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Vikram S. Adveabf055c2002-09-20 00:29:28 +00001//===- PreSelection.cpp - Specialize LLVM code for target machine ---------===//
2//
3// This file defines the PreSelection pass which specializes LLVM code for a
4// target machine, while remaining in legal portable LLVM form and
5// preserving type information and type safety. This is meant to enable
6// dataflow optimizations on target-specific operations such as accesses to
7// constants, globals, and array indexing.
8//
9//===----------------------------------------------------------------------===//
10
Chris Lattner67699ff2003-09-01 20:33:07 +000011#include "SparcInternals.h"
Vikram S. Adveabf055c2002-09-20 00:29:28 +000012#include "llvm/Target/TargetMachine.h"
Chris Lattner3501fea2003-01-14 22:00:31 +000013#include "llvm/Target/TargetInstrInfo.h"
Vikram S. Adveabf055c2002-09-20 00:29:28 +000014#include "llvm/Transforms/Scalar.h"
15#include "llvm/Support/InstVisitor.h"
16#include "llvm/Module.h"
17#include "llvm/Constants.h"
18#include "llvm/iMemory.h"
19#include "llvm/iPHINode.h"
20#include "llvm/iOther.h"
21#include "llvm/DerivedTypes.h"
22#include "llvm/Pass.h"
Vikram S. Adveabf055c2002-09-20 00:29:28 +000023#include "Support/CommandLine.h"
Vikram S. Adved0451a92002-10-13 00:01:57 +000024#include <algorithm>
Vikram S. Adveabf055c2002-09-20 00:29:28 +000025
26namespace {
27 //===--------------------------------------------------------------------===//
28 // SelectDebugLevel - Allow command line control over debugging.
29 //
30 enum PreSelectDebugLevel_t {
31 PreSelect_NoDebugInfo,
32 PreSelect_PrintOutput,
33 };
34
35 // Enable Debug Options to be specified on the command line
36 cl::opt<PreSelectDebugLevel_t>
37 PreSelectDebugLevel("dpreselect", cl::Hidden,
38 cl::desc("debug information for target-dependent pre-selection"),
39 cl::values(
40 clEnumValN(PreSelect_NoDebugInfo, "n", "disable debug output (default)"),
41 clEnumValN(PreSelect_PrintOutput, "y", "print generated machine code"),
42 /* default level = */ PreSelect_NoDebugInfo));
43
44
45 //===--------------------------------------------------------------------===//
46 // class ConstantPoolForModule:
47 //
48 // The pool of constants that must be emitted for a module.
49 // This is a single pool for the entire module and is shared by
50 // all invocations of the PreSelection pass for this module by putting
Vikram S. Adved0451a92002-10-13 00:01:57 +000051 // this as an annotation on the Module object.
Vikram S. Adveabf055c2002-09-20 00:29:28 +000052 // A single GlobalVariable is created for each constant in the pool
53 // representing the memory for that constant.
54 //
Chris Lattner5ff7ef52003-05-01 20:28:45 +000055 AnnotationID CPFM_AID(
Vikram S. Adveabf055c2002-09-20 00:29:28 +000056 AnnotationManager::getID("CodeGen::ConstantPoolForModule"));
57
Chris Lattner5ff7ef52003-05-01 20:28:45 +000058 class ConstantPoolForModule : private Annotation {
Vikram S. Adveabf055c2002-09-20 00:29:28 +000059 Module* myModule;
60 std::map<const Constant*, GlobalVariable*> gvars;
61 std::map<const Constant*, GlobalVariable*> origGVars;
62 ConstantPoolForModule(Module* M); // called only by annotation builder
Chris Lattner5ff7ef52003-05-01 20:28:45 +000063 ConstantPoolForModule(); // DO NOT IMPLEMENT
64 void operator=(const ConstantPoolForModule&); // DO NOT IMPLEMENT
Vikram S. Adveabf055c2002-09-20 00:29:28 +000065 public:
66 static ConstantPoolForModule& get(Module* M) {
67 ConstantPoolForModule* cpool =
68 (ConstantPoolForModule*) M->getAnnotation(CPFM_AID);
69 if (cpool == NULL) // create a new annotation and add it to the Module
70 M->addAnnotation(cpool = new ConstantPoolForModule(M));
71 return *cpool;
72 }
73
74 GlobalVariable* getGlobalForConstant(Constant* CV) {
75 std::map<const Constant*, GlobalVariable*>::iterator I = gvars.find(CV);
76 if (I != gvars.end())
77 return I->second; // global exists so return it
78 return addToConstantPool(CV); // create a new global and return it
79 }
80
81 GlobalVariable* addToConstantPool(Constant* CV) {
82 GlobalVariable*& GV = gvars[CV]; // handle to global var entry in map
83 if (GV == NULL)
84 { // check if a global constant already existed; otherwise create one
85 std::map<const Constant*, GlobalVariable*>::iterator PI =
86 origGVars.find(CV);
87 if (PI != origGVars.end())
88 GV = PI->second; // put in map
89 else
90 {
Chris Lattner4ad02e72003-04-16 20:28:45 +000091 GV = new GlobalVariable(CV->getType(), true, //put in map
92 GlobalValue::InternalLinkage, CV);
Vikram S. Adveabf055c2002-09-20 00:29:28 +000093 myModule->getGlobalList().push_back(GV); // GV owned by module now
94 }
95 }
96 return GV;
97 }
98 };
99
100 /* ctor */
101 ConstantPoolForModule::ConstantPoolForModule(Module* M)
102 : Annotation(CPFM_AID), myModule(M)
103 {
104 // Build reverse map for pre-existing global constants so we can find them
105 for (Module::giterator GI = M->gbegin(), GE = M->gend(); GI != GE; ++GI)
106 if (GI->hasInitializer() && GI->isConstant())
107 origGVars[GI->getInitializer()] = GI;
108 }
109
110 //===--------------------------------------------------------------------===//
111 // PreSelection Pass - Specialize LLVM code for the current target machine.
112 // This was and will be a basicblock pass, but make it a FunctionPass until
113 // BasicBlockPass ::doFinalization(Function&) is available.
114 //
115 class PreSelection : public BasicBlockPass, public InstVisitor<PreSelection>
116 {
117 const TargetMachine &target;
Vikram S. Advecf819452003-06-05 21:12:56 +0000118 const TargetInstrInfo &instrInfo;
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000119 Function* function;
120
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000121 GlobalVariable* getGlobalForConstant(Constant* CV) {
122 Module* M = function->getParent();
123 return ConstantPoolForModule::get(M).getGlobalForConstant(CV);
124 }
125
126 public:
Vikram S. Advecf819452003-06-05 21:12:56 +0000127 PreSelection (const TargetMachine &T):
128 target(T), instrInfo(T.getInstrInfo()), function(NULL) {}
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000129
130 // runOnBasicBlock - apply this pass to each BB
131 bool runOnBasicBlock(BasicBlock &BB) {
132 function = BB.getParent();
133 this->visit(BB);
134 return true;
135 }
136
137 bool doFinalization(Function &F) {
138 if (PreSelectDebugLevel >= PreSelect_PrintOutput)
Chris Lattner64317fc2003-01-14 20:32:10 +0000139 std::cerr << "\n\n*** LLVM code after pre-selection for function "
140 << F.getName() << ":\n\n" << F;
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000141 return false;
142 }
143
144 // These methods do the actual work of specializing code
145 void visitInstruction(Instruction &I); // common work for every instr.
146 void visitGetElementPtrInst(GetElementPtrInst &I);
Vikram S. Adve96358672003-05-31 07:34:57 +0000147 void visitCallInst(CallInst &I);
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000148
149 // Helper functions for visiting operands of every instruction
Vikram S. Adve96358672003-05-31 07:34:57 +0000150 //
151 // visitOperands() works on every operand in [firstOp, lastOp-1].
152 // If lastOp==0, lastOp defaults to #operands or #incoming Phi values.
153 //
154 // visitOneOperand() does all the work for one operand.
155 //
156 void visitOperands(Instruction &I, int firstOp=0, int lastOp=0);
157 void visitOneOperand(Instruction &I, Value* Op, unsigned opNum,
158 Instruction& insertBefore);
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000159 };
Chris Lattnerec8aae32003-04-24 18:35:51 +0000160
161 // Register the pass...
162 RegisterOpt<PreSelection> X("preselect",
163 "Specialize LLVM code for a target machine",
164 createPreSelectionPass);
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000165} // end anonymous namespace
166
167
Vikram S. Adved0451a92002-10-13 00:01:57 +0000168//------------------------------------------------------------------------------
169// Helper functions used by methods of class PreSelection
170//------------------------------------------------------------------------------
171
172
173// getGlobalAddr(): Put address of a global into a v. register.
174static GetElementPtrInst* getGlobalAddr(Value* ptr, Instruction& insertBefore)
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000175{
Vikram S. Adved0451a92002-10-13 00:01:57 +0000176 if (isa<ConstantPointerRef>(ptr))
177 ptr = cast<ConstantPointerRef>(ptr)->getValue();
178
Chris Lattner2ab5e122003-06-04 01:24:40 +0000179 return (isa<GlobalVariable>(ptr))
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000180 ? new GetElementPtrInst(ptr,
181 std::vector<Value*>(1, ConstantSInt::get(Type::LongTy, 0U)),
Vikram S. Adved0451a92002-10-13 00:01:57 +0000182 "addrOfGlobal", &insertBefore)
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000183 : NULL;
184}
185
186
Vikram S. Adved0451a92002-10-13 00:01:57 +0000187// Wrapper on Constant::classof to use in find_if :-(
188inline static bool nonConstant(const Use& U)
189{
190 return ! isa<Constant>(U);
191}
192
193
194static Instruction* DecomposeConstantExpr(ConstantExpr* CE,
195 Instruction& insertBefore)
196{
197 Value *getArg1, *getArg2;
198
199 switch(CE->getOpcode())
200 {
201 case Instruction::Cast:
202 getArg1 = CE->getOperand(0);
203 if (ConstantExpr* CEarg = dyn_cast<ConstantExpr>(getArg1))
204 getArg1 = DecomposeConstantExpr(CEarg, insertBefore);
205 return new CastInst(getArg1, CE->getType(), "constantCast",&insertBefore);
206
207 case Instruction::GetElementPtr:
Chris Lattnerdc476b82002-10-27 19:09:51 +0000208 assert(find_if(CE->op_begin()+1, CE->op_end(),nonConstant) == CE->op_end()
Vikram S. Adved0451a92002-10-13 00:01:57 +0000209 && "All indices in ConstantExpr getelementptr must be constant!");
Vikram S. Adved0451a92002-10-13 00:01:57 +0000210 getArg1 = CE->getOperand(0);
211 if (ConstantExpr* CEarg = dyn_cast<ConstantExpr>(getArg1))
212 getArg1 = DecomposeConstantExpr(CEarg, insertBefore);
213 else if (GetElementPtrInst* gep = getGlobalAddr(getArg1, insertBefore))
214 getArg1 = gep;
215 return new GetElementPtrInst(getArg1,
Chris Lattnerdc476b82002-10-27 19:09:51 +0000216 std::vector<Value*>(CE->op_begin()+1, CE->op_end()),
Vikram S. Adved0451a92002-10-13 00:01:57 +0000217 "constantGEP", &insertBefore);
218
219 default: // must be a binary operator
Chris Lattner0b16ae22002-10-13 19:39:16 +0000220 assert(CE->getOpcode() >= Instruction::BinaryOpsBegin &&
221 CE->getOpcode() < Instruction::BinaryOpsEnd &&
Vikram S. Adved0451a92002-10-13 00:01:57 +0000222 "Unrecognized opcode in ConstantExpr");
223 getArg1 = CE->getOperand(0);
224 if (ConstantExpr* CEarg = dyn_cast<ConstantExpr>(getArg1))
225 getArg1 = DecomposeConstantExpr(CEarg, insertBefore);
226 getArg2 = CE->getOperand(1);
227 if (ConstantExpr* CEarg = dyn_cast<ConstantExpr>(getArg2))
228 getArg2 = DecomposeConstantExpr(CEarg, insertBefore);
229 return BinaryOperator::create((Instruction::BinaryOps) CE->getOpcode(),
230 getArg1, getArg2,
231 "constantBinaryOp", &insertBefore);
232 }
233}
234
235
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000236//------------------------------------------------------------------------------
237// Instruction visitor methods to perform instruction-specific operations
238//------------------------------------------------------------------------------
Vikram S. Advecf819452003-06-05 21:12:56 +0000239inline void
240PreSelection::visitOneOperand(Instruction &I, Value* Op, unsigned opNum,
241 Instruction& insertBefore)
242{
Vikram S. Adve799ffee2003-07-02 01:23:15 +0000243 assert(&insertBefore != NULL && "Must have instruction to insert before.");
244
Vikram S. Advecf819452003-06-05 21:12:56 +0000245 if (GetElementPtrInst* gep = getGlobalAddr(Op, insertBefore)) {
246 I.setOperand(opNum, gep); // replace global operand
Vikram S. Adve799ffee2003-07-02 01:23:15 +0000247 return; // nothing more to do for this op.
Vikram S. Advecf819452003-06-05 21:12:56 +0000248 }
249
250 Constant* CV = dyn_cast<Constant>(Op);
251 if (CV == NULL)
252 return;
253
254 if (ConstantExpr* CE = dyn_cast<ConstantExpr>(CV))
255 { // load-time constant: factor it out so we optimize as best we can
256 Instruction* computeConst = DecomposeConstantExpr(CE, insertBefore);
257 I.setOperand(opNum, computeConst); // replace expr operand with result
258 }
259 else if (instrInfo.ConstantTypeMustBeLoaded(CV))
260 { // load address of constant into a register, then load the constant
261 GetElementPtrInst* gep = getGlobalAddr(getGlobalForConstant(CV),
262 insertBefore);
263 LoadInst* ldI = new LoadInst(gep, "loadConst", &insertBefore);
264 I.setOperand(opNum, ldI); // replace operand with copy in v.reg.
265 }
266 else if (instrInfo.ConstantMayNotFitInImmedField(CV, &I))
267 { // put the constant into a virtual register using a cast
268 CastInst* castI = new CastInst(CV, CV->getType(), "copyConst",
269 &insertBefore);
270 I.setOperand(opNum, castI); // replace operand with copy in v.reg.
271 }
272}
273
274// visitOperands() transforms individual operands of all instructions:
275// -- Load "large" int constants into a virtual register. What is large
276// depends on the type of instruction and on the target architecture.
277// -- For any constants that cannot be put in an immediate field,
278// load address into virtual register first, and then load the constant.
279//
280// firstOp and lastOp can be used to skip leading and trailing operands.
281// If lastOp is 0, it defaults to #operands or #incoming Phi values.
282//
283inline void
284PreSelection::visitOperands(Instruction &I, int firstOp, int lastOp)
285{
286 // For any instruction other than PHI, copies go just before the instr.
287 // For a PHI, operand copies must be before the terminator of the
288 // appropriate predecessor basic block. Remaining logic is simple
289 // so just handle PHIs and other instructions separately.
290 //
291 if (PHINode* phi = dyn_cast<PHINode>(&I))
292 {
293 if (lastOp == 0)
294 lastOp = phi->getNumIncomingValues();
295 for (unsigned i=firstOp, N=lastOp; i < N; ++i)
296 this->visitOneOperand(I, phi->getIncomingValue(i),
297 phi->getOperandNumForIncomingValue(i),
298 * phi->getIncomingBlock(i)->getTerminator());
299 }
300 else
301 {
302 if (lastOp == 0)
303 lastOp = I.getNumOperands();
304 for (unsigned i=firstOp, N=lastOp; i < N; ++i)
305 this->visitOneOperand(I, I.getOperand(i), i, I);
306 }
307}
308
309
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000310
311// Common work for *all* instructions. This needs to be called explicitly
312// by other visit<InstructionType> functions.
313inline void
314PreSelection::visitInstruction(Instruction &I)
315{
316 visitOperands(I); // Perform operand transformations
317}
318
319
320// GetElementPtr instructions: check if pointer is a global
321void
322PreSelection::visitGetElementPtrInst(GetElementPtrInst &I)
323{
Vikram S. Adve799ffee2003-07-02 01:23:15 +0000324 Instruction* curI = &I;
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000325
326 // Decompose multidimensional array references
Vikram S. Adve799ffee2003-07-02 01:23:15 +0000327 if (I.getNumIndices() >= 2) {
328 // DecomposeArrayRef() replaces I and deletes it, if successful,
329 // so remember predecessor in order to find the replacement instruction.
330 // Also remember the basic block in case there is no predecessor.
331 Instruction* prevI = I.getPrev();
332 BasicBlock* bb = I.getParent();
333 if (DecomposeArrayRef(&I))
334 // first instr. replacing I
335 curI = cast<GetElementPtrInst>(prevI? prevI->getNext() : &bb->front());
336 }
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000337
338 // Perform other transformations common to all instructions
Vikram S. Adve799ffee2003-07-02 01:23:15 +0000339 visitInstruction(*curI);
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000340}
341
342
Vikram S. Adve96358672003-05-31 07:34:57 +0000343void
344PreSelection::visitCallInst(CallInst &I)
345{
346 // Tell visitOperands to ignore the function name if this is a direct call.
347 visitOperands(I, (/*firstOp=*/ I.getCalledFunction()? 1 : 0));
348}
349
Vikram S. Advee9cb7352002-09-27 14:24:45 +0000350
Vikram S. Adveabf055c2002-09-20 00:29:28 +0000351//===----------------------------------------------------------------------===//
352// createPreSelectionPass - Public entrypoint for pre-selection pass
353// and this file as a whole...
354//
355Pass*
356createPreSelectionPass(TargetMachine &T)
357{
358 return new PreSelection(T);
359}
360