commit | 77141acb7f090a2205d43d397905c65a0d1e4b6e | [log] [tgz] |
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author | Oleksandr Shulzhenko <oleksandr.shulzhenko.viktorovych@intel.com> | Tue Mar 14 14:52:36 2023 +0100 |
committer | Oleksandr Shulzhenko <oleksandr.shulzhenko.viktorovych@intel.com> | Tue May 09 07:39:56 2023 +0000 |
tree | f19770920e26594132250230beb7ca26c1204d5f | |
parent | d02ad49eb60dd0761686220812b5afabb862693e [diff] |
IntelCPUSensor: Use libpeci when communicating via peci-legacy When using peci-legacy the general approach is to use libpeci as the middleware to communicate with peci core from userspace. Integrate libpeci with IntelCPUSensor and use library functions to issue peci commands where necessary. Tested: hwmons are succesfully created in the same way they were created using ioctl. Change-Id: I4ecd70e604d447a4066dc5fb8d902992cb97cadf Signed-off-by: Oleksandr Shulzhenko <oleksandr.shulzhenko.viktorovych@intel.com>
dbus-sensors is a collection of sensor applications that provide the xyz.openbmc_project.Sensor collection of interfaces. They read sensor values from hwmon, d-bus, or direct driver access to provide readings. Some advance non-sensor features such as fan presence, pwm control, and automatic cpu detection (x86) are also supported.
runtime re-configurable from d-bus (entity-manager or the like)
isolated: each sensor type is isolated into its own daemon, so a bug in one sensor is unlikely to affect another, and single sensor modifications are possible
async single-threaded: uses sdbusplus/asio bindings
multiple data inputs: hwmon, d-bus, direct driver access
A typical dbus-sensors object support the following dbus interfaces:
Path /xyz/openbmc_project/sensors/<type>/<sensor_name> Interfaces xyz.openbmc_project.Sensor.Value xyz.openbmc_project.Sensor.Threshold.Critical xyz.openbmc_project.Sensor.Threshold.Warning xyz.openbmc_project.State.Decorator.Availability xyz.openbmc_project.State.Decorator.OperationalStatus xyz.openbmc_project.Association.Definitions
Sensor interfaces collection are described here.
Consumer examples of these interfaces are Redfish, Phosphor-Pid-Control, IPMI SDR.
dbus-sensor daemons are reactors that dynamically create and update sensors configuration when system configuration gets updated.
Using asio timers and async calls, dbus-sensor daemons read sensor values and check thresholds periodically. PropertiesChanged signals will be broadcasted for other services to consume when value or threshold status change. OperationStatus is set to false if the sensor is determined to be faulty.
A simple sensor example can be found here.
Sensor devices are described using Exposes records in configuration file. Name and Type fields are required. Different sensor types have different fields. Refer to entity manager schema for complete list.