[llvm] [VPlan] Run CSE in VPlanTransforms::optimize (PR #203370)
Ramkumar Ramachandra via llvm-commits
llvm-commits at lists.llvm.org
Sat Jul 11 11:37:21 PDT 2026
https://github.com/artagnon updated https://github.com/llvm/llvm-project/pull/203370
>From 8e3d62ecf0b2387be0c119a6c25378186ac8bf9b Mon Sep 17 00:00:00 2001
From: Ramkumar Ramachandra <artagnon at tenstorrent.com>
Date: Thu, 11 Jun 2026 19:54:55 +0100
Subject: [PATCH] [VPlan] Run CSE in optz pipeline as well
For more accurate costing and optimization benefit.
---
.../Transforms/Vectorize/VPlanTransforms.cpp | 2 +
.../LoopVectorize/AArch64/early_exit_costs.ll | 4 -
.../LoopVectorize/AArch64/gather-cost.ll | 8 +-
.../AArch64/induction-costs-sve.ll | 98 ++++++------
.../AArch64/neon-inloop-reductions.ll | 3 +-
.../partial-reduce-with-invariant-stores.ll | 16 +-
.../LoopVectorize/ARM/mve-icmpcost.ll | 72 ++++-----
.../VPlan/early_exit_with_stores_vplan.ll | 63 ++++----
.../first-order-recurrence-chains-vplan.ll | 45 +++---
.../VPlan/phi-with-fastflags-vplan.ll | 7 +-
.../VPlan/uncountable-early-exit-vplan.ll | 144 ++++++++++--------
.../VPlan/vplan-iv-transforms.ll | 9 +-
.../VPlan/vplan-print-before-after-all.ll | 2 +
.../VPlan/vplan-printing-before-execute.ll | 3 +-
.../LoopVectorize/VPlan/vplan-printing.ll | 40 +++--
.../VPlan/vplan-sink-scalars-and-merge.ll | 3 +-
.../X86/CostModel/vpinstruction-cost.ll | 24 +--
.../LoopVectorize/cse-replicate-regions.ll | 5 +-
.../LoopVectorize/narrow-to-single-scalar.ll | 2 +-
19 files changed, 262 insertions(+), 288 deletions(-)
diff --git a/llvm/lib/Transforms/Vectorize/VPlanTransforms.cpp b/llvm/lib/Transforms/Vectorize/VPlanTransforms.cpp
index f8198cf9133bf..36b3cdded01f7 100644
--- a/llvm/lib/Transforms/Vectorize/VPlanTransforms.cpp
+++ b/llvm/lib/Transforms/Vectorize/VPlanTransforms.cpp
@@ -2936,6 +2936,8 @@ void VPlanTransforms::optimize(VPlan &Plan) {
RUN_VPLAN_PASS(createAndOptimizeReplicateRegions, Plan);
RUN_VPLAN_PASS(mergeBlocksIntoPredecessors, Plan);
RUN_VPLAN_PASS(licm, Plan);
+ RUN_VPLAN_PASS(cse, Plan);
+ RUN_VPLAN_PASS(removeDeadRecipes, Plan);
}
// Add a VPActiveLaneMaskPHIRecipe and related recipes to \p Plan and replace
diff --git a/llvm/test/Transforms/LoopVectorize/AArch64/early_exit_costs.ll b/llvm/test/Transforms/LoopVectorize/AArch64/early_exit_costs.ll
index 3e91b6cc74a4c..ea74e5822eaee 100644
--- a/llvm/test/Transforms/LoopVectorize/AArch64/early_exit_costs.ll
+++ b/llvm/test/Transforms/LoopVectorize/AArch64/early_exit_costs.ll
@@ -13,8 +13,6 @@ define i64 @same_exit_block_pre_inc_use1_sve() #1 {
; CHECK-NEXT: Cost of 4 for VF vscale x 16: EMIT vp<{{.*}}> = first-active-lane ir<%cmp3>
; CHECK-NEXT: Cost of 0 for VF vscale x 16: EMIT vp<{{.*}}> = add
; CHECK-NEXT: Cost of 1 for VF vscale x 16: vp<{{.*}}> = DERIVED-IV
-; CHECK-NEXT: Cost of 4 for VF vscale x 16: EMIT vp<{{.*}}> = first-active-lane ir<%cmp3>
-; CHECK-NEXT: Cost of 0 for VF vscale x 16: EMIT vp<{{.*}}> = add
; CHECK-NEXT: Cost of 2 for VF vscale x 16: vp<{{.*}}> = DERIVED-IV
; CHECK: LV: Minimum required TC for runtime checks to be profitable:16
entry:
@@ -54,8 +52,6 @@ define i64 @same_exit_block_pre_inc_use1_nosve() {
; CHECK-NEXT: Cost of 48 for VF 16: EMIT vp<{{.*}}> = first-active-lane ir<%cmp3>
; CHECK-NEXT: Cost of 0 for VF 16: EMIT vp<{{.*}}> = add
; CHECK-NEXT: Cost of 1 for VF 16: vp<{{.*}}> = DERIVED-IV
-; CHECK-NEXT: Cost of 48 for VF 16: EMIT vp<{{.*}}> = first-active-lane ir<%cmp3>
-; CHECK-NEXT: Cost of 0 for VF 16: EMIT vp<{{.*}}> = add
; CHECK-NEXT: Cost of 2 for VF 16: vp<{{.*}}> = DERIVED-IV
; CHECK: LV: Minimum required TC for runtime checks to be profitable:16
entry:
diff --git a/llvm/test/Transforms/LoopVectorize/AArch64/gather-cost.ll b/llvm/test/Transforms/LoopVectorize/AArch64/gather-cost.ll
index 5be10c24a611e..a6f04d00fdb36 100644
--- a/llvm/test/Transforms/LoopVectorize/AArch64/gather-cost.ll
+++ b/llvm/test/Transforms/LoopVectorize/AArch64/gather-cost.ll
@@ -375,19 +375,15 @@ define float @_Z4testmm(i64 %size, i64 %offset) {
; CHECK-NEXT: br i1 [[MIN_EPILOG_ITERS_CHECK]], label %[[SCALAR_PH]], label %[[VEC_EPILOG_PH]], !prof [[PROF3:![0-9]+]]
; CHECK: [[VEC_EPILOG_PH]]:
; CHECK-NEXT: [[VEC_EPILOG_RESUME_VAL:%.*]] = phi i64 [ [[N_VEC]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0, %[[VECTOR_PH]] ]
-; CHECK-NEXT: [[BC_MERGE_RDX:%.*]] = phi float [ [[TMP300]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0.000000e+00, %[[VECTOR_PH]] ]
-; CHECK-NEXT: [[BC_MERGE_RDX36:%.*]] = phi float [ [[TMP301]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0.000000e+00, %[[VECTOR_PH]] ]
; CHECK-NEXT: [[BC_MERGE_RDX37:%.*]] = phi float [ [[TMP302]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0.000000e+00, %[[VECTOR_PH]] ]
; CHECK-NEXT: [[N_MOD_VF38:%.*]] = urem i64 [[SIZE]], 4
; CHECK-NEXT: [[N_VEC39:%.*]] = sub i64 [[SIZE]], [[N_MOD_VF38]]
-; CHECK-NEXT: [[TMP303:%.*]] = insertelement <4 x float> zeroinitializer, float [[BC_MERGE_RDX]], i32 0
-; CHECK-NEXT: [[TMP304:%.*]] = insertelement <4 x float> zeroinitializer, float [[BC_MERGE_RDX36]], i32 0
; CHECK-NEXT: [[TMP305:%.*]] = insertelement <4 x float> zeroinitializer, float [[BC_MERGE_RDX37]], i32 0
; CHECK-NEXT: br label %[[LOOP:.*]]
; CHECK: [[LOOP]]:
; CHECK-NEXT: [[IV1:%.*]] = phi i64 [ [[VEC_EPILOG_RESUME_VAL]], %[[VEC_EPILOG_PH]] ], [ [[INDEX_NEXT48:%.*]], %[[LOOP]] ]
-; CHECK-NEXT: [[VEC_PHI41:%.*]] = phi <4 x float> [ [[TMP303]], %[[VEC_EPILOG_PH]] ], [ [[TMP337:%.*]], %[[LOOP]] ]
-; CHECK-NEXT: [[VEC_PHI42:%.*]] = phi <4 x float> [ [[TMP304]], %[[VEC_EPILOG_PH]] ], [ [[TMP358:%.*]], %[[LOOP]] ]
+; CHECK-NEXT: [[VEC_PHI41:%.*]] = phi <4 x float> [ [[TMP305]], %[[VEC_EPILOG_PH]] ], [ [[TMP337:%.*]], %[[LOOP]] ]
+; CHECK-NEXT: [[VEC_PHI42:%.*]] = phi <4 x float> [ [[TMP305]], %[[VEC_EPILOG_PH]] ], [ [[TMP358:%.*]], %[[LOOP]] ]
; CHECK-NEXT: [[VEC_PHI43:%.*]] = phi <4 x float> [ [[TMP305]], %[[VEC_EPILOG_PH]] ], [ [[TMP379:%.*]], %[[LOOP]] ]
; CHECK-NEXT: [[TMP306:%.*]] = add i64 [[IV1]], 1
; CHECK-NEXT: [[TMP307:%.*]] = add i64 [[IV1]], 2
diff --git a/llvm/test/Transforms/LoopVectorize/AArch64/induction-costs-sve.ll b/llvm/test/Transforms/LoopVectorize/AArch64/induction-costs-sve.ll
index 5b3c73078b2b0..b4f63a6c982ae 100644
--- a/llvm/test/Transforms/LoopVectorize/AArch64/induction-costs-sve.ll
+++ b/llvm/test/Transforms/LoopVectorize/AArch64/induction-costs-sve.ll
@@ -13,14 +13,14 @@ define void @iv_casts(ptr %dst, ptr %src, i32 %x, i64 %N) #0 {
; DEFAULT-NEXT: [[DST1:%.*]] = ptrtoaddr ptr [[DST]] to i64
; DEFAULT-NEXT: [[TMP0:%.*]] = add i64 [[N]], 1
; DEFAULT-NEXT: [[TMP1:%.*]] = call i64 @llvm.vscale.i64()
-; DEFAULT-NEXT: [[TMP2:%.*]] = shl nuw i64 [[TMP1]], 2
+; DEFAULT-NEXT: [[TMP2:%.*]] = shl nuw i64 [[TMP1]], 3
; DEFAULT-NEXT: [[MIN_ITERS_CHECK:%.*]] = icmp ult i64 [[TMP0]], [[TMP2]]
; DEFAULT-NEXT: [[TMP7:%.*]] = call i64 @llvm.vscale.i64()
-; DEFAULT-NEXT: [[TMP31:%.*]] = shl nuw i64 [[TMP7]], 2
+; DEFAULT-NEXT: [[TMP31:%.*]] = shl nuw i64 [[TMP7]], 3
; DEFAULT-NEXT: br i1 [[MIN_ITERS_CHECK]], label %[[VEC_EPILOG_SCALAR_PH:.*]], label %[[VECTOR_MEMCHECK:.*]]
; DEFAULT: [[VECTOR_MEMCHECK]]:
; DEFAULT-NEXT: [[TMP3:%.*]] = call i64 @llvm.vscale.i64()
-; DEFAULT-NEXT: [[TMP4:%.*]] = mul nuw i64 [[TMP3]], 8
+; DEFAULT-NEXT: [[TMP4:%.*]] = mul nuw i64 [[TMP3]], 16
; DEFAULT-NEXT: [[TMP5:%.*]] = mul i64 [[TMP4]], 2
; DEFAULT-NEXT: [[TMP27:%.*]] = sub i64 [[TMP5]], 1
; DEFAULT-NEXT: [[TMP6:%.*]] = sub i64 [[DST1]], [[SRC2]]
@@ -28,38 +28,38 @@ define void @iv_casts(ptr %dst, ptr %src, i32 %x, i64 %N) #0 {
; DEFAULT-NEXT: [[DIFF_CHECK:%.*]] = icmp ult i64 [[TMP14]], [[TMP27]]
; DEFAULT-NEXT: br i1 [[DIFF_CHECK]], label %[[VEC_EPILOG_SCALAR_PH]], label %[[VECTOR_MAIN_LOOP_ITER_CHECK:.*]]
; DEFAULT: [[VECTOR_MAIN_LOOP_ITER_CHECK]]:
-; DEFAULT-NEXT: [[TMP8:%.*]] = shl nuw i64 [[TMP1]], 4
+; DEFAULT-NEXT: [[TMP8:%.*]] = shl nuw i64 [[TMP1]], 5
; DEFAULT-NEXT: [[MIN_ITERS_CHECK3:%.*]] = icmp ult i64 [[TMP0]], [[TMP8]]
; DEFAULT-NEXT: br i1 [[MIN_ITERS_CHECK3]], label %[[VEC_EPILOG_PH:.*]], label %[[VECTOR_PH:.*]]
; DEFAULT: [[VECTOR_PH]]:
-; DEFAULT-NEXT: [[TMP13:%.*]] = shl nuw i64 [[TMP1]], 3
+; DEFAULT-NEXT: [[TMP13:%.*]] = shl nuw i64 [[TMP1]], 4
; DEFAULT-NEXT: [[TMP10:%.*]] = shl nuw i64 [[TMP13]], 1
; DEFAULT-NEXT: [[N_MOD_VF:%.*]] = urem i64 [[TMP0]], [[TMP10]]
; DEFAULT-NEXT: [[N_VEC:%.*]] = sub i64 [[TMP0]], [[N_MOD_VF]]
-; DEFAULT-NEXT: [[BROADCAST_SPLATINSERT:%.*]] = insertelement <vscale x 8 x i32> poison, i32 [[X]], i64 0
-; DEFAULT-NEXT: [[BROADCAST_SPLAT:%.*]] = shufflevector <vscale x 8 x i32> [[BROADCAST_SPLATINSERT]], <vscale x 8 x i32> poison, <vscale x 8 x i32> zeroinitializer
-; DEFAULT-NEXT: [[TMP11:%.*]] = trunc <vscale x 8 x i32> [[BROADCAST_SPLAT]] to <vscale x 8 x i16>
+; DEFAULT-NEXT: [[BROADCAST_SPLATINSERT:%.*]] = insertelement <vscale x 16 x i32> poison, i32 [[X]], i64 0
+; DEFAULT-NEXT: [[BROADCAST_SPLAT:%.*]] = shufflevector <vscale x 16 x i32> [[BROADCAST_SPLATINSERT]], <vscale x 16 x i32> poison, <vscale x 16 x i32> zeroinitializer
+; DEFAULT-NEXT: [[TMP16:%.*]] = trunc <vscale x 16 x i32> [[BROADCAST_SPLAT]] to <vscale x 16 x i16>
; DEFAULT-NEXT: br label %[[VECTOR_BODY:.*]]
; DEFAULT: [[VECTOR_BODY]]:
; DEFAULT-NEXT: [[INDEX:%.*]] = phi i64 [ 0, %[[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], %[[VECTOR_BODY]] ]
; DEFAULT-NEXT: [[TMP12:%.*]] = getelementptr i8, ptr [[SRC]], i64 [[INDEX]]
; DEFAULT-NEXT: [[TMP15:%.*]] = getelementptr i8, ptr [[TMP12]], i64 [[TMP13]]
-; DEFAULT-NEXT: [[WIDE_LOAD:%.*]] = load <vscale x 8 x i8>, ptr [[TMP12]], align 1
-; DEFAULT-NEXT: [[WIDE_LOAD4:%.*]] = load <vscale x 8 x i8>, ptr [[TMP15]], align 1
-; DEFAULT-NEXT: [[TMP16:%.*]] = zext <vscale x 8 x i8> [[WIDE_LOAD]] to <vscale x 8 x i16>
-; DEFAULT-NEXT: [[TMP17:%.*]] = zext <vscale x 8 x i8> [[WIDE_LOAD4]] to <vscale x 8 x i16>
-; DEFAULT-NEXT: [[TMP18:%.*]] = mul <vscale x 8 x i16> [[TMP16]], [[TMP11]]
-; DEFAULT-NEXT: [[TMP19:%.*]] = mul <vscale x 8 x i16> [[TMP17]], [[TMP11]]
-; DEFAULT-NEXT: [[TMP20:%.*]] = or <vscale x 8 x i16> [[TMP18]], [[TMP16]]
-; DEFAULT-NEXT: [[TMP21:%.*]] = or <vscale x 8 x i16> [[TMP19]], [[TMP17]]
-; DEFAULT-NEXT: [[TMP22:%.*]] = lshr <vscale x 8 x i16> [[TMP20]], splat (i16 1)
-; DEFAULT-NEXT: [[TMP23:%.*]] = lshr <vscale x 8 x i16> [[TMP21]], splat (i16 1)
-; DEFAULT-NEXT: [[TMP24:%.*]] = trunc <vscale x 8 x i16> [[TMP22]] to <vscale x 8 x i8>
-; DEFAULT-NEXT: [[TMP25:%.*]] = trunc <vscale x 8 x i16> [[TMP23]] to <vscale x 8 x i8>
+; DEFAULT-NEXT: [[WIDE_LOAD:%.*]] = load <vscale x 16 x i8>, ptr [[TMP12]], align 1
+; DEFAULT-NEXT: [[WIDE_LOAD4:%.*]] = load <vscale x 16 x i8>, ptr [[TMP15]], align 1
+; DEFAULT-NEXT: [[TMP17:%.*]] = zext <vscale x 16 x i8> [[WIDE_LOAD]] to <vscale x 16 x i16>
+; DEFAULT-NEXT: [[TMP18:%.*]] = zext <vscale x 16 x i8> [[WIDE_LOAD4]] to <vscale x 16 x i16>
+; DEFAULT-NEXT: [[TMP19:%.*]] = mul <vscale x 16 x i16> [[TMP17]], [[TMP16]]
+; DEFAULT-NEXT: [[TMP20:%.*]] = mul <vscale x 16 x i16> [[TMP18]], [[TMP16]]
+; DEFAULT-NEXT: [[TMP21:%.*]] = or <vscale x 16 x i16> [[TMP19]], [[TMP17]]
+; DEFAULT-NEXT: [[TMP22:%.*]] = or <vscale x 16 x i16> [[TMP20]], [[TMP18]]
+; DEFAULT-NEXT: [[TMP23:%.*]] = lshr <vscale x 16 x i16> [[TMP21]], splat (i16 1)
+; DEFAULT-NEXT: [[TMP24:%.*]] = lshr <vscale x 16 x i16> [[TMP22]], splat (i16 1)
+; DEFAULT-NEXT: [[TMP25:%.*]] = trunc <vscale x 16 x i16> [[TMP23]] to <vscale x 16 x i8>
+; DEFAULT-NEXT: [[TMP28:%.*]] = trunc <vscale x 16 x i16> [[TMP24]] to <vscale x 16 x i8>
; DEFAULT-NEXT: [[TMP26:%.*]] = getelementptr i8, ptr [[DST]], i64 [[INDEX]]
; DEFAULT-NEXT: [[TMP29:%.*]] = getelementptr i8, ptr [[TMP26]], i64 [[TMP13]]
-; DEFAULT-NEXT: store <vscale x 8 x i8> [[TMP24]], ptr [[TMP26]], align 1
-; DEFAULT-NEXT: store <vscale x 8 x i8> [[TMP25]], ptr [[TMP29]], align 1
+; DEFAULT-NEXT: store <vscale x 16 x i8> [[TMP25]], ptr [[TMP26]], align 1
+; DEFAULT-NEXT: store <vscale x 16 x i8> [[TMP28]], ptr [[TMP29]], align 1
; DEFAULT-NEXT: [[INDEX_NEXT]] = add nuw i64 [[INDEX]], [[TMP10]]
; DEFAULT-NEXT: [[TMP30:%.*]] = icmp eq i64 [[INDEX_NEXT]], [[N_VEC]]
; DEFAULT-NEXT: br i1 [[TMP30]], label %[[MIDDLE_BLOCK:.*]], label %[[VECTOR_BODY]], !llvm.loop [[LOOP0:![0-9]+]]
@@ -72,24 +72,24 @@ define void @iv_casts(ptr %dst, ptr %src, i32 %x, i64 %N) #0 {
; DEFAULT: [[VEC_EPILOG_PH]]:
; DEFAULT-NEXT: [[VEC_EPILOG_RESUME_VAL:%.*]] = phi i64 [ [[N_VEC]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0, %[[VECTOR_MAIN_LOOP_ITER_CHECK]] ]
; DEFAULT-NEXT: [[TMP33:%.*]] = call i64 @llvm.vscale.i64()
-; DEFAULT-NEXT: [[TMP34:%.*]] = shl nuw i64 [[TMP33]], 2
+; DEFAULT-NEXT: [[TMP34:%.*]] = shl nuw i64 [[TMP33]], 3
; DEFAULT-NEXT: [[N_MOD_VF5:%.*]] = urem i64 [[TMP0]], [[TMP34]]
; DEFAULT-NEXT: [[N_VEC6:%.*]] = sub i64 [[TMP0]], [[N_MOD_VF5]]
-; DEFAULT-NEXT: [[BROADCAST_SPLATINSERT7:%.*]] = insertelement <vscale x 4 x i32> poison, i32 [[X]], i64 0
-; DEFAULT-NEXT: [[BROADCAST_SPLAT8:%.*]] = shufflevector <vscale x 4 x i32> [[BROADCAST_SPLATINSERT7]], <vscale x 4 x i32> poison, <vscale x 4 x i32> zeroinitializer
-; DEFAULT-NEXT: [[TMP35:%.*]] = trunc <vscale x 4 x i32> [[BROADCAST_SPLAT8]] to <vscale x 4 x i16>
+; DEFAULT-NEXT: [[BROADCAST_SPLATINSERT7:%.*]] = insertelement <vscale x 8 x i32> poison, i32 [[X]], i64 0
+; DEFAULT-NEXT: [[BROADCAST_SPLAT8:%.*]] = shufflevector <vscale x 8 x i32> [[BROADCAST_SPLATINSERT7]], <vscale x 8 x i32> poison, <vscale x 8 x i32> zeroinitializer
+; DEFAULT-NEXT: [[TMP32:%.*]] = trunc <vscale x 8 x i32> [[BROADCAST_SPLAT8]] to <vscale x 8 x i16>
; DEFAULT-NEXT: br label %[[VEC_EPILOG_VECTOR_BODY:.*]]
; DEFAULT: [[VEC_EPILOG_VECTOR_BODY]]:
; DEFAULT-NEXT: [[INDEX9:%.*]] = phi i64 [ [[VEC_EPILOG_RESUME_VAL]], %[[VEC_EPILOG_PH]] ], [ [[INDEX_NEXT11:%.*]], %[[VEC_EPILOG_VECTOR_BODY]] ]
; DEFAULT-NEXT: [[TMP36:%.*]] = getelementptr i8, ptr [[SRC]], i64 [[INDEX9]]
-; DEFAULT-NEXT: [[WIDE_LOAD10:%.*]] = load <vscale x 4 x i8>, ptr [[TMP36]], align 1
-; DEFAULT-NEXT: [[TMP37:%.*]] = zext <vscale x 4 x i8> [[WIDE_LOAD10]] to <vscale x 4 x i16>
-; DEFAULT-NEXT: [[TMP38:%.*]] = mul <vscale x 4 x i16> [[TMP37]], [[TMP35]]
-; DEFAULT-NEXT: [[TMP39:%.*]] = or <vscale x 4 x i16> [[TMP38]], [[TMP37]]
-; DEFAULT-NEXT: [[TMP40:%.*]] = lshr <vscale x 4 x i16> [[TMP39]], splat (i16 1)
-; DEFAULT-NEXT: [[TMP41:%.*]] = trunc <vscale x 4 x i16> [[TMP40]] to <vscale x 4 x i8>
+; DEFAULT-NEXT: [[WIDE_LOAD10:%.*]] = load <vscale x 8 x i8>, ptr [[TMP36]], align 1
+; DEFAULT-NEXT: [[TMP39:%.*]] = zext <vscale x 8 x i8> [[WIDE_LOAD10]] to <vscale x 8 x i16>
+; DEFAULT-NEXT: [[TMP35:%.*]] = mul <vscale x 8 x i16> [[TMP39]], [[TMP32]]
+; DEFAULT-NEXT: [[TMP40:%.*]] = or <vscale x 8 x i16> [[TMP35]], [[TMP39]]
+; DEFAULT-NEXT: [[TMP37:%.*]] = lshr <vscale x 8 x i16> [[TMP40]], splat (i16 1)
+; DEFAULT-NEXT: [[TMP38:%.*]] = trunc <vscale x 8 x i16> [[TMP37]] to <vscale x 8 x i8>
; DEFAULT-NEXT: [[TMP42:%.*]] = getelementptr i8, ptr [[DST]], i64 [[INDEX9]]
-; DEFAULT-NEXT: store <vscale x 4 x i8> [[TMP41]], ptr [[TMP42]], align 1
+; DEFAULT-NEXT: store <vscale x 8 x i8> [[TMP38]], ptr [[TMP42]], align 1
; DEFAULT-NEXT: [[INDEX_NEXT11]] = add nuw i64 [[INDEX9]], [[TMP34]]
; DEFAULT-NEXT: [[TMP43:%.*]] = icmp eq i64 [[INDEX_NEXT11]], [[N_VEC6]]
; DEFAULT-NEXT: br i1 [[TMP43]], label %[[VEC_EPILOG_MIDDLE_BLOCK:.*]], label %[[VEC_EPILOG_VECTOR_BODY]], !llvm.loop [[LOOP4:![0-9]+]]
@@ -126,7 +126,7 @@ define void @iv_casts(ptr %dst, ptr %src, i32 %x, i64 %N) #0 {
; PRED-NEXT: br label %[[VECTOR_MEMCHECK:.*]]
; PRED: [[VECTOR_MEMCHECK]]:
; PRED-NEXT: [[TMP1:%.*]] = call i64 @llvm.vscale.i64()
-; PRED-NEXT: [[TMP2:%.*]] = mul nuw i64 [[TMP1]], 8
+; PRED-NEXT: [[TMP2:%.*]] = mul nuw i64 [[TMP1]], 16
; PRED-NEXT: [[TMP7:%.*]] = sub i64 [[TMP2]], 1
; PRED-NEXT: [[TMP3:%.*]] = sub i64 [[DST1]], [[SRC2]]
; PRED-NEXT: [[TMP6:%.*]] = sub i64 [[TMP3]], 1
@@ -134,27 +134,27 @@ define void @iv_casts(ptr %dst, ptr %src, i32 %x, i64 %N) #0 {
; PRED-NEXT: br i1 [[DIFF_CHECK]], label %[[SCALAR_PH:.*]], label %[[VECTOR_PH:.*]]
; PRED: [[VECTOR_PH]]:
; PRED-NEXT: [[TMP4:%.*]] = call i64 @llvm.vscale.i64()
-; PRED-NEXT: [[TMP5:%.*]] = shl nuw i64 [[TMP4]], 3
-; PRED-NEXT: [[BROADCAST_SPLATINSERT:%.*]] = insertelement <vscale x 8 x i32> poison, i32 [[X]], i64 0
-; PRED-NEXT: [[BROADCAST_SPLAT:%.*]] = shufflevector <vscale x 8 x i32> [[BROADCAST_SPLATINSERT]], <vscale x 8 x i32> poison, <vscale x 8 x i32> zeroinitializer
-; PRED-NEXT: [[TMP14:%.*]] = trunc <vscale x 8 x i32> [[BROADCAST_SPLAT]] to <vscale x 8 x i16>
-; PRED-NEXT: [[ACTIVE_LANE_MASK_ENTRY:%.*]] = call <vscale x 8 x i1> @llvm.get.active.lane.mask.nxv8i1.i64(i64 0, i64 [[TMP0]])
+; PRED-NEXT: [[TMP5:%.*]] = shl nuw i64 [[TMP4]], 4
+; PRED-NEXT: [[BROADCAST_SPLATINSERT:%.*]] = insertelement <vscale x 16 x i32> poison, i32 [[X]], i64 0
+; PRED-NEXT: [[BROADCAST_SPLAT:%.*]] = shufflevector <vscale x 16 x i32> [[BROADCAST_SPLATINSERT]], <vscale x 16 x i32> poison, <vscale x 16 x i32> zeroinitializer
+; PRED-NEXT: [[TMP8:%.*]] = trunc <vscale x 16 x i32> [[BROADCAST_SPLAT]] to <vscale x 16 x i16>
+; PRED-NEXT: [[ACTIVE_LANE_MASK_ENTRY:%.*]] = call <vscale x 16 x i1> @llvm.get.active.lane.mask.nxv16i1.i64(i64 0, i64 [[TMP0]])
; PRED-NEXT: br label %[[VECTOR_BODY:.*]]
; PRED: [[VECTOR_BODY]]:
; PRED-NEXT: [[INDEX:%.*]] = phi i64 [ 0, %[[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], %[[VECTOR_BODY]] ]
-; PRED-NEXT: [[ACTIVE_LANE_MASK:%.*]] = phi <vscale x 8 x i1> [ [[ACTIVE_LANE_MASK_ENTRY]], %[[VECTOR_PH]] ], [ [[ACTIVE_LANE_MASK_NEXT:%.*]], %[[VECTOR_BODY]] ]
+; PRED-NEXT: [[ACTIVE_LANE_MASK:%.*]] = phi <vscale x 16 x i1> [ [[ACTIVE_LANE_MASK_ENTRY]], %[[VECTOR_PH]] ], [ [[ACTIVE_LANE_MASK_NEXT:%.*]], %[[VECTOR_BODY]] ]
; PRED-NEXT: [[TMP12:%.*]] = getelementptr i8, ptr [[SRC]], i64 [[INDEX]]
-; PRED-NEXT: [[WIDE_MASKED_LOAD:%.*]] = call <vscale x 8 x i8> @llvm.masked.load.nxv8i8.p0(ptr align 1 [[TMP12]], <vscale x 8 x i1> [[ACTIVE_LANE_MASK]], <vscale x 8 x i8> poison)
-; PRED-NEXT: [[TMP8:%.*]] = zext <vscale x 8 x i8> [[WIDE_MASKED_LOAD]] to <vscale x 8 x i16>
-; PRED-NEXT: [[TMP9:%.*]] = mul <vscale x 8 x i16> [[TMP8]], [[TMP14]]
-; PRED-NEXT: [[TMP10:%.*]] = or <vscale x 8 x i16> [[TMP9]], [[TMP8]]
-; PRED-NEXT: [[TMP11:%.*]] = lshr <vscale x 8 x i16> [[TMP10]], splat (i16 1)
-; PRED-NEXT: [[TMP13:%.*]] = trunc <vscale x 8 x i16> [[TMP11]] to <vscale x 8 x i8>
+; PRED-NEXT: [[WIDE_MASKED_LOAD:%.*]] = call <vscale x 16 x i8> @llvm.masked.load.nxv16i8.p0(ptr align 1 [[TMP12]], <vscale x 16 x i1> [[ACTIVE_LANE_MASK]], <vscale x 16 x i8> poison)
+; PRED-NEXT: [[TMP10:%.*]] = zext <vscale x 16 x i8> [[WIDE_MASKED_LOAD]] to <vscale x 16 x i16>
+; PRED-NEXT: [[TMP11:%.*]] = mul <vscale x 16 x i16> [[TMP10]], [[TMP8]]
+; PRED-NEXT: [[TMP15:%.*]] = or <vscale x 16 x i16> [[TMP11]], [[TMP10]]
+; PRED-NEXT: [[TMP13:%.*]] = lshr <vscale x 16 x i16> [[TMP15]], splat (i16 1)
+; PRED-NEXT: [[TMP14:%.*]] = trunc <vscale x 16 x i16> [[TMP13]] to <vscale x 16 x i8>
; PRED-NEXT: [[TMP18:%.*]] = getelementptr i8, ptr [[DST]], i64 [[INDEX]]
-; PRED-NEXT: call void @llvm.masked.store.nxv8i8.p0(<vscale x 8 x i8> [[TMP13]], ptr align 1 [[TMP18]], <vscale x 8 x i1> [[ACTIVE_LANE_MASK]])
+; PRED-NEXT: call void @llvm.masked.store.nxv16i8.p0(<vscale x 16 x i8> [[TMP14]], ptr align 1 [[TMP18]], <vscale x 16 x i1> [[ACTIVE_LANE_MASK]])
; PRED-NEXT: [[INDEX_NEXT]] = add i64 [[INDEX]], [[TMP5]]
-; PRED-NEXT: [[ACTIVE_LANE_MASK_NEXT]] = call <vscale x 8 x i1> @llvm.get.active.lane.mask.nxv8i1.i64(i64 [[INDEX_NEXT]], i64 [[TMP0]])
-; PRED-NEXT: [[TMP19:%.*]] = extractelement <vscale x 8 x i1> [[ACTIVE_LANE_MASK_NEXT]], i64 0
+; PRED-NEXT: [[ACTIVE_LANE_MASK_NEXT]] = call <vscale x 16 x i1> @llvm.get.active.lane.mask.nxv16i1.i64(i64 [[INDEX_NEXT]], i64 [[TMP0]])
+; PRED-NEXT: [[TMP19:%.*]] = extractelement <vscale x 16 x i1> [[ACTIVE_LANE_MASK_NEXT]], i64 0
; PRED-NEXT: [[TMP20:%.*]] = xor i1 [[TMP19]], true
; PRED-NEXT: br i1 [[TMP20]], label %[[MIDDLE_BLOCK:.*]], label %[[VECTOR_BODY]], !llvm.loop [[LOOP0:![0-9]+]]
; PRED: [[MIDDLE_BLOCK]]:
diff --git a/llvm/test/Transforms/LoopVectorize/AArch64/neon-inloop-reductions.ll b/llvm/test/Transforms/LoopVectorize/AArch64/neon-inloop-reductions.ll
index 541b8d1634ecf..f59f45d0c155d 100644
--- a/llvm/test/Transforms/LoopVectorize/AArch64/neon-inloop-reductions.ll
+++ b/llvm/test/Transforms/LoopVectorize/AArch64/neon-inloop-reductions.ll
@@ -39,7 +39,6 @@ define i32 @mul_used_outside_vpexpression(ptr %src.0, ptr %src.1) {
; CHECK-NEXT: br i1 false, label %[[VEC_EPILOG_SCALAR_PH]], label %[[VEC_EPILOG_PH]], !prof [[PROF3:![0-9]+]]
; CHECK: [[VEC_EPILOG_PH]]:
; CHECK-NEXT: [[VEC_EPILOG_RESUME_VAL:%.*]] = phi i64 [ 96, %[[VEC_EPILOG_ITER_CHECK]] ], [ 0, %[[VECTOR_MAIN_LOOP_ITER_CHECK]] ]
-; CHECK-NEXT: [[BC_MERGE_RDX:%.*]] = phi i32 [ [[TMP6]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0, %[[VECTOR_MAIN_LOOP_ITER_CHECK]] ]
; CHECK-NEXT: [[BC_MERGE_RDX3:%.*]] = phi i32 [ [[TMP8]], %[[VEC_EPILOG_ITER_CHECK]] ], [ 0, %[[VECTOR_MAIN_LOOP_ITER_CHECK]] ]
; CHECK-NEXT: [[TMP10:%.*]] = getelementptr i8, ptr [[SRC_0]], i64 100
; CHECK-NEXT: [[TMP11:%.*]] = getelementptr i8, ptr [[SRC_1]], i64 1
@@ -50,7 +49,7 @@ define i32 @mul_used_outside_vpexpression(ptr %src.0, ptr %src.1) {
; CHECK-NEXT: br label %[[VEC_EPILOG_VECTOR_BODY:.*]]
; CHECK: [[VEC_EPILOG_VECTOR_BODY]]:
; CHECK-NEXT: [[INDEX3:%.*]] = phi i64 [ [[VEC_EPILOG_RESUME_VAL]], %[[VEC_EPILOG_PH]] ], [ [[INDEX_NEXT10:%.*]], %[[VEC_EPILOG_VECTOR_BODY]] ]
-; CHECK-NEXT: [[VEC_PHI4:%.*]] = phi i32 [ [[BC_MERGE_RDX]], %[[VEC_EPILOG_PH]] ], [ [[TMP17:%.*]], %[[VEC_EPILOG_VECTOR_BODY]] ]
+; CHECK-NEXT: [[VEC_PHI4:%.*]] = phi i32 [ [[BC_MERGE_RDX3]], %[[VEC_EPILOG_PH]] ], [ [[TMP17:%.*]], %[[VEC_EPILOG_VECTOR_BODY]] ]
; CHECK-NEXT: [[VEC_PHI5:%.*]] = phi i32 [ [[BC_MERGE_RDX3]], %[[VEC_EPILOG_PH]] ], [ [[TMP19:%.*]], %[[VEC_EPILOG_VECTOR_BODY]] ]
; CHECK-NEXT: [[NEXT_GEP9:%.*]] = getelementptr i8, ptr [[SRC_0]], i64 [[INDEX3]]
; CHECK-NEXT: [[WIDE_LOAD10:%.*]] = load <4 x i8>, ptr [[NEXT_GEP9]], align 1
diff --git a/llvm/test/Transforms/LoopVectorize/AArch64/partial-reduce-with-invariant-stores.ll b/llvm/test/Transforms/LoopVectorize/AArch64/partial-reduce-with-invariant-stores.ll
index 2789aa4be8a72..9a9666c70d970 100644
--- a/llvm/test/Transforms/LoopVectorize/AArch64/partial-reduce-with-invariant-stores.ll
+++ b/llvm/test/Transforms/LoopVectorize/AArch64/partial-reduce-with-invariant-stores.ll
@@ -74,27 +74,27 @@ define void @chained_sext_adds(ptr noalias %src, ptr noalias %dst) #0 {
; CHECK-SAME: ptr noalias [[SRC:%.*]], ptr noalias [[DST:%.*]]) #[[ATTR1:[0-9]+]] {
; CHECK-NEXT: [[ENTRY:.*]]:
; CHECK-NEXT: [[TMP0:%.*]] = call i64 @llvm.vscale.i64()
-; CHECK-NEXT: [[TMP1:%.*]] = shl nuw i64 [[TMP0]], 2
+; CHECK-NEXT: [[TMP1:%.*]] = shl nuw i64 [[TMP0]], 3
; CHECK-NEXT: [[MIN_ITERS_CHECK:%.*]] = icmp ult i64 1000, [[TMP1]]
; CHECK-NEXT: br i1 [[MIN_ITERS_CHECK]], label %[[SCALAR_PH:.*]], label %[[VECTOR_PH:.*]]
; CHECK: [[VECTOR_PH]]:
-; CHECK-NEXT: [[TMP3:%.*]] = shl nuw i64 [[TMP0]], 2
+; CHECK-NEXT: [[TMP3:%.*]] = shl nuw i64 [[TMP0]], 3
; CHECK-NEXT: [[N_MOD_VF:%.*]] = urem i64 1000, [[TMP3]]
; CHECK-NEXT: [[N_VEC:%.*]] = sub i64 1000, [[N_MOD_VF]]
; CHECK-NEXT: br label %[[VECTOR_BODY:.*]]
; CHECK: [[VECTOR_BODY]]:
; CHECK-NEXT: [[INDEX:%.*]] = phi i64 [ 0, %[[VECTOR_PH]] ], [ [[INDEX_NEXT:%.*]], %[[VECTOR_BODY]] ]
-; CHECK-NEXT: [[VEC_PHI:%.*]] = phi <vscale x 4 x i32> [ zeroinitializer, %[[VECTOR_PH]] ], [ [[TMP7:%.*]], %[[VECTOR_BODY]] ]
+; CHECK-NEXT: [[VEC_PHI:%.*]] = phi <vscale x 8 x i32> [ zeroinitializer, %[[VECTOR_PH]] ], [ [[TMP6:%.*]], %[[VECTOR_BODY]] ]
; CHECK-NEXT: [[TMP4:%.*]] = getelementptr i8, ptr [[SRC]], i64 [[INDEX]]
-; CHECK-NEXT: [[WIDE_LOAD:%.*]] = load <vscale x 4 x i8>, ptr [[TMP4]], align 1
-; CHECK-NEXT: [[TMP5:%.*]] = sext <vscale x 4 x i8> [[WIDE_LOAD]] to <vscale x 4 x i32>
-; CHECK-NEXT: [[TMP6:%.*]] = add <vscale x 4 x i32> [[VEC_PHI]], [[TMP5]]
-; CHECK-NEXT: [[TMP7]] = add <vscale x 4 x i32> [[TMP6]], [[TMP5]]
+; CHECK-NEXT: [[WIDE_LOAD:%.*]] = load <vscale x 8 x i8>, ptr [[TMP4]], align 1
+; CHECK-NEXT: [[TMP7:%.*]] = sext <vscale x 8 x i8> [[WIDE_LOAD]] to <vscale x 8 x i32>
+; CHECK-NEXT: [[TMP5:%.*]] = add <vscale x 8 x i32> [[VEC_PHI]], [[TMP7]]
+; CHECK-NEXT: [[TMP6]] = add <vscale x 8 x i32> [[TMP5]], [[TMP7]]
; CHECK-NEXT: [[INDEX_NEXT]] = add nuw i64 [[INDEX]], [[TMP3]]
; CHECK-NEXT: [[TMP8:%.*]] = icmp eq i64 [[INDEX_NEXT]], [[N_VEC]]
; CHECK-NEXT: br i1 [[TMP8]], label %[[MIDDLE_BLOCK:.*]], label %[[VECTOR_BODY]], !llvm.loop [[LOOP9:![0-9]+]]
; CHECK: [[MIDDLE_BLOCK]]:
-; CHECK-NEXT: [[TMP9:%.*]] = call i32 @llvm.vector.reduce.add.nxv4i32(<vscale x 4 x i32> [[TMP7]])
+; CHECK-NEXT: [[TMP9:%.*]] = call i32 @llvm.vector.reduce.add.nxv8i32(<vscale x 8 x i32> [[TMP6]])
; CHECK-NEXT: store i32 [[TMP9]], ptr [[DST]], align 4
; CHECK-NEXT: [[CMP_N:%.*]] = icmp eq i64 1000, [[N_VEC]]
; CHECK-NEXT: br i1 [[CMP_N]], label %[[EXIT:.*]], label %[[SCALAR_PH]]
diff --git a/llvm/test/Transforms/LoopVectorize/ARM/mve-icmpcost.ll b/llvm/test/Transforms/LoopVectorize/ARM/mve-icmpcost.ll
index e3273b563192f..41b27f47c5021 100644
--- a/llvm/test/Transforms/LoopVectorize/ARM/mve-icmpcost.ll
+++ b/llvm/test/Transforms/LoopVectorize/ARM/mve-icmpcost.ll
@@ -166,23 +166,21 @@ define void @cheap_icmp(ptr nocapture readonly %pSrcA, ptr nocapture readonly %p
; CHECK: Cost of 0 for VF 2: induction instruction %pSrcB.addr.09 = phi ptr [ %incdec.ptr2, %while.body ], [ %pSrcB, %while.body.preheader ]
; CHECK: Cost of 0 for VF 2: vp<[[VP8:%[0-9]+]]> = SCALAR-STEPS vp<[[VP7:%[0-9]+]]>, ir<1>, vp<[[VP0:%[0-9]+]]>
; CHECK: Cost of 0 for VF 2: EMIT vp<%next.gep> = ptradd ir<%pSrcA>, vp<[[VP8]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP9:%[0-9]+]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 2: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP10:%[0-9]+]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 2: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP11:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 18 for VF 2: WIDEN ir<%0> = load vp<[[VP11]]>
+; CHECK: Cost of 0 for VF 2: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 2: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 2: vp<[[VP9:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
+; CHECK: Cost of 18 for VF 2: WIDEN ir<%0> = load vp<[[VP9]]>
; CHECK: Cost of 4 for VF 2: WIDEN-CAST ir<%conv1> = sext ir<%0> to i32
-; CHECK: Cost of 0 for VF 2: vp<[[VP12:%[0-9]+]]> = vector-pointer vp<%next.gep>.2, ir<1>
-; CHECK: Cost of 18 for VF 2: WIDEN ir<%1> = load vp<[[VP12]]>
+; CHECK: Cost of 0 for VF 2: vp<[[VP10:%[0-9]+]]> = vector-pointer vp<%next.gep>.2, ir<1>
+; CHECK: Cost of 18 for VF 2: WIDEN ir<%1> = load vp<[[VP10]]>
; CHECK: Cost of 4 for VF 2: WIDEN-CAST ir<%conv3> = sext ir<%1> to i32
; CHECK: Cost of 26 for VF 2: WIDEN ir<%mul> = mul nsw ir<%conv3>, ir<%conv1>
; CHECK: Cost of 18 for VF 2: WIDEN ir<%shr> = ashr ir<%mul>, ir<7>
; CHECK: Cost of 0 for VF 2: WIDEN ir<%2> = icmp slt ir<%shr>, ir<127>
; CHECK: Cost of 22 for VF 2: WIDEN ir<%spec.select.i> = select ir<%2>, ir<%shr>, ir<127>
; CHECK: Cost of 0 for VF 2: WIDEN-CAST ir<%conv4> = trunc ir<%spec.select.i> to i8
-; CHECK: Cost of 0 for VF 2: vp<[[VP13:%[0-9]+]]> = vector-pointer vp<%next.gep>.1, ir<1>
-; CHECK: Cost of 18 for VF 2: WIDEN store vp<[[VP13]]>, ir<%conv4>
+; CHECK: Cost of 0 for VF 2: vp<[[VP11:%[0-9]+]]> = vector-pointer vp<%next.gep>.1, ir<1>
+; CHECK: Cost of 18 for VF 2: WIDEN store vp<[[VP11]]>, ir<%conv4>
; CHECK: Cost of 0 for VF 2: EMIT vp<%index.next> = add nuw vp<[[VP7]]>, vp<[[VP1:%[0-9]+]]>
; CHECK: Cost of 1 for VF 2: EMIT branch-on-count vp<%index.next>, vp<[[VP2:%[0-9]+]]>
; CHECK: Cost of 0 for VF 2: vector loop backedge
@@ -226,23 +224,21 @@ define void @cheap_icmp(ptr nocapture readonly %pSrcA, ptr nocapture readonly %p
; CHECK: Cost of 0 for VF 4: induction instruction %pSrcB.addr.09 = phi ptr [ %incdec.ptr2, %while.body ], [ %pSrcB, %while.body.preheader ]
; CHECK: Cost of 0 for VF 4: vp<[[VP8]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
; CHECK: Cost of 0 for VF 4: EMIT vp<%next.gep> = ptradd ir<%pSrcA>, vp<[[VP8]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP9]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 4: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP10]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 4: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP11]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 2 for VF 4: WIDEN ir<%0> = load vp<[[VP11]]>
+; CHECK: Cost of 0 for VF 4: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 4: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 4: vp<[[VP9]]> = vector-pointer vp<%next.gep>, ir<1>
+; CHECK: Cost of 2 for VF 4: WIDEN ir<%0> = load vp<[[VP9]]>
; CHECK: Cost of 0 for VF 4: WIDEN-CAST ir<%conv1> = sext ir<%0> to i32
-; CHECK: Cost of 0 for VF 4: vp<[[VP12]]> = vector-pointer vp<%next.gep>.2, ir<1>
-; CHECK: Cost of 2 for VF 4: WIDEN ir<%1> = load vp<[[VP12]]>
+; CHECK: Cost of 0 for VF 4: vp<[[VP10]]> = vector-pointer vp<%next.gep>.2, ir<1>
+; CHECK: Cost of 2 for VF 4: WIDEN ir<%1> = load vp<[[VP10]]>
; CHECK: Cost of 0 for VF 4: WIDEN-CAST ir<%conv3> = sext ir<%1> to i32
; CHECK: Cost of 2 for VF 4: WIDEN ir<%mul> = mul nsw ir<%conv3>, ir<%conv1>
; CHECK: Cost of 2 for VF 4: WIDEN ir<%shr> = ashr ir<%mul>, ir<7>
; CHECK: Cost of 0 for VF 4: WIDEN ir<%2> = icmp slt ir<%shr>, ir<127>
; CHECK: Cost of 2 for VF 4: WIDEN ir<%spec.select.i> = select ir<%2>, ir<%shr>, ir<127>
; CHECK: Cost of 0 for VF 4: WIDEN-CAST ir<%conv4> = trunc ir<%spec.select.i> to i8
-; CHECK: Cost of 0 for VF 4: vp<[[VP13]]> = vector-pointer vp<%next.gep>.1, ir<1>
-; CHECK: Cost of 2 for VF 4: WIDEN store vp<[[VP13]]>, ir<%conv4>
+; CHECK: Cost of 0 for VF 4: vp<[[VP11]]> = vector-pointer vp<%next.gep>.1, ir<1>
+; CHECK: Cost of 2 for VF 4: WIDEN store vp<[[VP11]]>, ir<%conv4>
; CHECK: Cost of 0 for VF 4: EMIT vp<%index.next> = add nuw vp<[[VP7]]>, vp<[[VP1]]>
; CHECK: Cost of 1 for VF 4: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK: Cost of 0 for VF 4: vector loop backedge
@@ -286,23 +282,21 @@ define void @cheap_icmp(ptr nocapture readonly %pSrcA, ptr nocapture readonly %p
; CHECK: Cost of 0 for VF 8: induction instruction %pSrcB.addr.09 = phi ptr [ %incdec.ptr2, %while.body ], [ %pSrcB, %while.body.preheader ]
; CHECK: Cost of 0 for VF 8: vp<[[VP8]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
; CHECK: Cost of 0 for VF 8: EMIT vp<%next.gep> = ptradd ir<%pSrcA>, vp<[[VP8]]>
-; CHECK: Cost of 0 for VF 8: vp<[[VP9]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 8: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 8: vp<[[VP10]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 8: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 8: vp<[[VP11]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 2 for VF 8: WIDEN ir<%0> = load vp<[[VP11]]>
+; CHECK: Cost of 0 for VF 8: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 8: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 8: vp<[[VP9]]> = vector-pointer vp<%next.gep>, ir<1>
+; CHECK: Cost of 2 for VF 8: WIDEN ir<%0> = load vp<[[VP9]]>
; CHECK: Cost of 2 for VF 8: WIDEN-CAST ir<%conv1> = sext ir<%0> to i32
-; CHECK: Cost of 0 for VF 8: vp<[[VP12]]> = vector-pointer vp<%next.gep>.2, ir<1>
-; CHECK: Cost of 2 for VF 8: WIDEN ir<%1> = load vp<[[VP12]]>
+; CHECK: Cost of 0 for VF 8: vp<[[VP10]]> = vector-pointer vp<%next.gep>.2, ir<1>
+; CHECK: Cost of 2 for VF 8: WIDEN ir<%1> = load vp<[[VP10]]>
; CHECK: Cost of 2 for VF 8: WIDEN-CAST ir<%conv3> = sext ir<%1> to i32
; CHECK: Cost of 4 for VF 8: WIDEN ir<%mul> = mul nsw ir<%conv3>, ir<%conv1>
; CHECK: Cost of 4 for VF 8: WIDEN ir<%shr> = ashr ir<%mul>, ir<7>
; CHECK: Cost of 0 for VF 8: WIDEN ir<%2> = icmp slt ir<%shr>, ir<127>
; CHECK: Cost of 4 for VF 8: WIDEN ir<%spec.select.i> = select ir<%2>, ir<%shr>, ir<127>
; CHECK: Cost of 2 for VF 8: WIDEN-CAST ir<%conv4> = trunc ir<%spec.select.i> to i8
-; CHECK: Cost of 0 for VF 8: vp<[[VP13]]> = vector-pointer vp<%next.gep>.1, ir<1>
-; CHECK: Cost of 2 for VF 8: WIDEN store vp<[[VP13]]>, ir<%conv4>
+; CHECK: Cost of 0 for VF 8: vp<[[VP11]]> = vector-pointer vp<%next.gep>.1, ir<1>
+; CHECK: Cost of 2 for VF 8: WIDEN store vp<[[VP11]]>, ir<%conv4>
; CHECK: Cost of 0 for VF 8: EMIT vp<%index.next> = add nuw vp<[[VP7]]>, vp<[[VP1]]>
; CHECK: Cost of 1 for VF 8: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK: Cost of 0 for VF 8: vector loop backedge
@@ -346,23 +340,21 @@ define void @cheap_icmp(ptr nocapture readonly %pSrcA, ptr nocapture readonly %p
; CHECK: Cost of 0 for VF 16: induction instruction %pSrcB.addr.09 = phi ptr [ %incdec.ptr2, %while.body ], [ %pSrcB, %while.body.preheader ]
; CHECK: Cost of 0 for VF 16: vp<[[VP8]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
; CHECK: Cost of 0 for VF 16: EMIT vp<%next.gep> = ptradd ir<%pSrcA>, vp<[[VP8]]>
-; CHECK: Cost of 0 for VF 16: vp<[[VP9]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 16: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 16: vp<[[VP10]]> = SCALAR-STEPS vp<[[VP7]]>, ir<1>, vp<[[VP0]]>
-; CHECK: Cost of 0 for VF 16: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 16: vp<[[VP11]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 2 for VF 16: WIDEN ir<%0> = load vp<[[VP11]]>
+; CHECK: Cost of 0 for VF 16: EMIT vp<%next.gep>.1 = ptradd ir<%pDst>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 16: EMIT vp<%next.gep>.2 = ptradd ir<%pSrcB>, vp<[[VP8]]>
+; CHECK: Cost of 0 for VF 16: vp<[[VP9]]> = vector-pointer vp<%next.gep>, ir<1>
+; CHECK: Cost of 2 for VF 16: WIDEN ir<%0> = load vp<[[VP9]]>
; CHECK: Cost of 6 for VF 16: WIDEN-CAST ir<%conv1> = sext ir<%0> to i32
-; CHECK: Cost of 0 for VF 16: vp<[[VP12]]> = vector-pointer vp<%next.gep>.2, ir<1>
-; CHECK: Cost of 2 for VF 16: WIDEN ir<%1> = load vp<[[VP12]]>
+; CHECK: Cost of 0 for VF 16: vp<[[VP10]]> = vector-pointer vp<%next.gep>.2, ir<1>
+; CHECK: Cost of 2 for VF 16: WIDEN ir<%1> = load vp<[[VP10]]>
; CHECK: Cost of 6 for VF 16: WIDEN-CAST ir<%conv3> = sext ir<%1> to i32
; CHECK: Cost of 8 for VF 16: WIDEN ir<%mul> = mul nsw ir<%conv3>, ir<%conv1>
; CHECK: Cost of 8 for VF 16: WIDEN ir<%shr> = ashr ir<%mul>, ir<7>
; CHECK: Cost of 0 for VF 16: WIDEN ir<%2> = icmp slt ir<%shr>, ir<127>
; CHECK: Cost of 8 for VF 16: WIDEN ir<%spec.select.i> = select ir<%2>, ir<%shr>, ir<127>
; CHECK: Cost of 6 for VF 16: WIDEN-CAST ir<%conv4> = trunc ir<%spec.select.i> to i8
-; CHECK: Cost of 0 for VF 16: vp<[[VP13]]> = vector-pointer vp<%next.gep>.1, ir<1>
-; CHECK: Cost of 2 for VF 16: WIDEN store vp<[[VP13]]>, ir<%conv4>
+; CHECK: Cost of 0 for VF 16: vp<[[VP11]]> = vector-pointer vp<%next.gep>.1, ir<1>
+; CHECK: Cost of 2 for VF 16: WIDEN store vp<[[VP11]]>, ir<%conv4>
; CHECK: Cost of 0 for VF 16: EMIT vp<%index.next> = add nuw vp<[[VP7]]>, vp<[[VP1]]>
; CHECK: Cost of 1 for VF 16: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK: Cost of 0 for VF 16: vector loop backedge
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/early_exit_with_stores_vplan.ll b/llvm/test/Transforms/LoopVectorize/VPlan/early_exit_with_stores_vplan.ll
index 822bc1d4f3d93..ae0608b487084 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/early_exit_with_stores_vplan.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/early_exit_with_stores_vplan.ll
@@ -33,28 +33,27 @@ define void @loop_contains_store_condition_load_has_single_user(ptr dereferencea
; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
; CHECK-NEXT: WIDEN ir<%data> = load vp<[[VP7]]>, vp<%uncountable.exit.mask>
; CHECK-NEXT: WIDEN ir<%inc> = add nsw ir<%data>, ir<1>
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP8]]>, ir<%inc>, vp<%uncountable.exit.mask>
-; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = any-of ir<%ee.cond>
+; CHECK-NEXT: WIDEN store vp<[[VP7]]>, ir<%inc>, vp<%uncountable.exit.mask>
+; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = any-of ir<%ee.cond>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
-; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
-; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP9]]>, vp<[[VP10]]>
+; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP8]]>, vp<[[VP9]]>
; CHECK-NEXT: No successors
; CHECK-NEXT: }
; CHECK-NEXT: Successor(s): middle.block, middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
-; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = add vp<[[VP12]]>, vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<[[VP14:%[0-9]+]]> = icmp eq vp<[[VP13]]>, ir<20>
-; CHECK-NEXT: EMIT branch-on-cond vp<[[VP14]]>
+; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
+; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = add vp<[[VP11]]>, vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = icmp eq vp<[[VP12]]>, ir<20>
+; CHECK-NEXT: EMIT branch-on-cond vp<[[VP13]]>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<exit>:
; CHECK-NEXT: No successors
; CHECK-EMPTY:
; CHECK-NEXT: scalar.ph:
-; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP13]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
+; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP12]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
; CHECK-NEXT: Successor(s): ir-bb<for.body>
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<for.body>:
@@ -122,28 +121,27 @@ define void @loop_contains_store_after_uncountable_exit(ptr dereferenceable(40)
; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
; CHECK-NEXT: WIDEN ir<%data> = load vp<[[VP7]]>, vp<%uncountable.exit.mask>
; CHECK-NEXT: WIDEN ir<%inc> = add nsw ir<%data>, ir<1>
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP8]]>, ir<%inc>, vp<%uncountable.exit.mask>
-; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = any-of ir<%ee.cond>
+; CHECK-NEXT: WIDEN store vp<[[VP7]]>, ir<%inc>, vp<%uncountable.exit.mask>
+; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = any-of ir<%ee.cond>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
-; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
-; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP9]]>, vp<[[VP10]]>
+; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP8]]>, vp<[[VP9]]>
; CHECK-NEXT: No successors
; CHECK-NEXT: }
; CHECK-NEXT: Successor(s): middle.block, middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
-; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = add vp<[[VP12]]>, vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<[[VP14:%[0-9]+]]> = icmp eq vp<[[VP13]]>, ir<20>
-; CHECK-NEXT: EMIT branch-on-cond vp<[[VP14]]>
+; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
+; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = add vp<[[VP11]]>, vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = icmp eq vp<[[VP12]]>, ir<20>
+; CHECK-NEXT: EMIT branch-on-cond vp<[[VP13]]>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<exit>:
; CHECK-NEXT: No successors
; CHECK-EMPTY:
; CHECK-NEXT: scalar.ph:
-; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP13]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
+; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP12]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
; CHECK-NEXT: Successor(s): ir-bb<for.body>
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<for.body>:
@@ -207,31 +205,30 @@ define i16 @uncountable_exit_with_live_out(ptr dereferenceable(40) noalias %arra
; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
; CHECK-NEXT: WIDEN ir<%data> = load vp<[[VP7]]>, vp<%uncountable.exit.mask>
; CHECK-NEXT: WIDEN ir<%inc> = add nsw ir<%data>, ir<1>
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer ir<%st.addr>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP8]]>, ir<%inc>, vp<%uncountable.exit.mask>
-; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = any-of ir<%ee.cond>
+; CHECK-NEXT: WIDEN store vp<[[VP7]]>, ir<%inc>, vp<%uncountable.exit.mask>
+; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = any-of ir<%ee.cond>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
-; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
-; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP9]]>, vp<[[VP10]]>
+; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP8]]>, vp<[[VP9]]>
; CHECK-NEXT: No successors
; CHECK-NEXT: }
; CHECK-NEXT: Successor(s): middle.block, middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-last-part ir<%data>
-; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = extract-last-lane vp<[[VP12]]>
-; CHECK-NEXT: EMIT vp<[[VP14:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
-; CHECK-NEXT: EMIT vp<[[VP15:%[0-9]+]]> = add vp<[[VP14]]>, vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<[[VP16:%[0-9]+]]> = icmp eq vp<[[VP15]]>, ir<20>
-; CHECK-NEXT: EMIT branch-on-cond vp<[[VP16]]>
+; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part ir<%data>
+; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-last-lane vp<[[VP11]]>
+; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = extract-lane ir<0>, ir<%iv>
+; CHECK-NEXT: EMIT vp<[[VP14:%[0-9]+]]> = add vp<[[VP13]]>, vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<[[VP15:%[0-9]+]]> = icmp eq vp<[[VP14]]>, ir<20>
+; CHECK-NEXT: EMIT branch-on-cond vp<[[VP15]]>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<exit>:
-; CHECK-NEXT: IR %data.lcssa = phi i16 [ %data, %for.inc ], [ %data, %for.body ] (extra operand: vp<[[VP13]]> from middle.block)
+; CHECK-NEXT: IR %data.lcssa = phi i16 [ %data, %for.inc ], [ %data, %for.body ] (extra operand: vp<[[VP12]]> from middle.block)
; CHECK-NEXT: No successors
; CHECK-EMPTY:
; CHECK-NEXT: scalar.ph:
-; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP15]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
+; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP14]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
; CHECK-NEXT: Successor(s): ir-bb<for.body>
; CHECK-EMPTY:
; CHECK-NEXT: ir-bb<for.body>:
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/first-order-recurrence-chains-vplan.ll b/llvm/test/Transforms/LoopVectorize/VPlan/first-order-recurrence-chains-vplan.ll
index 1993a275228f7..906c481a9c0e3 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/first-order-recurrence-chains-vplan.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/first-order-recurrence-chains-vplan.ll
@@ -24,13 +24,12 @@ define void @test_chained_first_order_recurrences_1(ptr %ptr) {
; CHECK-NEXT: FIRST-ORDER-RECURRENCE-PHI ir<%for.2> = phi ir<33>, vp<[[VP6:%[0-9]+]]>
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep.ptr> = getelementptr inbounds ir<%ptr>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>, ir<1>
; CHECK-NEXT: WIDEN ir<%for.1.next> = load vp<[[VP5]]>
; CHECK-NEXT: EMIT vp<[[VP6]]> = first-order splice ir<%for.1>, ir<%for.1.next>
; CHECK-NEXT: EMIT vp<[[VP7:%[0-9]+]]> = first-order splice ir<%for.2>, vp<[[VP6]]>
; CHECK-NEXT: WIDEN ir<%add> = add vp<[[VP6]]>, vp<[[VP7]]>
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>
-; CHECK-NEXT: WIDEN store vp<[[VP8]]>, ir<%add>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%add>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -38,10 +37,10 @@ define void @test_chained_first_order_recurrences_1(ptr %ptr) {
; CHECK-NEXT: Successor(s): middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = extract-last-part ir<%for.1.next>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP10]]>
-; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP11]]>
+; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = extract-last-part ir<%for.1.next>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP9]]>
+; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP10]]>
; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<1000>, vp<[[VP2]]>
; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
@@ -110,15 +109,14 @@ define void @test_chained_first_order_recurrences_3(ptr %ptr) {
; CHECK-NEXT: FIRST-ORDER-RECURRENCE-PHI ir<%for.3> = phi ir<33>, vp<[[VP7:%[0-9]+]]>
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep.ptr> = getelementptr inbounds ir<%ptr>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>, ir<1>
; CHECK-NEXT: WIDEN ir<%for.1.next> = load vp<[[VP5]]>
; CHECK-NEXT: EMIT vp<[[VP6]]> = first-order splice ir<%for.1>, ir<%for.1.next>
; CHECK-NEXT: EMIT vp<[[VP7]]> = first-order splice ir<%for.2>, vp<[[VP6]]>
; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = first-order splice ir<%for.3>, vp<[[VP7]]>
; CHECK-NEXT: WIDEN ir<%add.1> = add vp<[[VP6]]>, vp<[[VP7]]>
; CHECK-NEXT: WIDEN ir<%add.2> = add ir<%add.1>, vp<[[VP8]]>
-; CHECK-NEXT: vp<[[VP9:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>
-; CHECK-NEXT: WIDEN store vp<[[VP9]]>, ir<%add.2>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%add.2>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -126,12 +124,12 @@ define void @test_chained_first_order_recurrences_3(ptr %ptr) {
; CHECK-NEXT: Successor(s): middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part ir<%for.1.next>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP11]]>
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP12]]>
-; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = extract-last-part vp<[[VP7]]>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract>.2 = extract-last-lane vp<[[VP13]]>
+; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = extract-last-part ir<%for.1.next>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP10]]>
+; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP11]]>
+; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-last-part vp<[[VP7]]>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract>.2 = extract-last-lane vp<[[VP12]]>
; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<1000>, vp<[[VP2]]>
; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
@@ -213,7 +211,7 @@ define i32 @test_chained_first_order_recurrences_4(ptr %base, i64 %x) {
; CHECK-NEXT: WIDEN-CAST ir<%for.x.prev> = trunc vp<[[VP6]]> to i32
; CHECK-NEXT: EMIT vp<[[VP7:%[0-9]+]]> = first-order splice ir<%for.y>, ir<%for.x.prev>
; CHECK-NEXT: WIDEN-CAST ir<%for.y.i64> = sext vp<[[VP7]]> to i64
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer ir<%gep>
+; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer ir<%gep>, ir<1>
; CHECK-NEXT: WIDEN store vp<[[VP8]]>, ir<%for.y.i64>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP4]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
@@ -295,15 +293,14 @@ define i32 @test_chained_first_order_recurrences_5_hoist_to_load(ptr %base) {
; CHECK-NEXT: FIRST-ORDER-RECURRENCE-PHI ir<%for.y> = phi ir<0>, ir<%for.x.prev>
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep> = getelementptr ir<%base>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%gep>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%gep>, ir<1>
; CHECK-NEXT: WIDEN ir<%l> = load vp<[[VP5]]>
; CHECK-NEXT: EMIT vp<[[VP6]]> = shl ir<%l>, ir<1>
; CHECK-NEXT: EMIT vp<[[VP7:%[0-9]+]]> = first-order splice ir<%for.x>, vp<[[VP6]]>
; CHECK-NEXT: WIDEN-CAST ir<%for.x.prev> = trunc vp<[[VP7]]> to i32
; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = first-order splice ir<%for.y>, ir<%for.x.prev>
; CHECK-NEXT: WIDEN-CAST ir<%for.y.i64> = sext vp<[[VP8]]> to i64
-; CHECK-NEXT: vp<[[VP9:%[0-9]+]]> = vector-pointer ir<%gep>
-; CHECK-NEXT: WIDEN store vp<[[VP9]]>, ir<%for.y.i64>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%for.y.i64>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -311,10 +308,10 @@ define i32 @test_chained_first_order_recurrences_5_hoist_to_load(ptr %base) {
; CHECK-NEXT: Successor(s): middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP11]]>
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = extract-last-part ir<%for.x.prev>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP12]]>
+; CHECK-NEXT: EMIT vp<[[VP10:%[0-9]+]]> = extract-last-part vp<[[VP6]]>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP10]]>
+; CHECK-NEXT: EMIT vp<[[VP11:%[0-9]+]]> = extract-last-part ir<%for.x.prev>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract>.1 = extract-last-lane vp<[[VP11]]>
; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<4098>, vp<[[VP2]]>
; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
; CHECK-NEXT: Successor(s): ir-bb<ret>, scalar.ph
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/phi-with-fastflags-vplan.ll b/llvm/test/Transforms/LoopVectorize/VPlan/phi-with-fastflags-vplan.ll
index 8e3885cc28617..e89a3640783c9 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/phi-with-fastflags-vplan.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/phi-with-fastflags-vplan.ll
@@ -2,7 +2,7 @@
; RUN: opt -p loop-vectorize -force-vector-width=4 -vplan-print-after=printOptimizedVPlan -disable-output -S %s 2>&1 | FileCheck %s
define void @f(ptr noalias %p, i1 %c) {
-; CHECK-LABEL: 'f'
+; CHECK-LABEL: VPlan for loop in 'f'
; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
@@ -21,11 +21,10 @@ define void @f(ptr noalias %p, i1 %c) {
; CHECK-NEXT: vector.body:
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep> = getelementptr ir<%p>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%gep>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%gep>, ir<1>
; CHECK-NEXT: WIDEN ir<%x> = load vp<[[VP5]]>
; CHECK-NEXT: BLEND ir<%phi> = fast ir<%x> ir<0.000000e+00>/ir<%c>
-; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = vector-pointer ir<%gep>
-; CHECK-NEXT: WIDEN store vp<[[VP6]]>, ir<%phi>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%phi>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/uncountable-early-exit-vplan.ll b/llvm/test/Transforms/LoopVectorize/VPlan/uncountable-early-exit-vplan.ll
index 0c203d61b2357..7cab38e4a2b8f 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/uncountable-early-exit-vplan.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/uncountable-early-exit-vplan.ll
@@ -4,7 +4,7 @@
declare void @init(ptr)
define i64 @multi_exiting_to_different_exits_live_in_exit_values() {
-; CHECK-LABEL: 'multi_exiting_to_different_exits_live_in_exit_values'
+; CHECK-LABEL: VPlan for loop in 'multi_exiting_to_different_exits_live_in_exit_values'
; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
@@ -25,7 +25,7 @@ define i64 @multi_exiting_to_different_exits_live_in_exit_values() {
; CHECK-NEXT: vector.body:
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep.src> = getelementptr inbounds ir<%src>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>, ir<1>
; CHECK-NEXT: WIDEN ir<%l> = load vp<[[VP5]]>
; CHECK-NEXT: WIDEN ir<%c.1> = icmp eq ir<%l>, ir<10>
; CHECK-NEXT: EMIT vp<[[VP6:%[0-9]+]]> = any-of ir<%c.1>
@@ -91,7 +91,7 @@ e2:
}
define i64 @multi_exiting_to_same_exit_live_in_exit_values() {
-; CHECK-LABEL: 'multi_exiting_to_same_exit_live_in_exit_values'
+; CHECK-LABEL: VPlan for loop in 'multi_exiting_to_same_exit_live_in_exit_values'
; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
@@ -112,7 +112,7 @@ define i64 @multi_exiting_to_same_exit_live_in_exit_values() {
; CHECK-NEXT: vector.body:
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep.src> = getelementptr inbounds ir<%src>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>, ir<1>
; CHECK-NEXT: WIDEN ir<%l> = load vp<[[VP5]]>
; CHECK-NEXT: WIDEN ir<%c.1> = icmp eq ir<%l>, ir<10>
; CHECK-NEXT: EMIT vp<[[VP6:%[0-9]+]]> = any-of ir<%c.1>
@@ -171,7 +171,7 @@ exit:
}
define i64 @multi_exiting_to_same_exit_live_in_exit_values_2() {
-; CHECK-LABEL: 'multi_exiting_to_same_exit_live_in_exit_values_2'
+; CHECK-LABEL: VPlan for loop in 'multi_exiting_to_same_exit_live_in_exit_values_2'
; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
@@ -192,7 +192,7 @@ define i64 @multi_exiting_to_same_exit_live_in_exit_values_2() {
; CHECK-NEXT: vector.body:
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep.src> = getelementptr inbounds ir<%src>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.src>, ir<1>
; CHECK-NEXT: WIDEN ir<%l> = load vp<[[VP5]]>
; CHECK-NEXT: WIDEN ir<%c.1> = icmp eq ir<%l>, ir<10>
; CHECK-NEXT: EMIT vp<[[VP6:%[0-9]+]]> = any-of ir<%c.1>
@@ -254,66 +254,78 @@ exit:
}
define i64 @two_early_exits_same_exit_with_constant_live_outs() {
-; CHECK-LABEL: 'two_early_exits_same_exit_with_constant_live_outs'
-; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
-; CHECK-NEXT: Live-in vp<[[VF:%.+]]> = VF
-; CHECK-NEXT: Live-in vp<[[VFxUF:%.+]]> = VF * UF
-; CHECK-NEXT: Live-in vp<[[VTC:%.+]]> = vector-trip-count
-; CHECK-NEXT: Live-in ir<67> = original trip-count
-; CHECK-EMPTY:
-; CHECK-NEXT: ir-bb<entry>:
-; CHECK-NEXT: IR %A = alloca [1024 x i8], align 1
-; CHECK-NEXT: IR %B = alloca [1024 x i8], align 1
-; CHECK-NEXT: IR call void @init(ptr %A, i64 1024)
-; CHECK-NEXT: IR call void @init(ptr %B, i64 1024)
-; CHECK-NEXT: Successor(s): scalar.ph, vector.ph
-; CHECK-EMPTY:
-; CHECK-NEXT: vector.ph:
-; CHECK-NEXT: Successor(s): vector loop
-; CHECK-EMPTY:
-; CHECK-NEXT: <x1> vector loop: {
-; CHECK-NEXT: vp<[[CAN_IV:%.+]]> = CANONICAL-IV
-; CHECK-EMPTY:
-; CHECK-NEXT: vector.body:
-; CHECK-NEXT: vp<[[SCALAR_STEPS:%.+]]> = SCALAR-STEPS vp<[[CAN_IV]]>, ir<1>, vp<[[VF]]>
-; CHECK-NEXT: CLONE ir<%gep.A> = getelementptr inbounds ir<%A>, vp<[[SCALAR_STEPS]]>
-; CHECK-NEXT: vp<[[PTRA:%.+]]> = vector-pointer inbounds ir<%gep.A>
-; CHECK-NEXT: WIDEN ir<%ld.A> = load vp<[[PTRA]]>
-; CHECK-NEXT: WIDEN ir<%cmp1> = icmp eq ir<%ld.A>, ir<42>
-; CHECK-NEXT: CLONE ir<%gep.B> = getelementptr inbounds ir<%B>, vp<[[SCALAR_STEPS]]>
-; CHECK-NEXT: vp<[[PTRB:%.+]]> = vector-pointer inbounds ir<%gep.B>
-; CHECK-NEXT: WIDEN ir<%ld.B> = load vp<[[PTRB]]>
-; CHECK-NEXT: WIDEN ir<%cmp2> = icmp eq ir<%ld.A>, ir<%ld.B>
-; CHECK-NEXT: EMIT vp<[[OR:%.+]]> = logical-or ir<%cmp1>, ir<%cmp2>
-; CHECK-NEXT: EMIT vp<[[ANY_OF:%.+]]> = any-of vp<[[OR]]>
-; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[CAN_IV]]>, vp<[[VFxUF]]>
-; CHECK-NEXT: EMIT vp<[[CMP:%.+]]> = icmp eq vp<%index.next>, vp<[[VTC]]>
-; CHECK-NEXT: EMIT branch-on-two-conds vp<[[ANY_OF]]>, vp<[[CMP]]>
-; CHECK-NEXT: No successors
-; CHECK-NEXT: }
-; CHECK-NEXT: Successor(s): vector.early.exit.check, middle.block
-; CHECK-EMPTY:
-; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<67>, vp<[[VTC]]>
-; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
-; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
-; CHECK-EMPTY:
-; CHECK-NEXT: vector.early.exit.check:
-; CHECK-NEXT: EMIT vp<%first.active.lane> = first-active-lane vp<[[OR]]>
-; CHECK-NEXT: EMIT vp<%exit.cond.at.lane> = extract-lane vp<%first.active.lane>, ir<%cmp1>
-; CHECK-NEXT: EMIT branch-on-cond vp<%exit.cond.at.lane>
-; CHECK-NEXT: Successor(s): vector.early.exit.0, vector.early.exit.1
-; CHECK-EMPTY:
-; CHECK-NEXT: vector.early.exit.1:
-; CHECK-NEXT: Successor(s): ir-bb<exit>
-; CHECK-EMPTY:
-; CHECK-NEXT: vector.early.exit.0:
-; CHECK-NEXT: EMIT vp<[[FIRST_ACTIVE:%.+]]> = first-active-lane vp<[[OR]]>
-; CHECK-NEXT: EMIT vp<[[FINAL_IV:%.+]]> = add vp<[[CAN_IV]]>, vp<[[FIRST_ACTIVE]]>
-; CHECK-NEXT: Successor(s): ir-bb<exit>
-; CHECK-EMPTY:
-; CHECK-NEXT: ir-bb<exit>:
-; CHECK-NEXT: IR %retval = phi i64 [ %iv, %loop.header ], [ 100, %early.exit.0 ], [ 43, %loop.latch ] (extra operands: ir<43> from middle.block, vp<[[FINAL_IV]]> from vector.early.exit.0, ir<100> from vector.early.exit.1)
+; CHECK-LABEL: VPlan for loop in 'two_early_exits_same_exit_with_constant_live_outs'
+; CHECK: VPlan 'Initial VPlan for VF={4},UF>=1' {
+; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
+; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
+; CHECK-NEXT: Live-in vp<[[VP2:%[0-9]+]]> = vector-trip-count
+; CHECK-NEXT: Live-in ir<67> = original trip-count
+; CHECK-EMPTY:
+; CHECK-NEXT: ir-bb<entry>:
+; CHECK-NEXT: IR %A = alloca [1024 x i8], align 1
+; CHECK-NEXT: IR %B = alloca [1024 x i8], align 1
+; CHECK-NEXT: IR call void @init(ptr %A, i64 1024)
+; CHECK-NEXT: IR call void @init(ptr %B, i64 1024)
+; CHECK-NEXT: Successor(s): scalar.ph, vector.ph
+; CHECK-EMPTY:
+; CHECK-NEXT: vector.ph:
+; CHECK-NEXT: Successor(s): vector loop
+; CHECK-EMPTY:
+; CHECK-NEXT: <x1> vector loop: {
+; CHECK-NEXT: vp<[[VP3:%[0-9]+]]> = CANONICAL-IV
+; CHECK-EMPTY:
+; CHECK-NEXT: vector.body:
+; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
+; CHECK-NEXT: CLONE ir<%gep.A> = getelementptr inbounds ir<%A>, vp<[[VP4]]>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep.A>, ir<1>
+; CHECK-NEXT: WIDEN ir<%ld.A> = load vp<[[VP5]]>
+; CHECK-NEXT: WIDEN ir<%cmp1> = icmp eq ir<%ld.A>, ir<42>
+; CHECK-NEXT: CLONE ir<%gep.B> = getelementptr inbounds ir<%B>, vp<[[VP4]]>
+; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = vector-pointer inbounds ir<%gep.B>, ir<1>
+; CHECK-NEXT: WIDEN ir<%ld.B> = load vp<[[VP6]]>
+; CHECK-NEXT: WIDEN ir<%cmp2> = icmp eq ir<%ld.A>, ir<%ld.B>
+; CHECK-NEXT: EMIT vp<[[VP7:%[0-9]+]]> = logical-or ir<%cmp1>, ir<%cmp2>
+; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = any-of vp<[[VP7]]>
+; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
+; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = icmp eq vp<%index.next>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT branch-on-two-conds vp<[[VP8]]>, vp<[[VP9]]>
+; CHECK-NEXT: No successors
+; CHECK-NEXT: }
+; CHECK-NEXT: Successor(s): vector.early.exit.check, middle.block
+; CHECK-EMPTY:
+; CHECK-NEXT: middle.block:
+; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<67>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
+; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
+; CHECK-EMPTY:
+; CHECK-NEXT: vector.early.exit.check:
+; CHECK-NEXT: EMIT vp<%first.active.lane> = first-active-lane vp<[[VP7]]>
+; CHECK-NEXT: EMIT vp<%exit.cond.at.lane> = extract-lane vp<%first.active.lane>, ir<%cmp1>
+; CHECK-NEXT: EMIT branch-on-cond vp<%exit.cond.at.lane>
+; CHECK-NEXT: Successor(s): vector.early.exit.0, vector.early.exit.1
+; CHECK-EMPTY:
+; CHECK-NEXT: vector.early.exit.1:
+; CHECK-NEXT: Successor(s): ir-bb<exit>
+; CHECK-EMPTY:
+; CHECK-NEXT: vector.early.exit.0:
+; CHECK-NEXT: EMIT vp<[[VP13:%[0-9]+]]> = add vp<[[VP3]]>, vp<%first.active.lane>
+; CHECK-NEXT: Successor(s): ir-bb<exit>
+; CHECK-EMPTY:
+; CHECK-NEXT: ir-bb<exit>:
+; CHECK-NEXT: IR %retval = phi i64 [ %iv, %loop.header ], [ 100, %early.exit.0 ], [ 43, %loop.latch ] (extra operands: ir<43> from middle.block, vp<[[VP13]]> from vector.early.exit.0, ir<100> from vector.early.exit.1)
+; CHECK-NEXT: No successors
+; CHECK-EMPTY:
+; CHECK-NEXT: scalar.ph:
+; CHECK-NEXT: EMIT-SCALAR vp<%bc.resume.val> = phi [ vp<[[VP2]]>, middle.block ], [ ir<0>, ir-bb<entry> ]
+; CHECK-NEXT: Successor(s): ir-bb<loop.header>
+; CHECK-EMPTY:
+; CHECK-NEXT: ir-bb<loop.header>:
+; CHECK-NEXT: IR %iv = phi i64 [ 0, %entry ], [ %iv.next, %loop.latch ] (extra operand: vp<%bc.resume.val> from scalar.ph)
+; CHECK-NEXT: IR %gep.A = getelementptr inbounds i8, ptr %A, i64 %iv
+; CHECK-NEXT: IR %ld.A = load i8, ptr %gep.A, align 1
+; CHECK-NEXT: IR %cmp1 = icmp eq i8 %ld.A, 42
+; CHECK-NEXT: No successors
+; CHECK-NEXT: }
;
entry:
%A = alloca [1024 x i8]
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-iv-transforms.ll b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-iv-transforms.ll
index c51a8b5584280..412e0da781e9d 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-iv-transforms.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-iv-transforms.ll
@@ -22,7 +22,7 @@ define void @iv_no_binary_op_in_descriptor(i1 %c, ptr %dst) {
; CHECK-NEXT: ir<%iv> = WIDEN-INDUCTION ir<0>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%gep> = getelementptr inbounds ir<%dst>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%gep>, ir<1>
; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%iv>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
@@ -92,11 +92,10 @@ define void @iv_expand(ptr %p, i64 %n) {
; CHECK-NEXT: ir<%iv> = WIDEN-INDUCTION ir<0>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%q> = getelementptr ir<%p>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%q>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer ir<%q>, ir<1>
; CHECK-NEXT: WIDEN ir<%x> = load vp<[[VP5]]>
; CHECK-NEXT: WIDEN ir<%y> = add ir<%x>, ir<%iv>
-; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = vector-pointer ir<%q>
-; CHECK-NEXT: WIDEN store vp<[[VP6]]>, ir<%y>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%y>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -166,7 +165,7 @@ define void @iv_truncated_wrap_flags(ptr %dst, i64 %n) {
; CHECK-NEXT: ir<%iv> = WIDEN-INDUCTION ir<0>, ir<1>, vp<[[VP0]]> (truncated to i16)
; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = SCALAR-STEPS vp<[[VP3]]>, ir<1>, vp<[[VP0]]>
; CHECK-NEXT: CLONE ir<%ptr> = getelementptr inbounds ir<%dst>, vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%ptr>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = vector-pointer inbounds ir<%ptr>, ir<1>
; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%iv>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-print-before-after-all.ll b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-print-before-after-all.ll
index a7271524f0191..68e83e42aa767 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-print-before-after-all.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-print-before-after-all.ll
@@ -58,6 +58,8 @@
; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] createAndOptimizeReplicateRegions
; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] mergeBlocksIntoPredecessors
; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] licm
+; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] cse
+; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] removeDeadRecipes
; CHECK-AFTER: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] VPlanTransforms::optimize
; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] VPlanTransforms::narrowInterleaveGroups
; CHECK: VPlan for loop in 'foo' [[BEFORE_OR_AFTER]] VPlanTransforms::materializeHeaderMask
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing-before-execute.ll b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing-before-execute.ll
index 0af9519877726..62cb6a23621bb 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing-before-execute.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing-before-execute.ll
@@ -31,8 +31,7 @@ define void @test_tc_less_than_16(ptr %A, i64 %N) {
; OPTIMIZE-NEXT: vp<[[VP7:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
; OPTIMIZE-NEXT: WIDEN ir<%l> = load vp<[[VP7]]>
; OPTIMIZE-NEXT: WIDEN ir<%add> = add nsw ir<%l>, ir<10>
-; OPTIMIZE-NEXT: vp<[[VP8:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; OPTIMIZE-NEXT: WIDEN store vp<[[VP8]]>, ir<%add>
+; OPTIMIZE-NEXT: WIDEN store vp<[[VP7]]>, ir<%add>
; OPTIMIZE-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP5]]>, vp<[[VP1]]>
; OPTIMIZE-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; OPTIMIZE-NEXT: No successors
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing.ll b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing.ll
index 2e588784eaf00..b2624514269c8 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-printing.ll
@@ -413,8 +413,7 @@ define void @recipe_debug_loc_location(ptr nocapture %src) !dbg !5 {
; CHECK-EMPTY:
; CHECK-NEXT: if.then.0:
; CHECK-NEXT: BLEND ir<%ysd.0> = ir<%psd> vp<%9>/vp<[[VP8]]>, !dbg /tmp/s.c:14:3
-; CHECK-NEXT: vp<[[VP10:%[0-9]+]]> = vector-pointer inbounds ir<%isd>, ir<1>, !dbg /tmp/s.c:15:3
-; CHECK-NEXT: WIDEN store vp<[[VP10]]>, ir<%ysd.0>, !dbg /tmp/s.c:15:3
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%ysd.0>, !dbg /tmp/s.c:15:3
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -479,26 +478,26 @@ define void @print_expand_scev(i64 %y, ptr %ptr) {
; CHECK-NEXT: Live-in vp<[[VP0:%[0-9]+]]> = VF
; CHECK-NEXT: Live-in vp<[[VP1:%[0-9]+]]> = VF * UF
; CHECK-NEXT: Live-in vp<[[VP2:%[0-9]+]]> = vector-trip-count
-; CHECK-NEXT: vp<[[VP3:%[0-9]+]]> = original trip-count
+; CHECK-NEXT: vp<[[VP4:%[0-9]+]]> = original trip-count
; CHECK-EMPTY:
-; CHECK-NEXT: ir-bb<entry>:
-; CHECK-NEXT: IR %div = udiv i64 %y, 492802768830814060
-; CHECK-NEXT: IR %inc = add i64 %div, 1
-; CHECK-NEXT: EMIT vp<[[VP4:%.+]]> = EXPAND SCEV (1 + (%y /u 492802768830814060))<nuw><nsw>
-; CHECK-NEXT: EMIT vp<[[VP3]]> = EXPAND SCEV (1 + ((15 + (%y /u 492802768830814060))<nuw><nsw> /u (1 + (%y /u 492802768830814060))<nuw><nsw>))<nuw><nsw>
-; CHECK-NEXT: Successor(s): scalar.ph, vector.ph
+; CHECK-NEXT: ir-bb<entry>:
+; CHECK-NEXT: IR %div = udiv i64 %y, 492802768830814060
+; CHECK-NEXT: IR %inc = add i64 %div, 1
+; CHECK-NEXT: EMIT vp<[[VP3:%[0-9]+]]> = EXPAND SCEV (1 + (%y /u 492802768830814060))<nuw><nsw>
+; CHECK-NEXT: EMIT vp<[[VP4]]> = EXPAND SCEV (1 + ((15 + (%y /u 492802768830814060))<nuw><nsw> /u (1 + (%y /u 492802768830814060))<nuw><nsw>))<nuw><nsw>
+; CHECK-NEXT: Successor(s): scalar.ph, vector.ph
; CHECK-EMPTY:
; CHECK-NEXT: vector.ph:
-; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = DERIVED-IV ir<0> + vp<[[VP2]]> * vp<[[VP4]]>
+; CHECK-NEXT: vp<[[VP5:%[0-9]+]]> = DERIVED-IV ir<0> + vp<[[VP2]]> * vp<[[VP3]]>
; CHECK-NEXT: Successor(s): vector loop
; CHECK-EMPTY:
; CHECK-NEXT: <x1> vector loop: {
; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = CANONICAL-IV
; CHECK-EMPTY:
; CHECK-NEXT: vector.body:
-; CHECK-NEXT: ir<%iv> = WIDEN-INDUCTION ir<0>, vp<[[VP4]]>, vp<[[VP0]]> (truncated to i8)
-; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = DERIVED-IV ir<0> + vp<[[VP6]]> * vp<[[VP4]]>
-; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = SCALAR-STEPS vp<[[VP7]]>, vp<[[VP4]]>, vp<[[VP0]]>
+; CHECK-NEXT: ir<%iv> = WIDEN-INDUCTION ir<0>, vp<[[VP3]]>, vp<[[VP0]]> (truncated to i8)
+; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = DERIVED-IV ir<0> + vp<[[VP6]]> * vp<[[VP3]]>
+; CHECK-NEXT: vp<[[VP8:%[0-9]+]]> = SCALAR-STEPS vp<[[VP7]]>, vp<[[VP3]]>, vp<[[VP0]]>
; CHECK-NEXT: WIDEN ir<%v3> = add nuw ir<%iv>, ir<1>
; CHECK-NEXT: REPLICATE ir<%gep> = getelementptr inbounds ir<%ptr>, vp<[[VP8]]>
; CHECK-NEXT: REPLICATE store ir<%v3>, ir<%gep>
@@ -509,7 +508,7 @@ define void @print_expand_scev(i64 %y, ptr %ptr) {
; CHECK-NEXT: Successor(s): middle.block
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
-; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq vp<[[VP3]]>, vp<[[VP2]]>
+; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq vp<[[VP4]]>, vp<[[VP2]]>
; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
; CHECK-NEXT: Successor(s): ir-bb<loop.exit>, scalar.ph
; CHECK-EMPTY:
@@ -728,8 +727,7 @@ define void @print_exact_flags(i64 %n, ptr noalias %x) {
; CHECK-NEXT: WIDEN ir<%div.1> = udiv exact ir<%lv>, ir<20>
; CHECK-NEXT: WIDEN ir<%div.2> = udiv ir<%lv>, ir<60>
; CHECK-NEXT: WIDEN ir<%add> = add nuw nsw ir<%div.1>, ir<%div.2>
-; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = vector-pointer inbounds ir<%gep.x>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP6]]>, ir<%add>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%add>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -908,8 +906,7 @@ define void @print_disjoint_flags(i64 %n, ptr noalias %x) {
; CHECK-NEXT: WIDEN ir<%or.1> = or disjoint ir<%lv>, ir<1>
; CHECK-NEXT: WIDEN ir<%or.2> = or ir<%lv>, ir<3>
; CHECK-NEXT: WIDEN ir<%add> = add nuw nsw ir<%or.1>, ir<%or.2>
-; CHECK-NEXT: vp<[[VP6:%[0-9]+]]> = vector-pointer inbounds ir<%gep.x>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP6]]>, ir<%add>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%add>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -1057,8 +1054,7 @@ define i16 @print_first_order_recurrence_and_result(ptr %ptr) {
; CHECK-NEXT: WIDEN ir<%for.1.next> = load vp<[[VP5]]>
; CHECK-NEXT: EMIT vp<[[VP6:%[0-9]+]]> = first-order splice ir<%for.1>, ir<%for.1.next>
; CHECK-NEXT: WIDEN ir<%add> = add vp<[[VP6]]>, ir<1>
-; CHECK-NEXT: vp<[[VP7:%[0-9]+]]> = vector-pointer inbounds ir<%gep.ptr>, ir<1>
-; CHECK-NEXT: WIDEN store vp<[[VP7]]>, ir<%add>
+; CHECK-NEXT: WIDEN store vp<[[VP5]]>, ir<%add>
; CHECK-NEXT: EMIT vp<%index.next> = add nuw vp<[[VP3]]>, vp<[[VP1]]>
; CHECK-NEXT: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK-NEXT: No successors
@@ -1067,8 +1063,8 @@ define i16 @print_first_order_recurrence_and_result(ptr %ptr) {
; CHECK-EMPTY:
; CHECK-NEXT: middle.block:
; CHECK-NEXT: EMIT vp<%vector.recur.extract.for.phi> = extract-penultimate-element ir<%for.1.next>
-; CHECK-NEXT: EMIT vp<[[VP9:%[0-9]+]]> = extract-last-part ir<%for.1.next>
-; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP9]]>
+; CHECK-NEXT: EMIT vp<[[VP8:%[0-9]+]]> = extract-last-part ir<%for.1.next>
+; CHECK-NEXT: EMIT vp<%vector.recur.extract> = extract-last-lane vp<[[VP8]]>
; CHECK-NEXT: EMIT vp<%cmp.n> = icmp eq ir<1000>, vp<[[VP2]]>
; CHECK-NEXT: EMIT branch-on-cond vp<%cmp.n>
; CHECK-NEXT: Successor(s): ir-bb<exit>, scalar.ph
diff --git a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-sink-scalars-and-merge.ll b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-sink-scalars-and-merge.ll
index 2e9c7e7880795..aef5ef64a08a8 100644
--- a/llvm/test/Transforms/LoopVectorize/VPlan/vplan-sink-scalars-and-merge.ll
+++ b/llvm/test/Transforms/LoopVectorize/VPlan/vplan-sink-scalars-and-merge.ll
@@ -732,12 +732,11 @@ define void @pred_cfg3(i32 %k, i32 %j) {
; CHECK-EMPTY:
; CHECK-NEXT: then.0.0:
; CHECK-NEXT: BLEND ir<%p> = ir<0> vp<%11>/ir<%c.0>
-; CHECK-NEXT: EMIT vp<[[VP12:%[0-9]+]]> = logical-and vp<[[VP8]]>, ir<%c.0>
; CHECK-NEXT: Successor(s): pred.store
; CHECK-EMPTY:
; CHECK-NEXT: <xVFxUF> pred.store: {
; CHECK-NEXT: pred.store.entry:
-; CHECK-NEXT: BRANCH-ON-MASK vp<[[VP12]]>
+; CHECK-NEXT: BRANCH-ON-MASK vp<[[VP9]]>
; CHECK-NEXT: Successor(s): pred.store.if, pred.store.continue
; CHECK-EMPTY:
; CHECK-NEXT: pred.store.if:
diff --git a/llvm/test/Transforms/LoopVectorize/X86/CostModel/vpinstruction-cost.ll b/llvm/test/Transforms/LoopVectorize/X86/CostModel/vpinstruction-cost.ll
index 421ce3c18d95b..2eb95a1edcfed 100644
--- a/llvm/test/Transforms/LoopVectorize/X86/CostModel/vpinstruction-cost.ll
+++ b/llvm/test/Transforms/LoopVectorize/X86/CostModel/vpinstruction-cost.ll
@@ -206,14 +206,10 @@ define void @test_vpinstruction_switch_cost(ptr %start, ptr %end) {
; CHECK: Cost of 0 for VF 2: EMIT vp<[[VP12:%[0-9]+]]> = or vp<[[VP9]]>, vp<[[VP10]]>
; CHECK: Cost of 0 for VF 2: EMIT vp<[[VP13:%[0-9]+]]> = or vp<[[VP12]]>, vp<[[VP11]]>
; CHECK: Cost of 1 for VF 2: EMIT vp<[[VP14:%[0-9]+]]> = not vp<[[VP13]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP15:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP15]]>, ir<1>, vp<[[VP11]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP16:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP16]]>, ir<0>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP17:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP17]]>, ir<42>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 2: vp<[[VP18:%[0-9]+]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP18]]>, ir<2>, vp<[[VP14]]>
+; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP8]]>, ir<1>, vp<[[VP11]]>
+; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP8]]>, ir<0>, vp<[[VP10]]>
+; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP8]]>, ir<42>, vp<[[VP9]]>
+; CHECK: Cost of 1 for VF 2: WIDEN store vp<[[VP8]]>, ir<2>, vp<[[VP14]]>
; CHECK: Cost of 0 for VF 2: EMIT vp<%index.next> = add nuw vp<[[VP5]]>, vp<[[VP1:%[0-9]+]]>
; CHECK: Cost of 1 for VF 2: EMIT branch-on-count vp<%index.next>, vp<[[VP2:%[0-9]+]]>
; CHECK: Cost of 0 for VF 2: vector loop backedge
@@ -237,14 +233,10 @@ define void @test_vpinstruction_switch_cost(ptr %start, ptr %end) {
; CHECK: Cost of 0 for VF 4: EMIT vp<[[VP12]]> = or vp<[[VP9]]>, vp<[[VP10]]>
; CHECK: Cost of 0 for VF 4: EMIT vp<[[VP13]]> = or vp<[[VP12]]>, vp<[[VP11]]>
; CHECK: Cost of 1 for VF 4: EMIT vp<[[VP14]]> = not vp<[[VP13]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP15]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP15]]>, ir<1>, vp<[[VP11]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP16]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP16]]>, ir<0>, vp<[[VP10]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP17]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP17]]>, ir<42>, vp<[[VP9]]>
-; CHECK: Cost of 0 for VF 4: vp<[[VP18]]> = vector-pointer vp<%next.gep>, ir<1>
-; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP18]]>, ir<2>, vp<[[VP14]]>
+; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP8]]>, ir<1>, vp<[[VP11]]>
+; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP8]]>, ir<0>, vp<[[VP10]]>
+; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP8]]>, ir<42>, vp<[[VP9]]>
+; CHECK: Cost of 1 for VF 4: WIDEN store vp<[[VP8]]>, ir<2>, vp<[[VP14]]>
; CHECK: Cost of 0 for VF 4: EMIT vp<%index.next> = add nuw vp<[[VP5]]>, vp<[[VP1]]>
; CHECK: Cost of 1 for VF 4: EMIT branch-on-count vp<%index.next>, vp<[[VP2]]>
; CHECK: Cost of 0 for VF 4: vector loop backedge
diff --git a/llvm/test/Transforms/LoopVectorize/cse-replicate-regions.ll b/llvm/test/Transforms/LoopVectorize/cse-replicate-regions.ll
index 5d52a7cdc3d31..5ddde2d81dd5b 100644
--- a/llvm/test/Transforms/LoopVectorize/cse-replicate-regions.ll
+++ b/llvm/test/Transforms/LoopVectorize/cse-replicate-regions.ll
@@ -24,15 +24,12 @@ define void @multiple_vppredinstphi_with_same_predicate(ptr %A, i32 %d) {
; CHECK-NEXT: [[TMP6:%.*]] = extractelement <2 x i1> [[TMP1]], i64 1
; CHECK-NEXT: br i1 [[TMP6]], label %[[PRED_SDIV_IF1:.*]], label %[[PRED_SDIV_CONTINUE2]]
; CHECK: [[PRED_SDIV_IF1]]:
-; CHECK-NEXT: [[TMP7:%.*]] = sdiv i32 -10, [[D]]
-; CHECK-NEXT: [[TMP8:%.*]] = insertelement <2 x i32> [[TMP5]], i32 [[TMP7]], i64 1
; CHECK-NEXT: [[TMP9:%.*]] = sdiv i32 -10, [[D]]
; CHECK-NEXT: [[TMP13:%.*]] = insertelement <2 x i32> [[TMP5]], i32 [[TMP9]], i64 1
; CHECK-NEXT: br label %[[PRED_SDIV_CONTINUE2]]
; CHECK: [[PRED_SDIV_CONTINUE2]]:
-; CHECK-NEXT: [[TMP14:%.*]] = phi <2 x i32> [ [[TMP5]], %[[PRED_SDIV_CONTINUE]] ], [ [[TMP8]], %[[PRED_SDIV_IF1]] ]
; CHECK-NEXT: [[TMP12:%.*]] = phi <2 x i32> [ [[TMP5]], %[[PRED_SDIV_CONTINUE]] ], [ [[TMP13]], %[[PRED_SDIV_IF1]] ]
-; CHECK-NEXT: [[TMP10:%.*]] = add <2 x i32> [[TMP12]], [[TMP14]]
+; CHECK-NEXT: [[TMP10:%.*]] = add <2 x i32> [[TMP12]], [[TMP12]]
; CHECK-NEXT: [[PREDPHI:%.*]] = select <2 x i1> [[TMP1]], <2 x i32> [[TMP10]], <2 x i32> zeroinitializer
; CHECK-NEXT: store <2 x i32> [[PREDPHI]], ptr [[TMP0]], align 4
; CHECK-NEXT: [[INDEX_NEXT]] = add nuw i32 [[INDEX]], 2
diff --git a/llvm/test/Transforms/LoopVectorize/narrow-to-single-scalar.ll b/llvm/test/Transforms/LoopVectorize/narrow-to-single-scalar.ll
index c6bb9a47d32b5..91b607c3abdfc 100644
--- a/llvm/test/Transforms/LoopVectorize/narrow-to-single-scalar.ll
+++ b/llvm/test/Transforms/LoopVectorize/narrow-to-single-scalar.ll
@@ -357,10 +357,10 @@ define void @narrow_scatter_with_uniform_addr_to_scalar_unroll(ptr noalias %src,
; VF2IC2-NEXT: [[TMP13:%.*]] = load i16, ptr [[TMP10]], align 4
; VF2IC2-NEXT: [[BROADCAST_SPLATINSERT1:%.*]] = insertelement <2 x i16> poison, i16 [[TMP13]], i64 0
; VF2IC2-NEXT: [[BROADCAST_SPLAT1:%.*]] = shufflevector <2 x i16> [[BROADCAST_SPLATINSERT1]], <2 x i16> poison, <2 x i32> zeroinitializer
+; VF2IC2-NEXT: [[TMP11:%.*]] = trunc <2 x i16> [[BROADCAST_SPLAT]] to <2 x i8>
; VF2IC2-NEXT: [[TMP6:%.*]] = trunc <2 x i16> [[BROADCAST_SPLAT1]] to <2 x i8>
; VF2IC2-NEXT: [[TMP7:%.*]] = extractelement <2 x i8> [[TMP6]], i64 1
; VF2IC2-NEXT: store i8 [[TMP7]], ptr [[DST2]], align 4
-; VF2IC2-NEXT: [[TMP11:%.*]] = trunc <2 x i16> [[BROADCAST_SPLAT]] to <2 x i8>
; VF2IC2-NEXT: [[TMP12:%.*]] = extractelement <2 x i8> [[TMP11]], i64 1
; VF2IC2-NEXT: store i8 [[TMP12]], ptr [[TMP3]], align 4
; VF2IC2-NEXT: store i8 [[TMP7]], ptr [[TMP4]], align 4
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