This cleanup aligns the affine dialect with all the other dialects. Differential Revision: https://reviews.llvm.org/D148687
95 lines
4.0 KiB
C++
95 lines
4.0 KiB
C++
//===- ValueBoundsOpInterfaceImpl.cpp - Impl. of ValueBoundsOpInterface ---===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "mlir/Dialect/Affine/IR/ValueBoundsOpInterfaceImpl.h"
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#include "mlir/Dialect/Affine/IR/AffineOps.h"
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#include "mlir/Interfaces/ValueBoundsOpInterface.h"
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using namespace mlir;
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using namespace mlir::affine;
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namespace mlir {
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namespace {
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struct AffineApplyOpInterface
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: public ValueBoundsOpInterface::ExternalModel<AffineApplyOpInterface,
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AffineApplyOp> {
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void populateBoundsForIndexValue(Operation *op, Value value,
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ValueBoundsConstraintSet &cstr) const {
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auto applyOp = cast<AffineApplyOp>(op);
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assert(value == applyOp.getResult() && "invalid value");
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assert(applyOp.getAffineMap().getNumResults() == 1 &&
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"expected single result");
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// Align affine map result with dims/symbols in the constraint set.
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AffineExpr expr = applyOp.getAffineMap().getResult(0);
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SmallVector<AffineExpr> dimReplacements = llvm::to_vector(llvm::map_range(
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applyOp.getDimOperands(), [&](Value v) { return cstr.getExpr(v); }));
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SmallVector<AffineExpr> symReplacements = llvm::to_vector(llvm::map_range(
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applyOp.getSymbolOperands(), [&](Value v) { return cstr.getExpr(v); }));
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AffineExpr bound =
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expr.replaceDimsAndSymbols(dimReplacements, symReplacements);
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cstr.bound(value) == bound;
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}
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};
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struct AffineMinOpInterface
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: public ValueBoundsOpInterface::ExternalModel<AffineMinOpInterface,
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AffineMinOp> {
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void populateBoundsForIndexValue(Operation *op, Value value,
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ValueBoundsConstraintSet &cstr) const {
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auto minOp = cast<AffineMinOp>(op);
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assert(value == minOp.getResult() && "invalid value");
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// Align affine map results with dims/symbols in the constraint set.
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for (AffineExpr expr : minOp.getAffineMap().getResults()) {
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SmallVector<AffineExpr> dimReplacements = llvm::to_vector(llvm::map_range(
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minOp.getDimOperands(), [&](Value v) { return cstr.getExpr(v); }));
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SmallVector<AffineExpr> symReplacements = llvm::to_vector(llvm::map_range(
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minOp.getSymbolOperands(), [&](Value v) { return cstr.getExpr(v); }));
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AffineExpr bound =
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expr.replaceDimsAndSymbols(dimReplacements, symReplacements);
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cstr.bound(value) <= bound;
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}
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};
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};
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struct AffineMaxOpInterface
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: public ValueBoundsOpInterface::ExternalModel<AffineMaxOpInterface,
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AffineMaxOp> {
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void populateBoundsForIndexValue(Operation *op, Value value,
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ValueBoundsConstraintSet &cstr) const {
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auto maxOp = cast<AffineMaxOp>(op);
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assert(value == maxOp.getResult() && "invalid value");
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// Align affine map results with dims/symbols in the constraint set.
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for (AffineExpr expr : maxOp.getAffineMap().getResults()) {
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SmallVector<AffineExpr> dimReplacements = llvm::to_vector(llvm::map_range(
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maxOp.getDimOperands(), [&](Value v) { return cstr.getExpr(v); }));
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SmallVector<AffineExpr> symReplacements = llvm::to_vector(llvm::map_range(
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maxOp.getSymbolOperands(), [&](Value v) { return cstr.getExpr(v); }));
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AffineExpr bound =
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expr.replaceDimsAndSymbols(dimReplacements, symReplacements);
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cstr.bound(value) >= bound;
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}
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};
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};
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} // namespace
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} // namespace mlir
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void mlir::affine::registerValueBoundsOpInterfaceExternalModels(
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DialectRegistry ®istry) {
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registry.addExtension(+[](MLIRContext *ctx, AffineDialect *dialect) {
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AffineApplyOp::attachInterface<AffineApplyOpInterface>(*ctx);
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AffineMaxOp::attachInterface<AffineMaxOpInterface>(*ctx);
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AffineMinOp::attachInterface<AffineMinOpInterface>(*ctx);
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});
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}
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