blob: 7b60e3899a0ef4ebfa8d69b7387bf7429acc9fc9 [file] [log] [blame]
//===- llvm/unittest/IR/PassManager.cpp - PassManager tests ---------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "llvm/Assembly/Parser.h"
#include "llvm/IR/Function.h"
#include "llvm/IR/LLVMContext.h"
#include "llvm/IR/Module.h"
#include "llvm/IR/PassManager.h"
#include "llvm/Support/SourceMgr.h"
#include "gtest/gtest.h"
using namespace llvm;
namespace {
class TestAnalysisPass {
public:
typedef Function IRUnitT;
struct Result {
Result(int Count) : InstructionCount(Count) {}
bool invalidate(Function *) { return true; }
int InstructionCount;
};
/// \brief Returns an opaque, unique ID for this pass type.
static void *ID() { return (void *)&PassID; }
/// \brief Run the analysis pass over the function and return a result.
Result run(Function *F) {
int Count = 0;
for (Function::iterator BBI = F->begin(), BBE = F->end(); BBI != BBE; ++BBI)
for (BasicBlock::iterator II = BBI->begin(), IE = BBI->end(); II != IE;
++II)
++Count;
return Result(Count);
}
private:
/// \brief Private static data to provide unique ID.
static char PassID;
};
char TestAnalysisPass::PassID;
struct TestModulePass {
TestModulePass(int &RunCount) : RunCount(RunCount) {}
bool run(Module *M) {
++RunCount;
return true;
}
int &RunCount;
};
struct TestFunctionPass {
TestFunctionPass(AnalysisManager &AM, int &RunCount, int &AnalyzedInstrCount)
: AM(AM), RunCount(RunCount), AnalyzedInstrCount(AnalyzedInstrCount) {
}
bool run(Function *F) {
++RunCount;
const TestAnalysisPass::Result &AR = AM.getResult<TestAnalysisPass>(F);
AnalyzedInstrCount += AR.InstructionCount;
return true;
}
AnalysisManager &AM;
int &RunCount;
int &AnalyzedInstrCount;
};
Module *parseIR(const char *IR) {
LLVMContext &C = getGlobalContext();
SMDiagnostic Err;
return ParseAssemblyString(IR, 0, Err, C);
}
class PassManagerTest : public ::testing::Test {
protected:
OwningPtr<Module> M;
public:
PassManagerTest()
: M(parseIR("define void @f() {\n"
"entry:\n"
" call void @g()\n"
" call void @h()\n"
" ret void\n"
"}\n"
"define void @g() {\n"
" ret void\n"
"}\n"
"define void @h() {\n"
" ret void\n"
"}\n")) {}
};
TEST_F(PassManagerTest, Basic) {
AnalysisManager AM(M.get());
AM.registerAnalysisPass(TestAnalysisPass());
ModulePassManager MPM(M.get(), &AM);
FunctionPassManager FPM(&AM);
// Count the runs over a module.
int ModulePassRunCount = 0;
MPM.addPass(TestModulePass(ModulePassRunCount));
// Count the runs over a Function.
int FunctionPassRunCount = 0;
int AnalyzedInstrCount = 0;
FPM.addPass(TestFunctionPass(AM, FunctionPassRunCount, AnalyzedInstrCount));
MPM.addPass(FPM);
MPM.run();
EXPECT_EQ(1, ModulePassRunCount);
EXPECT_EQ(3, FunctionPassRunCount);
EXPECT_EQ(5, AnalyzedInstrCount);
}
}