Edit esp-bedside-panel.yaml

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ESPHome Device Builder
2026-07-20 12:30:38 +12:00
parent f07cd6d0c4
commit fd2fe422d0
+76 -46
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@@ -6,6 +6,7 @@
# https://home.fox.co.nz/gitea/zorruno/zorruno-homeassistant/src/branch/master/esphome/esp-bedside-panel.yaml # https://home.fox.co.nz/gitea/zorruno/zorruno-homeassistant/src/branch/master/esphome/esp-bedside-panel.yaml
#:########################################################################################:# #:########################################################################################:#
# VERSIONS: # VERSIONS:
# V1.42 2026-07-20 Changed tests to higher single-tone sounds and added a useful perceptual volume curve
# V1.41 2026-07-20 Fixed raw alarm audio startup and buffering so tones play instead of amplifier clicks # V1.41 2026-07-20 Fixed raw alarm audio startup and buffering so tones play instead of amplifier clicks
# V1.40 2026-07-20 Added ES8311 speaker output, persistent alarm volume and local speaker test controls # V1.40 2026-07-20 Added ES8311 speaker output, persistent alarm volume and local speaker test controls
# V1.39 2026-07-19 Removed the Alarm Clock editor title format-truncation warning # V1.39 2026-07-19 Removed the Alarm Clock editor title format-truncation warning
@@ -141,7 +142,10 @@
# - Tapping a time opens a shared circular 24-hour hour/minute roller editor. # - Tapping a time opens a shared circular 24-hour hour/minute roller editor.
# - The Snooze duration is a persistent Home Assistant configuration entity. # - The Snooze duration is a persistent Home Assistant configuration entity.
# - Alarm speaker volume is persistent and adjustable from Home Assistant or the display. # - Alarm speaker volume is persistent and adjustable from Home Assistant or the display.
# - The ES8311 remains at its 75% / 0 dB reference while local PCM amplitude
# follows a perceptual 24 dB volume curve across the displayed 5-100% range.
# - The Alarm Clock page provides local Beep, repeating Alarm and Stop hardware tests. # - The Alarm Clock page provides local Beep, repeating Alarm and Stop hardware tests.
# - Beep is a short 1800 Hz tone; Alarm repeats one 1600 Hz tone.
# - Speaker tests generate audio locally and do not require Home Assistant or media files. # - Speaker tests generate audio locally and do not require Home Assistant or media files.
#:########################################################################################:# #:########################################################################################:#
# OFFLINE NOTES: # OFFLINE NOTES:
@@ -161,12 +165,12 @@ substitutions:
# Device Naming # Device Naming
device_name: "esp-bedside-panel" device_name: "esp-bedside-panel"
friendly_name: "ESP Bedside Panel" friendly_name: "ESP Bedside Panel"
description_comment: "Guition JC1060P470C_I_W_Y ESP32-P4 bedside control panel. Four-row Alarm Clock interface with local ES8311 speaker testing, persistent alarm volume and a reusable 24-hour roller time editor. (Layout V1.1)" description_comment: "Guition JC1060P470C_I_W_Y ESP32-P4 bedside control panel. Four-row Alarm Clock interface with higher-pitched single-tone speaker testing, perceptual PCM volume control and a reusable 24-hour roller time editor. (Layout V1.1)"
device_area: "Bedroom" device_area: "Bedroom"
# Project Naming # Project Naming
project_name: "Guition.JC1060P470C_I_W_Y" project_name: "Guition.JC1060P470C_I_W_Y"
project_version: "v1.41" project_version: "v1.42"
# Passwords & Secrets # Passwords & Secrets
api_key: !secret esp-api_key api_key: !secret esp-api_key
@@ -241,6 +245,18 @@ substitutions:
alarm_speaker_enable_pin: "GPIO11" alarm_speaker_enable_pin: "GPIO11"
alarm_audio_sample_rate: "48000" alarm_audio_sample_rate: "48000"
# Alarm Test Sound
# The ES8311 uses 75% as its 0 dB reference. Keep the codec at that
# reference and apply the user volume to the generated PCM samples.
alarm_dac_reference_volume: "0.75"
alarm_pcm_max_amplitude: "28000"
alarm_volume_attenuation_db: "24"
alarm_beep_frequency_hz: "1800"
alarm_beep_duration_ms: "250"
alarm_tone_frequency_hz: "1600"
alarm_tone_on_ms: "350"
alarm_tone_off_ms: "250"
# Security Camera Settings # Security Camera Settings
# Change this only if homeassistant.local is not reachable from the panel. # Change this only if homeassistant.local is not reachable from the panel.
home_assistant_internal_url: "http://homeassistant.local:8123" home_assistant_internal_url: "http://homeassistant.local:8123"
@@ -1042,7 +1058,7 @@ number:
- audio_dac.set_volume: - audio_dac.set_volume:
id: alarm_audio_dac id: alarm_audio_dac
volume: !lambda |- volume: !lambda |-
return x / 100.0f; return ${alarm_dac_reference_volume}f;
- script.execute: refresh_alarm_audio_controls - script.execute: refresh_alarm_audio_controls
@@ -2319,11 +2335,7 @@ script:
- audio_dac.set_volume: - audio_dac.set_volume:
id: alarm_audio_dac id: alarm_audio_dac
volume: !lambda |- volume: !lambda |-
float volume = id(alarm_volume).state; return ${alarm_dac_reference_volume}f;
if (isnan(volume)) {
volume = 35.0f;
}
return volume / 100.0f;
- if: - if:
condition: condition:
@@ -2396,11 +2408,7 @@ script:
- audio_dac.set_volume: - audio_dac.set_volume:
id: alarm_audio_dac id: alarm_audio_dac
volume: !lambda |- volume: !lambda |-
float volume = id(alarm_volume).state; return ${alarm_dac_reference_volume}f;
if (isnan(volume)) {
volume = 35.0f;
}
return volume / 100.0f;
- switch.turn_on: alarm_speaker_amplifier - switch.turn_on: alarm_speaker_amplifier
- delay: 20ms - delay: 20ms
@@ -2428,12 +2436,30 @@ script:
# a loop so the complete sound is queued even when it is larger than the # a loop so the complete sound is queued even when it is larger than the
# speaker buffer's immediately available space. # speaker buffer's immediately available space.
- lambda: |- - lambda: |-
const uint32_t sample_rate = 48000; const uint32_t sample_rate = ${alarm_audio_sample_rate};
const uint32_t duration_ms = 480; const uint32_t duration_ms = ${alarm_beep_duration_ms};
const uint32_t sample_count = const uint32_t sample_count =
(sample_rate * duration_ms) / 1000; (sample_rate * duration_ms) / 1000;
const float frequency = 880.0f; const float frequency = ${alarm_beep_frequency_hz}.0f;
const uint32_t fade_samples = sample_rate / 80; const uint32_t fade_samples = sample_rate / 100;
float ui_volume = id(alarm_volume).state;
if (isnan(ui_volume)) {
ui_volume = ${alarm_volume_default}.0f;
}
ui_volume = fminf(fmaxf(ui_volume, 5.0f), 100.0f);
// Equal steps in the displayed percentage produce roughly equal
// perceived loudness changes. At 75%, this gives approximately the
// same PCM level as the proven V1.41 test at the codec's 0 dB point.
const float volume_position =
(ui_volume - 5.0f) / 95.0f;
const float attenuation_db =
-${alarm_volume_attenuation_db}.0f *
(1.0f - volume_position);
const float peak_amplitude =
${alarm_pcm_max_amplitude}.0f *
powf(10.0f, attenuation_db / 20.0f);
std::vector<uint8_t> audio; std::vector<uint8_t> audio;
audio.reserve(sample_count * 2); audio.reserve(sample_count * 2);
@@ -2452,7 +2478,7 @@ script:
6.28318530718f * frequency * 6.28318530718f * frequency *
static_cast<float>(i) / sample_rate; static_cast<float>(i) / sample_rate;
const int16_t sample = static_cast<int16_t>( const int16_t sample = static_cast<int16_t>(
14000.0f * envelope * sinf(phase) peak_amplitude * envelope * sinf(phase)
); );
audio.push_back(static_cast<uint8_t>(sample & 0xFF)); audio.push_back(static_cast<uint8_t>(sample & 0xFF));
@@ -2535,46 +2561,50 @@ script:
return id(alarm_audio_test_active); return id(alarm_audio_test_active);
then: then:
# A two-tone 800 ms alarm cycle. The direct write loop prevents # A higher-pitched single-tone alarm pulse. The direct write loop
# truncation when the clip is larger than the free ring-buffer area. # prevents truncation when the clip is larger than the free
# ring-buffer area.
- lambda: |- - lambda: |-
const uint32_t sample_rate = 48000; const uint32_t sample_rate = ${alarm_audio_sample_rate};
const uint32_t duration_ms = 800; const uint32_t tone_ms = ${alarm_tone_on_ms};
const uint32_t silence_ms = ${alarm_tone_off_ms};
const uint32_t duration_ms = tone_ms + silence_ms;
const uint32_t sample_count = const uint32_t sample_count =
(sample_rate * duration_ms) / 1000; (sample_rate * duration_ms) / 1000;
const uint32_t tone_end =
(sample_rate * tone_ms) / 1000;
const uint32_t fade_samples = sample_rate / 100; const uint32_t fade_samples = sample_rate / 100;
const float frequency = ${alarm_tone_frequency_hz}.0f;
float ui_volume = id(alarm_volume).state;
if (isnan(ui_volume)) {
ui_volume = ${alarm_volume_default}.0f;
}
ui_volume = fminf(fmaxf(ui_volume, 5.0f), 100.0f);
const float volume_position =
(ui_volume - 5.0f) / 95.0f;
const float attenuation_db =
-${alarm_volume_attenuation_db}.0f *
(1.0f - volume_position);
const float peak_amplitude =
${alarm_pcm_max_amplitude}.0f *
powf(10.0f, attenuation_db / 20.0f);
std::vector<uint8_t> audio; std::vector<uint8_t> audio;
audio.reserve(sample_count * 2); audio.reserve(sample_count * 2);
for (uint32_t i = 0; i < sample_count; i++) { for (uint32_t i = 0; i < sample_count; i++) {
const uint32_t time_ms =
(i * 1000) / sample_rate;
float frequency = 0.0f;
uint32_t burst_start = 0;
uint32_t burst_end = 0;
if (time_ms < 300) {
frequency = 740.0f;
burst_start = 0;
burst_end = (sample_rate * 300) / 1000;
} else if (time_ms >= 400 && time_ms < 700) {
frequency = 990.0f;
burst_start = (sample_rate * 400) / 1000;
burst_end = (sample_rate * 700) / 1000;
}
int16_t sample = 0; int16_t sample = 0;
if (frequency > 0.0f) { if (i < tone_end) {
float envelope = 1.0f; float envelope = 1.0f;
if (i < burst_start + fade_samples) { if (i < fade_samples) {
envelope = static_cast<float>(i - burst_start) / envelope = static_cast<float>(i) /
fade_samples; fade_samples;
} else if (i > burst_end - fade_samples) { } else if (i > tone_end - fade_samples) {
envelope = static_cast<float>(burst_end - i) / envelope = static_cast<float>(tone_end - i) /
fade_samples; fade_samples;
} }
@@ -2582,7 +2612,7 @@ script:
6.28318530718f * frequency * 6.28318530718f * frequency *
static_cast<float>(i) / sample_rate; static_cast<float>(i) / sample_rate;
sample = static_cast<int16_t>( sample = static_cast<int16_t>(
14000.0f * envelope * sinf(phase) peak_amplitude * envelope * sinf(phase)
); );
} }
@@ -2639,7 +2669,7 @@ script:
id: alarm_speaker id: alarm_speaker
timeout: 2s timeout: 2s
- delay: 250ms - delay: 20ms
- id: stop_alarm_audio - id: stop_alarm_audio
mode: restart mode: restart