *funcIR = M->getFunction("func");
624
625 int32_t (*func)() = reinterpret_cast<int32_t(*)()>(
626 (intptr_t)TheJIT->getPointerToFunction(funcIR));
627 EXPECT_EQ(42, func()) << "func should return 42 from the static version,"
628 << " not 7 from the IR version.";
629}
630
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000631// Converts the LLVM assembly to bitcode and returns it in a std::string. An
632// empty string indicates an error.
633std::string AssembleToBitcode(LLVMContext &Context, const char *Assembly) {
634 Module TempModule("TempModule", Context);
635 if (!LoadAssemblyInto(&TempModule, Assembly)) {
636 return "";
637 }
638
639 std::string Result;
640 raw_string_ostream OS(Result);
641 WriteBitcodeToFile(&TempModule, OS);
642 OS.flush();
643 return Result;
644}
645
646// Returns a newly-created ExecutionEngine that reads the bitcode in 'Bitcode'
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000647// lazily. The associated Module (owned by the ExecutionEngine) is returned in
648// M. Both will be NULL on an error. Bitcode must live at least as long as the
649// ExecutionEngine.
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000650ExecutionEngine *getJITFromBitcode(
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000651 LLVMContext &Context, const std::string &Bitcode, Module *&M) {
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000652 // c_str() is null-terminated like MemoryBuffer::getMemBuffer requires.
653 MemoryBuffer *BitcodeBuffer =
654 MemoryBuffer::getMemBuffer(Bitcode.c_str(),
655 Bitcode.c_str() + Bitcode.size(),
656 "Bitcode for test");
657 std::string errMsg;
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000658 M = getLazyBitcodeModule(BitcodeBuffer, Context, &errMsg);
659 if (M == NULL) {
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000660 ADD_FAILURE() << errMsg;
661 delete BitcodeBuffer;
662 return NULL;
663 }
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000664 ExecutionEngine *TheJIT = EngineBuilder(M)
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000665 .setEngineKind(EngineKind::JIT)
666 .setErrorStr(&errMsg)
667 .create();
668 if (TheJIT == NULL) {
669 ADD_FAILURE() << errMsg;
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000670 delete M;
671 M = NULL;
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000672 return NULL;
673 }
674 return TheJIT;
675}
676
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000677TEST(LazyLoadedJITTest, MaterializableAvailableExternallyFunctionIsntCompiled) {
678 LLVMContext Context;
679 const std::string Bitcode =
680 AssembleToBitcode(Context,
681 "define available_externally i32 "
682 " @JITTest_AvailableExternallyFunction() { "
683 " ret i32 7 "
684 "} "
685 " "
686 "define i32 @func() { "
687 " %result = tail call i32 "
688 " @JITTest_AvailableExternallyFunction() "
689 " ret i32 %result "
690 "} ");
691 ASSERT_FALSE(Bitcode.empty()) << "Assembling failed";
692 Module *M;
693 OwningPtr<ExecutionEngine> TheJIT(getJITFromBitcode(Context, Bitcode, M));
694 ASSERT_TRUE(TheJIT.get()) << "Failed to create JIT.";
695 TheJIT->DisableLazyCompilation(true);
696
697 Function *funcIR = M->getFunction("func");
698 Function *availableFunctionIR =
699 M->getFunction("JITTest_AvailableExternallyFunction");
700
701 // Double-check that the available_externally function is still unmaterialized
702 // when getPointerToFunction needs to find out if it's available_externally.
703 EXPECT_TRUE(availableFunctionIR->isMaterializable());
704
705 int32_t (*func)() = reinterpret_cast<int32_t(*)()>(
706 (intptr_t)TheJIT->getPointerToFunction(funcIR));
707 EXPECT_EQ(42, func()) << "func should return 42 from the static version,"
708 << " not 7 from the IR version.";
709}
710
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000711TEST(LazyLoadedJITTest, EagerCompiledRecursionThroughGhost) {
712 LLVMContext Context;
713 const std::string Bitcode =
714 AssembleToBitcode(Context,
715 "define i32 @recur1(i32 %a) { "
716 " %zero = icmp eq i32 %a, 0 "
717 " br i1 %zero, label %done, label %notdone "
718 "done: "
719 " ret i32 3 "
720 "notdone: "
721 " %am1 = sub i32 %a, 1 "
722 " %result = call i32 @recur2(i32 %am1) "
723 " ret i32 %result "
724 "} "
725 " "
726 "define i32 @recur2(i32 %b) { "
727 " %result = call i32 @recur1(i32 %b) "
728 " ret i32 %result "
729 "} ");
730 ASSERT_FALSE(Bitcode.empty()) << "Assembling failed";
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000731 Module *M;
732 OwningPtr<ExecutionEngine> TheJIT(getJITFromBitcode(Context, Bitcode, M));
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000733 ASSERT_TRUE(TheJIT.get()) << "Failed to create JIT.";
734 TheJIT->DisableLazyCompilation(true);
735
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000736 Function *recur1IR = M->getFunction("recur1");
737 Function *recur2IR = M->getFunction("recur2");
Jeffrey Yasskinf0356fe2010-01-27 20:34:15 +0000738 EXPECT_TRUE(recur1IR->isMaterializable());
739 EXPECT_TRUE(recur2IR->isMaterializable());
Jeffrey Yasskinc5818fb2009-12-22 23:47:23 +0000740
741 int32_t (*recur1)(int32_t) = reinterpret_cast<int32_t(*)(int32_t)>(
742 (intptr_t)TheJIT->getPointerToFunction(recur1IR));
743 EXPECT_EQ(3, recur1(4));
744}
745
Reid Kleckner4b1511b2009-07-18 00:42:18 +0000746// This code is copied from JITEventListenerTest, but it only runs once for all
747// the tests in this directory. Everything seems fine, but that's strange
748// behavior.
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000749class JITEnvironment : public testing::Environment {
750 virtual void SetUp() {
Reid Kleckner4b1511b2009-07-18 00:42:18 +0000751 // Required to create a JIT.
Jeffrey Yasskin489393d2009-07-08 21:59:57 +0000752 InitializeNativeTarget();
753 }
754};
755testing::Environment* const jit_env =
756 testing::AddGlobalTestEnvironment(new JITEnvironment);
757
758}