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Core i7, on the desktop platform no longer supports hyper-threading; instead, now higher-performing core i9s will support hyper-threading on both mobile and desktop platforms. Before 2007 and post-Kaby Lake, some Intel Pentium and Intel Atom (e.g. N270, N450) processors support hyper-threading. Celeron processors never supported it.
The vast majority of Intel server chips of the Xeon E3, Xeon E5, and Xeon E7 product lines support VT-d. The first—and least powerful—Xeon to support VT-d was the E5502 launched Q1'09 with two cores at 1.86 GHz on a 45 nm process. [2]
This was chosen because the 11/780 was roughly equivalent in performance to an IBM System/370 model 158–3, which was commonly accepted in the computing industry as running at 1 MIPS. Many minicomputer performance claims were based on the Fortran version of the Whetstone benchmark , giving Millions of Whetstone Instructions Per Second (MWIPS).
The Ryzen family is an x86-64 microprocessor family from AMD, based on the Zen microarchitecture. The Ryzen lineup includes Ryzen 3, Ryzen 5, Ryzen 7, Ryzen 9, and Ryzen Threadripper with up to 96 cores. All consumer desktop Ryzens (except PRO models) and all mobile processors with the HX suffix have an unlocked multiplier.
Intel Atom Oak Trail 2-way simultaneous multithreading, in-order, burst mode, 512 KB L2 cache Intel Atom Bonnell: 2008 SMT Intel Atom Silvermont: 2013 Out-of-order execution Intel Atom Goldmont: 2016 Multi-core, out-of-order execution, 3-wide superscalar pipeline, L2 cache Intel Atom Goldmont Plus: 2017 Multi-core Intel Atom Tremont: 2019
All parameters of the M1 Max processors are doubled in M1 Ultra processors, as they are essentially two M1 Max chips operating in parallel; they are, however, packed as one processor package (in size being bigger than Socket AM4 AMD Ryzen processor) [22] and seen as one M1 Ultra processor in macOS.