Using the Mac Pro

Internally the Mac Pro is a completely different beast than the outgoing PowerMac G5, but pressing the power button yields the same classic Mac startup sound and brings you to the same desktop that the G5 did. Of course the version of OS X installed on the Mac Pro is the x86 compatible Intel version, but it's impossible to tell as a user.

The Mac Pro is noticeably quieter than its predecessor, thanks to larger, slower spinning fans made possible by cooler running Intel processors. Power consumption is down noticeably compared to the PowerMac G5 and thus the system runs cooler and quieter.

The one noise you do hear more of (mainly since there's less fan noise to drown it out) comes from the HDD. With no sound deadening in the chassis, random seeks on the hard drive almost seem amplified. If you're in a quiet office, you'll hear the sounds of the hard drive. The Mac Pro seems to be shipping with one of two drives: the Seagate 7200.9 or the Western Digital WD2500JS, both in a 250GB size. Of the two, the Seagate appears to be the louder inside the case (subjectively) but you can't choose which one you get.

A nice feature is that each drive sled is labeled and the label is also visible in the OS. When you view the details of a drive in Apple's Disk Utility it will also tell you what bay it's located in.

The optical drive is the other noisy component in the system, but that only happens whenever a disc is spun up obviously. Optical drives are inherently noisy, but with such a quiet system everything else is that much more noticeable.

Software wise, the Mac Pro is pretty much identical to its predecessor. The system starts up slightly quicker than the PowerMac G5 and the OS itself feels a bit smoother. We actually noticed this when reviewing the MacBook Pro; there are many cases where the Intel based Macs feel noticeably quicker than the G5 equipped Macs. Our benchmarks support the increase in performance but it is definitely noticeable in some areas. In other areas, the Mac Pro just works and feels like a quieter G5.

As the last desktop Mac to make the transition to Intel processors, the Mac Pro enjoys having a much larger library of Universal Binary applications to run (apps that run native on x86 Macs). All of Apple's applications have been ported over to Universal Binaries either through patches or upgrades and many 3rd party applications have also been recompiled. If the application was written in Xcode, the transition is quite easy and thus those applications that were have since been re-released as UB apps. Unfortunately larger applications from non-Apple developers (e.g. Adobe and Microsoft) and most games -- with very little developer support to begin with -- have not been ported.

Both Adobe and Microsoft have stated that they will not update currently shipping products to Universal Binary versions and will instead simply offer support for Intel Macs in future versions. For Adobe that means the CS3 suite of applications, which is due out as early as the end of this year or as late as Q2 of next. For Microsoft, we're most definitely talking about sometime in mid to late 2007 (at best) as the Windows version of Office 2007 isn't due out until early next year itself.

To run those non-native applications Mac Pro users will have to rely on Rosetta, Apple's PowerPC to x86 binary translation software. We'll look at Rosetta performance on the Mac Pro towards the end of this article, but in practical use it's not terrible. All of the crashing we ran into when we first played with Rosetta on the iMac Core Duo has since been resolved with updates to OS X; now all that remains is a performance penalty when running non-native applications.

Thankfully, the Mac Pro's Xeons are about as quick as you can get. And while they will never be able to run PowerPC native applications as quickly as a G5, they can run them well enough for you to use them. Performance with Rosetta is bearable on the Mac Pro; in most cases you'll know you're not running a native application, and you'll probably begin looking for alternative applications to use (that are UBs), but you can get by if you have to use one. We would strongly recommend finding out if the applications you use on a regular basis are available as Universal Binaries before upgrading from a newer PowerPC Mac just so there are no surprises after taking the plunge.

The other suggestion we have is to make sure you've got enough memory on hand, especially if you're going to be multitasking heavily or running a lot of non-native applications. The 1GB that these systems come with is absolutely the minimum; we tried running with only 512MB enabled and came away thoroughly disappointed in the system's performance (thankfully this isn't a supported configuration). With 1GB, you can easily get by but we'd suggest a 2GB sweet spot at least. Remember that OS X does a great job caching everything; the more memory you throw at it the more it will use to keep from accessing the hard drive.

As the first quad processor (two socket, dual core) Mac we've tested, it's worth talking about the move from two to four cores and what that does for performance. When you move from one to two cores, you get a noticeable boost in performance from multithreaded applications as well as a tangible increase in multitasking performance; going from two to four however, isn't always as noticeable.

Very few applications, multithreaded or not, are entirely CPU bound; they are instead limited by software, memory bandwidth, I/O performance, network latency, user input or a combination of these bottlenecks. Even with those bottlenecks in place, the CPU does play a role in performance; it's just a question of how much of a role. What we noticed when testing the quad core Mac Pro was that these bottlenecks became even more apparent when working with four cores as compared to just two.

Individual applications rarely saw a huge benefit going from dual to quad core even if they saw a big boost when making the jump from single to dual core. In practical use, no single application felt faster when running on four cores vs. two. It was in multitasking that we noticed the biggest difference with quad cores, and it was actually the only place our benchmarks showed a significant difference in performance as well. While the four cores did their best to make our heavy multitasking sessions as responsive as possible, we did notice I/O limitations even more when using four cores than when using two.

The more parallelized our usage models become, the more parallelized our I/O subsystems will have to get in response in order to keep up. It's quite possible that RAID 0 (or 0+1) may be necessary to improve the multitasking experience when running with four cores. The balancing of processing power with I/O in multitasking scenarios is something we're still investigating, but it looks like those extra drive bays in the Mac Pro may come in handy after all.

Xeons Run Cooler than G5s The Test
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  • spike spiegal - Thursday, August 17, 2006 - link

    Question 1:

    Apple users have been bad mouthing Intel and PC's for over a decade and touting the superiority of Motorola, and then IBM over Intel. Now that Apple is running on nothing more than PC clone with an Apple bios and beating the heck out of the dual G5, isn't this a little hypocritical? When Apple switches to Cyrix next year, how much faster will those machine be over Intel?

    Question 2:

    If OSX so much more "secure", "faster" and "easier" to use than Windows or Linux, and OSX is closer to Unix than Liux is, why have I never encountered an Apple machine or OSX inside a corporate server farm? Are the graphics artists in the company media dept using Macs that much more intelligent than the network engineers who's job is on the line to keep commerce up 24/7?

    Question 3:

    A year from now when E-machine is selling boxes that cost half the price of the new PowerMac and has twice the horsepower because of new processors being introduce by either AMD or Intel, how can we fudge PowerMac benchmarks for the courtesy of Apple users?

    Question 4:

    I want to run OSX legally on my dual core AMD, and I don't want to buy a new computer just to run OSX. I can run Windows on any hardware I want...why not OSX?
  • plinden - Thursday, August 17, 2006 - link

    Q1: Hmm, have you heard about the best tool for the job? G5s kept up well with Intel and AMD, and were often faster - sometimes much faster - but weren't going anywhere in the foreseeable future. Did you notice that that the new 2.66GHz Xeons aren't much faster than the 2.5GHz G5s they're replacing? But the potential is there for the future (the 3GHz Xeons show that). I don't know whether you're an AMD or Intel fanboi, but would you continue using a CPU from your current favourite manufacturer if you could foresee {AMD/Intel - delete as necessary} pulling well ahead? A computer is just a tool to get things done, what CPU is in there is a pointless argument, and your strawman argument just makes that all the more obvious.

    Q2. Hmm, have you heard about the best tool for the job? XServes are gaining some traction, especially in specialist areas, but I work a company that delivers streaming content on the internet, and we use (mostly) generic PCs running RedHat ES. We also have a number of Windows Media Servers for encoding wmv content and use Apple's Darwin QuickTime Streaming Server (running on Linux, incidentally). The fact that I actually enjoy doing my work with OS X, and find myself being more productive with desktop applications, doesn't mean that if I were making the buying decisions for my company, I would immediately insist on using XServes just because they're from Apple.

    Q3: Cool, e-Machines are going to be producing 8-CPU Xeon-powered workstations for $1250? I might get a couple of those for the kids. Or maybe Apple might upgrade their offerings ... they've been known to do that occasionally.

    Q4: Because Apple owns the rights to OS X, they make the decisions. If they offered OS X to run on any PC, I would be first in line to install it on my Dell laptop.
  • michael2k - Thursday, August 17, 2006 - link

    1) At the time those comments were made, PPC was faster than Intel, literally. Then the IBM was faster than a P4, just like an Opteron was faster than a P4. You would be stupid to believe if Cyric made a faster, cheaper, cooler CPU that Apple wouldn't consider it.

    2) Why would a corporate SERVER FARM care about "secure", "faster", or "easier"? A SERVER FARM cares about redundancy, reliability, recovery, and distributed computing. The only places you will find a Mac are places that care about:
    1) usability, say at a design firm
    2) design, say at a advertising firm
    3) ease, say at a home

    Also, you do know that the pural for "anecdote" is not "data", right? Your anecdote only means you have limited experience.

    3) Easy, drop in a new Intel processor.

    4) Because no copy of OS X exists for generic x86 hardware. You also cannot run Windows on any hardware you want. Try to run it on an SGI MIPS workstation, an IBM PowerPC Workstation, a Dec Alpha workstation, or an Apple G4 iMac. This is despite the fact that Microsoft originally wrote Windows NT to support Alpha, MIPS, PowerPC, and Intel. You want to know why Apple won't produce generic OSes? Because they aren't big enough to afford the support and market costs. Until, I think, they hit 30% marketshare, they can't afford to sell their OS as a generic software kit.
  • saratoga - Thursday, August 17, 2006 - link

    PPC was very rarely faster then x86. More often it was on par, but seldom faster, and usually only briefly. People went on and on about PPC performance because they had bought expensive PPC systems.
  • Dubb - Thursday, August 17, 2006 - link

    Really curious about those three:

    1) any issues with xp-64
    2) We all know you have clovertons already. put them in and see what happens. then tell us.
    3)Apple's price on a 4500 is way overpriced. there has to be a way to get a quadro 3500 working in one.
  • mgrimard - Thursday, August 17, 2006 - link

    Since it is cheaper than a Dell, what about using as a server (with Windows Server 2003)?
    It is a server that it will most benefit from the quad-core and dual-gbe, don't you think?
  • Calin - Thursday, August 17, 2006 - link

    "Of course if there's performance to be lost, we're there to benchmark it."

    That is very funny :)
    And by the way, very nice article. Enjoyed every page of it. Thanks!
  • IntelUser2000 - Wednesday, August 16, 2006 - link

    quote:

    It's not Apple's fault, but FB-DIMMs absolutely kill memory latency; even running in quad channel mode, the FB-DIMM equipped Mac Pro takes 45% more time to access memory than our DDR2 equipped test bed at the


    FB-DIMMs are not at complete fault here. It lies majorly in the memory controller. PC chipsets ALWAYS perform better than the workstation/server ones.
  • Calin - Thursday, August 17, 2006 - link

    I find it strange that dual and quad channel FBDIMMs have the same memory read speed in Everest (or the difference is so small as not to be noticeable)
  • dborod - Wednesday, August 16, 2006 - link

    I understand the advantages of installing 4 FB-DIMMs vs. 2 FB-DIMMs and the need to install them in pairs, but does it matter if the first two pairs of FB-DIMMs are of difference sizes? In other words is 2 x 512 MB and 2 x 1 GB FB-DIMMs going to result is lower memory performance than 4 x 512 MB FB-DIMMs?

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