LLVM 23.0.0git
User.h
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1//===- llvm/User.h - User class definition ----------------------*- 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// This class defines the interface that one who uses a Value must implement.
10// Each instance of the Value class keeps track of what User's have handles
11// to it.
12//
13// * Instructions are the largest class of Users.
14// * Constants may be users of other constants (think arrays and stuff)
15//
16//===----------------------------------------------------------------------===//
17
18#ifndef LLVM_IR_USER_H
19#define LLVM_IR_USER_H
20
21#include "llvm/ADT/iterator.h"
23#include "llvm/IR/Use.h"
24#include "llvm/IR/Value.h"
28#include <cassert>
29#include <cstddef>
30#include <cstdint>
31#include <iterator>
32
33namespace llvm {
34
35template <typename T> class ArrayRef;
36template <typename T> class MutableArrayRef;
37
38/// Compile-time customization of User operands.
39///
40/// Customizes operand-related allocators and accessors.
41template <class>
43
44class User : public Value {
45 friend struct HungoffOperandTraits;
46 template <class ConstantClass> friend struct ConstantAggrKeyType;
47
49 allocateFixedOperandUser(size_t, unsigned, unsigned);
50
51protected:
52 // Disable the default operator new, as all subclasses must use one of the
53 // custom operators below depending on how they store their operands.
54 void *operator new(size_t Size) = delete;
55
56 /// Indicates this User has operands "hung off" in another allocation.
58
59 /// Indicates this User has operands co-allocated.
61 /// The number of operands for this User.
62 const unsigned NumOps;
63 };
64
65 /// Indicates this User has operands and a descriptor co-allocated .
67 /// The number of operands for this User.
68 const unsigned NumOps;
69 /// The number of bytes to allocate for the descriptor. Must be divisible by
70 /// `sizeof(void *)`.
71 const unsigned DescBytes;
72 };
73
74 /// Information about how a User object was allocated, to be passed into the
75 /// User constructor.
76 ///
77 /// DO NOT USE DIRECTLY. Use one of the `AllocMarker` structs instead, they
78 /// call all be implicitly converted to `AllocInfo`.
99
100 /// Allocate a User with an operand pointer co-allocated.
101 ///
102 /// This is used for subclasses which need to allocate a variable number
103 /// of operands, ie, 'hung off uses'.
104 LLVM_ABI void *operator new(size_t Size, HungOffOperandsAllocMarker);
105
106 /// Allocate a User with the operands co-allocated.
107 ///
108 /// This is used for subclasses which have a fixed number of operands.
109 LLVM_ABI void *operator new(size_t Size,
110 IntrusiveOperandsAllocMarker allocTrait);
111
112 /// Allocate a User with the operands co-allocated. If DescBytes is non-zero
113 /// then allocate an additional DescBytes bytes before the operands. These
114 /// bytes can be accessed by calling getDescriptor.
115 LLVM_ABI void *
116 operator new(size_t Size,
117 IntrusiveOperandsAndDescriptorAllocMarker allocTrait);
118
119 User(Type *ty, unsigned vty, AllocInfo AllocInfo) : Value(ty, vty) {
121 "Too many operands");
124 "Cannot have both hung off uses and a descriptor");
127 // If we have hung off uses, then the operand list should initially be
128 // null.
130 "Error in initializing hung off uses for User");
131
132 Use *Operands = reinterpret_cast<Use *>(this) - NumUserOperands;
133 for (unsigned I = 0; I < NumUserOperands; ++I)
134 new (&Operands[I]) Use(this);
135 }
136
137 /// Allocate the array of Uses, followed by a pointer
138 /// (with bottom bit set) to the User.
139 /// \param WithExtraValues identifies callers which need N Value* allocated
140 /// along the N operands.
141 LLVM_ABI void allocHungoffUses(unsigned N, bool WithExtraValues = false);
142
143 /// Grow the number of hung off uses. Note that allocHungoffUses
144 /// should be called if there are no uses.
145 LLVM_ABI void growHungoffUses(unsigned N, bool WithExtraValues = false);
146
147protected:
148 // Use deleteValue() to delete a generic User.
149 LLVM_ABI ~User();
150
151public:
152 User(const User &) = delete;
153
154 /// Free memory allocated for User and Use objects.
155 LLVM_ABI void operator delete(void *Usr);
156 /// Placement delete - required by std, called if the ctor throws.
157 LLVM_ABI void operator delete(void *Usr, HungOffOperandsAllocMarker);
158 /// Placement delete - required by std, called if the ctor throws.
159 LLVM_ABI void operator delete(void *Usr,
161 /// Placement delete - required by std, called if the ctor throws.
162 LLVM_ABI void operator delete(void *Usr, IntrusiveOperandsAllocMarker Marker);
163
164protected:
165 template <int Idx, typename U> static Use &OpFrom(const U *that) {
166 return Idx < 0
167 ? OperandTraits<U>::op_end(const_cast<U*>(that))[Idx]
168 : OperandTraits<U>::op_begin(const_cast<U*>(that))[Idx];
169 }
170
171 template <int Idx> Use &Op() {
172 return OpFrom<Idx>(this);
173 }
174 template <int Idx> const Use &Op() const {
175 return OpFrom<Idx>(this);
176 }
177
178private:
179 const Use *getHungOffOperands() const {
180 return *(reinterpret_cast<const Use *const *>(this) - 1);
181 }
182
183 Use *&getHungOffOperands() { return *(reinterpret_cast<Use **>(this) - 1); }
184
185 const Use *getIntrusiveOperands() const {
186 return reinterpret_cast<const Use *>(this) - NumUserOperands;
187 }
188
189 Use *getIntrusiveOperands() {
190 return reinterpret_cast<Use *>(this) - NumUserOperands;
191 }
192
193 void setOperandList(Use *NewList) {
195 "Setting operand list only required for hung off uses");
196 getHungOffOperands() = NewList;
197 }
198
199public:
200 const Use *getOperandList() const {
201 return HasHungOffUses ? getHungOffOperands() : getIntrusiveOperands();
202 }
204 return const_cast<Use *>(static_cast<const User *>(this)->getOperandList());
205 }
206
207 Value *getOperand(unsigned i) const {
208 assert(i < NumUserOperands && "getOperand() out of range!");
209 return getOperandList()[i];
210 }
211
212 void setOperand(unsigned i, Value *Val) {
213 assert(i < NumUserOperands && "setOperand() out of range!");
214 assert((!isa<Constant>((const Value*)this) ||
215 isa<GlobalValue>((const Value*)this)) &&
216 "Cannot mutate a constant with setOperand!");
217 getOperandList()[i] = Val;
218 }
219
220 const Use &getOperandUse(unsigned i) const {
221 assert(i < NumUserOperands && "getOperandUse() out of range!");
222 return getOperandList()[i];
223 }
224 Use &getOperandUse(unsigned i) {
225 assert(i < NumUserOperands && "getOperandUse() out of range!");
226 return getOperandList()[i];
227 }
228
229 unsigned getNumOperands() const { return NumUserOperands; }
230
231 /// Returns the descriptor co-allocated with this User instance.
233
234 /// Returns the descriptor co-allocated with this User instance.
236
237 /// Subclasses with hung off uses need to manage the operand count
238 /// themselves. In these instances, the operand count isn't used to find the
239 /// OperandList, so there's no issue in having the operand count change.
241 assert(HasHungOffUses && "Must have hung off uses to use this method");
242 assert(NumOps < (1u << NumUserOperandsBits) && "Too many operands");
244 }
245
246 /// A droppable user is a user for which uses can be dropped without affecting
247 /// correctness and should be dropped rather than preventing a transformation
248 /// from happening.
249 LLVM_ABI bool isDroppable() const;
250
251 // ---------------------------------------------------------------------------
252 // Operand Iterator interface...
253 //
254 using op_iterator = Use*;
255 using const_op_iterator = const Use*;
258
268 return op_range(op_begin(), op_end());
269 }
271 return const_op_range(op_begin(), op_end());
272 }
273
274 /// Iterator for directly iterating over the operand Values.
276 : iterator_adaptor_base<value_op_iterator, op_iterator,
277 std::random_access_iterator_tag, Value *,
278 ptrdiff_t, Value *, Value *> {
279 explicit value_op_iterator(Use *U = nullptr) : iterator_adaptor_base(U) {}
280
281 Value *operator*() const { return *I; }
282 Value *operator->() const { return operator*(); }
283 };
284
294
296 : iterator_adaptor_base<const_value_op_iterator, const_op_iterator,
297 std::random_access_iterator_tag, const Value *,
298 ptrdiff_t, const Value *, const Value *> {
299 explicit const_value_op_iterator(const Use *U = nullptr) :
301
302 const Value *operator*() const { return *I; }
303 const Value *operator->() const { return operator*(); }
304 };
305
315
316 /// Drop all references to operands.
317 ///
318 /// This function is in charge of "letting go" of all objects that this User
319 /// refers to. This allows one to 'delete' a whole class at a time, even
320 /// though there may be circular references... First all references are
321 /// dropped, and all use counts go to zero. Then everything is deleted for
322 /// real. Note that no operations are valid on an object that has "dropped
323 /// all references", except operator delete.
325 for (Use &U : operands())
326 U.set(nullptr);
327 }
328
329 /// Replace uses of one Value with another.
330 ///
331 /// Replaces all references to the "From" definition with references to the
332 /// "To" definition. Returns whether any uses were replaced.
333 LLVM_ABI bool replaceUsesOfWith(Value *From, Value *To);
334
335 // Methods for support type inquiry through isa, cast, and dyn_cast:
336 static bool classof(const Value *V) {
337 return isa<Instruction>(V) || isa<Constant>(V);
338 }
339};
340
341// Either Use objects, or a Use pointer can be prepended to User.
342static_assert(alignof(Use) >= alignof(User),
343 "Alignment is insufficient after objects prepended to User");
344static_assert(alignof(Use *) >= alignof(User),
345 "Alignment is insufficient after objects prepended to User");
346
347template<> struct simplify_type<User::op_iterator> {
349
351 return Val->get();
352 }
353};
354template<> struct simplify_type<User::const_op_iterator> {
355 using SimpleType = /*const*/ Value*;
356
358 return Val->get();
359 }
360};
361
362} // end namespace llvm
363
364#endif // LLVM_IR_USER_H
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
aarch64 promote const
#define LLVM_PREFERRED_TYPE(T)
\macro LLVM_PREFERRED_TYPE Adjust type of bit-field in debug info.
Definition Compiler.h:729
#define LLVM_ATTRIBUTE_ALWAYS_INLINE
LLVM_ATTRIBUTE_ALWAYS_INLINE - On compilers where we have a directive to do so, mark a method "always...
Definition Compiler.h:356
#define LLVM_ABI
Definition Compiler.h:213
This defines the Use class.
const size_t AbstractManglingParser< Derived, Alloc >::NumOps
#define I(x, y, z)
Definition MD5.cpp:57
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
MutableArrayRef - Represent a mutable reference to an array (0 or more elements consecutively in memo...
Definition ArrayRef.h:298
The instances of the Type class are immutable: once they are created, they are never changed.
Definition Type.h:45
A Use represents the edge between a Value definition and its users.
Definition Use.h:35
iterator_range< const_op_iterator > const_op_range
Definition User.h:257
Use * op_iterator
Definition User.h:254
const Use * getOperandList() const
Definition User.h:200
op_range operands()
Definition User.h:267
User(Type *ty, unsigned vty, AllocInfo AllocInfo)
Definition User.h:119
op_iterator op_begin()
Definition User.h:259
LLVM_ABI void allocHungoffUses(unsigned N, bool WithExtraValues=false)
Allocate the array of Uses, followed by a pointer (with bottom bit set) to the User.
Definition User.cpp:54
const Use & getOperandUse(unsigned i) const
Definition User.h:220
const_op_iterator op_begin() const
Definition User.h:260
void dropAllReferences()
Drop all references to operands.
Definition User.h:324
const_op_iterator op_end() const
Definition User.h:264
LLVM_ABI ArrayRef< const uint8_t > getDescriptor() const
Returns the descriptor co-allocated with this User instance.
Definition User.cpp:103
value_op_iterator value_op_end()
Definition User.h:288
void setOperand(unsigned i, Value *Val)
Definition User.h:212
friend struct HungoffOperandTraits
Definition User.h:45
Use * getOperandList()
Definition User.h:203
const Use * const_op_iterator
Definition User.h:255
Use & getOperandUse(unsigned i)
Definition User.h:224
const_value_op_iterator value_op_begin() const
Definition User.h:306
void setNumHungOffUseOperands(unsigned NumOps)
Subclasses with hung off uses need to manage the operand count themselves.
Definition User.h:240
Use & Op()
Definition User.h:171
static bool classof(const Value *V)
Definition User.h:336
iterator_range< op_iterator > op_range
Definition User.h:256
LLVM_ABI bool isDroppable() const
A droppable user is a user for which uses can be dropped without affecting correctness and should be ...
Definition User.cpp:119
LLVM_ABI bool replaceUsesOfWith(Value *From, Value *To)
Replace uses of one Value with another.
Definition User.cpp:25
LLVM_ABI void growHungoffUses(unsigned N, bool WithExtraValues=false)
Grow the number of hung off uses.
Definition User.cpp:71
static Use & OpFrom(const U *that)
Definition User.h:165
Value * getOperand(unsigned i) const
Definition User.h:207
User(const User &)=delete
LLVM_ABI ~User()
Definition User.cpp:196
iterator_range< const_value_op_iterator > operand_values() const
Definition User.h:312
const Use & Op() const
Definition User.h:174
const_op_range operands() const
Definition User.h:270
friend struct ConstantAggrKeyType
Definition User.h:46
value_op_iterator value_op_begin()
Definition User.h:285
unsigned getNumOperands() const
Definition User.h:229
iterator_range< value_op_iterator > operand_values()
Definition User.h:291
op_iterator op_end()
Definition User.h:261
const_value_op_iterator value_op_end() const
Definition User.h:309
LLVM Value Representation.
Definition Value.h:75
LLVM_ABI Value(Type *Ty, unsigned scid)
Definition Value.cpp:53
@ NumUserOperandsBits
Definition Value.h:108
unsigned NumUserOperands
Definition Value.h:109
unsigned HasHungOffUses
Definition Value.h:115
unsigned HasDescriptor
Definition Value.h:116
A range adaptor for a pair of iterators.
This provides a very simple, boring adaptor for a begin and end iterator into a range type.
NodeAddr< UseNode * > Use
Definition RDFGraph.h:385
This is an optimization pass for GlobalISel generic memory operations.
Definition Types.h:26
iterator_range< T > make_range(T x, T y)
Convenience function for iterating over sub-ranges.
bool isa(const From &Val)
isa<X> - Return true if the parameter to the template is an instance of one of the template type argu...
Definition Casting.h:547
#define N
Compile-time customization of User operands.
Definition User.h:42
Information about how a User object was allocated, to be passed into the User constructor.
Definition User.h:79
const unsigned HasHungOffUses
Definition User.h:83
constexpr AllocInfo(const IntrusiveOperandsAllocMarker Alloc)
Definition User.h:92
constexpr AllocInfo(const IntrusiveOperandsAndDescriptorAllocMarker Alloc)
Definition User.h:95
const unsigned HasDescriptor
Definition User.h:85
const unsigned NumOps
Definition User.h:81
Indicates this User has operands "hung off" in another allocation.
Definition User.h:57
Indicates this User has operands co-allocated.
Definition User.h:60
const unsigned NumOps
The number of operands for this User.
Definition User.h:62
Indicates this User has operands and a descriptor co-allocated .
Definition User.h:66
const unsigned NumOps
The number of operands for this User.
Definition User.h:68
const unsigned DescBytes
The number of bytes to allocate for the descriptor.
Definition User.h:71
const_value_op_iterator(const Use *U=nullptr)
Definition User.h:299
const Value * operator*() const
Definition User.h:302
const Value * operator->() const
Definition User.h:303
Iterator for directly iterating over the operand Values.
Definition User.h:278
Value * operator->() const
Definition User.h:282
Value * operator*() const
Definition User.h:281
value_op_iterator(Use *U=nullptr)
Definition User.h:279
static SimpleType getSimplifiedValue(User::const_op_iterator &Val)
Definition User.h:357
static SimpleType getSimplifiedValue(User::op_iterator &Val)
Definition User.h:350
Define a template that can be specialized by smart pointers to reflect the fact that they are automat...
Definition Casting.h:34