8 Commits

21 changed files with 608 additions and 12 deletions

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@@ -1,3 +1,6 @@
# 0.5.8 - 19/07/2018
- Added "openweathermap" driver for impement check weather condition from openweatermap api
# 0.5.7 - 01/06/2018
- Added "sonoff_tasmota_http" driver for interfacin with Sonoff module with Tasmota firmware over http protocol

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@@ -107,9 +107,19 @@ EV5_GPIO=23 # Physical 16 - wPi 4
EV6_ALIAS="6" #
EV6_GPIO=24 # Physical 18 - wPi 5
# Definisce l'api key e il luogo per recuperare lo stato meteo online
# Definisci il servizio online da utilizzare per il controllo delle condizioni meteo, puoi scegliere openweathermap oppure wunderground
WEATHER_SERVICE="openweathermap"
# Parametri di openweathermap, definisce l'api key e il luogo per recuperare lo stato meteo online
OPENWEATHERMAP_KEY=""
OPENWEATHERMAP_LOCATION="q=Pieve%20a%20Nievole,it" # https://openweathermap.org/current
OPENWEATHERMAP_TZ="Europe/Rome" # Time zone
# Parametri di wunderground, definisce l'api key e il luogo per recuperare lo stato meteo online
WUNDERGROUND_KEY=""
WUNDERGROUND_LOCATION="IY/Monsummano" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
WUNDERGROUND_LOCATION="IT/Pieve%20a%20Nievole" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
# Blocca l'irrigazione se l'ultima pioggia rilevata online è avvenuta nell'ultima quantità di tempo inserita.
# Il tempo è espresso in secondi. Quindi inserendo 86400, se nelle ultime 24 ore ha piovuto viene bloccata l'irrigazione. Inserendo il valore zero non viene eseguito nessun controllo.

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@@ -100,11 +100,19 @@ EV4_ALIAS="Giardino_Posteriore_GPIO" #
EV4_GPIO="18"
# Definisci il servizio online da utilizzare per il controllo delle condizioni meteo, puoi scegliere openweathermap oppure wunderground
WEATHER_SERVICE="openweathermap"
# Definisce l'api key e il luogo per recuperare lo stato meteo online
# Parametri di openweathermap, definisce l'api key e il luogo per recuperare lo stato meteo online
OPENWEATHERMAP_KEY=""
OPENWEATHERMAP_LOCATION="q=Pieve%20a%20Nievole,it" # https://openweathermap.org/current
OPENWEATHERMAP_TZ="Europe/Rome" # Time zone
# Parametri di wunderground, definisce l'api key e il luogo per recuperare lo stato meteo online
WUNDERGROUND_KEY=""
WUNDERGROUND_LOCATION="IT/Pieve%20a%20Nievole" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
# Blocca l'irrigazione se l'ultima pioggia rilevata online è avvenuta nell'ultima quantità di tempo inserita.
# Il tempo è espresso in secondi. Quindi inserendo 86400, se nelle ultime 24 ore ha piovuto viene bloccata l'irrigazione. Inserendo il valore zero non viene eseguito nessun controllo.
NOT_IRRIGATE_IF_RAIN_ONLINE=86400

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@@ -102,10 +102,19 @@ EV4_ALIAS="Giardino_Anteriore"
EV4_GPIO="drv:sonoff_tasmota_http:SONOFF2:Power1"
# Definisce l'api key e il luogo per recuperare lo stato meteo online
# Definisci il servizio online da utilizzare per il controllo delle condizioni meteo, puoi scegliere openweathermap oppure wunderground
WEATHER_SERVICE="openweathermap"
# Parametri di openweathermap, definisce l'api key e il luogo per recuperare lo stato meteo online
OPENWEATHERMAP_KEY=""
OPENWEATHERMAP_LOCATION="q=Pieve%20a%20Nievole,it" # https://openweathermap.org/current
OPENWEATHERMAP_TZ="Europe/Rome" # Time zone
# Parametri di wunderground, definisce l'api key e il luogo per recuperare lo stato meteo online
WUNDERGROUND_KEY=""
WUNDERGROUND_LOCATION="IT/Pieve%20a%20Nievole" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
# Blocca l'irrigazione se l'ultima pioggia rilevata online è avvenuta nell'ultima quantità di tempo inserita.
# Il tempo è espresso in secondi. Quindi inserendo 86400, se nelle ultime 24 ore ha piovuto viene bloccata l'irrigazione. Inserendo il valore zero non viene eseguito nessun controllo.
NOT_IRRIGATE_IF_RAIN_ONLINE=86400

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@@ -472,9 +472,18 @@ EV128_ALIAS="Zona_128" #
EV128_GPIO="drv:spb16ch:128"
# Definisce l'api key e il luogo per recuperare lo stato meteo online
# Definisci il servizio online da utilizzare per il controllo delle condizioni meteo, puoi scegliere openweathermap oppure wunderground
WEATHER_SERVICE="openweathermap"
# Parametri di openweathermap, definisce l'api key e il luogo per recuperare lo stato meteo online
OPENWEATHERMAP_KEY=""
OPENWEATHERMAP_LOCATION="q=Pieve%20a%20Nievole,it" # https://openweathermap.org/current
OPENWEATHERMAP_TZ="Europe/Rome" # Time zone
# Parametri di wunderground, definisce l'api key e il luogo per recuperare lo stato meteo online
WUNDERGROUND_KEY=""
WUNDERGROUND_LOCATION="IY/Monsummano" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
WUNDERGROUND_LOCATION="IT/Pieve%20a%20Nievole" # http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
# Blocca l'irrigazione se l'ultima pioggia rilevata online è avvenuta nell'ultima quantità di tempo inserita.
# Il tempo è espresso in secondi. Quindi inserendo 86400, se nelle ultime 24 ore ha piovuto viene bloccata l'irrigazione. Inserendo il valore zero non viene eseguito nessun controllo.

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@@ -0,0 +1,13 @@
# Driver for check wather condition with openweathermap online service
# Example of configuration in piGarden.conf
```bash
WEATHER_SERVICE="openweathermap"
OPENWEATHERMAP_KEY="d4d22ea805788420267971135563b4cc" # Set with your api key of openweathermap
OPENWEATHERMAP_LOCATION="q=Pieve%20a%20Nievole,it" # Set with location identify, see https://openweathermap.org/current
OPENWEATHERMAP_TZ="Europe/Rome" # Set with your time zone
```

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@@ -0,0 +1,123 @@
#
# Funzioni comuni utilizzate dal driver
#
#
# Recupera la descrizione della condizione meteo
#
# $1 condizione meteo recuperata dalle api
#
function drv_openweathermap_get_wather {
declare -A w
w["thunderstorm with light rain"]="Thunderstorms and Rain"
w["thunderstorm with rain"]="Thunderstorms and Rain"
w["thunderstorm with heavy rain"]="Thunderstorms and Rain"
w["light thunderstorm"]="Thunderstorm"
w["thunderstorm"]="Thunderstorm"
w["heavy thunderstorm"]="Thunderstorm"
w["ragged thunderstorm"]="Thunderstorm"
w["thunderstorm with light drizzle"]="Thunderstorms and Rain"
w["thunderstorm with drizzle"]="Thunderstorms and Rain"
w["thunderstorm with heavy drizzle"]="Thunderstorms and Rain"
w["light intensity drizzle"]="Drizzle"
w["drizzle"]="Drizzle"
w["heavy intensity drizzle"]="Drizzle"
w["light intensity drizzle rain"]="Drizzle"
w["drizzle rain"]="Drizzle"
w["heavy intensity drizzle rain"]="Drizzle"
w["shower rain and drizzle"]="Drizzle"
w["heavy shower rain and drizzle"]="Drizzle"
w["shower drizzle"]="Drizzle"
w["light rain"]="Rain Mist"
w["moderate rain"]="Rain"
w["heavy intensity rain"]="Rain"
w["very heavy rain"]="Rain"
w["extreme rain"]="Rain"
w["freezing rain"]="Freezing Rain"
w["light intensity shower rain"]="Rain"
w["shower rain"]="Rain"
w["heavy intensity shower rain"]="Rain"
w["ragged shower rain"]="Rain"
w["light snow"]="Snow"
w["snow"]="Snow"
w["heavy snow"]=""
w["sleet"]="Snow Grains"
w["shower sleet"]="Snow Grains"
w["light rain and snow"]="Snow"
w["rain and snow"]="Snow"
w["light shower snow"]="Snow"
w["shower snow"]="Snow"
w["heavy shower snow"]="Snow"
w["mist"]="Mist"
w["smoke"]="Smoke"
w["haze"]="Haze"
w["sand, dust whirls"]="Dust Whirls"
w["fog"]="Fog"
w["sand"]="Sand"
w["dust"]="Widespread Dust"
w["volcanic ash"]="Volcanic Ash"
w["squalls"]="Squalls"
w["tornado"]="Tornado"
w["clear sky"]="Clear"
w["few clouds"]="Partly Cloudy"
w["scattered clouds"]="Scattered Clouds"
w["broken clouds"]="Partly Cloudy"
w["overcast clouds"]="Mostly Cloudy"
local weather=${w[$1]}
if [ -z "$weather" ]; then
weather="$1"
fi
echo $weather
}
#
# Recupera la l'icona rappresentativa delle condizione meteo
#
# $1 nome dell'icona recuperato delle api weather.icon
#
function drv_openweathermap_get_ico {
declare -A w
w["01d"]="http://icons.wxug.com/i/c/k/clear.gif"
w["01n"]="http://icons.wxug.com/i/c/k/nt_clear.gif"
w["02d"]="http://icons.wxug.com/i/c/k/partlycloudy.gif"
w["02n"]="http://icons.wxug.com/i/c/k/nt_partlycloudy.gif"
w["03d"]="http://icons.wxug.com/i/c/k/cloudy.gif"
w["03n"]="http://icons.wxug.com/i/c/k/nt_cloudy.gif"
w["04d"]="http://icons.wxug.com/i/c/k/cloudy.gif"
w["04n"]="http://icons.wxug.com/i/c/k/nt_cloudy.gif"
w["09d"]="http://icons.wxug.com/i/c/k/sleet.gif"
w["09n"]="http://icons.wxug.com/i/c/k/nt_sleet.gif"
w["10d"]="http://icons.wxug.com/i/c/k/rain.gif"
w["10n"]="http://icons.wxug.com/i/c/k/nt_rain.gif"
w["11d"]="http://icons.wxug.com/i/c/k/tstorms.gif"
w["11n"]="http://icons.wxug.com/i/c/k/nt_tstorms.gif"
w["13d"]="http://icons.wxug.com/i/c/k/snow.gif"
w["13n"]="http://icons.wxug.com/i/c/k/nt_snow.gif"
w["50d"]="http://icons.wxug.com/i/c/k/fog.gif"
w["50n"]="http://icons.wxug.com/i/c/k/nt_fog.gif"
local ico=${w[$1]}
if [ -z "$ico" ]; then
ico="$1"
fi
echo $ico
}

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@@ -0,0 +1,74 @@
#
# Ritorna lo stato delle condizioni meteo interrogando il servizio online
#
# $i identificativo gpio del sensore di pioggia
#
# return output: 0 - errore durante il recupero delle condizioni meteo
# >0 - rilevato pioggia, timestamp del rilevamento
# <0 - rilevato nessuna pioggia, timestamp del rilevamento
function drv_openweathermap_rain_online_get {
# http://www.wunderground.com/weather/api/d/docs?d=resources/phrase-glossary&MR=1
$CURL "http://api.openweathermap.org/data/2.5/weather?$OPENWEATHERMAP_LOCATION&units=metric&appid=$OPENWEATHERMAP_KEY" > $TMP_PATH/check_rain_online.openweathermap.json
local weather=`cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -M ".weather[0].main"`
local wind_deg=$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".wind.deg")
local wind_speed=$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".wind.speed")
if [ "$wind_speed" == "null" ]; then
#wind_speed=$($JQ -n $wind_speed*3600/1000)
wind_speed=0
fi
local weather="$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".weather[0].description")"
local ico=$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".weather[0].icon")
weather=$(drv_openweathermap_get_wather "$weather")
ico=$(drv_openweathermap_get_ico "$ico")
local current_observation=$(cat <<EOF
{
"display_location": {
"city": "$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".name")"
},
"observation_epoch": "$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".dt")",
"local_epoch": "$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".dt")",
"local_tz_long": "$OPENWEATHERMAP_TZ",
"weather": "$weather",
"temp_c": $(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".main.temp"),
"relative_humidity": "$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".main.humidity")%",
"wind_dir": "$(deg2dir $wind_deg)",
"wind_degrees": $wind_deg,
"wind_kph": $wind_speed,
"wind_gust_kph": "--",
"pressure_mb": "$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".main.pressure")",
"dewpoint_c": "--",
"feelslike_c": "--",
"icon_url": "$ico"
}
EOF
)
# "icon_url": "http://openweathermap.org/img/w/$(cat $TMP_PATH/check_rain_online.openweathermap.json | $JQ -r -M ".weather[0].icon").png"
#local current_observation=`cat $TMP_PATH/check_rain_online.json | $JQ -M ".current_observation"`
if [ "$weather" = "null" ]; then
echo "0"
else
echo "$current_observation" > "$STATUS_DIR/last_weather_online"
local local_epoch=`cat $STATUS_DIR/last_weather_online | $JQ -M -r ".local_epoch"`
if [[ "$weather" == *"Rain"* ]] ||
[[ "$weather" == *"Snow"* ]] ||
[[ "$weather" == *"Hail"* ]] ||
[[ "$weather" == *"Ice"* ]] ||
[[ "$weather" == *"Thunderstorm"* ]] ||
[[ "$weather" == *"Drizzle"* ]];
then
echo $local_epoch
else
echo "-$local_epoch"
fi
fi
}

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@@ -3,7 +3,7 @@
For more information see https://www.lejubila.net/2018/03/pigardent-0-5-5-driver-master-per-implementare-un-architettura-master-slave/
# Example of zone configuration in piGarden.conf
```bash
EV1_ALIAS="Giarino_Posteriore_DX" #
EV1_GPIO="drv:remote:PIREMOTE1:Giardino_Posteriore_DX"
@@ -11,3 +11,4 @@ PIREMOTE1_IP="192.168.1.51"
PIREMOTE1_PORT="8084"
PIREMOTE1_USER=""
PIREMOTE1_PWD=""
```

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@@ -0,0 +1,13 @@
#
# Ritorna lo stato delle condizioni meteo interrogando il servizio online
#
# return output: 0 - errore durante il recupero delle condizioni meteo
# >0 - rilevato pioggia, timestamp del rilevamento
# <0 - rilevato nessuna pioggia, timestamp del rilevamento
function drv_sample_rain_online_get {
local FOO="bar"
}

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@@ -5,6 +5,7 @@ More information on Sonoff Tasmota firmware: https://github.com/arendst/Sonoff-T
# Example of zone configuration in piGarden.conf
```bash
EV1_ALIAS="Giardino_Posteriore_DX"
EV1_GPIO="drv:sonoff_tasmota_http:SONOFF1:Power1"
EV1_MONOSTABLE=1
@@ -16,6 +17,6 @@ EV2_MONOSTABLE=1
SONOFF1_IP="192.168.1.1"
SONOFF1_USER="user"
SONOFF1_PWD="pwd"
```
More information for configuration: https://www.lejubila.net/2018/06/pigarden-0-5-7-gestisci-le-tue-elettrovalvole-con-i-moduli-sonoff-grazie-al-nuovo-driver-sonoff_tasmota_http

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@@ -0,0 +1,12 @@
# Driver for check wather condition with wunderground online service
# Example of configuration in piGarden.conf
```bash
WEATHER_SERVICE="wunderground"
WUNDERGROUND_KEY="" # Set with your api key of wunderground
WUNDERGROUND_LOCATION="IY/Monsummano" # Set with your location indentify, see http://www.wunderground.com/weather/api/d/docs?d=resources/country-to-iso-matching&MR=1
```

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@@ -0,0 +1,12 @@
#
# Funzioni comuni utilizzate dal driver
#
#
# Funzione di esempio
#
function sample_foo {
echo "bar"
}

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@@ -0,0 +1,36 @@
#
# Ritorna lo stato delle condizioni meteo interrogando il servizio online
#
# $i identificativo gpio del sensore di pioggia
#
# return output: 0 - errore durante il recupero delle condizioni meteo
# >0 - rilevato pioggia, timestamp del rilevamento
# <0 - rilevato nessuna pioggia, timestamp del rilevamento
function drv_wunderground_rain_online_get {
# http://www.wunderground.com/weather/api/d/docs?d=resources/phrase-glossary&MR=1
$CURL http://api.wunderground.com/api/$WUNDERGROUND_KEY/conditions/q/$WUNDERGROUND_LOCATION.json > $TMP_PATH/check_rain_online.json
local weather=`cat $TMP_PATH/check_rain_online.json | $JQ -M ".current_observation.weather"`
local current_observation=`cat $TMP_PATH/check_rain_online.json | $JQ -M ".current_observation"`
local local_epoch=`cat $TMP_PATH/check_rain_online.json | $JQ -M -r ".current_observation.local_epoch"`
if [ "$weather" = "null" ]; then
echo "0"
else
if [[ "$weather" == *"Rain"* ]] ||
[[ "$weather" == *"Snow"* ]] ||
[[ "$weather" == *"Hail"* ]] ||
[[ "$weather" == *"Ice"* ]] ||
[[ "$weather" == *"Thunderstorm"* ]] ||
[[ "$weather" == *"Drizzle"* ]];
then
echo $local_epoch
else
echo "-$local_epoch"
fi
echo "$current_observation" > "$STATUS_DIR/last_weather_online"
fi
}

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@@ -19,7 +19,7 @@ function setup_drv {
done
# Inizializza i driver per gli altri gpio
for gpio in "$SUPPLY_GPIO_1" "$SUPPLY_GPIO_2" "$RAIN_GPIO"
for gpio in "$SUPPLY_GPIO_1" "$SUPPLY_GPIO_2" "$RAIN_GPIO" "$WEATHER_SERVICE"
do
if [[ "$gpio" == drv:* ]]; then
local drv=`echo $gpio | $CUT -d':' -f2,2`
@@ -32,7 +32,7 @@ function setup_drv {
local file_drv
for drv in "${list_drv[@]}"
do
for callback in config common init rele supply rainsensor setup
for callback in config common init rele supply rainsensor rainonline setup
do
file_drv="$DIR_SCRIPT/drv/$drv/$callback.include.sh"
if [ -f "$file_drv" ]; then
@@ -315,3 +315,30 @@ function drv_rain_sensor_get {
echo "$vret"
}
#
# Legge lo stato le condizioni meteo dal servizio online
#
# $1 identificativo gpio sensore pioggia
#
function drv_rain_online_get {
local idx="$1"
local fnc=`get_driver_callback "rain_online_get" "$idx"`
local vret=""
# Nessun driver definito, esegue la lettura del sensore tramite gpio del raspberry
if [ -z "$fnc" ]; then
log_write "Driver not found: $idx"
message_write "warning" "Driver not found: $idx"
# Il driver definito non è stato trovato
elif [ "$fnc" == "drvnotfound" ]; then
log_write "Driver not found: $idx"
message_write "warning" "Driver not found: $idx"
else
echo "$(date) $fnc arg:$idx" >> "$LOG_OUTPUT_DRV_FILE"
vret=`$fnc "$idx"`
fi
echo "$vret"
}

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@@ -1,7 +1,7 @@
#
# Controlla se se piove tramite http://api.wunderground.com/
#
function check_rain_online {
function check_rain_online_old {
trigger_event "check_rain_online_before" ""
@@ -42,6 +42,55 @@ function check_rain_online {
trigger_event "check_rain_online_after" "$current_state_rain_online" "$weather"
}
#
# Controlla se se piove tramite http://api.wunderground.com/
#
function check_rain_online {
trigger_event "check_rain_online_before" ""
local local_epoch=`drv_rain_online_get $WEATHER_SERVICE`
local current_state_rain_online=""
local last_state_rain_online=`cat "$STATUS_DIR/last_state_rain_online" 2> /dev/null`
local weather="null"
if [[ $local_epoch =~ ^-?[0-9]+$ ]]; then
if [ $local_epoch -eq 0 ]; then
log_write "check_rain_online - failed read online data"
else
if [ $local_epoch -gt 0 ]; then
current_state_rain_online='rain'
echo $local_epoch > "$STATUS_DIR/last_rain_online"
else
current_state_rain_online='norain'
fi
weather=$(cat "$STATUS_DIR/last_weather_online" | $JQ -M ".weather")
log_write "check_rain_online - weather=$weather, local_epoch=$local_epoch"
if [ "$current_state_rain_online" != "$last_state_rain_online" ]; then
echo "$current_state_rain_online" > "$STATUS_DIR/last_state_rain_online"
trigger_event "check_rain_online_change" "$current_state_rain_online" "$weather"
fi
fi
else
log_write "check_rain_online - failed read online data"
fi
trigger_event "check_rain_online_after" "$current_state_rain_online" "$weather"
}
#
# Controlla se se piove tramite sensore
#

1
mqttconnector/.gitignore vendored Normal file
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@@ -0,0 +1 @@
piGardenMqttconnector.ini

2
mqttconnector/exec_command.sh Executable file
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@@ -0,0 +1,2 @@
#!/bin/bash
echo -e "$1" | ../piGarden.sh socket_server_command

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@@ -0,0 +1,88 @@
#
# Installare libreria paho-mqtt, configparser:
# sudo pip install paho-mqtt configparser
#
import paho.mqtt.client as mqttClient
import time
import subprocess
import configparser
def on_connect(client, userdata, flags, rc):
if rc == 0:
print("Connected to broker")
global Connected # Use global variable
Connected = True # Signal connection
else:
print("Connection failed")
def on_message(client, userdata, message):
print "Topic : " + message.topic
print "Message received: " + message.payload
if message.topic.startswith("pigarden/command/"):
print "pigarden command: " + message.payload
cmd = ""
cmd = message.payload
if pigarden_user != "" and pigarden_pwd != "":
cmd = pigarden_user + '\n' + pigarden_pwd + '\n' + cmd
p = subprocess.Popen([ pigarden_path + "mqttconnector/exec_command.sh", cmd ], stdout=subprocess.PIPE)
(output, err) = p.communicate()
## Wait for date to terminate. Get return returncode ##
p_status = p.wait()
print "Command : '" + cmd + "'"
print "Command output : ", output
print "Command exit status/return code : ", p_status
config = configparser.ConfigParser()
config.read('/etc/piGardenMqttconnector.ini')
Connected = False # global variable for the state of the connection
broker_address = config['mqtt']['broker_address']
port = int(config['mqtt']['port'])
user = config['mqtt']['user']
password = config['mqtt']['password']
client_id = config['mqtt']['client_id']
pigarden_path = config['pigarden']['path']
pigarden_user = config['pigarden']['user']
pigarden_pwd = config['pigarden']['pwd']
client = mqttClient.Client(client_id) # create new instance
client.username_pw_set(user, password=password) # set username and password
client.on_connect = on_connect # attach function to callback
client.on_message = on_message # attach function to callback
print broker_address, port, user, password
client.connect(broker_address, port=port) # connect to broker
client.loop_start() #start the loop
while Connected != True: #Wait for connection
time.sleep(0.1)
client.subscribe("pigarden/command/+")
try:
while True:
time.sleep(1)
except KeyboardInterrupt:
print "exiting"
client.disconnect()
client.loop_stop()

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@@ -0,0 +1,12 @@
[mqtt]
broker_address=m20.cloudmqtt.com
port=13554
user=ucorgnpg
password=K5iJrLxNnhbM
client_id=Python
[pigarden]
path=/home/pi/piGarden/
user=a
pwd=b

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@@ -782,6 +782,94 @@ function exec_reboot {
trigger_event "exec_reboot_after"
}
#
# Converte da gradi a direzione
#
# $1 gradi
#
function deg2dir {
local deg=$(echo $1 | $SED 's/\..*$//')
local dir=""
if [ "$deg" == "null" ]; then
echo ""
return
fi
# N 348.75 - 11.25
if [ $deg -le 11 ]; then
dir="North"
# NNE 11.25 - 33.75
elif [ $deg -le 33 ]; then
dir="NNE"
# NE 33.75 - 56.25
elif [ $deg -le 56 ]; then
dir="NE"
# ENE 56.25 - 78.75
elif [ $deg -le 78 ]; then
dir="ENE"
# E 78.75 - 101.25
elif [ $deg -le 101 ]; then
dir="East"
# ESE 101.25 - 123.75
elif [ $deg -le 123 ]; then
dir="ESE"
# SE 123.75 - 146.25
elif [ $deg -le 146 ]; then
dir="SE"
# SSE 146.25 - 168.75
elif [ $deg -le 168 ]; then
dir="SSE"
# S 168.75 - 191.25
elif [ $deg -le 191 ]; then
dir="South"
# SSW 191.25 - 213.75
elif [ $deg -le 213 ]; then
dir="SSW"
# SW 213.75 - 236.25
elif [ $deg -le 236 ]; then
dir="SW"
# WSW 236.25 - 258.75
elif [ $deg -le 258 ]; then
dir="WSW"
# W 258.75 - 281.25
elif [ $deg -le 281 ]; then
dir="West"
# WNW 281.25 - 303.75
elif [ $deg -le 303 ]; then
dir="WNW"
# NW 303.75 - 326.25
elif [ $deg -le 326 ]; then
dir="NW"
# NNW 326.25 - 348.75
elif [ $deg -le 348 ]; then
dir="NNW"
# N 348.75 - 11.25
else
dir="North"
fi
echo $dir
}
function debug1 {
. "$DIR_SCRIPT/debug/debug1.sh"
}
@@ -792,7 +880,7 @@ function debug2 {
VERSION=0
SUB_VERSION=5
RELEASE_VERSION=7
RELEASE_VERSION=8
DIR_SCRIPT=`dirname $0`
NAME_SCRIPT=${0##*/}
@@ -832,6 +920,11 @@ if [ -z "$EVENT_DIR" ]; then
EVENT_DIR="$DIR_SCRIPT/events"
fi
if [ -z $WEATHER_SERVICE ]; then
WEATHER_SERVICE="drv:wunderground"
else
WEATHER_SERVICE="drv:$WEATHER_SERVICE"
fi
# Elimina il file di lock se più vecchio di 11 secondi
if [ -f "$LOCK_FILE" ]; then