LLVM 22.0.0git
Triple.h
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1//===-- llvm/TargetParser/Triple.h - Target triple helper class--*- 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#ifndef LLVM_TARGETPARSER_TRIPLE_H
10#define LLVM_TARGETPARSER_TRIPLE_H
11
12#include "llvm/ADT/StringRef.h"
15
16// Some system headers or GCC predefined macros conflict with identifiers in
17// this file. Undefine them here.
18#undef NetBSD
19#undef mips
20#undef sparc
21
22namespace llvm {
23enum class ExceptionHandling;
24class Twine;
25
26/// Triple - Helper class for working with autoconf configuration names. For
27/// historical reasons, we also call these 'triples' (they used to contain
28/// exactly three fields).
29///
30/// Configuration names are strings in the canonical form:
31/// ARCHITECTURE-VENDOR-OPERATING_SYSTEM
32/// or
33/// ARCHITECTURE-VENDOR-OPERATING_SYSTEM-ENVIRONMENT
34///
35/// This class is used for clients which want to support arbitrary
36/// configuration names, but also want to implement certain special
37/// behavior for particular configurations. This class isolates the mapping
38/// from the components of the configuration name to well known IDs.
39///
40/// At its core the Triple class is designed to be a wrapper for a triple
41/// string; the constructor does not change or normalize the triple string.
42/// Clients that need to handle the non-canonical triples that users often
43/// specify should use the normalize method.
44///
45/// See autoconf/config.guess for a glimpse into what configuration names
46/// look like in practice.
47class Triple {
48public:
49 enum ArchType {
51
52 arm, // ARM (little endian): arm, armv.*, xscale
53 armeb, // ARM (big endian): armeb
54 aarch64, // AArch64 (little endian): aarch64
55 aarch64_be, // AArch64 (big endian): aarch64_be
56 aarch64_32, // AArch64 (little endian) ILP32: aarch64_32
57 arc, // ARC: Synopsys ARC
58 avr, // AVR: Atmel AVR microcontroller
59 bpfel, // eBPF or extended BPF or 64-bit BPF (little endian)
60 bpfeb, // eBPF or extended BPF or 64-bit BPF (big endian)
61 csky, // CSKY: csky
62 dxil, // DXIL 32-bit DirectX bytecode
63 hexagon, // Hexagon: hexagon
64 loongarch32, // LoongArch (32-bit): loongarch32
65 loongarch64, // LoongArch (64-bit): loongarch64
66 m68k, // M68k: Motorola 680x0 family
67 mips, // MIPS: mips, mipsallegrex, mipsr6
68 mipsel, // MIPSEL: mipsel, mipsallegrexe, mipsr6el
69 mips64, // MIPS64: mips64, mips64r6, mipsn32, mipsn32r6
70 mips64el, // MIPS64EL: mips64el, mips64r6el, mipsn32el, mipsn32r6el
71 msp430, // MSP430: msp430
72 ppc, // PPC: powerpc
73 ppcle, // PPCLE: powerpc (little endian)
74 ppc64, // PPC64: powerpc64, ppu
75 ppc64le, // PPC64LE: powerpc64le
76 r600, // R600: AMD GPUs HD2XXX - HD6XXX
77 amdgcn, // AMDGCN: AMD GCN GPUs
78 riscv32, // RISC-V (32-bit, little endian): riscv32
79 riscv64, // RISC-V (64-bit, little endian): riscv64
80 riscv32be, // RISC-V (32-bit, big endian): riscv32be
81 riscv64be, // RISC-V (64-bit, big endian): riscv64be
82 sparc, // Sparc: sparc
83 sparcv9, // Sparcv9: Sparcv9
84 sparcel, // Sparc: (endianness = little). NB: 'Sparcle' is a CPU variant
85 systemz, // SystemZ: s390x
86 tce, // TCE (http://tce.cs.tut.fi/): tce
87 tcele, // TCE little endian (http://tce.cs.tut.fi/): tcele
88 thumb, // Thumb (little endian): thumb, thumbv.*
89 thumbeb, // Thumb (big endian): thumbeb
90 x86, // X86: i[3-9]86
91 x86_64, // X86-64: amd64, x86_64
92 xcore, // XCore: xcore
93 xtensa, // Tensilica: Xtensa
94 nvptx, // NVPTX: 32-bit
95 nvptx64, // NVPTX: 64-bit
96 amdil, // AMDIL
97 amdil64, // AMDIL with 64-bit pointers
98 hsail, // AMD HSAIL
99 hsail64, // AMD HSAIL with 64-bit pointers
100 spir, // SPIR: standard portable IR for OpenCL 32-bit version
101 spir64, // SPIR: standard portable IR for OpenCL 64-bit version
102 spirv, // SPIR-V with logical memory layout.
103 spirv32, // SPIR-V with 32-bit pointers
104 spirv64, // SPIR-V with 64-bit pointers
105 kalimba, // Kalimba: generic kalimba
106 shave, // SHAVE: Movidius vector VLIW processors
107 lanai, // Lanai: Lanai 32-bit
108 wasm32, // WebAssembly with 32-bit pointers
109 wasm64, // WebAssembly with 64-bit pointers
110 renderscript32, // 32-bit RenderScript
111 renderscript64, // 64-bit RenderScript
112 ve, // NEC SX-Aurora Vector Engine
113 nvsass, // NVIDIA SASS
115 };
207 enum OSType {
209
217 Lv2, // PS3
229 CUDA, // NVIDIA CUDA
230 NVCL, // NVIDIA OpenCL
231 AMDHSA, // AMD HSA Runtime
235 TvOS, // Apple tvOS
236 WatchOS, // Apple watchOS
237 BridgeOS, // Apple bridgeOS
238 DriverKit, // Apple DriverKit
239 XROS, // Apple XROS
241 AMDPAL, // AMD PAL Runtime
242 HermitCore, // HermitCore Unikernel/Multikernel
243 Hurd, // GNU/Hurd
244 WASI, // Experimental WebAssembly OS
246 ShaderModel, // DirectX ShaderModel
249 Vulkan, // Vulkan SPIR-V
252 };
255
282
287 Simulator, // Simulator variants of other systems, e.g., Apple's iOS
288 MacABI, // Mac Catalyst variant of Apple's iOS deployment target.
289
290 // Shader Stages
291 // The order of these values matters, and must be kept in sync with the
292 // language options enum in Clang. The ordering is enforced in
293 // static_asserts in Triple.cpp and in Clang.
313
317 };
330
331private:
332 std::string Data;
333
334 /// The parsed arch type.
335 ArchType Arch{};
336
337 /// The parsed subarchitecture type.
338 SubArchType SubArch{};
339
340 /// The parsed vendor type.
341 VendorType Vendor{};
342
343 /// The parsed OS type.
344 OSType OS{};
345
346 /// The parsed Environment type.
347 EnvironmentType Environment{};
348
349 /// The object format type.
350 ObjectFormatType ObjectFormat{};
351
352public:
353 /// @name Constructors
354 /// @{
355
356 /// Default constructor is the same as an empty string and leaves all
357 /// triple fields unknown.
358 Triple() = default;
359
360 LLVM_ABI explicit Triple(std::string &&Str);
361 explicit Triple(StringRef Str) : Triple(Str.str()) {}
362 explicit Triple(const char *Str) : Triple(std::string(Str)) {}
363 explicit Triple(const std::string &Str) : Triple(std::string(Str)) {}
364 LLVM_ABI explicit Triple(const Twine &Str);
365
366 LLVM_ABI Triple(const Twine &ArchStr, const Twine &VendorStr,
367 const Twine &OSStr);
368 LLVM_ABI Triple(const Twine &ArchStr, const Twine &VendorStr,
369 const Twine &OSStr, const Twine &EnvironmentStr);
370
371 bool operator==(const Triple &Other) const {
372 return Arch == Other.Arch && SubArch == Other.SubArch &&
373 Vendor == Other.Vendor && OS == Other.OS &&
374 Environment == Other.Environment &&
375 ObjectFormat == Other.ObjectFormat;
376 }
377
378 bool operator!=(const Triple &Other) const {
379 return !(*this == Other);
380 }
381
382 /// @}
383 /// @name Normalization
384 /// @{
385
386 /// Canonical form
387 enum class CanonicalForm {
388 ANY = 0,
389 THREE_IDENT = 3, // ARCHITECTURE-VENDOR-OPERATING_SYSTEM
390 FOUR_IDENT = 4, // ARCHITECTURE-VENDOR-OPERATING_SYSTEM-ENVIRONMENT
391 FIVE_IDENT = 5, // ARCHITECTURE-VENDOR-OPERATING_SYSTEM-ENVIRONMENT-FORMAT
392 };
393
394 /// Turn an arbitrary machine specification into the canonical triple form (or
395 /// something sensible that the Triple class understands if nothing better can
396 /// reasonably be done). In particular, it handles the common case in which
397 /// otherwise valid components are in the wrong order. \p Form is used to
398 /// specify the output canonical form.
399 LLVM_ABI static std::string
401
402 /// Return the normalized form of this triple's string.
403 std::string normalize(CanonicalForm Form = CanonicalForm::ANY) const {
404 return normalize(Data, Form);
405 }
406
407 /// @}
408 /// @name Typed Component Access
409 /// @{
410
411 /// Get the parsed architecture type of this triple.
412 ArchType getArch() const { return Arch; }
413
414 /// get the parsed subarchitecture type for this triple.
415 SubArchType getSubArch() const { return SubArch; }
416
417 /// Get the parsed vendor type of this triple.
418 VendorType getVendor() const { return Vendor; }
419
420 /// Get the parsed operating system type of this triple.
421 OSType getOS() const { return OS; }
422
423 /// Does this triple have the optional environment (fourth) component?
424 bool hasEnvironment() const {
425 return getEnvironmentName() != "";
426 }
427
428 /// Get the parsed environment type of this triple.
429 EnvironmentType getEnvironment() const { return Environment; }
430
431 /// Parse the version number from the OS name component of the
432 /// triple, if present.
433 ///
434 /// For example, "fooos1.2.3" would return (1, 2, 3).
436
437 /// Get the object format for this triple.
438 ObjectFormatType getObjectFormat() const { return ObjectFormat; }
439
440 /// Parse the version number from the OS name component of the triple, if
441 /// present.
442 ///
443 /// For example, "fooos1.2.3" would return (1, 2, 3).
445
446 /// Return just the major version number, this is specialized because it is a
447 /// common query.
448 unsigned getOSMajorVersion() const { return getOSVersion().getMajor(); }
449
450 /// Parse the version number as with getOSVersion and then translate generic
451 /// "darwin" versions to the corresponding OS X versions. This may also be
452 /// called with IOS triples but the OS X version number is just set to a
453 /// constant 10.4.0 in that case. Returns true if successful.
455
456 /// Parse the version number as with getOSVersion. This should only be called
457 /// with IOS or generic triples.
459
460 /// Parse the version number as with getOSVersion. This should only be called
461 /// with WatchOS or generic triples.
463
464 /// Parse the version number as with getOSVersion.
466
467 /// Parse the Vulkan version number from the OSVersion and SPIR-V version
468 /// (SubArch). This should only be called with Vulkan SPIR-V triples.
470
471 /// Parse the DXIL version number from the OSVersion and DXIL version
472 /// (SubArch). This should only be called with DXIL triples.
474
475 /// @}
476 /// @name Direct Component Access
477 /// @{
478
479 const std::string &str() const { return Data; }
480
481 const std::string &getTriple() const { return Data; }
482
483 /// Whether the triple is empty / default constructed.
484 bool empty() const { return Data.empty(); }
485
486 /// Get the architecture (first) component of the triple.
488
489 /// Get the vendor (second) component of the triple.
491
492 /// Get the operating system (third) component of the triple.
494
495 /// Get the optional environment (fourth) component of the triple, or "" if
496 /// empty.
498
499 /// Get the operating system and optional environment components as a single
500 /// string (separated by a '-' if the environment component is present).
502
503 /// Get the version component of the environment component as a single
504 /// string (the version after the environment).
505 ///
506 /// For example, "fooos1.2.3" would return "1.2.3".
508
509 /// @}
510 /// @name Convenience Predicates
511 /// @{
512
513 /// Returns the pointer width of this architecture.
515
516 /// Returns the pointer width of this architecture.
517 unsigned getArchPointerBitWidth() const {
519 }
520
521 /// Returns the trampoline size in bytes for this configuration.
522 LLVM_ABI unsigned getTrampolineSize() const;
523
524 /// Test whether the architecture is 64-bit
525 ///
526 /// Note that this tests for 64-bit pointer width, and nothing else. Note
527 /// that we intentionally expose only three predicates, 64-bit, 32-bit, and
528 /// 16-bit. The inner details of pointer width for particular architectures
529 /// is not summed up in the triple, and so only a coarse grained predicate
530 /// system is provided.
531 LLVM_ABI bool isArch64Bit() const;
532
533 /// Test whether the architecture is 32-bit
534 ///
535 /// Note that this tests for 32-bit pointer width, and nothing else.
536 LLVM_ABI bool isArch32Bit() const;
537
538 /// Test whether the architecture is 16-bit
539 ///
540 /// Note that this tests for 16-bit pointer width, and nothing else.
541 LLVM_ABI bool isArch16Bit() const;
542
543 /// Helper function for doing comparisons against version numbers included in
544 /// the target triple.
545 bool isOSVersionLT(unsigned Major, unsigned Minor = 0,
546 unsigned Micro = 0) const {
547 if (Minor == 0) {
548 return getOSVersion() < VersionTuple(Major);
549 }
550 if (Micro == 0) {
551 return getOSVersion() < VersionTuple(Major, Minor);
552 }
553 return getOSVersion() < VersionTuple(Major, Minor, Micro);
554 }
555
556 bool isOSVersionLT(const Triple &Other) const {
557 return getOSVersion() < Other.getOSVersion();
558 }
559
560 /// Comparison function for checking OS X version compatibility, which handles
561 /// supporting skewed version numbering schemes used by the "darwin" triples.
562 LLVM_ABI bool isMacOSXVersionLT(unsigned Major, unsigned Minor = 0,
563 unsigned Micro = 0) const;
564
565 /// Is this a Mac OS X triple. For legacy reasons, we support both "darwin"
566 /// and "osx" as OS X triples.
567 bool isMacOSX() const {
568 return getOS() == Triple::Darwin || getOS() == Triple::MacOSX;
569 }
570
571 /// Is this an iOS triple.
572 /// Note: This identifies tvOS as a variant of iOS. If that ever
573 /// changes, i.e., if the two operating systems diverge or their version
574 /// numbers get out of sync, that will need to be changed.
575 /// watchOS has completely different version numbers so it is not included.
576 bool isiOS() const {
577 return getOS() == Triple::IOS || isTvOS();
578 }
579
580 /// Is this an Apple tvOS triple.
581 bool isTvOS() const {
582 return getOS() == Triple::TvOS;
583 }
584
585 /// Is this an Apple watchOS triple.
586 bool isWatchOS() const {
587 return getOS() == Triple::WatchOS;
588 }
589
590 bool isWatchABI() const {
592 }
593
594 /// Is this an Apple XROS triple.
595 bool isXROS() const { return getOS() == Triple::XROS; }
596
597 /// Is this an Apple BridgeOS triple.
598 bool isBridgeOS() const { return getOS() == Triple::BridgeOS; }
599
600 /// Is this an Apple DriverKit triple.
601 bool isDriverKit() const { return getOS() == Triple::DriverKit; }
602
603 bool isOSzOS() const { return getOS() == Triple::ZOS; }
604
605 /// Is this an Apple MachO triple.
606 bool isAppleMachO() const {
607 return (getVendor() == Triple::Apple) && isOSBinFormatMachO();
608 }
609
610 /// Is this a "Darwin" OS (macOS, iOS, tvOS, watchOS, DriverKit, XROS, or
611 /// bridgeOS).
612 bool isOSDarwin() const {
613 return isMacOSX() || isiOS() || isWatchOS() || isDriverKit() || isXROS() ||
614 isBridgeOS();
615 }
616
619 }
620
622 return getEnvironment() == Triple::MacABI;
623 }
624
625 /// Returns true for targets that run on a macOS machine.
626 bool isTargetMachineMac() const {
627 return isMacOSX() || (isOSDarwin() && (isSimulatorEnvironment() ||
629 }
630
631 bool isOSNetBSD() const {
632 return getOS() == Triple::NetBSD;
633 }
634
635 bool isOSOpenBSD() const {
636 return getOS() == Triple::OpenBSD;
637 }
638
639 bool isOSFreeBSD() const {
640 return getOS() == Triple::FreeBSD;
641 }
642
643 bool isOSFuchsia() const {
644 return getOS() == Triple::Fuchsia;
645 }
646
647 bool isOSDragonFly() const { return getOS() == Triple::DragonFly; }
648
649 bool isOSSolaris() const {
650 return getOS() == Triple::Solaris;
651 }
652
653 bool isOSIAMCU() const {
654 return getOS() == Triple::ELFIAMCU;
655 }
656
657 bool isOSUnknown() const { return getOS() == Triple::UnknownOS; }
658
659 bool isGNUEnvironment() const {
661 return Env == Triple::GNU || Env == Triple::GNUT64 ||
662 Env == Triple::GNUABIN32 || Env == Triple::GNUABI64 ||
663 Env == Triple::GNUEABI || Env == Triple::GNUEABIT64 ||
664 Env == Triple::GNUEABIHF || Env == Triple::GNUEABIHFT64 ||
665 Env == Triple::GNUF32 || Env == Triple::GNUF64 ||
666 Env == Triple::GNUSF || Env == Triple::GNUX32;
667 }
668
669 /// Tests whether the OS is Haiku.
670 bool isOSHaiku() const {
671 return getOS() == Triple::Haiku;
672 }
673
674 /// Tests whether the OS is UEFI.
675 bool isUEFI() const {
676 return getOS() == Triple::UEFI;
677 }
678
679 /// Tests whether the OS is Windows.
680 bool isOSWindows() const {
681 return getOS() == Triple::Win32;
682 }
683
684 /// Checks if the environment is MSVC.
686 return isOSWindows() && getEnvironment() == Triple::MSVC;
687 }
688
689 /// Checks if the environment could be MSVC.
694
695 // Checks if we're using the Windows Arm64EC ABI.
696 bool isWindowsArm64EC() const {
697 return getArch() == Triple::aarch64 &&
699 }
700
703 }
704
707 }
708
711 }
712
714 return isOSWindows() && getEnvironment() == Triple::GNU;
715 }
716
717 /// Tests for either Cygwin or MinGW OS
718 bool isOSCygMing() const {
720 }
721
722 /// Is this a "Windows" OS targeting a "MSVCRT.dll" environment.
727
728 /// Tests whether the OS is Linux.
729 bool isOSLinux() const {
730 return getOS() == Triple::Linux;
731 }
732
733 /// Tests whether the OS is kFreeBSD.
734 bool isOSKFreeBSD() const {
735 return getOS() == Triple::KFreeBSD;
736 }
737
738 /// Tests whether the OS is Hurd.
739 bool isOSHurd() const {
740 return getOS() == Triple::Hurd;
741 }
742
743 /// Tests whether the OS is WASI.
744 bool isOSWASI() const {
745 return getOS() == Triple::WASI;
746 }
747
748 /// Tests whether the OS is Emscripten.
749 bool isOSEmscripten() const {
750 return getOS() == Triple::Emscripten;
751 }
752
753 /// Tests whether the OS uses glibc.
754 bool isOSGlibc() const {
755 return (getOS() == Triple::Linux || getOS() == Triple::KFreeBSD ||
756 getOS() == Triple::Hurd) &&
757 !isAndroid();
758 }
759
760 /// Tests whether the OS is AIX.
761 bool isOSAIX() const {
762 return getOS() == Triple::AIX;
763 }
764
765 bool isOSSerenity() const {
766 return getOS() == Triple::Serenity;
767 }
768
769 /// Tests whether the OS uses the ELF binary format.
770 bool isOSBinFormatELF() const {
771 return getObjectFormat() == Triple::ELF;
772 }
773
774 /// Tests whether the OS uses the COFF binary format.
775 bool isOSBinFormatCOFF() const {
776 return getObjectFormat() == Triple::COFF;
777 }
778
779 /// Tests whether the OS uses the GOFF binary format.
780 bool isOSBinFormatGOFF() const { return getObjectFormat() == Triple::GOFF; }
781
782 /// Tests whether the environment is MachO.
783 bool isOSBinFormatMachO() const {
784 return getObjectFormat() == Triple::MachO;
785 }
786
787 /// Tests whether the OS uses the Wasm binary format.
788 bool isOSBinFormatWasm() const {
789 return getObjectFormat() == Triple::Wasm;
790 }
791
792 /// Tests whether the OS uses the XCOFF binary format.
793 bool isOSBinFormatXCOFF() const {
794 return getObjectFormat() == Triple::XCOFF;
795 }
796
797 /// Tests whether the OS uses the DXContainer binary format.
800 }
801
802 /// Tests whether the target is the PS4 platform.
803 bool isPS4() const {
804 return getArch() == Triple::x86_64 &&
805 getVendor() == Triple::SCEI &&
806 getOS() == Triple::PS4;
807 }
808
809 /// Tests whether the target is the PS5 platform.
810 bool isPS5() const {
811 return getArch() == Triple::x86_64 &&
812 getVendor() == Triple::SCEI &&
813 getOS() == Triple::PS5;
814 }
815
816 /// Tests whether the target is the PS4 or PS5 platform.
817 bool isPS() const { return isPS4() || isPS5(); }
818
819 /// Tests whether the target is Android
820 bool isAndroid() const { return getEnvironment() == Triple::Android; }
821
822 bool isAndroidVersionLT(unsigned Major) const {
823 assert(isAndroid() && "Not an Android triple!");
824
826
827 // 64-bit targets did not exist before API level 21 (Lollipop).
828 if (isArch64Bit() && Version.getMajor() < 21)
829 return VersionTuple(21) < VersionTuple(Major);
830
831 return Version < VersionTuple(Major);
832 }
833
834 /// Tests whether the environment is musl-libc
846
847 /// Tests whether the target is OHOS
848 /// LiteOS default enviroment is also OHOS, but omited on triple.
849 bool isOHOSFamily() const { return isOpenHOS() || isOSLiteOS(); }
850
851 bool isOpenHOS() const { return getEnvironment() == Triple::OpenHOS; }
852
853 bool isOSLiteOS() const { return getOS() == Triple::LiteOS; }
854
855 /// Tests whether the target is DXIL.
856 bool isDXIL() const {
857 return getArch() == Triple::dxil;
858 }
859
860 bool isShaderModelOS() const {
861 return getOS() == Triple::ShaderModel;
862 }
863
864 bool isVulkanOS() const { return getOS() == Triple::Vulkan; }
865
866 bool isOSManagarm() const { return getOS() == Triple::Managarm; }
867
870 return Env == Triple::Pixel || Env == Triple::Vertex ||
871 Env == Triple::Geometry || Env == Triple::Hull ||
872 Env == Triple::Domain || Env == Triple::Compute ||
873 Env == Triple::Library || Env == Triple::RayGeneration ||
874 Env == Triple::Intersection || Env == Triple::AnyHit ||
875 Env == Triple::ClosestHit || Env == Triple::Miss ||
876 Env == Triple::Callable || Env == Triple::Mesh ||
878 }
879
880 /// Tests whether the target is SPIR (32- or 64-bit).
881 bool isSPIR() const {
882 return getArch() == Triple::spir || getArch() == Triple::spir64;
883 }
884
885 /// Tests whether the target is SPIR-V (32/64-bit/Logical).
886 bool isSPIRV() const {
887 return getArch() == Triple::spirv32 || getArch() == Triple::spirv64 ||
889 }
890
891 // Tests whether the target is SPIR-V or SPIR.
892 bool isSPIROrSPIRV() const { return isSPIR() || isSPIRV(); }
893
894 /// Tests whether the target is SPIR-V Logical
895 bool isSPIRVLogical() const {
896 return getArch() == Triple::spirv;
897 }
898
899 /// Tests whether the target is NVPTX (32- or 64-bit).
900 bool isNVPTX() const {
901 return getArch() == Triple::nvptx || getArch() == Triple::nvptx64;
902 }
903
904 /// Tests whether the target is AMDGCN
905 bool isAMDGCN() const { return getArch() == Triple::amdgcn; }
906
907 bool isAMDGPU() const { return getArch() == Triple::r600 || isAMDGCN(); }
908
909 bool isNVSASS() const { return getArch() == Triple::nvsass; }
910
911 /// Tests whether the target is Thumb (little and big endian).
912 bool isThumb() const {
913 return getArch() == Triple::thumb || getArch() == Triple::thumbeb;
914 }
915
916 /// Tests whether the target is ARM (little and big endian).
917 bool isARM() const {
918 return getArch() == Triple::arm || getArch() == Triple::armeb;
919 }
920
921 /// Tests whether the target supports the EHABI exception
922 /// handling standard.
936
937 // ARM EABI is the bare-metal EABI described in ARM ABI documents and
938 // can be accessed via -target arm-none-eabi. This is NOT GNUEABI.
939 // FIXME: Add a flag for bare-metal for that target and set Triple::EABI
940 // even for GNUEABI, so we can make a distinction here and still conform to
941 // the EABI on GNU (and Android) mode. This requires change in Clang, too.
942 // FIXME: The Darwin exception is temporary, while we move users to
943 // "*-*-*-macho" triples as quickly as possible.
944 bool isTargetAEABI() const {
945 return (getEnvironment() == Triple::EABI ||
947 !isOSDarwin() && !isOSWindows();
948 }
949
957
958 bool isTargetMuslAEABI() const {
959 return (getEnvironment() == Triple::MuslEABI ||
962 !isOSDarwin() && !isOSWindows();
963 }
964
965 /// Tests whether the target is T32.
966 bool isArmT32() const {
967 switch (getSubArch()) {
979 return false;
980 default:
981 return true;
982 }
983 }
984
985 /// Tests whether the target is an M-class.
986 bool isArmMClass() const {
987 switch (getSubArch()) {
994 return true;
995 default:
996 return false;
997 }
998 }
999
1000 /// Tests whether the target is AArch64 (little and big endian).
1001 bool isAArch64() const {
1002 return getArch() == Triple::aarch64 || getArch() == Triple::aarch64_be ||
1004 }
1005
1006 /// Tests whether the target is AArch64 and pointers are the size specified by
1007 /// \p PointerWidth.
1008 bool isAArch64(int PointerWidth) const {
1009 assert(PointerWidth == 64 || PointerWidth == 32);
1010 if (!isAArch64())
1011 return false;
1012 return getArch() == Triple::aarch64_32 ||
1014 ? PointerWidth == 32
1015 : PointerWidth == 64;
1016 }
1017
1018 /// Tests whether the target is 32-bit LoongArch.
1019 bool isLoongArch32() const { return getArch() == Triple::loongarch32; }
1020
1021 /// Tests whether the target is 64-bit LoongArch.
1022 bool isLoongArch64() const { return getArch() == Triple::loongarch64; }
1023
1024 /// Tests whether the target is LoongArch (32- and 64-bit).
1025 bool isLoongArch() const { return isLoongArch32() || isLoongArch64(); }
1026
1027 /// Tests whether the target is MIPS 32-bit (little and big endian).
1028 bool isMIPS32() const {
1029 return getArch() == Triple::mips || getArch() == Triple::mipsel;
1030 }
1031
1032 /// Tests whether the target is MIPS 64-bit (little and big endian).
1033 bool isMIPS64() const {
1034 return getArch() == Triple::mips64 || getArch() == Triple::mips64el;
1035 }
1036
1037 /// Tests whether the target is MIPS (little and big endian, 32- or 64-bit).
1038 bool isMIPS() const {
1039 return isMIPS32() || isMIPS64();
1040 }
1041
1042 /// Tests whether the target is PowerPC (32- or 64-bit LE or BE).
1043 bool isPPC() const {
1044 return getArch() == Triple::ppc || getArch() == Triple::ppc64 ||
1046 }
1047
1048 /// Tests whether the target is 32-bit PowerPC (little and big endian).
1049 bool isPPC32() const {
1050 return getArch() == Triple::ppc || getArch() == Triple::ppcle;
1051 }
1052
1053 /// Tests whether the target is 64-bit PowerPC (little and big endian).
1054 bool isPPC64() const {
1055 return getArch() == Triple::ppc64 || getArch() == Triple::ppc64le;
1056 }
1057
1058 /// Tests whether the target 64-bit PowerPC big endian ABI is ELFv2.
1059 bool isPPC64ELFv2ABI() const {
1060 return (getArch() == Triple::ppc64 &&
1061 ((getOS() == Triple::FreeBSD &&
1062 (getOSMajorVersion() >= 13 || getOSVersion().empty())) ||
1063 getOS() == Triple::OpenBSD || isMusl()));
1064 }
1065
1066 /// Tests whether the target 32-bit PowerPC uses Secure PLT.
1067 bool isPPC32SecurePlt() const {
1068 return ((getArch() == Triple::ppc || getArch() == Triple::ppcle) &&
1069 ((getOS() == Triple::FreeBSD &&
1070 (getOSMajorVersion() >= 13 || getOSVersion().empty())) ||
1072 isMusl()));
1073 }
1074
1075 /// Tests whether the target is 32-bit RISC-V.
1076 bool isRISCV32() const {
1078 }
1079
1080 /// Tests whether the target is 64-bit RISC-V.
1081 bool isRISCV64() const {
1083 }
1084
1085 /// Tests whether the target is RISC-V (32- and 64-bit).
1086 bool isRISCV() const { return isRISCV32() || isRISCV64(); }
1087
1088 /// Tests whether the target is 32-bit SPARC (little and big endian).
1089 bool isSPARC32() const {
1090 return getArch() == Triple::sparc || getArch() == Triple::sparcel;
1091 }
1092
1093 /// Tests whether the target is 64-bit SPARC (big endian).
1094 bool isSPARC64() const { return getArch() == Triple::sparcv9; }
1095
1096 /// Tests whether the target is SPARC.
1097 bool isSPARC() const { return isSPARC32() || isSPARC64(); }
1098
1099 /// Tests whether the target is SystemZ.
1100 bool isSystemZ() const {
1101 return getArch() == Triple::systemz;
1102 }
1103
1104 /// Tests whether the target is x86 (32- or 64-bit).
1105 bool isX86() const {
1106 return getArch() == Triple::x86 || getArch() == Triple::x86_64;
1107 }
1108
1109 /// Tests whether the target is x86 (32-bit).
1110 bool isX86_32() const { return getArch() == Triple::x86; }
1111
1112 /// Tests whether the target is x86 (64-bit).
1113 bool isX86_64() const { return getArch() == Triple::x86_64; }
1114
1115 /// Tests whether the target is VE
1116 bool isVE() const {
1117 return getArch() == Triple::ve;
1118 }
1119
1120 /// Tests whether the target is wasm (32- and 64-bit).
1121 bool isWasm() const {
1122 return getArch() == Triple::wasm32 || getArch() == Triple::wasm64;
1123 }
1124
1125 // Tests whether the target is CSKY
1126 bool isCSKY() const {
1127 return getArch() == Triple::csky;
1128 }
1129
1130 /// Tests whether the target is the Apple "arm64e" AArch64 subarch.
1131 bool isArm64e() const {
1132 return getArch() == Triple::aarch64 &&
1134 }
1135
1136 // Tests whether the target is N32.
1137 bool isABIN32() const {
1139 return Env == Triple::GNUABIN32 || Env == Triple::MuslABIN32;
1140 }
1141
1142 /// Tests whether the target is X32.
1143 bool isX32() const {
1145 return Env == Triple::GNUX32 || Env == Triple::MuslX32;
1146 }
1147
1148 /// Tests whether the target is eBPF.
1149 bool isBPF() const {
1150 return getArch() == Triple::bpfel || getArch() == Triple::bpfeb;
1151 }
1152
1153 /// Tests if the target forces 64-bit time_t on a 32-bit architecture.
1154 bool isTime64ABI() const {
1156 return Env == Triple::GNUT64 || Env == Triple::GNUEABIT64 ||
1157 Env == Triple::GNUEABIHFT64;
1158 }
1159
1160 /// Tests if the target forces hardfloat.
1161 bool isHardFloatABI() const {
1163 return Env == llvm::Triple::GNUEABIHF ||
1165 Env == llvm::Triple::MuslEABIHF ||
1166 Env == llvm::Triple::EABIHF;
1167 }
1168
1169 /// Tests whether the target supports comdat
1170 bool supportsCOMDAT() const {
1171 return !(isOSBinFormatMachO() || isOSBinFormatXCOFF() ||
1173 }
1174
1175 /// Tests whether the target uses emulated TLS as default.
1176 ///
1177 /// Note: Android API level 29 (10) introduced ELF TLS.
1179 return (isAndroid() && isAndroidVersionLT(29)) || isOSOpenBSD() ||
1181 }
1182
1183 /// True if the target uses TLSDESC by default.
1184 bool hasDefaultTLSDESC() const {
1185 return isAArch64() || (isAndroid() && isRISCV64()) || isOSFuchsia();
1186 }
1187
1188 /// Tests whether the target uses -data-sections as default.
1190 return isOSBinFormatXCOFF() || isWasm();
1191 }
1192
1193 /// Tests if the environment supports dllimport/export annotations.
1194 bool hasDLLImportExport() const { return isOSWindows() || isPS(); }
1195
1196 /// @}
1197 /// @name Mutators
1198 /// @{
1199
1200 /// Set the architecture (first) component of the triple to a known type.
1201 LLVM_ABI void setArch(ArchType Kind, SubArchType SubArch = NoSubArch);
1202
1203 /// Set the vendor (second) component of the triple to a known type.
1204 LLVM_ABI void setVendor(VendorType Kind);
1205
1206 /// Set the operating system (third) component of the triple to a known type.
1207 LLVM_ABI void setOS(OSType Kind);
1208
1209 /// Set the environment (fourth) component of the triple to a known type.
1210 LLVM_ABI void setEnvironment(EnvironmentType Kind);
1211
1212 /// Set the object file format.
1213 LLVM_ABI void setObjectFormat(ObjectFormatType Kind);
1214
1215 /// Set all components to the new triple \p Str.
1216 LLVM_ABI void setTriple(const Twine &Str);
1217
1218 /// Set the architecture (first) component of the triple by name.
1219 LLVM_ABI void setArchName(StringRef Str);
1220
1221 /// Set the vendor (second) component of the triple by name.
1223
1224 /// Set the operating system (third) component of the triple by name.
1225 LLVM_ABI void setOSName(StringRef Str);
1226
1227 /// Set the optional environment (fourth) component of the triple by name.
1229
1230 /// Set the operating system and optional environment components with a single
1231 /// string.
1233
1234 /// @}
1235 /// @name Helpers to build variants of a particular triple.
1236 /// @{
1237
1238 /// Form a triple with a 32-bit variant of the current architecture.
1239 ///
1240 /// This can be used to move across "families" of architectures where useful.
1241 ///
1242 /// \returns A new triple with a 32-bit architecture or an unknown
1243 /// architecture if no such variant can be found.
1245
1246 /// Form a triple with a 64-bit variant of the current architecture.
1247 ///
1248 /// This can be used to move across "families" of architectures where useful.
1249 ///
1250 /// \returns A new triple with a 64-bit architecture or an unknown
1251 /// architecture if no such variant can be found.
1253
1254 /// Form a triple with a big endian variant of the current architecture.
1255 ///
1256 /// This can be used to move across "families" of architectures where useful.
1257 ///
1258 /// \returns A new triple with a big endian architecture or an unknown
1259 /// architecture if no such variant can be found.
1261
1262 /// Form a triple with a little endian variant of the current architecture.
1263 ///
1264 /// This can be used to move across "families" of architectures where useful.
1265 ///
1266 /// \returns A new triple with a little endian architecture or an unknown
1267 /// architecture if no such variant can be found.
1269
1270 /// Tests whether the target triple is little endian.
1271 ///
1272 /// \returns true if the triple is little endian, false otherwise.
1273 LLVM_ABI bool isLittleEndian() const;
1274
1275 /// Test whether target triples are compatible.
1276 LLVM_ABI bool isCompatibleWith(const Triple &Other) const;
1277
1278 /// Test whether the target triple is for a GPU.
1279 bool isGPU() const {
1280 return isSPIRV() || isNVPTX() || isAMDGPU() || isNVSASS();
1281 }
1282
1283 /// Merge target triples.
1284 LLVM_ABI std::string merge(const Triple &Other) const;
1285
1286 /// Some platforms have different minimum supported OS versions that
1287 /// varies by the architecture specified in the triple. This function
1288 /// returns the minimum supported OS version for this triple if one an exists,
1289 /// or an invalid version tuple if this triple doesn't have one.
1291
1292 /// @}
1293 /// @name Static helpers for IDs.
1294 /// @{
1295
1296 /// Get the canonical name for the \p Kind architecture.
1297 LLVM_ABI static StringRef getArchTypeName(ArchType Kind);
1298
1299 /// Get the architecture name based on \p Kind and \p SubArch.
1300 LLVM_ABI static StringRef getArchName(ArchType Kind,
1301 SubArchType SubArch = NoSubArch);
1302
1303 /// Get the "prefix" canonical name for the \p Kind architecture. This is the
1304 /// prefix used by the architecture specific builtins, and is suitable for
1305 /// passing to \see Intrinsic::getIntrinsicForClangBuiltin().
1306 ///
1307 /// \return - The architecture prefix, or 0 if none is defined.
1308 LLVM_ABI static StringRef getArchTypePrefix(ArchType Kind);
1309
1310 /// Get the canonical name for the \p Kind vendor.
1311 LLVM_ABI static StringRef getVendorTypeName(VendorType Kind);
1312
1313 /// Get the canonical name for the \p Kind operating system.
1314 LLVM_ABI static StringRef getOSTypeName(OSType Kind);
1315
1316 /// Get the canonical name for the \p Kind environment.
1317 LLVM_ABI static StringRef getEnvironmentTypeName(EnvironmentType Kind);
1318
1319 /// Get the name for the \p Object format.
1320 LLVM_ABI static StringRef
1321 getObjectFormatTypeName(ObjectFormatType ObjectFormat);
1322
1323 /// @}
1324 /// @name Static helpers for converting alternate architecture names.
1325 /// @{
1326
1327 /// The canonical type for the given LLVM architecture name (e.g., "x86").
1328 LLVM_ABI static ArchType getArchTypeForLLVMName(StringRef Str);
1329
1330 /// @}
1331
1332 /// Returns a canonicalized OS version number for the specified OS.
1333 LLVM_ABI static VersionTuple
1334 getCanonicalVersionForOS(OSType OSKind, const VersionTuple &Version,
1335 bool IsInValidRange);
1336
1337 /// Returns whether an OS version is invalid and would not map to an Apple OS.
1338 LLVM_ABI static bool isValidVersionForOS(OSType OSKind,
1339 const VersionTuple &Version);
1340
1342
1343 /// Compute the LLVM IR data layout string based on the triple. Some targets
1344 /// customize the layout based on the ABIName string.
1345 LLVM_ABI std::string computeDataLayout(StringRef ABIName = "") const;
1346};
1347
1348} // End llvm namespace
1349
1350
1351#endif
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
#define LLVM_ABI
Definition Compiler.h:213
Defines the llvm::VersionTuple class, which represents a version in the form major[....
StringRef - Represent a constant reference to a string, i.e.
Definition StringRef.h:55
Triple - Helper class for working with autoconf configuration names.
Definition Triple.h:47
LLVM_ABI bool isMacOSXVersionLT(unsigned Major, unsigned Minor=0, unsigned Micro=0) const
Comparison function for checking OS X version compatibility, which handles supporting skewed version ...
Definition Triple.cpp:2186
LLVM_ABI VersionTuple getOSVersion() const
Parse the version number from the OS name component of the triple, if present.
Definition Triple.cpp:1456
bool isPPC() const
Tests whether the target is PowerPC (32- or 64-bit LE or BE).
Definition Triple.h:1043
bool isOSDragonFly() const
Definition Triple.h:647
LLVM_ABI StringRef getVendorName() const
Get the vendor (second) component of the triple.
Definition Triple.cpp:1401
LLVM_ABI VersionTuple getWatchOSVersion() const
Parse the version number as with getOSVersion.
Definition Triple.cpp:1567
LLVM_ABI void setArchName(StringRef Str)
Set the architecture (first) component of the triple by name.
Definition Triple.cpp:1674
bool isTargetMachineMac() const
Returns true for targets that run on a macOS machine.
Definition Triple.h:626
bool isArmT32() const
Tests whether the target is T32.
Definition Triple.h:966
LLVM_ABI void setObjectFormat(ObjectFormatType Kind)
Set the object file format.
Definition Triple.cpp:1666
bool isNVSASS() const
Definition Triple.h:909
bool isAndroidVersionLT(unsigned Major) const
Definition Triple.h:822
LLVM_ABI llvm::Triple get32BitArchVariant() const
Form a triple with a 32-bit variant of the current architecture.
Definition Triple.cpp:1807
bool isOSCygMing() const
Tests for either Cygwin or MinGW OS.
Definition Triple.h:718
bool isWatchABI() const
Definition Triple.h:590
Triple()=default
Default constructor is the same as an empty string and leaves all triple fields unknown.
@ RayGeneration
Definition Triple.h:301
@ LastEnvironmentType
Definition Triple.h:316
@ UnknownEnvironment
Definition Triple.h:254
@ RootSignature
Definition Triple.h:309
@ Amplification
Definition Triple.h:308
bool isThumb() const
Tests whether the target is Thumb (little and big endian).
Definition Triple.h:912
bool isPS4() const
Tests whether the target is the PS4 platform.
Definition Triple.h:803
bool isX86_64() const
Tests whether the target is x86 (64-bit).
Definition Triple.h:1113
bool isPPC64ELFv2ABI() const
Tests whether the target 64-bit PowerPC big endian ABI is ELFv2.
Definition Triple.h:1059
static LLVM_ABI VersionTuple getCanonicalVersionForOS(OSType OSKind, const VersionTuple &Version, bool IsInValidRange)
Returns a canonicalized OS version number for the specified OS.
Definition Triple.cpp:2240
bool isOSWASI() const
Tests whether the OS is WASI.
Definition Triple.h:744
bool isSPIR() const
Tests whether the target is SPIR (32- or 64-bit).
Definition Triple.h:881
CanonicalForm
Canonical form.
Definition Triple.h:387
bool isOSBinFormatWasm() const
Tests whether the OS uses the Wasm binary format.
Definition Triple.h:788
bool isDriverKit() const
Is this an Apple DriverKit triple.
Definition Triple.h:601
unsigned getArchPointerBitWidth() const
Returns the pointer width of this architecture.
Definition Triple.h:517
LLVM_ABI llvm::Triple getLittleEndianArchVariant() const
Form a triple with a little endian variant of the current architecture.
Definition Triple.cpp:2046
bool isOSHurd() const
Tests whether the OS is Hurd.
Definition Triple.h:739
bool isHardFloatABI() const
Tests if the target forces hardfloat.
Definition Triple.h:1161
bool isBPF() const
Tests whether the target is eBPF.
Definition Triple.h:1149
bool isX32() const
Tests whether the target is X32.
Definition Triple.h:1143
static LLVM_ABI StringRef getVendorTypeName(VendorType Kind)
Get the canonical name for the Kind vendor.
Definition Triple.cpp:268
Triple(const char *Str)
Definition Triple.h:362
ObjectFormatType getObjectFormat() const
Get the object format for this triple.
Definition Triple.h:438
bool isAArch64(int PointerWidth) const
Tests whether the target is AArch64 and pointers are the size specified by PointerWidth.
Definition Triple.h:1008
SubArchType getSubArch() const
get the parsed subarchitecture type for this triple.
Definition Triple.h:415
bool isX86() const
Tests whether the target is x86 (32- or 64-bit).
Definition Triple.h:1105
bool isArm64e() const
Tests whether the target is the Apple "arm64e" AArch64 subarch.
Definition Triple.h:1131
std::string normalize(CanonicalForm Form=CanonicalForm::ANY) const
Return the normalized form of this triple's string.
Definition Triple.h:403
bool isTargetEHABICompatible() const
Tests whether the target supports the EHABI exception handling standard.
Definition Triple.h:923
bool isOSBinFormatGOFF() const
Tests whether the OS uses the GOFF binary format.
Definition Triple.h:780
bool isWindowsGNUEnvironment() const
Definition Triple.h:713
LLVM_ABI void setVendorName(StringRef Str)
Set the vendor (second) component of the triple by name.
Definition Triple.cpp:1678
bool isOSNetBSD() const
Definition Triple.h:631
LLVM_ABI std::string computeDataLayout(StringRef ABIName="") const
Compute the LLVM IR data layout string based on the triple.
LLVM_ABI void setOSAndEnvironmentName(StringRef Str)
Set the operating system and optional environment components with a single string.
Definition Triple.cpp:1695
bool isAndroid() const
Tests whether the target is Android.
Definition Triple.h:820
bool hasDefaultTLSDESC() const
True if the target uses TLSDESC by default.
Definition Triple.h:1184
LLVM_ABI llvm::Triple get64BitArchVariant() const
Form a triple with a 64-bit variant of the current architecture.
Definition Triple.cpp:1891
bool isOSMSVCRT() const
Is this a "Windows" OS targeting a "MSVCRT.dll" environment.
Definition Triple.h:723
bool isOSBinFormatMachO() const
Tests whether the environment is MachO.
Definition Triple.h:783
LLVM_ABI bool isLittleEndian() const
Tests whether the target triple is little endian.
Definition Triple.cpp:2089
LLVM_ABI void setEnvironment(EnvironmentType Kind)
Set the environment (fourth) component of the triple to a known type.
Definition Triple.cpp:1658
bool isABIN32() const
Definition Triple.h:1137
LLVM_ABI StringRef getOSName() const
Get the operating system (third) component of the triple.
Definition Triple.cpp:1406
bool supportsCOMDAT() const
Tests whether the target supports comdat.
Definition Triple.h:1170
bool isWindowsCoreCLREnvironment() const
Definition Triple.h:701
bool isSPIROrSPIRV() const
Definition Triple.h:892
LLVM_ABI ExceptionHandling getDefaultExceptionHandling() const
Definition Triple.cpp:2322
bool isMIPS64() const
Tests whether the target is MIPS 64-bit (little and big endian).
Definition Triple.h:1033
@ loongarch32
Definition Triple.h:64
@ renderscript64
Definition Triple.h:111
@ UnknownArch
Definition Triple.h:50
@ loongarch64
Definition Triple.h:65
@ renderscript32
Definition Triple.h:110
bool hasDefaultDataSections() const
Tests whether the target uses -data-sections as default.
Definition Triple.h:1189
bool isTargetGNUAEABI() const
Definition Triple.h:950
bool isOSSolaris() const
Definition Triple.h:649
bool isRISCV32() const
Tests whether the target is 32-bit RISC-V.
Definition Triple.h:1076
bool isOSKFreeBSD() const
Tests whether the OS is kFreeBSD.
Definition Triple.h:734
LLVM_ABI void setTriple(const Twine &Str)
Set all components to the new triple Str.
Definition Triple.cpp:1642
OSType getOS() const
Get the parsed operating system type of this triple.
Definition Triple.h:421
LLVM_ABI VersionTuple getEnvironmentVersion() const
Parse the version number from the OS name component of the triple, if present.
Definition Triple.cpp:1429
static LLVM_ABI std::string normalize(StringRef Str, CanonicalForm Form=CanonicalForm::ANY)
Turn an arbitrary machine specification into the canonical triple form (or something sensible that th...
Definition Triple.cpp:1173
static LLVM_ABI ArchType getArchTypeForLLVMName(StringRef Str)
The canonical type for the given LLVM architecture name (e.g., "x86").
Definition Triple.cpp:447
bool isOSVersionLT(const Triple &Other) const
Definition Triple.h:556
bool isPPC32() const
Tests whether the target is 32-bit PowerPC (little and big endian).
Definition Triple.h:1049
ArchType getArch() const
Get the parsed architecture type of this triple.
Definition Triple.h:412
LLVM_ABI unsigned getTrampolineSize() const
Returns the trampoline size in bytes for this configuration.
Definition Triple.cpp:1777
bool isOSBinFormatCOFF() const
Tests whether the OS uses the COFF binary format.
Definition Triple.h:775
bool isRISCV64() const
Tests whether the target is 64-bit RISC-V.
Definition Triple.h:1081
bool isCSKY() const
Definition Triple.h:1126
bool isLoongArch64() const
Tests whether the target is 64-bit LoongArch.
Definition Triple.h:1022
LLVM_ABI StringRef getEnvironmentName() const
Get the optional environment (fourth) component of the triple, or "" if empty.
Definition Triple.cpp:1412
bool isSPARC32() const
Tests whether the target is 32-bit SPARC (little and big endian).
Definition Triple.h:1089
bool isSimulatorEnvironment() const
Definition Triple.h:617
LLVM_ABI VersionTuple getDXILVersion() const
Parse the DXIL version number from the OSVersion and DXIL version (SubArch).
Definition Triple.cpp:1629
const std::string & str() const
Definition Triple.h:479
bool isOSzOS() const
Definition Triple.h:603
bool isOSSerenity() const
Definition Triple.h:765
bool isOHOSFamily() const
Tests whether the target is OHOS LiteOS default enviroment is also OHOS, but omited on triple.
Definition Triple.h:849
EnvironmentType getEnvironment() const
Get the parsed environment type of this triple.
Definition Triple.h:429
bool isOSOpenBSD() const
Definition Triple.h:635
LLVM_ABI VersionTuple getVulkanVersion() const
Parse the Vulkan version number from the OSVersion and SPIR-V version (SubArch).
Definition Triple.cpp:1604
bool isOSUnknown() const
Definition Triple.h:657
LLVM_ABI VersionTuple getDriverKitVersion() const
Parse the version number as with getOSVersion.
Definition Triple.cpp:1592
bool isMIPS32() const
Tests whether the target is MIPS 32-bit (little and big endian).
Definition Triple.h:1028
bool isShaderModelOS() const
Definition Triple.h:860
bool isUEFI() const
Tests whether the OS is UEFI.
Definition Triple.h:675
bool isOSWindows() const
Tests whether the OS is Windows.
Definition Triple.h:680
bool isMusl() const
Tests whether the environment is musl-libc.
Definition Triple.h:835
const std::string & getTriple() const
Definition Triple.h:481
static LLVM_ABI StringRef getArchTypeName(ArchType Kind)
Get the canonical name for the Kind architecture.
Definition Triple.cpp:24
bool isOSBinFormatDXContainer() const
Tests whether the OS uses the DXContainer binary format.
Definition Triple.h:798
bool isGPU() const
Test whether the target triple is for a GPU.
Definition Triple.h:1279
bool isOSBinFormatXCOFF() const
Tests whether the OS uses the XCOFF binary format.
Definition Triple.h:793
static LLVM_ABI StringRef getOSTypeName(OSType Kind)
Get the canonical name for the Kind operating system.
Definition Triple.cpp:294
bool isTargetMuslAEABI() const
Definition Triple.h:958
@ UnknownObjectFormat
Definition Triple.h:319
bool isARM() const
Tests whether the target is ARM (little and big endian).
Definition Triple.h:917
LLVM_ABI std::string merge(const Triple &Other) const
Merge target triples.
Definition Triple.cpp:2177
bool isArmMClass() const
Tests whether the target is an M-class.
Definition Triple.h:986
bool isOSLinux() const
Tests whether the OS is Linux.
Definition Triple.h:729
bool isBridgeOS() const
Is this an Apple BridgeOS triple.
Definition Triple.h:598
bool isOSManagarm() const
Definition Triple.h:866
bool isRISCV() const
Tests whether the target is RISC-V (32- and 64-bit).
Definition Triple.h:1086
bool isAMDGCN() const
Tests whether the target is AMDGCN.
Definition Triple.h:905
bool isAMDGPU() const
Definition Triple.h:907
bool isLoongArch32() const
Tests whether the target is 32-bit LoongArch.
Definition Triple.h:1019
bool isOSLiteOS() const
Definition Triple.h:853
@ UnknownVendor
Definition Triple.h:188
@ ImaginationTechnologies
Definition Triple.h:195
@ LastVendorType
Definition Triple.h:205
@ MipsTechnologies
Definition Triple.h:196
bool isNVPTX() const
Tests whether the target is NVPTX (32- or 64-bit).
Definition Triple.h:900
bool isOSAIX() const
Tests whether the OS is AIX.
Definition Triple.h:761
LLVM_ABI VersionTuple getMinimumSupportedOSVersion() const
Some platforms have different minimum supported OS versions that varies by the architecture specified...
Definition Triple.cpp:2203
LLVM_ABI bool isArch64Bit() const
Test whether the architecture is 64-bit.
Definition Triple.cpp:1795
LLVM_ABI StringRef getOSAndEnvironmentName() const
Get the operating system and optional environment components as a single string (separated by a '-' i...
Definition Triple.cpp:1418
@ ARMSubArch_v6t2
Definition Triple.h:149
@ MipsSubArch_r6
Definition Triple.h:161
@ DXILSubArch_v1_2
Definition Triple.h:177
@ ARMSubArch_v7
Definition Triple.h:140
@ ARMSubArch_v8m_mainline
Definition Triple.h:138
@ ARMSubArch_v9_6a
Definition Triple.h:119
@ ARMSubArch_v8r
Definition Triple.h:136
@ ARMSubArch_v9_1a
Definition Triple.h:124
@ DXILSubArch_v1_1
Definition Triple.h:176
@ LatestDXILSubArch
Definition Triple.h:185
@ SPIRVSubArch_v10
Definition Triple.h:166
@ SPIRVSubArch_v13
Definition Triple.h:169
@ ARMSubArch_v7k
Definition Triple.h:144
@ ARMSubArch_v8_7a
Definition Triple.h:128
@ ARMSubArch_v8
Definition Triple.h:135
@ SPIRVSubArch_v16
Definition Triple.h:172
@ ARMSubArch_v8_1a
Definition Triple.h:134
@ ARMSubArch_v9_2a
Definition Triple.h:123
@ DXILSubArch_v1_3
Definition Triple.h:178
@ SPIRVSubArch_v15
Definition Triple.h:171
@ ARMSubArch_v7m
Definition Triple.h:142
@ ARMSubArch_v6k
Definition Triple.h:148
@ ARMSubArch_v5
Definition Triple.h:150
@ AArch64SubArch_arm64e
Definition Triple.h:154
@ ARMSubArch_v6
Definition Triple.h:146
@ ARMSubArch_v9_5a
Definition Triple.h:120
@ ARMSubArch_v7ve
Definition Triple.h:145
@ ARMSubArch_v8m_baseline
Definition Triple.h:137
@ ARMSubArch_v8_8a
Definition Triple.h:127
@ ARMSubArch_v8_2a
Definition Triple.h:133
@ ARMSubArch_v7s
Definition Triple.h:143
@ DXILSubArch_v1_0
Definition Triple.h:175
@ DXILSubArch_v1_7
Definition Triple.h:182
@ KalimbaSubArch_v3
Definition Triple.h:157
@ DXILSubArch_v1_5
Definition Triple.h:180
@ ARMSubArch_v8_4a
Definition Triple.h:131
@ ARMSubArch_v8_9a
Definition Triple.h:126
@ ARMSubArch_v7em
Definition Triple.h:141
@ SPIRVSubArch_v12
Definition Triple.h:168
@ SPIRVSubArch_v14
Definition Triple.h:170
@ KalimbaSubArch_v4
Definition Triple.h:158
@ ARMSubArch_v8_1m_mainline
Definition Triple.h:139
@ ARMSubArch_v8_3a
Definition Triple.h:132
@ AArch64SubArch_arm64ec
Definition Triple.h:155
@ ARMSubArch_v8_6a
Definition Triple.h:129
@ ARMSubArch_v5te
Definition Triple.h:151
@ KalimbaSubArch_v5
Definition Triple.h:159
@ ARMSubArch_v4t
Definition Triple.h:152
@ DXILSubArch_v1_6
Definition Triple.h:181
@ DXILSubArch_v1_8
Definition Triple.h:183
@ ARMSubArch_v9_4a
Definition Triple.h:121
@ ARMSubArch_v8_5a
Definition Triple.h:130
@ ARMSubArch_v6m
Definition Triple.h:147
@ ARMSubArch_v9_3a
Definition Triple.h:122
@ DXILSubArch_v1_9
Definition Triple.h:184
@ ARMSubArch_v9
Definition Triple.h:125
@ DXILSubArch_v1_4
Definition Triple.h:179
@ SPIRVSubArch_v11
Definition Triple.h:167
@ PPCSubArch_spe
Definition Triple.h:163
LLVM_ABI bool getMacOSXVersion(VersionTuple &Version) const
Parse the version number as with getOSVersion and then translate generic "darwin" versions to the cor...
Definition Triple.cpp:1470
bool isSPARC64() const
Tests whether the target is 64-bit SPARC (big endian).
Definition Triple.h:1094
bool isWindowsCygwinEnvironment() const
Definition Triple.h:709
static LLVM_ABI bool isValidVersionForOS(OSType OSKind, const VersionTuple &Version)
Returns whether an OS version is invalid and would not map to an Apple OS.
Definition Triple.cpp:2291
Triple(StringRef Str)
Definition Triple.h:361
bool isMacOSX() const
Is this a Mac OS X triple.
Definition Triple.h:567
Triple(const std::string &Str)
Definition Triple.h:363
bool isOSFreeBSD() const
Definition Triple.h:639
bool isXROS() const
Is this an Apple XROS triple.
Definition Triple.h:595
LLVM_ABI void setEnvironmentName(StringRef Str)
Set the optional environment (fourth) component of the triple by name.
Definition Triple.cpp:1690
LLVM_ABI void setOS(OSType Kind)
Set the operating system (third) component of the triple to a known type.
Definition Triple.cpp:1654
bool isX86_32() const
Tests whether the target is x86 (32-bit).
Definition Triple.h:1110
LLVM_ABI void setOSName(StringRef Str)
Set the operating system (third) component of the triple by name.
Definition Triple.cpp:1682
VendorType getVendor() const
Get the parsed vendor type of this triple.
Definition Triple.h:418
bool isSPARC() const
Tests whether the target is SPARC.
Definition Triple.h:1097
bool isPPC64() const
Tests whether the target is 64-bit PowerPC (little and big endian).
Definition Triple.h:1054
bool isOSDarwin() const
Is this a "Darwin" OS (macOS, iOS, tvOS, watchOS, DriverKit, XROS, or bridgeOS).
Definition Triple.h:612
bool hasDLLImportExport() const
Tests if the environment supports dllimport/export annotations.
Definition Triple.h:1194
bool isSPIRVLogical() const
Tests whether the target is SPIR-V Logical.
Definition Triple.h:895
static LLVM_ABI StringRef getEnvironmentTypeName(EnvironmentType Kind)
Get the canonical name for the Kind environment.
Definition Triple.cpp:346
bool isOSVersionLT(unsigned Major, unsigned Minor=0, unsigned Micro=0) const
Helper function for doing comparisons against version numbers included in the target triple.
Definition Triple.h:545
bool isTvOS() const
Is this an Apple tvOS triple.
Definition Triple.h:581
bool isOSEmscripten() const
Tests whether the OS is Emscripten.
Definition Triple.h:749
bool isWindowsArm64EC() const
Definition Triple.h:696
bool operator==(const Triple &Other) const
Definition Triple.h:371
bool isWatchOS() const
Is this an Apple watchOS triple.
Definition Triple.h:586
bool empty() const
Whether the triple is empty / default constructed.
Definition Triple.h:484
bool isiOS() const
Is this an iOS triple.
Definition Triple.h:576
bool isMIPS() const
Tests whether the target is MIPS (little and big endian, 32- or 64-bit).
Definition Triple.h:1038
bool isOSGlibc() const
Tests whether the OS uses glibc.
Definition Triple.h:754
bool isTargetAEABI() const
Definition Triple.h:944
bool isPS() const
Tests whether the target is the PS4 or PS5 platform.
Definition Triple.h:817
bool isWasm() const
Tests whether the target is wasm (32- and 64-bit).
Definition Triple.h:1121
bool isVulkanOS() const
Definition Triple.h:864
LLVM_ABI StringRef getArchName() const
Get the architecture (first) component of the triple.
Definition Triple.cpp:1397
bool isOSIAMCU() const
Definition Triple.h:653
bool isOpenHOS() const
Definition Triple.h:851
bool isMacCatalystEnvironment() const
Definition Triple.h:621
bool isPS5() const
Tests whether the target is the PS5 platform.
Definition Triple.h:810
bool isSPIRV() const
Tests whether the target is SPIR-V (32/64-bit/Logical).
Definition Triple.h:886
bool isAArch64() const
Tests whether the target is AArch64 (little and big endian).
Definition Triple.h:1001
static LLVM_ABI StringRef getObjectFormatTypeName(ObjectFormatType ObjectFormat)
Get the name for the Object format.
Definition Triple.cpp:417
bool isAppleMachO() const
Is this an Apple MachO triple.
Definition Triple.h:606
LLVM_ABI bool isArch16Bit() const
Test whether the architecture is 16-bit.
Definition Triple.cpp:1803
LLVM_ABI llvm::Triple getBigEndianArchVariant() const
Form a triple with a big endian variant of the current architecture.
Definition Triple.cpp:1975
LLVM_ABI VersionTuple getiOSVersion() const
Parse the version number as with getOSVersion.
Definition Triple.cpp:1518
bool hasDefaultEmulatedTLS() const
Tests whether the target uses emulated TLS as default.
Definition Triple.h:1178
bool isSystemZ() const
Tests whether the target is SystemZ.
Definition Triple.h:1100
LLVM_ABI StringRef getEnvironmentVersionString() const
Get the version component of the environment component as a single string (the version after the envi...
Definition Triple.cpp:1433
bool isPPC32SecurePlt() const
Tests whether the target 32-bit PowerPC uses Secure PLT.
Definition Triple.h:1067
bool isTime64ABI() const
Tests if the target forces 64-bit time_t on a 32-bit architecture.
Definition Triple.h:1154
LLVM_ABI bool isArch32Bit() const
Test whether the architecture is 32-bit.
Definition Triple.cpp:1799
bool operator!=(const Triple &Other) const
Definition Triple.h:378
unsigned getOSMajorVersion() const
Return just the major version number, this is specialized because it is a common query.
Definition Triple.h:448
LLVM_ABI bool isCompatibleWith(const Triple &Other) const
Test whether target triples are compatible.
Definition Triple.cpp:2142
bool isOSFuchsia() const
Definition Triple.h:643
bool isOSBinFormatELF() const
Tests whether the OS uses the ELF binary format.
Definition Triple.h:770
bool isWindowsMSVCEnvironment() const
Checks if the environment could be MSVC.
Definition Triple.h:690
bool hasEnvironment() const
Does this triple have the optional environment (fourth) component?
Definition Triple.h:424
bool isKnownWindowsMSVCEnvironment() const
Checks if the environment is MSVC.
Definition Triple.h:685
static LLVM_ABI StringRef getArchTypePrefix(ArchType Kind)
Get the "prefix" canonical name for the Kind architecture.
Definition Triple.cpp:175
bool isOSHaiku() const
Tests whether the OS is Haiku.
Definition Triple.h:670
LLVM_ABI void setArch(ArchType Kind, SubArchType SubArch=NoSubArch)
Set the architecture (first) component of the triple to a known type.
Definition Triple.cpp:1646
bool isDXIL() const
Tests whether the target is DXIL.
Definition Triple.h:856
LLVM_ABI void setVendor(VendorType Kind)
Set the vendor (second) component of the triple to a known type.
Definition Triple.cpp:1650
bool isGNUEnvironment() const
Definition Triple.h:659
bool isLoongArch() const
Tests whether the target is LoongArch (32- and 64-bit).
Definition Triple.h:1025
bool isShaderStageEnvironment() const
Definition Triple.h:868
bool isWindowsItaniumEnvironment() const
Definition Triple.h:705
bool isVE() const
Tests whether the target is VE.
Definition Triple.h:1116
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
Definition Twine.h:82
Represents a version number in the form major[.minor[.subminor[.build]]].
unsigned getMajor() const
Retrieve the major version number.
This is an optimization pass for GlobalISel generic memory operations.
ExceptionHandling
Definition CodeGen.h:53
FunctionAddr VTableAddr uintptr_t uintptr_t Version
Definition InstrProf.h:302
@ Other
Any other memory.
Definition ModRef.h:68
FunctionAddr VTableAddr uintptr_t uintptr_t Data
Definition InstrProf.h:189
Implement std::hash so that hash_code can be used in STL containers.
Definition BitVector.h:851