328 lines
11 KiB
C
Executable File
328 lines
11 KiB
C
Executable File
/* WiFi station Example
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This example code is in the Public Domain (or CC0 licensed, at your option.)
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Unless required by applicable law or agreed to in writing, this
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software is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
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CONDITIONS OF ANY KIND, either express or implied.
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*/
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#include <string.h>
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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#include "freertos/event_groups.h"
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#include "esp_system.h"
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#include "esp_wifi.h"
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#include "esp_event.h"
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#include "esp_log.h"
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#include "nvs_flash.h"
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#include <stdlib.h>
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#include <unistd.h>
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#include <sys/param.h>
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#include "esp_netif.h"
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#include "esp_tls_crypto.h"
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#include <esp_http_server.h>
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#include "esp_tls.h"
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#include "lwip/err.h"
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#include "lwip/sys.h"
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#include "jannex.h"
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#define EXAMPLE_HTTP_QUERY_KEY_MAX_LEN (64)
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/* The examples use WiFi configuration that you can set via project configuration menu
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If you'd rather not, just change the below entries to strings with
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the config you want - ie #define EXAMPLE_WIFI_SSID "mywifissid"
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*/
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#define EXAMPLE_ESP_WIFI_SSID "FRITZL!Box"
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#define EXAMPLE_ESP_WIFI_PASS "wlanpass2"
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#define EXAMPLE_ESP_MAXIMUM_RETRY CONFIG_ESP_MAXIMUM_RETRY
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#if CONFIG_ESP_WPA3_SAE_PWE_HUNT_AND_PECK
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#define ESP_WIFI_SAE_MODE WPA3_SAE_PWE_HUNT_AND_PECK
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#define EXAMPLE_H2E_IDENTIFIER ""
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#elif CONFIG_ESP_WPA3_SAE_PWE_HASH_TO_ELEMENT
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#define ESP_WIFI_SAE_MODE WPA3_SAE_PWE_HASH_TO_ELEMENT
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#define EXAMPLE_H2E_IDENTIFIER CONFIG_ESP_WIFI_PW_ID
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#elif CONFIG_ESP_WPA3_SAE_PWE_BOTH
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#define ESP_WIFI_SAE_MODE WPA3_SAE_PWE_BOTH
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#define EXAMPLE_H2E_IDENTIFIER CONFIG_ESP_WIFI_PW_ID
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#endif
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#if CONFIG_ESP_WIFI_AUTH_OPEN
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_OPEN
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#elif CONFIG_ESP_WIFI_AUTH_WEP
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WEP
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#elif CONFIG_ESP_WIFI_AUTH_WPA_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WPA_PSK
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#elif CONFIG_ESP_WIFI_AUTH_WPA2_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WPA2_PSK
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#elif CONFIG_ESP_WIFI_AUTH_WPA_WPA2_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WPA_WPA2_PSK
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#elif CONFIG_ESP_WIFI_AUTH_WPA3_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WPA3_PSK
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#elif CONFIG_ESP_WIFI_AUTH_WPA2_WPA3_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WPA2_WPA3_PSK
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#elif CONFIG_ESP_WIFI_AUTH_WAPI_PSK
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#define ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD WIFI_AUTH_WAPI_PSK
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#endif
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/* FreeRTOS event group to signal when we are connected*/
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static EventGroupHandle_t s_wifi_event_group;
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/* The event group allows multiple bits for each event, but we only care about two events:
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* - we are connected to the AP with an IP
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* - we failed to connect after the maximum amount of retries */
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#define WIFI_CONNECTED_BIT BIT0
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#define WIFI_FAIL_BIT BIT1
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static const char *TAG = "wifi station";
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static int s_retry_num = 0;
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static void event_handler(void *arg, esp_event_base_t event_base,
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int32_t event_id, void *event_data)
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{
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if (event_base == WIFI_EVENT && event_id == WIFI_EVENT_STA_START)
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{
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esp_wifi_connect();
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}
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else if (event_base == WIFI_EVENT && event_id == WIFI_EVENT_STA_DISCONNECTED)
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{
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if (s_retry_num < EXAMPLE_ESP_MAXIMUM_RETRY)
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{
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esp_wifi_connect();
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s_retry_num++;
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ESP_LOGI(TAG, "retry to connect to the AP");
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}
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else
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{
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xEventGroupSetBits(s_wifi_event_group, WIFI_FAIL_BIT);
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}
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ESP_LOGI(TAG, "connect to the AP fail");
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}
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else if (event_base == IP_EVENT && event_id == IP_EVENT_STA_GOT_IP)
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{
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ip_event_got_ip_t *event = (ip_event_got_ip_t *)event_data;
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ESP_LOGI(TAG, "got ip:" IPSTR, IP2STR(&event->ip_info.ip));
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s_retry_num = 0;
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xEventGroupSetBits(s_wifi_event_group, WIFI_CONNECTED_BIT);
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}
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}
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void wifi_init_sta(void)
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{
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s_wifi_event_group = xEventGroupCreate();
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ESP_ERROR_CHECK(esp_netif_init());
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ESP_ERROR_CHECK(esp_event_loop_create_default());
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esp_netif_create_default_wifi_sta();
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wifi_init_config_t cfg = WIFI_INIT_CONFIG_DEFAULT();
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ESP_ERROR_CHECK(esp_wifi_init(&cfg));
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esp_event_handler_instance_t instance_any_id;
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esp_event_handler_instance_t instance_got_ip;
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ESP_ERROR_CHECK(esp_event_handler_instance_register(WIFI_EVENT,
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ESP_EVENT_ANY_ID,
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&event_handler,
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NULL,
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&instance_any_id));
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ESP_ERROR_CHECK(esp_event_handler_instance_register(IP_EVENT,
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IP_EVENT_STA_GOT_IP,
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&event_handler,
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NULL,
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&instance_got_ip));
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wifi_config_t wifi_config = {
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.sta = {
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.ssid = EXAMPLE_ESP_WIFI_SSID,
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.password = EXAMPLE_ESP_WIFI_PASS,
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/* Authmode threshold resets to WPA2 as default if password matches WPA2 standards (pasword len => 8).
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* If you want to connect the device to deprecated WEP/WPA networks, Please set the threshold value
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* to WIFI_AUTH_WEP/WIFI_AUTH_WPA_PSK and set the password with length and format matching to
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* WIFI_AUTH_WEP/WIFI_AUTH_WPA_PSK standards.
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*/
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.threshold.authmode = ESP_WIFI_SCAN_AUTH_MODE_THRESHOLD,
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.sae_pwe_h2e = ESP_WIFI_SAE_MODE,
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.sae_h2e_identifier = EXAMPLE_H2E_IDENTIFIER,
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},
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};
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ESP_ERROR_CHECK(esp_wifi_set_mode(WIFI_MODE_STA));
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ESP_ERROR_CHECK(esp_wifi_set_config(WIFI_IF_STA, &wifi_config));
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ESP_ERROR_CHECK(esp_wifi_start());
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ESP_LOGI(TAG, "wifi_init_sta finished.");
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/* Waiting until either the connection is established (WIFI_CONNECTED_BIT) or connection failed for the maximum
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* number of re-tries (WIFI_FAIL_BIT). The bits are set by event_handler() (see above) */
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EventBits_t bits = xEventGroupWaitBits(s_wifi_event_group,
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WIFI_CONNECTED_BIT | WIFI_FAIL_BIT,
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pdFALSE,
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pdFALSE,
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portMAX_DELAY);
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/* xEventGroupWaitBits() returns the bits before the call returned, hence we can test which event actually
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* happened. */
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if (bits & WIFI_CONNECTED_BIT)
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{
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ESP_LOGI(TAG, "connected to ap SSID:%s password:%s",
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EXAMPLE_ESP_WIFI_SSID, EXAMPLE_ESP_WIFI_PASS);
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}
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else if (bits & WIFI_FAIL_BIT)
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{
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ESP_LOGI(TAG, "Failed to connect to SSID:%s, password:%s",
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EXAMPLE_ESP_WIFI_SSID, EXAMPLE_ESP_WIFI_PASS);
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}
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else
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{
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ESP_LOGE(TAG, "UNEXPECTED EVENT");
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}
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}
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static esp_err_t hello_get_handler(httpd_req_t *req)
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{
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char *buf;
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size_t buf_len;
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/* Get header value string length and allocate memory for length + 1,
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* extra byte for null termination */
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buf_len = httpd_req_get_hdr_value_len(req, "Host") + 1;
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if (buf_len > 1)
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{
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buf = malloc(buf_len);
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/* Copy null terminated value string into buffer */
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if (httpd_req_get_hdr_value_str(req, "Host", buf, buf_len) == ESP_OK)
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{
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ESP_LOGI(TAG, "Found header => Host: %s", buf);
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}
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free(buf);
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}
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buf_len = httpd_req_get_hdr_value_len(req, "Test-Header-2") + 1;
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if (buf_len > 1)
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{
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buf = malloc(buf_len);
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if (httpd_req_get_hdr_value_str(req, "Test-Header-2", buf, buf_len) == ESP_OK)
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{
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ESP_LOGI(TAG, "Found header => Test-Header-2: %s", buf);
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}
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free(buf);
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}
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buf_len = httpd_req_get_hdr_value_len(req, "Test-Header-1") + 1;
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if (buf_len > 1)
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{
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buf = malloc(buf_len);
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if (httpd_req_get_hdr_value_str(req, "Test-Header-1", buf, buf_len) == ESP_OK)
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{
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ESP_LOGI(TAG, "Found header => Test-Header-1: %s", buf);
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}
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free(buf);
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}
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/* Read URL query string length and allocate memory for length + 1,
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* extra byte for null termination */
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buf_len = httpd_req_get_url_query_len(req) + 1;
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if (buf_len > 1)
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{
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buf = malloc(buf_len);
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if (httpd_req_get_url_query_str(req, buf, buf_len) == ESP_OK)
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{
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ESP_LOGI(TAG, "Found URL query => %s", buf);
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char param[EXAMPLE_HTTP_QUERY_KEY_MAX_LEN], dec_param[EXAMPLE_HTTP_QUERY_KEY_MAX_LEN] = {0};
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/* Get value of expected key from query string */
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if (httpd_query_key_value(buf, "start", param, sizeof(param)) == ESP_OK)
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{
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ESP_LOGI(TAG, "Found URL query parameter => query1=%s", param);
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// example_uri_decode(dec_param, param, strnlen(param, EXAMPLE_HTTP_QUERY_KEY_MAX_LEN));
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ESP_LOGI(TAG, "Decoded query parameter => %s", param);
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}
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}
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free(buf);
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}
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/* Set some custom headers */
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httpd_resp_set_hdr(req, "Custom-Header-1", "Custom-Value-1");
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httpd_resp_set_hdr(req, "Custom-Header-2", "Custom-Value-2");
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/* Send response with custom headers and body set as the
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* string passed in user context*/
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const char *resp_str = (const char *)req->user_ctx;
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httpd_resp_send(req, resp_str, HTTPD_RESP_USE_STRLEN);
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/* After sending the HTTP response the old HTTP request
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* headers are lost. Check if HTTP request headers can be read now. */
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if (httpd_req_get_hdr_value_len(req, "Host") == 0)
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{
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ESP_LOGI(TAG, "Request headers lost");
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}
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return ESP_OK;
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}
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static const httpd_uri_t hello = {
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.uri = "/hello",
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.method = HTTP_GET,
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.handler = hello_get_handler,
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/* Let's pass response string in user
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* context to demonstrate it's usage */
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.user_ctx = "Hello World!"};
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static httpd_handle_t start_webserver(void)
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{
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httpd_handle_t server = NULL;
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httpd_config_t config = HTTPD_DEFAULT_CONFIG();
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#if CONFIG_IDF_TARGET_LINUX
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// Setting port as 8001 when building for Linux. Port 80 can be used only by a priviliged user in linux.
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// So when a unpriviliged user tries to run the application, it throws bind error and the server is not started.
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// Port 8001 can be used by an unpriviliged user as well. So the application will not throw bind error and the
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// server will be started.
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config.server_port = 8001;
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#endif // !CONFIG_IDF_TARGET_LINUX
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config.lru_purge_enable = true;
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// Start the httpd server
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ESP_LOGI(TAG, "Starting server on port: '%d'", config.server_port);
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if (httpd_start(&server, &config) == ESP_OK)
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{
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// Set URI handlers
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ESP_LOGI(TAG, "Registering URI handlers");
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httpd_register_uri_handler(server, &hello);
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return server;
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}
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ESP_LOGI(TAG, "Error starting server!");
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return NULL;
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}
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void app_main(void)
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{
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// Initialize NVS
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esp_err_t ret = nvs_flash_init();
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if (ret == ESP_ERR_NVS_NO_FREE_PAGES || ret == ESP_ERR_NVS_NEW_VERSION_FOUND)
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{
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ESP_ERROR_CHECK(nvs_flash_erase());
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ret = nvs_flash_init();
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}
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ESP_ERROR_CHECK(ret);
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ESP_LOGI(TAG, "ESP_WIFI_MODE_STA");
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wifi_init_sta();
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initJannex();
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updateJannex();
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sleep(5);
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static httpd_handle_t server = NULL;
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server = start_webserver();
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while (server)
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{
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sleep(5);
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}
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}
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