xref: /llvm-project/llvm/lib/TargetParser/AArch64TargetParser.cpp (revision 831527a5ef63d24d056afc92509caf5ceb1d3682)
1 //===-- AArch64TargetParser - Parser for AArch64 features -------*- 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 implements a target parser to recognise AArch64 hardware features
10 // such as FPU/CPU/ARCH and extension names.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "llvm/TargetParser/AArch64TargetParser.h"
15 #include "llvm/Support/Debug.h"
16 #include "llvm/Support/Format.h"
17 #include "llvm/Support/raw_ostream.h"
18 #include "llvm/TargetParser/ARMTargetParserCommon.h"
19 #include "llvm/TargetParser/Triple.h"
20 #include <cctype>
21 #include <vector>
22 
23 #define DEBUG_TYPE "target-parser"
24 
25 using namespace llvm;
26 
27 #define EMIT_FMV_INFO
28 #include "llvm/TargetParser/AArch64TargetParserDef.inc"
29 
30 static unsigned checkArchVersion(llvm::StringRef Arch) {
31   if (Arch.size() >= 2 && Arch[0] == 'v' && std::isdigit(Arch[1]))
32     return (Arch[1] - 48);
33   return 0;
34 }
35 
36 const AArch64::ArchInfo *AArch64::getArchForCpu(StringRef CPU) {
37   // Note: this now takes cpu aliases into account
38   std::optional<CpuInfo> Cpu = parseCpu(CPU);
39   if (!Cpu)
40     return nullptr;
41   return &Cpu->Arch;
42 }
43 
44 std::optional<AArch64::ArchInfo> AArch64::ArchInfo::findBySubArch(StringRef SubArch) {
45   for (const auto *A : AArch64::ArchInfos)
46     if (A->getSubArch() == SubArch)
47       return *A;
48   return {};
49 }
50 
51 std::optional<AArch64::FMVInfo> lookupFMVByID(AArch64::ArchExtKind ExtID) {
52   for (const AArch64::FMVInfo &Info : AArch64::getFMVInfo())
53     if (Info.ID && *Info.ID == ExtID)
54       return Info;
55   return {};
56 }
57 
58 uint64_t AArch64::getFMVPriority(ArrayRef<StringRef> Features) {
59   // Transitively enable the Arch Extensions which correspond to each feature.
60   ExtensionSet FeatureBits;
61   for (const StringRef Feature : Features) {
62     std::optional<FMVInfo> FMV = parseFMVExtension(Feature);
63     if (!FMV) {
64       if (std::optional<ExtensionInfo> Info = targetFeatureToExtension(Feature))
65         FMV = lookupFMVByID(Info->ID);
66     }
67     if (FMV && FMV->ID)
68       FeatureBits.enable(*FMV->ID);
69   }
70 
71   // Construct a bitmask for all the transitively enabled Arch Extensions.
72   uint64_t PriorityMask = 0;
73   for (const FMVInfo &Info : getFMVInfo())
74     if (Info.ID && FeatureBits.Enabled.test(*Info.ID))
75       PriorityMask |= (1ULL << Info.PriorityBit);
76 
77   return PriorityMask;
78 }
79 
80 uint64_t AArch64::getCpuSupportsMask(ArrayRef<StringRef> Features) {
81   // Transitively enable the Arch Extensions which correspond to each feature.
82   ExtensionSet FeatureBits;
83   for (const StringRef Feature : Features)
84     if (std::optional<FMVInfo> Info = parseFMVExtension(Feature))
85       if (Info->ID)
86         FeatureBits.enable(*Info->ID);
87 
88   // Construct a bitmask for all the transitively enabled Arch Extensions.
89   uint64_t FeaturesMask = 0;
90   for (const FMVInfo &Info : getFMVInfo())
91     if (Info.ID && FeatureBits.Enabled.test(*Info.ID))
92       FeaturesMask |= (1ULL << Info.FeatureBit);
93 
94   return FeaturesMask;
95 }
96 
97 bool AArch64::getExtensionFeatures(
98     const AArch64::ExtensionBitset &InputExts,
99     std::vector<StringRef> &Features) {
100   for (const auto &E : Extensions)
101     /* INVALID and NONE have no feature name. */
102     if (InputExts.test(E.ID) && !E.PosTargetFeature.empty())
103       Features.push_back(E.PosTargetFeature);
104 
105   return true;
106 }
107 
108 StringRef AArch64::resolveCPUAlias(StringRef Name) {
109   for (const auto &A : CpuAliases)
110     if (A.AltName == Name)
111       return A.Name;
112   return Name;
113 }
114 
115 StringRef AArch64::getArchExtFeature(StringRef ArchExt) {
116   bool IsNegated = ArchExt.starts_with("no");
117   StringRef ArchExtBase = IsNegated ? ArchExt.drop_front(2) : ArchExt;
118 
119   if (auto AE = parseArchExtension(ArchExtBase)) {
120     assert(!(AE.has_value() && AE->NegTargetFeature.empty()));
121     return IsNegated ? AE->NegTargetFeature : AE->PosTargetFeature;
122   }
123 
124   return StringRef();
125 }
126 
127 void AArch64::fillValidCPUArchList(SmallVectorImpl<StringRef> &Values) {
128   for (const auto &C : CpuInfos)
129     Values.push_back(C.Name);
130 
131   for (const auto &Alias : CpuAliases)
132     // The apple-latest alias is backend only, do not expose it to clang's -mcpu.
133     if (Alias.AltName != "apple-latest")
134       Values.push_back(Alias.AltName);
135 
136   llvm::sort(Values);
137 }
138 
139 bool AArch64::isX18ReservedByDefault(const Triple &TT) {
140   return TT.isAndroid() || TT.isOSDarwin() || TT.isOSFuchsia() ||
141          TT.isOSWindows() || TT.isOHOSFamily();
142 }
143 
144 // Allows partial match, ex. "v8a" matches "armv8a".
145 const AArch64::ArchInfo *AArch64::parseArch(StringRef Arch) {
146   Arch = llvm::ARM::getCanonicalArchName(Arch);
147   if (checkArchVersion(Arch) < 8)
148     return {};
149 
150   StringRef Syn = llvm::ARM::getArchSynonym(Arch);
151   for (const auto *A : ArchInfos) {
152     if (A->Name.ends_with(Syn))
153       return A;
154   }
155   return {};
156 }
157 
158 std::optional<AArch64::ExtensionInfo>
159 AArch64::parseArchExtension(StringRef ArchExt) {
160   if (ArchExt.empty())
161     return {};
162   for (const auto &A : Extensions) {
163     if (ArchExt == A.UserVisibleName || ArchExt == A.Alias)
164       return A;
165   }
166   return {};
167 }
168 
169 std::optional<AArch64::FMVInfo> AArch64::parseFMVExtension(StringRef FMVExt) {
170   // FIXME introduce general alias functionality, or remove this exception.
171   if (FMVExt == "rdma")
172     FMVExt = "rdm";
173 
174   for (const auto &I : getFMVInfo()) {
175     if (FMVExt == I.Name)
176       return I;
177   }
178   return {};
179 }
180 
181 std::optional<AArch64::ExtensionInfo>
182 AArch64::targetFeatureToExtension(StringRef TargetFeature) {
183   for (const auto &E : Extensions)
184     if (TargetFeature == E.PosTargetFeature)
185       return E;
186   return {};
187 }
188 
189 std::optional<AArch64::CpuInfo> AArch64::parseCpu(StringRef Name) {
190   // Resolve aliases first.
191   Name = resolveCPUAlias(Name);
192 
193   // Then find the CPU name.
194   for (const auto &C : CpuInfos)
195     if (Name == C.Name)
196       return C;
197 
198   return {};
199 }
200 
201 void AArch64::PrintSupportedExtensions() {
202   outs() << "All available -march extensions for AArch64\n\n"
203          << "    " << left_justify("Name", 20)
204          << left_justify("Architecture Feature(s)", 55)
205          << "Description\n";
206   for (const auto &Ext : Extensions) {
207     // Extensions without a feature cannot be used with -march.
208     if (!Ext.UserVisibleName.empty() && !Ext.PosTargetFeature.empty()) {
209       outs() << "    "
210              << format(Ext.Description.empty() ? "%-20s%s\n" : "%-20s%-55s%s\n",
211                        Ext.UserVisibleName.str().c_str(),
212                        Ext.ArchFeatureName.str().c_str(),
213                        Ext.Description.str().c_str());
214     }
215   }
216 }
217 
218 void
219 AArch64::printEnabledExtensions(const std::set<StringRef> &EnabledFeatureNames) {
220   outs() << "Extensions enabled for the given AArch64 target\n\n"
221          << "    " << left_justify("Architecture Feature(s)", 55)
222          << "Description\n";
223   std::vector<ExtensionInfo> EnabledExtensionsInfo;
224   for (const auto &FeatureName : EnabledFeatureNames) {
225     std::string PosFeatureName = '+' + FeatureName.str();
226     if (auto ExtInfo = targetFeatureToExtension(PosFeatureName))
227       EnabledExtensionsInfo.push_back(*ExtInfo);
228   }
229 
230   std::sort(EnabledExtensionsInfo.begin(), EnabledExtensionsInfo.end(),
231             [](const ExtensionInfo &Lhs, const ExtensionInfo &Rhs) {
232               return Lhs.ArchFeatureName < Rhs.ArchFeatureName;
233             });
234 
235   for (const auto &Ext : EnabledExtensionsInfo) {
236     outs() << "    "
237            << format("%-55s%s\n",
238                      Ext.ArchFeatureName.str().c_str(),
239                      Ext.Description.str().c_str());
240   }
241 }
242 
243 const llvm::AArch64::ExtensionInfo &
244 lookupExtensionByID(llvm::AArch64::ArchExtKind ExtID) {
245   for (const auto &E : llvm::AArch64::Extensions)
246     if (E.ID == ExtID)
247       return E;
248   llvm_unreachable("Invalid extension ID");
249 }
250 
251 void AArch64::ExtensionSet::enable(ArchExtKind E) {
252   if (Enabled.test(E))
253     return;
254 
255   LLVM_DEBUG(llvm::dbgs() << "Enable " << lookupExtensionByID(E).UserVisibleName << "\n");
256 
257   Touched.set(E);
258   Enabled.set(E);
259 
260   // Recursively enable all features that this one depends on. This handles all
261   // of the simple cases, where the behaviour doesn't depend on the base
262   // architecture version.
263   for (auto Dep : ExtensionDependencies)
264     if (E == Dep.Later)
265       enable(Dep.Earlier);
266 
267   // Special cases for dependencies which vary depending on the base
268   // architecture version.
269   if (BaseArch) {
270     // +fp16 implies +fp16fml for v8.4A+, but not v9.0-A+
271     if (E == AEK_FP16 && BaseArch->is_superset(ARMV8_4A) &&
272         !BaseArch->is_superset(ARMV9A))
273       enable(AEK_FP16FML);
274 
275     // For v8.4A+ and v9.0A+, +crypto also enables +sha3 and +sm4.
276     if (E == AEK_CRYPTO && BaseArch->is_superset(ARMV8_4A)) {
277       enable(AEK_SHA3);
278       enable(AEK_SM4);
279     }
280   }
281 }
282 
283 void AArch64::ExtensionSet::disable(ArchExtKind E) {
284   // -crypto always disables aes, sha2, sha3 and sm4, even for architectures
285   // where the latter two would not be enabled by +crypto.
286   if (E == AEK_CRYPTO) {
287     disable(AEK_AES);
288     disable(AEK_SHA2);
289     disable(AEK_SHA3);
290     disable(AEK_SM4);
291   }
292 
293   // sve2-aes was historically associated with both FEAT_SVE2 and FEAT_SVE_AES,
294   // the latter is now associated with sve-aes and sve2-aes has become shorthand
295   // for +sve2+sve-aes. For backwards compatibility, when we disable sve2-aes we
296   // must also disable sve-aes.
297   if (E == AEK_SVE2AES)
298     disable(AEK_SVEAES);
299 
300   if (E == AEK_SVE2BITPERM){
301     disable(AEK_SVEBITPERM);
302     disable(AEK_SVE2);
303   }
304 
305   if (!Enabled.test(E))
306     return;
307 
308   LLVM_DEBUG(llvm::dbgs() << "Disable " << lookupExtensionByID(E).UserVisibleName << "\n");
309 
310   Touched.set(E);
311   Enabled.reset(E);
312 
313   // Recursively disable all features that depends on this one.
314   for (auto Dep : ExtensionDependencies)
315     if (E == Dep.Earlier)
316       disable(Dep.Later);
317 }
318 
319 void AArch64::ExtensionSet::addCPUDefaults(const CpuInfo &CPU) {
320   LLVM_DEBUG(llvm::dbgs() << "addCPUDefaults(" << CPU.Name << ")\n");
321   BaseArch = &CPU.Arch;
322 
323   AArch64::ExtensionBitset CPUExtensions = CPU.getImpliedExtensions();
324   for (const auto &E : Extensions)
325     if (CPUExtensions.test(E.ID))
326       enable(E.ID);
327 }
328 
329 void AArch64::ExtensionSet::addArchDefaults(const ArchInfo &Arch) {
330   LLVM_DEBUG(llvm::dbgs() << "addArchDefaults(" << Arch.Name << ")\n");
331   BaseArch = &Arch;
332 
333   for (const auto &E : Extensions)
334     if (Arch.DefaultExts.test(E.ID))
335       enable(E.ID);
336 }
337 
338 bool AArch64::ExtensionSet::parseModifier(StringRef Modifier,
339                                           const bool AllowNoDashForm) {
340   LLVM_DEBUG(llvm::dbgs() << "parseModifier(" << Modifier << ")\n");
341 
342   size_t NChars = 0;
343   // The "no-feat" form is allowed in the target attribute but nowhere else.
344   if (AllowNoDashForm && Modifier.starts_with("no-"))
345     NChars = 3;
346   else if (Modifier.starts_with("no"))
347     NChars = 2;
348   bool IsNegated = NChars != 0;
349   StringRef ArchExt = Modifier.drop_front(NChars);
350 
351   if (auto AE = parseArchExtension(ArchExt)) {
352     if (AE->PosTargetFeature.empty() || AE->NegTargetFeature.empty())
353       return false;
354     if (IsNegated)
355       disable(AE->ID);
356     else
357       enable(AE->ID);
358     return true;
359   }
360   return false;
361 }
362 
363 void AArch64::ExtensionSet::reconstructFromParsedFeatures(
364     const std::vector<std::string> &Features,
365     std::vector<std::string> &NonExtensions) {
366   assert(Touched.none() && "Bitset already initialized");
367   for (auto &F : Features) {
368     bool IsNegated = F[0] == '-';
369     if (auto AE = targetFeatureToExtension(F)) {
370       Touched.set(AE->ID);
371       if (IsNegated)
372         Enabled.reset(AE->ID);
373       else
374         Enabled.set(AE->ID);
375       continue;
376     }
377     NonExtensions.push_back(F);
378   }
379 }
380 
381 void AArch64::ExtensionSet::dump() const {
382   std::vector<StringRef> Features;
383   toLLVMFeatureList(Features);
384   for (StringRef F : Features)
385     llvm::outs() << F << " ";
386   llvm::outs() << "\n";
387 }
388 
389 const AArch64::ExtensionInfo &
390 AArch64::getExtensionByID(AArch64::ArchExtKind ExtID) {
391   return lookupExtensionByID(ExtID);
392 }
393