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1 //===- subzero/src/IceConverter.cpp - Converts LLVM to Ice ---------------===// | 1 //===- subzero/src/IceConverter.cpp - Converts LLVM to Ice ---------------===// |
2 // | 2 // |
3 // The Subzero Code Generator | 3 // The Subzero Code Generator |
4 // | 4 // |
5 // This file is distributed under the University of Illinois Open Source | 5 // This file is distributed under the University of Illinois Open Source |
6 // License. See LICENSE.TXT for details. | 6 // License. See LICENSE.TXT for details. |
7 // | 7 // |
8 //===----------------------------------------------------------------------===// | 8 //===----------------------------------------------------------------------===// |
9 // | 9 // |
10 // This file implements the LLVM to ICE converter. | 10 // This file implements the LLVM to ICE converter. |
11 // | 11 // |
12 //===----------------------------------------------------------------------===// | 12 //===----------------------------------------------------------------------===// |
13 | 13 |
14 #include <iostream> | 14 #include <iostream> |
15 | 15 |
16 #include "llvm/IR/Constant.h" | 16 #include "llvm/IR/Constant.h" |
17 #include "llvm/IR/Constants.h" | 17 #include "llvm/IR/Constants.h" |
18 #include "llvm/IR/DataLayout.h" | 18 #include "llvm/IR/DataLayout.h" |
19 #include "llvm/IR/Instruction.h" | 19 #include "llvm/IR/Instruction.h" |
20 #include "llvm/IR/Instructions.h" | 20 #include "llvm/IR/Instructions.h" |
21 #include "llvm/IR/LLVMContext.h" | 21 #include "llvm/IR/LLVMContext.h" |
22 #include "llvm/IR/Module.h" | 22 #include "llvm/IR/Module.h" |
23 | 23 |
24 #include "IceCfg.h" | 24 #include "IceCfg.h" |
25 #include "IceCfgNode.h" | 25 #include "IceCfgNode.h" |
26 #include "IceClFlags.h" | 26 #include "IceClFlags.h" |
27 #include "IceConverter.h" | 27 #include "IceConverter.h" |
28 #include "IceDefs.h" | 28 #include "IceDefs.h" |
29 #include "IceGlobalContext.h" | 29 #include "IceGlobalContext.h" |
30 #include "IceGlobalInits.h" | |
30 #include "IceInst.h" | 31 #include "IceInst.h" |
31 #include "IceOperand.h" | 32 #include "IceOperand.h" |
32 #include "IceTargetLowering.h" | 33 #include "IceTargetLowering.h" |
33 #include "IceTypes.h" | 34 #include "IceTypes.h" |
34 #include "IceTypeConverter.h" | 35 #include "IceTypeConverter.h" |
35 | 36 |
36 using namespace llvm; | 37 using namespace llvm; |
37 | 38 |
38 namespace { | 39 namespace { |
39 | 40 |
40 // Debugging helper | 41 // Debugging helper |
41 template <typename T> static std::string LLVMObjectAsString(const T *O) { | 42 template <typename T> static std::string LLVMObjectAsString(const T *O) { |
42 std::string Dump; | 43 std::string Dump; |
43 raw_string_ostream Stream(Dump); | 44 raw_string_ostream Stream(Dump); |
44 O->print(Stream); | 45 O->print(Stream); |
45 return Stream.str(); | 46 return Stream.str(); |
46 } | 47 } |
47 | 48 |
48 // Converter from LLVM to ICE. The entry point is the convertFunction method. | 49 // Base class for converting LLVM to ICE. |
50 class LLVM2ICEConverter { | |
51 LLVM2ICEConverter(const LLVM2ICEConverter &) = delete; | |
52 LLVM2ICEConverter &operator=(const LLVM2ICEConverter &) = delete; | |
53 | |
54 public: | |
55 LLVM2ICEConverter(Ice::GlobalContext *Ctx, LLVMContext &LLVMContext) | |
56 : Ctx(Ctx), TypeConverter(LLVMContext) {} | |
57 | |
58 protected: | |
59 // Data | |
60 Ice::GlobalContext *Ctx; | |
61 Ice::TypeConverter TypeConverter; | |
Jim Stichnoth
2014/10/06 18:16:37
Can this be const?
(And while I'm at it, could yo
Karl
2014/10/06 22:44:04
Done.
| |
62 }; | |
63 | |
64 // Converter from LLVM functions to ICE. The entry point is the | |
65 // convertFunction method. | |
49 // | 66 // |
50 // Note: this currently assumes that the given IR was verified to be valid PNaCl | 67 // Note: this currently assumes that the given IR was verified to be |
51 // bitcode: | 68 // valid PNaCl bitcode: |
52 // https://developers.google.com/native-client/dev/reference/pnacl-bitcode-abi | 69 // https://developers.google.com/native-client/dev/reference/pnacl-bitcode-abi |
53 // If not, all kinds of assertions may fire. | 70 // If not, all kinds of assertions may fire. |
Jim Stichnoth
2014/10/06 18:16:37
I'd rather read this comment as something a little
Karl
2014/10/06 22:44:04
Done.
| |
54 // | 71 class LLVM2ICEFunctionConverter : LLVM2ICEConverter { |
55 class LLVM2ICEConverter { | 72 LLVM2ICEFunctionConverter(const LLVM2ICEFunctionConverter &) = delete; |
73 LLVM2ICEFunctionConverter & | |
74 operator=(const LLVM2ICEFunctionConverter &) = delete; | |
75 | |
56 public: | 76 public: |
57 LLVM2ICEConverter(Ice::GlobalContext *Ctx, LLVMContext &LLVMContext) | 77 LLVM2ICEFunctionConverter(Ice::GlobalContext *Ctx, LLVMContext &LLVMContext) |
58 : Ctx(Ctx), Func(NULL), TypeConverter(LLVMContext) {} | 78 : LLVM2ICEConverter(Ctx, LLVMContext), Func(NULL) {} |
59 | 79 |
60 // Caller is expected to delete the returned Ice::Cfg object. | 80 // Caller is expected to delete the returned Ice::Cfg object. |
61 Ice::Cfg *convertFunction(const Function *F) { | 81 Ice::Cfg *convertFunction(const Function *F) { |
62 static Ice::TimerIdT IDllvmConvert = | 82 static Ice::TimerIdT IDllvmConvert = |
63 Ice::GlobalContext::getTimerID("llvmConvert"); | 83 Ice::GlobalContext::getTimerID("llvmConvert"); |
64 Ice::TimerMarker T(IDllvmConvert, Ctx); | 84 Ice::TimerMarker T(IDllvmConvert, Ctx); |
65 VarMap.clear(); | 85 VarMap.clear(); |
66 NodeMap.clear(); | 86 NodeMap.clear(); |
67 Func = new Ice::Cfg(Ctx); | 87 Func = new Ice::Cfg(Ctx); |
68 Func->setFunctionName(F->getName()); | 88 Func->setFunctionName(F->getName()); |
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86 Func->setEntryNode(mapBasicBlockToNode(&F->getEntryBlock())); | 106 Func->setEntryNode(mapBasicBlockToNode(&F->getEntryBlock())); |
87 Func->computePredecessors(); | 107 Func->computePredecessors(); |
88 | 108 |
89 return Func; | 109 return Func; |
90 } | 110 } |
91 | 111 |
92 // convertConstant() does not use Func or require it to be a valid | 112 // convertConstant() does not use Func or require it to be a valid |
93 // Ice::Cfg pointer. As such, it's suitable for e.g. constructing | 113 // Ice::Cfg pointer. As such, it's suitable for e.g. constructing |
94 // global initializers. | 114 // global initializers. |
95 Ice::Constant *convertConstant(const Constant *Const) { | 115 Ice::Constant *convertConstant(const Constant *Const) { |
96 if (const GlobalValue *GV = dyn_cast<GlobalValue>(Const)) { | 116 if (const auto GV = dyn_cast<GlobalValue>(Const)) { |
97 return Ctx->getConstantSym(convertToIceType(GV->getType()), 0, | 117 return Ctx->getConstantSym(convertToIceType(GV->getType()), 0, |
98 GV->getName()); | 118 GV->getName()); |
99 } else if (const ConstantInt *CI = dyn_cast<ConstantInt>(Const)) { | 119 } else if (const auto CI = dyn_cast<ConstantInt>(Const)) { |
100 Ice::Type Ty = convertToIceType(CI->getType()); | 120 Ice::Type Ty = convertToIceType(CI->getType()); |
101 if (Ty == Ice::IceType_i64) { | 121 if (Ty == Ice::IceType_i64) { |
102 return Ctx->getConstantInt64(Ty, CI->getSExtValue()); | 122 return Ctx->getConstantInt64(Ty, CI->getSExtValue()); |
103 } else { | 123 } else { |
104 return Ctx->getConstantInt32(Ty, CI->getSExtValue()); | 124 return Ctx->getConstantInt32(Ty, CI->getSExtValue()); |
105 } | 125 } |
106 } else if (const ConstantFP *CFP = dyn_cast<ConstantFP>(Const)) { | 126 } else if (const auto CFP = dyn_cast<ConstantFP>(Const)) { |
107 Ice::Type Type = convertToIceType(CFP->getType()); | 127 Ice::Type Type = convertToIceType(CFP->getType()); |
108 if (Type == Ice::IceType_f32) | 128 if (Type == Ice::IceType_f32) |
109 return Ctx->getConstantFloat(CFP->getValueAPF().convertToFloat()); | 129 return Ctx->getConstantFloat(CFP->getValueAPF().convertToFloat()); |
110 else if (Type == Ice::IceType_f64) | 130 else if (Type == Ice::IceType_f64) |
111 return Ctx->getConstantDouble(CFP->getValueAPF().convertToDouble()); | 131 return Ctx->getConstantDouble(CFP->getValueAPF().convertToDouble()); |
112 llvm_unreachable("Unexpected floating point type"); | 132 llvm_unreachable("Unexpected floating point type"); |
113 return NULL; | 133 return NULL; |
114 } else if (const UndefValue *CU = dyn_cast<UndefValue>(Const)) { | 134 } else if (const auto CU = dyn_cast<UndefValue>(Const)) { |
115 return Ctx->getConstantUndef(convertToIceType(CU->getType())); | 135 return Ctx->getConstantUndef(convertToIceType(CU->getType())); |
116 } else { | 136 } else { |
117 llvm_unreachable("Unhandled constant type"); | 137 llvm_unreachable("Unhandled constant type"); |
118 return NULL; | 138 return NULL; |
119 } | 139 } |
120 } | 140 } |
121 | 141 |
122 private: | 142 private: |
123 // LLVM values (instructions, etc.) are mapped directly to ICE variables. | 143 // LLVM values (instructions, etc.) are mapped directly to ICE variables. |
124 // mapValueToIceVar has a version that forces an ICE type on the variable, | 144 // mapValueToIceVar has a version that forces an ICE type on the variable, |
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139 Ice::CfgNode *mapBasicBlockToNode(const BasicBlock *BB) { | 159 Ice::CfgNode *mapBasicBlockToNode(const BasicBlock *BB) { |
140 if (NodeMap.find(BB) == NodeMap.end()) { | 160 if (NodeMap.find(BB) == NodeMap.end()) { |
141 NodeMap[BB] = Func->makeNode(BB->getName()); | 161 NodeMap[BB] = Func->makeNode(BB->getName()); |
142 } | 162 } |
143 return NodeMap[BB]; | 163 return NodeMap[BB]; |
144 } | 164 } |
145 | 165 |
146 Ice::Type convertToIceType(Type *LLVMTy) const { | 166 Ice::Type convertToIceType(Type *LLVMTy) const { |
147 Ice::Type IceTy = TypeConverter.convertToIceType(LLVMTy); | 167 Ice::Type IceTy = TypeConverter.convertToIceType(LLVMTy); |
148 if (IceTy == Ice::IceType_NUM) | 168 if (IceTy == Ice::IceType_NUM) |
149 llvm::report_fatal_error(std::string("Invalid PNaCl type ") + | 169 report_fatal_error(std::string("Invalid PNaCl type ") + |
150 LLVMObjectAsString(LLVMTy)); | 170 LLVMObjectAsString(LLVMTy)); |
151 return IceTy; | 171 return IceTy; |
152 } | 172 } |
153 | 173 |
154 // Given an LLVM instruction and an operand number, produce the | 174 // Given an LLVM instruction and an operand number, produce the |
155 // Ice::Operand this refers to. If there's no such operand, return | 175 // Ice::Operand this refers to. If there's no such operand, return |
156 // NULL. | 176 // NULL. |
157 Ice::Operand *convertOperand(const Instruction *Inst, unsigned OpNum) { | 177 Ice::Operand *convertOperand(const Instruction *Inst, unsigned OpNum) { |
158 if (OpNum >= Inst->getNumOperands()) { | 178 if (OpNum >= Inst->getNumOperands()) { |
159 return NULL; | 179 return NULL; |
160 } | 180 } |
161 const Value *Op = Inst->getOperand(OpNum); | 181 const Value *Op = Inst->getOperand(OpNum); |
162 return convertValue(Op); | 182 return convertValue(Op); |
163 } | 183 } |
164 | 184 |
165 Ice::Operand *convertValue(const Value *Op) { | 185 Ice::Operand *convertValue(const Value *Op) { |
166 if (const Constant *Const = dyn_cast<Constant>(Op)) { | 186 if (const auto Const = dyn_cast<Constant>(Op)) { |
167 return convertConstant(Const); | 187 return convertConstant(Const); |
168 } else { | 188 } else { |
169 return mapValueToIceVar(Op); | 189 return mapValueToIceVar(Op); |
170 } | 190 } |
171 } | 191 } |
172 | 192 |
173 // Note: this currently assumes a 1x1 mapping between LLVM IR and Ice | 193 // Note: this currently assumes a 1x1 mapping between LLVM IR and Ice |
174 // instructions. | 194 // instructions. |
175 Ice::Inst *convertInstruction(const Instruction *Inst) { | 195 Ice::Inst *convertInstruction(const Instruction *Inst) { |
176 switch (Inst->getOpcode()) { | 196 switch (Inst->getOpcode()) { |
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286 } | 306 } |
287 | 307 |
288 Ice::Inst *convertStoreInstruction(const StoreInst *Inst) { | 308 Ice::Inst *convertStoreInstruction(const StoreInst *Inst) { |
289 Ice::Operand *Addr = convertOperand(Inst, 1); | 309 Ice::Operand *Addr = convertOperand(Inst, 1); |
290 Ice::Operand *Val = convertOperand(Inst, 0); | 310 Ice::Operand *Val = convertOperand(Inst, 0); |
291 return Ice::InstStore::create(Func, Val, Addr); | 311 return Ice::InstStore::create(Func, Val, Addr); |
292 } | 312 } |
293 | 313 |
294 Ice::Inst *convertArithInstruction(const Instruction *Inst, | 314 Ice::Inst *convertArithInstruction(const Instruction *Inst, |
295 Ice::InstArithmetic::OpKind Opcode) { | 315 Ice::InstArithmetic::OpKind Opcode) { |
296 const BinaryOperator *BinOp = cast<BinaryOperator>(Inst); | 316 const auto BinOp = cast<BinaryOperator>(Inst); |
297 Ice::Operand *Src0 = convertOperand(Inst, 0); | 317 Ice::Operand *Src0 = convertOperand(Inst, 0); |
298 Ice::Operand *Src1 = convertOperand(Inst, 1); | 318 Ice::Operand *Src1 = convertOperand(Inst, 1); |
299 Ice::Variable *Dest = mapValueToIceVar(BinOp); | 319 Ice::Variable *Dest = mapValueToIceVar(BinOp); |
300 return Ice::InstArithmetic::create(Func, Opcode, Dest, Src0, Src1); | 320 return Ice::InstArithmetic::create(Func, Opcode, Dest, Src0, Src1); |
301 } | 321 } |
302 | 322 |
303 Ice::Inst *convertPHINodeInstruction(const PHINode *Inst) { | 323 Ice::Inst *convertPHINodeInstruction(const PHINode *Inst) { |
304 unsigned NumValues = Inst->getNumIncomingValues(); | 324 unsigned NumValues = Inst->getNumIncomingValues(); |
305 Ice::InstPhi *IcePhi = | 325 Ice::InstPhi *IcePhi = |
306 Ice::InstPhi::create(Func, NumValues, mapValueToIceVar(Inst)); | 326 Ice::InstPhi::create(Func, NumValues, mapValueToIceVar(Inst)); |
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504 | 524 |
505 Ice::Inst *convertCallInstruction(const CallInst *Inst) { | 525 Ice::Inst *convertCallInstruction(const CallInst *Inst) { |
506 Ice::Variable *Dest = mapValueToIceVar(Inst); | 526 Ice::Variable *Dest = mapValueToIceVar(Inst); |
507 Ice::Operand *CallTarget = convertValue(Inst->getCalledValue()); | 527 Ice::Operand *CallTarget = convertValue(Inst->getCalledValue()); |
508 unsigned NumArgs = Inst->getNumArgOperands(); | 528 unsigned NumArgs = Inst->getNumArgOperands(); |
509 // Note: Subzero doesn't (yet) do anything special with the Tail | 529 // Note: Subzero doesn't (yet) do anything special with the Tail |
510 // flag in the bitcode, i.e. CallInst::isTailCall(). | 530 // flag in the bitcode, i.e. CallInst::isTailCall(). |
511 Ice::InstCall *NewInst = NULL; | 531 Ice::InstCall *NewInst = NULL; |
512 const Ice::Intrinsics::FullIntrinsicInfo *Info = NULL; | 532 const Ice::Intrinsics::FullIntrinsicInfo *Info = NULL; |
513 | 533 |
514 if (Ice::ConstantRelocatable *Target = | 534 if (auto Target = dyn_cast<Ice::ConstantRelocatable>(CallTarget)) { |
515 llvm::dyn_cast<Ice::ConstantRelocatable>(CallTarget)) { | |
516 // Check if this direct call is to an Intrinsic (starts with "llvm.") | 535 // Check if this direct call is to an Intrinsic (starts with "llvm.") |
517 static const char LLVMPrefix[] = "llvm."; | 536 static const char LLVMPrefix[] = "llvm."; |
518 const size_t LLVMPrefixLen = strlen(LLVMPrefix); | 537 const size_t LLVMPrefixLen = strlen(LLVMPrefix); |
519 Ice::IceString Name = Target->getName(); | 538 Ice::IceString Name = Target->getName(); |
520 if (Name.substr(0, LLVMPrefixLen) == LLVMPrefix) { | 539 if (Name.substr(0, LLVMPrefixLen) == LLVMPrefix) { |
521 Ice::IceString NameSuffix = Name.substr(LLVMPrefixLen); | 540 Ice::IceString NameSuffix = Name.substr(LLVMPrefixLen); |
522 Info = Ctx->getIntrinsicsInfo().find(NameSuffix); | 541 Info = Ctx->getIntrinsicsInfo().find(NameSuffix); |
523 if (!Info) { | 542 if (!Info) { |
524 report_fatal_error(std::string("Invalid PNaCl intrinsic call: ") + | 543 report_fatal_error(std::string("Invalid PNaCl intrinsic call: ") + |
525 LLVMObjectAsString(Inst)); | 544 LLVMObjectAsString(Inst)); |
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598 << I->getArgType(ArgIndex) | 617 << I->getArgType(ArgIndex) |
599 << ". Found: " << Call->getArg(ArgIndex)->getType(); | 618 << ". Found: " << Call->getArg(ArgIndex)->getType(); |
600 report_fatal_error(StrBuf.str()); | 619 report_fatal_error(StrBuf.str()); |
601 break; | 620 break; |
602 } | 621 } |
603 } | 622 } |
604 } | 623 } |
605 | 624 |
606 private: | 625 private: |
607 // Data | 626 // Data |
608 Ice::GlobalContext *Ctx; | |
609 Ice::Cfg *Func; | 627 Ice::Cfg *Func; |
610 std::map<const Value *, Ice::Variable *> VarMap; | 628 std::map<const Value *, Ice::Variable *> VarMap; |
611 std::map<const BasicBlock *, Ice::CfgNode *> NodeMap; | 629 std::map<const BasicBlock *, Ice::CfgNode *> NodeMap; |
612 Ice::TypeConverter TypeConverter; | |
613 }; | 630 }; |
614 | 631 |
632 // Converter from LLVM global variables to ICE. The entry point is the | |
633 // convertGlobalsToIce method. | |
634 // | |
635 // Note: this currently assumes that the given IR was verified to be | |
636 // valid PNaCl bitcode: | |
637 // https://developers.google.com/native-client/dev/reference/pnacl-bitcode-abi | |
638 // If not, all kinds of assertions may fire. | |
Jim Stichnoth
2014/10/06 18:16:38
same comment as above
Karl
2014/10/06 22:44:04
Done.
| |
639 class LLVM2ICEGlobalsConverter : public LLVM2ICEConverter { | |
640 LLVM2ICEGlobalsConverter(const LLVM2ICEGlobalsConverter &) = delete; | |
641 LLVM2ICEGlobalsConverter & | |
642 operator-(const LLVM2ICEGlobalsConverter &) = delete; | |
643 | |
644 public: | |
645 LLVM2ICEGlobalsConverter(Ice::GlobalContext *Ctx, LLVMContext &LLVMContext) | |
646 : LLVM2ICEConverter(Ctx, LLVMContext) {} | |
647 | |
648 ~LLVM2ICEGlobalsConverter() { DeleteContainerSeconds(GlobalVarAddressMap); } | |
649 | |
650 /// Converts global variables, and their initializers into ICE global | |
651 /// addresses, for module Mod. Puts corresponding converted global | |
652 /// addresses into GlobalAddresses. | |
653 void convertGlobalsToIce(Module *Mod, | |
654 Ice::Translator::GlobalAddressList &GlobalAddresses); | |
655 | |
656 private: | |
657 typedef std::map<const GlobalVariable *, Ice::GlobalAddress *> | |
658 GlobalVarAddressMapType; | |
659 // Map from global variables to their corresponding global address. | |
660 GlobalVarAddressMapType GlobalVarAddressMap; | |
661 | |
662 // Adds the Initializer to the list of initializers for Global address. | |
663 void addGlobalInitializer(Ice::GlobalAddress &Global, | |
664 const Constant *Initializer) { | |
665 const bool HasOffset = false; | |
666 const Ice::GlobalAddress::RelocOffsetType Offset = 0; | |
667 addGlobalInitializer(Global, Initializer, HasOffset, Offset); | |
668 } | |
669 | |
670 // Adds Initializer to the list of initializers for Global | |
671 // address. HasOffset is true only if Initializer is a relocation | |
672 // initializer and Offset should be added to the relocation. | |
673 void addGlobalInitializer(Ice::GlobalAddress &Global, | |
674 const Constant *Initializer, bool HasOffset, | |
675 Ice::GlobalAddress::RelocOffsetType Offset); | |
676 | |
677 // Returns the global address associated with global variable GV. | |
678 Ice::GlobalAddress *getGlobalVarAddress(const GlobalVariable *GV) { | |
679 if (GlobalVarAddressMap.find(GV) == GlobalVarAddressMap.end()) | |
680 GlobalVarAddressMap[GV] = new Ice::GlobalAddress(); | |
681 return GlobalVarAddressMap[GV]; | |
682 } | |
683 | |
684 // Converts the given constant C to the corresponding integer | |
685 // literal it contains. | |
686 Ice::GlobalAddress::RelocOffsetType | |
687 getIntegerLiteralConstant(const Value *C) { | |
688 const auto CI = dyn_cast<ConstantInt>(C); | |
689 if (CI && CI->getType()->isIntegerTy(32)) | |
690 return CI->getSExtValue(); | |
691 | |
692 std::string Buffer; | |
693 raw_string_ostream StrBuf(Buffer); | |
694 StrBuf << "Constant not i32 literal: " << *C; | |
695 report_fatal_error(StrBuf.str()); | |
696 return 0; | |
697 } | |
698 }; | |
699 | |
700 void LLVM2ICEGlobalsConverter::convertGlobalsToIce( | |
701 Module *Mod, Ice::Translator::GlobalAddressList &GlobalAddresses) { | |
702 for (Module::const_global_iterator I = Mod->global_begin(), | |
703 E = Mod->global_end(); | |
704 I != E; ++I) { | |
705 if (!I->hasInitializer() && Ctx->getFlags().AllowUninitializedGlobals) | |
706 continue; | |
707 | |
708 const auto GV = dyn_cast<GlobalVariable>(I); | |
709 assert(GV); | |
710 Ice::IceString Name = GV->getName(); | |
711 if (!GV->hasInternalLinkage()) { | |
712 std::string Buffer; | |
713 raw_string_ostream StrBuf(Buffer); | |
714 StrBuf << "Can't define external global address: " << Name; | |
715 report_fatal_error(StrBuf.str()); | |
716 } | |
717 | |
718 Ice::GlobalAddress *Addr = getGlobalVarAddress(GV); | |
719 GlobalAddresses.push_back(Addr); | |
720 Addr->setAlignment(GV->getAlignment()); | |
721 Addr->setIsConstant(GV->isConstant()); | |
722 // Note: We allow external for cross tests. | |
723 Addr->setIsInternal(!GV->isExternallyInitialized()); | |
724 Addr->setName(Name); | |
725 | |
726 const Constant *Initializer = GV->getInitializer(); | |
727 if (const auto CompoundInit = dyn_cast<ConstantStruct>(Initializer)) { | |
728 for (ConstantStruct::const_op_iterator I = CompoundInit->op_begin(), | |
729 E = CompoundInit->op_end(); | |
730 I != E; ++I) { | |
731 if (const auto Init = dyn_cast<Constant>(I)) { | |
732 addGlobalInitializer(*Addr, Init); | |
733 } | |
734 } | |
735 } else { | |
736 addGlobalInitializer(*Addr, Initializer); | |
737 } | |
738 } | |
739 } | |
740 | |
741 void LLVM2ICEGlobalsConverter::addGlobalInitializer( | |
742 Ice::GlobalAddress &Global, const Constant *Initializer, bool HasOffset, | |
743 Ice::GlobalAddress::RelocOffsetType Offset) { | |
744 assert(HasOffset || Offset == 0); | |
745 | |
746 if (const auto CDA = dyn_cast<ConstantDataArray>(Initializer)) { | |
747 assert(!HasOffset && isa<IntegerType>(CDA->getElementType()) && | |
748 (cast<IntegerType>(CDA->getElementType())->getBitWidth() == 8)); | |
749 Global.addInitializer(new Ice::GlobalAddress::DataInitializer( | |
750 CDA->getRawDataValues().data(), CDA->getNumElements())); | |
751 return; | |
752 } | |
753 | |
754 if (isa<ConstantAggregateZero>(Initializer)) { | |
755 if (const auto AT = dyn_cast<ArrayType>(Initializer->getType())) { | |
756 assert(!HasOffset && isa<IntegerType>(AT->getElementType()) && | |
757 (cast<IntegerType>(AT->getElementType())->getBitWidth() == 8)); | |
758 Global.addInitializer( | |
759 new Ice::GlobalAddress::ZeroInitializer(AT->getNumElements())); | |
760 } else { | |
761 llvm_unreachable("Unhandled constant aggregate zero type"); | |
762 } | |
763 return; | |
764 } | |
765 | |
766 if (const auto Exp = dyn_cast<ConstantExpr>(Initializer)) { | |
767 switch (Exp->getOpcode()) { | |
768 case Instruction::Add: | |
769 assert(!HasOffset); | |
770 addGlobalInitializer(Global, Exp->getOperand(0), true, | |
771 getIntegerLiteralConstant(Exp->getOperand(1))); | |
772 return; | |
773 case Instruction::PtrToInt: { | |
774 assert(TypeConverter.convertToIceType(Exp->getType()) == | |
775 TypeConverter.getIcePointerType()); | |
776 auto GV = dyn_cast<GlobalValue>(Exp->getOperand(0)); | |
Jim Stichnoth
2014/10/06 18:16:38
Can any of these autos be const auto?
Karl
2014/10/06 22:44:04
Converted to const auto.
| |
777 assert(GV); | |
778 if (auto Fcn = dyn_cast<Function>(GV)) { | |
779 Ice::GlobalAddress::RelocationAddress Addr(Fcn); | |
780 Global.addInitializer( | |
781 new Ice::GlobalAddress::RelocInitializer(Addr, Offset)); | |
782 return; | |
783 } else if (auto Var = dyn_cast<GlobalVariable>(GV)) { | |
784 Ice::GlobalAddress::RelocationAddress Addr(getGlobalVarAddress(Var)); | |
785 Global.addInitializer( | |
786 new Ice::GlobalAddress::RelocInitializer(Addr, Offset)); | |
787 return; | |
788 } | |
789 break; | |
790 } | |
791 default: | |
792 break; | |
793 } | |
794 } | |
795 | |
796 std::string Buffer; | |
797 raw_string_ostream StrBuf(Buffer); | |
798 StrBuf << "Unhandled global initializer: " << Initializer; | |
799 report_fatal_error(StrBuf.str()); | |
800 } | |
801 | |
615 } // end of anonymous namespace | 802 } // end of anonymous namespace |
616 | 803 |
617 namespace Ice { | 804 namespace Ice { |
618 | 805 |
619 void Converter::convertToIce() { | 806 void Converter::convertToIce() { |
620 static TimerIdT IDconvertToIce = GlobalContext::getTimerID("convertToIce"); | 807 static TimerIdT IDconvertToIce = GlobalContext::getTimerID("convertToIce"); |
621 TimerMarker T(IDconvertToIce, Ctx); | 808 TimerMarker T(IDconvertToIce, Ctx); |
622 nameUnnamedGlobalAddresses(Mod); | 809 nameUnnamedGlobalAddresses(Mod); |
810 nameUnnamedFunctions(Mod); | |
623 if (!Ctx->getFlags().DisableGlobals) | 811 if (!Ctx->getFlags().DisableGlobals) |
624 convertGlobals(Mod); | 812 convertGlobals(Mod); |
625 convertFunctions(); | 813 convertFunctions(); |
626 } | 814 } |
627 | 815 |
816 void Converter::convertGlobals(Module *Mod) { | |
817 LLVM2ICEGlobalsConverter GlobalsConverter(Ctx, Mod->getContext()); | |
818 Translator::GlobalAddressList GlobalAddresses; | |
819 GlobalsConverter.convertGlobalsToIce(Mod, GlobalAddresses); | |
820 lowerIceGlobals(GlobalAddresses); | |
821 } | |
822 | |
628 void Converter::convertFunctions() { | 823 void Converter::convertFunctions() { |
629 for (const Function &I : *Mod) { | 824 for (const Function &I : *Mod) { |
630 if (I.empty()) | 825 if (I.empty()) |
631 continue; | 826 continue; |
632 LLVM2ICEConverter FunctionConverter(Ctx, Mod->getContext()); | 827 LLVM2ICEFunctionConverter FunctionConverter(Ctx, Mod->getContext()); |
633 | 828 |
634 Cfg *Fcn = FunctionConverter.convertFunction(&I); | 829 Cfg *Fcn = FunctionConverter.convertFunction(&I); |
635 translateFcn(Fcn); | 830 translateFcn(Fcn); |
636 } | 831 } |
637 | 832 |
638 emitConstants(); | 833 emitConstants(); |
639 } | 834 } |
640 | 835 |
641 } // end of namespace Ice | 836 } // end of namespace Ice |
OLD | NEW |