SPEC2006 & 2017: Industry Standard - ST Performance

Single-threaded performance of the new M1 is certainly one of its key aspects, where the new Firestorm cores definitely punch far above their power class. We had hinted in our preview A14 analysis article that the M1 may well be ending up as not only the top-performing low-power mobile CPU out there, but actually end up as the top-performing absolute performance amongst all CPUs in the market. The A14 fell short of that designation, but the M1 is an even faster implementation of the new Firestorm cores.

It’s to be noted that we’re comparing the M1 to the absolute best desktop and laptop platforms on the market right now, solely looking at absolute best single-threaded performance.

SPECint2006 Speed Estimated Scores

In SPECint2006, we’re now seeing the M1 close the gap to AMD’s Zen3, beating it in several workloads now, which increasing the gap to Intel’s new Tiger Lake design as well as their top-performing desktop CPU, which the M1 now beats in the majority of workloads.

Since our A14 results, we’ve been able to track down Apple’s compiler setting which increases the 456.hmmer by such a dramatic amount – Apple defaults the “-mllvm -enable-loop-distribute=true” in their newest compiler toolchain whilst it needs to be enabled on third-party LLVM compilers. A 5950X with the flag enabled increases its score to 91.64, but also while seeing some regressions in other tests. We haven’t had time to re-test further platforms.

The M1’s performance boost in 462.libquantum is due to the increased L2 cache, as well as the doubled memory bandwidth of the system, something that this workload is very hungry of.

SPECfp2006(C/C++) Speed Estimated Scores

In the fp2006 workloads, we’re seeing the M1 post very large performance boosts relative to the A14, meaning that it now is able to claim the best performance out of all CPUs being compared here.

SPEC2006 Speed Estimated Total

In the overall score, the M1 increases the scores by 9.5% and 17% over the A14. In the integer score, the M1 takes the lead here, although if we were to account for the 456.hmmer discrepancy it would still favour the Zen3-based 5950X. In the floating-point score however, the Apple M1 now takes a large lead ahead, making it the best performing CPU core.

We’ve had a lot arguments about whether 2006 is relevant or not in today’s landscape. We have practical reasons for not yet running SPEC2017 on mobile devices, but given that the new Apple Silicon M1 runs on macOS, these concerns are not valid, thus enabling us to also run the more modern benchmark suite.

It’s to be noted that currently we do not have a functional Fortran compiler on Apple Silicon macOS systems, thus we have to skip several workloads in the 2017 suite, which is why they’re missing from the graphs. We’re concentrating on the remaining C/C++ workloads.

SPECint2017(C/C++) Rate-1 Estimated Scores

The situation doesn’t change too much with the newer SPECint2017 suite. Apple’s Firestorm core here remains extremely impressive, at worst matching up Intel’s new Tiger Lake CPU in single-threaded performance, and at best, keeping up and sometimes beating AMD’s new Zen3 CPU in the new Ryzen 5000 chips.

Apple’s performance is extremely balanced across the board, but what stands out is the excellent 502.gcc_r performance where it takes a considerable leap ahead of the competition, meaning that the new Apple core does extremely well on very complex code and code compiling.

SPECfp2017(C/C++) Rate-1 Estimated Scores

In SPECfp2017, we’re seeing something quite drastic in terms of the scores. The M1 here at worst is a hair-width’s behind AMD’s Zen3, and at best is posting the best absolute performance of any CPU in the market. These are incredible scores.

SPEC2017(C/C++) Rate-1 Estimated Total

In the overall new SPEC2017 int and fp charts, the Apple Silicon M1 falls behind AMD’s Zen3 in the integer performance, however takes an undisputable lead in the floating-point suite.

Compared to the Intel contemporary designs, the Apple M1 is able to showcase a performance leap ahead of the best the company has to offer, with again a considerable strength in the FP score.

While AMD’s Zen3 still holds the leads in several workloads, we need to remind ourselves that this comes at a great cost in power consumption in the +49W range while the Apple M1 here is using 7-8W total device active power.

M1 GPU Performance: Integrated King, Discrete Rival SPEC2017 - Multi-Core Performance
Comments Locked

682 Comments

View All Comments

  • GeoffreyA - Thursday, December 3, 2020 - link

    Sad, but true. I remember his "Road Ahead" article in 2014 and that was it. Gone. Well, let's hope the man leaves Apple someday and comes back home to Anandtech. I know, the chances of that happening are exceedingly slim.
  • pjc15 - Saturday, November 21, 2020 - link

    This might be evidence that ARM is the way of the future, but Intel, AMD, and Microsoft are too entrenched in x86 to do anything about it. They would have to maintain x86 and ARM versions of everything, and on the hardware side especially, they don't seem to have the bandwidth to do that. Maybe custom servers will move to ARM, maybe some types of pros will move to macOS if Apple's lead extends, but for the vast majority of cases, x86 is good enough and cheap enough that Wintel will be unaffected. In order to upend the industry, Apple would have to sell its chips to OEMs, or sell sub-$500 computers, both of which have almost no chance of happening.
  • profquatermass - Sunday, November 22, 2020 - link

    So where does the M1 go from here?

    How can they make the M2?
  • Spunjji - Monday, November 23, 2020 - link

    The next move will probably be a larger variant with more (8?) large cores, more (+50%?) GPU resources, a wider (256bit?) memory bus, and LPDDR5. They're all fairly obvious ways to provide higher performance, but they mean a larger die, which means lower yields on a 5nm process that's still in its early stages.
  • utferris - Wednesday, November 25, 2020 - link

    I hope there will be Apple ISA. ARM ISA can be limiting at some point if apple want to have their own custom instructions for better performance.
    And NVidia will be owning ARM, which is the worst thing to Apple and the world.
  • Focher - Thursday, November 26, 2020 - link

    Nvidia owning ARM will have zero impact on Apple.
  • tokale - Friday, November 27, 2020 - link

    This is the biggest misconception out there, some folks think Apple's chip fate it tied to ARM. Truth is the only thing ARM related to Apple's chips is the instruction set, everything else's is Apple's.
  • PickUrPoison - Saturday, December 12, 2020 - link

    True. But OP is right about instruction set extensions. Do we know there aren’t any? I expected some for perhaps the purpose of Rosetta2 performance acceleration, esp for the on the fly emulation vs. Rosetta2 translation.
  • helpmeoutnow - Thursday, November 26, 2020 - link

    looks like another bubble from Apple. but they will sell it as something amazing.
  • PickUrPoison - Saturday, December 12, 2020 - link

    Yes, congratulations to Apple, absolutely! As Andrei said, “overall, Apple hit it out of the park with the M1”.

Log in

Don't have an account? Sign up now