blob: a9e7e57463cbc297fafde4b40fa7ea92ffa7f4ef [file] [log] [blame]
Sanjay Pateleb504762016-07-16 18:08:22 +00001; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
2; RUN: opt < %s -instcombine -S | FileCheck %s
3
4; Tests for Integer BitWidth <= 64 && BitWidth % 8 != 0.
5
6;; Flip sign bit then add INT_MIN -> nop.
7define i1 @test1(i1 %x) {
8; CHECK-LABEL: @test1(
9; CHECK-NEXT: ret i1 %x
10;
11 %tmp.2 = xor i1 %x, 1
12 %tmp.4 = add i1 %tmp.2, 1
13 ret i1 %tmp.4
14}
15
16;; Flip sign bit then add INT_MIN -> nop.
17define i47 @test2(i47 %x) {
18; CHECK-LABEL: @test2(
19; CHECK-NEXT: ret i47 %x
20;
21 %tmp.2 = xor i47 %x, 70368744177664
22 %tmp.4 = add i47 %tmp.2, 70368744177664
23 ret i47 %tmp.4
24}
25
26;; Flip sign bit then add INT_MIN -> nop.
27define i15 @test3(i15 %x) {
28; CHECK-LABEL: @test3(
29; CHECK-NEXT: ret i15 %x
30;
31 %tmp.2 = xor i15 %x, 16384
32 %tmp.4 = add i15 %tmp.2, 16384
33 ret i15 %tmp.4
34}
35
36;; (x & 0b1111..0) + 1 -> x | 1
37define i49 @test4(i49 %x) {
38; CHECK-LABEL: @test4(
39; CHECK-NEXT: [[TMP_4:%.*]] = or i49 %x, 1
40; CHECK-NEXT: ret i49 [[TMP_4]]
41;
42 %tmp.2 = and i49 %x, 562949953421310
43 %tmp.4 = add i49 %tmp.2, 1
44 ret i49 %tmp.4
45}
46
47; Tests for Integer BitWidth > 64 && BitWidth <= 1024.
48
49;; Flip sign bit then add INT_MIN -> nop.
50define i111 @test5(i111 %x) {
51; CHECK-LABEL: @test5(
52; CHECK-NEXT: ret i111 %x
53;
54 %tmp.2 = shl i111 1, 110
55 %tmp.4 = xor i111 %x, %tmp.2
56 %tmp.6 = add i111 %tmp.4, %tmp.2
57 ret i111 %tmp.6
58}
59
60;; Flip sign bit then add INT_MIN -> nop.
61define i65 @test6(i65 %x) {
62; CHECK-LABEL: @test6(
63; CHECK-NEXT: ret i65 %x
64;
65 %tmp.0 = shl i65 1, 64
66 %tmp.2 = xor i65 %x, %tmp.0
67 %tmp.4 = add i65 %tmp.2, %tmp.0
68 ret i65 %tmp.4
69}
70
71;; Flip sign bit then add INT_MIN -> nop.
72define i1024 @test7(i1024 %x) {
73; CHECK-LABEL: @test7(
74; CHECK-NEXT: ret i1024 %x
75;
76 %tmp.0 = shl i1024 1, 1023
77 %tmp.2 = xor i1024 %x, %tmp.0
78 %tmp.4 = add i1024 %tmp.2, %tmp.0
79 ret i1024 %tmp.4
80}
81
82;; If we have add(xor(X, 0xF..F80..), 0x80..), it's an xor.
83define i128 @test8(i128 %x) {
84; CHECK-LABEL: @test8(
85; CHECK-NEXT: [[TMP_4:%.*]] = xor i128 %x, 170141183460469231731687303715884105600
86; CHECK-NEXT: ret i128 [[TMP_4]]
87;
88 %tmp.5 = shl i128 1, 127
89 %tmp.1 = ashr i128 %tmp.5, 120
90 %tmp.2 = xor i128 %x, %tmp.1
91 %tmp.4 = add i128 %tmp.2, %tmp.5
92 ret i128 %tmp.4
93}
94
95;; (x & 254)+1 -> (x & 254)|1
96define i77 @test9(i77 %x) {
97; CHECK-LABEL: @test9(
98; CHECK-NEXT: [[TMP_2:%.*]] = and i77 %x, 562949953421310
99; CHECK-NEXT: [[TMP_4:%.*]] = or i77 [[TMP_2]], 1
100; CHECK-NEXT: ret i77 [[TMP_4]]
101;
102 %tmp.2 = and i77 %x, 562949953421310
103 %tmp.4 = add i77 %tmp.2, 1
104 ret i77 %tmp.4
105}
106