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Sander de Smalen5087ace2020-03-15 14:29:45 +00001//===- SveEmitter.cpp - Generate arm_sve.h for use with clang -*- 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 tablegen backend is responsible for emitting arm_sve.h, which includes
10// a declaration and definition of each function specified by the ARM C/C++
11// Language Extensions (ACLE).
12//
13// For details, visit:
14// https://developer.arm.com/architectures/system-architectures/software-standards/acle
15//
16// Each SVE instruction is implemented in terms of 1 or more functions which
17// are suffixed with the element type of the input vectors. Functions may be
18// implemented in terms of generic vector operations such as +, *, -, etc. or
19// by calling a __builtin_-prefixed function which will be handled by clang's
20// CodeGen library.
21//
22// See also the documentation in include/clang/Basic/arm_sve.td.
23//
24//===----------------------------------------------------------------------===//
25
26#include "llvm/ADT/STLExtras.h"
Sander de Smalenc5b81462020-03-18 11:07:20 +000027#include "llvm/ADT/StringMap.h"
Sander de Smalen5087ace2020-03-15 14:29:45 +000028#include "llvm/ADT/ArrayRef.h"
29#include "llvm/ADT/StringExtras.h"
30#include "llvm/TableGen/Record.h"
31#include "llvm/TableGen/Error.h"
32#include <string>
33#include <sstream>
34#include <set>
35#include <cctype>
Eric Fiselieraf2968e2020-04-16 18:35:31 -040036#include <tuple>
Sander de Smalen5087ace2020-03-15 14:29:45 +000037
38using namespace llvm;
39
Sander de Smalenc5b81462020-03-18 11:07:20 +000040enum ClassKind {
41 ClassNone,
42 ClassS, // signed/unsigned, e.g., "_s8", "_u8" suffix
43 ClassG, // Overloaded name without type suffix
44};
45
46using TypeSpec = std::string;
Sander de Smalen5087ace2020-03-15 14:29:45 +000047
48namespace {
49
Sander de Smalenc8a5b302020-04-14 15:56:36 +010050class ImmCheck {
51 unsigned Arg;
52 unsigned Kind;
53 unsigned ElementSizeInBits;
54
55public:
56 ImmCheck(unsigned Arg, unsigned Kind, unsigned ElementSizeInBits = 0)
57 : Arg(Arg), Kind(Kind), ElementSizeInBits(ElementSizeInBits) {}
58 ImmCheck(const ImmCheck &Other) = default;
59 ~ImmCheck() = default;
60
61 unsigned getArg() const { return Arg; }
62 unsigned getKind() const { return Kind; }
63 unsigned getElementSizeInBits() const { return ElementSizeInBits; }
64};
65
Sander de Smalenc5b81462020-03-18 11:07:20 +000066class SVEType {
67 TypeSpec TS;
68 bool Float, Signed, Immediate, Void, Constant, Pointer;
69 bool DefaultType, IsScalable, Predicate, PredicatePattern, PrefetchOp;
70 unsigned Bitwidth, ElementBitwidth, NumVectors;
71
Sander de Smalen8b409ea2020-03-16 10:14:05 +000072public:
Sander de Smalenc5b81462020-03-18 11:07:20 +000073 SVEType() : SVEType(TypeSpec(), 'v') {}
74
75 SVEType(TypeSpec TS, char CharMod)
76 : TS(TS), Float(false), Signed(true), Immediate(false), Void(false),
77 Constant(false), Pointer(false), DefaultType(false), IsScalable(true),
78 Predicate(false), PredicatePattern(false), PrefetchOp(false),
79 Bitwidth(128), ElementBitwidth(~0U), NumVectors(1) {
80 if (!TS.empty())
81 applyTypespec();
82 applyModifier(CharMod);
83 }
84
Sander de Smalenc5b81462020-03-18 11:07:20 +000085 bool isPointer() const { return Pointer; }
86 bool isVoidPointer() const { return Pointer && Void; }
87 bool isSigned() const { return Signed; }
88 bool isImmediate() const { return Immediate; }
89 bool isScalar() const { return NumVectors == 0; }
90 bool isVector() const { return NumVectors > 0; }
91 bool isScalableVector() const { return isVector() && IsScalable; }
92 bool isChar() const { return ElementBitwidth == 8; }
93 bool isVoid() const { return Void & !Pointer; }
94 bool isDefault() const { return DefaultType; }
95 bool isFloat() const { return Float; }
96 bool isInteger() const { return !Float && !Predicate; }
97 bool isScalarPredicate() const { return !Float && ElementBitwidth == 1; }
98 bool isPredicateVector() const { return Predicate; }
99 bool isPredicatePattern() const { return PredicatePattern; }
100 bool isPrefetchOp() const { return PrefetchOp; }
101 bool isConstant() const { return Constant; }
102 unsigned getElementSizeInBits() const { return ElementBitwidth; }
103 unsigned getNumVectors() const { return NumVectors; }
104
105 unsigned getNumElements() const {
106 assert(ElementBitwidth != ~0U);
107 return Bitwidth / ElementBitwidth;
108 }
109 unsigned getSizeInBits() const {
110 return Bitwidth;
111 }
112
113 /// Return the string representation of a type, which is an encoded
114 /// string for passing to the BUILTIN() macro in Builtins.def.
115 std::string builtin_str() const;
116
Sander de Smalen981f0802020-03-18 15:05:08 +0000117 /// Return the C/C++ string representation of a type for use in the
118 /// arm_sve.h header file.
119 std::string str() const;
120
Sander de Smalenc5b81462020-03-18 11:07:20 +0000121private:
122 /// Creates the type based on the typespec string in TS.
123 void applyTypespec();
124
125 /// Applies a prototype modifier to the type.
126 void applyModifier(char Mod);
127};
128
129
130class SVEEmitter;
131
132/// The main grunt class. This represents an instantiation of an intrinsic with
133/// a particular typespec and prototype.
134class Intrinsic {
135 /// The unmangled name.
136 std::string Name;
137
138 /// The name of the corresponding LLVM IR intrinsic.
139 std::string LLVMName;
140
141 /// Intrinsic prototype.
142 std::string Proto;
143
144 /// The base type spec for this intrinsic.
145 TypeSpec BaseTypeSpec;
146
147 /// The base class kind. Most intrinsics use ClassS, which has full type
148 /// info for integers (_s32/_u32), or ClassG which is used for overloaded
149 /// intrinsics.
150 ClassKind Class;
151
152 /// The architectural #ifdef guard.
153 std::string Guard;
154
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100155 // The merge suffix such as _m, _x or _z.
156 std::string MergeSuffix;
157
Sander de Smalenc5b81462020-03-18 11:07:20 +0000158 /// The types of return value [0] and parameters [1..].
159 std::vector<SVEType> Types;
160
161 /// The "base type", which is VarType('d', BaseTypeSpec).
162 SVEType BaseType;
163
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100164 uint64_t Flags;
Sander de Smalenc5b81462020-03-18 11:07:20 +0000165
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100166 SmallVector<ImmCheck, 2> ImmChecks;
167
Sander de Smalenc5b81462020-03-18 11:07:20 +0000168public:
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100169 Intrinsic(StringRef Name, StringRef Proto, uint64_t MergeTy,
170 StringRef MergeSuffix, uint64_t MemoryElementTy, StringRef LLVMName,
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100171 uint64_t Flags, ArrayRef<ImmCheck> ImmChecks, TypeSpec BT,
172 ClassKind Class, SVEEmitter &Emitter, StringRef Guard);
Sander de Smalenc5b81462020-03-18 11:07:20 +0000173
174 ~Intrinsic()=default;
175
176 std::string getName() const { return Name; }
177 std::string getLLVMName() const { return LLVMName; }
178 std::string getProto() const { return Proto; }
179 TypeSpec getBaseTypeSpec() const { return BaseTypeSpec; }
180 SVEType getBaseType() const { return BaseType; }
181
182 StringRef getGuard() const { return Guard; }
183 ClassKind getClassKind() const { return Class; }
Sander de Smalenc5b81462020-03-18 11:07:20 +0000184
185 SVEType getReturnType() const { return Types[0]; }
186 ArrayRef<SVEType> getTypes() const { return Types; }
187 SVEType getParamType(unsigned I) const { return Types[I + 1]; }
188 unsigned getNumParams() const { return Proto.size() - 1; }
189
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100190 uint64_t getFlags() const { return Flags; }
Sander de Smalenc5b81462020-03-18 11:07:20 +0000191 bool isFlagSet(uint64_t Flag) const { return Flags & Flag;}
192
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100193 ArrayRef<ImmCheck> getImmChecks() const { return ImmChecks; }
194
Sander de Smalenc5b81462020-03-18 11:07:20 +0000195 /// Return the type string for a BUILTIN() macro in Builtins.def.
196 std::string getBuiltinTypeStr();
197
198 /// Return the name, mangled with type information. The name is mangled for
199 /// ClassS, so will add type suffixes such as _u32/_s32.
200 std::string getMangledName() const { return mangleName(ClassS); }
201
202 /// Returns true if the intrinsic is overloaded, in that it should also generate
203 /// a short form without the type-specifiers, e.g. 'svld1(..)' instead of
204 /// 'svld1_u32(..)'.
205 static bool isOverloadedIntrinsic(StringRef Name) {
206 auto BrOpen = Name.find("[");
207 auto BrClose = Name.find(']');
208 return BrOpen != std::string::npos && BrClose != std::string::npos;
209 }
210
Sander de Smalen41d52662020-04-22 13:58:35 +0100211 /// Return true if the intrinsic takes a splat operand.
212 bool hasSplat() const {
213 // These prototype modifiers are described in arm_sve.td.
214 return Proto.find_first_of("ajfrKLR") != std::string::npos;
215 }
216
217 /// Return the parameter index of the splat operand.
218 unsigned getSplatIdx() const {
219 // These prototype modifiers are described in arm_sve.td.
220 auto Idx = Proto.find_first_of("ajfrKLR");
221 assert(Idx != std::string::npos && Idx > 0 &&
222 "Prototype has no splat operand");
223 return Idx - 1;
224 }
225
Sander de Smalenc5b81462020-03-18 11:07:20 +0000226 /// Emits the intrinsic declaration to the ostream.
227 void emitIntrinsic(raw_ostream &OS) const;
228
229private:
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100230 std::string getMergeSuffix() const { return MergeSuffix; }
Sander de Smalenc5b81462020-03-18 11:07:20 +0000231 std::string mangleName(ClassKind LocalCK) const;
232 std::string replaceTemplatedArgs(std::string Name, TypeSpec TS,
233 std::string Proto) const;
234};
235
236class SVEEmitter {
237private:
238 RecordKeeper &Records;
239 llvm::StringMap<uint64_t> EltTypes;
240 llvm::StringMap<uint64_t> MemEltTypes;
241 llvm::StringMap<uint64_t> FlagTypes;
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100242 llvm::StringMap<uint64_t> MergeTypes;
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100243 llvm::StringMap<uint64_t> ImmCheckTypes;
Sander de Smalenc5b81462020-03-18 11:07:20 +0000244
Sander de Smalenc5b81462020-03-18 11:07:20 +0000245public:
246 SVEEmitter(RecordKeeper &R) : Records(R) {
247 for (auto *RV : Records.getAllDerivedDefinitions("EltType"))
248 EltTypes[RV->getNameInitAsString()] = RV->getValueAsInt("Value");
249 for (auto *RV : Records.getAllDerivedDefinitions("MemEltType"))
250 MemEltTypes[RV->getNameInitAsString()] = RV->getValueAsInt("Value");
251 for (auto *RV : Records.getAllDerivedDefinitions("FlagType"))
252 FlagTypes[RV->getNameInitAsString()] = RV->getValueAsInt("Value");
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100253 for (auto *RV : Records.getAllDerivedDefinitions("MergeType"))
254 MergeTypes[RV->getNameInitAsString()] = RV->getValueAsInt("Value");
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100255 for (auto *RV : Records.getAllDerivedDefinitions("ImmCheckType"))
256 ImmCheckTypes[RV->getNameInitAsString()] = RV->getValueAsInt("Value");
257 }
258
259 /// Returns the enum value for the immcheck type
260 unsigned getEnumValueForImmCheck(StringRef C) const {
261 auto It = ImmCheckTypes.find(C);
262 if (It != ImmCheckTypes.end())
263 return It->getValue();
264 llvm_unreachable("Unsupported imm check");
Sander de Smalenc5b81462020-03-18 11:07:20 +0000265 }
266
Sander de Smalen662cbaf2020-04-22 15:00:01 +0100267 /// Returns the enum value for the flag type
268 uint64_t getEnumValueForFlag(StringRef C) const {
269 auto Res = FlagTypes.find(C);
270 if (Res != FlagTypes.end())
271 return Res->getValue();
272 llvm_unreachable("Unsupported flag");
273 }
274
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100275 // Returns the SVETypeFlags for a given value and mask.
276 uint64_t encodeFlag(uint64_t V, StringRef MaskName) const {
277 auto It = FlagTypes.find(MaskName);
278 if (It != FlagTypes.end()) {
279 uint64_t Mask = It->getValue();
280 unsigned Shift = llvm::countTrailingZeros(Mask);
281 return (V << Shift) & Mask;
282 }
283 llvm_unreachable("Unsupported flag");
284 }
285
286 // Returns the SVETypeFlags for the given element type.
287 uint64_t encodeEltType(StringRef EltName) {
288 auto It = EltTypes.find(EltName);
289 if (It != EltTypes.end())
290 return encodeFlag(It->getValue(), "EltTypeMask");
291 llvm_unreachable("Unsupported EltType");
292 }
293
294 // Returns the SVETypeFlags for the given memory element type.
295 uint64_t encodeMemoryElementType(uint64_t MT) {
296 return encodeFlag(MT, "MemEltTypeMask");
297 }
298
299 // Returns the SVETypeFlags for the given merge type.
300 uint64_t encodeMergeType(uint64_t MT) {
301 return encodeFlag(MT, "MergeTypeMask");
302 }
303
Sander de Smalen41d52662020-04-22 13:58:35 +0100304 // Returns the SVETypeFlags for the given splat operand.
305 unsigned encodeSplatOperand(unsigned SplatIdx) {
306 assert(SplatIdx < 7 && "SplatIdx out of encodable range");
307 return encodeFlag(SplatIdx + 1, "SplatOperandMask");
308 }
309
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100310 // Returns the SVETypeFlags value for the given SVEType.
311 uint64_t encodeTypeFlags(const SVEType &T);
312
Sander de Smalenc5b81462020-03-18 11:07:20 +0000313 /// Emit arm_sve.h.
314 void createHeader(raw_ostream &o);
315
316 /// Emit all the __builtin prototypes and code needed by Sema.
317 void createBuiltins(raw_ostream &o);
318
319 /// Emit all the information needed to map builtin -> LLVM IR intrinsic.
320 void createCodeGenMap(raw_ostream &o);
321
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100322 /// Emit all the range checks for the immediates.
323 void createRangeChecks(raw_ostream &o);
324
Sander de Smalenc5b81462020-03-18 11:07:20 +0000325 /// Create the SVETypeFlags used in CGBuiltins
326 void createTypeFlags(raw_ostream &o);
327
328 /// Create intrinsic and add it to \p Out
329 void createIntrinsic(Record *R, SmallVectorImpl<std::unique_ptr<Intrinsic>> &Out);
Sander de Smalen5087ace2020-03-15 14:29:45 +0000330};
331
332} // end anonymous namespace
333
334
335//===----------------------------------------------------------------------===//
Sander de Smalenc5b81462020-03-18 11:07:20 +0000336// Type implementation
Sander de Smalen8b409ea2020-03-16 10:14:05 +0000337//===----------------------------------------------------------------------===//
Sander de Smalen8b409ea2020-03-16 10:14:05 +0000338
Sander de Smalenc5b81462020-03-18 11:07:20 +0000339std::string SVEType::builtin_str() const {
340 std::string S;
341 if (isVoid())
342 return "v";
343
344 if (isVoidPointer())
345 S += "v";
346 else if (!Float)
347 switch (ElementBitwidth) {
348 case 1: S += "b"; break;
349 case 8: S += "c"; break;
350 case 16: S += "s"; break;
351 case 32: S += "i"; break;
352 case 64: S += "Wi"; break;
353 case 128: S += "LLLi"; break;
354 default: llvm_unreachable("Unhandled case!");
355 }
356 else
357 switch (ElementBitwidth) {
358 case 16: S += "h"; break;
359 case 32: S += "f"; break;
360 case 64: S += "d"; break;
361 default: llvm_unreachable("Unhandled case!");
362 }
363
364 if (!isFloat()) {
365 if ((isChar() || isPointer()) && !isVoidPointer()) {
366 // Make chars and typed pointers explicitly signed.
367 if (Signed)
368 S = "S" + S;
369 else if (!Signed)
370 S = "U" + S;
371 } else if (!isVoidPointer() && !Signed) {
372 S = "U" + S;
373 }
374 }
375
376 // Constant indices are "int", but have the "constant expression" modifier.
377 if (isImmediate()) {
378 assert(!isFloat() && "fp immediates are not supported");
379 S = "I" + S;
380 }
381
382 if (isScalar()) {
383 if (Constant) S += "C";
384 if (Pointer) S += "*";
385 return S;
386 }
387
388 assert(isScalableVector() && "Unsupported type");
389 return "q" + utostr(getNumElements() * NumVectors) + S;
390}
391
Sander de Smalen981f0802020-03-18 15:05:08 +0000392std::string SVEType::str() const {
393 if (isPredicatePattern())
394 return "sv_pattern";
395
396 if (isPrefetchOp())
397 return "sv_prfop";
398
399 std::string S;
400 if (Void)
401 S += "void";
402 else {
403 if (isScalableVector())
404 S += "sv";
405 if (!Signed && !Float)
406 S += "u";
407
408 if (Float)
409 S += "float";
410 else if (isScalarPredicate())
411 S += "bool";
412 else
413 S += "int";
414
415 if (!isScalarPredicate())
416 S += utostr(ElementBitwidth);
417 if (!isScalableVector() && isVector())
418 S += "x" + utostr(getNumElements());
419 if (NumVectors > 1)
420 S += "x" + utostr(NumVectors);
421 S += "_t";
422 }
423
424 if (Constant)
425 S += " const";
426 if (Pointer)
427 S += " *";
428
429 return S;
430}
Sander de Smalenc5b81462020-03-18 11:07:20 +0000431void SVEType::applyTypespec() {
432 for (char I : TS) {
433 switch (I) {
434 case 'P':
435 Predicate = true;
436 ElementBitwidth = 1;
437 break;
438 case 'U':
439 Signed = false;
440 break;
441 case 'c':
442 ElementBitwidth = 8;
443 break;
444 case 's':
445 ElementBitwidth = 16;
446 break;
447 case 'i':
448 ElementBitwidth = 32;
449 break;
450 case 'l':
451 ElementBitwidth = 64;
452 break;
453 case 'h':
454 Float = true;
455 ElementBitwidth = 16;
456 break;
457 case 'f':
458 Float = true;
459 ElementBitwidth = 32;
460 break;
461 case 'd':
462 Float = true;
463 ElementBitwidth = 64;
464 break;
465 default:
466 llvm_unreachable("Unhandled type code!");
467 }
468 }
469 assert(ElementBitwidth != ~0U && "Bad element bitwidth!");
470}
471
472void SVEType::applyModifier(char Mod) {
473 switch (Mod) {
474 case 'v':
475 Void = true;
476 break;
477 case 'd':
478 DefaultType = true;
479 break;
480 case 'c':
481 Constant = true;
482 LLVM_FALLTHROUGH;
483 case 'p':
484 Pointer = true;
485 Bitwidth = ElementBitwidth;
486 NumVectors = 0;
487 break;
Sander de Smalenfc645392020-04-20 14:57:13 +0100488 case 'e':
489 Signed = false;
490 ElementBitwidth /= 2;
491 break;
Sander de Smalen515020c2020-04-20 14:41:58 +0100492 case 'h':
493 ElementBitwidth /= 2;
494 break;
Sander de Smalenfc645392020-04-20 14:57:13 +0100495 case 'q':
496 ElementBitwidth /= 4;
497 break;
498 case 'o':
499 ElementBitwidth *= 4;
500 break;
Sander de Smalenc5b81462020-03-18 11:07:20 +0000501 case 'P':
502 Signed = true;
503 Float = false;
504 Predicate = true;
505 Bitwidth = 16;
506 ElementBitwidth = 1;
507 break;
Sander de Smalen41d52662020-04-22 13:58:35 +0100508 case 'a':
509 Bitwidth = ElementBitwidth;
510 NumVectors = 0;
511 break;
Sander de Smalen515020c2020-04-20 14:41:58 +0100512 case 'u':
513 Predicate = false;
514 Signed = false;
515 Float = false;
516 break;
Andrzej Warzynski72f56582020-04-07 11:09:01 +0100517 case 'x':
518 Predicate = false;
519 Signed = true;
520 Float = false;
521 break;
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100522 case 'i':
523 Predicate = false;
524 Float = false;
525 ElementBitwidth = Bitwidth = 64;
526 NumVectors = 0;
527 Signed = false;
528 Immediate = true;
529 break;
530 case 'I':
531 Predicate = false;
532 Float = false;
533 ElementBitwidth = Bitwidth = 32;
534 NumVectors = 0;
535 Signed = true;
536 Immediate = true;
537 PredicatePattern = true;
538 break;
Sander de Smalen823e2a62020-04-24 11:31:34 +0100539 case 'J':
540 Predicate = false;
541 Float = false;
542 ElementBitwidth = Bitwidth = 32;
543 NumVectors = 0;
544 Signed = true;
545 Immediate = true;
546 PrefetchOp = true;
547 break;
Sander de Smalen662cbaf2020-04-22 15:00:01 +0100548 case 'k':
549 Predicate = false;
550 Signed = true;
551 Float = false;
552 ElementBitwidth = Bitwidth = 32;
553 NumVectors = 0;
554 break;
Sander de Smalen17a68c62020-04-14 13:17:52 +0100555 case 'l':
556 Predicate = false;
557 Signed = true;
558 Float = false;
559 ElementBitwidth = Bitwidth = 64;
560 NumVectors = 0;
561 break;
Sander de Smalen662cbaf2020-04-22 15:00:01 +0100562 case 'm':
563 Predicate = false;
564 Signed = false;
565 Float = false;
566 ElementBitwidth = Bitwidth = 32;
567 NumVectors = 0;
568 break;
569 case 'n':
570 Predicate = false;
571 Signed = false;
572 Float = false;
573 ElementBitwidth = Bitwidth = 64;
574 NumVectors = 0;
575 break;
Sander de Smalen0ddb2032020-04-24 11:31:34 +0100576 case 'w':
577 ElementBitwidth = 64;
578 break;
579 case 'j':
580 ElementBitwidth = Bitwidth = 64;
581 NumVectors = 0;
582 break;
Sander de Smalena5e03892020-04-23 10:53:23 +0100583 case 't':
584 Signed = true;
585 Float = false;
586 ElementBitwidth = 32;
587 break;
588 case 'z':
589 Signed = false;
590 Float = false;
591 ElementBitwidth = 32;
592 break;
Sander de Smalen00216442020-04-23 10:45:13 +0100593 case 'O':
594 Predicate = false;
595 Float = true;
596 ElementBitwidth = 16;
597 break;
598 case 'M':
599 Predicate = false;
600 Float = true;
601 ElementBitwidth = 32;
602 break;
603 case 'N':
604 Predicate = false;
605 Float = true;
606 ElementBitwidth = 64;
607 break;
Sander de Smalen17a68c62020-04-14 13:17:52 +0100608 case 'S':
609 Constant = true;
610 Pointer = true;
611 ElementBitwidth = Bitwidth = 8;
612 NumVectors = 0;
613 Signed = true;
614 break;
615 case 'W':
616 Constant = true;
617 Pointer = true;
618 ElementBitwidth = Bitwidth = 8;
619 NumVectors = 0;
620 Signed = false;
621 break;
622 case 'T':
623 Constant = true;
624 Pointer = true;
625 ElementBitwidth = Bitwidth = 16;
626 NumVectors = 0;
627 Signed = true;
628 break;
629 case 'X':
630 Constant = true;
631 Pointer = true;
632 ElementBitwidth = Bitwidth = 16;
633 NumVectors = 0;
634 Signed = false;
635 break;
636 case 'Y':
637 Constant = true;
638 Pointer = true;
639 ElementBitwidth = Bitwidth = 32;
640 NumVectors = 0;
641 Signed = false;
642 break;
643 case 'U':
644 Constant = true;
645 Pointer = true;
646 ElementBitwidth = Bitwidth = 32;
647 NumVectors = 0;
648 Signed = true;
649 break;
650 case 'A':
651 Pointer = true;
652 ElementBitwidth = Bitwidth = 8;
653 NumVectors = 0;
654 Signed = true;
655 break;
656 case 'B':
657 Pointer = true;
658 ElementBitwidth = Bitwidth = 16;
659 NumVectors = 0;
660 Signed = true;
661 break;
662 case 'C':
663 Pointer = true;
664 ElementBitwidth = Bitwidth = 32;
665 NumVectors = 0;
666 Signed = true;
667 break;
668 case 'D':
669 Pointer = true;
670 ElementBitwidth = Bitwidth = 64;
671 NumVectors = 0;
672 Signed = true;
673 break;
674 case 'E':
675 Pointer = true;
676 ElementBitwidth = Bitwidth = 8;
677 NumVectors = 0;
678 Signed = false;
679 break;
680 case 'F':
681 Pointer = true;
682 ElementBitwidth = Bitwidth = 16;
683 NumVectors = 0;
684 Signed = false;
685 break;
686 case 'G':
687 Pointer = true;
688 ElementBitwidth = Bitwidth = 32;
689 NumVectors = 0;
690 Signed = false;
691 break;
Sander de Smalenc5b81462020-03-18 11:07:20 +0000692 default:
693 llvm_unreachable("Unhandled character!");
694 }
695}
696
697
698//===----------------------------------------------------------------------===//
699// Intrinsic implementation
700//===----------------------------------------------------------------------===//
701
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100702Intrinsic::Intrinsic(StringRef Name, StringRef Proto, uint64_t MergeTy,
703 StringRef MergeSuffix, uint64_t MemoryElementTy,
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100704 StringRef LLVMName, uint64_t Flags,
705 ArrayRef<ImmCheck> Checks, TypeSpec BT, ClassKind Class,
706 SVEEmitter &Emitter, StringRef Guard)
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100707 : Name(Name.str()), LLVMName(LLVMName), Proto(Proto.str()),
708 BaseTypeSpec(BT), Class(Class), Guard(Guard.str()),
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100709 MergeSuffix(MergeSuffix.str()), BaseType(BT, 'd'), Flags(Flags),
710 ImmChecks(Checks.begin(), Checks.end()) {
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100711
712 // Types[0] is the return value.
713 for (unsigned I = 0; I < Proto.size(); ++I) {
714 SVEType T(BaseTypeSpec, Proto[I]);
715 Types.push_back(T);
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100716
717 // Add range checks for immediates
718 if (I > 0) {
719 if (T.isPredicatePattern())
720 ImmChecks.emplace_back(
721 I - 1, Emitter.getEnumValueForImmCheck("ImmCheck0_31"));
Sander de Smalen823e2a62020-04-24 11:31:34 +0100722 else if (T.isPrefetchOp())
723 ImmChecks.emplace_back(
724 I - 1, Emitter.getEnumValueForImmCheck("ImmCheck0_13"));
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100725 }
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100726 }
727
728 // Set flags based on properties
729 this->Flags |= Emitter.encodeTypeFlags(BaseType);
730 this->Flags |= Emitter.encodeMemoryElementType(MemoryElementTy);
731 this->Flags |= Emitter.encodeMergeType(MergeTy);
Sander de Smalen41d52662020-04-22 13:58:35 +0100732 if (hasSplat())
733 this->Flags |= Emitter.encodeSplatOperand(getSplatIdx());
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100734}
735
Sander de Smalenc5b81462020-03-18 11:07:20 +0000736std::string Intrinsic::getBuiltinTypeStr() {
737 std::string S;
738
739 SVEType RetT = getReturnType();
740 // Since the return value must be one type, return a vector type of the
741 // appropriate width which we will bitcast. An exception is made for
742 // returning structs of 2, 3, or 4 vectors which are returned in a sret-like
743 // fashion, storing them to a pointer arg.
744 if (RetT.getNumVectors() > 1) {
745 S += "vv*"; // void result with void* first argument
746 } else
747 S += RetT.builtin_str();
748
749 for (unsigned I = 0; I < getNumParams(); ++I)
750 S += getParamType(I).builtin_str();
751
752 return S;
753}
754
755std::string Intrinsic::replaceTemplatedArgs(std::string Name, TypeSpec TS,
756 std::string Proto) const {
757 std::string Ret = Name;
758 while (Ret.find('{') != std::string::npos) {
759 size_t Pos = Ret.find('{');
760 size_t End = Ret.find('}');
761 unsigned NumChars = End - Pos + 1;
762 assert(NumChars == 3 && "Unexpected template argument");
763
764 SVEType T;
765 char C = Ret[Pos+1];
766 switch(C) {
767 default:
768 llvm_unreachable("Unknown predication specifier");
769 case 'd':
770 T = SVEType(TS, 'd');
771 break;
772 case '0':
773 case '1':
774 case '2':
775 case '3':
776 T = SVEType(TS, Proto[C - '0']);
777 break;
778 }
779
780 // Replace templated arg with the right suffix (e.g. u32)
781 std::string TypeCode;
782 if (T.isInteger())
783 TypeCode = T.isSigned() ? 's' : 'u';
784 else if (T.isPredicateVector())
785 TypeCode = 'b';
786 else
787 TypeCode = 'f';
788 Ret.replace(Pos, NumChars, TypeCode + utostr(T.getElementSizeInBits()));
789 }
790
791 return Ret;
792}
793
Sander de Smalenc5b81462020-03-18 11:07:20 +0000794std::string Intrinsic::mangleName(ClassKind LocalCK) const {
795 std::string S = getName();
796
797 if (LocalCK == ClassG) {
798 // Remove the square brackets and everything in between.
799 while (S.find("[") != std::string::npos) {
800 auto Start = S.find("[");
801 auto End = S.find(']');
802 S.erase(Start, (End-Start)+1);
803 }
804 } else {
805 // Remove the square brackets.
806 while (S.find("[") != std::string::npos) {
807 auto BrPos = S.find('[');
808 if (BrPos != std::string::npos)
809 S.erase(BrPos, 1);
810 BrPos = S.find(']');
811 if (BrPos != std::string::npos)
812 S.erase(BrPos, 1);
813 }
814 }
815
816 // Replace all {d} like expressions with e.g. 'u32'
817 return replaceTemplatedArgs(S, getBaseTypeSpec(), getProto()) +
818 getMergeSuffix();
819}
820
821void Intrinsic::emitIntrinsic(raw_ostream &OS) const {
822 // Use the preprocessor to
823 if (getClassKind() != ClassG || getProto().size() <= 1) {
824 OS << "#define " << mangleName(getClassKind())
825 << "(...) __builtin_sve_" << mangleName(ClassS)
826 << "(__VA_ARGS__)\n";
827 } else {
Sander de Smalen981f0802020-03-18 15:05:08 +0000828 std::string FullName = mangleName(ClassS);
829 std::string ProtoName = mangleName(ClassG);
830
831 OS << "__aio __attribute__((__clang_arm_builtin_alias("
832 << "__builtin_sve_" << FullName << ")))\n";
833
834 OS << getTypes()[0].str() << " " << ProtoName << "(";
835 for (unsigned I = 0; I < getTypes().size() - 1; ++I) {
836 if (I != 0)
837 OS << ", ";
838 OS << getTypes()[I + 1].str();
839 }
840 OS << ");\n";
Sander de Smalenc5b81462020-03-18 11:07:20 +0000841 }
842}
843
844//===----------------------------------------------------------------------===//
845// SVEEmitter implementation
846//===----------------------------------------------------------------------===//
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100847uint64_t SVEEmitter::encodeTypeFlags(const SVEType &T) {
848 if (T.isFloat()) {
849 switch (T.getElementSizeInBits()) {
850 case 16:
851 return encodeEltType("EltTyFloat16");
852 case 32:
853 return encodeEltType("EltTyFloat32");
854 case 64:
855 return encodeEltType("EltTyFloat64");
856 default:
857 llvm_unreachable("Unhandled float element bitwidth!");
858 }
859 }
860
861 if (T.isPredicateVector()) {
862 switch (T.getElementSizeInBits()) {
863 case 8:
864 return encodeEltType("EltTyBool8");
865 case 16:
866 return encodeEltType("EltTyBool16");
867 case 32:
868 return encodeEltType("EltTyBool32");
869 case 64:
870 return encodeEltType("EltTyBool64");
871 default:
872 llvm_unreachable("Unhandled predicate element bitwidth!");
873 }
874 }
875
876 switch (T.getElementSizeInBits()) {
877 case 8:
878 return encodeEltType("EltTyInt8");
879 case 16:
880 return encodeEltType("EltTyInt16");
881 case 32:
882 return encodeEltType("EltTyInt32");
883 case 64:
884 return encodeEltType("EltTyInt64");
885 default:
886 llvm_unreachable("Unhandled integer element bitwidth!");
887 }
888}
889
Sander de Smalenc5b81462020-03-18 11:07:20 +0000890void SVEEmitter::createIntrinsic(
891 Record *R, SmallVectorImpl<std::unique_ptr<Intrinsic>> &Out) {
892 StringRef Name = R->getValueAsString("Name");
893 StringRef Proto = R->getValueAsString("Prototype");
894 StringRef Types = R->getValueAsString("Types");
895 StringRef Guard = R->getValueAsString("ArchGuard");
896 StringRef LLVMName = R->getValueAsString("LLVMIntrinsic");
Sander de Smalenf6ea0262020-04-14 15:31:20 +0100897 uint64_t Merge = R->getValueAsInt("Merge");
898 StringRef MergeSuffix = R->getValueAsString("MergeSuffix");
899 uint64_t MemEltType = R->getValueAsInt("MemEltType");
Sander de Smalenc5b81462020-03-18 11:07:20 +0000900 std::vector<Record*> FlagsList = R->getValueAsListOfDefs("Flags");
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100901 std::vector<Record*> ImmCheckList = R->getValueAsListOfDefs("ImmChecks");
Sander de Smalenc5b81462020-03-18 11:07:20 +0000902
903 int64_t Flags = 0;
904 for (auto FlagRec : FlagsList)
905 Flags |= FlagRec->getValueAsInt("Value");
Sander de Smalenc5b81462020-03-18 11:07:20 +0000906
Sander de Smalen662cbaf2020-04-22 15:00:01 +0100907 // Create a dummy TypeSpec for non-overloaded builtins.
908 if (Types.empty()) {
909 assert((Flags & getEnumValueForFlag("IsOverloadNone")) &&
910 "Expect TypeSpec for overloaded builtin!");
911 Types = "i";
912 }
913
Sander de Smalenc5b81462020-03-18 11:07:20 +0000914 // Extract type specs from string
915 SmallVector<TypeSpec, 8> TypeSpecs;
916 TypeSpec Acc;
917 for (char I : Types) {
918 Acc.push_back(I);
919 if (islower(I)) {
920 TypeSpecs.push_back(TypeSpec(Acc));
921 Acc.clear();
922 }
923 }
924
925 // Remove duplicate type specs.
Benjamin Kramer4065e922020-03-28 19:19:55 +0100926 llvm::sort(TypeSpecs);
Sander de Smalenc5b81462020-03-18 11:07:20 +0000927 TypeSpecs.erase(std::unique(TypeSpecs.begin(), TypeSpecs.end()),
928 TypeSpecs.end());
929
930 // Create an Intrinsic for each type spec.
931 for (auto TS : TypeSpecs) {
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100932 // Collate a list of range/option checks for the immediates.
933 SmallVector<ImmCheck, 2> ImmChecks;
934 for (auto *R : ImmCheckList) {
Christopher Tetreault464a0692020-04-15 15:16:17 -0700935 int64_t Arg = R->getValueAsInt("Arg");
936 int64_t EltSizeArg = R->getValueAsInt("EltSizeArg");
937 int64_t Kind = R->getValueAsDef("Kind")->getValueAsInt("Value");
938 assert(Arg >= 0 && Kind >= 0 && "Arg and Kind must be nonnegative");
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100939
940 unsigned ElementSizeInBits = 0;
941 if (EltSizeArg >= 0)
942 ElementSizeInBits =
943 SVEType(TS, Proto[EltSizeArg + /* offset by return arg */ 1])
944 .getElementSizeInBits();
945 ImmChecks.push_back(ImmCheck(Arg, Kind, ElementSizeInBits));
946 }
947
948 Out.push_back(std::make_unique<Intrinsic>(
949 Name, Proto, Merge, MergeSuffix, MemEltType, LLVMName, Flags, ImmChecks,
950 TS, ClassS, *this, Guard));
Sander de Smalen981f0802020-03-18 15:05:08 +0000951
952 // Also generate the short-form (e.g. svadd_m) for the given type-spec.
953 if (Intrinsic::isOverloadedIntrinsic(Name))
Sander de Smalenc8a5b302020-04-14 15:56:36 +0100954 Out.push_back(std::make_unique<Intrinsic>(
955 Name, Proto, Merge, MergeSuffix, MemEltType, LLVMName, Flags,
956 ImmChecks, TS, ClassG, *this, Guard));
Sander de Smalenc5b81462020-03-18 11:07:20 +0000957 }
958}
959
960void SVEEmitter::createHeader(raw_ostream &OS) {
Sander de Smalen5087ace2020-03-15 14:29:45 +0000961 OS << "/*===---- arm_sve.h - ARM SVE intrinsics "
962 "-----------------------------------===\n"
963 " *\n"
964 " *\n"
965 " * Part of the LLVM Project, under the Apache License v2.0 with LLVM "
966 "Exceptions.\n"
967 " * See https://llvm.org/LICENSE.txt for license information.\n"
968 " * SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception\n"
969 " *\n"
970 " *===-----------------------------------------------------------------"
971 "------===\n"
972 " */\n\n";
973
974 OS << "#ifndef __ARM_SVE_H\n";
975 OS << "#define __ARM_SVE_H\n\n";
976
977 OS << "#if !defined(__ARM_FEATURE_SVE)\n";
978 OS << "#error \"SVE support not enabled\"\n";
979 OS << "#else\n\n";
980
981 OS << "#include <stdint.h>\n\n";
Sander de Smalenc5b81462020-03-18 11:07:20 +0000982 OS << "#ifdef __cplusplus\n";
983 OS << "extern \"C\" {\n";
984 OS << "#else\n";
Sander de Smalen5087ace2020-03-15 14:29:45 +0000985 OS << "#include <stdbool.h>\n";
986 OS << "#endif\n\n";
987
988 OS << "typedef __fp16 float16_t;\n";
989 OS << "typedef float float32_t;\n";
990 OS << "typedef double float64_t;\n";
991 OS << "typedef bool bool_t;\n\n";
992
993 OS << "typedef __SVInt8_t svint8_t;\n";
994 OS << "typedef __SVInt16_t svint16_t;\n";
995 OS << "typedef __SVInt32_t svint32_t;\n";
996 OS << "typedef __SVInt64_t svint64_t;\n";
997 OS << "typedef __SVUint8_t svuint8_t;\n";
998 OS << "typedef __SVUint16_t svuint16_t;\n";
999 OS << "typedef __SVUint32_t svuint32_t;\n";
1000 OS << "typedef __SVUint64_t svuint64_t;\n";
1001 OS << "typedef __SVFloat16_t svfloat16_t;\n";
1002 OS << "typedef __SVFloat32_t svfloat32_t;\n";
1003 OS << "typedef __SVFloat64_t svfloat64_t;\n";
1004 OS << "typedef __SVBool_t svbool_t;\n\n";
1005
Sander de Smalenc8a5b302020-04-14 15:56:36 +01001006 OS << "typedef enum\n";
1007 OS << "{\n";
1008 OS << " SV_POW2 = 0,\n";
1009 OS << " SV_VL1 = 1,\n";
1010 OS << " SV_VL2 = 2,\n";
1011 OS << " SV_VL3 = 3,\n";
1012 OS << " SV_VL4 = 4,\n";
1013 OS << " SV_VL5 = 5,\n";
1014 OS << " SV_VL6 = 6,\n";
1015 OS << " SV_VL7 = 7,\n";
1016 OS << " SV_VL8 = 8,\n";
1017 OS << " SV_VL16 = 9,\n";
1018 OS << " SV_VL32 = 10,\n";
1019 OS << " SV_VL64 = 11,\n";
1020 OS << " SV_VL128 = 12,\n";
1021 OS << " SV_VL256 = 13,\n";
1022 OS << " SV_MUL4 = 29,\n";
1023 OS << " SV_MUL3 = 30,\n";
1024 OS << " SV_ALL = 31\n";
1025 OS << "} sv_pattern;\n\n";
1026
Sander de Smalen823e2a62020-04-24 11:31:34 +01001027 OS << "typedef enum\n";
1028 OS << "{\n";
1029 OS << " SV_PLDL1KEEP = 0,\n";
1030 OS << " SV_PLDL1STRM = 1,\n";
1031 OS << " SV_PLDL2KEEP = 2,\n";
1032 OS << " SV_PLDL2STRM = 3,\n";
1033 OS << " SV_PLDL3KEEP = 4,\n";
1034 OS << " SV_PLDL3STRM = 5,\n";
1035 OS << " SV_PSTL1KEEP = 8,\n";
1036 OS << " SV_PSTL1STRM = 9,\n";
1037 OS << " SV_PSTL2KEEP = 10,\n";
1038 OS << " SV_PSTL2STRM = 11,\n";
1039 OS << " SV_PSTL3KEEP = 12,\n";
1040 OS << " SV_PSTL3STRM = 13\n";
1041 OS << "} sv_prfop;\n\n";
1042
Sander de Smalen981f0802020-03-18 15:05:08 +00001043 OS << "/* Function attributes */\n";
1044 OS << "#define __aio static inline __attribute__((__always_inline__, "
1045 "__nodebug__, __overloadable__))\n\n";
1046
Sander de Smalenc5b81462020-03-18 11:07:20 +00001047 SmallVector<std::unique_ptr<Intrinsic>, 128> Defs;
1048 std::vector<Record *> RV = Records.getAllDerivedDefinitions("Inst");
1049 for (auto *R : RV)
1050 createIntrinsic(R, Defs);
Sander de Smalen5087ace2020-03-15 14:29:45 +00001051
Sander de Smalenc5b81462020-03-18 11:07:20 +00001052 // Sort intrinsics in header file by following order/priority:
1053 // - Architectural guard (i.e. does it require SVE2 or SVE2_AES)
1054 // - Class (is intrinsic overloaded or not)
1055 // - Intrinsic name
1056 std::stable_sort(
1057 Defs.begin(), Defs.end(), [](const std::unique_ptr<Intrinsic> &A,
1058 const std::unique_ptr<Intrinsic> &B) {
Eric Fiselieraf2968e2020-04-16 18:35:31 -04001059 auto ToTuple = [](const std::unique_ptr<Intrinsic> &I) {
1060 return std::make_tuple(I->getGuard(), (unsigned)I->getClassKind(), I->getName());
1061 };
1062 return ToTuple(A) < ToTuple(B);
Sander de Smalenc5b81462020-03-18 11:07:20 +00001063 });
1064
1065 StringRef InGuard = "";
1066 for (auto &I : Defs) {
1067 // Emit #endif/#if pair if needed.
1068 if (I->getGuard() != InGuard) {
1069 if (!InGuard.empty())
1070 OS << "#endif //" << InGuard << "\n";
1071 InGuard = I->getGuard();
1072 if (!InGuard.empty())
1073 OS << "\n#if " << InGuard << "\n";
1074 }
1075
1076 // Actually emit the intrinsic declaration.
1077 I->emitIntrinsic(OS);
1078 }
1079
1080 if (!InGuard.empty())
1081 OS << "#endif //" << InGuard << "\n";
1082
Sander de Smalen00216442020-04-23 10:45:13 +01001083 OS << "#if defined(__ARM_FEATURE_SVE2)\n";
1084 OS << "#define svcvtnt_f16_x svcvtnt_f16_m\n";
1085 OS << "#define svcvtnt_f16_f32_x svcvtnt_f16_f32_m\n";
1086 OS << "#define svcvtnt_f32_x svcvtnt_f32_m\n";
1087 OS << "#define svcvtnt_f32_f64_x svcvtnt_f32_f64_m\n\n";
1088
1089 OS << "#define svcvtxnt_f32_x svcvtxnt_f32_m\n";
1090 OS << "#define svcvtxnt_f32_f64_x svcvtxnt_f32_f64_m\n\n";
1091
1092 OS << "#endif /*__ARM_FEATURE_SVE2 */\n\n";
1093
Sander de Smalenc5b81462020-03-18 11:07:20 +00001094 OS << "#ifdef __cplusplus\n";
1095 OS << "} // extern \"C\"\n";
1096 OS << "#endif\n\n";
1097 OS << "#endif /*__ARM_FEATURE_SVE */\n\n";
Sander de Smalen5087ace2020-03-15 14:29:45 +00001098 OS << "#endif /* __ARM_SVE_H */\n";
1099}
1100
Sander de Smalenc5b81462020-03-18 11:07:20 +00001101void SVEEmitter::createBuiltins(raw_ostream &OS) {
1102 std::vector<Record *> RV = Records.getAllDerivedDefinitions("Inst");
1103 SmallVector<std::unique_ptr<Intrinsic>, 128> Defs;
1104 for (auto *R : RV)
1105 createIntrinsic(R, Defs);
1106
1107 // The mappings must be sorted based on BuiltinID.
1108 llvm::sort(Defs, [](const std::unique_ptr<Intrinsic> &A,
1109 const std::unique_ptr<Intrinsic> &B) {
1110 return A->getMangledName() < B->getMangledName();
1111 });
1112
1113 OS << "#ifdef GET_SVE_BUILTINS\n";
1114 for (auto &Def : Defs) {
1115 // Only create BUILTINs for non-overloaded intrinsics, as overloaded
1116 // declarations only live in the header file.
1117 if (Def->getClassKind() != ClassG)
1118 OS << "BUILTIN(__builtin_sve_" << Def->getMangledName() << ", \""
1119 << Def->getBuiltinTypeStr() << "\", \"n\")\n";
1120 }
1121 OS << "#endif\n\n";
1122}
1123
1124void SVEEmitter::createCodeGenMap(raw_ostream &OS) {
1125 std::vector<Record *> RV = Records.getAllDerivedDefinitions("Inst");
1126 SmallVector<std::unique_ptr<Intrinsic>, 128> Defs;
1127 for (auto *R : RV)
1128 createIntrinsic(R, Defs);
1129
1130 // The mappings must be sorted based on BuiltinID.
1131 llvm::sort(Defs, [](const std::unique_ptr<Intrinsic> &A,
1132 const std::unique_ptr<Intrinsic> &B) {
1133 return A->getMangledName() < B->getMangledName();
1134 });
1135
1136 OS << "#ifdef GET_SVE_LLVM_INTRINSIC_MAP\n";
1137 for (auto &Def : Defs) {
1138 // Builtins only exist for non-overloaded intrinsics, overloaded
1139 // declarations only live in the header file.
1140 if (Def->getClassKind() == ClassG)
1141 continue;
1142
Sander de Smalenf6ea0262020-04-14 15:31:20 +01001143 uint64_t Flags = Def->getFlags();
Sander de Smalenc5b81462020-03-18 11:07:20 +00001144 auto FlagString = std::to_string(Flags);
1145
1146 std::string LLVMName = Def->getLLVMName();
1147 std::string Builtin = Def->getMangledName();
1148 if (!LLVMName.empty())
1149 OS << "SVEMAP1(" << Builtin << ", " << LLVMName << ", " << FlagString
1150 << "),\n";
1151 else
1152 OS << "SVEMAP2(" << Builtin << ", " << FlagString << "),\n";
1153 }
1154 OS << "#endif\n\n";
1155}
1156
Sander de Smalenc8a5b302020-04-14 15:56:36 +01001157void SVEEmitter::createRangeChecks(raw_ostream &OS) {
1158 std::vector<Record *> RV = Records.getAllDerivedDefinitions("Inst");
1159 SmallVector<std::unique_ptr<Intrinsic>, 128> Defs;
1160 for (auto *R : RV)
1161 createIntrinsic(R, Defs);
1162
1163 // The mappings must be sorted based on BuiltinID.
1164 llvm::sort(Defs, [](const std::unique_ptr<Intrinsic> &A,
1165 const std::unique_ptr<Intrinsic> &B) {
1166 return A->getMangledName() < B->getMangledName();
1167 });
1168
1169
1170 OS << "#ifdef GET_SVE_IMMEDIATE_CHECK\n";
1171
1172 // Ensure these are only emitted once.
1173 std::set<std::string> Emitted;
1174
1175 for (auto &Def : Defs) {
1176 if (Emitted.find(Def->getMangledName()) != Emitted.end() ||
1177 Def->getImmChecks().empty())
1178 continue;
1179
1180 OS << "case SVE::BI__builtin_sve_" << Def->getMangledName() << ":\n";
1181 for (auto &Check : Def->getImmChecks())
1182 OS << "ImmChecks.push_back(std::make_tuple(" << Check.getArg() << ", "
1183 << Check.getKind() << ", " << Check.getElementSizeInBits() << "));\n";
1184 OS << " break;\n";
1185
1186 Emitted.insert(Def->getMangledName());
1187 }
1188
1189 OS << "#endif\n\n";
1190}
1191
Sander de Smalenc5b81462020-03-18 11:07:20 +00001192/// Create the SVETypeFlags used in CGBuiltins
1193void SVEEmitter::createTypeFlags(raw_ostream &OS) {
1194 OS << "#ifdef LLVM_GET_SVE_TYPEFLAGS\n";
1195 for (auto &KV : FlagTypes)
1196 OS << "const uint64_t " << KV.getKey() << " = " << KV.getValue() << ";\n";
1197 OS << "#endif\n\n";
1198
1199 OS << "#ifdef LLVM_GET_SVE_ELTTYPES\n";
1200 for (auto &KV : EltTypes)
1201 OS << " " << KV.getKey() << " = " << KV.getValue() << ",\n";
1202 OS << "#endif\n\n";
1203
1204 OS << "#ifdef LLVM_GET_SVE_MEMELTTYPES\n";
1205 for (auto &KV : MemEltTypes)
1206 OS << " " << KV.getKey() << " = " << KV.getValue() << ",\n";
1207 OS << "#endif\n\n";
Sander de Smalenf6ea0262020-04-14 15:31:20 +01001208
1209 OS << "#ifdef LLVM_GET_SVE_MERGETYPES\n";
1210 for (auto &KV : MergeTypes)
1211 OS << " " << KV.getKey() << " = " << KV.getValue() << ",\n";
1212 OS << "#endif\n\n";
Sander de Smalenc8a5b302020-04-14 15:56:36 +01001213
1214 OS << "#ifdef LLVM_GET_SVE_IMMCHECKTYPES\n";
1215 for (auto &KV : ImmCheckTypes)
1216 OS << " " << KV.getKey() << " = " << KV.getValue() << ",\n";
1217 OS << "#endif\n\n";
Sander de Smalenc5b81462020-03-18 11:07:20 +00001218}
1219
Sander de Smalen5087ace2020-03-15 14:29:45 +00001220namespace clang {
1221void EmitSveHeader(RecordKeeper &Records, raw_ostream &OS) {
Sander de Smalenc5b81462020-03-18 11:07:20 +00001222 SVEEmitter(Records).createHeader(OS);
1223}
1224
1225void EmitSveBuiltins(RecordKeeper &Records, raw_ostream &OS) {
1226 SVEEmitter(Records).createBuiltins(OS);
1227}
1228
1229void EmitSveBuiltinCG(RecordKeeper &Records, raw_ostream &OS) {
1230 SVEEmitter(Records).createCodeGenMap(OS);
1231}
Sander de Smalenc8a5b302020-04-14 15:56:36 +01001232
1233void EmitSveRangeChecks(RecordKeeper &Records, raw_ostream &OS) {
1234 SVEEmitter(Records).createRangeChecks(OS);
1235}
1236
Sander de Smalenc5b81462020-03-18 11:07:20 +00001237void EmitSveTypeFlags(RecordKeeper &Records, raw_ostream &OS) {
1238 SVEEmitter(Records).createTypeFlags(OS);
Sander de Smalen5087ace2020-03-15 14:29:45 +00001239}
1240
1241} // End namespace clang