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Also remove the overload of createApply() that does not take a SubstitutionMap. It accomplishes nothing except creating ambiguity.
273 lines
10 KiB
C++
273 lines
10 KiB
C++
//===--- RawSILInstLowering.cpp -------------------------------------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2018 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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#define DEBUG_TYPE "raw-sil-inst-lowering"
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#include "swift/SIL/SILBuilder.h"
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#include "swift/SIL/SILFunction.h"
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#include "swift/SIL/SILInstruction.h"
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#include "swift/SILOptimizer/PassManager/Passes.h"
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#include "swift/SILOptimizer/PassManager/Transforms.h"
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#include "llvm/ADT/Statistic.h"
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STATISTIC(numAssignRewritten, "Number of assigns rewritten");
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using namespace swift;
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/// Emit the sequence that an assign instruction lowers to once we know
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/// if it is an initialization or an assignment. If it is an assignment,
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/// a live-in value can be provided to optimize out the reload.
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static void lowerAssignInstruction(SILBuilderWithScope &b, AssignInst *inst) {
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LLVM_DEBUG(llvm::dbgs() << " *** Lowering [isInit="
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<< unsigned(inst->getOwnershipQualifier())
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<< "]: " << *inst << "\n");
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++numAssignRewritten;
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SILValue src = inst->getSrc();
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SILValue dest = inst->getDest();
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SILLocation loc = inst->getLoc();
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AssignOwnershipQualifier qualifier = inst->getOwnershipQualifier();
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// Unknown qualifier is considered unprocessed. Just lower it as [reassign],
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// but if the destination type is trivial, treat it as [init].
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//
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// Unknown should not be lowered because definite initialization should
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// always set an initialization kind for assign instructions, but there exists
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// some situations where SILGen doesn't generate a mark_uninitialized
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// instruction for a full mark_uninitialized. Thus definite initialization
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// doesn't set an initialization kind for some assign instructions.
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//
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// TODO: Fix SILGen so that this is an assert preventing the lowering of
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// Unknown init kind.
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if (qualifier == AssignOwnershipQualifier::Unknown)
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qualifier = AssignOwnershipQualifier::Reassign;
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if (qualifier == AssignOwnershipQualifier::Init ||
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inst->getDest()->getType().isTrivial(*inst->getFunction())) {
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// If this is an initialization, or the storage type is trivial, we
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// can just replace the assignment with a store.
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assert(qualifier != AssignOwnershipQualifier::Reinit);
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b.createTrivialStoreOr(loc, src, dest, StoreOwnershipQualifier::Init);
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inst->eraseFromParent();
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return;
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}
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if (qualifier == AssignOwnershipQualifier::Reinit) {
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// We have a case where a convenience initializer on a class
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// delegates to a factory initializer from a protocol extension.
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// Factory initializers give us a whole new instance, so the existing
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// instance, which has not been initialized and never will be, must be
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// freed using dealloc_partial_ref.
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SILValue pointer = b.createLoad(loc, dest, LoadOwnershipQualifier::Take);
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b.createStore(loc, src, dest, StoreOwnershipQualifier::Init);
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auto metatypeTy = CanMetatypeType::get(
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dest->getType().getASTType(), MetatypeRepresentation::Thick);
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auto silMetatypeTy = SILType::getPrimitiveObjectType(metatypeTy);
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SILValue metatype = b.createValueMetatype(loc, silMetatypeTy, pointer);
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b.createDeallocPartialRef(loc, pointer, metatype);
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inst->eraseFromParent();
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return;
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}
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assert(qualifier == AssignOwnershipQualifier::Reassign);
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// Otherwise, we need to replace the assignment with a store [assign] which
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// lowers to the load/store/release dance. Note that the new value is already
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// considered to be retained (by the semantics of the storage type),
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// and we're transferring that ownership count into the destination.
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b.createStore(loc, src, dest, StoreOwnershipQualifier::Assign);
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inst->eraseFromParent();
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}
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static void lowerAssignByDelegateInstruction(SILBuilderWithScope &b,
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AssignByDelegateInst *inst,
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SmallVectorImpl<BeginAccessInst *> &accessMarkers) {
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LLVM_DEBUG(llvm::dbgs() << " *** Lowering [isInit="
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<< unsigned(inst->getOwnershipQualifier())
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<< "]: " << *inst << "\n");
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++numAssignRewritten;
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SILValue src = inst->getSrc();
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SILValue dest = inst->getDest();
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SILLocation loc = inst->getLoc();
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SILArgumentConvention srcConvention(SILArgumentConvention::Indirect_Inout);
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switch (inst->getOwnershipQualifier()) {
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case AssignOwnershipQualifier::Init: {
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SILValue initFn = inst->getInitializer();
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CanSILFunctionType fTy = initFn->getType().castTo<SILFunctionType>();
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SILFunctionConventions convention(fTy, inst->getModule());
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if (convention.hasIndirectSILResults()) {
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b.createApply(loc, initFn, SubstitutionMap(), { dest, src });
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srcConvention = convention.getSILArgumentConvention(1);
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} else {
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SILValue wrappedSrc = b.createApply(loc, initFn, SubstitutionMap(),
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{ src });
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b.createTrivialStoreOr(loc, wrappedSrc, dest, StoreOwnershipQualifier::Init);
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srcConvention = convention.getSILArgumentConvention(0);
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}
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// TODO: remove the unused setter function, which usually is a dead
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// partial_apply.
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break;
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}
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case AssignOwnershipQualifier::Unknown:
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case AssignOwnershipQualifier::Reassign: {
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SILValue setterFn = inst->getSetter();
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CanSILFunctionType fTy = setterFn->getType().castTo<SILFunctionType>();
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SILFunctionConventions convention(fTy, inst->getModule());
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assert(!convention.hasIndirectSILResults());
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srcConvention = convention.getSILArgumentConvention(0);
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b.createApply(loc, setterFn, SubstitutionMap(), { src });
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// The destination address is not used. Remove it if it is a dead access
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// marker. This is important, because also the setter function contains
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// access marker. In case those markers are dynamic it would cause a
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// nested access violation.
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if (auto *BA = dyn_cast<BeginAccessInst>(dest))
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accessMarkers.push_back(BA);
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// TODO: remove the unused init function, which usually is a dead
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// partial_apply.
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break;
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}
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case AssignOwnershipQualifier::Reinit:
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llvm_unreachable("wrong qualifier for assign_by_delegate");
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}
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switch (srcConvention) {
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case SILArgumentConvention::Indirect_In_Guaranteed:
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b.createDestroyAddr(loc, src);
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break;
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case SILArgumentConvention::Direct_Guaranteed:
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b.createDestroyValue(loc, src);
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break;
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case SILArgumentConvention::Direct_Unowned:
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case SILArgumentConvention::Indirect_In:
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case SILArgumentConvention::Indirect_In_Constant:
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case SILArgumentConvention::Direct_Owned:
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break;
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case SILArgumentConvention::Indirect_Inout:
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case SILArgumentConvention::Indirect_InoutAliasable:
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case SILArgumentConvention::Indirect_Out:
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case SILArgumentConvention::Direct_Deallocating:
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llvm_unreachable("wrong convention for setter/initializer src argument");
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}
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inst->eraseFromParent();
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}
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static void deleteDeadAccessMarker(BeginAccessInst *BA) {
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SmallVector<SILInstruction *, 4> Users;
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for (Operand *Op : BA->getUses()) {
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SILInstruction *User = Op->getUser();
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if (!isa<EndAccessInst>(User))
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return;
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Users.push_back(User);
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}
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for (SILInstruction *User: Users) {
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User->eraseFromParent();
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}
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BA->eraseFromParent();
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}
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/// lowerRawSILOperations - There are a variety of raw-sil instructions like
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/// 'assign' that are only used by this pass. Now that definite initialization
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/// checking is done, remove them.
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static bool lowerRawSILOperations(SILFunction &fn) {
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bool changed = false;
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for (auto &bb : fn) {
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SmallVector<BeginAccessInst *, 8> accessMarkers;
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auto i = bb.begin(), e = bb.end();
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while (i != e) {
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SILInstruction *inst = &*i;
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++i;
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// Lower 'assign' depending on initialization kind defined by definite
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// initialization.
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//
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// * Unknown is considered unprocessed and is treated as [reassign] or
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// [init] if the destination type is trivial.
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// * Init becomes a store [init] or a store [trivial] if the destination's
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// type is trivial.
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// * Reinit becomes a load [take], store [init], and a
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// dealloc_partial_ref.
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// * Reassign becomes a store [assign].
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if (auto *ai = dyn_cast<AssignInst>(inst)) {
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SILBuilderWithScope b(ai);
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lowerAssignInstruction(b, ai);
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// Assign lowering may split the block. If it did,
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// reset our iteration range to the block after the insertion.
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if (b.getInsertionBB() != &bb)
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i = e;
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changed = true;
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continue;
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}
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if (auto *ai = dyn_cast<AssignByDelegateInst>(inst)) {
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SILBuilderWithScope b(ai);
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lowerAssignByDelegateInstruction(b, ai, accessMarkers);
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changed = true;
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continue;
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}
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// mark_uninitialized just becomes a noop, resolving to its operand.
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if (auto *mui = dyn_cast<MarkUninitializedInst>(inst)) {
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mui->replaceAllUsesWith(mui->getOperand());
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mui->eraseFromParent();
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changed = true;
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continue;
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}
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// mark_function_escape just gets zapped.
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if (isa<MarkFunctionEscapeInst>(inst)) {
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inst->eraseFromParent();
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changed = true;
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continue;
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}
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}
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for (BeginAccessInst *BA : accessMarkers) {
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deleteDeadAccessMarker(BA);
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}
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}
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return changed;
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}
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//===----------------------------------------------------------------------===//
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// Top Level Entrypoint
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//===----------------------------------------------------------------------===//
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namespace {
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class RawSILInstLowering : public SILFunctionTransform {
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void run() override {
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// Do not try to relower raw instructions in canonical SIL. There won't be
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// any there.
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if (getFunction()->wasDeserializedCanonical()) {
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return;
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}
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// Lower raw-sil only instructions used by this pass, like "assign".
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if (lowerRawSILOperations(*getFunction()))
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invalidateAnalysis(SILAnalysis::InvalidationKind::FunctionBody);
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}
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};
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} // end anonymous namespace
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SILTransform *swift::createRawSILInstLowering() {
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return new RawSILInstLowering();
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}
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