kopia lustrzana https://github.com/pimoroni/pimoroni-pico
189 wiersze
5.5 KiB
C++
189 wiersze
5.5 KiB
C++
#include <stdio.h>
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#include <math.h>
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#include <cstdint>
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#include "pico/stdlib.h"
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#include "plasma2040.hpp"
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#include "common/pimoroni_common.hpp"
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#include "bme68x.hpp"
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#include "rgbled.hpp"
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#include "button.hpp"
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/*
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Uses a BME68x to monitor the ambient temperature, pressure and humidity, and show them as bars on an LED strip.
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Press "A" to cycle to the next mode.
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Press "B" to cycle to the previous mode.
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*/
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using namespace pimoroni;
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using namespace plasma;
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// Set how many LEDs you have
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const uint N_LEDS = 30;
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// How many times the LEDs will be updated per second
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const uint UPDATES = 60;
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// The temperature range to show (in degrees celsius)
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constexpr float TEMPERATURE_C_MIN = 20.0f;
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constexpr float TEMPERATURE_C_MAX = 35.0f;
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// The pressure range to show (in pascals)
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constexpr float PRESSURE_PA_MIN = 87000.0f;
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constexpr float PRESSURE_PA_MAX = 108500.0f;
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// The humidity range to show (in percent)
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constexpr float HUMIDITY_MIN = 0.0f;
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constexpr float HUMIDITY_MAX = 100.0f;
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// The start and end hues for the temperature range
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constexpr float TEMPERATURE_HUE_START = 0.667f;
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constexpr float TEMPERATURE_HUE_END = 1.0f;
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// The start and end hues for the pressure range
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constexpr float PRESSURE_HUE_START = 0.333f;
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constexpr float PRESSURE_HUE_END = 0.0f;
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// The start and end hues for the humidity range
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constexpr float HUMIDITY_HUE_START = 0.333f;
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constexpr float HUMIDITY_HUE_END = 0.667f;
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// Pick *one* LED type by uncommenting the relevant line below:
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// APA102-style LEDs with Data/Clock lines. AKA DotStar
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//APA102 led_strip(N_LEDS, pio0, 0, plasma2040::DAT, plasma2040::CLK);
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// WS28X-style LEDs with a single signal line. AKA NeoPixel
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WS2812 led_strip(N_LEDS, pio0, 0, plasma2040::DAT);
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Button button_a(plasma2040::BUTTON_A, ACTIVE_LOW, 0);
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Button button_b(plasma2040::BUTTON_B, ACTIVE_LOW, 0);
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RGBLED led(plasma2040::LED_R, plasma2040::LED_G, plasma2040::LED_B);
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I2C i2c(BOARD::PICO_EXPLORER);
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BME68X bme68x(&i2c);
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enum DisplayMode {
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ALL,
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TEMPERATURE,
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PRESSURE,
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HUMIDITY
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};
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// Maps a value from one range to another
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float map(float x, float in_min, float in_max, float out_min, float out_max) {
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return (x - in_min) * (out_max - out_min) / (in_max - in_min) + out_min;
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}
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// Sets a section of the led strip to show a hue gradient based on the provided percent
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void colour_gauge(float percent, uint start_led, uint end_led, float start_hue, float end_hue) {
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if(end_led > start_led) {
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uint range = end_led - start_led;
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float light_pixels = percent * range;
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for(uint i = 0; i < range; i++) {
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float h = map(i, 0.0f, (float)range - 1, start_hue, end_hue);
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uint i2 = i + 1;
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if(i2 <= light_pixels) {
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led_strip.set_hsv(i + start_led, h, 1.0f, 1.0f);
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}
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else if(i <= light_pixels) {
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float scale = map(light_pixels, (float)i, (float)i2, 0.0f, 1.0f);
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led_strip.set_hsv(i + start_led, h, 1.0f, scale);
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}
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else {
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led_strip.set_hsv(i + start_led, 0.0f, 0.0f, 0.0f);
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}
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}
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}
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}
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int main() {
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stdio_init_all();
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led_strip.start(UPDATES);
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bool bme_detected = bme68x.init();
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uint first_third = led_strip.num_leds / 3;
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uint second_third = (led_strip.num_leds * 2) / 3;
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float t = 0.0f;
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DisplayMode mode = DisplayMode::ALL;
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while(true) {
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if(bme_detected) {
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bme68x_data data;
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auto result = bme68x.read_forced(&data);
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(void)result;
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printf("%.2fc, %.2fPa, %.2f%%\n", data.temperature, data.pressure, data.humidity);
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switch(mode) {
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case DisplayMode::ALL:
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t = map(data.temperature, TEMPERATURE_C_MIN, TEMPERATURE_C_MAX, 0.0f, 1.0f);
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colour_gauge(t, 0, first_third, TEMPERATURE_HUE_START, TEMPERATURE_HUE_END);
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t = map(data.pressure, PRESSURE_PA_MIN, PRESSURE_PA_MAX, 0.0f, 1.0f);
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colour_gauge(t, first_third, second_third, PRESSURE_HUE_START, PRESSURE_HUE_END);
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t = map(data.humidity, HUMIDITY_MIN, HUMIDITY_MAX, 0.0f, 1.0f);
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colour_gauge(t, second_third, led_strip.num_leds, HUMIDITY_HUE_START, HUMIDITY_HUE_END);
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break;
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case DisplayMode::TEMPERATURE:
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t = map(data.temperature, TEMPERATURE_C_MIN, TEMPERATURE_C_MAX, 0.0f, 1.0f);
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colour_gauge(t, 0, led_strip.num_leds, TEMPERATURE_HUE_START, TEMPERATURE_HUE_END);
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break;
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case DisplayMode::PRESSURE:
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t = map(data.pressure, PRESSURE_PA_MIN, PRESSURE_PA_MAX, 0.0f, 1.0f);
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colour_gauge(t, 0, led_strip.num_leds, PRESSURE_HUE_START, PRESSURE_HUE_END);
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break;
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case DisplayMode::HUMIDITY:
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t = map(data.humidity, HUMIDITY_MIN, HUMIDITY_MAX, 0.0f, 1.0f);
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colour_gauge(t, 0, led_strip.num_leds, HUMIDITY_HUE_START, HUMIDITY_HUE_END);
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break;
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}
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}
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bool a_pressed = button_a.read();
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bool b_pressed = button_b.read();
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switch(mode) {
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case DisplayMode::ALL:
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led.set_rgb(127, 127, 127);
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if(a_pressed) mode = DisplayMode::TEMPERATURE;
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else if(b_pressed) mode = DisplayMode::HUMIDITY;
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break;
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case DisplayMode::TEMPERATURE:
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led.set_rgb(255, 0, 255);
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if(a_pressed) mode = DisplayMode::PRESSURE;
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else if(b_pressed) mode = DisplayMode::ALL;
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break;
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case DisplayMode::PRESSURE:
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led.set_rgb(255, 255, 0);
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if(a_pressed) mode = DisplayMode::HUMIDITY;
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else if(b_pressed) mode = DisplayMode::TEMPERATURE;
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break;
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case DisplayMode::HUMIDITY:
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led.set_rgb(0, 255, 255);
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if(a_pressed) mode = DisplayMode::ALL;
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else if(b_pressed) mode = DisplayMode::PRESSURE;
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break;
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}
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}
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}
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