1 //===- CodeGen/ValueTypes.h - Low-Level Target independ. types --*- 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 file defines the set of low-level target independent types which various
10 // values in the code generator are.  This allows the target specific behavior
11 // of instructions to be described to target independent passes.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #ifndef LLVM_CODEGEN_VALUETYPES_H
16 #define LLVM_CODEGEN_VALUETYPES_H
17 
18 #include "llvm/Support/Compiler.h"
19 #include "llvm/Support/MachineValueType.h"
20 #include "llvm/Support/MathExtras.h"
21 #include "llvm/Support/TypeSize.h"
22 #include "llvm/Support/WithColor.h"
23 #include <cassert>
24 #include <cstdint>
25 #include <string>
26 
27 namespace llvm {
28 
29   class LLVMContext;
30   class Type;
31 
32   /// Extended Value Type. Capable of holding value types which are not native
33   /// for any processor (such as the i12345 type), as well as the types an MVT
34   /// can represent.
35   struct EVT {
36   private:
37     MVT V = MVT::INVALID_SIMPLE_VALUE_TYPE;
38     Type *LLVMTy = nullptr;
39 
40   public:
41     constexpr EVT() = default;
EVTEVT42     constexpr EVT(MVT::SimpleValueType SVT) : V(SVT) {}
EVTEVT43     constexpr EVT(MVT S) : V(S) {}
44 
45     bool operator==(EVT VT) const {
46       return !(*this != VT);
47     }
48     bool operator!=(EVT VT) const {
49       if (V.SimpleTy != VT.V.SimpleTy)
50         return true;
51       if (V.SimpleTy == MVT::INVALID_SIMPLE_VALUE_TYPE)
52         return LLVMTy != VT.LLVMTy;
53       return false;
54     }
55 
56     /// Returns the EVT that represents a floating-point type with the given
57     /// number of bits. There are two floating-point types with 128 bits - this
58     /// returns f128 rather than ppcf128.
getFloatingPointVTEVT59     static EVT getFloatingPointVT(unsigned BitWidth) {
60       return MVT::getFloatingPointVT(BitWidth);
61     }
62 
63     /// Returns the EVT that represents an integer with the given number of
64     /// bits.
getIntegerVTEVT65     static EVT getIntegerVT(LLVMContext &Context, unsigned BitWidth) {
66       MVT M = MVT::getIntegerVT(BitWidth);
67       if (M.SimpleTy != MVT::INVALID_SIMPLE_VALUE_TYPE)
68         return M;
69       return getExtendedIntegerVT(Context, BitWidth);
70     }
71 
72     /// Returns the EVT that represents a vector NumElements in length, where
73     /// each element is of type VT.
74     static EVT getVectorVT(LLVMContext &Context, EVT VT, unsigned NumElements,
75                            bool IsScalable = false) {
76       MVT M = MVT::getVectorVT(VT.V, NumElements, IsScalable);
77       if (M.SimpleTy != MVT::INVALID_SIMPLE_VALUE_TYPE)
78         return M;
79       return getExtendedVectorVT(Context, VT, NumElements, IsScalable);
80     }
81 
82     /// Returns the EVT that represents a vector EC.Min elements in length,
83     /// where each element is of type VT.
getVectorVTEVT84     static EVT getVectorVT(LLVMContext &Context, EVT VT, ElementCount EC) {
85       MVT M = MVT::getVectorVT(VT.V, EC);
86       if (M.SimpleTy != MVT::INVALID_SIMPLE_VALUE_TYPE)
87         return M;
88       return getExtendedVectorVT(Context, VT, EC);
89     }
90 
91     /// Return a vector with the same number of elements as this vector, but
92     /// with the element type converted to an integer type with the same
93     /// bitwidth.
changeVectorElementTypeToIntegerEVT94     EVT changeVectorElementTypeToInteger() const {
95       if (isSimple())
96         return getSimpleVT().changeVectorElementTypeToInteger();
97       return changeExtendedVectorElementTypeToInteger();
98     }
99 
100     /// Return a VT for a vector type whose attributes match ourselves
101     /// with the exception of the element type that is chosen by the caller.
changeVectorElementTypeEVT102     EVT changeVectorElementType(EVT EltVT) const {
103       if (isSimple()) {
104         assert(EltVT.isSimple() &&
105                "Can't change simple vector VT to have extended element VT");
106         return getSimpleVT().changeVectorElementType(EltVT.getSimpleVT());
107       }
108       return changeExtendedVectorElementType(EltVT);
109     }
110 
111     /// Return the type converted to an equivalently sized integer or vector
112     /// with integer element type. Similar to changeVectorElementTypeToInteger,
113     /// but also handles scalars.
changeTypeToIntegerEVT114     EVT changeTypeToInteger() {
115       if (isVector())
116         return changeVectorElementTypeToInteger();
117 
118       if (isSimple())
119         return getSimpleVT().changeTypeToInteger();
120       return changeExtendedTypeToInteger();
121     }
122 
123     /// Test if the given EVT has zero size, this will fail if called on a
124     /// scalable type
isZeroSizedEVT125     bool isZeroSized() const {
126       return !isScalableVector() && getSizeInBits() == 0;
127     }
128 
129     /// Test if the given EVT is simple (as opposed to being extended).
isSimpleEVT130     bool isSimple() const {
131       return V.SimpleTy != MVT::INVALID_SIMPLE_VALUE_TYPE;
132     }
133 
134     /// Test if the given EVT is extended (as opposed to being simple).
isExtendedEVT135     bool isExtended() const {
136       return !isSimple();
137     }
138 
139     /// Return true if this is a FP or a vector FP type.
isFloatingPointEVT140     bool isFloatingPoint() const {
141       return isSimple() ? V.isFloatingPoint() : isExtendedFloatingPoint();
142     }
143 
144     /// Return true if this is an integer or a vector integer type.
isIntegerEVT145     bool isInteger() const {
146       return isSimple() ? V.isInteger() : isExtendedInteger();
147     }
148 
149     /// Return true if this is an integer, but not a vector.
isScalarIntegerEVT150     bool isScalarInteger() const {
151       return isSimple() ? V.isScalarInteger() : isExtendedScalarInteger();
152     }
153 
154     /// Return true if this is a vector value type.
isVectorEVT155     bool isVector() const {
156       return isSimple() ? V.isVector() : isExtendedVector();
157     }
158 
159     /// Return true if this is a vector type where the runtime
160     /// length is machine dependent
isScalableVectorEVT161     bool isScalableVector() const {
162       return isSimple() ? V.isScalableVector() : isExtendedScalableVector();
163     }
164 
isFixedLengthVectorEVT165     bool isFixedLengthVector() const {
166       return isSimple() ? V.isFixedLengthVector()
167                         : isExtendedFixedLengthVector();
168     }
169 
170     /// Return true if this is a 16-bit vector type.
is16BitVectorEVT171     bool is16BitVector() const {
172       return isSimple() ? V.is16BitVector() : isExtended16BitVector();
173     }
174 
175     /// Return true if this is a 32-bit vector type.
is32BitVectorEVT176     bool is32BitVector() const {
177       return isSimple() ? V.is32BitVector() : isExtended32BitVector();
178     }
179 
180     /// Return true if this is a 64-bit vector type.
is64BitVectorEVT181     bool is64BitVector() const {
182       return isSimple() ? V.is64BitVector() : isExtended64BitVector();
183     }
184 
185     /// Return true if this is a 128-bit vector type.
is128BitVectorEVT186     bool is128BitVector() const {
187       return isSimple() ? V.is128BitVector() : isExtended128BitVector();
188     }
189 
190     /// Return true if this is a 256-bit vector type.
is256BitVectorEVT191     bool is256BitVector() const {
192       return isSimple() ? V.is256BitVector() : isExtended256BitVector();
193     }
194 
195     /// Return true if this is a 512-bit vector type.
is512BitVectorEVT196     bool is512BitVector() const {
197       return isSimple() ? V.is512BitVector() : isExtended512BitVector();
198     }
199 
200     /// Return true if this is a 1024-bit vector type.
is1024BitVectorEVT201     bool is1024BitVector() const {
202       return isSimple() ? V.is1024BitVector() : isExtended1024BitVector();
203     }
204 
205     /// Return true if this is a 2048-bit vector type.
is2048BitVectorEVT206     bool is2048BitVector() const {
207       return isSimple() ? V.is2048BitVector() : isExtended2048BitVector();
208     }
209 
210     /// Return true if this is an overloaded type for TableGen.
isOverloadedEVT211     bool isOverloaded() const {
212       return (V==MVT::iAny || V==MVT::fAny || V==MVT::vAny || V==MVT::iPTRAny);
213     }
214 
215     /// Return true if the bit size is a multiple of 8.
isByteSizedEVT216     bool isByteSized() const {
217       return !isZeroSized() && getSizeInBits().isKnownMultipleOf(8);
218     }
219 
220     /// Return true if the size is a power-of-two number of bytes.
isRoundEVT221     bool isRound() const {
222       if (isScalableVector())
223         return false;
224       unsigned BitSize = getSizeInBits();
225       return BitSize >= 8 && !(BitSize & (BitSize - 1));
226     }
227 
228     /// Return true if this has the same number of bits as VT.
bitsEqEVT229     bool bitsEq(EVT VT) const {
230       if (EVT::operator==(VT)) return true;
231       return getSizeInBits() == VT.getSizeInBits();
232     }
233 
234     /// Return true if we know at compile time this has more bits than VT.
knownBitsGTEVT235     bool knownBitsGT(EVT VT) const {
236       return TypeSize::isKnownGT(getSizeInBits(), VT.getSizeInBits());
237     }
238 
239     /// Return true if we know at compile time this has more than or the same
240     /// bits as VT.
knownBitsGEEVT241     bool knownBitsGE(EVT VT) const {
242       return TypeSize::isKnownGE(getSizeInBits(), VT.getSizeInBits());
243     }
244 
245     /// Return true if we know at compile time this has fewer bits than VT.
knownBitsLTEVT246     bool knownBitsLT(EVT VT) const {
247       return TypeSize::isKnownLT(getSizeInBits(), VT.getSizeInBits());
248     }
249 
250     /// Return true if we know at compile time this has fewer than or the same
251     /// bits as VT.
knownBitsLEEVT252     bool knownBitsLE(EVT VT) const {
253       return TypeSize::isKnownLE(getSizeInBits(), VT.getSizeInBits());
254     }
255 
256     /// Return true if this has more bits than VT.
bitsGTEVT257     bool bitsGT(EVT VT) const {
258       if (EVT::operator==(VT)) return false;
259       assert(isScalableVector() == VT.isScalableVector() &&
260              "Comparison between scalable and fixed types");
261       return knownBitsGT(VT);
262     }
263 
264     /// Return true if this has no less bits than VT.
bitsGEEVT265     bool bitsGE(EVT VT) const {
266       if (EVT::operator==(VT)) return true;
267       assert(isScalableVector() == VT.isScalableVector() &&
268              "Comparison between scalable and fixed types");
269       return knownBitsGE(VT);
270     }
271 
272     /// Return true if this has less bits than VT.
bitsLTEVT273     bool bitsLT(EVT VT) const {
274       if (EVT::operator==(VT)) return false;
275       assert(isScalableVector() == VT.isScalableVector() &&
276              "Comparison between scalable and fixed types");
277       return knownBitsLT(VT);
278     }
279 
280     /// Return true if this has no more bits than VT.
bitsLEEVT281     bool bitsLE(EVT VT) const {
282       if (EVT::operator==(VT)) return true;
283       assert(isScalableVector() == VT.isScalableVector() &&
284              "Comparison between scalable and fixed types");
285       return knownBitsLE(VT);
286     }
287 
288     /// Return the SimpleValueType held in the specified simple EVT.
getSimpleVTEVT289     MVT getSimpleVT() const {
290       assert(isSimple() && "Expected a SimpleValueType!");
291       return V;
292     }
293 
294     /// If this is a vector type, return the element type, otherwise return
295     /// this.
getScalarTypeEVT296     EVT getScalarType() const {
297       return isVector() ? getVectorElementType() : *this;
298     }
299 
300     /// Given a vector type, return the type of each element.
getVectorElementTypeEVT301     EVT getVectorElementType() const {
302       assert(isVector() && "Invalid vector type!");
303       if (isSimple())
304         return V.getVectorElementType();
305       return getExtendedVectorElementType();
306     }
307 
308     /// Given a vector type, return the number of elements it contains.
getVectorNumElementsEVT309     unsigned getVectorNumElements() const {
310       assert(isVector() && "Invalid vector type!");
311 
312       if (isScalableVector())
313         llvm::reportInvalidSizeRequest(
314             "Possible incorrect use of EVT::getVectorNumElements() for "
315             "scalable vector. Scalable flag may be dropped, use "
316             "EVT::getVectorElementCount() instead");
317 
318       return isSimple() ? V.getVectorNumElements()
319                         : getExtendedVectorNumElements();
320     }
321 
322     // Given a (possibly scalable) vector type, return the ElementCount
getVectorElementCountEVT323     ElementCount getVectorElementCount() const {
324       assert((isVector()) && "Invalid vector type!");
325       if (isSimple())
326         return V.getVectorElementCount();
327 
328       return getExtendedVectorElementCount();
329     }
330 
331     /// Given a vector type, return the minimum number of elements it contains.
getVectorMinNumElementsEVT332     unsigned getVectorMinNumElements() const {
333       return getVectorElementCount().getKnownMinValue();
334     }
335 
336     /// Return the size of the specified value type in bits.
337     ///
338     /// If the value type is a scalable vector type, the scalable property will
339     /// be set and the runtime size will be a positive integer multiple of the
340     /// base size.
getSizeInBitsEVT341     TypeSize getSizeInBits() const {
342       if (isSimple())
343         return V.getSizeInBits();
344       return getExtendedSizeInBits();
345     }
346 
347     /// Return the size of the specified fixed width value type in bits. The
348     /// function will assert if the type is scalable.
getFixedSizeInBitsEVT349     uint64_t getFixedSizeInBits() const {
350       return getSizeInBits().getFixedSize();
351     }
352 
getScalarSizeInBitsEVT353     uint64_t getScalarSizeInBits() const {
354       return getScalarType().getSizeInBits().getFixedSize();
355     }
356 
357     /// Return the number of bytes overwritten by a store of the specified value
358     /// type.
359     ///
360     /// If the value type is a scalable vector type, the scalable property will
361     /// be set and the runtime size will be a positive integer multiple of the
362     /// base size.
getStoreSizeEVT363     TypeSize getStoreSize() const {
364       TypeSize BaseSize = getSizeInBits();
365       return {(BaseSize.getKnownMinSize() + 7) / 8, BaseSize.isScalable()};
366     }
367 
368     /// Return the number of bits overwritten by a store of the specified value
369     /// type.
370     ///
371     /// If the value type is a scalable vector type, the scalable property will
372     /// be set and the runtime size will be a positive integer multiple of the
373     /// base size.
getStoreSizeInBitsEVT374     TypeSize getStoreSizeInBits() const {
375       return getStoreSize() * 8;
376     }
377 
378     /// Rounds the bit-width of the given integer EVT up to the nearest power of
379     /// two (and at least to eight), and returns the integer EVT with that
380     /// number of bits.
getRoundIntegerTypeEVT381     EVT getRoundIntegerType(LLVMContext &Context) const {
382       assert(isInteger() && !isVector() && "Invalid integer type!");
383       unsigned BitWidth = getSizeInBits();
384       if (BitWidth <= 8)
385         return EVT(MVT::i8);
386       return getIntegerVT(Context, 1 << Log2_32_Ceil(BitWidth));
387     }
388 
389     /// Finds the smallest simple value type that is greater than or equal to
390     /// half the width of this EVT. If no simple value type can be found, an
391     /// extended integer value type of half the size (rounded up) is returned.
getHalfSizedIntegerVTEVT392     EVT getHalfSizedIntegerVT(LLVMContext &Context) const {
393       assert(isInteger() && !isVector() && "Invalid integer type!");
394       unsigned EVTSize = getSizeInBits();
395       for (unsigned IntVT = MVT::FIRST_INTEGER_VALUETYPE;
396           IntVT <= MVT::LAST_INTEGER_VALUETYPE; ++IntVT) {
397         EVT HalfVT = EVT((MVT::SimpleValueType)IntVT);
398         if (HalfVT.getSizeInBits() * 2 >= EVTSize)
399           return HalfVT;
400       }
401       return getIntegerVT(Context, (EVTSize + 1) / 2);
402     }
403 
404     /// Return a VT for an integer vector type with the size of the
405     /// elements doubled. The typed returned may be an extended type.
widenIntegerVectorElementTypeEVT406     EVT widenIntegerVectorElementType(LLVMContext &Context) const {
407       EVT EltVT = getVectorElementType();
408       EltVT = EVT::getIntegerVT(Context, 2 * EltVT.getSizeInBits());
409       return EVT::getVectorVT(Context, EltVT, getVectorElementCount());
410     }
411 
412     // Return a VT for a vector type with the same element type but
413     // half the number of elements. The type returned may be an
414     // extended type.
getHalfNumVectorElementsVTEVT415     EVT getHalfNumVectorElementsVT(LLVMContext &Context) const {
416       EVT EltVT = getVectorElementType();
417       auto EltCnt = getVectorElementCount();
418       assert(EltCnt.isKnownEven() && "Splitting vector, but not in half!");
419       return EVT::getVectorVT(Context, EltVT, EltCnt.divideCoefficientBy(2));
420     }
421 
422     // Return a VT for a vector type with the same element type but
423     // double the number of elements. The type returned may be an
424     // extended type.
getDoubleNumVectorElementsVTEVT425     EVT getDoubleNumVectorElementsVT(LLVMContext &Context) const {
426       EVT EltVT = getVectorElementType();
427       auto EltCnt = getVectorElementCount();
428       return EVT::getVectorVT(Context, EltVT, EltCnt * 2);
429     }
430 
431     /// Returns true if the given vector is a power of 2.
isPow2VectorTypeEVT432     bool isPow2VectorType() const {
433       unsigned NElts = getVectorMinNumElements();
434       return !(NElts & (NElts - 1));
435     }
436 
437     /// Widens the length of the given vector EVT up to the nearest power of 2
438     /// and returns that type.
getPow2VectorTypeEVT439     EVT getPow2VectorType(LLVMContext &Context) const {
440       if (!isPow2VectorType()) {
441         ElementCount NElts = getVectorElementCount();
442         unsigned NewMinCount = 1 << Log2_32_Ceil(NElts.getKnownMinValue());
443         NElts = ElementCount::get(NewMinCount, NElts.isScalable());
444         return EVT::getVectorVT(Context, getVectorElementType(), NElts);
445       }
446       else {
447         return *this;
448       }
449     }
450 
451     /// This function returns value type as a string, e.g. "i32".
452     std::string getEVTString() const;
453 
454     /// This method returns an LLVM type corresponding to the specified EVT.
455     /// For integer types, this returns an unsigned type. Note that this will
456     /// abort for types that cannot be represented.
457     Type *getTypeForEVT(LLVMContext &Context) const;
458 
459     /// Return the value type corresponding to the specified type.
460     /// This returns all pointers as iPTR.  If HandleUnknown is true, unknown
461     /// types are returned as Other, otherwise they are invalid.
462     static EVT getEVT(Type *Ty, bool HandleUnknown = false);
463 
getRawBitsEVT464     intptr_t getRawBits() const {
465       if (isSimple())
466         return V.SimpleTy;
467       else
468         return (intptr_t)(LLVMTy);
469     }
470 
471     /// A meaningless but well-behaved order, useful for constructing
472     /// containers.
473     struct compareRawBits {
operatorEVT::compareRawBits474       bool operator()(EVT L, EVT R) const {
475         if (L.V.SimpleTy == R.V.SimpleTy)
476           return L.LLVMTy < R.LLVMTy;
477         else
478           return L.V.SimpleTy < R.V.SimpleTy;
479       }
480     };
481 
482   private:
483     // Methods for handling the Extended-type case in functions above.
484     // These are all out-of-line to prevent users of this header file
485     // from having a dependency on Type.h.
486     EVT changeExtendedTypeToInteger() const;
487     EVT changeExtendedVectorElementType(EVT EltVT) const;
488     EVT changeExtendedVectorElementTypeToInteger() const;
489     static EVT getExtendedIntegerVT(LLVMContext &C, unsigned BitWidth);
490     static EVT getExtendedVectorVT(LLVMContext &C, EVT VT, unsigned NumElements,
491                                    bool IsScalable);
492     static EVT getExtendedVectorVT(LLVMContext &Context, EVT VT,
493                                    ElementCount EC);
494     bool isExtendedFloatingPoint() const LLVM_READONLY;
495     bool isExtendedInteger() const LLVM_READONLY;
496     bool isExtendedScalarInteger() const LLVM_READONLY;
497     bool isExtendedVector() const LLVM_READONLY;
498     bool isExtended16BitVector() const LLVM_READONLY;
499     bool isExtended32BitVector() const LLVM_READONLY;
500     bool isExtended64BitVector() const LLVM_READONLY;
501     bool isExtended128BitVector() const LLVM_READONLY;
502     bool isExtended256BitVector() const LLVM_READONLY;
503     bool isExtended512BitVector() const LLVM_READONLY;
504     bool isExtended1024BitVector() const LLVM_READONLY;
505     bool isExtended2048BitVector() const LLVM_READONLY;
506     bool isExtendedFixedLengthVector() const LLVM_READONLY;
507     bool isExtendedScalableVector() const LLVM_READONLY;
508     EVT getExtendedVectorElementType() const;
509     unsigned getExtendedVectorNumElements() const LLVM_READONLY;
510     ElementCount getExtendedVectorElementCount() const LLVM_READONLY;
511     TypeSize getExtendedSizeInBits() const LLVM_READONLY;
512   };
513 
514 } // end namespace llvm
515 
516 #endif // LLVM_CODEGEN_VALUETYPES_H
517