LLVM 21.0.0git
TargetOptions.h
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1//===-- llvm/Target/TargetOptions.h - Target Options ------------*- 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 defines command line option flags that are shared across various
10// targets.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef LLVM_TARGET_TARGETOPTIONS_H
15#define LLVM_TARGET_TARGETOPTIONS_H
16
19
20#include <memory>
21
22namespace llvm {
23 struct fltSemantics;
24 class MachineFunction;
25 class MemoryBuffer;
26
27 namespace FloatABI {
28 enum ABIType {
29 Default, // Target-specific (either soft or hard depending on triple, etc).
30 Soft, // Soft float.
31 Hard // Hard float.
32 };
33 }
34
35 namespace FPOpFusion {
37 Fast, // Enable fusion of FP ops wherever it's profitable.
38 Standard, // Only allow fusion of 'blessed' ops (currently just fmuladd).
39 Strict // Never fuse FP-ops.
40 };
41 }
42
43 namespace JumpTable {
45 Single, // Use a single table for all indirect jumptable calls.
46 Arity, // Use one table per number of function parameters.
47 Simplified, // Use one table per function type, with types projected
48 // into 4 types: pointer to non-function, struct,
49 // primitive, and function pointer.
50 Full // Use one table per unique function type
51 };
52 }
53
54 namespace ThreadModel {
55 enum Model {
56 POSIX, // POSIX Threads
57 Single // Single Threaded Environment
58 };
59 }
60
61 enum class BasicBlockSection {
62 All, // Use Basic Block Sections for all basic blocks. A section
63 // for every basic block can significantly bloat object file sizes.
64 List, // Get list of functions & BBs from a file. Selectively enables
65 // basic block sections for a subset of basic blocks which can be
66 // used to control object size bloats from creating sections.
67 Preset, // Similar to list but the blocks are identified by passes which
68 // seek to use Basic Block Sections, e.g. MachineFunctionSplitter.
69 // This option cannot be set via the command line.
70 None // Do not use Basic Block Sections.
71 };
72
73 enum class EABI {
74 Unknown,
75 Default, // Default means not specified
76 EABI4, // Target-specific (either 4, 5 or gnu depending on triple).
77 EABI5,
78 GNU
79 };
80
81 /// Identify a debugger for "tuning" the debug info.
82 ///
83 /// The "debugger tuning" concept allows us to present a more intuitive
84 /// interface that unpacks into different sets of defaults for the various
85 /// individual feature-flag settings, that suit the preferences of the
86 /// various debuggers. However, it's worth remembering that debuggers are
87 /// not the only consumers of debug info, and some variations in DWARF might
88 /// better be treated as target/platform issues. Fundamentally,
89 /// o if the feature is useful (or not) to a particular debugger, regardless
90 /// of the target, that's a tuning decision;
91 /// o if the feature is useful (or not) on a particular platform, regardless
92 /// of the debugger, that's a target decision.
93 /// It's not impossible to see both factors in some specific case.
94 enum class DebuggerKind {
95 Default, ///< No specific tuning requested.
96 GDB, ///< Tune debug info for gdb.
97 LLDB, ///< Tune debug info for lldb.
98 SCE, ///< Tune debug info for SCE targets (e.g. PS4).
99 DBX ///< Tune debug info for dbx.
100 };
101
102 /// Enable abort calls when global instruction selection fails to lower/select
103 /// an instruction.
105 Disable, // Disable the abort.
106 Enable, // Enable the abort.
107 DisableWithDiag // Disable the abort but emit a diagnostic on failure.
108 };
109
110 /// Indicates when and how the Swift async frame pointer bit should be set.
112 /// Determine whether to set the bit statically or dynamically based
113 /// on the deployment target.
115 /// Always set the bit.
116 Always,
117 /// Never set the bit.
118 Never,
119 };
120
121 /// \brief Enumeration value for AMDGPU code object version, which is the
122 /// code object version times 100.
125 COV_2 = 200, // Unsupported.
126 COV_3 = 300, // Unsupported.
127 COV_4 = 400,
128 COV_5 = 500,
129 COV_6 = 600,
130 };
131
133 public:
157 FPDenormalMode(DenormalMode::IEEE, DenormalMode::IEEE) {}
158
159 /// DisableFramePointerElim - This returns true if frame pointer elimination
160 /// optimization should be disabled for the given machine function.
161 bool DisableFramePointerElim(const MachineFunction &MF) const;
162
163 /// FramePointerIsReserved - This returns true if the frame pointer must
164 /// always either point to a new frame record or be un-modified in the given
165 /// function.
166 bool FramePointerIsReserved(const MachineFunction &MF) const;
167
168 /// If greater than 0, override the default value of
169 /// MCAsmInfo::BinutilsVersion.
170 std::pair<int, int> BinutilsVersion{0, 0};
171
172 /// UnsafeFPMath - This flag is enabled when the
173 /// -enable-unsafe-fp-math flag is specified on the command line. When
174 /// this flag is off (the default), the code generator is not allowed to
175 /// produce results that are "less precise" than IEEE allows. This includes
176 /// use of X86 instructions like FSIN and FCOS instead of libcalls.
177 unsigned UnsafeFPMath : 1;
178
179 /// NoInfsFPMath - This flag is enabled when the
180 /// -enable-no-infs-fp-math flag is specified on the command line. When
181 /// this flag is off (the default), the code generator is not allowed to
182 /// assume the FP arithmetic arguments and results are never +-Infs.
183 unsigned NoInfsFPMath : 1;
184
185 /// NoNaNsFPMath - This flag is enabled when the
186 /// -enable-no-nans-fp-math flag is specified on the command line. When
187 /// this flag is off (the default), the code generator is not allowed to
188 /// assume the FP arithmetic arguments and results are never NaNs.
189 unsigned NoNaNsFPMath : 1;
190
191 /// NoTrappingFPMath - This flag is enabled when the
192 /// -enable-no-trapping-fp-math is specified on the command line. This
193 /// specifies that there are no trap handlers to handle exceptions.
194 unsigned NoTrappingFPMath : 1;
195
196 /// NoSignedZerosFPMath - This flag is enabled when the
197 /// -enable-no-signed-zeros-fp-math is specified on the command line. This
198 /// specifies that optimizations are allowed to treat the sign of a zero
199 /// argument or result as insignificant.
201
202 /// ApproxFuncFPMath - This flag is enabled when the
203 /// -enable-approx-func-fp-math is specified on the command line. This
204 /// specifies that optimizations are allowed to substitute math functions
205 /// with approximate calculations
206 unsigned ApproxFuncFPMath : 1;
207
208 /// EnableAIXExtendedAltivecABI - This flag returns true when -vec-extabi is
209 /// specified. The code generator is then able to use both volatile and
210 /// nonvolitle vector registers. When false, the code generator only uses
211 /// volatile vector registers which is the default setting on AIX.
213
214 /// HonorSignDependentRoundingFPMath - This returns true when the
215 /// -enable-sign-dependent-rounding-fp-math is specified. If this returns
216 /// false (the default), the code generator is allowed to assume that the
217 /// rounding behavior is the default (round-to-zero for all floating point
218 /// to integer conversions, and round-to-nearest for all other arithmetic
219 /// truncations). If this is enabled (set to true), the code generator must
220 /// assume that the rounding mode may dynamically change.
223
224 /// NoZerosInBSS - By default some codegens place zero-initialized data to
225 /// .bss section. This flag disables such behaviour (necessary, e.g. for
226 /// crt*.o compiling).
227 unsigned NoZerosInBSS : 1;
228
229 /// GuaranteedTailCallOpt - This flag is enabled when -tailcallopt is
230 /// specified on the commandline. When the flag is on, participating targets
231 /// will perform tail call optimization on all calls which use the fastcc
232 /// calling convention and which satisfy certain target-independent
233 /// criteria (being at the end of a function, having the same return type
234 /// as their parent function, etc.), using an alternate ABI if necessary.
236
237 /// StackSymbolOrdering - When true, this will allow CodeGen to order
238 /// the local stack symbols (for code size, code locality, or any other
239 /// heuristics). When false, the local symbols are left in whatever order
240 /// they were generated. Default is true.
242
243 /// EnableFastISel - This flag enables fast-path instruction selection
244 /// which trades away generated code quality in favor of reducing
245 /// compile time.
246 unsigned EnableFastISel : 1;
247
248 /// EnableGlobalISel - This flag enables global instruction selection.
249 unsigned EnableGlobalISel : 1;
250
251 /// EnableGlobalISelAbort - Control abort behaviour when global instruction
252 /// selection fails to lower/select an instruction.
254
255 /// Control when and how the Swift async frame pointer bit should
256 /// be set.
259
260 /// UseInitArray - Use .init_array instead of .ctors for static
261 /// constructors.
262 unsigned UseInitArray : 1;
263
264 /// Disable the integrated assembler.
266
267 /// Emit functions into separate sections.
268 unsigned FunctionSections : 1;
269
270 /// Emit data into separate sections.
271 unsigned DataSections : 1;
272
273 /// Do not emit visibility attribute for xcoff.
275
276 /// Emit XCOFF traceback table.
278
279 unsigned UniqueSectionNames : 1;
280
281 /// Use unique names for basic block sections.
283
284 /// Emit named sections with the same name into different sections.
286
287 /// Emit target-specific trap instruction for 'unreachable' IR instructions.
288 unsigned TrapUnreachable : 1;
289
290 /// Do not emit a trap instruction for 'unreachable' IR instructions behind
291 /// noreturn calls, even if TrapUnreachable is true.
293
294 /// Bit size of immediate TLS offsets (0 == use the default).
295 unsigned TLSSize : 8;
296
297 /// EmulatedTLS - This flag enables emulated TLS model, using emutls
298 /// function in the runtime library..
299 unsigned EmulatedTLS : 1;
300
301 /// EnableTLSDESC - This flag enables TLS Descriptors.
302 unsigned EnableTLSDESC : 1;
303
304 /// This flag enables InterProcedural Register Allocation (IPRA).
305 unsigned EnableIPRA : 1;
306
307 /// Emit section containing metadata on function stack sizes.
309
310 /// Enables the MachineOutliner pass.
312
313 /// Enables the MachineFunctionSplitter pass.
315
316 /// Enables the StaticDataSplitter pass.
318
319 /// Set if the target supports default outlining behaviour.
321
322 /// Emit address-significance table.
323 unsigned EmitAddrsig : 1;
324
325 // Emit the SHT_LLVM_BB_ADDR_MAP section containing basic block address
326 // which can be used to map virtual addresses to machine basic blocks.
327 unsigned BBAddrMap : 1;
328
329 /// Emit basic blocks into separate sections.
331
332 /// Memory Buffer that contains information on sampled basic blocks and used
333 /// to selectively generate basic block sections.
334 std::shared_ptr<MemoryBuffer> BBSectionsFuncListBuf;
335
336 /// The flag enables call site info production. It is used only for debug
337 /// info, and it is restricted only to optimized code. This can be used for
338 /// something else, so that should be controlled in the frontend.
339 unsigned EmitCallSiteInfo : 1;
340 /// Set if the target supports the debug entry values by default.
342 /// When set to true, the EnableDebugEntryValues option forces production
343 /// of debug entry values even if the target does not officially support
344 /// it. Useful for testing purposes only. This flag should never be checked
345 /// directly, always use \ref ShouldEmitDebugEntryValues instead.
347 /// NOTE: There are targets that still do not support the debug entry values
348 /// production.
349 bool ShouldEmitDebugEntryValues() const;
350
351 // When set to true, use experimental new debug variable location tracking,
352 // which seeks to follow the values of variables rather than their location,
353 // post isel.
355
356 /// Emit DWARF debug frame section.
358
359 /// Emit XRay Function Index section
360 unsigned XRayFunctionIndex : 1;
361
362 /// When set to true, don't use DWARF extensions in later DWARF versions.
363 /// By default, it is set to false.
364 unsigned DebugStrictDwarf : 1;
365
366 /// Emit the hotpatch flag in CodeView debug.
367 unsigned Hotpatch : 1;
368
369 /// Enables scalar MASS conversions
371
372 /// Enable JustMyCode instrumentation.
373 unsigned JMCInstrument : 1;
374
375 /// Enable the CFIFixup pass.
376 unsigned EnableCFIFixup : 1;
377
378 /// When set to true, enable MisExpect Diagnostics
379 /// By default, it is set to false
380 unsigned MisExpect : 1;
381
382 /// When set to true, const objects with relocatable address values are put
383 /// into the RO data section.
385
386 /// When set to true, call/return argument extensions of narrow integers
387 /// are verified in the target backend if it cares about them. This is
388 /// not done with internal tools like llc that run many tests that ignore
389 /// (lack) these extensions.
391
392 /// Name of the stack usage file (i.e., .su file) if user passes
393 /// -fstack-usage. If empty, it can be implied that -fstack-usage is not
394 /// passed on the command line.
395 std::string StackUsageOutput;
396
397 /// If greater than 0, override TargetLoweringBase::PrefLoopAlignment.
398 unsigned LoopAlignment = 0;
399
400 /// FloatABIType - This setting is set by -float-abi=xxx option is specfied
401 /// on the command line. This setting may either be Default, Soft, or Hard.
402 /// Default selects the target's default behavior. Soft selects the ABI for
403 /// software floating point, but does not indicate that FP hardware may not
404 /// be used. Such a combination is unfortunately popular (e.g.
405 /// arm-apple-darwin). Hard presumes that the normal FP ABI is used.
407
408 /// AllowFPOpFusion - This flag is set by the -fp-contract=xxx option.
409 /// This controls the creation of fused FP ops that store intermediate
410 /// results in higher precision than IEEE allows (E.g. FMAs).
411 ///
412 /// Fast mode - allows formation of fused FP ops whenever they're
413 /// profitable.
414 /// Standard mode - allow fusion only for 'blessed' FP ops. At present the
415 /// only blessed op is the fmuladd intrinsic. In the future more blessed ops
416 /// may be added.
417 /// Strict mode - allow fusion only if/when it can be proven that the excess
418 /// precision won't effect the result.
419 ///
420 /// Note: This option only controls formation of fused ops by the
421 /// optimizers. Fused operations that are explicitly specified (e.g. FMA
422 /// via the llvm.fma.* intrinsic) will always be honored, regardless of
423 /// the value of this option.
425
426 /// ThreadModel - This flag specifies the type of threading model to assume
427 /// for things like atomics
429
430 /// EABIVersion - This flag specifies the EABI version
432
433 /// Which debugger to tune for.
435
436 private:
437 /// Flushing mode to assume in default FP environment.
438 DenormalMode FPDenormalMode;
439
440 /// Flushing mode to assume in default FP environment, for float/vector of
441 /// float.
442 DenormalMode FP32DenormalMode;
443
444 public:
446 FPDenormalMode = Mode;
447 }
448
450 FP32DenormalMode = Mode;
451 }
452
454 return FPDenormalMode;
455 }
456
458 return FP32DenormalMode;
459 }
460
462
463 /// What exception model to use
465
466 /// Machine level options.
468
469 /// Stores the filename/path of the final .o/.obj file, to be written in the
470 /// debug information. This is used for emitting the CodeView S_OBJNAME
471 /// record.
473 };
474
475} // End llvm namespace
476
477#endif
basic Basic Alias true
Utilities for dealing with flags related to floating point properties and mode controls.
static cl::opt< RegAllocEvictionAdvisorAnalysis::AdvisorMode > Mode("regalloc-enable-advisor", cl::Hidden, cl::init(RegAllocEvictionAdvisorAnalysis::AdvisorMode::Default), cl::desc("Enable regalloc advisor mode"), cl::values(clEnumValN(RegAllocEvictionAdvisorAnalysis::AdvisorMode::Default, "default", "Default"), clEnumValN(RegAllocEvictionAdvisorAnalysis::AdvisorMode::Release, "release", "precompiled"), clEnumValN(RegAllocEvictionAdvisorAnalysis::AdvisorMode::Development, "development", "for training")))
void setFP32DenormalMode(DenormalMode Mode)
DenormalMode getDenormalMode(const fltSemantics &FPType) const
unsigned UnsafeFPMath
UnsafeFPMath - This flag is enabled when the -enable-unsafe-fp-math flag is specified on the command ...
unsigned VerifyArgABICompliance
When set to true, call/return argument extensions of narrow integers are verified in the target backe...
unsigned EnableTLSDESC
EnableTLSDESC - This flag enables TLS Descriptors.
unsigned EmitStackSizeSection
Emit section containing metadata on function stack sizes.
unsigned XCOFFReadOnlyPointers
When set to true, const objects with relocatable address values are put into the RO data section.
unsigned EmitAddrsig
Emit address-significance table.
unsigned EnableAIXExtendedAltivecABI
EnableAIXExtendedAltivecABI - This flag returns true when -vec-extabi is specified.
unsigned UseInitArray
UseInitArray - Use .init_array instead of .ctors for static constructors.
DenormalMode getRawFPDenormalMode() const
bool HonorSignDependentRoundingFPMath() const
HonorSignDependentRoundingFPMath - Return true if the codegen must assume that the rounding mode of t...
unsigned StackSymbolOrdering
StackSymbolOrdering - When true, this will allow CodeGen to order the local stack symbols (for code s...
MCTargetOptions MCOptions
Machine level options.
FloatABI::ABIType FloatABIType
FloatABIType - This setting is set by -float-abi=xxx option is specfied on the command line.
std::pair< int, int > BinutilsVersion
If greater than 0, override the default value of MCAsmInfo::BinutilsVersion.
void setFPDenormalMode(DenormalMode Mode)
unsigned ForceDwarfFrameSection
Emit DWARF debug frame section.
unsigned NoInfsFPMath
NoInfsFPMath - This flag is enabled when the -enable-no-infs-fp-math flag is specified on the command...
unsigned NoZerosInBSS
NoZerosInBSS - By default some codegens place zero-initialized data to .bss section.
unsigned EmitCallSiteInfo
The flag enables call site info production.
std::string ObjectFilenameForDebug
Stores the filename/path of the final .o/.obj file, to be written in the debug information.
unsigned MisExpect
When set to true, enable MisExpect Diagnostics By default, it is set to false.
unsigned EnableMachineOutliner
Enables the MachineOutliner pass.
unsigned SeparateNamedSections
Emit named sections with the same name into different sections.
SwiftAsyncFramePointerMode SwiftAsyncFramePointer
Control when and how the Swift async frame pointer bit should be set.
unsigned SupportsDebugEntryValues
Set if the target supports the debug entry values by default.
unsigned ApproxFuncFPMath
ApproxFuncFPMath - This flag is enabled when the -enable-approx-func-fp-math is specified on the comm...
EABI EABIVersion
EABIVersion - This flag specifies the EABI version.
DenormalMode getRawFP32DenormalMode() const
unsigned Hotpatch
Emit the hotpatch flag in CodeView debug.
BasicBlockSection BBSections
Emit basic blocks into separate sections.
unsigned HonorSignDependentRoundingFPMathOption
HonorSignDependentRoundingFPMath - This returns true when the -enable-sign-dependent-rounding-fp-math...
unsigned ValueTrackingVariableLocations
GlobalISelAbortMode GlobalISelAbort
EnableGlobalISelAbort - Control abort behaviour when global instruction selection fails to lower/sele...
unsigned XCOFFTracebackTable
Emit XCOFF traceback table.
DebuggerKind DebuggerTuning
Which debugger to tune for.
unsigned IgnoreXCOFFVisibility
Do not emit visibility attribute for xcoff.
unsigned NoSignedZerosFPMath
NoSignedZerosFPMath - This flag is enabled when the -enable-no-signed-zeros-fp-math is specified on t...
unsigned EnableCFIFixup
Enable the CFIFixup pass.
unsigned DebugStrictDwarf
When set to true, don't use DWARF extensions in later DWARF versions.
unsigned SupportsDefaultOutlining
Set if the target supports default outlining behaviour.
unsigned PPCGenScalarMASSEntries
Enables scalar MASS conversions.
unsigned UniqueBasicBlockSectionNames
Use unique names for basic block sections.
bool FramePointerIsReserved(const MachineFunction &MF) const
FramePointerIsReserved - This returns true if the frame pointer must always either point to a new fra...
unsigned LoopAlignment
If greater than 0, override TargetLoweringBase::PrefLoopAlignment.
unsigned TLSSize
Bit size of immediate TLS offsets (0 == use the default).
unsigned EnableStaticDataPartitioning
Enables the StaticDataSplitter pass.
bool DisableFramePointerElim(const MachineFunction &MF) const
DisableFramePointerElim - This returns true if frame pointer elimination optimization should be disab...
unsigned UniqueSectionNames
unsigned NoNaNsFPMath
NoNaNsFPMath - This flag is enabled when the -enable-no-nans-fp-math flag is specified on the command...
unsigned EnableFastISel
EnableFastISel - This flag enables fast-path instruction selection which trades away generated code q...
std::shared_ptr< MemoryBuffer > BBSectionsFuncListBuf
Memory Buffer that contains information on sampled basic blocks and used to selectively generate basi...
unsigned FunctionSections
Emit functions into separate sections.
unsigned EnableMachineFunctionSplitter
Enables the MachineFunctionSplitter pass.
std::string StackUsageOutput
Name of the stack usage file (i.e., .su file) if user passes -fstack-usage.
unsigned EnableIPRA
This flag enables InterProcedural Register Allocation (IPRA).
unsigned NoTrapAfterNoreturn
Do not emit a trap instruction for 'unreachable' IR instructions behind noreturn calls,...
unsigned EnableGlobalISel
EnableGlobalISel - This flag enables global instruction selection.
unsigned DataSections
Emit data into separate sections.
unsigned GuaranteedTailCallOpt
GuaranteedTailCallOpt - This flag is enabled when -tailcallopt is specified on the commandline.
ThreadModel::Model ThreadModel
ThreadModel - This flag specifies the type of threading model to assume for things like atomics.
unsigned TrapUnreachable
Emit target-specific trap instruction for 'unreachable' IR instructions.
unsigned EmulatedTLS
EmulatedTLS - This flag enables emulated TLS model, using emutls function in the runtime library.
unsigned EnableDebugEntryValues
When set to true, the EnableDebugEntryValues option forces production of debug entry values even if t...
unsigned XRayFunctionIndex
Emit XRay Function Index section.
unsigned NoTrappingFPMath
NoTrappingFPMath - This flag is enabled when the -enable-no-trapping-fp-math is specified on the comm...
unsigned DisableIntegratedAS
Disable the integrated assembler.
bool ShouldEmitDebugEntryValues() const
NOTE: There are targets that still do not support the debug entry values production.
ExceptionHandling ExceptionModel
What exception model to use.
unsigned JMCInstrument
Enable JustMyCode instrumentation.
FPOpFusion::FPOpFusionMode AllowFPOpFusion
AllowFPOpFusion - This flag is set by the -fp-contract=xxx option.
This is an optimization pass for GlobalISel generic memory operations.
Definition: AddressRanges.h:18
CodeObjectVersionKind
Enumeration value for AMDGPU code object version, which is the code object version times 100.
@ COV_None
ExceptionHandling
@ None
No exception support.
SwiftAsyncFramePointerMode
Indicates when and how the Swift async frame pointer bit should be set.
@ Always
Always set the bit.
@ DeploymentBased
Determine whether to set the bit statically or dynamically based on the deployment target.
@ None
Definition: CodeGenData.h:106
BasicBlockSection
Definition: TargetOptions.h:61
DebuggerKind
Identify a debugger for "tuning" the debug info.
Definition: TargetOptions.h:94
@ SCE
Tune debug info for SCE targets (e.g. PS4).
@ DBX
Tune debug info for dbx.
@ Default
No specific tuning requested.
@ GDB
Tune debug info for gdb.
@ LLDB
Tune debug info for lldb.
@ Default
The result values are uniform if and only if all operands are uniform.
GlobalISelAbortMode
Enable abort calls when global instruction selection fails to lower/select an instruction.
@ Enable
Enable colors.
@ Disable
Disable colors.
Represent subnormal handling kind for floating point instruction inputs and outputs.