mirror of https://github.com/arendst/Tasmota.git
v5.7.1f - Add dimmer parameter to Wakeup
5.7.1f * Reduce code and string length for output of commands Modules and GPIOs * Add optional dimmer parameter to command Wakeup for AiLight, Sonoff B1, Led and BN-SZ01 (#867)
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@ -1,7 +1,7 @@
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## Sonoff-Tasmota
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Provide ESP8266 based Sonoff by [iTead Studio](https://www.itead.cc/) and ElectroDragon IoT Relay with Serial, Web and MQTT control allowing 'Over the Air' or OTA firmware updates using Arduino IDE.
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Current version is **5.7.1e** - See [sonoff/_releasenotes.ino](https://github.com/arendst/Sonoff-Tasmota/blob/development/sonoff/_releasenotes.ino) for change information.
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Current version is **5.7.1f** - See [sonoff/_releasenotes.ino](https://github.com/arendst/Sonoff-Tasmota/blob/development/sonoff/_releasenotes.ino) for change information.
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### ATTENTION All versions
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@ -1,4 +1,8 @@
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/* 5.7.1e
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/* 5.7.1f
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* Reduce code and string length for output of commands Modules and GPIOs
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* Add optional dimmer parameter to command Wakeup (#867)
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*
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* 5.7.1e
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* Add Sonoff SC debug information
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* Change syslog service
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*
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@ -25,7 +25,7 @@
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- Select IDE Tools - Flash Size: "1M (no SPIFFS)"
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====================================================*/
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#define VERSION 0x05070105 // 5.7.1e
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#define VERSION 0x05070106 // 5.7.1f
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enum log_t {LOG_LEVEL_NONE, LOG_LEVEL_ERROR, LOG_LEVEL_INFO, LOG_LEVEL_DEBUG, LOG_LEVEL_DEBUG_MORE, LOG_LEVEL_ALL};
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enum week_t {Last, First, Second, Third, Fourth};
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@ -882,6 +882,8 @@ void mqttDataCb(char* topic, byte* data, unsigned int data_len)
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char *type = NULL;
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byte otype = 0;
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byte ptype = 0;
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byte jsflg = 0;
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byte lines = 1;
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uint16_t i = 0;
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uint16_t grpflg = 0;
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uint16_t index;
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@ -1178,29 +1180,23 @@ void mqttDataCb(char* topic, byte* data, unsigned int data_len)
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_MODULE "\":\"%d (%s)\"}"), sysCfg.module +1, stemp1);
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}
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else if (!strcasecmp_P(type, PSTR(D_CMND_MODULES))) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_MODULES "1\":\""));
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byte jsflg = 0;
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for (byte i = 0; i < MAXMODULE /2; i++) {
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if (jsflg) {
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for (byte i = 0; i < MAXMODULE; i++) {
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if (!jsflg) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_MODULES "%d\":\""), lines);
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} else {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s, "), mqtt_data);
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}
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jsflg = 1;
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snprintf_P(stemp1, sizeof(stemp1), modules[i].name);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s%d (%s)"), mqtt_data, i +1, stemp1);
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}
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if ((strlen(mqtt_data) > 200) || (i == MAXMODULE -1)) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s\"}"), mqtt_data);
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mqtt_publish_topic_P(5, type);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_MODULES "2\":\""));
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jsflg = 0;
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for (byte i = MAXMODULE /2; i < MAXMODULE; i++) {
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if (jsflg) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s, "), mqtt_data);
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lines++;
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}
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jsflg = 1;
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snprintf_P(stemp1, sizeof(stemp1), modules[i].name);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s%d (%s)"), mqtt_data, i +1, stemp1);
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}
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s\"}"), mqtt_data);
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mqtt_data[0] = '\0';
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}
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else if (!strcasecmp_P(type, PSTR(D_CMND_GPIO)) && (index < MAX_GPIO_PIN)) {
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mytmplt cmodule;
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@ -1233,29 +1229,23 @@ void mqttDataCb(char* topic, byte* data, unsigned int data_len)
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}
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}
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else if (!strcasecmp_P(type, PSTR(D_CMND_GPIOS))) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_GPIOS "1\":\""));
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byte jsflg = 0;
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for (byte i = 0; i < GPIO_SENSOR_END /2; i++) {
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if (jsflg) {
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for (byte i = 0; i < GPIO_SENSOR_END; i++) {
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if (!jsflg) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_GPIOS "%d\":\""), lines);
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} else {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s, "), mqtt_data);
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}
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jsflg = 1;
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snprintf_P(stemp1, sizeof(stemp1), sensors[i]);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s%d (%s)"), mqtt_data, i, stemp1);
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}
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if ((strlen(mqtt_data) > 200) || (i == GPIO_SENSOR_END -1)) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s\"}"), mqtt_data);
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mqtt_publish_topic_P(5, type);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_GPIOS "2\":\""));
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jsflg = 0;
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for (byte i = GPIO_SENSOR_END /2; i < GPIO_SENSOR_END; i++) {
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if (jsflg) {
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s, "), mqtt_data);
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lines++;
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}
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jsflg = 1;
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snprintf_P(stemp1, sizeof(stemp1), sensors[i]);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s%d (%s)"), mqtt_data, i, stemp1);
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}
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("%s\"}"), mqtt_data);
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mqtt_data[0] = '\0';
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}
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else if (!strcasecmp_P(type, PSTR(D_CMND_PWM)) && (index > pwm_idxoffset) && (index <= 5)) {
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if ((payload >= 0) && (payload <= PWM_RANGE) && (pin[GPIO_PWM1 + index -1] < 99)) {
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@ -549,6 +549,9 @@ boolean sl_command(char *type, uint16_t index, char *dataBufUc, uint16_t data_le
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_WAKEUPDURATION "\":%d}"), sysCfg.led_wakeup);
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}
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else if (!strcasecmp_P(type, PSTR(D_CMND_WAKEUP))) {
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if ((payload >= 0) && (payload <= 100)) {
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sysCfg.led_dimmer[0] = payload;
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}
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sl_wakeupActive = 3;
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do_cmnd_power(1, 1);
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snprintf_P(mqtt_data, sizeof(mqtt_data), PSTR("{\"" D_CMND_WAKEUP "\":\"" D_STARTED "\"}"));
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