ESPMegaPRO-v3-SDK/ESPMegaPRO-firmware/lib/ESPMegaPRO/DigitalOutputCard.cpp

175 lines
5.0 KiB
C++
Raw Normal View History

2023-12-27 16:15:11 +00:00
#include <DigitalOutputCard.hpp>
2023-12-30 11:27:39 +00:00
DigitalOutputCard::DigitalOutputCard(uint8_t address) : change_callbacks(){
2023-12-27 16:15:11 +00:00
this->address = address;
2023-12-28 12:01:37 +00:00
// load default pin map
for (int i = 0; i < 16; i++) {
this->pinMap[i] = i;
this->virtualPinMap[i] = i;
}
this->framBinded = false;
this->callbacks_handler_index = 0;
2023-12-27 16:15:11 +00:00
}
// Instantiate the card with the specified position on the dip switch
DigitalOutputCard::DigitalOutputCard(bool bit0, bool bit1, bool bit2, bool bit3, bool bit4) :
DigitalOutputCard(0x20+bit0+bit1*2+bit2*4+bit3*8+bit4*16)
{
2023-12-27 16:15:11 +00:00
2023-12-27 16:15:11 +00:00
}
// Initialize the card
2023-12-27 19:18:21 +00:00
bool DigitalOutputCard::begin() {
2023-12-27 16:15:11 +00:00
this->pwm = Adafruit_PWMServoDriver(this->address);
2023-12-27 19:18:21 +00:00
this->pwm.begin();
pwm.setOutputMode(true);
// Output card don't send ack, we can't check if it's connected
// so we just return true
return true;
2023-12-27 16:15:11 +00:00
}
// Set the output to the specified state
void DigitalOutputCard::digitalWrite(uint8_t pin, bool state) {
2023-12-28 12:01:37 +00:00
this->pwm.setPin(virtualPinMap[pin], state ? 4095 : 0);
2023-12-28 05:46:39 +00:00
this->state_buffer[pin] = state;
this->value_buffer[pin] = state ? 4095 : 0;
2023-12-28 12:35:53 +00:00
if (this->framAutoSave) {
this->saveStateToFRAM();
this->savePinValueToFRAM(pin);
}
for (const auto& callback : change_callbacks)
{
callback.second(pin, state, state ? 4095 : 0);
2023-12-28 12:01:37 +00:00
}
2023-12-27 16:15:11 +00:00
}
// Set the output to the specified pwm value
void DigitalOutputCard::analogWrite(uint8_t pin, uint16_t value) {
// If value is greater than 4095, set it to 4095
if (value > 4095) value = 4095;
// Set the pwm value
2023-12-28 12:01:37 +00:00
this->pwm.setPin(virtualPinMap[pin], value);
2023-12-28 12:35:53 +00:00
if (this->framAutoSave) {
this->saveStateToFRAM();
this->savePinValueToFRAM(pin);
}
2023-12-28 05:46:39 +00:00
this->state_buffer[pin] = value > 0;
this->value_buffer[pin] = value;
for (const auto& callback : change_callbacks)
{
callback.second(pin, value > 0, value);
2023-12-28 12:01:37 +00:00
}
2023-12-27 19:18:21 +00:00
}
// Dummy loop function
void DigitalOutputCard::loop() {
2023-12-28 04:41:20 +00:00
}
2023-12-28 05:46:39 +00:00
// Get the state of the specified pin
bool DigitalOutputCard::getState(uint8_t pin) {
return this->state_buffer[pin];
}
// Get the pwm value of the specified pin
uint16_t DigitalOutputCard::getValue(uint8_t pin) {
return this->value_buffer[pin];
}
2023-12-28 04:41:20 +00:00
// Get type of card
uint8_t DigitalOutputCard::getType() {
return CARD_TYPE_DIGITAL_OUTPUT;
}
void DigitalOutputCard::setState(uint8_t pin, bool state) {
this-> state_buffer[pin] = state;
this->pwm.setPin(pin, state*value_buffer[pin]);
2023-12-28 12:35:53 +00:00
if(this->framAutoSave) {
this->saveStateToFRAM();
}
for(const auto& callback : change_callbacks) {
callback.second(pin, state, value_buffer[pin]);
2023-12-28 12:01:37 +00:00
}
}
void DigitalOutputCard::setValue(uint8_t pin, uint16_t value) {
// If value is greater than 4095, set it to 4095
if (value > 4095) value = 4095;
this-> value_buffer[pin] = value;
this->pwm.setPin(pin, state_buffer[pin]*value);
2023-12-28 12:35:53 +00:00
if (this->framAutoSave) {
this->savePinValueToFRAM(pin);
}
for (const auto& callback : change_callbacks)
{
callback.second(pin, state_buffer[pin], value);
2023-12-28 12:01:37 +00:00
}
}
void DigitalOutputCard::registerChangeCallback(std::function<void(uint8_t, bool, uint16_t)> callback) {
this->change_callbacks[this->callbacks_handler_index++] = callback;
}
2023-12-28 12:01:37 +00:00
void DigitalOutputCard::deregisterChangeCallback(uint8_t handler) {
this->change_callbacks.erase(handler);
}
2023-12-28 12:01:37 +00:00
void DigitalOutputCard::loadPinMap(uint8_t pinMap[16]) {
for(int i = 0; i < 16; i++) {
this->pinMap[i] = pinMap[i];
this->virtualPinMap[pinMap[i]] = i;
}
2023-12-28 12:35:53 +00:00
}
void DigitalOutputCard::bindFRAM(FRAM *fram, uint16_t address) {
this->fram = fram;
this->framBinded = true;
this->framAddress = address;
}
uint16_t DigitalOutputCard::packStates() {
uint16_t packed = 0;
for(int i = 0; i < 16; i++) {
packed |= (state_buffer[i] << i);
}
return packed;
}
void DigitalOutputCard::unpackStates(uint16_t states) {
for(int i = 0; i < 16; i++) {
this->setState(i, (states >> i) & 1);
}
}
void DigitalOutputCard::saveToFRAM() {
if(!framBinded) return;
// Save the state
uint16_t packed = packStates();
this->fram->write16(framAddress, packed);
// Save the value
this->fram->write(framAddress+2, (uint8_t*)value_buffer, 32);
}
void DigitalOutputCard::loadFromFRAM() {
if(!framBinded) return;
// Load the state
uint16_t packed = this->fram->read16(framAddress);
unpackStates(packed);
// Load the value
uint16_t value[16];
this->fram->read(framAddress+2, (uint8_t*)value, 32);
for(int i = 0; i < 16; i++) {
this->setValue(i, value[i]);
}
}
void DigitalOutputCard::setAutoSaveToFRAM(bool autoSave) {
this->framAutoSave = autoSave;
}
void DigitalOutputCard::savePinValueToFRAM(uint8_t pin) {
if(!framBinded) return;
this->fram->write(framAddress+2+pin*2, (uint8_t*)&value_buffer[pin], 2);
}
void DigitalOutputCard::saveStateToFRAM() {
if(!framBinded) return;
uint16_t packed = packStates();
this->fram->write16(framAddress, packed);
2023-12-28 12:01:37 +00:00
}