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| 1 //===-- llvm/IR/NaClIntrinsics.cpp - NaCl Intrinsics ------------*- C++ -*-===// |
| 2 // |
| 3 // The LLVM Compiler Infrastructure |
| 4 // |
| 5 // This file is distributed under the University of Illinois Open Source |
| 6 // License. See LICENSE.TXT for details. |
| 7 // |
| 8 //===----------------------------------------------------------------------===// |
| 9 // |
| 10 // This file describes intrinsic functions that are specific to NaCl. |
| 11 // |
| 12 //===----------------------------------------------------------------------===// |
| 13 |
| 14 #include "llvm/IR/DerivedTypes.h" |
| 15 #include "llvm/IR/NaClIntrinsics.h" |
| 16 #include "llvm/IR/Type.h" |
| 17 |
| 18 namespace llvm { |
| 19 |
| 20 namespace NaCl { |
| 21 |
| 22 AtomicIntrinsics::AtomicIntrinsics(LLVMContext &C) { |
| 23 Type *IT[NumAtomicIntrinsicTypes] = { Type::getInt8Ty(C), Type::getInt16Ty(C), |
| 24 Type::getInt32Ty(C), |
| 25 Type::getInt64Ty(C) }; |
| 26 size_t CurIntrin = 0; |
| 27 |
| 28 // Initialize each of the atomic intrinsics and their overloads. They |
| 29 // have up to 5 parameters, the following macro will take care of |
| 30 // overloading. |
| 31 #define INIT(P0, P1, P2, P3, P4, INTRIN) \ |
| 32 do { \ |
| 33 for (size_t CurType = 0; CurType != NumAtomicIntrinsicTypes; ++CurType) { \ |
| 34 size_t Param = 0; \ |
| 35 I[CurIntrin][CurType].OverloadedType = IT[CurType]; \ |
| 36 I[CurIntrin][CurType].ID = Intrinsic::nacl_atomic_##INTRIN; \ |
| 37 I[CurIntrin][CurType].Overloaded = \ |
| 38 P0 == Int || P0 == Ptr || P1 == Int || P1 == Ptr || P2 == Int || \ |
| 39 P2 == Ptr || P3 == Int || P3 == Ptr || P4 == Int || P4 == Ptr; \ |
| 40 I[CurIntrin][CurType].NumParams = \ |
| 41 (P0 != NoP) + (P1 != NoP) + (P2 != NoP) + (P3 != NoP) + (P4 != NoP); \ |
| 42 I[CurIntrin][CurType].ParamType[Param++] = P0; \ |
| 43 I[CurIntrin][CurType].ParamType[Param++] = P1; \ |
| 44 I[CurIntrin][CurType].ParamType[Param++] = P2; \ |
| 45 I[CurIntrin][CurType].ParamType[Param++] = P3; \ |
| 46 I[CurIntrin][CurType].ParamType[Param++] = P4; \ |
| 47 } \ |
| 48 ++CurIntrin; \ |
| 49 } while (0) |
| 50 |
| 51 INIT(Ptr, Mem, NoP, NoP, NoP, load); |
| 52 INIT(Ptr, Int, Mem, NoP, NoP, store); |
| 53 INIT(RMW, Ptr, Int, Mem, NoP, rmw); |
| 54 INIT(Ptr, Int, Int, Mem, Mem, cmpxchg); |
| 55 INIT(Mem, NoP, NoP, NoP, NoP, fence); |
| 56 } |
| 57 |
| 58 AtomicIntrinsics::View AtomicIntrinsics::allIntrinsicsAndOverloads() const { |
| 59 return View(&I[0][0], NumAtomicIntrinsics * NumAtomicIntrinsicTypes); |
| 60 } |
| 61 |
| 62 AtomicIntrinsics::View AtomicIntrinsics::overloadsFor(Intrinsic::ID ID) const { |
| 63 // Overloads are stored consecutively. |
| 64 View R = allIntrinsicsAndOverloads(); |
| 65 for (const AtomicIntrinsic *AI = R.begin(), *E = R.end(); AI != E; ++AI) |
| 66 if (AI->ID == ID) |
| 67 return View(AI, NumAtomicIntrinsicTypes); |
| 68 llvm_unreachable("unhandled atomic intrinsic"); |
| 69 } |
| 70 |
| 71 const AtomicIntrinsics::AtomicIntrinsic * |
| 72 AtomicIntrinsics::find(Intrinsic::ID ID, Type *OverloadedType) const { |
| 73 View R = allIntrinsicsAndOverloads(); |
| 74 for (const AtomicIntrinsic *AI = R.begin(), *E = R.end(); AI != E; ++AI) |
| 75 if (AI->ID == ID && AI->OverloadedType == OverloadedType) |
| 76 return AI; |
| 77 llvm_unreachable("unhandled atomic intrinsic"); |
| 78 } |
| 79 |
| 80 } // End NaCl namespace |
| 81 |
| 82 } // End llvm namespace |
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