//===----------------------------------------------------------------------===//
namespace {
-//===---------------------------------------===//
-// 'strpbrk' Optimizations
-
-struct StrPBrkOpt : public LibCallOptimization {
- virtual Value *CallOptimizer(Function *Callee, CallInst *CI, IRBuilder<> &B) {
- FunctionType *FT = Callee->getFunctionType();
- if (FT->getNumParams() != 2 ||
- FT->getParamType(0) != B.getInt8PtrTy() ||
- FT->getParamType(1) != FT->getParamType(0) ||
- FT->getReturnType() != FT->getParamType(0))
- return 0;
-
- StringRef S1, S2;
- bool HasS1 = getConstantStringInfo(CI->getArgOperand(0), S1);
- bool HasS2 = getConstantStringInfo(CI->getArgOperand(1), S2);
-
- // strpbrk(s, "") -> NULL
- // strpbrk("", s) -> NULL
- if ((HasS1 && S1.empty()) || (HasS2 && S2.empty()))
- return Constant::getNullValue(CI->getType());
-
- // Constant folding.
- if (HasS1 && HasS2) {
- size_t I = S1.find_first_of(S2);
- if (I == std::string::npos) // No match.
- return Constant::getNullValue(CI->getType());
-
- return B.CreateGEP(CI->getArgOperand(0), B.getInt64(I), "strpbrk");
- }
-
- // strpbrk(s, "a") -> strchr(s, 'a')
- if (TD && HasS2 && S2.size() == 1)
- return EmitStrChr(CI->getArgOperand(0), S2[0], B, TD, TLI);
-
- return 0;
- }
-};
-
//===---------------------------------------===//
// 'strto*' Optimizations. This handles strtol, strtod, strtof, strtoul, etc.
StringMap<LibCallOptimization*> Optimizations;
// String and Memory LibCall Optimizations
- StrPBrkOpt StrPBrk;
StrToOpt StrTo; StrSpnOpt StrSpn; StrCSpnOpt StrCSpn; StrStrOpt StrStr;
MemCmpOpt MemCmp; MemCpyOpt MemCpy; MemMoveOpt MemMove; MemSetOpt MemSet;
// Math Library Optimizations
/// we know.
void SimplifyLibCalls::InitOptimizations() {
// String and Memory LibCall Optimizations
- Optimizations["strpbrk"] = &StrPBrk;
Optimizations["strtol"] = &StrTo;
Optimizations["strtod"] = &StrTo;
Optimizations["strtof"] = &StrTo;
}
};
+struct StrPBrkOpt : public LibCallOptimization {
+ virtual Value *callOptimizer(Function *Callee, CallInst *CI, IRBuilder<> &B) {
+ FunctionType *FT = Callee->getFunctionType();
+ if (FT->getNumParams() != 2 ||
+ FT->getParamType(0) != B.getInt8PtrTy() ||
+ FT->getParamType(1) != FT->getParamType(0) ||
+ FT->getReturnType() != FT->getParamType(0))
+ return 0;
+
+ StringRef S1, S2;
+ bool HasS1 = getConstantStringInfo(CI->getArgOperand(0), S1);
+ bool HasS2 = getConstantStringInfo(CI->getArgOperand(1), S2);
+
+ // strpbrk(s, "") -> NULL
+ // strpbrk("", s) -> NULL
+ if ((HasS1 && S1.empty()) || (HasS2 && S2.empty()))
+ return Constant::getNullValue(CI->getType());
+
+ // Constant folding.
+ if (HasS1 && HasS2) {
+ size_t I = S1.find_first_of(S2);
+ if (I == std::string::npos) // No match.
+ return Constant::getNullValue(CI->getType());
+
+ return B.CreateGEP(CI->getArgOperand(0), B.getInt64(I), "strpbrk");
+ }
+
+ // strpbrk(s, "a") -> strchr(s, 'a')
+ if (TD && HasS2 && S2.size() == 1)
+ return EmitStrChr(CI->getArgOperand(0), S2[0], B, TD, TLI);
+
+ return 0;
+ }
+};
+
} // End anonymous namespace.
namespace llvm {
StpCpyOpt StpCpy;
StrNCpyOpt StrNCpy;
StrLenOpt StrLen;
+ StrPBrkOpt StrPBrk;
void initOptimizations();
public:
Optimizations["stpcpy"] = &StpCpy;
Optimizations["strncpy"] = &StrNCpy;
Optimizations["strlen"] = &StrLen;
+ Optimizations["strpbrk"] = &StrPBrk;
}
Value *LibCallSimplifierImpl::optimizeCall(CallInst *CI) {
--- /dev/null
+; Test that the strpbrk library call simplifier works correctly.
+;
+; RUN: opt < %s -instcombine -S | FileCheck %s
+
+target datalayout = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-a0:0:64-f80:128:128"
+
+@hello = constant [12 x i8] c"hello world\00"
+@w = constant [2 x i8] c"w\00"
+@null = constant [1 x i8] zeroinitializer
+
+declare i8* @strpbrk(i8*, i8*)
+
+; Check strpbrk(s, "") -> NULL.
+
+define i8* @test_simplify1(i8* %str) {
+; CHECK: @test_simplify1
+ %pat = getelementptr [1 x i8]* @null, i32 0, i32 0
+
+ %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+ ret i8* %ret
+; CHECK-NEXT: ret i8* null
+}
+
+; Check strpbrk("", s) -> NULL.
+
+define i8* @test_simplify2(i8* %pat) {
+; CHECK: @test_simplify2
+ %str = getelementptr [1 x i8]* @null, i32 0, i32 0
+
+ %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+ ret i8* %ret
+; CHECK-NEXT: ret i8* null
+}
+
+; Check strpbrk(s1, s2), where s1 and s2 are constants.
+
+define i8* @test_simplify3() {
+; CHECK: @test_simplify3
+ %str = getelementptr [12 x i8]* @hello, i32 0, i32 0
+ %pat = getelementptr [2 x i8]* @w, i32 0, i32 0
+
+ %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+ ret i8* %ret
+; CHECK-NEXT: ret i8* getelementptr inbounds ([12 x i8]* @hello, i32 0, i32 6)
+}
+
+; Check strpbrk(s, "a") -> strchr(s, 'a').
+
+define i8* @test_simplify4(i8* %str) {
+; CHECK: @test_simplify4
+ %pat = getelementptr [2 x i8]* @w, i32 0, i32 0
+
+ %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+; CHECK-NEXT: [[VAR:%[a-z]+]] = call i8* @strchr(i8* %str, i32 119)
+ ret i8* %ret
+; CHECK-NEXT: ret i8* [[VAR]]
+}
+
+; Check cases that shouldn't be simplified.
+
+define i8* @test_no_simplify1(i8* %str, i8* %pat) {
+; CHECK: @test_no_simplify1
+
+ %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+; CHECK-NEXT: %ret = call i8* @strpbrk(i8* %str, i8* %pat)
+ ret i8* %ret
+; CHECK-NEXT: ret i8* %ret
+}
--- /dev/null
+; Test that the strpbrk library call simplifier works correctly.
+;
+; RUN: opt < %s -instcombine -S | FileCheck %s
+
+target datalayout = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-a0:0:64-f80:128:128"
+
+@hello = constant [12 x i8] c"hello world\00"
+@w = constant [2 x i8] c"w\00"
+
+declare i16* @strpbrk(i8*, i8*)
+
+; Check that 'strpbrk' functions with the wrong prototype aren't simplified.
+
+define i16* @test_no_simplify1() {
+; CHECK: @test_no_simplify1
+ %str = getelementptr [12 x i8]* @hello, i32 0, i32 0
+ %pat = getelementptr [2 x i8]* @w, i32 0, i32 0
+
+ %ret = call i16* @strpbrk(i8* %str, i8* %pat)
+; CHECK-NEXT: %ret = call i16* @strpbrk
+ ret i16* %ret
+; CHECK-NEXT: ret i16* %ret
+}
+++ /dev/null
-; RUN: opt < %s -simplify-libcalls -S | FileCheck %s
-
-target datalayout = "-p:64:64:64"
-
-@hello = constant [12 x i8] c"hello world\00"
-@w = constant [2 x i8] c"w\00"
-@null = constant [1 x i8] zeroinitializer
-
-declare i8* @strpbrk(i8*, i8*)
-
-define void @test(i8* %s1, i8* %s2) {
- %hello_p = getelementptr [12 x i8]* @hello, i32 0, i32 0
- %w_p = getelementptr [2 x i8]* @w, i32 0, i32 0
- %null_p = getelementptr [1 x i8]* @null, i32 0, i32 0
- %test1 = call i8* @strpbrk(i8* %null_p, i8* %s2)
- %test2 = call i8* @strpbrk(i8* %s1, i8* %null_p)
-; CHECK-NOT: call i8* @strpbrk
- %test3 = call i8* @strpbrk(i8* %s1, i8* %w_p)
-; CHECK: call i8* @strchr(i8* %s1, i32 119)
- %test4 = call i8* @strpbrk(i8* %hello_p, i8* %w_p)
-; CHECK: getelementptr i8* %hello_p, i64 6
- %test5 = call i8* @strpbrk(i8* %s1, i8* %s2)
-; CHECK: call i8* @strpbrk(i8* %s1, i8* %s2)
- ret void
-}