Concluding Remarks

The Haswell platform ticks all the checkboxes for the mainstream HTPC user. It fixes some nagging bugs left behind in Ivy Bridge. Setting up MPC-HC with LAV Filters was a walk in the park. With good and stable support for DXVA2 APIs in the drivers, even softwares like XBMC can take advantage of the GPU's capabilities. Essential video processing steps such as chroma upsampling, cadence detection and deinterlacing work beautifully. For advanced users, the GPU is capable of supporting madVR for most usage scenarios even with DDR3-1600 memory in the system.

Admittedly, there doesn't seem to be much improvement in madVR capabilities over the HD4000 in Ivy Bridge. The madVR developer has also added more complicated algorithms to the mix and made further refinements to existing ones (such as the anti-ringing filter). The improvements in the Intel GPU capabilities haven't kept up with the requirements of these updates. That said, madVR with DXVA2 scaling works well and looks good, satifying some of the HTPC users who have moved to it from the default renderers. We could certainly complain about some missing driver features and the lack of hardware decode capabilities for 10b H.264 streams. HEVC (H.265) decode acceleration is absent too. However, let us be reasonable and accept the fact that despite  anime's adoption of 10b H.264 in a big way, it is yet to gain mass-market appeal. HEVC was standardized pretty recently, and Haswell's GPU would have long been past the design stage by that time. To further Intel's defense, neither NVIDIA nor AMD support these two features.

Talking of display refresh rate support, Intel has finally fixed the 23.976 Hz bug which has been plaguing Intel-based HTPCs since 2008. This is going to make HTPC enthusiasts really happy. The fact that Intel manages the best match for the required refresh rate compared to AMD and NVIDIA cards is just icing on the cake. The 4K H.264 decode and output support from Haswell seems very promising for the 4K ecosystem. It also strengthens H.264's relevance for some time to come in the 4K arena.

The biggest disappointment with Haswell in the media department is the regression in QuickSync video transcode quality. The salt in the wound is really Intel's claims before launch of significant increases in QS video quality. Ivy Bridge definitely produces better quality QSV accelerated video transcodes.  Combine that with a lack of significant progress on the software support side until recently (hooray for Handbrake, boo for no substantial OS X deployment) and you'd almost get the impression that Intel was trying its best to ruin one of the most promising features of its Core microprocessors. Haswell doesn't ruin QuickSync, the technology is still a great way of getting your content quickly transcoded for use on mobile devices. However, in its current implementation, Haswell does absolutely nothing to further QuickSync - in fact, it's a definitely step in the wrong direction.

The low power consumption of the Haswell system makes it ideal for HTPC builds, and we are very bullish on the NUC as well as the capabilities of completely passive builds as HTPC platforms. Our overall conclusion is that Haswell takes discrete GPUs out of the equation for a vast majority of HTPC users. The few who care about advanced madVR scaling algorithms (such as Jinc and the anti-ringing filters for Lanczos) may need to fork out for a discrete GPU, but even those will probably be of the higher end variety rather than the entry level GT 640s and AMD 7750s that we have been suggesting so far.

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  • ganeshts - Monday, June 3, 2013 - link

    Haven't come across a 4Kp60 sample yet. All the stuff on YouTube is at a max. of 30 fps, and I have some samples sourced from other platforms that are QuadFHD at 30 fps. Please pass on any 4Kp60 clips that you have.

    I know there are two crazy scene encodes with 4Kp50 (Crowd Run 2160p) and a 250 Mbps one (Ducks Take Off). No hardware decoder I have seen has been able to handle either properly. So, I doubt 4Kp60 is going to work :| That said, if I get a chance, I will definitely evaluate the Iris / Iris Pro.
  • madwolfa - Monday, June 3, 2013 - link

    Why do you still need 23.96 support since "Smooth Motion" feature in MadVR? I couldn't care less now...
  • Dug - Monday, June 3, 2013 - link

    Because not everyone can, wants to, or even knows what MadVR is. Never mind setting it up properly.
  • HOSH - Monday, June 3, 2013 - link

    Personally this is going in the right direction, but I am wondering what low power settings we could use with the Core i7-4750HQ or the Core i7-4770R in an Mini-ITX HTPC style board since they both have the Iris Pro 5200. From reading the reviews here the Iris Pro 5200 should be closer to what NVIDIA or AMD currently has to offer in the HTPC discrete graphics, but on die for a cleaner system.
  • Aikouka - Monday, June 3, 2013 - link

    Is it worthwhile to assume that the poor QuickSync performance is just a software problem? I've been interested in gaining QuickSync support, but the performance presented isn't that enticing.
  • ganeshts - Monday, June 3, 2013 - link

    Very much possible. I am going to evaluate a driver downgrade to see if the issue is in the latest drivers.
  • superjim - Monday, June 3, 2013 - link

    Why do we need an i7 for HTPC duty? A 45W Core 2 Duo or Athlon II system is plenty using a 6570/430 and up GPU. Sure it uses more power but that's hardly a problem (both in money and heat). What is the usage scenario for an HTPC that needs an i7?
  • Aikouka - Monday, June 3, 2013 - link

    They probably didn't have access to a lower-end Haswell processor... especially since Intel hasn't released the i3 Haswell processors yet.
  • superjim - Monday, June 3, 2013 - link

    Makes sense but even an i3 is overkill for an HTPC as another commenter suggested. I think Trinity has a pretty tight grip on the bang-for-the-buck HTPC right now. Richland will only make that better.
  • Penti - Monday, June 3, 2013 - link

    It really depends on the amount of post processing done on the HEPC, a Trinity/Richland or Intel with integrated graphics or something like a HD6450 really isn't enough for all. Obviously a fast CPU is good as a fallback when there is no hardware acceleration too.

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