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b7ccdfd5d3
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56cddf7073
7 changed files with 79 additions and 20 deletions
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@ -8,6 +8,6 @@ RUN cd app/modules/sdk; export CT_EXPERIMENTAL=y; export CT_ALLOW_BUILD_AS_ROOT=
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USER 0
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USER 0
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RUN apt remove --purge -y python2 && apt autoremove --purge -y && apt install -y python3 python3-serial
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RUN apt remove --purge -y python2 && apt autoremove --purge -y && apt install -y python3 python3-serial
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RUN apt install -y --reinstall python-is-python3
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RUN apt install -y --reinstall python-is-python3
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USER 0
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USER 1000
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WORKDIR /app
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WORKDIR /app
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ENV PATH=/app/modules/sdk/xtensa-lx106-elf/bin:$PATH
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ENV PATH=/app/modules/sdk/xtensa-lx106-elf/bin:$PATH
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@ -11,9 +11,9 @@
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#include <espressif/esp_common.h>
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#include <espressif/esp_common.h>
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#include <esp/uart.h>
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#include <esp/uart.h>
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void user_init(void)
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#define PUB_MSG_LEN 16
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{
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void user_init(void) {
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uart_set_baud(0, 115200);
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uart_set_baud(0, 115200);
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printf("SDK version: %s\n", sdk_system_get_sdk_version());
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printf("SDK version: %s\n", sdk_system_get_sdk_version());
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@ -30,4 +30,11 @@ void user_init(void)
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xTaskCreate(&httpd_task, "httpd_task", 1024, NULL, 2, NULL);
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xTaskCreate(&httpd_task, "httpd_task", 1024, NULL, 2, NULL);
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xTaskCreate(&lux_task, "lux_task", 512, NULL, 1, NULL);
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xTaskCreate(&lux_task, "lux_task", 512, NULL, 1, NULL);
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wifi_alive = xSemaphoreCreateBinary();
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publish_queue = xQueueCreate(3, PUB_MSG_LEN);
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xTaskCreate(&beat_task, "beat_task", 256, NULL, 3, NULL);
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}
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}
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@ -3,6 +3,7 @@
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//
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//
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#include "mqtt.h"
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#include "mqtt.h"
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#include "wifi.h"
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#include <stdio.h>
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#include <stdio.h>
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#include <string.h>
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#include <string.h>
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@ -22,15 +23,18 @@ extern "C" {
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/* You can use http://test.mosquitto.org/ to test mqtt_client instead
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/* You can use http://test.mosquitto.org/ to test mqtt_client instead
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* of setting up your own MQTT server */
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* of setting up your own MQTT server */
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#define MQTT_HOST ("172.16.0.42")
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//#define MQTT_HOST ("172.16.0.42")
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#define MQTT_HOST ("10.23.42.187")
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#define MQTT_PORT 1883
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#define MQTT_PORT 1883
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#define MQTT_USER NULL
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#define MQTT_USER NULL
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#define MQTT_PASS NULL
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#define MQTT_PASS NULL
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QueueHandle_t publish_queue;
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#define PUB_MSG_LEN 16
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#define PUB_MSG_LEN 16
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QueueHandle_t publish_queue;
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extern "C" void beat_task(void *pvParameters) {
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extern "C" void beat_task(void *pvParameters) {
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TickType_t xLastWakeTime = xTaskGetTickCount();
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TickType_t xLastWakeTime = xTaskGetTickCount();
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char msg[PUB_MSG_LEN];
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char msg[PUB_MSG_LEN];
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@ -98,13 +102,14 @@ extern "C" void mqtt_task(void *pvParameters) {
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strcat(mqtt_client_id, get_my_id());
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strcat(mqtt_client_id, get_my_id());
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while (1) {
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while (1) {
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xSemaphoreTake(wifi_alive, portMAX_DELAY);
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printf("%s: started\n\r", __func__);
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printf("%s: started\n\r", __func__);
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printf("%s: (Re)connecting to MQTT server %s ... ", __func__,
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printf("%s: (Re)connecting to MQTT server %s ... ", __func__,
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MQTT_HOST);
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MQTT_HOST);
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ret = mqtt_network_connect(&network, MQTT_HOST, MQTT_PORT);
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ret = mqtt_network_connect(&network, MQTT_HOST, MQTT_PORT);
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if(ret) {
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if(ret) {
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printf("error: %d\n\r", ret);
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printf("error 1: %d\n\r", ret);
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taskYIELD();
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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continue;
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continue;
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}
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}
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printf("done\n\r");
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printf("done\n\r");
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@ -121,9 +126,9 @@ extern "C" void mqtt_task(void *pvParameters) {
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printf("Send MQTT connect ... ");
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printf("Send MQTT connect ... ");
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ret = mqtt_connect(&client, &data);
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ret = mqtt_connect(&client, &data);
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if(ret) {
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if(ret) {
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printf("error: %d\n\r", ret);
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printf("error 2: %d\n\r", ret);
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mqtt_network_disconnect(&network);
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mqtt_network_disconnect(&network);
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taskYIELD();
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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continue;
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continue;
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}
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}
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printf("done\r\n");
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printf("done\r\n");
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@ -5,6 +5,10 @@
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#ifndef FIRMWARE_MQTT_H
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#ifndef FIRMWARE_MQTT_H
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#define FIRMWARE_MQTT_H
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#define FIRMWARE_MQTT_H
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#include <FreeRTOS.h>
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#include <queue.h>
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#ifdef __cplusplus
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#ifdef __cplusplus
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extern "C" {
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extern "C" {
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#endif
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#endif
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@ -12,6 +16,8 @@ extern "C" {
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void mqtt_task(void *pvParameters);
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void mqtt_task(void *pvParameters);
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void beat_task(void *pvParameters);
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void beat_task(void *pvParameters);
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extern QueueHandle_t publish_queue;
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#ifdef __cplusplus
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#ifdef __cplusplus
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}
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}
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#endif
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#endif
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@ -60,7 +60,8 @@ void websocket_task(void *pvParameter) {
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UNLOCK_TCPIP_CORE();
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UNLOCK_TCPIP_CORE();
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} else
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} else
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syslog("buffer too small -1\n");
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syslog("buffer too small -1\n");
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vTaskDelayMs(1000);
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taskYIELD();
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}
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}
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//Global Info
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//Global Info
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@ -94,7 +95,8 @@ void websocket_task(void *pvParameter) {
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UNLOCK_TCPIP_CORE();
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UNLOCK_TCPIP_CORE();
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} else
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} else
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syslog("buffer too small 0\n");
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syslog("buffer too small 0\n");
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vTaskDelayMs(1000);
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taskYIELD();
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}
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}
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//Connection Info
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//Connection Info
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@ -117,7 +119,8 @@ void websocket_task(void *pvParameter) {
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UNLOCK_TCPIP_CORE();
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UNLOCK_TCPIP_CORE();
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} else
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} else
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syslog("buffer too small 1\n");
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syslog("buffer too small 1\n");
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vTaskDelayMs(1000);
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taskYIELD();
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}
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}
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if(has_changed.wifi) {
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if(has_changed.wifi) {
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@ -175,7 +178,8 @@ void websocket_task(void *pvParameter) {
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syslog("buffer too small 2\n");
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syslog("buffer too small 2\n");
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}
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}
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vTaskDelayMs(1000);
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taskYIELD();
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if(opmode == STATION_MODE || opmode == STATIONAP_MODE) {
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if(opmode == STATION_MODE || opmode == STATIONAP_MODE) {
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uint8_t hwaddr[6];
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uint8_t hwaddr[6];
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}
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}
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vTaskDelayMs(250);
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taskYIELD();
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{
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{
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uint8_t response[3];
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uint8_t response[3];
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uint16_t val;
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uint16_t val;
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if(ret == OK) {
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if(ret == OK) {
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if(cmd == 'R' || cmd == 'C') { // Restart
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if(cmd == 'R' || cmd == 'C') { // Restart
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printf("rebooting now");
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printf("rebooting now");
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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taskYIELD();
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vPortEnterCritical();
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vPortEnterCritical();
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sdk_system_restart();
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sdk_system_restart();
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} else if(cmd == 'X') { // Clear Config
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} else if(cmd == 'X') { // Clear Config
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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taskYIELD();
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system_clear_config();
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system_clear_config();
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}
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}
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}
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}
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extern "C" void httpd_task(void *pvParameters) {
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extern "C" void httpd_task(void *pvParameters) {
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(void) pvParameters;
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(void) pvParameters;
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while (!uxSemaphoreGetCount(wifi_available_semaphore))
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//while (!uxSemaphoreGetCount(wifi_available_semaphore))
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vTaskDelay(500 / portTICK_PERIOD_MS);
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// taskYIELD();
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printf("httpd_task: wifi is available\n");
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websocket_register_callbacks((tWsOpenHandler) websocket_open_cb, (tWsHandler) websocket_cb);
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websocket_register_callbacks((tWsOpenHandler) websocket_open_cb, (tWsHandler) websocket_cb);
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httpd_init();
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httpd_init();
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@ -32,6 +32,7 @@ char *wifi_ap_ssid = nullptr;
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char *wifi_ap_password = nullptr;
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char *wifi_ap_password = nullptr;
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SemaphoreHandle_t wifi_available_semaphore = nullptr;
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SemaphoreHandle_t wifi_available_semaphore = nullptr;
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SemaphoreHandle_t wifi_alive = nullptr;
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[[noreturn]] static void dns_task(void *pvParameters) {
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[[noreturn]] static void dns_task(void *pvParameters) {
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char *wifi_ap_ip_addr = nullptr;
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char *wifi_ap_ip_addr = nullptr;
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xSemaphoreGive(wifi_available_semaphore);
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xSemaphoreGive(wifi_available_semaphore);
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//monitor loop connection here
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//monitor loop connection here
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vTaskDelete(nullptr);
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uint8_t status = 0;
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uint8_t retries = 30;
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while (1) {
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while ((status != STATION_GOT_IP) && (retries)) {
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status = sdk_wifi_station_get_connect_status();
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printf("%s: status = %d\n\r", __func__, status);
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if(status == STATION_WRONG_PASSWORD) {
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printf("WiFi: wrong password\n\r");
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break;
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} else if(status == STATION_NO_AP_FOUND) {
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printf("WiFi: AP not found\n\r");
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break;
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} else if(status == STATION_CONNECT_FAIL) {
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printf("WiFi: connection failed\r\n");
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break;
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}
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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--retries;
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}
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if(status == STATION_GOT_IP) {
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printf("WiFi: Connected\n\r");
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xSemaphoreGive(wifi_alive);
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taskYIELD();
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}
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while ((status = sdk_wifi_station_get_connect_status()) == STATION_GOT_IP) {
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xSemaphoreGive(wifi_alive);
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taskYIELD();
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}
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printf("WiFi: disconnected\n\r");
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sdk_wifi_station_disconnect();
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vTaskDelay(1000 / portTICK_PERIOD_MS);
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}
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}
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}
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#endif
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#endif
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extern SemaphoreHandle_t wifi_available_semaphore;
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extern SemaphoreHandle_t wifi_available_semaphore;
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extern SemaphoreHandle_t wifi_alive;
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void wifi_task(void *pvParameters);
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void wifi_task(void *pvParameters);
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