blob: 23f3352ced93f37cad28ad55563aca3997382b05 [file] [log] [blame]
Reid Spencer9bbaa2a2005-04-25 03:59:26 +00001//===- SimplifyLibCalls.cpp - Optimize specific well-known library calls --===//
Reid Spencer39a762d2005-04-25 02:53:12 +00002//
3// The LLVM Compiler Infrastructure
4//
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00005// This file was developed by Reid Spencer and is distributed under the
Reid Spencer9bbaa2a2005-04-25 03:59:26 +00006// University of Illinois Open Source License. See LICENSE.TXT for details.
Reid Spencer39a762d2005-04-25 02:53:12 +00007//
8//===----------------------------------------------------------------------===//
9//
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000010// This file implements a module pass that applies a variety of small
11// optimizations for calls to specific well-known function calls (e.g. runtime
12// library functions). For example, a call to the function "exit(3)" that
Reid Spencer0b13cda2005-05-21 00:57:44 +000013// occurs within the main() function can be transformed into a simple "return 3"
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000014// instruction. Any optimization that takes this form (replace call to library
15// function with simpler code that provides the same result) belongs in this
16// file.
Reid Spencer39a762d2005-04-25 02:53:12 +000017//
18//===----------------------------------------------------------------------===//
19
Reid Spencer18b99812005-04-26 23:05:17 +000020#define DEBUG_TYPE "simplify-libcalls"
Reid Spencer2bc7a4f2005-04-26 23:02:16 +000021#include "llvm/Constants.h"
22#include "llvm/DerivedTypes.h"
23#include "llvm/Instructions.h"
Reid Spencer39a762d2005-04-25 02:53:12 +000024#include "llvm/Module.h"
25#include "llvm/Pass.h"
Reid Spencer9bbaa2a2005-04-25 03:59:26 +000026#include "llvm/ADT/hash_map"
Reid Spencer2bc7a4f2005-04-26 23:02:16 +000027#include "llvm/ADT/Statistic.h"
Reid Spencerade18212006-01-19 08:36:56 +000028#include "llvm/Config/config.h"
Reid Spencer2bc7a4f2005-04-26 23:02:16 +000029#include "llvm/Support/Debug.h"
Reid Spencerbb92b4f2005-04-26 19:13:17 +000030#include "llvm/Target/TargetData.h"
Reid Spencer2bc7a4f2005-04-26 23:02:16 +000031#include "llvm/Transforms/IPO.h"
Reid Spencer39a762d2005-04-25 02:53:12 +000032using namespace llvm;
33
34namespace {
Reid Spencer39a762d2005-04-25 02:53:12 +000035
Reid Spencere249a822005-04-27 07:54:40 +000036/// This statistic keeps track of the total number of library calls that have
37/// been simplified regardless of which call it is.
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000038Statistic<> SimplifiedLibCalls("simplify-libcalls",
Chris Lattner579b20b2005-08-07 20:02:04 +000039 "Number of library calls simplified");
Reid Spencer39a762d2005-04-25 02:53:12 +000040
Reid Spencer7ddcfb32005-04-27 21:29:20 +000041// Forward declarations
Reid Spencere249a822005-04-27 07:54:40 +000042class LibCallOptimization;
43class SimplifyLibCalls;
Reid Spencer7ddcfb32005-04-27 21:29:20 +000044
Chris Lattner33081b42006-01-22 23:10:26 +000045/// This list is populated by the constructor for LibCallOptimization class.
Reid Spencer9fbad132005-05-21 01:27:04 +000046/// Therefore all subclasses are registered here at static initialization time
47/// and this list is what the SimplifyLibCalls pass uses to apply the individual
48/// optimizations to the call sites.
Reid Spencer7ddcfb32005-04-27 21:29:20 +000049/// @brief The list of optimizations deriving from LibCallOptimization
Chris Lattner33081b42006-01-22 23:10:26 +000050static LibCallOptimization *OptList = 0;
Reid Spencer39a762d2005-04-25 02:53:12 +000051
Reid Spencere249a822005-04-27 07:54:40 +000052/// This class is the abstract base class for the set of optimizations that
Reid Spencer7ddcfb32005-04-27 21:29:20 +000053/// corresponds to one library call. The SimplifyLibCalls pass will call the
Reid Spencere249a822005-04-27 07:54:40 +000054/// ValidateCalledFunction method to ask the optimization if a given Function
Reid Spencer7ddcfb32005-04-27 21:29:20 +000055/// is the kind that the optimization can handle. If the subclass returns true,
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000056/// then SImplifyLibCalls will also call the OptimizeCall method to perform,
Reid Spencer7ddcfb32005-04-27 21:29:20 +000057/// or attempt to perform, the optimization(s) for the library call. Otherwise,
58/// OptimizeCall won't be called. Subclasses are responsible for providing the
59/// name of the library call (strlen, strcpy, etc.) to the LibCallOptimization
60/// constructor. This is used to efficiently select which call instructions to
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000061/// optimize. The criteria for a "lib call" is "anything with well known
Reid Spencer7ddcfb32005-04-27 21:29:20 +000062/// semantics", typically a library function that is defined by an international
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000063/// standard. Because the semantics are well known, the optimizations can
Reid Spencer7ddcfb32005-04-27 21:29:20 +000064/// generally short-circuit actually calling the function if there's a simpler
65/// way (e.g. strlen(X) can be reduced to a constant if X is a constant global).
Reid Spencere249a822005-04-27 07:54:40 +000066/// @brief Base class for library call optimizations
Chris Lattner0d4ebfc2006-01-22 22:35:08 +000067class LibCallOptimization {
Chris Lattner33081b42006-01-22 23:10:26 +000068 LibCallOptimization **Prev, *Next;
69 const char *FunctionName; ///< Name of the library call we optimize
70#ifndef NDEBUG
71 Statistic<> occurrences; ///< debug statistic (-debug-only=simplify-libcalls)
72#endif
Jeff Cohen4bc952f2005-04-29 03:05:44 +000073public:
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +000074 /// The \p fname argument must be the name of the library function being
Reid Spencer7ddcfb32005-04-27 21:29:20 +000075 /// optimized by the subclass.
76 /// @brief Constructor that registers the optimization.
Chris Lattner33081b42006-01-22 23:10:26 +000077 LibCallOptimization(const char *FName, const char *Description)
78 : FunctionName(FName)
Reid Spencere95a6472005-04-27 00:05:45 +000079#ifndef NDEBUG
Chris Lattner33081b42006-01-22 23:10:26 +000080 , occurrences("simplify-libcalls", Description)
Reid Spencere95a6472005-04-27 00:05:45 +000081#endif
Reid Spencer39a762d2005-04-25 02:53:12 +000082 {
Chris Lattner33081b42006-01-22 23:10:26 +000083 // Register this optimizer in the list of optimizations.
84 Next = OptList;
85 OptList = this;
86 Prev = &OptList;
87 if (Next) Next->Prev = &Next;
Reid Spencer39a762d2005-04-25 02:53:12 +000088 }
Chris Lattner33081b42006-01-22 23:10:26 +000089
90 /// getNext - All libcall optimizations are chained together into a list,
91 /// return the next one in the list.
92 LibCallOptimization *getNext() { return Next; }
Reid Spencer39a762d2005-04-25 02:53:12 +000093
Reid Spencer7ddcfb32005-04-27 21:29:20 +000094 /// @brief Deregister from the optlist
Chris Lattner33081b42006-01-22 23:10:26 +000095 virtual ~LibCallOptimization() {
96 *Prev = Next;
97 if (Next) Next->Prev = Prev;
98 }
Reid Spencer8ee5aac2005-04-26 03:26:15 +000099
Reid Spencere249a822005-04-27 07:54:40 +0000100 /// The implementation of this function in subclasses should determine if
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000101 /// \p F is suitable for the optimization. This method is called by
102 /// SimplifyLibCalls::runOnModule to short circuit visiting all the call
103 /// sites of such a function if that function is not suitable in the first
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000104 /// place. If the called function is suitabe, this method should return true;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000105 /// false, otherwise. This function should also perform any lazy
106 /// initialization that the LibCallOptimization needs to do, if its to return
Reid Spencere249a822005-04-27 07:54:40 +0000107 /// true. This avoids doing initialization until the optimizer is actually
108 /// going to be called upon to do some optimization.
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000109 /// @brief Determine if the function is suitable for optimization
Reid Spencere249a822005-04-27 07:54:40 +0000110 virtual bool ValidateCalledFunction(
111 const Function* F, ///< The function that is the target of call sites
112 SimplifyLibCalls& SLC ///< The pass object invoking us
113 ) = 0;
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000114
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000115 /// The implementations of this function in subclasses is the heart of the
116 /// SimplifyLibCalls algorithm. Sublcasses of this class implement
Reid Spencere249a822005-04-27 07:54:40 +0000117 /// OptimizeCall to determine if (a) the conditions are right for optimizing
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000118 /// the call and (b) to perform the optimization. If an action is taken
Reid Spencere249a822005-04-27 07:54:40 +0000119 /// against ci, the subclass is responsible for returning true and ensuring
120 /// that ci is erased from its parent.
Reid Spencere249a822005-04-27 07:54:40 +0000121 /// @brief Optimize a call, if possible.
122 virtual bool OptimizeCall(
123 CallInst* ci, ///< The call instruction that should be optimized.
124 SimplifyLibCalls& SLC ///< The pass object invoking us
125 ) = 0;
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000126
Reid Spencere249a822005-04-27 07:54:40 +0000127 /// @brief Get the name of the library call being optimized
Chris Lattner33081b42006-01-22 23:10:26 +0000128 const char *getFunctionName() const { return FunctionName; }
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000129
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000130 /// @brief Called by SimplifyLibCalls to update the occurrences statistic.
Chris Lattner33081b42006-01-22 23:10:26 +0000131 void succeeded() {
Reid Spencere249a822005-04-27 07:54:40 +0000132#ifndef NDEBUG
Chris Lattner33081b42006-01-22 23:10:26 +0000133 DEBUG(++occurrences);
Reid Spencere249a822005-04-27 07:54:40 +0000134#endif
Chris Lattner33081b42006-01-22 23:10:26 +0000135 }
Reid Spencere249a822005-04-27 07:54:40 +0000136};
137
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000138/// This class is an LLVM Pass that applies each of the LibCallOptimization
Reid Spencere249a822005-04-27 07:54:40 +0000139/// instances to all the call sites in a module, relatively efficiently. The
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000140/// purpose of this pass is to provide optimizations for calls to well-known
Reid Spencere249a822005-04-27 07:54:40 +0000141/// functions with well-known semantics, such as those in the c library. The
Chris Lattner4201cd12005-08-24 17:22:17 +0000142/// class provides the basic infrastructure for handling runOnModule. Whenever
143/// this pass finds a function call, it asks the appropriate optimizer to
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000144/// validate the call (ValidateLibraryCall). If it is validated, then
145/// the OptimizeCall method is also called.
Reid Spencere249a822005-04-27 07:54:40 +0000146/// @brief A ModulePass for optimizing well-known function calls.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000147class SimplifyLibCalls : public ModulePass {
Jeff Cohen4bc952f2005-04-29 03:05:44 +0000148public:
Reid Spencere249a822005-04-27 07:54:40 +0000149 /// We need some target data for accurate signature details that are
150 /// target dependent. So we require target data in our AnalysisUsage.
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000151 /// @brief Require TargetData from AnalysisUsage.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000152 virtual void getAnalysisUsage(AnalysisUsage& Info) const {
Reid Spencere249a822005-04-27 07:54:40 +0000153 // Ask that the TargetData analysis be performed before us so we can use
154 // the target data.
155 Info.addRequired<TargetData>();
156 }
157
158 /// For this pass, process all of the function calls in the module, calling
159 /// ValidateLibraryCall and OptimizeCall as appropriate.
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000160 /// @brief Run all the lib call optimizations on a Module.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000161 virtual bool runOnModule(Module &M) {
Reid Spencere249a822005-04-27 07:54:40 +0000162 reset(M);
163
164 bool result = false;
Chris Lattner33081b42006-01-22 23:10:26 +0000165 hash_map<std::string, LibCallOptimization*> OptznMap;
166 for (LibCallOptimization *Optzn = OptList; Optzn; Optzn = Optzn->getNext())
167 OptznMap[Optzn->getFunctionName()] = Optzn;
Reid Spencere249a822005-04-27 07:54:40 +0000168
169 // The call optimizations can be recursive. That is, the optimization might
170 // generate a call to another function which can also be optimized. This way
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000171 // we make the LibCallOptimization instances very specific to the case they
172 // handle. It also means we need to keep running over the function calls in
Reid Spencere249a822005-04-27 07:54:40 +0000173 // the module until we don't get any more optimizations possible.
174 bool found_optimization = false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000175 do {
Reid Spencere249a822005-04-27 07:54:40 +0000176 found_optimization = false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000177 for (Module::iterator FI = M.begin(), FE = M.end(); FI != FE; ++FI) {
Reid Spencere249a822005-04-27 07:54:40 +0000178 // All the "well-known" functions are external and have external linkage
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000179 // because they live in a runtime library somewhere and were (probably)
180 // not compiled by LLVM. So, we only act on external functions that
Anton Korobeynikovd61d39e2006-09-14 18:23:27 +0000181 // have external or dllimport linkage and non-empty uses.
182 if (!FI->isExternal() ||
183 !(FI->hasExternalLinkage() || FI->hasDLLImportLinkage()) ||
184 FI->use_empty())
Reid Spencere249a822005-04-27 07:54:40 +0000185 continue;
186
187 // Get the optimization class that pertains to this function
Chris Lattner33081b42006-01-22 23:10:26 +0000188 hash_map<std::string, LibCallOptimization*>::iterator OMI =
189 OptznMap.find(FI->getName());
190 if (OMI == OptznMap.end()) continue;
191
192 LibCallOptimization *CO = OMI->second;
Reid Spencere249a822005-04-27 07:54:40 +0000193
194 // Make sure the called function is suitable for the optimization
Chris Lattner33081b42006-01-22 23:10:26 +0000195 if (!CO->ValidateCalledFunction(FI, *this))
Reid Spencere249a822005-04-27 07:54:40 +0000196 continue;
197
198 // Loop over each of the uses of the function
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000199 for (Value::use_iterator UI = FI->use_begin(), UE = FI->use_end();
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000200 UI != UE ; ) {
Reid Spencere249a822005-04-27 07:54:40 +0000201 // If the use of the function is a call instruction
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000202 if (CallInst* CI = dyn_cast<CallInst>(*UI++)) {
Reid Spencere249a822005-04-27 07:54:40 +0000203 // Do the optimization on the LibCallOptimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000204 if (CO->OptimizeCall(CI, *this)) {
Reid Spencere249a822005-04-27 07:54:40 +0000205 ++SimplifiedLibCalls;
206 found_optimization = result = true;
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000207 CO->succeeded();
Reid Spencere249a822005-04-27 07:54:40 +0000208 }
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000209 }
210 }
211 }
Reid Spencere249a822005-04-27 07:54:40 +0000212 } while (found_optimization);
Chris Lattner33081b42006-01-22 23:10:26 +0000213
Reid Spencere249a822005-04-27 07:54:40 +0000214 return result;
215 }
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000216
Reid Spencere249a822005-04-27 07:54:40 +0000217 /// @brief Return the *current* module we're working on.
Reid Spencer93616972005-04-29 09:39:47 +0000218 Module* getModule() const { return M; }
Reid Spencerbb92b4f2005-04-26 19:13:17 +0000219
Reid Spencere249a822005-04-27 07:54:40 +0000220 /// @brief Return the *current* target data for the module we're working on.
Reid Spencer93616972005-04-29 09:39:47 +0000221 TargetData* getTargetData() const { return TD; }
222
223 /// @brief Return the size_t type -- syntactic shortcut
224 const Type* getIntPtrType() const { return TD->getIntPtrType(); }
225
Evan Cheng1fc40252006-06-16 08:36:35 +0000226 /// @brief Return a Function* for the putchar libcall
227 Function* get_putchar() {
228 if (!putchar_func)
229 putchar_func = M->getOrInsertFunction("putchar", Type::IntTy, Type::IntTy,
230 NULL);
231 return putchar_func;
232 }
233
234 /// @brief Return a Function* for the puts libcall
235 Function* get_puts() {
236 if (!puts_func)
237 puts_func = M->getOrInsertFunction("puts", Type::IntTy,
238 PointerType::get(Type::SByteTy),
239 NULL);
240 return puts_func;
241 }
242
Reid Spencer93616972005-04-29 09:39:47 +0000243 /// @brief Return a Function* for the fputc libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000244 Function* get_fputc(const Type* FILEptr_type) {
Reid Spencer93616972005-04-29 09:39:47 +0000245 if (!fputc_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000246 fputc_func = M->getOrInsertFunction("fputc", Type::IntTy, Type::IntTy,
247 FILEptr_type, NULL);
Reid Spencer93616972005-04-29 09:39:47 +0000248 return fputc_func;
249 }
250
Evan Chengf2ea5872006-06-16 04:52:30 +0000251 /// @brief Return a Function* for the fputs libcall
252 Function* get_fputs(const Type* FILEptr_type) {
253 if (!fputs_func)
254 fputs_func = M->getOrInsertFunction("fputs", Type::IntTy,
255 PointerType::get(Type::SByteTy),
256 FILEptr_type, NULL);
257 return fputs_func;
258 }
259
Reid Spencer93616972005-04-29 09:39:47 +0000260 /// @brief Return a Function* for the fwrite libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000261 Function* get_fwrite(const Type* FILEptr_type) {
Reid Spencer93616972005-04-29 09:39:47 +0000262 if (!fwrite_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000263 fwrite_func = M->getOrInsertFunction("fwrite", TD->getIntPtrType(),
264 PointerType::get(Type::SByteTy),
265 TD->getIntPtrType(),
266 TD->getIntPtrType(),
267 FILEptr_type, NULL);
Reid Spencer93616972005-04-29 09:39:47 +0000268 return fwrite_func;
269 }
270
271 /// @brief Return a Function* for the sqrt libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000272 Function* get_sqrt() {
Reid Spencer93616972005-04-29 09:39:47 +0000273 if (!sqrt_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000274 sqrt_func = M->getOrInsertFunction("sqrt", Type::DoubleTy,
275 Type::DoubleTy, NULL);
Reid Spencer93616972005-04-29 09:39:47 +0000276 return sqrt_func;
277 }
Reid Spencere249a822005-04-27 07:54:40 +0000278
279 /// @brief Return a Function* for the strlen libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000280 Function* get_strcpy() {
Reid Spencer1e520fd2005-05-04 03:20:21 +0000281 if (!strcpy_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000282 strcpy_func = M->getOrInsertFunction("strcpy",
283 PointerType::get(Type::SByteTy),
284 PointerType::get(Type::SByteTy),
285 PointerType::get(Type::SByteTy),
286 NULL);
Reid Spencer1e520fd2005-05-04 03:20:21 +0000287 return strcpy_func;
288 }
289
290 /// @brief Return a Function* for the strlen libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000291 Function* get_strlen() {
Reid Spencere249a822005-04-27 07:54:40 +0000292 if (!strlen_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000293 strlen_func = M->getOrInsertFunction("strlen", TD->getIntPtrType(),
294 PointerType::get(Type::SByteTy),
295 NULL);
Reid Spencere249a822005-04-27 07:54:40 +0000296 return strlen_func;
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000297 }
298
Reid Spencer38cabd72005-05-03 07:23:44 +0000299 /// @brief Return a Function* for the memchr libcall
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000300 Function* get_memchr() {
Reid Spencer38cabd72005-05-03 07:23:44 +0000301 if (!memchr_func)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000302 memchr_func = M->getOrInsertFunction("memchr",
303 PointerType::get(Type::SByteTy),
304 PointerType::get(Type::SByteTy),
305 Type::IntTy, TD->getIntPtrType(),
306 NULL);
Reid Spencer38cabd72005-05-03 07:23:44 +0000307 return memchr_func;
308 }
309
Reid Spencere249a822005-04-27 07:54:40 +0000310 /// @brief Return a Function* for the memcpy libcall
Chris Lattner4201cd12005-08-24 17:22:17 +0000311 Function* get_memcpy() {
312 if (!memcpy_func) {
313 const Type *SBP = PointerType::get(Type::SByteTy);
Chris Lattnerea7986a2006-03-03 01:30:23 +0000314 const char *N = TD->getIntPtrType() == Type::UIntTy ?
315 "llvm.memcpy.i32" : "llvm.memcpy.i64";
316 memcpy_func = M->getOrInsertFunction(N, Type::VoidTy, SBP, SBP,
317 TD->getIntPtrType(), Type::UIntTy,
318 NULL);
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000319 }
Reid Spencere249a822005-04-27 07:54:40 +0000320 return memcpy_func;
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000321 }
Reid Spencer76dab9a2005-04-26 05:24:00 +0000322
Chris Lattner57740402006-01-23 06:24:46 +0000323 Function *getUnaryFloatFunction(const char *Name, Function *&Cache) {
324 if (!Cache)
325 Cache = M->getOrInsertFunction(Name, Type::FloatTy, Type::FloatTy, NULL);
326 return Cache;
Chris Lattner4201cd12005-08-24 17:22:17 +0000327 }
328
Chris Lattner57740402006-01-23 06:24:46 +0000329 Function *get_floorf() { return getUnaryFloatFunction("floorf", floorf_func);}
330 Function *get_ceilf() { return getUnaryFloatFunction( "ceilf", ceilf_func);}
331 Function *get_roundf() { return getUnaryFloatFunction("roundf", roundf_func);}
332 Function *get_rintf() { return getUnaryFloatFunction( "rintf", rintf_func);}
333 Function *get_nearbyintf() { return getUnaryFloatFunction("nearbyintf",
334 nearbyintf_func); }
Reid Spencere249a822005-04-27 07:54:40 +0000335private:
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000336 /// @brief Reset our cached data for a new Module
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000337 void reset(Module& mod) {
Reid Spencere249a822005-04-27 07:54:40 +0000338 M = &mod;
339 TD = &getAnalysis<TargetData>();
Evan Cheng1fc40252006-06-16 08:36:35 +0000340 putchar_func = 0;
341 puts_func = 0;
Reid Spencer93616972005-04-29 09:39:47 +0000342 fputc_func = 0;
Evan Chengf2ea5872006-06-16 04:52:30 +0000343 fputs_func = 0;
Reid Spencer93616972005-04-29 09:39:47 +0000344 fwrite_func = 0;
Reid Spencere249a822005-04-27 07:54:40 +0000345 memcpy_func = 0;
Reid Spencer38cabd72005-05-03 07:23:44 +0000346 memchr_func = 0;
Reid Spencer93616972005-04-29 09:39:47 +0000347 sqrt_func = 0;
Reid Spencer1e520fd2005-05-04 03:20:21 +0000348 strcpy_func = 0;
Reid Spencere249a822005-04-27 07:54:40 +0000349 strlen_func = 0;
Chris Lattner4201cd12005-08-24 17:22:17 +0000350 floorf_func = 0;
Chris Lattner57740402006-01-23 06:24:46 +0000351 ceilf_func = 0;
352 roundf_func = 0;
353 rintf_func = 0;
354 nearbyintf_func = 0;
Reid Spencer76dab9a2005-04-26 05:24:00 +0000355 }
Reid Spencer39a762d2005-04-25 02:53:12 +0000356
Reid Spencere249a822005-04-27 07:54:40 +0000357private:
Chris Lattner57740402006-01-23 06:24:46 +0000358 /// Caches for function pointers.
Evan Cheng1fc40252006-06-16 08:36:35 +0000359 Function *putchar_func, *puts_func;
Evan Chengf2ea5872006-06-16 04:52:30 +0000360 Function *fputc_func, *fputs_func, *fwrite_func;
Chris Lattner57740402006-01-23 06:24:46 +0000361 Function *memcpy_func, *memchr_func;
362 Function* sqrt_func;
363 Function *strcpy_func, *strlen_func;
364 Function *floorf_func, *ceilf_func, *roundf_func;
365 Function *rintf_func, *nearbyintf_func;
366 Module *M; ///< Cached Module
367 TargetData *TD; ///< Cached TargetData
Reid Spencere249a822005-04-27 07:54:40 +0000368};
369
370// Register the pass
Chris Lattnerc2d3d312006-08-27 22:42:52 +0000371RegisterPass<SimplifyLibCalls>
372X("simplify-libcalls", "Simplify well-known library calls");
Reid Spencere249a822005-04-27 07:54:40 +0000373
374} // anonymous namespace
375
376// The only public symbol in this file which just instantiates the pass object
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000377ModulePass *llvm::createSimplifyLibCallsPass() {
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000378 return new SimplifyLibCalls();
Reid Spencere249a822005-04-27 07:54:40 +0000379}
380
381// Classes below here, in the anonymous namespace, are all subclasses of the
382// LibCallOptimization class, each implementing all optimizations possible for a
383// single well-known library call. Each has a static singleton instance that
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000384// auto registers it into the "optlist" global above.
Reid Spencere249a822005-04-27 07:54:40 +0000385namespace {
386
Reid Spencera7828ba2005-06-18 17:46:28 +0000387// Forward declare utility functions.
Reid Spencer4c444fe2005-04-30 03:17:54 +0000388bool getConstantStringLength(Value* V, uint64_t& len, ConstantArray** A = 0 );
Reid Spencera7828ba2005-06-18 17:46:28 +0000389Value *CastToCStr(Value *V, Instruction &IP);
Reid Spencere249a822005-04-27 07:54:40 +0000390
391/// This LibCallOptimization will find instances of a call to "exit" that occurs
Reid Spencer39a762d2005-04-25 02:53:12 +0000392/// within the "main" function and change it to a simple "ret" instruction with
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000393/// the same value passed to the exit function. When this is done, it splits the
394/// basic block at the exit(3) call and deletes the call instruction.
Reid Spencer39a762d2005-04-25 02:53:12 +0000395/// @brief Replace calls to exit in main with a simple return
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000396struct ExitInMainOptimization : public LibCallOptimization {
Reid Spencer95d8efd2005-05-03 02:54:54 +0000397 ExitInMainOptimization() : LibCallOptimization("exit",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000398 "Number of 'exit' calls simplified") {}
Reid Spencerf2534c72005-04-25 21:11:48 +0000399
400 // Make sure the called function looks like exit (int argument, int return
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000401 // type, external linkage, not varargs).
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000402 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
403 return F->arg_size() >= 1 && F->arg_begin()->getType()->isInteger();
Reid Spencerf2534c72005-04-25 21:11:48 +0000404 }
405
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000406 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencerf2534c72005-04-25 21:11:48 +0000407 // To be careful, we check that the call to exit is coming from "main", that
408 // main has external linkage, and the return type of main and the argument
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000409 // to exit have the same type.
Reid Spencerf2534c72005-04-25 21:11:48 +0000410 Function *from = ci->getParent()->getParent();
411 if (from->hasExternalLinkage())
412 if (from->getReturnType() == ci->getOperand(1)->getType())
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000413 if (from->getName() == "main") {
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000414 // Okay, time to actually do the optimization. First, get the basic
Reid Spencerf2534c72005-04-25 21:11:48 +0000415 // block of the call instruction
416 BasicBlock* bb = ci->getParent();
Reid Spencer39a762d2005-04-25 02:53:12 +0000417
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000418 // Create a return instruction that we'll replace the call with.
419 // Note that the argument of the return is the argument of the call
Reid Spencerf2534c72005-04-25 21:11:48 +0000420 // instruction.
Chris Lattnercd60d382006-05-12 23:35:26 +0000421 new ReturnInst(ci->getOperand(1), ci);
Reid Spencer39a762d2005-04-25 02:53:12 +0000422
Reid Spencerf2534c72005-04-25 21:11:48 +0000423 // Split the block at the call instruction which places it in a new
424 // basic block.
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000425 bb->splitBasicBlock(ci);
Reid Spencer39a762d2005-04-25 02:53:12 +0000426
Reid Spencerf2534c72005-04-25 21:11:48 +0000427 // The block split caused a branch instruction to be inserted into
428 // the end of the original block, right after the return instruction
429 // that we put there. That's not a valid block, so delete the branch
430 // instruction.
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000431 bb->getInstList().pop_back();
Reid Spencer39a762d2005-04-25 02:53:12 +0000432
Reid Spencerf2534c72005-04-25 21:11:48 +0000433 // Now we can finally get rid of the call instruction which now lives
434 // in the new basic block.
435 ci->eraseFromParent();
436
437 // Optimization succeeded, return true.
438 return true;
439 }
440 // We didn't pass the criteria for this optimization so return false
441 return false;
Reid Spencer9bbaa2a2005-04-25 03:59:26 +0000442 }
Reid Spencer39a762d2005-04-25 02:53:12 +0000443} ExitInMainOptimizer;
444
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000445/// This LibCallOptimization will simplify a call to the strcat library
446/// function. The simplification is possible only if the string being
447/// concatenated is a constant array or a constant expression that results in
448/// a constant string. In this case we can replace it with strlen + llvm.memcpy
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000449/// of the constant string. Both of these calls are further reduced, if possible
450/// on subsequent passes.
Reid Spencerf2534c72005-04-25 21:11:48 +0000451/// @brief Simplify the strcat library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000452struct StrCatOptimization : public LibCallOptimization {
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000453public:
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000454 /// @brief Default constructor
Reid Spencer95d8efd2005-05-03 02:54:54 +0000455 StrCatOptimization() : LibCallOptimization("strcat",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000456 "Number of 'strcat' calls simplified") {}
Reid Spencere249a822005-04-27 07:54:40 +0000457
458public:
Reid Spencerf2534c72005-04-25 21:11:48 +0000459
460 /// @brief Make sure that the "strcat" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000461 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencerf2534c72005-04-25 21:11:48 +0000462 if (f->getReturnType() == PointerType::get(Type::SByteTy))
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000463 if (f->arg_size() == 2)
Reid Spencerf2534c72005-04-25 21:11:48 +0000464 {
465 Function::const_arg_iterator AI = f->arg_begin();
466 if (AI++->getType() == PointerType::get(Type::SByteTy))
467 if (AI->getType() == PointerType::get(Type::SByteTy))
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000468 {
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000469 // Indicate this is a suitable call type.
Reid Spencerf2534c72005-04-25 21:11:48 +0000470 return true;
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000471 }
Reid Spencerf2534c72005-04-25 21:11:48 +0000472 }
473 return false;
474 }
475
Reid Spencere249a822005-04-27 07:54:40 +0000476 /// @brief Optimize the strcat library function
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000477 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencer08b49402005-04-27 17:46:54 +0000478 // Extract some information from the instruction
Reid Spencer08b49402005-04-27 17:46:54 +0000479 Value* dest = ci->getOperand(1);
480 Value* src = ci->getOperand(2);
481
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000482 // Extract the initializer (while making numerous checks) from the
Reid Spencer76dab9a2005-04-26 05:24:00 +0000483 // source operand of the call to strcat. If we get null back, one of
484 // a variety of checks in get_GVInitializer failed
Reid Spencerb4f7b832005-04-26 07:45:18 +0000485 uint64_t len = 0;
Reid Spencer08b49402005-04-27 17:46:54 +0000486 if (!getConstantStringLength(src,len))
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000487 return false;
488
Reid Spencerb4f7b832005-04-26 07:45:18 +0000489 // Handle the simple, do-nothing case
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000490 if (len == 0) {
Reid Spencer08b49402005-04-27 17:46:54 +0000491 ci->replaceAllUsesWith(dest);
Reid Spencer8ee5aac2005-04-26 03:26:15 +0000492 ci->eraseFromParent();
493 return true;
494 }
495
Reid Spencerb4f7b832005-04-26 07:45:18 +0000496 // Increment the length because we actually want to memcpy the null
497 // terminator as well.
498 len++;
Reid Spencerf2534c72005-04-25 21:11:48 +0000499
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000500 // We need to find the end of the destination string. That's where the
501 // memory is to be moved to. We just generate a call to strlen (further
502 // optimized in another pass). Note that the SLC.get_strlen() call
Reid Spencerb4f7b832005-04-26 07:45:18 +0000503 // caches the Function* for us.
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000504 CallInst* strlen_inst =
Reid Spencer08b49402005-04-27 17:46:54 +0000505 new CallInst(SLC.get_strlen(), dest, dest->getName()+".len",ci);
Reid Spencerb4f7b832005-04-26 07:45:18 +0000506
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000507 // Now that we have the destination's length, we must index into the
Reid Spencerb4f7b832005-04-26 07:45:18 +0000508 // destination's pointer to get the actual memcpy destination (end of
509 // the string .. we're concatenating).
510 std::vector<Value*> idx;
511 idx.push_back(strlen_inst);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000512 GetElementPtrInst* gep =
Reid Spencer08b49402005-04-27 17:46:54 +0000513 new GetElementPtrInst(dest,idx,dest->getName()+".indexed",ci);
Reid Spencerb4f7b832005-04-26 07:45:18 +0000514
515 // We have enough information to now generate the memcpy call to
516 // do the concatenation for us.
517 std::vector<Value*> vals;
518 vals.push_back(gep); // destination
519 vals.push_back(ci->getOperand(2)); // source
Reid Spencere0fc4df2006-10-20 07:07:24 +0000520 vals.push_back(ConstantInt::get(SLC.getIntPtrType(),len)); // length
521 vals.push_back(ConstantInt::get(Type::UIntTy,1)); // alignment
Reid Spencer08b49402005-04-27 17:46:54 +0000522 new CallInst(SLC.get_memcpy(), vals, "", ci);
Reid Spencerb4f7b832005-04-26 07:45:18 +0000523
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000524 // Finally, substitute the first operand of the strcat call for the
525 // strcat call itself since strcat returns its first operand; and,
Reid Spencerb4f7b832005-04-26 07:45:18 +0000526 // kill the strcat CallInst.
Reid Spencer08b49402005-04-27 17:46:54 +0000527 ci->replaceAllUsesWith(dest);
Reid Spencerb4f7b832005-04-26 07:45:18 +0000528 ci->eraseFromParent();
529 return true;
Reid Spencer9bbaa2a2005-04-25 03:59:26 +0000530 }
531} StrCatOptimizer;
532
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000533/// This LibCallOptimization will simplify a call to the strchr library
Reid Spencer38cabd72005-05-03 07:23:44 +0000534/// function. It optimizes out cases where the arguments are both constant
535/// and the result can be determined statically.
536/// @brief Simplify the strcmp library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000537struct StrChrOptimization : public LibCallOptimization {
Reid Spencer38cabd72005-05-03 07:23:44 +0000538public:
539 StrChrOptimization() : LibCallOptimization("strchr",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000540 "Number of 'strchr' calls simplified") {}
Reid Spencer38cabd72005-05-03 07:23:44 +0000541
542 /// @brief Make sure that the "strchr" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000543 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000544 if (f->getReturnType() == PointerType::get(Type::SByteTy) &&
Reid Spencer38cabd72005-05-03 07:23:44 +0000545 f->arg_size() == 2)
546 return true;
547 return false;
548 }
549
Chris Lattnerf8053ce2005-05-20 22:22:25 +0000550 /// @brief Perform the strchr optimizations
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000551 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
Reid Spencer38cabd72005-05-03 07:23:44 +0000552 // If there aren't three operands, bail
553 if (ci->getNumOperands() != 3)
554 return false;
555
556 // Check that the first argument to strchr is a constant array of sbyte.
557 // If it is, get the length and data, otherwise return false.
558 uint64_t len = 0;
Reid Spencere0fc4df2006-10-20 07:07:24 +0000559 ConstantArray* CA = 0;
Reid Spencer38cabd72005-05-03 07:23:44 +0000560 if (!getConstantStringLength(ci->getOperand(1),len,&CA))
561 return false;
562
Reid Spencere0fc4df2006-10-20 07:07:24 +0000563 // Check that the second argument to strchr is a constant int. If it isn't
564 // a constant signed integer, we can try an alternate optimization
565 ConstantInt* CSI = dyn_cast<ConstantInt>(ci->getOperand(2));
566 if (!CSI || CSI->getType()->isUnsigned() ) {
567 // The second operand is not constant, or not signed. Just lower this to
568 // memchr since we know the length of the string since it is constant.
Reid Spencer38cabd72005-05-03 07:23:44 +0000569 Function* f = SLC.get_memchr();
570 std::vector<Value*> args;
571 args.push_back(ci->getOperand(1));
572 args.push_back(ci->getOperand(2));
Reid Spencere0fc4df2006-10-20 07:07:24 +0000573 args.push_back(ConstantInt::get(SLC.getIntPtrType(),len));
Reid Spencer38cabd72005-05-03 07:23:44 +0000574 ci->replaceAllUsesWith( new CallInst(f,args,ci->getName(),ci));
575 ci->eraseFromParent();
576 return true;
577 }
578
579 // Get the character we're looking for
Reid Spencere0fc4df2006-10-20 07:07:24 +0000580 int64_t chr = CSI->getSExtValue();
Reid Spencer38cabd72005-05-03 07:23:44 +0000581
582 // Compute the offset
583 uint64_t offset = 0;
584 bool char_found = false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000585 for (uint64_t i = 0; i < len; ++i) {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000586 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(i))) {
Reid Spencer38cabd72005-05-03 07:23:44 +0000587 // Check for the null terminator
588 if (CI->isNullValue())
589 break; // we found end of string
Reid Spencere0fc4df2006-10-20 07:07:24 +0000590 else if (CI->getSExtValue() == chr) {
Reid Spencer38cabd72005-05-03 07:23:44 +0000591 char_found = true;
592 offset = i;
593 break;
594 }
595 }
596 }
597
598 // strchr(s,c) -> offset_of_in(c,s)
599 // (if c is a constant integer and s is a constant string)
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000600 if (char_found) {
Reid Spencer38cabd72005-05-03 07:23:44 +0000601 std::vector<Value*> indices;
Reid Spencere0fc4df2006-10-20 07:07:24 +0000602 indices.push_back(ConstantInt::get(Type::ULongTy,offset));
Reid Spencer38cabd72005-05-03 07:23:44 +0000603 GetElementPtrInst* GEP = new GetElementPtrInst(ci->getOperand(1),indices,
604 ci->getOperand(1)->getName()+".strchr",ci);
605 ci->replaceAllUsesWith(GEP);
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000606 } else {
Reid Spencer38cabd72005-05-03 07:23:44 +0000607 ci->replaceAllUsesWith(
608 ConstantPointerNull::get(PointerType::get(Type::SByteTy)));
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000609 }
Reid Spencer38cabd72005-05-03 07:23:44 +0000610 ci->eraseFromParent();
611 return true;
612 }
613} StrChrOptimizer;
614
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000615/// This LibCallOptimization will simplify a call to the strcmp library
Reid Spencer4c444fe2005-04-30 03:17:54 +0000616/// function. It optimizes out cases where one or both arguments are constant
617/// and the result can be determined statically.
618/// @brief Simplify the strcmp library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000619struct StrCmpOptimization : public LibCallOptimization {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000620public:
Reid Spencer95d8efd2005-05-03 02:54:54 +0000621 StrCmpOptimization() : LibCallOptimization("strcmp",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000622 "Number of 'strcmp' calls simplified") {}
Reid Spencer4c444fe2005-04-30 03:17:54 +0000623
Chris Lattnerf8053ce2005-05-20 22:22:25 +0000624 /// @brief Make sure that the "strcmp" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000625 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
626 return F->getReturnType() == Type::IntTy && F->arg_size() == 2;
Reid Spencer4c444fe2005-04-30 03:17:54 +0000627 }
628
Chris Lattnerf8053ce2005-05-20 22:22:25 +0000629 /// @brief Perform the strcmp optimization
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000630 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000631 // First, check to see if src and destination are the same. If they are,
Reid Spencer16449a92005-04-30 06:45:47 +0000632 // then the optimization is to replace the CallInst with a constant 0
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000633 // because the call is a no-op.
Reid Spencer4c444fe2005-04-30 03:17:54 +0000634 Value* s1 = ci->getOperand(1);
635 Value* s2 = ci->getOperand(2);
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000636 if (s1 == s2) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000637 // strcmp(x,x) -> 0
638 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,0));
639 ci->eraseFromParent();
640 return true;
641 }
642
643 bool isstr_1 = false;
644 uint64_t len_1 = 0;
645 ConstantArray* A1;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000646 if (getConstantStringLength(s1,len_1,&A1)) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000647 isstr_1 = true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000648 if (len_1 == 0) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000649 // strcmp("",x) -> *x
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000650 LoadInst* load =
Reid Spencera7828ba2005-06-18 17:46:28 +0000651 new LoadInst(CastToCStr(s2,*ci), ci->getName()+".load",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000652 CastInst* cast =
Reid Spencer4c444fe2005-04-30 03:17:54 +0000653 new CastInst(load,Type::IntTy,ci->getName()+".int",ci);
654 ci->replaceAllUsesWith(cast);
655 ci->eraseFromParent();
656 return true;
657 }
658 }
659
660 bool isstr_2 = false;
661 uint64_t len_2 = 0;
662 ConstantArray* A2;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000663 if (getConstantStringLength(s2, len_2, &A2)) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000664 isstr_2 = true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000665 if (len_2 == 0) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000666 // strcmp(x,"") -> *x
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000667 LoadInst* load =
Reid Spencera7828ba2005-06-18 17:46:28 +0000668 new LoadInst(CastToCStr(s1,*ci),ci->getName()+".val",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000669 CastInst* cast =
Reid Spencer4c444fe2005-04-30 03:17:54 +0000670 new CastInst(load,Type::IntTy,ci->getName()+".int",ci);
671 ci->replaceAllUsesWith(cast);
672 ci->eraseFromParent();
673 return true;
674 }
675 }
676
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000677 if (isstr_1 && isstr_2) {
Reid Spencer4c444fe2005-04-30 03:17:54 +0000678 // strcmp(x,y) -> cnst (if both x and y are constant strings)
679 std::string str1 = A1->getAsString();
680 std::string str2 = A2->getAsString();
681 int result = strcmp(str1.c_str(), str2.c_str());
Reid Spencere0fc4df2006-10-20 07:07:24 +0000682 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,result));
Reid Spencer4c444fe2005-04-30 03:17:54 +0000683 ci->eraseFromParent();
684 return true;
685 }
686 return false;
687 }
688} StrCmpOptimizer;
689
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000690/// This LibCallOptimization will simplify a call to the strncmp library
Reid Spencer49fa07042005-05-03 01:43:45 +0000691/// function. It optimizes out cases where one or both arguments are constant
692/// and the result can be determined statically.
693/// @brief Simplify the strncmp library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000694struct StrNCmpOptimization : public LibCallOptimization {
Reid Spencer49fa07042005-05-03 01:43:45 +0000695public:
Reid Spencer95d8efd2005-05-03 02:54:54 +0000696 StrNCmpOptimization() : LibCallOptimization("strncmp",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000697 "Number of 'strncmp' calls simplified") {}
Reid Spencer49fa07042005-05-03 01:43:45 +0000698
Chris Lattnerf8053ce2005-05-20 22:22:25 +0000699 /// @brief Make sure that the "strncmp" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000700 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencer49fa07042005-05-03 01:43:45 +0000701 if (f->getReturnType() == Type::IntTy && f->arg_size() == 3)
702 return true;
703 return false;
704 }
705
706 /// @brief Perform the strncpy optimization
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000707 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000708 // First, check to see if src and destination are the same. If they are,
709 // then the optimization is to replace the CallInst with a constant 0
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000710 // because the call is a no-op.
Reid Spencer49fa07042005-05-03 01:43:45 +0000711 Value* s1 = ci->getOperand(1);
712 Value* s2 = ci->getOperand(2);
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000713 if (s1 == s2) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000714 // strncmp(x,x,l) -> 0
715 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,0));
716 ci->eraseFromParent();
717 return true;
718 }
719
720 // Check the length argument, if it is Constant zero then the strings are
721 // considered equal.
722 uint64_t len_arg = 0;
723 bool len_arg_is_const = false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000724 if (ConstantInt* len_CI = dyn_cast<ConstantInt>(ci->getOperand(3))) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000725 len_arg_is_const = true;
Reid Spencere0fc4df2006-10-20 07:07:24 +0000726 len_arg = len_CI->getZExtValue();
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000727 if (len_arg == 0) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000728 // strncmp(x,y,0) -> 0
729 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,0));
730 ci->eraseFromParent();
731 return true;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000732 }
Reid Spencer49fa07042005-05-03 01:43:45 +0000733 }
734
735 bool isstr_1 = false;
736 uint64_t len_1 = 0;
737 ConstantArray* A1;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000738 if (getConstantStringLength(s1, len_1, &A1)) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000739 isstr_1 = true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000740 if (len_1 == 0) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000741 // strncmp("",x) -> *x
742 LoadInst* load = new LoadInst(s1,ci->getName()+".load",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000743 CastInst* cast =
Reid Spencer49fa07042005-05-03 01:43:45 +0000744 new CastInst(load,Type::IntTy,ci->getName()+".int",ci);
745 ci->replaceAllUsesWith(cast);
746 ci->eraseFromParent();
747 return true;
748 }
749 }
750
751 bool isstr_2 = false;
752 uint64_t len_2 = 0;
753 ConstantArray* A2;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000754 if (getConstantStringLength(s2,len_2,&A2)) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000755 isstr_2 = true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000756 if (len_2 == 0) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000757 // strncmp(x,"") -> *x
758 LoadInst* load = new LoadInst(s2,ci->getName()+".val",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000759 CastInst* cast =
Reid Spencer49fa07042005-05-03 01:43:45 +0000760 new CastInst(load,Type::IntTy,ci->getName()+".int",ci);
761 ci->replaceAllUsesWith(cast);
762 ci->eraseFromParent();
763 return true;
764 }
765 }
766
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000767 if (isstr_1 && isstr_2 && len_arg_is_const) {
Reid Spencer49fa07042005-05-03 01:43:45 +0000768 // strncmp(x,y,const) -> constant
769 std::string str1 = A1->getAsString();
770 std::string str2 = A2->getAsString();
771 int result = strncmp(str1.c_str(), str2.c_str(), len_arg);
Reid Spencere0fc4df2006-10-20 07:07:24 +0000772 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,result));
Reid Spencer49fa07042005-05-03 01:43:45 +0000773 ci->eraseFromParent();
774 return true;
775 }
776 return false;
777 }
778} StrNCmpOptimizer;
779
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000780/// This LibCallOptimization will simplify a call to the strcpy library
781/// function. Two optimizations are possible:
Reid Spencere249a822005-04-27 07:54:40 +0000782/// (1) If src and dest are the same and not volatile, just return dest
783/// (2) If the src is a constant then we can convert to llvm.memmove
784/// @brief Simplify the strcpy library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000785struct StrCpyOptimization : public LibCallOptimization {
Reid Spencere249a822005-04-27 07:54:40 +0000786public:
Reid Spencer95d8efd2005-05-03 02:54:54 +0000787 StrCpyOptimization() : LibCallOptimization("strcpy",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000788 "Number of 'strcpy' calls simplified") {}
Reid Spencere249a822005-04-27 07:54:40 +0000789
790 /// @brief Make sure that the "strcpy" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000791 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencere249a822005-04-27 07:54:40 +0000792 if (f->getReturnType() == PointerType::get(Type::SByteTy))
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000793 if (f->arg_size() == 2) {
Reid Spencere249a822005-04-27 07:54:40 +0000794 Function::const_arg_iterator AI = f->arg_begin();
795 if (AI++->getType() == PointerType::get(Type::SByteTy))
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000796 if (AI->getType() == PointerType::get(Type::SByteTy)) {
Reid Spencere249a822005-04-27 07:54:40 +0000797 // Indicate this is a suitable call type.
798 return true;
799 }
800 }
801 return false;
802 }
803
804 /// @brief Perform the strcpy optimization
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000805 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencere249a822005-04-27 07:54:40 +0000806 // First, check to see if src and destination are the same. If they are,
807 // then the optimization is to replace the CallInst with the destination
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000808 // because the call is a no-op. Note that this corresponds to the
Reid Spencere249a822005-04-27 07:54:40 +0000809 // degenerate strcpy(X,X) case which should have "undefined" results
810 // according to the C specification. However, it occurs sometimes and
811 // we optimize it as a no-op.
812 Value* dest = ci->getOperand(1);
813 Value* src = ci->getOperand(2);
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000814 if (dest == src) {
Reid Spencere249a822005-04-27 07:54:40 +0000815 ci->replaceAllUsesWith(dest);
816 ci->eraseFromParent();
817 return true;
818 }
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000819
Reid Spencere249a822005-04-27 07:54:40 +0000820 // Get the length of the constant string referenced by the second operand,
821 // the "src" parameter. Fail the optimization if we can't get the length
822 // (note that getConstantStringLength does lots of checks to make sure this
823 // is valid).
824 uint64_t len = 0;
825 if (!getConstantStringLength(ci->getOperand(2),len))
826 return false;
827
828 // If the constant string's length is zero we can optimize this by just
829 // doing a store of 0 at the first byte of the destination
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000830 if (len == 0) {
Reid Spencere249a822005-04-27 07:54:40 +0000831 new StoreInst(ConstantInt::get(Type::SByteTy,0),ci->getOperand(1),ci);
832 ci->replaceAllUsesWith(dest);
833 ci->eraseFromParent();
834 return true;
835 }
836
837 // Increment the length because we actually want to memcpy the null
838 // terminator as well.
839 len++;
840
Reid Spencere249a822005-04-27 07:54:40 +0000841 // We have enough information to now generate the memcpy call to
842 // do the concatenation for us.
843 std::vector<Value*> vals;
844 vals.push_back(dest); // destination
845 vals.push_back(src); // source
Reid Spencere0fc4df2006-10-20 07:07:24 +0000846 vals.push_back(ConstantInt::get(SLC.getIntPtrType(),len)); // length
847 vals.push_back(ConstantInt::get(Type::UIntTy,1)); // alignment
Reid Spencer08b49402005-04-27 17:46:54 +0000848 new CallInst(SLC.get_memcpy(), vals, "", ci);
Reid Spencere249a822005-04-27 07:54:40 +0000849
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000850 // Finally, substitute the first operand of the strcat call for the
851 // strcat call itself since strcat returns its first operand; and,
Reid Spencere249a822005-04-27 07:54:40 +0000852 // kill the strcat CallInst.
853 ci->replaceAllUsesWith(dest);
854 ci->eraseFromParent();
855 return true;
856 }
857} StrCpyOptimizer;
858
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000859/// This LibCallOptimization will simplify a call to the strlen library
860/// function by replacing it with a constant value if the string provided to
Reid Spencer7ddcfb32005-04-27 21:29:20 +0000861/// it is a constant array.
Reid Spencer76dab9a2005-04-26 05:24:00 +0000862/// @brief Simplify the strlen library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +0000863struct StrLenOptimization : public LibCallOptimization {
Reid Spencer95d8efd2005-05-03 02:54:54 +0000864 StrLenOptimization() : LibCallOptimization("strlen",
Reid Spencer170ae7f2005-05-07 20:15:59 +0000865 "Number of 'strlen' calls simplified") {}
Reid Spencer76dab9a2005-04-26 05:24:00 +0000866
867 /// @brief Make sure that the "strlen" function has the right prototype
Reid Spencere249a822005-04-27 07:54:40 +0000868 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC)
Reid Spencer76dab9a2005-04-26 05:24:00 +0000869 {
Reid Spencere249a822005-04-27 07:54:40 +0000870 if (f->getReturnType() == SLC.getTargetData()->getIntPtrType())
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000871 if (f->arg_size() == 1)
Reid Spencer76dab9a2005-04-26 05:24:00 +0000872 if (Function::const_arg_iterator AI = f->arg_begin())
873 if (AI->getType() == PointerType::get(Type::SByteTy))
874 return true;
875 return false;
876 }
877
878 /// @brief Perform the strlen optimization
Reid Spencere249a822005-04-27 07:54:40 +0000879 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC)
Reid Spencer76dab9a2005-04-26 05:24:00 +0000880 {
Reid Spencer170ae7f2005-05-07 20:15:59 +0000881 // Make sure we're dealing with an sbyte* here.
882 Value* str = ci->getOperand(1);
883 if (str->getType() != PointerType::get(Type::SByteTy))
884 return false;
885
886 // Does the call to strlen have exactly one use?
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000887 if (ci->hasOneUse())
Reid Spencer170ae7f2005-05-07 20:15:59 +0000888 // Is that single use a binary operator?
889 if (BinaryOperator* bop = dyn_cast<BinaryOperator>(ci->use_back()))
890 // Is it compared against a constant integer?
891 if (ConstantInt* CI = dyn_cast<ConstantInt>(bop->getOperand(1)))
892 {
893 // Get the value the strlen result is compared to
Reid Spencere0fc4df2006-10-20 07:07:24 +0000894 uint64_t val = CI->getZExtValue();
Reid Spencer170ae7f2005-05-07 20:15:59 +0000895
896 // If its compared against length 0 with == or !=
897 if (val == 0 &&
898 (bop->getOpcode() == Instruction::SetEQ ||
899 bop->getOpcode() == Instruction::SetNE))
900 {
901 // strlen(x) != 0 -> *x != 0
902 // strlen(x) == 0 -> *x == 0
903 LoadInst* load = new LoadInst(str,str->getName()+".first",ci);
904 BinaryOperator* rbop = BinaryOperator::create(bop->getOpcode(),
Reid Spencere0fc4df2006-10-20 07:07:24 +0000905 load, ConstantInt::get(Type::SByteTy,0),
Reid Spencer170ae7f2005-05-07 20:15:59 +0000906 bop->getName()+".strlen", ci);
907 bop->replaceAllUsesWith(rbop);
908 bop->eraseFromParent();
909 ci->eraseFromParent();
910 return true;
911 }
912 }
913
914 // Get the length of the constant string operand
Reid Spencerb4f7b832005-04-26 07:45:18 +0000915 uint64_t len = 0;
916 if (!getConstantStringLength(ci->getOperand(1),len))
Reid Spencer76dab9a2005-04-26 05:24:00 +0000917 return false;
918
Reid Spencer170ae7f2005-05-07 20:15:59 +0000919 // strlen("xyz") -> 3 (for example)
Chris Lattnere17c5d02005-08-01 16:52:50 +0000920 const Type *Ty = SLC.getTargetData()->getIntPtrType();
921 if (Ty->isSigned())
Reid Spencere0fc4df2006-10-20 07:07:24 +0000922 ci->replaceAllUsesWith(ConstantInt::get(Ty, len));
Chris Lattnere17c5d02005-08-01 16:52:50 +0000923 else
Reid Spencere0fc4df2006-10-20 07:07:24 +0000924 ci->replaceAllUsesWith(ConstantInt::get(Ty, len));
Chris Lattnere17c5d02005-08-01 16:52:50 +0000925
Reid Spencerb4f7b832005-04-26 07:45:18 +0000926 ci->eraseFromParent();
927 return true;
Reid Spencer76dab9a2005-04-26 05:24:00 +0000928 }
929} StrLenOptimizer;
930
Chris Lattnerc244e7c2005-09-29 04:54:20 +0000931/// IsOnlyUsedInEqualsComparison - Return true if it only matters that the value
932/// is equal or not-equal to zero.
933static bool IsOnlyUsedInEqualsZeroComparison(Instruction *I) {
934 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
935 UI != E; ++UI) {
936 Instruction *User = cast<Instruction>(*UI);
937 if (User->getOpcode() == Instruction::SetNE ||
938 User->getOpcode() == Instruction::SetEQ) {
939 if (isa<Constant>(User->getOperand(1)) &&
940 cast<Constant>(User->getOperand(1))->isNullValue())
941 continue;
942 } else if (CastInst *CI = dyn_cast<CastInst>(User))
943 if (CI->getType() == Type::BoolTy)
944 continue;
945 // Unknown instruction.
946 return false;
947 }
948 return true;
949}
950
951/// This memcmpOptimization will simplify a call to the memcmp library
952/// function.
953struct memcmpOptimization : public LibCallOptimization {
954 /// @brief Default Constructor
955 memcmpOptimization()
956 : LibCallOptimization("memcmp", "Number of 'memcmp' calls simplified") {}
957
958 /// @brief Make sure that the "memcmp" function has the right prototype
959 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &TD) {
960 Function::const_arg_iterator AI = F->arg_begin();
961 if (F->arg_size() != 3 || !isa<PointerType>(AI->getType())) return false;
962 if (!isa<PointerType>((++AI)->getType())) return false;
963 if (!(++AI)->getType()->isInteger()) return false;
964 if (!F->getReturnType()->isInteger()) return false;
965 return true;
966 }
967
968 /// Because of alignment and instruction information that we don't have, we
969 /// leave the bulk of this to the code generators.
970 ///
971 /// Note that we could do much more if we could force alignment on otherwise
972 /// small aligned allocas, or if we could indicate that loads have a small
973 /// alignment.
974 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &TD) {
975 Value *LHS = CI->getOperand(1), *RHS = CI->getOperand(2);
976
977 // If the two operands are the same, return zero.
978 if (LHS == RHS) {
979 // memcmp(s,s,x) -> 0
980 CI->replaceAllUsesWith(Constant::getNullValue(CI->getType()));
981 CI->eraseFromParent();
982 return true;
983 }
984
985 // Make sure we have a constant length.
986 ConstantInt *LenC = dyn_cast<ConstantInt>(CI->getOperand(3));
987 if (!LenC) return false;
Reid Spencere0fc4df2006-10-20 07:07:24 +0000988 uint64_t Len = LenC->getZExtValue();
Chris Lattnerc244e7c2005-09-29 04:54:20 +0000989
990 // If the length is zero, this returns 0.
991 switch (Len) {
992 case 0:
993 // memcmp(s1,s2,0) -> 0
994 CI->replaceAllUsesWith(Constant::getNullValue(CI->getType()));
995 CI->eraseFromParent();
996 return true;
997 case 1: {
998 // memcmp(S1,S2,1) -> *(ubyte*)S1 - *(ubyte*)S2
999 const Type *UCharPtr = PointerType::get(Type::UByteTy);
1000 CastInst *Op1Cast = new CastInst(LHS, UCharPtr, LHS->getName(), CI);
1001 CastInst *Op2Cast = new CastInst(RHS, UCharPtr, RHS->getName(), CI);
1002 Value *S1V = new LoadInst(Op1Cast, LHS->getName()+".val", CI);
1003 Value *S2V = new LoadInst(Op2Cast, RHS->getName()+".val", CI);
1004 Value *RV = BinaryOperator::createSub(S1V, S2V, CI->getName()+".diff",CI);
1005 if (RV->getType() != CI->getType())
1006 RV = new CastInst(RV, CI->getType(), RV->getName(), CI);
1007 CI->replaceAllUsesWith(RV);
1008 CI->eraseFromParent();
1009 return true;
1010 }
1011 case 2:
1012 if (IsOnlyUsedInEqualsZeroComparison(CI)) {
1013 // TODO: IF both are aligned, use a short load/compare.
1014
1015 // memcmp(S1,S2,2) -> S1[0]-S2[0] | S1[1]-S2[1] iff only ==/!= 0 matters
1016 const Type *UCharPtr = PointerType::get(Type::UByteTy);
1017 CastInst *Op1Cast = new CastInst(LHS, UCharPtr, LHS->getName(), CI);
1018 CastInst *Op2Cast = new CastInst(RHS, UCharPtr, RHS->getName(), CI);
1019 Value *S1V1 = new LoadInst(Op1Cast, LHS->getName()+".val1", CI);
1020 Value *S2V1 = new LoadInst(Op2Cast, RHS->getName()+".val1", CI);
1021 Value *D1 = BinaryOperator::createSub(S1V1, S2V1,
1022 CI->getName()+".d1", CI);
1023 Constant *One = ConstantInt::get(Type::IntTy, 1);
1024 Value *G1 = new GetElementPtrInst(Op1Cast, One, "next1v", CI);
1025 Value *G2 = new GetElementPtrInst(Op2Cast, One, "next2v", CI);
1026 Value *S1V2 = new LoadInst(G1, LHS->getName()+".val2", CI);
Chris Lattnercd60d382006-05-12 23:35:26 +00001027 Value *S2V2 = new LoadInst(G2, RHS->getName()+".val2", CI);
Chris Lattnerc244e7c2005-09-29 04:54:20 +00001028 Value *D2 = BinaryOperator::createSub(S1V2, S2V2,
1029 CI->getName()+".d1", CI);
1030 Value *Or = BinaryOperator::createOr(D1, D2, CI->getName()+".res", CI);
1031 if (Or->getType() != CI->getType())
1032 Or = new CastInst(Or, CI->getType(), Or->getName(), CI);
1033 CI->replaceAllUsesWith(Or);
1034 CI->eraseFromParent();
1035 return true;
1036 }
1037 break;
1038 default:
1039 break;
1040 }
1041
Chris Lattnerc244e7c2005-09-29 04:54:20 +00001042 return false;
1043 }
1044} memcmpOptimizer;
1045
1046
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001047/// This LibCallOptimization will simplify a call to the memcpy library
1048/// function by expanding it out to a single store of size 0, 1, 2, 4, or 8
Reid Spencer7ddcfb32005-04-27 21:29:20 +00001049/// bytes depending on the length of the string and the alignment. Additional
1050/// optimizations are possible in code generation (sequence of immediate store)
Reid Spencerf2534c72005-04-25 21:11:48 +00001051/// @brief Simplify the memcpy library function.
Chris Lattnerea7986a2006-03-03 01:30:23 +00001052struct LLVMMemCpyMoveOptzn : public LibCallOptimization {
1053 LLVMMemCpyMoveOptzn(const char* fname, const char* desc)
1054 : LibCallOptimization(fname, desc) {}
Reid Spencerf2534c72005-04-25 21:11:48 +00001055
1056 /// @brief Make sure that the "memcpy" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001057 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& TD) {
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001058 // Just make sure this has 4 arguments per LLVM spec.
Reid Spencer2bc7a4f2005-04-26 23:02:16 +00001059 return (f->arg_size() == 4);
Reid Spencerf2534c72005-04-25 21:11:48 +00001060 }
1061
Reid Spencerb4f7b832005-04-26 07:45:18 +00001062 /// Because of alignment and instruction information that we don't have, we
1063 /// leave the bulk of this to the code generators. The optimization here just
1064 /// deals with a few degenerate cases where the length of the string and the
1065 /// alignment match the sizes of our intrinsic types so we can do a load and
1066 /// store instead of the memcpy call.
1067 /// @brief Perform the memcpy optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001068 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& TD) {
Reid Spencer4855ebf2005-04-26 19:55:57 +00001069 // Make sure we have constant int values to work with
1070 ConstantInt* LEN = dyn_cast<ConstantInt>(ci->getOperand(3));
1071 if (!LEN)
1072 return false;
1073 ConstantInt* ALIGN = dyn_cast<ConstantInt>(ci->getOperand(4));
1074 if (!ALIGN)
1075 return false;
1076
1077 // If the length is larger than the alignment, we can't optimize
Reid Spencere0fc4df2006-10-20 07:07:24 +00001078 uint64_t len = LEN->getZExtValue();
1079 uint64_t alignment = ALIGN->getZExtValue();
Reid Spencer38cabd72005-05-03 07:23:44 +00001080 if (alignment == 0)
1081 alignment = 1; // Alignment 0 is identity for alignment 1
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001082 if (len > alignment)
Reid Spencerb4f7b832005-04-26 07:45:18 +00001083 return false;
1084
Reid Spencer08b49402005-04-27 17:46:54 +00001085 // Get the type we will cast to, based on size of the string
Reid Spencerb4f7b832005-04-26 07:45:18 +00001086 Value* dest = ci->getOperand(1);
1087 Value* src = ci->getOperand(2);
Reid Spencer08b49402005-04-27 17:46:54 +00001088 Type* castType = 0;
Reid Spencerb4f7b832005-04-26 07:45:18 +00001089 switch (len)
1090 {
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001091 case 0:
Reid Spencer93616972005-04-29 09:39:47 +00001092 // memcpy(d,s,0,a) -> noop
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001093 ci->eraseFromParent();
1094 return true;
Reid Spencer08b49402005-04-27 17:46:54 +00001095 case 1: castType = Type::SByteTy; break;
1096 case 2: castType = Type::ShortTy; break;
1097 case 4: castType = Type::IntTy; break;
1098 case 8: castType = Type::LongTy; break;
Reid Spencerb4f7b832005-04-26 07:45:18 +00001099 default:
1100 return false;
1101 }
Reid Spencer08b49402005-04-27 17:46:54 +00001102
1103 // Cast source and dest to the right sized primitive and then load/store
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001104 CastInst* SrcCast =
Reid Spencer08b49402005-04-27 17:46:54 +00001105 new CastInst(src,PointerType::get(castType),src->getName()+".cast",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001106 CastInst* DestCast =
Reid Spencer08b49402005-04-27 17:46:54 +00001107 new CastInst(dest,PointerType::get(castType),dest->getName()+".cast",ci);
1108 LoadInst* LI = new LoadInst(SrcCast,SrcCast->getName()+".val",ci);
Reid Spencerb4f7b832005-04-26 07:45:18 +00001109 StoreInst* SI = new StoreInst(LI, DestCast, ci);
Reid Spencerb4f7b832005-04-26 07:45:18 +00001110 ci->eraseFromParent();
1111 return true;
Reid Spencerf2534c72005-04-25 21:11:48 +00001112 }
Chris Lattnerea7986a2006-03-03 01:30:23 +00001113};
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001114
Chris Lattnerea7986a2006-03-03 01:30:23 +00001115/// This LibCallOptimization will simplify a call to the memcpy/memmove library
1116/// functions.
1117LLVMMemCpyMoveOptzn LLVMMemCpyOptimizer32("llvm.memcpy.i32",
1118 "Number of 'llvm.memcpy' calls simplified");
1119LLVMMemCpyMoveOptzn LLVMMemCpyOptimizer64("llvm.memcpy.i64",
1120 "Number of 'llvm.memcpy' calls simplified");
1121LLVMMemCpyMoveOptzn LLVMMemMoveOptimizer32("llvm.memmove.i32",
1122 "Number of 'llvm.memmove' calls simplified");
1123LLVMMemCpyMoveOptzn LLVMMemMoveOptimizer64("llvm.memmove.i64",
1124 "Number of 'llvm.memmove' calls simplified");
Reid Spencer38cabd72005-05-03 07:23:44 +00001125
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001126/// This LibCallOptimization will simplify a call to the memset library
1127/// function by expanding it out to a single store of size 0, 1, 2, 4, or 8
1128/// bytes depending on the length argument.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001129struct LLVMMemSetOptimization : public LibCallOptimization {
Reid Spencer38cabd72005-05-03 07:23:44 +00001130 /// @brief Default Constructor
Chris Lattnerea7986a2006-03-03 01:30:23 +00001131 LLVMMemSetOptimization(const char *Name) : LibCallOptimization(Name,
Reid Spencer38cabd72005-05-03 07:23:44 +00001132 "Number of 'llvm.memset' calls simplified") {}
Reid Spencer38cabd72005-05-03 07:23:44 +00001133
1134 /// @brief Make sure that the "memset" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001135 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &TD) {
Reid Spencer38cabd72005-05-03 07:23:44 +00001136 // Just make sure this has 3 arguments per LLVM spec.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001137 return F->arg_size() == 4;
Reid Spencer38cabd72005-05-03 07:23:44 +00001138 }
1139
1140 /// Because of alignment and instruction information that we don't have, we
1141 /// leave the bulk of this to the code generators. The optimization here just
1142 /// deals with a few degenerate cases where the length parameter is constant
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001143 /// and the alignment matches the sizes of our intrinsic types so we can do
Reid Spencer38cabd72005-05-03 07:23:44 +00001144 /// store instead of the memcpy call. Other calls are transformed into the
1145 /// llvm.memset intrinsic.
1146 /// @brief Perform the memset optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001147 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &TD) {
Reid Spencer38cabd72005-05-03 07:23:44 +00001148 // Make sure we have constant int values to work with
1149 ConstantInt* LEN = dyn_cast<ConstantInt>(ci->getOperand(3));
1150 if (!LEN)
1151 return false;
1152 ConstantInt* ALIGN = dyn_cast<ConstantInt>(ci->getOperand(4));
1153 if (!ALIGN)
1154 return false;
1155
1156 // Extract the length and alignment
Reid Spencere0fc4df2006-10-20 07:07:24 +00001157 uint64_t len = LEN->getZExtValue();
1158 uint64_t alignment = ALIGN->getZExtValue();
Reid Spencer38cabd72005-05-03 07:23:44 +00001159
1160 // Alignment 0 is identity for alignment 1
1161 if (alignment == 0)
1162 alignment = 1;
1163
1164 // If the length is zero, this is a no-op
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001165 if (len == 0) {
Reid Spencer38cabd72005-05-03 07:23:44 +00001166 // memset(d,c,0,a) -> noop
1167 ci->eraseFromParent();
1168 return true;
1169 }
1170
1171 // If the length is larger than the alignment, we can't optimize
1172 if (len > alignment)
1173 return false;
1174
1175 // Make sure we have a constant ubyte to work with so we can extract
1176 // the value to be filled.
Reid Spencere0fc4df2006-10-20 07:07:24 +00001177 ConstantInt* FILL = dyn_cast<ConstantInt>(ci->getOperand(2));
Reid Spencer38cabd72005-05-03 07:23:44 +00001178 if (!FILL)
1179 return false;
1180 if (FILL->getType() != Type::UByteTy)
1181 return false;
1182
1183 // memset(s,c,n) -> store s, c (for n=1,2,4,8)
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001184
Reid Spencer38cabd72005-05-03 07:23:44 +00001185 // Extract the fill character
Reid Spencere0fc4df2006-10-20 07:07:24 +00001186 uint64_t fill_char = FILL->getZExtValue();
Reid Spencer38cabd72005-05-03 07:23:44 +00001187 uint64_t fill_value = fill_char;
1188
1189 // Get the type we will cast to, based on size of memory area to fill, and
1190 // and the value we will store there.
1191 Value* dest = ci->getOperand(1);
1192 Type* castType = 0;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001193 switch (len) {
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001194 case 1:
1195 castType = Type::UByteTy;
Reid Spencer38cabd72005-05-03 07:23:44 +00001196 break;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001197 case 2:
1198 castType = Type::UShortTy;
Reid Spencer38cabd72005-05-03 07:23:44 +00001199 fill_value |= fill_char << 8;
1200 break;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001201 case 4:
Reid Spencer38cabd72005-05-03 07:23:44 +00001202 castType = Type::UIntTy;
1203 fill_value |= fill_char << 8 | fill_char << 16 | fill_char << 24;
1204 break;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001205 case 8:
Reid Spencer38cabd72005-05-03 07:23:44 +00001206 castType = Type::ULongTy;
1207 fill_value |= fill_char << 8 | fill_char << 16 | fill_char << 24;
1208 fill_value |= fill_char << 32 | fill_char << 40 | fill_char << 48;
1209 fill_value |= fill_char << 56;
1210 break;
1211 default:
1212 return false;
1213 }
1214
1215 // Cast dest to the right sized primitive and then load/store
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001216 CastInst* DestCast =
Reid Spencer38cabd72005-05-03 07:23:44 +00001217 new CastInst(dest,PointerType::get(castType),dest->getName()+".cast",ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001218 new StoreInst(ConstantInt::get(castType,fill_value),DestCast, ci);
Reid Spencer38cabd72005-05-03 07:23:44 +00001219 ci->eraseFromParent();
1220 return true;
1221 }
Chris Lattnerea7986a2006-03-03 01:30:23 +00001222};
1223
1224LLVMMemSetOptimization MemSet32Optimizer("llvm.memset.i32");
1225LLVMMemSetOptimization MemSet64Optimizer("llvm.memset.i64");
1226
Reid Spencerbb92b4f2005-04-26 19:13:17 +00001227
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001228/// This LibCallOptimization will simplify calls to the "pow" library
1229/// function. It looks for cases where the result of pow is well known and
Reid Spencer93616972005-04-29 09:39:47 +00001230/// substitutes the appropriate value.
1231/// @brief Simplify the pow library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001232struct PowOptimization : public LibCallOptimization {
Reid Spencer93616972005-04-29 09:39:47 +00001233public:
1234 /// @brief Default Constructor
Reid Spencer95d8efd2005-05-03 02:54:54 +00001235 PowOptimization() : LibCallOptimization("pow",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001236 "Number of 'pow' calls simplified") {}
Reid Spencer95d8efd2005-05-03 02:54:54 +00001237
Reid Spencer93616972005-04-29 09:39:47 +00001238 /// @brief Make sure that the "pow" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001239 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencer93616972005-04-29 09:39:47 +00001240 // Just make sure this has 2 arguments
1241 return (f->arg_size() == 2);
1242 }
1243
1244 /// @brief Perform the pow optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001245 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
Reid Spencer93616972005-04-29 09:39:47 +00001246 const Type *Ty = cast<Function>(ci->getOperand(0))->getReturnType();
1247 Value* base = ci->getOperand(1);
1248 Value* expn = ci->getOperand(2);
1249 if (ConstantFP *Op1 = dyn_cast<ConstantFP>(base)) {
1250 double Op1V = Op1->getValue();
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001251 if (Op1V == 1.0) {
Reid Spencer93616972005-04-29 09:39:47 +00001252 // pow(1.0,x) -> 1.0
1253 ci->replaceAllUsesWith(ConstantFP::get(Ty,1.0));
1254 ci->eraseFromParent();
1255 return true;
1256 }
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001257 } else if (ConstantFP* Op2 = dyn_cast<ConstantFP>(expn)) {
Reid Spencer93616972005-04-29 09:39:47 +00001258 double Op2V = Op2->getValue();
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001259 if (Op2V == 0.0) {
Reid Spencer93616972005-04-29 09:39:47 +00001260 // pow(x,0.0) -> 1.0
1261 ci->replaceAllUsesWith(ConstantFP::get(Ty,1.0));
1262 ci->eraseFromParent();
1263 return true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001264 } else if (Op2V == 0.5) {
Reid Spencer93616972005-04-29 09:39:47 +00001265 // pow(x,0.5) -> sqrt(x)
1266 CallInst* sqrt_inst = new CallInst(SLC.get_sqrt(), base,
1267 ci->getName()+".pow",ci);
1268 ci->replaceAllUsesWith(sqrt_inst);
1269 ci->eraseFromParent();
1270 return true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001271 } else if (Op2V == 1.0) {
Reid Spencer93616972005-04-29 09:39:47 +00001272 // pow(x,1.0) -> x
1273 ci->replaceAllUsesWith(base);
1274 ci->eraseFromParent();
1275 return true;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001276 } else if (Op2V == -1.0) {
Reid Spencer93616972005-04-29 09:39:47 +00001277 // pow(x,-1.0) -> 1.0/x
Chris Lattner4201cd12005-08-24 17:22:17 +00001278 BinaryOperator* div_inst= BinaryOperator::createDiv(
Reid Spencer93616972005-04-29 09:39:47 +00001279 ConstantFP::get(Ty,1.0), base, ci->getName()+".pow", ci);
1280 ci->replaceAllUsesWith(div_inst);
1281 ci->eraseFromParent();
1282 return true;
1283 }
1284 }
1285 return false; // opt failed
1286 }
1287} PowOptimizer;
1288
Evan Cheng1fc40252006-06-16 08:36:35 +00001289/// This LibCallOptimization will simplify calls to the "printf" library
1290/// function. It looks for cases where the result of printf is not used and the
1291/// operation can be reduced to something simpler.
1292/// @brief Simplify the printf library function.
1293struct PrintfOptimization : public LibCallOptimization {
1294public:
1295 /// @brief Default Constructor
1296 PrintfOptimization() : LibCallOptimization("printf",
1297 "Number of 'printf' calls simplified") {}
1298
1299 /// @brief Make sure that the "printf" function has the right prototype
1300 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
1301 // Just make sure this has at least 1 arguments
1302 return (f->arg_size() >= 1);
1303 }
1304
1305 /// @brief Perform the printf optimization.
1306 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
1307 // If the call has more than 2 operands, we can't optimize it
1308 if (ci->getNumOperands() > 3 || ci->getNumOperands() <= 2)
1309 return false;
1310
1311 // If the result of the printf call is used, none of these optimizations
1312 // can be made.
1313 if (!ci->use_empty())
1314 return false;
1315
1316 // All the optimizations depend on the length of the first argument and the
1317 // fact that it is a constant string array. Check that now
1318 uint64_t len = 0;
1319 ConstantArray* CA = 0;
1320 if (!getConstantStringLength(ci->getOperand(1), len, &CA))
1321 return false;
1322
1323 if (len != 2 && len != 3)
1324 return false;
1325
1326 // The first character has to be a %
1327 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(0)))
Reid Spencere0fc4df2006-10-20 07:07:24 +00001328 if (CI->getZExtValue() != '%')
Evan Cheng1fc40252006-06-16 08:36:35 +00001329 return false;
1330
1331 // Get the second character and switch on its value
1332 ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(1));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001333 switch (CI->getZExtValue()) {
Evan Cheng1fc40252006-06-16 08:36:35 +00001334 case 's':
1335 {
1336 if (len != 3 ||
Reid Spencere0fc4df2006-10-20 07:07:24 +00001337 dyn_cast<ConstantInt>(CA->getOperand(2))->getZExtValue() != '\n')
Evan Cheng1fc40252006-06-16 08:36:35 +00001338 return false;
1339
1340 // printf("%s\n",str) -> puts(str)
1341 Function* puts_func = SLC.get_puts();
1342 if (!puts_func)
1343 return false;
1344 std::vector<Value*> args;
Evan Cheng8a417a22006-06-16 18:37:15 +00001345 args.push_back(CastToCStr(ci->getOperand(2), *ci));
Evan Cheng1fc40252006-06-16 08:36:35 +00001346 new CallInst(puts_func,args,ci->getName(),ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001347 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,len));
Evan Cheng1fc40252006-06-16 08:36:35 +00001348 break;
1349 }
1350 case 'c':
1351 {
1352 // printf("%c",c) -> putchar(c)
1353 if (len != 2)
1354 return false;
1355
1356 Function* putchar_func = SLC.get_putchar();
1357 if (!putchar_func)
1358 return false;
1359 CastInst* cast = new CastInst(ci->getOperand(2), Type::IntTy,
1360 CI->getName()+".int", ci);
1361 new CallInst(putchar_func, cast, "", ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001362 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy, 1));
Evan Cheng1fc40252006-06-16 08:36:35 +00001363 break;
1364 }
1365 default:
1366 return false;
1367 }
1368 ci->eraseFromParent();
1369 return true;
1370 }
1371} PrintfOptimizer;
1372
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001373/// This LibCallOptimization will simplify calls to the "fprintf" library
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001374/// function. It looks for cases where the result of fprintf is not used and the
1375/// operation can be reduced to something simpler.
Evan Cheng1fc40252006-06-16 08:36:35 +00001376/// @brief Simplify the fprintf library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001377struct FPrintFOptimization : public LibCallOptimization {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001378public:
1379 /// @brief Default Constructor
Reid Spencer95d8efd2005-05-03 02:54:54 +00001380 FPrintFOptimization() : LibCallOptimization("fprintf",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001381 "Number of 'fprintf' calls simplified") {}
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001382
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001383 /// @brief Make sure that the "fprintf" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001384 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001385 // Just make sure this has at least 2 arguments
1386 return (f->arg_size() >= 2);
1387 }
1388
1389 /// @brief Perform the fprintf optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001390 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001391 // If the call has more than 3 operands, we can't optimize it
1392 if (ci->getNumOperands() > 4 || ci->getNumOperands() <= 2)
1393 return false;
1394
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001395 // If the result of the fprintf call is used, none of these optimizations
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001396 // can be made.
Chris Lattner175463a2005-09-24 22:17:06 +00001397 if (!ci->use_empty())
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001398 return false;
1399
1400 // All the optimizations depend on the length of the second argument and the
1401 // fact that it is a constant string array. Check that now
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001402 uint64_t len = 0;
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001403 ConstantArray* CA = 0;
1404 if (!getConstantStringLength(ci->getOperand(2), len, &CA))
1405 return false;
1406
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001407 if (ci->getNumOperands() == 3) {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001408 // Make sure there's no % in the constant array
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001409 for (unsigned i = 0; i < len; ++i) {
1410 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(i))) {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001411 // Check for the null terminator
Reid Spencere0fc4df2006-10-20 07:07:24 +00001412 if (CI->getZExtValue() == '%')
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001413 return false; // we found end of string
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001414 } else {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001415 return false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001416 }
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001417 }
1418
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001419 // fprintf(file,fmt) -> fwrite(fmt,strlen(fmt),file)
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001420 const Type* FILEptr_type = ci->getOperand(1)->getType();
1421 Function* fwrite_func = SLC.get_fwrite(FILEptr_type);
1422 if (!fwrite_func)
1423 return false;
John Criswell4642afd2005-06-29 15:03:18 +00001424
1425 // Make sure that the fprintf() and fwrite() functions both take the
1426 // same type of char pointer.
1427 if (ci->getOperand(2)->getType() !=
1428 fwrite_func->getFunctionType()->getParamType(0))
John Criswell4642afd2005-06-29 15:03:18 +00001429 return false;
John Criswell4642afd2005-06-29 15:03:18 +00001430
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001431 std::vector<Value*> args;
1432 args.push_back(ci->getOperand(2));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001433 args.push_back(ConstantInt::get(SLC.getIntPtrType(),len));
1434 args.push_back(ConstantInt::get(SLC.getIntPtrType(),1));
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001435 args.push_back(ci->getOperand(1));
Reid Spencer1e520fd2005-05-04 03:20:21 +00001436 new CallInst(fwrite_func,args,ci->getName(),ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001437 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,len));
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001438 ci->eraseFromParent();
1439 return true;
1440 }
1441
1442 // The remaining optimizations require the format string to be length 2
1443 // "%s" or "%c".
1444 if (len != 2)
1445 return false;
1446
1447 // The first character has to be a %
1448 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(0)))
Reid Spencere0fc4df2006-10-20 07:07:24 +00001449 if (CI->getZExtValue() != '%')
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001450 return false;
1451
1452 // Get the second character and switch on its value
1453 ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(1));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001454 switch (CI->getZExtValue()) {
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001455 case 's':
1456 {
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001457 uint64_t len = 0;
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001458 ConstantArray* CA = 0;
Evan Chengf2ea5872006-06-16 04:52:30 +00001459 if (getConstantStringLength(ci->getOperand(3), len, &CA)) {
1460 // fprintf(file,"%s",str) -> fwrite(str,strlen(str),1,file)
1461 const Type* FILEptr_type = ci->getOperand(1)->getType();
1462 Function* fwrite_func = SLC.get_fwrite(FILEptr_type);
1463 if (!fwrite_func)
1464 return false;
1465 std::vector<Value*> args;
1466 args.push_back(CastToCStr(ci->getOperand(3), *ci));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001467 args.push_back(ConstantInt::get(SLC.getIntPtrType(),len));
1468 args.push_back(ConstantInt::get(SLC.getIntPtrType(),1));
Evan Chengf2ea5872006-06-16 04:52:30 +00001469 args.push_back(ci->getOperand(1));
1470 new CallInst(fwrite_func,args,ci->getName(),ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001471 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,len));
Evan Chengf2ea5872006-06-16 04:52:30 +00001472 } else {
1473 // fprintf(file,"%s",str) -> fputs(str,file)
1474 const Type* FILEptr_type = ci->getOperand(1)->getType();
1475 Function* fputs_func = SLC.get_fputs(FILEptr_type);
1476 if (!fputs_func)
1477 return false;
1478 std::vector<Value*> args;
Evan Cheng8a417a22006-06-16 18:37:15 +00001479 args.push_back(CastToCStr(ci->getOperand(3), *ci));
Evan Chengf2ea5872006-06-16 04:52:30 +00001480 args.push_back(ci->getOperand(1));
1481 new CallInst(fputs_func,args,ci->getName(),ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001482 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,len));
Evan Chengf2ea5872006-06-16 04:52:30 +00001483 }
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001484 break;
1485 }
1486 case 'c':
1487 {
Evan Cheng1fc40252006-06-16 08:36:35 +00001488 // fprintf(file,"%c",c) -> fputc(c,file)
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001489 const Type* FILEptr_type = ci->getOperand(1)->getType();
1490 Function* fputc_func = SLC.get_fputc(FILEptr_type);
1491 if (!fputc_func)
1492 return false;
Evan Cheng1fc40252006-06-16 08:36:35 +00001493 CastInst* cast = new CastInst(ci->getOperand(3), Type::IntTy,
1494 CI->getName()+".int", ci);
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001495 new CallInst(fputc_func,cast,ci->getOperand(1),"",ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001496 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,1));
Reid Spencer2d5c7be2005-05-02 23:59:26 +00001497 break;
1498 }
1499 default:
1500 return false;
1501 }
1502 ci->eraseFromParent();
1503 return true;
1504 }
1505} FPrintFOptimizer;
1506
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001507/// This LibCallOptimization will simplify calls to the "sprintf" library
Reid Spencer1e520fd2005-05-04 03:20:21 +00001508/// function. It looks for cases where the result of sprintf is not used and the
1509/// operation can be reduced to something simpler.
Evan Cheng1fc40252006-06-16 08:36:35 +00001510/// @brief Simplify the sprintf library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001511struct SPrintFOptimization : public LibCallOptimization {
Reid Spencer1e520fd2005-05-04 03:20:21 +00001512public:
1513 /// @brief Default Constructor
1514 SPrintFOptimization() : LibCallOptimization("sprintf",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001515 "Number of 'sprintf' calls simplified") {}
Reid Spencer1e520fd2005-05-04 03:20:21 +00001516
Reid Spencer1e520fd2005-05-04 03:20:21 +00001517 /// @brief Make sure that the "fprintf" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001518 virtual bool ValidateCalledFunction(const Function *f, SimplifyLibCalls &SLC){
Reid Spencer1e520fd2005-05-04 03:20:21 +00001519 // Just make sure this has at least 2 arguments
1520 return (f->getReturnType() == Type::IntTy && f->arg_size() >= 2);
1521 }
1522
1523 /// @brief Perform the sprintf optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001524 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
Reid Spencer1e520fd2005-05-04 03:20:21 +00001525 // If the call has more than 3 operands, we can't optimize it
1526 if (ci->getNumOperands() > 4 || ci->getNumOperands() < 3)
1527 return false;
1528
1529 // All the optimizations depend on the length of the second argument and the
1530 // fact that it is a constant string array. Check that now
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001531 uint64_t len = 0;
Reid Spencer1e520fd2005-05-04 03:20:21 +00001532 ConstantArray* CA = 0;
1533 if (!getConstantStringLength(ci->getOperand(2), len, &CA))
1534 return false;
1535
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001536 if (ci->getNumOperands() == 3) {
1537 if (len == 0) {
Reid Spencer1e520fd2005-05-04 03:20:21 +00001538 // If the length is 0, we just need to store a null byte
1539 new StoreInst(ConstantInt::get(Type::SByteTy,0),ci->getOperand(1),ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001540 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,0));
Reid Spencer1e520fd2005-05-04 03:20:21 +00001541 ci->eraseFromParent();
1542 return true;
1543 }
1544
1545 // Make sure there's no % in the constant array
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001546 for (unsigned i = 0; i < len; ++i) {
1547 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(i))) {
Reid Spencer1e520fd2005-05-04 03:20:21 +00001548 // Check for the null terminator
Reid Spencere0fc4df2006-10-20 07:07:24 +00001549 if (CI->getZExtValue() == '%')
Reid Spencer1e520fd2005-05-04 03:20:21 +00001550 return false; // we found a %, can't optimize
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001551 } else {
Reid Spencer1e520fd2005-05-04 03:20:21 +00001552 return false; // initializer is not constant int, can't optimize
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001553 }
Reid Spencer1e520fd2005-05-04 03:20:21 +00001554 }
1555
1556 // Increment length because we want to copy the null byte too
1557 len++;
1558
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001559 // sprintf(str,fmt) -> llvm.memcpy(str,fmt,strlen(fmt),1)
Reid Spencer1e520fd2005-05-04 03:20:21 +00001560 Function* memcpy_func = SLC.get_memcpy();
1561 if (!memcpy_func)
1562 return false;
1563 std::vector<Value*> args;
1564 args.push_back(ci->getOperand(1));
1565 args.push_back(ci->getOperand(2));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001566 args.push_back(ConstantInt::get(SLC.getIntPtrType(),len));
1567 args.push_back(ConstantInt::get(Type::UIntTy,1));
Reid Spencer1e520fd2005-05-04 03:20:21 +00001568 new CallInst(memcpy_func,args,"",ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001569 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,len));
Reid Spencer1e520fd2005-05-04 03:20:21 +00001570 ci->eraseFromParent();
1571 return true;
1572 }
1573
1574 // The remaining optimizations require the format string to be length 2
1575 // "%s" or "%c".
1576 if (len != 2)
1577 return false;
1578
1579 // The first character has to be a %
1580 if (ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(0)))
Reid Spencere0fc4df2006-10-20 07:07:24 +00001581 if (CI->getZExtValue() != '%')
Reid Spencer1e520fd2005-05-04 03:20:21 +00001582 return false;
1583
1584 // Get the second character and switch on its value
1585 ConstantInt* CI = dyn_cast<ConstantInt>(CA->getOperand(1));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001586 switch (CI->getZExtValue()) {
Chris Lattner175463a2005-09-24 22:17:06 +00001587 case 's': {
1588 // sprintf(dest,"%s",str) -> llvm.memcpy(dest, str, strlen(str)+1, 1)
1589 Function* strlen_func = SLC.get_strlen();
1590 Function* memcpy_func = SLC.get_memcpy();
1591 if (!strlen_func || !memcpy_func)
Reid Spencer1e520fd2005-05-04 03:20:21 +00001592 return false;
Chris Lattner175463a2005-09-24 22:17:06 +00001593
1594 Value *Len = new CallInst(strlen_func, CastToCStr(ci->getOperand(3), *ci),
1595 ci->getOperand(3)->getName()+".len", ci);
1596 Value *Len1 = BinaryOperator::createAdd(Len,
1597 ConstantInt::get(Len->getType(), 1),
1598 Len->getName()+"1", ci);
Andrew Lenharth47da6012006-02-15 21:13:37 +00001599 if (Len1->getType() != SLC.getIntPtrType())
1600 Len1 = new CastInst(Len1, SLC.getIntPtrType(), Len1->getName(), ci);
Chris Lattner175463a2005-09-24 22:17:06 +00001601 std::vector<Value*> args;
1602 args.push_back(CastToCStr(ci->getOperand(1), *ci));
1603 args.push_back(CastToCStr(ci->getOperand(3), *ci));
1604 args.push_back(Len1);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001605 args.push_back(ConstantInt::get(Type::UIntTy,1));
Chris Lattner175463a2005-09-24 22:17:06 +00001606 new CallInst(memcpy_func, args, "", ci);
1607
1608 // The strlen result is the unincremented number of bytes in the string.
Chris Lattnerf4877682005-09-25 07:06:48 +00001609 if (!ci->use_empty()) {
1610 if (Len->getType() != ci->getType())
1611 Len = new CastInst(Len, ci->getType(), Len->getName(), ci);
1612 ci->replaceAllUsesWith(Len);
1613 }
Chris Lattner175463a2005-09-24 22:17:06 +00001614 ci->eraseFromParent();
1615 return true;
Reid Spencer1e520fd2005-05-04 03:20:21 +00001616 }
Chris Lattner175463a2005-09-24 22:17:06 +00001617 case 'c': {
1618 // sprintf(dest,"%c",chr) -> store chr, dest
1619 CastInst* cast = new CastInst(ci->getOperand(3),Type::SByteTy,"char",ci);
1620 new StoreInst(cast, ci->getOperand(1), ci);
1621 GetElementPtrInst* gep = new GetElementPtrInst(ci->getOperand(1),
Reid Spencere0fc4df2006-10-20 07:07:24 +00001622 ConstantInt::get(Type::UIntTy,1),ci->getOperand(1)->getName()+".end",
Chris Lattner175463a2005-09-24 22:17:06 +00001623 ci);
1624 new StoreInst(ConstantInt::get(Type::SByteTy,0),gep,ci);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001625 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,1));
Chris Lattner175463a2005-09-24 22:17:06 +00001626 ci->eraseFromParent();
1627 return true;
1628 }
1629 }
1630 return false;
Reid Spencer1e520fd2005-05-04 03:20:21 +00001631 }
1632} SPrintFOptimizer;
1633
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001634/// This LibCallOptimization will simplify calls to the "fputs" library
Reid Spencer93616972005-04-29 09:39:47 +00001635/// function. It looks for cases where the result of fputs is not used and the
1636/// operation can be reduced to something simpler.
Evan Cheng1fc40252006-06-16 08:36:35 +00001637/// @brief Simplify the puts library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001638struct PutsOptimization : public LibCallOptimization {
Reid Spencer93616972005-04-29 09:39:47 +00001639public:
1640 /// @brief Default Constructor
Reid Spencer95d8efd2005-05-03 02:54:54 +00001641 PutsOptimization() : LibCallOptimization("fputs",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001642 "Number of 'fputs' calls simplified") {}
Reid Spencer93616972005-04-29 09:39:47 +00001643
Reid Spencer93616972005-04-29 09:39:47 +00001644 /// @brief Make sure that the "fputs" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001645 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
Reid Spencer93616972005-04-29 09:39:47 +00001646 // Just make sure this has 2 arguments
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001647 return F->arg_size() == 2;
Reid Spencer93616972005-04-29 09:39:47 +00001648 }
1649
1650 /// @brief Perform the fputs optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001651 virtual bool OptimizeCall(CallInst* ci, SimplifyLibCalls& SLC) {
Reid Spencer93616972005-04-29 09:39:47 +00001652 // If the result is used, none of these optimizations work
Chris Lattner175463a2005-09-24 22:17:06 +00001653 if (!ci->use_empty())
Reid Spencer93616972005-04-29 09:39:47 +00001654 return false;
1655
1656 // All the optimizations depend on the length of the first argument and the
1657 // fact that it is a constant string array. Check that now
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001658 uint64_t len = 0;
Reid Spencer93616972005-04-29 09:39:47 +00001659 if (!getConstantStringLength(ci->getOperand(1), len))
1660 return false;
1661
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001662 switch (len) {
Reid Spencer93616972005-04-29 09:39:47 +00001663 case 0:
1664 // fputs("",F) -> noop
1665 break;
1666 case 1:
1667 {
1668 // fputs(s,F) -> fputc(s[0],F) (if s is constant and strlen(s) == 1)
Reid Spencer4c444fe2005-04-30 03:17:54 +00001669 const Type* FILEptr_type = ci->getOperand(2)->getType();
1670 Function* fputc_func = SLC.get_fputc(FILEptr_type);
Reid Spencer93616972005-04-29 09:39:47 +00001671 if (!fputc_func)
1672 return false;
1673 LoadInst* loadi = new LoadInst(ci->getOperand(1),
1674 ci->getOperand(1)->getName()+".byte",ci);
1675 CastInst* casti = new CastInst(loadi,Type::IntTy,
1676 loadi->getName()+".int",ci);
1677 new CallInst(fputc_func,casti,ci->getOperand(2),"",ci);
1678 break;
1679 }
1680 default:
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001681 {
Reid Spencer93616972005-04-29 09:39:47 +00001682 // fputs(s,F) -> fwrite(s,1,len,F) (if s is constant and strlen(s) > 1)
Reid Spencer4c444fe2005-04-30 03:17:54 +00001683 const Type* FILEptr_type = ci->getOperand(2)->getType();
1684 Function* fwrite_func = SLC.get_fwrite(FILEptr_type);
Reid Spencer93616972005-04-29 09:39:47 +00001685 if (!fwrite_func)
1686 return false;
1687 std::vector<Value*> parms;
1688 parms.push_back(ci->getOperand(1));
Reid Spencere0fc4df2006-10-20 07:07:24 +00001689 parms.push_back(ConstantInt::get(SLC.getIntPtrType(),len));
1690 parms.push_back(ConstantInt::get(SLC.getIntPtrType(),1));
Reid Spencer93616972005-04-29 09:39:47 +00001691 parms.push_back(ci->getOperand(2));
1692 new CallInst(fwrite_func,parms,"",ci);
1693 break;
1694 }
1695 }
1696 ci->eraseFromParent();
1697 return true; // success
1698 }
1699} PutsOptimizer;
1700
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001701/// This LibCallOptimization will simplify calls to the "isdigit" library
Reid Spencer282d0572005-05-04 18:58:28 +00001702/// function. It simply does range checks the parameter explicitly.
1703/// @brief Simplify the isdigit library function.
Chris Lattner5f6035f2005-09-29 06:16:11 +00001704struct isdigitOptimization : public LibCallOptimization {
Reid Spencer282d0572005-05-04 18:58:28 +00001705public:
Chris Lattner5f6035f2005-09-29 06:16:11 +00001706 isdigitOptimization() : LibCallOptimization("isdigit",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001707 "Number of 'isdigit' calls simplified") {}
Reid Spencer282d0572005-05-04 18:58:28 +00001708
Chris Lattner5f6035f2005-09-29 06:16:11 +00001709 /// @brief Make sure that the "isdigit" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001710 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencer282d0572005-05-04 18:58:28 +00001711 // Just make sure this has 1 argument
1712 return (f->arg_size() == 1);
1713 }
1714
1715 /// @brief Perform the toascii optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001716 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
1717 if (ConstantInt* CI = dyn_cast<ConstantInt>(ci->getOperand(1))) {
Reid Spencer282d0572005-05-04 18:58:28 +00001718 // isdigit(c) -> 0 or 1, if 'c' is constant
Reid Spencere0fc4df2006-10-20 07:07:24 +00001719 uint64_t val = CI->getZExtValue();
Reid Spencer282d0572005-05-04 18:58:28 +00001720 if (val >= '0' && val <='9')
Reid Spencere0fc4df2006-10-20 07:07:24 +00001721 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,1));
Reid Spencer282d0572005-05-04 18:58:28 +00001722 else
Reid Spencere0fc4df2006-10-20 07:07:24 +00001723 ci->replaceAllUsesWith(ConstantInt::get(Type::IntTy,0));
Reid Spencer282d0572005-05-04 18:58:28 +00001724 ci->eraseFromParent();
1725 return true;
1726 }
1727
1728 // isdigit(c) -> (unsigned)c - '0' <= 9
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001729 CastInst* cast =
Reid Spencer282d0572005-05-04 18:58:28 +00001730 new CastInst(ci->getOperand(1),Type::UIntTy,
1731 ci->getOperand(1)->getName()+".uint",ci);
Chris Lattner4201cd12005-08-24 17:22:17 +00001732 BinaryOperator* sub_inst = BinaryOperator::createSub(cast,
Reid Spencere0fc4df2006-10-20 07:07:24 +00001733 ConstantInt::get(Type::UIntTy,0x30),
Reid Spencer282d0572005-05-04 18:58:28 +00001734 ci->getOperand(1)->getName()+".sub",ci);
1735 SetCondInst* setcond_inst = new SetCondInst(Instruction::SetLE,sub_inst,
Reid Spencere0fc4df2006-10-20 07:07:24 +00001736 ConstantInt::get(Type::UIntTy,9),
Reid Spencer282d0572005-05-04 18:58:28 +00001737 ci->getOperand(1)->getName()+".cmp",ci);
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001738 CastInst* c2 =
Reid Spencer282d0572005-05-04 18:58:28 +00001739 new CastInst(setcond_inst,Type::IntTy,
1740 ci->getOperand(1)->getName()+".isdigit",ci);
1741 ci->replaceAllUsesWith(c2);
1742 ci->eraseFromParent();
1743 return true;
1744 }
Chris Lattner5f6035f2005-09-29 06:16:11 +00001745} isdigitOptimizer;
1746
Chris Lattner87ef9432005-09-29 06:17:27 +00001747struct isasciiOptimization : public LibCallOptimization {
1748public:
1749 isasciiOptimization()
1750 : LibCallOptimization("isascii", "Number of 'isascii' calls simplified") {}
1751
1752 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
1753 return F->arg_size() == 1 && F->arg_begin()->getType()->isInteger() &&
1754 F->getReturnType()->isInteger();
1755 }
1756
1757 /// @brief Perform the isascii optimization.
1758 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
1759 // isascii(c) -> (unsigned)c < 128
1760 Value *V = CI->getOperand(1);
1761 if (V->getType()->isSigned())
1762 V = new CastInst(V, V->getType()->getUnsignedVersion(), V->getName(), CI);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001763 Value *Cmp = BinaryOperator::createSetLT(V, ConstantInt::get(V->getType(),
Chris Lattner87ef9432005-09-29 06:17:27 +00001764 128),
1765 V->getName()+".isascii", CI);
1766 if (Cmp->getType() != CI->getType())
1767 Cmp = new CastInst(Cmp, CI->getType(), Cmp->getName(), CI);
1768 CI->replaceAllUsesWith(Cmp);
1769 CI->eraseFromParent();
1770 return true;
1771 }
1772} isasciiOptimizer;
Chris Lattner5f6035f2005-09-29 06:16:11 +00001773
Reid Spencer282d0572005-05-04 18:58:28 +00001774
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001775/// This LibCallOptimization will simplify calls to the "toascii" library
Reid Spencer4c444fe2005-04-30 03:17:54 +00001776/// function. It simply does the corresponding and operation to restrict the
1777/// range of values to the ASCII character set (0-127).
1778/// @brief Simplify the toascii library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001779struct ToAsciiOptimization : public LibCallOptimization {
Reid Spencer4c444fe2005-04-30 03:17:54 +00001780public:
1781 /// @brief Default Constructor
Reid Spencer95d8efd2005-05-03 02:54:54 +00001782 ToAsciiOptimization() : LibCallOptimization("toascii",
Reid Spencer170ae7f2005-05-07 20:15:59 +00001783 "Number of 'toascii' calls simplified") {}
Reid Spencer4c444fe2005-04-30 03:17:54 +00001784
Reid Spencer4c444fe2005-04-30 03:17:54 +00001785 /// @brief Make sure that the "fputs" function has the right prototype
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001786 virtual bool ValidateCalledFunction(const Function* f, SimplifyLibCalls& SLC){
Reid Spencer4c444fe2005-04-30 03:17:54 +00001787 // Just make sure this has 2 arguments
1788 return (f->arg_size() == 1);
1789 }
1790
1791 /// @brief Perform the toascii optimization.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001792 virtual bool OptimizeCall(CallInst *ci, SimplifyLibCalls &SLC) {
Reid Spencer4c444fe2005-04-30 03:17:54 +00001793 // toascii(c) -> (c & 0x7f)
1794 Value* chr = ci->getOperand(1);
Chris Lattner4201cd12005-08-24 17:22:17 +00001795 BinaryOperator* and_inst = BinaryOperator::createAnd(chr,
Reid Spencer4c444fe2005-04-30 03:17:54 +00001796 ConstantInt::get(chr->getType(),0x7F),ci->getName()+".toascii",ci);
1797 ci->replaceAllUsesWith(and_inst);
1798 ci->eraseFromParent();
1799 return true;
1800 }
1801} ToAsciiOptimizer;
1802
Reid Spencerb195fcd2005-05-14 16:42:52 +00001803/// This LibCallOptimization will simplify calls to the "ffs" library
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00001804/// calls which find the first set bit in an int, long, or long long. The
Reid Spencerb195fcd2005-05-14 16:42:52 +00001805/// optimization is to compute the result at compile time if the argument is
1806/// a constant.
1807/// @brief Simplify the ffs library function.
Chris Lattner801f4752006-01-17 18:27:17 +00001808struct FFSOptimization : public LibCallOptimization {
Reid Spencerb195fcd2005-05-14 16:42:52 +00001809protected:
1810 /// @brief Subclass Constructor
1811 FFSOptimization(const char* funcName, const char* description)
Chris Lattner801f4752006-01-17 18:27:17 +00001812 : LibCallOptimization(funcName, description) {}
Reid Spencerb195fcd2005-05-14 16:42:52 +00001813
1814public:
1815 /// @brief Default Constructor
1816 FFSOptimization() : LibCallOptimization("ffs",
1817 "Number of 'ffs' calls simplified") {}
1818
Chris Lattner801f4752006-01-17 18:27:17 +00001819 /// @brief Make sure that the "ffs" function has the right prototype
1820 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
Reid Spencerb195fcd2005-05-14 16:42:52 +00001821 // Just make sure this has 2 arguments
Chris Lattner801f4752006-01-17 18:27:17 +00001822 return F->arg_size() == 1 && F->getReturnType() == Type::IntTy;
Reid Spencerb195fcd2005-05-14 16:42:52 +00001823 }
1824
1825 /// @brief Perform the ffs optimization.
Chris Lattner801f4752006-01-17 18:27:17 +00001826 virtual bool OptimizeCall(CallInst *TheCall, SimplifyLibCalls &SLC) {
1827 if (ConstantInt *CI = dyn_cast<ConstantInt>(TheCall->getOperand(1))) {
Reid Spencerb195fcd2005-05-14 16:42:52 +00001828 // ffs(cnst) -> bit#
1829 // ffsl(cnst) -> bit#
Reid Spencer17f77842005-05-15 21:19:45 +00001830 // ffsll(cnst) -> bit#
Reid Spencere0fc4df2006-10-20 07:07:24 +00001831 uint64_t val = CI->getZExtValue();
Reid Spencer17f77842005-05-15 21:19:45 +00001832 int result = 0;
Chris Lattner801f4752006-01-17 18:27:17 +00001833 if (val) {
1834 ++result;
1835 while ((val & 1) == 0) {
1836 ++result;
1837 val >>= 1;
1838 }
Reid Spencer17f77842005-05-15 21:19:45 +00001839 }
Reid Spencere0fc4df2006-10-20 07:07:24 +00001840 TheCall->replaceAllUsesWith(ConstantInt::get(Type::IntTy, result));
Chris Lattner801f4752006-01-17 18:27:17 +00001841 TheCall->eraseFromParent();
Reid Spencerb195fcd2005-05-14 16:42:52 +00001842 return true;
1843 }
Reid Spencer17f77842005-05-15 21:19:45 +00001844
Chris Lattner801f4752006-01-17 18:27:17 +00001845 // ffs(x) -> x == 0 ? 0 : llvm.cttz(x)+1
1846 // ffsl(x) -> x == 0 ? 0 : llvm.cttz(x)+1
1847 // ffsll(x) -> x == 0 ? 0 : llvm.cttz(x)+1
1848 const Type *ArgType = TheCall->getOperand(1)->getType();
1849 ArgType = ArgType->getUnsignedVersion();
1850 const char *CTTZName;
1851 switch (ArgType->getTypeID()) {
1852 default: assert(0 && "Unknown unsigned type!");
1853 case Type::UByteTyID : CTTZName = "llvm.cttz.i8" ; break;
1854 case Type::UShortTyID: CTTZName = "llvm.cttz.i16"; break;
1855 case Type::UIntTyID : CTTZName = "llvm.cttz.i32"; break;
1856 case Type::ULongTyID : CTTZName = "llvm.cttz.i64"; break;
1857 }
1858
1859 Function *F = SLC.getModule()->getOrInsertFunction(CTTZName, ArgType,
1860 ArgType, NULL);
1861 Value *V = new CastInst(TheCall->getOperand(1), ArgType, "tmp", TheCall);
1862 Value *V2 = new CallInst(F, V, "tmp", TheCall);
1863 V2 = new CastInst(V2, Type::IntTy, "tmp", TheCall);
Reid Spencere0fc4df2006-10-20 07:07:24 +00001864 V2 = BinaryOperator::createAdd(V2, ConstantInt::get(Type::IntTy, 1),
Chris Lattner801f4752006-01-17 18:27:17 +00001865 "tmp", TheCall);
1866 Value *Cond =
1867 BinaryOperator::createSetEQ(V, Constant::getNullValue(V->getType()),
1868 "tmp", TheCall);
1869 V2 = new SelectInst(Cond, ConstantInt::get(Type::IntTy, 0), V2,
1870 TheCall->getName(), TheCall);
1871 TheCall->replaceAllUsesWith(V2);
1872 TheCall->eraseFromParent();
Reid Spencer17f77842005-05-15 21:19:45 +00001873 return true;
Reid Spencerb195fcd2005-05-14 16:42:52 +00001874 }
1875} FFSOptimizer;
1876
1877/// This LibCallOptimization will simplify calls to the "ffsl" library
1878/// calls. It simply uses FFSOptimization for which the transformation is
1879/// identical.
1880/// @brief Simplify the ffsl library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001881struct FFSLOptimization : public FFSOptimization {
Reid Spencerb195fcd2005-05-14 16:42:52 +00001882public:
1883 /// @brief Default Constructor
1884 FFSLOptimization() : FFSOptimization("ffsl",
1885 "Number of 'ffsl' calls simplified") {}
1886
1887} FFSLOptimizer;
1888
1889/// This LibCallOptimization will simplify calls to the "ffsll" library
1890/// calls. It simply uses FFSOptimization for which the transformation is
1891/// identical.
1892/// @brief Simplify the ffsl library function.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001893struct FFSLLOptimization : public FFSOptimization {
Reid Spencerb195fcd2005-05-14 16:42:52 +00001894public:
1895 /// @brief Default Constructor
1896 FFSLLOptimization() : FFSOptimization("ffsll",
1897 "Number of 'ffsll' calls simplified") {}
1898
1899} FFSLLOptimizer;
1900
Chris Lattner57a28632006-01-23 05:57:36 +00001901/// This optimizes unary functions that take and return doubles.
1902struct UnaryDoubleFPOptimizer : public LibCallOptimization {
1903 UnaryDoubleFPOptimizer(const char *Fn, const char *Desc)
1904 : LibCallOptimization(Fn, Desc) {}
Chris Lattner4201cd12005-08-24 17:22:17 +00001905
Chris Lattner57a28632006-01-23 05:57:36 +00001906 // Make sure that this function has the right prototype
Chris Lattner4201cd12005-08-24 17:22:17 +00001907 virtual bool ValidateCalledFunction(const Function *F, SimplifyLibCalls &SLC){
1908 return F->arg_size() == 1 && F->arg_begin()->getType() == Type::DoubleTy &&
1909 F->getReturnType() == Type::DoubleTy;
1910 }
Chris Lattner57a28632006-01-23 05:57:36 +00001911
1912 /// ShrinkFunctionToFloatVersion - If the input to this function is really a
1913 /// float, strength reduce this to a float version of the function,
1914 /// e.g. floor((double)FLT) -> (double)floorf(FLT). This can only be called
1915 /// when the target supports the destination function and where there can be
1916 /// no precision loss.
1917 static bool ShrinkFunctionToFloatVersion(CallInst *CI, SimplifyLibCalls &SLC,
1918 Function *(SimplifyLibCalls::*FP)()){
Chris Lattner4201cd12005-08-24 17:22:17 +00001919 if (CastInst *Cast = dyn_cast<CastInst>(CI->getOperand(1)))
1920 if (Cast->getOperand(0)->getType() == Type::FloatTy) {
Chris Lattner57a28632006-01-23 05:57:36 +00001921 Value *New = new CallInst((SLC.*FP)(), Cast->getOperand(0),
Chris Lattner4201cd12005-08-24 17:22:17 +00001922 CI->getName(), CI);
1923 New = new CastInst(New, Type::DoubleTy, CI->getName(), CI);
1924 CI->replaceAllUsesWith(New);
1925 CI->eraseFromParent();
1926 if (Cast->use_empty())
1927 Cast->eraseFromParent();
1928 return true;
1929 }
Chris Lattner57a28632006-01-23 05:57:36 +00001930 return false;
Chris Lattner4201cd12005-08-24 17:22:17 +00001931 }
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001932};
1933
Chris Lattner57a28632006-01-23 05:57:36 +00001934
Chris Lattner57a28632006-01-23 05:57:36 +00001935struct FloorOptimization : public UnaryDoubleFPOptimizer {
1936 FloorOptimization()
1937 : UnaryDoubleFPOptimizer("floor", "Number of 'floor' calls simplified") {}
1938
1939 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00001940#ifdef HAVE_FLOORF
Chris Lattner57a28632006-01-23 05:57:36 +00001941 // If this is a float argument passed in, convert to floorf.
1942 if (ShrinkFunctionToFloatVersion(CI, SLC, &SimplifyLibCalls::get_floorf))
1943 return true;
Reid Spencerade18212006-01-19 08:36:56 +00001944#endif
Chris Lattner57a28632006-01-23 05:57:36 +00001945 return false; // opt failed
1946 }
1947} FloorOptimizer;
Chris Lattner4201cd12005-08-24 17:22:17 +00001948
Chris Lattner57740402006-01-23 06:24:46 +00001949struct CeilOptimization : public UnaryDoubleFPOptimizer {
1950 CeilOptimization()
1951 : UnaryDoubleFPOptimizer("ceil", "Number of 'ceil' calls simplified") {}
1952
1953 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
1954#ifdef HAVE_CEILF
1955 // If this is a float argument passed in, convert to ceilf.
1956 if (ShrinkFunctionToFloatVersion(CI, SLC, &SimplifyLibCalls::get_ceilf))
1957 return true;
1958#endif
1959 return false; // opt failed
1960 }
1961} CeilOptimizer;
Chris Lattner4201cd12005-08-24 17:22:17 +00001962
Chris Lattner57740402006-01-23 06:24:46 +00001963struct RoundOptimization : public UnaryDoubleFPOptimizer {
1964 RoundOptimization()
1965 : UnaryDoubleFPOptimizer("round", "Number of 'round' calls simplified") {}
1966
1967 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
1968#ifdef HAVE_ROUNDF
1969 // If this is a float argument passed in, convert to roundf.
1970 if (ShrinkFunctionToFloatVersion(CI, SLC, &SimplifyLibCalls::get_roundf))
1971 return true;
1972#endif
1973 return false; // opt failed
1974 }
1975} RoundOptimizer;
1976
1977struct RintOptimization : public UnaryDoubleFPOptimizer {
1978 RintOptimization()
1979 : UnaryDoubleFPOptimizer("rint", "Number of 'rint' calls simplified") {}
1980
1981 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
1982#ifdef HAVE_RINTF
1983 // If this is a float argument passed in, convert to rintf.
1984 if (ShrinkFunctionToFloatVersion(CI, SLC, &SimplifyLibCalls::get_rintf))
1985 return true;
1986#endif
1987 return false; // opt failed
1988 }
1989} RintOptimizer;
1990
1991struct NearByIntOptimization : public UnaryDoubleFPOptimizer {
1992 NearByIntOptimization()
1993 : UnaryDoubleFPOptimizer("nearbyint",
1994 "Number of 'nearbyint' calls simplified") {}
1995
1996 virtual bool OptimizeCall(CallInst *CI, SimplifyLibCalls &SLC) {
1997#ifdef HAVE_NEARBYINTF
1998 // If this is a float argument passed in, convert to nearbyintf.
1999 if (ShrinkFunctionToFloatVersion(CI, SLC,&SimplifyLibCalls::get_nearbyintf))
2000 return true;
2001#endif
2002 return false; // opt failed
2003 }
2004} NearByIntOptimizer;
Chris Lattner4201cd12005-08-24 17:22:17 +00002005
Reid Spencer7ddcfb32005-04-27 21:29:20 +00002006/// A function to compute the length of a null-terminated constant array of
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002007/// integers. This function can't rely on the size of the constant array
2008/// because there could be a null terminator in the middle of the array.
2009/// We also have to bail out if we find a non-integer constant initializer
2010/// of one of the elements or if there is no null-terminator. The logic
Reid Spencer7ddcfb32005-04-27 21:29:20 +00002011/// below checks each of these conditions and will return true only if all
2012/// conditions are met. In that case, the \p len parameter is set to the length
2013/// of the null-terminated string. If false is returned, the conditions were
2014/// not met and len is set to 0.
2015/// @brief Get the length of a constant string (null-terminated array).
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002016bool getConstantStringLength(Value *V, uint64_t &len, ConstantArray **CA) {
Reid Spencere249a822005-04-27 07:54:40 +00002017 assert(V != 0 && "Invalid args to getConstantStringLength");
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002018 len = 0; // make sure we initialize this
Reid Spencere249a822005-04-27 07:54:40 +00002019 User* GEP = 0;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002020 // If the value is not a GEP instruction nor a constant expression with a
2021 // GEP instruction, then return false because ConstantArray can't occur
Reid Spencere249a822005-04-27 07:54:40 +00002022 // any other way
2023 if (GetElementPtrInst* GEPI = dyn_cast<GetElementPtrInst>(V))
2024 GEP = GEPI;
2025 else if (ConstantExpr* CE = dyn_cast<ConstantExpr>(V))
2026 if (CE->getOpcode() == Instruction::GetElementPtr)
2027 GEP = CE;
2028 else
2029 return false;
2030 else
2031 return false;
2032
2033 // Make sure the GEP has exactly three arguments.
2034 if (GEP->getNumOperands() != 3)
2035 return false;
2036
2037 // Check to make sure that the first operand of the GEP is an integer and
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002038 // has value 0 so that we are sure we're indexing into the initializer.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002039 if (ConstantInt* op1 = dyn_cast<ConstantInt>(GEP->getOperand(1))) {
Reid Spencere249a822005-04-27 07:54:40 +00002040 if (!op1->isNullValue())
2041 return false;
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002042 } else
Reid Spencere249a822005-04-27 07:54:40 +00002043 return false;
2044
2045 // Ensure that the second operand is a ConstantInt. If it isn't then this
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002046 // GEP is wonky and we're not really sure what were referencing into and
Reid Spencere249a822005-04-27 07:54:40 +00002047 // better of not optimizing it. While we're at it, get the second index
2048 // value. We'll need this later for indexing the ConstantArray.
2049 uint64_t start_idx = 0;
2050 if (ConstantInt* CI = dyn_cast<ConstantInt>(GEP->getOperand(2)))
Reid Spencere0fc4df2006-10-20 07:07:24 +00002051 start_idx = CI->getZExtValue();
Reid Spencere249a822005-04-27 07:54:40 +00002052 else
2053 return false;
2054
2055 // The GEP instruction, constant or instruction, must reference a global
2056 // variable that is a constant and is initialized. The referenced constant
2057 // initializer is the array that we'll use for optimization.
2058 GlobalVariable* GV = dyn_cast<GlobalVariable>(GEP->getOperand(0));
2059 if (!GV || !GV->isConstant() || !GV->hasInitializer())
2060 return false;
2061
2062 // Get the initializer.
2063 Constant* INTLZR = GV->getInitializer();
2064
2065 // Handle the ConstantAggregateZero case
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002066 if (ConstantAggregateZero *CAZ = dyn_cast<ConstantAggregateZero>(INTLZR)) {
Reid Spencere249a822005-04-27 07:54:40 +00002067 // This is a degenerate case. The initializer is constant zero so the
2068 // length of the string must be zero.
2069 len = 0;
2070 return true;
2071 }
2072
2073 // Must be a Constant Array
2074 ConstantArray* A = dyn_cast<ConstantArray>(INTLZR);
2075 if (!A)
2076 return false;
2077
2078 // Get the number of elements in the array
2079 uint64_t max_elems = A->getType()->getNumElements();
2080
2081 // Traverse the constant array from start_idx (derived above) which is
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002082 // the place the GEP refers to in the array.
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002083 for (len = start_idx; len < max_elems; len++) {
2084 if (ConstantInt *CI = dyn_cast<ConstantInt>(A->getOperand(len))) {
Reid Spencere249a822005-04-27 07:54:40 +00002085 // Check for the null terminator
2086 if (CI->isNullValue())
2087 break; // we found end of string
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002088 } else
Reid Spencere249a822005-04-27 07:54:40 +00002089 return false; // This array isn't suitable, non-int initializer
2090 }
Chris Lattner0d4ebfc2006-01-22 22:35:08 +00002091
Reid Spencere249a822005-04-27 07:54:40 +00002092 if (len >= max_elems)
2093 return false; // This array isn't null terminated
2094
2095 // Subtract out the initial value from the length
2096 len -= start_idx;
Reid Spencer4c444fe2005-04-30 03:17:54 +00002097 if (CA)
2098 *CA = A;
Reid Spencere249a822005-04-27 07:54:40 +00002099 return true; // success!
2100}
2101
Reid Spencera7828ba2005-06-18 17:46:28 +00002102/// CastToCStr - Return V if it is an sbyte*, otherwise cast it to sbyte*,
2103/// inserting the cast before IP, and return the cast.
2104/// @brief Cast a value to a "C" string.
2105Value *CastToCStr(Value *V, Instruction &IP) {
2106 const Type *SBPTy = PointerType::get(Type::SByteTy);
2107 if (V->getType() != SBPTy)
2108 return new CastInst(V, SBPTy, V->getName(), &IP);
2109 return V;
2110}
2111
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002112// TODO:
Reid Spencer649ac282005-04-28 04:40:06 +00002113// Additional cases that we need to add to this file:
2114//
Reid Spencer649ac282005-04-28 04:40:06 +00002115// cbrt:
Reid Spencer649ac282005-04-28 04:40:06 +00002116// * cbrt(expN(X)) -> expN(x/3)
2117// * cbrt(sqrt(x)) -> pow(x,1/6)
2118// * cbrt(sqrt(x)) -> pow(x,1/9)
2119//
Reid Spencer649ac282005-04-28 04:40:06 +00002120// cos, cosf, cosl:
Reid Spencer16983ca2005-04-28 18:05:16 +00002121// * cos(-x) -> cos(x)
Reid Spencer649ac282005-04-28 04:40:06 +00002122//
2123// exp, expf, expl:
Reid Spencer649ac282005-04-28 04:40:06 +00002124// * exp(log(x)) -> x
2125//
Reid Spencer649ac282005-04-28 04:40:06 +00002126// log, logf, logl:
Reid Spencer649ac282005-04-28 04:40:06 +00002127// * log(exp(x)) -> x
2128// * log(x**y) -> y*log(x)
2129// * log(exp(y)) -> y*log(e)
2130// * log(exp2(y)) -> y*log(2)
2131// * log(exp10(y)) -> y*log(10)
2132// * log(sqrt(x)) -> 0.5*log(x)
2133// * log(pow(x,y)) -> y*log(x)
2134//
2135// lround, lroundf, lroundl:
2136// * lround(cnst) -> cnst'
2137//
2138// memcmp:
Reid Spencer649ac282005-04-28 04:40:06 +00002139// * memcmp(x,y,l) -> cnst
2140// (if all arguments are constant and strlen(x) <= l and strlen(y) <= l)
Reid Spencer649ac282005-04-28 04:40:06 +00002141//
Reid Spencer649ac282005-04-28 04:40:06 +00002142// memmove:
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002143// * memmove(d,s,l,a) -> memcpy(d,s,l,a)
Reid Spencer649ac282005-04-28 04:40:06 +00002144// (if s is a global constant array)
2145//
Reid Spencer649ac282005-04-28 04:40:06 +00002146// pow, powf, powl:
Reid Spencer649ac282005-04-28 04:40:06 +00002147// * pow(exp(x),y) -> exp(x*y)
2148// * pow(sqrt(x),y) -> pow(x,y*0.5)
2149// * pow(pow(x,y),z)-> pow(x,y*z)
2150//
2151// puts:
2152// * puts("") -> fputc("\n",stdout) (how do we get "stdout"?)
2153//
2154// round, roundf, roundl:
2155// * round(cnst) -> cnst'
2156//
2157// signbit:
2158// * signbit(cnst) -> cnst'
2159// * signbit(nncst) -> 0 (if pstv is a non-negative constant)
2160//
Reid Spencer649ac282005-04-28 04:40:06 +00002161// sqrt, sqrtf, sqrtl:
Reid Spencer649ac282005-04-28 04:40:06 +00002162// * sqrt(expN(x)) -> expN(x*0.5)
2163// * sqrt(Nroot(x)) -> pow(x,1/(2*N))
2164// * sqrt(pow(x,y)) -> pow(|x|,y*0.5)
2165//
Reid Spencer170ae7f2005-05-07 20:15:59 +00002166// stpcpy:
2167// * stpcpy(str, "literal") ->
2168// llvm.memcpy(str,"literal",strlen("literal")+1,1)
Reid Spencer38cabd72005-05-03 07:23:44 +00002169// strrchr:
Reid Spencer649ac282005-04-28 04:40:06 +00002170// * strrchr(s,c) -> reverse_offset_of_in(c,s)
2171// (if c is a constant integer and s is a constant string)
2172// * strrchr(s1,0) -> strchr(s1,0)
2173//
Reid Spencer649ac282005-04-28 04:40:06 +00002174// strncat:
2175// * strncat(x,y,0) -> x
2176// * strncat(x,y,0) -> x (if strlen(y) = 0)
2177// * strncat(x,y,l) -> strcat(x,y) (if y and l are constants an l > strlen(y))
2178//
Reid Spencer649ac282005-04-28 04:40:06 +00002179// strncpy:
2180// * strncpy(d,s,0) -> d
2181// * strncpy(d,s,l) -> memcpy(d,s,l,1)
2182// (if s and l are constants)
2183//
2184// strpbrk:
2185// * strpbrk(s,a) -> offset_in_for(s,a)
2186// (if s and a are both constant strings)
2187// * strpbrk(s,"") -> 0
2188// * strpbrk(s,a) -> strchr(s,a[0]) (if a is constant string of length 1)
2189//
2190// strspn, strcspn:
2191// * strspn(s,a) -> const_int (if both args are constant)
2192// * strspn("",a) -> 0
2193// * strspn(s,"") -> 0
2194// * strcspn(s,a) -> const_int (if both args are constant)
2195// * strcspn("",a) -> 0
2196// * strcspn(s,"") -> strlen(a)
2197//
2198// strstr:
2199// * strstr(x,x) -> x
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002200// * strstr(s1,s2) -> offset_of_s2_in(s1)
Reid Spencer649ac282005-04-28 04:40:06 +00002201// (if s1 and s2 are constant strings)
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002202//
Reid Spencer649ac282005-04-28 04:40:06 +00002203// tan, tanf, tanl:
Reid Spencer649ac282005-04-28 04:40:06 +00002204// * tan(atan(x)) -> x
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002205//
Reid Spencer649ac282005-04-28 04:40:06 +00002206// trunc, truncf, truncl:
2207// * trunc(cnst) -> cnst'
2208//
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +00002209//
Reid Spencer39a762d2005-04-25 02:53:12 +00002210}