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Chris Lattnerab3242f2008-01-06 01:10:31 +00001//===- CodeGenDAGPatterns.h - Read DAG patterns from .td file ---*- C++ -*-===//
Chris Lattner8cab0212008-01-05 22:25:12 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Chris Lattnerab3242f2008-01-06 01:10:31 +000010// This file declares the CodeGenDAGPatterns class, which is used to read and
Chris Lattner8cab0212008-01-05 22:25:12 +000011// represent the patterns present in a .td file for instructions.
12//
13//===----------------------------------------------------------------------===//
14
Benjamin Kramera7c40ef2014-08-13 16:26:38 +000015#ifndef LLVM_UTILS_TABLEGEN_CODEGENDAGPATTERNS_H
16#define LLVM_UTILS_TABLEGEN_CODEGENDAGPATTERNS_H
Chris Lattner8cab0212008-01-05 22:25:12 +000017
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +000018#include "CodeGenHwModes.h"
Chris Lattner8cab0212008-01-05 22:25:12 +000019#include "CodeGenIntrinsics.h"
Chandler Carruth91d19d82012-12-04 10:37:14 +000020#include "CodeGenTarget.h"
Matt Arsenault303327d2017-12-20 19:36:28 +000021#include "SDNodeProperties.h"
Chris Lattnercabe0372010-03-15 06:00:16 +000022#include "llvm/ADT/SmallVector.h"
23#include "llvm/ADT/StringMap.h"
Zachary Turner249dc142017-09-20 18:01:40 +000024#include "llvm/ADT/StringSet.h"
Craig Topperc4965bc2012-02-05 07:21:30 +000025#include "llvm/Support/ErrorHandling.h"
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +000026#include "llvm/Support/MathExtras.h"
Chris Lattner1802b172010-03-19 01:07:44 +000027#include <algorithm>
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +000028#include <array>
Daniel Sanders7e523672017-11-11 03:23:44 +000029#include <functional>
Chris Lattner1802b172010-03-19 01:07:44 +000030#include <map>
Chandler Carruth91d19d82012-12-04 10:37:14 +000031#include <set>
32#include <vector>
Chris Lattner8cab0212008-01-05 22:25:12 +000033
34namespace llvm {
Chris Lattner8cab0212008-01-05 22:25:12 +000035
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +000036class Record;
37class Init;
38class ListInit;
39class DagInit;
40class SDNodeInfo;
41class TreePattern;
42class TreePatternNode;
43class CodeGenDAGPatterns;
44class ComplexPattern;
45
Florian Hahn75e87c32018-05-30 21:00:18 +000046/// Shared pointer for TreePatternNode.
47using TreePatternNodePtr = std::shared_ptr<TreePatternNode>;
48
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +000049/// This represents a set of MVTs. Since the underlying type for the MVT
50/// is uint8_t, there are at most 256 values. To reduce the number of memory
51/// allocations and deallocations, represent the set as a sequence of bits.
52/// To reduce the allocations even further, make MachineValueTypeSet own
53/// the storage and use std::array as the bit container.
54struct MachineValueTypeSet {
55 static_assert(std::is_same<std::underlying_type<MVT::SimpleValueType>::type,
56 uint8_t>::value,
57 "Change uint8_t here to the SimpleValueType's type");
58 static unsigned constexpr Capacity = std::numeric_limits<uint8_t>::max()+1;
59 using WordType = uint64_t;
Craig Topperd022d252017-09-21 04:55:04 +000060 static unsigned constexpr WordWidth = CHAR_BIT*sizeof(WordType);
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +000061 static unsigned constexpr NumWords = Capacity/WordWidth;
62 static_assert(NumWords*WordWidth == Capacity,
63 "Capacity should be a multiple of WordWidth");
64
65 LLVM_ATTRIBUTE_ALWAYS_INLINE
66 MachineValueTypeSet() {
67 clear();
68 }
69
70 LLVM_ATTRIBUTE_ALWAYS_INLINE
71 unsigned size() const {
72 unsigned Count = 0;
73 for (WordType W : Words)
74 Count += countPopulation(W);
75 return Count;
76 }
77 LLVM_ATTRIBUTE_ALWAYS_INLINE
78 void clear() {
79 std::memset(Words.data(), 0, NumWords*sizeof(WordType));
80 }
81 LLVM_ATTRIBUTE_ALWAYS_INLINE
82 bool empty() const {
83 for (WordType W : Words)
84 if (W != 0)
85 return false;
86 return true;
87 }
88 LLVM_ATTRIBUTE_ALWAYS_INLINE
89 unsigned count(MVT T) const {
90 return (Words[T.SimpleTy / WordWidth] >> (T.SimpleTy % WordWidth)) & 1;
91 }
92 std::pair<MachineValueTypeSet&,bool> insert(MVT T) {
93 bool V = count(T.SimpleTy);
94 Words[T.SimpleTy / WordWidth] |= WordType(1) << (T.SimpleTy % WordWidth);
95 return {*this, V};
96 }
97 MachineValueTypeSet &insert(const MachineValueTypeSet &S) {
98 for (unsigned i = 0; i != NumWords; ++i)
99 Words[i] |= S.Words[i];
100 return *this;
101 }
102 LLVM_ATTRIBUTE_ALWAYS_INLINE
103 void erase(MVT T) {
104 Words[T.SimpleTy / WordWidth] &= ~(WordType(1) << (T.SimpleTy % WordWidth));
105 }
106
107 struct const_iterator {
108 // Some implementations of the C++ library require these traits to be
109 // defined.
110 using iterator_category = std::forward_iterator_tag;
111 using value_type = MVT;
112 using difference_type = ptrdiff_t;
113 using pointer = const MVT*;
114 using reference = const MVT&;
115
116 LLVM_ATTRIBUTE_ALWAYS_INLINE
117 MVT operator*() const {
118 assert(Pos != Capacity);
119 return MVT::SimpleValueType(Pos);
120 }
121 LLVM_ATTRIBUTE_ALWAYS_INLINE
122 const_iterator(const MachineValueTypeSet *S, bool End) : Set(S) {
123 Pos = End ? Capacity : find_from_pos(0);
124 }
125 LLVM_ATTRIBUTE_ALWAYS_INLINE
126 const_iterator &operator++() {
127 assert(Pos != Capacity);
128 Pos = find_from_pos(Pos+1);
129 return *this;
130 }
131
132 LLVM_ATTRIBUTE_ALWAYS_INLINE
133 bool operator==(const const_iterator &It) const {
134 return Set == It.Set && Pos == It.Pos;
135 }
136 LLVM_ATTRIBUTE_ALWAYS_INLINE
137 bool operator!=(const const_iterator &It) const {
138 return !operator==(It);
139 }
140
141 private:
142 unsigned find_from_pos(unsigned P) const {
143 unsigned SkipWords = P / WordWidth;
144 unsigned SkipBits = P % WordWidth;
145 unsigned Count = SkipWords * WordWidth;
146
147 // If P is in the middle of a word, process it manually here, because
148 // the trailing bits need to be masked off to use findFirstSet.
149 if (SkipBits != 0) {
150 WordType W = Set->Words[SkipWords];
151 W &= maskLeadingOnes<WordType>(WordWidth-SkipBits);
152 if (W != 0)
153 return Count + findFirstSet(W);
154 Count += WordWidth;
155 SkipWords++;
156 }
157
158 for (unsigned i = SkipWords; i != NumWords; ++i) {
159 WordType W = Set->Words[i];
160 if (W != 0)
161 return Count + findFirstSet(W);
162 Count += WordWidth;
163 }
164 return Capacity;
165 }
166
167 const MachineValueTypeSet *Set;
168 unsigned Pos;
169 };
170
171 LLVM_ATTRIBUTE_ALWAYS_INLINE
172 const_iterator begin() const { return const_iterator(this, false); }
173 LLVM_ATTRIBUTE_ALWAYS_INLINE
174 const_iterator end() const { return const_iterator(this, true); }
175
176 LLVM_ATTRIBUTE_ALWAYS_INLINE
177 bool operator==(const MachineValueTypeSet &S) const {
178 return Words == S.Words;
179 }
180 LLVM_ATTRIBUTE_ALWAYS_INLINE
181 bool operator!=(const MachineValueTypeSet &S) const {
182 return !operator==(S);
183 }
184
185private:
186 friend struct const_iterator;
187 std::array<WordType,NumWords> Words;
188};
189
190struct TypeSetByHwMode : public InfoByHwMode<MachineValueTypeSet> {
191 using SetType = MachineValueTypeSet;
Jim Grosbach50986b52010-12-24 05:06:32 +0000192
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000193 TypeSetByHwMode() = default;
194 TypeSetByHwMode(const TypeSetByHwMode &VTS) = default;
195 TypeSetByHwMode(MVT::SimpleValueType VT)
196 : TypeSetByHwMode(ValueTypeByHwMode(VT)) {}
197 TypeSetByHwMode(ValueTypeByHwMode VT)
198 : TypeSetByHwMode(ArrayRef<ValueTypeByHwMode>(&VT, 1)) {}
199 TypeSetByHwMode(ArrayRef<ValueTypeByHwMode> VTList);
Jim Grosbach50986b52010-12-24 05:06:32 +0000200
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000201 SetType &getOrCreate(unsigned Mode) {
202 if (hasMode(Mode))
203 return get(Mode);
204 return Map.insert({Mode,SetType()}).first->second;
205 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000206
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000207 bool isValueTypeByHwMode(bool AllowEmpty) const;
208 ValueTypeByHwMode getValueTypeByHwMode() const;
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +0000209
210 LLVM_ATTRIBUTE_ALWAYS_INLINE
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000211 bool isMachineValueType() const {
212 return isDefaultOnly() && Map.begin()->second.size() == 1;
213 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000214
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +0000215 LLVM_ATTRIBUTE_ALWAYS_INLINE
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000216 MVT getMachineValueType() const {
217 assert(isMachineValueType());
218 return *Map.begin()->second.begin();
219 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000220
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000221 bool isPossible() const;
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +0000222
223 LLVM_ATTRIBUTE_ALWAYS_INLINE
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000224 bool isDefaultOnly() const {
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +0000225 return Map.size() == 1 && Map.begin()->first == DefaultMode;
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000226 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000227
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000228 bool insert(const ValueTypeByHwMode &VVT);
229 bool constrain(const TypeSetByHwMode &VTS);
230 template <typename Predicate> bool constrain(Predicate P);
Zachary Turner249dc142017-09-20 18:01:40 +0000231 template <typename Predicate>
232 bool assign_if(const TypeSetByHwMode &VTS, Predicate P);
Jim Grosbach50986b52010-12-24 05:06:32 +0000233
Zachary Turner249dc142017-09-20 18:01:40 +0000234 void writeToStream(raw_ostream &OS) const;
235 static void writeToStream(const SetType &S, raw_ostream &OS);
Jim Grosbach50986b52010-12-24 05:06:32 +0000236
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000237 bool operator==(const TypeSetByHwMode &VTS) const;
238 bool operator!=(const TypeSetByHwMode &VTS) const { return !(*this == VTS); }
Jim Grosbach50986b52010-12-24 05:06:32 +0000239
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000240 void dump() const;
Krzysztof Parzyszek2e0f7bd2017-12-21 17:12:43 +0000241 bool validate() const;
Craig Topper74169dc2014-01-28 04:49:01 +0000242
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000243private:
244 /// Intersect two sets. Return true if anything has changed.
245 bool intersect(SetType &Out, const SetType &In);
246};
Jim Grosbach50986b52010-12-24 05:06:32 +0000247
Krzysztof Parzyszek7725e492017-09-22 18:29:37 +0000248raw_ostream &operator<<(raw_ostream &OS, const TypeSetByHwMode &T);
249
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000250struct TypeInfer {
251 TypeInfer(TreePattern &T) : TP(T), ForceMode(0) {}
Jim Grosbach50986b52010-12-24 05:06:32 +0000252
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000253 bool isConcrete(const TypeSetByHwMode &VTS, bool AllowEmpty) const {
254 return VTS.isValueTypeByHwMode(AllowEmpty);
255 }
256 ValueTypeByHwMode getConcrete(const TypeSetByHwMode &VTS,
257 bool AllowEmpty) const {
258 assert(VTS.isValueTypeByHwMode(AllowEmpty));
259 return VTS.getValueTypeByHwMode();
260 }
Duncan Sands13237ac2008-06-06 12:08:01 +0000261
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000262 /// The protocol in the following functions (Merge*, force*, Enforce*,
263 /// expand*) is to return "true" if a change has been made, "false"
264 /// otherwise.
Chris Lattner8cab0212008-01-05 22:25:12 +0000265
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000266 bool MergeInTypeInfo(TypeSetByHwMode &Out, const TypeSetByHwMode &In);
267 bool MergeInTypeInfo(TypeSetByHwMode &Out, MVT::SimpleValueType InVT) {
268 return MergeInTypeInfo(Out, TypeSetByHwMode(InVT));
269 }
270 bool MergeInTypeInfo(TypeSetByHwMode &Out, ValueTypeByHwMode InVT) {
271 return MergeInTypeInfo(Out, TypeSetByHwMode(InVT));
272 }
Bob Wilsonf7e587f2009-08-12 22:30:59 +0000273
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000274 /// Reduce the set \p Out to have at most one element for each mode.
275 bool forceArbitrary(TypeSetByHwMode &Out);
Chris Lattnercabe0372010-03-15 06:00:16 +0000276
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000277 /// The following four functions ensure that upon return the set \p Out
278 /// will only contain types of the specified kind: integer, floating-point,
279 /// scalar, or vector.
280 /// If \p Out is empty, all legal types of the specified kind will be added
281 /// to it. Otherwise, all types that are not of the specified kind will be
282 /// removed from \p Out.
283 bool EnforceInteger(TypeSetByHwMode &Out);
284 bool EnforceFloatingPoint(TypeSetByHwMode &Out);
285 bool EnforceScalar(TypeSetByHwMode &Out);
286 bool EnforceVector(TypeSetByHwMode &Out);
Chris Lattnercabe0372010-03-15 06:00:16 +0000287
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000288 /// If \p Out is empty, fill it with all legal types. Otherwise, leave it
289 /// unchanged.
290 bool EnforceAny(TypeSetByHwMode &Out);
291 /// Make sure that for each type in \p Small, there exists a larger type
292 /// in \p Big.
293 bool EnforceSmallerThan(TypeSetByHwMode &Small, TypeSetByHwMode &Big);
294 /// 1. Ensure that for each type T in \p Vec, T is a vector type, and that
295 /// for each type U in \p Elem, U is a scalar type.
296 /// 2. Ensure that for each (scalar) type U in \p Elem, there exists a
297 /// (vector) type T in \p Vec, such that U is the element type of T.
298 bool EnforceVectorEltTypeIs(TypeSetByHwMode &Vec, TypeSetByHwMode &Elem);
299 bool EnforceVectorEltTypeIs(TypeSetByHwMode &Vec,
300 const ValueTypeByHwMode &VVT);
301 /// Ensure that for each type T in \p Sub, T is a vector type, and there
302 /// exists a type U in \p Vec such that U is a vector type with the same
303 /// element type as T and at least as many elements as T.
304 bool EnforceVectorSubVectorTypeIs(TypeSetByHwMode &Vec,
305 TypeSetByHwMode &Sub);
306 /// 1. Ensure that \p V has a scalar type iff \p W has a scalar type.
307 /// 2. Ensure that for each vector type T in \p V, there exists a vector
308 /// type U in \p W, such that T and U have the same number of elements.
309 /// 3. Ensure that for each vector type U in \p W, there exists a vector
310 /// type T in \p V, such that T and U have the same number of elements
311 /// (reverse of 2).
312 bool EnforceSameNumElts(TypeSetByHwMode &V, TypeSetByHwMode &W);
313 /// 1. Ensure that for each type T in \p A, there exists a type U in \p B,
314 /// such that T and U have equal size in bits.
315 /// 2. Ensure that for each type U in \p B, there exists a type T in \p A
316 /// such that T and U have equal size in bits (reverse of 1).
317 bool EnforceSameSize(TypeSetByHwMode &A, TypeSetByHwMode &B);
Chris Lattnercabe0372010-03-15 06:00:16 +0000318
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000319 /// For each overloaded type (i.e. of form *Any), replace it with the
320 /// corresponding subset of legal, specific types.
321 void expandOverloads(TypeSetByHwMode &VTS);
322 void expandOverloads(TypeSetByHwMode::SetType &Out,
323 const TypeSetByHwMode::SetType &Legal);
Jim Grosbach50986b52010-12-24 05:06:32 +0000324
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000325 struct ValidateOnExit {
Krzysztof Parzyszek2e0f7bd2017-12-21 17:12:43 +0000326 ValidateOnExit(TypeSetByHwMode &T, TypeInfer &TI) : Infer(TI), VTS(T) {}
327 #ifndef NDEBUG
328 ~ValidateOnExit();
329 #else
330 ~ValidateOnExit() {} // Empty destructor with NDEBUG.
331 #endif
332 TypeInfer &Infer;
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000333 TypeSetByHwMode &VTS;
Chris Lattnercabe0372010-03-15 06:00:16 +0000334 };
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000335
336 TreePattern &TP;
337 unsigned ForceMode; // Mode to use when set.
338 bool CodeGen = false; // Set during generation of matcher code.
339
340private:
341 TypeSetByHwMode getLegalTypes();
Krzysztof Parzyszekaffd2012017-09-19 18:42:34 +0000342
343 /// Cached legal types.
344 bool LegalTypesCached = false;
345 TypeSetByHwMode::SetType LegalCache = {};
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000346};
Chris Lattner8cab0212008-01-05 22:25:12 +0000347
Scott Michel94420742008-03-05 17:49:05 +0000348/// Set type used to track multiply used variables in patterns
Zachary Turner249dc142017-09-20 18:01:40 +0000349typedef StringSet<> MultipleUseVarSet;
Scott Michel94420742008-03-05 17:49:05 +0000350
Chris Lattner8cab0212008-01-05 22:25:12 +0000351/// SDTypeConstraint - This is a discriminated union of constraints,
352/// corresponding to the SDTypeConstraint tablegen class in Target.td.
353struct SDTypeConstraint {
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000354 SDTypeConstraint(Record *R, const CodeGenHwModes &CGH);
Jim Grosbach50986b52010-12-24 05:06:32 +0000355
Chris Lattner8cab0212008-01-05 22:25:12 +0000356 unsigned OperandNo; // The operand # this constraint applies to.
Jim Grosbach50986b52010-12-24 05:06:32 +0000357 enum {
358 SDTCisVT, SDTCisPtrTy, SDTCisInt, SDTCisFP, SDTCisVec, SDTCisSameAs,
David Greene127fd1d2011-01-24 20:53:18 +0000359 SDTCisVTSmallerThanOp, SDTCisOpSmallerThanOp, SDTCisEltOfVec,
Craig Topper9a44b3f2015-11-26 07:02:18 +0000360 SDTCisSubVecOfVec, SDTCVecEltisVT, SDTCisSameNumEltsAs, SDTCisSameSizeAs
Chris Lattner8cab0212008-01-05 22:25:12 +0000361 } ConstraintType;
Jim Grosbach50986b52010-12-24 05:06:32 +0000362
Chris Lattner8cab0212008-01-05 22:25:12 +0000363 union { // The discriminated union.
364 struct {
Chris Lattner8cab0212008-01-05 22:25:12 +0000365 unsigned OtherOperandNum;
366 } SDTCisSameAs_Info;
367 struct {
368 unsigned OtherOperandNum;
369 } SDTCisVTSmallerThanOp_Info;
370 struct {
371 unsigned BigOperandNum;
372 } SDTCisOpSmallerThanOp_Info;
373 struct {
374 unsigned OtherOperandNum;
Nate Begeman17bedbc2008-02-09 01:37:05 +0000375 } SDTCisEltOfVec_Info;
David Greene127fd1d2011-01-24 20:53:18 +0000376 struct {
377 unsigned OtherOperandNum;
378 } SDTCisSubVecOfVec_Info;
Craig Topper0be34582015-03-05 07:11:34 +0000379 struct {
Craig Topper0be34582015-03-05 07:11:34 +0000380 unsigned OtherOperandNum;
381 } SDTCisSameNumEltsAs_Info;
Craig Topper9a44b3f2015-11-26 07:02:18 +0000382 struct {
383 unsigned OtherOperandNum;
384 } SDTCisSameSizeAs_Info;
Chris Lattner8cab0212008-01-05 22:25:12 +0000385 } x;
386
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000387 // The VT for SDTCisVT and SDTCVecEltisVT.
388 // Must not be in the union because it has a non-trivial destructor.
389 ValueTypeByHwMode VVT;
390
Chris Lattner8cab0212008-01-05 22:25:12 +0000391 /// ApplyTypeConstraint - Given a node in a pattern, apply this type
392 /// constraint to the nodes operands. This returns true if it makes a
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000393 /// change, false otherwise. If a type contradiction is found, an error
394 /// is flagged.
Chris Lattner8cab0212008-01-05 22:25:12 +0000395 bool ApplyTypeConstraint(TreePatternNode *N, const SDNodeInfo &NodeInfo,
396 TreePattern &TP) const;
Chris Lattner8cab0212008-01-05 22:25:12 +0000397};
398
399/// SDNodeInfo - One of these records is created for each SDNode instance in
400/// the target .td file. This represents the various dag nodes we will be
401/// processing.
402class SDNodeInfo {
403 Record *Def;
Craig Topperbcd3c372017-05-31 21:12:46 +0000404 StringRef EnumName;
405 StringRef SDClassName;
Chris Lattner8cab0212008-01-05 22:25:12 +0000406 unsigned Properties;
407 unsigned NumResults;
408 int NumOperands;
409 std::vector<SDTypeConstraint> TypeConstraints;
410public:
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000411 // Parse the specified record.
412 SDNodeInfo(Record *R, const CodeGenHwModes &CGH);
Jim Grosbach50986b52010-12-24 05:06:32 +0000413
Chris Lattner8cab0212008-01-05 22:25:12 +0000414 unsigned getNumResults() const { return NumResults; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000415
Chris Lattner135091b2010-03-28 08:48:47 +0000416 /// getNumOperands - This is the number of operands required or -1 if
417 /// variadic.
Chris Lattner8cab0212008-01-05 22:25:12 +0000418 int getNumOperands() const { return NumOperands; }
419 Record *getRecord() const { return Def; }
Craig Topperbcd3c372017-05-31 21:12:46 +0000420 StringRef getEnumName() const { return EnumName; }
421 StringRef getSDClassName() const { return SDClassName; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000422
Chris Lattner8cab0212008-01-05 22:25:12 +0000423 const std::vector<SDTypeConstraint> &getTypeConstraints() const {
424 return TypeConstraints;
425 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000426
Chris Lattner99e53b32010-02-28 00:22:30 +0000427 /// getKnownType - If the type constraints on this node imply a fixed type
428 /// (e.g. all stores return void, etc), then return it as an
Chris Lattnerda5b4ad2010-03-19 01:14:27 +0000429 /// MVT::SimpleValueType. Otherwise, return MVT::Other.
Chris Lattner6c2d1782010-03-24 00:41:19 +0000430 MVT::SimpleValueType getKnownType(unsigned ResNo) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000431
Chris Lattner8cab0212008-01-05 22:25:12 +0000432 /// hasProperty - Return true if this node has the specified property.
433 ///
434 bool hasProperty(enum SDNP Prop) const { return Properties & (1 << Prop); }
435
436 /// ApplyTypeConstraints - Given a node in a pattern, apply the type
437 /// constraints for this node to the operands of the node. This returns
438 /// true if it makes a change, false otherwise. If a type contradiction is
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000439 /// found, an error is flagged.
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000440 bool ApplyTypeConstraints(TreePatternNode *N, TreePattern &TP) const;
Chris Lattner8cab0212008-01-05 22:25:12 +0000441};
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000442
Chris Lattner514e2922011-04-17 21:38:24 +0000443/// TreePredicateFn - This is an abstraction that represents the predicates on
444/// a PatFrag node. This is a simple one-word wrapper around a pointer to
445/// provide nice accessors.
446class TreePredicateFn {
447 /// PatFragRec - This is the TreePattern for the PatFrag that we
448 /// originally came from.
449 TreePattern *PatFragRec;
450public:
451 /// TreePredicateFn constructor. Here 'N' is a subclass of PatFrag.
Chris Lattner2ff8c1a2011-04-17 22:05:17 +0000452 TreePredicateFn(TreePattern *N);
Chris Lattner514e2922011-04-17 21:38:24 +0000453
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000454
Chris Lattner514e2922011-04-17 21:38:24 +0000455 TreePattern *getOrigPatFragRecord() const { return PatFragRec; }
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000456
Chris Lattner514e2922011-04-17 21:38:24 +0000457 /// isAlwaysTrue - Return true if this is a noop predicate.
458 bool isAlwaysTrue() const;
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000459
Daniel Sandersadbf58d2017-10-15 19:01:32 +0000460 bool isImmediatePattern() const { return hasImmCode(); }
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000461
Chris Lattner07add492011-04-18 06:22:33 +0000462 /// getImmediatePredicateCode - Return the code that evaluates this pattern if
463 /// this is an immediate predicate. It is an error to call this on a
464 /// non-immediate pattern.
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000465 std::string getImmediatePredicateCode() const {
466 std::string Result = getImmCode();
Chris Lattner07add492011-04-18 06:22:33 +0000467 assert(!Result.empty() && "Isn't an immediate pattern!");
468 return Result;
469 }
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000470
Chris Lattner514e2922011-04-17 21:38:24 +0000471 bool operator==(const TreePredicateFn &RHS) const {
472 return PatFragRec == RHS.PatFragRec;
473 }
474
475 bool operator!=(const TreePredicateFn &RHS) const { return !(*this == RHS); }
476
477 /// Return the name to use in the generated code to reference this, this is
478 /// "Predicate_foo" if from a pattern fragment "foo".
479 std::string getFnName() const;
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000480
Chris Lattner514e2922011-04-17 21:38:24 +0000481 /// getCodeToRunOnSDNode - Return the code for the function body that
482 /// evaluates this predicate. The argument is expected to be in "Node",
483 /// not N. This handles casting and conversion to a concrete node type as
484 /// appropriate.
485 std::string getCodeToRunOnSDNode() const;
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000486
Daniel Sanders649c5852017-10-13 20:42:18 +0000487 /// Get the data type of the argument to getImmediatePredicateCode().
Simon Pilgrim6ecae9f2017-10-14 21:27:53 +0000488 StringRef getImmType() const;
Daniel Sanders649c5852017-10-13 20:42:18 +0000489
Daniel Sanders11300ce2017-10-13 21:28:03 +0000490 /// Get a string that describes the type returned by getImmType() but is
491 /// usable as part of an identifier.
Simon Pilgrim6ecae9f2017-10-14 21:27:53 +0000492 StringRef getImmTypeIdentifier() const;
Daniel Sanders11300ce2017-10-13 21:28:03 +0000493
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000494 // Is the desired predefined predicate for a load?
495 bool isLoad() const;
496 // Is the desired predefined predicate for a store?
497 bool isStore() const;
Daniel Sanders87d196c2017-11-13 22:26:13 +0000498 // Is the desired predefined predicate for an atomic?
499 bool isAtomic() const;
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000500
501 /// Is this predicate the predefined unindexed load predicate?
502 /// Is this predicate the predefined unindexed store predicate?
503 bool isUnindexed() const;
504 /// Is this predicate the predefined non-extending load predicate?
505 bool isNonExtLoad() const;
506 /// Is this predicate the predefined any-extend load predicate?
507 bool isAnyExtLoad() const;
508 /// Is this predicate the predefined sign-extend load predicate?
509 bool isSignExtLoad() const;
510 /// Is this predicate the predefined zero-extend load predicate?
511 bool isZeroExtLoad() const;
512 /// Is this predicate the predefined non-truncating store predicate?
513 bool isNonTruncStore() const;
514 /// Is this predicate the predefined truncating store predicate?
515 bool isTruncStore() const;
516
Daniel Sanders6d9d30a2017-11-13 23:03:47 +0000517 /// Is this predicate the predefined monotonic atomic predicate?
518 bool isAtomicOrderingMonotonic() const;
519 /// Is this predicate the predefined acquire atomic predicate?
520 bool isAtomicOrderingAcquire() const;
521 /// Is this predicate the predefined release atomic predicate?
522 bool isAtomicOrderingRelease() const;
523 /// Is this predicate the predefined acquire-release atomic predicate?
524 bool isAtomicOrderingAcquireRelease() const;
525 /// Is this predicate the predefined sequentially consistent atomic predicate?
526 bool isAtomicOrderingSequentiallyConsistent() const;
527
Daniel Sanders0c43b3a2017-11-30 21:05:59 +0000528 /// Is this predicate the predefined acquire-or-stronger atomic predicate?
529 bool isAtomicOrderingAcquireOrStronger() const;
530 /// Is this predicate the predefined weaker-than-acquire atomic predicate?
531 bool isAtomicOrderingWeakerThanAcquire() const;
532
533 /// Is this predicate the predefined release-or-stronger atomic predicate?
534 bool isAtomicOrderingReleaseOrStronger() const;
535 /// Is this predicate the predefined weaker-than-release atomic predicate?
536 bool isAtomicOrderingWeakerThanRelease() const;
537
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000538 /// If non-null, indicates that this predicate is a predefined memory VT
539 /// predicate for a load/store and returns the ValueType record for the memory VT.
540 Record *getMemoryVT() const;
541 /// If non-null, indicates that this predicate is a predefined memory VT
542 /// predicate (checking only the scalar type) for load/store and returns the
543 /// ValueType record for the memory VT.
544 Record *getScalarMemoryVT() const;
545
Chris Lattner514e2922011-04-17 21:38:24 +0000546private:
Daniel Sandersadbf58d2017-10-15 19:01:32 +0000547 bool hasPredCode() const;
548 bool hasImmCode() const;
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000549 std::string getPredCode() const;
550 std::string getImmCode() const;
Daniel Sanders649c5852017-10-13 20:42:18 +0000551 bool immCodeUsesAPInt() const;
552 bool immCodeUsesAPFloat() const;
Daniel Sanders3f267bf2017-10-15 02:06:44 +0000553
554 bool isPredefinedPredicateEqualTo(StringRef Field, bool Value) const;
Chris Lattner514e2922011-04-17 21:38:24 +0000555};
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000556
Chris Lattner8cab0212008-01-05 22:25:12 +0000557
Chris Lattner8cab0212008-01-05 22:25:12 +0000558class TreePatternNode {
Chris Lattnerf1447252010-03-19 21:37:09 +0000559 /// The type of each node result. Before and during type inference, each
560 /// result may be a set of possible types. After (successful) type inference,
561 /// each is a single concrete type.
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000562 std::vector<TypeSetByHwMode> Types;
Jim Grosbach50986b52010-12-24 05:06:32 +0000563
Chris Lattner8cab0212008-01-05 22:25:12 +0000564 /// Operator - The Record for the operator if this is an interior node (not
565 /// a leaf).
566 Record *Operator;
Jim Grosbach50986b52010-12-24 05:06:32 +0000567
Chris Lattner8cab0212008-01-05 22:25:12 +0000568 /// Val - The init value (e.g. the "GPRC" record, or "7") for a leaf.
569 ///
David Greeneaf8ee2c2011-07-29 22:43:06 +0000570 Init *Val;
Jim Grosbach50986b52010-12-24 05:06:32 +0000571
Chris Lattner8cab0212008-01-05 22:25:12 +0000572 /// Name - The name given to this node with the :$foo notation.
573 ///
574 std::string Name;
Jim Grosbach50986b52010-12-24 05:06:32 +0000575
Dan Gohman6e979022008-10-15 06:17:21 +0000576 /// PredicateFns - The predicate functions to execute on this node to check
577 /// for a match. If this list is empty, no predicate is involved.
Chris Lattner514e2922011-04-17 21:38:24 +0000578 std::vector<TreePredicateFn> PredicateFns;
Jim Grosbach50986b52010-12-24 05:06:32 +0000579
Chris Lattner8cab0212008-01-05 22:25:12 +0000580 /// TransformFn - The transformation function to execute on this node before
581 /// it can be substituted into the resulting instruction on a pattern match.
582 Record *TransformFn;
Jim Grosbach50986b52010-12-24 05:06:32 +0000583
Florian Hahn75e87c32018-05-30 21:00:18 +0000584 std::vector<TreePatternNodePtr> Children;
585
Chris Lattner8cab0212008-01-05 22:25:12 +0000586public:
Florian Hahn75e87c32018-05-30 21:00:18 +0000587 TreePatternNode(Record *Op, std::vector<TreePatternNodePtr> &Ch,
Jim Grosbach50986b52010-12-24 05:06:32 +0000588 unsigned NumResults)
Florian Hahn75e87c32018-05-30 21:00:18 +0000589 : Operator(Op), Val(nullptr), TransformFn(nullptr), Children(Ch) {
Chris Lattnerf1447252010-03-19 21:37:09 +0000590 Types.resize(NumResults);
591 }
David Greeneaf8ee2c2011-07-29 22:43:06 +0000592 TreePatternNode(Init *val, unsigned NumResults) // leaf ctor
Craig Topperada08572014-04-16 04:21:27 +0000593 : Operator(nullptr), Val(val), TransformFn(nullptr) {
Chris Lattnerf1447252010-03-19 21:37:09 +0000594 Types.resize(NumResults);
Chris Lattner8cab0212008-01-05 22:25:12 +0000595 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000596
Jakob Stoklund Olesenb5b91102013-03-23 18:08:44 +0000597 bool hasName() const { return !Name.empty(); }
Chris Lattner8cab0212008-01-05 22:25:12 +0000598 const std::string &getName() const { return Name; }
Chris Lattneradf7ecf2010-03-28 06:50:34 +0000599 void setName(StringRef N) { Name.assign(N.begin(), N.end()); }
Jim Grosbach50986b52010-12-24 05:06:32 +0000600
Craig Topperada08572014-04-16 04:21:27 +0000601 bool isLeaf() const { return Val != nullptr; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000602
Chris Lattnercabe0372010-03-15 06:00:16 +0000603 // Type accessors.
Chris Lattnerf1447252010-03-19 21:37:09 +0000604 unsigned getNumTypes() const { return Types.size(); }
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000605 ValueTypeByHwMode getType(unsigned ResNo) const {
606 return Types[ResNo].getValueTypeByHwMode();
Chris Lattnerf1447252010-03-19 21:37:09 +0000607 }
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000608 const std::vector<TypeSetByHwMode> &getExtTypes() const { return Types; }
609 const TypeSetByHwMode &getExtType(unsigned ResNo) const {
610 return Types[ResNo];
611 }
612 TypeSetByHwMode &getExtType(unsigned ResNo) { return Types[ResNo]; }
613 void setType(unsigned ResNo, const TypeSetByHwMode &T) { Types[ResNo] = T; }
614 MVT::SimpleValueType getSimpleType(unsigned ResNo) const {
615 return Types[ResNo].getMachineValueType().SimpleTy;
616 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000617
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000618 bool hasConcreteType(unsigned ResNo) const {
619 return Types[ResNo].isValueTypeByHwMode(false);
Chris Lattnerf1447252010-03-19 21:37:09 +0000620 }
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000621 bool isTypeCompletelyUnknown(unsigned ResNo, TreePattern &TP) const {
622 return Types[ResNo].empty();
Chris Lattnerf1447252010-03-19 21:37:09 +0000623 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000624
David Greeneaf8ee2c2011-07-29 22:43:06 +0000625 Init *getLeafValue() const { assert(isLeaf()); return Val; }
Chris Lattner8cab0212008-01-05 22:25:12 +0000626 Record *getOperator() const { assert(!isLeaf()); return Operator; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000627
Chris Lattner8cab0212008-01-05 22:25:12 +0000628 unsigned getNumChildren() const { return Children.size(); }
Florian Hahn75e87c32018-05-30 21:00:18 +0000629 TreePatternNode *getChild(unsigned N) const { return Children[N].get(); }
630 const TreePatternNodePtr &getChildShared(unsigned N) const {
631 return Children[N];
Chris Lattner8cab0212008-01-05 22:25:12 +0000632 }
Florian Hahn75e87c32018-05-30 21:00:18 +0000633 void setChild(unsigned i, TreePatternNodePtr N) { Children[i] = N; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000634
Chris Lattneraa7d3e02010-02-16 06:10:58 +0000635 /// hasChild - Return true if N is any of our children.
636 bool hasChild(const TreePatternNode *N) const {
637 for (unsigned i = 0, e = Children.size(); i != e; ++i)
Florian Hahn75e87c32018-05-30 21:00:18 +0000638 if (Children[i].get() == N)
639 return true;
Chris Lattneraa7d3e02010-02-16 06:10:58 +0000640 return false;
641 }
Chris Lattner89c65662008-01-06 05:36:50 +0000642
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000643 bool hasProperTypeByHwMode() const;
644 bool hasPossibleType() const;
645 bool setDefaultMode(unsigned Mode);
646
Chris Lattner514e2922011-04-17 21:38:24 +0000647 bool hasAnyPredicate() const { return !PredicateFns.empty(); }
Simon Pilgrim8c4d0612017-09-22 16:57:28 +0000648
Chris Lattner514e2922011-04-17 21:38:24 +0000649 const std::vector<TreePredicateFn> &getPredicateFns() const {
650 return PredicateFns;
651 }
Dan Gohman6e979022008-10-15 06:17:21 +0000652 void clearPredicateFns() { PredicateFns.clear(); }
Chris Lattner514e2922011-04-17 21:38:24 +0000653 void setPredicateFns(const std::vector<TreePredicateFn> &Fns) {
Dan Gohman6e979022008-10-15 06:17:21 +0000654 assert(PredicateFns.empty() && "Overwriting non-empty predicate list!");
655 PredicateFns = Fns;
656 }
Chris Lattner514e2922011-04-17 21:38:24 +0000657 void addPredicateFn(const TreePredicateFn &Fn) {
658 assert(!Fn.isAlwaysTrue() && "Empty predicate string!");
David Majnemer0d955d02016-08-11 22:21:41 +0000659 if (!is_contained(PredicateFns, Fn))
Dan Gohman6e979022008-10-15 06:17:21 +0000660 PredicateFns.push_back(Fn);
661 }
Chris Lattner8cab0212008-01-05 22:25:12 +0000662
663 Record *getTransformFn() const { return TransformFn; }
664 void setTransformFn(Record *Fn) { TransformFn = Fn; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000665
Chris Lattner89c65662008-01-06 05:36:50 +0000666 /// getIntrinsicInfo - If this node corresponds to an intrinsic, return the
667 /// CodeGenIntrinsic information for it, otherwise return a null pointer.
668 const CodeGenIntrinsic *getIntrinsicInfo(const CodeGenDAGPatterns &CDP) const;
Evan Cheng49bad4c2008-06-16 20:29:38 +0000669
Chris Lattner53c39ba2010-02-14 22:22:58 +0000670 /// getComplexPatternInfo - If this node corresponds to a ComplexPattern,
671 /// return the ComplexPattern information, otherwise return null.
672 const ComplexPattern *
673 getComplexPatternInfo(const CodeGenDAGPatterns &CGP) const;
674
Tim Northoverc807a172014-05-20 11:52:46 +0000675 /// Returns the number of MachineInstr operands that would be produced by this
676 /// node if it mapped directly to an output Instruction's
677 /// operand. ComplexPattern specifies this explicitly; MIOperandInfo gives it
678 /// for Operands; otherwise 1.
679 unsigned getNumMIResults(const CodeGenDAGPatterns &CGP) const;
680
Chris Lattner53c39ba2010-02-14 22:22:58 +0000681 /// NodeHasProperty - Return true if this node has the specified property.
Chris Lattner450d5042010-02-14 22:33:49 +0000682 bool NodeHasProperty(SDNP Property, const CodeGenDAGPatterns &CGP) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000683
Chris Lattner53c39ba2010-02-14 22:22:58 +0000684 /// TreeHasProperty - Return true if any node in this tree has the specified
685 /// property.
Chris Lattner450d5042010-02-14 22:33:49 +0000686 bool TreeHasProperty(SDNP Property, const CodeGenDAGPatterns &CGP) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000687
Evan Cheng49bad4c2008-06-16 20:29:38 +0000688 /// isCommutativeIntrinsic - Return true if the node is an intrinsic which is
689 /// marked isCommutative.
690 bool isCommutativeIntrinsic(const CodeGenDAGPatterns &CDP) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000691
Daniel Dunbar38a22bf2009-07-03 00:10:29 +0000692 void print(raw_ostream &OS) const;
Chris Lattner8cab0212008-01-05 22:25:12 +0000693 void dump() const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000694
Chris Lattner8cab0212008-01-05 22:25:12 +0000695public: // Higher level manipulation routines.
696
697 /// clone - Return a new copy of this tree.
698 ///
Florian Hahn75e87c32018-05-30 21:00:18 +0000699 TreePatternNodePtr clone() const;
Chris Lattner53c39ba2010-02-14 22:22:58 +0000700
701 /// RemoveAllTypes - Recursively strip all the types of this tree.
702 void RemoveAllTypes();
Jim Grosbach50986b52010-12-24 05:06:32 +0000703
Chris Lattner8cab0212008-01-05 22:25:12 +0000704 /// isIsomorphicTo - Return true if this node is recursively isomorphic to
705 /// the specified node. For this comparison, all of the state of the node
706 /// is considered, except for the assigned name. Nodes with differing names
707 /// that are otherwise identical are considered isomorphic.
Scott Michel94420742008-03-05 17:49:05 +0000708 bool isIsomorphicTo(const TreePatternNode *N,
709 const MultipleUseVarSet &DepVars) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000710
Chris Lattner8cab0212008-01-05 22:25:12 +0000711 /// SubstituteFormalArguments - Replace the formal arguments in this tree
712 /// with actual values specified by ArgMap.
Florian Hahn75e87c32018-05-30 21:00:18 +0000713 void
714 SubstituteFormalArguments(std::map<std::string, TreePatternNodePtr> &ArgMap);
Chris Lattner8cab0212008-01-05 22:25:12 +0000715
716 /// InlinePatternFragments - If this pattern refers to any pattern
717 /// fragments, inline them into place, giving us a pattern without any
718 /// PatFrag references.
Florian Hahn75e87c32018-05-30 21:00:18 +0000719 TreePatternNodePtr InlinePatternFragments(TreePatternNodePtr T,
720 TreePattern &TP);
Jim Grosbach50986b52010-12-24 05:06:32 +0000721
Bob Wilson1b97f3f2009-01-05 17:23:09 +0000722 /// ApplyTypeConstraints - Apply all of the type constraints relevant to
Chris Lattner8cab0212008-01-05 22:25:12 +0000723 /// this node and its children in the tree. This returns true if it makes a
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000724 /// change, false otherwise. If a type contradiction is found, flag an error.
Chris Lattner8cab0212008-01-05 22:25:12 +0000725 bool ApplyTypeConstraints(TreePattern &TP, bool NotRegisters);
Jim Grosbach50986b52010-12-24 05:06:32 +0000726
Chris Lattner8cab0212008-01-05 22:25:12 +0000727 /// UpdateNodeType - Set the node type of N to VT if VT contains
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000728 /// information. If N already contains a conflicting type, then flag an
729 /// error. This returns true if any information was updated.
Chris Lattner8cab0212008-01-05 22:25:12 +0000730 ///
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000731 bool UpdateNodeType(unsigned ResNo, const TypeSetByHwMode &InTy,
732 TreePattern &TP);
Chris Lattnerf1447252010-03-19 21:37:09 +0000733 bool UpdateNodeType(unsigned ResNo, MVT::SimpleValueType InTy,
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000734 TreePattern &TP);
735 bool UpdateNodeType(unsigned ResNo, ValueTypeByHwMode InTy,
736 TreePattern &TP);
Jim Grosbach50986b52010-12-24 05:06:32 +0000737
Jakob Stoklund Olesen57a86502013-03-18 04:08:07 +0000738 // Update node type with types inferred from an instruction operand or result
739 // def from the ins/outs lists.
740 // Return true if the type changed.
741 bool UpdateNodeTypeFromInst(unsigned ResNo, Record *Operand, TreePattern &TP);
742
Chris Lattner8cab0212008-01-05 22:25:12 +0000743 /// ContainsUnresolvedType - Return true if this tree contains any
744 /// unresolved types.
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000745 bool ContainsUnresolvedType(TreePattern &TP) const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000746
Chris Lattner8cab0212008-01-05 22:25:12 +0000747 /// canPatternMatch - If it is impossible for this pattern to match on this
748 /// target, fill in Reason and return false. Otherwise, return true.
Dan Gohmanfc4ad7de2008-04-03 00:02:49 +0000749 bool canPatternMatch(std::string &Reason, const CodeGenDAGPatterns &CDP);
Chris Lattner8cab0212008-01-05 22:25:12 +0000750};
751
Chris Lattnerdd2ec582010-02-14 21:10:33 +0000752inline raw_ostream &operator<<(raw_ostream &OS, const TreePatternNode &TPN) {
753 TPN.print(OS);
754 return OS;
755}
Jim Grosbach50986b52010-12-24 05:06:32 +0000756
Chris Lattner8cab0212008-01-05 22:25:12 +0000757
758/// TreePattern - Represent a pattern, used for instructions, pattern
759/// fragments, etc.
760///
761class TreePattern {
762 /// Trees - The list of pattern trees which corresponds to this pattern.
763 /// Note that PatFrag's only have a single tree.
764 ///
Florian Hahn75e87c32018-05-30 21:00:18 +0000765 std::vector<TreePatternNodePtr> Trees;
Jim Grosbach50986b52010-12-24 05:06:32 +0000766
Chris Lattnercabe0372010-03-15 06:00:16 +0000767 /// NamedNodes - This is all of the nodes that have names in the trees in this
768 /// pattern.
Florian Hahn75e87c32018-05-30 21:00:18 +0000769 StringMap<SmallVector<TreePatternNode *, 1>> NamedNodes;
Jim Grosbach50986b52010-12-24 05:06:32 +0000770
Chris Lattner8cab0212008-01-05 22:25:12 +0000771 /// TheRecord - The actual TableGen record corresponding to this pattern.
772 ///
773 Record *TheRecord;
Jim Grosbach50986b52010-12-24 05:06:32 +0000774
Chris Lattner8cab0212008-01-05 22:25:12 +0000775 /// Args - This is a list of all of the arguments to this pattern (for
776 /// PatFrag patterns), which are the 'node' markers in this pattern.
777 std::vector<std::string> Args;
Jim Grosbach50986b52010-12-24 05:06:32 +0000778
Chris Lattner8cab0212008-01-05 22:25:12 +0000779 /// CDP - the top-level object coordinating this madness.
780 ///
Chris Lattnerab3242f2008-01-06 01:10:31 +0000781 CodeGenDAGPatterns &CDP;
Chris Lattner8cab0212008-01-05 22:25:12 +0000782
783 /// isInputPattern - True if this is an input pattern, something to match.
784 /// False if this is an output pattern, something to emit.
785 bool isInputPattern;
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000786
787 /// hasError - True if the currently processed nodes have unresolvable types
788 /// or other non-fatal errors
789 bool HasError;
Tim Northoverc807a172014-05-20 11:52:46 +0000790
791 /// It's important that the usage of operands in ComplexPatterns is
792 /// consistent: each named operand can be defined by at most one
793 /// ComplexPattern. This records the ComplexPattern instance and the operand
794 /// number for each operand encountered in a ComplexPattern to aid in that
795 /// check.
796 StringMap<std::pair<Record *, unsigned>> ComplexPatternOperands;
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000797
798 TypeInfer Infer;
799
Chris Lattner8cab0212008-01-05 22:25:12 +0000800public:
Jim Grosbach50986b52010-12-24 05:06:32 +0000801
Chris Lattner8cab0212008-01-05 22:25:12 +0000802 /// TreePattern constructor - Parse the specified DagInits into the
803 /// current record.
David Greeneaf8ee2c2011-07-29 22:43:06 +0000804 TreePattern(Record *TheRec, ListInit *RawPat, bool isInput,
Chris Lattnerab3242f2008-01-06 01:10:31 +0000805 CodeGenDAGPatterns &ise);
David Greeneaf8ee2c2011-07-29 22:43:06 +0000806 TreePattern(Record *TheRec, DagInit *Pat, bool isInput,
Chris Lattnerab3242f2008-01-06 01:10:31 +0000807 CodeGenDAGPatterns &ise);
Florian Hahn75e87c32018-05-30 21:00:18 +0000808 TreePattern(Record *TheRec, TreePatternNodePtr Pat, bool isInput,
David Blaikiecf195302014-11-17 22:55:41 +0000809 CodeGenDAGPatterns &ise);
Jim Grosbach50986b52010-12-24 05:06:32 +0000810
Chris Lattner8cab0212008-01-05 22:25:12 +0000811 /// getTrees - Return the tree patterns which corresponds to this pattern.
812 ///
Florian Hahn75e87c32018-05-30 21:00:18 +0000813 const std::vector<TreePatternNodePtr> &getTrees() const { return Trees; }
Chris Lattner8cab0212008-01-05 22:25:12 +0000814 unsigned getNumTrees() const { return Trees.size(); }
Florian Hahn75e87c32018-05-30 21:00:18 +0000815 const TreePatternNodePtr &getTree(unsigned i) const { return Trees[i]; }
Florian Hahn53b14db2018-06-10 21:06:24 +0000816 void setTree(unsigned i, TreePatternNodePtr Tree) { Trees[i] = Tree; }
Florian Hahn4dd569c2018-06-13 20:59:53 +0000817 const TreePatternNodePtr &getOnlyTree() const {
Chris Lattner8cab0212008-01-05 22:25:12 +0000818 assert(Trees.size() == 1 && "Doesn't have exactly one pattern!");
819 return Trees[0];
820 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000821
Florian Hahn75e87c32018-05-30 21:00:18 +0000822 const StringMap<SmallVector<TreePatternNode *, 1>> &getNamedNodesMap() {
Chris Lattnercabe0372010-03-15 06:00:16 +0000823 if (NamedNodes.empty())
824 ComputeNamedNodes();
825 return NamedNodes;
826 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000827
Chris Lattner8cab0212008-01-05 22:25:12 +0000828 /// getRecord - Return the actual TableGen record corresponding to this
829 /// pattern.
830 ///
831 Record *getRecord() const { return TheRecord; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000832
Chris Lattner8cab0212008-01-05 22:25:12 +0000833 unsigned getNumArgs() const { return Args.size(); }
834 const std::string &getArgName(unsigned i) const {
835 assert(i < Args.size() && "Argument reference out of range!");
836 return Args[i];
837 }
838 std::vector<std::string> &getArgList() { return Args; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000839
Chris Lattnerab3242f2008-01-06 01:10:31 +0000840 CodeGenDAGPatterns &getDAGPatterns() const { return CDP; }
Chris Lattner8cab0212008-01-05 22:25:12 +0000841
842 /// InlinePatternFragments - If this pattern refers to any pattern
843 /// fragments, inline them into place, giving us a pattern without any
844 /// PatFrag references.
845 void InlinePatternFragments() {
846 for (unsigned i = 0, e = Trees.size(); i != e; ++i)
Florian Hahn75e87c32018-05-30 21:00:18 +0000847 Trees[i] = Trees[i]->InlinePatternFragments(Trees[i], *this);
Chris Lattner8cab0212008-01-05 22:25:12 +0000848 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000849
Chris Lattner8cab0212008-01-05 22:25:12 +0000850 /// InferAllTypes - Infer/propagate as many types throughout the expression
Jim Grosbach975c1cb2009-03-26 16:17:51 +0000851 /// patterns as possible. Return true if all types are inferred, false
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000852 /// otherwise. Bail out if a type contradiction is found.
Florian Hahn75e87c32018-05-30 21:00:18 +0000853 bool InferAllTypes(
854 const StringMap<SmallVector<TreePatternNode *, 1>> *NamedTypes = nullptr);
Jim Grosbach50986b52010-12-24 05:06:32 +0000855
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000856 /// error - If this is the first error in the current resolution step,
857 /// print it and set the error flag. Otherwise, continue silently.
Matt Arsenaultea8df3a2014-11-11 23:48:11 +0000858 void error(const Twine &Msg);
Joerg Sonnenberger635debe2012-10-25 20:33:17 +0000859 bool hasError() const {
860 return HasError;
861 }
862 void resetError() {
863 HasError = false;
864 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000865
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000866 TypeInfer &getInfer() { return Infer; }
867
Daniel Dunbar38a22bf2009-07-03 00:10:29 +0000868 void print(raw_ostream &OS) const;
Chris Lattner8cab0212008-01-05 22:25:12 +0000869 void dump() const;
Jim Grosbach50986b52010-12-24 05:06:32 +0000870
Chris Lattner8cab0212008-01-05 22:25:12 +0000871private:
Florian Hahn75e87c32018-05-30 21:00:18 +0000872 TreePatternNodePtr ParseTreePattern(Init *DI, StringRef OpName);
Chris Lattnercabe0372010-03-15 06:00:16 +0000873 void ComputeNamedNodes();
874 void ComputeNamedNodes(TreePatternNode *N);
Chris Lattner8cab0212008-01-05 22:25:12 +0000875};
876
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000877
878inline bool TreePatternNode::UpdateNodeType(unsigned ResNo,
879 const TypeSetByHwMode &InTy,
880 TreePattern &TP) {
881 TypeSetByHwMode VTS(InTy);
882 TP.getInfer().expandOverloads(VTS);
883 return TP.getInfer().MergeInTypeInfo(Types[ResNo], VTS);
884}
885
886inline bool TreePatternNode::UpdateNodeType(unsigned ResNo,
887 MVT::SimpleValueType InTy,
888 TreePattern &TP) {
889 TypeSetByHwMode VTS(InTy);
890 TP.getInfer().expandOverloads(VTS);
891 return TP.getInfer().MergeInTypeInfo(Types[ResNo], VTS);
892}
893
894inline bool TreePatternNode::UpdateNodeType(unsigned ResNo,
895 ValueTypeByHwMode InTy,
896 TreePattern &TP) {
897 TypeSetByHwMode VTS(InTy);
898 TP.getInfer().expandOverloads(VTS);
899 return TP.getInfer().MergeInTypeInfo(Types[ResNo], VTS);
900}
901
902
Tom Stellardb7246a72012-09-06 14:15:52 +0000903/// DAGDefaultOperand - One of these is created for each OperandWithDefaultOps
904/// that has a set ExecuteAlways / DefaultOps field.
Chris Lattner8cab0212008-01-05 22:25:12 +0000905struct DAGDefaultOperand {
Florian Hahn75e87c32018-05-30 21:00:18 +0000906 std::vector<TreePatternNodePtr> DefaultOps;
Chris Lattner8cab0212008-01-05 22:25:12 +0000907};
908
909class DAGInstruction {
Florian Hahn84e6ef02018-06-08 09:54:04 +0000910 std::unique_ptr<TreePattern> Pattern;
Chris Lattner8cab0212008-01-05 22:25:12 +0000911 std::vector<Record*> Results;
912 std::vector<Record*> Operands;
913 std::vector<Record*> ImpResults;
Florian Hahn75e87c32018-05-30 21:00:18 +0000914 TreePatternNodePtr ResultPattern;
915
Chris Lattner8cab0212008-01-05 22:25:12 +0000916public:
Florian Hahn84e6ef02018-06-08 09:54:04 +0000917 DAGInstruction(std::unique_ptr<TreePattern> &&TP,
Chris Lattner8cab0212008-01-05 22:25:12 +0000918 const std::vector<Record*> &results,
919 const std::vector<Record*> &operands,
Chris Lattner9dc68d32010-04-20 06:28:43 +0000920 const std::vector<Record*> &impresults)
Florian Hahn84e6ef02018-06-08 09:54:04 +0000921 : Pattern(std::move(TP)), Results(results), Operands(operands),
David Blaikiecf195302014-11-17 22:55:41 +0000922 ImpResults(impresults), ResultPattern(nullptr) {}
Chris Lattner8cab0212008-01-05 22:25:12 +0000923
Florian Hahn84e6ef02018-06-08 09:54:04 +0000924 TreePattern *getPattern() const { return Pattern.get(); }
Chris Lattner8cab0212008-01-05 22:25:12 +0000925 unsigned getNumResults() const { return Results.size(); }
926 unsigned getNumOperands() const { return Operands.size(); }
927 unsigned getNumImpResults() const { return ImpResults.size(); }
Chris Lattner8cab0212008-01-05 22:25:12 +0000928 const std::vector<Record*>& getImpResults() const { return ImpResults; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000929
Florian Hahn75e87c32018-05-30 21:00:18 +0000930 void setResultPattern(TreePatternNodePtr R) { ResultPattern = R; }
Jim Grosbach50986b52010-12-24 05:06:32 +0000931
Chris Lattner8cab0212008-01-05 22:25:12 +0000932 Record *getResult(unsigned RN) const {
933 assert(RN < Results.size());
934 return Results[RN];
935 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000936
Chris Lattner8cab0212008-01-05 22:25:12 +0000937 Record *getOperand(unsigned ON) const {
938 assert(ON < Operands.size());
939 return Operands[ON];
940 }
941
942 Record *getImpResult(unsigned RN) const {
943 assert(RN < ImpResults.size());
944 return ImpResults[RN];
945 }
Jim Grosbach50986b52010-12-24 05:06:32 +0000946
Florian Hahn75e87c32018-05-30 21:00:18 +0000947 TreePatternNodePtr getResultPattern() const { return ResultPattern; }
Chris Lattner8cab0212008-01-05 22:25:12 +0000948};
Jim Grosbach50986b52010-12-24 05:06:32 +0000949
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +0000950/// This class represents a condition that has to be satisfied for a pattern
951/// to be tried. It is a generalization of a class "Pattern" from Target.td:
952/// in addition to the Target.td's predicates, this class can also represent
953/// conditions associated with HW modes. Both types will eventually become
954/// strings containing C++ code to be executed, the difference is in how
955/// these strings are generated.
956class Predicate {
957public:
958 Predicate(Record *R, bool C = true) : Def(R), IfCond(C), IsHwMode(false) {
959 assert(R->isSubClassOf("Predicate") &&
960 "Predicate objects should only be created for records derived"
961 "from Predicate class");
962 }
963 Predicate(StringRef FS, bool C = true) : Def(nullptr), Features(FS.str()),
964 IfCond(C), IsHwMode(true) {}
965
966 /// Return a string which contains the C++ condition code that will serve
967 /// as a predicate during instruction selection.
968 std::string getCondString() const {
969 // The string will excute in a subclass of SelectionDAGISel.
970 // Cast to std::string explicitly to avoid ambiguity with StringRef.
971 std::string C = IsHwMode
972 ? std::string("MF->getSubtarget().checkFeatures(\"" + Features + "\")")
973 : std::string(Def->getValueAsString("CondString"));
974 return IfCond ? C : "!("+C+')';
975 }
976 bool operator==(const Predicate &P) const {
977 return IfCond == P.IfCond && IsHwMode == P.IsHwMode && Def == P.Def;
978 }
979 bool operator<(const Predicate &P) const {
980 if (IsHwMode != P.IsHwMode)
981 return IsHwMode < P.IsHwMode;
982 assert(!Def == !P.Def && "Inconsistency between Def and IsHwMode");
983 if (IfCond != P.IfCond)
984 return IfCond < P.IfCond;
985 if (Def)
986 return LessRecord()(Def, P.Def);
987 return Features < P.Features;
988 }
989 Record *Def; ///< Predicate definition from .td file, null for
990 ///< HW modes.
991 std::string Features; ///< Feature string for HW mode.
992 bool IfCond; ///< The boolean value that the condition has to
993 ///< evaluate to for this predicate to be true.
994 bool IsHwMode; ///< Does this predicate correspond to a HW mode?
995};
996
Chris Lattnerab3242f2008-01-06 01:10:31 +0000997/// PatternToMatch - Used by CodeGenDAGPatterns to keep tab of patterns
Chris Lattner8cab0212008-01-05 22:25:12 +0000998/// processed to produce isel.
Chris Lattner7ed81692010-02-18 06:47:49 +0000999class PatternToMatch {
1000public:
Craig Topperd78567f2018-06-10 23:15:48 +00001001 PatternToMatch(Record *srcrecord, std::vector<Predicate> preds,
Florian Hahn75e87c32018-05-30 21:00:18 +00001002 TreePatternNodePtr src, TreePatternNodePtr dst,
Craig Topperd78567f2018-06-10 23:15:48 +00001003 std::vector<Record *> dstregs, int complexity,
Florian Hahn75e87c32018-05-30 21:00:18 +00001004 unsigned uid, unsigned setmode = 0)
1005 : SrcRecord(srcrecord), SrcPattern(src), DstPattern(dst),
Craig Topperd78567f2018-06-10 23:15:48 +00001006 Predicates(std::move(preds)), Dstregs(std::move(dstregs)),
Florian Hahn75e87c32018-05-30 21:00:18 +00001007 AddedComplexity(complexity), ID(uid), ForceMode(setmode) {}
Chris Lattner8cab0212008-01-05 22:25:12 +00001008
Jim Grosbachfb116ae2010-12-07 23:05:49 +00001009 Record *SrcRecord; // Originating Record for the pattern.
Florian Hahn75e87c32018-05-30 21:00:18 +00001010 TreePatternNodePtr SrcPattern; // Source pattern to match.
1011 TreePatternNodePtr DstPattern; // Resulting pattern.
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001012 std::vector<Predicate> Predicates; // Top level predicate conditions
1013 // to match.
Chris Lattner8cab0212008-01-05 22:25:12 +00001014 std::vector<Record*> Dstregs; // Physical register defs being matched.
Tom Stellard6655dd62014-08-01 00:32:36 +00001015 int AddedComplexity; // Add to matching pattern complexity.
Chris Lattnerd39f75b2010-03-01 22:09:11 +00001016 unsigned ID; // Unique ID for the record.
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001017 unsigned ForceMode; // Force this mode in type inference when set.
Chris Lattner8cab0212008-01-05 22:25:12 +00001018
Jim Grosbachfb116ae2010-12-07 23:05:49 +00001019 Record *getSrcRecord() const { return SrcRecord; }
Florian Hahn75e87c32018-05-30 21:00:18 +00001020 TreePatternNode *getSrcPattern() const { return SrcPattern.get(); }
1021 TreePatternNodePtr getSrcPatternShared() const { return SrcPattern; }
1022 TreePatternNode *getDstPattern() const { return DstPattern.get(); }
1023 TreePatternNodePtr getDstPatternShared() const { return DstPattern; }
Chris Lattner8cab0212008-01-05 22:25:12 +00001024 const std::vector<Record*> &getDstRegs() const { return Dstregs; }
Tom Stellard6655dd62014-08-01 00:32:36 +00001025 int getAddedComplexity() const { return AddedComplexity; }
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001026 const std::vector<Predicate> &getPredicates() const { return Predicates; }
Dan Gohman49e19e92008-08-22 00:20:26 +00001027
1028 std::string getPredicateCheck() const;
Jim Grosbach50986b52010-12-24 05:06:32 +00001029
Chris Lattner05925fe2010-03-29 01:40:38 +00001030 /// Compute the complexity metric for the input pattern. This roughly
1031 /// corresponds to the number of nodes that are covered.
Tom Stellard6655dd62014-08-01 00:32:36 +00001032 int getPatternComplexity(const CodeGenDAGPatterns &CGP) const;
Chris Lattner8cab0212008-01-05 22:25:12 +00001033};
1034
Chris Lattnerab3242f2008-01-06 01:10:31 +00001035class CodeGenDAGPatterns {
Chris Lattner8cab0212008-01-05 22:25:12 +00001036 RecordKeeper &Records;
1037 CodeGenTarget Target;
Justin Bogner92a8c612016-07-15 16:31:37 +00001038 CodeGenIntrinsicTable Intrinsics;
1039 CodeGenIntrinsicTable TgtIntrinsics;
Jim Grosbach50986b52010-12-24 05:06:32 +00001040
Sean Silvaa4e2c5f2012-09-19 01:47:00 +00001041 std::map<Record*, SDNodeInfo, LessRecordByID> SDNodes;
Krzysztof Parzyszek426bf362017-09-12 15:31:26 +00001042 std::map<Record*, std::pair<Record*, std::string>, LessRecordByID>
1043 SDNodeXForms;
Sean Silvaa4e2c5f2012-09-19 01:47:00 +00001044 std::map<Record*, ComplexPattern, LessRecordByID> ComplexPatterns;
David Blaikie3c6ca232014-11-13 21:40:02 +00001045 std::map<Record *, std::unique_ptr<TreePattern>, LessRecordByID>
1046 PatternFragments;
Sean Silvaa4e2c5f2012-09-19 01:47:00 +00001047 std::map<Record*, DAGDefaultOperand, LessRecordByID> DefaultOperands;
1048 std::map<Record*, DAGInstruction, LessRecordByID> Instructions;
Jim Grosbach50986b52010-12-24 05:06:32 +00001049
Chris Lattner8cab0212008-01-05 22:25:12 +00001050 // Specific SDNode definitions:
1051 Record *intrinsic_void_sdnode;
1052 Record *intrinsic_w_chain_sdnode, *intrinsic_wo_chain_sdnode;
Jim Grosbach50986b52010-12-24 05:06:32 +00001053
Chris Lattner8cab0212008-01-05 22:25:12 +00001054 /// PatternsToMatch - All of the things we are matching on the DAG. The first
1055 /// value is the pattern to match, the second pattern is the result to
1056 /// emit.
1057 std::vector<PatternToMatch> PatternsToMatch;
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001058
1059 TypeSetByHwMode LegalVTS;
1060
Daniel Sanders7e523672017-11-11 03:23:44 +00001061 using PatternRewriterFn = std::function<void (TreePattern *)>;
1062 PatternRewriterFn PatternRewriter;
1063
Chris Lattner8cab0212008-01-05 22:25:12 +00001064public:
Daniel Sanders7e523672017-11-11 03:23:44 +00001065 CodeGenDAGPatterns(RecordKeeper &R,
1066 PatternRewriterFn PatternRewriter = nullptr);
Jim Grosbach50986b52010-12-24 05:06:32 +00001067
Dan Gohmanfc4ad7de2008-04-03 00:02:49 +00001068 CodeGenTarget &getTargetInfo() { return Target; }
Chris Lattner8cab0212008-01-05 22:25:12 +00001069 const CodeGenTarget &getTargetInfo() const { return Target; }
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001070 const TypeSetByHwMode &getLegalTypes() const { return LegalVTS; }
Jim Grosbach50986b52010-12-24 05:06:32 +00001071
Daniel Sanders9e0ae7b2017-10-13 19:00:01 +00001072 Record *getSDNodeNamed(const std::string &Name) const;
Jim Grosbach50986b52010-12-24 05:06:32 +00001073
Chris Lattner8cab0212008-01-05 22:25:12 +00001074 const SDNodeInfo &getSDNodeInfo(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001075 auto F = SDNodes.find(R);
1076 assert(F != SDNodes.end() && "Unknown node!");
1077 return F->second;
Chris Lattner8cab0212008-01-05 22:25:12 +00001078 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001079
Chris Lattnercc43e792008-01-05 22:54:53 +00001080 // Node transformation lookups.
1081 typedef std::pair<Record*, std::string> NodeXForm;
1082 const NodeXForm &getSDNodeTransform(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001083 auto F = SDNodeXForms.find(R);
1084 assert(F != SDNodeXForms.end() && "Invalid transform!");
1085 return F->second;
Chris Lattner8cab0212008-01-05 22:25:12 +00001086 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001087
Sean Silvaa4e2c5f2012-09-19 01:47:00 +00001088 typedef std::map<Record*, NodeXForm, LessRecordByID>::const_iterator
Benjamin Kramerc2dbd5d2009-08-23 10:39:21 +00001089 nx_iterator;
Chris Lattnercc43e792008-01-05 22:54:53 +00001090 nx_iterator nx_begin() const { return SDNodeXForms.begin(); }
1091 nx_iterator nx_end() const { return SDNodeXForms.end(); }
1092
Jim Grosbach50986b52010-12-24 05:06:32 +00001093
Chris Lattner8cab0212008-01-05 22:25:12 +00001094 const ComplexPattern &getComplexPattern(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001095 auto F = ComplexPatterns.find(R);
1096 assert(F != ComplexPatterns.end() && "Unknown addressing mode!");
1097 return F->second;
Chris Lattner8cab0212008-01-05 22:25:12 +00001098 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001099
Chris Lattner8cab0212008-01-05 22:25:12 +00001100 const CodeGenIntrinsic &getIntrinsic(Record *R) const {
1101 for (unsigned i = 0, e = Intrinsics.size(); i != e; ++i)
1102 if (Intrinsics[i].TheDef == R) return Intrinsics[i];
Dale Johannesenb842d522009-02-05 01:49:45 +00001103 for (unsigned i = 0, e = TgtIntrinsics.size(); i != e; ++i)
1104 if (TgtIntrinsics[i].TheDef == R) return TgtIntrinsics[i];
Craig Topperc4965bc2012-02-05 07:21:30 +00001105 llvm_unreachable("Unknown intrinsic!");
Chris Lattner8cab0212008-01-05 22:25:12 +00001106 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001107
Chris Lattner8cab0212008-01-05 22:25:12 +00001108 const CodeGenIntrinsic &getIntrinsicInfo(unsigned IID) const {
Dale Johannesenb842d522009-02-05 01:49:45 +00001109 if (IID-1 < Intrinsics.size())
1110 return Intrinsics[IID-1];
1111 if (IID-Intrinsics.size()-1 < TgtIntrinsics.size())
1112 return TgtIntrinsics[IID-Intrinsics.size()-1];
Craig Topperc4965bc2012-02-05 07:21:30 +00001113 llvm_unreachable("Bad intrinsic ID!");
Chris Lattner8cab0212008-01-05 22:25:12 +00001114 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001115
Chris Lattner8cab0212008-01-05 22:25:12 +00001116 unsigned getIntrinsicID(Record *R) const {
1117 for (unsigned i = 0, e = Intrinsics.size(); i != e; ++i)
1118 if (Intrinsics[i].TheDef == R) return i;
Dale Johannesenb842d522009-02-05 01:49:45 +00001119 for (unsigned i = 0, e = TgtIntrinsics.size(); i != e; ++i)
1120 if (TgtIntrinsics[i].TheDef == R) return i + Intrinsics.size();
Craig Topperc4965bc2012-02-05 07:21:30 +00001121 llvm_unreachable("Unknown intrinsic!");
Chris Lattner8cab0212008-01-05 22:25:12 +00001122 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001123
Chris Lattner7ed81692010-02-18 06:47:49 +00001124 const DAGDefaultOperand &getDefaultOperand(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001125 auto F = DefaultOperands.find(R);
1126 assert(F != DefaultOperands.end() &&"Isn't an analyzed default operand!");
1127 return F->second;
Chris Lattner8cab0212008-01-05 22:25:12 +00001128 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001129
Chris Lattner8cab0212008-01-05 22:25:12 +00001130 // Pattern Fragment information.
1131 TreePattern *getPatternFragment(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001132 auto F = PatternFragments.find(R);
1133 assert(F != PatternFragments.end() && "Invalid pattern fragment request!");
1134 return F->second.get();
Chris Lattner8cab0212008-01-05 22:25:12 +00001135 }
Chris Lattnerf1447252010-03-19 21:37:09 +00001136 TreePattern *getPatternFragmentIfRead(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001137 auto F = PatternFragments.find(R);
1138 if (F == PatternFragments.end())
David Blaikie3c6ca232014-11-13 21:40:02 +00001139 return nullptr;
Simon Pilgrimb021b132017-10-07 14:34:24 +00001140 return F->second.get();
Chris Lattnerf1447252010-03-19 21:37:09 +00001141 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001142
David Blaikiefcacc742014-11-13 21:56:57 +00001143 typedef std::map<Record *, std::unique_ptr<TreePattern>,
1144 LessRecordByID>::const_iterator pf_iterator;
Chris Lattner8cab0212008-01-05 22:25:12 +00001145 pf_iterator pf_begin() const { return PatternFragments.begin(); }
1146 pf_iterator pf_end() const { return PatternFragments.end(); }
Ahmed Bougacha36f70352016-12-21 23:26:20 +00001147 iterator_range<pf_iterator> ptfs() const { return PatternFragments; }
Chris Lattner8cab0212008-01-05 22:25:12 +00001148
1149 // Patterns to match information.
Chris Lattner9abe77b2008-01-05 22:30:17 +00001150 typedef std::vector<PatternToMatch>::const_iterator ptm_iterator;
1151 ptm_iterator ptm_begin() const { return PatternsToMatch.begin(); }
1152 ptm_iterator ptm_end() const { return PatternsToMatch.end(); }
Ahmed Bougacha36f70352016-12-21 23:26:20 +00001153 iterator_range<ptm_iterator> ptms() const { return PatternsToMatch; }
Jim Grosbach50986b52010-12-24 05:06:32 +00001154
Ahmed Bougacha14107512013-10-28 18:07:21 +00001155 /// Parse the Pattern for an instruction, and insert the result in DAGInsts.
1156 typedef std::map<Record*, DAGInstruction, LessRecordByID> DAGInstMap;
1157 const DAGInstruction &parseInstructionPattern(
1158 CodeGenInstruction &CGI, ListInit *Pattern,
1159 DAGInstMap &DAGInsts);
Jim Grosbach50986b52010-12-24 05:06:32 +00001160
Chris Lattner8cab0212008-01-05 22:25:12 +00001161 const DAGInstruction &getInstruction(Record *R) const {
Simon Pilgrimb021b132017-10-07 14:34:24 +00001162 auto F = Instructions.find(R);
1163 assert(F != Instructions.end() && "Unknown instruction!");
1164 return F->second;
Chris Lattner8cab0212008-01-05 22:25:12 +00001165 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001166
Chris Lattner8cab0212008-01-05 22:25:12 +00001167 Record *get_intrinsic_void_sdnode() const {
1168 return intrinsic_void_sdnode;
1169 }
1170 Record *get_intrinsic_w_chain_sdnode() const {
1171 return intrinsic_w_chain_sdnode;
1172 }
1173 Record *get_intrinsic_wo_chain_sdnode() const {
1174 return intrinsic_wo_chain_sdnode;
1175 }
Jim Grosbach50986b52010-12-24 05:06:32 +00001176
Jakob Stoklund Olesene4197252009-10-15 18:50:03 +00001177 bool hasTargetIntrinsics() { return !TgtIntrinsics.empty(); }
1178
Chris Lattner8cab0212008-01-05 22:25:12 +00001179private:
1180 void ParseNodeInfo();
Chris Lattnercc43e792008-01-05 22:54:53 +00001181 void ParseNodeTransforms();
Chris Lattner8cab0212008-01-05 22:25:12 +00001182 void ParseComplexPatterns();
Hal Finkel2756dc12014-02-28 00:26:56 +00001183 void ParsePatternFragments(bool OutFrags = false);
Chris Lattner8cab0212008-01-05 22:25:12 +00001184 void ParseDefaultOperands();
1185 void ParseInstructions();
1186 void ParsePatterns();
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001187 void ExpandHwModeBasedTypes();
Dan Gohmanfc4ad7de2008-04-03 00:02:49 +00001188 void InferInstructionFlags();
Chris Lattner8cab0212008-01-05 22:25:12 +00001189 void GenerateVariants();
Jakob Stoklund Olesena9d322a2012-08-28 03:26:49 +00001190 void VerifyInstructionFlags();
Jim Grosbach50986b52010-12-24 05:06:32 +00001191
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001192 std::vector<Predicate> makePredList(ListInit *L);
1193
Craig Topper18e6b572017-06-25 17:33:49 +00001194 void AddPatternToMatch(TreePattern *Pattern, PatternToMatch &&PTM);
Florian Hahn75e87c32018-05-30 21:00:18 +00001195 void FindPatternInputsAndOutputs(
David Blaikie19b22d42018-06-11 22:14:43 +00001196 TreePattern &I, TreePatternNodePtr Pat,
Florian Hahn75e87c32018-05-30 21:00:18 +00001197 std::map<std::string, TreePatternNodePtr> &InstInputs,
1198 std::map<std::string, TreePatternNodePtr> &InstResults,
1199 std::vector<Record *> &InstImpResults);
Chris Lattner8cab0212008-01-05 22:25:12 +00001200};
Krzysztof Parzyszek779d98e2017-09-14 16:56:21 +00001201
1202
1203inline bool SDNodeInfo::ApplyTypeConstraints(TreePatternNode *N,
1204 TreePattern &TP) const {
1205 bool MadeChange = false;
1206 for (unsigned i = 0, e = TypeConstraints.size(); i != e; ++i)
1207 MadeChange |= TypeConstraints[i].ApplyTypeConstraint(N, *this, TP);
1208 return MadeChange;
1209 }
Matt Arsenault303327d2017-12-20 19:36:28 +00001210
Chris Lattner8cab0212008-01-05 22:25:12 +00001211} // end namespace llvm
1212
1213#endif