Edit esp-astroclockstepper1.yaml
This commit is contained in:
@@ -6,6 +6,7 @@
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# https://home.fox.co.nz/gitea/zorruno/zorruno-homeassistant/src/branch/master/esphome/esp-astroclockstepper.yaml
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#:########################################################################################:#
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# VERSIONS:
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# V1.4 2026-06-22 Added Motor Stop switch, swapped reverse buttons 3/4, and separated auto-position motor direction
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# V1.3 2026-06-22 Added SNTP year auto-positioning button and restored boot auto-position switch
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# V1.2 2026-06-22 Added DHCP IPv4 address flash sequence on onboard LED after WiFi connects
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# V1.1 2026-06-22 Added onboard D1 Mini LED flash on each motor step
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@@ -27,20 +28,23 @@
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# Physical Buttons:
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# - Fast Forward: GPIO5 / D1
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# - Slow Forward: GPIO4 / D2
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# - Fast Reverse: GPIO0 / D3
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# - Slow Reverse: GPIO16 / D0
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# - Slow Reverse: GPIO0 / D3
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# - Fast Reverse: GPIO16 / D0
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#
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# Button board:
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# - Uses built-in 103 pull-up resistors, 10k ohm
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# - Buttons should pull the GPIO pin to GND when pressed
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# - Pull-ups must go to 3.3V, not 5V
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# - Fast modes are on the two end buttons
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#
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# Onboard Step LED:
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# - GPIO2 / D4
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# - Active-low on most D1 Mini boards
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#:########################################################################################:#
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# OPERATION NOTES:
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# - Normal rotation starts automatically after boot.
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# - Normal rotation starts automatically after boot only when Motor Stop is OFF.
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# - Motor Stop is ON by default after every reboot and is not restored.
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# - Motor Stop turns off all motor coils and pauses physical position counting.
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# - Default rotation is one full revolution every 365.2422 days.
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# - Default step count is 4096 steps per full revolution.
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# - Normal movement is extremely slow, about one step every 2.14 hours.
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@@ -55,8 +59,9 @@
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# - A digit of 0 is represented as 10 flashes.
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# - SNTP is used for current year-position calculation.
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# - User should manually align the dial to year-zero, then press Zero Position Counter.
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# - Auto Position Now moves forward only to the current calculated year position.
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# - Auto Position On Boot is off by default, restored on power loss, and runs after boot/IP flash.
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# - Auto Position Now moves forward logically to the current calculated year position.
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# - Auto-position motor direction is separately adjustable from normal/manual movement.
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# - Auto Position On Boot is off by default, restored on power loss, and runs after boot/IP flash if Motor Stop is OFF.
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#:########################################################################################:#
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# OFFLINE NOTES:
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# a) Home Assistant OFFLINE, but Network ONLINE
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@@ -64,16 +69,16 @@
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# - HA entities unavailable until HA returns
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# b) WiFi/Network OFFLINE
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# - No HA API or web control available
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# - Physical buttons continue to work
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# - Normal motor timing continues from device uptime
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# - Physical buttons continue to work if Motor Stop is OFF
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# - Fallback AP / captive portal should become available from network_common_dhcp.yaml
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# c) SNTP NOT SYNCED
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# - Normal motor timing continues
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# - Manual controls continue
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# - Normal motor timing continues if Motor Stop is OFF
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# - Manual controls continue if Motor Stop is OFF
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# - Auto Position Now will not run until SNTP time is valid
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# d) Device power loss / reboot
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# - Current position counter is restored from flash
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# - Auto Position On Boot setting is restored from flash
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# - Motor Stop returns to ON after every reboot
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# - Physical position is assumed valid because the motor housing/dial is fixed
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#:########################################################################################:#
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@@ -91,7 +96,7 @@ substitutions:
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# Project Naming
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project_name: "zorruno.Astronomical Clock Stepper"
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project_version: "v1.3"
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project_version: "v1.4"
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# Passwords & Secrets (Unfortunately, you cannot use substitutions inside secret names)
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api_key: !secret esp-api_key
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@@ -110,10 +115,15 @@ substitutions:
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steps_per_rotation: "4096"
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normal_direction_name: "Clockwise"
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# Use 1 for normal direction.
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# Use -1 if the motor rotates the wrong way.
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# Normal/manual motor direction.
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# Use 1 or -1 if normal/manual movement rotates the wrong way.
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normal_direction_multiplier: "1"
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# Auto-position motor direction.
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# This is separate so auto-position can move clockwise while still counting logically forward.
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# Set to -1 because auto-position was observed to be running anti-clockwise.
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auto_position_motor_direction_multiplier: "-1"
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# Manual Movement Speeds
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manual_fast_rotation_seconds: "30"
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manual_slow_rotation_seconds: "300"
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@@ -151,10 +161,12 @@ substitutions:
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# Physical Button Input Pins
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button_fast_forward_pin: GPIO5
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button_slow_forward_pin: GPIO4
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button_fast_reverse_pin: GPIO0
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button_slow_reverse_pin: GPIO16
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button_slow_reverse_pin: GPIO0
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button_fast_reverse_pin: GPIO16
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# Entity Naming
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motor_stop_name: "Motor Stop"
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web_fast_forward_name: "Web Fast Forward"
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web_slow_forward_name: "Web Slow Forward"
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web_fast_reverse_name: "Web Fast Reverse"
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@@ -203,9 +215,12 @@ packages:
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#common_webportal: !include common/webportal_common.yaml
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common_webportal: !include common/webportal_common_nopasswd.yaml
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#### SNTP (Only use if you want/need accurate timeclocks) ####
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#common_sntp: !include common/sntp_common.yaml
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#### DIAGNOSTICS Sensors ####
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diag_basic: !include common/include_basic_diag_sensors.yaml
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#diag_more: !include common/include_more_diag_sensors.yaml
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diag_more: !include common/include_more_diag_sensors_nomqtt.yaml
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#diag_debug: !include common/include_debug_diag_sensors.yaml
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#diag_resetcount: !include common/include_resetcount_diag_sensors.yaml
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@@ -370,6 +385,7 @@ globals:
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# 3 = Fast Reverse
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# 4 = Slow Reverse
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# 5 = Auto Position
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# 6 = Motor Stopped
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- id: current_motion_mode
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type: int
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restore_value: no
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@@ -594,6 +610,11 @@ script:
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return;
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}
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if (id(motor_stop_switch).state) {
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ESP_LOGW("auto_position", "Motor Stop is ON. Auto position cancelled.");
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return;
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}
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const int year = now.year;
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const int month = now.month;
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const int day_of_month = now.day_of_month;
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@@ -677,7 +698,7 @@ script:
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ESP_LOGI(
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"auto_position",
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"Auto positioning started. Year: %d, day_of_year: %d/%d, target step: %d, current step: %d, moving forward %d steps.",
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"Auto positioning started. Year: %d, day_of_year: %d/%d, target step: %d, current step: %d, moving forward %d logical steps.",
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year,
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day_of_year,
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days_in_year,
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@@ -689,7 +710,7 @@ script:
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#:########################################################################################:#
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# SWITCH:
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# Web held-button controls and restored auto-position boot option
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# Motor stop, web held-button controls, and restored auto-position boot option
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# https://esphome.io/components/switch/template.html
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#:########################################################################################:#
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switch:
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@@ -772,6 +793,47 @@ switch:
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optimistic: true
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restore_mode: RESTORE_DEFAULT_OFF
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- platform: template
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name: "${motor_stop_name}"
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id: motor_stop_switch
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icon: mdi:motor-off
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optimistic: true
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# ON by default after every boot. State is not restored.
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restore_mode: ALWAYS_ON
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turn_on_action:
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- switch.turn_off: web_fast_forward_switch
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- switch.turn_off: web_slow_forward_switch
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- switch.turn_off: web_fast_reverse_switch
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- switch.turn_off: web_slow_reverse_switch
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- lambda: |-
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id(web_fast_forward_active) = false;
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id(web_slow_forward_active) = false;
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id(web_fast_reverse_active) = false;
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id(web_slow_reverse_active) = false;
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id(stepper_in1).turn_off();
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id(stepper_in2).turn_off();
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id(stepper_in3).turn_off();
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id(stepper_in4).turn_off();
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id(coils_are_on) = false;
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if (id(auto_position_active)) {
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id(auto_position_active) = false;
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id(auto_position_steps_remaining) = 0;
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ESP_LOGW("motor_stop", "Motor Stop enabled. Auto positioning cancelled.");
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}
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id(step_accumulator_ms) = 0.0;
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id(current_motion_mode) = 6;
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turn_off_action:
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- lambda: |-
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id(step_accumulator_ms) = 0.0;
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id(current_motion_mode) = 0;
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ESP_LOGI("motor_stop", "Motor Stop disabled. Motor outputs enabled.");
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#:########################################################################################:#
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# BINARY SENSORS:
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@@ -817,25 +879,6 @@ binary_sensor:
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id: physical_slow_forward_active
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value: "false"
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- platform: gpio
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name: "${physical_fast_reverse_name}"
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id: physical_fast_reverse_button
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pin:
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number: ${button_fast_reverse_pin}
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mode: INPUT
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inverted: true
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filters:
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- delayed_on: 20ms
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- delayed_off: 20ms
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on_press:
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- globals.set:
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id: physical_fast_reverse_active
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value: "true"
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on_release:
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- globals.set:
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id: physical_fast_reverse_active
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value: "false"
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- platform: gpio
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name: "${physical_slow_reverse_name}"
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id: physical_slow_reverse_button
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@@ -855,6 +898,25 @@ binary_sensor:
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id: physical_slow_reverse_active
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value: "false"
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- platform: gpio
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name: "${physical_fast_reverse_name}"
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id: physical_fast_reverse_button
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pin:
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number: ${button_fast_reverse_pin}
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mode: INPUT
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inverted: true
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filters:
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- delayed_on: 20ms
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- delayed_off: 20ms
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on_press:
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- globals.set:
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id: physical_fast_reverse_active
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value: "true"
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on_release:
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- globals.set:
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id: physical_fast_reverse_active
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value: "false"
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- platform: template
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name: "${auto_position_active_name}"
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id: auto_position_active_sensor
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@@ -1011,6 +1073,10 @@ text_sensor:
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icon: mdi:rotate-3d-variant
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update_interval: "${sensor_update_interval}"
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lambda: |-
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if (id(motor_stop_switch).state) {
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return {"Motor Stopped"};
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}
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switch (id(current_motion_mode)) {
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case 1:
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return {"Fast Forward"};
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@@ -1022,6 +1088,8 @@ text_sensor:
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return {"Slow Reverse"};
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case 5:
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return {"Auto Position"};
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case 6:
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return {"Motor Stopped"};
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case 0:
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default:
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return {"Normal"};
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@@ -1046,7 +1114,8 @@ interval:
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then:
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- lambda: |-
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const int STEPS_PER_ROTATION = ${steps_per_rotation};
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const int NORMAL_DIRECTION_MULTIPLIER = ${normal_direction_multiplier};
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const int NORMAL_MOTOR_DIRECTION_MULTIPLIER = ${normal_direction_multiplier};
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const int AUTO_POSITION_MOTOR_DIRECTION_MULTIPLIER = ${auto_position_motor_direction_multiplier};
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const double NORMAL_STEP_INTERVAL_MS =
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(${rotation_days} * 24.0 * 60.0 * 60.0 * 1000.0) / ${steps_per_rotation};
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@@ -1120,15 +1189,21 @@ interval:
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id(coils_are_on) = true;
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};
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auto do_one_step = [&](int direction, uint32_t now_ms) {
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if (direction >= 0) {
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id(current_phase_index) = (id(current_phase_index) + 1) % 8;
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auto do_one_step = [&](int logical_direction, int motor_direction, uint32_t now_ms) {
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// Logical direction updates the remembered year-position counter.
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if (logical_direction >= 0) {
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id(current_position_step) = (id(current_position_step) + 1) % STEPS_PER_ROTATION;
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} else {
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id(current_phase_index) = (id(current_phase_index) + 7) % 8;
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id(current_position_step) = (id(current_position_step) + STEPS_PER_ROTATION - 1) % STEPS_PER_ROTATION;
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}
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// Motor direction updates the coil phase, allowing physical direction to be tuned separately.
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if (motor_direction >= 0) {
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id(current_phase_index) = (id(current_phase_index) + 1) % 8;
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} else {
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id(current_phase_index) = (id(current_phase_index) + 7) % 8;
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}
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set_coils_for_phase(id(current_phase_index));
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id(last_step_ms) = now_ms;
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flash_step_led(now_ms);
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@@ -1152,6 +1227,37 @@ interval:
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fast_reverse_active ||
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slow_reverse_active;
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const uint32_t now_ms = millis();
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if (id(last_loop_ms) == 0) {
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id(last_loop_ms) = now_ms;
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id(step_accumulator_ms) = 0.0;
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if (id(motor_stop_switch).state) {
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id(current_motion_mode) = 6;
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} else {
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id(current_motion_mode) = 0;
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}
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return;
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}
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const uint32_t elapsed_ms = now_ms - id(last_loop_ms);
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id(last_loop_ms) = now_ms;
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if (id(motor_stop_switch).state) {
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if (id(auto_position_active)) {
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id(auto_position_active) = false;
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id(auto_position_steps_remaining) = 0;
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ESP_LOGW("motor_stop", "Motor Stop is ON. Auto positioning cancelled.");
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}
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all_coils_off();
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id(step_accumulator_ms) = 0.0;
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id(current_motion_mode) = 6;
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return;
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}
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if (any_manual_control_active && id(auto_position_active)) {
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id(auto_position_active) = false;
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id(auto_position_steps_remaining) = 0;
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@@ -1159,43 +1265,42 @@ interval:
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}
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int selected_mode = 0;
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int selected_direction = NORMAL_DIRECTION_MULTIPLIER;
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int selected_logical_direction = 1;
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int selected_motor_direction = NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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double selected_step_interval_ms = NORMAL_STEP_INTERVAL_MS;
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if (fast_forward_active) {
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selected_mode = 1;
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selected_direction = NORMAL_DIRECTION_MULTIPLIER;
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selected_logical_direction = 1;
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selected_motor_direction = NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = FAST_STEP_INTERVAL_MS;
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} else if (slow_forward_active) {
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selected_mode = 2;
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selected_direction = NORMAL_DIRECTION_MULTIPLIER;
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selected_logical_direction = 1;
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selected_motor_direction = NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = SLOW_STEP_INTERVAL_MS;
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} else if (fast_reverse_active) {
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selected_mode = 3;
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selected_direction = -NORMAL_DIRECTION_MULTIPLIER;
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selected_logical_direction = -1;
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selected_motor_direction = -NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = FAST_STEP_INTERVAL_MS;
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} else if (slow_reverse_active) {
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selected_mode = 4;
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selected_direction = -NORMAL_DIRECTION_MULTIPLIER;
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selected_logical_direction = -1;
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selected_motor_direction = -NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = SLOW_STEP_INTERVAL_MS;
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} else if (id(auto_position_active)) {
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selected_mode = 5;
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selected_direction = NORMAL_DIRECTION_MULTIPLIER;
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selected_logical_direction = 1;
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selected_motor_direction = AUTO_POSITION_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = AUTO_POSITION_STEP_INTERVAL_MS;
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} else {
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selected_mode = 0;
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selected_logical_direction = 1;
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selected_motor_direction = NORMAL_MOTOR_DIRECTION_MULTIPLIER;
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selected_step_interval_ms = NORMAL_STEP_INTERVAL_MS;
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}
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const uint32_t now_ms = millis();
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if (id(last_loop_ms) == 0) {
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id(last_loop_ms) = now_ms;
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id(current_motion_mode) = selected_mode;
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id(step_accumulator_ms) = 0.0;
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return;
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}
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const uint32_t elapsed_ms = now_ms - id(last_loop_ms);
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id(last_loop_ms) = now_ms;
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if (selected_mode != id(current_motion_mode)) {
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id(current_motion_mode) = selected_mode;
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id(step_accumulator_ms) = 0.0;
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@@ -1204,7 +1309,7 @@ interval:
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id(step_accumulator_ms) += (double) elapsed_ms;
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if (id(step_accumulator_ms) >= selected_step_interval_ms) {
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do_one_step(selected_direction, now_ms);
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do_one_step(selected_logical_direction, selected_motor_direction, now_ms);
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if (selected_mode == 5 && id(auto_position_active)) {
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id(auto_position_steps_remaining)--;
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Reference in New Issue
Block a user