LLVM 23.0.0git
Utils.h
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1//==-- llvm/CodeGen/GlobalISel/Utils.h ---------------------------*- C++ -*-==//
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/// \file This file declares the API of helper functions used throughout the
10/// GlobalISel pipeline.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef LLVM_CODEGEN_GLOBALISEL_UTILS_H
15#define LLVM_CODEGEN_GLOBALISEL_UTILS_H
16
17#include "GISelWorkList.h"
18#include "llvm/ADT/APFloat.h"
19#include "llvm/ADT/StringRef.h"
22#include "llvm/IR/DebugLoc.h"
26
27#include <cstdint>
28
29namespace llvm {
30
31class AnalysisUsage;
36class MachineFunction;
37class MachineInstr;
39class MachineOperand;
44class MCInstrDesc;
47class TargetInstrInfo;
48class TargetLowering;
52class ConstantFP;
53class APFloat;
54
55// Convenience macros for dealing with vector reduction opcodes.
56#define GISEL_VECREDUCE_CASES_ALL \
57 case TargetOpcode::G_VECREDUCE_SEQ_FADD: \
58 case TargetOpcode::G_VECREDUCE_SEQ_FMUL: \
59 case TargetOpcode::G_VECREDUCE_FADD: \
60 case TargetOpcode::G_VECREDUCE_FMUL: \
61 case TargetOpcode::G_VECREDUCE_FMAX: \
62 case TargetOpcode::G_VECREDUCE_FMIN: \
63 case TargetOpcode::G_VECREDUCE_FMAXIMUM: \
64 case TargetOpcode::G_VECREDUCE_FMINIMUM: \
65 case TargetOpcode::G_VECREDUCE_ADD: \
66 case TargetOpcode::G_VECREDUCE_MUL: \
67 case TargetOpcode::G_VECREDUCE_AND: \
68 case TargetOpcode::G_VECREDUCE_OR: \
69 case TargetOpcode::G_VECREDUCE_XOR: \
70 case TargetOpcode::G_VECREDUCE_SMAX: \
71 case TargetOpcode::G_VECREDUCE_SMIN: \
72 case TargetOpcode::G_VECREDUCE_UMAX: \
73 case TargetOpcode::G_VECREDUCE_UMIN:
74
75#define GISEL_VECREDUCE_CASES_NONSEQ \
76 case TargetOpcode::G_VECREDUCE_FADD: \
77 case TargetOpcode::G_VECREDUCE_FMUL: \
78 case TargetOpcode::G_VECREDUCE_FMAX: \
79 case TargetOpcode::G_VECREDUCE_FMIN: \
80 case TargetOpcode::G_VECREDUCE_FMAXIMUM: \
81 case TargetOpcode::G_VECREDUCE_FMINIMUM: \
82 case TargetOpcode::G_VECREDUCE_ADD: \
83 case TargetOpcode::G_VECREDUCE_MUL: \
84 case TargetOpcode::G_VECREDUCE_AND: \
85 case TargetOpcode::G_VECREDUCE_OR: \
86 case TargetOpcode::G_VECREDUCE_XOR: \
87 case TargetOpcode::G_VECREDUCE_SMAX: \
88 case TargetOpcode::G_VECREDUCE_SMIN: \
89 case TargetOpcode::G_VECREDUCE_UMAX: \
90 case TargetOpcode::G_VECREDUCE_UMIN:
91
92/// Try to constrain Reg to the specified register class. If this fails,
93/// create a new virtual register in the correct class.
94///
95/// \return The virtual register constrained to the right register class.
96LLVM_ABI Register constrainRegToClass(MachineRegisterInfo &MRI,
97 const TargetInstrInfo &TII,
98 const RegisterBankInfo &RBI, Register Reg,
99 const TargetRegisterClass &RegClass);
100
101/// Constrain the Register operand OpIdx, so that it is now constrained to the
102/// TargetRegisterClass passed as an argument (RegClass).
103/// If this fails, create a new virtual register in the correct class and insert
104/// a COPY before \p InsertPt if it is a use or after if it is a definition.
105/// In both cases, the function also updates the register of RegMo. The debug
106/// location of \p InsertPt is used for the new copy.
107///
108/// \return The virtual register constrained to the right register class.
110 const MachineFunction &MF, const TargetRegisterInfo &TRI,
111 MachineRegisterInfo &MRI, const TargetInstrInfo &TII,
112 const RegisterBankInfo &RBI, MachineInstr &InsertPt,
113 const TargetRegisterClass &RegClass, MachineOperand &RegMO);
114
115/// Try to constrain Reg so that it is usable by argument OpIdx of the provided
116/// MCInstrDesc \p II. If this fails, create a new virtual register in the
117/// correct class and insert a COPY before \p InsertPt if it is a use or after
118/// if it is a definition. In both cases, the function also updates the register
119/// of RegMo.
120/// This is equivalent to constrainOperandRegClass(..., RegClass, ...)
121/// with RegClass obtained from the MCInstrDesc. The debug location of \p
122/// InsertPt is used for the new copy.
123///
124/// \return The virtual register constrained to the right register class.
126 const MachineFunction &MF, const TargetRegisterInfo &TRI,
127 MachineRegisterInfo &MRI, const TargetInstrInfo &TII,
128 const RegisterBankInfo &RBI, MachineInstr &InsertPt, const MCInstrDesc &II,
129 MachineOperand &RegMO, unsigned OpIdx);
130
131/// Mutate the newly-selected instruction \p I to constrain its (possibly
132/// generic) virtual register operands to the instruction's register class.
133/// This could involve inserting COPYs before (for uses) or after (for defs).
134/// This requires the number of operands to match the instruction description.
135// FIXME: Not all instructions have the same number of operands. We should
136// probably expose a constrain helper per operand and let the target selector
137// constrain individual registers, like fast-isel.
139 const TargetInstrInfo &TII,
140 const TargetRegisterInfo &TRI,
141 const RegisterBankInfo &RBI);
142
143/// Check if DstReg can be replaced with SrcReg depending on the register
144/// constraints.
145LLVM_ABI bool canReplaceReg(Register DstReg, Register SrcReg,
146 MachineRegisterInfo &MRI);
147
148/// Check whether an instruction \p MI is dead: it only defines dead virtual
149/// registers, and doesn't have other side effects.
150LLVM_ABI bool isTriviallyDead(const MachineInstr &MI,
151 const MachineRegisterInfo &MRI);
152
153/// Report an ISel error as a missed optimization remark to the LLVMContext's
154/// diagnostic stream. Set the FailedISel MachineFunction property.
155LLVM_ABI void reportGISelFailure(MachineFunction &MF,
156 MachineOptimizationRemarkEmitter &MORE,
157 MachineOptimizationRemarkMissed &R);
158
159LLVM_ABI void reportGISelFailure(MachineFunction &MF,
160 MachineOptimizationRemarkEmitter &MORE,
161 const char *PassName, StringRef Msg,
162 const MachineInstr &MI);
163
164/// Report an ISel warning as a missed optimization remark to the LLVMContext's
165/// diagnostic stream.
166LLVM_ABI void reportGISelWarning(MachineFunction &MF,
167 MachineOptimizationRemarkEmitter &MORE,
168 MachineOptimizationRemarkMissed &R);
169
170/// Returns the inverse opcode of \p MinMaxOpc, which is a generic min/max
171/// opcode like G_SMIN.
172LLVM_ABI unsigned getInverseGMinMaxOpcode(unsigned MinMaxOpc);
173
174/// If \p VReg is defined by a G_CONSTANT, return the corresponding value.
175LLVM_ABI std::optional<APInt>
176getIConstantVRegVal(Register VReg, const MachineRegisterInfo &MRI);
177
178/// If \p VReg is defined by a G_CONSTANT fits in int64_t returns it.
179LLVM_ABI std::optional<int64_t>
180getIConstantVRegSExtVal(Register VReg, const MachineRegisterInfo &MRI);
181
182/// \p VReg is defined by a G_CONSTANT, return the corresponding value.
183LLVM_ABI const APInt &getIConstantFromReg(Register VReg,
184 const MachineRegisterInfo &MRI);
185
186/// Simple struct used to hold a constant integer value and a virtual
187/// register.
192
193/// If \p VReg is defined by a statically evaluable chain of instructions rooted
194/// on a G_CONSTANT returns its APInt value and def register.
195LLVM_ABI std::optional<ValueAndVReg>
197 const MachineRegisterInfo &MRI,
198 bool LookThroughInstrs = true);
199
200/// If \p VReg is defined by a statically evaluable chain of instructions rooted
201/// on a G_CONSTANT or G_FCONSTANT returns its value as APInt and def register.
202LLVM_ABI std::optional<ValueAndVReg> getAnyConstantVRegValWithLookThrough(
203 Register VReg, const MachineRegisterInfo &MRI,
204 bool LookThroughInstrs = true, bool LookThroughAnyExt = false);
205
210
211/// If \p VReg is defined by a statically evaluable chain of instructions rooted
212/// on a G_FCONSTANT returns its APFloat value and def register.
213LLVM_ABI std::optional<FPValueAndVReg>
215 const MachineRegisterInfo &MRI,
216 bool LookThroughInstrs = true);
217
219 const MachineRegisterInfo &MRI);
220
221/// See if Reg is defined by an single def instruction that is
222/// Opcode. Also try to do trivial folding if it's a COPY with
223/// same types. Returns null otherwise.
225 const MachineRegisterInfo &MRI);
226
227/// Simple struct used to hold a Register value and the instruction which
228/// defines it.
233
234/// Find the def instruction for \p Reg, and underlying value Register folding
235/// away any copies.
236///
237/// Also walks through hints such as G_ASSERT_ZEXT.
238LLVM_ABI std::optional<DefinitionAndSourceRegister>
240
241/// Find the def instruction for \p Reg, folding away any trivial copies. May
242/// return nullptr if \p Reg is not a generic virtual register.
243///
244/// Also walks through hints such as G_ASSERT_ZEXT.
246 const MachineRegisterInfo &MRI);
247
248/// Find the source register for \p Reg, folding away any trivial copies. It
249/// will be an output register of the instruction that getDefIgnoringCopies
250/// returns. May return an invalid register if \p Reg is not a generic virtual
251/// register.
252///
253/// Also walks through hints such as G_ASSERT_ZEXT.
255 const MachineRegisterInfo &MRI);
256
257/// Helper function to split a wide generic register into bitwise blocks with
258/// the given Type (which implies the number of blocks needed). The generic
259/// registers created are appended to Ops, starting at bit 0 of Reg.
260LLVM_ABI void extractParts(Register Reg, LLT Ty, int NumParts,
262 MachineIRBuilder &MIRBuilder,
264
265/// Version which handles irregular splits.
266LLVM_ABI bool extractParts(Register Reg, LLT RegTy, LLT MainTy, LLT &LeftoverTy,
268 SmallVectorImpl<Register> &LeftoverVRegs,
269 MachineIRBuilder &MIRBuilder,
271
272/// Version which handles irregular sub-vector splits.
273LLVM_ABI void extractVectorParts(Register Reg, unsigned NumElts,
275 MachineIRBuilder &MIRBuilder,
277
278// Templated variant of getOpcodeDef returning a MachineInstr derived T.
279/// See if Reg is defined by an single def instruction of type T
280/// Also try to do trivial folding if it's a COPY with
281/// same types. Returns null otherwise.
282template <class T>
287
288/// Returns an APFloat from Val converted to the appropriate size.
289LLVM_ABI APFloat getAPFloatFromSize(double Val, unsigned Size);
290
291/// Modify analysis usage so it preserves passes required for the SelectionDAG
292/// fallback.
293LLVM_ABI void getSelectionDAGFallbackAnalysisUsage(AnalysisUsage &AU);
294
295LLVM_ABI std::optional<APInt> ConstantFoldBinOp(unsigned Opcode,
296 const Register Op1,
297 const Register Op2,
298 const MachineRegisterInfo &MRI);
299LLVM_ABI std::optional<APFloat>
300ConstantFoldFPBinOp(unsigned Opcode, const Register Op1, const Register Op2,
301 const MachineRegisterInfo &MRI);
302
303/// Tries to constant fold a vector binop with sources \p Op1 and \p Op2.
304/// Returns an empty vector on failure.
306ConstantFoldVectorBinop(unsigned Opcode, const Register Op1, const Register Op2,
307 const MachineRegisterInfo &MRI);
308
309LLVM_ABI std::optional<APInt>
310ConstantFoldCastOp(unsigned Opcode, LLT DstTy, const Register Op0,
311 const MachineRegisterInfo &MRI);
312
313LLVM_ABI std::optional<APInt> ConstantFoldExtOp(unsigned Opcode,
314 const Register Op1,
315 uint64_t Imm,
316 const MachineRegisterInfo &MRI);
317
318LLVM_ABI std::optional<APFloat>
319ConstantFoldIntToFloat(unsigned Opcode, LLT DstTy, Register Src,
320 const MachineRegisterInfo &MRI);
321
322/// Tries to constant fold a unary integer operation (G_CTLZ, G_CTTZ, G_CTPOP
323/// and their _ZERO_POISON variants, G_ABS, G_BSWAP, G_BITREVERSE) on \p Src.
324/// If \p Src is a vector then it tries to do an element-wise constant fold.
326ConstantFoldUnaryIntOp(unsigned Opcode, LLT DstTy, Register Src,
327 const MachineRegisterInfo &MRI);
328
329LLVM_ABI std::optional<SmallVector<APInt>>
330ConstantFoldICmp(unsigned Pred, const Register Op1, const Register Op2,
331 unsigned DstScalarSizeInBits, unsigned ExtOp,
332 const MachineRegisterInfo &MRI);
333
334/// Test if the given value is known to have exactly one bit set. This differs
335/// from computeKnownBits in that it doesn't necessarily determine which bit is
336/// set. When \p OrNegative is true, the value is also considered a power of two
337/// if its negation is a power of two (i.e. its absolute value is a power of
338/// two).
339LLVM_ABI bool
340isKnownToBeAPowerOfTwo(Register Val, const MachineRegisterInfo &MRI,
341 GISelValueTracking *ValueTracking = nullptr,
342 bool OrNegative = false);
343
344LLVM_ABI Align inferAlignFromPtrInfo(MachineFunction &MF,
345 const MachinePointerInfo &MPO);
346
347/// Return a virtual register corresponding to the incoming argument register \p
348/// PhysReg. This register is expected to have class \p RC, and optional type \p
349/// RegTy. This assumes all references to the register will use the same type.
350///
351/// If there is an existing live-in argument register, it will be returned.
352/// This will also ensure there is a valid copy
354 MachineFunction &MF, const TargetInstrInfo &TII, MCRegister PhysReg,
355 const TargetRegisterClass &RC, const DebugLoc &DL, LLT RegTy = LLT());
356
357/// Return the least common multiple type of \p OrigTy and \p TargetTy, by
358/// changing the number of vector elements or scalar bitwidth. The intent is a
359/// G_MERGE_VALUES, G_BUILD_VECTOR, or G_CONCAT_VECTORS can be constructed from
360/// \p OrigTy elements, and unmerged into \p TargetTy. It is an error to call
361/// this function where one argument is a fixed vector and the other is a
362/// scalable vector, since it is illegal to build a G_{MERGE|UNMERGE}_VALUES
363/// between fixed and scalable vectors.
364LLVM_ABI LLVM_READNONE LLT getLCMType(LLT OrigTy, LLT TargetTy);
365
367 /// Return smallest type that covers both \p OrigTy and \p TargetTy and is
368 /// multiple of TargetTy.
369 LLT
370 getCoverTy(LLT OrigTy, LLT TargetTy);
371
372/// Return a type where the total size is the greatest common divisor of \p
373/// OrigTy and \p TargetTy. This will try to either change the number of vector
374/// elements, or bitwidth of scalars. The intent is the result type can be used
375/// as the result of a G_UNMERGE_VALUES from \p OrigTy, and then some
376/// combination of G_MERGE_VALUES, G_BUILD_VECTOR and G_CONCAT_VECTORS (possibly
377/// with intermediate casts) can re-form \p TargetTy.
378///
379/// If these are vectors with different element types, this will try to produce
380/// a vector with a compatible total size, but the element type of \p OrigTy. If
381/// this can't be satisfied, this will produce a scalar smaller than the
382/// original vector elements. It is an error to call this function where
383/// one argument is a fixed vector and the other is a scalable vector, since it
384/// is illegal to build a G_{MERGE|UNMERGE}_VALUES between fixed and scalable
385/// vectors.
386///
387/// In the worst case, this returns LLT::scalar(1)
388LLVM_ABI LLVM_READNONE LLT getGCDType(LLT OrigTy, LLT TargetTy);
389
390/// Represents a value which can be a Register or a constant.
391///
392/// This is useful in situations where an instruction may have an interesting
393/// register operand or interesting constant operand. For a concrete example,
394/// \see getVectorSplat.
396 int64_t Cst;
397 Register Reg;
398 bool IsReg;
399
400public:
401 explicit RegOrConstant(Register Reg) : Reg(Reg), IsReg(true) {}
402 explicit RegOrConstant(int64_t Cst) : Cst(Cst), IsReg(false) {}
403 bool isReg() const { return IsReg; }
404 bool isCst() const { return !IsReg; }
405 Register getReg() const {
406 assert(isReg() && "Expected a register!");
407 return Reg;
408 }
409 int64_t getCst() const {
410 assert(isCst() && "Expected a constant!");
411 return Cst;
412 }
413};
414
415/// \returns The splat index of a G_SHUFFLE_VECTOR \p MI when \p MI is a splat.
416/// If \p MI is not a splat, returns std::nullopt.
417LLVM_ABI std::optional<int> getSplatIndex(MachineInstr &MI);
418
419/// \returns the scalar integral splat value of \p Reg if possible.
420LLVM_ABI std::optional<APInt>
421getIConstantSplatVal(const Register Reg, const MachineRegisterInfo &MRI);
422
423/// \returns the scalar integral splat value defined by \p MI if possible.
424LLVM_ABI std::optional<APInt>
425getIConstantSplatVal(const MachineInstr &MI, const MachineRegisterInfo &MRI);
426
427/// \returns the scalar sign extended integral splat value of \p Reg if
428/// possible.
429LLVM_ABI std::optional<int64_t>
430getIConstantSplatSExtVal(const Register Reg, const MachineRegisterInfo &MRI);
431
432/// \returns the scalar sign extended integral splat value defined by \p MI if
433/// possible.
434LLVM_ABI std::optional<int64_t>
435getIConstantSplatSExtVal(const MachineInstr &MI,
436 const MachineRegisterInfo &MRI);
437
438/// Returns a floating point scalar constant of a build vector splat if it
439/// exists. When \p AllowUndef == true some elements can be undef but not all.
440LLVM_ABI std::optional<FPValueAndVReg>
441getFConstantSplat(Register VReg, const MachineRegisterInfo &MRI,
442 bool AllowUndef = true);
443
444/// Return true if the specified register is defined by G_BUILD_VECTOR or
445/// G_BUILD_VECTOR_TRUNC where all of the elements are \p SplatValue or undef.
447 const MachineRegisterInfo &MRI,
448 int64_t SplatValue, bool AllowUndef);
449
450/// Return true if the specified register is defined by G_BUILD_VECTOR or
451/// G_BUILD_VECTOR_TRUNC where all of the elements are \p SplatValue or undef.
453 const MachineRegisterInfo &MRI,
454 const APInt &SplatValue,
455 bool AllowUndef);
456
457/// Return true if the specified instruction is a G_BUILD_VECTOR or
458/// G_BUILD_VECTOR_TRUNC where all of the elements are \p SplatValue or undef.
459LLVM_ABI bool isBuildVectorConstantSplat(const MachineInstr &MI,
460 const MachineRegisterInfo &MRI,
461 int64_t SplatValue, bool AllowUndef);
462
463/// Return true if the specified instruction is a G_BUILD_VECTOR or
464/// G_BUILD_VECTOR_TRUNC where all of the elements are \p SplatValue or undef.
465LLVM_ABI bool isBuildVectorConstantSplat(const MachineInstr &MI,
466 const MachineRegisterInfo &MRI,
467 const APInt &SplatValue,
468 bool AllowUndef);
469
470/// Return true if the specified instruction is a G_BUILD_VECTOR or
471/// G_BUILD_VECTOR_TRUNC where all of the elements are 0 or undef.
472LLVM_ABI bool isBuildVectorAllZeros(const MachineInstr &MI,
473 const MachineRegisterInfo &MRI,
474 bool AllowUndef = false);
475
476/// Return true if the specified instruction is a G_BUILD_VECTOR or
477/// G_BUILD_VECTOR_TRUNC where all of the elements are ~0 or undef.
478LLVM_ABI bool isBuildVectorAllOnes(const MachineInstr &MI,
479 const MachineRegisterInfo &MRI,
480 bool AllowUndef = false);
481
482/// Return true if the specified instruction is known to be a constant, or a
483/// vector of constants.
484///
485/// If \p AllowFP is true, this will consider G_FCONSTANT in addition to
486/// G_CONSTANT. If \p AllowOpaqueConstants is true, constant-like instructions
487/// such as G_GLOBAL_VALUE will also be considered.
488LLVM_ABI bool isConstantOrConstantVector(const MachineInstr &MI,
489 const MachineRegisterInfo &MRI,
490 bool AllowFP = true,
491 bool AllowOpaqueConstants = true);
492
493/// Return true if the value is a constant 0 integer or a splatted vector of a
494/// constant 0 integer (with no undefs if \p AllowUndefs is false). This will
495/// handle G_BUILD_VECTOR and G_BUILD_VECTOR_TRUNC as truncation is not an issue
496/// for null values.
497LLVM_ABI bool isNullOrNullSplat(const MachineInstr &MI,
498 const MachineRegisterInfo &MRI,
499 bool AllowUndefs = false);
500
501/// Return true if the value is a constant -1 integer or a splatted vector of a
502/// constant -1 integer (with no undefs if \p AllowUndefs is false).
503LLVM_ABI bool isAllOnesOrAllOnesSplat(const MachineInstr &MI,
504 const MachineRegisterInfo &MRI,
505 bool AllowUndefs = false);
506
507/// \returns a value when \p MI is a vector splat. The splat can be either a
508/// Register or a constant.
509///
510/// Examples:
511///
512/// \code
513/// %reg = COPY $physreg
514/// %reg_splat = G_BUILD_VECTOR %reg, %reg, ..., %reg
515/// \endcode
516///
517/// If called on the G_BUILD_VECTOR above, this will return a RegOrConstant
518/// containing %reg.
519///
520/// \code
521/// %cst = G_CONSTANT iN 4
522/// %constant_splat = G_BUILD_VECTOR %cst, %cst, ..., %cst
523/// \endcode
524///
525/// In the above case, this will return a RegOrConstant containing 4.
526LLVM_ABI std::optional<RegOrConstant>
527getVectorSplat(const MachineInstr &MI, const MachineRegisterInfo &MRI);
528
529/// Determines if \p MI defines a constant integer or a build vector of
530/// constant integers. Treats undef values as constants.
531LLVM_ABI bool isConstantOrConstantVector(MachineInstr &MI,
532 const MachineRegisterInfo &MRI);
533
534/// Determines if \p MI defines a constant integer or a splat vector of
535/// constant integers.
536/// \returns the scalar constant or std::nullopt.
537LLVM_ABI std::optional<APInt>
539 const MachineRegisterInfo &MRI);
540
541/// Determines if \p MI defines a float constant integer or a splat vector of
542/// float constant integers.
543/// \returns the float constant or std::nullopt.
544LLVM_ABI std::optional<APFloat>
546 const MachineRegisterInfo &MRI);
547
548/// Attempt to match a unary predicate against a scalar/splat constant or every
549/// element of a constant G_BUILD_VECTOR. If \p ConstVal is null, the source
550/// value was undef.
551LLVM_ABI bool
552matchUnaryPredicate(const MachineRegisterInfo &MRI, Register Reg,
553 std::function<bool(const Constant *ConstVal)> Match,
554 bool AllowUndefs = false);
555
556/// Returns true if given the TargetLowering's boolean contents information,
557/// the value \p Val contains a true value.
558LLVM_ABI bool isConstTrueVal(const TargetLowering &TLI, int64_t Val,
559 bool IsVector, bool IsFP);
560/// \returns true if given the TargetLowering's boolean contents information,
561/// the value \p Val contains a false value.
562LLVM_ABI bool isConstFalseVal(const TargetLowering &TLI, int64_t Val,
563 bool IsVector, bool IsFP);
564
565/// Returns an integer representing true, as defined by the
566/// TargetBooleanContents.
567LLVM_ABI int64_t getICmpTrueVal(const TargetLowering &TLI, bool IsVector,
568 bool IsFP);
569
572 LostDebugLocObserver *LocObserver,
573 SmallInstListTy &DeadInstChain);
576 LostDebugLocObserver *LocObserver = nullptr);
578 LostDebugLocObserver *LocObserver = nullptr);
579
580/// Assuming the instruction \p MI is going to be deleted, attempt to salvage
581/// debug users of \p MI by writing the effect of \p MI in a DIExpression.
584
585/// Returns whether opcode \p Opc is a pre-isel generic floating-point opcode,
586/// having only floating-point operands.
588
589/// Returns true if \p Reg can create undef or poison from non-undef &
590/// non-poison operands. \p ConsiderFlagsAndMetadata controls whether poison
591/// producing flags and metadata on the instruction are considered. This can be
592/// used to see if the instruction could still introduce undef or poison even
593/// without poison generating flags and metadata which might be on the
594/// instruction.
596 const MachineRegisterInfo &MRI,
597 bool ConsiderFlagsAndMetadata = true);
598
599/// Returns true if \p Reg can create poison from non-poison operands.
601 bool ConsiderFlagsAndMetadata = true);
602
603/// Returns true if \p Reg cannot be poison and undef.
605 const MachineRegisterInfo &MRI,
606 unsigned Depth = 0);
607
608/// Returns true if \p Reg cannot be poison, but may be undef.
610 const MachineRegisterInfo &MRI,
611 unsigned Depth = 0);
612
613/// Returns true if \p Reg cannot be undef, but may be poison.
615 const MachineRegisterInfo &MRI,
616 unsigned Depth = 0);
617
618/// Get the type back from LLT. It won't be 100 percent accurate but returns an
619/// estimate of the type.
621
622/// Returns true if the instruction \p MI is one of the assert
623/// instructions.
625
626/// An integer-like constant.
627///
628/// It abstracts over scalar, fixed-length vectors, and scalable vectors.
629/// In the common case, it provides a common API and feels like an APInt,
630/// while still providing low-level access.
631/// It can be used for constant-folding.
632///
633/// bool isZero()
634/// abstracts over the kind.
635///
636/// switch(const.getKind())
637/// {
638/// }
639/// provides low-level access.
641public:
643
644private:
645 GIConstantKind Kind;
646 SmallVector<APInt> Values;
647 APInt Value;
648
649public:
651 : Kind(GIConstantKind::FixedVector), Values(Values) {};
652 GIConstant(const APInt &Value, GIConstantKind Kind)
653 : Kind(Kind), Value(Value) {};
654
655 /// Returns the kind of of this constant, e.g, Scalar.
656 GIConstantKind getKind() const { return Kind; }
657
658 /// Returns the value, if this constant is a scalar.
660
661 LLVM_ABI static std::optional<GIConstant>
662 getConstant(Register Const, const MachineRegisterInfo &MRI);
663};
664
665/// An floating-point-like constant.
666///
667/// It abstracts over scalar, fixed-length vectors, and scalable vectors.
668/// In the common case, it provides a common API and feels like an APFloat,
669/// while still providing low-level access.
670/// It can be used for constant-folding.
671///
672/// bool isZero()
673/// abstracts over the kind.
674///
675/// switch(const.getKind())
676/// {
677/// }
678/// provides low-level access.
680 using VecTy = SmallVector<APFloat>;
681 using const_iterator = VecTy::const_iterator;
682
683public:
685
686private:
687 GFConstantKind Kind;
689
690public:
692 : Kind(GFConstantKind::FixedVector), Values(Values) {};
693 GFConstant(const APFloat &Value, GFConstantKind Kind) : Kind(Kind) {
694 Values.push_back(Value);
695 }
696
697 /// Returns the kind of of this constant, e.g, Scalar.
698 GFConstantKind getKind() const { return Kind; }
699
700 const_iterator begin() const {
702 "Expected fixed vector or scalar constant");
703 return Values.begin();
704 }
705
706 const_iterator end() const {
708 "Expected fixed vector or scalar constant");
709 return Values.end();
710 }
711
712 size_t size() const {
713 assert(Kind == GFConstantKind::FixedVector && "Expected fixed vector");
714 return Values.size();
715 }
716
717 /// Returns the value, if this constant is a scalar.
719
720 LLVM_ABI static std::optional<GFConstant>
721 getConstant(Register Const, const MachineRegisterInfo &MRI);
722};
723
724} // End namespace llvm.
725#endif
MachineInstrBuilder MachineInstrBuilder & DefMI
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file declares a class to represent arbitrary precision floating point values and provide a varie...
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
#define LLVM_READNONE
Definition Compiler.h:315
#define LLVM_ABI
Definition Compiler.h:213
const HexagonInstrInfo * TII
IRTranslator LLVM IR MI
Implement a low-level type suitable for MachineInstr level instruction selection.
#define I(x, y, z)
Definition MD5.cpp:57
Register Reg
Register const TargetRegisterInfo * TRI
Promote Memory to Register
Definition Mem2Reg.cpp:110
#define T
MachineInstr unsigned OpIdx
uint64_t IntrinsicInst * II
static const char PassName[]
Class for arbitrary precision integers.
Definition APInt.h:78
Represent the analysis usage information of a pass.
Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
BlockFrequencyInfo pass uses BlockFrequencyInfoImpl implementation to estimate IR basic block frequen...
ConstantFP - Floating Point Values [float, double].
Definition Constants.h:420
const_iterator begin() const
Definition Utils.h:700
static LLVM_ABI std::optional< GFConstant > getConstant(Register Const, const MachineRegisterInfo &MRI)
Definition Utils.cpp:2049
GFConstant(const APFloat &Value, GFConstantKind Kind)
Definition Utils.h:693
GFConstant(ArrayRef< APFloat > Values)
Definition Utils.h:691
GFConstantKind getKind() const
Returns the kind of of this constant, e.g, Scalar.
Definition Utils.h:698
LLVM_ABI APFloat getScalarValue() const
Returns the value, if this constant is a scalar.
Definition Utils.cpp:2042
const_iterator end() const
Definition Utils.h:706
size_t size() const
Definition Utils.h:712
LLVM_ABI APInt getScalarValue() const
Returns the value, if this constant is a scalar.
Definition Utils.cpp:2002
GIConstant(const APInt &Value, GIConstantKind Kind)
Definition Utils.h:652
static LLVM_ABI std::optional< GIConstant > getConstant(Register Const, const MachineRegisterInfo &MRI)
Definition Utils.cpp:2009
GIConstantKind getKind() const
Returns the kind of of this constant, e.g, Scalar.
Definition Utils.h:656
GIConstant(ArrayRef< APInt > Values)
Definition Utils.h:650
This is an important class for using LLVM in a threaded context.
Definition LLVMContext.h:68
Describe properties that are true of each instruction in the target description file.
Helper class to build MachineInstr.
Representation of each machine instruction.
MachineOperand class - Representation of each machine instruction operand.
Diagnostic information for missed-optimization remarks.
MachineRegisterInfo - Keep track of information for virtual and physical registers,...
Analysis providing profile information.
RegOrConstant(Register Reg)
Definition Utils.h:401
Register getReg() const
Definition Utils.h:405
bool isCst() const
Definition Utils.h:404
int64_t getCst() const
Definition Utils.h:409
RegOrConstant(int64_t Cst)
Definition Utils.h:402
bool isReg() const
Definition Utils.h:403
Holds all the information related to register banks.
Wrapper class representing virtual and physical registers.
Definition Register.h:20
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
TargetInstrInfo - Interface to description of machine instruction set.
This class defines information used to lower LLVM code to legal SelectionDAG operators that the targe...
Target-Independent Code Generator Pass Configuration Options.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
The instances of the Type class are immutable: once they are created, they are never changed.
Definition Type.h:46
LLVM Value Representation.
Definition Value.h:75
@ C
The default llvm calling convention, compatible with C.
Definition CallingConv.h:34
This is an optimization pass for GlobalISel generic memory operations.
LLVM_ABI Register getFunctionLiveInPhysReg(MachineFunction &MF, const TargetInstrInfo &TII, MCRegister PhysReg, const TargetRegisterClass &RC, const DebugLoc &DL, LLT RegTy=LLT())
Return a virtual register corresponding to the incoming argument register PhysReg.
Definition Utils.cpp:858
LLVM_ABI std::optional< SmallVector< APInt > > ConstantFoldICmp(unsigned Pred, const Register Op1, const Register Op2, unsigned DstScalarSizeInBits, unsigned ExtOp, const MachineRegisterInfo &MRI)
Definition Utils.cpp:993
LLVM_ABI bool isBuildVectorAllZeros(const MachineInstr &MI, const MachineRegisterInfo &MRI, bool AllowUndef=false)
Return true if the specified instruction is a G_BUILD_VECTOR or G_BUILD_VECTOR_TRUNC where all of the...
Definition Utils.cpp:1444
LLVM_ABI Type * getTypeForLLT(LLT Ty, LLVMContext &C)
Get the type back from LLT.
Definition Utils.cpp:1984
LLVM_ABI Register constrainOperandRegClass(const MachineFunction &MF, const TargetRegisterInfo &TRI, MachineRegisterInfo &MRI, const TargetInstrInfo &TII, const RegisterBankInfo &RBI, MachineInstr &InsertPt, const TargetRegisterClass &RegClass, MachineOperand &RegMO)
Constrain the Register operand OpIdx, so that it is now constrained to the TargetRegisterClass passed...
Definition Utils.cpp:57
LLVM_ABI MachineInstr * getOpcodeDef(unsigned Opcode, Register Reg, const MachineRegisterInfo &MRI)
See if Reg is defined by an single def instruction that is Opcode.
Definition Utils.cpp:653
LLVM_ABI const ConstantFP * getConstantFPVRegVal(Register VReg, const MachineRegisterInfo &MRI)
Definition Utils.cpp:461
LLVM_ABI bool canCreatePoison(const Operator *Op, bool ConsiderFlagsAndMetadata=true)
LLVM_ABI std::optional< APInt > getIConstantVRegVal(Register VReg, const MachineRegisterInfo &MRI)
If VReg is defined by a G_CONSTANT, return the corresponding value.
Definition Utils.cpp:294
LLVM_ABI std::optional< APFloat > ConstantFoldIntToFloat(unsigned Opcode, LLT DstTy, Register Src, const MachineRegisterInfo &MRI)
Definition Utils.cpp:932
LLVM_ABI std::optional< APInt > getIConstantSplatVal(const Register Reg, const MachineRegisterInfo &MRI)
Definition Utils.cpp:1404
LLVM_ABI bool isAllOnesOrAllOnesSplat(const MachineInstr &MI, const MachineRegisterInfo &MRI, bool AllowUndefs=false)
Return true if the value is a constant -1 integer or a splatted vector of a constant -1 integer (with...
Definition Utils.cpp:1569
LLVM_ABI std::optional< APFloat > ConstantFoldFPBinOp(unsigned Opcode, const Register Op1, const Register Op2, const MachineRegisterInfo &MRI)
Definition Utils.cpp:741
LLVM_ABI void salvageDebugInfo(const MachineRegisterInfo &MRI, MachineInstr &MI)
Assuming the instruction MI is going to be deleted, attempt to salvage debug users of MI by writing t...
Definition Utils.cpp:1687
LLVM_ABI void constrainSelectedInstRegOperands(MachineInstr &I, const TargetInstrInfo &TII, const TargetRegisterInfo &TRI, const RegisterBankInfo &RBI)
Mutate the newly-selected instruction I to constrain its (possibly generic) virtual register operands...
Definition Utils.cpp:156
LLVM_ABI std::optional< APInt > ConstantFoldExtOp(unsigned Opcode, const Register Op1, uint64_t Imm, const MachineRegisterInfo &MRI)
Definition Utils.cpp:891
LLVM_ABI std::optional< RegOrConstant > getVectorSplat(const MachineInstr &MI, const MachineRegisterInfo &MRI)
Definition Utils.cpp:1457
GISelWorkList< 4 > SmallInstListTy
Definition Utils.h:570
LLVM_ABI std::optional< APInt > isConstantOrConstantSplatVector(MachineInstr &MI, const MachineRegisterInfo &MRI)
Determines if MI defines a constant integer or a splat vector of constant integers.
Definition Utils.cpp:1527
LLVM_ABI bool isNullOrNullSplat(const MachineInstr &MI, const MachineRegisterInfo &MRI, bool AllowUndefs=false)
Return true if the value is a constant 0 integer or a splatted vector of a constant 0 integer (with n...
Definition Utils.cpp:1551
LLVM_ABI MachineInstr * getDefIgnoringCopies(Register Reg, const MachineRegisterInfo &MRI)
Find the def instruction for Reg, folding away any trivial copies.
Definition Utils.cpp:494
LLVM_ABI bool matchUnaryPredicate(const MachineRegisterInfo &MRI, Register Reg, std::function< bool(const Constant *ConstVal)> Match, bool AllowUndefs=false)
Attempt to match a unary predicate against a scalar/splat constant or every element of a constant G_B...
Definition Utils.cpp:1584
LLVM_ABI void reportGISelWarning(MachineFunction &MF, MachineOptimizationRemarkEmitter &MORE, MachineOptimizationRemarkMissed &R)
Report an ISel warning as a missed optimization remark to the LLVMContext's diagnostic stream.
Definition Utils.cpp:252
LLVM_ABI bool isGuaranteedNotToBeUndef(const Value *V, AssumptionCache *AC=nullptr, const Instruction *CtxI=nullptr, const DominatorTree *DT=nullptr, unsigned Depth=0)
Returns true if V cannot be undef, but may be poison.
LLVM_ABI bool isConstTrueVal(const TargetLowering &TLI, int64_t Val, bool IsVector, bool IsFP)
Returns true if given the TargetLowering's boolean contents information, the value Val contains a tru...
Definition Utils.cpp:1616
LLVM_ABI LLVM_READNONE LLT getLCMType(LLT OrigTy, LLT TargetTy)
Return the least common multiple type of OrigTy and TargetTy, by changing the number of vector elemen...
Definition Utils.cpp:1151
LLVM_ABI std::optional< int64_t > getIConstantVRegSExtVal(Register VReg, const MachineRegisterInfo &MRI)
If VReg is defined by a G_CONSTANT fits in int64_t returns it.
Definition Utils.cpp:314
LLVM_ABI std::optional< APInt > ConstantFoldBinOp(unsigned Opcode, const Register Op1, const Register Op2, const MachineRegisterInfo &MRI)
Definition Utils.cpp:672
auto dyn_cast_or_null(const Y &Val)
Definition Casting.h:753
LLVM_ABI const APInt & getIConstantFromReg(Register VReg, const MachineRegisterInfo &MRI)
VReg is defined by a G_CONSTANT, return the corresponding value.
Definition Utils.cpp:305
LLVM_ABI bool isConstantOrConstantVector(const MachineInstr &MI, const MachineRegisterInfo &MRI, bool AllowFP=true, bool AllowOpaqueConstants=true)
Return true if the specified instruction is known to be a constant, or a vector of constants.
Definition Utils.cpp:1507
LLVM_ABI bool canReplaceReg(Register DstReg, Register SrcReg, MachineRegisterInfo &MRI)
Check if DstReg can be replaced with SrcReg depending on the register constraints.
Definition Utils.cpp:200
LLVM_ABI void saveUsesAndErase(MachineInstr &MI, MachineRegisterInfo &MRI, LostDebugLocObserver *LocObserver, SmallInstListTy &DeadInstChain)
Definition Utils.cpp:1653
LLVM_ABI void reportGISelFailure(MachineFunction &MF, MachineOptimizationRemarkEmitter &MORE, MachineOptimizationRemarkMissed &R)
Report an ISel error as a missed optimization remark to the LLVMContext's diagnostic stream.
Definition Utils.cpp:258
LLVM_ABI std::optional< ValueAndVReg > getAnyConstantVRegValWithLookThrough(Register VReg, const MachineRegisterInfo &MRI, bool LookThroughInstrs=true, bool LookThroughAnyExt=false)
If VReg is defined by a statically evaluable chain of instructions rooted on a G_CONSTANT or G_FCONST...
Definition Utils.cpp:439
LLVM_ABI bool isBuildVectorAllOnes(const MachineInstr &MI, const MachineRegisterInfo &MRI, bool AllowUndef=false)
Return true if the specified instruction is a G_BUILD_VECTOR or G_BUILD_VECTOR_TRUNC where all of the...
Definition Utils.cpp:1450
LLVM_ABI bool canCreateUndefOrPoison(const Operator *Op, bool ConsiderFlagsAndMetadata=true)
canCreateUndefOrPoison returns true if Op can create undef or poison from non-undef & non-poison oper...
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
LLVM_ABI SmallVector< APInt > ConstantFoldVectorBinop(unsigned Opcode, const Register Op1, const Register Op2, const MachineRegisterInfo &MRI)
Tries to constant fold a vector binop with sources Op1 and Op2.
Definition Utils.cpp:819
LLVM_ABI std::optional< FPValueAndVReg > getFConstantSplat(Register VReg, const MachineRegisterInfo &MRI, bool AllowUndef=true)
Returns a floating point scalar constant of a build vector splat if it exists.
Definition Utils.cpp:1437
LLVM_ABI std::optional< APInt > ConstantFoldCastOp(unsigned Opcode, LLT DstTy, const Register Op0, const MachineRegisterInfo &MRI)
Definition Utils.cpp:908
LLVM_ABI void extractParts(Register Reg, LLT Ty, int NumParts, SmallVectorImpl< Register > &VRegs, MachineIRBuilder &MIRBuilder, MachineRegisterInfo &MRI)
Helper function to split a wide generic register into bitwise blocks with the given Type (which impli...
Definition Utils.cpp:508
LLVM_ABI void getSelectionDAGFallbackAnalysisUsage(AnalysisUsage &AU)
Modify analysis usage so it preserves passes required for the SelectionDAG fallback.
Definition Utils.cpp:1147
LLVM_ABI LLVM_READNONE LLT getCoverTy(LLT OrigTy, LLT TargetTy)
Return smallest type that covers both OrigTy and TargetTy and is multiple of TargetTy.
Definition Utils.cpp:1218
LLVM_ABI unsigned getInverseGMinMaxOpcode(unsigned MinMaxOpc)
Returns the inverse opcode of MinMaxOpc, which is a generic min/max opcode like G_SMIN.
Definition Utils.cpp:279
LLVM_ABI bool isGuaranteedNotToBeUndefOrPoison(const Value *V, AssumptionCache *AC=nullptr, const Instruction *CtxI=nullptr, const DominatorTree *DT=nullptr, unsigned Depth=0)
Return true if this function can prove that V does not have undef bits and is never poison.
LLVM_ABI std::optional< FPValueAndVReg > getFConstantVRegValWithLookThrough(Register VReg, const MachineRegisterInfo &MRI, bool LookThroughInstrs=true)
If VReg is defined by a statically evaluable chain of instructions rooted on a G_FCONSTANT returns it...
Definition Utils.cpp:447
LLVM_ABI bool isConstFalseVal(const TargetLowering &TLI, int64_t Val, bool IsVector, bool IsFP)
Definition Utils.cpp:1629
LLVM_ABI std::optional< APFloat > isConstantOrConstantSplatVectorFP(MachineInstr &MI, const MachineRegisterInfo &MRI)
Determines if MI defines a float constant integer or a splat vector of float constant integers.
Definition Utils.cpp:1540
LLVM_ABI APFloat getAPFloatFromSize(double Val, unsigned Size)
Returns an APFloat from Val converted to the appropriate size.
Definition Utils.cpp:659
LLVM_ABI bool isBuildVectorConstantSplat(const Register Reg, const MachineRegisterInfo &MRI, int64_t SplatValue, bool AllowUndef)
Return true if the specified register is defined by G_BUILD_VECTOR or G_BUILD_VECTOR_TRUNC where all ...
Definition Utils.cpp:1363
LLVM_ABI void eraseInstr(MachineInstr &MI, MachineRegisterInfo &MRI, LostDebugLocObserver *LocObserver=nullptr)
Definition Utils.cpp:1682
LLVM_ABI Register constrainRegToClass(MachineRegisterInfo &MRI, const TargetInstrInfo &TII, const RegisterBankInfo &RBI, Register Reg, const TargetRegisterClass &RegClass)
Try to constrain Reg to the specified register class.
Definition Utils.cpp:47
LLVM_ABI int64_t getICmpTrueVal(const TargetLowering &TLI, bool IsVector, bool IsFP)
Returns an integer representing true, as defined by the TargetBooleanContents.
Definition Utils.cpp:1641
LLVM_ABI std::optional< ValueAndVReg > getIConstantVRegValWithLookThrough(Register VReg, const MachineRegisterInfo &MRI, bool LookThroughInstrs=true)
If VReg is defined by a statically evaluable chain of instructions rooted on a G_CONSTANT returns its...
Definition Utils.cpp:433
LLVM_ABI bool isPreISelGenericFloatingPointOpcode(unsigned Opc)
Returns whether opcode Opc is a pre-isel generic floating-point opcode, having only floating-point op...
Definition Utils.cpp:1706
LLVM_ABI std::optional< DefinitionAndSourceRegister > getDefSrcRegIgnoringCopies(Register Reg, const MachineRegisterInfo &MRI)
Find the def instruction for Reg, and underlying value Register folding away any copies.
Definition Utils.cpp:469
LLVM_ABI SmallVector< APInt > ConstantFoldUnaryIntOp(unsigned Opcode, LLT DstTy, Register Src, const MachineRegisterInfo &MRI)
Tries to constant fold a unary integer operation (G_CTLZ, G_CTTZ, G_CTPOP and their _ZERO_POISON vari...
Definition Utils.cpp:945
LLVM_ABI void eraseInstrs(ArrayRef< MachineInstr * > DeadInstrs, MachineRegisterInfo &MRI, LostDebugLocObserver *LocObserver=nullptr)
Definition Utils.cpp:1667
LLVM_ABI bool isKnownToBeAPowerOfTwo(const Value *V, const DataLayout &DL, bool OrZero=false, AssumptionCache *AC=nullptr, const Instruction *CxtI=nullptr, const DominatorTree *DT=nullptr, bool UseInstrInfo=true, unsigned Depth=0)
Return true if the given value is known to have exactly one bit set when defined.
LLVM_ABI Register getSrcRegIgnoringCopies(Register Reg, const MachineRegisterInfo &MRI)
Find the source register for Reg, folding away any trivial copies.
Definition Utils.cpp:501
LLVM_ABI LLVM_READNONE LLT getGCDType(LLT OrigTy, LLT TargetTy)
Return a type where the total size is the greatest common divisor of OrigTy and TargetTy.
Definition Utils.cpp:1239
LLVM_ABI bool isGuaranteedNotToBePoison(const Value *V, AssumptionCache *AC=nullptr, const Instruction *CtxI=nullptr, const DominatorTree *DT=nullptr, unsigned Depth=0)
Returns true if V cannot be poison, but may be undef.
LLVM_ABI std::optional< int64_t > getIConstantSplatSExtVal(const Register Reg, const MachineRegisterInfo &MRI)
Definition Utils.cpp:1422
LLVM_ABI bool isAssertMI(const MachineInstr &MI)
Returns true if the instruction MI is one of the assert instructions.
Definition Utils.cpp:1991
LLVM_ABI void extractVectorParts(Register Reg, unsigned NumElts, SmallVectorImpl< Register > &VRegs, MachineIRBuilder &MIRBuilder, MachineRegisterInfo &MRI)
Version which handles irregular sub-vector splits.
Definition Utils.cpp:611
LLVM_ABI int getSplatIndex(ArrayRef< int > Mask)
If all non-negative Mask elements are the same value, return that value.
LLVM_ABI bool isTriviallyDead(const MachineInstr &MI, const MachineRegisterInfo &MRI)
Check whether an instruction MI is dead: it only defines dead virtual registers, and doesn't have oth...
Definition Utils.cpp:221
LLVM_ABI Align inferAlignFromPtrInfo(MachineFunction &MF, const MachinePointerInfo &MPO)
Definition Utils.cpp:841
#define MORE()
Definition regcomp.c:246
Simple struct used to hold a Register value and the instruction which defines it.
Definition Utils.h:229
This class contains a discriminated union of information about pointers in memory operands,...
Simple struct used to hold a constant integer value and a virtual register.
Definition Utils.h:188
Register VReg
Definition Utils.h:190