1e5dd7070Spatrick //===--- CGExprComplex.cpp - Emit LLVM Code for Complex Exprs -------------===//
2e5dd7070Spatrick //
3e5dd7070Spatrick // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4e5dd7070Spatrick // See https://llvm.org/LICENSE.txt for license information.
5e5dd7070Spatrick // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6e5dd7070Spatrick //
7e5dd7070Spatrick //===----------------------------------------------------------------------===//
8e5dd7070Spatrick //
9e5dd7070Spatrick // This contains code to emit Expr nodes with complex types as LLVM code.
10e5dd7070Spatrick //
11e5dd7070Spatrick //===----------------------------------------------------------------------===//
12e5dd7070Spatrick
13e5dd7070Spatrick #include "CGOpenMPRuntime.h"
14e5dd7070Spatrick #include "CodeGenFunction.h"
15e5dd7070Spatrick #include "CodeGenModule.h"
16ec727ea7Spatrick #include "ConstantEmitter.h"
17e5dd7070Spatrick #include "clang/AST/StmtVisitor.h"
18e5dd7070Spatrick #include "llvm/ADT/STLExtras.h"
19e5dd7070Spatrick #include "llvm/IR/Constants.h"
20e5dd7070Spatrick #include "llvm/IR/Instructions.h"
21e5dd7070Spatrick #include "llvm/IR/MDBuilder.h"
22e5dd7070Spatrick #include "llvm/IR/Metadata.h"
23e5dd7070Spatrick #include <algorithm>
24e5dd7070Spatrick using namespace clang;
25e5dd7070Spatrick using namespace CodeGen;
26e5dd7070Spatrick
27e5dd7070Spatrick //===----------------------------------------------------------------------===//
28e5dd7070Spatrick // Complex Expression Emitter
29e5dd7070Spatrick //===----------------------------------------------------------------------===//
30e5dd7070Spatrick
31e5dd7070Spatrick typedef CodeGenFunction::ComplexPairTy ComplexPairTy;
32e5dd7070Spatrick
33e5dd7070Spatrick /// Return the complex type that we are meant to emit.
getComplexType(QualType type)34e5dd7070Spatrick static const ComplexType *getComplexType(QualType type) {
35e5dd7070Spatrick type = type.getCanonicalType();
36e5dd7070Spatrick if (const ComplexType *comp = dyn_cast<ComplexType>(type)) {
37e5dd7070Spatrick return comp;
38e5dd7070Spatrick } else {
39e5dd7070Spatrick return cast<ComplexType>(cast<AtomicType>(type)->getValueType());
40e5dd7070Spatrick }
41e5dd7070Spatrick }
42e5dd7070Spatrick
43e5dd7070Spatrick namespace {
44e5dd7070Spatrick class ComplexExprEmitter
45e5dd7070Spatrick : public StmtVisitor<ComplexExprEmitter, ComplexPairTy> {
46e5dd7070Spatrick CodeGenFunction &CGF;
47e5dd7070Spatrick CGBuilderTy &Builder;
48e5dd7070Spatrick bool IgnoreReal;
49e5dd7070Spatrick bool IgnoreImag;
50e5dd7070Spatrick public:
ComplexExprEmitter(CodeGenFunction & cgf,bool ir=false,bool ii=false)51e5dd7070Spatrick ComplexExprEmitter(CodeGenFunction &cgf, bool ir=false, bool ii=false)
52e5dd7070Spatrick : CGF(cgf), Builder(CGF.Builder), IgnoreReal(ir), IgnoreImag(ii) {
53e5dd7070Spatrick }
54e5dd7070Spatrick
55e5dd7070Spatrick
56e5dd7070Spatrick //===--------------------------------------------------------------------===//
57e5dd7070Spatrick // Utilities
58e5dd7070Spatrick //===--------------------------------------------------------------------===//
59e5dd7070Spatrick
TestAndClearIgnoreReal()60e5dd7070Spatrick bool TestAndClearIgnoreReal() {
61e5dd7070Spatrick bool I = IgnoreReal;
62e5dd7070Spatrick IgnoreReal = false;
63e5dd7070Spatrick return I;
64e5dd7070Spatrick }
TestAndClearIgnoreImag()65e5dd7070Spatrick bool TestAndClearIgnoreImag() {
66e5dd7070Spatrick bool I = IgnoreImag;
67e5dd7070Spatrick IgnoreImag = false;
68e5dd7070Spatrick return I;
69e5dd7070Spatrick }
70e5dd7070Spatrick
71e5dd7070Spatrick /// EmitLoadOfLValue - Given an expression with complex type that represents a
72e5dd7070Spatrick /// value l-value, this method emits the address of the l-value, then loads
73e5dd7070Spatrick /// and returns the result.
EmitLoadOfLValue(const Expr * E)74e5dd7070Spatrick ComplexPairTy EmitLoadOfLValue(const Expr *E) {
75e5dd7070Spatrick return EmitLoadOfLValue(CGF.EmitLValue(E), E->getExprLoc());
76e5dd7070Spatrick }
77e5dd7070Spatrick
78e5dd7070Spatrick ComplexPairTy EmitLoadOfLValue(LValue LV, SourceLocation Loc);
79e5dd7070Spatrick
80e5dd7070Spatrick /// EmitStoreOfComplex - Store the specified real/imag parts into the
81e5dd7070Spatrick /// specified value pointer.
82e5dd7070Spatrick void EmitStoreOfComplex(ComplexPairTy Val, LValue LV, bool isInit);
83e5dd7070Spatrick
84e5dd7070Spatrick /// Emit a cast from complex value Val to DestType.
85e5dd7070Spatrick ComplexPairTy EmitComplexToComplexCast(ComplexPairTy Val, QualType SrcType,
86e5dd7070Spatrick QualType DestType, SourceLocation Loc);
87e5dd7070Spatrick /// Emit a cast from scalar value Val to DestType.
88e5dd7070Spatrick ComplexPairTy EmitScalarToComplexCast(llvm::Value *Val, QualType SrcType,
89e5dd7070Spatrick QualType DestType, SourceLocation Loc);
90e5dd7070Spatrick
91e5dd7070Spatrick //===--------------------------------------------------------------------===//
92e5dd7070Spatrick // Visitor Methods
93e5dd7070Spatrick //===--------------------------------------------------------------------===//
94e5dd7070Spatrick
Visit(Expr * E)95e5dd7070Spatrick ComplexPairTy Visit(Expr *E) {
96e5dd7070Spatrick ApplyDebugLocation DL(CGF, E);
97e5dd7070Spatrick return StmtVisitor<ComplexExprEmitter, ComplexPairTy>::Visit(E);
98e5dd7070Spatrick }
99e5dd7070Spatrick
VisitStmt(Stmt * S)100e5dd7070Spatrick ComplexPairTy VisitStmt(Stmt *S) {
101ec727ea7Spatrick S->dump(llvm::errs(), CGF.getContext());
102e5dd7070Spatrick llvm_unreachable("Stmt can't have complex result type!");
103e5dd7070Spatrick }
104e5dd7070Spatrick ComplexPairTy VisitExpr(Expr *S);
VisitConstantExpr(ConstantExpr * E)105e5dd7070Spatrick ComplexPairTy VisitConstantExpr(ConstantExpr *E) {
106ec727ea7Spatrick if (llvm::Constant *Result = ConstantEmitter(CGF).tryEmitConstantExpr(E))
107ec727ea7Spatrick return ComplexPairTy(Result->getAggregateElement(0U),
108ec727ea7Spatrick Result->getAggregateElement(1U));
109e5dd7070Spatrick return Visit(E->getSubExpr());
110e5dd7070Spatrick }
VisitParenExpr(ParenExpr * PE)111e5dd7070Spatrick ComplexPairTy VisitParenExpr(ParenExpr *PE) { return Visit(PE->getSubExpr());}
VisitGenericSelectionExpr(GenericSelectionExpr * GE)112e5dd7070Spatrick ComplexPairTy VisitGenericSelectionExpr(GenericSelectionExpr *GE) {
113e5dd7070Spatrick return Visit(GE->getResultExpr());
114e5dd7070Spatrick }
115e5dd7070Spatrick ComplexPairTy VisitImaginaryLiteral(const ImaginaryLiteral *IL);
116e5dd7070Spatrick ComplexPairTy
VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr * PE)117e5dd7070Spatrick VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *PE) {
118e5dd7070Spatrick return Visit(PE->getReplacement());
119e5dd7070Spatrick }
VisitCoawaitExpr(CoawaitExpr * S)120e5dd7070Spatrick ComplexPairTy VisitCoawaitExpr(CoawaitExpr *S) {
121e5dd7070Spatrick return CGF.EmitCoawaitExpr(*S).getComplexVal();
122e5dd7070Spatrick }
VisitCoyieldExpr(CoyieldExpr * S)123e5dd7070Spatrick ComplexPairTy VisitCoyieldExpr(CoyieldExpr *S) {
124e5dd7070Spatrick return CGF.EmitCoyieldExpr(*S).getComplexVal();
125e5dd7070Spatrick }
VisitUnaryCoawait(const UnaryOperator * E)126e5dd7070Spatrick ComplexPairTy VisitUnaryCoawait(const UnaryOperator *E) {
127e5dd7070Spatrick return Visit(E->getSubExpr());
128e5dd7070Spatrick }
129e5dd7070Spatrick
emitConstant(const CodeGenFunction::ConstantEmission & Constant,Expr * E)130e5dd7070Spatrick ComplexPairTy emitConstant(const CodeGenFunction::ConstantEmission &Constant,
131e5dd7070Spatrick Expr *E) {
132e5dd7070Spatrick assert(Constant && "not a constant");
133e5dd7070Spatrick if (Constant.isReference())
134e5dd7070Spatrick return EmitLoadOfLValue(Constant.getReferenceLValue(CGF, E),
135e5dd7070Spatrick E->getExprLoc());
136e5dd7070Spatrick
137e5dd7070Spatrick llvm::Constant *pair = Constant.getValue();
138e5dd7070Spatrick return ComplexPairTy(pair->getAggregateElement(0U),
139e5dd7070Spatrick pair->getAggregateElement(1U));
140e5dd7070Spatrick }
141e5dd7070Spatrick
142e5dd7070Spatrick // l-values.
VisitDeclRefExpr(DeclRefExpr * E)143e5dd7070Spatrick ComplexPairTy VisitDeclRefExpr(DeclRefExpr *E) {
144e5dd7070Spatrick if (CodeGenFunction::ConstantEmission Constant = CGF.tryEmitAsConstant(E))
145e5dd7070Spatrick return emitConstant(Constant, E);
146e5dd7070Spatrick return EmitLoadOfLValue(E);
147e5dd7070Spatrick }
VisitObjCIvarRefExpr(ObjCIvarRefExpr * E)148e5dd7070Spatrick ComplexPairTy VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) {
149e5dd7070Spatrick return EmitLoadOfLValue(E);
150e5dd7070Spatrick }
VisitObjCMessageExpr(ObjCMessageExpr * E)151e5dd7070Spatrick ComplexPairTy VisitObjCMessageExpr(ObjCMessageExpr *E) {
152e5dd7070Spatrick return CGF.EmitObjCMessageExpr(E).getComplexVal();
153e5dd7070Spatrick }
VisitArraySubscriptExpr(Expr * E)154e5dd7070Spatrick ComplexPairTy VisitArraySubscriptExpr(Expr *E) { return EmitLoadOfLValue(E); }
VisitMemberExpr(MemberExpr * ME)155e5dd7070Spatrick ComplexPairTy VisitMemberExpr(MemberExpr *ME) {
156e5dd7070Spatrick if (CodeGenFunction::ConstantEmission Constant =
157e5dd7070Spatrick CGF.tryEmitAsConstant(ME)) {
158e5dd7070Spatrick CGF.EmitIgnoredExpr(ME->getBase());
159e5dd7070Spatrick return emitConstant(Constant, ME);
160e5dd7070Spatrick }
161e5dd7070Spatrick return EmitLoadOfLValue(ME);
162e5dd7070Spatrick }
VisitOpaqueValueExpr(OpaqueValueExpr * E)163e5dd7070Spatrick ComplexPairTy VisitOpaqueValueExpr(OpaqueValueExpr *E) {
164e5dd7070Spatrick if (E->isGLValue())
165e5dd7070Spatrick return EmitLoadOfLValue(CGF.getOrCreateOpaqueLValueMapping(E),
166e5dd7070Spatrick E->getExprLoc());
167e5dd7070Spatrick return CGF.getOrCreateOpaqueRValueMapping(E).getComplexVal();
168e5dd7070Spatrick }
169e5dd7070Spatrick
VisitPseudoObjectExpr(PseudoObjectExpr * E)170e5dd7070Spatrick ComplexPairTy VisitPseudoObjectExpr(PseudoObjectExpr *E) {
171e5dd7070Spatrick return CGF.EmitPseudoObjectRValue(E).getComplexVal();
172e5dd7070Spatrick }
173e5dd7070Spatrick
174e5dd7070Spatrick // FIXME: CompoundLiteralExpr
175e5dd7070Spatrick
176e5dd7070Spatrick ComplexPairTy EmitCast(CastKind CK, Expr *Op, QualType DestTy);
VisitImplicitCastExpr(ImplicitCastExpr * E)177e5dd7070Spatrick ComplexPairTy VisitImplicitCastExpr(ImplicitCastExpr *E) {
178e5dd7070Spatrick // Unlike for scalars, we don't have to worry about function->ptr demotion
179e5dd7070Spatrick // here.
180e5dd7070Spatrick return EmitCast(E->getCastKind(), E->getSubExpr(), E->getType());
181e5dd7070Spatrick }
VisitCastExpr(CastExpr * E)182e5dd7070Spatrick ComplexPairTy VisitCastExpr(CastExpr *E) {
183e5dd7070Spatrick if (const auto *ECE = dyn_cast<ExplicitCastExpr>(E))
184e5dd7070Spatrick CGF.CGM.EmitExplicitCastExprType(ECE, &CGF);
185e5dd7070Spatrick return EmitCast(E->getCastKind(), E->getSubExpr(), E->getType());
186e5dd7070Spatrick }
187e5dd7070Spatrick ComplexPairTy VisitCallExpr(const CallExpr *E);
188e5dd7070Spatrick ComplexPairTy VisitStmtExpr(const StmtExpr *E);
189e5dd7070Spatrick
190e5dd7070Spatrick // Operators.
VisitPrePostIncDec(const UnaryOperator * E,bool isInc,bool isPre)191e5dd7070Spatrick ComplexPairTy VisitPrePostIncDec(const UnaryOperator *E,
192e5dd7070Spatrick bool isInc, bool isPre) {
193e5dd7070Spatrick LValue LV = CGF.EmitLValue(E->getSubExpr());
194e5dd7070Spatrick return CGF.EmitComplexPrePostIncDec(E, LV, isInc, isPre);
195e5dd7070Spatrick }
VisitUnaryPostDec(const UnaryOperator * E)196e5dd7070Spatrick ComplexPairTy VisitUnaryPostDec(const UnaryOperator *E) {
197e5dd7070Spatrick return VisitPrePostIncDec(E, false, false);
198e5dd7070Spatrick }
VisitUnaryPostInc(const UnaryOperator * E)199e5dd7070Spatrick ComplexPairTy VisitUnaryPostInc(const UnaryOperator *E) {
200e5dd7070Spatrick return VisitPrePostIncDec(E, true, false);
201e5dd7070Spatrick }
VisitUnaryPreDec(const UnaryOperator * E)202e5dd7070Spatrick ComplexPairTy VisitUnaryPreDec(const UnaryOperator *E) {
203e5dd7070Spatrick return VisitPrePostIncDec(E, false, true);
204e5dd7070Spatrick }
VisitUnaryPreInc(const UnaryOperator * E)205e5dd7070Spatrick ComplexPairTy VisitUnaryPreInc(const UnaryOperator *E) {
206e5dd7070Spatrick return VisitPrePostIncDec(E, true, true);
207e5dd7070Spatrick }
VisitUnaryDeref(const Expr * E)208e5dd7070Spatrick ComplexPairTy VisitUnaryDeref(const Expr *E) { return EmitLoadOfLValue(E); }
209*12c85518Srobert
210*12c85518Srobert ComplexPairTy VisitUnaryPlus(const UnaryOperator *E,
211*12c85518Srobert QualType PromotionType = QualType());
212*12c85518Srobert ComplexPairTy VisitPlus(const UnaryOperator *E, QualType PromotionType);
213*12c85518Srobert ComplexPairTy VisitUnaryMinus(const UnaryOperator *E,
214*12c85518Srobert QualType PromotionType = QualType());
215*12c85518Srobert ComplexPairTy VisitMinus(const UnaryOperator *E, QualType PromotionType);
216e5dd7070Spatrick ComplexPairTy VisitUnaryNot (const UnaryOperator *E);
217e5dd7070Spatrick // LNot,Real,Imag never return complex.
VisitUnaryExtension(const UnaryOperator * E)218e5dd7070Spatrick ComplexPairTy VisitUnaryExtension(const UnaryOperator *E) {
219e5dd7070Spatrick return Visit(E->getSubExpr());
220e5dd7070Spatrick }
VisitCXXDefaultArgExpr(CXXDefaultArgExpr * DAE)221e5dd7070Spatrick ComplexPairTy VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) {
222e5dd7070Spatrick CodeGenFunction::CXXDefaultArgExprScope Scope(CGF, DAE);
223e5dd7070Spatrick return Visit(DAE->getExpr());
224e5dd7070Spatrick }
VisitCXXDefaultInitExpr(CXXDefaultInitExpr * DIE)225e5dd7070Spatrick ComplexPairTy VisitCXXDefaultInitExpr(CXXDefaultInitExpr *DIE) {
226e5dd7070Spatrick CodeGenFunction::CXXDefaultInitExprScope Scope(CGF, DIE);
227e5dd7070Spatrick return Visit(DIE->getExpr());
228e5dd7070Spatrick }
VisitExprWithCleanups(ExprWithCleanups * E)229e5dd7070Spatrick ComplexPairTy VisitExprWithCleanups(ExprWithCleanups *E) {
230e5dd7070Spatrick CodeGenFunction::RunCleanupsScope Scope(CGF);
231e5dd7070Spatrick ComplexPairTy Vals = Visit(E->getSubExpr());
232e5dd7070Spatrick // Defend against dominance problems caused by jumps out of expression
233e5dd7070Spatrick // evaluation through the shared cleanup block.
234e5dd7070Spatrick Scope.ForceCleanup({&Vals.first, &Vals.second});
235e5dd7070Spatrick return Vals;
236e5dd7070Spatrick }
VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr * E)237e5dd7070Spatrick ComplexPairTy VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E) {
238e5dd7070Spatrick assert(E->getType()->isAnyComplexType() && "Expected complex type!");
239e5dd7070Spatrick QualType Elem = E->getType()->castAs<ComplexType>()->getElementType();
240e5dd7070Spatrick llvm::Constant *Null = llvm::Constant::getNullValue(CGF.ConvertType(Elem));
241e5dd7070Spatrick return ComplexPairTy(Null, Null);
242e5dd7070Spatrick }
VisitImplicitValueInitExpr(ImplicitValueInitExpr * E)243e5dd7070Spatrick ComplexPairTy VisitImplicitValueInitExpr(ImplicitValueInitExpr *E) {
244e5dd7070Spatrick assert(E->getType()->isAnyComplexType() && "Expected complex type!");
245e5dd7070Spatrick QualType Elem = E->getType()->castAs<ComplexType>()->getElementType();
246e5dd7070Spatrick llvm::Constant *Null =
247e5dd7070Spatrick llvm::Constant::getNullValue(CGF.ConvertType(Elem));
248e5dd7070Spatrick return ComplexPairTy(Null, Null);
249e5dd7070Spatrick }
250e5dd7070Spatrick
251e5dd7070Spatrick struct BinOpInfo {
252e5dd7070Spatrick ComplexPairTy LHS;
253e5dd7070Spatrick ComplexPairTy RHS;
254e5dd7070Spatrick QualType Ty; // Computation Type.
255*12c85518Srobert FPOptions FPFeatures;
256e5dd7070Spatrick };
257e5dd7070Spatrick
258*12c85518Srobert BinOpInfo EmitBinOps(const BinaryOperator *E,
259*12c85518Srobert QualType PromotionTy = QualType());
260*12c85518Srobert ComplexPairTy EmitPromoted(const Expr *E, QualType PromotionTy);
261*12c85518Srobert ComplexPairTy EmitPromotedComplexOperand(const Expr *E, QualType PromotionTy);
262e5dd7070Spatrick LValue EmitCompoundAssignLValue(const CompoundAssignOperator *E,
263e5dd7070Spatrick ComplexPairTy (ComplexExprEmitter::*Func)
264e5dd7070Spatrick (const BinOpInfo &),
265e5dd7070Spatrick RValue &Val);
266e5dd7070Spatrick ComplexPairTy EmitCompoundAssign(const CompoundAssignOperator *E,
267e5dd7070Spatrick ComplexPairTy (ComplexExprEmitter::*Func)
268e5dd7070Spatrick (const BinOpInfo &));
269e5dd7070Spatrick
270e5dd7070Spatrick ComplexPairTy EmitBinAdd(const BinOpInfo &Op);
271e5dd7070Spatrick ComplexPairTy EmitBinSub(const BinOpInfo &Op);
272e5dd7070Spatrick ComplexPairTy EmitBinMul(const BinOpInfo &Op);
273e5dd7070Spatrick ComplexPairTy EmitBinDiv(const BinOpInfo &Op);
274e5dd7070Spatrick
275e5dd7070Spatrick ComplexPairTy EmitComplexBinOpLibCall(StringRef LibCallName,
276e5dd7070Spatrick const BinOpInfo &Op);
277e5dd7070Spatrick
getPromotionType(QualType Ty)278*12c85518Srobert QualType getPromotionType(QualType Ty) {
279*12c85518Srobert if (auto *CT = Ty->getAs<ComplexType>()) {
280*12c85518Srobert QualType ElementType = CT->getElementType();
281*12c85518Srobert if (ElementType.UseExcessPrecision(CGF.getContext()))
282*12c85518Srobert return CGF.getContext().getComplexType(CGF.getContext().FloatTy);
283e5dd7070Spatrick }
284*12c85518Srobert if (Ty.UseExcessPrecision(CGF.getContext()))
285*12c85518Srobert return CGF.getContext().FloatTy;
286*12c85518Srobert return QualType();
287e5dd7070Spatrick }
288*12c85518Srobert
289*12c85518Srobert #define HANDLEBINOP(OP) \
290*12c85518Srobert ComplexPairTy VisitBin##OP(const BinaryOperator *E) { \
291*12c85518Srobert QualType promotionTy = getPromotionType(E->getType()); \
292*12c85518Srobert ComplexPairTy result = EmitBin##OP(EmitBinOps(E, promotionTy)); \
293*12c85518Srobert if (!promotionTy.isNull()) \
294*12c85518Srobert result = \
295*12c85518Srobert CGF.EmitUnPromotedValue(result, E->getType()); \
296*12c85518Srobert return result; \
297e5dd7070Spatrick }
298*12c85518Srobert
299*12c85518Srobert HANDLEBINOP(Mul)
HANDLEBINOP(Div)300*12c85518Srobert HANDLEBINOP(Div)
301*12c85518Srobert HANDLEBINOP(Add)
302*12c85518Srobert HANDLEBINOP(Sub)
303*12c85518Srobert #undef HANDLEBINOP
304e5dd7070Spatrick
305e5dd7070Spatrick ComplexPairTy VisitCXXRewrittenBinaryOperator(CXXRewrittenBinaryOperator *E) {
306e5dd7070Spatrick return Visit(E->getSemanticForm());
307e5dd7070Spatrick }
308e5dd7070Spatrick
309e5dd7070Spatrick // Compound assignments.
VisitBinAddAssign(const CompoundAssignOperator * E)310e5dd7070Spatrick ComplexPairTy VisitBinAddAssign(const CompoundAssignOperator *E) {
311e5dd7070Spatrick return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinAdd);
312e5dd7070Spatrick }
VisitBinSubAssign(const CompoundAssignOperator * E)313e5dd7070Spatrick ComplexPairTy VisitBinSubAssign(const CompoundAssignOperator *E) {
314e5dd7070Spatrick return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinSub);
315e5dd7070Spatrick }
VisitBinMulAssign(const CompoundAssignOperator * E)316e5dd7070Spatrick ComplexPairTy VisitBinMulAssign(const CompoundAssignOperator *E) {
317e5dd7070Spatrick return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinMul);
318e5dd7070Spatrick }
VisitBinDivAssign(const CompoundAssignOperator * E)319e5dd7070Spatrick ComplexPairTy VisitBinDivAssign(const CompoundAssignOperator *E) {
320e5dd7070Spatrick return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinDiv);
321e5dd7070Spatrick }
322e5dd7070Spatrick
323e5dd7070Spatrick // GCC rejects rem/and/or/xor for integer complex.
324e5dd7070Spatrick // Logical and/or always return int, never complex.
325e5dd7070Spatrick
326e5dd7070Spatrick // No comparisons produce a complex result.
327e5dd7070Spatrick
328e5dd7070Spatrick LValue EmitBinAssignLValue(const BinaryOperator *E,
329e5dd7070Spatrick ComplexPairTy &Val);
330e5dd7070Spatrick ComplexPairTy VisitBinAssign (const BinaryOperator *E);
331e5dd7070Spatrick ComplexPairTy VisitBinComma (const BinaryOperator *E);
332e5dd7070Spatrick
333e5dd7070Spatrick
334e5dd7070Spatrick ComplexPairTy
335e5dd7070Spatrick VisitAbstractConditionalOperator(const AbstractConditionalOperator *CO);
336e5dd7070Spatrick ComplexPairTy VisitChooseExpr(ChooseExpr *CE);
337e5dd7070Spatrick
338e5dd7070Spatrick ComplexPairTy VisitInitListExpr(InitListExpr *E);
339e5dd7070Spatrick
VisitCompoundLiteralExpr(CompoundLiteralExpr * E)340e5dd7070Spatrick ComplexPairTy VisitCompoundLiteralExpr(CompoundLiteralExpr *E) {
341e5dd7070Spatrick return EmitLoadOfLValue(E);
342e5dd7070Spatrick }
343e5dd7070Spatrick
344e5dd7070Spatrick ComplexPairTy VisitVAArgExpr(VAArgExpr *E);
345e5dd7070Spatrick
VisitAtomicExpr(AtomicExpr * E)346e5dd7070Spatrick ComplexPairTy VisitAtomicExpr(AtomicExpr *E) {
347e5dd7070Spatrick return CGF.EmitAtomicExpr(E).getComplexVal();
348e5dd7070Spatrick }
349e5dd7070Spatrick };
350e5dd7070Spatrick } // end anonymous namespace.
351e5dd7070Spatrick
352e5dd7070Spatrick //===----------------------------------------------------------------------===//
353e5dd7070Spatrick // Utilities
354e5dd7070Spatrick //===----------------------------------------------------------------------===//
355e5dd7070Spatrick
emitAddrOfRealComponent(Address addr,QualType complexType)356e5dd7070Spatrick Address CodeGenFunction::emitAddrOfRealComponent(Address addr,
357e5dd7070Spatrick QualType complexType) {
358e5dd7070Spatrick return Builder.CreateStructGEP(addr, 0, addr.getName() + ".realp");
359e5dd7070Spatrick }
360e5dd7070Spatrick
emitAddrOfImagComponent(Address addr,QualType complexType)361e5dd7070Spatrick Address CodeGenFunction::emitAddrOfImagComponent(Address addr,
362e5dd7070Spatrick QualType complexType) {
363e5dd7070Spatrick return Builder.CreateStructGEP(addr, 1, addr.getName() + ".imagp");
364e5dd7070Spatrick }
365e5dd7070Spatrick
366e5dd7070Spatrick /// EmitLoadOfLValue - Given an RValue reference for a complex, emit code to
367e5dd7070Spatrick /// load the real and imaginary pieces, returning them as Real/Imag.
EmitLoadOfLValue(LValue lvalue,SourceLocation loc)368e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitLoadOfLValue(LValue lvalue,
369e5dd7070Spatrick SourceLocation loc) {
370e5dd7070Spatrick assert(lvalue.isSimple() && "non-simple complex l-value?");
371e5dd7070Spatrick if (lvalue.getType()->isAtomicType())
372e5dd7070Spatrick return CGF.EmitAtomicLoad(lvalue, loc).getComplexVal();
373e5dd7070Spatrick
374e5dd7070Spatrick Address SrcPtr = lvalue.getAddress(CGF);
375e5dd7070Spatrick bool isVolatile = lvalue.isVolatileQualified();
376e5dd7070Spatrick
377e5dd7070Spatrick llvm::Value *Real = nullptr, *Imag = nullptr;
378e5dd7070Spatrick
379e5dd7070Spatrick if (!IgnoreReal || isVolatile) {
380e5dd7070Spatrick Address RealP = CGF.emitAddrOfRealComponent(SrcPtr, lvalue.getType());
381e5dd7070Spatrick Real = Builder.CreateLoad(RealP, isVolatile, SrcPtr.getName() + ".real");
382e5dd7070Spatrick }
383e5dd7070Spatrick
384e5dd7070Spatrick if (!IgnoreImag || isVolatile) {
385e5dd7070Spatrick Address ImagP = CGF.emitAddrOfImagComponent(SrcPtr, lvalue.getType());
386e5dd7070Spatrick Imag = Builder.CreateLoad(ImagP, isVolatile, SrcPtr.getName() + ".imag");
387e5dd7070Spatrick }
388e5dd7070Spatrick
389e5dd7070Spatrick return ComplexPairTy(Real, Imag);
390e5dd7070Spatrick }
391e5dd7070Spatrick
392e5dd7070Spatrick /// EmitStoreOfComplex - Store the specified real/imag parts into the
393e5dd7070Spatrick /// specified value pointer.
EmitStoreOfComplex(ComplexPairTy Val,LValue lvalue,bool isInit)394e5dd7070Spatrick void ComplexExprEmitter::EmitStoreOfComplex(ComplexPairTy Val, LValue lvalue,
395e5dd7070Spatrick bool isInit) {
396e5dd7070Spatrick if (lvalue.getType()->isAtomicType() ||
397e5dd7070Spatrick (!isInit && CGF.LValueIsSuitableForInlineAtomic(lvalue)))
398e5dd7070Spatrick return CGF.EmitAtomicStore(RValue::getComplex(Val), lvalue, isInit);
399e5dd7070Spatrick
400e5dd7070Spatrick Address Ptr = lvalue.getAddress(CGF);
401e5dd7070Spatrick Address RealPtr = CGF.emitAddrOfRealComponent(Ptr, lvalue.getType());
402e5dd7070Spatrick Address ImagPtr = CGF.emitAddrOfImagComponent(Ptr, lvalue.getType());
403e5dd7070Spatrick
404e5dd7070Spatrick Builder.CreateStore(Val.first, RealPtr, lvalue.isVolatileQualified());
405e5dd7070Spatrick Builder.CreateStore(Val.second, ImagPtr, lvalue.isVolatileQualified());
406e5dd7070Spatrick }
407e5dd7070Spatrick
408e5dd7070Spatrick
409e5dd7070Spatrick
410e5dd7070Spatrick //===----------------------------------------------------------------------===//
411e5dd7070Spatrick // Visitor Methods
412e5dd7070Spatrick //===----------------------------------------------------------------------===//
413e5dd7070Spatrick
VisitExpr(Expr * E)414e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitExpr(Expr *E) {
415e5dd7070Spatrick CGF.ErrorUnsupported(E, "complex expression");
416e5dd7070Spatrick llvm::Type *EltTy =
417e5dd7070Spatrick CGF.ConvertType(getComplexType(E->getType())->getElementType());
418e5dd7070Spatrick llvm::Value *U = llvm::UndefValue::get(EltTy);
419e5dd7070Spatrick return ComplexPairTy(U, U);
420e5dd7070Spatrick }
421e5dd7070Spatrick
422e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::
VisitImaginaryLiteral(const ImaginaryLiteral * IL)423e5dd7070Spatrick VisitImaginaryLiteral(const ImaginaryLiteral *IL) {
424e5dd7070Spatrick llvm::Value *Imag = CGF.EmitScalarExpr(IL->getSubExpr());
425e5dd7070Spatrick return ComplexPairTy(llvm::Constant::getNullValue(Imag->getType()), Imag);
426e5dd7070Spatrick }
427e5dd7070Spatrick
428e5dd7070Spatrick
VisitCallExpr(const CallExpr * E)429e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitCallExpr(const CallExpr *E) {
430e5dd7070Spatrick if (E->getCallReturnType(CGF.getContext())->isReferenceType())
431e5dd7070Spatrick return EmitLoadOfLValue(E);
432e5dd7070Spatrick
433e5dd7070Spatrick return CGF.EmitCallExpr(E).getComplexVal();
434e5dd7070Spatrick }
435e5dd7070Spatrick
VisitStmtExpr(const StmtExpr * E)436e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitStmtExpr(const StmtExpr *E) {
437e5dd7070Spatrick CodeGenFunction::StmtExprEvaluation eval(CGF);
438e5dd7070Spatrick Address RetAlloca = CGF.EmitCompoundStmt(*E->getSubStmt(), true);
439e5dd7070Spatrick assert(RetAlloca.isValid() && "Expected complex return value");
440e5dd7070Spatrick return EmitLoadOfLValue(CGF.MakeAddrLValue(RetAlloca, E->getType()),
441e5dd7070Spatrick E->getExprLoc());
442e5dd7070Spatrick }
443e5dd7070Spatrick
444e5dd7070Spatrick /// Emit a cast from complex value Val to DestType.
EmitComplexToComplexCast(ComplexPairTy Val,QualType SrcType,QualType DestType,SourceLocation Loc)445e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitComplexToComplexCast(ComplexPairTy Val,
446e5dd7070Spatrick QualType SrcType,
447e5dd7070Spatrick QualType DestType,
448e5dd7070Spatrick SourceLocation Loc) {
449e5dd7070Spatrick // Get the src/dest element type.
450e5dd7070Spatrick SrcType = SrcType->castAs<ComplexType>()->getElementType();
451e5dd7070Spatrick DestType = DestType->castAs<ComplexType>()->getElementType();
452e5dd7070Spatrick
453e5dd7070Spatrick // C99 6.3.1.6: When a value of complex type is converted to another
454e5dd7070Spatrick // complex type, both the real and imaginary parts follow the conversion
455e5dd7070Spatrick // rules for the corresponding real types.
456ec727ea7Spatrick if (Val.first)
457e5dd7070Spatrick Val.first = CGF.EmitScalarConversion(Val.first, SrcType, DestType, Loc);
458ec727ea7Spatrick if (Val.second)
459e5dd7070Spatrick Val.second = CGF.EmitScalarConversion(Val.second, SrcType, DestType, Loc);
460e5dd7070Spatrick return Val;
461e5dd7070Spatrick }
462e5dd7070Spatrick
EmitScalarToComplexCast(llvm::Value * Val,QualType SrcType,QualType DestType,SourceLocation Loc)463e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitScalarToComplexCast(llvm::Value *Val,
464e5dd7070Spatrick QualType SrcType,
465e5dd7070Spatrick QualType DestType,
466e5dd7070Spatrick SourceLocation Loc) {
467e5dd7070Spatrick // Convert the input element to the element type of the complex.
468e5dd7070Spatrick DestType = DestType->castAs<ComplexType>()->getElementType();
469e5dd7070Spatrick Val = CGF.EmitScalarConversion(Val, SrcType, DestType, Loc);
470e5dd7070Spatrick
471e5dd7070Spatrick // Return (realval, 0).
472e5dd7070Spatrick return ComplexPairTy(Val, llvm::Constant::getNullValue(Val->getType()));
473e5dd7070Spatrick }
474e5dd7070Spatrick
EmitCast(CastKind CK,Expr * Op,QualType DestTy)475e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitCast(CastKind CK, Expr *Op,
476e5dd7070Spatrick QualType DestTy) {
477e5dd7070Spatrick switch (CK) {
478e5dd7070Spatrick case CK_Dependent: llvm_unreachable("dependent cast kind in IR gen!");
479e5dd7070Spatrick
480e5dd7070Spatrick // Atomic to non-atomic casts may be more than a no-op for some platforms and
481e5dd7070Spatrick // for some types.
482e5dd7070Spatrick case CK_AtomicToNonAtomic:
483e5dd7070Spatrick case CK_NonAtomicToAtomic:
484e5dd7070Spatrick case CK_NoOp:
485e5dd7070Spatrick case CK_LValueToRValue:
486e5dd7070Spatrick case CK_UserDefinedConversion:
487e5dd7070Spatrick return Visit(Op);
488e5dd7070Spatrick
489e5dd7070Spatrick case CK_LValueBitCast: {
490e5dd7070Spatrick LValue origLV = CGF.EmitLValue(Op);
491e5dd7070Spatrick Address V = origLV.getAddress(CGF);
492e5dd7070Spatrick V = Builder.CreateElementBitCast(V, CGF.ConvertType(DestTy));
493e5dd7070Spatrick return EmitLoadOfLValue(CGF.MakeAddrLValue(V, DestTy), Op->getExprLoc());
494e5dd7070Spatrick }
495e5dd7070Spatrick
496e5dd7070Spatrick case CK_LValueToRValueBitCast: {
497e5dd7070Spatrick LValue SourceLVal = CGF.EmitLValue(Op);
498e5dd7070Spatrick Address Addr = Builder.CreateElementBitCast(SourceLVal.getAddress(CGF),
499e5dd7070Spatrick CGF.ConvertTypeForMem(DestTy));
500e5dd7070Spatrick LValue DestLV = CGF.MakeAddrLValue(Addr, DestTy);
501e5dd7070Spatrick DestLV.setTBAAInfo(TBAAAccessInfo::getMayAliasInfo());
502e5dd7070Spatrick return EmitLoadOfLValue(DestLV, Op->getExprLoc());
503e5dd7070Spatrick }
504e5dd7070Spatrick
505e5dd7070Spatrick case CK_BitCast:
506e5dd7070Spatrick case CK_BaseToDerived:
507e5dd7070Spatrick case CK_DerivedToBase:
508e5dd7070Spatrick case CK_UncheckedDerivedToBase:
509e5dd7070Spatrick case CK_Dynamic:
510e5dd7070Spatrick case CK_ToUnion:
511e5dd7070Spatrick case CK_ArrayToPointerDecay:
512e5dd7070Spatrick case CK_FunctionToPointerDecay:
513e5dd7070Spatrick case CK_NullToPointer:
514e5dd7070Spatrick case CK_NullToMemberPointer:
515e5dd7070Spatrick case CK_BaseToDerivedMemberPointer:
516e5dd7070Spatrick case CK_DerivedToBaseMemberPointer:
517e5dd7070Spatrick case CK_MemberPointerToBoolean:
518e5dd7070Spatrick case CK_ReinterpretMemberPointer:
519e5dd7070Spatrick case CK_ConstructorConversion:
520e5dd7070Spatrick case CK_IntegralToPointer:
521e5dd7070Spatrick case CK_PointerToIntegral:
522e5dd7070Spatrick case CK_PointerToBoolean:
523e5dd7070Spatrick case CK_ToVoid:
524e5dd7070Spatrick case CK_VectorSplat:
525e5dd7070Spatrick case CK_IntegralCast:
526e5dd7070Spatrick case CK_BooleanToSignedIntegral:
527e5dd7070Spatrick case CK_IntegralToBoolean:
528e5dd7070Spatrick case CK_IntegralToFloating:
529e5dd7070Spatrick case CK_FloatingToIntegral:
530e5dd7070Spatrick case CK_FloatingToBoolean:
531e5dd7070Spatrick case CK_FloatingCast:
532e5dd7070Spatrick case CK_CPointerToObjCPointerCast:
533e5dd7070Spatrick case CK_BlockPointerToObjCPointerCast:
534e5dd7070Spatrick case CK_AnyPointerToBlockPointerCast:
535e5dd7070Spatrick case CK_ObjCObjectLValueCast:
536e5dd7070Spatrick case CK_FloatingComplexToReal:
537e5dd7070Spatrick case CK_FloatingComplexToBoolean:
538e5dd7070Spatrick case CK_IntegralComplexToReal:
539e5dd7070Spatrick case CK_IntegralComplexToBoolean:
540e5dd7070Spatrick case CK_ARCProduceObject:
541e5dd7070Spatrick case CK_ARCConsumeObject:
542e5dd7070Spatrick case CK_ARCReclaimReturnedObject:
543e5dd7070Spatrick case CK_ARCExtendBlockObject:
544e5dd7070Spatrick case CK_CopyAndAutoreleaseBlockObject:
545e5dd7070Spatrick case CK_BuiltinFnToFnPtr:
546e5dd7070Spatrick case CK_ZeroToOCLOpaqueType:
547e5dd7070Spatrick case CK_AddressSpaceConversion:
548e5dd7070Spatrick case CK_IntToOCLSampler:
549a9ac8606Spatrick case CK_FloatingToFixedPoint:
550a9ac8606Spatrick case CK_FixedPointToFloating:
551e5dd7070Spatrick case CK_FixedPointCast:
552e5dd7070Spatrick case CK_FixedPointToBoolean:
553e5dd7070Spatrick case CK_FixedPointToIntegral:
554e5dd7070Spatrick case CK_IntegralToFixedPoint:
555a9ac8606Spatrick case CK_MatrixCast:
556e5dd7070Spatrick llvm_unreachable("invalid cast kind for complex value");
557e5dd7070Spatrick
558e5dd7070Spatrick case CK_FloatingRealToComplex:
559a9ac8606Spatrick case CK_IntegralRealToComplex: {
560a9ac8606Spatrick CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op);
561e5dd7070Spatrick return EmitScalarToComplexCast(CGF.EmitScalarExpr(Op), Op->getType(),
562e5dd7070Spatrick DestTy, Op->getExprLoc());
563a9ac8606Spatrick }
564e5dd7070Spatrick
565e5dd7070Spatrick case CK_FloatingComplexCast:
566e5dd7070Spatrick case CK_FloatingComplexToIntegralComplex:
567e5dd7070Spatrick case CK_IntegralComplexCast:
568a9ac8606Spatrick case CK_IntegralComplexToFloatingComplex: {
569a9ac8606Spatrick CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op);
570e5dd7070Spatrick return EmitComplexToComplexCast(Visit(Op), Op->getType(), DestTy,
571e5dd7070Spatrick Op->getExprLoc());
572e5dd7070Spatrick }
573a9ac8606Spatrick }
574e5dd7070Spatrick
575e5dd7070Spatrick llvm_unreachable("unknown cast resulting in complex value");
576e5dd7070Spatrick }
577e5dd7070Spatrick
VisitUnaryPlus(const UnaryOperator * E,QualType PromotionType)578*12c85518Srobert ComplexPairTy ComplexExprEmitter::VisitUnaryPlus(const UnaryOperator *E,
579*12c85518Srobert QualType PromotionType) {
580*12c85518Srobert QualType promotionTy = PromotionType.isNull()
581*12c85518Srobert ? getPromotionType(E->getSubExpr()->getType())
582*12c85518Srobert : PromotionType;
583*12c85518Srobert ComplexPairTy result = VisitPlus(E, promotionTy);
584*12c85518Srobert if (!promotionTy.isNull())
585*12c85518Srobert return CGF.EmitUnPromotedValue(result, E->getSubExpr()->getType());
586*12c85518Srobert return result;
587*12c85518Srobert }
588*12c85518Srobert
VisitPlus(const UnaryOperator * E,QualType PromotionType)589*12c85518Srobert ComplexPairTy ComplexExprEmitter::VisitPlus(const UnaryOperator *E,
590*12c85518Srobert QualType PromotionType) {
591e5dd7070Spatrick TestAndClearIgnoreReal();
592e5dd7070Spatrick TestAndClearIgnoreImag();
593*12c85518Srobert if (!PromotionType.isNull())
594*12c85518Srobert return CGF.EmitPromotedComplexExpr(E->getSubExpr(), PromotionType);
595*12c85518Srobert return Visit(E->getSubExpr());
596*12c85518Srobert }
597*12c85518Srobert
VisitUnaryMinus(const UnaryOperator * E,QualType PromotionType)598*12c85518Srobert ComplexPairTy ComplexExprEmitter::VisitUnaryMinus(const UnaryOperator *E,
599*12c85518Srobert QualType PromotionType) {
600*12c85518Srobert QualType promotionTy = PromotionType.isNull()
601*12c85518Srobert ? getPromotionType(E->getSubExpr()->getType())
602*12c85518Srobert : PromotionType;
603*12c85518Srobert ComplexPairTy result = VisitMinus(E, promotionTy);
604*12c85518Srobert if (!promotionTy.isNull())
605*12c85518Srobert return CGF.EmitUnPromotedValue(result, E->getSubExpr()->getType());
606*12c85518Srobert return result;
607*12c85518Srobert }
VisitMinus(const UnaryOperator * E,QualType PromotionType)608*12c85518Srobert ComplexPairTy ComplexExprEmitter::VisitMinus(const UnaryOperator *E,
609*12c85518Srobert QualType PromotionType) {
610*12c85518Srobert TestAndClearIgnoreReal();
611*12c85518Srobert TestAndClearIgnoreImag();
612*12c85518Srobert ComplexPairTy Op;
613*12c85518Srobert if (!PromotionType.isNull())
614*12c85518Srobert Op = CGF.EmitPromotedComplexExpr(E->getSubExpr(), PromotionType);
615*12c85518Srobert else
616*12c85518Srobert Op = Visit(E->getSubExpr());
617e5dd7070Spatrick
618e5dd7070Spatrick llvm::Value *ResR, *ResI;
619e5dd7070Spatrick if (Op.first->getType()->isFloatingPointTy()) {
620e5dd7070Spatrick ResR = Builder.CreateFNeg(Op.first, "neg.r");
621e5dd7070Spatrick ResI = Builder.CreateFNeg(Op.second, "neg.i");
622e5dd7070Spatrick } else {
623e5dd7070Spatrick ResR = Builder.CreateNeg(Op.first, "neg.r");
624e5dd7070Spatrick ResI = Builder.CreateNeg(Op.second, "neg.i");
625e5dd7070Spatrick }
626e5dd7070Spatrick return ComplexPairTy(ResR, ResI);
627e5dd7070Spatrick }
628e5dd7070Spatrick
VisitUnaryNot(const UnaryOperator * E)629e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitUnaryNot(const UnaryOperator *E) {
630e5dd7070Spatrick TestAndClearIgnoreReal();
631e5dd7070Spatrick TestAndClearIgnoreImag();
632e5dd7070Spatrick // ~(a+ib) = a + i*-b
633e5dd7070Spatrick ComplexPairTy Op = Visit(E->getSubExpr());
634e5dd7070Spatrick llvm::Value *ResI;
635e5dd7070Spatrick if (Op.second->getType()->isFloatingPointTy())
636e5dd7070Spatrick ResI = Builder.CreateFNeg(Op.second, "conj.i");
637e5dd7070Spatrick else
638e5dd7070Spatrick ResI = Builder.CreateNeg(Op.second, "conj.i");
639e5dd7070Spatrick
640e5dd7070Spatrick return ComplexPairTy(Op.first, ResI);
641e5dd7070Spatrick }
642e5dd7070Spatrick
EmitBinAdd(const BinOpInfo & Op)643e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitBinAdd(const BinOpInfo &Op) {
644e5dd7070Spatrick llvm::Value *ResR, *ResI;
645e5dd7070Spatrick
646e5dd7070Spatrick if (Op.LHS.first->getType()->isFloatingPointTy()) {
647*12c85518Srobert CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op.FPFeatures);
648e5dd7070Spatrick ResR = Builder.CreateFAdd(Op.LHS.first, Op.RHS.first, "add.r");
649e5dd7070Spatrick if (Op.LHS.second && Op.RHS.second)
650e5dd7070Spatrick ResI = Builder.CreateFAdd(Op.LHS.second, Op.RHS.second, "add.i");
651e5dd7070Spatrick else
652e5dd7070Spatrick ResI = Op.LHS.second ? Op.LHS.second : Op.RHS.second;
653e5dd7070Spatrick assert(ResI && "Only one operand may be real!");
654e5dd7070Spatrick } else {
655e5dd7070Spatrick ResR = Builder.CreateAdd(Op.LHS.first, Op.RHS.first, "add.r");
656e5dd7070Spatrick assert(Op.LHS.second && Op.RHS.second &&
657e5dd7070Spatrick "Both operands of integer complex operators must be complex!");
658e5dd7070Spatrick ResI = Builder.CreateAdd(Op.LHS.second, Op.RHS.second, "add.i");
659e5dd7070Spatrick }
660e5dd7070Spatrick return ComplexPairTy(ResR, ResI);
661e5dd7070Spatrick }
662e5dd7070Spatrick
EmitBinSub(const BinOpInfo & Op)663e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitBinSub(const BinOpInfo &Op) {
664e5dd7070Spatrick llvm::Value *ResR, *ResI;
665e5dd7070Spatrick if (Op.LHS.first->getType()->isFloatingPointTy()) {
666*12c85518Srobert CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op.FPFeatures);
667e5dd7070Spatrick ResR = Builder.CreateFSub(Op.LHS.first, Op.RHS.first, "sub.r");
668e5dd7070Spatrick if (Op.LHS.second && Op.RHS.second)
669e5dd7070Spatrick ResI = Builder.CreateFSub(Op.LHS.second, Op.RHS.second, "sub.i");
670e5dd7070Spatrick else
671e5dd7070Spatrick ResI = Op.LHS.second ? Op.LHS.second
672e5dd7070Spatrick : Builder.CreateFNeg(Op.RHS.second, "sub.i");
673e5dd7070Spatrick assert(ResI && "Only one operand may be real!");
674e5dd7070Spatrick } else {
675e5dd7070Spatrick ResR = Builder.CreateSub(Op.LHS.first, Op.RHS.first, "sub.r");
676e5dd7070Spatrick assert(Op.LHS.second && Op.RHS.second &&
677e5dd7070Spatrick "Both operands of integer complex operators must be complex!");
678e5dd7070Spatrick ResI = Builder.CreateSub(Op.LHS.second, Op.RHS.second, "sub.i");
679e5dd7070Spatrick }
680e5dd7070Spatrick return ComplexPairTy(ResR, ResI);
681e5dd7070Spatrick }
682e5dd7070Spatrick
683e5dd7070Spatrick /// Emit a libcall for a binary operation on complex types.
EmitComplexBinOpLibCall(StringRef LibCallName,const BinOpInfo & Op)684e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitComplexBinOpLibCall(StringRef LibCallName,
685e5dd7070Spatrick const BinOpInfo &Op) {
686e5dd7070Spatrick CallArgList Args;
687e5dd7070Spatrick Args.add(RValue::get(Op.LHS.first),
688e5dd7070Spatrick Op.Ty->castAs<ComplexType>()->getElementType());
689e5dd7070Spatrick Args.add(RValue::get(Op.LHS.second),
690e5dd7070Spatrick Op.Ty->castAs<ComplexType>()->getElementType());
691e5dd7070Spatrick Args.add(RValue::get(Op.RHS.first),
692e5dd7070Spatrick Op.Ty->castAs<ComplexType>()->getElementType());
693e5dd7070Spatrick Args.add(RValue::get(Op.RHS.second),
694e5dd7070Spatrick Op.Ty->castAs<ComplexType>()->getElementType());
695e5dd7070Spatrick
696e5dd7070Spatrick // We *must* use the full CG function call building logic here because the
697e5dd7070Spatrick // complex type has special ABI handling. We also should not forget about
698e5dd7070Spatrick // special calling convention which may be used for compiler builtins.
699e5dd7070Spatrick
700e5dd7070Spatrick // We create a function qualified type to state that this call does not have
701e5dd7070Spatrick // any exceptions.
702e5dd7070Spatrick FunctionProtoType::ExtProtoInfo EPI;
703e5dd7070Spatrick EPI = EPI.withExceptionSpec(
704e5dd7070Spatrick FunctionProtoType::ExceptionSpecInfo(EST_BasicNoexcept));
705e5dd7070Spatrick SmallVector<QualType, 4> ArgsQTys(
706e5dd7070Spatrick 4, Op.Ty->castAs<ComplexType>()->getElementType());
707e5dd7070Spatrick QualType FQTy = CGF.getContext().getFunctionType(Op.Ty, ArgsQTys, EPI);
708e5dd7070Spatrick const CGFunctionInfo &FuncInfo = CGF.CGM.getTypes().arrangeFreeFunctionCall(
709e5dd7070Spatrick Args, cast<FunctionType>(FQTy.getTypePtr()), false);
710e5dd7070Spatrick
711e5dd7070Spatrick llvm::FunctionType *FTy = CGF.CGM.getTypes().GetFunctionType(FuncInfo);
712e5dd7070Spatrick llvm::FunctionCallee Func = CGF.CGM.CreateRuntimeFunction(
713e5dd7070Spatrick FTy, LibCallName, llvm::AttributeList(), true);
714e5dd7070Spatrick CGCallee Callee = CGCallee::forDirect(Func, FQTy->getAs<FunctionProtoType>());
715e5dd7070Spatrick
716e5dd7070Spatrick llvm::CallBase *Call;
717e5dd7070Spatrick RValue Res = CGF.EmitCall(FuncInfo, Callee, ReturnValueSlot(), Args, &Call);
718e5dd7070Spatrick Call->setCallingConv(CGF.CGM.getRuntimeCC());
719e5dd7070Spatrick return Res.getComplexVal();
720e5dd7070Spatrick }
721e5dd7070Spatrick
722e5dd7070Spatrick /// Lookup the libcall name for a given floating point type complex
723e5dd7070Spatrick /// multiply.
getComplexMultiplyLibCallName(llvm::Type * Ty)724e5dd7070Spatrick static StringRef getComplexMultiplyLibCallName(llvm::Type *Ty) {
725e5dd7070Spatrick switch (Ty->getTypeID()) {
726e5dd7070Spatrick default:
727e5dd7070Spatrick llvm_unreachable("Unsupported floating point type!");
728e5dd7070Spatrick case llvm::Type::HalfTyID:
729e5dd7070Spatrick return "__mulhc3";
730e5dd7070Spatrick case llvm::Type::FloatTyID:
731e5dd7070Spatrick return "__mulsc3";
732e5dd7070Spatrick case llvm::Type::DoubleTyID:
733e5dd7070Spatrick return "__muldc3";
734e5dd7070Spatrick case llvm::Type::PPC_FP128TyID:
735e5dd7070Spatrick return "__multc3";
736e5dd7070Spatrick case llvm::Type::X86_FP80TyID:
737e5dd7070Spatrick return "__mulxc3";
738e5dd7070Spatrick case llvm::Type::FP128TyID:
739e5dd7070Spatrick return "__multc3";
740e5dd7070Spatrick }
741e5dd7070Spatrick }
742e5dd7070Spatrick
743e5dd7070Spatrick // See C11 Annex G.5.1 for the semantics of multiplicative operators on complex
744e5dd7070Spatrick // typed values.
EmitBinMul(const BinOpInfo & Op)745e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitBinMul(const BinOpInfo &Op) {
746e5dd7070Spatrick using llvm::Value;
747e5dd7070Spatrick Value *ResR, *ResI;
748e5dd7070Spatrick llvm::MDBuilder MDHelper(CGF.getLLVMContext());
749e5dd7070Spatrick
750e5dd7070Spatrick if (Op.LHS.first->getType()->isFloatingPointTy()) {
751e5dd7070Spatrick // The general formulation is:
752e5dd7070Spatrick // (a + ib) * (c + id) = (a * c - b * d) + i(a * d + b * c)
753e5dd7070Spatrick //
754e5dd7070Spatrick // But we can fold away components which would be zero due to a real
755e5dd7070Spatrick // operand according to C11 Annex G.5.1p2.
756e5dd7070Spatrick // FIXME: C11 also provides for imaginary types which would allow folding
757e5dd7070Spatrick // still more of this within the type system.
758e5dd7070Spatrick
759*12c85518Srobert CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op.FPFeatures);
760e5dd7070Spatrick if (Op.LHS.second && Op.RHS.second) {
761e5dd7070Spatrick // If both operands are complex, emit the core math directly, and then
762e5dd7070Spatrick // test for NaNs. If we find NaNs in the result, we delegate to a libcall
763e5dd7070Spatrick // to carefully re-compute the correct infinity representation if
764e5dd7070Spatrick // possible. The expectation is that the presence of NaNs here is
765e5dd7070Spatrick // *extremely* rare, and so the cost of the libcall is almost irrelevant.
766e5dd7070Spatrick // This is good, because the libcall re-computes the core multiplication
767e5dd7070Spatrick // exactly the same as we do here and re-tests for NaNs in order to be
768e5dd7070Spatrick // a generic complex*complex libcall.
769e5dd7070Spatrick
770e5dd7070Spatrick // First compute the four products.
771e5dd7070Spatrick Value *AC = Builder.CreateFMul(Op.LHS.first, Op.RHS.first, "mul_ac");
772e5dd7070Spatrick Value *BD = Builder.CreateFMul(Op.LHS.second, Op.RHS.second, "mul_bd");
773e5dd7070Spatrick Value *AD = Builder.CreateFMul(Op.LHS.first, Op.RHS.second, "mul_ad");
774e5dd7070Spatrick Value *BC = Builder.CreateFMul(Op.LHS.second, Op.RHS.first, "mul_bc");
775e5dd7070Spatrick
776e5dd7070Spatrick // The real part is the difference of the first two, the imaginary part is
777e5dd7070Spatrick // the sum of the second.
778e5dd7070Spatrick ResR = Builder.CreateFSub(AC, BD, "mul_r");
779e5dd7070Spatrick ResI = Builder.CreateFAdd(AD, BC, "mul_i");
780e5dd7070Spatrick
781e5dd7070Spatrick // Emit the test for the real part becoming NaN and create a branch to
782e5dd7070Spatrick // handle it. We test for NaN by comparing the number to itself.
783e5dd7070Spatrick Value *IsRNaN = Builder.CreateFCmpUNO(ResR, ResR, "isnan_cmp");
784e5dd7070Spatrick llvm::BasicBlock *ContBB = CGF.createBasicBlock("complex_mul_cont");
785e5dd7070Spatrick llvm::BasicBlock *INaNBB = CGF.createBasicBlock("complex_mul_imag_nan");
786e5dd7070Spatrick llvm::Instruction *Branch = Builder.CreateCondBr(IsRNaN, INaNBB, ContBB);
787e5dd7070Spatrick llvm::BasicBlock *OrigBB = Branch->getParent();
788e5dd7070Spatrick
789e5dd7070Spatrick // Give hint that we very much don't expect to see NaNs.
790e5dd7070Spatrick // Value chosen to match UR_NONTAKEN_WEIGHT, see BranchProbabilityInfo.cpp
791e5dd7070Spatrick llvm::MDNode *BrWeight = MDHelper.createBranchWeights(1, (1U << 20) - 1);
792e5dd7070Spatrick Branch->setMetadata(llvm::LLVMContext::MD_prof, BrWeight);
793e5dd7070Spatrick
794e5dd7070Spatrick // Now test the imaginary part and create its branch.
795e5dd7070Spatrick CGF.EmitBlock(INaNBB);
796e5dd7070Spatrick Value *IsINaN = Builder.CreateFCmpUNO(ResI, ResI, "isnan_cmp");
797e5dd7070Spatrick llvm::BasicBlock *LibCallBB = CGF.createBasicBlock("complex_mul_libcall");
798e5dd7070Spatrick Branch = Builder.CreateCondBr(IsINaN, LibCallBB, ContBB);
799e5dd7070Spatrick Branch->setMetadata(llvm::LLVMContext::MD_prof, BrWeight);
800e5dd7070Spatrick
801e5dd7070Spatrick // Now emit the libcall on this slowest of the slow paths.
802e5dd7070Spatrick CGF.EmitBlock(LibCallBB);
803e5dd7070Spatrick Value *LibCallR, *LibCallI;
804e5dd7070Spatrick std::tie(LibCallR, LibCallI) = EmitComplexBinOpLibCall(
805e5dd7070Spatrick getComplexMultiplyLibCallName(Op.LHS.first->getType()), Op);
806e5dd7070Spatrick Builder.CreateBr(ContBB);
807e5dd7070Spatrick
808e5dd7070Spatrick // Finally continue execution by phi-ing together the different
809e5dd7070Spatrick // computation paths.
810e5dd7070Spatrick CGF.EmitBlock(ContBB);
811e5dd7070Spatrick llvm::PHINode *RealPHI = Builder.CreatePHI(ResR->getType(), 3, "real_mul_phi");
812e5dd7070Spatrick RealPHI->addIncoming(ResR, OrigBB);
813e5dd7070Spatrick RealPHI->addIncoming(ResR, INaNBB);
814e5dd7070Spatrick RealPHI->addIncoming(LibCallR, LibCallBB);
815e5dd7070Spatrick llvm::PHINode *ImagPHI = Builder.CreatePHI(ResI->getType(), 3, "imag_mul_phi");
816e5dd7070Spatrick ImagPHI->addIncoming(ResI, OrigBB);
817e5dd7070Spatrick ImagPHI->addIncoming(ResI, INaNBB);
818e5dd7070Spatrick ImagPHI->addIncoming(LibCallI, LibCallBB);
819e5dd7070Spatrick return ComplexPairTy(RealPHI, ImagPHI);
820e5dd7070Spatrick }
821e5dd7070Spatrick assert((Op.LHS.second || Op.RHS.second) &&
822e5dd7070Spatrick "At least one operand must be complex!");
823e5dd7070Spatrick
824e5dd7070Spatrick // If either of the operands is a real rather than a complex, the
825e5dd7070Spatrick // imaginary component is ignored when computing the real component of the
826e5dd7070Spatrick // result.
827e5dd7070Spatrick ResR = Builder.CreateFMul(Op.LHS.first, Op.RHS.first, "mul.rl");
828e5dd7070Spatrick
829e5dd7070Spatrick ResI = Op.LHS.second
830e5dd7070Spatrick ? Builder.CreateFMul(Op.LHS.second, Op.RHS.first, "mul.il")
831e5dd7070Spatrick : Builder.CreateFMul(Op.LHS.first, Op.RHS.second, "mul.ir");
832e5dd7070Spatrick } else {
833e5dd7070Spatrick assert(Op.LHS.second && Op.RHS.second &&
834e5dd7070Spatrick "Both operands of integer complex operators must be complex!");
835e5dd7070Spatrick Value *ResRl = Builder.CreateMul(Op.LHS.first, Op.RHS.first, "mul.rl");
836e5dd7070Spatrick Value *ResRr = Builder.CreateMul(Op.LHS.second, Op.RHS.second, "mul.rr");
837e5dd7070Spatrick ResR = Builder.CreateSub(ResRl, ResRr, "mul.r");
838e5dd7070Spatrick
839e5dd7070Spatrick Value *ResIl = Builder.CreateMul(Op.LHS.second, Op.RHS.first, "mul.il");
840e5dd7070Spatrick Value *ResIr = Builder.CreateMul(Op.LHS.first, Op.RHS.second, "mul.ir");
841e5dd7070Spatrick ResI = Builder.CreateAdd(ResIl, ResIr, "mul.i");
842e5dd7070Spatrick }
843e5dd7070Spatrick return ComplexPairTy(ResR, ResI);
844e5dd7070Spatrick }
845e5dd7070Spatrick
846e5dd7070Spatrick // See C11 Annex G.5.1 for the semantics of multiplicative operators on complex
847e5dd7070Spatrick // typed values.
EmitBinDiv(const BinOpInfo & Op)848e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::EmitBinDiv(const BinOpInfo &Op) {
849e5dd7070Spatrick llvm::Value *LHSr = Op.LHS.first, *LHSi = Op.LHS.second;
850e5dd7070Spatrick llvm::Value *RHSr = Op.RHS.first, *RHSi = Op.RHS.second;
851e5dd7070Spatrick
852e5dd7070Spatrick llvm::Value *DSTr, *DSTi;
853e5dd7070Spatrick if (LHSr->getType()->isFloatingPointTy()) {
854e5dd7070Spatrick // If we have a complex operand on the RHS and FastMath is not allowed, we
855e5dd7070Spatrick // delegate to a libcall to handle all of the complexities and minimize
856e5dd7070Spatrick // underflow/overflow cases. When FastMath is allowed we construct the
857e5dd7070Spatrick // divide inline using the same algorithm as for integer operands.
858e5dd7070Spatrick //
859e5dd7070Spatrick // FIXME: We would be able to avoid the libcall in many places if we
860e5dd7070Spatrick // supported imaginary types in addition to complex types.
861*12c85518Srobert CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, Op.FPFeatures);
862e5dd7070Spatrick if (RHSi && !CGF.getLangOpts().FastMath) {
863e5dd7070Spatrick BinOpInfo LibCallOp = Op;
864e5dd7070Spatrick // If LHS was a real, supply a null imaginary part.
865e5dd7070Spatrick if (!LHSi)
866e5dd7070Spatrick LibCallOp.LHS.second = llvm::Constant::getNullValue(LHSr->getType());
867e5dd7070Spatrick
868e5dd7070Spatrick switch (LHSr->getType()->getTypeID()) {
869e5dd7070Spatrick default:
870e5dd7070Spatrick llvm_unreachable("Unsupported floating point type!");
871e5dd7070Spatrick case llvm::Type::HalfTyID:
872e5dd7070Spatrick return EmitComplexBinOpLibCall("__divhc3", LibCallOp);
873e5dd7070Spatrick case llvm::Type::FloatTyID:
874e5dd7070Spatrick return EmitComplexBinOpLibCall("__divsc3", LibCallOp);
875e5dd7070Spatrick case llvm::Type::DoubleTyID:
876e5dd7070Spatrick return EmitComplexBinOpLibCall("__divdc3", LibCallOp);
877e5dd7070Spatrick case llvm::Type::PPC_FP128TyID:
878e5dd7070Spatrick return EmitComplexBinOpLibCall("__divtc3", LibCallOp);
879e5dd7070Spatrick case llvm::Type::X86_FP80TyID:
880e5dd7070Spatrick return EmitComplexBinOpLibCall("__divxc3", LibCallOp);
881e5dd7070Spatrick case llvm::Type::FP128TyID:
882e5dd7070Spatrick return EmitComplexBinOpLibCall("__divtc3", LibCallOp);
883e5dd7070Spatrick }
884e5dd7070Spatrick } else if (RHSi) {
885e5dd7070Spatrick if (!LHSi)
886e5dd7070Spatrick LHSi = llvm::Constant::getNullValue(RHSi->getType());
887e5dd7070Spatrick
888e5dd7070Spatrick // (a+ib) / (c+id) = ((ac+bd)/(cc+dd)) + i((bc-ad)/(cc+dd))
889e5dd7070Spatrick llvm::Value *AC = Builder.CreateFMul(LHSr, RHSr); // a*c
890e5dd7070Spatrick llvm::Value *BD = Builder.CreateFMul(LHSi, RHSi); // b*d
891e5dd7070Spatrick llvm::Value *ACpBD = Builder.CreateFAdd(AC, BD); // ac+bd
892e5dd7070Spatrick
893e5dd7070Spatrick llvm::Value *CC = Builder.CreateFMul(RHSr, RHSr); // c*c
894e5dd7070Spatrick llvm::Value *DD = Builder.CreateFMul(RHSi, RHSi); // d*d
895e5dd7070Spatrick llvm::Value *CCpDD = Builder.CreateFAdd(CC, DD); // cc+dd
896e5dd7070Spatrick
897e5dd7070Spatrick llvm::Value *BC = Builder.CreateFMul(LHSi, RHSr); // b*c
898e5dd7070Spatrick llvm::Value *AD = Builder.CreateFMul(LHSr, RHSi); // a*d
899e5dd7070Spatrick llvm::Value *BCmAD = Builder.CreateFSub(BC, AD); // bc-ad
900e5dd7070Spatrick
901e5dd7070Spatrick DSTr = Builder.CreateFDiv(ACpBD, CCpDD);
902e5dd7070Spatrick DSTi = Builder.CreateFDiv(BCmAD, CCpDD);
903e5dd7070Spatrick } else {
904e5dd7070Spatrick assert(LHSi && "Can have at most one non-complex operand!");
905e5dd7070Spatrick
906e5dd7070Spatrick DSTr = Builder.CreateFDiv(LHSr, RHSr);
907e5dd7070Spatrick DSTi = Builder.CreateFDiv(LHSi, RHSr);
908e5dd7070Spatrick }
909e5dd7070Spatrick } else {
910e5dd7070Spatrick assert(Op.LHS.second && Op.RHS.second &&
911e5dd7070Spatrick "Both operands of integer complex operators must be complex!");
912e5dd7070Spatrick // (a+ib) / (c+id) = ((ac+bd)/(cc+dd)) + i((bc-ad)/(cc+dd))
913e5dd7070Spatrick llvm::Value *Tmp1 = Builder.CreateMul(LHSr, RHSr); // a*c
914e5dd7070Spatrick llvm::Value *Tmp2 = Builder.CreateMul(LHSi, RHSi); // b*d
915e5dd7070Spatrick llvm::Value *Tmp3 = Builder.CreateAdd(Tmp1, Tmp2); // ac+bd
916e5dd7070Spatrick
917e5dd7070Spatrick llvm::Value *Tmp4 = Builder.CreateMul(RHSr, RHSr); // c*c
918e5dd7070Spatrick llvm::Value *Tmp5 = Builder.CreateMul(RHSi, RHSi); // d*d
919e5dd7070Spatrick llvm::Value *Tmp6 = Builder.CreateAdd(Tmp4, Tmp5); // cc+dd
920e5dd7070Spatrick
921e5dd7070Spatrick llvm::Value *Tmp7 = Builder.CreateMul(LHSi, RHSr); // b*c
922e5dd7070Spatrick llvm::Value *Tmp8 = Builder.CreateMul(LHSr, RHSi); // a*d
923e5dd7070Spatrick llvm::Value *Tmp9 = Builder.CreateSub(Tmp7, Tmp8); // bc-ad
924e5dd7070Spatrick
925e5dd7070Spatrick if (Op.Ty->castAs<ComplexType>()->getElementType()->isUnsignedIntegerType()) {
926e5dd7070Spatrick DSTr = Builder.CreateUDiv(Tmp3, Tmp6);
927e5dd7070Spatrick DSTi = Builder.CreateUDiv(Tmp9, Tmp6);
928e5dd7070Spatrick } else {
929e5dd7070Spatrick DSTr = Builder.CreateSDiv(Tmp3, Tmp6);
930e5dd7070Spatrick DSTi = Builder.CreateSDiv(Tmp9, Tmp6);
931e5dd7070Spatrick }
932e5dd7070Spatrick }
933e5dd7070Spatrick
934e5dd7070Spatrick return ComplexPairTy(DSTr, DSTi);
935e5dd7070Spatrick }
936e5dd7070Spatrick
EmitUnPromotedValue(ComplexPairTy result,QualType UnPromotionType)937*12c85518Srobert ComplexPairTy CodeGenFunction::EmitUnPromotedValue(ComplexPairTy result,
938*12c85518Srobert QualType UnPromotionType) {
939*12c85518Srobert llvm::Type *ComplexElementTy =
940*12c85518Srobert ConvertType(UnPromotionType->castAs<ComplexType>()->getElementType());
941*12c85518Srobert if (result.first)
942*12c85518Srobert result.first =
943*12c85518Srobert Builder.CreateFPTrunc(result.first, ComplexElementTy, "unpromotion");
944*12c85518Srobert if (result.second)
945*12c85518Srobert result.second =
946*12c85518Srobert Builder.CreateFPTrunc(result.second, ComplexElementTy, "unpromotion");
947*12c85518Srobert return result;
948*12c85518Srobert }
949*12c85518Srobert
EmitPromotedValue(ComplexPairTy result,QualType PromotionType)950*12c85518Srobert ComplexPairTy CodeGenFunction::EmitPromotedValue(ComplexPairTy result,
951*12c85518Srobert QualType PromotionType) {
952*12c85518Srobert llvm::Type *ComplexElementTy =
953*12c85518Srobert ConvertType(PromotionType->castAs<ComplexType>()->getElementType());
954*12c85518Srobert if (result.first)
955*12c85518Srobert result.first = Builder.CreateFPExt(result.first, ComplexElementTy, "ext");
956*12c85518Srobert if (result.second)
957*12c85518Srobert result.second = Builder.CreateFPExt(result.second, ComplexElementTy, "ext");
958*12c85518Srobert
959*12c85518Srobert return result;
960*12c85518Srobert }
961*12c85518Srobert
EmitPromoted(const Expr * E,QualType PromotionType)962*12c85518Srobert ComplexPairTy ComplexExprEmitter::EmitPromoted(const Expr *E,
963*12c85518Srobert QualType PromotionType) {
964*12c85518Srobert E = E->IgnoreParens();
965*12c85518Srobert if (auto BO = dyn_cast<BinaryOperator>(E)) {
966*12c85518Srobert switch (BO->getOpcode()) {
967*12c85518Srobert #define HANDLE_BINOP(OP) \
968*12c85518Srobert case BO_##OP: \
969*12c85518Srobert return EmitBin##OP(EmitBinOps(BO, PromotionType));
970*12c85518Srobert HANDLE_BINOP(Add)
971*12c85518Srobert HANDLE_BINOP(Sub)
972*12c85518Srobert HANDLE_BINOP(Mul)
973*12c85518Srobert HANDLE_BINOP(Div)
974*12c85518Srobert #undef HANDLE_BINOP
975*12c85518Srobert default:
976*12c85518Srobert break;
977*12c85518Srobert }
978*12c85518Srobert } else if (auto UO = dyn_cast<UnaryOperator>(E)) {
979*12c85518Srobert switch (UO->getOpcode()) {
980*12c85518Srobert case UO_Minus:
981*12c85518Srobert return VisitMinus(UO, PromotionType);
982*12c85518Srobert case UO_Plus:
983*12c85518Srobert return VisitPlus(UO, PromotionType);
984*12c85518Srobert default:
985*12c85518Srobert break;
986*12c85518Srobert }
987*12c85518Srobert }
988*12c85518Srobert auto result = Visit(const_cast<Expr *>(E));
989*12c85518Srobert if (!PromotionType.isNull())
990*12c85518Srobert return CGF.EmitPromotedValue(result, PromotionType);
991*12c85518Srobert else
992*12c85518Srobert return result;
993*12c85518Srobert }
994*12c85518Srobert
EmitPromotedComplexExpr(const Expr * E,QualType DstTy)995*12c85518Srobert ComplexPairTy CodeGenFunction::EmitPromotedComplexExpr(const Expr *E,
996*12c85518Srobert QualType DstTy) {
997*12c85518Srobert return ComplexExprEmitter(*this).EmitPromoted(E, DstTy);
998*12c85518Srobert }
999*12c85518Srobert
1000*12c85518Srobert ComplexPairTy
EmitPromotedComplexOperand(const Expr * E,QualType OverallPromotionType)1001*12c85518Srobert ComplexExprEmitter::EmitPromotedComplexOperand(const Expr *E,
1002*12c85518Srobert QualType OverallPromotionType) {
1003*12c85518Srobert if (E->getType()->isAnyComplexType()) {
1004*12c85518Srobert if (!OverallPromotionType.isNull())
1005*12c85518Srobert return CGF.EmitPromotedComplexExpr(E, OverallPromotionType);
1006*12c85518Srobert else
1007*12c85518Srobert return Visit(const_cast<Expr *>(E));
1008*12c85518Srobert } else {
1009*12c85518Srobert if (!OverallPromotionType.isNull()) {
1010*12c85518Srobert QualType ComplexElementTy =
1011*12c85518Srobert OverallPromotionType->castAs<ComplexType>()->getElementType();
1012*12c85518Srobert return ComplexPairTy(CGF.EmitPromotedScalarExpr(E, ComplexElementTy),
1013*12c85518Srobert nullptr);
1014*12c85518Srobert } else {
1015*12c85518Srobert return ComplexPairTy(CGF.EmitScalarExpr(E), nullptr);
1016*12c85518Srobert }
1017*12c85518Srobert }
1018*12c85518Srobert }
1019*12c85518Srobert
1020e5dd7070Spatrick ComplexExprEmitter::BinOpInfo
EmitBinOps(const BinaryOperator * E,QualType PromotionType)1021*12c85518Srobert ComplexExprEmitter::EmitBinOps(const BinaryOperator *E,
1022*12c85518Srobert QualType PromotionType) {
1023e5dd7070Spatrick TestAndClearIgnoreReal();
1024e5dd7070Spatrick TestAndClearIgnoreImag();
1025e5dd7070Spatrick BinOpInfo Ops;
1026e5dd7070Spatrick
1027*12c85518Srobert Ops.LHS = EmitPromotedComplexOperand(E->getLHS(), PromotionType);
1028*12c85518Srobert Ops.RHS = EmitPromotedComplexOperand(E->getRHS(), PromotionType);
1029*12c85518Srobert if (!PromotionType.isNull())
1030*12c85518Srobert Ops.Ty = PromotionType;
1031*12c85518Srobert else
1032e5dd7070Spatrick Ops.Ty = E->getType();
1033*12c85518Srobert Ops.FPFeatures = E->getFPFeaturesInEffect(CGF.getLangOpts());
1034e5dd7070Spatrick return Ops;
1035e5dd7070Spatrick }
1036e5dd7070Spatrick
1037e5dd7070Spatrick
1038e5dd7070Spatrick LValue ComplexExprEmitter::
EmitCompoundAssignLValue(const CompoundAssignOperator * E,ComplexPairTy (ComplexExprEmitter::* Func)(const BinOpInfo &),RValue & Val)1039e5dd7070Spatrick EmitCompoundAssignLValue(const CompoundAssignOperator *E,
1040e5dd7070Spatrick ComplexPairTy (ComplexExprEmitter::*Func)(const BinOpInfo&),
1041e5dd7070Spatrick RValue &Val) {
1042e5dd7070Spatrick TestAndClearIgnoreReal();
1043e5dd7070Spatrick TestAndClearIgnoreImag();
1044e5dd7070Spatrick QualType LHSTy = E->getLHS()->getType();
1045e5dd7070Spatrick if (const AtomicType *AT = LHSTy->getAs<AtomicType>())
1046e5dd7070Spatrick LHSTy = AT->getValueType();
1047e5dd7070Spatrick
1048e5dd7070Spatrick BinOpInfo OpInfo;
1049*12c85518Srobert OpInfo.FPFeatures = E->getFPFeaturesInEffect(CGF.getLangOpts());
1050*12c85518Srobert CodeGenFunction::CGFPOptionsRAII FPOptsRAII(CGF, OpInfo.FPFeatures);
1051e5dd7070Spatrick
1052e5dd7070Spatrick // Load the RHS and LHS operands.
1053e5dd7070Spatrick // __block variables need to have the rhs evaluated first, plus this should
1054e5dd7070Spatrick // improve codegen a little.
1055*12c85518Srobert QualType PromotionTypeCR;
1056*12c85518Srobert PromotionTypeCR = getPromotionType(E->getComputationResultType());
1057*12c85518Srobert if (PromotionTypeCR.isNull())
1058*12c85518Srobert PromotionTypeCR = E->getComputationResultType();
1059*12c85518Srobert OpInfo.Ty = PromotionTypeCR;
1060*12c85518Srobert QualType ComplexElementTy =
1061*12c85518Srobert OpInfo.Ty->castAs<ComplexType>()->getElementType();
1062*12c85518Srobert QualType PromotionTypeRHS = getPromotionType(E->getRHS()->getType());
1063e5dd7070Spatrick
1064e5dd7070Spatrick // The RHS should have been converted to the computation type.
1065e5dd7070Spatrick if (E->getRHS()->getType()->isRealFloatingType()) {
1066*12c85518Srobert if (!PromotionTypeRHS.isNull())
1067*12c85518Srobert OpInfo.RHS = ComplexPairTy(
1068*12c85518Srobert CGF.EmitPromotedScalarExpr(E->getRHS(), PromotionTypeRHS), nullptr);
1069*12c85518Srobert else {
1070*12c85518Srobert assert(CGF.getContext().hasSameUnqualifiedType(ComplexElementTy,
1071*12c85518Srobert E->getRHS()->getType()));
1072*12c85518Srobert
1073e5dd7070Spatrick OpInfo.RHS = ComplexPairTy(CGF.EmitScalarExpr(E->getRHS()), nullptr);
1074*12c85518Srobert }
1075e5dd7070Spatrick } else {
1076*12c85518Srobert if (!PromotionTypeRHS.isNull()) {
1077*12c85518Srobert OpInfo.RHS = ComplexPairTy(
1078*12c85518Srobert CGF.EmitPromotedComplexExpr(E->getRHS(), PromotionTypeRHS));
1079*12c85518Srobert } else {
1080*12c85518Srobert assert(CGF.getContext().hasSameUnqualifiedType(OpInfo.Ty,
1081*12c85518Srobert E->getRHS()->getType()));
1082e5dd7070Spatrick OpInfo.RHS = Visit(E->getRHS());
1083e5dd7070Spatrick }
1084*12c85518Srobert }
1085e5dd7070Spatrick
1086e5dd7070Spatrick LValue LHS = CGF.EmitLValue(E->getLHS());
1087e5dd7070Spatrick
1088e5dd7070Spatrick // Load from the l-value and convert it.
1089e5dd7070Spatrick SourceLocation Loc = E->getExprLoc();
1090*12c85518Srobert QualType PromotionTypeLHS = getPromotionType(E->getComputationLHSType());
1091e5dd7070Spatrick if (LHSTy->isAnyComplexType()) {
1092e5dd7070Spatrick ComplexPairTy LHSVal = EmitLoadOfLValue(LHS, Loc);
1093*12c85518Srobert if (!PromotionTypeLHS.isNull())
1094*12c85518Srobert OpInfo.LHS =
1095*12c85518Srobert EmitComplexToComplexCast(LHSVal, LHSTy, PromotionTypeLHS, Loc);
1096*12c85518Srobert else
1097e5dd7070Spatrick OpInfo.LHS = EmitComplexToComplexCast(LHSVal, LHSTy, OpInfo.Ty, Loc);
1098e5dd7070Spatrick } else {
1099e5dd7070Spatrick llvm::Value *LHSVal = CGF.EmitLoadOfScalar(LHS, Loc);
1100e5dd7070Spatrick // For floating point real operands we can directly pass the scalar form
1101e5dd7070Spatrick // to the binary operator emission and potentially get more efficient code.
1102e5dd7070Spatrick if (LHSTy->isRealFloatingType()) {
1103*12c85518Srobert QualType PromotedComplexElementTy;
1104*12c85518Srobert if (!PromotionTypeLHS.isNull()) {
1105*12c85518Srobert PromotedComplexElementTy =
1106*12c85518Srobert cast<ComplexType>(PromotionTypeLHS)->getElementType();
1107*12c85518Srobert if (!CGF.getContext().hasSameUnqualifiedType(PromotedComplexElementTy,
1108*12c85518Srobert PromotionTypeLHS))
1109*12c85518Srobert LHSVal = CGF.EmitScalarConversion(LHSVal, LHSTy,
1110*12c85518Srobert PromotedComplexElementTy, Loc);
1111*12c85518Srobert } else {
1112e5dd7070Spatrick if (!CGF.getContext().hasSameUnqualifiedType(ComplexElementTy, LHSTy))
1113*12c85518Srobert LHSVal =
1114*12c85518Srobert CGF.EmitScalarConversion(LHSVal, LHSTy, ComplexElementTy, Loc);
1115*12c85518Srobert }
1116e5dd7070Spatrick OpInfo.LHS = ComplexPairTy(LHSVal, nullptr);
1117e5dd7070Spatrick } else {
1118e5dd7070Spatrick OpInfo.LHS = EmitScalarToComplexCast(LHSVal, LHSTy, OpInfo.Ty, Loc);
1119e5dd7070Spatrick }
1120e5dd7070Spatrick }
1121e5dd7070Spatrick
1122e5dd7070Spatrick // Expand the binary operator.
1123e5dd7070Spatrick ComplexPairTy Result = (this->*Func)(OpInfo);
1124e5dd7070Spatrick
1125e5dd7070Spatrick // Truncate the result and store it into the LHS lvalue.
1126e5dd7070Spatrick if (LHSTy->isAnyComplexType()) {
1127e5dd7070Spatrick ComplexPairTy ResVal =
1128e5dd7070Spatrick EmitComplexToComplexCast(Result, OpInfo.Ty, LHSTy, Loc);
1129e5dd7070Spatrick EmitStoreOfComplex(ResVal, LHS, /*isInit*/ false);
1130e5dd7070Spatrick Val = RValue::getComplex(ResVal);
1131e5dd7070Spatrick } else {
1132e5dd7070Spatrick llvm::Value *ResVal =
1133e5dd7070Spatrick CGF.EmitComplexToScalarConversion(Result, OpInfo.Ty, LHSTy, Loc);
1134e5dd7070Spatrick CGF.EmitStoreOfScalar(ResVal, LHS, /*isInit*/ false);
1135e5dd7070Spatrick Val = RValue::get(ResVal);
1136e5dd7070Spatrick }
1137e5dd7070Spatrick
1138e5dd7070Spatrick return LHS;
1139e5dd7070Spatrick }
1140e5dd7070Spatrick
1141e5dd7070Spatrick // Compound assignments.
1142e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::
EmitCompoundAssign(const CompoundAssignOperator * E,ComplexPairTy (ComplexExprEmitter::* Func)(const BinOpInfo &))1143e5dd7070Spatrick EmitCompoundAssign(const CompoundAssignOperator *E,
1144e5dd7070Spatrick ComplexPairTy (ComplexExprEmitter::*Func)(const BinOpInfo&)){
1145e5dd7070Spatrick RValue Val;
1146e5dd7070Spatrick LValue LV = EmitCompoundAssignLValue(E, Func, Val);
1147e5dd7070Spatrick
1148e5dd7070Spatrick // The result of an assignment in C is the assigned r-value.
1149e5dd7070Spatrick if (!CGF.getLangOpts().CPlusPlus)
1150e5dd7070Spatrick return Val.getComplexVal();
1151e5dd7070Spatrick
1152e5dd7070Spatrick // If the lvalue is non-volatile, return the computed value of the assignment.
1153e5dd7070Spatrick if (!LV.isVolatileQualified())
1154e5dd7070Spatrick return Val.getComplexVal();
1155e5dd7070Spatrick
1156e5dd7070Spatrick return EmitLoadOfLValue(LV, E->getExprLoc());
1157e5dd7070Spatrick }
1158e5dd7070Spatrick
EmitBinAssignLValue(const BinaryOperator * E,ComplexPairTy & Val)1159e5dd7070Spatrick LValue ComplexExprEmitter::EmitBinAssignLValue(const BinaryOperator *E,
1160e5dd7070Spatrick ComplexPairTy &Val) {
1161e5dd7070Spatrick assert(CGF.getContext().hasSameUnqualifiedType(E->getLHS()->getType(),
1162e5dd7070Spatrick E->getRHS()->getType()) &&
1163e5dd7070Spatrick "Invalid assignment");
1164e5dd7070Spatrick TestAndClearIgnoreReal();
1165e5dd7070Spatrick TestAndClearIgnoreImag();
1166e5dd7070Spatrick
1167e5dd7070Spatrick // Emit the RHS. __block variables need the RHS evaluated first.
1168e5dd7070Spatrick Val = Visit(E->getRHS());
1169e5dd7070Spatrick
1170e5dd7070Spatrick // Compute the address to store into.
1171e5dd7070Spatrick LValue LHS = CGF.EmitLValue(E->getLHS());
1172e5dd7070Spatrick
1173e5dd7070Spatrick // Store the result value into the LHS lvalue.
1174e5dd7070Spatrick EmitStoreOfComplex(Val, LHS, /*isInit*/ false);
1175e5dd7070Spatrick
1176e5dd7070Spatrick return LHS;
1177e5dd7070Spatrick }
1178e5dd7070Spatrick
VisitBinAssign(const BinaryOperator * E)1179e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitBinAssign(const BinaryOperator *E) {
1180e5dd7070Spatrick ComplexPairTy Val;
1181e5dd7070Spatrick LValue LV = EmitBinAssignLValue(E, Val);
1182e5dd7070Spatrick
1183e5dd7070Spatrick // The result of an assignment in C is the assigned r-value.
1184e5dd7070Spatrick if (!CGF.getLangOpts().CPlusPlus)
1185e5dd7070Spatrick return Val;
1186e5dd7070Spatrick
1187e5dd7070Spatrick // If the lvalue is non-volatile, return the computed value of the assignment.
1188e5dd7070Spatrick if (!LV.isVolatileQualified())
1189e5dd7070Spatrick return Val;
1190e5dd7070Spatrick
1191e5dd7070Spatrick return EmitLoadOfLValue(LV, E->getExprLoc());
1192e5dd7070Spatrick }
1193e5dd7070Spatrick
VisitBinComma(const BinaryOperator * E)1194e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitBinComma(const BinaryOperator *E) {
1195e5dd7070Spatrick CGF.EmitIgnoredExpr(E->getLHS());
1196e5dd7070Spatrick return Visit(E->getRHS());
1197e5dd7070Spatrick }
1198e5dd7070Spatrick
1199e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::
VisitAbstractConditionalOperator(const AbstractConditionalOperator * E)1200e5dd7070Spatrick VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) {
1201e5dd7070Spatrick TestAndClearIgnoreReal();
1202e5dd7070Spatrick TestAndClearIgnoreImag();
1203e5dd7070Spatrick llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true");
1204e5dd7070Spatrick llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false");
1205e5dd7070Spatrick llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end");
1206e5dd7070Spatrick
1207e5dd7070Spatrick // Bind the common expression if necessary.
1208e5dd7070Spatrick CodeGenFunction::OpaqueValueMapping binding(CGF, E);
1209e5dd7070Spatrick
1210e5dd7070Spatrick
1211e5dd7070Spatrick CodeGenFunction::ConditionalEvaluation eval(CGF);
1212e5dd7070Spatrick CGF.EmitBranchOnBoolExpr(E->getCond(), LHSBlock, RHSBlock,
1213e5dd7070Spatrick CGF.getProfileCount(E));
1214e5dd7070Spatrick
1215e5dd7070Spatrick eval.begin(CGF);
1216e5dd7070Spatrick CGF.EmitBlock(LHSBlock);
1217e5dd7070Spatrick CGF.incrementProfileCounter(E);
1218e5dd7070Spatrick ComplexPairTy LHS = Visit(E->getTrueExpr());
1219e5dd7070Spatrick LHSBlock = Builder.GetInsertBlock();
1220e5dd7070Spatrick CGF.EmitBranch(ContBlock);
1221e5dd7070Spatrick eval.end(CGF);
1222e5dd7070Spatrick
1223e5dd7070Spatrick eval.begin(CGF);
1224e5dd7070Spatrick CGF.EmitBlock(RHSBlock);
1225e5dd7070Spatrick ComplexPairTy RHS = Visit(E->getFalseExpr());
1226e5dd7070Spatrick RHSBlock = Builder.GetInsertBlock();
1227e5dd7070Spatrick CGF.EmitBlock(ContBlock);
1228e5dd7070Spatrick eval.end(CGF);
1229e5dd7070Spatrick
1230e5dd7070Spatrick // Create a PHI node for the real part.
1231e5dd7070Spatrick llvm::PHINode *RealPN = Builder.CreatePHI(LHS.first->getType(), 2, "cond.r");
1232e5dd7070Spatrick RealPN->addIncoming(LHS.first, LHSBlock);
1233e5dd7070Spatrick RealPN->addIncoming(RHS.first, RHSBlock);
1234e5dd7070Spatrick
1235e5dd7070Spatrick // Create a PHI node for the imaginary part.
1236e5dd7070Spatrick llvm::PHINode *ImagPN = Builder.CreatePHI(LHS.first->getType(), 2, "cond.i");
1237e5dd7070Spatrick ImagPN->addIncoming(LHS.second, LHSBlock);
1238e5dd7070Spatrick ImagPN->addIncoming(RHS.second, RHSBlock);
1239e5dd7070Spatrick
1240e5dd7070Spatrick return ComplexPairTy(RealPN, ImagPN);
1241e5dd7070Spatrick }
1242e5dd7070Spatrick
VisitChooseExpr(ChooseExpr * E)1243e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitChooseExpr(ChooseExpr *E) {
1244e5dd7070Spatrick return Visit(E->getChosenSubExpr());
1245e5dd7070Spatrick }
1246e5dd7070Spatrick
VisitInitListExpr(InitListExpr * E)1247e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitInitListExpr(InitListExpr *E) {
1248e5dd7070Spatrick bool Ignore = TestAndClearIgnoreReal();
1249e5dd7070Spatrick (void)Ignore;
1250e5dd7070Spatrick assert (Ignore == false && "init list ignored");
1251e5dd7070Spatrick Ignore = TestAndClearIgnoreImag();
1252e5dd7070Spatrick (void)Ignore;
1253e5dd7070Spatrick assert (Ignore == false && "init list ignored");
1254e5dd7070Spatrick
1255e5dd7070Spatrick if (E->getNumInits() == 2) {
1256e5dd7070Spatrick llvm::Value *Real = CGF.EmitScalarExpr(E->getInit(0));
1257e5dd7070Spatrick llvm::Value *Imag = CGF.EmitScalarExpr(E->getInit(1));
1258e5dd7070Spatrick return ComplexPairTy(Real, Imag);
1259e5dd7070Spatrick } else if (E->getNumInits() == 1) {
1260e5dd7070Spatrick return Visit(E->getInit(0));
1261e5dd7070Spatrick }
1262e5dd7070Spatrick
1263e5dd7070Spatrick // Empty init list initializes to null
1264e5dd7070Spatrick assert(E->getNumInits() == 0 && "Unexpected number of inits");
1265e5dd7070Spatrick QualType Ty = E->getType()->castAs<ComplexType>()->getElementType();
1266e5dd7070Spatrick llvm::Type* LTy = CGF.ConvertType(Ty);
1267e5dd7070Spatrick llvm::Value* zeroConstant = llvm::Constant::getNullValue(LTy);
1268e5dd7070Spatrick return ComplexPairTy(zeroConstant, zeroConstant);
1269e5dd7070Spatrick }
1270e5dd7070Spatrick
VisitVAArgExpr(VAArgExpr * E)1271e5dd7070Spatrick ComplexPairTy ComplexExprEmitter::VisitVAArgExpr(VAArgExpr *E) {
1272e5dd7070Spatrick Address ArgValue = Address::invalid();
1273e5dd7070Spatrick Address ArgPtr = CGF.EmitVAArg(E, ArgValue);
1274e5dd7070Spatrick
1275e5dd7070Spatrick if (!ArgPtr.isValid()) {
1276e5dd7070Spatrick CGF.ErrorUnsupported(E, "complex va_arg expression");
1277e5dd7070Spatrick llvm::Type *EltTy =
1278e5dd7070Spatrick CGF.ConvertType(E->getType()->castAs<ComplexType>()->getElementType());
1279e5dd7070Spatrick llvm::Value *U = llvm::UndefValue::get(EltTy);
1280e5dd7070Spatrick return ComplexPairTy(U, U);
1281e5dd7070Spatrick }
1282e5dd7070Spatrick
1283e5dd7070Spatrick return EmitLoadOfLValue(CGF.MakeAddrLValue(ArgPtr, E->getType()),
1284e5dd7070Spatrick E->getExprLoc());
1285e5dd7070Spatrick }
1286e5dd7070Spatrick
1287e5dd7070Spatrick //===----------------------------------------------------------------------===//
1288e5dd7070Spatrick // Entry Point into this File
1289e5dd7070Spatrick //===----------------------------------------------------------------------===//
1290e5dd7070Spatrick
1291e5dd7070Spatrick /// EmitComplexExpr - Emit the computation of the specified expression of
1292e5dd7070Spatrick /// complex type, ignoring the result.
EmitComplexExpr(const Expr * E,bool IgnoreReal,bool IgnoreImag)1293e5dd7070Spatrick ComplexPairTy CodeGenFunction::EmitComplexExpr(const Expr *E, bool IgnoreReal,
1294e5dd7070Spatrick bool IgnoreImag) {
1295e5dd7070Spatrick assert(E && getComplexType(E->getType()) &&
1296e5dd7070Spatrick "Invalid complex expression to emit");
1297e5dd7070Spatrick
1298e5dd7070Spatrick return ComplexExprEmitter(*this, IgnoreReal, IgnoreImag)
1299e5dd7070Spatrick .Visit(const_cast<Expr *>(E));
1300e5dd7070Spatrick }
1301e5dd7070Spatrick
EmitComplexExprIntoLValue(const Expr * E,LValue dest,bool isInit)1302e5dd7070Spatrick void CodeGenFunction::EmitComplexExprIntoLValue(const Expr *E, LValue dest,
1303e5dd7070Spatrick bool isInit) {
1304e5dd7070Spatrick assert(E && getComplexType(E->getType()) &&
1305e5dd7070Spatrick "Invalid complex expression to emit");
1306e5dd7070Spatrick ComplexExprEmitter Emitter(*this);
1307e5dd7070Spatrick ComplexPairTy Val = Emitter.Visit(const_cast<Expr*>(E));
1308e5dd7070Spatrick Emitter.EmitStoreOfComplex(Val, dest, isInit);
1309e5dd7070Spatrick }
1310e5dd7070Spatrick
1311e5dd7070Spatrick /// EmitStoreOfComplex - Store a complex number into the specified l-value.
EmitStoreOfComplex(ComplexPairTy V,LValue dest,bool isInit)1312e5dd7070Spatrick void CodeGenFunction::EmitStoreOfComplex(ComplexPairTy V, LValue dest,
1313e5dd7070Spatrick bool isInit) {
1314e5dd7070Spatrick ComplexExprEmitter(*this).EmitStoreOfComplex(V, dest, isInit);
1315e5dd7070Spatrick }
1316e5dd7070Spatrick
1317e5dd7070Spatrick /// EmitLoadOfComplex - Load a complex number from the specified address.
EmitLoadOfComplex(LValue src,SourceLocation loc)1318e5dd7070Spatrick ComplexPairTy CodeGenFunction::EmitLoadOfComplex(LValue src,
1319e5dd7070Spatrick SourceLocation loc) {
1320e5dd7070Spatrick return ComplexExprEmitter(*this).EmitLoadOfLValue(src, loc);
1321e5dd7070Spatrick }
1322e5dd7070Spatrick
EmitComplexAssignmentLValue(const BinaryOperator * E)1323e5dd7070Spatrick LValue CodeGenFunction::EmitComplexAssignmentLValue(const BinaryOperator *E) {
1324e5dd7070Spatrick assert(E->getOpcode() == BO_Assign);
1325e5dd7070Spatrick ComplexPairTy Val; // ignored
1326e5dd7070Spatrick LValue LVal = ComplexExprEmitter(*this).EmitBinAssignLValue(E, Val);
1327e5dd7070Spatrick if (getLangOpts().OpenMP)
1328e5dd7070Spatrick CGM.getOpenMPRuntime().checkAndEmitLastprivateConditional(*this,
1329e5dd7070Spatrick E->getLHS());
1330e5dd7070Spatrick return LVal;
1331e5dd7070Spatrick }
1332e5dd7070Spatrick
1333e5dd7070Spatrick typedef ComplexPairTy (ComplexExprEmitter::*CompoundFunc)(
1334e5dd7070Spatrick const ComplexExprEmitter::BinOpInfo &);
1335e5dd7070Spatrick
getComplexOp(BinaryOperatorKind Op)1336e5dd7070Spatrick static CompoundFunc getComplexOp(BinaryOperatorKind Op) {
1337e5dd7070Spatrick switch (Op) {
1338e5dd7070Spatrick case BO_MulAssign: return &ComplexExprEmitter::EmitBinMul;
1339e5dd7070Spatrick case BO_DivAssign: return &ComplexExprEmitter::EmitBinDiv;
1340e5dd7070Spatrick case BO_SubAssign: return &ComplexExprEmitter::EmitBinSub;
1341e5dd7070Spatrick case BO_AddAssign: return &ComplexExprEmitter::EmitBinAdd;
1342e5dd7070Spatrick default:
1343e5dd7070Spatrick llvm_unreachable("unexpected complex compound assignment");
1344e5dd7070Spatrick }
1345e5dd7070Spatrick }
1346e5dd7070Spatrick
1347e5dd7070Spatrick LValue CodeGenFunction::
EmitComplexCompoundAssignmentLValue(const CompoundAssignOperator * E)1348e5dd7070Spatrick EmitComplexCompoundAssignmentLValue(const CompoundAssignOperator *E) {
1349e5dd7070Spatrick CompoundFunc Op = getComplexOp(E->getOpcode());
1350e5dd7070Spatrick RValue Val;
1351e5dd7070Spatrick return ComplexExprEmitter(*this).EmitCompoundAssignLValue(E, Op, Val);
1352e5dd7070Spatrick }
1353e5dd7070Spatrick
1354e5dd7070Spatrick LValue CodeGenFunction::
EmitScalarCompoundAssignWithComplex(const CompoundAssignOperator * E,llvm::Value * & Result)1355e5dd7070Spatrick EmitScalarCompoundAssignWithComplex(const CompoundAssignOperator *E,
1356e5dd7070Spatrick llvm::Value *&Result) {
1357e5dd7070Spatrick CompoundFunc Op = getComplexOp(E->getOpcode());
1358e5dd7070Spatrick RValue Val;
1359e5dd7070Spatrick LValue Ret = ComplexExprEmitter(*this).EmitCompoundAssignLValue(E, Op, Val);
1360e5dd7070Spatrick Result = Val.getScalarVal();
1361e5dd7070Spatrick return Ret;
1362e5dd7070Spatrick }
1363