Lines Matching refs:rtn

148   %rtn = atomicrmw xchg i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
149 %cast.rtn = bitcast i32 %rtn to float
150 ret float %cast.rtn
189 %rtn = atomicrmw xchg i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
190 %cast.rtn = bitcast i32 %rtn to float
191 ret float %cast.rtn
226 %rtn = atomicrmw xchg i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
227 %cast.rtn = bitcast i32 %rtn to float
228 ret float %cast.rtn
286 %rtn = atomicrmw xchg i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
287 %cast.rtn = bitcast i32 %rtn to float
288 ret float %cast.rtn
341 %rtn = atomicrmw xchg i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
342 %cast.rtn = bitcast i32 %rtn to float
343 ret float %cast.rtn
492 %rtn = atomicrmw xchg i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
493 %cast.rtn = bitcast i64 %rtn to <2 x float>
494 ret <2 x float> %cast.rtn
529 %rtn = atomicrmw xchg i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
530 %cast.rtn = bitcast i64 %rtn to <2 x float>
531 ret <2 x float> %cast.rtn
640 %rtn = atomicrmw add i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
641 %cast.rtn = bitcast i32 %rtn to float
642 ret float %cast.rtn
677 %rtn = atomicrmw add i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
678 %cast.rtn = bitcast i32 %rtn to float
679 ret float %cast.rtn
784 %rtn = atomicrmw add i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
785 %cast.rtn = bitcast i64 %rtn to <2 x float>
786 ret <2 x float> %cast.rtn
821 %rtn = atomicrmw add i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
822 %cast.rtn = bitcast i64 %rtn to <2 x float>
823 ret <2 x float> %cast.rtn
932 %rtn = atomicrmw sub i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
933 %cast.rtn = bitcast i32 %rtn to float
934 ret float %cast.rtn
969 %rtn = atomicrmw sub i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
970 %cast.rtn = bitcast i32 %rtn to float
971 ret float %cast.rtn
1076 %rtn = atomicrmw sub i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
1077 %cast.rtn = bitcast i64 %rtn to <2 x float>
1078 ret <2 x float> %cast.rtn
1113 %rtn = atomicrmw sub i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
1114 %cast.rtn = bitcast i64 %rtn to <2 x float>
1115 ret <2 x float> %cast.rtn
1224 %rtn = atomicrmw and i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
1225 %cast.rtn = bitcast i32 %rtn to float
1226 ret float %cast.rtn
1261 %rtn = atomicrmw and i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
1262 %cast.rtn = bitcast i32 %rtn to float
1263 ret float %cast.rtn
1368 %rtn = atomicrmw and i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
1369 %cast.rtn = bitcast i64 %rtn to <2 x float>
1370 ret <2 x float> %cast.rtn
1405 %rtn = atomicrmw and i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
1406 %cast.rtn = bitcast i64 %rtn to <2 x float>
1407 ret <2 x float> %cast.rtn
1516 %rtn = atomicrmw or i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
1517 %cast.rtn = bitcast i32 %rtn to float
1518 ret float %cast.rtn
1553 %rtn = atomicrmw or i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
1554 %cast.rtn = bitcast i32 %rtn to float
1555 ret float %cast.rtn
1660 %rtn = atomicrmw or i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
1661 %cast.rtn = bitcast i64 %rtn to <2 x float>
1662 ret <2 x float> %cast.rtn
1697 %rtn = atomicrmw or i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
1698 %cast.rtn = bitcast i64 %rtn to <2 x float>
1699 ret <2 x float> %cast.rtn
1808 %rtn = atomicrmw xor i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
1809 %cast.rtn = bitcast i32 %rtn to float
1810 ret float %cast.rtn
1845 %rtn = atomicrmw xor i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
1846 %cast.rtn = bitcast i32 %rtn to float
1847 ret float %cast.rtn
1952 %rtn = atomicrmw xor i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
1953 %cast.rtn = bitcast i64 %rtn to <2 x float>
1954 ret <2 x float> %cast.rtn
1989 %rtn = atomicrmw xor i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
1990 %cast.rtn = bitcast i64 %rtn to <2 x float>
1991 ret <2 x float> %cast.rtn
2100 %rtn = atomicrmw max i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
2101 %cast.rtn = bitcast i32 %rtn to float
2102 ret float %cast.rtn
2137 %rtn = atomicrmw max i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
2138 %cast.rtn = bitcast i32 %rtn to float
2139 ret float %cast.rtn
2244 %rtn = atomicrmw max i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
2245 %cast.rtn = bitcast i64 %rtn to <2 x float>
2246 ret <2 x float> %cast.rtn
2281 %rtn = atomicrmw max i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
2282 %cast.rtn = bitcast i64 %rtn to <2 x float>
2283 ret <2 x float> %cast.rtn
2392 %rtn = atomicrmw min i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
2393 %cast.rtn = bitcast i32 %rtn to float
2394 ret float %cast.rtn
2429 %rtn = atomicrmw min i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
2430 %cast.rtn = bitcast i32 %rtn to float
2431 ret float %cast.rtn
2536 %rtn = atomicrmw min i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
2537 %cast.rtn = bitcast i64 %rtn to <2 x float>
2538 ret <2 x float> %cast.rtn
2573 %rtn = atomicrmw min i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
2574 %cast.rtn = bitcast i64 %rtn to <2 x float>
2575 ret <2 x float> %cast.rtn
2684 %rtn = atomicrmw umax i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
2685 %cast.rtn = bitcast i32 %rtn to float
2686 ret float %cast.rtn
2721 %rtn = atomicrmw umax i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
2722 %cast.rtn = bitcast i32 %rtn to float
2723 ret float %cast.rtn
2828 %rtn = atomicrmw umax i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
2829 %cast.rtn = bitcast i64 %rtn to <2 x float>
2830 ret <2 x float> %cast.rtn
2865 %rtn = atomicrmw umax i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
2866 %cast.rtn = bitcast i64 %rtn to <2 x float>
2867 ret <2 x float> %cast.rtn
2976 %rtn = atomicrmw umin i32 addrspace(1)* %cast.gep0, i32 %data seq_cst
2977 %cast.rtn = bitcast i32 %rtn to float
2978 ret float %cast.rtn
3013 %rtn = atomicrmw umin i32 addrspace(1)* %cast.gep1, i32 %data seq_cst
3014 %cast.rtn = bitcast i32 %rtn to float
3015 ret float %cast.rtn
3120 %rtn = atomicrmw umin i64 addrspace(1)* %cast.gep0, i64 %data seq_cst
3121 %cast.rtn = bitcast i64 %rtn to <2 x float>
3122 ret <2 x float> %cast.rtn
3157 %rtn = atomicrmw umin i64 addrspace(1)* %cast.gep1, i64 %data seq_cst
3158 %cast.rtn = bitcast i64 %rtn to <2 x float>
3159 ret <2 x float> %cast.rtn
3272 %rtn = extractvalue { i32, i1 } %cmpxchg, 0
3273 %cast.rtn = bitcast i32 %rtn to float
3274 ret float %cast.rtn
3313 %rtn = extractvalue { i32, i1 } %cmpxchg, 0
3314 %cast.rtn = bitcast i32 %rtn to float
3315 ret float %cast.rtn
3433 %rtn = extractvalue { i64, i1 } %cmpxchg, 0
3434 %cast.rtn = bitcast i64 %rtn to <2 x float>
3435 ret <2 x float> %cast.rtn
3477 %rtn = extractvalue { i64, i1 } %cmpxchg, 0
3478 %cast.rtn = bitcast i64 %rtn to <2 x float>
3479 ret <2 x float> %cast.rtn
3587 …%rtn = call i32 @llvm.amdgcn.atomic.inc.i32.p1i32(i32 addrspace(1)* %cast.gep0, i32 %data, i32 0, …
3588 %cast.rtn = bitcast i32 %rtn to float
3589 ret float %cast.rtn
3608 …%rtn = call i32 @llvm.amdgcn.atomic.inc.i32.p1i32(i32 addrspace(1)* %cast.gep1, i32 %data, i32 0, …
3609 %cast.rtn = bitcast i32 %rtn to float
3610 ret float %cast.rtn
3665 …%rtn = call i64 @llvm.amdgcn.atomic.inc.i64.p1i64(i64 addrspace(1)* %cast.gep0, i64 %data, i32 0, …
3666 %cast.rtn = bitcast i64 %rtn to <2 x float>
3667 ret <2 x float> %cast.rtn
3686 …%rtn = call i64 @llvm.amdgcn.atomic.inc.i64.p1i64(i64 addrspace(1)* %cast.gep1, i64 %data, i32 0, …
3687 %cast.rtn = bitcast i64 %rtn to <2 x float>
3688 ret <2 x float> %cast.rtn
3750 …%rtn = call i32 @llvm.amdgcn.atomic.dec.i32.p1i32(i32 addrspace(1)* %cast.gep0, i32 %data, i32 0, …
3751 %cast.rtn = bitcast i32 %rtn to float
3752 ret float %cast.rtn
3771 …%rtn = call i32 @llvm.amdgcn.atomic.dec.i32.p1i32(i32 addrspace(1)* %cast.gep1, i32 %data, i32 0, …
3772 %cast.rtn = bitcast i32 %rtn to float
3773 ret float %cast.rtn
3828 …%rtn = call i64 @llvm.amdgcn.atomic.dec.i64.p1i64(i64 addrspace(1)* %cast.gep0, i64 %data, i32 0, …
3829 %cast.rtn = bitcast i64 %rtn to <2 x float>
3830 ret <2 x float> %cast.rtn
3849 …%rtn = call i64 @llvm.amdgcn.atomic.dec.i64.p1i64(i64 addrspace(1)* %cast.gep1, i64 %data, i32 0, …
3850 %cast.rtn = bitcast i64 %rtn to <2 x float>
3851 ret <2 x float> %cast.rtn