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There are many apps in Android that can run or emulate other operating systems, via utilizing hardware support for platform virtualization technologies, or via terminal emulation. Some of these apps support having more than one emulation/virtual file system for different OS profiles, thus the ability to have or run multiple OS's.
Depending upon how the desktop virtualization app works, they use RDP or can use another protocol of their own. Most business oriented desktop virtualization apps require specific types of equipment or services in order for the app to fully function. For example, VMware Horizon Client requires specific VMware equipment for the app to work. [2]
JPC (Virtual Machine) University of Oxford: Any running the Java Virtual Machine: x86 Java Virtual Machine DOS, Linux, Windows up to 3.0 GPL version 2: KVM: Qumranet, now Red Hat x86, x86-64, IA-64, with x86 virtualization, s390, PowerPC, [5] ARM [6] Same as host Linux, illumos FreeBSD, Linux, Solaris, Windows, Plan 9: GPL version 2: Linux ...
VMOS is a virtual machine app that runs on Android, which can run another Android OS as the guest operating system. Users can optionally run the guest Android VM as a rooted Android OS. The VMOS guest Android operating system has access to the Google Play Store and other Google apps. The first Android virtual machine to offer Google Play ...
Limbo is an x86 and ARM64 QEMU-based virtual machine for Android. [31] It is one of the few pieces of virtual machine software available for Android capable of emulating Microsoft Windows, [32] although it was designed to emulate Linux and DOS. Unlike other QEMU-based emulators, it does not require users to type commands to use, instead having ...
With mobile virtualization, mobile phones can support multiple domains/operating systems on the same hardware, so that the enterprise IT department can securely manage one domain (in a virtual machine), and the mobile operator can separately manage the other domain (in a virtual machine).
The ARM-R architecture, specifically the Armv8-R profile, is designed to address the needs of real-time applications, where predictable and deterministic behavior is essential. This profile focuses on delivering high performance, reliability, and efficiency in embedded systems where real-time constraints are critical.
A Dalvik-powered phone. The relative merits of stack machines versus register-based approaches are a subject of ongoing debate. [16]Generally, stack-based machines must use instructions to load data on the stack and manipulate that data, and, thus, require more instructions than register machines to implement the same high-level code, but the instructions in a register machine must encode the ...