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LegalizeDAG: Try to use Overflow operations when expanding ADD/SUB
v2: consider BooleanContents when processing overflow Signed-off-by: Jan Vesely <jan.vesely@rutgers.edu> Reviewers: resistor, jholewinsky (nvidia parts) Differential Revision: http://reviews.llvm.org/D6340 git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@234755 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -1629,6 +1629,39 @@ void DAGTypeLegalizer::ExpandIntRes_ADDSUB(SDNode *N,
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return;
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}
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bool hasOVF =
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TLI.isOperationLegalOrCustom(N->getOpcode() == ISD::ADD ?
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ISD::UADDO : ISD::USUBO,
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TLI.getTypeToExpandTo(*DAG.getContext(), NVT));
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if (hasOVF) {
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SDVTList VTList = DAG.getVTList(NVT, NVT);
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TargetLoweringBase::BooleanContent BoolType = TLI.getBooleanContents(NVT);
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int RevOpc;
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if (N->getOpcode() == ISD::ADD) {
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RevOpc = ISD::SUB;
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Lo = DAG.getNode(ISD::UADDO, dl, VTList, LoOps);
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Hi = DAG.getNode(ISD::ADD, dl, NVT, makeArrayRef(HiOps, 2));
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} else {
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RevOpc = ISD::ADD;
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Lo = DAG.getNode(ISD::USUBO, dl, VTList, LoOps);
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Hi = DAG.getNode(ISD::SUB, dl, NVT, makeArrayRef(HiOps, 2));
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}
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SDValue OVF = Lo.getValue(1);
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switch (BoolType) {
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default:
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case TargetLoweringBase::UndefinedBooleanContent:
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OVF = DAG.getNode(ISD::AND, dl, NVT, DAG.getConstant(1, NVT), OVF);
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// Fallthrough
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case TargetLoweringBase::ZeroOrOneBooleanContent:
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Hi = DAG.getNode(N->getOpcode(), dl, NVT, Hi, OVF);
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break;
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case TargetLoweringBase::ZeroOrNegativeOneBooleanContent:
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Hi = DAG.getNode(RevOpc, dl, NVT, Hi, OVF);
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}
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return;
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}
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if (N->getOpcode() == ISD::ADD) {
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Lo = DAG.getNode(ISD::ADD, dl, NVT, LoOps);
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Hi = DAG.getNode(ISD::ADD, dl, NVT, makeArrayRef(HiOps, 2));
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@ -1,16 +1,9 @@
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; RUN: llc -march=hexagon -hexagon-expand-condsets=0 < %s | FileCheck %s
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; CHECK: r{{[0-9]+:[0-9]+}} = #0
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; CHECK: r{{[0-9]+:[0-9]+}} = #1
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; CHECK: r{{[0-9]+:[0-9]+}} = add(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = add(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: p{{[0-9]+}} = cmp.gtu(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: p{{[0-9]+}} = cmp.gtu(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = combine(r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = combine(r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, #1, #0)
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; CHECK: r{{[0-9]+:[0-9]+}} = add(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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@ -1,13 +1,10 @@
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; RUN: llc -march=hexagon -hexagon-expand-condsets=0 < %s | FileCheck %s
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; CHECK: r{{[0-9]+:[0-9]+}} = #0
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; CHECK: r{{[0-9]+:[0-9]+}} = #1
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; CHECK: r{{[0-9]+:[0-9]+}} = sub(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = sub(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: p{{[0-9]+}} = cmp.gtu(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, r{{[0-9]+}}, r{{[0-9]+}})
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; CHECK: r{{[0-9]+}} = mux(p{{[0-9]+}}, #1, #0)
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; CHECK: r{{[0-9]+:[0-9]+}} = sub(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = sub(r{{[0-9]+:[0-9]+}}, r{{[0-9]+:[0-9]+}})
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; CHECK: r{{[0-9]+:[0-9]+}} = combine(r{{[0-9]+}}, r{{[0-9]+}})
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define void @check_sube_subc(i64 %AL, i64 %AH, i64 %BL, i64 %BH, i64* %RL, i64* %RH) {
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entry:
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@ -7,10 +7,8 @@ target datalayout = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f3
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define void @foo(i64 %a, i64 %add, i128* %retptr) {
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; CHECK: add.s64
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; CHECK: setp.lt.u64
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; CHECK: setp.lt.u64
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; CHECK: selp.b64
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; CHECK: selp.b64
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; CHECK: add.s64
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; CHECK: sub.s64
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%t1 = sext i64 %a to i128
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%add2 = zext i64 %add to i128
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%val = add i128 %t1, %add2
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@ -58,11 +58,10 @@ define void @test_sub_v4i32(<4 x i32> addrspace(1)* %out, <4 x i32> addrspace(1)
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; SI: s_sub_u32
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; SI: s_subb_u32
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; EG-DAG: SETGE_UINT
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; EG-DAG: CNDE_INT
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; EG-DAG: SUB_INT
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; EG-DAG: SUB_INT
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; EG-DAG: SETGT_UINT
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; EG-DAG: SUB_INT
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; EG-DAG: ADD_INT
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define void @s_sub_i64(i64 addrspace(1)* noalias %out, i64 %a, i64 %b) nounwind {
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%result = sub i64 %a, %b
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store i64 %result, i64 addrspace(1)* %out, align 8
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@ -73,11 +72,10 @@ define void @s_sub_i64(i64 addrspace(1)* noalias %out, i64 %a, i64 %b) nounwind
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; SI: v_sub_i32_e32
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; SI: v_subb_u32_e32
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; EG-DAG: SETGE_UINT
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; EG-DAG: CNDE_INT
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; EG-DAG: SUB_INT
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; EG-DAG: SUB_INT
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; EG-DAG: SETGT_UINT
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; EG-DAG: SUB_INT
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; EG-DAG: ADD_INT
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define void @v_sub_i64(i64 addrspace(1)* noalias %out, i64 addrspace(1)* noalias %inA, i64 addrspace(1)* noalias %inB) nounwind {
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%tid = call i32 @llvm.r600.read.tidig.x() readnone
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%a_ptr = getelementptr i64, i64 addrspace(1)* %inA, i32 %tid
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