153 lines
5.8 KiB
C++
153 lines
5.8 KiB
C++
//===- MemoryAllocation.cpp -----------------------------------------------===//
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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 "flang/Optimizer/Dialect/FIRDialect.h"
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#include "flang/Optimizer/Dialect/FIROps.h"
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#include "flang/Optimizer/Dialect/FIRType.h"
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#include "flang/Optimizer/Transforms/MemoryUtils.h"
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#include "flang/Optimizer/Transforms/Passes.h"
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#include "mlir/Dialect/Func/IR/FuncOps.h"
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#include "mlir/IR/Diagnostics.h"
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#include "mlir/Pass/Pass.h"
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#include "mlir/Transforms/DialectConversion.h"
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#include "mlir/Transforms/Passes.h"
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#include "llvm/ADT/TypeSwitch.h"
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namespace fir {
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#define GEN_PASS_DEF_MEMORYALLOCATIONOPT
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#include "flang/Optimizer/Transforms/Passes.h.inc"
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} // namespace fir
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#define DEBUG_TYPE "flang-memory-allocation-opt"
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// Number of elements in an array does not determine where it is allocated.
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static constexpr std::size_t unlimitedArraySize = ~static_cast<std::size_t>(0);
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/// Return `true` if this allocation is to remain on the stack (`fir.alloca`).
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/// Otherwise the allocation should be moved to the heap (`fir.allocmem`).
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static inline bool
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keepStackAllocation(fir::AllocaOp alloca,
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const fir::MemoryAllocationOptOptions &options) {
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// Move all arrays and character with runtime determined size to the heap.
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if (options.dynamicArrayOnHeap && alloca.isDynamic())
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return false;
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// TODO: use data layout to reason in terms of byte size to cover all "big"
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// entities, which may be scalar derived types.
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if (auto seqTy = mlir::dyn_cast<fir::SequenceType>(alloca.getInType())) {
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if (!fir::hasDynamicSize(seqTy)) {
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std::int64_t numberOfElements = 1;
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for (std::int64_t i : seqTy.getShape()) {
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numberOfElements *= i;
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// If the count is suspicious, then don't change anything here.
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if (numberOfElements <= 0)
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return true;
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}
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// If the number of elements exceeds the threshold, move the allocation to
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// the heap.
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if (static_cast<std::size_t>(numberOfElements) >
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options.maxStackArraySize) {
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return false;
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}
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}
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}
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return true;
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}
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static mlir::Value genAllocmem(mlir::OpBuilder &builder, fir::AllocaOp alloca,
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bool deallocPointsDominateAlloc) {
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mlir::Type varTy = alloca.getInType();
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auto unpackName = [](std::optional<llvm::StringRef> opt) -> llvm::StringRef {
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if (opt)
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return *opt;
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return {};
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};
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llvm::StringRef uniqName = unpackName(alloca.getUniqName());
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llvm::StringRef bindcName = unpackName(alloca.getBindcName());
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auto heap = fir::AllocMemOp::create(builder, alloca.getLoc(), varTy, uniqName,
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bindcName, alloca.getTypeparams(),
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alloca.getShape());
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LLVM_DEBUG(llvm::dbgs() << "memory allocation opt: replaced " << alloca
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<< " with " << heap << '\n');
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return heap;
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}
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static void genFreemem(mlir::Location loc, mlir::OpBuilder &builder,
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mlir::Value allocmem) {
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[[maybe_unused]] auto free = fir::FreeMemOp::create(builder, loc, allocmem);
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LLVM_DEBUG(llvm::dbgs() << "memory allocation opt: add free " << free
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<< " for " << allocmem << '\n');
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}
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/// This pass can reclassify memory allocations (fir.alloca, fir.allocmem) based
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/// on heuristics and settings. The intention is to allow better performance and
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/// workarounds for conditions such as environments with limited stack space.
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///
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/// Currently, implements two conversions from stack to heap allocation.
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/// 1. If a stack allocation is an array larger than some threshold value
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/// make it a heap allocation.
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/// 2. If a stack allocation is an array with a runtime evaluated size make
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/// it a heap allocation.
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namespace {
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class MemoryAllocationOpt
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: public fir::impl::MemoryAllocationOptBase<MemoryAllocationOpt> {
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public:
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MemoryAllocationOpt() {
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// Set options with default values. (See Passes.td.) Note that the
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// command-line options, e.g. dynamicArrayOnHeap, are not set yet.
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options = {dynamicArrayOnHeap, maxStackArraySize};
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}
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MemoryAllocationOpt(bool dynOnHeap, std::size_t maxStackSize) {
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// Set options with default values. (See Passes.td.)
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options = {dynOnHeap, maxStackSize};
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}
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MemoryAllocationOpt(const fir::MemoryAllocationOptOptions &options)
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: options{options} {}
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/// Override `options` if command-line options have been set.
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inline void useCommandLineOptions() {
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if (dynamicArrayOnHeap)
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options.dynamicArrayOnHeap = dynamicArrayOnHeap;
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if (maxStackArraySize != unlimitedArraySize)
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options.maxStackArraySize = maxStackArraySize;
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}
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void runOnOperation() override {
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auto *context = &getContext();
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auto func = getOperation();
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mlir::RewritePatternSet patterns(context);
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mlir::ConversionTarget target(*context);
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useCommandLineOptions();
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LLVM_DEBUG(llvm::dbgs()
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<< "dynamic arrays on heap: " << options.dynamicArrayOnHeap
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<< "\nmaximum number of elements of array on stack: "
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<< options.maxStackArraySize << '\n');
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// If func is a declaration, skip it.
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if (func.empty())
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return;
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auto tryReplacing = [&](fir::AllocaOp alloca) {
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bool res = !keepStackAllocation(alloca, options);
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if (res) {
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LLVM_DEBUG(llvm::dbgs()
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<< "memory allocation opt: found " << alloca << '\n');
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}
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return res;
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};
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mlir::IRRewriter rewriter(context);
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fir::replaceAllocas(rewriter, func.getOperation(), tryReplacing,
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genAllocmem, genFreemem);
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}
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private:
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fir::MemoryAllocationOptOptions options;
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};
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} // namespace
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