167 lines
4.1 KiB
C++
167 lines
4.1 KiB
C++
/**
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* \file cimdit.ino
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* \brief main functions
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* \author GrumpyDeveloper (Sascha Nitsch)
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* \copyright 2022 Sascha Nitsch
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* Licensed under MIT license
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*
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*/
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// defines
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#include "defines.h"
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// library includes
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#include <HID-Project.h>
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#ifdef HAVE_DISPLAY
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#include "cimditssd1306.h"
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#endif
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// own includes
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#include "cimdithal.h"
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#include "cimditprofile.h"
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/// our hardware abstraction layer
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CimditHAL hal;
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/// flag if the rotary interrupt has been triggered
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volatile bool outstandingRotInterrupt = false;
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/// interrupt service routine for rotatry change interrupt
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void rotInt() {
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outstandingRotInterrupt = true;
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}
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/// next update time in ms
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uint32_t nextUpdate = 0;
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#ifdef HAVE_DISPLAY
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/// our display
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CimditSSD1306 display(SCREEN_WIDTH, SCREEN_HEIGHT, SCREEN_ADDRESS);
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#endif
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// our profile handling class
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CimditProfile profile;
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/// initial setup
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void setup() {
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Serial.begin(115200);
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hal.begin();
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attachInterrupt(digitalPinToInterrupt(7), rotInt, RISING);
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// initialize USB related things
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Keyboard.begin();
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Mouse.begin();
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Gamepad.begin();
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Wire.begin();
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Wire.setClock(400000);
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#ifdef HAVE_DISPLAY
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// init display
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display.begin();
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display.clearDisplay();
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display.setTextSize(2,2);
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display.setCursor(28, 8);
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display.write("cimdit");
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display.display();
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#endif
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profile.begin();
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}
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/// protection string
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const char protectString[] = "cimdit:";
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/// current position in protection string
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uint8_t protectPos = 0;
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/// main loop
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void loop() {
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hal.readFromHardware(outstandingRotInterrupt);
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if (outstandingRotInterrupt) {
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outstandingRotInterrupt = false;
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return;
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}
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profile.tick();
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if (Serial.available()) {
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// incoming message
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uint8_t in;
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while ((in = Serial.read()) != 255) {
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if (protectString[protectPos++] != in) {
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protectPos = 0;
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continue;
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}
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if (protectPos == sizeof(protectString) - 1) { // good, something for us
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protectPos = 0;
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// every line has to start with cimdit: or it will be ignored
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uint8_t cmd = Serial.read();
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switch (cmd) {
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case 'd':
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profile.userDisplay();
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break;
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case 'p': { // print something on display
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uint8_t timeout = 0;
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// read number for time to display
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do {
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cmd = Serial.read();
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if (cmd != ',') {
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timeout = timeout * 10 + cmd - '0';
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}
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} while (cmd != ',');
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char tmp[43] = {0};
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uint8_t pos = 0;
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// now we expect the string, terminated by \n
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do {
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cmd = Serial.read();
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if (cmd != '\n') {
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tmp[pos++] = cmd;
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}
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} while (cmd != '\n' && pos < 43 && cmd != 255);
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profile.setUserString(timeout, tmp);
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}
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break;
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case 'f': // read flash
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profile.printFlash();
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break;
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case 'F': // write flash
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profile.writeFlash();
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break;
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}
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}
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}
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}
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if (hal.m_millis < nextUpdate && hal.m_millis > ROLLOVER_INTERVAL) return;
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nextUpdate = hal.m_millis + UPDATE_INTERVAL;
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uint8_t rotaryChanged = hal.rotaryChanged();
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if (rotaryChanged) {
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for (uint8_t i = 0; i < 8; ++i) {
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if (rotaryChanged & 1) {
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int8_t delta = hal.getEncoder(i);
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profile.rotaryAction(i, delta);
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}
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rotaryChanged >>= 1;
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}
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}
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uint16_t analogChanged = hal.analogChanged();
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if (analogChanged) {
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for (uint8_t i = 0; i < 4; ++i) {
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if (analogChanged & 1) {
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uint16_t analog = hal.getAnalog(i);
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profile.axisAction(i, analog);
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}
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analogChanged >>= 1;
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}
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Gamepad.write();
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}
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uint64_t buttonsChanged = hal.buttonsChanged();
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if (buttonsChanged) {
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for (uint8_t i = 0; i < 64; ++i) {
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if (buttonsChanged & 0xFF) { // quickcheck for 8 bits at a time
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if (buttonsChanged & 1) {
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bool pressed = hal.getButton(i);
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profile.buttonAction(i, pressed);
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}
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buttonsChanged >>= 1;
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} else {
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buttonsChanged >>= 8;
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i += 7;
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}
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}
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}
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}
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