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730 lines
21 KiB
Perl
730 lines
21 KiB
Perl
################################################################################
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#
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# $Id$
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#
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# 66_EseraDigitalInOut.pm
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#
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# Copyright (C) 2018 pizmus
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <https://www.gnu.org/licenses/>.
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#
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################################################################################
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#
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# This FHEM module controls a digital input and/or output device connected via
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# an Esera "1-wire Controller 1" with LAN interface and the 66_EseraOneWire
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# module.
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#
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################################################################################
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package main;
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use strict;
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use warnings;
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use SetExtensions;
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my %deviceSpecs = ("DS2408" => 8, "11220" => 8, "11228" => 8, "11229" => 8, "11216" => 8, "11233" => 2, "SYS1" => 4, "SYS2" => 5);
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sub
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EseraDigitalInOut_Initialize($)
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{
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my ($hash) = @_;
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$hash->{Match} = "DS2408|11220|11233|11228|11229|11216|SYS1|SYS2";
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$hash->{DefFn} = "EseraDigitalInOut_Define";
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$hash->{UndefFn} = "EseraDigitalInOut_Undef";
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$hash->{ParseFn} = "EseraDigitalInOut_Parse";
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$hash->{SetFn} = "EseraDigitalInOut_Set";
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$hash->{GetFn} = "EseraDigitalInOut_Get";
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$hash->{AttrFn} = "EseraDigitalInOut_Attr";
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$hash->{AttrList} = "$readingFnAttributes";
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}
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sub
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EseraDigitalInOut_calculateBits($$$$)
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{
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my ($hash, $deviceType, $rawBitPos, $rawBitCount) = @_;
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my $name = $hash->{NAME};
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my $maxBitCount = $deviceSpecs{$deviceType};
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if (!defined $maxBitCount)
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{
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Log3 $name, 1, "EseraDigitalInOut ($name) - error looking up maximum bit width";
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return undef;
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}
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my $bitPos = 0;
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if (!($rawBitPos eq "-"))
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{
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if (($rawBitPos >= 0) && ($rawBitPos < $maxBitCount))
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{
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$bitPos = $rawBitPos;
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}
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else
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{
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Log3 $name, 1, "EseraDigitalInOut ($name) - specified bit field position is out of range";
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}
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}
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$hash->{BITPOS} = $bitPos;
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my $bitCount = $maxBitCount - $bitPos;
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if (!($rawBitCount eq "-"))
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{
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if ($rawBitCount > $bitCount)
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{
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Log3 $name, 1, "EseraDigitalInOut ($name) - specified bit field size is out of range";
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}
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else
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{
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$bitCount = $rawBitCount;
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}
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}
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$hash->{BITCOUNT} = $bitCount;
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return 1;
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}
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sub
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EseraDigitalInOut_Define($$)
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{
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my ($hash, $def) = @_;
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my @a = split( "[ \t][ \t]*", $def);
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return "Usage: define <name> EseraDigitalInOut <physicalDevice> <1-wire-ID> <deviceType> (<bitPos>|-) (<bitCount>|-)" if(@a < 7);
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my $devName = $a[0];
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my $type = $a[1];
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my $physicalDevice = $a[2];
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my $oneWireId = $a[3];
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my $deviceType = uc($a[4]);
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my $bitPos = $a[5];
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my $bitCount = $a[6];
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$hash->{STATE} = 'Initialized';
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$hash->{NAME} = $devName;
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$hash->{TYPE} = $type;
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$hash->{ONEWIREID} = $oneWireId;
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$hash->{ESERAID} = undef; # We will get this from the first reading.
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$hash->{DEVICE_TYPE} = $deviceType;
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my $success = EseraDigitalInOut_calculateBits($hash, $deviceType, $bitPos, $bitCount);
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if (!$success)
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{
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Log3 $devName, 1, "EseraDigitalInOut ($devName) - definition failed";
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return undef;
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}
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$modules{EseraDigitalInOut}{defptr}{$oneWireId} = $hash;
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AssignIoPort($hash, $physicalDevice);
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if (defined($hash->{IODev}->{NAME}))
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{
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Log3 $devName, 4, "EseraDigitalInOut ($devName) - I/O device is " . $hash->{IODev}->{NAME};
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}
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else
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{
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Log3 $devName, 1, "EseraDigitalInOut ($devName) - no I/O device";
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}
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# program the the device type into the controller via the physical module
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if ($deviceType =~ m/^DS([0-9A-F]+)/)
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{
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# for the DS* devices types the "DS" has to be omitted
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IOWrite($hash, "assign;$oneWireId;$1");
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}
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elsif (!($deviceType =~ m/^SYS[12]/))
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{
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IOWrite($hash, "assign;$oneWireId;$deviceType");
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}
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return undef;
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}
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sub
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EseraDigitalInOut_Undef($$)
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{
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my ($hash, $arg) = @_;
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my $oneWireId = $hash->{ONEWIREID};
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RemoveInternalTimer($hash);
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delete( $modules{EseraDigitalInOut}{defptr}{$oneWireId} );
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return undef;
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}
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sub
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EseraDigitalInOut_Get($@)
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{
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return undef;
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}
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sub
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EseraDigitalInOut_setDS2408digout($$$$)
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{
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my ($hash, $owId, $mask, $value) = @_;
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my $name = $hash->{NAME};
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if ($mask < 1)
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{
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my $message = "error: at least one mask bit must be set, mask ".$mask.", value ".$value;
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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if ($mask > 255)
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{
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my $message = "error: mask is out of range";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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if (($value < 0) || ($value > 255))
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{
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my $message = "error: value out of range";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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# look up the ESERA ID
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my $eseraId = $hash->{ESERAID};
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if (!defined $eseraId)
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{
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my $message = "error: ESERA ID not known";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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# set values as given by mask and value
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if ($mask == 255)
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{
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# all bits are selected, use command to set all bits
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my $command = "set,owd,outh,".$eseraId.",".$value;
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IOWrite($hash, "set;$owId;$command");
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return undef;
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}
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else
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{
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# a subset of bits is selected, iterate over selected bits
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my $i;
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for ($i=0; $i<8; $i++)
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{
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if ($mask & 0x1)
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{
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my $bitValue = $value & 0x1;
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my $command = "set,owd,out,".$eseraId.",".$i.",".$bitValue;
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IOWrite($hash, "set;$owId;$command");
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}
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$mask = $mask >> 1;
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$value = $value >> 1;
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}
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return undef;
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}
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return undef;
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}
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sub
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EseraDigitalInOut_setSysDigout($$$$)
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{
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my ($hash, $owId, $mask, $value) = @_;
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my $name = $hash->{NAME};
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if ($mask < 1)
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{
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my $message = "error: at least one mask bit must be set, mask ".$mask.", value ".$value;
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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if ($mask > 31)
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{
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my $message = "error: mask is out of range";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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if (($value < 0) || ($value > 31))
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{
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my $message = "error: value out of range";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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# look up the ESERA ID
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my $eseraId = $hash->{ESERAID};
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if (!defined $eseraId)
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{
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my $message = "error: ESERA ID not known";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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# set values as given by mask and value
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if ($mask == 31)
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{
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# all bits are selected, use command to set all bits
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my $command = "set,sys,outh,".$value;
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IOWrite($hash, "set;$owId;$command");
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return undef;
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}
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else
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{
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# a subset of bits is selected, iterate over selected bits
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my $i;
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for ($i=0; $i<8; $i++)
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{
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if ($mask & 0x1)
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{
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my $bitValue = $value & 0x1;
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my $command = "set,sys,out,".($i+1).",".$bitValue;
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IOWrite($hash, "set;$owId;$command");
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}
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$mask = $mask >> 1;
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$value = $value >> 1;
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}
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return undef;
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}
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return undef;
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}
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sub
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EseraDigitalInOut_calculateBitMasksForSet($$$)
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{
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my ($hash, $mask, $value) = @_;
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my $name = $hash->{NAME};
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my $maxMask = (2**($hash->{BITCOUNT})) - 1;
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my $adjustedMask = ($mask & $maxMask) << $hash->{BITPOS};
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my $adjustedValue = ($value & $maxMask) << $hash->{BITPOS};
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return ($adjustedMask, $adjustedValue);
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}
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sub
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EseraDigitalInOut_setOutput($$$$)
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{
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my ($hash, $oneWireId, $mask, $value) = @_;
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my $name = $hash->{NAME};
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Log3 $name, 5, "EseraDigitalInOut ($name) - EseraDigitalInOut_setOutput inputs: $oneWireId,$mask,$value";
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if (!defined $hash->{DEVICE_TYPE})
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{
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my $message = "error: device type not known";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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if (($hash->{DEVICE_TYPE} eq "DS2408") ||
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($hash->{DEVICE_TYPE} eq "11220") ||
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($hash->{DEVICE_TYPE} eq "11233") ||
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($hash->{DEVICE_TYPE} eq "11228") ||
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($hash->{DEVICE_TYPE} eq "11229"))
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{
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my ($adjustedMask, $adjustedValue) = EseraDigitalInOut_calculateBitMasksForSet($hash, $mask, $value);
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Log3 $name, 5, "EseraDigitalInOut ($name) - EseraDigitalInOut_setOutput DS2408 adjustedMask: $adjustedMask, adjustedValue: $adjustedValue";
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EseraDigitalInOut_setDS2408digout($hash, $oneWireId, $adjustedMask, $adjustedValue);
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}
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elsif ($hash->{DEVICE_TYPE} eq "SYS2")
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{
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my ($adjustedMask, $adjustedValue) = EseraDigitalInOut_calculateBitMasksForSet($hash, $mask, $value);
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Log3 $name, 5, "EseraDigitalInOut ($name) - EseraDigitalInOut_setOutput SYS2 adjustedMask: $adjustedMask, adjustedValue: $adjustedValue";
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EseraDigitalInOut_setSysDigout($hash, $oneWireId, $adjustedMask, $adjustedValue);
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}
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elsif (($hash->{DEVICE_TYPE} eq "11216") || ($hash->{DEVICE_TYPE} eq "SYS1"))
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{
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Log3 $name, 1, "EseraDigitalInOut ($name) - error: trying to set digital output but this device only has inputs";
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}
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else
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{
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my $message = "error: device type not supported: ".$hash->{DEVICE_TYPE};
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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return undef;
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}
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# interpret a string entered by the user as a number
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sub
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EseraDigitalInOut_convertNumber($$)
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{
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my ($hash, $numberString) = @_;
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$numberString = lc($numberString);
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my $number = undef;
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if ($numberString =~ m/^(\d+)$/)
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{
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$number = $1;
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}
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elsif (($numberString =~ m/^0b([01]+)$/) || ($numberString =~ m/^0x([a-f0-9]+)$/))
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{
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$number = oct($numberString);
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}
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return $number;
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}
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sub
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EseraDigitalInOut_Set($$)
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{
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my ( $hash, @parameters ) = @_;
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my $name = $parameters[0];
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my $what = lc($parameters[1]);
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my $oneWireId = $hash->{ONEWIREID};
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my $iodev = $hash->{IODev}->{NAME};
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my $commands = ("on:noArg off:noArg out");
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if ($what eq "out")
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{
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if ((scalar(@parameters) != 4))
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{
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my $message = "error: unexpected number of parameters (".scalar(@parameters).")";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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my $mask = EseraDigitalInOut_convertNumber($hash, $parameters[2]);
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my $value = EseraDigitalInOut_convertNumber($hash, $parameters[3]);
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EseraDigitalInOut_setOutput($hash, $oneWireId, $mask, $value);
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$hash->{LAST_OUT} = undef;
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}
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elsif ($what eq "on")
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{
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if ((scalar(@parameters) != 2))
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{
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my $message = "error: unexpected number of parameters (".scalar(@parameters).")";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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EseraDigitalInOut_setOutput($hash, $oneWireId, 0xFFFFFFFF, 0xFFFFFFFF);
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$hash->{LAST_OUT} = 1;
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}
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elsif ($what eq "off")
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{
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if ((scalar(@parameters) != 2))
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{
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my $message = "error: unexpected number of parameters (".scalar(@parameters).")";
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Log3 $name, 1, "EseraDigitalInOut ($name) - ".$message;
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return $message;
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}
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EseraDigitalInOut_setOutput($hash, $oneWireId, 0xFFFFFFFF, 0x00000000);
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$hash->{LAST_OUT} = 0;
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}
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elsif ($what eq "?")
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{
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my $message = "unknown argument $what, choose one of $commands";
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return $message;
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}
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else
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{
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shift @parameters;
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shift @parameters;
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return SetExtensions($hash, $commands, $name, $what, @parameters);
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}
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return undef;
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}
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sub
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EseraDigitalInOut_getReadingValue($$$)
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{
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my ($value, $bitPos, $bitCount) = @_;
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# The controller sends digital output state as binary mask (without leading 0b)
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my ($decimalValue) = oct("0b".$value);
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return ($decimalValue >> $bitPos) & ((2**$bitCount)-1);
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}
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sub
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EseraDigitalInOut_ParseForOneDevice($$$$$$)
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{
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my ($rhash, $deviceType, $oneWireId, $eseraId, $readingId, $value) = @_;
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my $rname = $rhash->{NAME};
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Log3 $rname, 4, "EseraDigitalInOut ($rname) - ParseForOneDevice: ".$rname;
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# capture the Esera ID for later use
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$rhash->{ESERAID} = $eseraId;
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# consistency check of device type
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if (!($rhash->{DEVICE_TYPE} eq uc($deviceType)))
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{
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Log3 $rname, 1, "EseraDigitalInOut ($rname) - unexpected device type ".$deviceType;
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# program the the device type into the controller via the physical module
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if ($rhash->{DEVICE_TYPE} =~ m/^DS([0-9A-F]+)/)
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{
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# for the DS* devices types the "DS" has to be omitted
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IOWrite($rhash, "assign;$oneWireId;$1");
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}
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elsif (!($deviceType =~ m/^SYS[12]/))
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{
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IOWrite($rhash, "assign;$oneWireId;".$rhash->{DEVICE_TYPE});
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}
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}
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if ($readingId eq "ERROR")
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{
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Log3 $rname, 1, "EseraDigitalInOut ($rname) - error message from physical device: ".$value;
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}
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elsif ($readingId eq "STATISTIC")
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{
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Log3 $rname, 1, "EseraDigitalInOut ($rname) - statistics message not supported yet: ".$value;
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}
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else
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{
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my $nameOfReading;
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if ($deviceType eq "DS2408")
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{
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if ($readingId == 2)
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{
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$nameOfReading = "in";
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my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
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readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
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}
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elsif ($readingId == 4)
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{
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$nameOfReading = "out";
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my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
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readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
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}
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}
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elsif (($deviceType eq "11220") || ($deviceType eq "11228") || ($deviceType eq "11233"))
|
|
# 8 channel / 2 channel digital output with push buttons
|
|
{
|
|
if ($readingId == 2)
|
|
{
|
|
$nameOfReading = "in";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
if ($readingId == 4)
|
|
{
|
|
$nameOfReading = "out";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
}
|
|
elsif ($deviceType eq "11229") # 8 channel digital output
|
|
{
|
|
if ($readingId == 4)
|
|
{
|
|
$nameOfReading = "out";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
}
|
|
elsif ($deviceType eq "11216") # 8 channel digital input
|
|
{
|
|
if ($readingId == 2)
|
|
{
|
|
$nameOfReading = "in";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
}
|
|
elsif ($deviceType eq "SYS2") # Controller 2 digital output
|
|
{
|
|
if ($readingId == 2)
|
|
{
|
|
$nameOfReading = "out";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
}
|
|
elsif ($deviceType eq "SYS1") # Controller 2 digital input
|
|
{
|
|
if ($readingId == 2)
|
|
{
|
|
$nameOfReading = "in";
|
|
my $readingValue = EseraDigitalInOut_getReadingValue($value, $rhash->{BITPOS}, $rhash->{BITCOUNT});
|
|
readingsSingleUpdate($rhash, $nameOfReading, $readingValue, 1);
|
|
}
|
|
}
|
|
}
|
|
return $rname;
|
|
}
|
|
|
|
sub
|
|
EseraDigitalInOut_Parse($$)
|
|
{
|
|
my ($ioHash, $msg) = @_;
|
|
my $ioName = $ioHash->{NAME};
|
|
my $buffer = $msg;
|
|
|
|
# expected message format: $deviceType."_".$oneWireId."_".$eseraId."_".$readingId."_".$value
|
|
my @fields = split(/_/, $buffer);
|
|
if (scalar(@fields) != 5)
|
|
{
|
|
return undef;
|
|
}
|
|
my $deviceType = uc($fields[0]);
|
|
my $oneWireId = $fields[1];
|
|
my $eseraId = $fields[2];
|
|
my $readingId = $fields[3];
|
|
my $value = $fields[4];
|
|
|
|
# search for logical device
|
|
my $rhash = undef;
|
|
my @list;
|
|
foreach my $d (keys %defs)
|
|
{
|
|
my $h = $defs{$d};
|
|
my $type = $h->{TYPE};
|
|
|
|
if($type eq "EseraDigitalInOut")
|
|
{
|
|
if (defined($h->{IODev}->{NAME}))
|
|
{
|
|
my $ioDev = $h->{IODev}->{NAME};
|
|
my $def = $h->{DEF};
|
|
|
|
# $def has the whole definition, extract the oneWireId (which is expected as 2nd parameter)
|
|
my @parts = split(/ /, $def);
|
|
my $oneWireIdFromDef = $parts[1];
|
|
|
|
if (($ioDev eq $ioName) && ($oneWireIdFromDef eq $oneWireId))
|
|
{
|
|
$rhash = $h;
|
|
my $rname = EseraDigitalInOut_ParseForOneDevice($rhash, $deviceType, $oneWireId, $eseraId, $readingId, $value);
|
|
push(@list, $rname);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if ((scalar @list) > 0)
|
|
{
|
|
return @list;
|
|
}
|
|
elsif (($deviceType eq "DS2408") or ($deviceType eq "11216") or
|
|
($deviceType eq "11220") or ($deviceType eq "11233") or
|
|
($deviceType eq "11228") or ($deviceType eq "11229") or
|
|
($deviceType eq "SYS1") or ($deviceType eq "SYS2"))
|
|
{
|
|
return "UNDEFINED EseraDigitalInOut_".$ioName."_".$oneWireId." EseraDigitalInOut ".$ioName." ".$oneWireId." ".$deviceType." - -";
|
|
}
|
|
|
|
return undef;
|
|
}
|
|
|
|
sub
|
|
EseraDigitalInOut_Attr(@)
|
|
{
|
|
}
|
|
|
|
|
|
|
|
1;
|
|
|
|
=pod
|
|
=item summary Represents a 1-wire digital input/output.
|
|
=item summary_DE Repraesentiert einen 1-wire digitalen Eingang/Ausgang.
|
|
=begin html
|
|
|
|
<a name="EseraDigitalInOut"></a>
|
|
<h3>EseraDigitalInOut</h3>
|
|
|
|
<ul>
|
|
This module implements a 1-wire digital input/output. It uses 66_EseraOneWire <br>
|
|
as I/O device.<br>
|
|
<br>
|
|
|
|
<a name="EseraDigitalInOut_Define"></a>
|
|
<b>Define</b>
|
|
<ul>
|
|
<code>define <name> EseraDigitalInOut <ioDevice> <oneWireId> <deviceType> <bitPos> <bitCount></code><br>
|
|
<oneWireId> specifies the 1-wire ID of the digital input/output chip.<br>
|
|
Use the "get devices" query of EseraOneWire to get a list of 1-wire IDs, <br>
|
|
or simply rely on autocreate.<br>
|
|
Supported values for deviceType:
|
|
<ul>
|
|
<li>DS2408</li>
|
|
<li>11220/11228 (Esera "Digital Out 8-Channel with push-button interface")</li>
|
|
<li>11233 (Esera "Digital Out 2-Channel with push-button interface")</li>
|
|
<li>11229 (Esera "Digital Out 8-Channel")</li>
|
|
<li>11216 (Esera "8-Channel Digital Input DC")</li>
|
|
<li>SYS1 (Esera Controller 2, digital input, not listed by "get devices")</li>
|
|
<li>SYS2 (Esera Controller 2, digital output, not listed by "get devices")</li>
|
|
</ul>
|
|
The bitPos and bitCount parameters is used to specify a subset of bits only. <br>
|
|
For example, the DS2408 has 8 inputs, and you can define a EseraDigitalInOut <br>
|
|
that uses bits 4..7 (in range 0..7). In this case you specify bitPos = 4 and <br>
|
|
bitWidth = 4.<br>
|
|
You can also give "-" for bitPos and bitWidth. In this case the module uses<br>
|
|
the maximum possible bit range, which is bitPos = 0 and bitWidth = 8 for DS2408.<br>
|
|
In typical use cases the n bits of a digital input device are used to control <br>
|
|
or observe n different things, e.g. 8 motion sensors connected to 8 digital inputs.<br>
|
|
In this case you would define 8 EseraDigitalInOut devices, one for each motion sensor.<br>
|
|
</ul>
|
|
<br>
|
|
|
|
<a name="EseraDigitalInOut_Set"></a>
|
|
<b>Set</b>
|
|
<ul>
|
|
<li>
|
|
<b><code>set <name> out <bitMask> <bitValue></code><br></b>
|
|
Controls digital outputs. The bitMask selects bits that are programmed, <br>
|
|
and bitValue specifies the new value.<br>
|
|
Examples: <code>set myEseraDigitalInOut out 0xf 0x3</code><br>
|
|
In this example the four lower outputs are selected by the mask, <br>
|
|
and they get the new value 0x3 = 0b0011.<br>
|
|
bitMask and bitValue can be specified as hex number (0x...), binary<br>
|
|
number (0b....) or decimal number.<br>
|
|
Note: If all bits are selected by mask the outputs are set by a single <br>
|
|
access to the controller. If subset of bits is selected the bits are set <br>
|
|
by individual accesses, one after the other, as fast as the controller allows.<br>
|
|
</li>
|
|
<li>
|
|
<b><code>set <name> on</code><br></b>
|
|
Switch on all outputs.<br>
|
|
</li>
|
|
<li>
|
|
<b><code>set <name> off</code><br></b>
|
|
Switch off all outputs.<br>
|
|
</li>
|
|
</ul>
|
|
<br>
|
|
|
|
<a name="EseraDigitalInOut_Get"></a>
|
|
<b>Get</b>
|
|
<ul>
|
|
<li>no get functionality</li>
|
|
</ul>
|
|
<br>
|
|
|
|
<a name="EseraDigitalInOut_Attr"></a>
|
|
<b>Attributes</b>
|
|
<ul>
|
|
<li>no attributes</li>
|
|
</ul>
|
|
<br>
|
|
|
|
<a name="EseraDigitalInOut_Readings"></a>
|
|
<b>Readings</b>
|
|
<ul>
|
|
<li>in – digital input state</li>
|
|
<li>out – digital output state</li>
|
|
</ul>
|
|
<br>
|
|
|
|
</ul>
|
|
|
|
=end html
|
|
=cut
|