1 ; RUN: opt %s -passes='function(scalarizer,dce)' -scalarize-load-store -S | FileCheck %s
2 target 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-f80:128:128-n8:16:32:64-S128"
4 declare <4 x float> @ext(<4 x float>)
5 @g = global <4 x float> zeroinitializer
7 define void @f1(<4 x float> %init, <4 x float> *%base, i32 %count) {
10 ; CHECK: %init.i0 = extractelement <4 x float> %init, i32 0
11 ; CHECK: %init.i1 = extractelement <4 x float> %init, i32 1
12 ; CHECK: %init.i2 = extractelement <4 x float> %init, i32 2
13 ; CHECK: %init.i3 = extractelement <4 x float> %init, i32 3
14 ; CHECK: br label %loop
16 ; CHECK: %i = phi i32 [ %count, %entry ], [ %nexti, %loop ]
17 ; CHECK: %acc.i0 = phi float [ %init.i0, %entry ], [ %sel.i0, %loop ]
18 ; CHECK: %acc.i1 = phi float [ %init.i1, %entry ], [ %sel.i1, %loop ]
19 ; CHECK: %acc.i2 = phi float [ %init.i2, %entry ], [ %sel.i2, %loop ]
20 ; CHECK: %acc.i3 = phi float [ %init.i3, %entry ], [ %sel.i3, %loop ]
21 ; CHECK: %nexti = sub i32 %i, 1
22 ; CHECK: %ptr = getelementptr <4 x float>, <4 x float>* %base, i32 %i
23 ; CHECK: %ptr.i0 = bitcast <4 x float>* %ptr to float*
24 ; CHECK: %val.i0 = load float, float* %ptr.i0, align 16
25 ; CHECK: %ptr.i1 = getelementptr float, float* %ptr.i0, i32 1
26 ; CHECK: %val.i1 = load float, float* %ptr.i1, align 4
27 ; CHECK: %ptr.i2 = getelementptr float, float* %ptr.i0, i32 2
28 ; CHECK: %val.i2 = load float, float* %ptr.i2, align 8
29 ; CHECK: %ptr.i3 = getelementptr float, float* %ptr.i0, i32 3
30 ; CHECK: %val.i3 = load float, float* %ptr.i3, align 4
31 ; CHECK: %add.i0 = fadd float %val.i0, %val.i2
32 ; CHECK: %add.i1 = fadd float %val.i1, %val.i3
33 ; CHECK: %add.i2 = fadd float %acc.i0, %acc.i2
34 ; CHECK: %add.i3 = fadd float %acc.i1, %acc.i3
35 ; CHECK: %add.upto0 = insertelement <4 x float> poison, float %add.i0, i32 0
36 ; CHECK: %add.upto1 = insertelement <4 x float> %add.upto0, float %add.i1, i32 1
37 ; CHECK: %add.upto2 = insertelement <4 x float> %add.upto1, float %add.i2, i32 2
38 ; CHECK: %add = insertelement <4 x float> %add.upto2, float %add.i3, i32 3
39 ; CHECK: %call = call <4 x float> @ext(<4 x float> %add)
40 ; CHECK: %call.i0 = extractelement <4 x float> %call, i32 0
41 ; CHECK: %cmp.i0 = fcmp ogt float %call.i0, 1.0
42 ; CHECK: %call.i1 = extractelement <4 x float> %call, i32 1
43 ; CHECK: %cmp.i1 = fcmp ogt float %call.i1, 2.0
44 ; CHECK: %call.i2 = extractelement <4 x float> %call, i32 2
45 ; CHECK: %cmp.i2 = fcmp ogt float %call.i2, 3.0
46 ; CHECK: %call.i3 = extractelement <4 x float> %call, i32 3
47 ; CHECK: %cmp.i3 = fcmp ogt float %call.i3, 4.0
48 ; CHECK: %sel.i0 = select i1 %cmp.i0, float %call.i0, float 5.0
49 ; CHECK: %sel.i1 = select i1 %cmp.i1, float %call.i1, float 6.0
50 ; CHECK: %sel.i2 = select i1 %cmp.i2, float %call.i2, float 7.0
51 ; CHECK: %sel.i3 = select i1 %cmp.i3, float %call.i3, float 8.0
52 ; CHECK: store float %sel.i0, float* %ptr.i0
53 ; CHECK: store float %sel.i1, float* %ptr.i1
54 ; CHECK: store float %sel.i2, float* %ptr.i2
55 ; CHECK: store float %sel.i3, float* %ptr.i3
56 ; CHECK: %test = icmp eq i32 %nexti, 0
57 ; CHECK: br i1 %test, label %loop, label %exit
64 %i = phi i32 [ %count, %entry ], [ %nexti, %loop ]
65 %acc = phi <4 x float> [ %init, %entry ], [ %sel, %loop ]
66 %nexti = sub i32 %i, 1
68 %ptr = getelementptr <4 x float>, <4 x float> *%base, i32 %i
69 %val = load <4 x float> , <4 x float> *%ptr
70 %dval = bitcast <4 x float> %val to <2 x double>
71 %dacc = bitcast <4 x float> %acc to <2 x double>
72 %shuffle1 = shufflevector <2 x double> %dval, <2 x double> %dacc,
73 <2 x i32> <i32 0, i32 2>
74 %shuffle2 = shufflevector <2 x double> %dval, <2 x double> %dacc,
75 <2 x i32> <i32 1, i32 3>
76 %f1 = bitcast <2 x double> %shuffle1 to <4 x float>
77 %f2 = bitcast <2 x double> %shuffle2 to <4 x float>
78 %add = fadd <4 x float> %f1, %f2
79 %call = call <4 x float> @ext(<4 x float> %add)
80 %cmp = fcmp ogt <4 x float> %call,
81 <float 1.0, float 2.0, float 3.0, float 4.0>
82 %sel = select <4 x i1> %cmp, <4 x float> %call,
83 <4 x float> <float 5.0, float 6.0, float 7.0, float 8.0>
84 store <4 x float> %sel, <4 x float> *%ptr
86 %test = icmp eq i32 %nexti, 0
87 br i1 %test, label %loop, label %exit
93 define void @f2(<4 x i32> %init, <4 x i8> *%base, i32 %count) {
94 ; CHECK-LABEL: define void @f2(<4 x i32> %init, <4 x i8>* %base, i32 %count) {
96 ; CHECK: %init.i0 = extractelement <4 x i32> %init, i32 0
97 ; CHECK: %init.i1 = extractelement <4 x i32> %init, i32 1
98 ; CHECK: %init.i2 = extractelement <4 x i32> %init, i32 2
99 ; CHECK: %init.i3 = extractelement <4 x i32> %init, i32 3
100 ; CHECK: br label %loop
102 ; CHECK: %i = phi i32 [ %count, %entry ], [ %nexti, %loop ]
103 ; CHECK: %acc.i0 = phi i32 [ %init.i0, %entry ], [ %sel.i0, %loop ]
104 ; CHECK: %acc.i1 = phi i32 [ %init.i1, %entry ], [ %sel.i1, %loop ]
105 ; CHECK: %acc.i2 = phi i32 [ %init.i2, %entry ], [ %sel.i2, %loop ]
106 ; CHECK: %acc.i3 = phi i32 [ %init.i3, %entry ], [ %sel.i3, %loop ]
107 ; CHECK: %nexti = sub i32 %i, 1
108 ; CHECK: %ptr = getelementptr <4 x i8>, <4 x i8>* %base, i32 %i
109 ; CHECK: %ptr.i0 = bitcast <4 x i8>* %ptr to i8*
110 ; CHECK: %val.i0 = load i8, i8* %ptr.i0, align 4
111 ; CHECK: %ptr.i1 = getelementptr i8, i8* %ptr.i0, i32 1
112 ; CHECK: %val.i1 = load i8, i8* %ptr.i1, align 1
113 ; CHECK: %ptr.i2 = getelementptr i8, i8* %ptr.i0, i32 2
114 ; CHECK: %val.i2 = load i8, i8* %ptr.i2, align 2
115 ; CHECK: %ptr.i3 = getelementptr i8, i8* %ptr.i0, i32 3
116 ; CHECK: %val.i3 = load i8, i8* %ptr.i3, align 1
117 ; CHECK: %ext.i0 = sext i8 %val.i0 to i32
118 ; CHECK: %ext.i1 = sext i8 %val.i1 to i32
119 ; CHECK: %ext.i2 = sext i8 %val.i2 to i32
120 ; CHECK: %ext.i3 = sext i8 %val.i3 to i32
121 ; CHECK: %add.i0 = add i32 %ext.i0, %acc.i0
122 ; CHECK: %add.i1 = add i32 %ext.i1, %acc.i1
123 ; CHECK: %add.i2 = add i32 %ext.i2, %acc.i2
124 ; CHECK: %add.i3 = add i32 %ext.i3, %acc.i3
125 ; CHECK: %cmp.i0 = icmp slt i32 %add.i0, -10
126 ; CHECK: %cmp.i1 = icmp slt i32 %add.i1, -11
127 ; CHECK: %cmp.i2 = icmp slt i32 %add.i2, -12
128 ; CHECK: %cmp.i3 = icmp slt i32 %add.i3, -13
129 ; CHECK: %sel.i0 = select i1 %cmp.i0, i32 %add.i0, i32 %i
130 ; CHECK: %sel.i1 = select i1 %cmp.i1, i32 %add.i1, i32 %i
131 ; CHECK: %sel.i2 = select i1 %cmp.i2, i32 %add.i2, i32 %i
132 ; CHECK: %sel.i3 = select i1 %cmp.i3, i32 %add.i3, i32 %i
133 ; CHECK: %trunc.i0 = trunc i32 %sel.i0 to i8
134 ; CHECK: %trunc.i1 = trunc i32 %sel.i1 to i8
135 ; CHECK: %trunc.i2 = trunc i32 %sel.i2 to i8
136 ; CHECK: %trunc.i3 = trunc i32 %sel.i3 to i8
137 ; CHECK: store i8 %trunc.i0, i8* %ptr.i0, align 4
138 ; CHECK: store i8 %trunc.i1, i8* %ptr.i1, align 1
139 ; CHECK: store i8 %trunc.i2, i8* %ptr.i2, align 2
140 ; CHECK: store i8 %trunc.i3, i8* %ptr.i3, align 1
141 ; CHECK: %test = icmp eq i32 %nexti, 0
142 ; CHECK: br i1 %test, label %loop, label %exit
149 %i = phi i32 [ %count, %entry ], [ %nexti, %loop ]
150 %acc = phi <4 x i32> [ %init, %entry ], [ %sel, %loop ]
151 %nexti = sub i32 %i, 1
153 %ptr = getelementptr <4 x i8>, <4 x i8> *%base, i32 %i
154 %val = load <4 x i8> , <4 x i8> *%ptr
155 %ext = sext <4 x i8> %val to <4 x i32>
156 %add = add <4 x i32> %ext, %acc
157 %cmp = icmp slt <4 x i32> %add, <i32 -10, i32 -11, i32 -12, i32 -13>
158 %single = insertelement <4 x i32> poison, i32 %i, i32 0
159 %limit = shufflevector <4 x i32> %single, <4 x i32> poison,
160 <4 x i32> zeroinitializer
161 %sel = select <4 x i1> %cmp, <4 x i32> %add, <4 x i32> %limit
162 %trunc = trunc <4 x i32> %sel to <4 x i8>
163 store <4 x i8> %trunc, <4 x i8> *%ptr
165 %test = icmp eq i32 %nexti, 0
166 br i1 %test, label %loop, label %exit
172 ; Check that !tbaa information is preserved.
173 define void @f3(<4 x i32> *%src, <4 x i32> *%dst) {
175 ; CHECK: %val.i0 = load i32, i32* %src.i0, align 16, !tbaa ![[TAG:[0-9]*]]
176 ; CHECK: %val.i1 = load i32, i32* %src.i1, align 4, !tbaa ![[TAG]]
177 ; CHECK: %val.i2 = load i32, i32* %src.i2, align 8, !tbaa ![[TAG]]
178 ; CHECK: %val.i3 = load i32, i32* %src.i3, align 4, !tbaa ![[TAG]]
179 ; CHECK: store i32 %add.i0, i32* %dst.i0, align 16, !tbaa ![[TAG:[0-9]*]]
180 ; CHECK: store i32 %add.i1, i32* %dst.i1, align 4, !tbaa ![[TAG]]
181 ; CHECK: store i32 %add.i2, i32* %dst.i2, align 8, !tbaa ![[TAG]]
182 ; CHECK: store i32 %add.i3, i32* %dst.i3, align 4, !tbaa ![[TAG]]
184 %val = load <4 x i32> , <4 x i32> *%src, !tbaa !1
185 %add = add <4 x i32> %val, %val
186 store <4 x i32> %add, <4 x i32> *%dst, !tbaa !2
190 ; Check that !tbaa.struct information is preserved.
191 define void @f4(<4 x i32> *%src, <4 x i32> *%dst) {
193 ; CHECK: %val.i0 = load i32, i32* %src.i0, align 16, !tbaa.struct ![[TAG:[0-9]*]]
194 ; CHECK: %val.i1 = load i32, i32* %src.i1, align 4, !tbaa.struct ![[TAG]]
195 ; CHECK: %val.i2 = load i32, i32* %src.i2, align 8, !tbaa.struct ![[TAG]]
196 ; CHECK: %val.i3 = load i32, i32* %src.i3, align 4, !tbaa.struct ![[TAG]]
197 ; CHECK: store i32 %add.i0, i32* %dst.i0, align 16, !tbaa.struct ![[TAG]]
198 ; CHECK: store i32 %add.i1, i32* %dst.i1, align 4, !tbaa.struct ![[TAG]]
199 ; CHECK: store i32 %add.i2, i32* %dst.i2, align 8, !tbaa.struct ![[TAG]]
200 ; CHECK: store i32 %add.i3, i32* %dst.i3, align 4, !tbaa.struct ![[TAG]]
202 %val = load <4 x i32> , <4 x i32> *%src, !tbaa.struct !5
203 %add = add <4 x i32> %val, %val
204 store <4 x i32> %add, <4 x i32> *%dst, !tbaa.struct !5
208 ; Check that llvm.access.group information is preserved.
209 define void @f5(i32 %count, <4 x i32> *%src, <4 x i32> *%dst) {
211 ; CHECK: %val.i0 = load i32, i32* %this_src.i0, align 16, !llvm.access.group ![[TAG:[0-9]*]]
212 ; CHECK: %val.i1 = load i32, i32* %this_src.i1, align 4, !llvm.access.group ![[TAG]]
213 ; CHECK: %val.i2 = load i32, i32* %this_src.i2, align 8, !llvm.access.group ![[TAG]]
214 ; CHECK: %val.i3 = load i32, i32* %this_src.i3, align 4, !llvm.access.group ![[TAG]]
215 ; CHECK: store i32 %add.i0, i32* %this_dst.i0, align 16, !llvm.access.group ![[TAG]]
216 ; CHECK: store i32 %add.i1, i32* %this_dst.i1, align 4, !llvm.access.group ![[TAG]]
217 ; CHECK: store i32 %add.i2, i32* %this_dst.i2, align 8, !llvm.access.group ![[TAG]]
218 ; CHECK: store i32 %add.i3, i32* %this_dst.i3, align 4, !llvm.access.group ![[TAG]]
224 %index = phi i32 [ 0, %entry ], [ %next_index, %loop ]
225 %this_src = getelementptr <4 x i32>, <4 x i32> *%src, i32 %index
226 %this_dst = getelementptr <4 x i32>, <4 x i32> *%dst, i32 %index
227 %val = load <4 x i32> , <4 x i32> *%this_src, !llvm.access.group !13
228 %add = add <4 x i32> %val, %val
229 store <4 x i32> %add, <4 x i32> *%this_dst, !llvm.access.group !13
230 %next_index = add i32 %index, -1
231 %continue = icmp ne i32 %next_index, %count
232 br i1 %continue, label %loop, label %end, !llvm.loop !3
238 ; Check that fpmath information is preserved.
239 define <4 x float> @f6(<4 x float> %x) {
241 ; CHECK: %x.i0 = extractelement <4 x float> %x, i32 0
242 ; CHECK: %res.i0 = fadd float %x.i0, 1.0{{[e+0]*}}, !fpmath ![[TAG:[0-9]*]]
243 ; CHECK: %x.i1 = extractelement <4 x float> %x, i32 1
244 ; CHECK: %res.i1 = fadd float %x.i1, 2.0{{[e+0]*}}, !fpmath ![[TAG]]
245 ; CHECK: %x.i2 = extractelement <4 x float> %x, i32 2
246 ; CHECK: %res.i2 = fadd float %x.i2, 3.0{{[e+0]*}}, !fpmath ![[TAG]]
247 ; CHECK: %x.i3 = extractelement <4 x float> %x, i32 3
248 ; CHECK: %res.i3 = fadd float %x.i3, 4.0{{[e+0]*}}, !fpmath ![[TAG]]
249 ; CHECK: %res.upto0 = insertelement <4 x float> poison, float %res.i0, i32 0
250 ; CHECK: %res.upto1 = insertelement <4 x float> %res.upto0, float %res.i1, i32 1
251 ; CHECK: %res.upto2 = insertelement <4 x float> %res.upto1, float %res.i2, i32 2
252 ; CHECK: %res = insertelement <4 x float> %res.upto2, float %res.i3, i32 3
253 ; CHECK: ret <4 x float> %res
254 %res = fadd <4 x float> %x, <float 1.0, float 2.0, float 3.0, float 4.0>,
259 ; Check that random metadata isn't kept.
260 define void @f7(<4 x i32> *%src, <4 x i32> *%dst) {
264 %val = load <4 x i32> , <4 x i32> *%src, !foo !5
265 %add = add <4 x i32> %val, %val
266 store <4 x i32> %add, <4 x i32> *%dst, !foo !5
270 ; Test GEP with vectors.
271 define void @f8(<4 x float *> *%dest, <4 x float *> %ptr0, <4 x i32> %i0,
274 ; CHECK: %dest.i0 = bitcast <4 x float*>* %dest to float**
275 ; CHECK: %dest.i1 = getelementptr float*, float** %dest.i0, i32 1
276 ; CHECK: %dest.i2 = getelementptr float*, float** %dest.i0, i32 2
277 ; CHECK: %dest.i3 = getelementptr float*, float** %dest.i0, i32 3
278 ; CHECK: %ptr0.i0 = extractelement <4 x float*> %ptr0, i32 0
279 ; CHECK: %ptr0.i2 = extractelement <4 x float*> %ptr0, i32 2
280 ; CHECK: %ptr0.i3 = extractelement <4 x float*> %ptr0, i32 3
281 ; CHECK: %i0.i1 = extractelement <4 x i32> %i0, i32 1
282 ; CHECK: %i0.i3 = extractelement <4 x i32> %i0, i32 3
283 ; CHECK: %val.i0 = getelementptr float, float* %ptr0.i0, i32 100
284 ; CHECK: %val.i1 = getelementptr float, float* %other, i32 %i0.i1
285 ; CHECK: %val.i2 = getelementptr float, float* %ptr0.i2, i32 100
286 ; CHECK: %val.i3 = getelementptr float, float* %ptr0.i3, i32 %i0.i3
287 ; CHECK: store float* %val.i0, float** %dest.i0, align 32
288 ; CHECK: store float* %val.i1, float** %dest.i1, align 8
289 ; CHECK: store float* %val.i2, float** %dest.i2, align 16
290 ; CHECK: store float* %val.i3, float** %dest.i3, align 8
292 %i1 = insertelement <4 x i32> %i0, i32 100, i32 0
293 %i2 = insertelement <4 x i32> %i1, i32 100, i32 2
294 %ptr1 = insertelement <4 x float *> %ptr0, float *%other, i32 1
295 %val = getelementptr float, <4 x float *> %ptr1, <4 x i32> %i2
296 store <4 x float *> %val, <4 x float *> *%dest
300 ; Test the handling of unaligned loads.
301 define void @f9(<4 x float> *%dest, <4 x float> *%src) {
303 ; CHECK: %dest.i0 = bitcast <4 x float>* %dest to float*
304 ; CHECK: %dest.i1 = getelementptr float, float* %dest.i0, i32 1
305 ; CHECK: %dest.i2 = getelementptr float, float* %dest.i0, i32 2
306 ; CHECK: %dest.i3 = getelementptr float, float* %dest.i0, i32 3
307 ; CHECK: %src.i0 = bitcast <4 x float>* %src to float*
308 ; CHECK: %val.i0 = load float, float* %src.i0, align 4
309 ; CHECK: %src.i1 = getelementptr float, float* %src.i0, i32 1
310 ; CHECK: %val.i1 = load float, float* %src.i1, align 4
311 ; CHECK: %src.i2 = getelementptr float, float* %src.i0, i32 2
312 ; CHECK: %val.i2 = load float, float* %src.i2, align 4
313 ; CHECK: %src.i3 = getelementptr float, float* %src.i0, i32 3
314 ; CHECK: %val.i3 = load float, float* %src.i3, align 4
315 ; CHECK: store float %val.i0, float* %dest.i0, align 8
316 ; CHECK: store float %val.i1, float* %dest.i1, align 4
317 ; CHECK: store float %val.i2, float* %dest.i2, align 8
318 ; CHECK: store float %val.i3, float* %dest.i3, align 4
320 %val = load <4 x float> , <4 x float> *%src, align 4
321 store <4 x float> %val, <4 x float> *%dest, align 8
325 ; ...and again with subelement alignment.
326 define void @f10(<4 x float> *%dest, <4 x float> *%src) {
328 ; CHECK: %dest.i0 = bitcast <4 x float>* %dest to float*
329 ; CHECK: %dest.i1 = getelementptr float, float* %dest.i0, i32 1
330 ; CHECK: %dest.i2 = getelementptr float, float* %dest.i0, i32 2
331 ; CHECK: %dest.i3 = getelementptr float, float* %dest.i0, i32 3
332 ; CHECK: %src.i0 = bitcast <4 x float>* %src to float*
333 ; CHECK: %val.i0 = load float, float* %src.i0, align 1
334 ; CHECK: %src.i1 = getelementptr float, float* %src.i0, i32 1
335 ; CHECK: %val.i1 = load float, float* %src.i1, align 1
336 ; CHECK: %src.i2 = getelementptr float, float* %src.i0, i32 2
337 ; CHECK: %val.i2 = load float, float* %src.i2, align 1
338 ; CHECK: %src.i3 = getelementptr float, float* %src.i0, i32 3
339 ; CHECK: %val.i3 = load float, float* %src.i3, align 1
340 ; CHECK: store float %val.i0, float* %dest.i0, align 2
341 ; CHECK: store float %val.i1, float* %dest.i1, align 2
342 ; CHECK: store float %val.i2, float* %dest.i2, align 2
343 ; CHECK: store float %val.i3, float* %dest.i3, align 2
345 %val = load <4 x float> , <4 x float> *%src, align 1
346 store <4 x float> %val, <4 x float> *%dest, align 2
350 ; Test that sub-byte loads aren't scalarized.
351 define void @f11(<32 x i1> *%dest, <32 x i1> *%src0) {
353 ; CHECK: %val0 = load <32 x i1>, <32 x i1>* %src0
354 ; CHECK: %val1 = load <32 x i1>, <32 x i1>* %src1
355 ; CHECK: store <32 x i1> %and, <32 x i1>* %dest
357 %src1 = getelementptr <32 x i1>, <32 x i1> *%src0, i32 1
358 %val0 = load <32 x i1> , <32 x i1> *%src0
359 %val1 = load <32 x i1> , <32 x i1> *%src1
360 %and = and <32 x i1> %val0, %val1
361 store <32 x i1> %and, <32 x i1> *%dest
365 ; Test vector GEPs with more than one index.
366 define void @f13(<4 x float *> *%dest, <4 x [4 x float] *> %ptr, <4 x i32> %i,
369 ; CHECK: %dest.i0 = bitcast <4 x float*>* %dest to float**
370 ; CHECK: %dest.i1 = getelementptr float*, float** %dest.i0, i32 1
371 ; CHECK: %dest.i2 = getelementptr float*, float** %dest.i0, i32 2
372 ; CHECK: %dest.i3 = getelementptr float*, float** %dest.i0, i32 3
373 ; CHECK: %i.i0 = extractelement <4 x i32> %i, i32 0
374 ; CHECK: %ptr.i0 = extractelement <4 x [4 x float]*> %ptr, i32 0
375 ; CHECK: %val.i0 = getelementptr inbounds [4 x float], [4 x float]* %ptr.i0, i32 0, i32 %i.i0
376 ; CHECK: %i.i1 = extractelement <4 x i32> %i, i32 1
377 ; CHECK: %ptr.i1 = extractelement <4 x [4 x float]*> %ptr, i32 1
378 ; CHECK: %val.i1 = getelementptr inbounds [4 x float], [4 x float]* %ptr.i1, i32 1, i32 %i.i1
379 ; CHECK: %i.i2 = extractelement <4 x i32> %i, i32 2
380 ; CHECK: %ptr.i2 = extractelement <4 x [4 x float]*> %ptr, i32 2
381 ; CHECK: %val.i2 = getelementptr inbounds [4 x float], [4 x float]* %ptr.i2, i32 2, i32 %i.i2
382 ; CHECK: %i.i3 = extractelement <4 x i32> %i, i32 3
383 ; CHECK: %ptr.i3 = extractelement <4 x [4 x float]*> %ptr, i32 3
384 ; CHECK: %val.i3 = getelementptr inbounds [4 x float], [4 x float]* %ptr.i3, i32 3, i32 %i.i3
385 ; CHECK: store float* %val.i0, float** %dest.i0, align 32
386 ; CHECK: store float* %val.i1, float** %dest.i1, align 8
387 ; CHECK: store float* %val.i2, float** %dest.i2, align 16
388 ; CHECK: store float* %val.i3, float** %dest.i3, align 8
390 %val = getelementptr inbounds [4 x float], <4 x [4 x float] *> %ptr,
391 <4 x i32> <i32 0, i32 1, i32 2, i32 3>,
393 store <4 x float *> %val, <4 x float *> *%dest
397 ; Test combinations of vector and non-vector PHIs.
398 define <4 x float> @f14(<4 x float> %acc, i32 %count) {
400 ; CHECK: %this_acc.i0 = phi float [ %acc.i0, %entry ], [ %next_acc.i0, %loop ]
401 ; CHECK: %this_acc.i1 = phi float [ %acc.i1, %entry ], [ %next_acc.i1, %loop ]
402 ; CHECK: %this_acc.i2 = phi float [ %acc.i2, %entry ], [ %next_acc.i2, %loop ]
403 ; CHECK: %this_acc.i3 = phi float [ %acc.i3, %entry ], [ %next_acc.i3, %loop ]
404 ; CHECK: %this_count = phi i32 [ %count, %entry ], [ %next_count, %loop ]
405 ; CHECK: %this_acc.upto0 = insertelement <4 x float> poison, float %this_acc.i0, i32 0
406 ; CHECK: %this_acc.upto1 = insertelement <4 x float> %this_acc.upto0, float %this_acc.i1, i32 1
407 ; CHECK: %this_acc.upto2 = insertelement <4 x float> %this_acc.upto1, float %this_acc.i2, i32 2
408 ; CHECK: %this_acc = insertelement <4 x float> %this_acc.upto2, float %this_acc.i3, i32 3
409 ; CHECK: ret <4 x float> %next_acc
414 %this_acc = phi <4 x float> [ %acc, %entry ], [ %next_acc, %loop ]
415 %this_count = phi i32 [ %count, %entry ], [ %next_count, %loop ]
416 %foo = call <4 x float> @ext(<4 x float> %this_acc)
417 %next_acc = fadd <4 x float> %this_acc, %foo
418 %next_count = sub i32 %this_count, 1
419 %cmp = icmp eq i32 %next_count, 0
420 br i1 %cmp, label %loop, label %exit
423 ret <4 x float> %next_acc
426 ; Test unary operator scalarization.
427 define void @f15(<4 x float> %init, <4 x float> *%base, i32 %count) {
429 ; CHECK: %ptr = getelementptr <4 x float>, <4 x float>* %base, i32 %i
430 ; CHECK: %ptr.i0 = bitcast <4 x float>* %ptr to float*
431 ; CHECK: %val.i0 = load float, float* %ptr.i0, align 16
432 ; CHECK: %ptr.i1 = getelementptr float, float* %ptr.i0, i32 1
433 ; CHECK: %val.i1 = load float, float* %ptr.i1, align 4
434 ; CHECK: %ptr.i2 = getelementptr float, float* %ptr.i0, i32 2
435 ; CHECK: %val.i2 = load float, float* %ptr.i2, align 8
436 ; CHECK: %ptr.i3 = getelementptr float, float* %ptr.i0, i32 3
437 ; CHECK: %val.i3 = load float, float* %ptr.i3, align 4
438 ; CHECK: %neg.i0 = fneg float %val.i0
439 ; CHECK: %neg.i1 = fneg float %val.i1
440 ; CHECK: %neg.i2 = fneg float %val.i2
441 ; CHECK: %neg.i3 = fneg float %val.i3
442 ; CHECK: %neg.upto0 = insertelement <4 x float> poison, float %neg.i0, i32 0
443 ; CHECK: %neg.upto1 = insertelement <4 x float> %neg.upto0, float %neg.i1, i32 1
444 ; CHECK: %neg.upto2 = insertelement <4 x float> %neg.upto1, float %neg.i2, i32 2
445 ; CHECK: %neg = insertelement <4 x float> %neg.upto2, float %neg.i3, i32 3
446 ; CHECK: %call = call <4 x float> @ext(<4 x float> %neg)
447 ; CHECK: %call.i0 = extractelement <4 x float> %call, i32 0
448 ; CHECK: %cmp.i0 = fcmp ogt float %call.i0, 1.000000e+00
449 ; CHECK: %call.i1 = extractelement <4 x float> %call, i32 1
450 ; CHECK: %cmp.i1 = fcmp ogt float %call.i1, 2.000000e+00
451 ; CHECK: %call.i2 = extractelement <4 x float> %call, i32 2
452 ; CHECK: %cmp.i2 = fcmp ogt float %call.i2, 3.000000e+00
453 ; CHECK: %call.i3 = extractelement <4 x float> %call, i32 3
454 ; CHECK: %cmp.i3 = fcmp ogt float %call.i3, 4.000000e+00
455 ; CHECK: %sel.i0 = select i1 %cmp.i0, float %call.i0, float 5.000000e+00
456 ; CHECK: %sel.i1 = select i1 %cmp.i1, float %call.i1, float 6.000000e+00
457 ; CHECK: %sel.i2 = select i1 %cmp.i2, float %call.i2, float 7.000000e+00
458 ; CHECK: %sel.i3 = select i1 %cmp.i3, float %call.i3, float 8.000000e+00
459 ; CHECK: store float %sel.i0, float* %ptr.i0, align 16
460 ; CHECK: store float %sel.i1, float* %ptr.i1, align 4
461 ; CHECK: store float %sel.i2, float* %ptr.i2, align 8
462 ; CHECK: store float %sel.i3, float* %ptr.i3, align 4
467 %i = phi i32 [ %count, %entry ], [ %nexti, %loop ]
468 %acc = phi <4 x float> [ %init, %entry ], [ %sel, %loop ]
469 %nexti = sub i32 %i, 1
471 %ptr = getelementptr <4 x float>, <4 x float> *%base, i32 %i
472 %val = load <4 x float> , <4 x float> *%ptr
473 %neg = fneg <4 x float> %val
474 %call = call <4 x float> @ext(<4 x float> %neg)
475 %cmp = fcmp ogt <4 x float> %call,
476 <float 1.0, float 2.0, float 3.0, float 4.0>
477 %sel = select <4 x i1> %cmp, <4 x float> %call,
478 <4 x float> <float 5.0, float 6.0, float 7.0, float 8.0>
479 store <4 x float> %sel, <4 x float> *%ptr
481 %test = icmp eq i32 %nexti, 0
482 br i1 %test, label %loop, label %exit
488 ; Check that IR flags are preserved.
489 define <2 x i32> @f16(<2 x i32> %i, <2 x i32> %j) {
491 ; CHECK: %res.i0 = add nuw nsw i32
492 ; CHECK: %res.i1 = add nuw nsw i32
493 %res = add nuw nsw <2 x i32> %i, %j
496 define <2 x i32> @f17(<2 x i32> %i, <2 x i32> %j) {
498 ; CHECK: %res.i0 = sdiv exact i32
499 ; CHECK: %res.i1 = sdiv exact i32
500 %res = sdiv exact <2 x i32> %i, %j
503 define <2 x float> @f18(<2 x float> %x, <2 x float> %y) {
505 ; CHECK: %res.i0 = fadd fast float
506 ; CHECK: %res.i1 = fadd fast float
507 %res = fadd fast <2 x float> %x, %y
510 define <2 x float> @f19(<2 x float> %x) {
512 ; CHECK: %res.i0 = fneg fast float
513 ; CHECK: %res.i1 = fneg fast float
514 %res = fneg fast <2 x float> %x
517 define <2 x i1> @f20(<2 x float> %x, <2 x float> %y) {
519 ; CHECK: %res.i0 = fcmp fast ogt float
520 ; CHECK: %res.i1 = fcmp fast ogt float
521 %res = fcmp fast ogt <2 x float> %x, %y
524 declare <2 x float> @llvm.sqrt.v2f32(<2 x float>)
525 define <2 x float> @f21(<2 x float> %x) {
527 ; CHECK: %res.i0 = call fast float @llvm.sqrt.f32
528 ; CHECK: %res.i1 = call fast float @llvm.sqrt.f32
529 %res = call fast <2 x float> @llvm.sqrt.v2f32(<2 x float> %x)
532 declare <2 x float> @llvm.fma.v2f32(<2 x float>, <2 x float>, <2 x float>)
533 define <2 x float> @f22(<2 x float> %x, <2 x float> %y, <2 x float> %z) {
535 ; CHECK: %res.i0 = call fast float @llvm.fma.f32
536 ; CHECK: %res.i1 = call fast float @llvm.fma.f32
537 %res = call fast <2 x float> @llvm.fma.v2f32(<2 x float> %x, <2 x float> %y, <2 x float> %z)
541 ; See https://reviews.llvm.org/D83101#2133062
542 define <2 x i32> @f23_crash(<2 x i32> %srcvec, i32 %v1) {
543 ; CHECK-LABEL: @f23_crash(
544 ; CHECK: %v0 = extractelement <2 x i32> %srcvec, i32 0
545 ; CHECK: %t1.upto0 = insertelement <2 x i32> poison, i32 %v0, i32 0
546 ; CHECK: %t1 = insertelement <2 x i32> %t1.upto0, i32 %v1, i32 1
547 ; CHECK: ret <2 x i32> %t1
548 %v0 = extractelement <2 x i32> %srcvec, i32 0
549 %t0 = insertelement <2 x i32> poison, i32 %v0, i32 0
550 %t1 = insertelement <2 x i32> %t0, i32 %v1, i32 1
555 !1 = !{ !"set1", !0 }
556 !2 = !{ !"set2", !0 }
557 !3 = !{ !3, !{!"llvm.loop.parallel_accesses", !13} }
559 !5 = !{ i64 0, i64 8, null }