f05aee05da9dfede76a11e2310cdab0826c596d2
[gcc.git] / gcc / testsuite / gcc.target / powerpc / swaps-p8-36.c
1 /* { dg-do compile } */
2 /* { dg-require-effective-target powerpc_p8vector_ok } */
3 /* { dg-options "-mdejagnu-cpu=power8 -O3 " } */
4
5 /* Previous versions of this test required that the assembler does not
6 contain xxpermdi or xxswapd. However, with the more sophisticated
7 code generation used today, it is now possible that xxpermdi (aka
8 xxswapd) show up without being part of a lxvd2x or stxvd2x
9 sequence. */
10
11 #include <altivec.h>
12
13 extern void abort (void);
14
15 vector int x;
16 const vector int y = { 0, 1, 2, 3 };
17 vector int z;
18
19 vector int
20 foo (void)
21 {
22 return y; /* Remove 1 swap and use lvx. */
23 }
24
25 vector int
26 foo1 (void)
27 {
28 x = y; /* Remove 2 redundant swaps here. */
29 return x; /* Remove 1 swap and use lvx. */
30 }
31
32 void __attribute__ ((noinline))
33 fill_local (vector int *vp)
34 {
35 *vp = x; /* Remove 2 redundant swaps here. */
36 }
37
38 /* Test aligned load from local. */
39 vector int
40 foo2 (void)
41 {
42 vector int v;
43
44 /* Need to be clever here because v will normally reside in a
45 register rather than memory. */
46 fill_local (&v);
47 return v; /* Remove 1 swap and use lvx. */
48 }
49
50
51 /* Test aligned load from pointer. */
52 vector int
53 foo3 (vector int *arg)
54 {
55 return *arg; /* Remove 1 swap and use lvx. */
56 }
57
58 /* In this structure, the compiler should insert padding to assure
59 that a_vector is properly aligned. */
60 struct bar {
61 short a_field;
62 vector int a_vector;
63 };
64
65 vector int
66 foo4 (struct bar *bp)
67 {
68 return bp->a_vector; /* Remove 1 swap and use lvx. */
69 }
70
71 /* Test aligned store to global. */
72 void
73 baz (vector int arg)
74 {
75 x = arg; /* Remove 1 swap and use stvx. */
76 }
77
78 void __attribute__ ((noinline))
79 copy_local (vector int *arg)
80 {
81 x = *arg; /* Remove 2 redundant swaps. */
82 }
83
84
85 /* Test aligned store to local. */
86 void
87 baz1 (vector int arg)
88 {
89 vector int v;
90
91 /* Need cleverness, because v will normally reside in a register
92 rather than memory. */
93 v = arg; /* Aligned store to local: remove 1
94 swap and use stvx. */
95 copy_local (&v);
96 }
97
98 /* Test aligned store to pointer. */
99 void
100 baz2 (vector int *arg1, vector int arg2)
101 {
102 /* Assume arg2 resides in register. */
103 *arg1 = arg2; /* Remove 1 swap and use stvx. */
104 }
105
106 void
107 baz3 (struct bar *bp, vector int v)
108 {
109 /* Assume v resides in register. */
110 bp->a_vector = v; /* Remove 1 swap and use stvx. */
111 }
112
113 int
114 main (int argc, int *argv[])
115 {
116 vector int fetched_value = foo ();
117 if (fetched_value[0] != 0 || fetched_value[3] != 3)
118 abort ();
119
120 fetched_value = foo1 ();
121 if (fetched_value[1] != 1 || fetched_value[2] != 2)
122 abort ();
123
124 fetched_value = foo2 ();
125 if (fetched_value[2] != 2 || fetched_value[1] != 1)
126 abort ();
127
128 fetched_value = foo3 (&x);
129 if (fetched_value[3] != 3 || fetched_value[0] != 0)
130 abort ();
131
132 struct bar a_struct;
133 a_struct.a_vector = x; /* Remove 2 redundant swaps. */
134 fetched_value = foo4 (&a_struct);
135 if (fetched_value[2] != 2 || fetched_value[3] != 3)
136 abort ();
137
138 z[0] = 7;
139 z[1] = 6;
140 z[2] = 5;
141 z[3] = 4;
142
143 baz (z);
144 if (x[0] != 7 || x[3] != 4)
145 abort ();
146
147 vector int source = { 8, 7, 6, 5 };
148
149 baz1 (source);
150 if (x[3] != 6 || x[2] != 7)
151 abort ();
152
153 vector int dest;
154 baz2 (&dest, source);
155 if (dest[0] != 8 || dest[1] != 7)
156 abort ();
157
158 baz3 (&a_struct, source);
159 if (a_struct.a_vector[3] != 5 || a_struct.a_vector[0] != 8)
160 abort ();
161
162 return 0;
163 }