The Right SoC at the Right Time: Apple's A5

Here's how I know Apple is masterful at marketing. After first showing off the new iPad Apple had tons of press convinced that the company was no longer competing based on specs but rather only interested in delivering an experience. In reality Apple is competing with hardware even more than before, it's just trying to give the public the impression that it's not. After all, Apple doesn't make the vast majority of the technology inside the iPad but it does control the experience. A competitor may be able to ship a dual core Cortex A9 but it can't ship the iOS experience. Is it really a surprise that Apple would downplay what it doesn't have exclusive rights to and instead try to get everyone to focus on what it does? Make no mistake, Apple is very much playing the specs game - in fact it's playing the game harder than anyone else in the industry today.

At the heart of the iPad 2 is a brand new SoC: the Apple A5. Built on what I assume is Samsung's 45nm process the A5 is a much more powerful SoC than it's predecessor the A4.

Architecture Comparison
  ARM11 ARM Cortex A8 ARM Cortex A9 Qualcomm Scorpion
Issue Width single-issue dual-issue dual-issue dual-issue
Pipeline Depth 8 stages 13 stages 9 stages 13 stages
Out of Order Execution N N Y Partial
FPU Optional VFPv2 (not-pipelined) VFPv3 (not-pipelined) Optional VFPv3-D16 (pipelined) VFPv3 (pipelined)
NEON N/A Y (64-bit wide) Optional MPE (64-bit wide) Y (128-bit wide)
Process Technology 90nm 65nm/45nm 40nm 40nm
Typical Clock Speeds 412MHz 600MHz/1GHz 1GHz 1GHz

While the A4 featured a single core ARM Cortex A8, the A5 integrates two ARM Cortex A9s with a total of a 1MB L2 cache. That puts the A5 at a similar level of CPU performance to NVIDIA's Tegra 2 and TI's OMAP 4430. The only insider information I've managed to come across points to A5 featuring ARM's MPE (SIMD/NEON engine) in its A9 cores.

Based on Chipworks' analysis of the Apple A5 die it looks like Apple implemented a dual-channel LP-DDR2 memory controller, similar to TI's OMAP 4430.

ARM Cortex A9 Based SoC Comparison
  Apple A5 TI OMAP 4 NVIDIA Tegra 2
Clock Speed Up to 1GHz Up to 1GHz Up to 1GHz
Core Count 2 2 2
L1 Cache Size 32KB/32KB 32KB/32KB 32KB/32KB
L2 Cache Size 1MB 1MB 1MB
Memory Interface Dual Channel LP-DDR2 (?) Dual Channel LP-DDR2 Single Channel LP-DDR2
NEON Support Yes (?) Yes No

Had it not been for NVIDIA Apple would've had the first shipping dual-core Cortex A9 SoC on the market. This is ultimately why Apple is producing it's own SoCs - most of the players in the SoC space don't seem to be moving fast enough for Apple's hardware schedule. Given the aggressive yearly product cadence I wouldn't be too surprised to see a dual-core Cortex A15 in the Apple A6 a year from now. Remember that much of Apple's success has come from being able to control it's hardware and software development. On the Mac side Apple has an extremely aggressive chip partner with Intel, but with the iDevices there is no equivalent (for now). Until that changes, Apple will continue to produce it's own SoCs. It's not that Apple is designing any of the IP that goes into the SoC, it's that Apple is piecing together what it needs, when it needs it.

We've already gone through the performance offered by the A5 over the A4, but to quickly recap: it's a huge increase. While the original iPad felt slow, the new one feels much faster. I would be lying if I said it was fast enough, but it's way better than the original.

CPU Performance

Taken from our iPad 2 Performance Preview:

Geekbench 2 - Floating Point Performance
  Apple iPad Apple iPad 2
Overall FP Score 456 915
Mandlebrot (single-threaded) 79.5 Mflops 279.1 Mflops
Mandlebrot (multi-threaded) 79.4 Mflops 554.7 Mflops
Dot Product (single-threaded) 245.7 Mflops 221.7 Mflops
Dot Product (multi-threaded) 247.2 Mflops 436.8 Mflops
LU Decomposition (single-threaded) 54.5 Mflops 205.4 Mflops
LU Decomposition (multi-threaded) 54.8 Mflops 421.6 Mflops
Primality Test (single-threaded) 71.2 Mflops 177.8 Mflops
Primality Test (multi-threaded) 69.3 Mflops 318.1 Mflops
Sharpen Image (single-threaded) 1.51 Mpixels/s 1.68 Mpixels/s
Sharpen Image (multi-threaded) 1.51 Mpixels/s 3.34 Mpixels/s
Blur Image (single-threaded) 760.2 Kpixels/s 665.5 Kpixels/s
Blur Image (multi-threaded) 753.2 Kpixels/s 1.32 Mpixels/s

Single threaded FPU performance is multiples of what we saw with the original iPad. This sort of an improvement in single-core performance is likely due to the pipelined Cortex A9 FPU. Looking at Linpack we see the same sort of huge improvement:

Linpack

Whether this performance advantage matters is another matter entirely. Although there aren't many FP intensive iPad apps available today, moving to the A5 is all about enabling developers - not playing catch up to software.

Geekbench reports the iPad 2 at 512MB of memory, double the original iPad's 256MB. Remember that Apple has to deal with lower profit margins than it'd like with the iPad, but it refuses to cut corners on screen quality so something else has to give.

L2 cache size has also apparently increased from 512KB to 1MB. The L2 cache is shared among both cores and 1MB seems to be the sweet spot this generation.

Geekbench 2 - Memory Performance
  Apple iPad Apple iPad 2
Overall Memory Score 644 787
Read Sequential (single-threaded scalar) 340.6 MB/s 334.2 MB/s
Write Sequential (single-threaded scalar) 842.4 MB/s 1.07 GB/s
Stdlib Allocate (single-threaded scalar) 1.74 Mallocs/s 1.86 Mallocs/s
Stdlib Write (single-threaded scalar) 1.20 GB/s 2.30 GB/s
Stdlib Copy (single-threaded scalar) 740.6 MB/s 522.0 MB/s

Geekbench's memory tests show an improvement in effective bandwidth as well. The biggest improvement is in the stdlib write test which shows a near doubling of bandwidth from 1.2GB/s to 2.3GB/s. Unfortunately this isn't enough data to draw conclusions about bus width or DRAM operating frequency. Given the increases in CPU and GPU performance, an increase in memory bandwidth to go along with the two isn't surprising.

Geekbench shows a healthy increase in integer performance, both in single and multithreaded scenarios. The multithreaded advantage makes sense (two are better than one), but the lead in single threaded tests shows the benefit the A9 can deliver thanks to its shorter pipeline and ability to reorder instructions around stalls.

Geekbench 2 - Integer Performance
  Apple iPad Apple iPad 2
Overall FP Score 365 688
Blowfish (single-threaded) 13.9 MB/s 13.2 MB/s
Blowfish (multi-threaded) 14.3 MB/s 26.1 MB/s
Text Compression (single-threaded) 1.23 MB/s 1.50 MB/s
Text Compression (multi-threaded) 1.20 MB/s 2.82 MB/s
Text Decompression (single-threaded) 1.11 MB/s 2.09 MB/s
Text Decompression (multi-threaded) 1.08 MB/s 3.28 MB/s
Image Compress (single-threaded) 3.36 Mpixels/s 3.79 Mpixels/s
Image Compress (multi-threaded) 3.41 Mpixels/s 7.51 Mpixels/s
Image Decompress (single-threaded) 6.02 Mpixels/s 6.68 Mpixels/s
Image Decompress (multi-threaded) 5.98 Mpixels/s 13.1 Mpixels/s
Lua (single-threaded) 172.1 Knodes/s 273.4 Knodes/s
Lua (multi-threaded) 171.9 Knodes/s 542.9 Knodes/s

On average Geekbench shows a 31% increase in single threaded integer performance over the A4 in the original iPad. NVIDIA told me they saw a 20% increase in instructions executed per clock for the A9 vs. A8 and if we remove the one outlier (text decompression) that's about what we see here as well.

Geekbench 2
  Overall Integer FP Memory Stream
Apple iPad 448 365 456 644 325
Apple iPad 2 750 688 915 787 324

The increases in integer performance and memory bandwidth are likely what will have the largest impact on your experience. The fact that we're seeing big gains in single as well as multi-threaded workloads means the performance improvement should be universal across all CPU-bound apps.

What does all of this mean for performance in the real world? The iPad 2 is much faster than its predecessor. Let's start with our trusty javascript benchmarks: SunSpider and BrowserMark.

SunSpider Javascript Benchmark 0.9

Apple improved the Safari JavaScript engine in iOS 4.3, which right off the bat helped the original iPad become more competitive in this test. Even with both pads running iOS 4.3, the iPad 2 is 80% faster than the original iPad here.

The Motorola Xoom we recently reviewed scored a few percent slower than the iPad 2 in SunSpider as well. Running different OSes and browsers, it's difficult to conclude much when comparing the A5 to Tegra 2.

A bug in BrowserMark kept us from running it for the Xoom review but it's since been fixed. Again we're looking at mostly JavaScript performance here. Rightware modeled its benchmark after the JavaScript frameworks and functions used by websites like Facebook, Amazon and Gmail among others. The results are simply one aspect of web browsing performance, but an important one:

Rightware BrowserMark

The move from the A4 in the iPad 1 to the A5 in the iPad 2 boosts scores by 47%. More impressive however is just how much faster the Xoom is here. I suspect this has more to do with Google's software optimizations in the Honeycomb browser than hardware, but let's see how these tablets fare in our web page loading tests.

We debuted an early version of our 2011 web page loading tests in the Xoom review. Two things have changed since then: 1) iOS 4.3 came out, and 2) we changed our timing methods to produce more accurate results. It turns out that Honeycomb's browser was stopping our page load timer sooner than iOS', which resulted in some funny numbers when we got to the 4.3/Honeycomb comparison. To ensure accuracy we went back to timing by hand (each test was repeated at least 5 times and we present an average of the results). We also added two more pages to the test suite (Digg and Facebook).

2011 Page Load Test - Average

The iPad 2 generally loads web pages faster than the Xoom. On average it's a ~20% increase in performance. I wouldn't say that the improvement is necessarily noticeable when surfing most sites, but it's definitely measurable.

Double the Memory, Still Not Enough

On a Mac or PC if you don't have enough system memory and go to run a new application you'll get a lot of swapping to disk. The OS will write least recently used pages of memory to disk and evict them from main memory, making room for the newly launched application. Memory management in iOS works differently. All applications are required to save their state as soon as they move from the foreground as iOS can evict them from memory at any point in time.

Having more memory in iOS means you can have apps with larger memory footprints or you can keep more apps in memory without forcefully evicting them, but it generally doesn't mean you'll see improved performance.

With the iPad 2 Apple chose to only equip the device with 512MB of LP-DDR2 memory. That's half of what you get in the Motorola Xoom, but twice what you got in the original iPad. This does mean that (as we mentioned earlier) things like web pages can remain in memory longer, although there's no real impact on performance from what we can tell.

If Apple follows its short tradition, we may see more memory in the iPhone 5 and then more in the iPad 3 next year. Display resolution didn't increase so there's no pressure for additional memory there, but Apple is definitely holding developers back by not throwing even more hardware resources at the iPad 2.

Industrial Design & The Future The GPU: Apple's Gift to Game Developers
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  • TareX - Sunday, March 20, 2011 - link

    Irrelevant, but is Anandtech gonna do an Atrix review?
  • name99 - Sunday, March 20, 2011 - link

    "The Digital AV adapter is a bit clunky and I believe the future of this is clearly in some form of wireless transmission, but for now it plugs directly into the dock connector. "

    You mean the wireless transmission that ALREADY EXISTS called AirPlay?

    Apple HAVE a solution to your hatred of wires. You seem to be upset that they don't have a solution that somehow magically transports video from iPad to your (HDMI and nothing else) TV using some non-existent wireless standard that isn't actually built into your TV.

    It's fine to be frustrated at some of the idiocies in tech, but it's truly silly to complain about this one. Apple provides this cable for one, and only one, group of users --- people who actually NEED that physical wire.
  • BlendMe - Sunday, March 20, 2011 - link

    AirPlay doesn't mirror tha iPads screen, it only allows you to stream content. For now. And for AirPlay you need an Apple TV or another AirPlay enabled device. The HDMI adapter allows you to hook it up to almost any recent TV, monitor or beamer.
  • ananduser - Sunday, March 20, 2011 - link

    In fact there is a standard already built in in most modern(emphasis on modern) TVs. It is called DLNA. Unfortunately Apple decided that coercing you into using their ecosystem ONLY is the way to go. Personally I find Apple's modus operandi of not giving 2 sh*ts about other 3rd party solutions one of the "idiocies in tech" as you well put it.
    Regardless, the iPad2(or 1) is a cool gadget(emphasis on gadget) nonetheless. Combined with leading parental controls as:no flash(as a porn enabler), no porn(appstore policy), no bloody/gory games(appstore policy) and a damn spartan simple and fast GUI makes it a great basic computing device for the naive crowd(parents, grandparents etc.). IMO it really shines for children as their 1st computing platform.
    That it is also a frequent choice for the tech literate few, good on them... it still is best suited, IMO, for those of the above.
  • name99 - Sunday, March 20, 2011 - link

    Can both of you not read?
    I was referring to, as I quoted, "The Digital AV adapter is a bit clunky and I believe the future of this is clearly in some form of wireless transmission, but for now it plugs directly into the dock connector. "

    How do either of your comments have any relevance to that?
    If you want Wifi, you need something that accepts a Wifi signal. Your TV doesn't have Wifi built in, so, yeah, you need some other box.

    And DLNA? Really? You want to go there? Go explore the DLNA web pages (http://www.dlna.org/products is a good start) and tell me this pile of turds is EVER going to be relevant to the real world. For god's sake, man, get in touch with the real world. Compare that web page and everything it implies about compatibility nightmares and technobabble with the Apple TV web page.
  • Anand Lal Shimpi - Monday, March 21, 2011 - link

    AirPlay is really for specific content at this point. I'm referring to the future of video out on tablets in general. And I didn't mention it as a knock against the iPad today, just a heads up that in some future version of the iPad you won't need a physical adapter (at least not on your tablet). When you have full wireless display mirroring then you can start introducing more interesting usage models - e.g. tablet as a desktop replacement, tablet as a game console, etc... You can do these things without wireless display but they are definitely enhanced by it being there.

    Take care,
    Anand
  • Ushio01 - Sunday, March 20, 2011 - link

    When ifixit did there teardown of the first ipad it was shown that apart from the battery and the antennas all the other components were kept up the top so why can't a tablet simply be a dock you slot a smartphone in that supplies a larger screen and additional battery's?
    That to me is a far more appealing device than current tablets.
  • kmmatney - Monday, March 21, 2011 - link

    makes sense to me. I can't see Apple doing this, but maybe on of the Android makers can come up with something along these lines. I'd love to be able to pop my phone into the back of a tablet and use the bigger screen. I'd just keep it near the couch.
  • zmatt - Sunday, March 20, 2011 - link

    I still hold that the entire market segment (not just the iPad) is a solution looking for a problem. The idea seems cool but in reality nobody was asking for the tablet. And after using them I still can't see what the attractiveness is other than people buying them cause they are "cool". I take calls and get mobile updates on my Galaxy S, which is more than competent enough for light work such as taking down notes or answering emails on the go. Any real work I do with a computer. I'm sorry but you can't make up for the lack of performance and a real keyboard if you are talking about getting work done. The iPad may be nice for mobile entertainment, but if i already have an mp3 player and a laptop what can it do that they can't? For tablets to be viable productivity devices and not just toys i think they would basically have to evolve into laptops. So again i ask, what's the point?
  • cucurigu - Sunday, March 20, 2011 - link

    Thanks a lot for your review, Anand, Brian and Vivek - I was waiting for your opinion on the iPad 2 as it was a gadget most appealing but, as you said, very polarizing for the reviewers.

    There is something I didn't really understand, even after rereading the Xoom review - both you (Anand and Brian) said the first iPad wasn't your cup of tea in the long run and chances are the new one won't change this (but you're giving it another go). The general impression (one which I also got while looking at the tablet segment) is characterized by their unclear niche - where do they really fit ?

    If I understand correctly the first tablet (ipad) didn't integrate with your workflow and the reasons seem to apply to all tablets, however, this sentiment doesn't come off so clearly from the Xoom article - so I wondered : did you have the impression the Android OS was more adequate to your usage patterns ? Meaning, if the Xoom and iPad 2 where left on your desk, which one would you choose to take with you, and for which purpose ?

    Once again, thanks and best regards !

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