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- Jul 5, 2013
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Right?There's a lot of shit posting in this news thread.
Right?There's a lot of shit posting in this news thread.
System Name | Personal Gaming Rig |
---|---|
Processor | Ryzen 7800X3D |
Motherboard | MSI X670E Carbon |
Cooling | MO-RA 3 420 |
Memory | 32GB 6000MHz |
Video Card(s) | RTX 4090 ICHILL FROSTBITE ULTRA |
Storage | 4x 2TB Nvme |
Display(s) | Samsung G8 OLED |
Case | Silverstone FT04 |
Processor | Intel® Core™ i7-13700K |
---|---|
Motherboard | Gigabyte Z790 Aorus Elite AX |
Cooling | Noctua NH-D15 |
Memory | 32GB(2x16) DDR5@6600MHz G-Skill Trident Z5 |
Video Card(s) | ZOTAC GAMING GeForce RTX 3080 AMP Holo |
Storage | 2TB SK Platinum P41 SSD + 4TB SanDisk Ultra SSD + 500GB Samsung 840 EVO SSD |
Display(s) | Acer Predator X34 3440x1440@100Hz G-Sync |
Case | NZXT PHANTOM410-BK |
Audio Device(s) | Creative X-Fi Titanium PCIe |
Power Supply | Corsair 850W |
Mouse | Logitech Hero G502 SE |
Software | Windows 11 Pro - 64bit |
Benchmark Scores | 30FPS in NFS:Rivals |
Processor | 265K (running stock until more Intel updates land) |
---|---|
Motherboard | MPG Z890 Carbon WIFI |
Cooling | Peerless Assassin 140 |
Memory | 48GB DDR5-7200 CL34 |
Video Card(s) | RTX 3080 12GB FTW3 Ultra Hybrid |
Storage | 1.5TB 905P and 2x 2TB P44 Pro |
Display(s) | CU34G2X and Ea244wmi |
Case | Dark Base 901 |
Audio Device(s) | Sound Blaster X4 |
Power Supply | Toughpower PF3 850 |
Mouse | G502 HERO/G700s |
Keyboard | Ducky One 3 Pro Nazca |
FWIW the Golden Cove cores being used in Sapphire Rapids already have 2MB of L2 so we ought to see if there's added latency as soon as someone benches one of those. Intel didn't say anything about increased latency over the ones in Alder Lake, but that doesn't mean there isn't.Alder Lake has already increased cache latency in comparison to Rocket Lake. If they go even further we might arrive in a situation where Zen 3 will have almost half the cache latency of Raptor Lake. But in the end we'll have to wait for benchmarks, and even then it is going to be workload-dependent.
Processor | AMD Ryzen 9 5900X ||| Intel Core i7-3930K |
---|---|
Motherboard | ASUS ProArt B550-CREATOR ||| Asus P9X79 WS |
Cooling | Noctua NH-U14S ||| Be Quiet Pure Rock |
Memory | Crucial 2 x 16 GB 3200 MHz ||| Corsair 8 x 8 GB 1333 MHz |
Video Card(s) | MSI GTX 1060 3GB ||| MSI GTX 680 4GB |
Storage | Samsung 970 PRO 512 GB + 1 TB ||| Intel 545s 512 GB + 256 GB |
Display(s) | Asus ROG Swift PG278QR 27" ||| Eizo EV2416W 24" |
Case | Fractal Design Define 7 XL x 2 |
Audio Device(s) | Cambridge Audio DacMagic Plus |
Power Supply | Seasonic Focus PX-850 x 2 |
Mouse | Razer Abyssus |
Keyboard | CM Storm QuickFire XT |
Software | Ubuntu |
For what purpose?If you need to give just one number, 68 MB makes more sense than 36 MB.
Very little.What does that mean in plain English? I though more cache means bigger latency? Or how is more cache beneficial?
System Name | Poor Man's PC |
---|---|
Processor | Ryzen 7 9800X3D |
Motherboard | MSI B650M Mortar WiFi |
Cooling | Thermalright Phantom Spirit 120 with Arctic P12 Max fan |
Memory | 32GB GSkill Flare X5 DDR5 6000Mhz |
Video Card(s) | XFX Merc 310 Radeon RX 7900 XT |
Storage | XPG Gammix S70 Blade 2TB + 8 TB WD Ultrastar DC HC320 |
Display(s) | Xiaomi G Pro 27i MiniLED |
Case | Asus A21 Case |
Audio Device(s) | MPow Air Wireless + Mi Soundbar |
Power Supply | Enermax Revolution DF 650W Gold |
Mouse | Logitech MX Anywhere 3 |
Keyboard | Logitech Pro X + Kailh box heavy pale blue switch + Durock stabilizers |
VR HMD | Meta Quest 2 |
Benchmark Scores | Who need bench when everything already fast? |
System Name | R9 5950x/Skylake 6400 |
---|---|
Processor | R9 5950x/i5 6400 |
Motherboard | Gigabyte Aorus Master X570/Asus Z170 Pro Gaming |
Cooling | Arctic Liquid Freezer II 360/Stock |
Memory | 4x8GB Patriot PVS416G4440 CL14/G.S Ripjaws 32 GB F4-3200C16D-32GV |
Video Card(s) | 7900XTX/6900XT |
Storage | RIP Seagate 530 4TB (died after 7 months), WD SN850 2TB, Aorus 2TB, Corsair MP600 1TB / 960 Evo 1TB |
Display(s) | 3x LG 27gl850 1440p |
Case | Custom builds |
Audio Device(s) | - |
Power Supply | Silverstone 1000watt modular Gold/1000Watt Antec |
Software | Win11pro/win10pro / Win10 Home / win7 / wista 64 bit and XPpro |
Processor | Intel i5-12600k |
---|---|
Motherboard | Asus H670 TUF |
Cooling | Arctic Freezer 34 |
Memory | 2x16GB DDR4 3600 G.Skill Ripjaws V |
Video Card(s) | EVGA GTX 1060 SC |
Storage | 500GB Samsung 970 EVO, 500GB Samsung 850 EVO, 1TB Crucial MX300 and 2TB Crucial MX500 |
Display(s) | Dell U3219Q + HP ZR24w |
Case | Raijintek Thetis |
Audio Device(s) | Audioquest Dragonfly Red :D |
Power Supply | Seasonic 620W M12 |
Mouse | Logitech G502 Proteus Core |
Keyboard | G.Skill KM780R |
Software | Arch Linux + Win10 |
It's a tug-of-war game. If you can increase the cache with minimum added latency, some data that previously required a trip to the main RAM, suddenly doesn't need that anymore -> faster performance. And then the workloads change. Rinse and repeat.What does that mean in plain English? I though more cache means bigger latency? Or how is more cache beneficial?
Processor | AMD Ryzen 9 5950X |
---|---|
Motherboard | Asus ROG Crosshair VIII Hero WiFi |
Cooling | Arctic Liquid Freezer II 420 |
Memory | 32Gb G-Skill Trident Z Neo @3806MHz C14 |
Video Card(s) | MSI GeForce RTX2070 |
Storage | Seagate FireCuda 530 1TB |
Display(s) | Samsung G9 49" Curved Ultrawide |
Case | Cooler Master Cosmos |
Audio Device(s) | O2 USB Headphone AMP |
Power Supply | Corsair HX850i |
Mouse | Logitech G502 |
Keyboard | Cherry MX |
Software | Windows 11 |
Processor | i5-6600K |
---|---|
Motherboard | Asus Z170A |
Cooling | some cheap Cooler Master Hyper 103 or similar |
Memory | 16GB DDR4-2400 |
Video Card(s) | IGP |
Storage | Samsung 850 EVO 250GB |
Display(s) | 2x Oldell 24" 1920x1200 |
Case | Bitfenix Nova white windowless non-mesh |
Audio Device(s) | E-mu 1212m PCI |
Power Supply | Seasonic G-360 |
Mouse | Logitech Marble trackball, never had a mouse |
Keyboard | Key Tronic KT2000, no Win key because 1994 |
Software | Oldwin |
I'm sure it matters for applications that can fit their dataset into L2+L3, but not L3 alone, while using all cores. I admit this is more of a HPC territory, where you have a single application running and you can predict (and maybe adjust) cache utilisation. For desktop use ... not sure, but total cache size could affect things like transcoding or image processing a lot.For what purpose?
The total cache tells little of the relative performance of CPUs. Performance matters, not specs, especially pointless specs.
System Name | RyzenGtEvo/ Asus strix scar II |
---|---|
Processor | Amd R5 5900X/ Intel 8750H |
Motherboard | Crosshair hero8 impact/Asus |
Cooling | 360EK extreme rad+ 360$EK slim all push, cpu ek suprim Gpu full cover all EK |
Memory | Gskill Trident Z 3900cas18 32Gb in four sticks./16Gb/16GB |
Video Card(s) | Asus tuf RX7900XT /Rtx 2060 |
Storage | Silicon power 2TB nvme/8Tb external/1Tb samsung Evo nvme 2Tb sata ssd/1Tb nvme |
Display(s) | Samsung UAE28"850R 4k freesync.dell shiter |
Case | Lianli 011 dynamic/strix scar2 |
Audio Device(s) | Xfi creative 7.1 on board ,Yamaha dts av setup, corsair void pro headset |
Power Supply | corsair 1200Hxi/Asus stock |
Mouse | Roccat Kova/ Logitech G wireless |
Keyboard | Roccat Aimo 120 |
VR HMD | Oculus rift |
Software | Win 10 Pro |
Benchmark Scores | laptop Timespy 6506 |
Processor | Intel i5-12600k |
---|---|
Motherboard | Asus H670 TUF |
Cooling | Arctic Freezer 34 |
Memory | 2x16GB DDR4 3600 G.Skill Ripjaws V |
Video Card(s) | EVGA GTX 1060 SC |
Storage | 500GB Samsung 970 EVO, 500GB Samsung 850 EVO, 1TB Crucial MX300 and 2TB Crucial MX500 |
Display(s) | Dell U3219Q + HP ZR24w |
Case | Raijintek Thetis |
Audio Device(s) | Audioquest Dragonfly Red :D |
Power Supply | Seasonic 620W M12 |
Mouse | Logitech G502 Proteus Core |
Keyboard | G.Skill KM780R |
Software | Arch Linux + Win10 |
Massive increase, for those inclined to readMassive, perhaps compared to Alderlake, but I don't know if I would call this a massive Cache in these times.
System Name | RyzenGtEvo/ Asus strix scar II |
---|---|
Processor | Amd R5 5900X/ Intel 8750H |
Motherboard | Crosshair hero8 impact/Asus |
Cooling | 360EK extreme rad+ 360$EK slim all push, cpu ek suprim Gpu full cover all EK |
Memory | Gskill Trident Z 3900cas18 32Gb in four sticks./16Gb/16GB |
Video Card(s) | Asus tuf RX7900XT /Rtx 2060 |
Storage | Silicon power 2TB nvme/8Tb external/1Tb samsung Evo nvme 2Tb sata ssd/1Tb nvme |
Display(s) | Samsung UAE28"850R 4k freesync.dell shiter |
Case | Lianli 011 dynamic/strix scar2 |
Audio Device(s) | Xfi creative 7.1 on board ,Yamaha dts av setup, corsair void pro headset |
Power Supply | corsair 1200Hxi/Asus stock |
Mouse | Roccat Kova/ Logitech G wireless |
Keyboard | Roccat Aimo 120 |
VR HMD | Oculus rift |
Software | Win 10 Pro |
Benchmark Scores | laptop Timespy 6506 |
Yeah I did ,I meant it's not a massive increase, I appreciate it didn't sound like that though.Massive increase, for those inclined to read
Processor | Intel i5-12600k |
---|---|
Motherboard | Asus H670 TUF |
Cooling | Arctic Freezer 34 |
Memory | 2x16GB DDR4 3600 G.Skill Ripjaws V |
Video Card(s) | EVGA GTX 1060 SC |
Storage | 500GB Samsung 970 EVO, 500GB Samsung 850 EVO, 1TB Crucial MX300 and 2TB Crucial MX500 |
Display(s) | Dell U3219Q + HP ZR24w |
Case | Raijintek Thetis |
Audio Device(s) | Audioquest Dragonfly Red :D |
Power Supply | Seasonic 620W M12 |
Mouse | Logitech G502 Proteus Core |
Keyboard | G.Skill KM780R |
Software | Arch Linux + Win10 |
1.25->2MB/core is pretty massive for L2 cache. Iirc it doesn't usually grow that fast.Yeah I did ,I meant it's not a massive increase, I appreciate it didn't sound like that though.
This. And when the improvements in the structure and functionality of the cache are factored in, the sum total is an overall gain in performance.It's a tug-of-war game. If you can increase the cache with minimum added latency, some data that previously required a trip to the main RAM, suddenly doesn't need that anymore -> faster performance. And then the workloads change. Rinse and repeat.
It's also a fab process game, cache is expensive both from a power and a die area point of view.
Also keep in mind cache latency (like RAM latency) is usually given in clock cycles. 1-2 more clock cycles can be masked by increasing the frequency accordingly (it's a bit more complicated than that, really, but that's the gist of it.)
I think you misunderstand how cache is used and why it exists. Caches exist to minimize, as much as possible, how many times the CPU needs to fetch data from system ram, which is drastically slower. The less frequently that needs to happen, the better the performance. 99.9% of the time, programs and executing code are completely cache agnostic. This means that programs are generally optimized to run in minimal amounts of cache. However, the more the merrier. So if a program has more room to use, it will use it and the CPU will fit it in. That said, all programs will benefit from more cache unless they are so small that they will fit into L2 or a couple MB of L3, however, this is rare.I'm sure it matters for applications that can fit their dataset into L2+L3, but not L3 alone, while using all cores. I admit this is more of a HPC territory, where you have a single application running and you can predict (and maybe adjust) cache utilisation. For desktop use ... not sure, but total cache size could affect things like transcoding or image processing a lot.
Processor | AMD Ryzen 9 5900X ||| Intel Core i7-3930K |
---|---|
Motherboard | ASUS ProArt B550-CREATOR ||| Asus P9X79 WS |
Cooling | Noctua NH-U14S ||| Be Quiet Pure Rock |
Memory | Crucial 2 x 16 GB 3200 MHz ||| Corsair 8 x 8 GB 1333 MHz |
Video Card(s) | MSI GTX 1060 3GB ||| MSI GTX 680 4GB |
Storage | Samsung 970 PRO 512 GB + 1 TB ||| Intel 545s 512 GB + 256 GB |
Display(s) | Asus ROG Swift PG278QR 27" ||| Eizo EV2416W 24" |
Case | Fractal Design Define 7 XL x 2 |
Audio Device(s) | Cambridge Audio DacMagic Plus |
Power Supply | Seasonic Focus PX-850 x 2 |
Mouse | Razer Abyssus |
Keyboard | CM Storm QuickFire XT |
Software | Ubuntu |
Many have the misconception of CPU caches containing the most important data, when in reality they only contain the most recently used (or prefetched) data, caches are streaming buffers. While it's possible for a application to give the CPU hints about prefetching and discarding cache lines, it's ultimately controlled by the CPU, and there are no guarantees. The code don't see the caches, they are transparent, to the code it's just normal memory accesses that turn out to be very fast. When we do cache optimization this is about making it easier for the CPU, like denser code and data, less function calls, less branching, using SIMD, etc. Still, the application don't control what's in cache, or whether the application "fits in cache", because this will "never" be the case anyways.I'm sure it matters for applications that can fit their dataset into L2+L3, but not L3 alone, while using all cores. I admit this is more of a HPC territory, where you have a single application running and you can predict (and maybe adjust) cache utilisation. For desktop use ... not sure, but total cache size could affect things like transcoding or image processing a lot.
Processor | Ryzen 5700x |
---|---|
Motherboard | Gigabyte X570S Aero G R1.1 BiosF5g |
Cooling | Noctua NH-C12P SE14 w/ NF-A15 HS-PWM Fan 1500rpm |
Memory | Micron DDR4-3200 2x32GB D.S. D.R. (CT2K32G4DFD832A) |
Video Card(s) | AMD RX 6800 - Asus Tuf |
Storage | Kingston KC3000 1TB & 2TB & 4TB Corsair MP600 Pro LPX |
Display(s) | LG 27UL550-W (27" 4k) |
Case | Be Quiet Pure Base 600 (no window) |
Audio Device(s) | Realtek ALC1220-VB |
Power Supply | SuperFlower Leadex V Gold Pro 850W ATX Ver2.52 |
Mouse | Mionix Naos Pro |
Keyboard | Corsair Strafe with browns |
Software | W10 22H2 Pro x64 |
System Name | Bragging Rights |
---|---|
Processor | Atom Z3735F 1.33GHz |
Motherboard | It has no markings but it's green |
Cooling | No, it's a 2.2W processor |
Memory | 2GB DDR3L-1333 |
Video Card(s) | Gen7 Intel HD (4EU @ 311MHz) |
Storage | 32GB eMMC and 128GB Sandisk Extreme U3 |
Display(s) | 10" IPS 1280x800 60Hz |
Case | Veddha T2 |
Audio Device(s) | Apparently, yes |
Power Supply | Samsung 18W 5V fast-charger |
Mouse | MX Anywhere 2 |
Keyboard | Logitech MX Keys (not Cherry MX at all) |
VR HMD | Samsung Oddyssey, not that I'd plug it into this though.... |
Software | W10 21H1, barely |
Benchmark Scores | I once clocked a Celeron-300A to 564MHz on an Abit BE6 and it scored over 9000. |
Processor | AMD Ryzen 9 5950X |
---|---|
Motherboard | Asus ROG Crosshair VIII Hero WiFi |
Cooling | Arctic Liquid Freezer II 420 |
Memory | 32Gb G-Skill Trident Z Neo @3806MHz C14 |
Video Card(s) | MSI GeForce RTX2070 |
Storage | Seagate FireCuda 530 1TB |
Display(s) | Samsung G9 49" Curved Ultrawide |
Case | Cooler Master Cosmos |
Audio Device(s) | O2 USB Headphone AMP |
Power Supply | Corsair HX850i |
Mouse | Logitech G502 |
Keyboard | Cherry MX |
Software | Windows 11 |
So was 640kb8 P-cores is enough for the moment, and based on historic trends, enough for a decade or more.
This yes...8 P-cores is enough for the moment, and based on historic trends
...but this? Might be stretching things a bit. Though to be fair, the 6core Socket1366 CPUs are over a decade old and are still holding their own, so who knows...enough for a decade or more.
System Name | Bragging Rights |
---|---|
Processor | Atom Z3735F 1.33GHz |
Motherboard | It has no markings but it's green |
Cooling | No, it's a 2.2W processor |
Memory | 2GB DDR3L-1333 |
Video Card(s) | Gen7 Intel HD (4EU @ 311MHz) |
Storage | 32GB eMMC and 128GB Sandisk Extreme U3 |
Display(s) | 10" IPS 1280x800 60Hz |
Case | Veddha T2 |
Audio Device(s) | Apparently, yes |
Power Supply | Samsung 18W 5V fast-charger |
Mouse | MX Anywhere 2 |
Keyboard | Logitech MX Keys (not Cherry MX at all) |
VR HMD | Samsung Oddyssey, not that I'd plug it into this though.... |
Software | W10 21H1, barely |
Benchmark Scores | I once clocked a Celeron-300A to 564MHz on an Abit BE6 and it scored over 9000. |
So was 640kb