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Rafael Espindolac684e832011-08-02 21:50:27 +00001//===- PassManagerBuilder.cpp - Build Standard Pass -----------------------===//
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// This file defines the PassManagerBuilder class, which is used to set up a
11// "standard" optimization sequence suitable for languages like C and C++.
12//
13//===----------------------------------------------------------------------===//
14
15
16#include "llvm/Transforms/IPO/PassManagerBuilder.h"
17
Rafael Espindola69cb2162011-08-09 22:17:34 +000018#include "llvm-c/Transforms/PassManagerBuilder.h"
19
Rafael Espindolac684e832011-08-02 21:50:27 +000020#include "llvm/PassManager.h"
21#include "llvm/DefaultPasses.h"
22#include "llvm/PassManager.h"
23#include "llvm/Analysis/Passes.h"
24#include "llvm/Analysis/Verifier.h"
25#include "llvm/Target/TargetLibraryInfo.h"
26#include "llvm/Transforms/Scalar.h"
27#include "llvm/Transforms/IPO.h"
28
29using namespace llvm;
30
31PassManagerBuilder::PassManagerBuilder() {
32 OptLevel = 2;
33 SizeLevel = 0;
34 LibraryInfo = 0;
35 Inliner = 0;
36 DisableSimplifyLibCalls = false;
37 DisableUnitAtATime = false;
38 DisableUnrollLoops = false;
39}
40
41PassManagerBuilder::~PassManagerBuilder() {
42 delete LibraryInfo;
43 delete Inliner;
44}
45
46void PassManagerBuilder::addExtension(ExtensionPointTy Ty, ExtensionFn Fn) {
47 Extensions.push_back(std::make_pair(Ty, Fn));
48}
49
50void PassManagerBuilder::addExtensionsToPM(ExtensionPointTy ETy,
51 PassManagerBase &PM) const {
52 for (unsigned i = 0, e = Extensions.size(); i != e; ++i)
53 if (Extensions[i].first == ETy)
54 Extensions[i].second(*this, PM);
55}
56
57void
58PassManagerBuilder::addInitialAliasAnalysisPasses(PassManagerBase &PM) const {
59 // Add TypeBasedAliasAnalysis before BasicAliasAnalysis so that
60 // BasicAliasAnalysis wins if they disagree. This is intended to help
61 // support "obvious" type-punning idioms.
62 PM.add(createTypeBasedAliasAnalysisPass());
63 PM.add(createBasicAliasAnalysisPass());
64}
65
66void PassManagerBuilder::populateFunctionPassManager(FunctionPassManager &FPM) {
67 addExtensionsToPM(EP_EarlyAsPossible, FPM);
68
69 // Add LibraryInfo if we have some.
70 if (LibraryInfo) FPM.add(new TargetLibraryInfo(*LibraryInfo));
71
72 if (OptLevel == 0) return;
73
74 addInitialAliasAnalysisPasses(FPM);
75
76 FPM.add(createCFGSimplificationPass());
77 FPM.add(createScalarReplAggregatesPass());
78 FPM.add(createEarlyCSEPass());
79 FPM.add(createLowerExpectIntrinsicPass());
80}
81
82void PassManagerBuilder::populateModulePassManager(PassManagerBase &MPM) {
83 // If all optimizations are disabled, just run the always-inline pass.
84 if (OptLevel == 0) {
85 if (Inliner) {
86 MPM.add(Inliner);
87 Inliner = 0;
88 }
89 return;
90 }
91
92 // Add LibraryInfo if we have some.
93 if (LibraryInfo) MPM.add(new TargetLibraryInfo(*LibraryInfo));
94
95 addInitialAliasAnalysisPasses(MPM);
96
97 if (!DisableUnitAtATime) {
98 MPM.add(createGlobalOptimizerPass()); // Optimize out global vars
99
100 MPM.add(createIPSCCPPass()); // IP SCCP
101 MPM.add(createDeadArgEliminationPass()); // Dead argument elimination
102
103 MPM.add(createInstructionCombiningPass());// Clean up after IPCP & DAE
104 MPM.add(createCFGSimplificationPass()); // Clean up after IPCP & DAE
105 }
106
107 // Start of CallGraph SCC passes.
108 if (!DisableUnitAtATime)
109 MPM.add(createPruneEHPass()); // Remove dead EH info
110 if (Inliner) {
111 MPM.add(Inliner);
112 Inliner = 0;
113 }
114 if (!DisableUnitAtATime)
115 MPM.add(createFunctionAttrsPass()); // Set readonly/readnone attrs
116 if (OptLevel > 2)
117 MPM.add(createArgumentPromotionPass()); // Scalarize uninlined fn args
118
119 // Start of function pass.
120 // Break up aggregate allocas, using SSAUpdater.
121 MPM.add(createScalarReplAggregatesPass(-1, false));
122 MPM.add(createEarlyCSEPass()); // Catch trivial redundancies
123 if (!DisableSimplifyLibCalls)
124 MPM.add(createSimplifyLibCallsPass()); // Library Call Optimizations
125 MPM.add(createJumpThreadingPass()); // Thread jumps.
126 MPM.add(createCorrelatedValuePropagationPass()); // Propagate conditionals
127 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs
128 MPM.add(createInstructionCombiningPass()); // Combine silly seq's
129
130 MPM.add(createTailCallEliminationPass()); // Eliminate tail calls
131 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs
132 MPM.add(createReassociatePass()); // Reassociate expressions
133 MPM.add(createLoopRotatePass()); // Rotate Loop
134 MPM.add(createLICMPass()); // Hoist loop invariants
135 MPM.add(createLoopUnswitchPass(SizeLevel || OptLevel < 3));
136 MPM.add(createInstructionCombiningPass());
137 MPM.add(createIndVarSimplifyPass()); // Canonicalize indvars
138 MPM.add(createLoopIdiomPass()); // Recognize idioms like memset.
139 MPM.add(createLoopDeletionPass()); // Delete dead loops
140 if (!DisableUnrollLoops)
141 MPM.add(createLoopUnrollPass()); // Unroll small loops
142 addExtensionsToPM(EP_LoopOptimizerEnd, MPM);
143
144 if (OptLevel > 1)
145 MPM.add(createGVNPass()); // Remove redundancies
146 MPM.add(createMemCpyOptPass()); // Remove memcpy / form memset
147 MPM.add(createSCCPPass()); // Constant prop with SCCP
148
149 // Run instcombine after redundancy elimination to exploit opportunities
150 // opened up by them.
151 MPM.add(createInstructionCombiningPass());
152 MPM.add(createJumpThreadingPass()); // Thread jumps
153 MPM.add(createCorrelatedValuePropagationPass());
154 MPM.add(createDeadStoreEliminationPass()); // Delete dead stores
155
156 addExtensionsToPM(EP_ScalarOptimizerLate, MPM);
157
158 MPM.add(createAggressiveDCEPass()); // Delete dead instructions
159 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs
160 MPM.add(createInstructionCombiningPass()); // Clean up after everything.
161
162 if (!DisableUnitAtATime) {
163 // FIXME: We shouldn't bother with this anymore.
164 MPM.add(createStripDeadPrototypesPass()); // Get rid of dead prototypes
165
166 // GlobalOpt already deletes dead functions and globals, at -O3 try a
167 // late pass of GlobalDCE. It is capable of deleting dead cycles.
168 if (OptLevel > 2)
169 MPM.add(createGlobalDCEPass()); // Remove dead fns and globals.
170
171 if (OptLevel > 1)
172 MPM.add(createConstantMergePass()); // Merge dup global constants
173 }
174}
175
176void PassManagerBuilder::populateLTOPassManager(PassManagerBase &PM,
177 bool Internalize,
178 bool RunInliner) {
179 // Provide AliasAnalysis services for optimizations.
180 addInitialAliasAnalysisPasses(PM);
181
182 // Now that composite has been compiled, scan through the module, looking
183 // for a main function. If main is defined, mark all other functions
184 // internal.
185 if (Internalize)
186 PM.add(createInternalizePass(true));
187
188 // Propagate constants at call sites into the functions they call. This
189 // opens opportunities for globalopt (and inlining) by substituting function
190 // pointers passed as arguments to direct uses of functions.
191 PM.add(createIPSCCPPass());
192
193 // Now that we internalized some globals, see if we can hack on them!
194 PM.add(createGlobalOptimizerPass());
195
196 // Linking modules together can lead to duplicated global constants, only
197 // keep one copy of each constant.
198 PM.add(createConstantMergePass());
199
200 // Remove unused arguments from functions.
201 PM.add(createDeadArgEliminationPass());
202
203 // Reduce the code after globalopt and ipsccp. Both can open up significant
204 // simplification opportunities, and both can propagate functions through
205 // function pointers. When this happens, we often have to resolve varargs
206 // calls, etc, so let instcombine do this.
207 PM.add(createInstructionCombiningPass());
208
209 // Inline small functions
210 if (RunInliner)
211 PM.add(createFunctionInliningPass());
212
213 PM.add(createPruneEHPass()); // Remove dead EH info.
214
215 // Optimize globals again if we ran the inliner.
216 if (RunInliner)
217 PM.add(createGlobalOptimizerPass());
218 PM.add(createGlobalDCEPass()); // Remove dead functions.
219
220 // If we didn't decide to inline a function, check to see if we can
221 // transform it to pass arguments by value instead of by reference.
222 PM.add(createArgumentPromotionPass());
223
224 // The IPO passes may leave cruft around. Clean up after them.
225 PM.add(createInstructionCombiningPass());
226 PM.add(createJumpThreadingPass());
227 // Break up allocas
228 PM.add(createScalarReplAggregatesPass());
229
230 // Run a few AA driven optimizations here and now, to cleanup the code.
231 PM.add(createFunctionAttrsPass()); // Add nocapture.
232 PM.add(createGlobalsModRefPass()); // IP alias analysis.
233
234 PM.add(createLICMPass()); // Hoist loop invariants.
235 PM.add(createGVNPass()); // Remove redundancies.
236 PM.add(createMemCpyOptPass()); // Remove dead memcpys.
237 // Nuke dead stores.
238 PM.add(createDeadStoreEliminationPass());
239
240 // Cleanup and simplify the code after the scalar optimizations.
241 PM.add(createInstructionCombiningPass());
242
243 PM.add(createJumpThreadingPass());
244
245 // Delete basic blocks, which optimization passes may have killed.
246 PM.add(createCFGSimplificationPass());
247
248 // Now that we have optimized the program, discard unreachable functions.
249 PM.add(createGlobalDCEPass());
250}
Rafael Espindola69cb2162011-08-09 22:17:34 +0000251
252LLVMPassManagerBuilderRef LLVMPassManagerBuilderCreate(void) {
253 PassManagerBuilder *PMB = new PassManagerBuilder();
254 return wrap(PMB);
255}
256
257void LLVMPassManagerBuilderDispose(LLVMPassManagerBuilderRef PMB) {
258 PassManagerBuilder *Builder = unwrap(PMB);
259 delete Builder;
260}
261
262void
263LLVMPassManagerBuilderSetOptLevel(LLVMPassManagerBuilderRef PMB,
264 unsigned OptLevel) {
265 PassManagerBuilder *Builder = unwrap(PMB);
266 Builder->OptLevel = OptLevel;
267}
268
269void
270LLVMPassManagerBuilderSetSizeLevel(LLVMPassManagerBuilderRef PMB,
271 unsigned SizeLevel) {
272 PassManagerBuilder *Builder = unwrap(PMB);
273 Builder->SizeLevel = SizeLevel;
274}
275
276void
277LLVMPassManagerBuilderSetDisableUnitAtATime(LLVMPassManagerBuilderRef PMB,
278 LLVMBool Value) {
279 PassManagerBuilder *Builder = unwrap(PMB);
280 Builder->DisableUnitAtATime = Value;
281}
282
283void
284LLVMPassManagerBuilderSetDisableUnrollLoops(LLVMPassManagerBuilderRef PMB,
285 LLVMBool Value) {
286 PassManagerBuilder *Builder = unwrap(PMB);
287 Builder->DisableUnrollLoops = Value;
288}
289
290void
291LLVMPassManagerBuilderSetDisableSimplifyLibCalls(LLVMPassManagerBuilderRef PMB,
292 LLVMBool Value) {
293 PassManagerBuilder *Builder = unwrap(PMB);
294 Builder->DisableSimplifyLibCalls = Value;
295}
296
297void
298LLVMPassManagerBuilderUseInlinerWithThreshold(LLVMPassManagerBuilderRef PMB,
299 unsigned Threshold) {
300 PassManagerBuilder *Builder = unwrap(PMB);
301 Builder->Inliner = createFunctionInliningPass(Threshold);
302}
303
304void
305LLVMPassManagerBuilderPopulateFunctionPassManager(LLVMPassManagerBuilderRef PMB,
306 LLVMPassManagerRef PM) {
307 PassManagerBuilder *Builder = unwrap(PMB);
308 FunctionPassManager *FPM = unwrap<FunctionPassManager>(PM);
309 Builder->populateFunctionPassManager(*FPM);
310}
311
312void
313LLVMPassManagerBuilderPopulateModulePassManager(LLVMPassManagerBuilderRef PMB,
314 LLVMPassManagerRef PM) {
315 PassManagerBuilder *Builder = unwrap(PMB);
316 PassManagerBase *MPM = unwrap(PM);
317 Builder->populateModulePassManager(*MPM);
318}
319
320void LLVMPassManagerBuilderPopulateLTOPassManager(LLVMPassManagerBuilderRef PMB,
321 LLVMPassManagerRef PM,
322 bool Internalize,
323 bool RunInliner) {
324 PassManagerBuilder *Builder = unwrap(PMB);
325 PassManagerBase *LPM = unwrap(PM);
326 Builder->populateLTOPassManager(*LPM, Internalize, RunInliner);
327}
328