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There is a comparison:

if( val0 > val1 )

where val0 and val1 are double variables.

The code generated by the Apple LLVM compiler is

+0x184  vcmpe.f64                      d17, d16
+0x188  vmrs                           APSR_nzcv, fpscr <-- FP status transfer (30 cycles stall of ALU)
+0x18c  ble.w                          .....

Is there any way to avoid this kind of transfer?

[UPDATE] The code is running on the Cortex-A8 processor.

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How about comparing them as sign and magnitude integers? It's possible with IEEE-754. –  Alexey Frunze Dec 29 '11 at 9:17
@Alex, maybe you explain first why do you need this? The comparison via parts is definitely slower and longer. –  Anton Korobeynikov Dec 29 '11 at 12:52
Where did you find the 30 cycle figure? –  Stephen Canon Dec 29 '11 at 13:37
I doubt it is the flag transfer it is more likely that you are waiting for the vcmpe to complete before the vmrs instruction can execute, the vmrs is stalled. If you have other things you want to do in the mean time, do them then perform the vmrs and ble after. –  dwelch Dec 29 '11 at 14:40
@Alex, according to Cortex-A9 docs vcmpe.f64 has the biggest latency of 5 (1 instruction latency and 4 is the result writeback), vmrs is free, it does not have latency at all. However, vcmpe.f64 is VFP instruction, and VFP unit is not pipelined on A8/A9 at all and shares resources with NEON. So, if you have some NEON code before vcmpp, then the stall might be caused by VFP-NEON domain change. –  Anton Korobeynikov Dec 30 '11 at 9:39

1 Answer 1

up vote 0 down vote accepted

As it seems it's impossible to avoid flags transition as with the code flow management deals ARM part of the processor, not Neon co-processor. Question is closed.

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