1; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
2; RUN: opt -S -slp-vectorizer -slp-threshold=-10000 < %s | FileCheck %s --check-prefixes=CHECK,THRESHOLD
3; RUN: opt -S -slp-vectorizer -slp-threshold=0 < %s | FileCheck %s --check-prefixes=CHECK,NOTHRESHOLD
4; RUN: opt -S -slp-vectorizer -slp-threshold=-10000 -slp-min-tree-size=0 < %s | FileCheck %s --check-prefixes=CHECK,MINTREESIZE
5
6target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-n8:16:32:64-S128"
7target triple = "x86_64-apple-macosx10.8.0"
8
9define <4 x float> @simple_select(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
10; CHECK-LABEL: @simple_select(
11; CHECK-NEXT:    [[TMP1:%.*]] = icmp ne <4 x i32> [[C:%.*]], zeroinitializer
12; CHECK-NEXT:    [[TMP2:%.*]] = select <4 x i1> [[TMP1]], <4 x float> [[A:%.*]], <4 x float> [[B:%.*]]
13; CHECK-NEXT:    ret <4 x float> [[TMP2]]
14;
15  %c0 = extractelement <4 x i32> %c, i32 0
16  %c1 = extractelement <4 x i32> %c, i32 1
17  %c2 = extractelement <4 x i32> %c, i32 2
18  %c3 = extractelement <4 x i32> %c, i32 3
19  %a0 = extractelement <4 x float> %a, i32 0
20  %a1 = extractelement <4 x float> %a, i32 1
21  %a2 = extractelement <4 x float> %a, i32 2
22  %a3 = extractelement <4 x float> %a, i32 3
23  %b0 = extractelement <4 x float> %b, i32 0
24  %b1 = extractelement <4 x float> %b, i32 1
25  %b2 = extractelement <4 x float> %b, i32 2
26  %b3 = extractelement <4 x float> %b, i32 3
27  %cmp0 = icmp ne i32 %c0, 0
28  %cmp1 = icmp ne i32 %c1, 0
29  %cmp2 = icmp ne i32 %c2, 0
30  %cmp3 = icmp ne i32 %c3, 0
31  %s0 = select i1 %cmp0, float %a0, float %b0
32  %s1 = select i1 %cmp1, float %a1, float %b1
33  %s2 = select i1 %cmp2, float %a2, float %b2
34  %s3 = select i1 %cmp3, float %a3, float %b3
35  %ra = insertelement <4 x float> undef, float %s0, i32 0
36  %rb = insertelement <4 x float> %ra, float %s1, i32 1
37  %rc = insertelement <4 x float> %rb, float %s2, i32 2
38  %rd = insertelement <4 x float> %rc, float %s3, i32 3
39  ret <4 x float> %rd
40}
41
42define <8 x float> @simple_select2(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
43; CHECK-LABEL: @simple_select2(
44; CHECK-NEXT:    [[TMP1:%.*]] = icmp ne <4 x i32> [[C:%.*]], zeroinitializer
45; CHECK-NEXT:    [[TMP2:%.*]] = select <4 x i1> [[TMP1]], <4 x float> [[A:%.*]], <4 x float> [[B:%.*]]
46; CHECK-NEXT:    [[TMP3:%.*]] = shufflevector <4 x float> [[TMP2]], <4 x float> poison, <8 x i32> <i32 0, i32 undef, i32 1, i32 undef, i32 2, i32 undef, i32 undef, i32 3>
47; CHECK-NEXT:    [[RD1:%.*]] = shufflevector <8 x float> undef, <8 x float> [[TMP3]], <8 x i32> <i32 8, i32 1, i32 10, i32 3, i32 12, i32 5, i32 6, i32 15>
48; CHECK-NEXT:    ret <8 x float> [[RD1]]
49;
50  %c0 = extractelement <4 x i32> %c, i32 0
51  %c1 = extractelement <4 x i32> %c, i32 1
52  %c2 = extractelement <4 x i32> %c, i32 2
53  %c3 = extractelement <4 x i32> %c, i32 3
54  %a0 = extractelement <4 x float> %a, i32 0
55  %a1 = extractelement <4 x float> %a, i32 1
56  %a2 = extractelement <4 x float> %a, i32 2
57  %a3 = extractelement <4 x float> %a, i32 3
58  %b0 = extractelement <4 x float> %b, i32 0
59  %b1 = extractelement <4 x float> %b, i32 1
60  %b2 = extractelement <4 x float> %b, i32 2
61  %b3 = extractelement <4 x float> %b, i32 3
62  %cmp0 = icmp ne i32 %c0, 0
63  %cmp1 = icmp ne i32 %c1, 0
64  %cmp2 = icmp ne i32 %c2, 0
65  %cmp3 = icmp ne i32 %c3, 0
66  %s0 = select i1 %cmp0, float %a0, float %b0
67  %s1 = select i1 %cmp1, float %a1, float %b1
68  %s2 = select i1 %cmp2, float %a2, float %b2
69  %s3 = select i1 %cmp3, float %a3, float %b3
70  %ra = insertelement <8 x float> undef, float %s0, i32 0
71  %rb = insertelement <8 x float> %ra, float %s1, i32 2
72  %rc = insertelement <8 x float> %rb, float %s2, i32 4
73  %rd = insertelement <8 x float> %rc, float %s3, i32 7
74  ret <8 x float> %rd
75}
76
77declare void @llvm.assume(i1) nounwind
78
79; This entire tree is ephemeral, don't vectorize any of it.
80define <4 x float> @simple_select_eph(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
81; THRESHOLD-LABEL: @simple_select_eph(
82; THRESHOLD-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
83; THRESHOLD-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
84; THRESHOLD-NEXT:    [[C2:%.*]] = extractelement <4 x i32> [[C]], i32 2
85; THRESHOLD-NEXT:    [[C3:%.*]] = extractelement <4 x i32> [[C]], i32 3
86; THRESHOLD-NEXT:    [[A0:%.*]] = extractelement <4 x float> [[A:%.*]], i32 0
87; THRESHOLD-NEXT:    [[A1:%.*]] = extractelement <4 x float> [[A]], i32 1
88; THRESHOLD-NEXT:    [[A2:%.*]] = extractelement <4 x float> [[A]], i32 2
89; THRESHOLD-NEXT:    [[A3:%.*]] = extractelement <4 x float> [[A]], i32 3
90; THRESHOLD-NEXT:    [[B0:%.*]] = extractelement <4 x float> [[B:%.*]], i32 0
91; THRESHOLD-NEXT:    [[B1:%.*]] = extractelement <4 x float> [[B]], i32 1
92; THRESHOLD-NEXT:    [[B2:%.*]] = extractelement <4 x float> [[B]], i32 2
93; THRESHOLD-NEXT:    [[B3:%.*]] = extractelement <4 x float> [[B]], i32 3
94; THRESHOLD-NEXT:    [[CMP0:%.*]] = icmp ne i32 [[C0]], 0
95; THRESHOLD-NEXT:    [[CMP1:%.*]] = icmp ne i32 [[C1]], 0
96; THRESHOLD-NEXT:    [[CMP2:%.*]] = icmp ne i32 [[C2]], 0
97; THRESHOLD-NEXT:    [[CMP3:%.*]] = icmp ne i32 [[C3]], 0
98; THRESHOLD-NEXT:    [[S0:%.*]] = select i1 [[CMP0]], float [[A0]], float [[B0]]
99; THRESHOLD-NEXT:    [[S1:%.*]] = select i1 [[CMP1]], float [[A1]], float [[B1]]
100; THRESHOLD-NEXT:    [[S2:%.*]] = select i1 [[CMP2]], float [[A2]], float [[B2]]
101; THRESHOLD-NEXT:    [[S3:%.*]] = select i1 [[CMP3]], float [[A3]], float [[B3]]
102; THRESHOLD-NEXT:    [[RA:%.*]] = insertelement <4 x float> undef, float [[S0]], i32 0
103; THRESHOLD-NEXT:    [[RB:%.*]] = insertelement <4 x float> [[RA]], float [[S1]], i32 1
104; THRESHOLD-NEXT:    [[RC:%.*]] = insertelement <4 x float> [[RB]], float [[S2]], i32 2
105; THRESHOLD-NEXT:    [[RD:%.*]] = insertelement <4 x float> [[RC]], float [[S3]], i32 3
106; THRESHOLD-NEXT:    [[Q0:%.*]] = extractelement <4 x float> [[RD]], i32 0
107; THRESHOLD-NEXT:    [[Q1:%.*]] = extractelement <4 x float> [[RD]], i32 1
108; THRESHOLD-NEXT:    [[Q2:%.*]] = extractelement <4 x float> [[RD]], i32 2
109; THRESHOLD-NEXT:    [[Q3:%.*]] = extractelement <4 x float> [[RD]], i32 3
110; THRESHOLD-NEXT:    [[Q4:%.*]] = fadd float [[Q0]], [[Q1]]
111; THRESHOLD-NEXT:    [[Q5:%.*]] = fadd float [[Q2]], [[Q3]]
112; THRESHOLD-NEXT:    [[Q6:%.*]] = fadd float [[Q4]], [[Q5]]
113; THRESHOLD-NEXT:    [[QI:%.*]] = fcmp olt float [[Q6]], [[Q5]]
114; THRESHOLD-NEXT:    call void @llvm.assume(i1 [[QI]])
115; THRESHOLD-NEXT:    ret <4 x float> undef
116;
117; NOTHRESHOLD-LABEL: @simple_select_eph(
118; NOTHRESHOLD-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
119; NOTHRESHOLD-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
120; NOTHRESHOLD-NEXT:    [[C2:%.*]] = extractelement <4 x i32> [[C]], i32 2
121; NOTHRESHOLD-NEXT:    [[C3:%.*]] = extractelement <4 x i32> [[C]], i32 3
122; NOTHRESHOLD-NEXT:    [[A0:%.*]] = extractelement <4 x float> [[A:%.*]], i32 0
123; NOTHRESHOLD-NEXT:    [[A1:%.*]] = extractelement <4 x float> [[A]], i32 1
124; NOTHRESHOLD-NEXT:    [[A2:%.*]] = extractelement <4 x float> [[A]], i32 2
125; NOTHRESHOLD-NEXT:    [[A3:%.*]] = extractelement <4 x float> [[A]], i32 3
126; NOTHRESHOLD-NEXT:    [[B0:%.*]] = extractelement <4 x float> [[B:%.*]], i32 0
127; NOTHRESHOLD-NEXT:    [[B1:%.*]] = extractelement <4 x float> [[B]], i32 1
128; NOTHRESHOLD-NEXT:    [[B2:%.*]] = extractelement <4 x float> [[B]], i32 2
129; NOTHRESHOLD-NEXT:    [[B3:%.*]] = extractelement <4 x float> [[B]], i32 3
130; NOTHRESHOLD-NEXT:    [[CMP0:%.*]] = icmp ne i32 [[C0]], 0
131; NOTHRESHOLD-NEXT:    [[CMP1:%.*]] = icmp ne i32 [[C1]], 0
132; NOTHRESHOLD-NEXT:    [[CMP2:%.*]] = icmp ne i32 [[C2]], 0
133; NOTHRESHOLD-NEXT:    [[CMP3:%.*]] = icmp ne i32 [[C3]], 0
134; NOTHRESHOLD-NEXT:    [[S0:%.*]] = select i1 [[CMP0]], float [[A0]], float [[B0]]
135; NOTHRESHOLD-NEXT:    [[S1:%.*]] = select i1 [[CMP1]], float [[A1]], float [[B1]]
136; NOTHRESHOLD-NEXT:    [[S2:%.*]] = select i1 [[CMP2]], float [[A2]], float [[B2]]
137; NOTHRESHOLD-NEXT:    [[S3:%.*]] = select i1 [[CMP3]], float [[A3]], float [[B3]]
138; NOTHRESHOLD-NEXT:    [[RA:%.*]] = insertelement <4 x float> undef, float [[S0]], i32 0
139; NOTHRESHOLD-NEXT:    [[RB:%.*]] = insertelement <4 x float> [[RA]], float [[S1]], i32 1
140; NOTHRESHOLD-NEXT:    [[RC:%.*]] = insertelement <4 x float> [[RB]], float [[S2]], i32 2
141; NOTHRESHOLD-NEXT:    [[RD:%.*]] = insertelement <4 x float> [[RC]], float [[S3]], i32 3
142; NOTHRESHOLD-NEXT:    [[Q0:%.*]] = extractelement <4 x float> [[RD]], i32 0
143; NOTHRESHOLD-NEXT:    [[Q1:%.*]] = extractelement <4 x float> [[RD]], i32 1
144; NOTHRESHOLD-NEXT:    [[Q2:%.*]] = extractelement <4 x float> [[RD]], i32 2
145; NOTHRESHOLD-NEXT:    [[Q3:%.*]] = extractelement <4 x float> [[RD]], i32 3
146; NOTHRESHOLD-NEXT:    [[Q4:%.*]] = fadd float [[Q0]], [[Q1]]
147; NOTHRESHOLD-NEXT:    [[Q5:%.*]] = fadd float [[Q2]], [[Q3]]
148; NOTHRESHOLD-NEXT:    [[Q6:%.*]] = fadd float [[Q4]], [[Q5]]
149; NOTHRESHOLD-NEXT:    [[QI:%.*]] = fcmp olt float [[Q6]], [[Q5]]
150; NOTHRESHOLD-NEXT:    call void @llvm.assume(i1 [[QI]])
151; NOTHRESHOLD-NEXT:    ret <4 x float> undef
152;
153; MINTREESIZE-LABEL: @simple_select_eph(
154; MINTREESIZE-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
155; MINTREESIZE-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
156; MINTREESIZE-NEXT:    [[C2:%.*]] = extractelement <4 x i32> [[C]], i32 2
157; MINTREESIZE-NEXT:    [[C3:%.*]] = extractelement <4 x i32> [[C]], i32 3
158; MINTREESIZE-NEXT:    [[A0:%.*]] = extractelement <4 x float> [[A:%.*]], i32 0
159; MINTREESIZE-NEXT:    [[A1:%.*]] = extractelement <4 x float> [[A]], i32 1
160; MINTREESIZE-NEXT:    [[A2:%.*]] = extractelement <4 x float> [[A]], i32 2
161; MINTREESIZE-NEXT:    [[A3:%.*]] = extractelement <4 x float> [[A]], i32 3
162; MINTREESIZE-NEXT:    [[B0:%.*]] = extractelement <4 x float> [[B:%.*]], i32 0
163; MINTREESIZE-NEXT:    [[B1:%.*]] = extractelement <4 x float> [[B]], i32 1
164; MINTREESIZE-NEXT:    [[B2:%.*]] = extractelement <4 x float> [[B]], i32 2
165; MINTREESIZE-NEXT:    [[B3:%.*]] = extractelement <4 x float> [[B]], i32 3
166; MINTREESIZE-NEXT:    [[CMP0:%.*]] = icmp ne i32 [[C0]], 0
167; MINTREESIZE-NEXT:    [[CMP1:%.*]] = icmp ne i32 [[C1]], 0
168; MINTREESIZE-NEXT:    [[CMP2:%.*]] = icmp ne i32 [[C2]], 0
169; MINTREESIZE-NEXT:    [[CMP3:%.*]] = icmp ne i32 [[C3]], 0
170; MINTREESIZE-NEXT:    [[S0:%.*]] = select i1 [[CMP0]], float [[A0]], float [[B0]]
171; MINTREESIZE-NEXT:    [[S1:%.*]] = select i1 [[CMP1]], float [[A1]], float [[B1]]
172; MINTREESIZE-NEXT:    [[S2:%.*]] = select i1 [[CMP2]], float [[A2]], float [[B2]]
173; MINTREESIZE-NEXT:    [[S3:%.*]] = select i1 [[CMP3]], float [[A3]], float [[B3]]
174; MINTREESIZE-NEXT:    [[RA:%.*]] = insertelement <4 x float> undef, float [[S0]], i32 0
175; MINTREESIZE-NEXT:    [[RB:%.*]] = insertelement <4 x float> [[RA]], float [[S1]], i32 1
176; MINTREESIZE-NEXT:    [[RC:%.*]] = insertelement <4 x float> [[RB]], float [[S2]], i32 2
177; MINTREESIZE-NEXT:    [[RD:%.*]] = insertelement <4 x float> [[RC]], float [[S3]], i32 3
178; MINTREESIZE-NEXT:    [[Q0:%.*]] = extractelement <4 x float> [[RD]], i32 0
179; MINTREESIZE-NEXT:    [[Q1:%.*]] = extractelement <4 x float> [[RD]], i32 1
180; MINTREESIZE-NEXT:    [[TMP1:%.*]] = insertelement <2 x float> poison, float [[Q0]], i32 0
181; MINTREESIZE-NEXT:    [[TMP2:%.*]] = insertelement <2 x float> [[TMP1]], float [[Q1]], i32 1
182; MINTREESIZE-NEXT:    [[Q2:%.*]] = extractelement <4 x float> [[RD]], i32 2
183; MINTREESIZE-NEXT:    [[Q3:%.*]] = extractelement <4 x float> [[RD]], i32 3
184; MINTREESIZE-NEXT:    [[TMP3:%.*]] = insertelement <2 x float> poison, float [[Q2]], i32 0
185; MINTREESIZE-NEXT:    [[TMP4:%.*]] = insertelement <2 x float> [[TMP3]], float [[Q3]], i32 1
186; MINTREESIZE-NEXT:    [[Q4:%.*]] = fadd float [[Q0]], [[Q1]]
187; MINTREESIZE-NEXT:    [[Q5:%.*]] = fadd float [[Q2]], [[Q3]]
188; MINTREESIZE-NEXT:    [[TMP5:%.*]] = insertelement <2 x float> poison, float [[Q4]], i32 0
189; MINTREESIZE-NEXT:    [[TMP6:%.*]] = insertelement <2 x float> [[TMP5]], float [[Q5]], i32 1
190; MINTREESIZE-NEXT:    [[Q6:%.*]] = fadd float [[Q4]], [[Q5]]
191; MINTREESIZE-NEXT:    [[TMP7:%.*]] = insertelement <2 x float> poison, float [[Q6]], i32 0
192; MINTREESIZE-NEXT:    [[TMP8:%.*]] = insertelement <2 x float> [[TMP7]], float [[Q5]], i32 1
193; MINTREESIZE-NEXT:    [[QI:%.*]] = fcmp olt float [[Q6]], [[Q5]]
194; MINTREESIZE-NEXT:    call void @llvm.assume(i1 [[QI]])
195; MINTREESIZE-NEXT:    ret <4 x float> undef
196;
197  %c0 = extractelement <4 x i32> %c, i32 0
198  %c1 = extractelement <4 x i32> %c, i32 1
199  %c2 = extractelement <4 x i32> %c, i32 2
200  %c3 = extractelement <4 x i32> %c, i32 3
201  %a0 = extractelement <4 x float> %a, i32 0
202  %a1 = extractelement <4 x float> %a, i32 1
203  %a2 = extractelement <4 x float> %a, i32 2
204  %a3 = extractelement <4 x float> %a, i32 3
205  %b0 = extractelement <4 x float> %b, i32 0
206  %b1 = extractelement <4 x float> %b, i32 1
207  %b2 = extractelement <4 x float> %b, i32 2
208  %b3 = extractelement <4 x float> %b, i32 3
209  %cmp0 = icmp ne i32 %c0, 0
210  %cmp1 = icmp ne i32 %c1, 0
211  %cmp2 = icmp ne i32 %c2, 0
212  %cmp3 = icmp ne i32 %c3, 0
213  %s0 = select i1 %cmp0, float %a0, float %b0
214  %s1 = select i1 %cmp1, float %a1, float %b1
215  %s2 = select i1 %cmp2, float %a2, float %b2
216  %s3 = select i1 %cmp3, float %a3, float %b3
217  %ra = insertelement <4 x float> undef, float %s0, i32 0
218  %rb = insertelement <4 x float> %ra, float %s1, i32 1
219  %rc = insertelement <4 x float> %rb, float %s2, i32 2
220  %rd = insertelement <4 x float> %rc, float %s3, i32 3
221  %q0 = extractelement <4 x float> %rd, i32 0
222  %q1 = extractelement <4 x float> %rd, i32 1
223  %q2 = extractelement <4 x float> %rd, i32 2
224  %q3 = extractelement <4 x float> %rd, i32 3
225  %q4 = fadd float %q0, %q1
226  %q5 = fadd float %q2, %q3
227  %q6 = fadd float %q4, %q5
228  %qi = fcmp olt float %q6, %q5
229  call void @llvm.assume(i1 %qi)
230  ret <4 x float> undef
231}
232
233; Insert in an order different from the vector indices to make sure it
234; doesn't matter
235define <4 x float> @simple_select_insert_out_of_order(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
236; CHECK-LABEL: @simple_select_insert_out_of_order(
237; CHECK-NEXT:    [[TMP1:%.*]] = icmp ne <4 x i32> [[C:%.*]], zeroinitializer
238; CHECK-NEXT:    [[TMP2:%.*]] = select <4 x i1> [[TMP1]], <4 x float> [[A:%.*]], <4 x float> [[B:%.*]]
239; CHECK-NEXT:    [[TMP3:%.*]] = shufflevector <4 x float> [[TMP2]], <4 x float> poison, <4 x i32> <i32 2, i32 1, i32 0, i32 3>
240; CHECK-NEXT:    ret <4 x float> [[TMP3]]
241;
242  %c0 = extractelement <4 x i32> %c, i32 0
243  %c1 = extractelement <4 x i32> %c, i32 1
244  %c2 = extractelement <4 x i32> %c, i32 2
245  %c3 = extractelement <4 x i32> %c, i32 3
246  %a0 = extractelement <4 x float> %a, i32 0
247  %a1 = extractelement <4 x float> %a, i32 1
248  %a2 = extractelement <4 x float> %a, i32 2
249  %a3 = extractelement <4 x float> %a, i32 3
250  %b0 = extractelement <4 x float> %b, i32 0
251  %b1 = extractelement <4 x float> %b, i32 1
252  %b2 = extractelement <4 x float> %b, i32 2
253  %b3 = extractelement <4 x float> %b, i32 3
254  %cmp0 = icmp ne i32 %c0, 0
255  %cmp1 = icmp ne i32 %c1, 0
256  %cmp2 = icmp ne i32 %c2, 0
257  %cmp3 = icmp ne i32 %c3, 0
258  %s0 = select i1 %cmp0, float %a0, float %b0
259  %s1 = select i1 %cmp1, float %a1, float %b1
260  %s2 = select i1 %cmp2, float %a2, float %b2
261  %s3 = select i1 %cmp3, float %a3, float %b3
262  %ra = insertelement <4 x float> undef, float %s0, i32 2
263  %rb = insertelement <4 x float> %ra, float %s1, i32 1
264  %rc = insertelement <4 x float> %rb, float %s2, i32 0
265  %rd = insertelement <4 x float> %rc, float %s3, i32 3
266  ret <4 x float> %rd
267}
268
269declare void @v4f32_user(<4 x float>) #0
270declare void @f32_user(float) #0
271
272; Multiple users of the final constructed vector
273define <4 x float> @simple_select_users(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
274; CHECK-LABEL: @simple_select_users(
275; CHECK-NEXT:    [[TMP1:%.*]] = icmp ne <4 x i32> [[C:%.*]], zeroinitializer
276; CHECK-NEXT:    [[TMP2:%.*]] = select <4 x i1> [[TMP1]], <4 x float> [[A:%.*]], <4 x float> [[B:%.*]]
277; CHECK-NEXT:    call void @v4f32_user(<4 x float> [[TMP2]]) #[[ATTR0:[0-9]+]]
278; CHECK-NEXT:    ret <4 x float> [[TMP2]]
279;
280  %c0 = extractelement <4 x i32> %c, i32 0
281  %c1 = extractelement <4 x i32> %c, i32 1
282  %c2 = extractelement <4 x i32> %c, i32 2
283  %c3 = extractelement <4 x i32> %c, i32 3
284  %a0 = extractelement <4 x float> %a, i32 0
285  %a1 = extractelement <4 x float> %a, i32 1
286  %a2 = extractelement <4 x float> %a, i32 2
287  %a3 = extractelement <4 x float> %a, i32 3
288  %b0 = extractelement <4 x float> %b, i32 0
289  %b1 = extractelement <4 x float> %b, i32 1
290  %b2 = extractelement <4 x float> %b, i32 2
291  %b3 = extractelement <4 x float> %b, i32 3
292  %cmp0 = icmp ne i32 %c0, 0
293  %cmp1 = icmp ne i32 %c1, 0
294  %cmp2 = icmp ne i32 %c2, 0
295  %cmp3 = icmp ne i32 %c3, 0
296  %s0 = select i1 %cmp0, float %a0, float %b0
297  %s1 = select i1 %cmp1, float %a1, float %b1
298  %s2 = select i1 %cmp2, float %a2, float %b2
299  %s3 = select i1 %cmp3, float %a3, float %b3
300  %ra = insertelement <4 x float> undef, float %s0, i32 0
301  %rb = insertelement <4 x float> %ra, float %s1, i32 1
302  %rc = insertelement <4 x float> %rb, float %s2, i32 2
303  %rd = insertelement <4 x float> %rc, float %s3, i32 3
304  call void @v4f32_user(<4 x float> %rd) #0
305  ret <4 x float> %rd
306}
307
308; Unused insertelement
309define <4 x float> @simple_select_no_users(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
310; CHECK-LABEL: @simple_select_no_users(
311; CHECK-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
312; CHECK-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
313; CHECK-NEXT:    [[C2:%.*]] = extractelement <4 x i32> [[C]], i32 2
314; CHECK-NEXT:    [[C3:%.*]] = extractelement <4 x i32> [[C]], i32 3
315; CHECK-NEXT:    [[A0:%.*]] = extractelement <4 x float> [[A:%.*]], i32 0
316; CHECK-NEXT:    [[A1:%.*]] = extractelement <4 x float> [[A]], i32 1
317; CHECK-NEXT:    [[A2:%.*]] = extractelement <4 x float> [[A]], i32 2
318; CHECK-NEXT:    [[A3:%.*]] = extractelement <4 x float> [[A]], i32 3
319; CHECK-NEXT:    [[B0:%.*]] = extractelement <4 x float> [[B:%.*]], i32 0
320; CHECK-NEXT:    [[B1:%.*]] = extractelement <4 x float> [[B]], i32 1
321; CHECK-NEXT:    [[B2:%.*]] = extractelement <4 x float> [[B]], i32 2
322; CHECK-NEXT:    [[B3:%.*]] = extractelement <4 x float> [[B]], i32 3
323; CHECK-NEXT:    [[TMP1:%.*]] = insertelement <2 x i32> poison, i32 [[C0]], i32 0
324; CHECK-NEXT:    [[TMP2:%.*]] = insertelement <2 x i32> [[TMP1]], i32 [[C1]], i32 1
325; CHECK-NEXT:    [[TMP3:%.*]] = icmp ne <2 x i32> [[TMP2]], zeroinitializer
326; CHECK-NEXT:    [[TMP4:%.*]] = insertelement <2 x i32> poison, i32 [[C2]], i32 0
327; CHECK-NEXT:    [[TMP5:%.*]] = insertelement <2 x i32> [[TMP4]], i32 [[C3]], i32 1
328; CHECK-NEXT:    [[TMP6:%.*]] = icmp ne <2 x i32> [[TMP5]], zeroinitializer
329; CHECK-NEXT:    [[TMP7:%.*]] = insertelement <2 x float> poison, float [[A0]], i32 0
330; CHECK-NEXT:    [[TMP8:%.*]] = insertelement <2 x float> [[TMP7]], float [[A1]], i32 1
331; CHECK-NEXT:    [[TMP9:%.*]] = insertelement <2 x float> poison, float [[B0]], i32 0
332; CHECK-NEXT:    [[TMP10:%.*]] = insertelement <2 x float> [[TMP9]], float [[B1]], i32 1
333; CHECK-NEXT:    [[TMP11:%.*]] = select <2 x i1> [[TMP3]], <2 x float> [[TMP8]], <2 x float> [[TMP10]]
334; CHECK-NEXT:    [[TMP12:%.*]] = insertelement <2 x float> poison, float [[A2]], i32 0
335; CHECK-NEXT:    [[TMP13:%.*]] = insertelement <2 x float> [[TMP12]], float [[A3]], i32 1
336; CHECK-NEXT:    [[TMP14:%.*]] = insertelement <2 x float> poison, float [[B2]], i32 0
337; CHECK-NEXT:    [[TMP15:%.*]] = insertelement <2 x float> [[TMP14]], float [[B3]], i32 1
338; CHECK-NEXT:    [[TMP16:%.*]] = select <2 x i1> [[TMP6]], <2 x float> [[TMP13]], <2 x float> [[TMP15]]
339; CHECK-NEXT:    [[TMP17:%.*]] = shufflevector <2 x float> [[TMP11]], <2 x float> poison, <4 x i32> <i32 0, i32 1, i32 undef, i32 undef>
340; CHECK-NEXT:    [[TMP18:%.*]] = shufflevector <2 x float> [[TMP16]], <2 x float> poison, <4 x i32> <i32 0, i32 1, i32 undef, i32 undef>
341; CHECK-NEXT:    [[RD1:%.*]] = shufflevector <4 x float> undef, <4 x float> [[TMP18]], <4 x i32> <i32 0, i32 1, i32 4, i32 5>
342; CHECK-NEXT:    ret <4 x float> [[RD1]]
343;
344  %c0 = extractelement <4 x i32> %c, i32 0
345  %c1 = extractelement <4 x i32> %c, i32 1
346  %c2 = extractelement <4 x i32> %c, i32 2
347  %c3 = extractelement <4 x i32> %c, i32 3
348  %a0 = extractelement <4 x float> %a, i32 0
349  %a1 = extractelement <4 x float> %a, i32 1
350  %a2 = extractelement <4 x float> %a, i32 2
351  %a3 = extractelement <4 x float> %a, i32 3
352  %b0 = extractelement <4 x float> %b, i32 0
353  %b1 = extractelement <4 x float> %b, i32 1
354  %b2 = extractelement <4 x float> %b, i32 2
355  %b3 = extractelement <4 x float> %b, i32 3
356  %cmp0 = icmp ne i32 %c0, 0
357  %cmp1 = icmp ne i32 %c1, 0
358  %cmp2 = icmp ne i32 %c2, 0
359  %cmp3 = icmp ne i32 %c3, 0
360  %s0 = select i1 %cmp0, float %a0, float %b0
361  %s1 = select i1 %cmp1, float %a1, float %b1
362  %s2 = select i1 %cmp2, float %a2, float %b2
363  %s3 = select i1 %cmp3, float %a3, float %b3
364  %ra = insertelement <4 x float> undef, float %s0, i32 0
365  %rb = insertelement <4 x float> %ra, float %s1, i32 1
366  %rc = insertelement <4 x float> undef, float %s2, i32 2
367  %rd = insertelement <4 x float> %rc, float %s3, i32 3
368  ret <4 x float> %rd
369}
370
371; Make sure infinite loop doesn't happen which I ran into when trying
372; to do this backwards this backwards
373define <4 x i32> @reconstruct(<4 x i32> %c) #0 {
374; CHECK-LABEL: @reconstruct(
375; CHECK-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
376; CHECK-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
377; CHECK-NEXT:    [[C2:%.*]] = extractelement <4 x i32> [[C]], i32 2
378; CHECK-NEXT:    [[C3:%.*]] = extractelement <4 x i32> [[C]], i32 3
379; CHECK-NEXT:    [[RA:%.*]] = insertelement <4 x i32> undef, i32 [[C0]], i32 0
380; CHECK-NEXT:    [[RB:%.*]] = insertelement <4 x i32> [[RA]], i32 [[C1]], i32 1
381; CHECK-NEXT:    [[RC:%.*]] = insertelement <4 x i32> [[RB]], i32 [[C2]], i32 2
382; CHECK-NEXT:    [[RD:%.*]] = insertelement <4 x i32> [[RC]], i32 [[C3]], i32 3
383; CHECK-NEXT:    ret <4 x i32> [[RD]]
384;
385  %c0 = extractelement <4 x i32> %c, i32 0
386  %c1 = extractelement <4 x i32> %c, i32 1
387  %c2 = extractelement <4 x i32> %c, i32 2
388  %c3 = extractelement <4 x i32> %c, i32 3
389  %ra = insertelement <4 x i32> undef, i32 %c0, i32 0
390  %rb = insertelement <4 x i32> %ra, i32 %c1, i32 1
391  %rc = insertelement <4 x i32> %rb, i32 %c2, i32 2
392  %rd = insertelement <4 x i32> %rc, i32 %c3, i32 3
393  ret <4 x i32> %rd
394}
395
396define <2 x float> @simple_select_v2(<2 x float> %a, <2 x float> %b, <2 x i32> %c) #0 {
397; CHECK-LABEL: @simple_select_v2(
398; CHECK-NEXT:    [[TMP1:%.*]] = icmp ne <2 x i32> [[C:%.*]], zeroinitializer
399; CHECK-NEXT:    [[TMP2:%.*]] = select <2 x i1> [[TMP1]], <2 x float> [[A:%.*]], <2 x float> [[B:%.*]]
400; CHECK-NEXT:    ret <2 x float> [[TMP2]]
401;
402  %c0 = extractelement <2 x i32> %c, i32 0
403  %c1 = extractelement <2 x i32> %c, i32 1
404  %a0 = extractelement <2 x float> %a, i32 0
405  %a1 = extractelement <2 x float> %a, i32 1
406  %b0 = extractelement <2 x float> %b, i32 0
407  %b1 = extractelement <2 x float> %b, i32 1
408  %cmp0 = icmp ne i32 %c0, 0
409  %cmp1 = icmp ne i32 %c1, 0
410  %s0 = select i1 %cmp0, float %a0, float %b0
411  %s1 = select i1 %cmp1, float %a1, float %b1
412  %ra = insertelement <2 x float> undef, float %s0, i32 0
413  %rb = insertelement <2 x float> %ra, float %s1, i32 1
414  ret <2 x float> %rb
415}
416
417; Make sure when we construct partial vectors, we don't keep
418; re-visiting the insertelement chains starting with undef
419; (low cost threshold needed to force this to happen)
420define <4 x float> @simple_select_partial_vector(<4 x float> %a, <4 x float> %b, <4 x i32> %c) #0 {
421; CHECK-LABEL: @simple_select_partial_vector(
422; CHECK-NEXT:    [[C0:%.*]] = extractelement <4 x i32> [[C:%.*]], i32 0
423; CHECK-NEXT:    [[C1:%.*]] = extractelement <4 x i32> [[C]], i32 1
424; CHECK-NEXT:    [[A0:%.*]] = extractelement <4 x float> [[A:%.*]], i32 0
425; CHECK-NEXT:    [[A1:%.*]] = extractelement <4 x float> [[A]], i32 1
426; CHECK-NEXT:    [[B0:%.*]] = extractelement <4 x float> [[B:%.*]], i32 0
427; CHECK-NEXT:    [[B1:%.*]] = extractelement <4 x float> [[B]], i32 1
428; CHECK-NEXT:    [[TMP1:%.*]] = insertelement <2 x i32> undef, i32 [[C0]], i32 0
429; CHECK-NEXT:    [[TMP2:%.*]] = insertelement <2 x i32> [[TMP1]], i32 [[C1]], i32 1
430; CHECK-NEXT:    [[TMP3:%.*]] = icmp ne <2 x i32> [[TMP2]], zeroinitializer
431; CHECK-NEXT:    [[TMP4:%.*]] = insertelement <2 x float> undef, float [[A0]], i32 0
432; CHECK-NEXT:    [[TMP5:%.*]] = insertelement <2 x float> [[TMP4]], float [[A1]], i32 1
433; CHECK-NEXT:    [[TMP6:%.*]] = insertelement <2 x float> undef, float [[B0]], i32 0
434; CHECK-NEXT:    [[TMP7:%.*]] = insertelement <2 x float> [[TMP6]], float [[B1]], i32 1
435; CHECK-NEXT:    [[TMP8:%.*]] = select <2 x i1> [[TMP3]], <2 x float> [[TMP5]], <2 x float> [[TMP7]]
436; CHECK-NEXT:    [[TMP9:%.*]] = extractelement <2 x float> [[TMP8]], i32 0
437; CHECK-NEXT:    [[RA:%.*]] = insertelement <4 x float> undef, float [[TMP9]], i32 0
438; CHECK-NEXT:    [[TMP10:%.*]] = extractelement <2 x float> [[TMP8]], i32 1
439; CHECK-NEXT:    [[RB:%.*]] = insertelement <4 x float> [[RA]], float [[TMP10]], i32 1
440; CHECK-NEXT:    ret <4 x float> [[RB]]
441;
442  %c0 = extractelement <4 x i32> %c, i32 0
443  %c1 = extractelement <4 x i32> %c, i32 1
444  %a0 = extractelement <4 x float> %a, i32 0
445  %a1 = extractelement <4 x float> %a, i32 1
446  %b0 = extractelement <4 x float> %b, i32 0
447  %b1 = extractelement <4 x float> %b, i32 1
448  %1 = insertelement <2 x i32> undef, i32 %c0, i32 0
449  %2 = insertelement <2 x i32> %1, i32 %c1, i32 1
450  %3 = icmp ne <2 x i32> %2, zeroinitializer
451  %4 = insertelement <2 x float> undef, float %a0, i32 0
452  %5 = insertelement <2 x float> %4, float %a1, i32 1
453  %6 = insertelement <2 x float> undef, float %b0, i32 0
454  %7 = insertelement <2 x float> %6, float %b1, i32 1
455  %8 = select <2 x i1> %3, <2 x float> %5, <2 x float> %7
456  %9 = extractelement <2 x float> %8, i32 0
457  %ra = insertelement <4 x float> undef, float %9, i32 0
458  %10 = extractelement <2 x float> %8, i32 1
459  %rb = insertelement <4 x float> %ra, float %10, i32 1
460  ret <4 x float> %rb
461}
462
463; Make sure that vectorization happens even if insertelements operations
464; must be rescheduled. The case here is from compiling Julia.
465define <4 x float> @reschedule_extract(<4 x float> %a, <4 x float> %b) {
466; THRESHOLD-LABEL: @reschedule_extract(
467; THRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <4 x float> [[A:%.*]], [[B:%.*]]
468; THRESHOLD-NEXT:    ret <4 x float> [[TMP1]]
469;
470; NOTHRESHOLD-LABEL: @reschedule_extract(
471; NOTHRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <4 x float> [[A:%.*]], [[B:%.*]]
472; NOTHRESHOLD-NEXT:    ret <4 x float> [[TMP1]]
473;
474; MINTREESIZE-LABEL: @reschedule_extract(
475; MINTREESIZE-NEXT:    [[TMP1:%.*]] = extractelement <4 x float> [[B:%.*]], i32 3
476; MINTREESIZE-NEXT:    [[TMP2:%.*]] = extractelement <4 x float> [[B]], i32 2
477; MINTREESIZE-NEXT:    [[TMP3:%.*]] = extractelement <4 x float> [[B]], i32 1
478; MINTREESIZE-NEXT:    [[TMP4:%.*]] = extractelement <4 x float> [[B]], i32 0
479; MINTREESIZE-NEXT:    [[TMP5:%.*]] = extractelement <4 x float> [[A:%.*]], i32 3
480; MINTREESIZE-NEXT:    [[TMP6:%.*]] = extractelement <4 x float> [[A]], i32 2
481; MINTREESIZE-NEXT:    [[TMP7:%.*]] = extractelement <4 x float> [[A]], i32 1
482; MINTREESIZE-NEXT:    [[TMP8:%.*]] = extractelement <4 x float> [[A]], i32 0
483; MINTREESIZE-NEXT:    [[TMP9:%.*]] = insertelement <2 x float> poison, float [[TMP8]], i32 0
484; MINTREESIZE-NEXT:    [[TMP10:%.*]] = insertelement <2 x float> [[TMP9]], float [[TMP4]], i32 1
485; MINTREESIZE-NEXT:    [[TMP11:%.*]] = fadd <4 x float> [[A]], [[B]]
486; MINTREESIZE-NEXT:    [[TMP12:%.*]] = insertelement <2 x float> poison, float [[TMP7]], i32 0
487; MINTREESIZE-NEXT:    [[TMP13:%.*]] = insertelement <2 x float> [[TMP12]], float [[TMP3]], i32 1
488; MINTREESIZE-NEXT:    [[TMP14:%.*]] = insertelement <2 x float> poison, float [[TMP6]], i32 0
489; MINTREESIZE-NEXT:    [[TMP15:%.*]] = insertelement <2 x float> [[TMP14]], float [[TMP2]], i32 1
490; MINTREESIZE-NEXT:    [[TMP16:%.*]] = insertelement <2 x float> poison, float [[TMP5]], i32 0
491; MINTREESIZE-NEXT:    [[TMP17:%.*]] = insertelement <2 x float> [[TMP16]], float [[TMP1]], i32 1
492; MINTREESIZE-NEXT:    ret <4 x float> [[TMP11]]
493;
494  %a0 = extractelement <4 x float> %a, i32 0
495  %b0 = extractelement <4 x float> %b, i32 0
496  %c0 = fadd float %a0, %b0
497  %v0 = insertelement <4 x float> undef, float %c0, i32 0
498  %a1 = extractelement <4 x float> %a, i32 1
499  %b1 = extractelement <4 x float> %b, i32 1
500  %c1 = fadd float %a1, %b1
501  %v1 = insertelement <4 x float> %v0, float %c1, i32 1
502  %a2 = extractelement <4 x float> %a, i32 2
503  %b2 = extractelement <4 x float> %b, i32 2
504  %c2 = fadd float %a2, %b2
505  %v2 = insertelement <4 x float> %v1, float %c2, i32 2
506  %a3 = extractelement <4 x float> %a, i32 3
507  %b3 = extractelement <4 x float> %b, i32 3
508  %c3 = fadd float %a3, %b3
509  %v3 = insertelement <4 x float> %v2, float %c3, i32 3
510  ret <4 x float> %v3
511}
512
513; Check that cost model for vectorization takes credit for
514; instructions that are erased.
515define <4 x float> @take_credit(<4 x float> %a, <4 x float> %b) {
516; THRESHOLD-LABEL: @take_credit(
517; THRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <4 x float> [[A:%.*]], [[B:%.*]]
518; THRESHOLD-NEXT:    ret <4 x float> [[TMP1]]
519;
520; NOTHRESHOLD-LABEL: @take_credit(
521; NOTHRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <4 x float> [[A:%.*]], [[B:%.*]]
522; NOTHRESHOLD-NEXT:    ret <4 x float> [[TMP1]]
523;
524; MINTREESIZE-LABEL: @take_credit(
525; MINTREESIZE-NEXT:    [[TMP1:%.*]] = extractelement <4 x float> [[B:%.*]], i32 3
526; MINTREESIZE-NEXT:    [[TMP2:%.*]] = extractelement <4 x float> [[B]], i32 2
527; MINTREESIZE-NEXT:    [[TMP3:%.*]] = extractelement <4 x float> [[B]], i32 1
528; MINTREESIZE-NEXT:    [[TMP4:%.*]] = extractelement <4 x float> [[B]], i32 0
529; MINTREESIZE-NEXT:    [[TMP5:%.*]] = extractelement <4 x float> [[A:%.*]], i32 3
530; MINTREESIZE-NEXT:    [[TMP6:%.*]] = extractelement <4 x float> [[A]], i32 2
531; MINTREESIZE-NEXT:    [[TMP7:%.*]] = extractelement <4 x float> [[A]], i32 1
532; MINTREESIZE-NEXT:    [[TMP8:%.*]] = extractelement <4 x float> [[A]], i32 0
533; MINTREESIZE-NEXT:    [[TMP9:%.*]] = insertelement <2 x float> poison, float [[TMP8]], i32 0
534; MINTREESIZE-NEXT:    [[TMP10:%.*]] = insertelement <2 x float> [[TMP9]], float [[TMP4]], i32 1
535; MINTREESIZE-NEXT:    [[TMP11:%.*]] = insertelement <2 x float> poison, float [[TMP7]], i32 0
536; MINTREESIZE-NEXT:    [[TMP12:%.*]] = insertelement <2 x float> [[TMP11]], float [[TMP3]], i32 1
537; MINTREESIZE-NEXT:    [[TMP13:%.*]] = insertelement <2 x float> poison, float [[TMP6]], i32 0
538; MINTREESIZE-NEXT:    [[TMP14:%.*]] = insertelement <2 x float> [[TMP13]], float [[TMP2]], i32 1
539; MINTREESIZE-NEXT:    [[TMP15:%.*]] = insertelement <2 x float> poison, float [[TMP5]], i32 0
540; MINTREESIZE-NEXT:    [[TMP16:%.*]] = insertelement <2 x float> [[TMP15]], float [[TMP1]], i32 1
541; MINTREESIZE-NEXT:    [[TMP17:%.*]] = fadd <4 x float> [[A]], [[B]]
542; MINTREESIZE-NEXT:    ret <4 x float> [[TMP17]]
543;
544  %a0 = extractelement <4 x float> %a, i32 0
545  %b0 = extractelement <4 x float> %b, i32 0
546  %c0 = fadd float %a0, %b0
547  %a1 = extractelement <4 x float> %a, i32 1
548  %b1 = extractelement <4 x float> %b, i32 1
549  %c1 = fadd float %a1, %b1
550  %a2 = extractelement <4 x float> %a, i32 2
551  %b2 = extractelement <4 x float> %b, i32 2
552  %c2 = fadd float %a2, %b2
553  %a3 = extractelement <4 x float> %a, i32 3
554  %b3 = extractelement <4 x float> %b, i32 3
555  %c3 = fadd float %a3, %b3
556  %v0 = insertelement <4 x float> undef, float %c0, i32 0
557  %v1 = insertelement <4 x float> %v0, float %c1, i32 1
558  %v2 = insertelement <4 x float> %v1, float %c2, i32 2
559  %v3 = insertelement <4 x float> %v2, float %c3, i32 3
560  ret <4 x float> %v3
561}
562
563; Make sure we handle multiple trees that feed one build vector correctly.
564define <4 x double> @multi_tree(double %w, double %x, double %y, double %z) {
565; CHECK-LABEL: @multi_tree(
566; CHECK-NEXT:    [[TMP1:%.*]] = insertelement <4 x double> poison, double [[Z:%.*]], i32 0
567; CHECK-NEXT:    [[TMP2:%.*]] = insertelement <4 x double> [[TMP1]], double [[Y:%.*]], i32 1
568; CHECK-NEXT:    [[TMP3:%.*]] = insertelement <4 x double> [[TMP2]], double [[X:%.*]], i32 2
569; CHECK-NEXT:    [[TMP4:%.*]] = insertelement <4 x double> [[TMP3]], double [[W:%.*]], i32 3
570; CHECK-NEXT:    [[TMP5:%.*]] = fadd <4 x double> [[TMP4]], <double 3.000000e+00, double 2.000000e+00, double 1.000000e+00, double 0.000000e+00>
571; CHECK-NEXT:    [[TMP6:%.*]] = fmul <4 x double> [[TMP5]], <double 1.000000e+00, double 1.000000e+00, double 1.000000e+00, double 1.000000e+00>
572; CHECK-NEXT:    ret <4 x double> [[TMP6]]
573;
574  %t0 = fadd double %w , 0.000000e+00
575  %t1 = fadd double %x , 1.000000e+00
576  %t2 = fadd double %y , 2.000000e+00
577  %t3 = fadd double %z , 3.000000e+00
578  %t4 = fmul double %t0, 1.000000e+00
579  %i1 = insertelement <4 x double> undef, double %t4, i32 3
580  %t5 = fmul double %t1, 1.000000e+00
581  %i2 = insertelement <4 x double> %i1, double %t5, i32 2
582  %t6 = fmul double %t2, 1.000000e+00
583  %i3 = insertelement <4 x double> %i2, double %t6, i32 1
584  %t7 = fmul double %t3, 1.000000e+00
585  %i4 = insertelement <4 x double> %i3, double %t7, i32 0
586  ret <4 x double> %i4
587}
588
589define <8 x float> @_vadd256(<8 x float> %a, <8 x float> %b) local_unnamed_addr #0 {
590; THRESHOLD-LABEL: @_vadd256(
591; THRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <8 x float> [[A:%.*]], [[B:%.*]]
592; THRESHOLD-NEXT:    ret <8 x float> [[TMP1]]
593;
594; NOTHRESHOLD-LABEL: @_vadd256(
595; NOTHRESHOLD-NEXT:    [[TMP1:%.*]] = fadd <8 x float> [[A:%.*]], [[B:%.*]]
596; NOTHRESHOLD-NEXT:    ret <8 x float> [[TMP1]]
597;
598; MINTREESIZE-LABEL: @_vadd256(
599; MINTREESIZE-NEXT:    [[TMP1:%.*]] = extractelement <8 x float> [[B:%.*]], i32 7
600; MINTREESIZE-NEXT:    [[TMP2:%.*]] = extractelement <8 x float> [[B]], i32 6
601; MINTREESIZE-NEXT:    [[TMP3:%.*]] = extractelement <8 x float> [[B]], i32 5
602; MINTREESIZE-NEXT:    [[TMP4:%.*]] = extractelement <8 x float> [[B]], i32 4
603; MINTREESIZE-NEXT:    [[TMP5:%.*]] = extractelement <8 x float> [[B]], i32 3
604; MINTREESIZE-NEXT:    [[TMP6:%.*]] = extractelement <8 x float> [[B]], i32 2
605; MINTREESIZE-NEXT:    [[TMP7:%.*]] = extractelement <8 x float> [[B]], i32 1
606; MINTREESIZE-NEXT:    [[TMP8:%.*]] = extractelement <8 x float> [[B]], i32 0
607; MINTREESIZE-NEXT:    [[TMP9:%.*]] = extractelement <8 x float> [[A:%.*]], i32 7
608; MINTREESIZE-NEXT:    [[TMP10:%.*]] = extractelement <8 x float> [[A]], i32 6
609; MINTREESIZE-NEXT:    [[TMP11:%.*]] = extractelement <8 x float> [[A]], i32 5
610; MINTREESIZE-NEXT:    [[TMP12:%.*]] = extractelement <8 x float> [[A]], i32 4
611; MINTREESIZE-NEXT:    [[TMP13:%.*]] = extractelement <8 x float> [[A]], i32 3
612; MINTREESIZE-NEXT:    [[TMP14:%.*]] = extractelement <8 x float> [[A]], i32 2
613; MINTREESIZE-NEXT:    [[TMP15:%.*]] = extractelement <8 x float> [[A]], i32 1
614; MINTREESIZE-NEXT:    [[TMP16:%.*]] = extractelement <8 x float> [[A]], i32 0
615; MINTREESIZE-NEXT:    [[TMP17:%.*]] = insertelement <2 x float> poison, float [[TMP16]], i32 0
616; MINTREESIZE-NEXT:    [[TMP18:%.*]] = insertelement <2 x float> [[TMP17]], float [[TMP8]], i32 1
617; MINTREESIZE-NEXT:    [[TMP19:%.*]] = insertelement <2 x float> poison, float [[TMP15]], i32 0
618; MINTREESIZE-NEXT:    [[TMP20:%.*]] = insertelement <2 x float> [[TMP19]], float [[TMP7]], i32 1
619; MINTREESIZE-NEXT:    [[TMP21:%.*]] = insertelement <2 x float> poison, float [[TMP14]], i32 0
620; MINTREESIZE-NEXT:    [[TMP22:%.*]] = insertelement <2 x float> [[TMP21]], float [[TMP6]], i32 1
621; MINTREESIZE-NEXT:    [[TMP23:%.*]] = insertelement <2 x float> poison, float [[TMP13]], i32 0
622; MINTREESIZE-NEXT:    [[TMP24:%.*]] = insertelement <2 x float> [[TMP23]], float [[TMP5]], i32 1
623; MINTREESIZE-NEXT:    [[TMP25:%.*]] = insertelement <2 x float> poison, float [[TMP12]], i32 0
624; MINTREESIZE-NEXT:    [[TMP26:%.*]] = insertelement <2 x float> [[TMP25]], float [[TMP4]], i32 1
625; MINTREESIZE-NEXT:    [[TMP27:%.*]] = insertelement <2 x float> poison, float [[TMP11]], i32 0
626; MINTREESIZE-NEXT:    [[TMP28:%.*]] = insertelement <2 x float> [[TMP27]], float [[TMP3]], i32 1
627; MINTREESIZE-NEXT:    [[TMP29:%.*]] = insertelement <2 x float> poison, float [[TMP10]], i32 0
628; MINTREESIZE-NEXT:    [[TMP30:%.*]] = insertelement <2 x float> [[TMP29]], float [[TMP2]], i32 1
629; MINTREESIZE-NEXT:    [[TMP31:%.*]] = insertelement <2 x float> poison, float [[TMP9]], i32 0
630; MINTREESIZE-NEXT:    [[TMP32:%.*]] = insertelement <2 x float> [[TMP31]], float [[TMP1]], i32 1
631; MINTREESIZE-NEXT:    [[TMP33:%.*]] = fadd <8 x float> [[A]], [[B]]
632; MINTREESIZE-NEXT:    ret <8 x float> [[TMP33]]
633;
634  %vecext = extractelement <8 x float> %a, i32 0
635  %vecext1 = extractelement <8 x float> %b, i32 0
636  %add = fadd float %vecext, %vecext1
637  %vecext2 = extractelement <8 x float> %a, i32 1
638  %vecext3 = extractelement <8 x float> %b, i32 1
639  %add4 = fadd float %vecext2, %vecext3
640  %vecext5 = extractelement <8 x float> %a, i32 2
641  %vecext6 = extractelement <8 x float> %b, i32 2
642  %add7 = fadd float %vecext5, %vecext6
643  %vecext8 = extractelement <8 x float> %a, i32 3
644  %vecext9 = extractelement <8 x float> %b, i32 3
645  %add10 = fadd float %vecext8, %vecext9
646  %vecext11 = extractelement <8 x float> %a, i32 4
647  %vecext12 = extractelement <8 x float> %b, i32 4
648  %add13 = fadd float %vecext11, %vecext12
649  %vecext14 = extractelement <8 x float> %a, i32 5
650  %vecext15 = extractelement <8 x float> %b, i32 5
651  %add16 = fadd float %vecext14, %vecext15
652  %vecext17 = extractelement <8 x float> %a, i32 6
653  %vecext18 = extractelement <8 x float> %b, i32 6
654  %add19 = fadd float %vecext17, %vecext18
655  %vecext20 = extractelement <8 x float> %a, i32 7
656  %vecext21 = extractelement <8 x float> %b, i32 7
657  %add22 = fadd float %vecext20, %vecext21
658  %vecinit.i = insertelement <8 x float> undef, float %add, i32 0
659  %vecinit1.i = insertelement <8 x float> %vecinit.i, float %add4, i32 1
660  %vecinit2.i = insertelement <8 x float> %vecinit1.i, float %add7, i32 2
661  %vecinit3.i = insertelement <8 x float> %vecinit2.i, float %add10, i32 3
662  %vecinit4.i = insertelement <8 x float> %vecinit3.i, float %add13, i32 4
663  %vecinit5.i = insertelement <8 x float> %vecinit4.i, float %add16, i32 5
664  %vecinit6.i = insertelement <8 x float> %vecinit5.i, float %add19, i32 6
665  %vecinit7.i = insertelement <8 x float> %vecinit6.i, float %add22, i32 7
666  ret <8 x float> %vecinit7.i
667}
668
669attributes #0 = { nounwind ssp uwtable "less-precise-fpmad"="false" "frame-pointer"="all" "no-infs-fp-math"="false" "no-nans-fp-math"="false" "stack-protector-buffer-size"="8" "unsafe-fp-math"="false" "use-soft-float"="false" }
670