<?xml version="1.0" encoding="UTF-8" ?>
<?xml-stylesheet type="text/xsl" href="https://devzone.nordicsemi.com/cfs-file/__key/system/syndication/rss.xsl" media="screen"?><rss version="2.0" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:slash="http://purl.org/rss/1.0/modules/slash/" xmlns:wfw="http://wellformedweb.org/CommentAPI/" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising</link><description>Hi, 
 I had to modify the peripheral blinky example by adding UART module .The program compiles and builds but it is not advertising.I guess there is some problem with the advertising_start() as i am getting a warning near the usage of advertising_start</description><dc:language>en-US</dc:language><generator>Telligent Community 13</generator><lastBuildDate>Mon, 30 Sep 2019 06:40:06 GMT</lastBuildDate><atom:link rel="self" type="application/rss+xml" href="https://devzone.nordicsemi.com/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising" /><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/212446?ContentTypeID=1</link><pubDate>Mon, 30 Sep 2019 06:40:06 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:6ef3e105-8a2f-43a6-bd29-1e09bfca57b4</guid><dc:creator>Simonr</dc:creator><description>&lt;p&gt;Hi&lt;/p&gt;
&lt;p&gt;Are you getting any warnings when you build your application now? Is there a reason you&amp;#39;re not able to debug your code? At first glance, it might seem like you have too much advertising data, as the initial advertising packet can only advertise 31 bytes of data. Have you seen our &lt;a href="https://devzone.nordicsemi.com/nordic/short-range-guides/b/bluetooth-low-energy/posts/ble-advertising-a-beginners-tutorial"&gt;BLE advertising tutorial&lt;/a&gt;? That should help you get a better understanding of how advertising works in BLE.&lt;/p&gt;
&lt;p&gt;Best regards,&lt;/p&gt;
&lt;p&gt;Simon&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/212258?ContentTypeID=1</link><pubDate>Fri, 27 Sep 2019 11:18:30 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:a6ea886b-8c3a-4c74-87e4-c0e93cb00b90</guid><dc:creator>kritis123</dc:creator><description>&lt;p&gt;I made the changes in the code and its compliling and building successfully but it is still not advertising.What can be the issue?I have attached the code for reference.&lt;pre class="ui-code" data-mode="c_cpp"&gt;/**
 * Copyright (c) 2015 - 2019, Nordic Semiconductor ASA
 *
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without modification,
 * are permitted provided that the following conditions are met:
 *
 * 1. Redistributions of source code must retain the above copyright notice, this
 *    list of conditions and the following disclaimer.
 *
 * 2. Redistributions in binary form, except as embedded into a Nordic
 *    Semiconductor ASA integrated circuit in a product or a software update for
 *    such product, must reproduce the above copyright notice, this list of
 *    conditions and the following disclaimer in the documentation and/or other
 *    materials provided with the distribution.
 *
 * 3. Neither the name of Nordic Semiconductor ASA nor the names of its
 *    contributors may be used to endorse or promote products derived from this
 *    software without specific prior written permission.
 *
 * 4. This software, with or without modification, must only be used with a
 *    Nordic Semiconductor ASA integrated circuit.
 *
 * 5. Any software provided in binary form under this license must not be reverse
 *    engineered, decompiled, modified and/or disassembled.
 *
 * THIS SOFTWARE IS PROVIDED BY NORDIC SEMICONDUCTOR ASA &amp;quot;AS IS&amp;quot; AND ANY EXPRESS
 * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
 * OF MERCHANTABILITY, NONINFRINGEMENT, AND FITNESS FOR A PARTICULAR PURPOSE ARE
 * DISCLAIMED. IN NO EVENT SHALL NORDIC SEMICONDUCTOR ASA OR CONTRIBUTORS BE
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
 * GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 *
 */
/**
 * @brief Blinky Sample Application main file.
 *
 * This file contains the source code for a sample server application using the LED Button service.
 */

#include &amp;lt;stdint.h&amp;gt;
#include &amp;lt;string.h&amp;gt;
#include &amp;quot;nordic_common.h&amp;quot;
#include &amp;quot;nrf.h&amp;quot;
#include &amp;quot;app_error.h&amp;quot;
#include &amp;quot;ble.h&amp;quot;
#include &amp;quot;ble_err.h&amp;quot;
#include &amp;quot;ble_hci.h&amp;quot;
#include &amp;quot;ble_srv_common.h&amp;quot;
#include &amp;quot;ble_advdata.h&amp;quot;
#include &amp;quot;ble_advertising.h&amp;quot;
#include &amp;quot;ble_conn_params.h&amp;quot;
#include &amp;quot;nrf_sdh.h&amp;quot;
#include &amp;quot;nrf_sdh_ble.h&amp;quot;
#include &amp;quot;nrf_sdh_soc.h&amp;quot;
#include &amp;quot;boards.h&amp;quot; 
#include &amp;quot;app_timer.h&amp;quot;
#include &amp;quot;app_button.h&amp;quot;
#include &amp;quot;ble_lbs.h&amp;quot;
#include &amp;quot;nrf_ble_gatt.h&amp;quot;
#include &amp;quot;nrf_ble_qwr.h&amp;quot;
#include &amp;quot;nrf_pwr_mgmt.h&amp;quot;
#include &amp;quot;nrf_delay.h&amp;quot;
#include &amp;quot;ble_nus.h&amp;quot;


#include &amp;quot;app_uart.h&amp;quot;
#include &amp;quot;app_util_platform.h&amp;quot;
#include &amp;quot;bsp_btn_ble.h&amp;quot; 
#include &amp;quot;nrf_pwr_mgmt.h&amp;quot;
#include &amp;quot;fds.h&amp;quot;


#if defined (UART_PRESENT)
#include &amp;quot;nrf_uart.h&amp;quot;
#endif
#if defined (UARTE_PRESENT)
#include &amp;quot;nrf_uarte.h&amp;quot;
#endif


#include &amp;quot;nrf_log.h&amp;quot;
#include &amp;quot;nrf_log_ctrl.h&amp;quot;
#include &amp;quot;nrf_log_default_backends.h&amp;quot;


#define ADVERTISING_LED                 BSP_BOARD_LED_0                         /**&amp;lt; Is on when device is advertising. */
#define CONNECTED_LED                   BSP_BOARD_LED_1                         /**&amp;lt; Is on when device has connected. */
#define LEDBUTTON_LED                   BSP_BOARD_LED_2                         /**&amp;lt; LED to be toggled with the help of the LED Button Service. */
#define LEDBUTTON_BUTTON                BSP_BUTTON_0                            /**&amp;lt; Button that will trigger the notification event with the LED Button Service */

 /**#define DEVICE_NAME                     &amp;quot;Nordic_Blinky&amp;quot;                         /**&amp;lt; Name of device. Will be included in the advertising data. */


#define DEVICE_NAME                     &amp;quot;Wagon_Master&amp;quot;                               /**&amp;lt; Name of device. Will be included in the advertising data. */
#define NUS_SERVICE_UUID_TYPE           BLE_UUID_TYPE_VENDOR_BEGIN                  /**&amp;lt; UUID type for the Nordic UART Service (vendor specific). */

#define APP_BLE_OBSERVER_PRIO           3                                       /**&amp;lt; Application&amp;#39;s BLE observer priority. You shouldn&amp;#39;t need to modify this value. */
#define APP_BLE_CONN_CFG_TAG            1                                       /**&amp;lt; A tag identifying the SoftDevice BLE configuration. */

#define APP_ADV_INTERVAL                64                                      /**&amp;lt; The advertising interval (in units of 0.625 ms; this value corresponds to 40 ms). */
#define APP_ADV_DURATION                BLE_GAP_ADV_TIMEOUT_GENERAL_UNLIMITED   /**&amp;lt; The advertising time-out (in units of seconds). When set to 0, we will never time out. */


#define MIN_CONN_INTERVAL               MSEC_TO_UNITS(100, UNIT_1_25_MS)        /**&amp;lt; Minimum acceptable connection interval (0.5 seconds). */
#define MAX_CONN_INTERVAL               MSEC_TO_UNITS(200, UNIT_1_25_MS)        /**&amp;lt; Maximum acceptable connection interval (1 second). */
#define SLAVE_LATENCY                   0                                       /**&amp;lt; Slave latency. */
#define CONN_SUP_TIMEOUT                MSEC_TO_UNITS(4000, UNIT_10_MS)         /**&amp;lt; Connection supervisory time-out (4 seconds). */

#define FIRST_CONN_PARAMS_UPDATE_DELAY  APP_TIMER_TICKS(20000)                  /**&amp;lt; Time from initiating event (connect or start of notification) to first time sd_ble_gap_conn_param_update is called (15 seconds). */
#define NEXT_CONN_PARAMS_UPDATE_DELAY   APP_TIMER_TICKS(5000)                   /**&amp;lt; Time between each call to sd_ble_gap_conn_param_update after the first call (5 seconds). */
#define MAX_CONN_PARAMS_UPDATE_COUNT    3                                       /**&amp;lt; Number of attempts before giving up the connection parameter negotiation. */

#define BUTTON_DETECTION_DELAY          APP_TIMER_TICKS(50)                     /**&amp;lt; Delay from a GPIOTE event until a button is reported as pushed (in number of timer ticks). */

#define DEAD_BEEF                       0xDEADBEEF                              /**&amp;lt; Value used as error code on stack dump, can be used to identify stack location on stack unwind. */

#define UART_TX_BUF_SIZE                256                                         /**&amp;lt; UART TX buffer size. */
#define UART_RX_BUF_SIZE                256 

#define CONFIG_FILE     (0xF010)
#define CONFIG_REC_KEY  (0x7010)
    #define c

BLE_NUS_DEF(m_nus, NRF_SDH_BLE_TOTAL_LINK_COUNT);
BLE_LBS_DEF(m_lbs);                                                             /**&amp;lt; LED Button Service instance. */
NRF_BLE_GATT_DEF(m_gatt);                                                       /**&amp;lt; GATT module instance. */
NRF_BLE_QWR_DEF(m_qwr);                                                         /**&amp;lt; Context for the Queued Write module.*/

static uint16_t m_conn_handle = BLE_CONN_HANDLE_INVALID;                        /**&amp;lt; Handle of the current connection. */

static uint8_t m_adv_handle = BLE_GAP_ADV_SET_HANDLE_NOT_SET;                   /**&amp;lt; Advertising handle used to identify an advertising set. */
static uint8_t m_enc_advdata[BLE_GAP_ADV_SET_DATA_SIZE_MAX];                    /**&amp;lt; Buffer for storing an encoded advertising set. */
static uint8_t m_enc_scan_response_data[BLE_GAP_ADV_SET_DATA_SIZE_MAX];         /**&amp;lt; Buffer for storing an encoded scan data. */


/**static uint16_t   m_conn_handle          = BLE_CONN_HANDLE_INVALID;                 /**&amp;lt; Handle of the current connection. */
static uint16_t   m_ble_nus_max_data_len = BLE_GATT_ATT_MTU_DEFAULT - 3;            /**&amp;lt; Maximum length of data (in bytes) that can be transmitted to the peer by the Nordic UART service module. */
static ble_uuid_t m_adv_uuids[]          =                                          /**&amp;lt; Universally unique service identifier. */
{
    {BLE_UUID_NUS_SERVICE, NUS_SERVICE_UUID_TYPE}
};

/**@brief Struct that contains pointers to the encoded advertising data. */
static ble_gap_adv_data_t m_adv_data =
{
    .adv_data =
    {
        .p_data = m_enc_advdata,
        .len    = BLE_GAP_ADV_SET_DATA_SIZE_MAX
    },
    .scan_rsp_data =
    {
        .p_data = m_enc_scan_response_data,
        .len    = BLE_GAP_ADV_SET_DATA_SIZE_MAX

    }
};

/**@brief Function for assert macro callback.
 *
 * @details This function will be called in case of an assert in the SoftDevice.
 *
 * @warning This handler is an example only and does not fit a final product. You need to analyze
 *          how your product is supposed to react in case of Assert.
 * @warning On assert from the SoftDevice, the system can only recover on reset.
 *
 * @param[in] line_num    Line number of the failing ASSERT call.
 * @param[in] p_file_name File name of the failing ASSERT call.
 */
void assert_nrf_callback(uint16_t line_num, const uint8_t * p_file_name)
{
    app_error_handler(DEAD_BEEF, line_num, p_file_name);
}


/**@brief Function for the LEDs initialization.
 *
 * @details Initializes all LEDs used by the application.
 */
static void leds_init(void)
{
    bsp_board_init(BSP_INIT_LEDS);
}


/**@brief Function for the Timer initialization.
 *
 * @details Initializes the timer module.
 */
static void timers_init(void)
{
    // Initialize timer module, making it use the scheduler
    ret_code_t err_code = app_timer_init();
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for the GAP initialization.
 *
 * @details This function sets up all the necessary GAP (Generic Access Profile) parameters of the
 *          device including the device name, appearance, and the preferred connection parameters.
 */
static void gap_params_init(void)
{
    ret_code_t              err_code;
    ble_gap_conn_params_t   gap_conn_params;
    ble_gap_conn_sec_mode_t sec_mode;

    BLE_GAP_CONN_SEC_MODE_SET_OPEN(&amp;amp;sec_mode);

    err_code = sd_ble_gap_device_name_set(&amp;amp;sec_mode,
                                          (const uint8_t *)DEVICE_NAME,
                                          strlen(DEVICE_NAME));
    APP_ERROR_CHECK(err_code);

    memset(&amp;amp;gap_conn_params, 0, sizeof(gap_conn_params));

    gap_conn_params.min_conn_interval = MIN_CONN_INTERVAL;
    gap_conn_params.max_conn_interval = MAX_CONN_INTERVAL;
    gap_conn_params.slave_latency     = SLAVE_LATENCY;
    gap_conn_params.conn_sup_timeout  = CONN_SUP_TIMEOUT;

    err_code = sd_ble_gap_ppcp_set(&amp;amp;gap_conn_params);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for initializing the GATT module.
 */
static void gatt_init(void)
{
    ret_code_t err_code = nrf_ble_gatt_init(&amp;amp;m_gatt, NULL);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for initializing the Advertising functionality.
 *
 * @details Encodes the required advertising data and passes it to the stack.
 *          Also builds a structure to be passed to the stack when starting advertising.
 */
static void advertising_init(void)
{
    ret_code_t    err_code;
    ble_advdata_t advdata;
    ble_advdata_t srdata;

    ble_uuid_t adv_uuids[] = {{LBS_UUID_SERVICE, m_lbs.uuid_type}};

    // Build and set advertising data.
    memset(&amp;amp;advdata, 0, sizeof(advdata));

    advdata.name_type          = BLE_ADVDATA_FULL_NAME;
    advdata.include_appearance = true;
    advdata.flags              = BLE_GAP_ADV_FLAGS_LE_ONLY_GENERAL_DISC_MODE;


    memset(&amp;amp;srdata, 0, sizeof(srdata));
    srdata.uuids_complete.uuid_cnt = sizeof(adv_uuids) / sizeof(adv_uuids[0]);
    srdata.uuids_complete.p_uuids  = adv_uuids;

    err_code = ble_advdata_encode(&amp;amp;advdata, m_adv_data.adv_data.p_data, &amp;amp;m_adv_data.adv_data.len);
    APP_ERROR_CHECK(err_code);

    err_code = ble_advdata_encode(&amp;amp;srdata, m_adv_data.scan_rsp_data.p_data, &amp;amp;m_adv_data.scan_rsp_data.len);
    APP_ERROR_CHECK(err_code);

    ble_gap_adv_params_t adv_params;

    // Set advertising parameters.
    memset(&amp;amp;adv_params, 0, sizeof(adv_params));

    adv_params.primary_phy     = BLE_GAP_PHY_1MBPS;
    adv_params.duration        = APP_ADV_DURATION;
    adv_params.properties.type = BLE_GAP_ADV_TYPE_CONNECTABLE_SCANNABLE_UNDIRECTED;
    adv_params.p_peer_addr     = NULL;
    adv_params.filter_policy   = BLE_GAP_ADV_FP_ANY;
    adv_params.interval        = APP_ADV_INTERVAL;

    err_code = sd_ble_gap_adv_set_configure(&amp;amp;m_adv_handle, &amp;amp;m_adv_data, &amp;amp;adv_params);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for handling Queued Write Module errors.
 *
 * @details A pointer to this function will be passed to each service which may need to inform the
 *          application about an error.
 *
 * @param[in]   nrf_error   Error code containing information about what went wrong.
 */
static void nrf_qwr_error_handler(uint32_t nrf_error)
{
    APP_ERROR_HANDLER(nrf_error);
}





static struct
{
    bool delete_next;   //!&amp;lt; Delete next record.
    bool pending;       //!&amp;lt; Waiting for an fds FDS_EVT_DEL_RECORD event, to delete the next record.
} m_delete_all;



/* Array to map FDS return values to strings. */
char const * fds_err_str[] =
{
    &amp;quot;FDS_SUCCESS&amp;quot;,
    &amp;quot;FDS_ERR_OPERATION_TIMEOUT&amp;quot;,
    &amp;quot;FDS_ERR_NOT_INITIALIZED&amp;quot;,
    &amp;quot;FDS_ERR_UNALIGNED_ADDR&amp;quot;,
    &amp;quot;FDS_ERR_INVALID_ARG&amp;quot;,
    &amp;quot;FDS_ERR_NULL_ARG&amp;quot;,
    &amp;quot;FDS_ERR_NO_OPEN_RECORDS&amp;quot;,
    &amp;quot;FDS_ERR_NO_SPACE_IN_FLASH&amp;quot;,
    &amp;quot;FDS_ERR_NO_SPACE_IN_QUEUES&amp;quot;,
    &amp;quot;FDS_ERR_RECORD_TOO_LARGE&amp;quot;,
    &amp;quot;FDS_ERR_NOT_FOUND&amp;quot;,
    &amp;quot;FDS_ERR_NO_PAGES&amp;quot;,
    &amp;quot;FDS_ERR_USER_LIMIT_REACHED&amp;quot;,
    &amp;quot;FDS_ERR_CRC_CHECK_FAILED&amp;quot;,
    &amp;quot;FDS_ERR_BUSY&amp;quot;,
    &amp;quot;FDS_ERR_INTERNAL&amp;quot;,
};

/* Array to map FDS events to strings. */
static char const * fds_evt_str[] =
{
    &amp;quot;FDS_EVT_INIT&amp;quot;,
    &amp;quot;FDS_EVT_WRITE&amp;quot;,
    &amp;quot;FDS_EVT_UPDATE&amp;quot;,
    &amp;quot;FDS_EVT_DEL_RECORD&amp;quot;,
    &amp;quot;FDS_EVT_DEL_FILE&amp;quot;,
    &amp;quot;FDS_EVT_GC&amp;quot;,
};







static bool volatile m_fds_initialized;

static void fds_evt_handler(fds_evt_t const * p_evt)
{
   

    switch (p_evt-&amp;gt;id)
    {
        case FDS_EVT_INIT:
            if (p_evt-&amp;gt;result == FDS_SUCCESS)
            {
                m_fds_initialized = true;
            }
            break;

        case FDS_EVT_WRITE:
        {
            if (p_evt-&amp;gt;result == FDS_SUCCESS)
            {
                NRF_LOG_INFO(&amp;quot;Record ID:\t0x%04x&amp;quot;,  p_evt-&amp;gt;write.record_id);
                NRF_LOG_INFO(&amp;quot;File ID:\t0x%04x&amp;quot;,    p_evt-&amp;gt;write.file_id);
                NRF_LOG_INFO(&amp;quot;Record key:\t0x%04x&amp;quot;, p_evt-&amp;gt;write.record_key);
            }
        } break;

        case FDS_EVT_DEL_RECORD:
        {
            if (p_evt-&amp;gt;result == FDS_SUCCESS)
            {
                NRF_LOG_INFO(&amp;quot;Record ID:\t0x%04x&amp;quot;,  p_evt-&amp;gt;del.record_id);
                NRF_LOG_INFO(&amp;quot;File ID:\t0x%04x&amp;quot;,    p_evt-&amp;gt;del.file_id);
                NRF_LOG_INFO(&amp;quot;Record key:\t0x%04x&amp;quot;, p_evt-&amp;gt;del.record_key);
            }
            m_delete_all.pending = false;
        } break;

        default:
            break;
    }
}


static void power_management_init(void)
{
    ret_code_t err_code;
    err_code = nrf_pwr_mgmt_init();
    APP_ERROR_CHECK(err_code);
}


static void power_manage(void)
{
#ifdef SOFTDEVICE_PRESENT
    (void) sd_app_evt_wait();
#else
    __WFE();
#endif
}

static void wait_for_fds_ready(void)
{
    while (!m_fds_initialized)
    {
        power_manage();
    }
}






/**@brief Function for handling the data from the Nordic UART Service.
 *
 * @details This function will process the data received from the Nordic UART BLE Service and send
 *          it to the UART module.
 *
 * @param[in] p_evt       Nordic UART Service event.
 */
/**@snippet [Handling the data received over BLE] */

static void nus_data_handler(ble_nus_evt_t * p_evt)
{

    if (p_evt-&amp;gt;type == BLE_NUS_EVT_RX_DATA)
    {
        uint32_t err_code;
        static uint8_t m_deadbeef[10] = {0};
       // NRF_LOG_DEBUG(&amp;quot;Received data from BLE NUS. Writing data on UART.&amp;quot;);
        NRF_LOG_HEXDUMP_DEBUG(p_evt-&amp;gt;params.rx_data.p_data, p_evt-&amp;gt;params.rx_data.length);
        strcpy(m_deadbeef,p_evt-&amp;gt;params.rx_data.p_data);
        //printf(&amp;quot;%s &amp;quot;,m_deadbeef);
        fds_record_t        record;
        fds_record_desc_t   record_desc;
         fds_find_token_t  tok ={0};
    // Set up record.
        record.file_id                          = CONFIG_FILE;
        record.key                      = CONFIG_REC_KEY;
        record.data.p_data              = &amp;amp;m_deadbeef;
        record.data.length_words            = sizeof(m_deadbeef)/sizeof(uint8_t);
        ret_code_t rc;
        rc = fds_record_find(CONFIG_FILE, CONFIG_REC_KEY, &amp;amp;record_desc, &amp;amp;tok);
        if (rc == FDS_SUCCESS)
        {
             fds_flash_record_t  flash_record;
              rc = fds_record_open(&amp;amp;record_desc, &amp;amp;flash_record);
              APP_ERROR_CHECK(rc);
              flash_record.p_data=&amp;amp;m_deadbeef;
              
             rc = fds_record_update(&amp;amp;record_desc, &amp;amp;record);
             APP_ERROR_CHECK(rc);

        }
        else

        {
             ret_code_t ret = fds_record_write(&amp;amp;record_desc, &amp;amp;record);
             APP_ERROR_CHECK(ret);
        }



    }

}



/**@brief Function for starting advertising.
 */
static void advertising_start(void)
{
    ret_code_t           err_code;

    err_code = sd_ble_gap_adv_start(m_adv_handle, APP_BLE_CONN_CFG_TAG);
    APP_ERROR_CHECK(err_code);

    bsp_board_led_on(ADVERTISING_LED);

    /**c = c+1; */
}


/**@brief Function for handling BLE events.
 *
 * @param[in]   p_ble_evt   Bluetooth stack event.
 * @param[in]   p_context   Unused.
 */
/**static void ble_evt_handler(ble_evt_t const * p_ble_evt, void * p_context)
{
    ret_code_t err_code;

    switch (p_ble_evt-&amp;gt;header.evt_id)
    {
        case BLE_GAP_EVT_CONNECTED:
            NRF_LOG_INFO(&amp;quot;Connected&amp;quot;);
            bsp_board_led_on(CONNECTED_LED);
            bsp_board_led_off(ADVERTISING_LED);
            m_conn_handle = p_ble_evt-&amp;gt;evt.gap_evt.conn_handle;
            err_code = nrf_ble_qwr_conn_handle_assign(&amp;amp;m_qwr, m_conn_handle);
            APP_ERROR_CHECK(err_code);
            err_code = app_button_enable();
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_DISCONNECTED:
            NRF_LOG_INFO(&amp;quot;Disconnected&amp;quot;);
            bsp_board_led_off(CONNECTED_LED);
            m_conn_handle = BLE_CONN_HANDLE_INVALID;
            err_code = app_button_disable();
            APP_ERROR_CHECK(err_code);
            advertising_start(); 
            break;

        case BLE_GAP_EVT_SEC_PARAMS_REQUEST:
            // Pairing not supported
            err_code = sd_ble_gap_sec_params_reply(m_conn_handle,
                                                   BLE_GAP_SEC_STATUS_PAIRING_NOT_SUPP,
                                                   NULL,
                                                   NULL);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_PHY_UPDATE_REQUEST:
        {
            NRF_LOG_DEBUG(&amp;quot;PHY update request.&amp;quot;);
            ble_gap_phys_t const phys =
            {
                .rx_phys = BLE_GAP_PHY_AUTO,
                .tx_phys = BLE_GAP_PHY_AUTO,
            };
            err_code = sd_ble_gap_phy_update(p_ble_evt-&amp;gt;evt.gap_evt.conn_handle, &amp;amp;phys);
            APP_ERROR_CHECK(err_code);
        } break;

        case BLE_GATTS_EVT_SYS_ATTR_MISSING:
            // No system attributes have been stored.
            err_code = sd_ble_gatts_sys_attr_set(m_conn_handle, NULL, 0, 0);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GATTC_EVT_TIMEOUT:
            // Disconnect on GATT Client timeout event.
            NRF_LOG_DEBUG(&amp;quot;GATT Client Timeout.&amp;quot;);
            err_code = sd_ble_gap_disconnect(p_ble_evt-&amp;gt;evt.gattc_evt.conn_handle,
                                             BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GATTS_EVT_TIMEOUT:
            // Disconnect on GATT Server timeout event.
            NRF_LOG_DEBUG(&amp;quot;GATT Server Timeout.&amp;quot;);
            err_code = sd_ble_gap_disconnect(p_ble_evt-&amp;gt;evt.gatts_evt.conn_handle,
                                             BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
            APP_ERROR_CHECK(err_code);
            break;

        default:
            // No implementation needed.
            break;
    }
}



/**@snippet [UART Initialization] */


/**@brief Function for initializing the Advertising functionality.
 */

/**@brief Function for initializing the BLE stack.
 *
 * @details Initializes the SoftDevice and the BLE event interrupt.
 */
/**static void ble_stack_init(void)
{
    ret_code_t err_code;

    err_code = nrf_sdh_enable_request();
    APP_ERROR_CHECK(err_code);

    // Configure the BLE stack using the default settings.
    // Fetch the start address of the application RAM.
    uint32_t ram_start = 0;
    err_code = nrf_sdh_ble_default_cfg_set(APP_BLE_CONN_CFG_TAG, &amp;amp;ram_start);
    APP_ERROR_CHECK(err_code);

    // Enable BLE stack.
    err_code = nrf_sdh_ble_enable(&amp;amp;ram_start);
    APP_ERROR_CHECK(err_code);

    // Register a handler for BLE events.
    NRF_SDH_BLE_OBSERVER(m_ble_observer, APP_BLE_OBSERVER_PRIO, ble_evt_handler, NULL);
}




/**@brief Function for handling write events to the LED characteristic.
 *
 * @param[in] p_lbs     Instance of LED Button Service to which the write applies.
 * @param[in] led_state Written/desired state of the LED.
 */
static void led_write_handler(uint16_t conn_handle, ble_lbs_t * p_lbs, uint8_t led_state)
{
    if (led_state)
    {
        bsp_board_led_on(LEDBUTTON_LED);
        NRF_LOG_INFO(&amp;quot;Received LED ON!&amp;quot;);
    }
    else
    {
        bsp_board_led_off(LEDBUTTON_LED);
        NRF_LOG_INFO(&amp;quot;Received LED OFF!&amp;quot;);
    }
}





/**@brief Function for initializing services that will be used by the application.
 */
static void services_init(void)
{
    ret_code_t         err_code;
    ble_lbs_init_t     init     = {0};
    nrf_ble_qwr_init_t qwr_init = {0};


ble_nus_init_t nus_init;

// Initialize NUS.
memset(&amp;amp;nus_init, 0, sizeof(nus_init));

nus_init.data_handler = nus_data_handler;

err_code = ble_nus_init(&amp;amp;m_nus, &amp;amp;nus_init);
APP_ERROR_CHECK(err_code);

    // Initialize Queued Write Module.
    qwr_init.error_handler = nrf_qwr_error_handler;

    err_code = nrf_ble_qwr_init(&amp;amp;m_qwr, &amp;amp;qwr_init);
    APP_ERROR_CHECK(err_code);

    // Initialize LBS.
    init.led_write_handler = led_write_handler;

    err_code = ble_lbs_init(&amp;amp;m_lbs, &amp;amp;init);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for handling the Connection Parameters Module.
 *
 * @details This function will be called for all events in the Connection Parameters Module that
 *          are passed to the application.
 *
 * @note All this function does is to disconnect. This could have been done by simply
 *       setting the disconnect_on_fail config parameter, but instead we use the event
 *       handler mechanism to demonstrate its use.
 *
 * @param[in] p_evt  Event received from the Connection Parameters Module.
 */
static void on_conn_params_evt(ble_conn_params_evt_t * p_evt)
{
    ret_code_t err_code;

    if (p_evt-&amp;gt;evt_type == BLE_CONN_PARAMS_EVT_FAILED)
    {
        err_code = sd_ble_gap_disconnect(m_conn_handle, BLE_HCI_CONN_INTERVAL_UNACCEPTABLE);
        APP_ERROR_CHECK(err_code);
    }
}


/**@brief Function for handling a Connection Parameters error.
 *
 * @param[in] nrf_error  Error code containing information about what went wrong.
 */
static void conn_params_error_handler(uint32_t nrf_error)
{
    APP_ERROR_HANDLER(nrf_error);
}


/**@brief Function for initializing the Connection Parameters module.
 */
static void conn_params_init(void)
{
    ret_code_t             err_code;
    ble_conn_params_init_t cp_init;

    memset(&amp;amp;cp_init, 0, sizeof(cp_init));

    cp_init.p_conn_params                  = NULL;
    cp_init.first_conn_params_update_delay = FIRST_CONN_PARAMS_UPDATE_DELAY;
    cp_init.next_conn_params_update_delay  = NEXT_CONN_PARAMS_UPDATE_DELAY;
    cp_init.max_conn_params_update_count   = MAX_CONN_PARAMS_UPDATE_COUNT;
    cp_init.start_on_notify_cccd_handle    = BLE_GATT_HANDLE_INVALID;
    cp_init.disconnect_on_fail             = false;
    cp_init.evt_handler                    = on_conn_params_evt;
    cp_init.error_handler                  = conn_params_error_handler;

    err_code = ble_conn_params_init(&amp;amp;cp_init);
    APP_ERROR_CHECK(err_code);
}



/**@brief Function for starting advertising.
 */
/**static void advertising_start(void)
{
    ret_code_t           err_code;

    err_code = sd_ble_gap_adv_start(m_adv_handle, APP_BLE_CONN_CFG_TAG);
    APP_ERROR_CHECK(err_code);

    bsp_board_led_on(ADVERTISING_LED);
}


/**@brief Function for handling BLE events.
 *
 * @param[in]   p_ble_evt   Bluetooth stack event.
 * @param[in]   p_context   Unused.
 */
static void ble_evt_handler(ble_evt_t const * p_ble_evt, void * p_context)
{
    ret_code_t err_code;

    switch (p_ble_evt-&amp;gt;header.evt_id)
    {
        case BLE_GAP_EVT_CONNECTED:
            NRF_LOG_INFO(&amp;quot;Connected&amp;quot;);
            bsp_board_led_on(CONNECTED_LED);
            bsp_board_led_off(ADVERTISING_LED);
            m_conn_handle = p_ble_evt-&amp;gt;evt.gap_evt.conn_handle;
            err_code = nrf_ble_qwr_conn_handle_assign(&amp;amp;m_qwr, m_conn_handle);
            APP_ERROR_CHECK(err_code);
            err_code = app_button_enable();
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_DISCONNECTED:
            NRF_LOG_INFO(&amp;quot;Disconnected&amp;quot;);
            bsp_board_led_off(CONNECTED_LED);
            m_conn_handle = BLE_CONN_HANDLE_INVALID;
            err_code = app_button_disable();
            APP_ERROR_CHECK(err_code);
            advertising_start(); 
            break;

        case BLE_GAP_EVT_SEC_PARAMS_REQUEST:
            // Pairing not supported
            err_code = sd_ble_gap_sec_params_reply(m_conn_handle,
                                                   BLE_GAP_SEC_STATUS_PAIRING_NOT_SUPP,
                                                   NULL,
                                                   NULL);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_PHY_UPDATE_REQUEST:
        {
            NRF_LOG_DEBUG(&amp;quot;PHY update request.&amp;quot;);
            ble_gap_phys_t const phys =
            {
                .rx_phys = BLE_GAP_PHY_AUTO,
                .tx_phys = BLE_GAP_PHY_AUTO,
            };
            err_code = sd_ble_gap_phy_update(p_ble_evt-&amp;gt;evt.gap_evt.conn_handle, &amp;amp;phys);
            APP_ERROR_CHECK(err_code);
        } break;

        case BLE_GATTS_EVT_SYS_ATTR_MISSING:
            // No system attributes have been stored.
            err_code = sd_ble_gatts_sys_attr_set(m_conn_handle, NULL, 0, 0);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GATTC_EVT_TIMEOUT:
            // Disconnect on GATT Client timeout event.
            NRF_LOG_DEBUG(&amp;quot;GATT Client Timeout.&amp;quot;);
            err_code = sd_ble_gap_disconnect(p_ble_evt-&amp;gt;evt.gattc_evt.conn_handle,
                                             BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GATTS_EVT_TIMEOUT:
            // Disconnect on GATT Server timeout event.
            NRF_LOG_DEBUG(&amp;quot;GATT Server Timeout.&amp;quot;);
            err_code = sd_ble_gap_disconnect(p_ble_evt-&amp;gt;evt.gatts_evt.conn_handle,
                                             BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
            APP_ERROR_CHECK(err_code);
            break;

        default:
            // No implementation needed.
            break;
    }
}



/**@brief   Function for handling app_uart events.
 *
 * @details This function will receive a single character from the app_uart module and append it to
 *          a string. The string will be be sent over BLE when the last character received was a
 *          &amp;#39;new line&amp;#39; &amp;#39;\n&amp;#39; (hex 0x0A) or if the string has reached the maximum data length.
 */
/**@snippet [Handling the data received over UART] */
void uart_error_handle(app_uart_evt_t * p_event)
{
    if (p_event-&amp;gt;evt_type == APP_UART_COMMUNICATION_ERROR)
    {
        APP_ERROR_HANDLER(p_event-&amp;gt;data.error_communication);
    }
    else if (p_event-&amp;gt;evt_type == APP_UART_FIFO_ERROR)
    {
        APP_ERROR_HANDLER(p_event-&amp;gt;data.error_code);
    }
}

void uart_event_handle(app_uart_evt_t * p_event)
{
    static uint8_t data_array[BLE_NUS_MAX_DATA_LEN];
    static uint8_t index = 0;
    uint32_t       err_code;

    switch (p_event-&amp;gt;evt_type)
    {
        case APP_UART_DATA_READY:
            UNUSED_VARIABLE(app_uart_get(&amp;amp;data_array[index]));
            index++;

            if ((data_array[index - 1] == &amp;#39;\n&amp;#39;) ||
                (data_array[index - 1] == &amp;#39;\r&amp;#39;) ||
                (index &amp;gt;= m_ble_nus_max_data_len))
            {
                if (index &amp;gt; 1)
                {
                    NRF_LOG_DEBUG(&amp;quot;Ready to send data over BLE NUS&amp;quot;);
                    NRF_LOG_HEXDUMP_DEBUG(data_array, index);

                    do
                    {
                        uint16_t length = (uint16_t)index;
                        err_code = ble_nus_data_send(&amp;amp;m_nus, data_array, &amp;amp;length, m_conn_handle);
                        if ((err_code != NRF_ERROR_INVALID_STATE) &amp;amp;&amp;amp;
                            (err_code != NRF_ERROR_RESOURCES) &amp;amp;&amp;amp;
                            (err_code != NRF_ERROR_NOT_FOUND))
                        {
                            APP_ERROR_CHECK(err_code);
                        }
                    } while (err_code == NRF_ERROR_RESOURCES);
                }

                index = 0;
            }
            break;

        case APP_UART_COMMUNICATION_ERROR:
            APP_ERROR_HANDLER(p_event-&amp;gt;data.error_communication);
            break;

        case APP_UART_FIFO_ERROR:
            APP_ERROR_HANDLER(p_event-&amp;gt;data.error_code);
            break;

        default:
            break;
    }
}
/**@snippet [Handling the data received over UART] */


/**@brief  Function for initializing the UART module.
 */
/**@snippet [UART Initialization] */
static void uart_init(void)
{
    uint32_t                     err_code;
    app_uart_comm_params_t const comm_params =
    {
        .rx_pin_no    = RX_PIN_NUMBER,
        .tx_pin_no    = TX_PIN_NUMBER,
        .rts_pin_no   = RTS_PIN_NUMBER,
        .cts_pin_no   = CTS_PIN_NUMBER,
        .flow_control = APP_UART_FLOW_CONTROL_ENABLED,
        .use_parity   = false,
#if defined (UART_PRESENT)
        .baud_rate    = NRF_UART_BAUDRATE_9600
#else
        .baud_rate    = NRF_UARTE_BAUDRATE_115200
#endif
    };

    APP_UART_FIFO_INIT(&amp;amp;comm_params,
                       UART_RX_BUF_SIZE,
                       UART_TX_BUF_SIZE,
                      uart_error_handle,
                       APP_IRQ_PRIORITY_LOWEST,
                       err_code);
    APP_ERROR_CHECK(err_code);
}
/**@snippet [UART Initialization] */


/**@brief Function for initializing the Advertising functionality.
 */

/**@brief Function for initializing the BLE stack.
 *
 * @details Initializes the SoftDevice and the BLE event interrupt.
 */
static void ble_stack_init(void)
{
    ret_code_t err_code;

    err_code = nrf_sdh_enable_request();
    APP_ERROR_CHECK(err_code);

    // Configure the BLE stack using the default settings.
    // Fetch the start address of the application RAM.
    uint32_t ram_start = 0;
    err_code = nrf_sdh_ble_default_cfg_set(APP_BLE_CONN_CFG_TAG, &amp;amp;ram_start);
    APP_ERROR_CHECK(err_code);

    // Enable BLE stack.
    err_code = nrf_sdh_ble_enable(&amp;amp;ram_start);
    APP_ERROR_CHECK(err_code);

    // Register a handler for BLE events.
    NRF_SDH_BLE_OBSERVER(m_ble_observer, APP_BLE_OBSERVER_PRIO, ble_evt_handler, NULL);
}


/**@brief Function for handling events from the button handler module.
 *
 * @param[in] pin_no        The pin that the event applies to.
 * @param[in] button_action The button action (press/release).
 */
static void button_event_handler(uint8_t pin_no, uint8_t button_action)
{
    ret_code_t err_code;

    switch (pin_no)
    {
        case LEDBUTTON_BUTTON:
            NRF_LOG_INFO(&amp;quot;Send button state change.&amp;quot;);
            err_code = ble_lbs_on_button_change(m_conn_handle, &amp;amp;m_lbs, button_action);
            if (err_code != NRF_SUCCESS &amp;amp;&amp;amp;
                err_code != BLE_ERROR_INVALID_CONN_HANDLE &amp;amp;&amp;amp;
                err_code != NRF_ERROR_INVALID_STATE &amp;amp;&amp;amp;
                err_code != BLE_ERROR_GATTS_SYS_ATTR_MISSING)
            {
                APP_ERROR_CHECK(err_code);
            }
            break;

        default:
            APP_ERROR_HANDLER(pin_no);
            break;
    }
}


/**@brief Function for initializing the button handler module.
 */
static void buttons_init(void)
{
    ret_code_t err_code;

    //The array must be static because a pointer to it will be saved in the button handler module.
    static app_button_cfg_t buttons[] =
    {
        {LEDBUTTON_BUTTON, false, BUTTON_PULL, button_event_handler}
    };

    err_code = app_button_init(buttons, ARRAY_SIZE(buttons),
                               BUTTON_DETECTION_DELAY);
    APP_ERROR_CHECK(err_code);
}



/**@brief Function for starting advertising.
 */
  /**static void advertising_start(void)
{
    ret_code_t           err_code;

    err_code = sd_ble_gap_adv_start(m_adv_handle, APP_BLE_CONN_CFG_TAG);
    APP_ERROR_CHECK(err_code);

    bsp_board_led_on(ADVERTISING_LED);
}
*/
 

static void sim808_init(void)
{               
        printf(&amp;quot;\r\nAT\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;\r\nATE0\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;\r\nAT+CIPSHUT\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;\r\nAT+CIPMUX=0\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;\r\nAT+CSTT=\&amp;quot;airtelgprs.com\&amp;quot;,\&amp;quot;\&amp;quot;,\&amp;quot;\&amp;quot;\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;\r\nAT+CIICR\r\n&amp;quot;);
        nrf_delay_ms(3000);
        printf(&amp;quot;\r\nAT+CIFSR\r\n&amp;quot;);
        nrf_delay_ms(1000);
        printf(&amp;quot;\r\nAT+CIPSTART=\&amp;quot;TCP\&amp;quot;,\&amp;quot;tcp://0.tcp.ngrok.io\&amp;quot;,\&amp;quot;13857\&amp;quot;\r\n&amp;quot;);
        nrf_delay_ms(3000);
        printf(&amp;quot;\r\nAT+CGPSPWR=1\r\n&amp;quot;);
        nrf_delay_ms(500); 
        printf(&amp;quot;\r\nAT+CIPSEND\r\n&amp;quot;);
        nrf_delay_ms(500);
        printf(&amp;quot;Sim is Active\n\x1A&amp;quot;);
        nrf_delay_ms(500);
                
}

static void log_init(void)
{
    ret_code_t err_code = NRF_LOG_INIT(NULL);
    APP_ERROR_CHECK(err_code);

    NRF_LOG_DEFAULT_BACKENDS_INIT();
}


/**@brief Function for initializing power management.
 */
/**static void power_management_init(void)
{
    ret_code_t err_code;
    err_code = nrf_pwr_mgmt_init();
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for handling the idle state (main loop).
 *
 * @details If there is no pending log operation, then sleep until next the next event occurs.
 */
static void idle_state_handle(void)
{
    if (NRF_LOG_PROCESS() == false)
    {
        nrf_pwr_mgmt_run();
    }
}


/**@brief Function for application main entry.
 */
int main(void)
{
    // Initialize.
ret_code_t rc;
 bool erase_bonds;
    log_init();
 uart_init();
 printf(&amp;quot;\r\nBlinky Uart\r\n&amp;quot;);
    leds_init();
    timers_init();
    buttons_init();
    sim808_init();
    power_management_init();
    ble_stack_init();

 (void) fds_register(fds_evt_handler);
    rc = fds_init();
    APP_ERROR_CHECK(rc);
    wait_for_fds_ready();
    fds_stat_t stat = {0};
    rc = fds_stat(&amp;amp;stat);
    APP_ERROR_CHECK(rc);

    gap_params_init();
    gatt_init();
    services_init();
    advertising_init();
    conn_params_init();

    // Start execution.
    NRF_LOG_INFO(&amp;quot;Blinky example started.&amp;quot;);
    advertising_start();

    // Enter main loop.
    for (;;)
    {


 uint8_t *data_1=NULL;
        fds_flash_record_t  flash_record;
        fds_record_desc_t   record_desc_1;
        fds_find_token_t    ftok ={0};//Important, make sure you zero init the ftok token
    
        ret_code_t rc;
        rc = fds_record_find(CONFIG_FILE, CONFIG_REC_KEY, &amp;amp;record_desc_1, &amp;amp;ftok);
        if (rc == FDS_SUCCESS)
        {
            rc = fds_record_open(&amp;amp;record_desc_1, &amp;amp;flash_record);
            data_1 = (uint8_t *) flash_record.p_data;
            rc = fds_record_close(&amp;amp;record_desc_1);
            APP_ERROR_CHECK(rc);
        }



            if(data_1!=NULL)
               { uint8_t lat_long[29]={0};
                 uint8_t *lat_long_1;
                 uint8_t *lat_long_2;
                uint8_t check;  
                int j=0;
                int k=11;
                printf(&amp;quot;\r\nAT+CGPSINF=0\r\n&amp;quot;);
                nrf_delay_ms(1000);
                for(int i=0; i&amp;lt;UART_RX_BUF_SIZE ; i++)
                {                  
                  app_uart_get(&amp;amp;check);
                  if(check==&amp;#39;+&amp;#39;)
                   {
                      for(int j=0; j&amp;lt;29 ; j++)
                      {
                        app_uart_get(&amp;amp;lat_long[j]);
                      }
                      break;
                   }
                }
               
                lat_long_1=strtok(lat_long,&amp;quot;:&amp;quot;);
                lat_long_1=strtok(NULL,&amp;quot;,&amp;quot;);
                lat_long_1=strtok(NULL,&amp;quot;,&amp;quot;);
                lat_long_2=strtok(NULL,&amp;quot;,&amp;quot;);
                nrf_delay_ms(10000);
                printf(&amp;quot;\r\nAT+CIPSEND\r\n&amp;quot;);
                nrf_delay_ms(500);
                printf(&amp;quot;wagon number is :%s\n\x1A&amp;quot;,data_1);
                nrf_delay_ms(1000);
                
                printf(&amp;quot;\r\nAT+CIPSEND\r\n&amp;quot;);
                nrf_delay_ms(1000);
                printf(&amp;quot;location coordinates are :%s %s\n\x1A&amp;quot;,lat_long_1,lat_long_2);
                nrf_delay_ms(5000);
                printf(&amp;quot;\r\nAT+CIPSTART=\&amp;quot;TCP\&amp;quot;,\&amp;quot;tcp://0.tcp.ngrok.io\&amp;quot;,\&amp;quot;13857\&amp;quot;\r\n&amp;quot;);
                nrf_delay_ms(3000); 
               
               }
           


        idle_state_handle();
    }
}


/**
 * @}
 */
&lt;/pre&gt;&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/211776?ContentTypeID=1</link><pubDate>Wed, 25 Sep 2019 11:07:51 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:4620ae89-5ec7-4ffa-b6b3-53441cb8884a</guid><dc:creator>kritis123</dc:creator><description>&lt;p&gt;Ohh okay. I&amp;#39;ll try that.&amp;nbsp;&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/211771?ContentTypeID=1</link><pubDate>Wed, 25 Sep 2019 10:53:41 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:f9f1e027-7ba0-4456-899c-8c446f70d734</guid><dc:creator>awneil</dc:creator><description>&lt;p&gt;Was that the &lt;em&gt;&lt;strong&gt;only&lt;/strong&gt; &lt;/em&gt;warning you got?&lt;/p&gt;
&lt;p&gt;That&amp;#39;s a standard &amp;#39;C&amp;#39; issue - not specific to Nordic.&lt;/p&gt;
&lt;p&gt;It usually means that you&amp;#39;ve called a function before its declaration (prototype) or definition.&lt;/p&gt;
&lt;p&gt;When that happens, the compiler will create an &lt;em&gt;implicit&lt;/em&gt; - or &amp;quot;default&amp;quot; - declaration. Then you get this warning when it comes to your definition.&lt;/p&gt;
&lt;p&gt;Quite possibly, the implicit declaration is not (quite) compatible with your actual definition.&lt;/p&gt;
&lt;p&gt;The answer is to either provide a prototype, or move the definition.&lt;/p&gt;
&lt;p&gt;Or both.&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/211769?ContentTypeID=1</link><pubDate>Wed, 25 Sep 2019 10:47:40 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:93b10105-29ca-4908-ad4d-0b3a80b47ced</guid><dc:creator>kritis123</dc:creator><description>&lt;p&gt;&amp;nbsp;@awneil&amp;nbsp; &amp;#39;&amp;#39;static declaration of &amp;#39;advertising_start&amp;#39; follows non-static declaration&amp;#39;&amp;#39; this is the error i am getting so i changed it to non static.The peripheral blinky code was working before i modified it.&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Peripheral blinky example not advertising</title><link>https://devzone.nordicsemi.com/thread/211765?ContentTypeID=1</link><pubDate>Wed, 25 Sep 2019 10:41:19 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:05d01fcc-833e-4661-b94c-ff2202f73955</guid><dc:creator>awneil</dc:creator><description>[quote userid="83361" url="~/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising"]i am getting a warning [/quote]
&lt;p&gt;What warning, exactly, are you getting?&lt;/p&gt;
[quote userid="83361" url="~/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising"]near the usage of advertising_start() [/quote]
&lt;p&gt;Where, exactly?&lt;/p&gt;
[quote userid="83361" url="~/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising"]I had to modify the peripheral blinky example[/quote]
&lt;p&gt;Was it working before you modified it?&lt;/p&gt;
[quote userid="83361" url="~/f/nordic-q-a/52582/peripheral-blinky-example-not-advertising"] I am not able to debug[/quote]
&lt;p&gt;Why not?&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item></channel></rss>