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      1 ; RUN: llc < %s -march=x86 -mattr=+mmx
      2 
      3 ;; A basic sanity check to make sure that MMX arithmetic actually compiles.
      4 ;; First is a straight translation of the original with bitcasts as needed.
      5 
      6 define void @foo(x86_mmx* %A, x86_mmx* %B) {
      7 entry:
      8 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
      9 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     10         %tmp1a = bitcast x86_mmx %tmp1 to <8 x i8>
     11         %tmp3a = bitcast x86_mmx %tmp3 to <8 x i8>
     12 	%tmp4 = add <8 x i8> %tmp1a, %tmp3a		; <<8 x i8>> [#uses=2]
     13         %tmp4a = bitcast <8 x i8> %tmp4 to x86_mmx
     14 	store x86_mmx %tmp4a, x86_mmx* %A
     15 	%tmp7 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     16 	%tmp12 = tail call x86_mmx @llvm.x86.mmx.padds.b( x86_mmx %tmp4a, x86_mmx %tmp7 )		; <x86_mmx> [#uses=2]
     17 	store x86_mmx %tmp12, x86_mmx* %A
     18 	%tmp16 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     19 	%tmp21 = tail call x86_mmx @llvm.x86.mmx.paddus.b( x86_mmx %tmp12, x86_mmx %tmp16 )		; <x86_mmx> [#uses=2]
     20 	store x86_mmx %tmp21, x86_mmx* %A
     21 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     22         %tmp21a = bitcast x86_mmx %tmp21 to <8 x i8>
     23         %tmp27a = bitcast x86_mmx %tmp27 to <8 x i8>
     24 	%tmp28 = sub <8 x i8> %tmp21a, %tmp27a		; <<8 x i8>> [#uses=2]
     25         %tmp28a = bitcast <8 x i8> %tmp28 to x86_mmx
     26 	store x86_mmx %tmp28a, x86_mmx* %A
     27 	%tmp31 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     28 	%tmp36 = tail call x86_mmx @llvm.x86.mmx.psubs.b( x86_mmx %tmp28a, x86_mmx %tmp31 )		; <x86_mmx> [#uses=2]
     29 	store x86_mmx %tmp36, x86_mmx* %A
     30 	%tmp40 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     31 	%tmp45 = tail call x86_mmx @llvm.x86.mmx.psubus.b( x86_mmx %tmp36, x86_mmx %tmp40 )		; <x86_mmx> [#uses=2]
     32 	store x86_mmx %tmp45, x86_mmx* %A
     33 	%tmp51 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     34         %tmp45a = bitcast x86_mmx %tmp45 to <8 x i8>
     35         %tmp51a = bitcast x86_mmx %tmp51 to <8 x i8>
     36 	%tmp52 = mul <8 x i8> %tmp45a, %tmp51a		; <<8 x i8>> [#uses=2]
     37         %tmp52a = bitcast <8 x i8> %tmp52 to x86_mmx
     38 	store x86_mmx %tmp52a, x86_mmx* %A
     39 	%tmp57 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     40         %tmp57a = bitcast x86_mmx %tmp57 to <8 x i8>
     41 	%tmp58 = and <8 x i8> %tmp52, %tmp57a		; <<8 x i8>> [#uses=2]
     42         %tmp58a = bitcast <8 x i8> %tmp58 to x86_mmx
     43 	store x86_mmx %tmp58a, x86_mmx* %A
     44 	%tmp63 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     45         %tmp63a = bitcast x86_mmx %tmp63 to <8 x i8>
     46 	%tmp64 = or <8 x i8> %tmp58, %tmp63a		; <<8 x i8>> [#uses=2]
     47         %tmp64a = bitcast <8 x i8> %tmp64 to x86_mmx
     48 	store x86_mmx %tmp64a, x86_mmx* %A
     49 	%tmp69 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     50         %tmp69a = bitcast x86_mmx %tmp69 to <8 x i8>
     51         %tmp64b = bitcast x86_mmx %tmp64a to <8 x i8>
     52 	%tmp70 = xor <8 x i8> %tmp64b, %tmp69a		; <<8 x i8>> [#uses=1]
     53         %tmp70a = bitcast <8 x i8> %tmp70 to x86_mmx
     54 	store x86_mmx %tmp70a, x86_mmx* %A
     55 	tail call void @llvm.x86.mmx.emms( )
     56 	ret void
     57 }
     58 
     59 define void @baz(x86_mmx* %A, x86_mmx* %B) {
     60 entry:
     61 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
     62 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     63         %tmp1a = bitcast x86_mmx %tmp1 to <2 x i32>
     64         %tmp3a = bitcast x86_mmx %tmp3 to <2 x i32>
     65 	%tmp4 = add <2 x i32> %tmp1a, %tmp3a		; <<2 x i32>> [#uses=2]
     66         %tmp4a = bitcast <2 x i32> %tmp4 to x86_mmx
     67 	store x86_mmx %tmp4a, x86_mmx* %A
     68 	%tmp9 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     69         %tmp9a = bitcast x86_mmx %tmp9 to <2 x i32>
     70 	%tmp10 = sub <2 x i32> %tmp4, %tmp9a		; <<2 x i32>> [#uses=2]
     71         %tmp10a = bitcast <2 x i32> %tmp4 to x86_mmx
     72 	store x86_mmx %tmp10a, x86_mmx* %A
     73 	%tmp15 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     74         %tmp10b = bitcast x86_mmx %tmp10a to <2 x i32>
     75         %tmp15a = bitcast x86_mmx %tmp15 to <2 x i32>
     76 	%tmp16 = mul <2 x i32> %tmp10b, %tmp15a		; <<2 x i32>> [#uses=2]
     77         %tmp16a = bitcast <2 x i32> %tmp16 to x86_mmx
     78 	store x86_mmx %tmp16a, x86_mmx* %A
     79 	%tmp21 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     80         %tmp16b = bitcast x86_mmx %tmp16a to <2 x i32>
     81         %tmp21a = bitcast x86_mmx %tmp21 to <2 x i32>
     82 	%tmp22 = and <2 x i32> %tmp16b, %tmp21a		; <<2 x i32>> [#uses=2]
     83         %tmp22a = bitcast <2 x i32> %tmp22 to x86_mmx
     84 	store x86_mmx %tmp22a, x86_mmx* %A
     85 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     86         %tmp22b = bitcast x86_mmx %tmp22a to <2 x i32>
     87         %tmp27a = bitcast x86_mmx %tmp27 to <2 x i32>
     88 	%tmp28 = or <2 x i32> %tmp22b, %tmp27a		; <<2 x i32>> [#uses=2]
     89         %tmp28a = bitcast <2 x i32> %tmp28 to x86_mmx
     90 	store x86_mmx %tmp28a, x86_mmx* %A
     91 	%tmp33 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
     92         %tmp28b = bitcast x86_mmx %tmp28a to <2 x i32>
     93         %tmp33a = bitcast x86_mmx %tmp33 to <2 x i32>
     94 	%tmp34 = xor <2 x i32> %tmp28b, %tmp33a		; <<2 x i32>> [#uses=1]
     95         %tmp34a = bitcast <2 x i32> %tmp34 to x86_mmx
     96 	store x86_mmx %tmp34a, x86_mmx* %A
     97 	tail call void @llvm.x86.mmx.emms( )
     98 	ret void
     99 }
    100 
    101 define void @bar(x86_mmx* %A, x86_mmx* %B) {
    102 entry:
    103 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
    104 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    105         %tmp1a = bitcast x86_mmx %tmp1 to <4 x i16>
    106         %tmp3a = bitcast x86_mmx %tmp3 to <4 x i16>
    107 	%tmp4 = add <4 x i16> %tmp1a, %tmp3a		; <<4 x i16>> [#uses=2]
    108         %tmp4a = bitcast <4 x i16> %tmp4 to x86_mmx
    109 	store x86_mmx %tmp4a, x86_mmx* %A
    110 	%tmp7 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    111 	%tmp12 = tail call x86_mmx @llvm.x86.mmx.padds.w( x86_mmx %tmp4a, x86_mmx %tmp7 )		; <x86_mmx> [#uses=2]
    112 	store x86_mmx %tmp12, x86_mmx* %A
    113 	%tmp16 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    114 	%tmp21 = tail call x86_mmx @llvm.x86.mmx.paddus.w( x86_mmx %tmp12, x86_mmx %tmp16 )		; <x86_mmx> [#uses=2]
    115 	store x86_mmx %tmp21, x86_mmx* %A
    116 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    117         %tmp21a = bitcast x86_mmx %tmp21 to <4 x i16>
    118         %tmp27a = bitcast x86_mmx %tmp27 to <4 x i16>
    119 	%tmp28 = sub <4 x i16> %tmp21a, %tmp27a		; <<4 x i16>> [#uses=2]
    120         %tmp28a = bitcast <4 x i16> %tmp28 to x86_mmx
    121 	store x86_mmx %tmp28a, x86_mmx* %A
    122 	%tmp31 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    123 	%tmp36 = tail call x86_mmx @llvm.x86.mmx.psubs.w( x86_mmx %tmp28a, x86_mmx %tmp31 )		; <x86_mmx> [#uses=2]
    124 	store x86_mmx %tmp36, x86_mmx* %A
    125 	%tmp40 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    126 	%tmp45 = tail call x86_mmx @llvm.x86.mmx.psubus.w( x86_mmx %tmp36, x86_mmx %tmp40 )		; <x86_mmx> [#uses=2]
    127 	store x86_mmx %tmp45, x86_mmx* %A
    128 	%tmp51 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    129         %tmp45a = bitcast x86_mmx %tmp45 to <4 x i16>
    130         %tmp51a = bitcast x86_mmx %tmp51 to <4 x i16>
    131 	%tmp52 = mul <4 x i16> %tmp45a, %tmp51a		; <<4 x i16>> [#uses=2]
    132         %tmp52a = bitcast <4 x i16> %tmp52 to x86_mmx
    133 	store x86_mmx %tmp52a, x86_mmx* %A
    134 	%tmp55 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    135 	%tmp60 = tail call x86_mmx @llvm.x86.mmx.pmulh.w( x86_mmx %tmp52a, x86_mmx %tmp55 )		; <x86_mmx> [#uses=2]
    136 	store x86_mmx %tmp60, x86_mmx* %A
    137 	%tmp64 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    138 	%tmp69 = tail call x86_mmx @llvm.x86.mmx.pmadd.wd( x86_mmx %tmp60, x86_mmx %tmp64 )		; <x86_mmx> [#uses=1]
    139 	%tmp70 = bitcast x86_mmx %tmp69 to x86_mmx		; <x86_mmx> [#uses=2]
    140 	store x86_mmx %tmp70, x86_mmx* %A
    141 	%tmp75 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    142         %tmp70a = bitcast x86_mmx %tmp70 to <4 x i16>
    143         %tmp75a = bitcast x86_mmx %tmp75 to <4 x i16>
    144 	%tmp76 = and <4 x i16> %tmp70a, %tmp75a		; <<4 x i16>> [#uses=2]
    145         %tmp76a = bitcast <4 x i16> %tmp76 to x86_mmx
    146 	store x86_mmx %tmp76a, x86_mmx* %A
    147 	%tmp81 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    148         %tmp76b = bitcast x86_mmx %tmp76a to <4 x i16>
    149         %tmp81a = bitcast x86_mmx %tmp81 to <4 x i16>
    150 	%tmp82 = or <4 x i16> %tmp76b, %tmp81a		; <<4 x i16>> [#uses=2]
    151         %tmp82a = bitcast <4 x i16> %tmp82 to x86_mmx
    152 	store x86_mmx %tmp82a, x86_mmx* %A
    153 	%tmp87 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    154         %tmp82b = bitcast x86_mmx %tmp82a to <4 x i16>
    155         %tmp87a = bitcast x86_mmx %tmp87 to <4 x i16>
    156 	%tmp88 = xor <4 x i16> %tmp82b, %tmp87a		; <<4 x i16>> [#uses=1]
    157         %tmp88a = bitcast <4 x i16> %tmp88 to x86_mmx
    158 	store x86_mmx %tmp88a, x86_mmx* %A
    159 	tail call void @llvm.x86.mmx.emms( )
    160 	ret void
    161 }
    162 
    163 ;; The following is modified to use MMX intrinsics everywhere they work.
    164 
    165 define void @fooa(x86_mmx* %A, x86_mmx* %B) {
    166 entry:
    167 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
    168 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    169 	%tmp4 = tail call x86_mmx @llvm.x86.mmx.padd.b( x86_mmx %tmp1, x86_mmx %tmp3 )		; <x86_mmx> [#uses=2]
    170 	store x86_mmx %tmp4, x86_mmx* %A
    171 	%tmp7 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    172 	%tmp12 = tail call x86_mmx @llvm.x86.mmx.padds.b( x86_mmx %tmp4, x86_mmx %tmp7 )		; <x86_mmx> [#uses=2]
    173 	store x86_mmx %tmp12, x86_mmx* %A
    174 	%tmp16 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    175 	%tmp21 = tail call x86_mmx @llvm.x86.mmx.paddus.b( x86_mmx %tmp12, x86_mmx %tmp16 )		; <x86_mmx> [#uses=2]
    176 	store x86_mmx %tmp21, x86_mmx* %A
    177 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    178 	%tmp28 = tail call x86_mmx @llvm.x86.mmx.psub.b( x86_mmx %tmp21, x86_mmx %tmp27 )		; <x86_mmx> [#uses=2]
    179 	store x86_mmx %tmp28, x86_mmx* %A
    180 	%tmp31 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    181 	%tmp36 = tail call x86_mmx @llvm.x86.mmx.psubs.b( x86_mmx %tmp28, x86_mmx %tmp31 )		; <x86_mmx> [#uses=2]
    182 	store x86_mmx %tmp36, x86_mmx* %A
    183 	%tmp40 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    184 	%tmp45 = tail call x86_mmx @llvm.x86.mmx.psubus.b( x86_mmx %tmp36, x86_mmx %tmp40 )		; <x86_mmx> [#uses=2]
    185 	store x86_mmx %tmp45, x86_mmx* %A
    186 	%tmp51 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    187         %tmp51a = bitcast x86_mmx %tmp51 to i64
    188         %tmp51aa = bitcast i64 %tmp51a to <8 x i8>
    189         %tmp51b = bitcast x86_mmx %tmp45 to <8 x i8>
    190 	%tmp52 = mul <8 x i8> %tmp51b, %tmp51aa		; <x86_mmx> [#uses=2]
    191         %tmp52a = bitcast <8 x i8> %tmp52 to i64
    192         %tmp52aa = bitcast i64 %tmp52a to x86_mmx
    193 	store x86_mmx %tmp52aa, x86_mmx* %A
    194 	%tmp57 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    195 	%tmp58 = tail call x86_mmx @llvm.x86.mmx.pand( x86_mmx %tmp51, x86_mmx %tmp57 )		; <x86_mmx> [#uses=2]
    196 	store x86_mmx %tmp58, x86_mmx* %A
    197 	%tmp63 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    198 	%tmp64 = tail call x86_mmx @llvm.x86.mmx.por( x86_mmx %tmp58, x86_mmx %tmp63 )		; <x86_mmx> [#uses=2]	
    199 	store x86_mmx %tmp64, x86_mmx* %A
    200 	%tmp69 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    201 	%tmp70 = tail call x86_mmx @llvm.x86.mmx.pxor( x86_mmx %tmp64, x86_mmx %tmp69 )		; <x86_mmx> [#uses=2]
    202 	store x86_mmx %tmp70, x86_mmx* %A
    203 	tail call void @llvm.x86.mmx.emms( )
    204 	ret void
    205 }
    206 
    207 define void @baza(x86_mmx* %A, x86_mmx* %B) {
    208 entry:
    209 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
    210 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    211 	%tmp4 = tail call x86_mmx @llvm.x86.mmx.padd.d( x86_mmx %tmp1, x86_mmx %tmp3 )		; <x86_mmx> [#uses=2]
    212 	store x86_mmx %tmp4, x86_mmx* %A
    213 	%tmp9 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    214 	%tmp10 = tail call x86_mmx @llvm.x86.mmx.psub.d( x86_mmx %tmp4, x86_mmx %tmp9 )		; <x86_mmx> [#uses=2]
    215 	store x86_mmx %tmp10, x86_mmx* %A
    216 	%tmp15 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    217         %tmp10a = bitcast x86_mmx %tmp10 to <2 x i32>
    218         %tmp15a = bitcast x86_mmx %tmp15 to <2 x i32>
    219 	%tmp16 = mul <2 x i32> %tmp10a, %tmp15a		; <x86_mmx> [#uses=2]
    220         %tmp16a = bitcast <2 x i32> %tmp16 to x86_mmx
    221 	store x86_mmx %tmp16a, x86_mmx* %A
    222 	%tmp21 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    223 	%tmp22 = tail call x86_mmx @llvm.x86.mmx.pand( x86_mmx %tmp16a, x86_mmx %tmp21 )		; <x86_mmx> [#uses=2]
    224 	store x86_mmx %tmp22, x86_mmx* %A
    225 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    226 	%tmp28 = tail call x86_mmx @llvm.x86.mmx.por( x86_mmx %tmp22, x86_mmx %tmp27 )		; <x86_mmx> [#uses=2]
    227 	store x86_mmx %tmp28, x86_mmx* %A
    228 	%tmp33 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    229 	%tmp34 = tail call x86_mmx @llvm.x86.mmx.pxor( x86_mmx %tmp28, x86_mmx %tmp33 )		; <x86_mmx> [#uses=2]
    230 	store x86_mmx %tmp34, x86_mmx* %A
    231 	tail call void @llvm.x86.mmx.emms( )
    232 	ret void
    233 }
    234 
    235 define void @bara(x86_mmx* %A, x86_mmx* %B) {
    236 entry:
    237 	%tmp1 = load x86_mmx* %A		; <x86_mmx> [#uses=1]
    238 	%tmp3 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    239 	%tmp4 = tail call x86_mmx @llvm.x86.mmx.padd.w( x86_mmx %tmp1, x86_mmx %tmp3 )		; <x86_mmx> [#uses=2]
    240 	store x86_mmx %tmp4, x86_mmx* %A
    241 	%tmp7 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    242 	%tmp12 = tail call x86_mmx @llvm.x86.mmx.padds.w( x86_mmx %tmp4, x86_mmx %tmp7 )		; <x86_mmx> [#uses=2]
    243 	store x86_mmx %tmp12, x86_mmx* %A
    244 	%tmp16 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    245 	%tmp21 = tail call x86_mmx @llvm.x86.mmx.paddus.w( x86_mmx %tmp12, x86_mmx %tmp16 )		; <x86_mmx> [#uses=2]
    246 	store x86_mmx %tmp21, x86_mmx* %A
    247 	%tmp27 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    248 	%tmp28 = tail call x86_mmx @llvm.x86.mmx.psub.w( x86_mmx %tmp21, x86_mmx %tmp27 )		; <x86_mmx> [#uses=2]
    249 	store x86_mmx %tmp28, x86_mmx* %A
    250 	%tmp31 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    251 	%tmp36 = tail call x86_mmx @llvm.x86.mmx.psubs.w( x86_mmx %tmp28, x86_mmx %tmp31 )		; <x86_mmx> [#uses=2]
    252 	store x86_mmx %tmp36, x86_mmx* %A
    253 	%tmp40 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    254 	%tmp45 = tail call x86_mmx @llvm.x86.mmx.psubus.w( x86_mmx %tmp36, x86_mmx %tmp40 )		; <x86_mmx> [#uses=2]
    255 	store x86_mmx %tmp45, x86_mmx* %A
    256 	%tmp51 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    257 	%tmp52 = tail call x86_mmx @llvm.x86.mmx.pmull.w( x86_mmx %tmp45, x86_mmx %tmp51 )		; <x86_mmx> [#uses=2]
    258 	store x86_mmx %tmp52, x86_mmx* %A
    259 	%tmp55 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    260 	%tmp60 = tail call x86_mmx @llvm.x86.mmx.pmulh.w( x86_mmx %tmp52, x86_mmx %tmp55 )		; <x86_mmx> [#uses=2]
    261 	store x86_mmx %tmp60, x86_mmx* %A
    262 	%tmp64 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    263 	%tmp69 = tail call x86_mmx @llvm.x86.mmx.pmadd.wd( x86_mmx %tmp60, x86_mmx %tmp64 )		; <x86_mmx> [#uses=1]
    264 	%tmp70 = bitcast x86_mmx %tmp69 to x86_mmx		; <x86_mmx> [#uses=2]
    265 	store x86_mmx %tmp70, x86_mmx* %A
    266 	%tmp75 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    267 	%tmp76 = tail call x86_mmx @llvm.x86.mmx.pand( x86_mmx %tmp70, x86_mmx %tmp75 )		; <x86_mmx> [#uses=2]
    268 	store x86_mmx %tmp76, x86_mmx* %A
    269 	%tmp81 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    270 	%tmp82 = tail call x86_mmx @llvm.x86.mmx.por( x86_mmx %tmp76, x86_mmx %tmp81 )		; <x86_mmx> [#uses=2]
    271 	store x86_mmx %tmp82, x86_mmx* %A
    272 	%tmp87 = load x86_mmx* %B		; <x86_mmx> [#uses=1]
    273 	%tmp88 = tail call x86_mmx @llvm.x86.mmx.pxor( x86_mmx %tmp82, x86_mmx %tmp87 )		; <x86_mmx> [#uses=2]
    274 	store x86_mmx %tmp88, x86_mmx* %A
    275 	tail call void @llvm.x86.mmx.emms( )
    276 	ret void
    277 }
    278 
    279 declare x86_mmx @llvm.x86.mmx.paddus.b(x86_mmx, x86_mmx)
    280 
    281 declare x86_mmx @llvm.x86.mmx.psubus.b(x86_mmx, x86_mmx)
    282 
    283 declare x86_mmx @llvm.x86.mmx.paddus.w(x86_mmx, x86_mmx)
    284 
    285 declare x86_mmx @llvm.x86.mmx.psubus.w(x86_mmx, x86_mmx)
    286 
    287 declare x86_mmx @llvm.x86.mmx.pmulh.w(x86_mmx, x86_mmx)
    288 
    289 declare x86_mmx @llvm.x86.mmx.pmadd.wd(x86_mmx, x86_mmx)
    290 
    291 declare void @llvm.x86.mmx.emms()
    292 
    293 declare x86_mmx @llvm.x86.mmx.padd.b(x86_mmx, x86_mmx)
    294 declare x86_mmx @llvm.x86.mmx.padd.w(x86_mmx, x86_mmx)
    295 declare x86_mmx @llvm.x86.mmx.padd.d(x86_mmx, x86_mmx)
    296 declare x86_mmx @llvm.x86.mmx.padds.b(x86_mmx, x86_mmx)
    297 declare x86_mmx @llvm.x86.mmx.padds.w(x86_mmx, x86_mmx)
    298 declare x86_mmx @llvm.x86.mmx.padds.d(x86_mmx, x86_mmx)
    299 declare x86_mmx @llvm.x86.mmx.psubs.b(x86_mmx, x86_mmx)
    300 declare x86_mmx @llvm.x86.mmx.psubs.w(x86_mmx, x86_mmx)
    301 declare x86_mmx @llvm.x86.mmx.psubs.d(x86_mmx, x86_mmx)
    302 declare x86_mmx @llvm.x86.mmx.psub.b(x86_mmx, x86_mmx)
    303 declare x86_mmx @llvm.x86.mmx.psub.w(x86_mmx, x86_mmx)
    304 declare x86_mmx @llvm.x86.mmx.psub.d(x86_mmx, x86_mmx)
    305 declare x86_mmx @llvm.x86.mmx.pmull.w(x86_mmx, x86_mmx)
    306 declare x86_mmx @llvm.x86.mmx.pand(x86_mmx, x86_mmx)
    307 declare x86_mmx @llvm.x86.mmx.por(x86_mmx, x86_mmx)
    308 declare x86_mmx @llvm.x86.mmx.pxor(x86_mmx, x86_mmx)
    309 
    310