18bfedb3cSKazuaki Ishizaki //===- KernelOutlining.cpp - Implementation of GPU kernel outlining -------===//
260965b46SAlex Zinenko //
330857107SMehdi Amini // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
456222a06SMehdi Amini // See https://llvm.org/LICENSE.txt for license information.
556222a06SMehdi Amini // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
660965b46SAlex Zinenko //
756222a06SMehdi Amini //===----------------------------------------------------------------------===//
860965b46SAlex Zinenko //
960965b46SAlex Zinenko // This file implements the GPU dialect kernel outlining pass.
1060965b46SAlex Zinenko //
1160965b46SAlex Zinenko //===----------------------------------------------------------------------===//
1260965b46SAlex Zinenko 
131834ad4aSRiver Riddle #include "PassDetail.h"
14a54f4eaeSMogball #include "mlir/Dialect/Arithmetic/IR/Arithmetic.h"
1532fe1a8aSDiego Caballero #include "mlir/Dialect/DLTI/DLTI.h"
1660965b46SAlex Zinenko #include "mlir/Dialect/GPU/GPUDialect.h"
1760965b46SAlex Zinenko #include "mlir/Dialect/GPU/Passes.h"
183f44495dSMaheshRavishankar #include "mlir/Dialect/GPU/Utils.h"
19e2310704SJulian Gross #include "mlir/Dialect/MemRef/IR/MemRef.h"
2069d757c0SRob Suderman #include "mlir/Dialect/StandardOps/IR/Ops.h"
2160965b46SAlex Zinenko #include "mlir/IR/BlockAndValueMapping.h"
2260965b46SAlex Zinenko #include "mlir/IR/Builders.h"
23b8cd0c14STres Popp #include "mlir/IR/SymbolTable.h"
2432fe1a8aSDiego Caballero #include "mlir/Parser.h"
25edeff6e6SStephan Herhut #include "mlir/Support/LLVM.h"
26283b5e73SStephan Herhut #include "mlir/Transforms/RegionUtils.h"
2760965b46SAlex Zinenko 
2860965b46SAlex Zinenko using namespace mlir;
2960965b46SAlex Zinenko 
3060965b46SAlex Zinenko template <typename OpTy>
3160965b46SAlex Zinenko static void createForAllDimensions(OpBuilder &builder, Location loc,
32e62a6956SRiver Riddle                                    SmallVectorImpl<Value> &values) {
33aae51255SMogball   for (auto dim : {gpu::Dimension::x, gpu::Dimension::y, gpu::Dimension::z})
34aae51255SMogball     values.push_back(builder.create<OpTy>(loc, builder.getIndexType(), dim));
3560965b46SAlex Zinenko }
3660965b46SAlex Zinenko 
37edeff6e6SStephan Herhut /// Adds operations generating block/thread ids and grid/block dimensions at the
38edeff6e6SStephan Herhut /// beginning of the `launchFuncOpBody` region. Add mapping from argument in
39edeff6e6SStephan Herhut /// entry block of `launchOpBody`, to the corresponding result value of the
40edeff6e6SStephan Herhut /// added operations.
413f44495dSMaheshRavishankar static void injectGpuIndexOperations(Location loc, Region &launchFuncOpBody,
423f44495dSMaheshRavishankar                                      Region &launchOpBody,
433f44495dSMaheshRavishankar                                      BlockAndValueMapping &map) {
446273fa0cSAlex Zinenko   OpBuilder builder(loc->getContext());
453f44495dSMaheshRavishankar   Block &firstBlock = launchOpBody.front();
463f44495dSMaheshRavishankar   builder.setInsertionPointToStart(&launchFuncOpBody.front());
47e62a6956SRiver Riddle   SmallVector<Value, 12> indexOps;
486273fa0cSAlex Zinenko   createForAllDimensions<gpu::BlockIdOp>(builder, loc, indexOps);
496273fa0cSAlex Zinenko   createForAllDimensions<gpu::ThreadIdOp>(builder, loc, indexOps);
506273fa0cSAlex Zinenko   createForAllDimensions<gpu::GridDimOp>(builder, loc, indexOps);
516273fa0cSAlex Zinenko   createForAllDimensions<gpu::BlockDimOp>(builder, loc, indexOps);
5260965b46SAlex Zinenko   // Replace the leading 12 function args with the respective thread/block index
5360965b46SAlex Zinenko   // operations. Iterate backwards since args are erased and indices change.
54e4853be2SMehdi Amini   for (const auto &indexOp : enumerate(indexOps))
553f44495dSMaheshRavishankar     map.map(firstBlock.getArgument(indexOp.index()), indexOp.value());
5660965b46SAlex Zinenko }
5760965b46SAlex Zinenko 
58edeff6e6SStephan Herhut /// Identifies operations that are beneficial to sink into kernels. These
59edeff6e6SStephan Herhut /// operations may not have side-effects, as otherwise sinking (and hence
60edeff6e6SStephan Herhut /// duplicating them) is not legal.
613f44495dSMaheshRavishankar static bool isSinkingBeneficiary(Operation *op) {
62*dec8af70SRiver Riddle   return isa<arith::ConstantOp, ConstantOp, memref::DimOp, arith::SelectOp,
63a54f4eaeSMogball              arith::CmpIOp>(op);
64edeff6e6SStephan Herhut }
65edeff6e6SStephan Herhut 
66edeff6e6SStephan Herhut /// For a given operation `op`, computes whether it is beneficial to sink the
67edeff6e6SStephan Herhut /// operation into the kernel. An operation can be sunk if doing so does not
68edeff6e6SStephan Herhut /// introduce new kernel arguments. Whether a value is already available in the
69edeff6e6SStephan Herhut /// kernel (and hence does not introduce new arguments) is checked by
70366d8435SStephan Herhut /// querying `existingDependencies` and `availableValues`.
71edeff6e6SStephan Herhut /// If an operand is not yet available, we recursively check whether it can be
72edeff6e6SStephan Herhut /// made available by siking its defining op.
73edeff6e6SStephan Herhut /// Operations that are indentified for sinking are added to `beneficiaryOps` in
74366d8435SStephan Herhut /// the order they should appear in the kernel. Furthermore, `availableValues`
75366d8435SStephan Herhut /// is updated with results that will be available after sinking the identified
76edeff6e6SStephan Herhut /// ops.
77366d8435SStephan Herhut static bool
781fc096afSMehdi Amini extractBeneficiaryOps(Operation *op,
791fc096afSMehdi Amini                       const SetVector<Value> &existingDependencies,
804efb7754SRiver Riddle                       SetVector<Operation *> &beneficiaryOps,
81366d8435SStephan Herhut                       llvm::SmallPtrSetImpl<Value> &availableValues) {
82edeff6e6SStephan Herhut   if (beneficiaryOps.count(op))
83edeff6e6SStephan Herhut     return true;
84edeff6e6SStephan Herhut 
85edeff6e6SStephan Herhut   if (!isSinkingBeneficiary(op))
86edeff6e6SStephan Herhut     return false;
87edeff6e6SStephan Herhut 
88edeff6e6SStephan Herhut   for (Value operand : op->getOperands()) {
8941b09f4eSKazuaki Ishizaki     // It is already visible in the kernel, keep going.
90edeff6e6SStephan Herhut     if (availableValues.count(operand))
91edeff6e6SStephan Herhut       continue;
92366d8435SStephan Herhut     // Else check whether it can be made available via sinking or already is a
93366d8435SStephan Herhut     // dependency.
94edeff6e6SStephan Herhut     Operation *definingOp = operand.getDefiningOp();
95366d8435SStephan Herhut     if ((!definingOp ||
96366d8435SStephan Herhut          !extractBeneficiaryOps(definingOp, existingDependencies,
97366d8435SStephan Herhut                                 beneficiaryOps, availableValues)) &&
98366d8435SStephan Herhut         !existingDependencies.count(operand))
99edeff6e6SStephan Herhut       return false;
100edeff6e6SStephan Herhut   }
101edeff6e6SStephan Herhut   // We will sink the operation, mark its results as now available.
102edeff6e6SStephan Herhut   beneficiaryOps.insert(op);
103edeff6e6SStephan Herhut   for (Value result : op->getResults())
104edeff6e6SStephan Herhut     availableValues.insert(result);
105edeff6e6SStephan Herhut   return true;
106abb62668SStephan Herhut }
107abb62668SStephan Herhut 
1083f44495dSMaheshRavishankar LogicalResult mlir::sinkOperationsIntoLaunchOp(gpu::LaunchOp launchOp) {
1093f44495dSMaheshRavishankar   Region &launchOpBody = launchOp.body();
110318ff019SStephan Herhut 
1113f44495dSMaheshRavishankar   // Identify uses from values defined outside of the scope of the launch
1123f44495dSMaheshRavishankar   // operation.
1134efb7754SRiver Riddle   SetVector<Value> sinkCandidates;
1143f44495dSMaheshRavishankar   getUsedValuesDefinedAbove(launchOpBody, sinkCandidates);
1153f44495dSMaheshRavishankar 
1164efb7754SRiver Riddle   SetVector<Operation *> toBeSunk;
117366d8435SStephan Herhut   llvm::SmallPtrSet<Value, 4> availableValues;
118366d8435SStephan Herhut   for (Value operand : sinkCandidates) {
1193f44495dSMaheshRavishankar     Operation *operandOp = operand.getDefiningOp();
120edeff6e6SStephan Herhut     if (!operandOp)
1213f44495dSMaheshRavishankar       continue;
122366d8435SStephan Herhut     extractBeneficiaryOps(operandOp, sinkCandidates, toBeSunk, availableValues);
123dfd06af5SStephan Herhut   }
1243f44495dSMaheshRavishankar 
1253f44495dSMaheshRavishankar   // Insert operations so that the defs get cloned before uses.
1263f44495dSMaheshRavishankar   BlockAndValueMapping map;
1273f44495dSMaheshRavishankar   OpBuilder builder(launchOpBody);
128edeff6e6SStephan Herhut   for (Operation *op : toBeSunk) {
129edeff6e6SStephan Herhut     Operation *clonedOp = builder.clone(*op, map);
1303f44495dSMaheshRavishankar     // Only replace uses within the launch op.
131edeff6e6SStephan Herhut     for (auto pair : llvm::zip(op->getResults(), clonedOp->getResults()))
132edeff6e6SStephan Herhut       replaceAllUsesInRegionWith(std::get<0>(pair), std::get<1>(pair),
133edeff6e6SStephan Herhut                                  launchOp.body());
1343f44495dSMaheshRavishankar   }
1353f44495dSMaheshRavishankar   return success();
136dfd06af5SStephan Herhut }
137dfd06af5SStephan Herhut 
138edeff6e6SStephan Herhut /// Outline the `gpu.launch` operation body into a kernel function. Replace
139edeff6e6SStephan Herhut /// `gpu.terminator` operations by `gpu.return` in the generated function.
1403f44495dSMaheshRavishankar static gpu::GPUFuncOp outlineKernelFuncImpl(gpu::LaunchOp launchOp,
1413f44495dSMaheshRavishankar                                             StringRef kernelFnName,
1424efb7754SRiver Riddle                                             SetVector<Value> &operands) {
14360965b46SAlex Zinenko   Location loc = launchOp.getLoc();
1446273fa0cSAlex Zinenko   // Create a builder with no insertion point, insertion will happen separately
1456273fa0cSAlex Zinenko   // due to symbol table manipulation.
1466273fa0cSAlex Zinenko   OpBuilder builder(launchOp.getContext());
1473f44495dSMaheshRavishankar   Region &launchOpBody = launchOp.body();
1486273fa0cSAlex Zinenko 
149283b5e73SStephan Herhut   // Identify uses from values defined outside of the scope of the launch
150283b5e73SStephan Herhut   // operation.
1513f44495dSMaheshRavishankar   getUsedValuesDefinedAbove(launchOpBody, operands);
152283b5e73SStephan Herhut 
1533f44495dSMaheshRavishankar   // Create the gpu.func operation.
154283b5e73SStephan Herhut   SmallVector<Type, 4> kernelOperandTypes;
155283b5e73SStephan Herhut   kernelOperandTypes.reserve(operands.size());
156283b5e73SStephan Herhut   for (Value operand : operands) {
157283b5e73SStephan Herhut     kernelOperandTypes.push_back(operand.getType());
158283b5e73SStephan Herhut   }
15960965b46SAlex Zinenko   FunctionType type =
1601b97cdf8SRiver Riddle       FunctionType::get(launchOp.getContext(), kernelOperandTypes, {});
1613f44495dSMaheshRavishankar   auto outlinedFunc = builder.create<gpu::GPUFuncOp>(loc, kernelFnName, type);
1621ffc1aaaSChristian Sigg   outlinedFunc->setAttr(gpu::GPUDialect::getKernelFuncAttrName(),
16360965b46SAlex Zinenko                         builder.getUnitAttr());
1643f44495dSMaheshRavishankar   BlockAndValueMapping map;
1653f44495dSMaheshRavishankar 
1663f44495dSMaheshRavishankar   // Map the arguments corresponding to the launch parameters like blockIdx,
1673f44495dSMaheshRavishankar   // threadIdx, etc.
1683f44495dSMaheshRavishankar   Region &outlinedFuncBody = outlinedFunc.body();
1693f44495dSMaheshRavishankar   injectGpuIndexOperations(loc, outlinedFuncBody, launchOpBody, map);
1703f44495dSMaheshRavishankar 
1713f44495dSMaheshRavishankar   // Map arguments from gpu.launch region to the arguments of the gpu.func
1723f44495dSMaheshRavishankar   // operation.
1733f44495dSMaheshRavishankar   Block &entryBlock = outlinedFuncBody.front();
174e4853be2SMehdi Amini   for (const auto &operand : enumerate(operands))
1753f44495dSMaheshRavishankar     map.map(operand.value(), entryBlock.getArgument(operand.index()));
1763f44495dSMaheshRavishankar 
1773f44495dSMaheshRavishankar   // Clone the region of the gpu.launch operation into the gpu.func operation.
1789db53a18SRiver Riddle   // TODO: If cloneInto can be modified such that if a mapping for
1793f44495dSMaheshRavishankar   // a block exists, that block will be used to clone operations into (at the
1803f44495dSMaheshRavishankar   // end of the block), instead of creating a new block, this would be much
1813f44495dSMaheshRavishankar   // cleaner.
1823f44495dSMaheshRavishankar   launchOpBody.cloneInto(&outlinedFuncBody, map);
1833f44495dSMaheshRavishankar 
1845aacce3dSKazuaki Ishizaki   // Branch from entry of the gpu.func operation to the block that is cloned
1855aacce3dSKazuaki Ishizaki   // from the entry block of the gpu.launch operation.
1863f44495dSMaheshRavishankar   Block &launchOpEntry = launchOpBody.front();
1873f44495dSMaheshRavishankar   Block *clonedLaunchOpEntry = map.lookup(&launchOpEntry);
1883f44495dSMaheshRavishankar   builder.setInsertionPointToEnd(&entryBlock);
1893f44495dSMaheshRavishankar   builder.create<BranchOp>(loc, clonedLaunchOpEntry);
1903f44495dSMaheshRavishankar 
19126927518SStephan Herhut   outlinedFunc.walk([](gpu::TerminatorOp op) {
19226927518SStephan Herhut     OpBuilder replacer(op);
19326927518SStephan Herhut     replacer.create<gpu::ReturnOp>(op.getLoc());
19426927518SStephan Herhut     op.erase();
19526927518SStephan Herhut   });
19660965b46SAlex Zinenko   return outlinedFunc;
19760965b46SAlex Zinenko }
19860965b46SAlex Zinenko 
1993f44495dSMaheshRavishankar gpu::GPUFuncOp mlir::outlineKernelFunc(gpu::LaunchOp launchOp,
2003f44495dSMaheshRavishankar                                        StringRef kernelFnName,
2013f44495dSMaheshRavishankar                                        llvm::SmallVectorImpl<Value> &operands) {
2023f44495dSMaheshRavishankar   DenseSet<Value> inputOperandSet;
2033f44495dSMaheshRavishankar   inputOperandSet.insert(operands.begin(), operands.end());
2044efb7754SRiver Riddle   SetVector<Value> operandSet(operands.begin(), operands.end());
2053f44495dSMaheshRavishankar   auto funcOp = outlineKernelFuncImpl(launchOp, kernelFnName, operandSet);
2063f44495dSMaheshRavishankar   for (auto operand : operandSet) {
2073f44495dSMaheshRavishankar     if (!inputOperandSet.count(operand))
2083f44495dSMaheshRavishankar       operands.push_back(operand);
2093f44495dSMaheshRavishankar   }
2103f44495dSMaheshRavishankar   return funcOp;
2113f44495dSMaheshRavishankar }
2123f44495dSMaheshRavishankar 
213edeff6e6SStephan Herhut /// Replace `gpu.launch` operations with an `gpu.launch_func` operation
214edeff6e6SStephan Herhut /// launching `kernelFunc`. The kernel func contains the body of the
215edeff6e6SStephan Herhut /// `gpu.launch` with constant region arguments inlined.
2163f44495dSMaheshRavishankar static void convertToLaunchFuncOp(gpu::LaunchOp launchOp,
217283b5e73SStephan Herhut                                   gpu::GPUFuncOp kernelFunc,
218283b5e73SStephan Herhut                                   ValueRange operands) {
21960965b46SAlex Zinenko   OpBuilder builder(launchOp);
22008b63db8SUday Bondhugula   // The launch op has an optional dynamic shared memory size. If it doesn't
22108b63db8SUday Bondhugula   // exist, we use zero.
2223f44495dSMaheshRavishankar   builder.create<gpu::LaunchFuncOp>(
22360965b46SAlex Zinenko       launchOp.getLoc(), kernelFunc, launchOp.getGridSizeOperandValues(),
22408b63db8SUday Bondhugula       launchOp.getBlockSizeOperandValues(), launchOp.dynamicSharedMemorySize(),
22508b63db8SUday Bondhugula       operands);
22660965b46SAlex Zinenko   launchOp.erase();
22760965b46SAlex Zinenko }
22860965b46SAlex Zinenko 
22960965b46SAlex Zinenko namespace {
230b8676da1SChristian Sigg /// Pass that moves the kernel of each LaunchOp into its separate nested module.
231b8676da1SChristian Sigg ///
232b8676da1SChristian Sigg /// This pass moves the kernel code of each LaunchOp into a function created
233b8676da1SChristian Sigg /// inside a nested module. It also creates an external function of the same
234b8676da1SChristian Sigg /// name in the parent module.
235b8676da1SChristian Sigg ///
2369a52ea5cSTres Popp /// The gpu.modules are intended to be compiled to a cubin blob independently in
2379a52ea5cSTres Popp /// a separate pass. The external functions can then be annotated with the
238b8676da1SChristian Sigg /// symbol of the cubin accessor function.
239722f909fSRiver Riddle class GpuKernelOutliningPass
2401834ad4aSRiver Riddle     : public GpuKernelOutliningBase<GpuKernelOutliningPass> {
24160965b46SAlex Zinenko public:
24232fe1a8aSDiego Caballero   GpuKernelOutliningPass(StringRef dlStr) {
24332fe1a8aSDiego Caballero     if (!dlStr.empty() && !dataLayoutStr.hasValue())
24432fe1a8aSDiego Caballero       dataLayoutStr = dlStr.str();
24532fe1a8aSDiego Caballero   }
24632fe1a8aSDiego Caballero 
24732fe1a8aSDiego Caballero   GpuKernelOutliningPass(const GpuKernelOutliningPass &other)
24832fe1a8aSDiego Caballero       : dataLayoutSpec(other.dataLayoutSpec) {
24932fe1a8aSDiego Caballero     dataLayoutStr = other.dataLayoutStr;
25032fe1a8aSDiego Caballero   }
25132fe1a8aSDiego Caballero 
25232fe1a8aSDiego Caballero   LogicalResult initialize(MLIRContext *context) override {
25332fe1a8aSDiego Caballero     // Initialize the data layout specification from the data layout string.
25432fe1a8aSDiego Caballero     if (!dataLayoutStr.empty()) {
25532fe1a8aSDiego Caballero       Attribute resultAttr = mlir::parseAttribute(dataLayoutStr, context);
25632fe1a8aSDiego Caballero       if (!resultAttr)
25732fe1a8aSDiego Caballero         return failure();
25832fe1a8aSDiego Caballero 
25932fe1a8aSDiego Caballero       dataLayoutSpec = resultAttr.dyn_cast<DataLayoutSpecInterface>();
26032fe1a8aSDiego Caballero       if (!dataLayoutSpec)
26132fe1a8aSDiego Caballero         return failure();
26232fe1a8aSDiego Caballero     }
26332fe1a8aSDiego Caballero 
26432fe1a8aSDiego Caballero     return success();
26532fe1a8aSDiego Caballero   }
26632fe1a8aSDiego Caballero 
267722f909fSRiver Riddle   void runOnOperation() override {
268722f909fSRiver Riddle     SymbolTable symbolTable(getOperation());
26990d65d32SAlex Zinenko     bool modified = false;
270722f909fSRiver Riddle     for (auto func : getOperation().getOps<FuncOp>()) {
271b8676da1SChristian Sigg       // Insert just after the function.
272c4a04059SChristian Sigg       Block::iterator insertPt(func->getNextNode());
2733f44495dSMaheshRavishankar       auto funcWalkResult = func.walk([&](gpu::LaunchOp op) {
2744efb7754SRiver Riddle         SetVector<Value> operands;
2753f44495dSMaheshRavishankar         std::string kernelFnName =
2760bf4a82aSChristian Sigg             Twine(op->getParentOfType<FuncOp>().getName(), "_kernel").str();
2773f44495dSMaheshRavishankar 
2783f44495dSMaheshRavishankar         // Pull in instructions that can be sunk
2793f44495dSMaheshRavishankar         if (failed(sinkOperationsIntoLaunchOp(op)))
2803f44495dSMaheshRavishankar           return WalkResult::interrupt();
2813f44495dSMaheshRavishankar         gpu::GPUFuncOp outlinedFunc =
2823f44495dSMaheshRavishankar             outlineKernelFuncImpl(op, kernelFnName, operands);
283b8676da1SChristian Sigg 
28490d65d32SAlex Zinenko         // Create nested module and insert outlinedFunc. The module will
28590d65d32SAlex Zinenko         // originally get the same name as the function, but may be renamed on
28690d65d32SAlex Zinenko         // insertion into the parent module.
287b8cd0c14STres Popp         auto kernelModule = createKernelModule(outlinedFunc, symbolTable);
288b8cd0c14STres Popp         symbolTable.insert(kernelModule, insertPt);
289b8676da1SChristian Sigg 
290b8676da1SChristian Sigg         // Potentially changes signature, pulling in constants.
291283b5e73SStephan Herhut         convertToLaunchFuncOp(op, outlinedFunc, operands.getArrayRef());
29290d65d32SAlex Zinenko         modified = true;
2933f44495dSMaheshRavishankar         return WalkResult::advance();
29460965b46SAlex Zinenko       });
2953f44495dSMaheshRavishankar       if (funcWalkResult.wasInterrupted())
2963f44495dSMaheshRavishankar         return signalPassFailure();
29760965b46SAlex Zinenko     }
29890d65d32SAlex Zinenko 
29990d65d32SAlex Zinenko     // If any new module was inserted in this module, annotate this module as
30090d65d32SAlex Zinenko     // a container module.
30190d65d32SAlex Zinenko     if (modified)
3021ffc1aaaSChristian Sigg       getOperation()->setAttr(gpu::GPUDialect::getContainerModuleAttrName(),
30390d65d32SAlex Zinenko                               UnitAttr::get(&getContext()));
30460965b46SAlex Zinenko   }
30574cdbf59SChristian Sigg 
30674cdbf59SChristian Sigg private:
307edeff6e6SStephan Herhut   /// Returns a gpu.module containing kernelFunc and all callees (recursive).
3089a52ea5cSTres Popp   gpu::GPUModuleOp createKernelModule(gpu::GPUFuncOp kernelFunc,
309b8cd0c14STres Popp                                       const SymbolTable &parentSymbolTable) {
3109a52ea5cSTres Popp     // TODO: This code cannot use an OpBuilder because it must be inserted into
3119a52ea5cSTres Popp     // a SymbolTable by the caller. SymbolTable needs to be refactored to
3129a52ea5cSTres Popp     // prevent manual building of Ops with symbols in code using SymbolTables
3139a52ea5cSTres Popp     // and then this needs to use the OpBuilder.
31402b6fb21SMehdi Amini     auto *context = getOperation().getContext();
315bb1d976fSAlex Zinenko     OpBuilder builder(context);
316e1364f10SMehdi Amini     auto kernelModule = builder.create<gpu::GPUModuleOp>(kernelFunc.getLoc(),
317e1364f10SMehdi Amini                                                          kernelFunc.getName());
31832fe1a8aSDiego Caballero 
31932fe1a8aSDiego Caballero     // If a valid data layout spec was provided, attach it to the kernel module.
32032fe1a8aSDiego Caballero     // Otherwise, the default data layout will be used.
32132fe1a8aSDiego Caballero     if (dataLayoutSpec)
322e2b658cdSDiego Caballero       kernelModule->setAttr(DLTIDialect::kDataLayoutAttrName, dataLayoutSpec);
32332fe1a8aSDiego Caballero 
324b8cd0c14STres Popp     SymbolTable symbolTable(kernelModule);
325b8cd0c14STres Popp     symbolTable.insert(kernelFunc);
32674cdbf59SChristian Sigg 
3274562e389SRiver Riddle     SmallVector<Operation *, 8> symbolDefWorklist = {kernelFunc};
3289fbf52e3SMLIR Team     while (!symbolDefWorklist.empty()) {
3299fbf52e3SMLIR Team       if (Optional<SymbolTable::UseRange> symbolUses =
3309fbf52e3SMLIR Team               SymbolTable::getSymbolUses(symbolDefWorklist.pop_back_val())) {
3319fbf52e3SMLIR Team         for (SymbolTable::SymbolUse symbolUse : *symbolUses) {
3329b9c647cSRiver Riddle           StringRef symbolName =
3339b9c647cSRiver Riddle               symbolUse.getSymbolRef().cast<FlatSymbolRefAttr>().getValue();
334b8cd0c14STres Popp           if (symbolTable.lookup(symbolName))
3359fbf52e3SMLIR Team             continue;
33674cdbf59SChristian Sigg 
3379fbf52e3SMLIR Team           Operation *symbolDefClone =
338b8cd0c14STres Popp               parentSymbolTable.lookup(symbolName)->clone();
3399fbf52e3SMLIR Team           symbolDefWorklist.push_back(symbolDefClone);
340b8cd0c14STres Popp           symbolTable.insert(symbolDefClone);
3419fbf52e3SMLIR Team         }
3429fbf52e3SMLIR Team       }
34374cdbf59SChristian Sigg     }
34474cdbf59SChristian Sigg 
34574cdbf59SChristian Sigg     return kernelModule;
34674cdbf59SChristian Sigg   }
34732fe1a8aSDiego Caballero 
34832fe1a8aSDiego Caballero   Option<std::string> dataLayoutStr{
34932fe1a8aSDiego Caballero       *this, "data-layout-str",
35032fe1a8aSDiego Caballero       llvm::cl::desc("String containing the data layout specification to be "
35132fe1a8aSDiego Caballero                      "attached to the GPU kernel module")};
35232fe1a8aSDiego Caballero 
35332fe1a8aSDiego Caballero   DataLayoutSpecInterface dataLayoutSpec;
35460965b46SAlex Zinenko };
35560965b46SAlex Zinenko 
35660965b46SAlex Zinenko } // namespace
35760965b46SAlex Zinenko 
35832fe1a8aSDiego Caballero std::unique_ptr<OperationPass<ModuleOp>>
35932fe1a8aSDiego Caballero mlir::createGpuKernelOutliningPass(StringRef dataLayoutStr) {
36032fe1a8aSDiego Caballero   return std::make_unique<GpuKernelOutliningPass>(dataLayoutStr);
36160965b46SAlex Zinenko }
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