8322577eeb
BUG= R=mstarzinger@chromium.org Review URL: https://codereview.chromium.org/437183002 git-svn-id: https://v8.googlecode.com/svn/branches/bleeding_edge@22851 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
226 lines
6.0 KiB
C++
226 lines
6.0 KiB
C++
// Copyright 2014 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "src/v8.h"
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#include "test/cctest/cctest.h"
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#include "src/compiler/common-operator.h"
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#include "src/compiler/graph-inl.h"
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#include "src/compiler/phi-reducer.h"
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using namespace v8::internal;
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using namespace v8::internal::compiler;
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class PhiReducerTester : HandleAndZoneScope {
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public:
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explicit PhiReducerTester(int num_parameters = 0)
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: isolate(main_isolate()),
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common(main_zone()),
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graph(main_zone()),
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self(graph.NewNode(common.Start(num_parameters))),
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dead(graph.NewNode(common.Dead())) {
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graph.SetStart(self);
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}
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Isolate* isolate;
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CommonOperatorBuilder common;
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Graph graph;
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Node* self;
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Node* dead;
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void CheckReduce(Node* expect, Node* phi) {
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PhiReducer reducer;
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Reduction reduction = reducer.Reduce(phi);
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if (expect == phi) {
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CHECK(!reduction.Changed());
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} else {
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CHECK(reduction.Changed());
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CHECK_EQ(expect, reduction.replacement());
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}
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}
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Node* Int32Constant(int32_t val) {
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return graph.NewNode(common.Int32Constant(val));
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}
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Node* Float64Constant(double val) {
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return graph.NewNode(common.Float64Constant(val));
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}
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Node* Parameter(int32_t index = 0) {
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return graph.NewNode(common.Parameter(index), graph.start());
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}
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Node* Phi(Node* a) {
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return SetSelfReferences(graph.NewNode(common.Phi(1), a));
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}
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Node* Phi(Node* a, Node* b) {
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return SetSelfReferences(graph.NewNode(common.Phi(2), a, b));
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}
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Node* Phi(Node* a, Node* b, Node* c) {
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return SetSelfReferences(graph.NewNode(common.Phi(3), a, b, c));
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}
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Node* Phi(Node* a, Node* b, Node* c, Node* d) {
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return SetSelfReferences(graph.NewNode(common.Phi(4), a, b, c, d));
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}
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Node* PhiWithControl(Node* a, Node* control) {
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return SetSelfReferences(graph.NewNode(common.Phi(1), a, control));
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}
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Node* PhiWithControl(Node* a, Node* b, Node* control) {
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return SetSelfReferences(graph.NewNode(common.Phi(2), a, b, control));
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}
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Node* SetSelfReferences(Node* node) {
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Node::Inputs inputs = node->inputs();
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for (Node::Inputs::iterator iter(inputs.begin()); iter != inputs.end();
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++iter) {
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Node* input = *iter;
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if (input == self) node->ReplaceInput(iter.index(), node);
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}
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return node;
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}
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};
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TEST(PhiReduce1) {
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PhiReducerTester R;
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Node* zero = R.Int32Constant(0);
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Node* one = R.Int32Constant(1);
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Node* oneish = R.Float64Constant(1.1);
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Node* param = R.Parameter();
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Node* singles[] = {zero, one, oneish, param};
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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R.CheckReduce(singles[i], R.Phi(singles[i]));
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}
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}
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TEST(PhiReduce2) {
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PhiReducerTester R;
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Node* zero = R.Int32Constant(0);
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Node* one = R.Int32Constant(1);
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Node* oneish = R.Float64Constant(1.1);
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Node* param = R.Parameter();
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Node* singles[] = {zero, one, oneish, param};
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(a, a));
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}
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(R.self, a));
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R.CheckReduce(a, R.Phi(a, R.self));
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}
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for (size_t i = 1; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i], *b = singles[0];
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Node* phi1 = R.Phi(b, a);
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R.CheckReduce(phi1, phi1);
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Node* phi2 = R.Phi(a, b);
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R.CheckReduce(phi2, phi2);
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}
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}
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TEST(PhiReduce3) {
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PhiReducerTester R;
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Node* zero = R.Int32Constant(0);
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Node* one = R.Int32Constant(1);
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Node* oneish = R.Float64Constant(1.1);
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Node* param = R.Parameter();
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Node* singles[] = {zero, one, oneish, param};
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(a, a, a));
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}
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(R.self, a, a));
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R.CheckReduce(a, R.Phi(a, R.self, a));
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R.CheckReduce(a, R.Phi(a, a, R.self));
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}
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for (size_t i = 1; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i], *b = singles[0];
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Node* phi1 = R.Phi(b, a, a);
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R.CheckReduce(phi1, phi1);
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Node* phi2 = R.Phi(a, b, a);
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R.CheckReduce(phi2, phi2);
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Node* phi3 = R.Phi(a, a, b);
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R.CheckReduce(phi3, phi3);
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}
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}
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TEST(PhiReduce4) {
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PhiReducerTester R;
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Node* zero = R.Int32Constant(0);
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Node* one = R.Int32Constant(1);
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Node* oneish = R.Float64Constant(1.1);
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Node* param = R.Parameter();
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Node* singles[] = {zero, one, oneish, param};
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(a, a, a, a));
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}
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for (size_t i = 0; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i];
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R.CheckReduce(a, R.Phi(R.self, a, a, a));
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R.CheckReduce(a, R.Phi(a, R.self, a, a));
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R.CheckReduce(a, R.Phi(a, a, R.self, a));
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R.CheckReduce(a, R.Phi(a, a, a, R.self));
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R.CheckReduce(a, R.Phi(R.self, R.self, a, a));
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R.CheckReduce(a, R.Phi(a, R.self, R.self, a));
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R.CheckReduce(a, R.Phi(a, a, R.self, R.self));
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R.CheckReduce(a, R.Phi(R.self, a, a, R.self));
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}
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for (size_t i = 1; i < ARRAY_SIZE(singles); i++) {
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Node* a = singles[i], *b = singles[0];
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Node* phi1 = R.Phi(b, a, a, a);
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R.CheckReduce(phi1, phi1);
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Node* phi2 = R.Phi(a, b, a, a);
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R.CheckReduce(phi2, phi2);
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Node* phi3 = R.Phi(a, a, b, a);
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R.CheckReduce(phi3, phi3);
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Node* phi4 = R.Phi(a, a, a, b);
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R.CheckReduce(phi4, phi4);
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}
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}
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TEST(PhiReduceShouldIgnoreControlNodes) {
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PhiReducerTester R;
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Node* zero = R.Int32Constant(0);
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Node* one = R.Int32Constant(1);
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Node* oneish = R.Float64Constant(1.1);
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Node* param = R.Parameter();
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Node* singles[] = {zero, one, oneish, param};
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for (size_t i = 0; i < ARRAY_SIZE(singles); ++i) {
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R.CheckReduce(singles[i], R.PhiWithControl(singles[i], R.dead));
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R.CheckReduce(singles[i], R.PhiWithControl(R.self, singles[i], R.dead));
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R.CheckReduce(singles[i], R.PhiWithControl(singles[i], R.self, R.dead));
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}
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}
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