automatically detect temperature sensor
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9fd174e453
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80cbb0fe30
7
Makefile
7
Makefile
@ -12,9 +12,6 @@ GOSSAMER_PATH=gossamer
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# If you need to force a specific display, set this to the type you want, CLASSIC or CUSTOM
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FORCE_DISPLAY_TYPE=CLASSIC
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# Which sensor board?
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SENSOR=NONE
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# End of user configurable options.
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# Support USB features?
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@ -32,10 +29,6 @@ ifndef BOARD
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$(error Build failed: BOARD not defined. Use one of the four options below, depending on your hardware:$n$n make BOARD=sensorwatch_red$n make BOARD=sensorwatch_green$n make BOARD=sensorwatch_blue$n make BOARD=sensorwatch_pro$n$n)
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endif
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ifeq ($(SENSOR), TEMPERATURE)
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DEFINES += -DTEMPERATURE_BOARD_INSTALLED
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endif
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ifdef FORCE_DISPLAY_TYPE
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ifeq ($(FORCE_DISPLAY_TYPE), CUSTOM)
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DEFINES += -DFORCE_CUSTOM_LCD_TYPE
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2
gossamer
2
gossamer
@ -1 +1 @@
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Subproject commit 6657eb097bcb83ac19b3509e0296ee151fb310d9
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Subproject commit 2d79f337c7a6d928830ded91f5d998582f8ea58a
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@ -45,6 +45,7 @@
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#include "evsys.h"
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#include "delay.h"
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#include "movement_activity.h"
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#include "thermistor_driver.h"
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#include "movement_config.h"
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@ -564,6 +565,8 @@ void app_init(void) {
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filesystem_init();
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movement_state.has_thermistor = thermistor_driver_init();
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// check if we are plugged into USB power.
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HAL_GPIO_VBUS_DET_in();
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HAL_GPIO_VBUS_DET_pulldown();
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@ -287,6 +287,9 @@ typedef struct {
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// temporary alarm enabled boolean, until we implement this in advisories
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bool alarm_enabled;
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// boolean set if thermistor is detected
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bool has_thermistor;
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// boolean set if accelerometer is detected
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bool has_lis2dw;
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} movement_state_t;
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@ -27,9 +27,53 @@
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#include "watch.h"
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#include "watch_utility.h"
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// assume we have no thermistor until thermistor_driver_init is called.
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static bool has_thermistor = false;
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bool thermistor_driver_init(void) {
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// once called, assume we have a thermistor unless proven otherwise
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has_thermistor = true;
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uint16_t value;
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#if THERMISTOR_ENABLE_VALUE == false
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const uint16_t threshold_value = 60000;
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#else
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const uint16_t threshold_value = 5000;
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#endif
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watch_enable_adc();
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// Enable analog circuitry on the sense pin, which is tied to the thermistor resistor divider.
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HAL_GPIO_TEMPSENSE_in();
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HAL_GPIO_TEMPSENSE_pmuxen(HAL_GPIO_PMUX_ADC);
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// Enable digital output on the enable pin, which is the power to the thermistor circuit.
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HAL_GPIO_TS_ENABLE_out();
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// and make sure it's DISABLED.
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HAL_GPIO_TS_ENABLE_write(!THERMISTOR_ENABLE_VALUE);
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// If the temperature sensor is connected, pulling the TS_ENABLE line to its disabled value
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// connects both sides of the voltage divider to the same potential. If enable value is false,
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// this will be high, if enable value is true it will be low, and TEMPSENSE should read the same.
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value = watch_get_analog_pin_level(HAL_GPIO_TEMPSENSE_pin());
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// If setting TS_ENABLE has no effect, there is no thermistor circuit connected to TEMPSENSE.
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if (value < threshold_value) has_thermistor = false;
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// now flip it to enable the temperature sensor
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HAL_GPIO_TS_ENABLE_write(THERMISTOR_ENABLE_VALUE);
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// If the temperature sensor is connected, pulling the TS_ENABLE line to its ENABLED value
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// means we should get a reasonable temperature at this point.
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value = watch_get_analog_pin_level(HAL_GPIO_TEMPSENSE_pin());
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// value should be >15000 and <55000 and (between -4° and 76° C)
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if (value < 15000 || value > 55000) has_thermistor = false;
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return has_thermistor;
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}
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void thermistor_driver_enable(void) {
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#ifdef HAS_TEMPERATURE_SENSOR
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if (!has_thermistor) return;
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// Enable the ADC peripheral, which we'll use to read the thermistor value.
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watch_enable_adc();
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// Enable analog circuitry on the sense pin, which is tied to the thermistor resistor divider.
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@ -39,11 +83,11 @@ void thermistor_driver_enable(void) {
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HAL_GPIO_TS_ENABLE_out();
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// and make sure it's off.
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HAL_GPIO_TS_ENABLE_write(!THERMISTOR_ENABLE_VALUE);
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#endif
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}
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void thermistor_driver_disable(void) {
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#ifdef HAS_TEMPERATURE_SENSOR
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if (!has_thermistor) return;
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// Disable the ADC peripheral.
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watch_disable_adc();
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// Disable analog circuitry on the sense pin to save power.
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@ -51,11 +95,11 @@ void thermistor_driver_disable(void) {
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HAL_GPIO_TEMPSENSE_off();
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// Disable the enable pin's output circuitry.
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HAL_GPIO_TS_ENABLE_off();
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#endif
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}
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float thermistor_driver_get_temperature(void) {
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#ifdef HAS_TEMPERATURE_SENSOR
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if (!has_thermistor) return (float) 0xFFFFFFFF;
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// set the enable pin to the level that powers the thermistor circuit.
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HAL_GPIO_TS_ENABLE_write(THERMISTOR_ENABLE_VALUE);
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// get the sense pin level
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@ -64,7 +108,4 @@ float thermistor_driver_get_temperature(void) {
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HAL_GPIO_TS_ENABLE_write(!THERMISTOR_ENABLE_VALUE);
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return watch_utility_thermistor_temperature(value, THERMISTOR_HIGH_SIDE, THERMISTOR_B_COEFFICIENT, THERMISTOR_NOMINAL_TEMPERATURE, THERMISTOR_NOMINAL_RESISTANCE, THERMISTOR_SERIES_RESISTANCE);
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#else
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return (float) 0xFFFFFFFF;
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#endif
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}
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@ -35,6 +35,7 @@
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#define THERMISTOR_NOMINAL_RESISTANCE (10000.0)
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#define THERMISTOR_SERIES_RESISTANCE (10000.0)
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bool thermistor_driver_init(void);
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void thermistor_driver_enable(void);
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void thermistor_driver_disable(void);
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float thermistor_driver_get_temperature(void);
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