Some Cleanup removed the example prefix from functions and structs
This commit is contained in:
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72851b69c5
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6d383e43b4
116
main/main.c
116
main/main.c
@ -29,12 +29,12 @@
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#define CONFIG_ESPNOW_SEND_LEN 250
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#define CONFIG_ESPNOW_LMK "lmk1234567890123"
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const char *tag = "Exam";
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static QueueHandle_t s_example_espnow_queue;
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static uint8_t s_example_broadcast_mac[ESP_NOW_ETH_ALEN] = {0xFF, 0xFF, 0xFF,
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const char *tag = "Alox";
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static QueueHandle_t s_espnow_queue;
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static uint8_t s_broadcast_mac[ESP_NOW_ETH_ALEN] = {0xFF, 0xFF, 0xFF,
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0xFF, 0xFF, 0xFF};
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static uint16_t s_example_espnow_seq[2] = {0, 0};
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static void example_espnow_deinit(example_espnow_send_param_t *send_param);
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static uint16_t s_espnow_seq[2] = {0, 0};
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static void espnow_deinit(espnow_send_param_t *send_param);
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void wifi_init(void) {
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esp_err_t ret = nvs_flash_init();
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@ -60,39 +60,39 @@ void wifi_init(void) {
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WIFI_PROTOCOL_11N | WIFI_PROTOCOL_LR));
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}
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static void example_espnow_deinit(example_espnow_send_param_t *send_param) {
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static void espnow_deinit(espnow_send_param_t *send_param) {
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free(send_param->buffer);
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free(send_param);
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vSemaphoreDelete(s_example_espnow_queue);
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vSemaphoreDelete(s_espnow_queue);
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esp_now_deinit();
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}
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void example_espnow_data_prepare(example_espnow_send_param_t *send_param) {
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example_espnow_data_t *buf = (example_espnow_data_t *)send_param->buffer;
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void espnow_data_prepare(espnow_send_param_t *send_param) {
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espnow_data_t *buf = (espnow_data_t *)send_param->buffer;
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ESP_LOGI(tag, "Example_Data_SIZE: %u, send_param_len: %d\n", sizeof(example_espnow_data_t), send_param->len);
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ESP_LOGI(tag, "Example_Data_SIZE: %u, send_param_len: %d\n", sizeof(espnow_data_t), send_param->len);
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assert(send_param->len >= sizeof(example_espnow_data_t));
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assert(send_param->len >= sizeof(espnow_data_t));
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buf->type = IS_BROADCAST_ADDR(send_param->dest_mac)
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? EXAMPLE_ESPNOW_DATA_BROADCAST
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: EXAMPLE_ESPNOW_DATA_UNICAST;
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buf->state = send_param->state;
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buf->seq_num = s_example_espnow_seq[buf->type]++;
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buf->seq_num = s_espnow_seq[buf->type]++;
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buf->crc = 0;
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buf->magic = send_param->magic;
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buf->payload.isMaster = isMaster;
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/* Fill all remaining bytes after the data with random values */
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/* esp_fill_random(buf->payload,
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send_param->len - sizeof(example_espnow_data_t)); */ // wieso sollte ich das mit random daten füllen
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send_param->len - sizeof(espnow_data_t)); */ // wieso sollte ich das mit random daten füllen
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buf->crc = esp_crc16_le(UINT16_MAX, (uint8_t const *)buf, send_param->len);
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}
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static void example_espnow_send_cb(const uint8_t *mac_addr,
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static void espnow_send_cb(const uint8_t *mac_addr,
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esp_now_send_status_t status) {
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example_espnow_event_t evt;
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example_espnow_event_send_cb_t *send_cb = &evt.info.send_cb;
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espnow_event_t evt;
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espnow_event_send_cb_t *send_cb = &evt.info.send_cb;
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if (mac_addr == NULL) {
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ESP_LOGE(tag, "Send cb arg error");
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@ -102,15 +102,15 @@ static void example_espnow_send_cb(const uint8_t *mac_addr,
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evt.id = EXAMPLE_ESPNOW_SEND_CB;
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memcpy(send_cb->mac_addr, mac_addr, ESP_NOW_ETH_ALEN);
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send_cb->status = status;
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if (xQueueSend(s_example_espnow_queue, &evt, ESPNOW_MAXDELAY) != pdTRUE) {
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if (xQueueSend(s_espnow_queue, &evt, ESPNOW_MAXDELAY) != pdTRUE) {
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ESP_LOGW(tag, "Send send queue fail");
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}
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}
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static void example_espnow_recv_cb(const esp_now_recv_info_t *recv_info,
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static void espnow_recv_cb(const esp_now_recv_info_t *recv_info,
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const uint8_t *data, int len) {
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example_espnow_event_t evt;
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example_espnow_event_recv_cb_t *recv_cb = &evt.info.recv_cb;
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espnow_event_t evt;
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espnow_event_recv_cb_t *recv_cb = &evt.info.recv_cb;
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uint8_t *mac_addr = recv_info->src_addr;
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uint8_t *des_addr = recv_info->des_addr;
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@ -138,18 +138,18 @@ static void example_espnow_recv_cb(const esp_now_recv_info_t *recv_info,
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}
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memcpy(recv_cb->data, data, len);
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recv_cb->data_len = len;
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if (xQueueSend(s_example_espnow_queue, &evt, ESPNOW_MAXDELAY) != pdTRUE) {
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if (xQueueSend(s_espnow_queue, &evt, ESPNOW_MAXDELAY) != pdTRUE) {
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ESP_LOGW(tag, "Send receive queue fail");
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free(recv_cb->data);
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}
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}
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int example_espnow_data_parse(uint8_t *data, uint16_t data_len, uint8_t *state,
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int espnow_data_parse(uint8_t *data, uint16_t data_len, uint8_t *state,
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uint16_t *seq, uint32_t *magic) {
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example_espnow_data_t *buf = (example_espnow_data_t *)data;
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espnow_data_t *buf = (espnow_data_t *)data;
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uint16_t crc, crc_cal = 0;
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if (data_len < sizeof(example_espnow_data_t)) {
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if (data_len < sizeof(espnow_data_t)) {
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ESP_LOGE(tag, "Receive ESPNOW data too short, len:%d", data_len);
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return -1;
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}
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@ -162,9 +162,9 @@ int example_espnow_data_parse(uint8_t *data, uint16_t data_len, uint8_t *state,
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crc_cal = esp_crc16_le(UINT16_MAX, (uint8_t const *)buf, data_len);
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if(buf->payload.isMaster) {
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ESP_LOGE(tag, "Recived Data from Master");
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ESP_LOGI(tag, "Recived Data from Master");
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} else {
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ESP_LOGE(tag, "Recived Data from Slave");
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ESP_LOGI(tag, "Recived Data from Slave");
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}
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if (crc_cal == crc) {
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@ -174,8 +174,8 @@ int example_espnow_data_parse(uint8_t *data, uint16_t data_len, uint8_t *state,
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return -1;
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}
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static void example_espnow_task(void *pvParameter) {
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example_espnow_event_t evt;
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static void espnow_task(void *pvParameter) {
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espnow_event_t evt;
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uint8_t recv_state = 0;
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uint16_t recv_seq = 0;
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uint32_t recv_magic = 0;
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@ -186,19 +186,19 @@ static void example_espnow_task(void *pvParameter) {
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ESP_LOGI(tag, "Start sending broadcast data");
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/* Start sending broadcast ESPNOW data. */
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example_espnow_send_param_t *send_param =
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(example_espnow_send_param_t *)pvParameter;
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espnow_send_param_t *send_param =
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(espnow_send_param_t *)pvParameter;
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if (esp_now_send(send_param->dest_mac, send_param->buffer, send_param->len) !=
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ESP_OK) {
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ESP_LOGE(tag, "Send error");
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example_espnow_deinit(send_param);
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espnow_deinit(send_param);
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vTaskDelete(NULL);
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}
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while (xQueueReceive(s_example_espnow_queue, &evt, portMAX_DELAY) == pdTRUE) {
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while (xQueueReceive(s_espnow_queue, &evt, portMAX_DELAY) == pdTRUE) {
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switch (evt.id) {
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case EXAMPLE_ESPNOW_SEND_CB: {
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example_espnow_event_send_cb_t *send_cb = &evt.info.send_cb;
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espnow_event_send_cb_t *send_cb = &evt.info.send_cb;
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is_broadcast = IS_BROADCAST_ADDR(send_cb->mac_addr);
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ESP_LOGD(tag, "Send data to " MACSTR ", status1: %d",
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@ -212,7 +212,7 @@ static void example_espnow_task(void *pvParameter) {
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send_param->count--;
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if (send_param->count == 0) {
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ESP_LOGI(tag, "Send done");
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example_espnow_deinit(send_param);
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espnow_deinit(send_param);
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vTaskDelete(NULL);
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}
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}
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@ -225,21 +225,21 @@ static void example_espnow_task(void *pvParameter) {
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ESP_LOGI(tag, "send data to " MACSTR "", MAC2STR(send_cb->mac_addr));
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memcpy(send_param->dest_mac, send_cb->mac_addr, ESP_NOW_ETH_ALEN);
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example_espnow_data_prepare(send_param);
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espnow_data_prepare(send_param);
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/* Send the next data after the previous data is sent. */
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if (esp_now_send(send_param->dest_mac, send_param->buffer,
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send_param->len) != ESP_OK) {
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ESP_LOGE(tag, "Send error");
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example_espnow_deinit(send_param);
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espnow_deinit(send_param);
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vTaskDelete(NULL);
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}
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break;
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}
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case EXAMPLE_ESPNOW_RECV_CB: {
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example_espnow_event_recv_cb_t *recv_cb = &evt.info.recv_cb;
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espnow_event_recv_cb_t *recv_cb = &evt.info.recv_cb;
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ret = example_espnow_data_parse(recv_cb->data, recv_cb->data_len,
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ret = espnow_data_parse(recv_cb->data, recv_cb->data_len,
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&recv_state, &recv_seq, &recv_magic);
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free(recv_cb->data);
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if (ret == EXAMPLE_ESPNOW_DATA_BROADCAST) {
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@ -251,7 +251,7 @@ static void example_espnow_task(void *pvParameter) {
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esp_now_peer_info_t *peer = malloc(sizeof(esp_now_peer_info_t));
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if (peer == NULL) {
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ESP_LOGE(tag, "Malloc peer information fail");
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example_espnow_deinit(send_param);
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espnow_deinit(send_param);
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vTaskDelete(NULL);
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}
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memset(peer, 0, sizeof(esp_now_peer_info_t));
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@ -285,11 +285,11 @@ static void example_espnow_task(void *pvParameter) {
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/* Start sending unicast ESPNOW data. */
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memcpy(send_param->dest_mac, recv_cb->mac_addr, ESP_NOW_ETH_ALEN);
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example_espnow_data_prepare(send_param);
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espnow_data_prepare(send_param);
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if (esp_now_send(send_param->dest_mac, send_param->buffer,
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send_param->len) != ESP_OK) {
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ESP_LOGE(tag, "Send error");
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example_espnow_deinit(send_param);
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espnow_deinit(send_param);
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vTaskDelete(NULL);
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} else {
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send_param->broadcast = false;
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@ -317,20 +317,20 @@ static void example_espnow_task(void *pvParameter) {
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}
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}
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static esp_err_t example_espnow_init(void) {
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example_espnow_send_param_t *send_param;
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static esp_err_t espnow_init(void) {
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espnow_send_param_t *send_param;
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s_example_espnow_queue =
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xQueueCreate(ESPNOW_QUEUE_SIZE, sizeof(example_espnow_event_t));
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if (s_example_espnow_queue == NULL) {
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s_espnow_queue =
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xQueueCreate(ESPNOW_QUEUE_SIZE, sizeof(espnow_event_t));
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if (s_espnow_queue == NULL) {
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ESP_LOGE(tag, "Create mutex fail");
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return ESP_FAIL;
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}
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/* Initialize ESPNOW and register sending and receiving callback function. */
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ESP_ERROR_CHECK(esp_now_init());
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ESP_ERROR_CHECK(esp_now_register_send_cb(example_espnow_send_cb));
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ESP_ERROR_CHECK(esp_now_register_recv_cb(example_espnow_recv_cb));
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ESP_ERROR_CHECK(esp_now_register_send_cb(espnow_send_cb));
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ESP_ERROR_CHECK(esp_now_register_recv_cb(espnow_recv_cb));
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#if CONFIG_ESPNOW_ENABLE_POWER_SAVE
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ESP_ERROR_CHECK(esp_now_set_wake_window(CONFIG_ESPNOW_WAKE_WINDOW));
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ESP_ERROR_CHECK(esp_wifi_connectionless_module_set_wake_interval(
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@ -343,7 +343,7 @@ static esp_err_t example_espnow_init(void) {
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esp_now_peer_info_t *peer = malloc(sizeof(esp_now_peer_info_t));
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if (peer == NULL) {
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ESP_LOGE(tag, "Malloc peer information fail");
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vSemaphoreDelete(s_example_espnow_queue);
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vSemaphoreDelete(s_espnow_queue);
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esp_now_deinit();
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return ESP_FAIL;
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}
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@ -351,19 +351,19 @@ static esp_err_t example_espnow_init(void) {
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peer->channel = CONFIG_ESPNOW_CHANNEL;
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peer->ifidx = ESPNOW_WIFI_IF;
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peer->encrypt = false;
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memcpy(peer->peer_addr, s_example_broadcast_mac, ESP_NOW_ETH_ALEN);
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memcpy(peer->peer_addr, s_broadcast_mac, ESP_NOW_ETH_ALEN);
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ESP_ERROR_CHECK(esp_now_add_peer(peer));
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free(peer);
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/* Initialize sending parameters. */
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send_param = malloc(sizeof(example_espnow_send_param_t));
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send_param = malloc(sizeof(espnow_send_param_t));
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if (send_param == NULL) {
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ESP_LOGE(tag, "Malloc send parameter fail");
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vSemaphoreDelete(s_example_espnow_queue);
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vSemaphoreDelete(s_espnow_queue);
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esp_now_deinit();
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return ESP_FAIL;
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}
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memset(send_param, 0, sizeof(example_espnow_send_param_t));
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memset(send_param, 0, sizeof(espnow_send_param_t));
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send_param->unicast = false;
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send_param->broadcast = true;
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send_param->state = 0;
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@ -375,14 +375,14 @@ static esp_err_t example_espnow_init(void) {
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if (send_param->buffer == NULL) {
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ESP_LOGE(tag, "Malloc send buffer fail");
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free(send_param);
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vSemaphoreDelete(s_example_espnow_queue);
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vSemaphoreDelete(s_espnow_queue);
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esp_now_deinit();
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return ESP_FAIL;
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}
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memcpy(send_param->dest_mac, s_example_broadcast_mac, ESP_NOW_ETH_ALEN);
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example_espnow_data_prepare(send_param);
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memcpy(send_param->dest_mac, s_broadcast_mac, ESP_NOW_ETH_ALEN);
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espnow_data_prepare(send_param);
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xTaskCreate(example_espnow_task, "example_espnow_task", 2048, send_param, 4,
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xTaskCreate(espnow_task, "espnow_task", 2048, send_param, 4,
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NULL);
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return ESP_OK;
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@ -402,5 +402,5 @@ void app_main(void) {
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vTaskDelay(500/portTICK_PERIOD_MS);
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wifi_init();
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example_espnow_init();
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espnow_init();
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}
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30
main/main.h
30
main/main.h
@ -6,35 +6,35 @@
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#define ESPNOW_QUEUE_SIZE 6
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#define IS_BROADCAST_ADDR(addr) \
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(memcmp(addr, s_example_broadcast_mac, ESP_NOW_ETH_ALEN) == 0)
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(memcmp(addr, s_broadcast_mac, ESP_NOW_ETH_ALEN) == 0)
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static bool isMaster;
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typedef enum {
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EXAMPLE_ESPNOW_SEND_CB,
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EXAMPLE_ESPNOW_RECV_CB,
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} example_espnow_event_id_t;
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} espnow_event_id_t;
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typedef struct {
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uint8_t mac_addr[ESP_NOW_ETH_ALEN];
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esp_now_send_status_t status;
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} example_espnow_event_send_cb_t;
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} espnow_event_send_cb_t;
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typedef struct {
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uint8_t mac_addr[ESP_NOW_ETH_ALEN];
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uint8_t *data;
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int data_len;
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} example_espnow_event_recv_cb_t;
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} espnow_event_recv_cb_t;
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typedef union {
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example_espnow_event_send_cb_t send_cb;
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example_espnow_event_recv_cb_t recv_cb;
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} example_espnow_event_info_t;
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espnow_event_send_cb_t send_cb;
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espnow_event_recv_cb_t recv_cb;
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} espnow_event_info_t;
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typedef struct {
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example_espnow_event_id_t id;
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example_espnow_event_info_t info;
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} example_espnow_event_t;
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espnow_event_id_t id;
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espnow_event_info_t info;
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} espnow_event_t;
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enum {
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EXAMPLE_ESPNOW_DATA_BROADCAST,
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@ -46,9 +46,6 @@ typedef struct {
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bool isMaster;
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} __attribute__((packed)) payloadData;
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static_assert(sizeof(payloadData) <= MAX_PAYLOAD_SIZE, "payloadData struct is too big to be sent in one part, keep it under 250 Bytes!");
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/* User defined field of ESPNOW data in this example. */
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typedef struct {
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uint8_t type; // Broadcast or unicast ESPNOW data.
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@ -58,7 +55,10 @@ typedef struct {
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uint32_t magic; // Magic number which is used to determine which device to
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// send unicast ESPNOW data.
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payloadData payload; // Real payload of ESPNOW data.
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} __attribute__((packed)) example_espnow_data_t;
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} __attribute__((packed)) espnow_data_t;
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static_assert(sizeof(espnow_data_t) <= MAX_PAYLOAD_SIZE, "payloadData struct is too big to be sent in one part, keep it under 250 Bytes!");
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typedef struct {
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bool unicast; // Send unicast ESPNOW data.
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@ -71,6 +71,6 @@ typedef struct {
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int len; // Length of ESPNOW data to be sent, unit: byte.
|
||||
uint8_t *buffer; // Buffer pointing to ESPNOW data.
|
||||
uint8_t dest_mac[ESP_NOW_ETH_ALEN]; // MAC address of destination device.
|
||||
} example_espnow_send_param_t;
|
||||
} espnow_send_param_t;
|
||||
|
||||
#endif
|
||||
|
||||
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Reference in New Issue
Block a user