LLVM 22.0.0git
TargetRegistry.cpp
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1//===--- TargetRegistry.cpp - Target registration -------------------------===//
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
10#include "llvm/ADT/STLExtras.h"
11#include "llvm/ADT/StringRef.h"
14#include "llvm/MC/MCContext.h"
19#include <cassert>
20#include <vector>
21using namespace llvm;
22
23// Clients are responsible for avoid race conditions in registration.
24static Target *FirstTarget = nullptr;
25
27 const Triple &T, MCContext &Ctx, std::unique_ptr<MCAsmBackend> TAB,
28 std::unique_ptr<MCObjectWriter> OW, std::unique_ptr<MCCodeEmitter> Emitter,
29 const MCSubtargetInfo &STI) const {
30 MCStreamer *S = nullptr;
31 switch (T.getObjectFormat()) {
33 llvm_unreachable("Unknown object format");
34 case Triple::COFF:
35 assert((T.isOSWindows() || T.isUEFI()) &&
36 "only Windows and UEFI COFF are supported");
37 S = COFFStreamerCtorFn(Ctx, std::move(TAB), std::move(OW),
38 std::move(Emitter));
39 break;
40 case Triple::MachO:
41 if (MachOStreamerCtorFn)
42 S = MachOStreamerCtorFn(Ctx, std::move(TAB), std::move(OW),
43 std::move(Emitter));
44 else
45 S = createMachOStreamer(Ctx, std::move(TAB), std::move(OW),
46 std::move(Emitter), false);
47 break;
48 case Triple::ELF:
49 if (ELFStreamerCtorFn)
50 S = ELFStreamerCtorFn(T, Ctx, std::move(TAB), std::move(OW),
51 std::move(Emitter));
52 else
53 S = createELFStreamer(Ctx, std::move(TAB), std::move(OW),
54 std::move(Emitter));
55 break;
56 case Triple::Wasm:
57 S = createWasmStreamer(Ctx, std::move(TAB), std::move(OW),
58 std::move(Emitter));
59 break;
60 case Triple::GOFF:
61 S = createGOFFStreamer(Ctx, std::move(TAB), std::move(OW),
62 std::move(Emitter));
63 break;
64 case Triple::XCOFF:
65 S = XCOFFStreamerCtorFn(T, Ctx, std::move(TAB), std::move(OW),
66 std::move(Emitter));
67 break;
68 case Triple::SPIRV:
69 S = createSPIRVStreamer(Ctx, std::move(TAB), std::move(OW),
70 std::move(Emitter));
71 break;
73 S = createDXContainerStreamer(Ctx, std::move(TAB), std::move(OW),
74 std::move(Emitter));
75 break;
76 }
77 if (ObjectTargetStreamerCtorFn)
78 ObjectTargetStreamerCtorFn(*S, STI);
79 return S;
80}
81
83 std::unique_ptr<formatted_raw_ostream> OS,
84 std::unique_ptr<MCInstPrinter> IP,
85 std::unique_ptr<MCCodeEmitter> CE,
86 std::unique_ptr<MCAsmBackend> TAB) const {
87 MCInstPrinter *Printer = IP.get();
88 formatted_raw_ostream &OSRef = *OS;
89 MCStreamer *S;
90 if (AsmStreamerCtorFn)
91 S = AsmStreamerCtorFn(Ctx, std::move(OS), std::move(IP), std::move(CE),
92 std::move(TAB));
93 else
94 S = llvm::createAsmStreamer(Ctx, std::move(OS), std::move(IP),
95 std::move(CE), std::move(TAB));
96
98 return S;
99}
100
103}
104
106 Triple &TheTriple,
107 std::string &Error) {
108 // Allocate target machine. First, check whether the user has explicitly
109 // specified an architecture to compile for. If so we have to look it up by
110 // name, because it might be a backend that has no mapping to a target triple.
111 const Target *TheTarget = nullptr;
112 if (!ArchName.empty()) {
113 auto I = find_if(targets(),
114 [&](const Target &T) { return ArchName == T.getName(); });
115
116 if (I == targets().end()) {
117 Error = ("invalid target '" + ArchName + "'.").str();
118 return nullptr;
119 }
120
121 TheTarget = &*I;
122
123 // Adjust the triple to match (if known), otherwise stick with the
124 // given triple.
127 TheTriple.setArch(Type);
128 } else {
129 // Get the target specific parser.
130 std::string TempError;
131 TheTarget = TargetRegistry::lookupTarget(TheTriple, TempError);
132 if (!TheTarget) {
133 Error = "unable to get target for '" + TheTriple.getTriple() +
134 "', see --version and --triple.";
135 return nullptr;
136 }
137 }
138
139 return TheTarget;
140}
141
143 std::string &Error) {
144 // Provide special warning when no targets are initialized.
145 if (targets().begin() == targets().end()) {
146 Error = "Unable to find target for this triple (no targets are registered)";
147 return nullptr;
148 }
149 Triple::ArchType Arch = TT.getArch();
150 auto ArchMatch = [&](const Target &T) { return T.ArchMatchFn(Arch); };
151 auto I = find_if(targets(), ArchMatch);
152
153 if (I == targets().end()) {
154 Error =
155 "No available targets are compatible with triple \"" + TT.str() + "\"";
156 return nullptr;
157 }
158
159 auto J = std::find_if(std::next(I), targets().end(), ArchMatch);
160 if (J != targets().end()) {
161 Error = std::string("Cannot choose between targets \"") + I->Name +
162 "\" and \"" + J->Name + "\"";
163 return nullptr;
164 }
165
166 return &*I;
167}
168
170 const char *ShortDesc,
171 const char *BackendName,
172 Target::ArchMatchFnTy ArchMatchFn,
173 bool HasJIT) {
174 assert(Name && ShortDesc && ArchMatchFn &&
175 "Missing required target information!");
176
177 // Check if this target has already been initialized, we allow this as a
178 // convenience to some clients.
179 if (T.Name)
180 return;
181
182 // Add to the list of targets.
183 T.Next = FirstTarget;
184 FirstTarget = &T;
185
186 T.Name = Name;
187 T.ShortDesc = ShortDesc;
188 T.BackendName = BackendName;
189 T.ArchMatchFn = ArchMatchFn;
190 T.HasJIT = HasJIT;
191}
192
193static int TargetArraySortFn(const std::pair<StringRef, const Target *> *LHS,
194 const std::pair<StringRef, const Target *> *RHS) {
195 return LHS->first.compare(RHS->first);
196}
197
199 std::vector<std::pair<StringRef, const Target*> > Targets;
200 size_t Width = 0;
201 for (const auto &T : TargetRegistry::targets()) {
202 Targets.push_back(std::make_pair(T.getName(), &T));
203 Width = std::max(Width, Targets.back().first.size());
204 }
205 array_pod_sort(Targets.begin(), Targets.end(), TargetArraySortFn);
206
207 OS << "\n";
208 OS << " Registered Targets:\n";
209 for (const auto &Target : Targets) {
210 OS << " " << Target.first;
211 OS.indent(Width - Target.first.size())
212 << " - " << Target.second->getShortDescription() << '\n';
213 }
214 if (Targets.empty())
215 OS << " (none)\n";
216}
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
dxil DXContainer Global Emitter
dxil pretty DXIL Metadata Pretty Printer
std::string Name
#define I(x, y, z)
Definition: MD5.cpp:58
This file contains some templates that are useful if you are working with the STL at all.
raw_pwrite_stream & OS
static Target * FirstTarget
static int TargetArraySortFn(const std::pair< StringRef, const Target * > *LHS, const std::pair< StringRef, const Target * > *RHS)
Value * RHS
Value * LHS
Lightweight error class with error context and mandatory checking.
Definition: Error.h:159
Context object for machine code objects.
Definition: MCContext.h:83
This is an instance of a target assembly language printer that converts an MCInst to valid target ass...
Definition: MCInstPrinter.h:46
Streaming machine code generation interface.
Definition: MCStreamer.h:220
Generic base class for all target subtargets.
StringRef - Represent a constant reference to a string, i.e.
Definition: StringRef.h:55
constexpr bool empty() const
empty - Check if the string is empty.
Definition: StringRef.h:151
Target - Wrapper for Target specific information.
LLVM_ABI MCStreamer * createAsmStreamer(MCContext &Ctx, std::unique_ptr< formatted_raw_ostream > OS, std::unique_ptr< MCInstPrinter > IP, std::unique_ptr< MCCodeEmitter > CE, std::unique_ptr< MCAsmBackend > TAB) const
MCTargetStreamer * createAsmTargetStreamer(MCStreamer &S, formatted_raw_ostream &OS, MCInstPrinter *InstPrint) const
LLVM_ABI MCStreamer * createMCObjectStreamer(const Triple &T, MCContext &Ctx, std::unique_ptr< MCAsmBackend > TAB, std::unique_ptr< MCObjectWriter > OW, std::unique_ptr< MCCodeEmitter > Emitter, const MCSubtargetInfo &STI) const
Create a target specific MCStreamer.
bool(*)(Triple::ArchType Arch) ArchMatchFnTy
const char * getShortDescription() const
getShortDescription - Get a short description of the target.
Triple - Helper class for working with autoconf configuration names.
Definition: Triple.h:47
@ UnknownArch
Definition: Triple.h:50
static LLVM_ABI ArchType getArchTypeForLLVMName(StringRef Str)
The canonical type for the given LLVM architecture name (e.g., "x86").
Definition: Triple.cpp:436
const std::string & getTriple() const
Definition: Triple.h:477
@ DXContainer
Definition: Triple.h:318
@ UnknownObjectFormat
Definition: Triple.h:315
LLVM_ABI void setArch(ArchType Kind, SubArchType SubArch=NoSubArch)
Set the architecture (first) component of the triple to a known type.
Definition: Triple.cpp:1625
The instances of the Type class are immutable: once they are created, they are never changed.
Definition: Type.h:45
formatted_raw_ostream - A raw_ostream that wraps another one and keeps track of line and column posit...
A range adaptor for a pair of iterators.
This class implements an extremely fast bulk output stream that can only output to a stream.
Definition: raw_ostream.h:53
raw_ostream & indent(unsigned NumSpaces)
indent - Insert 'NumSpaces' spaces.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
This is an optimization pass for GlobalISel generic memory operations.
Definition: AddressRanges.h:18
LLVM_ABI MCStreamer * createELFStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE)
iterator_range< T > make_range(T x, T y)
Convenience function for iterating over sub-ranges.
LLVM_ABI MCStreamer * createAsmStreamer(MCContext &Ctx, std::unique_ptr< formatted_raw_ostream > OS, std::unique_ptr< MCInstPrinter > InstPrint, std::unique_ptr< MCCodeEmitter > CE, std::unique_ptr< MCAsmBackend > TAB)
Create a machine code streamer which will print out assembly for the native target,...
LLVM_ABI MCStreamer * createMachOStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE, bool DWARFMustBeAtTheEnd, bool LabelSections=false)
LLVM_ABI MCStreamer * createDXContainerStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE)
auto find_if(R &&Range, UnaryPredicate P)
Provide wrappers to std::find_if which take ranges instead of having to pass begin/end explicitly.
Definition: STLExtras.h:1777
LLVM_ABI MCStreamer * createWasmStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE)
LLVM_ABI MCStreamer * createGOFFStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE)
void array_pod_sort(IteratorTy Start, IteratorTy End)
array_pod_sort - This sorts an array with the specified start and end extent.
Definition: STLExtras.h:1629
LLVM_ABI MCStreamer * createSPIRVStreamer(MCContext &Ctx, std::unique_ptr< MCAsmBackend > &&TAB, std::unique_ptr< MCObjectWriter > &&OW, std::unique_ptr< MCCodeEmitter > &&CE)
static const Target * lookupTarget(StringRef TripleStr, std::string &Error)
lookupTarget - Lookup a target based on a target triple.
static LLVM_ABI void printRegisteredTargetsForVersion(raw_ostream &OS)
printRegisteredTargetsForVersion - Print the registered targets appropriately for inclusion in a tool...
static LLVM_ABI void RegisterTarget(Target &T, const char *Name, const char *ShortDesc, const char *BackendName, Target::ArchMatchFnTy ArchMatchFn, bool HasJIT=false)
RegisterTarget - Register the given target.
static LLVM_ABI iterator_range< iterator > targets()