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@ -7,12 +7,10 @@
@@ -7,12 +7,10 @@
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#define DT_DRV_COMPAT zmk_battery_voltage_divider |
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#include <device.h> |
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#include <drivers/kscan.h> |
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#include <drivers/gpio.h> |
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#include <drivers/adc.h> |
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#include <drivers/sensor.h> |
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#include <logging/log.h> |
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#include <math.h> |
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LOG_MODULE_DECLARE(zmk, CONFIG_ZMK_LOG_LEVEL); |
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@ -47,10 +45,16 @@ struct bvd_data {
@@ -47,10 +45,16 @@ struct bvd_data {
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}; |
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static uint8_t lithium_ion_mv_to_pct(int16_t bat_mv) { |
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// Magic function that maps mV to this discharge graph from adafruit:
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// Simple linear approximation of a battery based off adafruit's discharge graph:
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// https://learn.adafruit.com/li-ion-and-lipoly-batteries/voltages
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return round(106.818 + |
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(-0.032685 - 106.818) / pow(1 + pow(bat_mv / 3679.35, 58.979), 0.347386)); |
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if (bat_mv >= 4200) { |
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return 100; |
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} else if (bat_mv <= 3450) { |
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return 0; |
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} |
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return bat_mv * 2 / 15 - 459; |
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} |
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static int bvd_sample_fetch(struct device *dev, enum sensor_channel chan) { |
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@ -142,7 +146,7 @@ static int bvd_init(struct device *dev) {
@@ -142,7 +146,7 @@ static int bvd_init(struct device *dev) {
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if (drv_data->adc == NULL) { |
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LOG_ERR("ADC %s failed to retrieve", drv_cfg->io_channel.label); |
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return -ENOENT; |
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return -ENODEV; |
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} |
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int rc = 0; |
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@ -151,7 +155,7 @@ static int bvd_init(struct device *dev) {
@@ -151,7 +155,7 @@ static int bvd_init(struct device *dev) {
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drv_data->gpio = device_get_binding(drv_cfg->power_gpios.label); |
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if (drv_data->gpio == NULL) { |
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LOG_ERR("Failed to get GPIO %s", drv_cfg->power_gpios.label); |
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return -ENOENT; |
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return -ENODEV; |
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} |
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rc = gpio_pin_configure(drv_data->gpio, drv_cfg->power_gpios.pin, |
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GPIO_OUTPUT_INACTIVE | drv_cfg->power_gpios.flags); |
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