867 lines
25 KiB
YAML
867 lines
25 KiB
YAML
---
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###############################################################################
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# SuperSensor v1.0 ESPHome configuration
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###############################################################################
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#
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# Copyright (C) 2023 Joshua M. Boniface <joshua@boniface.me>
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, version 3.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <https://www.gnu.org/licenses/>.
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#
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###############################################################################
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esphome:
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name: supersensor
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name_add_mac_suffix: true
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friendly_name: "Supersensor"
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project:
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name: joshuaboniface.supersensor
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version: "0.1"
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on_boot:
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- priority: 600
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then:
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- lambda: |-
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id(supersensor_occupancy).publish_state(false);
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id(pir_presence).publish_state(false);
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id(light_presence).publish_state(false);
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- light.turn_on:
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id: output_led
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effect: flash_white
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dashboard_import:
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package_import_url: github://joshuaboniface/supersensor/supersensor.yaml
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import_full_config: false
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esp32:
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board: esp32dev
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globals:
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- id: pir_hold_time
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type: int
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restore_value: yes
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initial_value: "15"
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- id: light_presence_threshold
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type: int
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restore_value: yes
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initial_value: "30"
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- id: occupancy_detect_mode
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type: int
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restore_value: yes
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initial_value: "0"
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- id: occupancy_clear_mode
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type: int
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restore_value: yes
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initial_value: "0"
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script:
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- id: pir_handler
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then:
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- lambda: |-
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id(pir_presence).publish_state(true);
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- while:
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condition:
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binary_sensor.is_on: pir_gpio
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then:
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- delay: !lambda 'return(id(pir_hold_time) * 1000);'
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- lambda: |-
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id(pir_presence).publish_state(false);
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- id: light_handler
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then:
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- lambda: |-
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if (id(tsl2591_lux).state >= id(light_presence_threshold)) {
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id(light_presence).publish_state(true);
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} else {
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id(light_presence).publish_state(false);
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}
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- id: occupancy_detect_handler
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then:
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- lambda: |-
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ESP_LOGD("occupancy_detect_handler", "Occupancy detect handler triggered");
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// Get the current values of our presence sensors
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bool pir = id(pir_presence).state;
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bool radar = id(radar_presence).state;
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bool light = id(light_presence).state;
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// Determine if PIR counts (2nd bit of presence_type)
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int pir_counts = (id(occupancy_detect_mode) & ( 1 << 2 )) >> 2;
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// Determine if Radar counts (1st bit of presence_type)
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int radar_counts = (id(occupancy_detect_mode) & ( 1 << 1 )) >> 1;
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// Determine if Light counts (0th bit of presence_type)
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int light_counts = (id(occupancy_detect_mode) & ( 1 << 0 )) >> 0;
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// Determine our results
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if (pir_counts & radar_counts & light_counts) {
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// Logical AND of pir & radar & light
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ESP_LOGD("occupancy_detect_handler", "PIR & Radar & Light: %i", pir & radar & light);
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id(supersensor_occupancy).publish_state(pir & radar & light);
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} else if (pir_counts & radar_counts) {
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// Logical AND of pir & radar
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ESP_LOGD("occupancy_detect_handler", "PIR & Radar: %i", pir & radar);
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id(supersensor_occupancy).publish_state(pir & radar);
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} else if (pir_counts & light_counts) {
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// Logical AND of pir & light
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ESP_LOGD("occupancy_detect_handler", "PIR & Light: %i", pir & light);
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id(supersensor_occupancy).publish_state(pir & light);
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} else if (radar_counts & light_counts) {
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// Logical AND of radar & light
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ESP_LOGD("occupancy_detect_handler", "Radar & Light: %i", radar & light);
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id(supersensor_occupancy).publish_state(radar & light);
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} else if (pir_counts) {
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// Only pir
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ESP_LOGD("occupancy_detect_handler", "PIR: %i", pir);
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id(supersensor_occupancy).publish_state(pir);
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} else if (radar_counts) {
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// Only radar
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ESP_LOGD("occupancy_detect_handler", "Radar: %i", radar);
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id(supersensor_occupancy).publish_state(radar);
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} else if (light_counts) {
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// Only light
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ESP_LOGD("occupancy_detect_handler", "Light: %i", light);
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id(supersensor_occupancy).publish_state(light);
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} else {
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ESP_LOGD("occupancy_detect_handler", "None");
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id(supersensor_occupancy).publish_state(false);
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}
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- id: occupancy_clear_handler
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then:
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- lambda: |-
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ESP_LOGD("occupancy_clear_handler", "Occupancy clear handler triggered");
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// Get the current values of our presence sensors
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bool pir = id(pir_presence).state;
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bool radar = id(radar_presence).state;
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bool light = id(light_presence).state;
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// Determine if PIR counts (2nd bit of presence_type)
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int pir_counts = (id(occupancy_clear_mode) & ( 1 << 2 )) >> 2;
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// Determine if Radar counts (1st bit of presence_type)
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int radar_counts = (id(occupancy_clear_mode) & ( 1 << 1 )) >> 1;
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// Determine if Light counts (0th bit of presence_type)
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int light_counts = (id(occupancy_clear_mode) & ( 1 << 0 )) >> 0;
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// Determine our results
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if (pir_counts & radar_counts & light_counts) {
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// Logical AND of pir & radar & light
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ESP_LOGD("occupancy_clear_handler", "PIR & Radar & Light: %i", pir & radar & light);
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id(supersensor_occupancy).publish_state(pir & radar & light);
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} else if (pir_counts & radar_counts) {
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// Logical AND of pir & radar
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ESP_LOGD("occupancy_clear_handler", "PIR & Radar: %i", pir & radar);
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id(supersensor_occupancy).publish_state(pir & radar);
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} else if (pir_counts & light_counts) {
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// Logical AND of pir & light
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ESP_LOGD("occupancy_clear_handler", "PIR & Light: %i", pir & light);
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id(supersensor_occupancy).publish_state(pir & light);
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} else if (radar_counts & light_counts) {
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// Logical AND of radar & light
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ESP_LOGD("occupancy_clear_handler", "Radar & Light: %i", radar & light);
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id(supersensor_occupancy).publish_state(radar & light);
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} else if (pir_counts) {
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// Only pir
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ESP_LOGD("occupancy_clear_handler", "PIR: %i", pir);
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id(supersensor_occupancy).publish_state(pir);
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} else if (radar_counts) {
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// Only radar
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ESP_LOGD("occupancy_clear_handler", "Radar: %i", radar);
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id(supersensor_occupancy).publish_state(radar);
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} else if (light_counts) {
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// Only light
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ESP_LOGD("occupancy_clear_handler", "Light: %i", light);
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id(supersensor_occupancy).publish_state(light);
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} else {
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ESP_LOGD("occupancy_clear_handler", "None");
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id(supersensor_occupancy).publish_state(false);
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}
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logger:
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level: DEBUG
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baud_rate: 115200
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api:
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encryption:
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key: !secret api_encryption_key
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on_client_disconnected:
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- light.turn_on:
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id: output_led
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effect: flash_white
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- switch.turn_off: use_wake_word
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on_client_connected:
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# This absolute absurdity is required to prevent
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# "no wake word detected" failure loops.
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- switch.turn_on: use_wake_word
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- delay: 2s
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- switch.turn_off: use_wake_word
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- delay: 2s
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- switch.turn_on: use_wake_word
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- delay: 2s
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- light.turn_off:
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id: output_led
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ota:
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password: !secret ota_password
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safe_mode: false
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web_server:
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port: 80
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auth:
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username: !secret web_auth_username
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password: !secret web_auth_password
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wifi:
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ssid: !secret wifi_ssid
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password: !secret wifi_password
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domain: !secret wifi_domain
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power_save_mode: LIGHT
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reboot_timeout: 5min
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uart:
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id: ld2410_uart
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rx_pin: GPIO19
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tx_pin: GPIO18
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baud_rate: 256000
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data_bits: 8
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stop_bits: 1
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parity: NONE
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i2c:
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sda: GPIO16
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scl: GPIO17
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scan: true
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i2s_audio:
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i2s_lrclk_pin: GPIO26
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i2s_bclk_pin: GPIO27
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microphone:
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- platform: i2s_audio
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id: mic
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adc_type: external
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i2s_din_pin: GPIO14
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pdm: false
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voice_assistant:
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microphone: mic
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use_wake_word: false
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noise_suppression_level: 2
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auto_gain: 31dBFS
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volume_multiplier: 4.0
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id: assist
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on_error:
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- light.turn_off:
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id: output_led
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transition_length: 1s
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- logger.log: "Voice Assistant encountered an error; restarting it"
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- switch.turn_off: use_wake_word
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- delay: 1s
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- switch.turn_on: use_wake_word
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on_wake_word_detected:
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- light.turn_off:
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id: output_led
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- light.turn_on:
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id: output_led
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red: 0
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green: 0
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blue: 1
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on_listening:
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- light.turn_on:
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id: output_led
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red: 0
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green: 0
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blue: 1
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on_stt_end:
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- light.turn_off:
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id: output_led
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transition_length: 1s
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on_tts_start:
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- light.turn_off:
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id: output_led
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transition_length: 1s
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- if:
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condition:
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lambda: return x != "Sorry, I couldn't understand that";
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then:
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- logger.log: "Command successful!"
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- light.turn_on:
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id: output_led
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effect: hold
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red: 0
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green: 1
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blue: 0
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else:
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- logger.log: "Command failed!"
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- light.turn_on:
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id: output_led
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effect: hold
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red: 1
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green: 0
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blue: 0
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light:
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- platform: rgb
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id: output_led
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red: rgb_r
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green: rgb_g
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blue: rgb_b
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default_transition_length: 0.15s
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flash_transition_length: 0.15s
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effects:
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- strobe:
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name: flash_white
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colors:
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- state: true
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brightness: 50%
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red: 100%
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green: 100%
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blue: 100%
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duration: 0.5s
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- state: false
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duration: 0.5s
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- automation:
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name: hold
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sequence:
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- delay: 5s
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- light.turn_off:
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id: output_led
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transition_length: 1s
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output:
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- platform: ledc
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id: rgb_r
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pin: GPIO32
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- platform: ledc
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id: rgb_g
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pin: GPIO33
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- platform: ledc
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id: rgb_b
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pin: GPIO25
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bme680_bsec:
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address: 0x77
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id: bme680_sensor
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sample_rate: lp
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state_save_interval: 1h
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iaq_mode: static
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ld2410:
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id: ld2410_radar
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uart_id: ld2410_uart
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# These default values are captured here for
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# posterity. They are configured below.
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# max_move_distance : 6m
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# max_still_distance: 0.75m
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# g0_move_threshold: 10
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# g0_still_threshold: 20
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# g1_move_threshold: 10
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# g1_still_threshold: 20
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# g2_move_threshold: 20
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# g2_still_threshold: 21
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# g3_move_threshold: 30
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# g3_still_threshold: 31
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# g4_move_threshold: 40
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# g4_still_threshold: 41
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# g5_move_threshold: 50
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# g5_still_threshold: 51
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# g6_move_threshold: 60
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# g6_still_threshold: 61
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# g7_move_threshold: 70
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# g7_still_threshold: 71
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# g8_move_threshold: 80
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# g8_still_threshold: 81
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binary_sensor:
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- platform: template
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name: "SuperSensor Occupancy"
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id: supersensor_occupancy
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device_class: occupancy
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- platform: gpio
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name: "PIR GPIO"
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id: pir_gpio
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pin: GPIO13
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internal: false
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device_class: motion
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on_press:
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- script.stop: pir_handler
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- script.execute: pir_handler
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- platform: template
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name: "PIR Presence"
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id: pir_presence
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device_class: motion
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on_press:
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- script.execute: occupancy_detect_handler
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on_release:
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- script.execute: occupancy_clear_handler
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- platform: template
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name: "Light Presence"
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id: light_presence
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device_class: motion
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on_press:
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- script.execute: occupancy_detect_handler
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on_release:
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- script.execute: occupancy_clear_handler
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- platform: ld2410
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ld2410_id: ld2410_radar
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has_target:
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name: "LD2410C Presence"
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id: radar_presence
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device_class: motion
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on_press:
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- script.execute: occupancy_detect_handler
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on_release:
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- script.execute: occupancy_clear_handler
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has_moving_target:
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name: "LD2410C Moving Target"
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has_still_target:
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name: "LD2410C Still Target"
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sensor:
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- platform: bme680_bsec
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bme680_bsec_id: bme680_sensor
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temperature:
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name: "BME680 Temperature"
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id: bme680_temperature
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pressure:
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name: "BME680 Pressure"
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id: bme680_pressure
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humidity:
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name: "BME680 Relative Humidity"
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id: bme680_humidity
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iaq:
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name: "BME680 IAQ"
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id: bme680_iaq
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co2_equivalent:
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name: "BME680 CO2 Equivalent"
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breath_voc_equivalent:
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name: "BME680 Breath VOC Equivalent"
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gas_resistance:
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name: "BME680 Gas Resistance"
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id: bme680_gas_resistance
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internal: yes
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- platform: absolute_humidity
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name: "BME680 Absolute Humidity"
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temperature: bme680_temperature
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humidity: bme680_humidity
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- platform: tsl2591
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address: 0x29
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update_interval: 1s
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integration_time: 200ms
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power_save_mode: no
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gain: auto
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device_factor: 53
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glass_attenuation_factor: 7.7
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visible:
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name: "TSL2591 Raw Visible"
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infrared:
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name: "TSL2591 Raw Infrared"
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full_spectrum:
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name: "TSL2591 Raw Full Spectrum"
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calculated_lux:
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id: tsl2591_lux
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name: "TSL2591 Illumination"
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unit_of_measurement: Lux
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on_value:
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- script.execute: light_handler
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actual_gain:
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id: "actual_gain"
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name: "TSL2591 Gain"
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- platform: ld2410
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ld2410_id: ld2410_radar
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moving_distance:
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name: "LD2410C Moving Distance"
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id: moving_distance
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icon: mdi:signal-distance-variant
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still_distance:
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name: "LD2410C Still Distance"
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id: still_distance
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icon: mdi:signal-distance-variant
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moving_energy:
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name: "LD2410C Move Energy"
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icon: mdi:flash
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still_energy:
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name: "LD2410C Still Energy"
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icon: mdi:flash
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detection_distance:
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name: "LD2410C Presence Distance"
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icon: mdi:signal-distance-variant
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- platform: uptime
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name: "ESP32 Uptime"
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icon: mdi:clock-alert
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update_interval: 5s
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entity_category: diagnostic
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- platform: wifi_signal
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name: "WiFi RSSI"
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icon: mdi:wifi-strength-2
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update_interval: 5s
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entity_category: diagnostic
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- platform: internal_temperature
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name: "ESP32 Temperature"
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icon: mdi:thermometer
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unit_of_measurement: °C
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device_class: TEMPERATURE
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update_interval: 5s
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entity_category: diagnostic
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- platform: template
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name: "ESP32 CPU Frequency"
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icon: mdi:cpu-32-bit
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accuracy_decimals: 1
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unit_of_measurement: MHz
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|
update_interval: 5s
|
|
lambda: |-
|
|
return ets_get_cpu_frequency();
|
|
entity_category: diagnostic
|
|
|
|
- platform: template
|
|
name: "ESP32 Free Memory"
|
|
icon: mdi:memory
|
|
unit_of_measurement: 'kB'
|
|
state_class: measurement
|
|
update_interval: 5s
|
|
lambda: |-
|
|
return heap_caps_get_free_size(MALLOC_CAP_INTERNAL) / 1024;
|
|
entity_category: diagnostic
|
|
|
|
text_sensor:
|
|
- platform: bme680_bsec
|
|
bme680_bsec_id: bme680_sensor
|
|
iaq_accuracy:
|
|
name: "BME680 IAQ Accuracy"
|
|
|
|
- platform: template
|
|
name: "BME680 IAQ Classification"
|
|
icon: "mdi:air-filter"
|
|
update_interval: 15s
|
|
lambda: |-
|
|
int iaq = int(id(bme680_iaq).state);
|
|
if (iaq <= 50) {
|
|
return {"Excellent (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 100) {
|
|
return {"Good (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 150) {
|
|
return {"Fair (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 200) {
|
|
return {"Moderate (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 250) {
|
|
return {"Bad (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 350) {
|
|
return {"Very Bad (" + to_string(iaq) + ")"};
|
|
}
|
|
else if (iaq <= 500) {
|
|
return {"Terrible (" + to_string(iaq) + ")"};
|
|
}
|
|
else {
|
|
return {"Unknown (" + to_string(iaq) + ")"};
|
|
}
|
|
|
|
- platform: wifi_info
|
|
ip_address:
|
|
name: "WiFi IP Address"
|
|
ssid:
|
|
name: "WiFi SSID"
|
|
bssid:
|
|
name: "WiFi BSSID"
|
|
mac_address:
|
|
name: "WiFi MAC Address"
|
|
|
|
- platform: ld2410
|
|
version:
|
|
name: "LD2410C Firmware Version"
|
|
mac_address:
|
|
name: "LD2410C MAC Address"
|
|
|
|
button:
|
|
- platform: ld2410
|
|
restart:
|
|
name: "LD2410C Restart"
|
|
icon: mdi:power-cycle
|
|
entity_category: diagnostic
|
|
factory_reset:
|
|
name: "LD2410C Factory Reset"
|
|
entity_category: diagnostic
|
|
|
|
- platform: restart
|
|
name: "ESP32 Restart"
|
|
icon: mdi:power-cycle
|
|
entity_category: diagnostic
|
|
|
|
switch:
|
|
- platform: template
|
|
name: "Enable Wake Word"
|
|
icon: mdi:account-voice
|
|
id: use_wake_word
|
|
optimistic: true
|
|
restore_mode: ALWAYS_OFF
|
|
entity_category: config
|
|
on_turn_on:
|
|
- lambda: id(assist).set_use_wake_word(true);
|
|
- if:
|
|
condition:
|
|
not:
|
|
- voice_assistant.is_running
|
|
then:
|
|
- voice_assistant.start_continuous
|
|
on_turn_off:
|
|
- voice_assistant.stop
|
|
- lambda: id(assist).set_use_wake_word(false);
|
|
|
|
- platform: ld2410
|
|
engineering_mode:
|
|
name: "LD2410C Engineering Mode"
|
|
entity_category: diagnostic
|
|
bluetooth:
|
|
name: "LD2410C Bluetooth"
|
|
entity_category: diagnostic
|
|
|
|
number:
|
|
# PIR Hold Time:
|
|
# The number of seconds after motion detection for the PIR sensor to remain held on
|
|
- platform: template
|
|
name: "PIR Hold Time"
|
|
id: pir_hold_time_setter
|
|
min_value: 0
|
|
max_value: 60
|
|
step: 5
|
|
lambda: |-
|
|
return id(pir_hold_time);
|
|
set_action:
|
|
then:
|
|
- globals.set:
|
|
id: pir_hold_time
|
|
value: !lambda 'return int(x);'
|
|
|
|
# Light Presence Threshold
|
|
# The minimum Lux value to consider presence based on the ambient light level
|
|
- platform: template
|
|
name: "Light Presence Threshold"
|
|
id: light_presence_threshold_setter
|
|
min_value: 0
|
|
max_value: 200
|
|
step: 5
|
|
lambda: |-
|
|
return id(light_presence_threshold);
|
|
set_action:
|
|
then:
|
|
- globals.set:
|
|
id: light_presence_threshold
|
|
value: !lambda 'return int(x);'
|
|
|
|
- platform: ld2410
|
|
timeout:
|
|
name: "LD2410C Timeout"
|
|
light_threshold:
|
|
name: "LD2410C Light Threshold"
|
|
max_move_distance_gate:
|
|
name: "LD2410C Max Move Distance Gate"
|
|
max_still_distance_gate:
|
|
name: "LD2410C Max Still Distance Gate"
|
|
g0:
|
|
move_threshold:
|
|
name: "LD2410C Gate0 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate0 Still Threshold"
|
|
g1:
|
|
move_threshold:
|
|
name: "LD2410C Gate1 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate1 Still Threshold"
|
|
g2:
|
|
move_threshold:
|
|
name: "LD2410C Gate2 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate2 Still Threshold"
|
|
g3:
|
|
move_threshold:
|
|
name: "LD2410C Gate3 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate3 Still Threshold"
|
|
g4:
|
|
move_threshold:
|
|
name: "LD2410C Gate4 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate4 Still Threshold"
|
|
g5:
|
|
move_threshold:
|
|
name: "LD2410C Gate5 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate5 Still Threshold"
|
|
g6:
|
|
move_threshold:
|
|
name: "LD2410C Gate6 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate6 Still Threshold"
|
|
g7:
|
|
move_threshold:
|
|
name: "LD2410C Gate7 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate7 Still Threshold"
|
|
g8:
|
|
move_threshold:
|
|
name: "LD2410C Gate8 Move Threshold"
|
|
still_threshold:
|
|
name: "LD2410C Gate8 Still Threshold"
|
|
|
|
select:
|
|
|
|
# Occupancy Detect Mode:
|
|
# This selector defines the detection mode for the integrated occupancy sensor. Depending on the
|
|
# selected option, only the given sensor(s) will be used to judge when occupancy begins (i.e.
|
|
# when the given sensor(s) detect, occupancy detects).
|
|
# * PIR + Radar + Light:
|
|
# All 3 sensors reporting detection simultaneously will begin occupancy
|
|
# * PIR + Radar
|
|
# Both PIR and Radar sensors reporting detection simultaneously will begin occupancy
|
|
# * PIR + Light
|
|
# Both PIR and Light sensors reporting detection simultaneously will begin occupancy
|
|
# * Radar + Light
|
|
# Both Radar and Light sensors reporting detection simultaneously will begin occupancy
|
|
# * PIR Only
|
|
# PIR sensor reporting detection will begin occupancy
|
|
# * Radar Only
|
|
# Radar sensor reporting detection will begin occupancy
|
|
# * Light Only
|
|
# Light sensor reporting detection will begin occupancy
|
|
# * None
|
|
# No sensors will begin occupancy and the integrated occupancy functionality is disabled
|
|
# Values are reported as integers using bitwise logic:
|
|
# Bit 2: PIR
|
|
# Bit 1: Radar
|
|
# Bit 0: Light
|
|
- platform: template
|
|
name: "Occupancy Detect Mode"
|
|
id: occupancy_detect_mode_setter
|
|
options:
|
|
- "PIR + Radar + Light" # 111 = 7
|
|
- "PIR + Radar" # 110 = 6
|
|
- "PIR + Light" # 101 = 5
|
|
- "Radar + Light" # 011 = 3
|
|
- "PIR Only" # 100 = 4
|
|
- "Radar Only" # 010 = 2
|
|
- "Light Only" # 001 = 1
|
|
- "None" # 000 = 0
|
|
initial_option: "None"
|
|
optimistic: yes
|
|
restore_value: yes
|
|
set_action:
|
|
- globals.set:
|
|
id: occupancy_detect_mode
|
|
value: !lambda |-
|
|
ESP_LOGD("occupancy_detect_mode_setter", x.c_str());
|
|
if (x == "PIR + Radar + Light") {
|
|
return 7;
|
|
} else if (x == "PIR + Radar") {
|
|
return 6;
|
|
} else if (x == "PIR + Light") {
|
|
return 5;
|
|
} else if (x == "Radar + Light") {
|
|
return 3;
|
|
} else if (x == "PIR Only") {
|
|
return 4;
|
|
} else if (x == "Radar Only") {
|
|
return 2;
|
|
} else if (x == "Light Only") {
|
|
return 1;
|
|
} else {
|
|
return 0;
|
|
}
|
|
|
|
# Occupancy Clear Mode:
|
|
# This selector defines the clear mode for the integrated occupancy sensor. Depending on the
|
|
# selected option, only the given sensor(s) will be used to judge when occupancy ends (i.e.
|
|
# when the given sensor(s) clear, occupancy clears).
|
|
# * PIR + Radar + Light:
|
|
# Any of the 3 sensors clearing will end occupancy
|
|
# * PIR + Radar:
|
|
# Either of the PIR or Radar sensors clearing will end occupancy
|
|
# * PIR + Light:
|
|
# Either of the PIR or Light sensors clearing will end occupancy
|
|
# * Radar + Light:
|
|
# Either of the Radar or Light sensors clearing will end occupancy
|
|
# * PIR Only
|
|
# PIR sensor clearing will end occupancy
|
|
# * Radar Only
|
|
# Radar sensor clearing will end occupancy
|
|
# * Light Only
|
|
# Light sensor clearing will end occupancy
|
|
# * None
|
|
# No sensors will end occupancy; state will persist indefinitely once triggered
|
|
# Values are reported as integers using bitwise logic:
|
|
# Bit 0: PIR
|
|
# Bit 1: Radar
|
|
# Bit 2: Light
|
|
- platform: template
|
|
name: "Occupancy Clear Mode"
|
|
id: occupancy_clear_mode_setter
|
|
options:
|
|
- "PIR + Radar + Light" # 111 = 7
|
|
- "PIR + Radar" # 110 = 6
|
|
- "PIR + Light" # 101 = 5
|
|
- "Radar + Light" # 011 = 3
|
|
- "PIR Only" # 100 = 4
|
|
- "Radar Only" # 010 = 2
|
|
- "Light Only" # 001 = 1
|
|
- "None" # 000 = 0
|
|
initial_option: "None"
|
|
optimistic: yes
|
|
restore_value: yes
|
|
set_action:
|
|
- globals.set:
|
|
id: occupancy_clear_mode
|
|
value: !lambda |-
|
|
ESP_LOGD("occupancy_detect_mode_setter", x.c_str());
|
|
if (x == "PIR + Radar + Light") {
|
|
return 7;
|
|
} else if (x == "PIR + Radar") {
|
|
return 6;
|
|
} else if (x == "PIR + Light") {
|
|
return 5;
|
|
} else if (x == "Radar + Light") {
|
|
return 3;
|
|
} else if (x == "PIR Only") {
|
|
return 4;
|
|
} else if (x == "Radar Only") {
|
|
return 2;
|
|
} else if (x == "Light Only") {
|
|
return 1;
|
|
} else {
|
|
return 0;
|
|
}
|
|
|
|
- platform: ld2410
|
|
distance_resolution:
|
|
name: "LD2410C Distance Resolution"
|