1; RUN: llc < %s -march=arm64 -aarch64-neon-syntax=apple | FileCheck %s
2
3
4define void @fcmltz_4s(<4 x float> %a, <4 x i16>* %p) nounwind {
5;CHECK-LABEL: fcmltz_4s:
6;CHECK: fcmlt.4s [[REG:v[0-9]+]], v0, #0
7;CHECK-NEXT: xtn.4h v[[REG_1:[0-9]+]], [[REG]]
8;CHECK-NEXT: str d[[REG_1]], [x0]
9;CHECK-NEXT: ret
10  %tmp = fcmp olt <4 x float> %a, zeroinitializer
11  %tmp2 = sext <4 x i1> %tmp to <4 x i16>
12  store <4 x i16> %tmp2, <4 x i16>* %p, align 8
13  ret void
14}
15
16define <2 x i32> @facge_2s(<2 x float>* %A, <2 x float>* %B) nounwind {
17;CHECK-LABEL: facge_2s:
18;CHECK: facge.2s
19	%tmp1 = load <2 x float>* %A
20	%tmp2 = load <2 x float>* %B
21	%tmp3 = call <2 x i32> @llvm.aarch64.neon.facge.v2i32.v2f32(<2 x float> %tmp1, <2 x float> %tmp2)
22	ret <2 x i32> %tmp3
23}
24
25define <4 x i32> @facge_4s(<4 x float>* %A, <4 x float>* %B) nounwind {
26;CHECK-LABEL: facge_4s:
27;CHECK: facge.4s
28	%tmp1 = load <4 x float>* %A
29	%tmp2 = load <4 x float>* %B
30	%tmp3 = call <4 x i32> @llvm.aarch64.neon.facge.v4i32.v4f32(<4 x float> %tmp1, <4 x float> %tmp2)
31	ret <4 x i32> %tmp3
32}
33
34define <2 x i64> @facge_2d(<2 x double>* %A, <2 x double>* %B) nounwind {
35;CHECK-LABEL: facge_2d:
36;CHECK: facge.2d
37	%tmp1 = load <2 x double>* %A
38	%tmp2 = load <2 x double>* %B
39	%tmp3 = call <2 x i64> @llvm.aarch64.neon.facge.v2i64.v2f64(<2 x double> %tmp1, <2 x double> %tmp2)
40	ret <2 x i64> %tmp3
41}
42
43declare <2 x i32> @llvm.aarch64.neon.facge.v2i32.v2f32(<2 x float>, <2 x float>) nounwind readnone
44declare <4 x i32> @llvm.aarch64.neon.facge.v4i32.v4f32(<4 x float>, <4 x float>) nounwind readnone
45declare <2 x i64> @llvm.aarch64.neon.facge.v2i64.v2f64(<2 x double>, <2 x double>) nounwind readnone
46
47define <2 x i32> @facgt_2s(<2 x float>* %A, <2 x float>* %B) nounwind {
48;CHECK-LABEL: facgt_2s:
49;CHECK: facgt.2s
50	%tmp1 = load <2 x float>* %A
51	%tmp2 = load <2 x float>* %B
52	%tmp3 = call <2 x i32> @llvm.aarch64.neon.facgt.v2i32.v2f32(<2 x float> %tmp1, <2 x float> %tmp2)
53	ret <2 x i32> %tmp3
54}
55
56define <4 x i32> @facgt_4s(<4 x float>* %A, <4 x float>* %B) nounwind {
57;CHECK-LABEL: facgt_4s:
58;CHECK: facgt.4s
59	%tmp1 = load <4 x float>* %A
60	%tmp2 = load <4 x float>* %B
61	%tmp3 = call <4 x i32> @llvm.aarch64.neon.facgt.v4i32.v4f32(<4 x float> %tmp1, <4 x float> %tmp2)
62	ret <4 x i32> %tmp3
63}
64
65define <2 x i64> @facgt_2d(<2 x double>* %A, <2 x double>* %B) nounwind {
66;CHECK-LABEL: facgt_2d:
67;CHECK: facgt.2d
68	%tmp1 = load <2 x double>* %A
69	%tmp2 = load <2 x double>* %B
70	%tmp3 = call <2 x i64> @llvm.aarch64.neon.facgt.v2i64.v2f64(<2 x double> %tmp1, <2 x double> %tmp2)
71	ret <2 x i64> %tmp3
72}
73
74declare <2 x i32> @llvm.aarch64.neon.facgt.v2i32.v2f32(<2 x float>, <2 x float>) nounwind readnone
75declare <4 x i32> @llvm.aarch64.neon.facgt.v4i32.v4f32(<4 x float>, <4 x float>) nounwind readnone
76declare <2 x i64> @llvm.aarch64.neon.facgt.v2i64.v2f64(<2 x double>, <2 x double>) nounwind readnone
77
78define i32 @facge_s(float %A, float %B) nounwind {
79; CHECK-LABEL: facge_s:
80; CHECK: facge {{s[0-9]+}}, s0, s1
81  %mask = call i32 @llvm.aarch64.neon.facge.i32.f32(float %A, float %B)
82  ret i32 %mask
83}
84
85define i64 @facge_d(double %A, double %B) nounwind {
86; CHECK-LABEL: facge_d:
87; CHECK: facge {{d[0-9]+}}, d0, d1
88  %mask = call i64 @llvm.aarch64.neon.facge.i64.f64(double %A, double %B)
89  ret i64 %mask
90}
91
92declare i64 @llvm.aarch64.neon.facge.i64.f64(double, double)
93declare i32 @llvm.aarch64.neon.facge.i32.f32(float, float)
94
95define i32 @facgt_s(float %A, float %B) nounwind {
96; CHECK-LABEL: facgt_s:
97; CHECK: facgt {{s[0-9]+}}, s0, s1
98  %mask = call i32 @llvm.aarch64.neon.facgt.i32.f32(float %A, float %B)
99  ret i32 %mask
100}
101
102define i64 @facgt_d(double %A, double %B) nounwind {
103; CHECK-LABEL: facgt_d:
104; CHECK: facgt {{d[0-9]+}}, d0, d1
105  %mask = call i64 @llvm.aarch64.neon.facgt.i64.f64(double %A, double %B)
106  ret i64 %mask
107}
108
109declare i64 @llvm.aarch64.neon.facgt.i64.f64(double, double)
110declare i32 @llvm.aarch64.neon.facgt.i32.f32(float, float)
111
112define <8 x i8> @cmtst_8b(<8 x i8>* %A, <8 x i8>* %B) nounwind {
113;CHECK-LABEL: cmtst_8b:
114;CHECK: cmtst.8b
115  %tmp1 = load <8 x i8>* %A
116  %tmp2 = load <8 x i8>* %B
117  %commonbits = and <8 x i8> %tmp1, %tmp2
118  %mask = icmp ne <8 x i8> %commonbits, zeroinitializer
119  %res = sext <8 x i1> %mask to <8 x i8>
120  ret <8 x i8> %res
121}
122
123define <16 x i8> @cmtst_16b(<16 x i8>* %A, <16 x i8>* %B) nounwind {
124;CHECK-LABEL: cmtst_16b:
125;CHECK: cmtst.16b
126  %tmp1 = load <16 x i8>* %A
127  %tmp2 = load <16 x i8>* %B
128  %commonbits = and <16 x i8> %tmp1, %tmp2
129  %mask = icmp ne <16 x i8> %commonbits, zeroinitializer
130  %res = sext <16 x i1> %mask to <16 x i8>
131  ret <16 x i8> %res
132}
133
134define <4 x i16> @cmtst_4h(<4 x i16>* %A, <4 x i16>* %B) nounwind {
135;CHECK-LABEL: cmtst_4h:
136;CHECK: cmtst.4h
137  %tmp1 = load <4 x i16>* %A
138  %tmp2 = load <4 x i16>* %B
139  %commonbits = and <4 x i16> %tmp1, %tmp2
140  %mask = icmp ne <4 x i16> %commonbits, zeroinitializer
141  %res = sext <4 x i1> %mask to <4 x i16>
142  ret <4 x i16> %res
143}
144
145define <8 x i16> @cmtst_8h(<8 x i16>* %A, <8 x i16>* %B) nounwind {
146;CHECK-LABEL: cmtst_8h:
147;CHECK: cmtst.8h
148  %tmp1 = load <8 x i16>* %A
149  %tmp2 = load <8 x i16>* %B
150  %commonbits = and <8 x i16> %tmp1, %tmp2
151  %mask = icmp ne <8 x i16> %commonbits, zeroinitializer
152  %res = sext <8 x i1> %mask to <8 x i16>
153  ret <8 x i16> %res
154}
155
156define <2 x i32> @cmtst_2s(<2 x i32>* %A, <2 x i32>* %B) nounwind {
157;CHECK-LABEL: cmtst_2s:
158;CHECK: cmtst.2s
159  %tmp1 = load <2 x i32>* %A
160  %tmp2 = load <2 x i32>* %B
161  %commonbits = and <2 x i32> %tmp1, %tmp2
162  %mask = icmp ne <2 x i32> %commonbits, zeroinitializer
163  %res = sext <2 x i1> %mask to <2 x i32>
164  ret <2 x i32> %res
165}
166
167define <4 x i32> @cmtst_4s(<4 x i32>* %A, <4 x i32>* %B) nounwind {
168;CHECK-LABEL: cmtst_4s:
169;CHECK: cmtst.4s
170  %tmp1 = load <4 x i32>* %A
171  %tmp2 = load <4 x i32>* %B
172  %commonbits = and <4 x i32> %tmp1, %tmp2
173  %mask = icmp ne <4 x i32> %commonbits, zeroinitializer
174  %res = sext <4 x i1> %mask to <4 x i32>
175  ret <4 x i32> %res
176}
177
178define <2 x i64> @cmtst_2d(<2 x i64>* %A, <2 x i64>* %B) nounwind {
179;CHECK-LABEL: cmtst_2d:
180;CHECK: cmtst.2d
181  %tmp1 = load <2 x i64>* %A
182  %tmp2 = load <2 x i64>* %B
183  %commonbits = and <2 x i64> %tmp1, %tmp2
184  %mask = icmp ne <2 x i64> %commonbits, zeroinitializer
185  %res = sext <2 x i1> %mask to <2 x i64>
186  ret <2 x i64> %res
187}
188
189define <1 x i64> @fcmeq_d(<1 x double> %A, <1 x double> %B) nounwind {
190; CHECK-LABEL: fcmeq_d:
191; CHECK: fcmeq {{d[0-9]+}}, d0, d1
192  %tst = fcmp oeq <1 x double> %A, %B
193  %mask = sext <1 x i1> %tst to <1 x i64>
194  ret <1 x i64> %mask
195}
196
197define <1 x i64> @fcmge_d(<1 x double> %A, <1 x double> %B) nounwind {
198; CHECK-LABEL: fcmge_d:
199; CHECK: fcmge {{d[0-9]+}}, d0, d1
200  %tst = fcmp oge <1 x double> %A, %B
201  %mask = sext <1 x i1> %tst to <1 x i64>
202  ret <1 x i64> %mask
203}
204
205define <1 x i64> @fcmle_d(<1 x double> %A, <1 x double> %B) nounwind {
206; CHECK-LABEL: fcmle_d:
207; CHECK: fcmge {{d[0-9]+}}, d1, d0
208  %tst = fcmp ole <1 x double> %A, %B
209  %mask = sext <1 x i1> %tst to <1 x i64>
210  ret <1 x i64> %mask
211}
212
213define <1 x i64> @fcmgt_d(<1 x double> %A, <1 x double> %B) nounwind {
214; CHECK-LABEL: fcmgt_d:
215; CHECK: fcmgt {{d[0-9]+}}, d0, d1
216  %tst = fcmp ogt <1 x double> %A, %B
217  %mask = sext <1 x i1> %tst to <1 x i64>
218  ret <1 x i64> %mask
219}
220
221define <1 x i64> @fcmlt_d(<1 x double> %A, <1 x double> %B) nounwind {
222; CHECK-LABEL: fcmlt_d:
223; CHECK: fcmgt {{d[0-9]+}}, d1, d0
224  %tst = fcmp olt <1 x double> %A, %B
225  %mask = sext <1 x i1> %tst to <1 x i64>
226  ret <1 x i64> %mask
227}
228
229define <1 x i64> @cmnez_d(<1 x i64> %A) nounwind {
230; CHECK-LABEL: cmnez_d:
231; CHECK: cmeq d[[EQ:[0-9]+]], d0, #0
232; CHECK: mvn.8b v0, v[[EQ]]
233  %tst = icmp ne <1 x i64> %A, zeroinitializer
234  %mask = sext <1 x i1> %tst to <1 x i64>
235  ret <1 x i64> %mask
236}
237