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![Chris Lattner](/assets/img/avatar_default.png)
AbstractOperation* or an Identifier. This makes it possible to get to stuff in AbstractOperation faster than going through a hash table lookup. This makes constant folding a bit faster now, but will become more important with subsequent changes. PiperOrigin-RevId: 216476772
302 lines
11 KiB
C++
302 lines
11 KiB
C++
//===- Builders.cpp - Helpers for constructing MLIR Classes ---------------===//
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//
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// Copyright 2019 The MLIR Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// =============================================================================
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#include "mlir/IR/Builders.h"
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#include "mlir/IR/AffineExpr.h"
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#include "mlir/IR/AffineMap.h"
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#include "mlir/IR/Attributes.h"
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#include "mlir/IR/IntegerSet.h"
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#include "mlir/IR/Location.h"
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#include "mlir/IR/Module.h"
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#include "mlir/IR/Types.h"
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using namespace mlir;
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Builder::Builder(Module *module) : context(module->getContext()) {}
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Identifier Builder::getIdentifier(StringRef str) {
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return Identifier::get(str, context);
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}
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Module *Builder::createModule() { return new Module(context); }
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//===----------------------------------------------------------------------===//
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// Locations.
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//===----------------------------------------------------------------------===//
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UnknownLoc *Builder::getUnknownLoc() { return UnknownLoc::get(context); }
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UniquedFilename Builder::getUniquedFilename(StringRef filename) {
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return UniquedFilename::get(filename, context);
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}
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FileLineColLoc *Builder::getFileLineColLoc(UniquedFilename filename,
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unsigned line, unsigned column) {
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return FileLineColLoc::get(filename, line, column, context);
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}
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//===----------------------------------------------------------------------===//
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// Types.
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//===----------------------------------------------------------------------===//
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FloatType *Builder::getBF16Type() { return Type::getBF16(context); }
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FloatType *Builder::getF16Type() { return Type::getF16(context); }
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FloatType *Builder::getF32Type() { return Type::getF32(context); }
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FloatType *Builder::getF64Type() { return Type::getF64(context); }
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OtherType *Builder::getIndexType() { return Type::getIndex(context); }
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OtherType *Builder::getTFControlType() { return Type::getTFControl(context); }
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OtherType *Builder::getTFResourceType() { return Type::getTFResource(context); }
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OtherType *Builder::getTFVariantType() { return Type::getTFVariant(context); }
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OtherType *Builder::getTFComplex64Type() {
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return Type::getTFComplex64(context);
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}
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OtherType *Builder::getTFComplex128Type() {
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return Type::getTFComplex128(context);
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}
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OtherType *Builder::getTFF32REFType() { return Type::getTFF32REF(context); }
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OtherType *Builder::getTFStringType() { return Type::getTFString(context); }
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IntegerType *Builder::getIntegerType(unsigned width) {
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return Type::getInteger(width, context);
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}
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FunctionType *Builder::getFunctionType(ArrayRef<Type *> inputs,
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ArrayRef<Type *> results) {
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return FunctionType::get(inputs, results, context);
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}
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MemRefType *Builder::getMemRefType(ArrayRef<int> shape, Type *elementType,
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ArrayRef<AffineMap> affineMapComposition,
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unsigned memorySpace) {
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return MemRefType::get(shape, elementType, affineMapComposition, memorySpace);
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}
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VectorType *Builder::getVectorType(ArrayRef<int> shape, Type *elementType) {
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return VectorType::get(shape, elementType);
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}
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RankedTensorType *Builder::getTensorType(ArrayRef<int> shape,
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Type *elementType) {
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return RankedTensorType::get(shape, elementType);
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}
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UnrankedTensorType *Builder::getTensorType(Type *elementType) {
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return UnrankedTensorType::get(elementType);
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}
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//===----------------------------------------------------------------------===//
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// Attributes.
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//===----------------------------------------------------------------------===//
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BoolAttr *Builder::getBoolAttr(bool value) {
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return BoolAttr::get(value, context);
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}
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IntegerAttr *Builder::getIntegerAttr(int64_t value) {
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return IntegerAttr::get(value, context);
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}
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FloatAttr *Builder::getFloatAttr(double value) {
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return FloatAttr::get(value, context);
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}
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StringAttr *Builder::getStringAttr(StringRef bytes) {
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return StringAttr::get(bytes, context);
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}
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ArrayAttr *Builder::getArrayAttr(ArrayRef<Attribute *> value) {
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return ArrayAttr::get(value, context);
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}
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AffineMapAttr *Builder::getAffineMapAttr(AffineMap map) {
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return AffineMapAttr::get(map);
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}
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TypeAttr *Builder::getTypeAttr(Type *type) {
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return TypeAttr::get(type, context);
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}
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FunctionAttr *Builder::getFunctionAttr(const Function *value) {
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return FunctionAttr::get(value, context);
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}
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//===----------------------------------------------------------------------===//
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// Affine Expressions, Affine Maps, and Integet Sets.
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//===----------------------------------------------------------------------===//
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AffineMap Builder::getAffineMap(unsigned dimCount, unsigned symbolCount,
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ArrayRef<AffineExpr> results,
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ArrayRef<AffineExpr> rangeSizes) {
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return AffineMap::get(dimCount, symbolCount, results, rangeSizes);
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}
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AffineExpr Builder::getAffineDimExpr(unsigned position) {
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return mlir::getAffineDimExpr(position, context);
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}
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AffineExpr Builder::getAffineSymbolExpr(unsigned position) {
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return mlir::getAffineSymbolExpr(position, context);
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}
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AffineExpr Builder::getAffineConstantExpr(int64_t constant) {
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return mlir::getAffineConstantExpr(constant, context);
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}
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IntegerSet *Builder::getIntegerSet(unsigned dimCount, unsigned symbolCount,
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ArrayRef<AffineExpr> constraints,
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ArrayRef<bool> isEq) {
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return IntegerSet::get(dimCount, symbolCount, constraints, isEq, context);
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}
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AffineMap Builder::getConstantAffineMap(int64_t val) {
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return AffineMap::get(/*dimCount=*/0, /*symbolCount=*/0,
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{getAffineConstantExpr(val)}, {});
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}
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AffineMap Builder::getDimIdentityMap() {
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return AffineMap::get(/*dimCount=*/1, /*symbolCount=*/0,
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{getAffineDimExpr(0)}, {});
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}
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AffineMap Builder::getMultiDimIdentityMap(unsigned rank) {
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SmallVector<AffineExpr, 4> dimExprs;
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dimExprs.reserve(rank);
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for (unsigned i = 0; i < rank; ++i)
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dimExprs.push_back(getAffineDimExpr(i));
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return AffineMap::get(/*dimCount=*/rank, /*symbolCount=*/0, dimExprs, {});
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}
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AffineMap Builder::getSymbolIdentityMap() {
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return AffineMap::get(/*dimCount=*/0, /*symbolCount=*/1,
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{getAffineSymbolExpr(0)}, {});
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}
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AffineMap Builder::getSingleDimShiftAffineMap(int64_t shift) {
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// expr = d0 + shift.
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auto expr = getAffineDimExpr(0) + shift;
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return AffineMap::get(/*dimCount=*/1, /*symbolCount=*/0, {expr}, {});
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}
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AffineMap Builder::getShiftedAffineMap(AffineMap map, int64_t shift) {
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SmallVector<AffineExpr, 4> shiftedResults;
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shiftedResults.reserve(map.getNumResults());
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for (auto resultExpr : map.getResults()) {
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shiftedResults.push_back(resultExpr + shift);
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}
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return AffineMap::get(map.getNumDims(), map.getNumSymbols(), shiftedResults,
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map.getRangeSizes());
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}
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//===----------------------------------------------------------------------===//
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// CFG function elements.
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//===----------------------------------------------------------------------===//
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/// Add new basic block and set the insertion point to the end of it. If an
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/// 'insertBefore' basic block is passed, the block will be placed before the
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/// specified block. If not, the block will be appended to the end of the
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/// current function.
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BasicBlock *CFGFuncBuilder::createBlock(BasicBlock *insertBefore) {
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BasicBlock *b = new BasicBlock();
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// If we are supposed to insert before a specific block, do so, otherwise add
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// the block to the end of the function.
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if (insertBefore)
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function->getBlocks().insert(CFGFunction::iterator(insertBefore), b);
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else
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function->push_back(b);
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setInsertionPoint(b);
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return b;
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}
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/// Create an operation given the fields represented as an OperationState.
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OperationInst *CFGFuncBuilder::createOperation(const OperationState &state) {
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SmallVector<CFGValue *, 8> operands;
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operands.reserve(state.operands.size());
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for (auto elt : state.operands)
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operands.push_back(cast<CFGValue>(elt));
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auto *op = OperationInst::create(state.location, state.name, operands,
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state.types, state.attributes, context);
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block->getOperations().insert(insertPoint, op);
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return op;
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}
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//===----------------------------------------------------------------------===//
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// Statements.
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//===----------------------------------------------------------------------===//
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/// Create an operation given the fields represented as an OperationState.
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OperationStmt *MLFuncBuilder::createOperation(const OperationState &state) {
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SmallVector<MLValue *, 8> operands;
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operands.reserve(state.operands.size());
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for (auto elt : state.operands)
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operands.push_back(cast<MLValue>(elt));
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auto *op = OperationStmt::create(state.location, state.name, operands,
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state.types, state.attributes, context);
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block->getStatements().insert(insertPoint, op);
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return op;
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}
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/// Create an operation given the fields.
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OperationStmt *MLFuncBuilder::createOperation(Location *location,
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OperationName name,
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ArrayRef<MLValue *> operands,
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ArrayRef<Type *> types,
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ArrayRef<NamedAttribute> attrs) {
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auto *op = OperationStmt::create(location, name, operands, types, attrs,
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getContext());
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block->getStatements().insert(insertPoint, op);
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return op;
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}
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ForStmt *MLFuncBuilder::createFor(Location *location,
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ArrayRef<MLValue *> lbOperands,
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AffineMap lbMap,
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ArrayRef<MLValue *> ubOperands,
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AffineMap ubMap, int64_t step) {
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auto *stmt =
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ForStmt::create(location, lbOperands, lbMap, ubOperands, ubMap, step);
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block->getStatements().insert(insertPoint, stmt);
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return stmt;
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}
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ForStmt *MLFuncBuilder::createFor(Location *location, int64_t lb, int64_t ub,
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int64_t step) {
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auto lbMap = AffineMap::getConstantMap(lb, context);
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auto ubMap = AffineMap::getConstantMap(ub, context);
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return createFor(location, {}, lbMap, {}, ubMap, step);
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}
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IfStmt *MLFuncBuilder::createIf(Location *location,
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ArrayRef<MLValue *> operands, IntegerSet *set) {
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auto *stmt = IfStmt::create(location, operands, set);
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block->getStatements().insert(insertPoint, stmt);
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return stmt;
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}
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