33#define GET_GICOMBINER_DEPS
34#include "WebAssemblyGenPreLegalizeGICombiner.inc"
35#undef GET_GICOMBINER_DEPS
37#define DEBUG_TYPE "wasm-prelegalizer-combiner"
43#define GET_GICOMBINER_TYPES
44#include "WebAssemblyGenPreLegalizeGICombiner.inc"
45#undef GET_GICOMBINER_TYPES
47class WebAssemblyPreLegalizerCombinerImpl :
public Combiner {
50 const WebAssemblyPreLegalizerCombinerImplRuleConfig &RuleConfig;
54 WebAssemblyPreLegalizerCombinerImpl(
57 const WebAssemblyPreLegalizerCombinerImplRuleConfig &RuleConfig,
61 static const char *
getName() {
return "WebAssembly00PreLegalizerCombiner"; }
66#define GET_GICOMBINER_CLASS_MEMBERS
67#include "WebAssemblyGenPreLegalizeGICombiner.inc"
68#undef GET_GICOMBINER_CLASS_MEMBERS
71#define GET_GICOMBINER_IMPL
72#include "WebAssemblyGenPreLegalizeGICombiner.inc"
73#undef GET_GICOMBINER_IMPL
75WebAssemblyPreLegalizerCombinerImpl::WebAssemblyPreLegalizerCombinerImpl(
78 const WebAssemblyPreLegalizerCombinerImplRuleConfig &RuleConfig,
82 Helper(Observer,
B,
true, &VT, MDT, LI),
83 RuleConfig(RuleConfig), STI(STI),
85#include
"WebAssemblyGenPreLegalizeGICombiner.inc"
97 WebAssemblyPreLegalizerCombinerLegacy();
100 return "WebAssemblyPreLegalizerCombiner";
109void WebAssemblyPreLegalizerCombinerLegacy::getAnalysisUsage(
122WebAssemblyPreLegalizerCombinerLegacy::WebAssemblyPreLegalizerCombinerLegacy()
132 WebAssemblyPreLegalizerCombinerImplRuleConfig RuleConfig;
133 if (!RuleConfig.parseCommandLineOption())
139 const auto *LI = ST.getLegalizerInfo();
147 nullptr, EnableOpt,
F.hasOptSize(),
155 WebAssemblyPreLegalizerCombinerImpl Impl(MF, CInfo, *VT, CSEInfo, RuleConfig,
157 return Impl.combineMachineInstrs();
160char WebAssemblyPreLegalizerCombinerLegacy::ID = 0;
162 "Combine WebAssembly machine instrs before legalization",
168 "Combine WebAssembly machine instrs before legalization",
172 return new WebAssemblyPreLegalizerCombinerLegacy();
175bool WebAssemblyPreLegalizerCombinerLegacy::runOnMachineFunction(
182 getAnalysis<GISelCSEAnalysisWrapperPass>().getCSEWrapper();
187 return &getAnalysis<GISelValueTrackingAnalysisLegacy>().get(MF);
190 return &getAnalysis<MachineDominatorTreeWrapperPass>().getDomTree();
#define GET_GICOMBINER_CONSTRUCTOR_INITS
amdgpu aa AMDGPU Address space based Alias Analysis Wrapper
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
Provides analysis for continuously CSEing during GISel passes.
This contains common combine transformations that may be used in a combine pass,or by the target else...
Option class for Targets to specify which operations are combined how and when.
This contains the base class for all Combiners generated by TableGen.
Provides analysis for querying information about KnownBits during GISel passes.
This file declares the MachineIRBuilder class.
#define INITIALIZE_PASS_DEPENDENCY(depName)
#define INITIALIZE_PASS_END(passName, arg, name, cfg, analysis)
#define INITIALIZE_PASS_BEGIN(passName, arg, name, cfg, analysis)
static StringRef getName(Value *V)
Target-Independent Code Generator Pass Configuration Options pass.
static bool runCombinerOnMachineFunction(MachineFunction &MF, function_ref< bool()> ShouldSkip, function_ref< GISelValueTracking *()> GetVT, function_ref< MachineDominatorTree *()> GetMDT, function_ref< GISelCSEInfo *()> GetCSEInfo)
static bool runCombinerOnMachineFunction(MachineFunction &MF, function_ref< GISelCSEInfo *()> GetCSEInfo, function_ref< bool()> ShouldSkip, function_ref< GISelValueTracking *()> GetVT, function_ref< MachineDominatorTree *()> GetMDT)
This file declares the WebAssembly-specific subclass of TargetSubtarget.
This file contains the entry points for global functions defined in the LLVM WebAssembly back-end.
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
Represent the analysis usage information of a pass.
AnalysisUsage & addRequired()
AnalysisUsage & addPreserved()
Add the specified Pass class to the set of analyses preserved by this pass.
LLVM_ABI void setPreservesCFG()
This function should be called by the pass, iff they do not:
Represents analyses that only rely on functions' control flow.
FunctionPass class - This class is used to implement most global optimizations.
bool hasOptNone() const
Do not optimize this function (-O0).
The actual analysis pass wrapper.
Simple wrapper that does the following.
To use KnownBitsInfo analysis in a pass, KnownBitsInfo &Info = getAnalysis<GISelValueTrackingInfoAnal...
Analysis pass which computes a MachineDominatorTree.
Analysis pass which computes a MachineDominatorTree.
DominatorTree Class - Concrete subclass of DominatorTreeBase that is used to compute a normal dominat...
MachineFunctionPass - This class adapts the FunctionPass interface to allow convenient creation of pa...
void getAnalysisUsage(AnalysisUsage &AU) const override
getAnalysisUsage - Subclasses that override getAnalysisUsage must call this.
virtual bool runOnMachineFunction(MachineFunction &MF)=0
runOnMachineFunction - This method must be overloaded to perform the desired machine code transformat...
const TargetSubtargetInfo & getSubtarget() const
getSubtarget - Return the subtarget for which this machine code is being compiled.
Function & getFunction()
Return the LLVM function that this machine code represents.
const MachineFunctionProperties & getProperties() const
Get the function properties.
const TargetMachine & getTarget() const
getTarget - Return the target machine this machine code is compiled with
Representation of each machine instruction.
virtual StringRef getPassName() const
getPassName - Return a nice clean name for a pass.
A set of analyses that are preserved following a run of a transformation pass.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
PreservedAnalyses & preserveSet()
Mark an analysis set as preserved.
CodeGenOptLevel getOptLevel() const
Returns the optimization level: None, Less, Default, or Aggressive.
Target-Independent Code Generator Pass Configuration Options.
virtual std::unique_ptr< CSEConfigBase > getCSEConfig() const
Returns the CSEConfig object to use for the current optimization level.
PreservedAnalyses run(MachineFunction &MF, MachineFunctionAnalysisManager &MFAM)
An efficient, type-erasing, non-owning reference to a callable.
Pass manager infrastructure for declaring and invalidating analyses.
This is an optimization pass for GlobalISel generic memory operations.
FunctionPass * createWebAssemblyPreLegalizerCombinerLegacyPass()
AnalysisManager< MachineFunction > MachineFunctionAnalysisManager
LLVM_ABI PreservedAnalyses getMachineFunctionPassPreservedAnalyses()
Returns the minimum set of Analyses that all machine function passes must preserve.
decltype(auto) get(const PointerIntPair< PointerTy, IntBits, IntType, PtrTraits, Info > &Pair)
LLVM_ABI void getSelectionDAGFallbackAnalysisUsage(AnalysisUsage &AU)
Modify analysis usage so it preserves passes required for the SelectionDAG fallback.
LLVM_ABI void reportFatalUsageError(Error Err)
Report a fatal error that does not indicate a bug in LLVM.
unsigned MaxIterations
The maximum number of times the Combiner will iterate over the MachineFunction.
ObserverLevel ObserverLvl
Select how the Combiner acts on MIR changes.
bool EnableFullDCE
Whether dead code elimination is performed before each Combiner iteration.
@ SinglePass
Enables Observer-based DCE and additional heuristics that retry combining defined and used instructio...