1 //===-LTOModule.cpp - LLVM Link Time Optimizer ----------------------------===//
3 // The LLVM Compiler Infrastructure
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
8 //===----------------------------------------------------------------------===//
10 // This file implements the Link Time Optimization library. This library is
11 // intended to be used by linker to optimize code at link time.
13 //===----------------------------------------------------------------------===//
15 #include "LTOModule.h"
17 #include "llvm/Module.h"
18 #include "llvm/ModuleProvider.h"
19 #include "llvm/ADT/OwningPtr.h"
20 #include "llvm/Bitcode/ReaderWriter.h"
21 #include "llvm/Support/SystemUtils.h"
22 #include "llvm/Support/Mangler.h"
23 #include "llvm/Support/MemoryBuffer.h"
24 #include "llvm/Support/MathExtras.h"
25 #include "llvm/System/Path.h"
26 #include "llvm/System/Process.h"
27 #include "llvm/Target/SubtargetFeature.h"
28 #include "llvm/Target/TargetMachine.h"
29 #include "llvm/Target/TargetMachineRegistry.h"
30 #include "llvm/Target/TargetAsmInfo.h"
36 bool LTOModule::isBitcodeFile(const void* mem
, size_t length
)
38 return ( llvm::sys::IdentifyFileType((char*)mem
, length
)
39 == llvm::sys::Bitcode_FileType
);
42 bool LTOModule::isBitcodeFile(const char* path
)
44 return llvm::sys::Path(path
).isBitcodeFile();
47 bool LTOModule::isBitcodeFileForTarget(const void* mem
, size_t length
,
48 const char* triplePrefix
)
50 MemoryBuffer
* buffer
= makeBuffer(mem
, length
);
53 return isTargetMatch(buffer
, triplePrefix
);
57 bool LTOModule::isBitcodeFileForTarget(const char* path
,
58 const char* triplePrefix
)
60 MemoryBuffer
*buffer
= MemoryBuffer::getFile(path
);
63 return isTargetMatch(buffer
, triplePrefix
);
66 // takes ownership of buffer
67 bool LTOModule::isTargetMatch(MemoryBuffer
* buffer
, const char* triplePrefix
)
69 OwningPtr
<ModuleProvider
> mp(getBitcodeModuleProvider(buffer
));
70 // on success, mp owns buffer and both are deleted at end of this method
75 std::string actualTarget
= mp
->getModule()->getTargetTriple();
76 return ( strncmp(actualTarget
.c_str(), triplePrefix
,
77 strlen(triplePrefix
)) == 0);
81 LTOModule::LTOModule(Module
* m
, TargetMachine
* t
)
82 : _module(m
), _target(t
), _symbolsParsed(false)
86 LTOModule
* LTOModule::makeLTOModule(const char* path
, std::string
& errMsg
)
88 OwningPtr
<MemoryBuffer
> buffer(MemoryBuffer::getFile(path
, &errMsg
));
91 return makeLTOModule(buffer
.get(), errMsg
);
94 /// makeBuffer - create a MemoryBuffer from a memory range.
95 /// MemoryBuffer requires the byte past end of the buffer to be a zero.
96 /// We might get lucky and already be that way, otherwise make a copy.
97 /// Also if next byte is on a different page, don't assume it is readable.
98 MemoryBuffer
* LTOModule::makeBuffer(const void* mem
, size_t length
)
100 const char* startPtr
= (char*)mem
;
101 const char* endPtr
= startPtr
+length
;
102 if ( (((uintptr_t)endPtr
& (sys::Process::GetPageSize()-1)) == 0)
104 return MemoryBuffer::getMemBufferCopy(startPtr
, endPtr
);
106 return MemoryBuffer::getMemBuffer(startPtr
, endPtr
);
110 LTOModule
* LTOModule::makeLTOModule(const void* mem
, size_t length
,
113 OwningPtr
<MemoryBuffer
> buffer(makeBuffer(mem
, length
));
116 return makeLTOModule(buffer
.get(), errMsg
);
119 /// getFeatureString - Return a string listing the features associated with the
122 /// FIXME: This is an inelegant way of specifying the features of a
123 /// subtarget. It would be better if we could encode this information into the
124 /// IR. See <rdar://5972456>.
125 std::string
getFeatureString(const char *TargetTriple
) {
126 SubtargetFeatures Features
;
128 if (strncmp(TargetTriple
, "powerpc-apple-", 14) == 0) {
129 Features
.AddFeature("altivec", true);
130 } else if (strncmp(TargetTriple
, "powerpc64-apple-", 16) == 0) {
131 Features
.AddFeature("64bit", true);
132 Features
.AddFeature("altivec", true);
135 return Features
.getString();
138 LTOModule
* LTOModule::makeLTOModule(MemoryBuffer
* buffer
, std::string
& errMsg
)
140 // parse bitcode buffer
141 OwningPtr
<Module
> m(ParseBitcodeFile(buffer
, &errMsg
));
144 // find machine architecture for this module
145 const TargetMachineRegistry::entry
* march
=
146 TargetMachineRegistry::getClosestStaticTargetForModule(*m
, errMsg
);
151 // construct LTModule, hand over ownership of module and target
152 std::string FeatureStr
= getFeatureString(m
->getTargetTriple().c_str());
153 TargetMachine
* target
= march
->CtorFn(*m
, FeatureStr
);
154 return new LTOModule(m
.take(), target
);
158 const char* LTOModule::getTargetTriple()
160 return _module
->getTargetTriple().c_str();
163 void LTOModule::addDefinedFunctionSymbol(Function
* f
, Mangler
&mangler
)
165 // add to list of defined symbols
166 addDefinedSymbol(f
, mangler
, true);
168 // add external symbols referenced by this function.
169 for (Function::iterator b
= f
->begin(); b
!= f
->end(); ++b
) {
170 for (BasicBlock::iterator i
= b
->begin(); i
!= b
->end(); ++i
) {
171 for (unsigned count
= 0, total
= i
->getNumOperands();
172 count
!= total
; ++count
) {
173 findExternalRefs(i
->getOperand(count
), mangler
);
179 void LTOModule::addDefinedDataSymbol(GlobalValue
* v
, Mangler
&mangler
)
181 // add to list of defined symbols
182 addDefinedSymbol(v
, mangler
, false);
184 // add external symbols referenced by this data.
185 for (unsigned count
= 0, total
= v
->getNumOperands();
186 count
!= total
; ++count
) {
187 findExternalRefs(v
->getOperand(count
), mangler
);
192 void LTOModule::addDefinedSymbol(GlobalValue
* def
, Mangler
&mangler
,
195 // string is owned by _defines
196 const char* symbolName
= ::strdup(mangler
.getValueName(def
).c_str());
198 // set alignment part log2() can have rounding errors
199 uint32_t align
= def
->getAlignment();
200 uint32_t attr
= align
? CountTrailingZeros_32(def
->getAlignment()) : 0;
202 // set permissions part
204 attr
|= LTO_SYMBOL_PERMISSIONS_CODE
;
206 GlobalVariable
* gv
= dyn_cast
<GlobalVariable
>(def
);
207 if ( (gv
!= NULL
) && gv
->isConstant() )
208 attr
|= LTO_SYMBOL_PERMISSIONS_RODATA
;
210 attr
|= LTO_SYMBOL_PERMISSIONS_DATA
;
213 // set definition part
214 if ( def
->hasWeakLinkage() || def
->hasLinkOnceLinkage() ) {
215 attr
|= LTO_SYMBOL_DEFINITION_WEAK
;
217 else if ( def
->hasCommonLinkage()) {
218 attr
|= LTO_SYMBOL_DEFINITION_TENTATIVE
;
221 attr
|= LTO_SYMBOL_DEFINITION_REGULAR
;
225 if ( def
->hasHiddenVisibility() )
226 attr
|= LTO_SYMBOL_SCOPE_HIDDEN
;
227 else if ( def
->hasExternalLinkage() || def
->hasWeakLinkage()
228 || def
->hasLinkOnceLinkage() || def
->hasCommonLinkage() )
229 attr
|= LTO_SYMBOL_SCOPE_DEFAULT
;
231 attr
|= LTO_SYMBOL_SCOPE_INTERNAL
;
233 // add to table of symbols
234 NameAndAttributes info
;
235 info
.name
= symbolName
;
236 info
.attributes
= (lto_symbol_attributes
)attr
;
237 _symbols
.push_back(info
);
238 _defines
[info
.name
] = 1;
241 void LTOModule::addAsmGlobalSymbol(const char *name
) {
242 // string is owned by _defines
243 const char *symbolName
= ::strdup(name
);
244 uint32_t attr
= LTO_SYMBOL_DEFINITION_REGULAR
;
245 attr
|= LTO_SYMBOL_SCOPE_DEFAULT
;
247 // add to table of symbols
248 NameAndAttributes info
;
249 info
.name
= symbolName
;
250 info
.attributes
= (lto_symbol_attributes
)attr
;
251 _symbols
.push_back(info
);
252 _defines
[info
.name
] = 1;
255 void LTOModule::addPotentialUndefinedSymbol(GlobalValue
* decl
, Mangler
&mangler
)
257 const char* name
= mangler
.getValueName(decl
).c_str();
258 // ignore all llvm.* symbols
259 if ( strncmp(name
, "llvm.", 5) != 0 ) {
260 _undefines
[name
] = 1;
266 // Find exeternal symbols referenced by VALUE. This is a recursive function.
267 void LTOModule::findExternalRefs(Value
* value
, Mangler
&mangler
) {
269 if (GlobalValue
* gv
= dyn_cast
<GlobalValue
>(value
)) {
270 if ( !gv
->hasExternalLinkage() )
271 addPotentialUndefinedSymbol(gv
, mangler
);
272 // If this is a variable definition, do not recursively process
273 // initializer. It might contain a reference to this variable
274 // and cause an infinite loop. The initializer will be
275 // processed in addDefinedDataSymbol().
279 // GlobalValue, even with InternalLinkage type, may have operands with
280 // ExternalLinkage type. Do not ignore these operands.
281 if (Constant
* c
= dyn_cast
<Constant
>(value
)) {
282 // Handle ConstantExpr, ConstantStruct, ConstantArry etc..
283 for (unsigned i
= 0, e
= c
->getNumOperands(); i
!= e
; ++i
)
284 findExternalRefs(c
->getOperand(i
), mangler
);
288 void LTOModule::lazyParseSymbols()
290 if ( !_symbolsParsed
) {
291 _symbolsParsed
= true;
293 // Use mangler to add GlobalPrefix to names to match linker names.
294 Mangler
mangler(*_module
, _target
->getTargetAsmInfo()->getGlobalPrefix());
297 for (Module::iterator f
= _module
->begin(); f
!= _module
->end(); ++f
) {
298 if ( f
->isDeclaration() )
299 addPotentialUndefinedSymbol(f
, mangler
);
301 addDefinedFunctionSymbol(f
, mangler
);
305 for (Module::global_iterator v
= _module
->global_begin(),
306 e
= _module
->global_end(); v
!= e
; ++v
) {
307 if ( v
->isDeclaration() )
308 addPotentialUndefinedSymbol(v
, mangler
);
310 addDefinedDataSymbol(v
, mangler
);
314 const std::string
&inlineAsm
= _module
->getModuleInlineAsm();
315 const std::string glbl
= ".globl";
316 std::string asmSymbolName
;
317 std::string::size_type pos
= inlineAsm
.find(glbl
, 0);
318 while (pos
!= std::string::npos
) {
322 // skip white space between .globl and symbol name
323 std::string::size_type pbegin
= inlineAsm
.find_first_not_of(' ', pos
);
324 if (pbegin
== std::string::npos
)
328 std::string::size_type pend
= inlineAsm
.find_first_of('\n', pbegin
);
329 if (pend
== std::string::npos
)
332 asmSymbolName
.assign(inlineAsm
, pbegin
, pend
- pbegin
);
333 addAsmGlobalSymbol(asmSymbolName
.c_str());
335 // search next .globl
336 pos
= inlineAsm
.find(glbl
, pend
);
339 // make symbols for all undefines
340 for (StringSet::iterator it
=_undefines
.begin();
341 it
!= _undefines
.end(); ++it
) {
342 // if this symbol also has a definition, then don't make an undefine
343 // because it is a tentative definition
344 if ( _defines
.count(it
->getKeyData(), it
->getKeyData()+
345 it
->getKeyLength()) == 0 ) {
346 NameAndAttributes info
;
347 info
.name
= it
->getKeyData();
348 info
.attributes
= LTO_SYMBOL_DEFINITION_UNDEFINED
;
349 _symbols
.push_back(info
);
356 uint32_t LTOModule::getSymbolCount()
359 return _symbols
.size();
363 lto_symbol_attributes
LTOModule::getSymbolAttributes(uint32_t index
)
366 if ( index
< _symbols
.size() )
367 return _symbols
[index
].attributes
;
369 return lto_symbol_attributes(0);
372 const char* LTOModule::getSymbolName(uint32_t index
)
375 if ( index
< _symbols
.size() )
376 return _symbols
[index
].name
;