xref: /llvm-project/llvm/test/Transforms/IROutliner/exit-block-phi-node-value-attribution.ll (revision c79ab1065e89872668b8d43c747ff3e5974b0d96)
1; NOTE: Assertions have been autogenerated by utils/update_test_checks.py UTC_ARGS: --include-generated-funcs
2; RUN: opt -S -verify -iroutliner -ir-outlining-no-cost < %s | FileCheck %s
3
4; Make sure that each outlined region only analyzes on the incoming values in exit
5; block phi nodes that come from the outlined region.  Without this, more incoming
6; values from the phi node would be considered if the incoming value is
7; included in the outlined region. This is particularly likely to happen for
8; constants.
9
10define void @f1() {
11bb1:
12  %0 = add i32 1, 2
13  %1 = add i32 3, 4
14  %2 = add i32 5, 6
15  %3 = add i32 7, 8
16  br label %bb5
17bb2:
18  %4 = mul i32 5, 4
19  br label %bb5
20placeholder:
21  %a = sub i32 5, 4
22  br label %bb5
23bb3:
24  %5 = add i32 1, 2
25  %6 = add i32 3, 4
26  %7 = add i32 5, 6
27  %8 = add i32 7, 8
28  br label %bb5
29bb4:
30  %9 = mul i32 5, 4
31  br label %bb5
32
33placeholder1:
34  %b = add i32 5, 4
35  ret void
36
37bb5:
38  %phinode = phi i32 [5, %placeholder], [5, %bb1], [5, %bb2], [4, %bb3], [4, %bb4]
39  ret void
40}
41; CHECK-LABEL: @f1(
42; CHECK-NEXT:  bb1:
43; CHECK-NEXT:    [[PHINODE_CE_LOC1:%.*]] = alloca i32, align 4
44; CHECK-NEXT:    [[PHINODE_CE_LOC:%.*]] = alloca i32, align 4
45; CHECK-NEXT:    [[LT_CAST:%.*]] = bitcast i32* [[PHINODE_CE_LOC]] to i8*
46; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST]])
47; CHECK-NEXT:    call void @outlined_ir_func_0(i32* [[PHINODE_CE_LOC]], i32 0)
48; CHECK-NEXT:    [[PHINODE_CE_RELOAD:%.*]] = load i32, i32* [[PHINODE_CE_LOC]], align 4
49; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST]])
50; CHECK-NEXT:    br label [[BB5:%.*]]
51; CHECK:       placeholder:
52; CHECK-NEXT:    [[A:%.*]] = sub i32 5, 4
53; CHECK-NEXT:    br label [[BB5]]
54; CHECK:       bb3:
55; CHECK-NEXT:    [[LT_CAST3:%.*]] = bitcast i32* [[PHINODE_CE_LOC1]] to i8*
56; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST3]])
57; CHECK-NEXT:    call void @outlined_ir_func_0(i32* [[PHINODE_CE_LOC1]], i32 1)
58; CHECK-NEXT:    [[PHINODE_CE_RELOAD2:%.*]] = load i32, i32* [[PHINODE_CE_LOC1]], align 4
59; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST3]])
60; CHECK-NEXT:    br label [[BB5]]
61; CHECK:       placeholder1:
62; CHECK-NEXT:    [[B:%.*]] = add i32 5, 4
63; CHECK-NEXT:    ret void
64; CHECK:       bb5:
65; CHECK-NEXT:    [[PHINODE:%.*]] = phi i32 [ 5, [[PLACEHOLDER:%.*]] ], [ [[PHINODE_CE_RELOAD]], [[BB1:%.*]] ], [ [[PHINODE_CE_RELOAD2]], [[BB3:%.*]] ]
66; CHECK-NEXT:    ret void
67;
68;
69; CHECK-LABEL: define internal void @outlined_ir_func_0(
70; CHECK-NEXT:  newFuncRoot:
71; CHECK-NEXT:    br label [[BB1_TO_OUTLINE:%.*]]
72; CHECK:       bb1_to_outline:
73; CHECK-NEXT:    [[TMP2:%.*]] = add i32 1, 2
74; CHECK-NEXT:    [[TMP3:%.*]] = add i32 3, 4
75; CHECK-NEXT:    [[TMP4:%.*]] = add i32 5, 6
76; CHECK-NEXT:    [[TMP5:%.*]] = add i32 7, 8
77; CHECK-NEXT:    br label [[BB5_SPLIT:%.*]]
78; CHECK:       bb2:
79; CHECK-NEXT:    [[TMP6:%.*]] = mul i32 5, 4
80; CHECK-NEXT:    br label [[BB5_SPLIT]]
81; CHECK:       bb5.split:
82; CHECK-NEXT:    [[TMP7:%.*]] = phi i32 [ 4, [[BB1_TO_OUTLINE]] ], [ 4, [[BB2:%.*]] ]
83; CHECK-NEXT:    [[PHINODE_CE:%.*]] = phi i32 [ 5, [[BB1_TO_OUTLINE]] ], [ 5, [[BB2]] ]
84; CHECK-NEXT:    br label [[BB5_EXITSTUB:%.*]]
85; CHECK:       bb5.exitStub:
86; CHECK-NEXT:    switch i32 [[TMP1:%.*]], label [[FINAL_BLOCK_0:%.*]] [
87; CHECK-NEXT:    i32 0, label [[OUTPUT_BLOCK_0_0:%.*]]
88; CHECK-NEXT:    i32 1, label [[OUTPUT_BLOCK_1_0:%.*]]
89; CHECK-NEXT:    ]
90; CHECK:       output_block_0_0:
91; CHECK-NEXT:    store i32 [[PHINODE_CE]], i32* [[TMP0:%.*]], align 4
92; CHECK-NEXT:    br label [[FINAL_BLOCK_0]]
93; CHECK:       output_block_1_0:
94; CHECK-NEXT:    store i32 [[TMP7]], i32* [[TMP0]], align 4
95; CHECK-NEXT:    br label [[FINAL_BLOCK_0]]
96; CHECK:       final_block_0:
97; CHECK-NEXT:    ret void
98;
99