xref: /llvm-project/llvm/test/Transforms/IROutliner/outlining-different-output-blocks.ll (revision 9dd9575c55c74810675d5de40f56b37dd38fe3c3)
1; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
2; RUN: opt -S -passes=iroutliner -ir-outlining-no-cost < %s | FileCheck %s
3
4; These functions are constructed slightly differently so that they require
5; different output blocks for the values used outside of the region. We are
6; checking that two output blocks are created with different values.
7
8define void @outline_outputs1() #0 {
9; CHECK-LABEL: @outline_outputs1(
10; CHECK-NEXT:  entry:
11; CHECK-NEXT:    [[DOTLOC:%.*]] = alloca i32, align 4
12; CHECK-NEXT:    [[ADD_LOC:%.*]] = alloca i32, align 4
13; CHECK-NEXT:    [[A:%.*]] = alloca i32, align 4
14; CHECK-NEXT:    [[B:%.*]] = alloca i32, align 4
15; CHECK-NEXT:    [[OUTPUT:%.*]] = alloca i32, align 4
16; CHECK-NEXT:    [[RESULT:%.*]] = alloca i32, align 4
17; CHECK-NEXT:    [[LT_CAST:%.*]] = bitcast i32* [[ADD_LOC]] to i8*
18; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST]])
19; CHECK-NEXT:    [[LT_CAST1:%.*]] = bitcast i32* [[DOTLOC]] to i8*
20; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST1]])
21; CHECK-NEXT:    call void @outlined_ir_func_0(i32* [[A]], i32* [[B]], i32* [[OUTPUT]], i32* [[ADD_LOC]], i32* [[DOTLOC]], i32 0)
22; CHECK-NEXT:    [[ADD_RELOAD:%.*]] = load i32, i32* [[ADD_LOC]], align 4
23; CHECK-NEXT:    [[DOTRELOAD:%.*]] = load i32, i32* [[DOTLOC]], align 4
24; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST]])
25; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST1]])
26; CHECK-NEXT:    [[TMP0:%.*]] = load i32, i32* [[OUTPUT]], align 4
27; CHECK-NEXT:    call void @outlined_ir_func_1(i32 [[DOTRELOAD]], i32 [[ADD_RELOAD]], i32* [[RESULT]])
28; CHECK-NEXT:    ret void
29;
30entry:
31  %a = alloca i32, align 4
32  %b = alloca i32, align 4
33  %output = alloca i32, align 4
34  %result = alloca i32, align 4
35  store i32 2, i32* %a, align 4
36  store i32 3, i32* %b, align 4
37  %0 = load i32, i32* %a, align 4
38  %1 = load i32, i32* %b, align 4
39  %add = add i32 %0, %1
40  %sub = sub i32 %0, %1
41  store i32 %add, i32* %output, align 4
42  %2 = load i32, i32* %output, align 4
43  %3 = load i32, i32* %output, align 4
44  %mul = mul i32 %2, %add
45  store i32 %mul, i32* %result, align 4
46  ret void
47}
48
49define void @outline_outputs2() #0 {
50; CHECK-LABEL: @outline_outputs2(
51; CHECK-NEXT:  entry:
52; CHECK-NEXT:    [[DOTLOC:%.*]] = alloca i32, align 4
53; CHECK-NEXT:    [[SUB_LOC:%.*]] = alloca i32, align 4
54; CHECK-NEXT:    [[A:%.*]] = alloca i32, align 4
55; CHECK-NEXT:    [[B:%.*]] = alloca i32, align 4
56; CHECK-NEXT:    [[OUTPUT:%.*]] = alloca i32, align 4
57; CHECK-NEXT:    [[RESULT:%.*]] = alloca i32, align 4
58; CHECK-NEXT:    [[LT_CAST:%.*]] = bitcast i32* [[SUB_LOC]] to i8*
59; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST]])
60; CHECK-NEXT:    [[LT_CAST1:%.*]] = bitcast i32* [[DOTLOC]] to i8*
61; CHECK-NEXT:    call void @llvm.lifetime.start.p0i8(i64 -1, i8* [[LT_CAST1]])
62; CHECK-NEXT:    call void @outlined_ir_func_0(i32* [[A]], i32* [[B]], i32* [[OUTPUT]], i32* [[SUB_LOC]], i32* [[DOTLOC]], i32 1)
63; CHECK-NEXT:    [[SUB_RELOAD:%.*]] = load i32, i32* [[SUB_LOC]], align 4
64; CHECK-NEXT:    [[DOTRELOAD:%.*]] = load i32, i32* [[DOTLOC]], align 4
65; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST]])
66; CHECK-NEXT:    call void @llvm.lifetime.end.p0i8(i64 -1, i8* [[LT_CAST1]])
67; CHECK-NEXT:    call void @outlined_ir_func_1(i32 [[DOTRELOAD]], i32 [[SUB_RELOAD]], i32* [[RESULT]])
68; CHECK-NEXT:    ret void
69;
70entry:
71  %a = alloca i32, align 4
72  %b = alloca i32, align 4
73  %output = alloca i32, align 4
74  %result = alloca i32, align 4
75  store i32 2, i32* %a, align 4
76  store i32 3, i32* %b, align 4
77  %0 = load i32, i32* %a, align 4
78  %1 = load i32, i32* %b, align 4
79  %add = add i32 %0, %1
80  %sub = sub i32 %0, %1
81  store i32 %add, i32* %output, align 4
82  %2 = load i32, i32* %output, align 4
83  %mul = mul i32 %2, %sub
84  store i32 %mul, i32* %result, align 4
85  ret void
86}
87
88; CHECK: define internal void @outlined_ir_func_0(i32* [[ARG0:%.*]], i32* [[ARG1:%.*]], i32* [[ARG2:%.*]], i32* [[ARG3:%.*]], i32* [[ARG4:%.*]], i32 [[ARG5:%.*]]) #1 {
89; CHECK: entry_to_outline:
90; CHECK-NEXT:    store i32 2, i32* [[ARG0]], align 4
91; CHECK-NEXT:    store i32 3, i32* [[ARG1]], align 4
92; CHECK-NEXT:    [[TMP0:%.*]] = load i32, i32* [[ARG0]], align 4
93; CHECK-NEXT:    [[TMP1:%.*]] = load i32, i32* [[ARG1]], align 4
94; CHECK-NEXT:    [[ADD:%.*]] = add i32 [[TMP0]], [[TMP1]]
95; CHECK-NEXT:    [[SUB:%.*]] = sub i32 [[TMP0]], [[TMP1]]
96; CHECK-NEXT:    store i32 [[ADD]], i32* [[ARG2]], align 4
97; CHECK-NEXT:    [[TMP2:%.*]] = load i32, i32* [[ARG2]], align 4
98
99; CHECK: _after_outline.exitStub:
100; CHECK-NEXT:    switch i32 [[ARG5]], label [[BLOCK:%.*]] [
101; CHECK-NEXT:      i32 0, label %[[BLOCK_0:.*]]
102; CHECK-NEXT:      i32 1, label %[[BLOCK_1:.*]]
103
104; CHECK: [[BLOCK_0]]:
105; CHECK-NEXT:    store i32 [[ADD]], i32* [[ARG3]], align 4
106; CHECK-NEXT:    store i32 [[TMP2]], i32* [[ARG4]], align 4
107
108; CHECK: [[BLOCK_1]]:
109; CHECK-NEXT:    store i32 [[SUB]], i32* [[ARG3]], align 4
110; CHECK-NEXT:    store i32 [[TMP2]], i32* [[ARG4]], align 4
111