blob: 2609dab422f36d7b03899844db279b000b85f9e1 [file] [log] [blame]
Tom Stellard754f80f2013-04-05 23:31:51 +00001; RUN: llc < %s -march=r600 -mcpu=redwood | FileCheck --check-prefix=EG-CHECK %s
Tom Stellard6aa0d552013-06-14 22:12:24 +00002; RUN: llc < %s -march=r600 -mcpu=cayman | FileCheck --check-prefix=CM-CHECK %s
Tom Stellard754f80f2013-04-05 23:31:51 +00003; RUN: llc < %s -march=r600 -mcpu=verde | FileCheck --check-prefix=SI-CHECK %s
4
Tom Stellardd3ee8c12013-08-16 01:12:06 +00005;===------------------------------------------------------------------------===;
6; Global Address Space
7;===------------------------------------------------------------------------===;
8
9; i8 store
10; EG-CHECK: @store_i8
11; EG-CHECK: MEM_RAT MSKOR T[[RW_GPR:[0-9]]].XW, T{{[0-9]}}.X
12; EG-CHECK: VTX_READ_8 [[VAL:T[0-9]\.X]], [[VAL]]
13; IG 0: Get the byte index
14; EG-CHECK: AND_INT * T{{[0-9]}}.[[BI_CHAN:[XYZW]]], KC0[2].Y, literal.x
15; EG-CHECK-NEXT: 3
16; IG 1: Truncate the value and calculated the shift amount for the mask
17; EG-CHECK: AND_INT T{{[0-9]}}.[[TRUNC_CHAN:[XYZW]]], [[VAL]], literal.x
18; EG-CHECK: LSHL * T{{[0-9]}}.[[SHIFT_CHAN:[XYZW]]], PV.[[BI_CHAN]], literal.y
19; EG-CHECK: 255(3.573311e-43), 3
20; IG 2: Shift the value and the mask
21; EG-CHECK: LSHL T[[RW_GPR]].X, PV.[[TRUNC_CHAN]], PV.[[SHIFT_CHAN]]
22; EG-CHECK: LSHL * T[[RW_GPR]].W, literal.x, PV.[[SHIFT_CHAN]]
23; EG-CHECK-NEXT: 255
24; IG 3: Initialize the Y and Z channels to zero
25; XXX: An optimal scheduler should merge this into one of the prevous IGs.
26; EG-CHECK: MOV T[[RW_GPR]].Y, 0.0
27; EG-CHECK: MOV * T[[RW_GPR]].Z, 0.0
28
29; SI-CHECK: @store_i8
30; SI-CHECK: BUFFER_STORE_BYTE
31
32define void @store_i8(i8 addrspace(1)* %out, i8 %in) {
33entry:
34 store i8 %in, i8 addrspace(1)* %out
35 ret void
36}
37
38; i16 store
39; EG-CHECK: @store_i16
40; EG-CHECK: MEM_RAT MSKOR T[[RW_GPR:[0-9]]].XW, T{{[0-9]}}.X
41; EG-CHECK: VTX_READ_16 [[VAL:T[0-9]\.X]], [[VAL]]
42; IG 0: Get the byte index
43; EG-CHECK: AND_INT * T{{[0-9]}}.[[BI_CHAN:[XYZW]]], KC0[2].Y, literal.x
44; EG-CHECK-NEXT: 3
45; IG 1: Truncate the value and calculated the shift amount for the mask
46; EG-CHECK: AND_INT T{{[0-9]}}.[[TRUNC_CHAN:[XYZW]]], [[VAL]], literal.x
47; EG-CHECK: LSHL * T{{[0-9]}}.[[SHIFT_CHAN:[XYZW]]], PV.[[BI_CHAN]], literal.y
48; EG-CHECK: 65535(9.183409e-41), 3
49; IG 2: Shift the value and the mask
50; EG-CHECK: LSHL T[[RW_GPR]].X, PV.[[TRUNC_CHAN]], PV.[[SHIFT_CHAN]]
51; EG-CHECK: LSHL * T[[RW_GPR]].W, literal.x, PV.[[SHIFT_CHAN]]
52; EG-CHECK-NEXT: 65535
53; IG 3: Initialize the Y and Z channels to zero
54; XXX: An optimal scheduler should merge this into one of the prevous IGs.
55; EG-CHECK: MOV T[[RW_GPR]].Y, 0.0
56; EG-CHECK: MOV * T[[RW_GPR]].Z, 0.0
57
58; SI-CHECK: @store_i16
59; SI-CHECK: BUFFER_STORE_SHORT
60define void @store_i16(i16 addrspace(1)* %out, i16 %in) {
61entry:
62 store i16 %in, i16 addrspace(1)* %out
63 ret void
64}
65
Tom Stellardfbab8272013-08-16 01:12:11 +000066; EG-CHECK: @store_v2i8
67; EG-CHECK: MEM_RAT MSKOR
68; EG-CHECK-NOT: MEM_RAT MSKOR
69; SI-CHECK: @store_v2i8
70; SI-CHECK: BUFFER_STORE_BYTE
71; SI-CHECK: BUFFER_STORE_BYTE
72define void @store_v2i8(<2 x i8> addrspace(1)* %out, <2 x i32> %in) {
73entry:
74 %0 = trunc <2 x i32> %in to <2 x i8>
75 store <2 x i8> %0, <2 x i8> addrspace(1)* %out
76 ret void
77}
78
79
80; EG-CHECK: @store_v2i16
81; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW
82; CM-CHECK: @store_v2i16
83; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD
84; SI-CHECK: @store_v2i16
85; SI-CHECK: BUFFER_STORE_DWORD
86define void @store_v2i16(<2 x i16> addrspace(1)* %out, <2 x i32> %in) {
87entry:
88 %0 = trunc <2 x i32> %in to <2 x i16>
89 store <2 x i16> %0, <2 x i16> addrspace(1)* %out
90 ret void
91}
92
93; EG-CHECK: @store_v4i8
94; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW
95; CM-CHECK: @store_v4i8
96; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD
97; SI-CHECK: @store_v4i8
98; SI-CHECK: BUFFER_STORE_BYTE
99; SI-CHECK: BUFFER_STORE_BYTE
100; SI-CHECK: BUFFER_STORE_BYTE
101; SI-CHECK: BUFFER_STORE_BYTE
102define void @store_v4i8(<4 x i8> addrspace(1)* %out, <4 x i32> %in) {
103entry:
104 %0 = trunc <4 x i32> %in to <4 x i8>
105 store <4 x i8> %0, <4 x i8> addrspace(1)* %out
106 ret void
107}
108
Tom Stellard5a6b0d82013-04-19 02:10:53 +0000109; floating-point store
110; EG-CHECK: @store_f32
Tom Stellardac00f9d2013-08-16 01:11:46 +0000111; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW T{{[0-9]+\.X, T[0-9]+\.X}}, 1
Tom Stellard6aa0d552013-06-14 22:12:24 +0000112; CM-CHECK: @store_f32
Tom Stellardac00f9d2013-08-16 01:11:46 +0000113; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD T{{[0-9]+\.X, T[0-9]+\.X}}
Tom Stellard5a6b0d82013-04-19 02:10:53 +0000114; SI-CHECK: @store_f32
Tom Stellard754f80f2013-04-05 23:31:51 +0000115; SI-CHECK: BUFFER_STORE_DWORD
116
Tom Stellard5a6b0d82013-04-19 02:10:53 +0000117define void @store_f32(float addrspace(1)* %out, float %in) {
Tom Stellard754f80f2013-04-05 23:31:51 +0000118 store float %in, float addrspace(1)* %out
119 ret void
120}
Tom Stellard0125f2a2013-06-25 02:39:35 +0000121
Tom Stellardfbab8272013-08-16 01:12:11 +0000122; EG-CHECK: @store_v4i16
123; EG-CHECK: MEM_RAT MSKOR
124; EG-CHECK: MEM_RAT MSKOR
125; EG-CHECK: MEM_RAT MSKOR
126; EG-CHECK: MEM_RAT MSKOR
127; EG-CHECK-NOT: MEM_RAT MSKOR
128; SI-CHECK: @store_v4i16
129; SI-CHECK: BUFFER_STORE_SHORT
130; SI-CHECK: BUFFER_STORE_SHORT
131; SI-CHECK: BUFFER_STORE_SHORT
132; SI-CHECK: BUFFER_STORE_SHORT
133; SI-CHECK-NOT: BUFFER_STORE_BYTE
134define void @store_v4i16(<4 x i16> addrspace(1)* %out, <4 x i32> %in) {
135entry:
136 %0 = trunc <4 x i32> %in to <4 x i16>
137 store <4 x i16> %0, <4 x i16> addrspace(1)* %out
138 ret void
139}
140
Tom Stellarded2f6142013-07-18 21:43:42 +0000141; vec2 floating-point stores
142; EG-CHECK: @store_v2f32
Tom Stellardac00f9d2013-08-16 01:11:46 +0000143; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW
Tom Stellarded2f6142013-07-18 21:43:42 +0000144; CM-CHECK: @store_v2f32
Tom Stellardac00f9d2013-08-16 01:11:46 +0000145; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD
Tom Stellarded2f6142013-07-18 21:43:42 +0000146; SI-CHECK: @store_v2f32
147; SI-CHECK: BUFFER_STORE_DWORDX2
148
149define void @store_v2f32(<2 x float> addrspace(1)* %out, float %a, float %b) {
150entry:
151 %0 = insertelement <2 x float> <float 0.0, float 0.0>, float %a, i32 0
Tom Stellard8e5da412013-08-14 23:24:32 +0000152 %1 = insertelement <2 x float> %0, float %b, i32 1
Tom Stellarded2f6142013-07-18 21:43:42 +0000153 store <2 x float> %1, <2 x float> addrspace(1)* %out
154 ret void
155}
156
Tom Stellard6d1379e2013-08-16 01:12:00 +0000157; EG-CHECK: @store_v4i32
158; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW
159; EG-CHECK-NOT: MEM_RAT_CACHELESS STORE_RAW
160; CM-CHECK: @store_v4i32
161; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD
162; CM-CHECK-NOT: MEM_RAT_CACHELESS STORE_DWORD
163; SI-CHECK: @store_v4i32
164; SI-CHECK: BUFFER_STORE_DWORDX4
165define void @store_v4i32(<4 x i32> addrspace(1)* %out, <4 x i32> %in) {
166entry:
167 store <4 x i32> %in, <4 x i32> addrspace(1)* %out
168 ret void
169}
170
Tom Stellard2ffc3302013-08-26 15:05:44 +0000171;===------------------------------------------------------------------------===;
172; Local Address Space
173;===------------------------------------------------------------------------===;
174
Tom Stellardf3d166a2013-08-26 15:05:49 +0000175; EG-CHECK: @store_local_i8
176; EG-CHECK: LDS_BYTE_WRITE
177; SI-CHECK: @store_local_i8
178; SI-CHECK: DS_WRITE_B8
179define void @store_local_i8(i8 addrspace(3)* %out, i8 %in) {
180 store i8 %in, i8 addrspace(3)* %out
181 ret void
182}
183
184; EG-CHECK: @store_local_i16
185; EG-CHECK: LDS_SHORT_WRITE
186; SI-CHECK: @store_local_i16
187; SI-CHECK: DS_WRITE_B16
188define void @store_local_i16(i16 addrspace(3)* %out, i16 %in) {
189 store i16 %in, i16 addrspace(3)* %out
190 ret void
191}
192
Tom Stellard2ffc3302013-08-26 15:05:44 +0000193; EG-CHECK: @store_local_v2i16
194; EG-CHECK: LDS_WRITE
195; CM-CHECK: @store_local_v2i16
196; CM-CHECK: LDS_WRITE
197; SI-CHECK: @store_local_v2i16
198; SI-CHECK: DS_WRITE_B32
199define void @store_local_v2i16(<2 x i16> addrspace(3)* %out, <2 x i16> %in) {
200entry:
201 store <2 x i16> %in, <2 x i16> addrspace(3)* %out
202 ret void
203}
204
Tom Stellard7da047c2013-08-26 15:05:55 +0000205; EG-CHECK: @store_local_v4i8
206; EG-CHECK: LDS_WRITE
207; CM-CHECK: @store_local_v4i8
208; CM-CHECK: LDS_WRITE
209; SI-CHECK: @store_local_v4i8
210; SI-CHECK: DS_WRITE_B8
211; SI-CHECK: DS_WRITE_B8
212; SI-CHECK: DS_WRITE_B8
213; SI-CHECK: DS_WRITE_B8
214define void @store_local_v4i8(<4 x i8> addrspace(3)* %out, <4 x i8> %in) {
215entry:
216 store <4 x i8> %in, <4 x i8> addrspace(3)* %out
217 ret void
218}
219
Tom Stellard2ffc3302013-08-26 15:05:44 +0000220; EG-CHECK: @store_local_v2i32
221; EG-CHECK: LDS_WRITE
222; EG-CHECK: LDS_WRITE
223; CM-CHECK: @store_local_v2i32
224; CM-CHECK: LDS_WRITE
225; CM-CHECK: LDS_WRITE
226; SI-CHECK: @store_local_v2i32
227; SI-CHECK: DS_WRITE_B32
228; SI-CHECK: DS_WRITE_B32
229define void @store_local_v2i32(<2 x i32> addrspace(3)* %out, <2 x i32> %in) {
230entry:
231 store <2 x i32> %in, <2 x i32> addrspace(3)* %out
232 ret void
233}
234
235; EG-CHECK: @store_local_v4i32
236; EG-CHECK: LDS_WRITE
237; EG-CHECK: LDS_WRITE
238; EG-CHECK: LDS_WRITE
239; EG-CHECK: LDS_WRITE
240; CM-CHECK: @store_local_v4i32
241; CM-CHECK: LDS_WRITE
242; CM-CHECK: LDS_WRITE
243; CM-CHECK: LDS_WRITE
244; CM-CHECK: LDS_WRITE
245; SI-CHECK: @store_local_v4i32
246; SI-CHECK: DS_WRITE_B32
247; SI-CHECK: DS_WRITE_B32
248; SI-CHECK: DS_WRITE_B32
249; SI-CHECK: DS_WRITE_B32
250define void @store_local_v4i32(<4 x i32> addrspace(3)* %out, <4 x i32> %in) {
251entry:
252 store <4 x i32> %in, <4 x i32> addrspace(3)* %out
253 ret void
254}
255
Tom Stellard0125f2a2013-06-25 02:39:35 +0000256; The stores in this function are combined by the optimizer to create a
257; 64-bit store with 32-bit alignment. This is legal for SI and the legalizer
258; should not try to split the 64-bit store back into 2 32-bit stores.
259;
260; Evergreen / Northern Islands don't support 64-bit stores yet, so there should
261; be two 32-bit stores.
262
263; EG-CHECK: @vecload2
Tom Stellardac00f9d2013-08-16 01:11:46 +0000264; EG-CHECK: MEM_RAT_CACHELESS STORE_RAW
Tom Stellard0125f2a2013-06-25 02:39:35 +0000265; CM-CHECK: @vecload2
Tom Stellardac00f9d2013-08-16 01:11:46 +0000266; CM-CHECK: MEM_RAT_CACHELESS STORE_DWORD
Tom Stellard0125f2a2013-06-25 02:39:35 +0000267; SI-CHECK: @vecload2
268; SI-CHECK: BUFFER_STORE_DWORDX2
269define void @vecload2(i32 addrspace(1)* nocapture %out, i32 addrspace(2)* nocapture %mem) #0 {
270entry:
271 %0 = load i32 addrspace(2)* %mem, align 4, !tbaa !5
272 %arrayidx1.i = getelementptr inbounds i32 addrspace(2)* %mem, i64 1
273 %1 = load i32 addrspace(2)* %arrayidx1.i, align 4, !tbaa !5
274 store i32 %0, i32 addrspace(1)* %out, align 4, !tbaa !5
275 %arrayidx1 = getelementptr inbounds i32 addrspace(1)* %out, i64 1
276 store i32 %1, i32 addrspace(1)* %arrayidx1, align 4, !tbaa !5
277 ret void
278}
279
Bill Wendling187d3dd2013-08-22 21:28:54 +0000280attributes #0 = { nounwind "less-precise-fpmad"="false" "no-frame-pointer-elim"="false" "no-infs-fp-math"="false" "no-nans-fp-math"="false" "unsafe-fp-math"="false" "use-soft-float"="false" }
Tom Stellard0125f2a2013-06-25 02:39:35 +0000281
282!5 = metadata !{metadata !"int", metadata !6}
283!6 = metadata !{metadata !"omnipotent char", metadata !7}
284!7 = metadata !{metadata !"Simple C/C++ TBAA"}