
This patch moves branch condition creation to enter the scalar epilogue loop to VPlan. Modeling the branch in the middle block also requires modeling the successor blocks. This is done using the recently introduced VPIRBasicBlock. Note that the middle.block is still created as part of the skeleton and then patched in during VPlan execution. Unfortunately the skeleton needs to create the middle.block early on, as it is also used for induction resume value creation and is also needed to properly update the dominator tree during skeleton creation. After this patch lands, I plan to move induction resume value and phi node creation in the scalar preheader to VPlan. Once that is done, we should be able to create the middle.block in VPlan directly. This is a re-worked version based on the earlier https://reviews.llvm.org/D150398 and the main change is the use of VPIRBasicBlock. Depends on https://github.com/llvm/llvm-project/pull/92525 PR: https://github.com/llvm/llvm-project/pull/92651
64 lines
3.8 KiB
LLVM
64 lines
3.8 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
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; RUN: opt < %s -passes=loop-vectorize -force-target-supports-scalable-vectors=true -scalable-vectorization=on -S | FileCheck %s
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target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64-S128"
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define i8 @reduction_add_trunc(ptr noalias nocapture %A) {
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; CHECK-LABEL: @reduction_add_trunc(
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; CHECK: call i32 @llvm.vscale.i32()
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; CHECK: call i32 @llvm.vscale.i32()
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; CHECK: [[TMP30:%.*]] = call i32 @llvm.vscale.i32()
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; CHECK-NEXT: [[TMP31:%.*]] = mul i32 [[TMP30]], 16
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; CHECK: vector.body:
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; CHECK-NEXT: [[INDEX:%.*]] = phi i32 [ 0, %vector.ph ], [ [[INDEX_NEXT:%.*]], %vector.body ]
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; CHECK-NEXT: [[VEC_PHI:%.*]] = phi <vscale x 8 x i32> [ insertelement (<vscale x 8 x i32> zeroinitializer, i32 255, i32 0), %vector.ph ], [ [[TMP34:%.*]], %vector.body ]
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; CHECK-NEXT: [[VEC_PHI1:%.*]] = phi <vscale x 8 x i32> [ zeroinitializer, %vector.ph ], [ [[TMP36:%.*]], %vector.body ]
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; CHECK: [[TMP14:%.*]] = and <vscale x 8 x i32> [[VEC_PHI]], shufflevector (<vscale x 8 x i32> insertelement (<vscale x 8 x i32> poison, i32 255, i64 0), <vscale x 8 x i32> poison, <vscale x 8 x i32> zeroinitializer)
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; CHECK-NEXT: [[TMP15:%.*]] = and <vscale x 8 x i32> [[VEC_PHI1]], shufflevector (<vscale x 8 x i32> insertelement (<vscale x 8 x i32> poison, i32 255, i64 0), <vscale x 8 x i32> poison, <vscale x 8 x i32> zeroinitializer)
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; CHECK: [[WIDE_LOAD:%.*]] = load <vscale x 8 x i8>, ptr
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; CHECK: [[WIDE_LOAD2:%.*]] = load <vscale x 8 x i8>, ptr
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; CHECK-NEXT: [[TMP26:%.*]] = zext <vscale x 8 x i8> [[WIDE_LOAD]] to <vscale x 8 x i32>
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; CHECK-NEXT: [[TMP27:%.*]] = zext <vscale x 8 x i8> [[WIDE_LOAD2]] to <vscale x 8 x i32>
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; CHECK-NEXT: [[TMP28:%.*]] = add <vscale x 8 x i32> [[TMP14]], [[TMP26]]
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; CHECK-NEXT: [[TMP29:%.*]] = add <vscale x 8 x i32> [[TMP15]], [[TMP27]]
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; CHECK-NEXT: [[TMP33:%.*]] = trunc <vscale x 8 x i32> [[TMP28]] to <vscale x 8 x i8>
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; CHECK-NEXT: [[TMP35:%.*]] = trunc <vscale x 8 x i32> [[TMP29]] to <vscale x 8 x i8>
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; CHECK-NEXT: [[TMP34]] = zext <vscale x 8 x i8> [[TMP33]] to <vscale x 8 x i32>
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; CHECK-NEXT: [[TMP36]] = zext <vscale x 8 x i8> [[TMP35]] to <vscale x 8 x i32>
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; CHECK-NEXT: [[INDEX_NEXT]] = add nuw i32 [[INDEX]], [[TMP31]]
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; CHECK-NEXT: [[TMP32:%.*]] = icmp eq i32 [[INDEX_NEXT]], {{%.*}}
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; CHECK: middle.block:
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; CHECK-NEXT: [[TMP37:%.*]] = trunc <vscale x 8 x i32> [[TMP34]] to <vscale x 8 x i8>
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; CHECK-NEXT: [[TMP38:%.*]] = trunc <vscale x 8 x i32> [[TMP36]] to <vscale x 8 x i8>
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; CHECK-NEXT: [[BIN_RDX:%.*]] = add <vscale x 8 x i8> [[TMP38]], [[TMP37]]
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; CHECK-NEXT: [[TMP39:%.*]] = call i8 @llvm.vector.reduce.add.nxv8i8(<vscale x 8 x i8> [[BIN_RDX]])
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; CHECK-NEXT: [[TMP40:%.*]] = zext i8 [[TMP39]] to i32
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; CHECK-NEXT: %cmp.n = icmp eq i32 256, %n.vec
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;
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entry:
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br label %loop
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loop: ; preds = %entry, %loop
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%indvars.iv = phi i32 [ %indvars.iv.next, %loop ], [ 0, %entry ]
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%sum.02p = phi i32 [ %l9, %loop ], [ 255, %entry ]
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%sum.02 = and i32 %sum.02p, 255
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%l2 = getelementptr inbounds i8, ptr %A, i32 %indvars.iv
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%l3 = load i8, ptr %l2, align 4
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%l3e = zext i8 %l3 to i32
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%l9 = add i32 %sum.02, %l3e
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%indvars.iv.next = add i32 %indvars.iv, 1
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%exitcond = icmp eq i32 %indvars.iv.next, 256
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br i1 %exitcond, label %exit, label %loop, !llvm.loop !0
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exit: ; preds = %loop
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%sum.0.lcssa = phi i32 [ %l9, %loop ]
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%ret = trunc i32 %sum.0.lcssa to i8
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ret i8 %ret
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}
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!0 = distinct !{!0, !1, !2, !3, !4}
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!1 = !{!"llvm.loop.vectorize.width", i32 8}
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!2 = !{!"llvm.loop.vectorize.scalable.enable", i1 true}
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!3 = !{!"llvm.loop.interleave.count", i32 2}
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!4 = !{!"llvm.loop.vectorize.enable", i1 true}
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