Added a new object: PrintCounter
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26b166d7cf
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@ -24,7 +24,112 @@
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#include "printcounter.h"
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#include <avr/eeprom.h>
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PrintCounter::PrintCounter(): super() {}
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PrintCounter::PrintCounter(): super() {
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this->loadStats();
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}
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bool PrintCounter::isLoaded() {
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return this->loaded;
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}
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void PrintCounter::initStats() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("initStats"));
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#endif
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this->loaded = true;
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this->data = {
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0, 0, 0, 0
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};
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this->saveStats();
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eeprom_write_byte((uint8_t*) this->addr, 0x16);
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}
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void PrintCounter::loadStats() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("loadStats"));
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#endif
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uint16_t addr = this->addr;
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// Checks if the EEPROM block is initialized
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if (eeprom_read_byte((uint8_t*) addr) != 0x16) this->initStats();
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else {
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// Skip the magic header byte
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addr += sizeof(uint8_t);
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// @todo This section will need rewrite once the ConfigurationStore
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// and/or PersistentStorage object comes along.
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this->data.totalPrints = eeprom_read_word((uint16_t*) addr);
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addr += sizeof(uint16_t);
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this->data.finishedPrints = eeprom_read_word((uint16_t*) addr);
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addr += sizeof(uint16_t);
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this->data.printTime = eeprom_read_dword((uint32_t*) addr);
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addr += sizeof(uint32_t);
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this->data.longestPrint = eeprom_read_dword((uint32_t*) addr);
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}
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this->loaded = true;
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}
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void PrintCounter::saveStats() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("saveStats"));
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#endif
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// Refuses to save data is object is not loaded
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if (!this->isLoaded()) return;
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// Skip the magic header byte
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uint16_t addr = this->addr + sizeof(uint8_t);
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// @todo This section will need rewrite once the ConfigurationStore
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// and/or PersistentStorage object comes along.
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eeprom_write_word ((uint16_t*) addr, this->data.totalPrints);
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addr += sizeof(uint16_t);
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eeprom_write_word ((uint16_t*) addr, this->data.finishedPrints);
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addr += sizeof(uint16_t);
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eeprom_write_dword((uint32_t*) addr, this->data.printTime);
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addr += sizeof(uint32_t);
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eeprom_write_dword((uint32_t*) addr, this->data.longestPrint);
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}
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void PrintCounter::showStats() {
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SERIAL_ECHOPGM("Print statistics: Total: ");
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SERIAL_ECHO(this->data.totalPrints);
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SERIAL_ECHOPGM(", Finished: ");
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SERIAL_ECHO(this->data.finishedPrints);
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SERIAL_ECHOPGM(", Failed: ");
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SERIAL_ECHO(this->data.totalPrints - this->data.finishedPrints);
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uint32_t t = this->data.printTime /60;
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SERIAL_ECHOPGM(", Total print time: ");
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SERIAL_ECHO(t / 60);
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SERIAL_ECHOPGM("h ");
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SERIAL_ECHO(t % 60);
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SERIAL_ECHOPGM("min");
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#if ENABLED(DEBUG_PRINTCOUNTER)
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SERIAL_ECHOPGM(" (");
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SERIAL_ECHO(this->data.printTime);
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SERIAL_ECHOPGM(")");
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#endif
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// @todo longestPrint missing implementation
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SERIAL_EOL;
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}
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void PrintCounter::tick() {
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if (!this->isRunning()) return;
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@ -38,9 +143,14 @@ void PrintCounter::tick() {
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const static uint16_t i = this->updateInterval * 1000;
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if (now - update_before >= i) {
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//this->addToTimeCounter((uint16_t) (now - update_before) / 1000);
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("tick"));
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#endif
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uint16_t t = this->duration();;
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this->data.printTime += t - this->lastUpdate;
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this->lastUpdate = t;
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update_before = now;
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PrintCounter::debug(PSTR("tick1"));
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}
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// Trying to get the amount of calculations down to the bare min
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@ -48,52 +158,37 @@ void PrintCounter::tick() {
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if (now - eeprom_before >= j) {
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eeprom_before = now;
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this->save();
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this->saveStats();
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}
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}
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void PrintCounter::load() {
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uint16_t pos = this->addr;
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this->data.successPrints= eeprom_read_word ((uint16_t*) pos);
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this->data.failedPrints = eeprom_read_word ((uint16_t*) pos);
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this->data.printTime = eeprom_read_dword((uint32_t*) pos);
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this->data.longestPrint = eeprom_read_dword((uint32_t*) pos);
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SERIAL_ECHOPGM("successPrints: ");
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SERIAL_ECHOLN(this->data.successPrints);
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SERIAL_ECHOPGM("failedPrints: ");
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SERIAL_ECHOLN(this->data.failedPrints);
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SERIAL_ECHOPGM("printTime: ");
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SERIAL_ECHOLN(this->data.printTime);
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SERIAL_ECHOPGM("longestPrint: ");
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SERIAL_ECHOLN(this->data.longestPrint);
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}
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void PrintCounter::save() {
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void PrintCounter::start() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("save"));
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PrintCounter::debug(PSTR("start"));
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#endif
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uint16_t pos = this->addr;
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eeprom_write_word ((uint16_t*) pos, this->data.successPrints);
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eeprom_write_word ((uint16_t*) pos, this->data.failedPrints);
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eeprom_write_dword((uint32_t*) pos, this->data.printTime);
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eeprom_write_dword((uint32_t*) pos, this->data.longestPrint);
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}
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void PrintCounter::start() {
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if (!this->isPaused()) this->data.totalPrints++;
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super::start();
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this->load();
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}
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void PrintCounter::stop() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("stop"));
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#endif
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super::stop();
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this->save();
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this->data.finishedPrints++;
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this->data.printTime += this->duration() - this->lastUpdate;
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this->saveStats();
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}
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void PrintCounter::reset() {
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#if ENABLED(DEBUG_PRINTCOUNTER)
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PrintCounter::debug(PSTR("stop"));
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#endif
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this->lastUpdate = 0;
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super::reset();
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}
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#if ENABLED(DEBUG_PRINTCOUNTER)
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@ -29,11 +29,12 @@
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// Print debug messages with M111 S2
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#define DEBUG_PRINTCOUNTER
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struct printStatistics { // 12 bytes
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uint16_t successPrints; // Total number of prints
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uint16_t failedPrints; // Total number of aborted prints - not in use
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uint32_t printTime; // Total time printing
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uint32_t longestPrint; // Longest print job - not in use
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struct printStatistics { // 13 bytes
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//uint8_t magic; // Magic header, it will always be 0x16
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uint16_t totalPrints; // Number of prints
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uint16_t finishedPrints; // Number of complete prints
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uint32_t printTime; // Total printing time
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uint32_t longestPrint; // Longest print job - not in use
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};
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class PrintCounter: public Stopwatch {
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@ -42,11 +43,19 @@ class PrintCounter: public Stopwatch {
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printStatistics data;
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/**
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* @brief Timestamp of the last update
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* @details Stores the timestamp of the last data.pritnTime update, when the
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* print job finishes, this will be used to calculate the exact time elapsed,
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* this is required due to the updateInterval cycle.
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*/
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uint16_t lastUpdate;
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/**
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* @brief EEPROM address
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* @details Defines the start offset address where the data is stored.
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*/
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const uint16_t addr = 60;
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const uint16_t addr = 50;
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/**
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* @brief Interval in seconds between counter updates
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@ -54,7 +63,7 @@ class PrintCounter: public Stopwatch {
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* accumulator update. This is different from the EEPROM save interval
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* which is user defined at the Configuration.h file.
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*/
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const uint16_t updateInterval = 2;
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const uint16_t updateInterval = 10;
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/**
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* @brief Interval in seconds between EEPROM saves
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@ -64,20 +73,65 @@ class PrintCounter: public Stopwatch {
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*/
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const uint16_t saveInterval = PRINTCOUNTER_SAVE_INTERVAL;
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/**
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* @brief Stats were loaded from EERPROM
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* @details If set to true it indicates if the statistical data was already
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* loaded from the EEPROM.
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*/
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bool loaded = false;
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public:
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/**
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* @brief Class constructor
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*/
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PrintCounter();
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void tick();
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void save();
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void load();
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void addToTimeCounter(uint16_t const &minutes);
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void addToPrintCounter(uint8_t const &prints);
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/**
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* @brief Checks if Print Statistics has been loaded
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* @details Returns true if the statistical data has been loaded.
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* @return bool
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*/
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bool isLoaded();
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/**
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* @brief Resets the Print Statistics
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* @details Resets the statistics to zero and saves them to EEPROM creating
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* also the magic header.
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*/
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void initStats();
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/**
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* @brief Loads the Print Statistics
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* @details Loads the statistics from EEPROM
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*/
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void loadStats();
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/**
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* @brief Saves the Print Statistics
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* @details Saves the statistics to EEPROM
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*/
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void saveStats();
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/**
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* @brief Serial output the Print Statistics
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* @details This function may change in the future, for now it directly
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* prints the statistical data to serial.
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*/
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void showStats();
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/**
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* @brief Loop function
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* @details This function should be called at loop, it will take care of
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* periodically save the statistical data to EEPROM and do time keeping.
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*/
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void tick();
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/**
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* The following functions are being overridden
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*/
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void start();
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void stop();
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void reset();
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#if ENABLED(DEBUG_PRINTCOUNTER)
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