418 lines
13 KiB
Groff
418 lines
13 KiB
Groff
.\" $NetBSD: envsys.4,v 1.41 2008/04/30 13:10:54 martin Exp $
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.\"
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.\" Copyright (c) 2007 The NetBSD Foundation, Inc.
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.\" All rights reserved.
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.\"
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.\" This code is derived from software contributed to The NetBSD Foundation
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.\" by Juan Romero Pardines.
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.\"
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.\" Redistribution and use in source and binary forms, with or without
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.\" modification, are permitted provided that the following conditions
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.\" are met:
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.\" 1. Redistributions of source code must retain the above copyright
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.\" notice, this list of conditions and the following disclaimer.
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.\" 2. Redistributions in binary form must reproduce the above copyright
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.\" notice, this list of conditions and the following disclaimer in the
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.\" documentation and/or other materials provided with the distribution.
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.\"
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.\" THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
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.\" ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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.\" TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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.\" PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
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.\" BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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.\" CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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.\" SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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.\" INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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.\" CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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.\" ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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.\" POSSIBILITY OF SUCH DAMAGE.
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.\"
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.Dd November 13, 2007
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.Dt ENVSYS 4
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.Os
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.Sh NAME
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.Nm envsys
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.Nd Environmental Systems framework (version 2)
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.Sh SYNOPSIS
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.In sys/envsys.h
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.Sh DESCRIPTION
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The
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.Nm
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framework provides support to handle hardware monitor devices.
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Hardware monitoring chips are able to report values from different types of
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sensors.
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.Pp
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The
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.Nm
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framework consists of two parts:
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.Pp
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.Bl -enum -offset indent -compact
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.It
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the userland part, to receive the current sensor data and
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to set some properties on sensors:
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.Xr envstat 8 .
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.It
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The kernel part that is able to talk to the drivers providing sensor
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data:
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.Xr sysmon_envsys 9 .
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.El
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.Pp
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The
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.Nm
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framework uses
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.Xr proplib 3
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for communication between kernel and user space.
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The following
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.Xr ioctl 2
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types are available:
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.Pp
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.Bl -tag -width XX -compact
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.It Dv ENVSYS_GETDICTIONARY Pq prop_dictionary_t
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.Pp
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This
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.Xr ioctl 2
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is used to receive the global dictionary that is being used in
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the kernel by the
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.Xr sysmon_envsys 9
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framework.
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It will contain an array of dictionaries per device
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and one dictionary per sensor plus another special dictionary that
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contains the properties for a device.
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Each sensor dictionary will have their own characteristics and values.
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.Pp
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The following XML property list represents a virtual device
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.Dq device0
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with one sensor
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.Dq sensor0
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and all available properties set on it, plus another sensor for
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the
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.Dq device-properties
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dictionary (which contains specific properties for a device):
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.Pp
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.Bd -literal
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\&\*[Lt]key\&\*[Gt]device0\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]array\&\*[Gt]
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]allow-rfact\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]avg-value\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]36400\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]battery-capacity\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]NORMAL\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-capacity\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]21417\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-max\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]343150000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-min\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]288150000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]cur-value\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]406000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]description\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]CPU Temp\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]index\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]sensor0\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]max-value\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]3894000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]min-value\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]2894000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-critical\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-critover\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-critunder\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-state-changed\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-warnover\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-state-warnunder\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]monitoring-supported\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]state\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]valid\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]type\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]Ampere hour\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]want-percentage\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]true\&/\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]device-properties\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]refresh-timeout\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]0xa\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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\&\*[Lt]\&/array\&\*[Gt]
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.Ed
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.Pp
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Let's explain some more about those objects:
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.Bl -tag -width "monitoring-state-critical-overxx"
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.It Fa allow-rfact
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Set to
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.Em true
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mean that the sensor is able to change the resistor factor,
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only used in Voltage sensors.
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.It Fa avg-value
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Current average value in the sensor.
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.It Fa battery-capacity
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Current capacity state for a battery capacity sensor.
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.It Fa critical-capacity
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Critical capacity set previously by the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 .
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Only available on sensors with the
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.Em want-percentage
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object enabled.
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.It Fa critical-max
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Critical max limit set previously by the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 .
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.It Fa critical-min
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Critical min limit set previously by the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 .
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.It Fa cur-value
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Current value in the sensor.
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.It Fa description
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Description of the sensor.
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.It Fa index
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Index position of the sensor.
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.It Fa max-value
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Current max value in the sensor.
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.It Fa min-value
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Current min value in the sensor.
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.It Fa monitoring-state-critical
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If true, the driver has enabled the flag to monitor a critical state.
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.It Fa monitoring-state-critical-over
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If true, the driver has enabled the flag to monitor a critical over state.
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.It Fa monitoring-state-critical-under
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If true, the driver has enabled the flag to monitor a critical under state.
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.It Fa monitoring-state-state-changed
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If true, the driver has enabled the flag to monitor for state changes in
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a drive or Battery state sensor.
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.It Fa monitoring-state-warning-over
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If true, the driver has enabled the flag to monitor a warning over state.
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.It Fa monitoring-state-warning-under
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If true, the driver has enabled the flag to monitor a warning under state.
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.It Fa monitoring-supported
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If true, critical capacity/max/min limits may be set by the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 .
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.It Fa state
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Current state in the sensor.
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.It Fa type
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Type of unit in the sensor.
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.It Fa want-percentage
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If true,
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.Em max-value
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and
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.Em cur-value
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are valid and a percentage may be computed from them.
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.El
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.El
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.Pp
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.Bl -tag -width XX -compact
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.It Dv ENVSYS_REMOVEPROPS Pq prop_dictionary_t
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.Pp
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This
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.Xr ioctl 2
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is used to remove all properties that are currently set via the
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.Dv ENVSYS_SETDICTIONARY
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ioctl.
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The values will be set to defaults, the ones that the driver uses.
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.Pp
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Only one object is allowed on this dictionary:
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.Bd -literal -offset -ident
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\*[Lt]key\*[Gt]envsys-remove-props\*[Lt]/key\*[Gt]
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\*[Lt]true/\*[Gt]
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.Ed
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.Pp
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It is a boolean object and must be set to
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.Em true
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to be effective.
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.El
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.Bl -tag -width XX -compact
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.Pp
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.It Dv ENVSYS_SETDICTIONARY Pq prop_dictionary_t
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.Pp
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This
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.Xr ioctl 2
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is used to send a dictionary with new properties that should be
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processed by the
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.Nm
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framework.
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Only a set of predefined keywords are recognized by the kernel part.
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The following is the property list representation
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of a dictionary with all recognized and required keywords that
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a sensor understands:
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.Bd -literal
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]description\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]cpu temp\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]rfact\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]56000\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-capacity\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]10\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-max\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]3400\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]critical-min\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]2800\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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.Ed
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.Pp
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Also if some properties in a device need to be changed, the
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.Dq device-properties
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dictionary must be used.
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At this moment only the
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.Dq refresh-timeout
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property is understood.
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This has the following structure:
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.Bd -literal
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]device-properties\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]refresh-timeout\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]integer\&\*[Gt]0xa\&\*[Lt]\&/integer\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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\&\*[Lt]\&/dict\&\*[Gt]
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.Ed
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.Pp
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A dictionary sent to the kernel with this
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.Xr ioctl 2
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should have the following structure:
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.Bd -literal
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]device_name\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]array\&\*[Gt]
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\&\*[Lt]dict\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]index\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]sensor0\&\*[Lt]\&/string\&\*[Gt]
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\&\*[Lt]key\&\*[Gt]description\&\*[Lt]\&/key\&\*[Gt]
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\&\*[Lt]string\&\*[Gt]cpu temp\&\*[Lt]\&/string\&\*[Gt]
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...
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Another property for this sensor
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...
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\&\*[Lt]\&/dict\&\*[Gt]
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...
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Another dictionary for device-properties or sensor
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...
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\&\*[Lt]\&/array\&\*[Gt]
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...
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Another device as above
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...
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\&\*[Lt]\&/dict\&\*[Gt]
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.Ed
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.Pp
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The named device will be an array and will contain dictionaries,
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any dictionary needs to have the
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.Em index
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object specifying the sensor that is required for the new properties.
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.Pp
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If an unknown object was sent with the dictionary,
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.Er EINVAL
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will be returned, or if the sensor does not support changing
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rfact (voltage sensors) or critical/capacity limits,
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.Er ENOTSUP
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will be returned.
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.El
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.Sh NOTES
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When setting a critical max or min limit with the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 ,
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the user must be aware that
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.Xr sysmon_envsys 9
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expects to have a proper unit, so the value must be converted.
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Please see
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.Xr sysmon_envsys 9
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for more information.
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.Pp
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Also when setting a critical capacity limit, the formula to send a
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proper value to
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.Xr sysmon_envsys 9
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is the following:
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.Em value = (value / 100) * max value .
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The max value is available in the sensor's dictionary.
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.Sh EXAMPLES
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The following example shows how to change the description
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of
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.Ql sensor0
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in the
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.Ql aiboost0
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device with the
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.Dv ENVSYS_SETDICTIONARY
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.Xr ioctl 2 :
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.Bd -literal
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int
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main(void)
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{
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prop_dictionary_t global_dict, sensor_dict;
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prop_array_t array;
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prop_object_t obj;
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int fd;
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global_dict = prop_dictionary_create();
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sensor_dict = prop_dictionary_create();
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array = prop_array_create();
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if (!prop_dictionary_set(global_dict, "aiboost0", array))
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err(EINVAL, "prop_dictionary_set global");
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obj = prop_string_create_cstring_nocopy("sensor0");
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if (obj == NULL ||
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!prop_dictionary_set(dict, "index", obj))
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err(EINVAL, "sensor index");
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prop_object_release(obj);
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/* new description */
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obj = prop_string_create_cstring_nocopy("CPU temp");
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if (obj == NULL ||
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!prop_dictionary_set(dict, "description", obj))
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err(EINVAL, "new description");
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prop_object_release(obj);
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if (!prop_array_add(array, sensor_dict))
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err(EINVAL, "prop_array_add");
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if ((fd = open(_DEV_SYSMON, O_RDWR)) == \-1)
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err(EXIT_FAILURE, "open")
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/* we are done, send the dictionary */
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error = prop_dictionary_send_ioctl(global_dict,
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fd,
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ENVSYS_SETDICTIONARY);
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prop_object_release(array);
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prop_object_release(global_dict);
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(void)close(fd);
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return error;
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}
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.Ed
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.Sh SEE ALSO
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.Xr envstat 8 ,
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.Xr powerd 8 ,
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.Xr sysmon_envsys 9
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.Sh HISTORY
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The first
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.Em envsys
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framework first appeared in
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.Nx 1.5 .
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The
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.Em envsys 2
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framework first appeared in
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.Nx 5.0 .
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.Sh AUTHORS
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The (current)
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.Em envsys 2
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framework was implemented by
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.An Juan Romero Pardines .
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Additional input on the design was provided by many
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.Nx
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developers around the world.
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.Pp
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The first
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.Em envsys
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framework was implemented by Jason R. Thorpe, Tim Rightnour,
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and Bill Squier.
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