mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-07 16:29:51 +03:00
tx_mode = tx_delay
This commit is contained in:
@@ -10,7 +10,7 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
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### Added
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- MM50 Mixer
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- tx_delay takes a value from 0 to 3 for the different Tx logic
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- tx_mode takes a value from 0 to 3 for the different Tx logic
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0 = original classic ems logic
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@@ -1186,7 +1186,7 @@ void MyESP::_fs_eraseConfig() {
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"automatically restart when finished."));
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if (SPIFFS.format()) {
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delay(1000); // wait 1 seconds
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delay(1000); // wait 1 second
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resetESP();
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}
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}
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@@ -106,7 +106,7 @@ command_t project_cmds[] = {
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{true, "shower_alert <on | off>", "send a warning of cold water after shower time is exceeded"},
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{true, "publish_wait <seconds>", "set frequency for publishing to MQTT"},
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{true, "heating_circuit <1 | 2>", "set the thermostat HC to work with if using multiple heating circuits"},
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{true, "tx_delay <n>", "0=classic ems logic, 1=@kwertie01 ems+ logic, 2=@susisstrolch logic, 3=@philrich logic for Junkers"},
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{true, "tx_mode <n>", "0=classic ems logic, 1=@kwertie01 ems+ logic, 2=@susisstrolch logic, 3=@philrich logic for Junkers"},
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{false, "info", "show data captured on the EMS bus"},
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{false, "log <n | b | t | r | v>", "set logging mode to none, basic, thermostat only, raw or verbose"},
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@@ -338,11 +338,13 @@ void showInfo() {
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if (ems_getBusConnected()) {
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myDebug_P(PSTR(" Bus is connected"));
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myDebug_P(PSTR(" Rx: Poll=%d microseconds, # Rx telegrams read=%d, # CRC errors=%d"), ems_getPollFrequency(), EMS_Sys_Status.emsRxPgks, EMS_Sys_Status.emxCrcErr);
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myDebug_P(PSTR(" Rx: # successful read requests=%d, # CRC errors=%d"), EMS_Sys_Status.emsRxPgks, EMS_Sys_Status.emxCrcErr);
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if (ems_getTxCapable()) {
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myDebug_P(PSTR(" Tx: available, Tx delay is %d, # successful write commands=%d"), ems_getTxDelay(), EMS_Sys_Status.emsTxPkgs);
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char valuestr[8] = {0}; // for formatting floats
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myDebug_P(PSTR(" Tx: Last poll=%s seconds ago, Tx mode=%d, # successful write requests=%d"),
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_float_to_char(valuestr, (ems_getPollFrequency() / (float)1000000), 3),
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EMS_Sys_Status.emsTxPkgs);
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} else {
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myDebug_P(PSTR(" Tx: no signal"));
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}
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@@ -1020,8 +1022,8 @@ bool FSCallback(MYESP_FSACTION action, const JsonObject json) {
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// shower_alert
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EMSESP_Status.shower_alert = json["shower_alert"];
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// tx delay
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ems_setTxDelay(json["tx_delay"]);
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// tx mode
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ems_setTxMode(json["tx_mode"]);
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// publish_wait
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if (!(EMSESP_Status.publish_wait = json["publish_wait"])) {
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@@ -1049,7 +1051,7 @@ bool FSCallback(MYESP_FSACTION action, const JsonObject json) {
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json["shower_alert"] = EMSESP_Status.shower_alert;
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json["publish_wait"] = EMSESP_Status.publish_wait;
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json["heating_circuit"] = EMSESP_Status.heating_circuit;
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json["tx_delay"] = ems_getTxDelay();
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json["tx_mode"] = ems_getTxMode();
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return true;
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}
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@@ -1180,9 +1182,9 @@ bool SettingsCallback(MYESP_FSACTION action, uint8_t wc, const char * setting, c
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}
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}
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// tx delay
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if ((strcmp(setting, "tx_delay") == 0) && (wc == 2)) {
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ems_setTxDelay(atoi(value));
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// tx delay/ tx mode
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if (((strcmp(setting, "tx_mode") == 0) || (strcmp(setting, "tx_delay") == 0)) && (wc == 2)) {
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ems_setTxMode(atoi(value));
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ok = true;
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}
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}
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@@ -1211,7 +1213,7 @@ bool SettingsCallback(MYESP_FSACTION action, uint8_t wc, const char * setting, c
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myDebug_P(PSTR(" shower_timer=%s"), EMSESP_Status.shower_timer ? "on" : "off");
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myDebug_P(PSTR(" shower_alert=%s"), EMSESP_Status.shower_alert ? "on" : "off");
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myDebug_P(PSTR(" publish_wait=%d"), EMSESP_Status.publish_wait);
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myDebug_P(PSTR(" tx_delay=%d"), ems_getTxDelay());
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myDebug_P(PSTR(" tx_mode=%d"), ems_getTxMode());
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}
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return ok;
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30
src/ems.cpp
30
src/ems.cpp
@@ -199,9 +199,9 @@ const uint8_t ems_crc_table[] = {0x00, 0x02, 0x04, 0x06, 0x08, 0x0A, 0x0C, 0x0E,
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0xA1, 0xA3, 0xA5, 0xA7, 0xD9, 0xDB, 0xDD, 0xDF, 0xD1, 0xD3, 0xD5, 0xD7, 0xC9, 0xCB, 0xCD, 0xCF, 0xC1, 0xC3, 0xC5, 0xC7,
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0xF9, 0xFB, 0xFD, 0xFF, 0xF1, 0xF3, 0xF5, 0xF7, 0xE9, 0xEB, 0xED, 0xEF, 0xE1, 0xE3, 0xE5, 0xE7};
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const uint8_t TX_WRITE_TIMEOUT_COUNT = 2; // 3 retries before timeout
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const uint32_t EMS_BUS_TIMEOUT = 15000; // timeout in ms before recognizing the ems bus is offline (15 seconds)
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const uint32_t EMS_POLL_TIMEOUT = 5000; // timeout in ms before recognizing the ems bus is offline (5 seconds)
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const uint8_t TX_WRITE_TIMEOUT_COUNT = 2; // 3 retries before timeout
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const uint32_t EMS_BUS_TIMEOUT = 15000; // timeout in ms before recognizing the ems bus is offline (15 seconds)
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const uint32_t EMS_POLL_TIMEOUT = 5000000; // timeout in microseconds before recognizing the ems bus is offline (5 seconds)
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// init stats and counters and buffers
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// uses -255 or 255 for values that haven't been set yet (EMS_VALUE_INT_NOTSET and EMS_VALUE_FLOAT_NOTSET)
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@@ -220,7 +220,7 @@ void ems_init() {
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EMS_Sys_Status.emsTxDisabled = false;
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EMS_Sys_Status.emsPollFrequency = 0;
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EMS_Sys_Status.txRetryCount = 0;
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EMS_Sys_Status.emsTxDelay = 0;
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EMS_Sys_Status.emsTxMode = 0;
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EMS_Sys_Status.emsReverse = false;
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// thermostat
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@@ -330,19 +330,19 @@ bool ems_getPoll() {
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return EMS_Sys_Status.emsPollEnabled;
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}
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void ems_setTxDelay(uint8_t delay) {
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EMS_Sys_Status.emsTxDelay = delay;
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void ems_setTxMode(uint8_t mode) {
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EMS_Sys_Status.emsTxMode = mode;
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// special case for Junkers. If tx_delay is 3 then set the reverse poll flag
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// special case for Junkers. If tx_mode is 3 then set the reverse poll flag
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// https://github.com/proddy/EMS-ESP/issues/103#issuecomment-495945850
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if (delay == 3) {
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if (mode == 3) {
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EMS_Sys_Status.emsReverse = true;
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myDebug_P(PSTR("Setting for Tx Junkers logic and enabled the poll reverse flag"));
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}
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}
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uint8_t ems_getTxDelay() {
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return EMS_Sys_Status.emsTxDelay;
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uint8_t ems_getTxMode() {
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return EMS_Sys_Status.emsTxMode;
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}
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bool ems_getEmsRefreshed() {
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@@ -690,15 +690,17 @@ void _ems_readTelegram(uint8_t * telegram, uint8_t length) {
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// it could well be a Poll request from the boiler for us, which will have a value of 0x8B (0x0B | 0x80)
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// or either a return code like 0x01 or 0x04 from the last Write command
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if (length == 1) {
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uint32_t timenow_microsecs = micros();
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EMS_Sys_Status.emsPollFrequency = (timenow_microsecs - _last_emsPollFrequency);
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_last_emsPollFrequency = timenow_microsecs;
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uint8_t value = telegram[0]; // 1st byte of data package
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// check first for a Poll for us
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// the poll has the MSB set - seems to work on both EMS and Junkers
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if (value == (EMS_ID_ME | 0x80)) {
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EMS_Sys_Status.emsTxCapable = true;
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uint32_t timenow_microsecs = micros();
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EMS_Sys_Status.emsPollFrequency = (timenow_microsecs - _last_emsPollFrequency);
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_last_emsPollFrequency = timenow_microsecs;
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// do we have something to send thats waiting in the Tx queue?
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// if so send it if the Queue is not in a wait state
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if ((!EMS_TxQueue.isEmpty()) && (EMS_Sys_Status.emsTxStatus == EMS_TX_STATUS_IDLE)) {
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@@ -94,7 +94,7 @@ typedef struct {
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bool emsTxCapable; // able to send via Tx
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bool emsTxDisabled; // true to prevent all Tx
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uint8_t txRetryCount; // # times the last Tx was re-sent
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uint8_t emsTxDelay; // handles Tx logic
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uint8_t emsTxMode; // handles Tx logic
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bool emsReverse; // if true, poll logic is reversed
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} _EMS_Sys_Status;
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@@ -302,7 +302,7 @@ void ems_setFlowTemp(uint8_t temperature);
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void ems_setWarmWaterActivated(bool activated);
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void ems_setWarmTapWaterActivated(bool activated);
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void ems_setPoll(bool b);
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void ems_setTxDelay(uint8_t delay);
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void ems_setTxMode(uint8_t mode);
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void ems_setLogging(_EMS_SYS_LOGGING loglevel);
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void ems_setEmsRefreshed(bool b);
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void ems_setWarmWaterModeComfort(uint8_t comfort);
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@@ -317,7 +317,7 @@ bool ems_getPoll();
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bool ems_getTxEnabled();
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bool ems_getThermostatEnabled();
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bool ems_getBoilerEnabled();
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uint8_t ems_getTxDelay();
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uint8_t ems_getTxMode();
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bool ems_getBusConnected();
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_EMS_SYS_LOGGING ems_getLogging();
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bool ems_getEmsRefreshed();
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@@ -175,9 +175,9 @@ void ICACHE_FLASH_ATTR emsuart_tx_brk() {
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// automatically be sent when the tx fifo is empty
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tmp = (1 << UCBRK);
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USC0(EMSUART_UART) |= (tmp); // set bit
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if (EMS_Sys_Status.emsTxDelay <= 2) {
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if (EMS_Sys_Status.emsTxMode <= 2) {
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delayMicroseconds(EMSUART_TX_BRK_WAIT); // classic mode
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} else if (EMS_Sys_Status.emsTxDelay == 3) {
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} else if (EMS_Sys_Status.emsTxMode == 3) {
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delayMicroseconds(EMSUART_TX_WAIT_BRK - EMSUART_TX_LAG); // 1144 (11 Bits)
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}
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USC0(EMSUART_UART) &= ~(tmp); // clear bit
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@@ -197,18 +197,18 @@ static inline void ICACHE_FLASH_ATTR emsuart_loopback(bool enable) {
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* Send to Tx, ending with a <BRK>
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*/
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void ICACHE_FLASH_ATTR emsuart_tx_buffer(uint8_t * buf, uint8_t len) {
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if (EMS_Sys_Status.emsTxDelay == 0) { // Classic logic
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if (EMS_Sys_Status.emsTxMode == 0) { // Classic logic
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for (uint8_t i = 0; i < len; i++) {
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USF(EMSUART_UART) = buf[i];
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}
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emsuart_tx_brk(); // send <BRK>
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} else if (EMS_Sys_Status.emsTxDelay == 1) { // With extra tx delay for EMS+
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} else if (EMS_Sys_Status.emsTxMode == 1) { // With extra tx delay for EMS+
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for (uint8_t i = 0; i < len; i++) {
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USF(EMSUART_UART) = buf[i];
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delayMicroseconds(EMSUART_TX_BRK_WAIT); // https://github.com/proddy/EMS-ESP/issues/23#
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}
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emsuart_tx_brk(); // send <BRK>
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} else if (EMS_Sys_Status.emsTxDelay == 3) { // Junkers logic by @philrich
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} else if (EMS_Sys_Status.emsTxMode == 3) { // Junkers logic by @philrich
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for (uint8_t i = 0; i < len; i++) {
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USF(EMSUART_UART) = buf[i];
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@@ -220,7 +220,7 @@ void ICACHE_FLASH_ATTR emsuart_tx_buffer(uint8_t * buf, uint8_t len) {
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delayMicroseconds(EMSUART_TX_WAIT_BYTE - EMSUART_TX_LAG + EMSUART_TX_WAIT_GAP);
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}
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emsuart_tx_brk(); // send <BRK>
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} else if (EMS_Sys_Status.emsTxDelay == 2) { // smart Tx - take two - https://github.com/proddy/EMS-ESP/issues/103 by @susisstrolch
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} else if (EMS_Sys_Status.emsTxMode == 2) { // smart Tx - take two - https://github.com/proddy/EMS-ESP/issues/103 by @susisstrolch
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/*
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* we emit the whole telegram, with Rx interrupt disabled, collecting busmaster response in FIFO.
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@@ -6,5 +6,5 @@
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#pragma once
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#define APP_NAME "EMS-ESP"
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#define APP_VERSION "1.8.0b4"
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#define APP_VERSION "1.8.0b5"
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#define APP_HOSTNAME "ems-esp"
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