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However, IRPs are sometimes created by the plug-and-play manager, power manager, and other system components, and can also be created by drivers and then passed to other drivers. The I/O request packet mechanism is also used by Digital Equipment Corporation 's VMS operating system, and was used by Digital's RSX-11 family of operating systems ...
Acer AspireRevo Nettop Media Server w/Remote; Aleutia H1 Hotel PC (with the above ZOTAC IONITX A-U), fanless in the single core version. [6] aOpen GP7A [7] ASRock Ion 330 series [8] ASRock Ion 330HT series w/Remote [9] ASRock Ion 330Pro; ASUS Eee Box EB1012U (ION 1) ASUS Eee Box EB1012P (ION 2) ASUS Eee Box EB1501; Asus S1-AT5NM10E; Foxconn ...
Drivers that may be vulnerable include those for WiFi and Bluetooth, [19] [20] gaming/graphics drivers, [21] and drivers for printers. [ 22 ] There is a lack of effective kernel vulnerability detection tools, especially for closed-source OSes such as Microsoft Windows [ 23 ] where the source code of the device drivers is mostly not public (open ...
The Acer Aspire One D270 netbook is the first 10-inch Acer netbook to feature a 1.6 GHz Intel Atom N2600 dual core processor and running Windows 7 Starter 32-bit. [67] The AOD270-1186, the white models, feature an Intel Atom N2600 dual core processor with 1 MB L2 cache, 1.6 GHz processor and Hyper Threading technology. [68]
Acer America Corporation, headquartered in San Jose, California, is a member of the Acer Group. Acer's R&D, engineering, manufacturing, and marketing operations in the United States and Canada are handled by Acer America. The U.S. headquarters was opened with a staff of three in 1985, as Multitech Electronics USA, in Mountain View, California ...
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Memory-mapped I/O is preferred in IA-32 and x86-64 based architectures because the instructions that perform port-based I/O are limited to one register: EAX, AX, and AL are the only registers that data can be moved into or out of, and either a byte-sized immediate value in the instruction or a value in register DX determines which port is the source or destination port of the transfer.
Super I/O (sometimes Multi-IO) [1] is a class of I/O controller integrated circuits that began to be used on personal computer motherboards in the late 1980s, originally as add-in cards, later embedded on the motherboards. A super I/O chip combines interfaces for a variety of low-bandwidth devices.