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NRF_LOG_INFO Output

Hello,

I'm using SDK 15.0 and I'm running the spis example on Keil. I can't get the log info to print on uart (I'm using PuTTY).

I tried enabling the log in sdk_config.h (NRF_LOG_ENABLED 1 and NRF_LOG_BACKEND_SERIAL_USES_UART 1) as suggested in this post, but then I get the error "undefined reference to `nrf_log_default_backends_init'" in main.c.

I then tried adding the files nrf_log_backend_serial.c, nrf_log_backend_uart.c and nrf_log_default_backends.c to the folder nRF_log as suggested in this post, but that just gives me more errors.

Help please!

Parents
  • Hi,

    There is a lot of dependencies in NRF_LOG. You need to add the source files like you did, and you need to add the source files of the new errors you get. Note that you also have to enable the dependency modules in your sdk_config.h file.

    I checked the SPIS example, and this is what i had to modify to get it compiling. In addition to adding the three source files you mention, I added this section to sdk_config.h file:

    //==========================================================
    // <e> NRF_LOG_BACKEND_RTT_ENABLED - nrf_log_backend_rtt - Log RTT backend
    //==========================================================
    #ifndef NRF_LOG_BACKEND_RTT_ENABLED
    #define NRF_LOG_BACKEND_RTT_ENABLED 0
    #endif
    // <o> NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE - Size of buffer for partially processed strings. 
    // <i> Size of the buffer is a trade-off between RAM usage and processing.
    // <i> if buffer is smaller then strings will often be fragmented.
    // <i> It is recommended to use size which will fit typical log and only the
    // <i> longer one will be fragmented.
    
    #ifndef NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE
    #define NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE 64
    #endif
    
    // <o> NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS - Period before retrying writing to RTT 
    #ifndef NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS
    #define NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS 1
    #endif
    
    // <o> NRF_LOG_BACKEND_RTT_TX_RETRY_CNT - Writing to RTT retries. 
    // <i> If RTT fails to accept any new data after retries
    // <i> module assumes that host is not active and on next
    // <i> request it will perform only one write attempt.
    // <i> On successful writing, module assumes that host is active
    // <i> and scheme with retry is applied again.
    
    #ifndef NRF_LOG_BACKEND_RTT_TX_RETRY_CNT
    #define NRF_LOG_BACKEND_RTT_TX_RETRY_CNT 3
    #endif
    
    // </e>
    
    // <e> NRF_LOG_BACKEND_UART_ENABLED - nrf_log_backend_uart - Log UART backend
    //==========================================================
    #ifndef NRF_LOG_BACKEND_UART_ENABLED
    #define NRF_LOG_BACKEND_UART_ENABLED 1
    #endif
    // <o> NRF_LOG_BACKEND_UART_TX_PIN - UART TX pin 
    #ifndef NRF_LOG_BACKEND_UART_TX_PIN
    #define NRF_LOG_BACKEND_UART_TX_PIN 6
    #endif
    
    // <o> NRF_LOG_BACKEND_UART_BAUDRATE  - Default Baudrate
     
    // <323584=> 1200 baud 
    // <643072=> 2400 baud 
    // <1290240=> 4800 baud 
    // <2576384=> 9600 baud 
    // <3862528=> 14400 baud 
    // <5152768=> 19200 baud 
    // <7716864=> 28800 baud 
    // <10289152=> 38400 baud 
    // <15400960=> 57600 baud 
    // <20615168=> 76800 baud 
    // <30801920=> 115200 baud 
    // <61865984=> 230400 baud 
    // <67108864=> 250000 baud 
    // <121634816=> 460800 baud 
    // <251658240=> 921600 baud 
    // <268435456=> 1000000 baud 
    
    #ifndef NRF_LOG_BACKEND_UART_BAUDRATE
    #define NRF_LOG_BACKEND_UART_BAUDRATE 30801920
    #endif
    
    // <o> NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE - Size of buffer for partially processed strings. 
    // <i> Size of the buffer is a trade-off between RAM usage and processing.
    // <i> if buffer is smaller then strings will often be fragmented.
    // <i> It is recommended to use size which will fit typical log and only the
    // <i> longer one will be fragmented.
    
    #ifndef NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE
    #define NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE 64
    #endif
    
    // </e>

    Then I included the UART driver config to sdk_config.h:

    // <e> UART_ENABLED - nrf_drv_uart - UART/UARTE peripheral driver - legacy layer
    //==========================================================
    #ifndef UART_ENABLED
    #define UART_ENABLED 1
    #endif
    // <o> UART_DEFAULT_CONFIG_HWFC  - Hardware Flow Control
     
    // <0=> Disabled 
    // <1=> Enabled 
    
    #ifndef UART_DEFAULT_CONFIG_HWFC
    #define UART_DEFAULT_CONFIG_HWFC 0
    #endif
    
    // <o> UART_DEFAULT_CONFIG_PARITY  - Parity
     
    // <0=> Excluded 
    // <14=> Included 
    
    #ifndef UART_DEFAULT_CONFIG_PARITY
    #define UART_DEFAULT_CONFIG_PARITY 0
    #endif
    
    // <o> UART_DEFAULT_CONFIG_BAUDRATE  - Default Baudrate
     
    // <323584=> 1200 baud 
    // <643072=> 2400 baud 
    // <1290240=> 4800 baud 
    // <2576384=> 9600 baud 
    // <3862528=> 14400 baud 
    // <5152768=> 19200 baud 
    // <7716864=> 28800 baud 
    // <10289152=> 38400 baud 
    // <15400960=> 57600 baud 
    // <20615168=> 76800 baud 
    // <30801920=> 115200 baud 
    // <61865984=> 230400 baud 
    // <67108864=> 250000 baud 
    // <121634816=> 460800 baud 
    // <251658240=> 921600 baud 
    // <268435456=> 1000000 baud 
    
    #ifndef UART_DEFAULT_CONFIG_BAUDRATE
    #define UART_DEFAULT_CONFIG_BAUDRATE 30801920
    #endif
    
    // <o> UART_DEFAULT_CONFIG_IRQ_PRIORITY  - Interrupt priority
     
    
    // <i> Priorities 0,2 (nRF51) and 0,1,4,5 (nRF52) are reserved for SoftDevice
    // <0=> 0 (highest) 
    // <1=> 1 
    // <2=> 2 
    // <3=> 3 
    // <4=> 4 
    // <5=> 5 
    // <6=> 6 
    // <7=> 7 
    
    #ifndef UART_DEFAULT_CONFIG_IRQ_PRIORITY
    #define UART_DEFAULT_CONFIG_IRQ_PRIORITY 7
    #endif
    
    // <q> UART_EASY_DMA_SUPPORT  - Driver supporting EasyDMA
     
    
    #ifndef UART_EASY_DMA_SUPPORT
    #define UART_EASY_DMA_SUPPORT 1
    #endif
    
    // <q> UART_LEGACY_SUPPORT  - Driver supporting Legacy mode
     
    
    #ifndef UART_LEGACY_SUPPORT
    #define UART_LEGACY_SUPPORT 0
    #endif
    
    // <e> UART0_ENABLED - Enable UART0 instance
    //==========================================================
    #ifndef UART0_ENABLED
    #define UART0_ENABLED 1
    #endif
    // <q> UART0_CONFIG_USE_EASY_DMA  - Default setting for using EasyDMA
     
    
    #ifndef UART0_CONFIG_USE_EASY_DMA
    #define UART0_CONFIG_USE_EASY_DMA 1
    #endif
    
    // </e>
    
    // </e>

    Finally, included the source files nrfx_uarte.c and nrf_drv_uart.c.

    Best regards,
    Jørgen

Reply
  • Hi,

    There is a lot of dependencies in NRF_LOG. You need to add the source files like you did, and you need to add the source files of the new errors you get. Note that you also have to enable the dependency modules in your sdk_config.h file.

    I checked the SPIS example, and this is what i had to modify to get it compiling. In addition to adding the three source files you mention, I added this section to sdk_config.h file:

    //==========================================================
    // <e> NRF_LOG_BACKEND_RTT_ENABLED - nrf_log_backend_rtt - Log RTT backend
    //==========================================================
    #ifndef NRF_LOG_BACKEND_RTT_ENABLED
    #define NRF_LOG_BACKEND_RTT_ENABLED 0
    #endif
    // <o> NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE - Size of buffer for partially processed strings. 
    // <i> Size of the buffer is a trade-off between RAM usage and processing.
    // <i> if buffer is smaller then strings will often be fragmented.
    // <i> It is recommended to use size which will fit typical log and only the
    // <i> longer one will be fragmented.
    
    #ifndef NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE
    #define NRF_LOG_BACKEND_RTT_TEMP_BUFFER_SIZE 64
    #endif
    
    // <o> NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS - Period before retrying writing to RTT 
    #ifndef NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS
    #define NRF_LOG_BACKEND_RTT_TX_RETRY_DELAY_MS 1
    #endif
    
    // <o> NRF_LOG_BACKEND_RTT_TX_RETRY_CNT - Writing to RTT retries. 
    // <i> If RTT fails to accept any new data after retries
    // <i> module assumes that host is not active and on next
    // <i> request it will perform only one write attempt.
    // <i> On successful writing, module assumes that host is active
    // <i> and scheme with retry is applied again.
    
    #ifndef NRF_LOG_BACKEND_RTT_TX_RETRY_CNT
    #define NRF_LOG_BACKEND_RTT_TX_RETRY_CNT 3
    #endif
    
    // </e>
    
    // <e> NRF_LOG_BACKEND_UART_ENABLED - nrf_log_backend_uart - Log UART backend
    //==========================================================
    #ifndef NRF_LOG_BACKEND_UART_ENABLED
    #define NRF_LOG_BACKEND_UART_ENABLED 1
    #endif
    // <o> NRF_LOG_BACKEND_UART_TX_PIN - UART TX pin 
    #ifndef NRF_LOG_BACKEND_UART_TX_PIN
    #define NRF_LOG_BACKEND_UART_TX_PIN 6
    #endif
    
    // <o> NRF_LOG_BACKEND_UART_BAUDRATE  - Default Baudrate
     
    // <323584=> 1200 baud 
    // <643072=> 2400 baud 
    // <1290240=> 4800 baud 
    // <2576384=> 9600 baud 
    // <3862528=> 14400 baud 
    // <5152768=> 19200 baud 
    // <7716864=> 28800 baud 
    // <10289152=> 38400 baud 
    // <15400960=> 57600 baud 
    // <20615168=> 76800 baud 
    // <30801920=> 115200 baud 
    // <61865984=> 230400 baud 
    // <67108864=> 250000 baud 
    // <121634816=> 460800 baud 
    // <251658240=> 921600 baud 
    // <268435456=> 1000000 baud 
    
    #ifndef NRF_LOG_BACKEND_UART_BAUDRATE
    #define NRF_LOG_BACKEND_UART_BAUDRATE 30801920
    #endif
    
    // <o> NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE - Size of buffer for partially processed strings. 
    // <i> Size of the buffer is a trade-off between RAM usage and processing.
    // <i> if buffer is smaller then strings will often be fragmented.
    // <i> It is recommended to use size which will fit typical log and only the
    // <i> longer one will be fragmented.
    
    #ifndef NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE
    #define NRF_LOG_BACKEND_UART_TEMP_BUFFER_SIZE 64
    #endif
    
    // </e>

    Then I included the UART driver config to sdk_config.h:

    // <e> UART_ENABLED - nrf_drv_uart - UART/UARTE peripheral driver - legacy layer
    //==========================================================
    #ifndef UART_ENABLED
    #define UART_ENABLED 1
    #endif
    // <o> UART_DEFAULT_CONFIG_HWFC  - Hardware Flow Control
     
    // <0=> Disabled 
    // <1=> Enabled 
    
    #ifndef UART_DEFAULT_CONFIG_HWFC
    #define UART_DEFAULT_CONFIG_HWFC 0
    #endif
    
    // <o> UART_DEFAULT_CONFIG_PARITY  - Parity
     
    // <0=> Excluded 
    // <14=> Included 
    
    #ifndef UART_DEFAULT_CONFIG_PARITY
    #define UART_DEFAULT_CONFIG_PARITY 0
    #endif
    
    // <o> UART_DEFAULT_CONFIG_BAUDRATE  - Default Baudrate
     
    // <323584=> 1200 baud 
    // <643072=> 2400 baud 
    // <1290240=> 4800 baud 
    // <2576384=> 9600 baud 
    // <3862528=> 14400 baud 
    // <5152768=> 19200 baud 
    // <7716864=> 28800 baud 
    // <10289152=> 38400 baud 
    // <15400960=> 57600 baud 
    // <20615168=> 76800 baud 
    // <30801920=> 115200 baud 
    // <61865984=> 230400 baud 
    // <67108864=> 250000 baud 
    // <121634816=> 460800 baud 
    // <251658240=> 921600 baud 
    // <268435456=> 1000000 baud 
    
    #ifndef UART_DEFAULT_CONFIG_BAUDRATE
    #define UART_DEFAULT_CONFIG_BAUDRATE 30801920
    #endif
    
    // <o> UART_DEFAULT_CONFIG_IRQ_PRIORITY  - Interrupt priority
     
    
    // <i> Priorities 0,2 (nRF51) and 0,1,4,5 (nRF52) are reserved for SoftDevice
    // <0=> 0 (highest) 
    // <1=> 1 
    // <2=> 2 
    // <3=> 3 
    // <4=> 4 
    // <5=> 5 
    // <6=> 6 
    // <7=> 7 
    
    #ifndef UART_DEFAULT_CONFIG_IRQ_PRIORITY
    #define UART_DEFAULT_CONFIG_IRQ_PRIORITY 7
    #endif
    
    // <q> UART_EASY_DMA_SUPPORT  - Driver supporting EasyDMA
     
    
    #ifndef UART_EASY_DMA_SUPPORT
    #define UART_EASY_DMA_SUPPORT 1
    #endif
    
    // <q> UART_LEGACY_SUPPORT  - Driver supporting Legacy mode
     
    
    #ifndef UART_LEGACY_SUPPORT
    #define UART_LEGACY_SUPPORT 0
    #endif
    
    // <e> UART0_ENABLED - Enable UART0 instance
    //==========================================================
    #ifndef UART0_ENABLED
    #define UART0_ENABLED 1
    #endif
    // <q> UART0_CONFIG_USE_EASY_DMA  - Default setting for using EasyDMA
     
    
    #ifndef UART0_CONFIG_USE_EASY_DMA
    #define UART0_CONFIG_USE_EASY_DMA 1
    #endif
    
    // </e>
    
    // </e>

    Finally, included the source files nrfx_uarte.c and nrf_drv_uart.c.

    Best regards,
    Jørgen

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