<?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>Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/f/nordic-q-a/55172/scanning-cannot-find-public-mac</link><description>Hello: 
 I have set the scanning module to search devices by MAC address. It finds the devices that are using a Static Random address, but it cannot find the ones using a Public Static address. 
 I can see and connect to both using NRF Connect BLE. I</description><dc:language>en-US</dc:language><generator>Telligent Community 13</generator><lastBuildDate>Tue, 05 Jan 2021 07:01:51 GMT</lastBuildDate><atom:link rel="self" type="application/rss+xml" href="https://devzone.nordicsemi.com/f/nordic-q-a/55172/scanning-cannot-find-public-mac" /><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/287397?ContentTypeID=1</link><pubDate>Tue, 05 Jan 2021 07:01:51 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:90fdac08-1e48-4a48-8daa-d032e889ac20</guid><dc:creator>Simon</dc:creator><description>&lt;p&gt;Could you open a new ticket and ask the question there?&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: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/287065?ContentTypeID=1</link><pubDate>Thu, 31 Dec 2020 21:31:37 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:28f38140-ff69-4c0b-839c-cbabec1a6627</guid><dc:creator>dilbert168</dc:creator><description>&lt;p&gt;After a year, using the&amp;nbsp;nRF5_SDK_17.0.2_d674dde has same issue when using other BLE device other than nRF device.&lt;/p&gt;
&lt;p&gt;Why not allow Application to pass the&amp;nbsp;ble_gap_addr_t instead of just char* in the&amp;nbsp;nrf_ble_scan_name_filter_add()&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/228693?ContentTypeID=1</link><pubDate>Sun, 12 Jan 2020 15:01:27 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:d37c8256-d23c-4d93-863d-9ef654e3d250</guid><dc:creator>Simon</dc:creator><description>&lt;p&gt;What SDK are you using? I was not able to recreate your issue in SDK 16. Could you copy &lt;em&gt;SDK16/examples/ble_central&amp;nbsp;&lt;/em&gt;into a new folder and copy the following into main.c:&lt;/p&gt;
&lt;p&gt;&lt;pre class="ui-code" data-mode="c_cpp"&gt;/**
 * Copyright (c) 2016 - 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.
 *
 */
#include &amp;lt;stdio.h&amp;gt;
#include &amp;lt;stdint.h&amp;gt;
#include &amp;lt;stdbool.h&amp;gt;
#include &amp;quot;nordic_common.h&amp;quot;
#include &amp;quot;app_error.h&amp;quot;
#include &amp;quot;app_uart.h&amp;quot;
#include &amp;quot;ble_db_discovery.h&amp;quot;
#include &amp;quot;app_timer.h&amp;quot;
#include &amp;quot;app_util.h&amp;quot;
#include &amp;quot;bsp_btn_ble.h&amp;quot;
#include &amp;quot;ble.h&amp;quot;
#include &amp;quot;ble_gap.h&amp;quot;
#include &amp;quot;ble_hci.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;ble_nus_c.h&amp;quot;
#include &amp;quot;nrf_ble_gatt.h&amp;quot;
#include &amp;quot;nrf_pwr_mgmt.h&amp;quot;
#include &amp;quot;nrf_ble_scan.h&amp;quot;

#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 APP_BLE_CONN_CFG_TAG    1                                       /**&amp;lt; Tag that refers to the BLE stack configuration set with @ref sd_ble_cfg_set. The default tag is @ref BLE_CONN_CFG_TAG_DEFAULT. */
#define APP_BLE_OBSERVER_PRIO   3                                       /**&amp;lt; BLE observer priority of the application. There is no need to modify this value. */

#define UART_TX_BUF_SIZE        256                                     /**&amp;lt; UART TX buffer size. */
#define UART_RX_BUF_SIZE        256                                     /**&amp;lt; UART RX buffer size. */

#define NUS_SERVICE_UUID_TYPE   BLE_UUID_TYPE_VENDOR_BEGIN              /**&amp;lt; UUID type for the Nordic UART Service (vendor specific). */

#define ECHOBACK_BLE_UART_DATA  1                                       /**&amp;lt; Echo the UART data that is received over the Nordic UART Service (NUS) back to the sender. */


BLE_NUS_C_DEF(m_ble_nus_c);                                             /**&amp;lt; BLE Nordic UART Service (NUS) client instance. */
NRF_BLE_GATT_DEF(m_gatt);                                               /**&amp;lt; GATT module instance. */
BLE_DB_DISCOVERY_DEF(m_db_disc);                                        /**&amp;lt; Database discovery module instance. */
NRF_BLE_SCAN_DEF(m_scan);                                               /**&amp;lt; Scanning Module instance. */
NRF_BLE_GQ_DEF(m_ble_gatt_queue,                                        /**&amp;lt; BLE GATT Queue instance. */
               NRF_SDH_BLE_CENTRAL_LINK_COUNT,
               NRF_BLE_GQ_QUEUE_SIZE);

static uint16_t m_ble_nus_max_data_len = BLE_GATT_ATT_MTU_DEFAULT - OPCODE_LENGTH - HANDLE_LENGTH; /**&amp;lt; Maximum length of data (in bytes) that can be transmitted to the peer by the Nordic UART service module. */

/**@brief NUS UUID. */
static ble_uuid_t const m_nus_uuid =
{
    .uuid = BLE_UUID_NUS_SERVICE,
    .type = NUS_SERVICE_UUID_TYPE
};


/**@brief Function for handling asserts in the SoftDevice.
 *
 * @details This function is called in case of an assert in the SoftDevice.
 *
 * @warning This handler is only an example and is not meant for the 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(0xDEADBEEF, line_num, p_file_name);
}


/**@brief Function for handling the Nordic UART Service Client errors.
 *
 * @param[in]   nrf_error   Error code containing information about what went wrong.
 */
static void nus_error_handler(uint32_t nrf_error)
{
    APP_ERROR_HANDLER(nrf_error);
}


/**@brief Function to start scanning. */
static void scan_start(void)
{
    ret_code_t ret;

    ret = nrf_ble_scan_start(&amp;amp;m_scan);
    APP_ERROR_CHECK(ret);

    ret = bsp_indication_set(BSP_INDICATE_SCANNING);
    APP_ERROR_CHECK(ret);
}


/**@brief Function for handling Scanning Module events.
 */
static void scan_evt_handler(scan_evt_t const * p_scan_evt)
{
    ret_code_t err_code;

    switch(p_scan_evt-&amp;gt;scan_evt_id)
    {
         case NRF_BLE_SCAN_EVT_CONNECTING_ERROR:
         {
              err_code = p_scan_evt-&amp;gt;params.connecting_err.err_code;
              APP_ERROR_CHECK(err_code);
         } break;

         case NRF_BLE_SCAN_EVT_CONNECTED:
         {
              ble_gap_evt_connected_t const * p_connected =
                               p_scan_evt-&amp;gt;params.connected.p_connected;
             // Scan is automatically stopped by the connection.
             NRF_LOG_INFO(&amp;quot;Connecting to target %02x%02x%02x%02x%02x%02x&amp;quot;,
                      p_connected-&amp;gt;peer_addr.addr[0],
                      p_connected-&amp;gt;peer_addr.addr[1],
                      p_connected-&amp;gt;peer_addr.addr[2],
                      p_connected-&amp;gt;peer_addr.addr[3],
                      p_connected-&amp;gt;peer_addr.addr[4],
                      p_connected-&amp;gt;peer_addr.addr[5]
                      );
         } break;

         case NRF_BLE_SCAN_EVT_SCAN_TIMEOUT:
         {
             NRF_LOG_INFO(&amp;quot;Scan timed out.&amp;quot;);
             scan_start();
         } break;

         default:
             break;
    }
}


/**@brief Function for initializing the scanning and setting the filters.
 */
static void scan_init(void)
{
    ble_gap_addr_t m_mac_filter;   
    memset(&amp;amp;m_mac_filter, 0, sizeof(m_mac_filter));

    m_mac_filter.addr[0] = 0x11;
    m_mac_filter.addr[1] = 0x22;
    m_mac_filter.addr[2] = 0x33;
    m_mac_filter.addr[3] = 0x44;
    m_mac_filter.addr[4] = 0x55;
    m_mac_filter.addr[5] = 0x66;
    m_mac_filter.addr_type = BLE_GAP_ADDR_TYPE_PUBLIC;

    ret_code_t          err_code;
    nrf_ble_scan_init_t init_scan;

    memset(&amp;amp;init_scan, 0, sizeof(init_scan));

    init_scan.connect_if_match = true;
    init_scan.conn_cfg_tag     = APP_BLE_CONN_CFG_TAG;

    err_code = nrf_ble_scan_init(&amp;amp;m_scan, &amp;amp;init_scan, scan_evt_handler);
    APP_ERROR_CHECK(err_code);

    err_code = nrf_ble_scan_filter_set(&amp;amp;m_scan, SCAN_ADDR_FILTER, &amp;amp;m_mac_filter.addr);

    err_code = nrf_ble_scan_filters_enable(&amp;amp;m_scan, NRF_BLE_SCAN_ADDR_FILTER, false);

    /*NRF_LOG_INFO(&amp;quot;Filter address (before activating) %x:%x:%x:%x:%x:%x TYPE %d&amp;quot;,
            m_mac_filter.addr[0],
            m_mac_filter.addr[1],
            m_mac_filter.addr[2],
            m_mac_filter.addr[3],
            m_mac_filter.addr[4],
            m_mac_filter.addr[5],
            m_mac_filter.addr_type);*/

    NRF_LOG_INFO(&amp;quot;Filter address (before activating) %x:%x:%x:%x:%x:%x&amp;quot;,
        m_mac_filter.addr[0],
        m_mac_filter.addr[1],
        m_mac_filter.addr[2],
        m_mac_filter.addr[3],
        m_mac_filter.addr[4],
        m_mac_filter.addr[5]);
    NRF_LOG_INFO(&amp;quot;Filter address type (before activating): %d&amp;quot;, m_mac_filter.addr_type);


    nrf_ble_scan_filters_t filters;
    memset(&amp;amp;filters, 0, sizeof(nrf_ble_scan_filters_t));
    nrf_ble_scan_filter_get(&amp;amp;m_scan, &amp;amp;filters);
    NRF_LOG_INFO(&amp;quot;Filter address (after activating): COUNT=N/A ENABLED=N/A ADDRESS=%x:%x:%x:%x:%x:%x&amp;quot;,
          /*filters.addr_filter.addr_cnt,
          filters.addr_filter.addr_filter_enabled,*/
          filters.addr_filter.target_addr[0].addr[0],
          filters.addr_filter.target_addr[0].addr[1],
          filters.addr_filter.target_addr[0].addr[2],
          filters.addr_filter.target_addr[0].addr[3],
          filters.addr_filter.target_addr[0].addr[4],
          filters.addr_filter.target_addr[0].addr[5]);

     NRF_LOG_INFO(&amp;quot;Filter address type (after activating): %d&amp;quot;, filters.addr_filter.target_addr[0].addr_type);

    /*err_code = nrf_ble_scan_filter_set(&amp;amp;m_scan, SCAN_UUID_FILTER, &amp;amp;m_nus_uuid);
    APP_ERROR_CHECK(err_code);

    err_code = nrf_ble_scan_filters_enable(&amp;amp;m_scan, NRF_BLE_SCAN_UUID_FILTER, false);
    APP_ERROR_CHECK(err_code);*/
}


/**@brief Function for handling database discovery events.
 *
 * @details This function is a callback function to handle events from the database discovery module.
 *          Depending on the UUIDs that are discovered, this function forwards the events
 *          to their respective services.
 *
 * @param[in] p_event  Pointer to the database discovery event.
 */
static void db_disc_handler(ble_db_discovery_evt_t * p_evt)
{
    ble_nus_c_on_db_disc_evt(&amp;amp;m_ble_nus_c, p_evt);
}


/**@brief Function for handling characters received by the Nordic UART Service (NUS).
 *
 * @details This function takes a list of characters of length data_len and prints the characters out on UART.
 *          If @ref ECHOBACK_BLE_UART_DATA is set, the data is sent back to sender.
 */
static void ble_nus_chars_received_uart_print(uint8_t * p_data, uint16_t data_len)
{
    ret_code_t ret_val;

    NRF_LOG_DEBUG(&amp;quot;Receiving data.&amp;quot;);
    NRF_LOG_HEXDUMP_DEBUG(p_data, data_len);

    for (uint32_t i = 0; i &amp;lt; data_len; i++)
    {
        do
        {
            ret_val = app_uart_put(p_data[i]);
            if ((ret_val != NRF_SUCCESS) &amp;amp;&amp;amp; (ret_val != NRF_ERROR_BUSY))
            {
                NRF_LOG_ERROR(&amp;quot;app_uart_put failed for index 0x%04x.&amp;quot;, i);
                APP_ERROR_CHECK(ret_val);
            }
        } while (ret_val == NRF_ERROR_BUSY);
    }
    if (p_data[data_len-1] == &amp;#39;\r&amp;#39;)
    {
        while (app_uart_put(&amp;#39;\n&amp;#39;) == NRF_ERROR_BUSY);
    }
    if (ECHOBACK_BLE_UART_DATA)
    {
        // Send data back to the peripheral.
        do
        {
            ret_val = ble_nus_c_string_send(&amp;amp;m_ble_nus_c, p_data, data_len);
            if ((ret_val != NRF_SUCCESS) &amp;amp;&amp;amp; (ret_val != NRF_ERROR_BUSY))
            {
                NRF_LOG_ERROR(&amp;quot;Failed sending NUS message. Error 0x%x. &amp;quot;, ret_val);
                APP_ERROR_CHECK(ret_val);
            }
        } while (ret_val == NRF_ERROR_BUSY);
    }
}


/**@brief   Function for handling app_uart events.
 *
 * @details This function receives a single character from the app_uart module and appends it to
 *          a string. The string is sent over BLE when the last character received is a
 *          &amp;#39;new line&amp;#39; &amp;#39;\n&amp;#39; (hex 0x0A) or if the string reaches the maximum data length.
 */
void uart_event_handle(app_uart_evt_t * p_event)
{
    static uint8_t data_array[BLE_NUS_MAX_DATA_LEN];
    static uint16_t index = 0;
    uint32_t ret_val;

    switch (p_event-&amp;gt;evt_type)
    {
        /**@snippet [Handling data from UART] */
        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)))
            {
                NRF_LOG_DEBUG(&amp;quot;Ready to send data over BLE NUS&amp;quot;);
                NRF_LOG_HEXDUMP_DEBUG(data_array, index);

                do
                {
                    ret_val = ble_nus_c_string_send(&amp;amp;m_ble_nus_c, data_array, index);
                    if ( (ret_val != NRF_ERROR_INVALID_STATE) &amp;amp;&amp;amp; (ret_val != NRF_ERROR_RESOURCES) )
                    {
                        APP_ERROR_CHECK(ret_val);
                    }
                } while (ret_val == NRF_ERROR_RESOURCES);

                index = 0;
            }
            break;

        /**@snippet [Handling data from UART] */
        case APP_UART_COMMUNICATION_ERROR:
            NRF_LOG_ERROR(&amp;quot;Communication error occurred while handling UART.&amp;quot;);
            APP_ERROR_HANDLER(p_event-&amp;gt;data.error_communication);
            break;

        case APP_UART_FIFO_ERROR:
            NRF_LOG_ERROR(&amp;quot;Error occurred in FIFO module used by UART.&amp;quot;);
            APP_ERROR_HANDLER(p_event-&amp;gt;data.error_code);
            break;

        default:
            break;
    }
}


/**@brief Callback handling Nordic UART Service (NUS) client events.
 *
 * @details This function is called to notify the application of NUS client events.
 *
 * @param[in]   p_ble_nus_c   NUS client handle. This identifies the NUS client.
 * @param[in]   p_ble_nus_evt Pointer to the NUS client event.
 */

/**@snippet [Handling events from the ble_nus_c module] */
static void ble_nus_c_evt_handler(ble_nus_c_t * p_ble_nus_c, ble_nus_c_evt_t const * p_ble_nus_evt)
{
    ret_code_t err_code;

    switch (p_ble_nus_evt-&amp;gt;evt_type)
    {
        case BLE_NUS_C_EVT_DISCOVERY_COMPLETE:
            NRF_LOG_INFO(&amp;quot;Discovery complete.&amp;quot;);
            err_code = ble_nus_c_handles_assign(p_ble_nus_c, p_ble_nus_evt-&amp;gt;conn_handle, &amp;amp;p_ble_nus_evt-&amp;gt;handles);
            APP_ERROR_CHECK(err_code);

            err_code = ble_nus_c_tx_notif_enable(p_ble_nus_c);
            APP_ERROR_CHECK(err_code);
            NRF_LOG_INFO(&amp;quot;Connected to device with Nordic UART Service.&amp;quot;);
            break;

        case BLE_NUS_C_EVT_NUS_TX_EVT:
            ble_nus_chars_received_uart_print(p_ble_nus_evt-&amp;gt;p_data, p_ble_nus_evt-&amp;gt;data_len);
            break;

        case BLE_NUS_C_EVT_DISCONNECTED:
            NRF_LOG_INFO(&amp;quot;Disconnected.&amp;quot;);
            scan_start();
            break;
    }
}
/**@snippet [Handling events from the ble_nus_c module] */


/**
 * @brief Function for handling shutdown events.
 *
 * @param[in]   event       Shutdown type.
 */
static bool shutdown_handler(nrf_pwr_mgmt_evt_t event)
{
    ret_code_t err_code;

    err_code = bsp_indication_set(BSP_INDICATE_IDLE);
    APP_ERROR_CHECK(err_code);

    switch (event)
    {
        case NRF_PWR_MGMT_EVT_PREPARE_WAKEUP:
            // Prepare wakeup buttons.
            err_code = bsp_btn_ble_sleep_mode_prepare();
            APP_ERROR_CHECK(err_code);
            break;

        default:
            break;
    }

    return true;
}

NRF_PWR_MGMT_HANDLER_REGISTER(shutdown_handler, APP_SHUTDOWN_HANDLER_PRIORITY);


/**@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;
    ble_gap_evt_t const * p_gap_evt = &amp;amp;p_ble_evt-&amp;gt;evt.gap_evt;

    switch (p_ble_evt-&amp;gt;header.evt_id)
    {
        case BLE_GAP_EVT_CONNECTED:
            err_code = ble_nus_c_handles_assign(&amp;amp;m_ble_nus_c, p_ble_evt-&amp;gt;evt.gap_evt.conn_handle, NULL);
            APP_ERROR_CHECK(err_code);

            err_code = bsp_indication_set(BSP_INDICATE_CONNECTED);
            APP_ERROR_CHECK(err_code);

            // start discovery of services. The NUS Client waits for a discovery result
            err_code = ble_db_discovery_start(&amp;amp;m_db_disc, p_ble_evt-&amp;gt;evt.gap_evt.conn_handle);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_DISCONNECTED:

            NRF_LOG_INFO(&amp;quot;Disconnected. conn_handle: 0x%x, reason: 0x%x&amp;quot;,
                         p_gap_evt-&amp;gt;conn_handle,
                         p_gap_evt-&amp;gt;params.disconnected.reason);
            break;

        case BLE_GAP_EVT_TIMEOUT:
            if (p_gap_evt-&amp;gt;params.timeout.src == BLE_GAP_TIMEOUT_SRC_CONN)
            {
                NRF_LOG_INFO(&amp;quot;Connection Request timed out.&amp;quot;);
            }
            break;

        case BLE_GAP_EVT_SEC_PARAMS_REQUEST:
            // Pairing not supported.
            err_code = sd_ble_gap_sec_params_reply(p_ble_evt-&amp;gt;evt.gap_evt.conn_handle, BLE_GAP_SEC_STATUS_PAIRING_NOT_SUPP, NULL, NULL);
            APP_ERROR_CHECK(err_code);
            break;

        case BLE_GAP_EVT_CONN_PARAM_UPDATE_REQUEST:
            // Accepting parameters requested by peer.
            err_code = sd_ble_gap_conn_param_update(p_gap_evt-&amp;gt;conn_handle,
                                                    &amp;amp;p_gap_evt-&amp;gt;params.conn_param_update_request.conn_params);
            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_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:
            break;
    }
}


/**@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 GATT library. */
void gatt_evt_handler(nrf_ble_gatt_t * p_gatt, nrf_ble_gatt_evt_t const * p_evt)
{
    if (p_evt-&amp;gt;evt_id == NRF_BLE_GATT_EVT_ATT_MTU_UPDATED)
    {
        NRF_LOG_INFO(&amp;quot;ATT MTU exchange completed.&amp;quot;);

        m_ble_nus_max_data_len = p_evt-&amp;gt;params.att_mtu_effective - OPCODE_LENGTH - HANDLE_LENGTH;
        NRF_LOG_INFO(&amp;quot;Ble NUS max data length set to 0x%X(%d)&amp;quot;, m_ble_nus_max_data_len, m_ble_nus_max_data_len);
    }
}


/**@brief Function for initializing the GATT library. */
void gatt_init(void)
{
    ret_code_t err_code;

    err_code = nrf_ble_gatt_init(&amp;amp;m_gatt, gatt_evt_handler);
    APP_ERROR_CHECK(err_code);

    err_code = nrf_ble_gatt_att_mtu_central_set(&amp;amp;m_gatt, NRF_SDH_BLE_GATT_MAX_MTU_SIZE);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for handling events from the BSP module.
 *
 * @param[in] event  Event generated by button press.
 */
void bsp_event_handler(bsp_event_t event)
{
    ret_code_t err_code;

    switch (event)
    {
        case BSP_EVENT_SLEEP:
            nrf_pwr_mgmt_shutdown(NRF_PWR_MGMT_SHUTDOWN_GOTO_SYSOFF);
            break;

        case BSP_EVENT_DISCONNECT:
            err_code = sd_ble_gap_disconnect(m_ble_nus_c.conn_handle,
                                             BLE_HCI_REMOTE_USER_TERMINATED_CONNECTION);
            if (err_code != NRF_ERROR_INVALID_STATE)
            {
                APP_ERROR_CHECK(err_code);
            }
            break;

        default:
            break;
    }
}

/**@brief Function for initializing the UART. */
static void uart_init(void)
{
    ret_code_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_DISABLED,
        .use_parity   = false,
        .baud_rate    = UART_BAUDRATE_BAUDRATE_Baud115200
    };

    APP_UART_FIFO_INIT(&amp;amp;comm_params,
                       UART_RX_BUF_SIZE,
                       UART_TX_BUF_SIZE,
                       uart_event_handle,
                       APP_IRQ_PRIORITY_LOWEST,
                       err_code);

    APP_ERROR_CHECK(err_code);
}

/**@brief Function for initializing the Nordic UART Service (NUS) client. */
static void nus_c_init(void)
{
    ret_code_t       err_code;
    ble_nus_c_init_t init;

    init.evt_handler   = ble_nus_c_evt_handler;
    init.error_handler = nus_error_handler;
    init.p_gatt_queue  = &amp;amp;m_ble_gatt_queue;

    err_code = ble_nus_c_init(&amp;amp;m_ble_nus_c, &amp;amp;init);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for initializing buttons and leds. */
static void buttons_leds_init(void)
{
    ret_code_t err_code;
    bsp_event_t startup_event;

    err_code = bsp_init(BSP_INIT_LEDS, bsp_event_handler);
    APP_ERROR_CHECK(err_code);

    err_code = bsp_btn_ble_init(NULL, &amp;amp;startup_event);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for initializing the timer. */
static void timer_init(void)
{
    ret_code_t err_code = app_timer_init();
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for initializing the nrf log module. */
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 initializing the database discovery module. */
static void db_discovery_init(void)
{
    ble_db_discovery_init_t db_init;

    memset(&amp;amp;db_init, 0, sizeof(ble_db_discovery_init_t));

    db_init.evt_handler  = db_disc_handler;
    db_init.p_gatt_queue = &amp;amp;m_ble_gatt_queue;

    ret_code_t err_code = ble_db_discovery_init(&amp;amp;db_init);
    APP_ERROR_CHECK(err_code);
}


/**@brief Function for handling the idle state (main loop).
 *
 * @details Handles any pending log operations, then sleeps until the next event occurs.
 */
static void idle_state_handle(void)
{
    if (NRF_LOG_PROCESS() == false)
    {
        nrf_pwr_mgmt_run();
    }
}


int main(void)
{
    // Initialize.
    log_init();
    timer_init();
    uart_init();
    buttons_leds_init();
    db_discovery_init();
    power_management_init();
    ble_stack_init();
    gatt_init();
    nus_c_init();
    scan_init();

    // Start execution.
    printf(&amp;quot;BLE UART central example started.\r\n&amp;quot;);
    NRF_LOG_INFO(&amp;quot;BLE UART central example started.&amp;quot;);
    scan_start();

    // Enter main loop.
    for (;;)
    {
        idle_state_handle();
    }
}
&lt;/pre&gt;&lt;/p&gt;
&lt;p&gt;I got the following output:&lt;/p&gt;
&lt;p&gt;&lt;pre class="ui-code" data-mode="text"&gt;&amp;lt;info&amp;gt; app_timer: RTC: initialized.
&amp;lt;info&amp;gt; app: Filter address (before activating) 11:22:33:44:55:66
&amp;lt;info&amp;gt; app: Filter address type (before activating): 0
&amp;lt;info&amp;gt; app: Filter address (after activating): COUNT=N/A ENABLED=N/A ADDRESS=11:22:33:44:55:66
&amp;lt;info&amp;gt; app: Filter address type (after activating): 0
&amp;lt;info&amp;gt; app: BLE UART central example started.&lt;/pre&gt;&lt;/p&gt;
&lt;p&gt;Could you check if you are getting the same output?&lt;/p&gt;
&lt;p&gt;Best regards,&lt;/p&gt;
&lt;p&gt;Simon&lt;/p&gt;
&lt;div style="left:-45px;top:491.071px;"&gt;
&lt;div&gt;&lt;/div&gt;
&lt;/div&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/224561?ContentTypeID=1</link><pubDate>Mon, 09 Dec 2019 21:56:36 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:5d5f7d87-8b3d-4850-b81b-abcd44f627aa</guid><dc:creator>Simon</dc:creator><description>&lt;p&gt;This might be a bug. I will talk to the developers and try to get to the bottom of it.&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: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/224020?ContentTypeID=1</link><pubDate>Thu, 05 Dec 2019 16:35:43 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:7c20cee6-8c1f-486c-8cdc-2d225e97ecad</guid><dc:creator>jfarjona</dc:creator><description>&lt;p&gt;Thanks.&amp;nbsp; This will work for us for now.&amp;nbsp; But is not a sustainable solution, as we will have to find out if the address is public or private on our own, instead of using the SDK; or do all sort of IF statements to make sure the filter is set properly.&lt;/p&gt;
&lt;p&gt;Cheers,&lt;/p&gt;
&lt;p&gt;Juan&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/223915?ContentTypeID=1</link><pubDate>Thu, 05 Dec 2019 13:22:23 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:2bf65819-ddf2-4365-b9b4-9917b05bf8ee</guid><dc:creator>Simon</dc:creator><description>&lt;p&gt;I am happy you found a solution and thanks for sharing it. I&amp;#39;ve not had time to figure out a non-hacked solution to your problem, but let&amp;#39;s go with your solution temporary. If you encounter any problems with this solution, please tell me and I will look into it.&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: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/223438?ContentTypeID=1</link><pubDate>Tue, 03 Dec 2019 21:25:56 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:76ff3688-8db5-4461-9d06-a55506077266</guid><dc:creator>jfarjona</dc:creator><description>&lt;p&gt;So for those who may be under the same fight... I hacked the code by:&lt;/p&gt;
&lt;pre&gt; if (err_code == NRF_SUCCESS) {
      err_code = nrf_ble_scan_filter_set(&amp;amp;m_scan, SCAN_ADDR_FILTER, &amp;amp;m_mac_filter.addr);
    }
    if (err_code == NRF_SUCCESS) {
      // hack this:
      m_scan.scan_filters.addr_filter.target_addr[0].addr_type = BLE_GAP_ADDR_TYPE_PUBLIC;
      err_code = nrf_ble_scan_filters_enable(&amp;amp;m_scan, NRF_BLE_SCAN_ADDR_FILTER, false);
    }&lt;/pre&gt;
&lt;p&gt;And it all works.&amp;nbsp; Far from ideal, but solves my problem.&lt;/p&gt;
&lt;p&gt;If anyone knows a non-hacked solution, please let me know.&lt;/p&gt;
&lt;p&gt;&lt;/p&gt;
&lt;p&gt;Juan&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/223437?ContentTypeID=1</link><pubDate>Tue, 03 Dec 2019 21:07:48 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:903e81cf-22bc-4ab2-a42f-59670f8ad0e4</guid><dc:creator>jfarjona</dc:creator><description>&lt;p&gt;And now I am retrieving the filters after I start scanning, and here is what I see the problem happening.&lt;/p&gt;
&lt;p&gt;&lt;pre class="ui-code" data-mode="text"&gt;
 [ ... ]
 
    err_code = scan_start();
      if (err_code == NRF_SUCCESS) {
        char *msg = malloc(255);
        memset(msg, 0, 255);
        sprintf(msg, &amp;quot;SCANNING FOR %x:%x:%x:%x:%x:%x TYPE %d&amp;quot;,
            m_mac_filter.addr[0],
            m_mac_filter.addr[1],
            m_mac_filter.addr[2],
            m_mac_filter.addr[3],
            m_mac_filter.addr[4],
            m_mac_filter.addr[5],
            m_mac_filter.addr_type);
        err_code = sendStatusToUART(msg);
        nrf_ble_scan_filters_t filters;
        memset(&amp;amp;filters, 0, sizeof(nrf_ble_scan_filters_t));
        memset(msg, 0, 255);
        nrf_ble_scan_filter_get( &amp;amp;m_scan, &amp;amp;filters);
        sprintf(msg, &amp;quot;FILTERS: COUNT=%d ENABLED=%d ADDRESS=%x:%x:%x:%x:%x:%x TYPE=%d&amp;quot;,
            filters.addr_filter.addr_cnt,
            filters.addr_filter.addr_filter_enabled,
            filters.addr_filter.target_addr[0].addr[0],
            filters.addr_filter.target_addr[0].addr[1],
            filters.addr_filter.target_addr[0].addr[2],
            filters.addr_filter.target_addr[0].addr[3],
            filters.addr_filter.target_addr[0].addr[4],
            filters.addr_filter.target_addr[0].addr[5],
            filters.addr_filter.target_addr[0].addr_type);
        err_code = sendStatusToUART(msg);
        free(msg);
    }
    &lt;/pre&gt;&lt;/p&gt;
&lt;p&gt;&lt;/p&gt;
&lt;p&gt;And I am getting the following:&lt;/p&gt;
&lt;p&gt;&lt;/p&gt;
&lt;p&gt;SCANNING FOR 25:9a:5c:93:54:94 TYPE 0&lt;br /&gt;&lt;br /&gt;FILTERS: COUNT=1 ENABLED=1 ADDRESS=25:9a:5c:93:54:94 TYPE=2&lt;/p&gt;
&lt;p&gt;For some reason, the scanning module is replacing the address type to&lt;/p&gt;
&lt;p&gt;BLE_GAP_ADDR_TYPE_RANDOM_PRIVATE_RESOLVABLE&lt;/p&gt;
&lt;p&gt;When the address is of type BLE_GAP_ADDR_TYPE_PUBLIC.&lt;/p&gt;
&lt;p&gt;Now, looking at the code on the SDK, the function that determines the type of address is&lt;/p&gt;
&lt;pre&gt;nrf_ble_scan_address_type_decode&lt;br /&gt;&lt;br /&gt;&lt;/pre&gt;
&lt;p&gt;And it checks if it is public by the code:&lt;/p&gt;
&lt;pre&gt; // See Bluetooth Core Specification Vol 6, Part B, section 1.3.
    addr_type  = addr_type &amp;gt;&amp;gt; 6;
    addr_type &amp;amp;= 0x03;&lt;/pre&gt;
&lt;p&gt;In my case, the first byte is 94, which 96 &amp;gt;&amp;gt; 6 is 1, so it resolves as Public.&amp;nbsp; But once the scanning starts, it gets resolved otherwise.&lt;/p&gt;
&lt;p&gt;Does anyone know how can I fix this?&amp;nbsp; Is this a bug in the SDK ?&amp;nbsp; (I am using version 16, softdevice 7.0.1 for s104)&lt;/p&gt;
&lt;p&gt;Thanks,&lt;/p&gt;
&lt;p&gt;Juan&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item><item><title>RE: Scanning cannot find Public MAC</title><link>https://devzone.nordicsemi.com/thread/223431?ContentTypeID=1</link><pubDate>Tue, 03 Dec 2019 20:32:31 GMT</pubDate><guid isPermaLink="false">137ad170-7792-4731-bb38-c0d22fbe4515:ccf38e6d-cb3a-412c-a514-8d11d58e42bc</guid><dc:creator>jfarjona</dc:creator><description>&lt;p&gt;I have followed the comments from Kenneth (&lt;a href="https://devzone.nordicsemi.com/f/nordic-q-a/44653/scan-address-filter-not-matching-addr_type-public-vs-random_static"&gt;https://devzone.nordicsemi.com/f/nordic-q-a/44653/scan-address-filter-not-matching-addr_type-public-vs-random_static)&lt;/a&gt;.&amp;nbsp;&lt;/p&gt;
&lt;p&gt;&lt;pre class="ui-code" data-mode="text"&gt;    case BLE_GAP_EVT_ADV_REPORT: {
      char* msg = malloc(256);
      memset(msg,0,256);
      sprintf(msg, &amp;quot;FOUND ADDRESS %x:%x:%x:%x:%x:%x TYPE %d RESPONSE %d&amp;quot;,
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[0],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[1],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[2],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[3],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[4],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr[5],
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.peer_addr.addr_type,
          p_ble_evt-&amp;gt;evt.gap_evt.params.adv_report.type.scan_response);
      sendStatusToUART(msg);
      free(msg);
      break;
    }
    &lt;/pre&gt;&lt;/p&gt;
&lt;p&gt;The report shows:&lt;/p&gt;
&lt;p&gt;FOUND ADDRESS 25:9a:5c:93:54:94 TYPE 0 RESPONSE 1&lt;/p&gt;
&lt;p&gt;Which shows me that it should be matched (that&amp;#39;s the sought mac)... any ideas? &amp;nbsp;&lt;/p&gt;
&lt;p&gt;Thanks,&lt;/p&gt;
&lt;p&gt;&lt;/p&gt;
&lt;p&gt;Juan&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;</description></item></channel></rss>