clang 22.0.0git
CIRBaseBuilder.h
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1//===----------------------------------------------------------------------===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8
9#ifndef LLVM_CLANG_CIR_DIALECT_BUILDER_CIRBASEBUILDER_H
10#define LLVM_CLANG_CIR_DIALECT_BUILDER_CIRBASEBUILDER_H
11
12#include "clang/AST/CharUnits.h"
18#include "llvm/ADT/STLForwardCompat.h"
19#include "llvm/Support/ErrorHandling.h"
20
21#include "mlir/IR/Builders.h"
22#include "mlir/IR/BuiltinAttributes.h"
23#include "mlir/IR/Location.h"
24#include "mlir/IR/Types.h"
25
26namespace cir {
27
28enum class OverflowBehavior {
29 None = 0,
30 NoSignedWrap = 1 << 0,
32 Saturated = 1 << 2,
33};
34
36 return static_cast<OverflowBehavior>(llvm::to_underlying(a) |
37 llvm::to_underlying(b));
38}
39
41 return static_cast<OverflowBehavior>(llvm::to_underlying(a) &
42 llvm::to_underlying(b));
43}
44
47 a = a | b;
48 return a;
49}
50
53 a = a & b;
54 return a;
55}
56
57class CIRBaseBuilderTy : public mlir::OpBuilder {
58
59public:
60 CIRBaseBuilderTy(mlir::MLIRContext &mlirContext)
61 : mlir::OpBuilder(&mlirContext) {}
62 CIRBaseBuilderTy(mlir::OpBuilder &builder) : mlir::OpBuilder(builder) {}
63
64 mlir::Value getConstAPInt(mlir::Location loc, mlir::Type typ,
65 const llvm::APInt &val) {
66 return cir::ConstantOp::create(*this, loc, cir::IntAttr::get(typ, val));
67 }
68
69 cir::ConstantOp getConstant(mlir::Location loc, mlir::TypedAttr attr) {
70 return cir::ConstantOp::create(*this, loc, attr);
71 }
72
73 cir::ConstantOp getConstantInt(mlir::Location loc, mlir::Type ty,
74 int64_t value) {
75 return getConstant(loc, cir::IntAttr::get(ty, value));
76 }
77
78 mlir::Value getSignedInt(mlir::Location loc, int64_t val, unsigned numBits) {
79 auto type = cir::IntType::get(getContext(), numBits, /*isSigned=*/true);
80 return getConstAPInt(loc, type,
81 llvm::APInt(numBits, val, /*isSigned=*/true));
82 }
83
84 mlir::Value getUnsignedInt(mlir::Location loc, uint64_t val,
85 unsigned numBits) {
86 auto type = cir::IntType::get(getContext(), numBits, /*isSigned=*/false);
87 return getConstAPInt(loc, type, llvm::APInt(numBits, val));
88 }
89
90 // Creates constant null value for integral type ty.
91 cir::ConstantOp getNullValue(mlir::Type ty, mlir::Location loc) {
92 return getConstant(loc, getZeroInitAttr(ty));
93 }
94
95 mlir::TypedAttr getConstNullPtrAttr(mlir::Type t) {
96 assert(mlir::isa<cir::PointerType>(t) && "expected cir.ptr");
97 return getConstPtrAttr(t, 0);
98 }
99
100 mlir::TypedAttr getNullDataMemberAttr(cir::DataMemberType ty) {
101 return cir::DataMemberAttr::get(ty);
102 }
103
104 mlir::TypedAttr getZeroInitAttr(mlir::Type ty) {
105 if (mlir::isa<cir::IntType>(ty))
106 return cir::IntAttr::get(ty, 0);
107 if (cir::isAnyFloatingPointType(ty))
108 return cir::FPAttr::getZero(ty);
109 if (auto complexType = mlir::dyn_cast<cir::ComplexType>(ty))
110 return cir::ZeroAttr::get(complexType);
111 if (auto arrTy = mlir::dyn_cast<cir::ArrayType>(ty))
112 return cir::ZeroAttr::get(arrTy);
113 if (auto vecTy = mlir::dyn_cast<cir::VectorType>(ty))
114 return cir::ZeroAttr::get(vecTy);
115 if (auto ptrTy = mlir::dyn_cast<cir::PointerType>(ty))
116 return getConstNullPtrAttr(ptrTy);
117 if (auto recordTy = mlir::dyn_cast<cir::RecordType>(ty))
118 return cir::ZeroAttr::get(recordTy);
119 if (auto dataMemberTy = mlir::dyn_cast<cir::DataMemberType>(ty))
120 return getNullDataMemberAttr(dataMemberTy);
121 if (mlir::isa<cir::BoolType>(ty)) {
122 return getFalseAttr();
123 }
124 llvm_unreachable("Zero initializer for given type is NYI");
125 }
126
127 cir::ConstantOp getBool(bool state, mlir::Location loc) {
128 return cir::ConstantOp::create(*this, loc, getCIRBoolAttr(state));
129 }
130 cir::ConstantOp getFalse(mlir::Location loc) { return getBool(false, loc); }
131 cir::ConstantOp getTrue(mlir::Location loc) { return getBool(true, loc); }
132
133 cir::BoolType getBoolTy() { return cir::BoolType::get(getContext()); }
134 cir::VoidType getVoidTy() { return cir::VoidType::get(getContext()); }
135
136 cir::IntType getUIntNTy(int n) {
137 return cir::IntType::get(getContext(), n, false);
138 }
139
140 static unsigned getCIRIntOrFloatBitWidth(mlir::Type eltTy) {
141 if (auto intType = mlir::dyn_cast<cir::IntTypeInterface>(eltTy))
142 return intType.getWidth();
143 if (auto floatType = mlir::dyn_cast<cir::FPTypeInterface>(eltTy))
144 return floatType.getWidth();
145
146 llvm_unreachable("Unsupported type in getCIRIntOrFloatBitWidth");
147 }
148 cir::IntType getSIntNTy(int n) {
149 return cir::IntType::get(getContext(), n, true);
150 }
151
152 cir::PointerType getPointerTo(mlir::Type ty) {
153 return cir::PointerType::get(ty);
154 }
155
156 cir::PointerType getPointerTo(mlir::Type ty, cir::TargetAddressSpaceAttr as) {
157 return cir::PointerType::get(ty, as);
158 }
159
160 cir::PointerType getPointerTo(mlir::Type ty, clang::LangAS langAS) {
161 if (langAS == clang::LangAS::Default) // Default address space.
162 return getPointerTo(ty);
163
164 if (clang::isTargetAddressSpace(langAS)) {
165 unsigned addrSpace = clang::toTargetAddressSpace(langAS);
166 auto asAttr = cir::TargetAddressSpaceAttr::get(
167 getContext(), getUI32IntegerAttr(addrSpace));
168 return getPointerTo(ty, asAttr);
169 }
170
171 llvm_unreachable("language-specific address spaces NYI");
172 }
173
175 return getPointerTo(cir::VoidType::get(getContext()), langAS);
176 }
177
178 cir::PointerType getVoidPtrTy(cir::TargetAddressSpaceAttr as) {
179 return getPointerTo(cir::VoidType::get(getContext()), as);
180 }
181
182 cir::BoolAttr getCIRBoolAttr(bool state) {
183 return cir::BoolAttr::get(getContext(), state);
184 }
185
186 cir::BoolAttr getTrueAttr() { return getCIRBoolAttr(true); }
187 cir::BoolAttr getFalseAttr() { return getCIRBoolAttr(false); }
188
189 mlir::Value createComplexCreate(mlir::Location loc, mlir::Value real,
190 mlir::Value imag) {
191 auto resultComplexTy = cir::ComplexType::get(real.getType());
192 return cir::ComplexCreateOp::create(*this, loc, resultComplexTy, real,
193 imag);
194 }
195
196 mlir::Value createComplexReal(mlir::Location loc, mlir::Value operand) {
197 auto resultType = operand.getType();
198 if (auto complexResultType = mlir::dyn_cast<cir::ComplexType>(resultType))
199 resultType = complexResultType.getElementType();
200 return cir::ComplexRealOp::create(*this, loc, resultType, operand);
201 }
202
203 mlir::Value createComplexImag(mlir::Location loc, mlir::Value operand) {
204 auto resultType = operand.getType();
205 if (auto complexResultType = mlir::dyn_cast<cir::ComplexType>(resultType))
206 resultType = complexResultType.getElementType();
207 return cir::ComplexImagOp::create(*this, loc, resultType, operand);
208 }
209
210 cir::LoadOp createLoad(mlir::Location loc, mlir::Value ptr,
211 bool isVolatile = false, uint64_t alignment = 0) {
212 mlir::IntegerAttr alignmentAttr = getAlignmentAttr(alignment);
213 return cir::LoadOp::create(*this, loc, ptr, /*isDeref=*/false, isVolatile,
214 alignmentAttr, cir::SyncScopeKindAttr{},
215 cir::MemOrderAttr{});
216 }
217
218 mlir::Value createAlignedLoad(mlir::Location loc, mlir::Value ptr,
219 uint64_t alignment) {
220 return createLoad(loc, ptr, /*isVolatile=*/false, alignment);
221 }
222
223 mlir::Value createNot(mlir::Value value) {
224 return cir::UnaryOp::create(*this, value.getLoc(), value.getType(),
225 cir::UnaryOpKind::Not, value);
226 }
227
228 /// Create a do-while operation.
229 cir::DoWhileOp createDoWhile(
230 mlir::Location loc,
231 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> condBuilder,
232 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> bodyBuilder) {
233 return cir::DoWhileOp::create(*this, loc, condBuilder, bodyBuilder);
234 }
235
236 /// Create a while operation.
237 cir::WhileOp createWhile(
238 mlir::Location loc,
239 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> condBuilder,
240 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> bodyBuilder) {
241 return cir::WhileOp::create(*this, loc, condBuilder, bodyBuilder);
242 }
243
244 /// Create a for operation.
245 cir::ForOp createFor(
246 mlir::Location loc,
247 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> condBuilder,
248 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> bodyBuilder,
249 llvm::function_ref<void(mlir::OpBuilder &, mlir::Location)> stepBuilder) {
250 return cir::ForOp::create(*this, loc, condBuilder, bodyBuilder,
251 stepBuilder);
252 }
253
254 /// Create a break operation.
255 cir::BreakOp createBreak(mlir::Location loc) {
256 return cir::BreakOp::create(*this, loc);
257 }
258
259 /// Create a continue operation.
260 cir::ContinueOp createContinue(mlir::Location loc) {
261 return cir::ContinueOp::create(*this, loc);
262 }
263
264 mlir::Value createUnaryOp(mlir::Location loc, cir::UnaryOpKind kind,
265 mlir::Value operand) {
266 return cir::UnaryOp::create(*this, loc, kind, operand);
267 }
268
269 mlir::TypedAttr getConstPtrAttr(mlir::Type type, int64_t value) {
270 return cir::ConstPtrAttr::get(type, getI64IntegerAttr(value));
271 }
272
273 mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType,
274 mlir::Type type, llvm::StringRef name,
275 mlir::IntegerAttr alignment,
276 mlir::Value dynAllocSize) {
277 return cir::AllocaOp::create(*this, loc, addrType, type, name, alignment,
278 dynAllocSize);
279 }
280
281 mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType,
282 mlir::Type type, llvm::StringRef name,
283 clang::CharUnits alignment,
284 mlir::Value dynAllocSize) {
285 mlir::IntegerAttr alignmentAttr = getAlignmentAttr(alignment);
286 return createAlloca(loc, addrType, type, name, alignmentAttr, dynAllocSize);
287 }
288
289 mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType,
290 mlir::Type type, llvm::StringRef name,
291 mlir::IntegerAttr alignment) {
292 return cir::AllocaOp::create(*this, loc, addrType, type, name, alignment);
293 }
294
295 mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType,
296 mlir::Type type, llvm::StringRef name,
297 clang::CharUnits alignment) {
298 mlir::IntegerAttr alignmentAttr = getAlignmentAttr(alignment);
299 return createAlloca(loc, addrType, type, name, alignmentAttr);
300 }
301
302 /// Get constant address of a global variable as an MLIR attribute.
303 /// This wrapper infers the attribute type through the global op.
304 cir::GlobalViewAttr getGlobalViewAttr(cir::GlobalOp globalOp,
305 mlir::ArrayAttr indices = {}) {
306 cir::PointerType type = getPointerTo(globalOp.getSymType());
307 return getGlobalViewAttr(type, globalOp, indices);
308 }
309
310 /// Get constant address of a global variable as an MLIR attribute.
311 cir::GlobalViewAttr getGlobalViewAttr(cir::PointerType type,
312 cir::GlobalOp globalOp,
313 mlir::ArrayAttr indices = {}) {
314 auto symbol = mlir::FlatSymbolRefAttr::get(globalOp.getSymNameAttr());
315 return cir::GlobalViewAttr::get(type, symbol, indices);
316 }
317
318 mlir::Value createGetGlobal(mlir::Location loc, cir::GlobalOp global,
319 bool threadLocal = false) {
321 return cir::GetGlobalOp::create(*this, loc,
322 getPointerTo(global.getSymType()),
323 global.getSymNameAttr(), threadLocal);
324 }
325
326 mlir::Value createGetGlobal(cir::GlobalOp global, bool threadLocal = false) {
327 return createGetGlobal(global.getLoc(), global, threadLocal);
328 }
329
330 /// Create a copy with inferred length.
331 cir::CopyOp createCopy(mlir::Value dst, mlir::Value src,
332 bool isVolatile = false) {
333 return cir::CopyOp::create(*this, dst.getLoc(), dst, src, isVolatile);
334 }
335
336 cir::StoreOp createStore(mlir::Location loc, mlir::Value val, mlir::Value dst,
337 bool isVolatile = false,
338 mlir::IntegerAttr align = {},
339 cir::SyncScopeKindAttr scope = {},
340 cir::MemOrderAttr order = {}) {
341 return cir::StoreOp::create(*this, loc, val, dst, isVolatile, align, scope,
342 order);
343 }
344
345 /// Emit a load from an boolean flag variable.
346 cir::LoadOp createFlagLoad(mlir::Location loc, mlir::Value addr) {
347 mlir::Type boolTy = getBoolTy();
348 if (boolTy != mlir::cast<cir::PointerType>(addr.getType()).getPointee())
349 addr = createPtrBitcast(addr, boolTy);
350 return createLoad(loc, addr, /*isVolatile=*/false, /*alignment=*/1);
351 }
352
353 cir::StoreOp createFlagStore(mlir::Location loc, bool val, mlir::Value dst) {
354 mlir::Value flag = getBool(val, loc);
355 return CIRBaseBuilderTy::createStore(loc, flag, dst);
356 }
357
358 [[nodiscard]] cir::GlobalOp createGlobal(mlir::ModuleOp mlirModule,
359 mlir::Location loc,
360 mlir::StringRef name,
361 mlir::Type type, bool isConstant,
362 cir::GlobalLinkageKind linkage) {
363 mlir::OpBuilder::InsertionGuard guard(*this);
364 setInsertionPointToStart(mlirModule.getBody());
365 return cir::GlobalOp::create(*this, loc, name, type, isConstant, linkage);
366 }
367
368 cir::GetMemberOp createGetMember(mlir::Location loc, mlir::Type resultTy,
369 mlir::Value base, llvm::StringRef name,
370 unsigned index) {
371 return cir::GetMemberOp::create(*this, loc, resultTy, base, name, index);
372 }
373
374 mlir::Value createDummyValue(mlir::Location loc, mlir::Type type,
375 clang::CharUnits alignment) {
376 mlir::IntegerAttr alignmentAttr = getAlignmentAttr(alignment);
377 auto addr = createAlloca(loc, getPointerTo(type), type, {}, alignmentAttr);
378 return cir::LoadOp::create(*this, loc, addr, /*isDeref=*/false,
379 /*isVolatile=*/false, alignmentAttr,
380 /*sync_scope=*/{}, /*mem_order=*/{});
381 }
382
383 cir::PtrStrideOp createPtrStride(mlir::Location loc, mlir::Value base,
384 mlir::Value stride) {
385 return cir::PtrStrideOp::create(*this, loc, base.getType(), base, stride);
386 }
387
388 //===--------------------------------------------------------------------===//
389 // Call operators
390 //===--------------------------------------------------------------------===//
391
392 cir::CallOp createCallOp(mlir::Location loc, mlir::SymbolRefAttr callee,
393 mlir::Type returnType, mlir::ValueRange operands,
395 auto op = cir::CallOp::create(*this, loc, callee, returnType, operands);
396 op->setAttrs(attrs);
397 return op;
398 }
399
400 cir::CallOp createCallOp(mlir::Location loc, cir::FuncOp callee,
401 mlir::ValueRange operands,
403 return createCallOp(loc, mlir::SymbolRefAttr::get(callee),
404 callee.getFunctionType().getReturnType(), operands,
405 attrs);
406 }
407
408 cir::CallOp
409 createIndirectCallOp(mlir::Location loc, mlir::Value indirectTarget,
410 cir::FuncType funcType, mlir::ValueRange operands,
412 llvm::SmallVector<mlir::Value> resOperands{indirectTarget};
413 resOperands.append(operands.begin(), operands.end());
414 return createCallOp(loc, mlir::SymbolRefAttr(), funcType.getReturnType(),
415 resOperands, attrs);
416 }
417
418 cir::CallOp createCallOp(mlir::Location loc, mlir::SymbolRefAttr callee,
419 mlir::ValueRange operands = mlir::ValueRange(),
421 return createCallOp(loc, callee, cir::VoidType(), operands, attrs);
422 }
423
424 //===--------------------------------------------------------------------===//
425 // Cast/Conversion Operators
426 //===--------------------------------------------------------------------===//
427
428 mlir::Value createCast(mlir::Location loc, cir::CastKind kind,
429 mlir::Value src, mlir::Type newTy) {
430 if (newTy == src.getType())
431 return src;
432 return cir::CastOp::create(*this, loc, newTy, kind, src);
433 }
434
435 mlir::Value createCast(cir::CastKind kind, mlir::Value src,
436 mlir::Type newTy) {
437 if (newTy == src.getType())
438 return src;
439 return createCast(src.getLoc(), kind, src, newTy);
440 }
441
442 mlir::Value createIntCast(mlir::Value src, mlir::Type newTy) {
443 return createCast(cir::CastKind::integral, src, newTy);
444 }
445
446 mlir::Value createIntToPtr(mlir::Value src, mlir::Type newTy) {
447 return createCast(cir::CastKind::int_to_ptr, src, newTy);
448 }
449
450 mlir::Value createPtrToInt(mlir::Value src, mlir::Type newTy) {
451 return createCast(cir::CastKind::ptr_to_int, src, newTy);
452 }
453
454 mlir::Value createPtrToBoolCast(mlir::Value v) {
455 return createCast(cir::CastKind::ptr_to_bool, v, getBoolTy());
456 }
457
458 mlir::Value createBoolToInt(mlir::Value src, mlir::Type newTy) {
459 return createCast(cir::CastKind::bool_to_int, src, newTy);
460 }
461
462 mlir::Value createBitcast(mlir::Value src, mlir::Type newTy) {
463 return createCast(cir::CastKind::bitcast, src, newTy);
464 }
465
466 mlir::Value createBitcast(mlir::Location loc, mlir::Value src,
467 mlir::Type newTy) {
468 return createCast(loc, cir::CastKind::bitcast, src, newTy);
469 }
470
471 mlir::Value createPtrBitcast(mlir::Value src, mlir::Type newPointeeTy) {
472 assert(mlir::isa<cir::PointerType>(src.getType()) && "expected ptr src");
473 return createBitcast(src, getPointerTo(newPointeeTy));
474 }
475
476 mlir::Value createPtrIsNull(mlir::Value ptr) {
477 mlir::Value nullPtr = getNullPtr(ptr.getType(), ptr.getLoc());
478 return createCompare(ptr.getLoc(), cir::CmpOpKind::eq, ptr, nullPtr);
479 }
480
481 mlir::Value createAddrSpaceCast(mlir::Location loc, mlir::Value src,
482 mlir::Type newTy) {
483 return createCast(loc, cir::CastKind::address_space, src, newTy);
484 }
485
486 mlir::Value createAddrSpaceCast(mlir::Value src, mlir::Type newTy) {
487 return createAddrSpaceCast(src.getLoc(), src, newTy);
488 }
489
490 //===--------------------------------------------------------------------===//
491 // Binary Operators
492 //===--------------------------------------------------------------------===//
493
494 mlir::Value createBinop(mlir::Location loc, mlir::Value lhs,
495 cir::BinOpKind kind, mlir::Value rhs) {
496 return cir::BinOp::create(*this, loc, lhs.getType(), kind, lhs, rhs);
497 }
498
499 mlir::Value createLowBitsSet(mlir::Location loc, unsigned size,
500 unsigned bits) {
501 llvm::APInt val = llvm::APInt::getLowBitsSet(size, bits);
502 auto type = cir::IntType::get(getContext(), size, /*isSigned=*/false);
503 return getConstAPInt(loc, type, val);
504 }
505
506 mlir::Value createAnd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs) {
507 return createBinop(loc, lhs, cir::BinOpKind::And, rhs);
508 }
509
510 mlir::Value createOr(mlir::Location loc, mlir::Value lhs, mlir::Value rhs) {
511 return createBinop(loc, lhs, cir::BinOpKind::Or, rhs);
512 }
513
514 mlir::Value createSelect(mlir::Location loc, mlir::Value condition,
515 mlir::Value trueValue, mlir::Value falseValue) {
516 assert(trueValue.getType() == falseValue.getType() &&
517 "trueValue and falseValue should have the same type");
518 return cir::SelectOp::create(*this, loc, trueValue.getType(), condition,
519 trueValue, falseValue);
520 }
521
522 mlir::Value createLogicalAnd(mlir::Location loc, mlir::Value lhs,
523 mlir::Value rhs) {
524 return createSelect(loc, lhs, rhs, getBool(false, loc));
525 }
526
527 mlir::Value createLogicalOr(mlir::Location loc, mlir::Value lhs,
528 mlir::Value rhs) {
529 return createSelect(loc, lhs, getBool(true, loc), rhs);
530 }
531
532 mlir::Value createMul(mlir::Location loc, mlir::Value lhs, mlir::Value rhs,
534 auto op = cir::BinOp::create(*this, loc, lhs.getType(), cir::BinOpKind::Mul,
535 lhs, rhs);
536 op.setNoUnsignedWrap(
537 llvm::to_underlying(ob & OverflowBehavior::NoUnsignedWrap));
538 op.setNoSignedWrap(
539 llvm::to_underlying(ob & OverflowBehavior::NoSignedWrap));
540 return op;
541 }
542 mlir::Value createNSWMul(mlir::Location loc, mlir::Value lhs,
543 mlir::Value rhs) {
544 return createMul(loc, lhs, rhs, OverflowBehavior::NoSignedWrap);
545 }
546 mlir::Value createNUWAMul(mlir::Location loc, mlir::Value lhs,
547 mlir::Value rhs) {
548 return createMul(loc, lhs, rhs, OverflowBehavior::NoUnsignedWrap);
549 }
550
551 mlir::Value createSub(mlir::Location loc, mlir::Value lhs, mlir::Value rhs,
553 auto op = cir::BinOp::create(*this, loc, lhs.getType(), cir::BinOpKind::Sub,
554 lhs, rhs);
555 op.setNoUnsignedWrap(
556 llvm::to_underlying(ob & OverflowBehavior::NoUnsignedWrap));
557 op.setNoSignedWrap(
558 llvm::to_underlying(ob & OverflowBehavior::NoSignedWrap));
559 op.setSaturated(llvm::to_underlying(ob & OverflowBehavior::Saturated));
560 return op;
561 }
562
563 mlir::Value createNSWSub(mlir::Location loc, mlir::Value lhs,
564 mlir::Value rhs) {
565 return createSub(loc, lhs, rhs, OverflowBehavior::NoSignedWrap);
566 }
567
568 mlir::Value createNUWSub(mlir::Location loc, mlir::Value lhs,
569 mlir::Value rhs) {
570 return createSub(loc, lhs, rhs, OverflowBehavior::NoUnsignedWrap);
571 }
572
573 mlir::Value createAdd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs,
575 auto op = cir::BinOp::create(*this, loc, lhs.getType(), cir::BinOpKind::Add,
576 lhs, rhs);
577 op.setNoUnsignedWrap(
578 llvm::to_underlying(ob & OverflowBehavior::NoUnsignedWrap));
579 op.setNoSignedWrap(
580 llvm::to_underlying(ob & OverflowBehavior::NoSignedWrap));
581 op.setSaturated(llvm::to_underlying(ob & OverflowBehavior::Saturated));
582 return op;
583 }
584
585 mlir::Value createNSWAdd(mlir::Location loc, mlir::Value lhs,
586 mlir::Value rhs) {
587 return createAdd(loc, lhs, rhs, OverflowBehavior::NoSignedWrap);
588 }
589
590 mlir::Value createNUWAdd(mlir::Location loc, mlir::Value lhs,
591 mlir::Value rhs) {
592 return createAdd(loc, lhs, rhs, OverflowBehavior::NoUnsignedWrap);
593 }
594
595 cir::CmpOp createCompare(mlir::Location loc, cir::CmpOpKind kind,
596 mlir::Value lhs, mlir::Value rhs) {
597 return cir::CmpOp::create(*this, loc, kind, lhs, rhs);
598 }
599
600 cir::VecCmpOp createVecCompare(mlir::Location loc, cir::CmpOpKind kind,
601 mlir::Value lhs, mlir::Value rhs) {
602 VectorType vecCast = mlir::cast<VectorType>(lhs.getType());
603 IntType integralTy =
604 getSIntNTy(getCIRIntOrFloatBitWidth(vecCast.getElementType()));
605 VectorType integralVecTy =
606 cir::VectorType::get(integralTy, vecCast.getSize());
607 return cir::VecCmpOp::create(*this, loc, integralVecTy, kind, lhs, rhs);
608 }
609
610 mlir::Value createIsNaN(mlir::Location loc, mlir::Value operand) {
611 return createCompare(loc, cir::CmpOpKind::ne, operand, operand);
612 }
613
614 mlir::Value createShift(mlir::Location loc, mlir::Value lhs, mlir::Value rhs,
615 bool isShiftLeft) {
616 return cir::ShiftOp::create(*this, loc, lhs.getType(), lhs, rhs,
617 isShiftLeft);
618 }
619
620 mlir::Value createShift(mlir::Location loc, mlir::Value lhs,
621 const llvm::APInt &rhs, bool isShiftLeft) {
622 return createShift(loc, lhs, getConstAPInt(loc, lhs.getType(), rhs),
623 isShiftLeft);
624 }
625
626 mlir::Value createShift(mlir::Location loc, mlir::Value lhs, unsigned bits,
627 bool isShiftLeft) {
628 auto width = mlir::dyn_cast<cir::IntType>(lhs.getType()).getWidth();
629 auto shift = llvm::APInt(width, bits);
630 return createShift(loc, lhs, shift, isShiftLeft);
631 }
632
633 mlir::Value createShiftLeft(mlir::Location loc, mlir::Value lhs,
634 unsigned bits) {
635 return createShift(loc, lhs, bits, true);
636 }
637
638 mlir::Value createShiftRight(mlir::Location loc, mlir::Value lhs,
639 unsigned bits) {
640 return createShift(loc, lhs, bits, false);
641 }
642
643 mlir::Value createShiftLeft(mlir::Location loc, mlir::Value lhs,
644 mlir::Value rhs) {
645 return createShift(loc, lhs, rhs, true);
646 }
647
648 mlir::Value createShiftRight(mlir::Location loc, mlir::Value lhs,
649 mlir::Value rhs) {
650 return createShift(loc, lhs, rhs, false);
651 }
652
653 //
654 // Block handling helpers
655 // ----------------------
656 //
657 static OpBuilder::InsertPoint getBestAllocaInsertPoint(mlir::Block *block) {
658 auto last =
659 std::find_if(block->rbegin(), block->rend(), [](mlir::Operation &op) {
660 return mlir::isa<cir::AllocaOp, cir::LabelOp>(&op);
661 });
662
663 if (last != block->rend())
664 return OpBuilder::InsertPoint(block, ++mlir::Block::iterator(&*last));
665 return OpBuilder::InsertPoint(block, block->begin());
666 };
667
668 //
669 // Alignment and size helpers
670 //
671
672 // Note that mlir::IntegerType is used instead of cir::IntType here because we
673 // don't need sign information for these to be useful, so keep it simple.
674
675 // For 0 alignment, any overload of `getAlignmentAttr` returns an empty
676 // attribute.
677 mlir::IntegerAttr getAlignmentAttr(clang::CharUnits alignment) {
678 return getAlignmentAttr(alignment.getQuantity());
679 }
680
681 mlir::IntegerAttr getAlignmentAttr(llvm::Align alignment) {
682 return getAlignmentAttr(alignment.value());
683 }
684
685 mlir::IntegerAttr getAlignmentAttr(int64_t alignment) {
686 return alignment ? getI64IntegerAttr(alignment) : mlir::IntegerAttr();
687 }
688
689 mlir::IntegerAttr getSizeFromCharUnits(clang::CharUnits size) {
690 return getI64IntegerAttr(size.getQuantity());
691 }
692
693 // Creates constant nullptr for pointer type ty.
694 cir::ConstantOp getNullPtr(mlir::Type ty, mlir::Location loc) {
696 return cir::ConstantOp::create(*this, loc, getConstPtrAttr(ty, 0));
697 }
698
699 /// Create a loop condition.
700 cir::ConditionOp createCondition(mlir::Value condition) {
701 return cir::ConditionOp::create(*this, condition.getLoc(), condition);
702 }
703
704 /// Create a yield operation.
705 cir::YieldOp createYield(mlir::Location loc, mlir::ValueRange value = {}) {
706 return cir::YieldOp::create(*this, loc, value);
707 }
708};
709
710} // namespace cir
711
712#endif
Provides definitions for the various language-specific address spaces.
__device__ __2f16 b
mlir::Value createNSWSub(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::ConstantOp getBool(bool state, mlir::Location loc)
mlir::Value createShift(mlir::Location loc, mlir::Value lhs, unsigned bits, bool isShiftLeft)
cir::StoreOp createFlagStore(mlir::Location loc, bool val, mlir::Value dst)
cir::WhileOp createWhile(mlir::Location loc, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> condBuilder, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> bodyBuilder)
Create a while operation.
cir::BreakOp createBreak(mlir::Location loc)
Create a break operation.
mlir::TypedAttr getConstNullPtrAttr(mlir::Type t)
mlir::IntegerAttr getAlignmentAttr(int64_t alignment)
mlir::Value createShift(mlir::Location loc, mlir::Value lhs, const llvm::APInt &rhs, bool isShiftLeft)
mlir::Value getConstAPInt(mlir::Location loc, mlir::Type typ, const llvm::APInt &val)
cir::GlobalViewAttr getGlobalViewAttr(cir::PointerType type, cir::GlobalOp globalOp, mlir::ArrayAttr indices={})
Get constant address of a global variable as an MLIR attribute.
mlir::Value createCast(cir::CastKind kind, mlir::Value src, mlir::Type newTy)
mlir::Value createLogicalOr(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createShift(mlir::Location loc, mlir::Value lhs, mlir::Value rhs, bool isShiftLeft)
cir::ConditionOp createCondition(mlir::Value condition)
Create a loop condition.
mlir::Value createLowBitsSet(mlir::Location loc, unsigned size, unsigned bits)
mlir::Value createNSWAdd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createGetGlobal(cir::GlobalOp global, bool threadLocal=false)
cir::GlobalViewAttr getGlobalViewAttr(cir::GlobalOp globalOp, mlir::ArrayAttr indices={})
Get constant address of a global variable as an MLIR attribute.
cir::VoidType getVoidTy()
cir::CallOp createCallOp(mlir::Location loc, mlir::SymbolRefAttr callee, mlir::ValueRange operands=mlir::ValueRange(), llvm::ArrayRef< mlir::NamedAttribute > attrs={})
cir::ConstantOp getNullValue(mlir::Type ty, mlir::Location loc)
cir::BoolAttr getCIRBoolAttr(bool state)
mlir::Value createBoolToInt(mlir::Value src, mlir::Type newTy)
cir::ConstantOp getConstant(mlir::Location loc, mlir::TypedAttr attr)
mlir::Value createNUWAdd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createOr(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createPtrIsNull(mlir::Value ptr)
mlir::Value createShiftLeft(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createCast(mlir::Location loc, cir::CastKind kind, mlir::Value src, mlir::Type newTy)
mlir::IntegerAttr getSizeFromCharUnits(clang::CharUnits size)
cir::PtrStrideOp createPtrStride(mlir::Location loc, mlir::Value base, mlir::Value stride)
mlir::Value createIntToPtr(mlir::Value src, mlir::Type newTy)
cir::CallOp createCallOp(mlir::Location loc, cir::FuncOp callee, mlir::ValueRange operands, llvm::ArrayRef< mlir::NamedAttribute > attrs={})
cir::ForOp createFor(mlir::Location loc, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> condBuilder, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> bodyBuilder, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> stepBuilder)
Create a for operation.
static OpBuilder::InsertPoint getBestAllocaInsertPoint(mlir::Block *block)
mlir::Value createPtrToInt(mlir::Value src, mlir::Type newTy)
mlir::Value createNUWSub(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::ConstantOp getFalse(mlir::Location loc)
mlir::Value createAdd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs, OverflowBehavior ob=OverflowBehavior::None)
cir::GetMemberOp createGetMember(mlir::Location loc, mlir::Type resultTy, mlir::Value base, llvm::StringRef name, unsigned index)
cir::PointerType getPointerTo(mlir::Type ty)
mlir::Value createNot(mlir::Value value)
mlir::Value createComplexImag(mlir::Location loc, mlir::Value operand)
cir::ConstantOp getTrue(mlir::Location loc)
mlir::Value createNSWMul(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::ConstantOp getNullPtr(mlir::Type ty, mlir::Location loc)
cir::IntType getUIntNTy(int n)
cir::PointerType getVoidPtrTy(cir::TargetAddressSpaceAttr as)
cir::DoWhileOp createDoWhile(mlir::Location loc, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> condBuilder, llvm::function_ref< void(mlir::OpBuilder &, mlir::Location)> bodyBuilder)
Create a do-while operation.
mlir::Value createNUWAMul(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::CopyOp createCopy(mlir::Value dst, mlir::Value src, bool isVolatile=false)
Create a copy with inferred length.
cir::CallOp createCallOp(mlir::Location loc, mlir::SymbolRefAttr callee, mlir::Type returnType, mlir::ValueRange operands, llvm::ArrayRef< mlir::NamedAttribute > attrs={})
mlir::Value createPtrBitcast(mlir::Value src, mlir::Type newPointeeTy)
mlir::Value createShiftLeft(mlir::Location loc, mlir::Value lhs, unsigned bits)
mlir::Value createSub(mlir::Location loc, mlir::Value lhs, mlir::Value rhs, OverflowBehavior ob=OverflowBehavior::Saturated)
mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType, mlir::Type type, llvm::StringRef name, clang::CharUnits alignment, mlir::Value dynAllocSize)
mlir::Value getSignedInt(mlir::Location loc, int64_t val, unsigned numBits)
mlir::Value createAnd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::PointerType getPointerTo(mlir::Type ty, clang::LangAS langAS)
cir::VecCmpOp createVecCompare(mlir::Location loc, cir::CmpOpKind kind, mlir::Value lhs, mlir::Value rhs)
mlir::Value createIntCast(mlir::Value src, mlir::Type newTy)
mlir::Value createBitcast(mlir::Value src, mlir::Type newTy)
CIRBaseBuilderTy(mlir::MLIRContext &mlirContext)
mlir::Value createBitcast(mlir::Location loc, mlir::Value src, mlir::Type newTy)
mlir::TypedAttr getNullDataMemberAttr(cir::DataMemberType ty)
cir::GlobalOp createGlobal(mlir::ModuleOp mlirModule, mlir::Location loc, mlir::StringRef name, mlir::Type type, bool isConstant, cir::GlobalLinkageKind linkage)
mlir::Value createGetGlobal(mlir::Location loc, cir::GlobalOp global, bool threadLocal=false)
cir::CmpOp createCompare(mlir::Location loc, cir::CmpOpKind kind, mlir::Value lhs, mlir::Value rhs)
mlir::IntegerAttr getAlignmentAttr(clang::CharUnits alignment)
mlir::Value createBinop(mlir::Location loc, mlir::Value lhs, cir::BinOpKind kind, mlir::Value rhs)
mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType, mlir::Type type, llvm::StringRef name, mlir::IntegerAttr alignment)
mlir::Value createSelect(mlir::Location loc, mlir::Value condition, mlir::Value trueValue, mlir::Value falseValue)
cir::ContinueOp createContinue(mlir::Location loc)
Create a continue operation.
mlir::Value createMul(mlir::Location loc, mlir::Value lhs, mlir::Value rhs, OverflowBehavior ob=OverflowBehavior::None)
mlir::TypedAttr getZeroInitAttr(mlir::Type ty)
cir::LoadOp createLoad(mlir::Location loc, mlir::Value ptr, bool isVolatile=false, uint64_t alignment=0)
mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType, mlir::Type type, llvm::StringRef name, clang::CharUnits alignment)
cir::CallOp createIndirectCallOp(mlir::Location loc, mlir::Value indirectTarget, cir::FuncType funcType, mlir::ValueRange operands, llvm::ArrayRef< mlir::NamedAttribute > attrs={})
CIRBaseBuilderTy(mlir::OpBuilder &builder)
static unsigned getCIRIntOrFloatBitWidth(mlir::Type eltTy)
cir::ConstantOp getConstantInt(mlir::Location loc, mlir::Type ty, int64_t value)
mlir::Value createComplexCreate(mlir::Location loc, mlir::Value real, mlir::Value imag)
mlir::Value createAddrSpaceCast(mlir::Value src, mlir::Type newTy)
cir::PointerType getPointerTo(mlir::Type ty, cir::TargetAddressSpaceAttr as)
mlir::Value createPtrToBoolCast(mlir::Value v)
cir::BoolAttr getTrueAttr()
cir::PointerType getVoidPtrTy(clang::LangAS langAS=clang::LangAS::Default)
mlir::Value createShiftRight(mlir::Location loc, mlir::Value lhs, unsigned bits)
mlir::Value createIsNaN(mlir::Location loc, mlir::Value operand)
cir::IntType getSIntNTy(int n)
mlir::Value createAlignedLoad(mlir::Location loc, mlir::Value ptr, uint64_t alignment)
mlir::TypedAttr getConstPtrAttr(mlir::Type type, int64_t value)
mlir::Value createAddrSpaceCast(mlir::Location loc, mlir::Value src, mlir::Type newTy)
mlir::Value createDummyValue(mlir::Location loc, mlir::Type type, clang::CharUnits alignment)
cir::BoolAttr getFalseAttr()
mlir::Value createShiftRight(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
cir::StoreOp createStore(mlir::Location loc, mlir::Value val, mlir::Value dst, bool isVolatile=false, mlir::IntegerAttr align={}, cir::SyncScopeKindAttr scope={}, cir::MemOrderAttr order={})
cir::YieldOp createYield(mlir::Location loc, mlir::ValueRange value={})
Create a yield operation.
mlir::Value createLogicalAnd(mlir::Location loc, mlir::Value lhs, mlir::Value rhs)
mlir::Value createUnaryOp(mlir::Location loc, cir::UnaryOpKind kind, mlir::Value operand)
mlir::IntegerAttr getAlignmentAttr(llvm::Align alignment)
cir::LoadOp createFlagLoad(mlir::Location loc, mlir::Value addr)
Emit a load from an boolean flag variable.
mlir::Value createAlloca(mlir::Location loc, cir::PointerType addrType, mlir::Type type, llvm::StringRef name, mlir::IntegerAttr alignment, mlir::Value dynAllocSize)
cir::BoolType getBoolTy()
mlir::Value getUnsignedInt(mlir::Location loc, uint64_t val, unsigned numBits)
mlir::Value createComplexReal(mlir::Location loc, mlir::Value operand)
CharUnits - This is an opaque type for sizes expressed in character units.
Definition CharUnits.h:38
QuantityType getQuantity() const
getQuantity - Get the raw integer representation of this quantity.
Definition CharUnits.h:185
constexpr OverflowBehavior operator|(OverflowBehavior a, OverflowBehavior b)
constexpr OverflowBehavior operator&(OverflowBehavior a, OverflowBehavior b)
constexpr OverflowBehavior & operator|=(OverflowBehavior &a, OverflowBehavior b)
constexpr OverflowBehavior & operator&=(OverflowBehavior &a, OverflowBehavior b)
OverflowBehavior
bool isTargetAddressSpace(LangAS AS)
unsigned toTargetAddressSpace(LangAS AS)
LangAS
Defines the address space values used by the address space qualifier of QualType.
static bool addressSpace()
static bool targetCodeGenInfoGetNullPointer()