Recommit [NFC] Better encapsulation of llvm::Optional Storage
[llvm-complete.git] / include / llvm / CodeGen / CommandFlags.inc
blob5b9564c1062ffc38c5f7a75254bad4ea23b01c83
1 //===-- CommandFlags.h - Command Line Flags Interface -----------*- 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 contains codegen-specific flags that are shared between different
10 // command line tools. The tools "llc" and "opt" both use this file to prevent
11 // flag duplication.
13 //===----------------------------------------------------------------------===//
15 #include "llvm/ADT/StringExtras.h"
16 #include "llvm/IR/Instructions.h"
17 #include "llvm/IR/Intrinsics.h"
18 #include "llvm/IR/Module.h"
19 #include "llvm/MC/MCTargetOptionsCommandFlags.inc"
20 #include "llvm/MC/SubtargetFeature.h"
21 #include "llvm/Support/CodeGen.h"
22 #include "llvm/Support/CommandLine.h"
23 #include "llvm/Support/Host.h"
24 #include "llvm/Target/TargetMachine.h"
25 #include "llvm/Target/TargetOptions.h"
26 #include <string>
27 using namespace llvm;
29 static cl::opt<std::string>
30     MArch("march",
31           cl::desc("Architecture to generate code for (see --version)"));
33 static cl::opt<std::string>
34     MCPU("mcpu",
35          cl::desc("Target a specific cpu type (-mcpu=help for details)"),
36          cl::value_desc("cpu-name"), cl::init(""));
38 static cl::list<std::string>
39     MAttrs("mattr", cl::CommaSeparated,
40            cl::desc("Target specific attributes (-mattr=help for details)"),
41            cl::value_desc("a1,+a2,-a3,..."));
43 static cl::opt<Reloc::Model> RelocModel(
44     "relocation-model", cl::desc("Choose relocation model"),
45     cl::values(
46         clEnumValN(Reloc::Static, "static", "Non-relocatable code"),
47         clEnumValN(Reloc::PIC_, "pic",
48                    "Fully relocatable, position independent code"),
49         clEnumValN(Reloc::DynamicNoPIC, "dynamic-no-pic",
50                    "Relocatable external references, non-relocatable code"),
51         clEnumValN(Reloc::ROPI, "ropi",
52                    "Code and read-only data relocatable, accessed PC-relative"),
53         clEnumValN(
54             Reloc::RWPI, "rwpi",
55             "Read-write data relocatable, accessed relative to static base"),
56         clEnumValN(Reloc::ROPI_RWPI, "ropi-rwpi",
57                    "Combination of ropi and rwpi")));
59 LLVM_ATTRIBUTE_UNUSED static Optional<Reloc::Model> getRelocModel() {
60   if (RelocModel.getNumOccurrences()) {
61     Reloc::Model R = RelocModel;
62     return R;
63   }
64   return None;
67 static cl::opt<ThreadModel::Model> TMModel(
68     "thread-model", cl::desc("Choose threading model"),
69     cl::init(ThreadModel::POSIX),
70     cl::values(clEnumValN(ThreadModel::POSIX, "posix", "POSIX thread model"),
71                clEnumValN(ThreadModel::Single, "single",
72                           "Single thread model")));
74 static cl::opt<llvm::CodeModel::Model> CMModel(
75     "code-model", cl::desc("Choose code model"),
76     cl::values(clEnumValN(CodeModel::Tiny, "tiny", "Tiny code model"),
77                clEnumValN(CodeModel::Small, "small", "Small code model"),
78                clEnumValN(CodeModel::Kernel, "kernel", "Kernel code model"),
79                clEnumValN(CodeModel::Medium, "medium", "Medium code model"),
80                clEnumValN(CodeModel::Large, "large", "Large code model")));
82 LLVM_ATTRIBUTE_UNUSED static Optional<CodeModel::Model> getCodeModel() {
83   if (CMModel.getNumOccurrences()) {
84     CodeModel::Model M = CMModel;
85     return M;
86   }
87   return None;
90 static cl::opt<llvm::ExceptionHandling> ExceptionModel(
91     "exception-model", cl::desc("exception model"),
92     cl::init(ExceptionHandling::None),
93     cl::values(
94         clEnumValN(ExceptionHandling::None, "default",
95                    "default exception handling model"),
96         clEnumValN(ExceptionHandling::DwarfCFI, "dwarf",
97                    "DWARF-like CFI based exception handling"),
98         clEnumValN(ExceptionHandling::SjLj, "sjlj", "SjLj exception handling"),
99         clEnumValN(ExceptionHandling::ARM, "arm", "ARM EHABI exceptions"),
100         clEnumValN(ExceptionHandling::WinEH, "wineh",
101                    "Windows exception model"),
102         clEnumValN(ExceptionHandling::Wasm, "wasm",
103                    "WebAssembly exception handling")));
105 static cl::opt<TargetMachine::CodeGenFileType> FileType(
106     "filetype", cl::init(TargetMachine::CGFT_AssemblyFile),
107     cl::desc(
108         "Choose a file type (not all types are supported by all targets):"),
109     cl::values(clEnumValN(TargetMachine::CGFT_AssemblyFile, "asm",
110                           "Emit an assembly ('.s') file"),
111                clEnumValN(TargetMachine::CGFT_ObjectFile, "obj",
112                           "Emit a native object ('.o') file"),
113                clEnumValN(TargetMachine::CGFT_Null, "null",
114                           "Emit nothing, for performance testing")));
116 static cl::opt<llvm::FramePointer::FP> FramePointerUsage(
117     "frame-pointer", cl::desc("Specify frame pointer elimination optimization"),
118     cl::init(llvm::FramePointer::None),
119     cl::values(
120         clEnumValN(llvm::FramePointer::All, "all",
121                    "Disable frame pointer elimination"),
122         clEnumValN(llvm::FramePointer::NonLeaf, "non-leaf",
123                    "Disable frame pointer elimination for non-leaf frame"),
124         clEnumValN(llvm::FramePointer::None, "none",
125                    "Enable frame pointer elimination")));
127 static cl::opt<bool> EnableUnsafeFPMath(
128     "enable-unsafe-fp-math",
129     cl::desc("Enable optimizations that may decrease FP precision"),
130     cl::init(false));
132 static cl::opt<bool> EnableNoInfsFPMath(
133     "enable-no-infs-fp-math",
134     cl::desc("Enable FP math optimizations that assume no +-Infs"),
135     cl::init(false));
137 static cl::opt<bool> EnableNoNaNsFPMath(
138     "enable-no-nans-fp-math",
139     cl::desc("Enable FP math optimizations that assume no NaNs"),
140     cl::init(false));
142 static cl::opt<bool> EnableNoSignedZerosFPMath(
143     "enable-no-signed-zeros-fp-math",
144     cl::desc("Enable FP math optimizations that assume "
145              "the sign of 0 is insignificant"),
146     cl::init(false));
148 static cl::opt<bool>
149     EnableNoTrappingFPMath("enable-no-trapping-fp-math",
150                            cl::desc("Enable setting the FP exceptions build "
151                                     "attribute not to use exceptions"),
152                            cl::init(false));
154 static cl::opt<llvm::FPDenormal::DenormalMode> DenormalMode(
155     "denormal-fp-math",
156     cl::desc("Select which denormal numbers the code is permitted to require"),
157     cl::init(FPDenormal::IEEE),
158     cl::values(clEnumValN(FPDenormal::IEEE, "ieee",
159                           "IEEE 754 denormal numbers"),
160                clEnumValN(FPDenormal::PreserveSign, "preserve-sign",
161                           "the sign of a  flushed-to-zero number is preserved "
162                           "in the sign of 0"),
163                clEnumValN(FPDenormal::PositiveZero, "positive-zero",
164                           "denormals are flushed to positive zero")));
166 static cl::opt<bool> EnableHonorSignDependentRoundingFPMath(
167     "enable-sign-dependent-rounding-fp-math", cl::Hidden,
168     cl::desc("Force codegen to assume rounding mode can change dynamically"),
169     cl::init(false));
171 static cl::opt<llvm::FloatABI::ABIType> FloatABIForCalls(
172     "float-abi", cl::desc("Choose float ABI type"), cl::init(FloatABI::Default),
173     cl::values(clEnumValN(FloatABI::Default, "default",
174                           "Target default float ABI type"),
175                clEnumValN(FloatABI::Soft, "soft",
176                           "Soft float ABI (implied by -soft-float)"),
177                clEnumValN(FloatABI::Hard, "hard",
178                           "Hard float ABI (uses FP registers)")));
180 static cl::opt<llvm::FPOpFusion::FPOpFusionMode> FuseFPOps(
181     "fp-contract", cl::desc("Enable aggressive formation of fused FP ops"),
182     cl::init(FPOpFusion::Standard),
183     cl::values(
184         clEnumValN(FPOpFusion::Fast, "fast", "Fuse FP ops whenever profitable"),
185         clEnumValN(FPOpFusion::Standard, "on", "Only fuse 'blessed' FP ops."),
186         clEnumValN(FPOpFusion::Strict, "off",
187                    "Only fuse FP ops when the result won't be affected.")));
189 static cl::opt<bool> DontPlaceZerosInBSS(
190     "nozero-initialized-in-bss",
191     cl::desc("Don't place zero-initialized symbols into bss section"),
192     cl::init(false));
194 static cl::opt<bool> EnableGuaranteedTailCallOpt(
195     "tailcallopt",
196     cl::desc(
197         "Turn fastcc calls into tail calls by (potentially) changing ABI."),
198     cl::init(false));
200 static cl::opt<bool> DisableTailCalls("disable-tail-calls",
201                                       cl::desc("Never emit tail calls"),
202                                       cl::init(false));
204 static cl::opt<bool> StackSymbolOrdering("stack-symbol-ordering",
205                                          cl::desc("Order local stack symbols."),
206                                          cl::init(true));
208 static cl::opt<unsigned>
209     OverrideStackAlignment("stack-alignment",
210                            cl::desc("Override default stack alignment"),
211                            cl::init(0));
213 static cl::opt<bool>
214     StackRealign("stackrealign",
215                  cl::desc("Force align the stack to the minimum alignment"),
216                  cl::init(false));
218 static cl::opt<std::string> TrapFuncName(
219     "trap-func", cl::Hidden,
220     cl::desc("Emit a call to trap function rather than a trap instruction"),
221     cl::init(""));
223 static cl::opt<bool> UseCtors("use-ctors",
224                               cl::desc("Use .ctors instead of .init_array."),
225                               cl::init(false));
227 static cl::opt<bool> RelaxELFRelocations(
228     "relax-elf-relocations",
229     cl::desc("Emit GOTPCRELX/REX_GOTPCRELX instead of GOTPCREL on x86-64 ELF"),
230     cl::init(false));
232 static cl::opt<bool> DataSections("data-sections",
233                                   cl::desc("Emit data into separate sections"),
234                                   cl::init(false));
236 static cl::opt<bool>
237     FunctionSections("function-sections",
238                      cl::desc("Emit functions into separate sections"),
239                      cl::init(false));
241 static cl::opt<bool> EmulatedTLS("emulated-tls",
242                                  cl::desc("Use emulated TLS model"),
243                                  cl::init(false));
245 static cl::opt<bool>
246     UniqueSectionNames("unique-section-names",
247                        cl::desc("Give unique names to every section"),
248                        cl::init(true));
250 static cl::opt<llvm::EABI>
251     EABIVersion("meabi", cl::desc("Set EABI type (default depends on triple):"),
252                 cl::init(EABI::Default),
253                 cl::values(clEnumValN(EABI::Default, "default",
254                                       "Triple default EABI version"),
255                            clEnumValN(EABI::EABI4, "4", "EABI version 4"),
256                            clEnumValN(EABI::EABI5, "5", "EABI version 5"),
257                            clEnumValN(EABI::GNU, "gnu", "EABI GNU")));
259 static cl::opt<DebuggerKind> DebuggerTuningOpt(
260     "debugger-tune", cl::desc("Tune debug info for a particular debugger"),
261     cl::init(DebuggerKind::Default),
262     cl::values(clEnumValN(DebuggerKind::GDB, "gdb", "gdb"),
263                clEnumValN(DebuggerKind::LLDB, "lldb", "lldb"),
264                clEnumValN(DebuggerKind::SCE, "sce", "SCE targets (e.g. PS4)")));
266 static cl::opt<bool> EnableStackSizeSection(
267     "stack-size-section",
268     cl::desc("Emit a section containing stack size metadata"), cl::init(false));
270 static cl::opt<bool>
271     EnableAddrsig("addrsig", cl::desc("Emit an address-significance table"),
272                   cl::init(false));
274 // Common utility function tightly tied to the options listed here. Initializes
275 // a TargetOptions object with CodeGen flags and returns it.
276 static TargetOptions InitTargetOptionsFromCodeGenFlags() {
277   TargetOptions Options;
278   Options.AllowFPOpFusion = FuseFPOps;
279   Options.UnsafeFPMath = EnableUnsafeFPMath;
280   Options.NoInfsFPMath = EnableNoInfsFPMath;
281   Options.NoNaNsFPMath = EnableNoNaNsFPMath;
282   Options.NoSignedZerosFPMath = EnableNoSignedZerosFPMath;
283   Options.NoTrappingFPMath = EnableNoTrappingFPMath;
284   Options.FPDenormalMode = DenormalMode;
285   Options.HonorSignDependentRoundingFPMathOption =
286       EnableHonorSignDependentRoundingFPMath;
287   if (FloatABIForCalls != FloatABI::Default)
288     Options.FloatABIType = FloatABIForCalls;
289   Options.NoZerosInBSS = DontPlaceZerosInBSS;
290   Options.GuaranteedTailCallOpt = EnableGuaranteedTailCallOpt;
291   Options.StackAlignmentOverride = OverrideStackAlignment;
292   Options.StackSymbolOrdering = StackSymbolOrdering;
293   Options.UseInitArray = !UseCtors;
294   Options.RelaxELFRelocations = RelaxELFRelocations;
295   Options.DataSections = DataSections;
296   Options.FunctionSections = FunctionSections;
297   Options.UniqueSectionNames = UniqueSectionNames;
298   Options.EmulatedTLS = EmulatedTLS;
299   Options.ExplicitEmulatedTLS = EmulatedTLS.getNumOccurrences() > 0;
300   Options.ExceptionModel = ExceptionModel;
301   Options.EmitStackSizeSection = EnableStackSizeSection;
302   Options.EmitAddrsig = EnableAddrsig;
304   Options.MCOptions = InitMCTargetOptionsFromFlags();
306   Options.ThreadModel = TMModel;
307   Options.EABIVersion = EABIVersion;
308   Options.DebuggerTuning = DebuggerTuningOpt;
310   return Options;
313 LLVM_ATTRIBUTE_UNUSED static std::string getCPUStr() {
314   // If user asked for the 'native' CPU, autodetect here. If autodection fails,
315   // this will set the CPU to an empty string which tells the target to
316   // pick a basic default.
317   if (MCPU == "native")
318     return sys::getHostCPUName();
320   return MCPU;
323 LLVM_ATTRIBUTE_UNUSED static std::string getFeaturesStr() {
324   SubtargetFeatures Features;
326   // If user asked for the 'native' CPU, we need to autodetect features.
327   // This is necessary for x86 where the CPU might not support all the
328   // features the autodetected CPU name lists in the target. For example,
329   // not all Sandybridge processors support AVX.
330   if (MCPU == "native") {
331     StringMap<bool> HostFeatures;
332     if (sys::getHostCPUFeatures(HostFeatures))
333       for (auto &F : HostFeatures)
334         Features.AddFeature(F.first(), F.second);
335   }
337   for (unsigned i = 0; i != MAttrs.size(); ++i)
338     Features.AddFeature(MAttrs[i]);
340   return Features.getString();
343 LLVM_ATTRIBUTE_UNUSED static std::vector<std::string> getFeatureList() {
344   SubtargetFeatures Features;
346   // If user asked for the 'native' CPU, we need to autodetect features.
347   // This is necessary for x86 where the CPU might not support all the
348   // features the autodetected CPU name lists in the target. For example,
349   // not all Sandybridge processors support AVX.
350   if (MCPU == "native") {
351     StringMap<bool> HostFeatures;
352     if (sys::getHostCPUFeatures(HostFeatures))
353       for (auto &F : HostFeatures)
354         Features.AddFeature(F.first(), F.second);
355   }
357   for (unsigned i = 0; i != MAttrs.size(); ++i)
358     Features.AddFeature(MAttrs[i]);
360   return Features.getFeatures();
363 /// Set function attributes of functions in Module M based on CPU,
364 /// Features, and command line flags.
365 LLVM_ATTRIBUTE_UNUSED static void
366 setFunctionAttributes(StringRef CPU, StringRef Features, Module &M) {
367   for (auto &F : M) {
368     auto &Ctx = F.getContext();
369     AttributeList Attrs = F.getAttributes();
370     AttrBuilder NewAttrs;
372     if (!CPU.empty())
373       NewAttrs.addAttribute("target-cpu", CPU);
374     if (!Features.empty())
375       NewAttrs.addAttribute("target-features", Features);
376     if (FramePointerUsage.getNumOccurrences() > 0) {
377       if (FramePointerUsage == llvm::FramePointer::All)
378         NewAttrs.addAttribute("frame-pointer", "all");
379       else if (FramePointerUsage == llvm::FramePointer::NonLeaf)
380         NewAttrs.addAttribute("frame-pointer", "non-leaf");
381       else if (FramePointerUsage == llvm::FramePointer::None)
382         NewAttrs.addAttribute("frame-pointer", "none");
383     }
384     if (DisableTailCalls.getNumOccurrences() > 0)
385       NewAttrs.addAttribute("disable-tail-calls",
386                             toStringRef(DisableTailCalls));
387     if (StackRealign)
388       NewAttrs.addAttribute("stackrealign");
390     if (TrapFuncName.getNumOccurrences() > 0)
391       for (auto &B : F)
392         for (auto &I : B)
393           if (auto *Call = dyn_cast<CallInst>(&I))
394             if (const auto *F = Call->getCalledFunction())
395               if (F->getIntrinsicID() == Intrinsic::debugtrap ||
396                   F->getIntrinsicID() == Intrinsic::trap)
397                 Call->addAttribute(
398                     llvm::AttributeList::FunctionIndex,
399                     Attribute::get(Ctx, "trap-func-name", TrapFuncName));
401     // Let NewAttrs override Attrs.
402     F.setAttributes(
403         Attrs.addAttributes(Ctx, AttributeList::FunctionIndex, NewAttrs));
404   }