forked from OSchip/llvm-project
[PM] Make the function pass manager more regular.
The FunctionPassManager is now itself a function pass. When run over a function, it runs all N of its passes over that function. This is the 1:N mapping in the pass dimension only. This allows it to be used in either a ModulePassManager or potentially some other manager that works on IR units which are supersets of Functions. This commit also adds the obvious adaptor to map from a module pass to a function pass, running the function pass across every function in the module. The test has been updated to use this new pattern. llvm-svn: 195192
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@ -189,7 +189,7 @@ public:
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Passes.push_back(new FunctionPassModel<FunctionPassT>(llvm_move(Pass)));
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}
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bool run(Module *M);
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bool run(Function *F);
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private:
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// Pull in the concept type and model template specialized for functions.
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@ -204,6 +204,36 @@ private:
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std::vector<polymorphic_ptr<FunctionPassConcept> > Passes;
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};
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/// \brief Trivial adaptor that maps from a module to its functions.
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///
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/// Designed to allow composition of a FunctionPass(Manager) and a
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/// ModulePassManager.
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template <typename FunctionPassT>
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class ModuleToFunctionPassAdaptor {
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public:
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explicit ModuleToFunctionPassAdaptor(FunctionPassT Pass)
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: Pass(llvm_move(Pass)) {}
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/// \brief Runs the function pass across every function in the module.
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bool run(Module *M) {
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bool Changed = false;
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for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
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Changed |= Pass.run(I);
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return Changed;
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}
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private:
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FunctionPassT Pass;
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};
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/// \brief A function to deduce a function pass type and wrap it in the
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/// templated adaptor.
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template <typename FunctionPassT>
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ModuleToFunctionPassAdaptor<FunctionPassT>
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createModuleToFunctionPassAdaptor(FunctionPassT Pass) {
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return ModuleToFunctionPassAdaptor<FunctionPassT>(llvm_move(Pass));
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}
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/// \brief A module analysis pass manager with lazy running and caching of
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/// results.
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class ModuleAnalysisManager {
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@ -53,15 +53,14 @@ void ModuleAnalysisManager::invalidateImpl(void *PassID, Module *M) {
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ModuleAnalysisResults.erase(PassID);
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}
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bool FunctionPassManager::run(Module *M) {
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bool FunctionPassManager::run(Function *F) {
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bool Changed = false;
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for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
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for (unsigned Idx = 0, Size = Passes.size(); Idx != Size; ++Idx)
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if (Passes[Idx]->run(I)) {
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Changed = true;
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if (AM)
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AM->invalidateAll(I);
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}
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for (unsigned Idx = 0, Size = Passes.size(); Idx != Size; ++Idx)
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if (Passes[Idx]->run(F)) {
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Changed = true;
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if (AM)
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AM->invalidateAll(F);
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}
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return Changed;
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}
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@ -120,7 +120,7 @@ TEST_F(PassManagerTest, Basic) {
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int FunctionPassRunCount = 0;
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int AnalyzedInstrCount = 0;
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FPM.addPass(TestFunctionPass(AM, FunctionPassRunCount, AnalyzedInstrCount));
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MPM.addPass(FPM);
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MPM.addPass(createModuleToFunctionPassAdaptor(FPM));
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MPM.run(M.get());
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EXPECT_EQ(1, ModulePassRunCount);
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