acrn-hypervisor/hypervisor
Yang, Yu-chu 8779e4fd20 HV: uart16550: check the denominator before use
To prevent the value is devided by zero, checks the denominator
before the calculation. Adding the if statement to check before use.
If the baud_rate is equal to zero, using default baud_rate.

Signed-off-by: Yang, Yu-chu <yu-chu.yang@intel.com>
2018-07-06 11:33:36 +08:00
..
arch/x86 HV:CPU:Clean up variable type for CPU module 2018-07-06 11:32:50 +08:00
boot hv:fix "missing for discarded return value" for memset 2018-07-05 14:14:48 +08:00
bsp hv:fix "missing for discarded return value" for memset 2018-07-05 14:14:48 +08:00
common hv:fix "missing for discarded return value" for memset 2018-07-05 14:14:48 +08:00
debug HV: uart16550: check the denominator before use 2018-07-06 11:33:36 +08:00
include HV: vioapic: use uint8_t for pins 2018-07-05 15:54:52 +08:00
lib hv:fix "missing for discarded return value" for memset 2018-07-05 14:14:48 +08:00
scripts/kconfig HV: make: rename minimalconfig to savedefconfig 2018-06-15 15:50:09 +08:00
Kconfig HV: config: add Kconfig and defconfigs for sbl & uefi 2018-06-08 17:21:13 +08:00
MAINTAINERS update home page information 2018-05-15 17:19:39 +08:00
Makefile build: Using id tool to get builder username 2018-06-29 11:55:03 +08:00
README.rst initial import 2018-05-11 14:44:28 +08:00

README.rst

Embedded-Hypervisor
###################

This open source embedded hypervisor defines a software architecture for
running multiple software subsystems managed securely on a consolidated
system (by means of a virtual machine manager), and defines a reference
framework Device Model implementation for devices emulation

This embedded hypervisor is type-1 reference hypervisor, running
directly on the system hardware. It can be used for building software
defined cockpit (SDC) or In-Vehicle Experience (IVE) solutions running
on Intel Architecture Apollo Lake platforms. As a reference
implementation, it provides the basis for embedded hypervisor vendors to
build solutions with an open source reference I/O mediation solution,
and provides auto makers a reference software stack for SDC usage.

This embedded hypervisor is able to support both Linux* and Android* as
a Guest OS, managed by the hypervisor, where applications can run.

This embedded hypervisor is a partitioning hypervisor reference stack,
also suitable for non-automotive IoT & embedded device solutions. It
will be addressing the gap that currently exists between datacenter
hypervisors, hard partitioning hypervisors, and select industrial
applications.  Extending the scope of this open source embedded
hypervisor relies on the involvement of community developers like you!