esphome pelmet LEDs, lounge scenes and other fixes

This commit is contained in:
root
2025-10-12 19:54:03 +13:00
parent e96344e3ad
commit bcf514a041
19 changed files with 951 additions and 1542 deletions
+1 -1
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@@ -1 +1 @@
{"pid": 67, "version": 1, "ha_version": "2025.10.1", "start_ts": 1759647901.614362}
{"pid": 68, "version": 1, "ha_version": "2025.10.2", "start_ts": 1760251204.265106}
+11 -1
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@@ -8,7 +8,7 @@ substitutions:
# Debug helpers (loop time / heap / reset info)
debug:
update_interval: ${local_update_interval}
update_interval: 5min
sensor:
# Free heap via debug (replaces template-based ESP.getFreeHeap if you prefer)
@@ -16,12 +16,22 @@ sensor:
free:
name: "Free Heap"
entity_category: "diagnostic"
disabled_by_default: true
filters:
- delta: 1024 # only if heap changes by ≥1 KB
- heartbeat: 5min # but still publish every 5 min
# Loop time via debug (replaces broken template loop time)
- platform: debug
loop_time:
name: "Loop Time"
disabled_by_default: true
entity_category: "diagnostic"
filters:
- delta: 2 # only if loop time changes by ≥2 ms
- heartbeat: 5min
## If youd rather keep the legacy heap sensor, uncomment below and
## delete the debug "free" block above to avoid duplicates:
@@ -9,6 +9,7 @@ text_sensor:
- platform: version
name: "Version:"
entity_category: "diagnostic"
disabled_by_default: true
- platform: wifi_info
ip_address:
@@ -19,10 +20,12 @@ text_sensor:
name: "Connected SSID"
icon: mdi:wifi-strength-2
entity_category: diagnostic
disabled_by_default: true
mac_address:
name: "MAC Address:"
icon: mdi:network-pos
entity_category: diagnostic
disabled_by_default: true
#####################################################################################################
# Creates a sensor of the uptime of the device, in formatted days, hours, minutes and seconds
-217
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@@ -1,217 +0,0 @@
#############################################
#############################################
# BYD ATTO3 12V Battery Monitor
# Monitoring the status of a vehicle 12V battery with
# an esp8266 (D1 Mini). It will obviously only
# transmit when the vehicle is within wifi range.
# Voltage is measured with a resistor voltage divider
# into the analogue GPIO on the esp8266.
# https://zorruno.com/2022/vehicle-12v-battery-monitoring/
##############################################
#############################################
#############################################
# Variable Substitutions
#############################################
substitutions:
devicename: "esp-attobat"
friendly_name: "Atto3 12V Battery Monitor"
description_comment: "Atto3 12V Battery Monitor (when home)"
api_key: !secret esp-attobat_api_key #unfortunately you can't use substitutions in secrets names
ota_pass: !secret esp-attobat_ota_pass #unfortunately you can't use substitutions in secrets names
wifi_ssid: !secret wifi_ssid
wifi_password: !secret wifi_password
fallback_ap_password: !secret fallback_ap_password
#Add these if we are giving it a static ip, or remove them in the Wifi section
#A static IP will speed things up slightly in that it doesn't have to negotiate DHCP
static_ip_address: !secret esp-attobat_static_ip
static_ip_gateway: !secret esp-attobat_gateway
static_ip_subnet: !secret esp-attobat_subnet
mqtt_server: !secret mqtt_server
mqtt_username: !secret mqtt_username
mqtt_password: !secret mqtt_password
mqtt_topic: "esphome" #main topic for the mqtt server, call it what you like
mqtt_commandstopic: "viewroad-commands" #main topic for commands (ie sleep), call it what you like
#web_server_username: !secret web_server_username
#web_server_password: !secret web_server_password
update_time: 10s #update time for for general temp sensors etc
#############################################
# ESPHome
# https://esphome.io/components/esphome.html
#############################################
esphome:
name: ${devicename}
friendly_name: ${friendly_name}
comment: ${description_comment} #appears on the esphome page in HA
min_version: 2024.6.0
#############################################
# ESP Platform and Framework
# https://esphome.io/components/esp8266.html
# https://esphome.io/components/esp32.html
#############################################
esp8266:
board: d1_mini
framework:
version: latest #recommended, latest or dev
#############################################
# ESPHome Logging Enable
# https://esphome.io/components/logger.html
#############################################
logger:
level: INFO #INFO Level suggested, or DEBUG for testing
#baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#############################################
# Enable the Home Assistant API
# https://esphome.io/components/api.html
#############################################
api:
encryption:
key: ${api_key}
#############################################
# Enable Over the Air Update Capability
# https://esphome.io/components/ota.html?highlight=ota
#############################################
ota:
- platform: esphome
password: ${ota_pass}
- platform: web_server # Uncomment if you want to be able to do OTA with the web interface
#############################################
# Safe Mode
# Safe mode will detect boot loops
# https://esphome.io/components/safe_mode
#############################################
safe_mode:
#############################################
# Wifi Settings
# https://esphome.io/components/wifi.html
#
# Power Save mode (can reduce wifi reliability)
# NONE (least power saving, Default for ESP8266)
# LIGHT (Default for ESP32)
# HIGH (most power saving)
#############################################
wifi:
ssid: ${wifi_ssid}
password: ${wifi_password}
#power_save_mode: LIGHT #https://esphome.io/components/wifi.html#wifi-power-save-mode
manual_ip: #optional static IP address
static_ip: ${static_ip_address}
gateway: ${static_ip_gateway}
subnet: ${static_ip_subnet}
ap: #Details for fallback hotspot (captive portal) in case wifi connection fails https://esphome.io/components/wifi.html#access-point-mode
ssid: ${devicename} fallback AP
password: ${fallback_ap_password}
ap_timeout: 30min #Time until it brings up fallback AP. default is 1min
#############################################
# Web Portal for display and monitoring
#############################################
web_server:
port: 80
#version: 2
#include_internal: true
#ota: false
#auth:
#username: ${web_server_username}
#password: ${web_server_password}
#############################################
# MQTT Monitoring
# https://esphome.io/components/mqtt.html?highlight=mqtt
# MUST also have api enabled if you enable MQTT
#############################################
mqtt:
broker: ${mqtt_server}
topic_prefix: ${mqtt_topic}/${devicename}
username: ${mqtt_username}
password: ${mqtt_password}
discovery: False # enable entity discovery (true is default, we don't want two HA Instances)
# Availability Topic
birth_message:
topic: ${mqtt_topic}/${devicename}/availability
payload: online
will_message:
topic: ${mqtt_topic}/${devicename}/availability
payload: offline
# A way to prevent deep sleep using MQTT command
on_message:
- topic: ${mqtt_commandstopic}/${devicename}/deepsleep
payload: "OFF"
then:
- deep_sleep.prevent: deep_sleep_1
- topic: ${mqtt_commandstopic}/${devicename}/deepsleep
payload: "ON"
then:
- deep_sleep.enter: deep_sleep_1
# on_message:
# - topic: ${mqtt_commandstopic}/${devicename}/deepsleepon
# payload: 'ON'
# then:
# - deep_sleep.prevent: deep_sleep_1
# - topic: ${mqtt_commandstopic}/${devicename}/deepsleepoff
# payload: 'OFF'
# then:
# - deep_sleep.enter: deep_sleep_1
########################################
# Deep Sleep
# https://esphome.io/components/deep_sleep.html
########################################
deep_sleep:
run_duration: 20s
sleep_duration: 5min
id: deep_sleep_1
#############################################
#############################################
# MAIN SENSORS
#############################################
#############################################
sensor:
#Quality of Wifi in dBm
- platform: wifi_signal
name: "WiFi Signal"
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
#Analog sensor for voltage reading (A0)
- platform: uptime
name: "Uptime"
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
- platform: adc
pin: A0
name: "Battery Voltage"
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
filters:
- multiply: 3.3 #D1 mini V divider, 3.3V -> 1V on esp8266
- calibrate_linear: #Read values with voltmeter and bench supply
- 3.11 -> 14.00
- 3.00 -> 13.50
- 2.89 -> 13.00
- 2.77 -> 12.50
- 2.67 -> 12.00
- 2.55 -> 11.50
- 2.45 -> 11.00
- 2.34 -> 10.50
- 2.22 -> 10.00
- 2.11 -> 09.50
- 2.00 -> 09.00
+63 -33
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@@ -34,20 +34,21 @@ substitutions:
# MQTT LOCAL Controls
mqtt_device_name: "atto-battery"
mqtt_local_command_topic: "${mqtt_command_main_topic}/${mqtt_device_name}" # Topic we will use to command this locally without HA
mqtt_local_status_topic: "${mqtt_status_main_topic}/${mqtt_device_name}" # Topic we will use to view status locally without HA
mqtt_command_topic: "${mqtt_command_main_topic}/${mqtt_device_name}" # Topic we will use to command this locally without HA
mqtt_status_topic: "${mqtt_status_main_topic}/${mqtt_device_name}" # Topic we will use to view status locally without HA
# Device Settings
#relay_icon: "mdi:lightbulb-group"
log_level: "DEBUG" # Define logging level: NONE, ERROR, WARN, INFO, DEBUG (Default), VERBOSE, VERY_VERBOSE
log_level: "INFO" # Define logging level: NONE, ERROR, WARN, INFO, DEBUG (Default), VERBOSE, VERY_VERBOSE
update_interval: "60s" # update time for for general sensors etc
wake_interval: "20s"
sleep_interval: "300s"
mqtt_fail_sleep: "1h" # If MQTT is unavailable after boot wait, sleep this long
##########################################################################################
# PACKAGES: Included Common Packages
# https://esphome.io/components/packages.html
##########################################################################################
# Comment some of these out where not needed, eg MQTT, Web portal, SNTP, General Sensors
##########################################################################################
packages:
#### WIFI, Network (Static/DHCP/IPV6 etc), Fallback AP, Safemode ####
common_wifi: !include
@@ -74,12 +75,12 @@ packages:
common_webportal: !include common/webportal_common.yaml
#### SNTP (Only use if you want/need accurate timeclocks) ####
common_sntp: !include common/sntp_common.yaml
#common_sntp: !include common/sntp_common.yaml
#### DIAGNOSTICS Sensors ####
diag_basic: !include common/include_basic_diag_sensors.yaml
diag_more: !include common/include_more_diag_sensors.yaml
diag_debug: !include common/include_debug_diag_sensors.yaml
#diag_debug: !include common/include_debug_diag_sensors.yaml
#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
##########################################################################################
@@ -91,6 +92,29 @@ esphome:
friendly_name: ${friendly_name}
comment: ${description_comment} #appears on the esphome page in HA
min_version: 2024.6.0
on_boot:
priority: 600
then:
# Default: do NOT deep sleep until explicitly enabled via MQTT
- deep_sleep.prevent: deep_sleep_1
- logger.log: "Deep sleep prevented by default on boot."
# Fail-safe: wait up to 30s for MQTT; if not connected, sleep longer (backoff)
- wait_until:
condition:
mqtt.connected:
timeout: 30s
- if:
condition:
not:
mqtt.connected:
then:
- logger.log: "MQTT unreachable after 30s -> entering FALLBACK sleep for ${mqtt_fail_sleep}."
- deep_sleep.enter:
id: deep_sleep_1
sleep_duration: ${mqtt_fail_sleep} # override only this cycle
else:
- logger.log: "MQTT connected; awaiting '${mqtt_command_topic}/deepsleep' command."
##########################################################################################
# ESP Platform and Framework
@@ -124,58 +148,51 @@ ota:
# This adds device-specific MQTT command triggers to the common MQTT configuration.
##########################################################################################
mqtt:
# Availability Topic
birth_message:
topic: ${mqtt_local_status_topic}/availability
topic: ${mqtt_status_topic}/availability
payload: online
will_message:
topic: ${mqtt_local_status_topic}/availability
topic: ${mqtt_status_topic}/availability
payload: offline
# A way to prevent deep sleep using MQTT command
# Control deep sleep over MQTT
on_message:
- topic: ${mqtt_local_command_topic}/deepsleep
- topic: ${mqtt_command_topic}/deepsleep
payload: "ON"
then:
- deep_sleep.allow: deep_sleep_1
- logger.log: "Deep sleep ALLOWED via MQTT. Device will sleep when run_duration elapses."
- topic: ${mqtt_command_topic}/deepsleep
payload: "OFF"
then:
- deep_sleep.prevent: deep_sleep_1
- topic: ${mqtt_local_command_topic}/deepsleep
payload: "ON"
then:
- deep_sleep.enter: deep_sleep_1
- logger.log: "Deep sleep PREVENTED via MQTT."
##########################################################################################
# Deep Sleep
# https://esphome.io/components/deep_sleep.html
##########################################################################################
deep_sleep:
run_duration: 20s
sleep_duration: 5min
id: deep_sleep_1
run_duration: ${wake_interval}
sleep_duration: ${sleep_interval}
##########################################################################################
# SENSOR COMPONENT
# https://esphome.io/components/sensor/
##########################################################################################
sensor:
#Quality of Wifi in dBm
- platform: wifi_signal
name: "WiFi Signal"
update_interval: ${update_interval}
retain: true #Retain this as you'll have no value between sleeps otherwise
#Analog sensor for voltage reading (A0)
- platform: uptime
name: "Uptime"
update_interval: ${update_interval}
retain: true #Retain this as you'll have no value between sleeps otherwise
- platform: adc
pin: A0
name: "Battery Voltage"
update_interval: ${update_interval}
retain: true #Retain this as you'll have no value between sleeps otherwise
id: battery_voltage
update_interval: 4s
retain: true
filters:
- multiply: 3.3 #D1 mini V divider, 3.3V -> 1V on esp8266
- calibrate_linear: #Read values with voltmeter and bench supply
- multiply: 3.3
- calibrate_linear:
- 3.11 -> 14.00
- 3.00 -> 13.50
- 2.89 -> 13.00
@@ -187,3 +204,16 @@ sensor:
- 2.22 -> 10.00
- 2.11 -> 09.50
- 2.00 -> 09.00
- delta: 0.05 # publish immediately if change >= 0.05 V
- throttle: 2s # avoid bursts if noisy
on_value:
then:
- mqtt.publish:
topic: "${mqtt_status_topic}/batteryvoltage"
qos: 1
retain: true
payload: !lambda |-
char buf[10];
snprintf(buf, sizeof(buf), "%.2f", x);
return std::string(buf);
+30 -29
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@@ -83,13 +83,13 @@ substitutions:
minimum_led_output: "1" # % If at this value or below, we'll switch it completely off
maximum_led_output: "90" # % Maximum output; it is sometimes nice to limit the output for longevity or aesthetics
max_on_default_hours: "24" # The maximum time the LEDs will be on, in case they get left on. 0 = no automatic turn-off
pwm_frequency: "1000hz" # PWM output Frequency. High enough to avoid audible/visible artifacts
pwm_frequency: "1000" # PWM output Frequency in Hz. High enough to avoid audible/visible artifacts
# Device Specific GPIO (so we can easily update for other devices)
device_status_led: GPIO02 # Can't really see if there is an LED
device_status_led: GPIO02
device_mosfet_out: GPIO12
device_usr_button: GPIO04 # this is just a fake/safeish choice so it compiles with my generic yaml
device_fading_led: GPIO13 # this is just a fake/safeish choice so it compiles with my generic yaml
device_usr_button: GPIO04 # if no button, this is just a fake/safeish choice so it compiles with the generic yaml
device_fading_led: GPIO13 # if no LED, this is just a fake/safeish choice so it compiles with the generic yaml
##########################################################################################
# PACKAGES: Included Common Packages
@@ -124,8 +124,8 @@ packages:
#### DIAGNOSTICS Sensors ####
diag_basic: !include common/include_basic_diag_sensors.yaml
#diag_more: !include common/include_more_diag_sensors.yaml
#diag_debug: !include common/include_debug_diag_sensors.yaml
diag_more: !include common/include_more_diag_sensors.yaml
diag_debug: !include common/include_debug_diag_sensors.yaml
#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
##########################################################################################
@@ -180,7 +180,7 @@ esphome:
- lambda: 'id(booting) = false;'
# NEW: force indicator OFF after boot logic
- output.turn_off: green_led_out
# (Removed: output.turn_off: green_led_out)
# Only if you want to play with build flags...
# platformio_options:
@@ -228,6 +228,11 @@ globals:
type: int
restore_value: true
initial_value: "${max_on_default_hours}"
# Compile time Gamma
- id: led_gamma_f
type: float
restore_value: false
initial_value: ${led_gamma} # <-- numeric at compile time
# Default Fading Up Time (Selectable and will be retained)
- id: ramp_up_ms # fade-in when turned ON
@@ -389,7 +394,6 @@ button:
# Stop any pending scripts (and their delayed actions)
- script.stop: ramp_on_script
- script.stop: ramp_off_script
- output.turn_off: green_led_out
- lambda: |-
// We are no longer ramping (up or down)
id(ramping_for_off) = false;
@@ -485,10 +489,11 @@ sensor:
unit_of_measurement: "%"
icon: mdi:percent
accuracy_decimals: 0
update_interval: 1s # consider 200ms if you want fewer updates
update_interval: 2s # consider 200ms if you want fewer updates
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
return cv.is_on() ? (cv.get_brightness() * 100.0f) : 0.0f;
return cv.is_on() ? (float) (int)(cv.get_brightness() * 100.0f + 0.5f) : 0.0f;
on_value:
then:
- lambda: |-
@@ -515,18 +520,16 @@ sensor:
unit_of_measurement: "%"
icon: mdi:square-wave
accuracy_decimals: 1
update_interval: 1s
update_interval: 2s
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
if (!cv.is_on()) return 0.0f;
const float lin = cv.get_brightness(); // 0..1 linear brightness
const float gamma = atof("${led_gamma}"); // parse substitution string -> float
float pwm = powf(lin, gamma); // approx PWM duty after gamma
const float lin = cv.get_brightness();
float pwm = powf(lin, id(led_gamma_f));
if (pwm < 0.0f) pwm = 0.0f;
if (pwm > 1.0f) pwm = 1.0f;
return pwm * 100.0f;
##########################################################################################
# OUTPUT COMPONENT
# https://esphome.io/components/light/index.html
@@ -561,6 +564,7 @@ light:
# ON: publish state, track intent, arm watchdog if configured
on_turn_on:
- output.turn_on: green_led_out
- mqtt.publish:
topic: "${mqtt_local_status_topic}/light/state"
payload: "${mqtt_local_device_command_ON}"
@@ -580,6 +584,7 @@ light:
# OFF: publish state, track intent, clear watchdog, and persist OFF so Mode 1 will not restore
# Guarded by booting flag so the automatic OFF at boot from ALWAYS_OFF does not zero persistence.
on_turn_off:
- output.turn_off: green_led_out
- if:
condition:
lambda: 'return !id(booting);'
@@ -600,13 +605,15 @@ light:
- lambda: |-
const float cap = id(max_brightness_pct) / 100.0f;
const auto &cv = id(mosfet_leds).current_values;
if (cv.is_on() && cv.get_brightness() > cap + 0.001f) {
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
}
if (!cv.is_on()) return;
const float b = cv.get_brightness();
if (b <= cap + 0.001f) return; // no call if already at/under cap
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
##########################################################################################
# NUMBER COMPONENT
@@ -768,7 +775,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at at least the floor without a visible "pop".
- if:
condition:
@@ -805,7 +811,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -820,7 +825,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at the floor cleanly.
- if:
condition:
@@ -863,7 +867,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -881,7 +884,6 @@ script:
id(is_ramping) = true;
id(ramping_for_off) = true;
- script.stop: ramp_on_script
- output.turn_on: green_led_out
- light.turn_on:
id: mosfet_leds
brightness: !lambda 'return id(min_brightness_pct) / 100.0f;'
@@ -902,7 +904,6 @@ script:
id: mosfet_leds
transition_length: 150ms
- delay: 150ms
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
id(ramping_for_off) = false;
@@ -962,4 +963,4 @@ script:
- light.turn_off:
id: mosfet_leds
transition_length: 0s
- output.turn_off: green_led_out # make sure LED is off if no ramp
# (Removed: output.turn_off: green_led_out) # make sure LED is off if no ramp
+4 -4
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@@ -42,15 +42,15 @@ substitutions:
# MQTT LOCAL Controls
mqtt_local_device_name: "stair-mainlights-lower"
mqtt_local_command_topic: "${mqtt_command_main_topic}/${mqtt_local_device_name}/set" # Topic we will use to command this locally without HA
mqtt_local_status_topic: "${mqtt_status_main_topic}/${mqtt_local_device_name}/state" # Topic we will use to view status locally without HA
mqtt_local_command_topic: "${mqtt_command_main_topic}/${mqtt_local_device_name}" # Topic we will use to command this locally without HA
mqtt_local_status_topic: "${mqtt_status_main_topic}/${mqtt_local_device_name}" # Topic we will use to view status locally without HA
mqtt_local_device_command_ON: "ON"
mqtt_local_device_command_OFF: "OFF"
# MQTT REMOTE Controls
mqtt_remote_device1_name: "stair-footerlights"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}/set"
mqtt_remote_device1_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device1_name}/state"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}"
mqtt_remote_device1_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device1_name}"
#mqtt_remote_device2_name: "stair-mainlights-upper"
#mqtt_remote_device2_command_topic: "${mqtt_local_command_main_topic}/${mqtt_remote_device2_name}/relay3/set"
#mqtt_remote_device2_status_topic: "${mqtt_local_status_main_topic}/${mqtt_remote_device2_name}/relay3/state"
+4 -4
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@@ -42,15 +42,15 @@ substitutions:
# MQTT LOCAL Controls
mqtt_local_device_name: "stair-footerlights"
mqtt_local_command_topic: "${mqtt_command_main_topic}/${mqtt_local_device_name}/set" # Topic we will use to command this locally without HA
mqtt_local_status_topic: "${mqtt_status_main_topic}/${mqtt_local_device_name}/state" # Topic we will use to view status locally without HA
mqtt_local_command_topic: "${mqtt_command_main_topic}/${mqtt_local_device_name}" # Topic we will use to command this locally without HA
mqtt_local_status_topic: "${mqtt_status_main_topic}/${mqtt_local_device_name}" # Topic we will use to view status locally without HA
mqtt_local_device_command_ON: "ON"
mqtt_local_device_command_OFF: "OFF"
# MQTT REMOTE Controls
mqtt_remote_device1_name: "stair-mainlights-lower"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}/set"
mqtt_remote_device1_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device1_name}/state"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}"
mqtt_remote_device1_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device1_name}"
#mqtt_remote_device2_name: "stair-mainlights-upper"
#mqtt_remote_device2_command_topic: "${mqtt_local_command_main_topic}/${mqtt_remote_device2_name}/relay3/set"
#mqtt_remote_device2_status_topic: "${mqtt_local_status_main_topic}/${mqtt_remote_device2_name}/relay3/state"
+30 -30
View File
@@ -94,13 +94,13 @@ substitutions:
minimum_led_output: "1" # % If at this value or below, we'll switch it completely off
maximum_led_output: "90" # % Maximum output; it is sometimes nice to limit the output for longevity or aesthetics
max_on_default_hours: "24" # The maximum time the LEDs will be on, in case they get left on. 0 = no automatic turn-off
pwm_frequency: "1000 hz" # PWM output Frequency. High enough to avoid audible/visible artifacts
pwm_frequency: "1000" # PWM output Frequency in Hz. High enough to avoid audible/visible artifacts
# Device Specific GPIO (so we can easily update for other devices)
device_status_led: GPIO02
device_mosfet_out: GPIO04
device_usr_button: GPIO12
device_fading_led: GPIO13
device_usr_button: GPIO12 # if no button, this is just a fake/safeish choice so it compiles with the generic yaml
device_fading_led: GPIO13 # if no LED, this is just a fake/safeish choice so it compiles with the generic yaml
##########################################################################################
# PACKAGES: Included Common Packages
@@ -117,8 +117,8 @@ packages:
#### HOME ASSISTANT API (choose encryption or no encryption options) ####
common_api: !include
file: common/api_common.yaml
#file: common/api_common_noencryption.yaml
#file: common/api_common.yaml
file: common/api_common_noencryption.yaml
vars:
local_api_key: "${api_key}"
@@ -137,7 +137,7 @@ packages:
diag_basic: !include common/include_basic_diag_sensors.yaml
diag_more: !include common/include_more_diag_sensors.yaml
diag_debug: !include common/include_debug_diag_sensors.yaml
diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
##########################################################################################
# ESPHome CORE CONFIGURATION
@@ -191,7 +191,7 @@ esphome:
- lambda: 'id(booting) = false;'
# NEW: force indicator OFF after boot logic
- output.turn_off: green_led_out
# (Removed: output.turn_off: green_led_out)
# Only if you want to play with build flags...
# platformio_options:
@@ -239,6 +239,11 @@ globals:
type: int
restore_value: true
initial_value: "${max_on_default_hours}"
# Compile time Gamma
- id: led_gamma_f
type: float
restore_value: false
initial_value: ${led_gamma} # <-- numeric at compile time
# Default Fading Up Time (Selectable and will be retained)
- id: ramp_up_ms # fade-in when turned ON
@@ -400,7 +405,6 @@ button:
# Stop any pending scripts (and their delayed actions)
- script.stop: ramp_on_script
- script.stop: ramp_off_script
- output.turn_off: green_led_out
- lambda: |-
// We are no longer ramping (up or down)
id(ramping_for_off) = false;
@@ -496,10 +500,11 @@ sensor:
unit_of_measurement: "%"
icon: mdi:percent
accuracy_decimals: 0
update_interval: 1s # consider 200ms if you want fewer updates
update_interval: 2s # consider 200ms if you want fewer updates
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
return cv.is_on() ? (cv.get_brightness() * 100.0f) : 0.0f;
return cv.is_on() ? (float) (int)(cv.get_brightness() * 100.0f + 0.5f) : 0.0f;
on_value:
then:
- lambda: |-
@@ -526,18 +531,16 @@ sensor:
unit_of_measurement: "%"
icon: mdi:square-wave
accuracy_decimals: 1
update_interval: 1s
update_interval: 2s
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
if (!cv.is_on()) return 0.0f;
const float lin = cv.get_brightness(); // 0..1 linear brightness
const float gamma = atof("${led_gamma}"); // parse substitution string -> float
float pwm = powf(lin, gamma); // approx PWM duty after gamma
const float lin = cv.get_brightness();
float pwm = powf(lin, id(led_gamma_f));
if (pwm < 0.0f) pwm = 0.0f;
if (pwm > 1.0f) pwm = 1.0f;
return pwm * 100.0f;
##########################################################################################
# OUTPUT COMPONENT
# https://esphome.io/components/light/index.html
@@ -572,6 +575,7 @@ light:
# ON: publish state, track intent, arm watchdog if configured
on_turn_on:
- output.turn_on: green_led_out
- mqtt.publish:
topic: "${mqtt_local_status_topic}/light/state"
payload: "${mqtt_local_device_command_ON}"
@@ -591,6 +595,7 @@ light:
# OFF: publish state, track intent, clear watchdog, and persist OFF so Mode 1 will not restore
# Guarded by booting flag so the automatic OFF at boot from ALWAYS_OFF does not zero persistence.
on_turn_off:
- output.turn_off: green_led_out
- if:
condition:
lambda: 'return !id(booting);'
@@ -611,13 +616,15 @@ light:
- lambda: |-
const float cap = id(max_brightness_pct) / 100.0f;
const auto &cv = id(mosfet_leds).current_values;
if (cv.is_on() && cv.get_brightness() > cap + 0.001f) {
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
}
if (!cv.is_on()) return;
const float b = cv.get_brightness();
if (b <= cap + 0.001f) return; // no call if already at/under cap
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
##########################################################################################
# NUMBER COMPONENT
@@ -779,7 +786,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at at least the floor without a visible "pop".
- if:
condition:
@@ -816,7 +822,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -831,7 +836,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at the floor cleanly.
- if:
condition:
@@ -874,7 +878,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -892,7 +895,6 @@ script:
id(is_ramping) = true;
id(ramping_for_off) = true;
- script.stop: ramp_on_script
- output.turn_on: green_led_out
- light.turn_on:
id: mosfet_leds
brightness: !lambda 'return id(min_brightness_pct) / 100.0f;'
@@ -913,7 +915,6 @@ script:
id: mosfet_leds
transition_length: 150ms
- delay: 150ms
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
id(ramping_for_off) = false;
@@ -973,5 +974,4 @@ script:
- light.turn_off:
id: mosfet_leds
transition_length: 0s
- output.turn_off: green_led_out # make sure LED is off if no ramp
# (Removed: output.turn_off: green_led_out) # make sure LED is off if no ramp
-248
View File
@@ -1,248 +0,0 @@
#############################################
#############################################
# Nissan Leaf 12V Battery Monitor
# Monitoring the status of a vehicle 12V battery with
# an esp8266 (D1 Mini). It will obviously only
# transmit when the vehicle is within wifi range.
# Voltage is measured with a resistor voltage divider
# into the analogue GPIO on the esp8266.
# https://zorruno.com/2022/vehicle-12v-battery-monitoring/
##############################################
#############################################
#############################################
# Variable Substitutions
#############################################
substitutions:
devicename: "esp-leafbat"
friendly_name: "Nissan Leaf 12V Battery Monitor"
description_comment: "Nissan Leaf 12V Battery Monitor (when home)"
api_key: !secret esp-leafbat_api_key #unfortunately you can't use substitutions in secrets names
ota_pass: !secret esp-leafbat_ota_pass #unfortunately you can't use substitutions in secrets names
wifi_ssid: !secret wifi_ssid
wifi_password: !secret wifi_password
fallback_ap_password: !secret fallback_ap_password
#Add these if we are giving it a static ip, or remove them in the Wifi section
#A static IP will speed things up slightly in that it doesn't have to negotiate DHCP
static_ip_address: !secret esp-leafbat_static_ip
static_ip_gateway: !secret esp-leafbat_gateway
static_ip_subnet: !secret esp-leafbat_subnet
mqtt_server: !secret mqtt_server
mqtt_username: !secret mqtt_username
mqtt_password: !secret mqtt_password
mqtt_topic: "esphome" #main topic for the mqtt server, call it what you like
mqtt_commandstopic: "viewroad-commands" #main topic for commands (ie sleep), call it what you like
#web_server_username: !secret web_server_username
#web_server_password: !secret web_server_password
update_time: 10s #update time for for general temp sensors etc
#############################################
# ESPHome
# https://esphome.io/components/esphome.html
#############################################
esphome:
name: ${devicename}
friendly_name: ${friendly_name}
comment: ${description_comment} #appears on the esphome page in HA
min_version: 2024.6.0
#############################################
# ESP Platform and Framework
# https://esphome.io/components/esp8266.html
# https://esphome.io/components/esp32.html
#############################################
esp8266:
board: d1_mini
framework:
version: latest #recommended, latest or dev
#############################################
# ESPHome Logging Enable
# https://esphome.io/components/logger.html
#############################################
logger:
level: INFO #INFO Level suggested, or DEBUG for testing
#baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#uart:
# id: uart_output
# tx_pin: GPIO12
# rx_pin: GPIO13
# baud_rate: 9600
#############################################
# Enable the Home Assistant API
# https://esphome.io/components/api.html
#############################################
api:
encryption:
key: ${api_key}
#############################################
# Enable Over the Air Update Capability
# https://esphome.io/components/ota.html?highlight=ota
#############################################
ota:
- platform: esphome
password: ${ota_pass}
#############################################
# Safe Mode
# Safe mode will detect boot loops
# https://esphome.io/components/safe_mode
#############################################
safe_mode:
#############################################
# Wifi Settings
# https://esphome.io/components/wifi.html
#
# Power Save mode (can reduce wifi reliability)
# NONE (least power saving, Default for ESP8266)
# LIGHT (Default for ESP32)
# HIGH (most power saving)
#############################################
wifi:
ssid: ${wifi_ssid}
password: ${wifi_password}
#power_save_mode: LIGHT #https://esphome.io/components/wifi.html#wifi-power-save-mode
manual_ip: #optional static IP address
static_ip: ${static_ip_address}
gateway: ${static_ip_gateway}
subnet: ${static_ip_subnet}
ap: #Details for fallback hotspot (captive portal) in case wifi connection fails https://esphome.io/components/wifi.html#access-point-mode
ssid: ${devicename} fallback AP
password: ${fallback_ap_password}
ap_timeout: 30min #Time until it brings up fallback AP. default is 1min
#############################################
# Web Portal for display and monitoring
#############################################
web_server:
port: 80
#version: 2
#include_internal: true
#ota: false
#auth:
#username: ${web_server_username}
#password: ${web_server_password}
#############################################
# MQTT Monitoring
# https://esphome.io/components/mqtt.html?highlight=mqtt
# MUST also have api enabled if you enable MQTT
#############################################
mqtt:
broker: ${mqtt_server}
topic_prefix: ${mqtt_topic}/${devicename}
username: ${mqtt_username}
password: ${mqtt_password}
discovery: False # enable entity discovery (true is default, we don't want two HA Instances)
# Availability Topic
birth_message:
topic: ${mqtt_topic}/${devicename}/availability
payload: online
will_message:
topic: ${mqtt_topic}/${devicename}/availability
payload: offline
# A way to prevent deep sleep using MQTT command
on_message:
- topic: ${mqtt_commandstopic}/${devicename}/deepsleep
payload: 'OFF'
then:
- deep_sleep.prevent: deep_sleep_1
- topic: ${mqtt_commandstopic}/${devicename}/deepsleep
payload: 'ON'
then:
- deep_sleep.enter: deep_sleep_1
########################################
# Deep Sleep
# https://esphome.io/components/deep_sleep.html
########################################
deep_sleep:
run_duration: 20s
sleep_duration: 5min
id: deep_sleep_1
#time:
# - platform: homeassistant
# id: ha_time
# timezone: Pacific/Auckland
#text_sensor:
# - platform: template
# name: "Current time"
# id: current_time
# lambda: return id(ha_time).now().strftime("%H%M");
# lambda: |-
# char str[17];
# time_t currTime = id(ha_time).now().timestamp;
# strftime(str, sizeof(str), "%Y-%m-%d %H:%M", localtime(&currTime));
# return { str };
# update_interval: ${update_time}
#############################################
#############################################
# MAIN SENSORS
#############################################
#############################################
sensor:
#Quality of Wifi in dBm
- platform: wifi_signal
name: "WiFi Signal"
id: wifi_strength
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
#Analog sensor for voltage reading (A0)
- platform: uptime
name: "Uptime"
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
- platform: adc
pin: A0
name: "Battery Voltage"
id: battery_voltage
#mqtt_id: battery_voltage
update_interval: ${update_time}
retain: true #Retain this as you'll have no value between sleeps otherwise
# This set used a voltage divider with a 100k and a 4.7k R value
filters:
- multiply: 3.3 #D1 mini V divider, 3.3V -> 1V on esp8266
- calibrate_linear: #Read values with voltmeter and bench supply
- 0.72 -> 16.00
- 0.68 -> 15.00
- 0.63 -> 14.00
- 0.59 -> 13.00
- 0.55 -> 12.00
- 0.51 -> 11.00
- 0.45 -> 10.00
- 0.40 -> 09.00
- 0.36 -> 08.00
- 0.32 -> 07.00
- 0.28 -> 06.00
- 0.23 -> 05.00
# on_value:
# - logger.log:
# level: INFO
# format: "time,%s,battery,%.1f,wifi,%.1f"
# args: [ 'id(ha_time).now()', 'id(battery_voltage).state', 'id(wifi_strength).state' ]
# - uart.write:
# id: uart_output
# data: !lambda char buf[128];
# sprintf(buf, "%s", id(battery_voltage).state);
# std::string s = buf;
# return std::vector<unsigned char>( s.begin(), s.end() );
# - logger.log:
# level: INFO
# format: "time,%.1f,battery,%.1f,wifi,%.1f"
# args: [ 'id(sntp_time).now()', 'id(battery_voltage).state', 'id(wifi_strength).state' ]
+242
View File
@@ -0,0 +1,242 @@
##########################################################################################
##########################################################################################
# Nissan Leaf 12V Battery Monitor
# Monitoring the status of a vehicle 12V battery with
# an esp8266 (D1 Mini). It will obviously only
# transmit when the vehicle is within wifi range.
# Voltage is measured with a resistor voltage divider
# into the analogue GPIO on the esp8266.
# https://zorruno.com/2022/vehicle-12v-battery-monitoring/
##########################################################################################
##########################################################################################
##########################################################################################
# SPECIFIC DEVICE VARIABLE SUBSTITUTIONS
# If NOT using a secrets file, just replace these with the passwords etc (in quotes)
##########################################################################################
substitutions:
# Device Naming
device_name: "esp-leafbattery"
friendly_name: "Nissan Leaf 12V Battery Monitor"
description_comment: "Nissan Leaf 12V Battery Monitor (when home)"
device_area: "Garage" # Allows ESP device to be automatically linked to an 'Area' in Home Assistant.
# Project Naming
project_name: "Generic ESP8266.D1 Mini" # Project Details
project_version: "v1.0" # Project V denotes release of yaml file, allowing checking of deployed vs latest version
# Passwords & Secrets
api_key: !secret esp-api_key # unfortunately you can't use substitutions inside secrets names
ota_pass: !secret esp-ota_pass # unfortunately you can't use substitutions inside secrets names
static_ip_address: !secret esp-leafbattery_ip
mqtt_command_main_topic: !secret mqtt_command_main_topic
mqtt_status_main_topic: !secret mqtt_status_main_topic
# MQTT LOCAL Controls
mqtt_device_name: "leaf-battery"
mqtt_command_topic: "${mqtt_command_main_topic}/${mqtt_device_name}" # Topic we will use to command this locally without HA
mqtt_status_topic: "${mqtt_status_main_topic}/${mqtt_device_name}" # Topic we will use to view status locally without HA
# Device Settings
#relay_icon: "mdi:lightbulb-group"
log_level: "INFO" # Define logging level: NONE, ERROR, WARN, INFO, DEBUG (Default), VERBOSE, VERY_VERBOSE
update_interval: "60s" # update time for for general sensors etc
wake_interval: "20s"
sleep_interval: "300s"
mqtt_fail_sleep: "1h" # If MQTT is unavailable after boot wait, sleep this long
##########################################################################################
# PACKAGES: Included Common Packages
# https://esphome.io/components/packages.html
##########################################################################################
# Comment some of these out where not needed, eg MQTT, Web portal, SNTP, General Sensors
##########################################################################################
packages:
#### WIFI, Network (Static/DHCP/IPV6 etc), Fallback AP, Safemode ####
common_wifi: !include
file: common/network_common.yaml
vars:
local_device_name: "${device_name}"
local_static_ip_address: "${static_ip_address}"
local_ota_pass: "${ota_pass}"
#### HOME ASSISTANT API (choose encryption or no encryption options) ####
common_api: !include
file: common/api_common.yaml
#file: common/api_common_noencryption.yaml
vars:
local_api_key: "${api_key}"
#### MQTT ####
common_mqtt: !include
file: common/mqtt_common.yaml
vars:
local_device_name: "${device_name}"
#### WEB PORTAL ####
common_webportal: !include common/webportal_common.yaml
#### SNTP (Only use if you want/need accurate timeclocks) ####
#common_sntp: !include common/sntp_common.yaml
#### DIAGNOSTICS Sensors ####
diag_basic: !include common/include_basic_diag_sensors.yaml
diag_more: !include common/include_more_diag_sensors.yaml
#diag_debug: !include common/include_debug_diag_sensors.yaml
#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
##########################################################################################
# ESPHome
# https://esphome.io/components/esphome.html
##########################################################################################
esphome:
name: ${device_name}
friendly_name: ${friendly_name}
comment: ${description_comment} #appears on the esphome page in HA
min_version: 2024.6.0
on_boot:
priority: 600
then:
# Default: do NOT deep sleep until explicitly enabled via MQTT
- deep_sleep.prevent: deep_sleep_1
- logger.log: "Deep sleep prevented by default on boot."
# Fail-safe: wait up to 30s for MQTT; if not connected, sleep longer (backoff)
- wait_until:
condition:
mqtt.connected:
timeout: 30s
- if:
condition:
not:
mqtt.connected:
then:
- logger.log: "MQTT unreachable after 30s -> entering FALLBACK sleep for ${mqtt_fail_sleep}."
- deep_sleep.enter:
id: deep_sleep_1
sleep_duration: ${mqtt_fail_sleep} # override only this cycle
else:
- logger.log: "MQTT connected; awaiting '${mqtt_command_topic}/deepsleep' command."
##########################################################################################
# ESP Platform and Framework
# https://esphome.io/components/esp8266.html
# https://esphome.io/components/esp32.html
##########################################################################################
esp8266:
board: d1_mini
framework:
version: latest #recommended, latest or dev
##########################################################################################
# ESPHome Logging Enable
# https://esphome.io/components/logger.html
##########################################################################################
logger:
level: "${log_level}" #INFO Level suggested, or DEBUG for testing
#baud_rate: 0 #set to 0 for no logging via UART, needed if you are using it for other serial things (eg PZEM)
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
#############################################
# Enable Over the Air Update Capability
# https://esphome.io/components/ota.html?highlight=ota
#############################################
ota:
- platform: web_server # Uncomment if you want to be able to do OTA with the web interface
##########################################################################################
# MQTT COMMANDS
# This adds device-specific MQTT command triggers to the common MQTT configuration.
##########################################################################################
mqtt:
# Availability Topic
birth_message:
topic: ${mqtt_status_topic}/availability
payload: online
will_message:
topic: ${mqtt_status_topic}/availability
payload: offline
# Control deep sleep over MQTT
on_message:
- topic: ${mqtt_command_topic}/deepsleep
payload: "ON"
then:
- deep_sleep.allow: deep_sleep_1
- logger.log: "Deep sleep ALLOWED via MQTT. Device will sleep when run_duration elapses."
- topic: ${mqtt_command_topic}/deepsleep
payload: "OFF"
then:
- deep_sleep.prevent: deep_sleep_1
- logger.log: "Deep sleep PREVENTED via MQTT."
##########################################################################################
# Deep Sleep
# https://esphome.io/components/deep_sleep.html
##########################################################################################
deep_sleep:
id: deep_sleep_1
run_duration: ${wake_interval}
sleep_duration: ${sleep_interval}
##########################################################################################
# SENSOR COMPONENT
# https://esphome.io/components/sensor/
##########################################################################################
sensor:
- platform: adc
pin: A0
name: "Battery Voltage"
id: battery_voltage
update_interval: 4s
retain: true
filters:
- multiply: 3.3
- calibrate_linear:
- 0.72 -> 16.00
- 0.68 -> 15.00
- 0.63 -> 14.00
- 0.59 -> 13.00
- 0.55 -> 12.00
- 0.51 -> 11.00
- 0.45 -> 10.00
- 0.40 -> 09.00
- 0.36 -> 08.00
- 0.32 -> 07.00
- 0.28 -> 06.00
- 0.23 -> 05.00
- delta: 0.05 # publish immediately if change >= 0.05 V
- throttle: 2s # avoid bursts if noisy
on_value:
then:
- mqtt.publish:
topic: "${mqtt_status_topic}/batteryvoltage"
qos: 1
retain: true
payload: !lambda |-
char buf[10];
snprintf(buf, sizeof(buf), "%.2f", x);
return std::string(buf);
##########################################################################################
# INTERVAL COMPONENT
##########################################################################################
interval:
- interval: 60s
then:
- mqtt.publish:
topic: "${mqtt_status_topic}/batteryvoltage"
qos: 1
retain: true
payload: !lambda |-
const float v = id(battery_voltage).state; // current filtered state
char buf[10];
snprintf(buf, sizeof(buf), "%.2f", v);
return std::string(buf);
+30 -30
View File
@@ -83,13 +83,13 @@ substitutions:
minimum_led_output: "1" # % If at this value or below, we'll switch it completely off
maximum_led_output: "90" # % Maximum output; it is sometimes nice to limit the output for longevity or aesthetics
max_on_default_hours: "24" # The maximum time the LEDs will be on, in case they get left on. 0 = no automatic turn-off
pwm_frequency: "1000hz" # PWM output Frequency. High enough to avoid audible/visible artifacts
pwm_frequency: "1000" # PWM output Frequency in Hz. High enough to avoid audible/visible artifacts
# Device Specific GPIO (so we can easily update for other devices)
device_status_led: GPIO02 # Can't really see if there is an LED
device_status_led: GPIO02
device_mosfet_out: GPIO12
device_usr_button: GPIO04 # this is just a fake/safeish choice so it compiles with my generic yaml
device_fading_led: GPIO13 # this is just a fake/safeish choice so it compiles with my generic yaml
device_usr_button: GPIO04 # if no button, this is just a fake/safeish choice so it compiles with the generic yaml
device_fading_led: GPIO13 # if no LED, this is just a fake/safeish choice so it compiles with the generic yaml
##########################################################################################
# PACKAGES: Included Common Packages
@@ -124,8 +124,8 @@ packages:
#### DIAGNOSTICS Sensors ####
diag_basic: !include common/include_basic_diag_sensors.yaml
#diag_more: !include common/include_more_diag_sensors.yaml
#diag_debug: !include common/include_debug_diag_sensors.yaml
diag_more: !include common/include_more_diag_sensors.yaml
diag_debug: !include common/include_debug_diag_sensors.yaml
#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
##########################################################################################
@@ -180,7 +180,7 @@ esphome:
- lambda: 'id(booting) = false;'
# NEW: force indicator OFF after boot logic
- output.turn_off: green_led_out
# (Removed: output.turn_off: green_led_out)
# Only if you want to play with build flags...
# platformio_options:
@@ -228,6 +228,11 @@ globals:
type: int
restore_value: true
initial_value: "${max_on_default_hours}"
# Compile time Gamma
- id: led_gamma_f
type: float
restore_value: false
initial_value: ${led_gamma} # <-- numeric at compile time
# Default Fading Up Time (Selectable and will be retained)
- id: ramp_up_ms # fade-in when turned ON
@@ -389,7 +394,6 @@ button:
# Stop any pending scripts (and their delayed actions)
- script.stop: ramp_on_script
- script.stop: ramp_off_script
- output.turn_off: green_led_out
- lambda: |-
// We are no longer ramping (up or down)
id(ramping_for_off) = false;
@@ -485,10 +489,11 @@ sensor:
unit_of_measurement: "%"
icon: mdi:percent
accuracy_decimals: 0
update_interval: 1s # consider 200ms if you want fewer updates
update_interval: 2s # consider 200ms if you want fewer updates
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
return cv.is_on() ? (cv.get_brightness() * 100.0f) : 0.0f;
return cv.is_on() ? (float) (int)(cv.get_brightness() * 100.0f + 0.5f) : 0.0f;
on_value:
then:
- lambda: |-
@@ -515,18 +520,16 @@ sensor:
unit_of_measurement: "%"
icon: mdi:square-wave
accuracy_decimals: 1
update_interval: 1s
update_interval: 2s
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
if (!cv.is_on()) return 0.0f;
const float lin = cv.get_brightness(); // 0..1 linear brightness
const float gamma = atof("${led_gamma}"); // parse substitution string -> float
float pwm = powf(lin, gamma); // approx PWM duty after gamma
const float lin = cv.get_brightness();
float pwm = powf(lin, id(led_gamma_f));
if (pwm < 0.0f) pwm = 0.0f;
if (pwm > 1.0f) pwm = 1.0f;
return pwm * 100.0f;
##########################################################################################
# OUTPUT COMPONENT
# https://esphome.io/components/light/index.html
@@ -561,6 +564,7 @@ light:
# ON: publish state, track intent, arm watchdog if configured
on_turn_on:
- output.turn_on: green_led_out
- mqtt.publish:
topic: "${mqtt_local_status_topic}/light/state"
payload: "${mqtt_local_device_command_ON}"
@@ -580,6 +584,7 @@ light:
# OFF: publish state, track intent, clear watchdog, and persist OFF so Mode 1 will not restore
# Guarded by booting flag so the automatic OFF at boot from ALWAYS_OFF does not zero persistence.
on_turn_off:
- output.turn_off: green_led_out
- if:
condition:
lambda: 'return !id(booting);'
@@ -600,13 +605,15 @@ light:
- lambda: |-
const float cap = id(max_brightness_pct) / 100.0f;
const auto &cv = id(mosfet_leds).current_values;
if (cv.is_on() && cv.get_brightness() > cap + 0.001f) {
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
}
if (!cv.is_on()) return;
const float b = cv.get_brightness();
if (b <= cap + 0.001f) return; // no call if already at/under cap
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
##########################################################################################
# NUMBER COMPONENT
@@ -768,7 +775,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at at least the floor without a visible "pop".
- if:
condition:
@@ -805,7 +811,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -820,7 +825,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at the floor cleanly.
- if:
condition:
@@ -863,7 +867,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -881,7 +884,6 @@ script:
id(is_ramping) = true;
id(ramping_for_off) = true;
- script.stop: ramp_on_script
- output.turn_on: green_led_out
- light.turn_on:
id: mosfet_leds
brightness: !lambda 'return id(min_brightness_pct) / 100.0f;'
@@ -902,7 +904,6 @@ script:
id: mosfet_leds
transition_length: 150ms
- delay: 150ms
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
id(ramping_for_off) = false;
@@ -962,5 +963,4 @@ script:
- light.turn_off:
id: mosfet_leds
transition_length: 0s
- output.turn_off: green_led_out # make sure LED is off if no ramp
# (Removed: output.turn_off: green_led_out) # make sure LED is off if no ramp
+28 -27
View File
@@ -83,18 +83,18 @@ substitutions:
# Device Specific Settings
log_level: "NONE" # Define logging level: NONE, ERROR, WARN, INFO, DEBUG (default), VERBOSE, VERY_VERBOSE
update_interval: "20s" # Update time for general sensors, etc.
update_interval: "30s" # Update time for general sensors, etc.
led_gamma: "1.2" # Gamma from 1.2-3 is sensible to normalise the LED fading vs PWM
minimum_led_output: "1" # % If at this value or below, we'll switch it completely off
maximum_led_output: "90" # % Maximum output; it is sometimes nice to limit the output for longevity or aesthetics
max_on_default_hours: "24" # The maximum time the LEDs will be on, in case they get left on. 0 = no automatic turn-off
pwm_frequency: "1000hz" # PWM output Frequency. High enough to avoid audible/visible artifacts
pwm_frequency: "1000" # PWM output Frequency in Hz. High enough to avoid audible/visible artifacts
# Device Specific GPIO (so we can easily update for other devices)
device_status_led: GPIO02
device_mosfet_out: GPIO04
device_usr_button: GPIO12
device_fading_led: GPIO13
device_usr_button: GPIO12 # if no button, this is just a fake/safeish choice so it compiles with the generic yaml
device_fading_led: GPIO13 # if no LED, this is just a fake/safeish choice so it compiles with the generic yaml
##########################################################################################
# PACKAGES: Included Common Packages
@@ -185,7 +185,7 @@ esphome:
- lambda: 'id(booting) = false;'
# NEW: force indicator OFF after boot logic
- output.turn_off: green_led_out
# (Removed: output.turn_off: green_led_out)
# Only if you want to play with build flags...
# platformio_options:
@@ -233,6 +233,11 @@ globals:
type: int
restore_value: true
initial_value: "${max_on_default_hours}"
# Compile time Gamma
- id: led_gamma_f
type: float
restore_value: false
initial_value: ${led_gamma} # <-- numeric at compile time
# Default Fading Up Time (Selectable and will be retained)
- id: ramp_up_ms # fade-in when turned ON
@@ -394,7 +399,6 @@ button:
# Stop any pending scripts (and their delayed actions)
- script.stop: ramp_on_script
- script.stop: ramp_off_script
- output.turn_off: green_led_out
- lambda: |-
// We are no longer ramping (up or down)
id(ramping_for_off) = false;
@@ -490,10 +494,11 @@ sensor:
unit_of_measurement: "%"
icon: mdi:percent
accuracy_decimals: 0
update_interval: 1s # consider 200ms if you want fewer updates
update_interval: 2s # consider 200ms if you want fewer updates
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
return cv.is_on() ? (cv.get_brightness() * 100.0f) : 0.0f;
return cv.is_on() ? (float) (int)(cv.get_brightness() * 100.0f + 0.5f) : 0.0f;
on_value:
then:
- lambda: |-
@@ -520,18 +525,16 @@ sensor:
unit_of_measurement: "%"
icon: mdi:square-wave
accuracy_decimals: 1
update_interval: 1s
update_interval: 2s
lambda: |-
const auto &cv = id(mosfet_leds).current_values;
if (!cv.is_on()) return 0.0f;
const float lin = cv.get_brightness(); // 0..1 linear brightness
const float gamma = atof("${led_gamma}"); // parse substitution string -> float
float pwm = powf(lin, gamma); // approx PWM duty after gamma
const float lin = cv.get_brightness();
float pwm = powf(lin, id(led_gamma_f));
if (pwm < 0.0f) pwm = 0.0f;
if (pwm > 1.0f) pwm = 1.0f;
return pwm * 100.0f;
##########################################################################################
# OUTPUT COMPONENT
# https://esphome.io/components/light/index.html
@@ -566,6 +569,7 @@ light:
# ON: publish state, track intent, arm watchdog if configured
on_turn_on:
- output.turn_on: green_led_out
- mqtt.publish:
topic: "${mqtt_local_status_topic}/light/state"
payload: "${mqtt_local_device_command_ON}"
@@ -585,6 +589,7 @@ light:
# OFF: publish state, track intent, clear watchdog, and persist OFF so Mode 1 will not restore
# Guarded by booting flag so the automatic OFF at boot from ALWAYS_OFF does not zero persistence.
on_turn_off:
- output.turn_off: green_led_out
- if:
condition:
lambda: 'return !id(booting);'
@@ -605,13 +610,15 @@ light:
- lambda: |-
const float cap = id(max_brightness_pct) / 100.0f;
const auto &cv = id(mosfet_leds).current_values;
if (cv.is_on() && cv.get_brightness() > cap + 0.001f) {
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
}
if (!cv.is_on()) return;
const float b = cv.get_brightness();
if (b <= cap + 0.001f) return; // no call if already at/under cap
auto call = id(mosfet_leds).make_call();
call.set_state(true);
call.set_brightness(cap);
call.set_transition_length(0);
call.perform();
##########################################################################################
# NUMBER COMPONENT
@@ -773,7 +780,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at at least the floor without a visible "pop".
- if:
condition:
@@ -810,7 +816,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -825,7 +830,6 @@ script:
then:
- lambda: 'id(is_ramping) = true;'
- script.stop: ramp_off_script
- output.turn_on: green_led_out
# Ensure we start at the floor cleanly.
- if:
condition:
@@ -868,7 +872,6 @@ script:
id(last_ramp_ms) = (int) (id(ramp_up_ms) * frac);
return (uint32_t) id(last_ramp_ms);
- delay: !lambda 'return (uint32_t) id(last_ramp_ms);'
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
const auto &cv = id(mosfet_leds).current_values;
@@ -886,7 +889,6 @@ script:
id(is_ramping) = true;
id(ramping_for_off) = true;
- script.stop: ramp_on_script
- output.turn_on: green_led_out
- light.turn_on:
id: mosfet_leds
brightness: !lambda 'return id(min_brightness_pct) / 100.0f;'
@@ -907,7 +909,6 @@ script:
id: mosfet_leds
transition_length: 150ms
- delay: 150ms
- output.turn_off: green_led_out
- lambda: |-
id(is_ramping) = false;
id(ramping_for_off) = false;
@@ -967,4 +968,4 @@ script:
- light.turn_off:
id: mosfet_leds
transition_length: 0s
- output.turn_off: green_led_out # make sure LED is off if no ramp
# (Removed: output.turn_off: green_led_out) # make sure LED is off if no ramp
File diff suppressed because it is too large Load Diff
+65 -25
View File
@@ -30,18 +30,20 @@ substitutions:
api_key: !secret esp-api_key # unfortunately you can't use substitutions inside secrets names
ota_pass: !secret esp-ota_pass # unfortunately you can't use substitutions inside secrets names
static_ip_address: !secret esp-loungesouthleftswitch_ip
#mqtt_local_command_main_topic: !secret mqtt_local_command_main_topic
#mqtt_local_status_main_topic: !secret mqtt_local_status_main_topic
mqtt_command_main_topic: !secret mqtt_command_main_topic
mqtt_status_main_topic: !secret mqtt_status_main_topic
# Device Settings
#relay_icon: "mdi:lightbulb-group"
log_level: "INFO" # Define logging level: NONE, ERROR, WARN, INFO, DEBUG (Default), VERBOSE, VERY_VERBOSE
update_interval: "60s" # update time for for general sensors etc
# MQTT LOCAL Controls
#mqtt_device_name: "bedroom2-lights"
#mqtt_local_command_topic: "${mqtt_local_command_main_topic}/${mqtt_device_name}" # Topic we will use to command this locally without HA
#mqtt_local_status_topic: "${mqtt_local_status_main_topic}/${mqtt_device_name}" # Topic we will use to view status locally without HA
# MQTT REMOTE Controls
mqtt_remote_device_name: "garage-corridor-lights"
mqtt_remote_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device_name}"
mqtt_remote_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device_name}"
mqtt_remote_device_command_ON: "ON"
mqtt_remote_device_command_OFF: "OFF"
# Switch Naming
switch_1_name: "Wall Washer Left"
@@ -98,10 +100,6 @@ esphome:
project:
name: "${project_name}"
version: "${project_version}"
#on_boot:
# priority: 200
# then:
# - switch.turn_on: Relay_2
#########################################################################################
# ESP Platform and Framework
@@ -122,6 +120,12 @@ logger:
#esp8266_store_log_strings_in_flash: false
#tx_buffer_size: 64
globals:
- id: relay2_change_origin_remote
type: bool
restore_value: no
initial_value: "false"
#########################################################################################
# STATUS LED
# https://esphome.io/components/status_led.html
@@ -154,15 +158,38 @@ binary_sensor:
on_press:
- switch.toggle: Relay_2
# KS-811-2 is a double only
# - platform: gpio
# pin:
# number: GPIO4
# mode: INPUT
# inverted: True
# name: "Button 3: ${switch_3_name}"
# on_press:
# - switch.toggle: Relay_3
text_sensor:
- platform: mqtt_subscribe
id: remote2_status
topic: "${mqtt_remote_status_topic}"
on_value:
then:
- if:
condition:
lambda: |-
return x == "${mqtt_remote_device_command_ON}";
then:
- if:
condition:
not:
switch.is_on: Relay_2
then:
- lambda: |-
id(relay2_change_origin_remote) = true;
- switch.turn_on: Relay_2
- if:
condition:
lambda: |-
return x == "${mqtt_remote_device_command_OFF}";
then:
- if:
condition:
switch.is_on: Relay_2
then:
- lambda: |-
id(relay2_change_origin_remote) = true;
- switch.turn_off: Relay_2
#########################################################################################
# SWITCH COMPONENT
@@ -178,11 +205,24 @@ switch:
name: "Relay 2: ${switch_2_name}"
pin: GPIO12
id: Relay_2
# KS-811-2 is a double only
# - platform: gpio
# name: "Relay 3: ${switch_3_name}"
# pin: GPIO14
# id: Relay_3
on_turn_on:
- if:
condition:
lambda: 'return !id(relay2_change_origin_remote);'
then:
- mqtt.publish:
topic: "${mqtt_remote_command_topic}"
payload: "${mqtt_remote_device_command_ON}"
- lambda: 'id(relay2_change_origin_remote) = false;'
on_turn_off:
- if:
condition:
lambda: 'return !id(relay2_change_origin_remote);'
then:
- mqtt.publish:
topic: "${mqtt_remote_command_topic}"
payload: "${mqtt_remote_device_command_OFF}"
- lambda: 'id(relay2_change_origin_remote) = false;'
+1 -1
View File
@@ -44,7 +44,7 @@ substitutions:
# MQTT REMOTE Controls
mqtt_remote_device1_name: "stair-footerlights"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}/set"
mqtt_remote_device1_command_topic: "${mqtt_command_main_topic}/${mqtt_remote_device1_name}"
#mqtt_remote_device1_status_topic: "${mqtt_status_main_topic}/${mqtt_remote_device1_name}/state"
mqtt_remote_device_command_ON: "ON"
mqtt_remote_device_command_OFF: "OFF"
+91 -69
View File
@@ -74,107 +74,120 @@ script:
#####################################################################
scene_settings:
Bright:
light.esp_lounge6chdimmer_couch_spots_left: 00
light.esp_lounge6chdimmer_couch_spots_right: 00
light.esp_lounge6chdimmer_couch_spots_left: 0
light.esp_lounge6chdimmer_couch_spots_right: 0
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 100 # Centre Downlights (x6, dimmable)
light.esp_lounge6chdimmer_lounge_downlights_south: 100 # South Downlights (x4, dimmable)
light.esp_lounge6chdimmer_lounge_rafter_buttons: 100 # Buttons in Rafters (x3, dimmable)
switch.esp_loungemiddleswitch_relay_3_downlights_north: "on" # North Downlights (x2 over stairs, non dimmable)
light.esp_lounge6chdimmer_lounge_downlights_centre: 100
light.esp_lounge6chdimmer_lounge_downlights_south: 100
light.esp_lounge6chdimmer_lounge_rafter_buttons: 100
switch.esp_loungemiddleswitch_relay_3_downlights_north: "on"
light.esp_breakfastbarleds_breakfast_bar_leds: 90
light.esp_loungecabinetleds2_lounge_cabinet_leds: 90
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 90
light.tasmo_h801_loungeled1_6180_a: 90
light.tasmo_h801_loungeled1_6180_b: 90
switch.lounge_cupboard_dual_usb_xus09_l2: on
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: on # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: on # Back wall wallwasher right
switch.tasmo_ks811t_0702_lounge_3c: on # North Downlights (x2 over stairs, non dimmable)
switch.esp_loungenorthswitch_relay_1_main_lights: on # Single switch to hallway relay output (Pelmet LEDs)
switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "on"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "on"
switch.tasmo_ks811t_0702_lounge_3c: "on"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 100
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 100
TV General:
light.esp_lounge6chdimmer_couch_spots_left: 60
light.esp_lounge6chdimmer_couch_spots_right: 60
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 60
light.esp_lounge6chdimmer_lounge_downlights_south: 60
light.esp_lounge6chdimmer_lounge_rafter_buttons: 40
light.esp_breakfastbarleds_breakfast_bar_leds: 60
light.esp_loungecabinetleds2_lounge_cabinet_leds: 60
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 60
switch.esp_loungemiddleswitch_relay_3_downlights_north: "off" # non-dimmable pair
switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "off"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "off"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 60
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 60
Movie:
#light.esp_lounge6chdimmer_couch_spots_left: 40
#light.esp_lounge6chdimmer_couch_spots_right: 40
light.esp_lounge6chdimmer_couch_spots_left: 20
light.esp_lounge6chdimmer_couch_spots_right: 20
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 20 # Centre Downlights (x6, dimmable)
light.esp_lounge6chdimmer_lounge_downlights_south: 20 # South Downlights (x4, dimmable)
light.esp_lounge6chdimmer_lounge_rafter_buttons: 20 # Buttons in Rafters (x3, dimmable)
light.esp_lounge6chdimmer_lounge_downlights_centre: 20
light.esp_lounge6chdimmer_lounge_downlights_south: 20
light.esp_lounge6chdimmer_lounge_rafter_buttons: 20
light.esp_breakfastbarleds_breakfast_bar_leds: 40
light.esp_loungecabinetleds2_lounge_cabinet_leds: 40
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 40
light.tasmo_h801_loungeled1_6180_a: 60
light.tasmo_h801_loungeled1_6180_b: 60
switch.esp_loungemiddleswitch_relay_3_downlights_north: off # North Downlights (x2 over stairs, non dimmable) switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: off # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: off # Back wall wallwasher right
switch.esp_loungenorthswitch_relay_1_main_lights: on # Single switch to hallway relay output (Pelmet LEDs)
Night Light:
#light.esp_lounge6chdimmer_couch_spots_left: 40
#light.esp_lounge6chdimmer_couch_spots_right: 40
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 5 # Centre Downlights (x6, dimmable)
#light.esp_lounge6chdimmer_lounge_downlights_south: 20 # South Downlights (x4, dimmable)
light.esp_lounge6chdimmer_lounge_rafter_buttons: 5 # Buttons in Rafters (x3, dimmable)
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: off # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: off # Back wall wallwasher right
switch.esp_loungemiddleswitch_relay_3_downlights_north: "off"
switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "off"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "off"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 40
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 40
Reading On/Off:
light.esp_lounge6chdimmer_couch_spots_left: toggle_75
light.esp_lounge6chdimmer_couch_spots_right: toggle_75
light.esp_lounge6chdimmer_couch_spots_left: "toggle_75"
light.esp_lounge6chdimmer_couch_spots_right: "toggle_75"
#light.esp_lounge6chdimmer_dining_table_light: 60
#light.esp_lounge6chdimmer_lounge_downlights_centre: 45
#light.esp_lounge6chdimmer_lounge_downlights_south: 35
#light.esp_lounge6chdimmer_lounge_rafter_buttons: 20
#switch.tasmo_ks811t_0702_lounge_3c: on
#switch.tasmo_ks811t_0702_lounge_3c: "on"
Night Light:
#light.esp_lounge6chdimmer_couch_spots_left: 20
#light.esp_lounge6chdimmer_couch_spots_right: 20
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 0
light.esp_lounge6chdimmer_lounge_downlights_south: 0
light.esp_lounge6chdimmer_lounge_rafter_buttons: 0
light.esp_breakfastbarleds_breakfast_bar_leds: 5
light.esp_loungecabinetleds2_lounge_cabinet_leds: 5
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 5
switch.esp_loungemiddleswitch_relay_3_downlights_north: "off"
switch.lounge_cupboard_dual_usb_xus09_l2: "off"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "off"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "off"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 5
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 5
Warm Cozy:
light.esp_lounge6chdimmer_couch_spots_left: 30
light.esp_lounge6chdimmer_couch_spots_right: 30
light.esp_lounge6chdimmer_couch_spots_left: 20
light.esp_lounge6chdimmer_couch_spots_right: 20
light.esp_lounge6chdimmer_lounge_rafter_buttons: 15
light.esp_breakfastbarleds_breakfast_bar_leds: 25
light.esp_loungecabinetleds2_lounge_cabinet_leds: 30
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 30
light.tasmo_h801_loungeled1_6180_a: 25
light.tasmo_h801_loungeled1_6180_b: 25
switch.lounge_cupboard_dual_usb_xus09_l2: on
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: on # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: on # Back wall wallwasher right
TV General:
light.esp_lounge6chdimmer_couch_spots_left: 50
light.esp_lounge6chdimmer_couch_spots_right: 50
#light.esp_lounge6chdimmer_dining_table_light: 100
light.esp_lounge6chdimmer_lounge_downlights_centre: 40 # Centre Downlights (x6, dimmable)
light.esp_lounge6chdimmer_lounge_downlights_south: 40 # South Downlights (x4, dimmable)
light.esp_lounge6chdimmer_lounge_rafter_buttons: 40 # Buttons in Rafters (x3, dimmable)
light.esp_breakfastbarleds_breakfast_bar_leds: 60
light.esp_loungecabinetleds2_lounge_cabinet_leds: 60
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 60
light.tasmo_h801_loungeled1_6180_a: 60
light.tasmo_h801_loungeled1_6180_b: 60
switch.esp_loungemiddleswitch_relay_3_downlights_north: off # North Downlights (x2 over stairs, non dimmable) switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: off # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: off # Back wall wallwasher right
switch.esp_loungenorthswitch_relay_1_main_lights: on # Single switch to hallway relay output (Pelmet LEDs)
switch.lounge_cupboard_dual_usb_xus09_l2: "on"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "on"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "on"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 20
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 20
All Off:
light.esp_lounge6chdimmer_couch_spots_left: 0
light.esp_lounge6chdimmer_couch_spots_right: 0
light.esp_lounge6chdimmer_dining_table_light: 0
light.esp_lounge6chdimmer_lounge_downlights_centre: 0 # Centre Downlights (x6, dimmable)
light.esp_lounge6chdimmer_lounge_downlights_south: 0 # South Downlights (x4, dimmable)
light.esp_lounge6chdimmer_lounge_rafter_buttons: 0 # Buttons in Rafters (x3, dimmable)
switch.esp_loungemiddleswitch_relay_3_downlights_north: "off" # North Downlights (x2 over stairs, non dimmable)
light.esp_lounge6chdimmer_lounge_downlights_centre: 0
light.esp_lounge6chdimmer_lounge_downlights_south: 0
light.esp_lounge6chdimmer_lounge_rafter_buttons: 0
switch.esp_loungemiddleswitch_relay_3_downlights_north: "off"
light.esp_breakfastbarleds_breakfast_bar_leds: 0
light.esp_loungecabinetleds2_lounge_cabinet_leds: 0
light.esp_loungebookshelfleds_lounge_bookshelf_leds: 0
light.tasmo_h801_loungeled1_6180_a: 0
light.tasmo_h801_loungeled1_6180_b: 0
switch.lounge_cupboard_dual_usb_xus09_l2: off
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: off # Back wall wallwasher Left
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: off # Back wall wallwasher right
switch.esp_loungenorthswitch_relay_1_main_lights: off # Single switch to hallway relay output (Pelmet LEDs)
switch.lounge_cupboard_dual_usb_xus09_l2: "off"
switch.esp_loungesouthleftswitch_relay_1_wall_washer_left: "off"
switch.esp_loungesouthrightswitch_relay_2_wall_washer_right: "off"
#switch.esp_loungenorthswitch_relay_1_main_lights: "on"
number.esp_loungepelmetleds2_lounge_pelmet_leds_a_output_set_0_100: 0
number.esp_loungepelmetleds2_lounge_pelmet_leds_b_output_set_0_100: 0
#####################################################################
#####################################################################
@@ -202,8 +215,17 @@ script:
is_toggle: "{{ (not is_num) and (vstr|lower).startswith('toggle') }}"
toggle_pct: "{{ (vstr.split('_')|last)|int if ('_' in vstr) else 100 }}"
currently_on: "{{ is_state(ent, 'on') }}"
is_number_ent: "{{ ent.startswith('number.') }}" # 🔹 NEW
- choose:
# 0) Numbers: set numeric value (e.g. 0..100)
- conditions: "{{ is_number_ent and is_num }}" # 🔹 NEW
sequence:
- service: number.set_value
data:
entity_id: "{{ ent }}"
value: "{{ val|float }}"
# 1) Lights: toggle[_NN] -> if on turn off, else turn on to NN (default 100)
- conditions: "{{ is_light and is_toggle }}"
sequence:
-370
View File
@@ -1,370 +0,0 @@
rest:
scan_interval: 5
resource_template: "http://192.168.2.31:7125/server/files/metadata?filename={{ states(('sensor.3d_printer_current_print')) | urlencode }}"
sensor:
- name: printer_3d_file_metadata
unique_id: "192.168.2.315ec44d90-419c-419c-802d-d34071639c08"
json_attributes_path: "$.result"
json_attributes:
- layer_height
- object_height
- thumbnails
value_template: "OK"
#camera:
# Loading generic IP camera via configuration.yaml is deprecated, it will be automatically imported. Once you have confirmed correct operation, please remove 'generic' (IP camera) section(s) from configuration.yaml
# Directions in the README.md for how to add the Thumbnail now.
# - platform: generic
# name: "3D Printer Thumbnail"
# still_image_url: http://192.168.2.31:7125/server/files/gcodes/{{ states("sensor.3d_printer_object_thumbnails") }}
# verify_ssl: false
# This no longer works broken in current builds https://www.home-assistant.io/blog/2022/05/04/release-20225/#breaking-changes -> MJPEG IP Camera
# Directions in the README.md for how to add the MJPEG IP Camera now.
# - platform: mjpeg
# name: "3D Printer Camera"
# still_image_url: http://192.168.2.31/webcam/?action=snapshot
# mjpeg_url: http://192.168.2.31/webcam/?action=stream
# verify_ssl: false
rest_command:
3d_printer_emergency_stop:
url: "http://192.168.2.31:7125/printer/emergency_stop"
method: post
3d_printer_firmware_restart:
url: "http://192.168.2.31:7125/printer/firmware_restart"
method: post
3d_printer_cancel:
url: "http://192.168.2.31:7125/printer/print/cancel"
method: post
3d_printer_pause:
url: "http://192.168.2.31:7125/printer/print/pause"
method: post
3d_printer_resume:
url: "http://192.168.2.31:7125/printer/print/resume"
method: post
sensor:
- platform: rest
name: printer_3d_sensor
unique_id: "192.168.2.313a0c25fa-297d-4c19-b03c-ddf04840682b"
resource: "http://192.168.2.31:7125/printer/objects/query?heater_bed&extruder&print_stats&toolhead&display_status&virtual_sdcard&gcode_move&filament_motion_sensor%20btt_smart_filament&temperature_sensor%20Chamber_Temp"
json_attributes_path: "$.result.status"
json_attributes:
- heater_bed
- extruder
- print_stats
- toolhead
- display_status
- virtual_sdcard
- gcode_move
- "filament_motion_sensor btt_smart_filament_sensor"
- "temperature_sensor Chamber_Temp"
value_template: "OK"
force_update: true
scan_interval: 1
- platform: rest
name: printer_3d_info
unique_id: "192.168.2.311cba6677-02bd-4273-9083-b8301bf6943b"
scan_interval: 1
resource_template: "http://192.168.2.31:7125/printer/info"
json_attributes_path: "$.result"
json_attributes:
- state_message
- state
value_template: "OK"
- platform: rest
name: printer_3d_server
unique_id: "192.168.2.311cba6677-02bd-4273-9083-b8301bf6949"
scan_interval: 1
resource_template: "http://192.168.2.31:7125/server/database/item?namespace=mainsail&key=general"
json_attributes_path: "$.result.value"
json_attributes:
- printername
value_template: "OK"
template:
- binary_sensor:
- name: 3d_printer_filament
unique_id: "192.168.2.315ce32fc9-5e95-49e7-80e7-bfdd2cf1d1fd"
device_class: motion
state: '{{ states.sensor.printer_3d_sensor.attributes["filament_switch_sensor Filament"]["filament_detected"] }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:printer-3d-nozzle-alert
attributes:
friendly_name: "Filament Detected"
- sensor:
- name: 3d_printer_printername
unique_id: "192.168.2.313a0f3144-a801-422f-adb6-e2ed35796074"
state: '{{ states.sensor.printer_3d_server.attributes["printername"]}}'
availability: >
{% set items = ['sensor.printer_3d_server'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:printer-3d
attributes:
friendly_name: "Printer Name"
- name: 3d_printer_chamber_temp
unique_id: "192.168.2.31167e5dec-719c-42d3-9560-4f177573f741"
state: '{{ states.sensor.printer_3d_sensor.attributes["temperature_sensor Chamber_Temp"]["temperature"] | float(0) | round(1) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "°C"
icon: mdi:thermometer
attributes:
friendly_name: "Chamber Actual"
- name: 3d_printer_hotend_target
unique_id: "192.168.2.31167e5dec-719c-42d3-9560-4f177573f740"
state: '{{ states.sensor.printer_3d_sensor.attributes["extruder"]["target"] | float(0) | round(1) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "°C"
icon: mdi:thermometer
attributes:
friendly_name: "Hotend Target"
- name: 3d_printer_hotend_actual
unique_id: "192.168.2.317c2593fb-a7dd-4ed7-a865-2e4dddddbb40"
state: '{{ states.sensor.printer_3d_sensor.attributes["extruder"]["temperature"] | float(0) | round(1) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "°C"
icon: mdi:thermometer
attributes:
friendly_name: "Hotend Actual"
- name: 3d_printer_hotend_power
unique_id: "192.168.2.31c57a1e35-92fa-403e-b3cf-ec1e97ef94cf"
state: '{{ states.sensor.printer_3d_sensor.attributes["extruder"]["power"] | float(0) | round(3) * 100}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "%"
icon: mdi:flash
attributes:
friendly_name: "Hotend Power"
- name: 3d_printer_bed_target
unique_id: "192.168.2.31eadec415-c281-4814-8fba-17c6c42670ec"
state: '{{ states.sensor.printer_3d_sensor.attributes["heater_bed"]["target"] | float(0) | round(1) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "°C"
icon: mdi:thermometer
attributes:
friendly_name: "Bed Target"
- name: 3d_printer_bed_actual
unique_id: "192.168.2.31cb33503c-c5d4-4e06-b79b-c1cd64ca2d7a"
state: '{{ states.sensor.printer_3d_sensor.attributes["heater_bed"]["temperature"] | float(0) | round(1) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "°C"
icon: mdi:thermometer
attributes:
friendly_name: "Bed Actual"
- name: 3d_printer_bed_power
unique_id: "192.168.2.31abb2fc5b-8173-4131-a942-fb11e30f4efa"
state: '{{ states.sensor.printer_3d_sensor.attributes["heater_bed"]["power"] | float(0) | round(3) * 100 }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "%"
icon: mdi:flash
attributes:
friendly_name: "Bed Power"
- name: 3d_printer_state
unique_id: "192.168.2.31758ce84c-3210-4f29-b6b3-38139180de96"
state: '{{ states.sensor.printer_3d_sensor.attributes["print_stats"]["state"] }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: >
{% set val = states.sensor.printer_3d_sensor.attributes["print_stats"]["state"] %}
{% if val == 'standby' %}
mdi:sleep
{% elif val == 'error' %}
mdi:alert-circle
{% elif val == 'printing' %}
mdi:printer-3d-nozzle
{% elif val == 'paused' %}
mdi:pause-circle
{% elif val == 'complete' %}
mdi:printer-3d
{% else %}
mdi:help-circle
{% endif %}
attributes:
friendly_name: "Printer State"
- name: 3d_printer_current_print
unique_id: "192.168.2.313a0f3144-a801-422f-adb6-e2ed35796072"
state: '{{ states.sensor.printer_3d_sensor.attributes["print_stats"]["filename"]}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:file
attributes:
friendly_name: "Current Print"
- name: 3d_printer_current_progress
unique_id: "192.168.2.318ec7163b-be00-4a10-8051-48cf9a260a29"
state: '{{ ((states.sensor.printer_3d_sensor.attributes["display_status"]["progress"])*100) | round(0, "floor") }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "%"
icon: mdi:progress-clock
attributes:
friendly_name: "Progress"
- name: 3d_printer_print_time
unique_id: "192.168.2.31e1ac0fac-e8ba-4e05-8fa0-c8d8076f9f63"
state: '{{ states.sensor.printer_3d_sensor.attributes["print_stats"]["print_duration"] |timestamp_custom("%H:%M:%S", 0)}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:camera-timer
attributes:
friendly_name: "Time Elapsed"
- name: 3d_printer_time_remaining
unique_id: "192.168.2.31e12c8def-5ebe-43a4-9f75-605a0c46fc0f"
state: '{{ (((states.sensor.printer_3d_sensor.attributes["print_stats"]["print_duration"]/states.sensor.printer_3d_sensor.attributes["display_status"]["progress"]- states.sensor.printer_3d_sensor.attributes["print_stats"]["print_duration"]) if states.sensor.printer_3d_sensor.attributes["display_status"]["progress"]>0 else 0)) | timestamp_custom("%H:%M:%S", 0)}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:timer-sand
attributes:
friendly_name: "Time Remaining"
- name: 3d_printer_eta
unique_id: "192.168.2.31a2b57068-9a32-4d2c-8cc9-57d2389a9082"
state: '{{ (as_timestamp(now())+((states.sensor.printer_3d_sensor.attributes["print_stats"]["print_duration"]/states.sensor.printer_3d_sensor.attributes["display_status"]["progress"]- states.sensor.printer_3d_sensor.attributes["print_stats"]["print_duration"]) if states.sensor.printer_3d_sensor.attributes["display_status"]["progress"]>0 else 0)) | timestamp_custom("%H:%M:%S", 1)}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:av-timer
attributes:
friendly_name: "ETA"
- name: 3d_printer_message
unique_id: "192.168.2.310c418c0d-e59e-4d4e-aa11-8fae53df58f8"
state: '{{ states.sensor.printer_3d_sensor.attributes["display_status"]["message"]}}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:message-cog
attributes:
friendly_name: "Message"
- name: 3d_printer_layer_height
unique_id: "192.168.2.316cca455d-c327-4567-b886-4d7f99714265"
state: '{{ states.sensor.printer_3d_file_metadata.attributes["layer_height"] | float(0) }}'
availability: >
{% set items = ['sensor.printer_3d_file_metadata'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "mm"
icon: mdi:arrow-collapse-down
attributes:
friendly_name: "Layer Height"
- name: 3d_printer_object_height
unique_id: "192.168.2.316d6d9dc0-9a02-4ce4-a797-c84b42e011a6"
state: '{{ (states.sensor.printer_3d_file_metadata.attributes["object_height"] | float(0)) - (states.sensor.printer_3d_file_metadata.attributes["layer_height"] | float(0)) }}'
availability: >
{% set items = ['sensor.printer_3d_file_metadata'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "mm"
icon: mdi:arrow-expand-vertical
attributes:
friendly_name: "Object Height"
- name: 3d_printer_current_height
unique_id: "192.168.2.31d440e568-d4d1-4b3f-85c4-fdacd68c0e1a"
state: '{{ states.sensor.printer_3d_sensor.attributes["gcode_move"]["gcode_position"][2] | float(0) | round(2) }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
unit_of_measurement: "mm"
icon: mdi:arrow-collapse-down
attributes:
friendly_name: "Current Height"
- name: 3d_printer_current_layer
unique_id: "192.168.2.316a77acc1-8134-4354-b2f6-390adab81993"
state: '{{ (states("sensor.3d_printer_current_height")|float(0) / states("sensor.3d_printer_layer_height")|float(0))|round(0) }}'
availability: >
{% set items = ['sensor.3d_printer_current_height','sensor.3d_printer_layer_height'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:counter
attributes:
friendly_name: "Current Layer"
- name: 3d_printer_total_layers
unique_id: "192.168.2.3153cfe906-28ec-44cd-926a-b08ffb8766e5"
state: '{{ (states("sensor.3d_printer_object_height")|float(0) / states("sensor.3d_printer_layer_height")|float(0))|round(0) }}'
availability: >
{% set items = ['sensor.3d_printer_object_height','sensor.3d_printer_layer_height'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:counter
attributes:
friendly_name: "Total Layer"
- name: 3d_printer_actual_layer
unique_id: "192.168.2.31167e5dec-719c-42d3-9560-4f177573f742"
state: '{{ states.sensor.printer_3d_sensor.attributes.print_stats["info"]["current_layer"] }} / {{ states.sensor.printer_3d_sensor.attributes.print_stats["info"]["total_layer"] }}'
availability: >
{% set items = ['sensor.printer_3d_sensor'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:layers-triple
attributes:
friendly_name: "Actual Layer"
- name: 3d_printer_object_thumbnails
unique_id: "192.168.2.3159b37837-b751-4d31-98c2-516a52edf833"
state: >
{% set dir = states('sensor.3d_printer_current_print') %}
{% set thumb = state_attr('sensor.printer_3d_file_metadata','thumbnails') %}
{% set img = (thumb | last).relative_path if thumb else 'not available' %}
{{ (dir.split('/')[:-1] + [img]) | join('/') }}
availability: >
{% set items = ['sensor.printer_3d_file_metadata'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:image
attributes:
friendly_name: "Object Thumbnails"
- name: 3d_printer_state_message
unique_id: "192.168.2.319a5184c9-ac5b-44a9-a691-2b67c243d197"
state: '{{ states.sensor.printer_3d_info.attributes["state_message"] }}'
availability: >
{% set items = ['sensor.printer_3d_info'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:message-cog
attributes:
friendly_name: "State Message"
- name: 3d_printer_heaters_power
unique_id: "192.168.2.313988e9be-c910-4634-8205-38d53170d5a5"
state: '{{ states("sensor.3d_printer_bed_power")|float(0) | round(1) }}% / {{ states("sensor.3d_printer_hotend_power")|float(0) | round(1) }}%'
availability: >
{% set items = ['sensor.3d_printer_bed_power','sensor.3d_printer_hotend_power'] %}
{{ expand(items)|rejectattr('state','in',['unknown','unavailable'])
|list|count == items|count }}
icon: mdi:meter-electric-outline
attributes:
friendly_name: "Bed and Nozzle Power"
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###############################################################################
# PACKAGE: OpenHASP Thermostat (MQTT-only, all BUTTON objects)
# NODE/TOPIC ROOT: hasp/openhasp_1/
###############################################################################
input_number:
lounge_setpoint:
name: Lounge Setpoint
min: 10
max: 30
step: 0.5
mode: box
unit_of_measurement: "C"
###############################################################################
# AUTOMATIONS
###############################################################################
automation:
# --- PUSH LABEL TEXTS (on buttons) ----------------------------------------
- id: hasp_temp_to_btn_text
alias: "HASP: update temp (p1b1.text)"
mode: queued
trigger:
- platform: state
entity_id: sensor.lounge_inside_temperature
action:
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b1.text"
payload: "{{ states('sensor.lounge_inside_temperature')|float(0)|round(1) }} C"
- id: hasp_setpoint_to_btn_text
alias: "HASP: update setpoint (p1b2.text)"
mode: queued
trigger:
- platform: state
entity_id: input_number.lounge_setpoint
action:
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b2.text"
payload: "Set: {{ states('input_number.lounge_setpoint')|float(0)|round(1) }} C"
- id: hasp_heater_status_to_btn_text
alias: "HASP: update heater status (p1b5.text)"
mode: queued
trigger:
- platform: state
entity_id: switch.lounge_heater
action:
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b5.text"
payload: >
{% if is_state('sensor.gas_heater_operating','ON') %}
HEAT ON
{% else %}
HEAT OFF
{% endif %}
# --- BUTTON HANDLING FROM THE PLATE (listens on /state/) ------------------
- id: hasp_btn_up_increment
alias: "HASP: p1b3 up -> increment setpoint"
mode: queued
trigger:
- platform: mqtt
topic: "hasp/openhasp_1/state/p1b4"
condition:
- condition: template
value_template: "{{ trigger.payload_json.event|default('') == 'up' }}"
action:
- service: input_number.increment
target:
entity_id: input_number.lounge_setpoint
- id: hasp_btn_down_decrement
alias: "HASP: p1b4 up -> decrement setpoint"
mode: queued
trigger:
- platform: mqtt
topic: "hasp/openhasp_1/state/p1b3"
condition:
- condition: template
value_template: "{{ trigger.payload_json.event|default('') == 'up' }}"
action:
- service: input_number.decrement
target:
entity_id: input_number.lounge_setpoint
# --- PUSH INITIAL VALUES ON HA START / PANEL ONLINE -----------------------
- id: hasp_push_on_ha_start
alias: "HASP: push texts on HA start"
trigger:
- platform: homeassistant
event: start
action:
- service: script.hasp_push_all_texts
- id: hasp_push_on_plate_birth
alias: "HASP: push texts on panel birth"
trigger:
- platform: mqtt
topic: "hasp/openhasp_1/state"
action:
- service: script.hasp_push_all_texts
###############################################################################
# SCRIPT: Push all texts to buttons
###############################################################################
script:
hasp_push_all_texts:
alias: "HASP: push all texts"
mode: queued
sequence:
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b1.text"
payload: "{{ states('sensor.lounge_inside_temperature')|float(0)|round(1) }} C"
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b2.text"
payload: "Set: {{ states('input_number.lounge_setpoint')|float(0)|round(1) }} C"
- service: mqtt.publish
data:
topic: "hasp/openhasp_1/command/p1b5.text"
payload: >
{% if is_state('sensor.gas_heater_operating','ON') %}
HEAT ON
{% else %}
HEAT OFF
{% endif %}