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ArchSpec.cpp
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1//===-- ArchSpec.cpp ------------------------------------------------------===//
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
11
12#include "lldb/Utility/Log.h"
14#include "lldb/lldb-defines.h"
15#include "llvm/ADT/STLExtras.h"
16#include "llvm/ADT/StringSwitch.h"
17#include "llvm/BinaryFormat/COFF.h"
18#include "llvm/BinaryFormat/ELF.h"
19#include "llvm/BinaryFormat/MachO.h"
20#include "llvm/BinaryFormat/XCOFF.h"
21#include "llvm/Support/Compiler.h"
22#include "llvm/TargetParser/ARMTargetParser.h"
23
24using namespace lldb;
25using namespace lldb_private;
26
27static bool cores_match(const ArchSpec::Core core1, const ArchSpec::Core core2,
28 bool enforce_exact_match);
29
30namespace lldb_private {
31
37 llvm::Triple::ArchType machine;
39 const char *const name;
40};
41
42} // namespace lldb_private
43
44#define AMD_GPU_CORE_DEF_R600(sub) \
45 {eByteOrderLittle, \
46 4, \
47 4, \
48 16, \
49 llvm::Triple::r600, \
50 ArchSpec::eCore_amd_gpu_r600_##sub, \
51 "r600"}
52#define AMD_GPU_CORE_DEF_GCN(sub) \
53 {eByteOrderLittle, \
54 8, \
55 4, \
56 16, \
57 llvm::Triple::amdgpu, \
58 ArchSpec::eCore_amd_gpu_gcn_##sub, \
59 "amdgpu"}
60// This core information can be looked using the ArchSpec::Core as the index
61static constexpr const CoreDefinition g_core_definitions[] = {
62 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_generic,
63 "arm"},
64 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv4,
65 "armv4"},
66 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv4t,
67 "armv4t"},
68 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv5,
69 "armv5"},
70 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv5e,
71 "armv5e"},
72 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv5t,
73 "armv5t"},
74 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv6,
75 "armv6"},
76 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv6m,
77 "armv6m"},
78 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7,
79 "armv7"},
80 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7a,
81 "armv7a"},
82 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7l,
83 "armv7l"},
84 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7f,
85 "armv7f"},
86 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7s,
87 "armv7s"},
88 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7k,
89 "armv7k"},
90 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7m,
91 "armv7m"},
92 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv7em,
93 "armv7em"},
94 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm,
95 ArchSpec::eCore_arm_armv8m_base, "armv8m.base"},
96 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm,
97 ArchSpec::eCore_arm_armv8m_main, "armv8m.main"},
98 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm,
99 ArchSpec::eCore_arm_armv8_1m_main, "armv8.1m.main"},
100 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_xscale,
101 "xscale"},
102 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumb,
103 "thumb"},
104 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv4t,
105 "thumbv4t"},
106 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv5,
107 "thumbv5"},
108 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv5e,
109 "thumbv5e"},
110 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv6,
111 "thumbv6"},
112 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv6m,
113 "thumbv6m"},
114 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7,
115 "thumbv7"},
116 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7s,
117 "thumbv7s"},
118 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7k,
119 "thumbv7k"},
120 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7f,
121 "thumbv7f"},
122 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7m,
123 "thumbv7m"},
124 {eByteOrderLittle, 4, 2, 4, llvm::Triple::thumb, ArchSpec::eCore_thumbv7em,
125 "thumbv7em"},
126 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
128 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
130 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
132 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arm, ArchSpec::eCore_arm_armv8l,
133 "armv8l"},
134 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
136 {eByteOrderLittle, 4, 4, 4, llvm::Triple::aarch64_32,
137 ArchSpec::eCore_arm_arm64_32, "arm64_32"},
138 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
139 ArchSpec::eCore_arm_aarch64, "aarch64"},
140 {eByteOrderLittle, 8, 4, 4, llvm::Triple::aarch64,
141 ArchSpec::eCore_arm_arm64ex1, "arm64e.x1"},
142
143 // mips32, mips32r2, mips32r3, mips32r5, mips32r6
144 {eByteOrderBig, 4, 2, 4, llvm::Triple::mips, ArchSpec::eCore_mips32,
145 "mips"},
146 {eByteOrderBig, 4, 2, 4, llvm::Triple::mips, ArchSpec::eCore_mips32r2,
147 "mipsr2"},
148 {eByteOrderBig, 4, 2, 4, llvm::Triple::mips, ArchSpec::eCore_mips32r3,
149 "mipsr3"},
150 {eByteOrderBig, 4, 2, 4, llvm::Triple::mips, ArchSpec::eCore_mips32r5,
151 "mipsr5"},
152 {eByteOrderBig, 4, 2, 4, llvm::Triple::mips, ArchSpec::eCore_mips32r6,
153 "mipsr6"},
154 {eByteOrderLittle, 4, 2, 4, llvm::Triple::mipsel, ArchSpec::eCore_mips32el,
155 "mipsel"},
156 {eByteOrderLittle, 4, 2, 4, llvm::Triple::mipsel,
157 ArchSpec::eCore_mips32r2el, "mipsr2el"},
158 {eByteOrderLittle, 4, 2, 4, llvm::Triple::mipsel,
159 ArchSpec::eCore_mips32r3el, "mipsr3el"},
160 {eByteOrderLittle, 4, 2, 4, llvm::Triple::mipsel,
161 ArchSpec::eCore_mips32r5el, "mipsr5el"},
162 {eByteOrderLittle, 4, 2, 4, llvm::Triple::mipsel,
163 ArchSpec::eCore_mips32r6el, "mipsr6el"},
164
165 // mips64, mips64r2, mips64r3, mips64r5, mips64r6
166 {eByteOrderBig, 8, 2, 4, llvm::Triple::mips64, ArchSpec::eCore_mips64,
167 "mips64"},
168 {eByteOrderBig, 8, 2, 4, llvm::Triple::mips64, ArchSpec::eCore_mips64r2,
169 "mips64r2"},
170 {eByteOrderBig, 8, 2, 4, llvm::Triple::mips64, ArchSpec::eCore_mips64r3,
171 "mips64r3"},
172 {eByteOrderBig, 8, 2, 4, llvm::Triple::mips64, ArchSpec::eCore_mips64r5,
173 "mips64r5"},
174 {eByteOrderBig, 8, 2, 4, llvm::Triple::mips64, ArchSpec::eCore_mips64r6,
175 "mips64r6"},
176 {eByteOrderLittle, 8, 2, 4, llvm::Triple::mips64el,
177 ArchSpec::eCore_mips64el, "mips64el"},
178 {eByteOrderLittle, 8, 2, 4, llvm::Triple::mips64el,
179 ArchSpec::eCore_mips64r2el, "mips64r2el"},
180 {eByteOrderLittle, 8, 2, 4, llvm::Triple::mips64el,
181 ArchSpec::eCore_mips64r3el, "mips64r3el"},
182 {eByteOrderLittle, 8, 2, 4, llvm::Triple::mips64el,
183 ArchSpec::eCore_mips64r5el, "mips64r5el"},
184 {eByteOrderLittle, 8, 2, 4, llvm::Triple::mips64el,
185 ArchSpec::eCore_mips64r6el, "mips64r6el"},
186
187 // MSP430
188 {eByteOrderLittle, 2, 2, 4, llvm::Triple::msp430, ArchSpec::eCore_msp430,
189 "msp430"},
190
191 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_generic,
192 "powerpc"},
193 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc601,
194 "ppc601"},
195 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc602,
196 "ppc602"},
197 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc603,
198 "ppc603"},
199 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc603e,
200 "ppc603e"},
201 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc603ev,
202 "ppc603ev"},
203 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc604,
204 "ppc604"},
205 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc604e,
206 "ppc604e"},
207 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc620,
208 "ppc620"},
209 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc750,
210 "ppc750"},
211 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc7400,
212 "ppc7400"},
213 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc7450,
214 "ppc7450"},
215 {eByteOrderBig, 4, 4, 4, llvm::Triple::ppc, ArchSpec::eCore_ppc_ppc970,
216 "ppc970"},
217
218 {eByteOrderLittle, 8, 4, 4, llvm::Triple::ppc64le,
219 ArchSpec::eCore_ppc64le_generic, "powerpc64le"},
220 {eByteOrderBig, 8, 4, 4, llvm::Triple::ppc64, ArchSpec::eCore_ppc64_generic,
221 "powerpc64"},
222 {eByteOrderBig, 8, 4, 4, llvm::Triple::ppc64,
224
225 {eByteOrderBig, 8, 2, 6, llvm::Triple::systemz,
227
228 {eByteOrderLittle, 4, 4, 4, llvm::Triple::sparc,
230 {eByteOrderLittle, 8, 4, 4, llvm::Triple::sparcv9,
232
233 {eByteOrderLittle, 4, 1, 15, llvm::Triple::x86, ArchSpec::eCore_x86_32_i386,
234 "i386"},
235 {eByteOrderLittle, 4, 1, 15, llvm::Triple::x86, ArchSpec::eCore_x86_32_i486,
236 "i486"},
237 {eByteOrderLittle, 4, 1, 15, llvm::Triple::x86,
239 {eByteOrderLittle, 4, 1, 15, llvm::Triple::x86, ArchSpec::eCore_x86_32_i686,
240 "i686"},
241
242 {eByteOrderLittle, 8, 1, 15, llvm::Triple::x86_64,
244 {eByteOrderLittle, 8, 1, 15, llvm::Triple::x86_64,
246 {eByteOrderLittle, 8, 1, 15, llvm::Triple::x86_64,
248
249 {eByteOrderLittle, 4, 4, 4, llvm::Triple::hexagon,
251 {eByteOrderLittle, 4, 4, 4, llvm::Triple::hexagon,
253 {eByteOrderLittle, 4, 4, 4, llvm::Triple::hexagon,
255
256 {eByteOrderLittle, 4, 2, 8, llvm::Triple::riscv32, ArchSpec::eCore_riscv32,
257 "riscv32"},
258 {eByteOrderLittle, 8, 2, 8, llvm::Triple::riscv64, ArchSpec::eCore_riscv64,
259 "riscv64"},
260
261 {eByteOrderLittle, 4, 4, 4, llvm::Triple::loongarch32,
262 ArchSpec::eCore_loongarch32, "loongarch32"},
263 {eByteOrderLittle, 8, 4, 4, llvm::Triple::loongarch64,
264 ArchSpec::eCore_loongarch64, "loongarch64"},
265
266 {eByteOrderLittle, 4, 4, 4, llvm::Triple::UnknownArch,
267 ArchSpec::eCore_uknownMach32, "unknown-mach-32"},
268 {eByteOrderLittle, 8, 4, 4, llvm::Triple::UnknownArch,
269 ArchSpec::eCore_uknownMach64, "unknown-mach-64"},
270 {eByteOrderLittle, 4, 2, 4, llvm::Triple::arc, ArchSpec::eCore_arc, "arc"},
271
272 {eByteOrderLittle, 2, 2, 4, llvm::Triple::avr, ArchSpec::eCore_avr, "avr"},
273
274 {eByteOrderLittle, 4, 1, 4, llvm::Triple::wasm32, ArchSpec::eCore_wasm32,
275 "wasm32"},
284 AMD_GPU_CORE_DEF_R600(CYPRESS),
285 AMD_GPU_CORE_DEF_R600(JUNIPER),
286 AMD_GPU_CORE_DEF_R600(REDWOOD),
289 AMD_GPU_CORE_DEF_R600(CAICOS),
290 AMD_GPU_CORE_DEF_R600(CAYMAN),
292 AMD_GPU_CORE_DEF_GCN(GFX600),
293 AMD_GPU_CORE_DEF_GCN(GFX601),
294 AMD_GPU_CORE_DEF_GCN(GFX602),
295 AMD_GPU_CORE_DEF_GCN(GFX700),
296 AMD_GPU_CORE_DEF_GCN(GFX701),
297 AMD_GPU_CORE_DEF_GCN(GFX702),
298 AMD_GPU_CORE_DEF_GCN(GFX703),
299 AMD_GPU_CORE_DEF_GCN(GFX704),
300 AMD_GPU_CORE_DEF_GCN(GFX705),
301 AMD_GPU_CORE_DEF_GCN(GFX801),
302 AMD_GPU_CORE_DEF_GCN(GFX802),
303 AMD_GPU_CORE_DEF_GCN(GFX803),
304 AMD_GPU_CORE_DEF_GCN(GFX805),
305 AMD_GPU_CORE_DEF_GCN(GFX810),
306 AMD_GPU_CORE_DEF_GCN(GFX900),
307 AMD_GPU_CORE_DEF_GCN(GFX902),
308 AMD_GPU_CORE_DEF_GCN(GFX904),
309 AMD_GPU_CORE_DEF_GCN(GFX906),
310 AMD_GPU_CORE_DEF_GCN(GFX908),
311 AMD_GPU_CORE_DEF_GCN(GFX909),
312 AMD_GPU_CORE_DEF_GCN(GFX90A),
313 AMD_GPU_CORE_DEF_GCN(GFX90C),
314 AMD_GPU_CORE_DEF_GCN(GFX942),
315 AMD_GPU_CORE_DEF_GCN(GFX950),
316 AMD_GPU_CORE_DEF_GCN(GFX1010),
317 AMD_GPU_CORE_DEF_GCN(GFX1011),
318 AMD_GPU_CORE_DEF_GCN(GFX1012),
319 AMD_GPU_CORE_DEF_GCN(GFX1013),
320 AMD_GPU_CORE_DEF_GCN(GFX1030),
321 AMD_GPU_CORE_DEF_GCN(GFX1031),
322 AMD_GPU_CORE_DEF_GCN(GFX1032),
323 AMD_GPU_CORE_DEF_GCN(GFX1033),
324 AMD_GPU_CORE_DEF_GCN(GFX1034),
325 AMD_GPU_CORE_DEF_GCN(GFX1035),
326 AMD_GPU_CORE_DEF_GCN(GFX1036),
327 AMD_GPU_CORE_DEF_GCN(GFX1100),
328 AMD_GPU_CORE_DEF_GCN(GFX1101),
329 AMD_GPU_CORE_DEF_GCN(GFX1102),
330 AMD_GPU_CORE_DEF_GCN(GFX1103),
331 AMD_GPU_CORE_DEF_GCN(GFX1150),
332 AMD_GPU_CORE_DEF_GCN(GFX1151),
333 AMD_GPU_CORE_DEF_GCN(GFX1152),
334 AMD_GPU_CORE_DEF_GCN(GFX1153),
335 AMD_GPU_CORE_DEF_GCN(GFX1154),
336 AMD_GPU_CORE_DEF_GCN(GFX1170),
337 AMD_GPU_CORE_DEF_GCN(GFX1171),
338 AMD_GPU_CORE_DEF_GCN(GFX1172),
339 AMD_GPU_CORE_DEF_GCN(GFX1200),
340 AMD_GPU_CORE_DEF_GCN(GFX1201),
341 AMD_GPU_CORE_DEF_GCN(GFX1250_STRICT),
342 AMD_GPU_CORE_DEF_GCN(GFX1250),
343 AMD_GPU_CORE_DEF_GCN(GFX1251),
344 AMD_GPU_CORE_DEF_GCN(GFX1310),
345 AMD_GPU_CORE_DEF_GCN(GFX9_GENERIC),
346 AMD_GPU_CORE_DEF_GCN(GFX9_4_GENERIC),
347 AMD_GPU_CORE_DEF_GCN(GFX10_1_GENERIC),
348 AMD_GPU_CORE_DEF_GCN(GFX10_3_GENERIC),
349 AMD_GPU_CORE_DEF_GCN(GFX11_GENERIC),
350 AMD_GPU_CORE_DEF_GCN(GFX12_GENERIC),
351 AMD_GPU_CORE_DEF_GCN(GFX12_5_GENERIC),
352 AMD_GPU_CORE_DEF_GCN(GFX11_7_GENERIC),
353 AMD_GPU_CORE_DEF_GCN(GFX13_GENERIC),
354 {eByteOrderLittle, 8, 4, 16, llvm::Triple::amdgpu,
356};
357
358// Ensure that we have an entry in the g_core_definitions for each core. If you
359// comment out an entry above, you will need to comment out the corresponding
360// ArchSpec::Core enumeration.
361static_assert(sizeof(g_core_definitions) / sizeof(CoreDefinition) ==
363 "make sure we have one core definition for each core");
364
365template <int I> struct ArchSpecValidator : ArchSpecValidator<I + 1> {
366 static_assert(g_core_definitions[I].core == I,
367 "g_core_definitions order doesn't match Core enumeration");
368};
369
370template <> struct ArchSpecValidator<ArchSpec::kNumCores> {};
371
373
381
388
390 for (const auto &def : g_core_definitions)
391 list.AppendString(def.name);
392}
393
395 for (const auto &def : g_core_definitions)
396 request.TryCompleteCurrentArg(def.name);
397}
398
399#define CPU_ANY (UINT32_MAX)
400
401//===----------------------------------------------------------------------===//
402// A table that gets searched linearly for matches. This table is used to
403// convert cpu type and subtypes to architecture names, and to convert
404// architecture names to cpu types and subtypes. The ordering is important and
405// allows the precedence to be set when the table is built.
406#define SUBTYPE_MASK 0x00FFFFFFu
407
408// clang-format off
410 {ArchSpec::eCore_arm_generic, llvm::MachO::CPU_TYPE_ARM, CPU_ANY, UINT32_MAX, UINT32_MAX},
411 {ArchSpec::eCore_arm_generic, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_ALL, UINT32_MAX, SUBTYPE_MASK},
412 {ArchSpec::eCore_arm_armv4, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V4T, UINT32_MAX, SUBTYPE_MASK},
413 {ArchSpec::eCore_arm_armv4t, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V4T, UINT32_MAX, SUBTYPE_MASK},
414 {ArchSpec::eCore_arm_armv6, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V6, UINT32_MAX, SUBTYPE_MASK},
415 {ArchSpec::eCore_arm_armv6m, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V6M, UINT32_MAX, SUBTYPE_MASK},
416 {ArchSpec::eCore_arm_armv5, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V5TEJ, UINT32_MAX, SUBTYPE_MASK},
417 {ArchSpec::eCore_arm_armv5e, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V5TEJ, UINT32_MAX, SUBTYPE_MASK},
418 {ArchSpec::eCore_arm_armv5t, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V5TEJ, UINT32_MAX, SUBTYPE_MASK},
419 {ArchSpec::eCore_arm_xscale, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_XSCALE, UINT32_MAX, SUBTYPE_MASK},
420 {ArchSpec::eCore_arm_armv7, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7, UINT32_MAX, SUBTYPE_MASK},
421 {ArchSpec::eCore_arm_armv7f, llvm::MachO::CPU_TYPE_ARM, 10, UINT32_MAX, SUBTYPE_MASK},
422 {ArchSpec::eCore_arm_armv7s, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7S, UINT32_MAX, SUBTYPE_MASK},
423 {ArchSpec::eCore_arm_armv7k, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7K, UINT32_MAX, SUBTYPE_MASK},
424 {ArchSpec::eCore_arm_armv7m, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7M, UINT32_MAX, SUBTYPE_MASK},
425 {ArchSpec::eCore_arm_armv7em, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7EM, UINT32_MAX, SUBTYPE_MASK},
426 {ArchSpec::eCore_arm_armv8m_base, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V8M_BASE, UINT32_MAX, SUBTYPE_MASK},
427 {ArchSpec::eCore_arm_armv8m_main, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V8M_MAIN, UINT32_MAX, SUBTYPE_MASK},
428 {ArchSpec::eCore_arm_armv8_1m_main, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V8_1M_MAIN, UINT32_MAX, SUBTYPE_MASK},
429 {ArchSpec::eCore_arm_arm64e, llvm::MachO::CPU_TYPE_ARM64, llvm::MachO::CPU_SUBTYPE_ARM64E, UINT32_MAX, SUBTYPE_MASK},
430 {ArchSpec::eCore_arm_arm64ex1, llvm::MachO::CPU_TYPE_ARM64, llvm::MachO::CPU_SUBTYPE_ARM64E_X1, UINT32_MAX, SUBTYPE_MASK},
431 {ArchSpec::eCore_arm_arm64, llvm::MachO::CPU_TYPE_ARM64, llvm::MachO::CPU_SUBTYPE_ARM64_ALL, UINT32_MAX, SUBTYPE_MASK},
432 {ArchSpec::eCore_arm_arm64, llvm::MachO::CPU_TYPE_ARM64, llvm::MachO::CPU_SUBTYPE_ARM64_V8, UINT32_MAX, SUBTYPE_MASK},
433 {ArchSpec::eCore_arm_arm64, llvm::MachO::CPU_TYPE_ARM64, 13, UINT32_MAX, SUBTYPE_MASK},
434 {ArchSpec::eCore_arm_arm64_32, llvm::MachO::CPU_TYPE_ARM64_32, 0, UINT32_MAX, SUBTYPE_MASK},
435 {ArchSpec::eCore_arm_arm64_32, llvm::MachO::CPU_TYPE_ARM64_32, 1, UINT32_MAX, SUBTYPE_MASK},
436 {ArchSpec::eCore_arm_arm64, llvm::MachO::CPU_TYPE_ARM64, CPU_ANY, UINT32_MAX, SUBTYPE_MASK},
437 {ArchSpec::eCore_thumb, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_ALL, UINT32_MAX, SUBTYPE_MASK},
438 {ArchSpec::eCore_thumbv4t, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V4T, UINT32_MAX, SUBTYPE_MASK},
439 {ArchSpec::eCore_thumbv5, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V5, UINT32_MAX, SUBTYPE_MASK},
440 {ArchSpec::eCore_thumbv5e, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V5, UINT32_MAX, SUBTYPE_MASK},
441 {ArchSpec::eCore_thumbv6, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V6, UINT32_MAX, SUBTYPE_MASK},
442 {ArchSpec::eCore_thumbv6m, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V6M, UINT32_MAX, SUBTYPE_MASK},
443 {ArchSpec::eCore_thumbv7, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7, UINT32_MAX, SUBTYPE_MASK},
444 {ArchSpec::eCore_thumbv7f, llvm::MachO::CPU_TYPE_ARM, 10, UINT32_MAX, SUBTYPE_MASK},
445 {ArchSpec::eCore_thumbv7s, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7S, UINT32_MAX, SUBTYPE_MASK},
446 {ArchSpec::eCore_thumbv7k, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7K, UINT32_MAX, SUBTYPE_MASK},
447 {ArchSpec::eCore_thumbv7m, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7M, UINT32_MAX, SUBTYPE_MASK},
448 {ArchSpec::eCore_thumbv7em, llvm::MachO::CPU_TYPE_ARM, llvm::MachO::CPU_SUBTYPE_ARM_V7EM, UINT32_MAX, SUBTYPE_MASK},
449 {ArchSpec::eCore_ppc_generic, llvm::MachO::CPU_TYPE_POWERPC, CPU_ANY, UINT32_MAX, UINT32_MAX},
450 {ArchSpec::eCore_ppc_generic, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_ALL, UINT32_MAX, SUBTYPE_MASK},
451 {ArchSpec::eCore_ppc_ppc601, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_601, UINT32_MAX, SUBTYPE_MASK},
452 {ArchSpec::eCore_ppc_ppc602, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_602, UINT32_MAX, SUBTYPE_MASK},
453 {ArchSpec::eCore_ppc_ppc603, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_603, UINT32_MAX, SUBTYPE_MASK},
454 {ArchSpec::eCore_ppc_ppc603e, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_603e, UINT32_MAX, SUBTYPE_MASK},
455 {ArchSpec::eCore_ppc_ppc603ev, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_603ev, UINT32_MAX, SUBTYPE_MASK},
456 {ArchSpec::eCore_ppc_ppc604, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_604, UINT32_MAX, SUBTYPE_MASK},
457 {ArchSpec::eCore_ppc_ppc604e, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_604e, UINT32_MAX, SUBTYPE_MASK},
458 {ArchSpec::eCore_ppc_ppc620, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_620, UINT32_MAX, SUBTYPE_MASK},
459 {ArchSpec::eCore_ppc_ppc750, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_750, UINT32_MAX, SUBTYPE_MASK},
460 {ArchSpec::eCore_ppc_ppc7400, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_7400, UINT32_MAX, SUBTYPE_MASK},
461 {ArchSpec::eCore_ppc_ppc7450, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_7450, UINT32_MAX, SUBTYPE_MASK},
462 {ArchSpec::eCore_ppc_ppc970, llvm::MachO::CPU_TYPE_POWERPC, llvm::MachO::CPU_SUBTYPE_POWERPC_970, UINT32_MAX, SUBTYPE_MASK},
463 {ArchSpec::eCore_ppc64_generic, llvm::MachO::CPU_TYPE_POWERPC64, llvm::MachO::CPU_SUBTYPE_POWERPC_ALL, UINT32_MAX, SUBTYPE_MASK},
464 {ArchSpec::eCore_ppc64le_generic, llvm::MachO::CPU_TYPE_POWERPC64, CPU_ANY, UINT32_MAX, SUBTYPE_MASK},
465 {ArchSpec::eCore_ppc64_ppc970_64, llvm::MachO::CPU_TYPE_POWERPC64, 100, UINT32_MAX, SUBTYPE_MASK},
466 {ArchSpec::eCore_x86_32_i386, llvm::MachO::CPU_TYPE_I386, llvm::MachO::CPU_SUBTYPE_I386_ALL, UINT32_MAX, SUBTYPE_MASK},
467 {ArchSpec::eCore_x86_32_i486, llvm::MachO::CPU_TYPE_I386, llvm::MachO::CPU_SUBTYPE_486, UINT32_MAX, SUBTYPE_MASK},
468 {ArchSpec::eCore_x86_32_i486sx, llvm::MachO::CPU_TYPE_I386, llvm::MachO::CPU_SUBTYPE_486SX, UINT32_MAX, SUBTYPE_MASK},
469 {ArchSpec::eCore_x86_32_i386, llvm::MachO::CPU_TYPE_I386, CPU_ANY, UINT32_MAX, UINT32_MAX},
470 {ArchSpec::eCore_x86_64_x86_64, llvm::MachO::CPU_TYPE_X86_64, llvm::MachO::CPU_SUBTYPE_X86_64_ALL, UINT32_MAX, SUBTYPE_MASK},
471 {ArchSpec::eCore_x86_64_x86_64, llvm::MachO::CPU_TYPE_X86_64, llvm::MachO::CPU_SUBTYPE_X86_ARCH1, UINT32_MAX, SUBTYPE_MASK},
472 {ArchSpec::eCore_x86_64_x86_64h, llvm::MachO::CPU_TYPE_X86_64, llvm::MachO::CPU_SUBTYPE_X86_64_H, UINT32_MAX, SUBTYPE_MASK},
473 {ArchSpec::eCore_x86_64_x86_64, llvm::MachO::CPU_TYPE_X86_64, CPU_ANY, UINT32_MAX, UINT32_MAX},
474 {ArchSpec::eCore_riscv32, llvm::MachO::CPU_TYPE_RISCV, llvm::MachO::CPU_SUBTYPE_RISCV_ALL, UINT32_MAX, SUBTYPE_MASK},
475 {ArchSpec::eCore_riscv32, llvm::MachO::CPU_TYPE_RISCV, CPU_ANY, UINT32_MAX, SUBTYPE_MASK},
476 // Catch any unknown mach architectures so we can always use the object and symbol mach-o files
477 {ArchSpec::eCore_uknownMach32, 0, 0, 0xFF000000u, 0x00000000u},
478 {ArchSpec::eCore_uknownMach64, llvm::MachO::CPU_ARCH_ABI64, 0, 0xFF000000u, 0x00000000u}
479};
480// clang-format on
481
485
486#define AMD_GPU_ARCH_DEF_R600(sub) \
487 {ArchSpec::eCore_amd_gpu_r600_##sub, llvm::ELF::EM_AMDGPU, \
488 llvm::ELF::EF_AMDGPU_MACH_R600_##sub}
489#define AMD_GPU_ARCH_DEF_GCN(sub) \
490 {ArchSpec::eCore_amd_gpu_gcn_##sub, llvm::ELF::EM_AMDGPU, \
491 llvm::ELF::EF_AMDGPU_MACH_AMDGCN_##sub}
492//===----------------------------------------------------------------------===//
493// A table that gets searched linearly for matches. This table is used to
494// convert cpu type and subtypes to architecture names, and to convert
495// architecture names to cpu types and subtypes. The ordering is important and
496// allows the precedence to be set when the table is built.
497// clang-format off
499 {ArchSpec::eCore_sparc_generic, llvm::ELF::EM_SPARC }, // Sparc
500 {ArchSpec::eCore_x86_32_i386, llvm::ELF::EM_386 }, // Intel 80386
501 {ArchSpec::eCore_x86_32_i486, llvm::ELF::EM_IAMCU }, // Intel MCU // FIXME: is this correct?
502 {ArchSpec::eCore_ppc_generic, llvm::ELF::EM_PPC }, // PowerPC
503 {ArchSpec::eCore_ppc64le_generic, llvm::ELF::EM_PPC64, ArchSpec::eCore_ppc64le_generic}, // PowerPC64le
504 {ArchSpec::eCore_ppc64_generic, llvm::ELF::EM_PPC64, ArchSpec::eCore_ppc64_generic}, // PowerPC64
505 {ArchSpec::eCore_arm_generic, llvm::ELF::EM_ARM }, // ARM
506 {ArchSpec::eCore_arm_aarch64, llvm::ELF::EM_AARCH64 }, // ARM64
507 {ArchSpec::eCore_s390x_generic, llvm::ELF::EM_S390 }, // SystemZ
508 {ArchSpec::eCore_sparc9_generic, llvm::ELF::EM_SPARCV9 }, // SPARC V9
509 {ArchSpec::eCore_x86_64_x86_64, llvm::ELF::EM_X86_64 }, // AMD64
510 {ArchSpec::eCore_mips32, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32}, // mips32
511 {ArchSpec::eCore_mips32r2, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32r2}, // mips32r2
512 {ArchSpec::eCore_mips32r6, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32r6}, // mips32r6
513 {ArchSpec::eCore_mips32el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32el}, // mips32el
514 {ArchSpec::eCore_mips32r2el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32r2el}, // mips32r2el
515 {ArchSpec::eCore_mips32r6el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips32r6el}, // mips32r6el
517 {ArchSpec::eCore_mips64r2, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips64r2}, // mips64r2
518 {ArchSpec::eCore_mips64r6, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips64r6}, // mips64r6
519 {ArchSpec::eCore_mips64el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips64el}, // mips64el
520 {ArchSpec::eCore_mips64r2el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips64r2el}, // mips64r2el
521 {ArchSpec::eCore_mips64r6el, llvm::ELF::EM_MIPS, ArchSpec::eMIPSSubType_mips64r6el}, // mips64r6el
522 {ArchSpec::eCore_msp430, llvm::ELF::EM_MSP430 }, // MSP430
523 {ArchSpec::eCore_hexagon_generic, llvm::ELF::EM_HEXAGON }, // HEXAGON
524 {ArchSpec::eCore_arc, llvm::ELF::EM_ARC_COMPACT2}, // ARC
525 {ArchSpec::eCore_avr, llvm::ELF::EM_AVR }, // AVR
526 {ArchSpec::eCore_riscv32, llvm::ELF::EM_RISCV, ArchSpec::eRISCVSubType_riscv32}, // riscv32
527 {ArchSpec::eCore_riscv64, llvm::ELF::EM_RISCV, ArchSpec::eRISCVSubType_riscv64}, // riscv64
528 {ArchSpec::eCore_loongarch32, llvm::ELF::EM_LOONGARCH, ArchSpec::eLoongArchSubType_loongarch32}, // loongarch32
529 {ArchSpec::eCore_loongarch64, llvm::ELF::EM_LOONGARCH, ArchSpec::eLoongArchSubType_loongarch64}, // loongarch64
538 AMD_GPU_ARCH_DEF_R600(CYPRESS),
539 AMD_GPU_ARCH_DEF_R600(JUNIPER),
540 AMD_GPU_ARCH_DEF_R600(REDWOOD),
543 AMD_GPU_ARCH_DEF_R600(CAICOS),
544 AMD_GPU_ARCH_DEF_R600(CAYMAN),
546 AMD_GPU_ARCH_DEF_GCN(GFX600),
547 AMD_GPU_ARCH_DEF_GCN(GFX601),
548 AMD_GPU_ARCH_DEF_GCN(GFX602),
549 AMD_GPU_ARCH_DEF_GCN(GFX700),
550 AMD_GPU_ARCH_DEF_GCN(GFX701),
551 AMD_GPU_ARCH_DEF_GCN(GFX702),
552 AMD_GPU_ARCH_DEF_GCN(GFX703),
553 AMD_GPU_ARCH_DEF_GCN(GFX704),
554 AMD_GPU_ARCH_DEF_GCN(GFX705),
555 AMD_GPU_ARCH_DEF_GCN(GFX801),
556 AMD_GPU_ARCH_DEF_GCN(GFX802),
557 AMD_GPU_ARCH_DEF_GCN(GFX803),
558 AMD_GPU_ARCH_DEF_GCN(GFX805),
559 AMD_GPU_ARCH_DEF_GCN(GFX810),
560 AMD_GPU_ARCH_DEF_GCN(GFX900),
561 AMD_GPU_ARCH_DEF_GCN(GFX902),
562 AMD_GPU_ARCH_DEF_GCN(GFX904),
563 AMD_GPU_ARCH_DEF_GCN(GFX906),
564 AMD_GPU_ARCH_DEF_GCN(GFX908),
565 AMD_GPU_ARCH_DEF_GCN(GFX909),
566 AMD_GPU_ARCH_DEF_GCN(GFX90A),
567 AMD_GPU_ARCH_DEF_GCN(GFX90C),
568 AMD_GPU_ARCH_DEF_GCN(GFX942),
569 AMD_GPU_ARCH_DEF_GCN(GFX950),
570 AMD_GPU_ARCH_DEF_GCN(GFX1010),
571 AMD_GPU_ARCH_DEF_GCN(GFX1011),
572 AMD_GPU_ARCH_DEF_GCN(GFX1012),
573 AMD_GPU_ARCH_DEF_GCN(GFX1013),
574 AMD_GPU_ARCH_DEF_GCN(GFX1030),
575 AMD_GPU_ARCH_DEF_GCN(GFX1031),
576 AMD_GPU_ARCH_DEF_GCN(GFX1032),
577 AMD_GPU_ARCH_DEF_GCN(GFX1033),
578 AMD_GPU_ARCH_DEF_GCN(GFX1034),
579 AMD_GPU_ARCH_DEF_GCN(GFX1035),
580 AMD_GPU_ARCH_DEF_GCN(GFX1036),
581 AMD_GPU_ARCH_DEF_GCN(GFX1100),
582 AMD_GPU_ARCH_DEF_GCN(GFX1101),
583 AMD_GPU_ARCH_DEF_GCN(GFX1102),
584 AMD_GPU_ARCH_DEF_GCN(GFX1103),
585 AMD_GPU_ARCH_DEF_GCN(GFX1150),
586 AMD_GPU_ARCH_DEF_GCN(GFX1151),
587 AMD_GPU_ARCH_DEF_GCN(GFX1152),
588 AMD_GPU_ARCH_DEF_GCN(GFX1153),
589 AMD_GPU_ARCH_DEF_GCN(GFX1154),
590 AMD_GPU_ARCH_DEF_GCN(GFX1170),
591 AMD_GPU_ARCH_DEF_GCN(GFX1171),
592 AMD_GPU_ARCH_DEF_GCN(GFX1172),
593 AMD_GPU_ARCH_DEF_GCN(GFX1200),
594 AMD_GPU_ARCH_DEF_GCN(GFX1201),
595 AMD_GPU_ARCH_DEF_GCN(GFX1250_STRICT),
596 AMD_GPU_ARCH_DEF_GCN(GFX1250),
597 AMD_GPU_ARCH_DEF_GCN(GFX1251),
598 AMD_GPU_ARCH_DEF_GCN(GFX1310),
599 AMD_GPU_ARCH_DEF_GCN(GFX9_GENERIC),
600 AMD_GPU_ARCH_DEF_GCN(GFX9_4_GENERIC),
601 AMD_GPU_ARCH_DEF_GCN(GFX10_1_GENERIC),
602 AMD_GPU_ARCH_DEF_GCN(GFX10_3_GENERIC),
603 AMD_GPU_ARCH_DEF_GCN(GFX11_GENERIC),
604 AMD_GPU_ARCH_DEF_GCN(GFX12_GENERIC),
605 AMD_GPU_ARCH_DEF_GCN(GFX12_5_GENERIC),
606 AMD_GPU_ARCH_DEF_GCN(GFX11_7_GENERIC),
607 AMD_GPU_ARCH_DEF_GCN(GFX13_GENERIC),
608 // Any AMDGPU object with no recognized model resolves here.
609 {ArchSpec::eCore_amd_gpu_unknown, llvm::ELF::EM_AMDGPU},
610};
611// clang-format on
612
615 std::size(g_elf_arch_entries),
617 "elf",
618};
619// clang-format off
621 {ArchSpec::eCore_x86_32_i386, llvm::COFF::IMAGE_FILE_MACHINE_I386}, // Intel 80x86
622 {ArchSpec::eCore_ppc_generic, llvm::COFF::IMAGE_FILE_MACHINE_POWERPC}, // PowerPC
623 {ArchSpec::eCore_ppc_generic, llvm::COFF::IMAGE_FILE_MACHINE_POWERPCFP}, // PowerPC (with FPU)
624 {ArchSpec::eCore_arm_generic, llvm::COFF::IMAGE_FILE_MACHINE_ARM}, // ARM
625 {ArchSpec::eCore_arm_armv7, llvm::COFF::IMAGE_FILE_MACHINE_ARMNT}, // ARMv7
626 {ArchSpec::eCore_thumb, llvm::COFF::IMAGE_FILE_MACHINE_THUMB}, // ARMv7
627 {ArchSpec::eCore_x86_64_x86_64, llvm::COFF::IMAGE_FILE_MACHINE_AMD64}, // AMD64
628 {ArchSpec::eCore_arm_arm64, llvm::COFF::IMAGE_FILE_MACHINE_ARM64} // ARM64
629};
630// clang-format on
631
634 std::size(g_coff_arch_entries),
636 "pe-coff",
637};
638
639// clang-format off
641 {ArchSpec::eCore_ppc_generic, llvm::XCOFF::TCPU_PPC},
642 {ArchSpec::eCore_ppc64_generic, llvm::XCOFF::TCPU_PPC64}
643};
644// clang-format on
645
648 std::size(g_xcoff_arch_entries),
650 "xcoff",
651};
652
653//===----------------------------------------------------------------------===//
654// Table of all ArchDefinitions
657
658//===----------------------------------------------------------------------===//
659// Static helper functions.
660
661// Get the architecture definition for a given object type.
663 for (const ArchDefinition *def : g_arch_definitions) {
664 if (def->type == arch_type)
665 return def;
666 }
667 return nullptr;
668}
669
670// Get an architecture definition by name.
671static const CoreDefinition *FindCoreDefinition(llvm::StringRef name) {
672 for (const auto &def : g_core_definitions) {
673 if (name.equals_insensitive(def.name))
674 return &def;
675 }
676 return nullptr;
677}
678
680 if (core < std::size(g_core_definitions))
681 return &g_core_definitions[core];
682 return nullptr;
683}
684
685// Get a definition entry by cpu type and subtype.
686static const ArchDefinitionEntry *
687FindArchDefinitionEntry(const ArchDefinition *def, uint32_t cpu, uint32_t sub) {
688 if (def == nullptr)
689 return nullptr;
690
691 const ArchDefinitionEntry *entries = def->entries;
692 for (size_t i = 0; i < def->num_entries; ++i) {
693 if (entries[i].cpu == (cpu & entries[i].cpu_mask))
694 if (entries[i].sub == (sub & entries[i].sub_mask))
695 return &entries[i];
696 }
697 return nullptr;
698}
699
700static const ArchDefinitionEntry *
702 if (def == nullptr)
703 return nullptr;
704
705 const ArchDefinitionEntry *entries = def->entries;
706 for (size_t i = 0; i < def->num_entries; ++i) {
707 if (entries[i].core == core)
708 return &entries[i];
709 }
710 return nullptr;
711}
712
713static llvm::StringRef GetAMDGPUVariantName(uint32_t sub);
714
715//===----------------------------------------------------------------------===//
716// Constructors and destructors.
717
718ArchSpec::ArchSpec() = default;
719
720ArchSpec::ArchSpec(const char *triple_cstr) {
721 if (triple_cstr)
722 SetTriple(triple_cstr);
723}
724
725ArchSpec::ArchSpec(llvm::StringRef triple_str) { SetTriple(triple_str); }
726
727ArchSpec::ArchSpec(const llvm::Triple &triple) { SetTriple(triple); }
728
729ArchSpec::ArchSpec(ArchitectureType arch_type, uint32_t cpu, uint32_t subtype) {
730 SetArchitecture(arch_type, cpu, subtype);
731}
732
733ArchSpec::~ArchSpec() = default;
734
736 m_triple = llvm::Triple();
739 m_flags = 0;
740}
741
742//===----------------------------------------------------------------------===//
743// Predicates.
744
745const char *ArchSpec::GetArchitectureName() const {
746 const CoreDefinition *core_def = FindCoreDefinition(m_core);
747 if (core_def)
748 return core_def->name;
749 return "unknown";
750}
751
752bool ArchSpec::IsMIPS() const { return GetTriple().isMIPS(); }
753
754bool ArchSpec::IsNVPTX() const { return GetTriple().isNVPTX(); }
755
756std::string ArchSpec::GetTargetABI() const {
757
758 std::string abi;
759
760 if (IsMIPS()) {
761 switch (GetFlags() & ArchSpec::eMIPSABI_mask) {
763 abi = "n64";
764 return abi;
766 abi = "n32";
767 return abi;
769 abi = "o32";
770 return abi;
771 default:
772 return abi;
773 }
774 }
775 return abi;
776}
777
778void ArchSpec::SetFlags(const std::string &elf_abi) {
779
780 uint32_t flag = GetFlags();
781 if (IsMIPS()) {
782 if (elf_abi == "n64")
784 else if (elf_abi == "n32")
786 else if (elf_abi == "o32")
788 }
789 SetFlags(flag);
790}
791
792std::string ArchSpec::GetClangTargetCPU() const {
793 std::string cpu;
794 if (IsMIPS()) {
795 switch (m_core) {
798 cpu = "mips32";
799 break;
802 cpu = "mips32r2";
803 break;
806 cpu = "mips32r3";
807 break;
810 cpu = "mips32r5";
811 break;
814 cpu = "mips32r6";
815 break;
818 cpu = "mips64";
819 break;
822 cpu = "mips64r2";
823 break;
826 cpu = "mips64r3";
827 break;
830 cpu = "mips64r5";
831 break;
834 cpu = "mips64r6";
835 break;
836 default:
837 break;
838 }
839 }
840
841 if (GetTriple().isARM())
842 cpu = llvm::ARM::getARMCPUForArch(GetTriple(), "").str();
843
844 if (GetTriple().isAMDGPU()) {
845 uint32_t sub = GetElfCPUSubType();
846 if (sub != LLDB_INVALID_CPUTYPE)
847 cpu = GetAMDGPUVariantName(sub);
848 }
849 return cpu;
850}
851
852static const ArchDefinitionEntry *
854 if (const CoreDefinition *core_def = FindCoreDefinition(core))
855 return FindArchDefinitionEntry(def, core_def->core);
856
857 return nullptr;
858}
859
860static uint32_t GetCPUType(const ArchDefinition *def, ArchSpec::Core core) {
861 if (const ArchDefinitionEntry *arch_def =
863 return arch_def->cpu;
865}
866
867static uint32_t GetCPUSubType(const ArchDefinition *def, ArchSpec::Core core) {
868 if (const ArchDefinitionEntry *arch_def =
870 return arch_def->sub;
872}
873
876}
877
881
884}
885
886llvm::Triple::ArchType ArchSpec::GetMachine() const {
887 const CoreDefinition *core_def = FindCoreDefinition(m_core);
888 if (core_def)
889 return core_def->machine;
890
891 return llvm::Triple::UnknownArch;
892}
893
895 const CoreDefinition *core_def = FindCoreDefinition(m_core);
896 if (core_def) {
897 if (core_def->machine == llvm::Triple::mips64 ||
898 core_def->machine == llvm::Triple::mips64el) {
899 // For N32/O32 applications Address size is 4 bytes.
901 return 4;
902 }
903 return core_def->addr_byte_size;
904 }
905 return 0;
906}
907
909 const CoreDefinition *core_def = FindCoreDefinition(m_core);
910 if (core_def)
911 return core_def->default_byte_order;
912 return eByteOrderInvalid;
913}
914
916 switch (m_triple.getArch()) {
917 default:
918 return true;
919
920 case llvm::Triple::aarch64:
921 case llvm::Triple::aarch64_32:
922 case llvm::Triple::aarch64_be:
923 case llvm::Triple::arm:
924 case llvm::Triple::armeb:
925 case llvm::Triple::thumb:
926 case llvm::Triple::thumbeb:
927 return m_triple.isOSDarwin() || m_triple.isOSWindows();
928
929 case llvm::Triple::ppc:
930 case llvm::Triple::ppc64:
931 return m_triple.isOSDarwin();
932
933 case llvm::Triple::riscv64:
934 case llvm::Triple::riscv32:
935 case llvm::Triple::ppc64le:
936 case llvm::Triple::systemz:
937 case llvm::Triple::xcore:
938 case llvm::Triple::arc:
939 return false;
940 }
941}
942
948
949//===----------------------------------------------------------------------===//
950// Mutators.
951
952bool ArchSpec::SetTriple(const llvm::Triple &triple) {
953 m_triple = triple;
954 UpdateCore();
955 return IsValid();
956}
957
958bool lldb_private::ParseMachCPUDashSubtypeTriple(llvm::StringRef triple_str,
959 ArchSpec &arch) {
960 // Accept "12-10" or "12.10" as cpu type/subtype
961 if (triple_str.empty())
962 return false;
963
964 size_t pos = triple_str.find_first_of("-.");
965 if (pos == llvm::StringRef::npos)
966 return false;
967
968 llvm::StringRef cpu_str = triple_str.substr(0, pos);
969 llvm::StringRef remainder = triple_str.substr(pos + 1);
970 if (cpu_str.empty() || remainder.empty())
971 return false;
972
973 llvm::StringRef sub_str;
974 llvm::StringRef vendor;
975 llvm::StringRef os;
976 std::tie(sub_str, remainder) = remainder.split('-');
977 std::tie(vendor, os) = remainder.split('-');
978
979 uint32_t cpu = 0;
980 uint32_t sub = 0;
981 if (cpu_str.getAsInteger(10, cpu) || sub_str.getAsInteger(10, sub))
982 return false;
983
984 if (!arch.SetArchitecture(eArchTypeMachO, cpu, sub))
985 return false;
986 if (!vendor.empty() && !os.empty()) {
987 arch.GetTriple().setVendorName(vendor);
988 arch.GetTriple().setOSName(os);
989 }
990
991 return true;
992}
993
994bool ArchSpec::SetTriple(llvm::StringRef triple) {
995 if (triple.empty()) {
996 Clear();
997 return false;
998 }
999
1000 if (ParseMachCPUDashSubtypeTriple(triple, *this))
1001 return true;
1002
1003 SetTriple(llvm::Triple(llvm::Triple::normalize(triple)));
1004 return IsValid();
1005}
1006
1007bool ArchSpec::ContainsOnlyArch(const llvm::Triple &normalized_triple) {
1008 return !normalized_triple.getArchName().empty() &&
1009 normalized_triple.getOSName().empty() &&
1010 normalized_triple.getVendorName().empty() &&
1011 normalized_triple.getEnvironmentName().empty();
1012}
1013
1014void ArchSpec::MergeFrom(const ArchSpec &other) {
1015 // ios-macabi always wins over macosx.
1016 if ((GetTriple().getOS() == llvm::Triple::MacOSX ||
1017 GetTriple().getOS() == llvm::Triple::UnknownOS) &&
1018 other.GetTriple().getOS() == llvm::Triple::IOS &&
1019 other.GetTriple().getEnvironment() == llvm::Triple::MacABI) {
1020 (*this) = other;
1021 return;
1022 }
1023
1025 GetTriple().setVendor(other.GetTriple().getVendor());
1027 GetTriple().setOS(other.GetTriple().getOS());
1028 if (GetTriple().getArch() == llvm::Triple::UnknownArch) {
1029 GetTriple().setArch(other.GetTriple().getArch());
1030
1031 // MachO unknown64 isn't really invalid as the debugger can still obtain
1032 // information from the binary, e.g. line tables. As such, we don't update
1033 // the core here.
1034 if (other.GetCore() != eCore_uknownMach64)
1035 UpdateCore();
1036 }
1039 GetTriple().setEnvironment(other.GetTriple().getEnvironment());
1040 }
1041 // If this and other are both arm ArchSpecs and this ArchSpec is a generic
1042 // "some kind of arm" spec but the other ArchSpec is a specific arm core,
1043 // adopt the specific arm core.
1044 if (GetTriple().getArch() == llvm::Triple::arm &&
1045 other.GetTriple().getArch() == llvm::Triple::arm &&
1048 m_core = other.GetCore();
1049 CoreUpdated(false);
1050 }
1051 if (GetFlags() == 0) {
1052 SetFlags(other.GetFlags());
1053 }
1054}
1055
1056static llvm::StringRef GetAMDGPUVariantName(uint32_t sub) {
1057 switch (sub) {
1058 case llvm::ELF::EF_AMDGPU_MACH_R600_R600:
1059 return "r600";
1060 case llvm::ELF::EF_AMDGPU_MACH_R600_R630:
1061 return "r630";
1062 case llvm::ELF::EF_AMDGPU_MACH_R600_RS880:
1063 return "rs880";
1064 case llvm::ELF::EF_AMDGPU_MACH_R600_RV670:
1065 return "rv670";
1066 case llvm::ELF::EF_AMDGPU_MACH_R600_RV710:
1067 return "rv710";
1068 case llvm::ELF::EF_AMDGPU_MACH_R600_RV730:
1069 return "rv730";
1070 case llvm::ELF::EF_AMDGPU_MACH_R600_RV770:
1071 return "rv770";
1072 case llvm::ELF::EF_AMDGPU_MACH_R600_CEDAR:
1073 return "cedar";
1074 case llvm::ELF::EF_AMDGPU_MACH_R600_CYPRESS:
1075 return "cypress";
1076 case llvm::ELF::EF_AMDGPU_MACH_R600_JUNIPER:
1077 return "juniper";
1078 case llvm::ELF::EF_AMDGPU_MACH_R600_REDWOOD:
1079 return "redwood";
1080 case llvm::ELF::EF_AMDGPU_MACH_R600_SUMO:
1081 return "sumo";
1082 case llvm::ELF::EF_AMDGPU_MACH_R600_BARTS:
1083 return "barts";
1084 case llvm::ELF::EF_AMDGPU_MACH_R600_CAICOS:
1085 return "caicos";
1086 case llvm::ELF::EF_AMDGPU_MACH_R600_CAYMAN:
1087 return "cayman";
1088 case llvm::ELF::EF_AMDGPU_MACH_R600_TURKS:
1089 return "turks";
1090 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX600:
1091 return "gfx600";
1092 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX601:
1093 return "gfx601";
1094 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX602:
1095 return "gfx602";
1096 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX700:
1097 return "gfx700";
1098 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX701:
1099 return "gfx701";
1100 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX702:
1101 return "gfx702";
1102 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX703:
1103 return "gfx703";
1104 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX704:
1105 return "gfx704";
1106 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX705:
1107 return "gfx705";
1108 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX801:
1109 return "gfx801";
1110 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX802:
1111 return "gfx802";
1112 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX803:
1113 return "gfx803";
1114 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX805:
1115 return "gfx805";
1116 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX810:
1117 return "gfx810";
1118 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX900:
1119 return "gfx900";
1120 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX902:
1121 return "gfx902";
1122 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX904:
1123 return "gfx904";
1124 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX906:
1125 return "gfx906";
1126 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX908:
1127 return "gfx908";
1128 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX909:
1129 return "gfx909";
1130 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX90A:
1131 return "gfx90a";
1132 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX90C:
1133 return "gfx90c";
1134 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX942:
1135 return "gfx942";
1136 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX950:
1137 return "gfx950";
1138 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1010:
1139 return "gfx1010";
1140 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1011:
1141 return "gfx1011";
1142 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1012:
1143 return "gfx1012";
1144 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1013:
1145 return "gfx1013";
1146 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1030:
1147 return "gfx1030";
1148 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1031:
1149 return "gfx1031";
1150 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1032:
1151 return "gfx1032";
1152 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1033:
1153 return "gfx1033";
1154 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1034:
1155 return "gfx1034";
1156 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1035:
1157 return "gfx1035";
1158 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1036:
1159 return "gfx1036";
1160 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1100:
1161 return "gfx1100";
1162 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1101:
1163 return "gfx1101";
1164 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1102:
1165 return "gfx1102";
1166 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1103:
1167 return "gfx1103";
1168 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1150:
1169 return "gfx1150";
1170 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1151:
1171 return "gfx1151";
1172 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1152:
1173 return "gfx1152";
1174 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1153:
1175 return "gfx1153";
1176 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1154:
1177 return "gfx1154";
1178 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1170:
1179 return "gfx1170";
1180 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1171:
1181 return "gfx1171";
1182 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1172:
1183 return "gfx1172";
1184 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1200:
1185 return "gfx1200";
1186 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1201:
1187 return "gfx1201";
1188 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1250_STRICT:
1189 return "gfx1250-strict";
1190 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1250:
1191 return "gfx1250";
1192 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1251:
1193 return "gfx1251";
1194 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX1310:
1195 return "gfx1310";
1196 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX9_GENERIC:
1197 return "gfx9-generic";
1198 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX9_4_GENERIC:
1199 return "gfx9-4-generic";
1200 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX10_1_GENERIC:
1201 return "gfx10-1-generic";
1202 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX10_3_GENERIC:
1203 return "gfx10-3-generic";
1204 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX11_GENERIC:
1205 return "gfx11-generic";
1206 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX12_GENERIC:
1207 return "gfx12-generic";
1208 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX12_5_GENERIC:
1209 return "gfx12-5-generic";
1210 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX11_7_GENERIC:
1211 return "gfx11-7-generic";
1212 case llvm::ELF::EF_AMDGPU_MACH_AMDGCN_GFX13_GENERIC:
1213 return "gfx13-generic";
1214 default:
1215 break;
1216 }
1217 return llvm::StringRef("unknown");
1218}
1219
1220static ArchSpec::Core GetAMDGPUVariantToCoreR600(llvm::StringRef core_name) {
1221 return llvm::StringSwitch<ArchSpec::Core>(core_name)
1230 .Case("cypress", ArchSpec::eCore_amd_gpu_r600_CYPRESS)
1231 .Case("juniper", ArchSpec::eCore_amd_gpu_r600_JUNIPER)
1232 .Case("redwood", ArchSpec::eCore_amd_gpu_r600_REDWOOD)
1239}
1240
1241static ArchSpec::Core GetAMDGPUVariantToCoreGCN(llvm::StringRef core_name) {
1242 return llvm::StringSwitch<ArchSpec::Core>(core_name)
1243 .Case("gfx600", ArchSpec::eCore_amd_gpu_gcn_GFX600)
1244 .Case("gfx601", ArchSpec::eCore_amd_gpu_gcn_GFX601)
1245 .Case("gfx602", ArchSpec::eCore_amd_gpu_gcn_GFX602)
1246 .Case("gfx700", ArchSpec::eCore_amd_gpu_gcn_GFX700)
1247 .Case("gfx701", ArchSpec::eCore_amd_gpu_gcn_GFX701)
1248 .Case("gfx702", ArchSpec::eCore_amd_gpu_gcn_GFX702)
1249 .Case("gfx703", ArchSpec::eCore_amd_gpu_gcn_GFX703)
1250 .Case("gfx704", ArchSpec::eCore_amd_gpu_gcn_GFX704)
1251 .Case("gfx705", ArchSpec::eCore_amd_gpu_gcn_GFX705)
1252 .Case("gfx801", ArchSpec::eCore_amd_gpu_gcn_GFX801)
1253 .Case("gfx802", ArchSpec::eCore_amd_gpu_gcn_GFX802)
1254 .Case("gfx803", ArchSpec::eCore_amd_gpu_gcn_GFX803)
1255 .Case("gfx805", ArchSpec::eCore_amd_gpu_gcn_GFX805)
1256 .Case("gfx810", ArchSpec::eCore_amd_gpu_gcn_GFX810)
1257 .Case("gfx900", ArchSpec::eCore_amd_gpu_gcn_GFX900)
1258 .Case("gfx902", ArchSpec::eCore_amd_gpu_gcn_GFX902)
1259 .Case("gfx904", ArchSpec::eCore_amd_gpu_gcn_GFX904)
1260 .Case("gfx906", ArchSpec::eCore_amd_gpu_gcn_GFX906)
1261 .Case("gfx908", ArchSpec::eCore_amd_gpu_gcn_GFX908)
1262 .Case("gfx909", ArchSpec::eCore_amd_gpu_gcn_GFX909)
1263 .Case("gfx90a", ArchSpec::eCore_amd_gpu_gcn_GFX90A)
1264 .Case("gfx90c", ArchSpec::eCore_amd_gpu_gcn_GFX90C)
1265 .Case("gfx942", ArchSpec::eCore_amd_gpu_gcn_GFX942)
1266 .Case("gfx950", ArchSpec::eCore_amd_gpu_gcn_GFX950)
1267 .Case("gfx1010", ArchSpec::eCore_amd_gpu_gcn_GFX1010)
1268 .Case("gfx1011", ArchSpec::eCore_amd_gpu_gcn_GFX1011)
1269 .Case("gfx1012", ArchSpec::eCore_amd_gpu_gcn_GFX1012)
1270 .Case("gfx1013", ArchSpec::eCore_amd_gpu_gcn_GFX1013)
1271 .Case("gfx1030", ArchSpec::eCore_amd_gpu_gcn_GFX1030)
1272 .Case("gfx1031", ArchSpec::eCore_amd_gpu_gcn_GFX1031)
1273 .Case("gfx1032", ArchSpec::eCore_amd_gpu_gcn_GFX1032)
1274 .Case("gfx1033", ArchSpec::eCore_amd_gpu_gcn_GFX1033)
1275 .Case("gfx1034", ArchSpec::eCore_amd_gpu_gcn_GFX1034)
1276 .Case("gfx1035", ArchSpec::eCore_amd_gpu_gcn_GFX1035)
1277 .Case("gfx1036", ArchSpec::eCore_amd_gpu_gcn_GFX1036)
1278 .Case("gfx1100", ArchSpec::eCore_amd_gpu_gcn_GFX1100)
1279 .Case("gfx1101", ArchSpec::eCore_amd_gpu_gcn_GFX1101)
1280 .Case("gfx1102", ArchSpec::eCore_amd_gpu_gcn_GFX1102)
1281 .Case("gfx1103", ArchSpec::eCore_amd_gpu_gcn_GFX1103)
1282 .Case("gfx1150", ArchSpec::eCore_amd_gpu_gcn_GFX1150)
1283 .Case("gfx1151", ArchSpec::eCore_amd_gpu_gcn_GFX1151)
1284 .Case("gfx1152", ArchSpec::eCore_amd_gpu_gcn_GFX1152)
1285 .Case("gfx1153", ArchSpec::eCore_amd_gpu_gcn_GFX1153)
1286 .Case("gfx1154", ArchSpec::eCore_amd_gpu_gcn_GFX1154)
1287 .Case("gfx1170", ArchSpec::eCore_amd_gpu_gcn_GFX1170)
1288 .Case("gfx1171", ArchSpec::eCore_amd_gpu_gcn_GFX1171)
1289 .Case("gfx1172", ArchSpec::eCore_amd_gpu_gcn_GFX1172)
1290 .Case("gfx1200", ArchSpec::eCore_amd_gpu_gcn_GFX1200)
1291 .Case("gfx1201", ArchSpec::eCore_amd_gpu_gcn_GFX1201)
1292 .Case("gfx1250-strict", ArchSpec::eCore_amd_gpu_gcn_GFX1250_STRICT)
1293 .Case("gfx1250", ArchSpec::eCore_amd_gpu_gcn_GFX1250)
1294 .Case("gfx1251", ArchSpec::eCore_amd_gpu_gcn_GFX1251)
1295 .Case("gfx1310", ArchSpec::eCore_amd_gpu_gcn_GFX1310)
1296 .Case("gfx9-generic", ArchSpec::eCore_amd_gpu_gcn_GFX9_GENERIC)
1297 .Case("gfx9-4-generic", ArchSpec::eCore_amd_gpu_gcn_GFX9_4_GENERIC)
1298 .Case("gfx10-1-generic", ArchSpec::eCore_amd_gpu_gcn_GFX10_1_GENERIC)
1299 .Case("gfx10-3-generic", ArchSpec::eCore_amd_gpu_gcn_GFX10_3_GENERIC)
1300 .Case("gfx11-generic", ArchSpec::eCore_amd_gpu_gcn_GFX11_GENERIC)
1301 .Case("gfx12-generic", ArchSpec::eCore_amd_gpu_gcn_GFX12_GENERIC)
1302 .Case("gfx12-5-generic", ArchSpec::eCore_amd_gpu_gcn_GFX12_5_GENERIC)
1303 .Case("gfx11-7-generic", ArchSpec::eCore_amd_gpu_gcn_GFX11_7_GENERIC)
1304 .Case("gfx13-generic", ArchSpec::eCore_amd_gpu_gcn_GFX13_GENERIC)
1306}
1307
1308bool ArchSpec::SetArchitecture(ArchitectureType arch_type, uint32_t cpu,
1309 uint32_t sub, uint32_t os) {
1311 bool update_triple = true;
1312 const ArchDefinition *arch_def = FindArchDefinition(arch_type);
1313 if (arch_def) {
1314 const ArchDefinitionEntry *arch_def_entry =
1315 FindArchDefinitionEntry(arch_def, cpu, sub);
1316 if (arch_def_entry) {
1317 const CoreDefinition *core_def = FindCoreDefinition(arch_def_entry->core);
1318 if (core_def) {
1319 m_core = core_def->core;
1320 update_triple = false;
1321 // Always use the architecture name because it might be more
1322 // descriptive than the architecture enum ("armv7" ->
1323 // llvm::Triple::arm).
1324 m_triple.setArchName(llvm::StringRef(core_def->name));
1325 if (arch_type == eArchTypeMachO) {
1326 m_triple.setVendor(llvm::Triple::Apple);
1327
1328 // Don't set the OS. It could be simulator, macosx, ios, watchos,
1329 // tvos, bridgeos. We could get close with the cpu type - but we
1330 // can't get it right all of the time. Better to leave this unset
1331 // so other sections of code will set it when they have more
1332 // information. NB: don't call m_triple.setOS
1333 // (llvm::Triple::UnknownOS). That sets the OSName to "unknown" and
1334 // the ArchSpec::TripleVendorWasSpecified() method says that any
1335 // OSName setting means it was specified.
1336 } else if (arch_type == eArchTypeELF) {
1337 switch (os) {
1338 case llvm::ELF::ELFOSABI_AIX:
1339 m_triple.setOS(llvm::Triple::OSType::AIX);
1340 break;
1341 case llvm::ELF::ELFOSABI_FREEBSD:
1342 m_triple.setOS(llvm::Triple::OSType::FreeBSD);
1343 break;
1344 case llvm::ELF::ELFOSABI_GNU:
1345 m_triple.setOS(llvm::Triple::OSType::Linux);
1346 break;
1347 case llvm::ELF::ELFOSABI_NETBSD:
1348 m_triple.setOS(llvm::Triple::OSType::NetBSD);
1349 break;
1350 case llvm::ELF::ELFOSABI_OPENBSD:
1351 m_triple.setOS(llvm::Triple::OSType::OpenBSD);
1352 break;
1353 case llvm::ELF::ELFOSABI_SOLARIS:
1354 m_triple.setOS(llvm::Triple::OSType::Solaris);
1355 break;
1356 case llvm::ELF::ELFOSABI_STANDALONE:
1357 m_triple.setOS(llvm::Triple::OSType::UnknownOS);
1358 break;
1359 case llvm::ELF::ELFOSABI_AMDGPU_HSA:
1360 m_triple.setVendor(llvm::Triple::VendorType::AMD);
1361 m_triple.setOS(llvm::Triple::OSType::AMDHSA);
1362 break;
1363 }
1364 } else if (arch_type == eArchTypeCOFF && os == llvm::Triple::Win32) {
1365 m_triple.setVendor(llvm::Triple::PC);
1366 m_triple.setOS(llvm::Triple::Win32);
1367 } else if (arch_type == eArchTypeXCOFF && os == llvm::Triple::AIX) {
1368 m_triple.setVendor(llvm::Triple::IBM);
1369 m_triple.setOS(llvm::Triple::AIX);
1370 } else {
1371 m_triple.setVendor(llvm::Triple::UnknownVendor);
1372 m_triple.setOS(llvm::Triple::UnknownOS);
1373 }
1374 switch (m_triple.getArch()) {
1375 case llvm::Triple::UnknownArch:
1376 // Fall back onto setting the machine type if the arch by name
1377 // failed...
1378 m_triple.setArch(core_def->machine);
1379 break;
1380 case llvm::Triple::r600:
1381 case llvm::Triple::amdgpu: {
1382 // AMDGPU arches are special: they append a 5th element to the triple
1383 // that comes after the environment and contains the sub type name.
1384 std::string environment("-");
1385 environment += GetAMDGPUVariantName(arch_def_entry->sub);
1386 m_triple.setEnvironmentName(environment);
1387 break;
1388 }
1389 default:
1390 break;
1391 }
1392 }
1393 } else {
1395 LLDB_LOGF(log,
1396 "Unable to find a core definition for cpu 0x%" PRIx32
1397 " sub %" PRId32,
1398 cpu, sub);
1399 }
1400 }
1401 CoreUpdated(update_triple);
1402 return IsValid();
1403}
1404
1406 const CoreDefinition *core_def = FindCoreDefinition(m_core);
1407 if (core_def)
1408 return core_def->min_opcode_byte_size;
1409 return 0;
1410}
1411
1413 const CoreDefinition *core_def = FindCoreDefinition(m_core);
1414 if (core_def)
1415 return core_def->max_opcode_byte_size;
1416 return 0;
1417}
1418
1419static bool IsCompatibleEnvironment(llvm::Triple::EnvironmentType lhs,
1420 llvm::Triple::EnvironmentType rhs) {
1421 if (lhs == rhs)
1422 return true;
1423
1424 // Apple simulators are a different platform than what they simulate.
1425 // As the environments are different at this point, if one of them is a
1426 // simulator, then they are different.
1427 if (lhs == llvm::Triple::Simulator || rhs == llvm::Triple::Simulator)
1428 return false;
1429
1430 // If any of the environment is unknown then they are compatible
1431 if (lhs == llvm::Triple::UnknownEnvironment ||
1432 rhs == llvm::Triple::UnknownEnvironment)
1433 return true;
1434
1435 // If one of the environment is Android and the other one is EABI then they
1436 // are considered to be compatible. This is required as a workaround for
1437 // shared libraries compiled for Android without the NOTE section indicating
1438 // that they are using the Android ABI.
1439 if ((lhs == llvm::Triple::Android && rhs == llvm::Triple::EABI) ||
1440 (rhs == llvm::Triple::Android && lhs == llvm::Triple::EABI) ||
1441 (lhs == llvm::Triple::GNUEABI && rhs == llvm::Triple::EABI) ||
1442 (rhs == llvm::Triple::GNUEABI && lhs == llvm::Triple::EABI) ||
1443 (lhs == llvm::Triple::GNUEABIHF && rhs == llvm::Triple::EABIHF) ||
1444 (rhs == llvm::Triple::GNUEABIHF && lhs == llvm::Triple::EABIHF))
1445 return true;
1446
1447 return false;
1448}
1449
1450bool ArchSpec::IsMatch(const ArchSpec &rhs, MatchType match) const {
1451 if (GetByteOrder() != rhs.GetByteOrder() ||
1452 !cores_match(GetCore(), rhs.GetCore(), match == ExactMatch))
1453 return false;
1454
1455 const llvm::Triple &lhs_triple = GetTriple();
1456 const llvm::Triple &rhs_triple = rhs.GetTriple();
1457
1458 const llvm::Triple::VendorType lhs_triple_vendor = lhs_triple.getVendor();
1459 const llvm::Triple::VendorType rhs_triple_vendor = rhs_triple.getVendor();
1460
1461 const llvm::Triple::OSType lhs_triple_os = lhs_triple.getOS();
1462 const llvm::Triple::OSType rhs_triple_os = rhs_triple.getOS();
1463
1464 bool both_windows = lhs_triple.isOSWindows() && rhs_triple.isOSWindows();
1465
1466 // On Windows, the vendor field doesn't have any practical effect, but
1467 // it is often set to either "pc" or "w64".
1468 if ((lhs_triple_vendor != rhs_triple_vendor) &&
1469 (match == ExactMatch || !both_windows)) {
1470 const bool rhs_vendor_specified = rhs.TripleVendorWasSpecified();
1471 const bool lhs_vendor_specified = TripleVendorWasSpecified();
1472 // Both architectures had the vendor specified, so if they aren't equal
1473 // then we return false
1474 if (rhs_vendor_specified && lhs_vendor_specified)
1475 return false;
1476
1477 // Only fail if both vendor types are not unknown
1478 if (lhs_triple_vendor != llvm::Triple::UnknownVendor &&
1479 rhs_triple_vendor != llvm::Triple::UnknownVendor)
1480 return false;
1481 }
1482
1483 const llvm::Triple::EnvironmentType lhs_triple_env =
1484 lhs_triple.getEnvironment();
1485 const llvm::Triple::EnvironmentType rhs_triple_env =
1486 rhs_triple.getEnvironment();
1487
1488 if (match == CompatibleMatch) {
1489 // x86_64-apple-ios-macabi, x86_64-apple-macosx are compatible, no match.
1490 if ((lhs_triple_os == llvm::Triple::IOS &&
1491 lhs_triple_env == llvm::Triple::MacABI &&
1492 rhs_triple_os == llvm::Triple::MacOSX) ||
1493 (lhs_triple_os == llvm::Triple::MacOSX &&
1494 rhs_triple_os == llvm::Triple::IOS &&
1495 rhs_triple_env == llvm::Triple::MacABI))
1496 return true;
1497 // x86_64-apple-driverkit, x86_64-apple-macosx are compatible, no match.
1498 if ((lhs_triple_os == llvm::Triple::DriverKit &&
1499 rhs_triple_os == llvm::Triple::MacOSX) ||
1500 (lhs_triple_os == llvm::Triple::MacOSX &&
1501 rhs_triple_os == llvm::Triple::DriverKit))
1502 return true;
1503 }
1504
1505 // x86_64-apple-ios-macabi and x86_64-apple-ios are not compatible.
1506 if (lhs_triple_os == llvm::Triple::IOS &&
1507 rhs_triple_os == llvm::Triple::IOS &&
1508 (lhs_triple_env == llvm::Triple::MacABI ||
1509 rhs_triple_env == llvm::Triple::MacABI) &&
1510 lhs_triple_env != rhs_triple_env)
1511 return false;
1512
1513 if (lhs_triple_os != rhs_triple_os) {
1514 const bool lhs_os_specified = TripleOSWasSpecified();
1515 const bool rhs_os_specified = rhs.TripleOSWasSpecified();
1516 // If both OS types are specified and different, fail.
1517 if (lhs_os_specified && rhs_os_specified)
1518 return false;
1519
1520 // If the pair of os+env is both unspecified, match any other os+env combo.
1521 if (match == CompatibleMatch &&
1522 ((!lhs_os_specified && !lhs_triple.hasEnvironment()) ||
1523 (!rhs_os_specified && !rhs_triple.hasEnvironment())))
1524 return true;
1525 }
1526
1527 if (match == CompatibleMatch && both_windows)
1528 return true; // The Windows environments (MSVC vs GNU) are compatible
1529
1530 return IsCompatibleEnvironment(lhs_triple_env, rhs_triple_env);
1531}
1532
1534 llvm::StringRef arch_name(m_triple.getArchName());
1535 const CoreDefinition *core_def = FindCoreDefinition(arch_name);
1536 if (core_def) {
1537 m_core = core_def->core;
1538 // Set the byte order to the default byte order for an architecture. This
1539 // can be modified if needed for cases when cores handle both big and
1540 // little endian
1541 m_byte_order = core_def->default_byte_order;
1542
1543 // amdgpu/r600 match their first table entry (GFX600/R600), so refine the
1544 // core from the model in the triple environment.
1547 m_triple.getEnvironmentName().split('-').second);
1548 } else if (m_core == eCore_amd_gpu_r600_R600) {
1550 m_triple.getEnvironmentName().split('-').second);
1551 }
1552 } else {
1553 Clear();
1554 }
1555}
1556
1557//===----------------------------------------------------------------------===//
1558// Helper methods.
1559
1560void ArchSpec::CoreUpdated(bool update_triple) {
1561 const CoreDefinition *core_def = FindCoreDefinition(m_core);
1562 if (core_def) {
1563 if (update_triple)
1564 m_triple = llvm::Triple(core_def->name, "unknown", "unknown");
1565 m_byte_order = core_def->default_byte_order;
1566 } else {
1567 if (update_triple)
1568 m_triple = llvm::Triple();
1570 }
1571}
1572
1573//===----------------------------------------------------------------------===//
1574// Operators.
1575
1576// Checks core1's rules only, because they are not symmetric. Must not call
1577// cores_match() here, or an unmatched pair would loop between the two
1578// directions forever.
1580 const ArchSpec::Core core2,
1581 bool enforce_exact_match) {
1582 switch (core1) {
1584 return true;
1585
1587 if (enforce_exact_match)
1588 break;
1589 [[fallthrough]];
1591 if (core2 >= ArchSpec::kCore_arm_first && core2 <= ArchSpec::kCore_arm_last)
1592 return true;
1593 if (core2 >= ArchSpec::kCore_thumb_first &&
1595 return true;
1596 if (core2 == ArchSpec::kCore_arm_any)
1597 return true;
1598 break;
1599
1601 if ((core2 >= ArchSpec::kCore_x86_32_first &&
1602 core2 <= ArchSpec::kCore_x86_32_last) ||
1603 (core2 == ArchSpec::kCore_x86_32_any))
1604 return true;
1605 break;
1606
1608 if ((core2 >= ArchSpec::kCore_x86_64_first &&
1609 core2 <= ArchSpec::kCore_x86_64_last) ||
1610 (core2 == ArchSpec::kCore_x86_64_any))
1611 return true;
1612 break;
1613
1615 if ((core2 >= ArchSpec::kCore_ppc_first &&
1616 core2 <= ArchSpec::kCore_ppc_last) ||
1617 (core2 == ArchSpec::kCore_ppc_any))
1618 return true;
1619 break;
1620
1622 if ((core2 >= ArchSpec::kCore_ppc64_first &&
1623 core2 <= ArchSpec::kCore_ppc64_last) ||
1624 (core2 == ArchSpec::kCore_ppc64_any))
1625 return true;
1626 break;
1627
1629 if ((core2 >= ArchSpec::kCore_hexagon_first &&
1630 core2 <= ArchSpec::kCore_hexagon_last) ||
1631 (core2 == ArchSpec::kCore_hexagon_any))
1632 return true;
1633 break;
1634
1635 // v. https://en.wikipedia.org/wiki/ARM_Cortex-M#Silicon_customization
1636 // Cortex-M0 - ARMv6-M - armv6m
1637 // Cortex-M3 - ARMv7-M - armv7m
1638 // Cortex-M4 - ARMv7E-M - armv7em
1640 if (!enforce_exact_match) {
1641 if (core2 == ArchSpec::eCore_arm_generic)
1642 return true;
1643 if (core2 == ArchSpec::eCore_arm_armv7m)
1644 return true;
1645 if (core2 == ArchSpec::eCore_arm_armv6m)
1646 return true;
1647 if (core2 == ArchSpec::eCore_arm_armv7)
1648 return true;
1649 }
1650 break;
1651
1652 // v. https://en.wikipedia.org/wiki/ARM_Cortex-M#Silicon_customization
1653 // Cortex-M0 - ARMv6-M - armv6m
1654 // Cortex-M3 - ARMv7-M - armv7m
1655 // Cortex-M4 - ARMv7E-M - armv7em
1657 if (!enforce_exact_match) {
1658 if (core2 == ArchSpec::eCore_arm_generic)
1659 return true;
1660 if (core2 == ArchSpec::eCore_arm_armv6m)
1661 return true;
1662 if (core2 == ArchSpec::eCore_arm_armv7)
1663 return true;
1664 if (core2 == ArchSpec::eCore_arm_armv7em)
1665 return true;
1666 }
1667 break;
1668
1669 // v. https://en.wikipedia.org/wiki/ARM_Cortex-M#Silicon_customization
1670 // Cortex-M0 - ARMv6-M - armv6m
1671 // Cortex-M3 - ARMv7-M - armv7m
1672 // Cortex-M4 - ARMv7E-M - armv7em
1674 if (!enforce_exact_match) {
1675 if (core2 == ArchSpec::eCore_arm_generic)
1676 return true;
1677 if (core2 == ArchSpec::eCore_arm_armv7em)
1678 return true;
1679 if (core2 == ArchSpec::eCore_arm_armv7)
1680 return true;
1681 if (core2 == ArchSpec::eCore_arm_armv6m)
1682 return true;
1683 }
1684 break;
1685
1691 if (!enforce_exact_match) {
1692 if (core2 == ArchSpec::eCore_arm_generic)
1693 return true;
1694 if (core2 == ArchSpec::eCore_arm_armv7)
1695 return true;
1696 }
1697 break;
1698
1701 if (!enforce_exact_match) {
1702 if (core2 == ArchSpec::eCore_x86_64_x86_64)
1703 return true;
1704 }
1705 break;
1706
1708 if (!enforce_exact_match) {
1709 if (core2 == ArchSpec::eCore_arm_arm64)
1710 return true;
1711 if (core2 == ArchSpec::eCore_arm_aarch64)
1712 return true;
1713 if (core2 == ArchSpec::eCore_arm_arm64e)
1714 return true;
1715 if (core2 == ArchSpec::eCore_arm_arm64ex1)
1716 return true;
1717 }
1718 break;
1719
1721 if (!enforce_exact_match) {
1722 if (core2 == ArchSpec::eCore_arm_arm64)
1723 return true;
1724 if (core2 == ArchSpec::eCore_arm_aarch64)
1725 return true;
1726 if (core2 == ArchSpec::eCore_arm_armv8)
1727 return true;
1728 if (core2 == ArchSpec::eCore_arm_arm64ex1)
1729 return true;
1730 }
1731 break;
1733 if (!enforce_exact_match) {
1734 if (core2 == ArchSpec::eCore_arm_arm64)
1735 return true;
1736 if (core2 == ArchSpec::eCore_arm_armv8)
1737 return true;
1738 if (core2 == ArchSpec::eCore_arm_arm64e)
1739 return true;
1740 if (core2 == ArchSpec::eCore_arm_arm64ex1)
1741 return true;
1742 }
1743 break;
1744
1746 if (!enforce_exact_match) {
1747 if (core2 == ArchSpec::eCore_arm_aarch64)
1748 return true;
1749 if (core2 == ArchSpec::eCore_arm_armv8)
1750 return true;
1751 if (core2 == ArchSpec::eCore_arm_arm64e)
1752 return true;
1753 if (core2 == ArchSpec::eCore_arm_arm64ex1)
1754 return true;
1755 }
1756 break;
1757
1759 if (!enforce_exact_match) {
1760 if (core2 == ArchSpec::eCore_arm_arm64e)
1761 return true;
1762 if (core2 == ArchSpec::eCore_arm_arm64)
1763 return true;
1764 if (core2 == ArchSpec::eCore_arm_aarch64)
1765 return true;
1766 if (core2 == ArchSpec::eCore_arm_armv8)
1767 return true;
1768 }
1769 break;
1770
1772 if (!enforce_exact_match) {
1773 if (core2 == ArchSpec::eCore_arm_generic)
1774 return true;
1775 }
1776 break;
1777
1779 if (!enforce_exact_match) {
1780 if (core2 >= ArchSpec::kCore_mips32_first &&
1782 return true;
1783 }
1784 break;
1785
1787 if (!enforce_exact_match) {
1788 if (core2 >= ArchSpec::kCore_mips32el_first &&
1790 return true;
1791 }
1792 break;
1793
1795 if (!enforce_exact_match) {
1796 if (core2 >= ArchSpec::kCore_mips32_first &&
1798 return true;
1799 if (core2 >= ArchSpec::kCore_mips64_first &&
1801 return true;
1802 }
1803 break;
1804
1806 if (!enforce_exact_match) {
1807 if (core2 >= ArchSpec::kCore_mips32el_first &&
1809 return true;
1810 if (core2 >= ArchSpec::kCore_mips64el_first &&
1812 return true;
1813 }
1814 break;
1815
1819 if (!enforce_exact_match) {
1820 if (core2 >= ArchSpec::kCore_mips32_first && core2 <= (core1 - 10))
1821 return true;
1822 if (core2 >= ArchSpec::kCore_mips64_first && core2 <= (core1 - 1))
1823 return true;
1824 }
1825 break;
1826
1830 if (!enforce_exact_match) {
1831 if (core2 >= ArchSpec::kCore_mips32el_first && core2 <= (core1 - 10))
1832 return true;
1833 if (core2 >= ArchSpec::kCore_mips64el_first && core2 <= (core1 - 1))
1834 return true;
1835 }
1836 break;
1837
1841 if (!enforce_exact_match) {
1842 if (core2 >= ArchSpec::kCore_mips32_first && core2 <= core1)
1843 return true;
1844 }
1845 break;
1846
1850 if (!enforce_exact_match) {
1851 if (core2 >= ArchSpec::kCore_mips32el_first && core2 <= core1)
1852 return true;
1853 }
1854 break;
1855
1857 if (!enforce_exact_match) {
1858 if (core2 == ArchSpec::eCore_mips32 || core2 == ArchSpec::eCore_mips32r6)
1859 return true;
1860 }
1861 break;
1862
1864 if (!enforce_exact_match) {
1865 if (core2 == ArchSpec::eCore_mips32el ||
1867 return true;
1868 }
1869 break;
1870
1872 if (!enforce_exact_match) {
1873 if (core2 == ArchSpec::eCore_mips32 || core2 == ArchSpec::eCore_mips32r6)
1874 return true;
1875 if (core2 == ArchSpec::eCore_mips64 || core2 == ArchSpec::eCore_mips64r6)
1876 return true;
1877 }
1878 break;
1879
1881 if (!enforce_exact_match) {
1882 if (core2 == ArchSpec::eCore_mips32el ||
1884 return true;
1885 if (core2 == ArchSpec::eCore_mips64el ||
1887 return true;
1888 }
1889 break;
1890
1891 default:
1892 break;
1893 }
1894 return false;
1895}
1896
1897// The match rules only work in one direction, so this checks both ways.
1898static bool cores_match(const ArchSpec::Core core1, const ArchSpec::Core core2,
1899 bool enforce_exact_match) {
1900 if (core1 == core2)
1901 return true;
1902 return cores_match_one_direction(core1, core2, enforce_exact_match) ||
1903 cores_match_one_direction(core2, core1, enforce_exact_match);
1904}
1905
1906bool lldb_private::operator<(const ArchSpec &lhs, const ArchSpec &rhs) {
1907 const ArchSpec::Core lhs_core = lhs.GetCore();
1908 const ArchSpec::Core rhs_core = rhs.GetCore();
1909 return lhs_core < rhs_core;
1910}
1911
1912bool lldb_private::operator==(const ArchSpec &lhs, const ArchSpec &rhs) {
1913 return lhs.GetCore() == rhs.GetCore();
1914}
1915
1916bool lldb_private::operator!=(const ArchSpec &lhs, const ArchSpec &rhs) {
1917 return !(lhs == rhs);
1918}
1919
1921 if (!TripleOSWasSpecified())
1922 return false;
1923
1925 return false;
1926
1927 const unsigned unspecified = 0;
1928 const llvm::Triple &triple = GetTriple();
1929 if (triple.isOSDarwin() && triple.getOSMajorVersion() == unspecified)
1930 return false;
1931
1932 return true;
1933}
1934
1936 if (GetTriple().getArch() == llvm::Triple::arm ||
1937 GetTriple().getArch() == llvm::Triple::thumb) {
1938 // v. https://en.wikipedia.org/wiki/ARM_Cortex-M
1939 //
1940 // Cortex-M0 through Cortex-M7 are ARM processor cores which can only
1941 // execute thumb instructions. We map the cores to arch names like this:
1942 //
1943 // Cortex-M0, Cortex-M0+, Cortex-M1: armv6m Cortex-M3: armv7m Cortex-M4,
1944 // Cortex-M7: armv7em
1945
1952 return true;
1953 }
1954 // Windows on ARM is always thumb.
1955 if (GetTriple().isOSWindows())
1956 return true;
1957 }
1958 return false;
1959}
1960
1961void ArchSpec::DumpTriple(llvm::raw_ostream &s) const {
1962 const llvm::Triple &triple = GetTriple();
1963 llvm::StringRef arch_str = triple.getArchName();
1964 llvm::StringRef vendor_str = triple.getVendorName();
1965 llvm::StringRef os_str = triple.getOSName();
1966 llvm::StringRef environ_str = triple.getEnvironmentName();
1967
1968 s << llvm::formatv("{0}-{1}-{2}", arch_str.empty() ? "*" : arch_str,
1969 vendor_str.empty() ? "*" : vendor_str,
1970 os_str.empty() ? "*" : os_str);
1971
1972 if (!environ_str.empty())
1973 s << "-" << environ_str;
1974}
static uint32_t GetCPUType(const ArchDefinition *def, ArchSpec::Core core)
Definition ArchSpec.cpp:860
#define SUBTYPE_MASK
Definition ArchSpec.cpp:406
static const ArchDefinition g_elf_arch_def
Definition ArchSpec.cpp:613
static const CoreDefinition * FindCoreDefinition(llvm::StringRef name)
Definition ArchSpec.cpp:671
static const ArchDefinitionEntry * FindArchDefEntryIfCoreIsValid(const ArchDefinition *def, ArchSpec::Core core)
Definition ArchSpec.cpp:853
static const ArchDefinitionEntry * FindArchDefinitionEntry(const ArchDefinition *def, uint32_t cpu, uint32_t sub)
Definition ArchSpec.cpp:687
static uint32_t GetCPUSubType(const ArchDefinition *def, ArchSpec::Core core)
Definition ArchSpec.cpp:867
static const ArchDefinitionEntry g_macho_arch_entries[]
Definition ArchSpec.cpp:409
static const ArchDefinitionEntry g_xcoff_arch_entries[]
Definition ArchSpec.cpp:640
static const ArchDefinitionEntry g_coff_arch_entries[]
Definition ArchSpec.cpp:620
static const ArchDefinitionEntry g_elf_arch_entries[]
Definition ArchSpec.cpp:498
static const ArchDefinition * FindArchDefinition(ArchitectureType arch_type)
Definition ArchSpec.cpp:662
static llvm::StringRef GetAMDGPUVariantName(uint32_t sub)
#define AMD_GPU_CORE_DEF_GCN(sub)
Definition ArchSpec.cpp:52
#define AMD_GPU_ARCH_DEF_GCN(sub)
Definition ArchSpec.cpp:489
static bool cores_match_one_direction(const ArchSpec::Core core1, const ArchSpec::Core core2, bool enforce_exact_match)
#define CPU_ANY
Definition ArchSpec.cpp:399
static const ArchDefinition g_xcoff_arch_def
Definition ArchSpec.cpp:646
static ArchSpec::Core GetAMDGPUVariantToCoreR600(llvm::StringRef core_name)
static constexpr const CoreDefinition g_core_definitions[]
Definition ArchSpec.cpp:61
static const ArchDefinition * g_arch_definitions[]
Definition ArchSpec.cpp:655
static bool cores_match(const ArchSpec::Core core1, const ArchSpec::Core core2, bool enforce_exact_match)
#define AMD_GPU_CORE_DEF_R600(sub)
Definition ArchSpec.cpp:44
static const ArchDefinition g_coff_arch_def
Definition ArchSpec.cpp:632
static bool IsCompatibleEnvironment(llvm::Triple::EnvironmentType lhs, llvm::Triple::EnvironmentType rhs)
#define AMD_GPU_ARCH_DEF_R600(sub)
Definition ArchSpec.cpp:486
static const ArchDefinition g_macho_arch_def
Definition ArchSpec.cpp:482
static ArchSpec::Core GetAMDGPUVariantToCoreGCN(llvm::StringRef core_name)
#define LLDB_LOGF(log,...)
Definition Log.h:389
An architecture specification class.
Definition ArchSpec.h:32
static void ListSupportedArchNames(StringList &list)
Definition ArchSpec.cpp:389
bool IsFullySpecifiedTriple() const
bool IsNVPTX() const
If NVPTX architecture return true.
Definition ArchSpec.cpp:754
static void AutoComplete(CompletionRequest &request)
Definition ArchSpec.cpp:394
uint32_t GetAddressByteSize() const
Returns the size in bytes of an address of the current architecture.
Definition ArchSpec.cpp:894
bool IsValid() const
Tests if this ArchSpec is valid.
Definition ArchSpec.h:455
void Clear()
Clears the object state.
Definition ArchSpec.cpp:735
llvm::Triple & GetTriple()
Architecture triple accessor.
Definition ArchSpec.h:547
void SetFlags(uint32_t flags)
Definition ArchSpec.h:620
bool IsAlwaysThumbInstructions() const
Detect whether this architecture uses thumb code exclusively.
bool TripleEnvironmentWasSpecified() const
Definition ArchSpec.h:466
bool IsMatch(const ArchSpec &rhs, MatchType match) const
Compare this ArchSpec to another ArchSpec.
bool SetTriple(const llvm::Triple &triple)
Architecture triple setter.
Definition ArchSpec.cpp:952
llvm::Triple m_triple
Definition ArchSpec.h:635
lldb::ByteOrder GetDefaultEndian() const
Returns the default endianness of the architecture.
Definition ArchSpec.cpp:908
lldb::ByteOrder m_byte_order
Definition ArchSpec.h:637
uint32_t GetElfCPUSubType() const
Definition ArchSpec.cpp:882
~ArchSpec()
Destructor.
bool SetArchitecture(ArchitectureType arch_type, uint32_t cpu, uint32_t sub, uint32_t os=0)
Change the architecture object type, CPU type and OS type.
void MergeFrom(const ArchSpec &other)
Merges fields from another ArchSpec into this ArchSpec.
void DumpTriple(llvm::raw_ostream &s) const
uint32_t GetMachOCPUSubType() const
Definition ArchSpec.cpp:878
void CoreUpdated(bool update_triple)
bool IsMIPS() const
if MIPS architecture return true.
Definition ArchSpec.cpp:752
bool IsCompatibleMatch(const ArchSpec &rhs) const
Shorthand for IsMatch(rhs, CompatibleMatch).
Definition ArchSpec.h:599
bool CharIsSignedByDefault() const
Returns true if 'char' is a signed type by default in the architecture false otherwise.
Definition ArchSpec.cpp:915
ArchSpec()
Default constructor.
uint32_t GetMachOCPUType() const
Definition ArchSpec.cpp:874
std::string GetTargetABI() const
Return a string representing target application ABI.
Definition ArchSpec.cpp:756
uint32_t GetMinimumOpcodeByteSize() const
uint32_t GetFlags() const
Definition ArchSpec.h:618
lldb::ByteOrder GetByteOrder() const
Returns the byte order for the architecture specification.
Definition ArchSpec.cpp:943
llvm::Triple::ArchType GetMachine() const
Returns a machine family for the current architecture.
Definition ArchSpec.cpp:886
std::string GetClangTargetCPU() const
Returns a string representing current architecture as a target CPU for tools like compiler,...
Definition ArchSpec.cpp:792
uint32_t GetMaximumOpcodeByteSize() const
bool TripleVendorWasSpecified() const
Definition ArchSpec.h:460
Core GetCore() const
Definition ArchSpec.h:536
bool TripleOSWasSpecified() const
Definition ArchSpec.h:464
static bool ContainsOnlyArch(const llvm::Triple &normalized_triple)
Returns true if the OS, vendor and environment fields of the triple are unset.
const char * GetArchitectureName() const
Returns a static string representing the current architecture.
Definition ArchSpec.cpp:745
"lldb/Utility/ArgCompletionRequest.h"
void TryCompleteCurrentArg(llvm::StringRef completion, llvm::StringRef description="")
Adds a possible completion string if the completion would complete the current argument.
void AppendString(const std::string &s)
#define LLDB_INVALID_CPUTYPE
#define UINT32_MAX
A class that represents a running process on the host machine.
Log * GetLog(Cat mask)
Retrieve the Log object for the channel associated with the given log enum.
Definition Log.h:338
bool ParseMachCPUDashSubtypeTriple(llvm::StringRef triple_str, ArchSpec &arch)
Definition ArchSpec.cpp:958
bool operator!=(const Address &lhs, const Address &rhs)
Definition Address.cpp:1011
TableValidator< 0 > validator
bool operator==(const Address &lhs, const Address &rhs)
Definition Address.cpp:1005
bool operator<(const Address &lhs, const Address &rhs)
Definition Address.cpp:974
ByteOrder
Byte ordering definitions.
ArchSpec::Core core
Definition ArchSpec.cpp:375
ArchitectureType type
Definition ArchSpec.cpp:383
const ArchDefinitionEntry * entries
Definition ArchSpec.cpp:385
size_t num_entries
Definition ArchSpec.cpp:384
const char * name
Definition ArchSpec.cpp:386
llvm::Triple::ArchType machine
Definition ArchSpec.cpp:37
const char *const name
Definition ArchSpec.cpp:39