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/Support/AArch64TargetParser.h"
15 #include "llvm/ADT/StringSwitch.h"
16 #include "llvm/ADT/Triple.h"
17 #include <cctype>
18 
19 using namespace llvm;
20 
21 static unsigned checkArchVersion(llvm::StringRef Arch) {
22   if (Arch.size() >= 2 && Arch[0] == 'v' && std::isdigit(Arch[1]))
23     return (Arch[1] - 48);
24   return 0;
25 }
26 
27 unsigned AArch64::getDefaultFPU(StringRef CPU, AArch64::ArchKind AK) {
28   if (CPU == "generic")
29     return AArch64ARCHNames[static_cast<unsigned>(AK)].DefaultFPU;
30 
31   return StringSwitch<unsigned>(CPU)
32 #define AARCH64_CPU_NAME(NAME, ID, DEFAULT_FPU, IS_DEFAULT, DEFAULT_EXT)       \
33   .Case(NAME, ARM::DEFAULT_FPU)
34 #include "../../include/llvm/Support/AArch64TargetParser.def"
35   .Default(ARM::FK_INVALID);
36 }
37 
38 uint64_t AArch64::getDefaultExtensions(StringRef CPU, AArch64::ArchKind AK) {
39   if (CPU == "generic")
40     return AArch64ARCHNames[static_cast<unsigned>(AK)].ArchBaseExtensions;
41 
42   return StringSwitch<uint64_t>(CPU)
43 #define AARCH64_CPU_NAME(NAME, ID, DEFAULT_FPU, IS_DEFAULT, DEFAULT_EXT)       \
44   .Case(NAME, AArch64ARCHNames[static_cast<unsigned>(ArchKind::ID)]            \
45                       .ArchBaseExtensions |                                    \
46                   DEFAULT_EXT)
47 #include "../../include/llvm/Support/AArch64TargetParser.def"
48   .Default(AArch64::AEK_INVALID);
49 }
50 
51 AArch64::ArchKind AArch64::getCPUArchKind(StringRef CPU) {
52   if (CPU == "generic")
53     return ArchKind::ARMV8A;
54 
55   return StringSwitch<AArch64::ArchKind>(CPU)
56 #define AARCH64_CPU_NAME(NAME, ID, DEFAULT_FPU, IS_DEFAULT, DEFAULT_EXT)       \
57   .Case(NAME, ArchKind::ID)
58 #include "../../include/llvm/Support/AArch64TargetParser.def"
59   .Default(ArchKind::INVALID);
60 }
61 
62 bool AArch64::getExtensionFeatures(uint64_t Extensions,
63                                    std::vector<StringRef> &Features) {
64   if (Extensions == AArch64::AEK_INVALID)
65     return false;
66 
67   if (Extensions & AEK_FP)
68     Features.push_back("+fp-armv8");
69   if (Extensions & AEK_SIMD)
70     Features.push_back("+neon");
71   if (Extensions & AEK_CRC)
72     Features.push_back("+crc");
73   if (Extensions & AEK_CRYPTO)
74     Features.push_back("+crypto");
75   if (Extensions & AEK_DOTPROD)
76     Features.push_back("+dotprod");
77   if (Extensions & AEK_FP16FML)
78     Features.push_back("+fp16fml");
79   if (Extensions & AEK_FP16)
80     Features.push_back("+fullfp16");
81   if (Extensions & AEK_PROFILE)
82     Features.push_back("+spe");
83   if (Extensions & AEK_RAS)
84     Features.push_back("+ras");
85   if (Extensions & AEK_LSE)
86     Features.push_back("+lse");
87   if (Extensions & AEK_RDM)
88     Features.push_back("+rdm");
89   if (Extensions & AEK_SVE)
90     Features.push_back("+sve");
91   if (Extensions & AEK_SVE2)
92     Features.push_back("+sve2");
93   if (Extensions & AEK_SVE2AES)
94     Features.push_back("+sve2-aes");
95   if (Extensions & AEK_SVE2SM4)
96     Features.push_back("+sve2-sm4");
97   if (Extensions & AEK_SVE2SHA3)
98     Features.push_back("+sve2-sha3");
99   if (Extensions & AEK_SVE2BITPERM)
100     Features.push_back("+sve2-bitperm");
101   if (Extensions & AEK_RCPC)
102     Features.push_back("+rcpc");
103 
104   return true;
105 }
106 
107 bool AArch64::getArchFeatures(AArch64::ArchKind AK,
108                               std::vector<StringRef> &Features) {
109   if (AK == ArchKind::ARMV8_1A)
110     Features.push_back("+v8.1a");
111   if (AK == ArchKind::ARMV8_2A)
112     Features.push_back("+v8.2a");
113   if (AK == ArchKind::ARMV8_3A)
114     Features.push_back("+v8.3a");
115   if (AK == ArchKind::ARMV8_4A)
116     Features.push_back("+v8.4a");
117   if (AK == ArchKind::ARMV8_5A)
118     Features.push_back("+v8.5a");
119   if (AK == AArch64::ArchKind::ARMV8_6A)
120     Features.push_back("+v8.6a");
121   if (AK == AArch64::ArchKind::ARMV8_7A)
122     Features.push_back("+v8.7a");
123   if(AK == AArch64::ArchKind::ARMV8R)
124     Features.push_back("+v8r");
125 
126   return AK != ArchKind::INVALID;
127 }
128 
129 StringRef AArch64::getArchName(AArch64::ArchKind AK) {
130   return AArch64ARCHNames[static_cast<unsigned>(AK)].getName();
131 }
132 
133 StringRef AArch64::getCPUAttr(AArch64::ArchKind AK) {
134   return AArch64ARCHNames[static_cast<unsigned>(AK)].getCPUAttr();
135 }
136 
137 StringRef AArch64::getSubArch(AArch64::ArchKind AK) {
138   return AArch64ARCHNames[static_cast<unsigned>(AK)].getSubArch();
139 }
140 
141 unsigned AArch64::getArchAttr(AArch64::ArchKind AK) {
142   return AArch64ARCHNames[static_cast<unsigned>(AK)].ArchAttr;
143 }
144 
145 StringRef AArch64::getArchExtName(unsigned ArchExtKind) {
146   for (const auto &AE : AArch64ARCHExtNames)
147     if (ArchExtKind == AE.ID)
148       return AE.getName();
149   return StringRef();
150 }
151 
152 StringRef AArch64::getArchExtFeature(StringRef ArchExt) {
153   if (ArchExt.startswith("no")) {
154     StringRef ArchExtBase(ArchExt.substr(2));
155     for (const auto &AE : AArch64ARCHExtNames) {
156       if (AE.NegFeature && ArchExtBase == AE.getName())
157         return StringRef(AE.NegFeature);
158     }
159   }
160 
161   for (const auto &AE : AArch64ARCHExtNames)
162     if (AE.Feature && ArchExt == AE.getName())
163       return StringRef(AE.Feature);
164   return StringRef();
165 }
166 
167 StringRef AArch64::getDefaultCPU(StringRef Arch) {
168   ArchKind AK = parseArch(Arch);
169   if (AK == ArchKind::INVALID)
170     return StringRef();
171 
172   // Look for multiple AKs to find the default for pair AK+Name.
173   for (const auto &CPU : AArch64CPUNames)
174     if (CPU.ArchID == AK && CPU.Default)
175       return CPU.getName();
176 
177   // If we can't find a default then target the architecture instead
178   return "generic";
179 }
180 
181 void AArch64::fillValidCPUArchList(SmallVectorImpl<StringRef> &Values) {
182   for (const auto &Arch : AArch64CPUNames) {
183     if (Arch.ArchID != ArchKind::INVALID)
184       Values.push_back(Arch.getName());
185   }
186 }
187 
188 bool AArch64::isX18ReservedByDefault(const Triple &TT) {
189   return TT.isAndroid() || TT.isOSDarwin() || TT.isOSFuchsia() ||
190          TT.isOSWindows();
191 }
192 
193 // Allows partial match, ex. "v8a" matches "armv8a".
194 AArch64::ArchKind AArch64::parseArch(StringRef Arch) {
195   Arch = ARM::getCanonicalArchName(Arch);
196   if (checkArchVersion(Arch) < 8)
197     return ArchKind::INVALID;
198 
199   StringRef Syn = ARM::getArchSynonym(Arch);
200   for (const auto &A : AArch64ARCHNames) {
201     if (A.getName().endswith(Syn))
202       return A.ID;
203   }
204   return ArchKind::INVALID;
205 }
206 
207 AArch64::ArchExtKind AArch64::parseArchExt(StringRef ArchExt) {
208   for (const auto &A : AArch64ARCHExtNames) {
209     if (ArchExt == A.getName())
210       return static_cast<ArchExtKind>(A.ID);
211   }
212   return AArch64::AEK_INVALID;
213 }
214 
215 AArch64::ArchKind AArch64::parseCPUArch(StringRef CPU) {
216   for (const auto &C : AArch64CPUNames) {
217     if (CPU == C.getName())
218       return C.ArchID;
219   }
220   return ArchKind::INVALID;
221 }
222 
223 // Parse a branch protection specification, which has the form
224 //   standard | none | [bti,pac-ret[+b-key,+leaf]*]
225 // Returns true on success, with individual elements of the specification
226 // returned in `PBP`. Returns false in error, with `Err` containing
227 // an erroneous part of the spec.
228 bool AArch64::parseBranchProtection(StringRef Spec, ParsedBranchProtection &PBP,
229                                     StringRef &Err) {
230   PBP = {"none", "a_key", false};
231   if (Spec == "none")
232     return true; // defaults are ok
233 
234   if (Spec == "standard") {
235     PBP.Scope = "non-leaf";
236     PBP.BranchTargetEnforcement = true;
237     return true;
238   }
239 
240   SmallVector<StringRef, 4> Opts;
241   Spec.split(Opts, "+");
242   for (int I = 0, E = Opts.size(); I != E; ++I) {
243     StringRef Opt = Opts[I].trim();
244     if (Opt == "bti") {
245       PBP.BranchTargetEnforcement = true;
246       continue;
247     }
248     if (Opt == "pac-ret") {
249       PBP.Scope = "non-leaf";
250       for (; I + 1 != E; ++I) {
251         StringRef PACOpt = Opts[I + 1].trim();
252         if (PACOpt == "leaf")
253           PBP.Scope = "all";
254         else if (PACOpt == "b-key")
255           PBP.Key = "b_key";
256         else
257           break;
258       }
259       continue;
260     }
261     if (Opt == "")
262       Err = "<empty>";
263     else
264       Err = Opt;
265     return false;
266   }
267 
268   return true;
269 }
270