mirror of https://github.com/arendst/Tasmota.git
Minor fixes
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@ -9,7 +9,7 @@ All notable changes to this project will be documented in this file.
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- Berry add support for `tcpclientasync` in `tcpserver` (#20401)
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- Berry add `tasmota.urlbecload(url:string) -> bool` (#20412)
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- GPIO Viewer to see realtime GPIO states. Enable with define USE_GPIO_VIEWER
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- Berry `gpio.read_pwm` and `gpio.read_pwm_resolution`
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- Berry `gpio.read_pwm` and `gpio.read_pwm_resolution` (#20414)
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### Breaking Changed
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@ -129,6 +129,7 @@ The latter links can be used for OTA upgrades too like ``OtaUrl https://ota.tasm
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- Berry `introspect.set()` for class attributes [#20339](https://github.com/arendst/Tasmota/issues/20339)
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- Berry add support for `tcpclientasync` in `tcpserver` [#20401](https://github.com/arendst/Tasmota/issues/20401)
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- Berry add `tasmota.urlbecload(url:string) -> bool` [#20412](https://github.com/arendst/Tasmota/issues/20412)
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- Berry `gpio.read_pwm` and `gpio.read_pwm_resolution` [#20414](https://github.com/arendst/Tasmota/issues/20414)
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- HASPmota `haspmota.page_show()` to change page [#20333](https://github.com/arendst/Tasmota/issues/20333)
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- HASPmota type `chart` [#20372](https://github.com/arendst/Tasmota/issues/20372)
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- Matter support for password for remote Tasmota devices [#20296](https://github.com/arendst/Tasmota/issues/20296)
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@ -23,12 +23,10 @@ const char *GVRelease = "1.0.5";
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#define GV_BASE_URL "https://thelastoutpostworkshop.github.io/microcontroller_devkit/gpio_viewer/assets/"
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#ifdef ESP32
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const int GVMaxGPIOPins = 49;
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// Global variables to capture PMW pins
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const int GVMaxChannels = 64;
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#endif // ESP32
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#ifdef ESP8266
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const int GVMaxGPIOPins = 18;
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// Global variables to capture PMW pins
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const int GVMaxChannels = MAX_PWMS;
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#endif // ESP8266
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@ -49,7 +47,7 @@ const char HTTP_GV_PAGE[] PROGMEM =
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"var ip='%s';" // WiFi.localIP().toString().c_str()
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"var source=new EventSource('http://%s:" STR(GV_PORT) "/events');" // WiFi.localIP().toString().c_str()
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"var sampling_interval='" STR(GV_SAMPLING_INTERVAL) "';"
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"var freeSketchSpace='%d';" // GV.freeRAM
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"var freeSketchSpace='%s';" // GVFormatBytes(ESP_getFreeSketchSpace()).c_str()
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"</script>"
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"</head>"
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"<body>"
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@ -66,6 +64,13 @@ const char HTTP_GV_PAGE[] PROGMEM =
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"</body>"
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"</html>";
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const char HTTP_GV_EVENT[] PROGMEM =
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"HTTP/1.1 200 OK\n"
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"Content-Type: text/event-stream;\n"
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"Connection: keep-alive\n"
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"Cache-Control: no-cache\n"
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"Access-Control-Allow-Origin: *\n\n";
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enum GVPinTypes {
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digitalPin = 0,
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PWMPin = 1,
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@ -76,12 +81,12 @@ struct {
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WiFiClient WebClient;
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ESP8266WebServer *WebServer;
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int freeHeap;
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uint32_t lastPinStates[GVMaxGPIOPins];
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uint32_t lastPinStates[MAX_GPIO_PIN];
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int ledcChannelPin[GVMaxChannels][2];
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int ledcChannelPinCount;
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int ledcChannelResolution[GVMaxChannels][2];
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int ledcChannelResolutionCount;
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bool first;
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bool sse_ready;
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bool active;
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} GV;
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@ -160,7 +165,7 @@ int GVMapLedcReadTo8Bit(int channel, uint32_t *originalValue) {
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uint32_t maxDutyCycle = (1 << GVGetChannelResolution(channel)) - 1;
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#ifdef ESP32
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*originalValue = ledcRead(channel);
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*originalValue = ledcRead2(channel);
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#endif // ESP32
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#ifdef ESP8266
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if (17 == channel) {
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@ -215,13 +220,13 @@ void GVResetStatePins(void) {
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uint32_t pintype;
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AddLog(LOG_LEVEL_INFO, "IOV: GPIOViewer Connected, sampling interval is " STR(GV_SAMPLING_INTERVAL) "ms");
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for (int i = 0; i < GVMaxGPIOPins; i++) {
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for (int i = 0; i < MAX_GPIO_PIN; i++) {
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GV.lastPinStates[i] = GVReadGPIO(i, &originalValue, &pintype);
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}
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}
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//void GVEventsSend(const char *message, const char *event=NULL, uint32_t id=0, uint32_t reconnect=0);
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void GVEventsSend(const char *message, const char *event, uint32_t id) {
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//void GVEventSend(const char *message, const char *event=NULL, uint32_t id=0, uint32_t reconnect=0);
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void GVEventSend(const char *message, const char *event, uint32_t id) {
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if (GV.WebClient.connected()) {
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// generateEventMessage() in AsyncEventSource.cpp
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// GV.WebClient.printf_P(PSTR("retry: 0\r\nid: %u\r\nevent: %s\r\ndata: %s\r\n\r\n"), id, event, message);
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@ -237,7 +242,7 @@ void GVMonitorTask(void) {
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String jsonMessage = "{";
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bool hasChanges = false;
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for (int i = 0; i < GVMaxGPIOPins; i++) {
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for (int i = 0; i < MAX_GPIO_PIN; i++) {
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int currentState = GVReadGPIO(i, &originalValue, &pintype);
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if (originalValue != GV.lastPinStates[i]) {
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@ -254,14 +259,14 @@ void GVMonitorTask(void) {
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if (hasChanges) {
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// events->send(jsonMessage.c_str(), "gpio-state", millis());
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GVEventsSend(jsonMessage.c_str(), "gpio-state", millis());
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GVEventSend(jsonMessage.c_str(), "gpio-state", millis());
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}
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uint32_t heap = ESP_getFreeHeap();
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if (heap != GV.freeHeap) {
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GV.freeHeap = heap;
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// events->send(GVFormatBytes(GV.freeHeap).c_str(), "free_heap", millis());
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GVEventsSend(GVFormatBytes(GV.freeHeap).c_str(), "free_heap", millis());
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GVEventSend(GVFormatBytes(GV.freeHeap).c_str(), "free_heap", millis());
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}
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}
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@ -269,44 +274,40 @@ void GVBegin(void) {
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GVPrintPWNTraps();
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GV.WebServer = new ESP8266WebServer(GV_PORT);
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// GV.WebServer->setContentLength(CONTENT_LENGTH_UNKNOWN); // the payload can go on forever
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// Set CORS headers for global responses
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GV.WebServer->sendHeader("Access-Control-Allow-Origin", "*");
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GV.WebServer->sendHeader("Access-Control-Allow-Methods", "GET, POST, OPTIONS");
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GV.WebServer->sendHeader("Access-Control-Allow-Headers", "Content-Type");
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GV.WebServer->on("/events", GVHandleEvents);
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GV.WebServer->on("/", GVHandleRoot);
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GV.WebServer->on("/release", GVHandleRelease);
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GV.WebServer->begin();
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}
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void GVHandleEvents(void) {
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if (!GV.first) {
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GVResetStatePins();
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GV.first = true;
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GVResetStatePins();
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GV.WebClient = GV.WebServer->client();
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GV.WebClient.setNoDelay(true);
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// GV.WebClient.setSync(true);
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GV.WebClient = GV.WebServer->client();
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GV.WebClient.setNoDelay(true);
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// GV.WebClient.setSync(true);
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GV.WebServer->setContentLength(CONTENT_LENGTH_UNKNOWN); // The payload can go on forever
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GV.WebServer->sendContent_P(PSTR("HTTP/1.1 200 OK\nContent-Type: text/event-stream;\nConnection: keep-alive\nCache-Control: no-cache\nAccess-Control-Allow-Origin: *\n\n"));
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}
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GV.WebServer->setContentLength(CONTENT_LENGTH_UNKNOWN); // The payload can go on forever
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GV.WebServer->sendContent_P(HTTP_GV_EVENT);
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GV.sse_ready = true; // Ready for async updates
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}
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void GVHandleRoot(void) {
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char* content = ext_snprintf_malloc_P(HTTP_GV_PAGE,
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WiFi.localIP().toString().c_str(),
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WiFi.localIP().toString().c_str(),
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GVFormatBytes(ESP.getFreeSketchSpace()).c_str());
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if (content == nullptr) { return; } // Avoid crash
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GVFormatBytes(ESP_getFreeSketchSpace()).c_str());
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if (content == nullptr) { return; } // Avoid crash
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GV.WebServer->send_P(200, "text/html", content);
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free(content);
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GV.sse_ready = false; // Allow restart of updates on page load
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}
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void GVHandleRelease(void) {
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@ -328,7 +329,7 @@ bool Xdrv121(uint32_t function) {
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if (GV.WebServer) { GV.WebServer->handleClient(); }
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break;
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case FUNC_EVERY_100_MSECOND:
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if (GV.first) { GVMonitorTask(); }
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if (GV.sse_ready) { GVMonitorTask(); }
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break;
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case FUNC_ACTIVE:
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result = true;
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