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MEK-MIMX8QM_manifest_v3_8.xml
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MEK-MIMX8QM_manifest_v3_8.xml
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<?xml version="1.0" encoding="UTF-8"?>
<ksdk:manifest xmlns:ksdk="http://nxp.com/ksdk/2.0/ksdk_manifest_v3.0.xsd" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" id="SDK_2.x_MEK-MIMX8QM" name="MEK-MIMX8QM" brief="This is SDK version 2.9.0 manifest file. It describes the content of the MEK-MIMX8QM and additional settings for tools that support SDK version 2.9.0" format_version="3.8" api_version="2.0.0" configuration="0d638ad8aed8bca5a0b4eafda654a6ab" xsi:schemaLocation="http://nxp.com/ksdk/2.0/ksdk_manifest_v3.0.xsd http://nxp.com/mcuxpresso/sdk/sdk_manifest_v3.8.xsd">
<!--Timestamp (UTC): 2021-01-18 03:35:53.179089-->
<!--This manifest is generated based on sdk repo commit: 3073e476325c80265f0c6d9a806af8fd0bfd767b-->
<defines>
<define name="CPU_$|package|" value=""/>
<define name="CPU_$|package|_$|core|" value=""/>
<define name="CPU_$|package|_$|core_name|" value=""/>
</defines>
<externalDefinitions>
<definition extID="com.crt.advproject.config.exe.debug"/>
<definition extID="com.crt.advproject.config.exe.release"/>
<definition extID="QSPI_FLASH_MIMX8QM6xxxFF"/>
</externalDefinitions>
<ksdk id="MCUXpresso290" name="MCUXpresso290" version="2.9.0" revision="435 2021-01-15"/>
<compilers>
<compiler id="compiler_gcc" name="gcc" type="gcc"/>
<compiler id="compiler_iar" name="iar" type="iar"/>
</compilers>
<toolchainSettings/>
<toolchains>
<toolchain id="armgcc" name="GCC_ARM_Embedded" version="9.3.1" full_name="GCC ARM Embedded" compiler="compiler_gcc" type="armgcc" vendor="GCC ARM Embedded" vendor_url="http://launchpad.net/gcc-arm-embedded"/>
<toolchain id="iar" name="IAR_Embedded_Workbench_for_ARM" version="8.50.9" full_name="IAR Embedded Workbench for ARM" compiler="compiler_iar" type="iar" vendor="IAR Systems" vendor_url="http://www.iar.com"/>
</toolchains>
<boards>
<board id="mekmimx8qm" name="MEK-MIMX8QM" href="https://www.nxp.com/pip/MCIMX8QM-CPU" version="1.0.0" package="MIMX8QM6AVUFF">
<description>i.MX 8QuadMax Multisensory Enablement Kit (MEK)</description>
<image path="boards/mekmimx8qm" type="image">
<files mask="mekmimx8qm.png"/>
</image>
<examples>
<example id="mekmimx8qm_canfd_interrupt_transfer_m40" name="canfd_interrupt_transfer_m40" brief="The canfd_interrupt example shows how to use FlexCAN driver in none-blocking interrupt way:In this example, 2 boards are connected through CAN bus. Endpoint A(board A) send a CAN Message toEndpoint B(board B) when user press space key in terminal. Endpoint B receive the message, printthe message content to terminal and echo back the message. Endpoint A will increase the receivedmessage and waiting for the next transmission of the user initiated." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/canfd/interrupt_transfer/cm4_core0" type="xml">
<files mask="canfd_interrupt_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_canfd_loopback_m40" name="canfd_loopback_m40" brief="The canfd_loopback_functional example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrouth internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/loopback/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/canfd/loopback/cm4_core0" type="xml">
<files mask="canfd_loopback_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_canfd_loopback_transfer_m40" name="canfd_loopback_transfer_m40" brief="The canfd_loopback example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrough internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/loopback_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/canfd/loopback_transfer/cm4_core0" type="xml">
<files mask="canfd_loopback_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_enet_txrx_transfer_m40" name="cmsis_enet_txrx_transfer_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage method please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html. The cmsis_enet_transfer example shows how to use CMSIS ENET driver: In this example, the ENET transmits 20 number broadcast frames and will print the received frame. " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/enet" path="boards/mekmimx8qm/cmsis_driver_examples/enet/txrx_transfer/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/enet/txrx_transfer/cm4_core0" type="xml">
<files mask="cmsis_enet_txrx_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_edma_b2b_xfer_master_m40" name="cmsis_lpi2c_edma_b2b_xfer_master_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_i2c_edma_b2b_transfer_master example shows how to use i2c driver as master to do board to board transfer with EDMA:In this example, one i2c instance as master and another i2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core0" type="xml">
<files mask="cmsis_lpi2c_edma_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_edma_b2b_xfer_slave_m40" name="cmsis_lpi2c_edma_b2b_xfer_slave_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_i2c_edma_b2b_transfer_master example shows how to use i2c driver as master to do board to board transfer with EDMA:In this example, one i2c instance as master and another i2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="cmsis_lpi2c_edma_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_int_b2b_xfer_master_m40" name="cmsis_lpi2c_int_b2b_xfer_master_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The lpi2c_int_b2b_transfer_master example shows how to use CMSIS i2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/master/cm4_core0" type="xml">
<files mask="cmsis_lpi2c_int_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_int_b2b_xfer_slave_m40" name="cmsis_lpi2c_int_b2b_xfer_slave_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The lpi2c_int_b2b_transfer_master example shows how to use CMSIS i2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="cmsis_lpi2c_int_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_edma_b2b_xfer_master_m40" name="cmsis_lpspi_edma_b2b_xfer_master_m40" brief="The cmsis_lpspi_edma_b2b_transfer example shows how to use LPSPI CMSIS driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_edma_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in edma . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/master/cm4_core0" type="xml">
<files mask="cmsis_lpspi_edma_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_edma_b2b_xfer_slave_m40" name="cmsis_lpspi_edma_b2b_xfer_slave_m40" brief="The cmsis_lpspi_edma_b2b_transfer example shows how to use LPSPI CMSIS driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_edma_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in edma . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="cmsis_lpspi_edma_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_int_b2b_xfer_master_m40" name="cmsis_lpspi_int_b2b_xfer_master_m40" brief="The cmsis_lpspi_int_b2b_transfer example shows how to use LPSPI CMSIS driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_int_b2b_transfer_master.c' includes the LPSPI master code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/master/cm4_core0" type="xml">
<files mask="cmsis_lpspi_int_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_int_b2b_xfer_slave_m40" name="cmsis_lpspi_int_b2b_xfer_slave_m40" brief="The lpspi_int_b2b_transfer example shows how to use LPSPI CMSIS driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_int_b2b_transfer_slave.c' includes the LPSPI slave code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="cmsis_lpspi_int_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpuart_edma_xfer_m40" name="cmsis_lpuart_edma_xfer_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_uart_edma_transfer example shows how to use uart cmsis driver with EDMA:In this example, one uart instance connect to PC through uart, the board willsend back all characters that PC send to the board.Note: The example echo every 8 characters, so input 8 characters every time." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpuart" path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/edma_transfer/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/edma_transfer/cm4_core0" type="xml">
<files mask="cmsis_lpuart_edma_xfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpuart_interrupt_xfer_m40" name="cmsis_lpuart_interrupt_xfer_m40" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_uart_interrupt_transfer example shows how to use uart cmsis driver in interrupt way:In this example, one uart instance connect to PC through uart, the board willsend back all characters that PC send to the board.Note: The example echo every 8 characters, so input 8 characters every time." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpuart" path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/interrupt_transfer/cm4_core0" type="xml">
<files mask="cmsis_lpuart_interrupt_xfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dma3_memory_to_memory_m40" name="dma3_memory_to_memory_m40" brief="The EDMA memory to memory example is a simple demonstration program that uses the SDK software.It executes one shot transfer from source buffer to destination buffer using the SDK EDMA drivers.The purpose of this example is to show how to use the EDMA and to provide a simple example fordebugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/edma" path="boards/mekmimx8qm/driver_examples/edma/memory_to_memory/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/edma/memory_to_memory/cm4_core0" type="xml">
<files mask="dma3_memory_to_memory_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dma3_scatter_gather_m40" name="dma3_scatter_gather_m40" brief="The EDMA memory to memory example is a simple demonstration program that uses the SDK software.It excuates one shot transfer from source buffer to destination buffer using the SDK EDMA drivers.The purpose of this example is to show how to use the EDMA and to provide a simple example fordebugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/edma" path="boards/mekmimx8qm/driver_examples/edma/scatter_gather/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/edma/scatter_gather/cm4_core0" type="xml">
<files mask="dma3_scatter_gather_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_multiring_transfer_m40" name="enet_txrx_multiring_transfer_m40" brief="The enet_txrx_multiring_transfer example shows the way to use ENET driver to receive and transmit avb frame in the avb feature supported multi-ring platforms. this example is only supported in multi-ring platform.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to transmit frames in avb supported multiple-ring platforms.The example transmits 30 number frames. For simple demo, we create frames with some special definition.1. Build transmission frames with broadcast mac address.2. Build different frames for each ring: 10 normal ethernet frame, 10 similar IEC 61883-6 type frames,10 similar IEC 61883-8 type frames and the two IEC 1722 avb frames are set with different vlan priority . Notice, To simply show how to use three different rings in rx/tx on one board. This example set PHY local loop and you will see there will be PHY init auto-negotiation fail and this is normal. because phy can not finishauto-negotiation when phy is in loop back mode. However, the auto-negotiation fail has no impact on this loop back example, so just forget about the failure auto-negotiation." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_multiring_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_multiring_transfer/cm4_core0" type="xml">
<files mask="enet_txrx_multiring_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_ptp1588_transfer_m40" name="enet_txrx_ptp1588_transfer_m40" brief="The enet_rxtx_ptp1588 example shows the way to use ENET driver to receive and transmit frame in the 1588 feature required cases.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to receive and transmit frame.3. How to add to the multicast group to receive PTP 1588 message.4. How to get the time stamp of the PTP 1588 timer.4. How to use Get the ENET transmit and receive frame time stamp.The example transmits 20 number PTP event frame, shows the timestamp of the transmitted frame.The length, source MAC address and destination MAC address of the received frame will be print. The time stamp of the received timestamp will be print when the PTP message frame is received. Note, The RMII mode is used for default setting to initialize the ENET interface between MAC and the external PHY. you can change it to MII mode as you wish. Please make sure the MII Mode setting in the MAC is synchronize to the settingin TWR-SERIAL board for the external PHY." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_ptp1588_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_ptp1588_transfer/cm4_core0" type="xml">
<files mask="enet_txrx_ptp1588_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_transfer_m40" name="enet_txrx_transfer_m40" brief="The enet_rxtx example shows the simplest way to use ENET driver for simple frame receive and transmit.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to receive and transmit frame.The example transmits 20 number broadcast frame, print the frame length, source MAC addressand destination MAC address when receive frame.Note, The RMII mode is used for default setting to initialize the ENET interface between MAC and the external PHY. youcan change it to MII mode as you wish. Please make sure the MII Mode setting in the MAC is synchronize to the settingin TWR-SERIAL board for the external PHY." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_transfer/cm4_core0" type="xml">
<files mask="enet_txrx_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_esai_edma_transfer_m40" name="esai_edma_transfer_m40" brief="The esai_edma_transfer example shows how to use esai driver with edma:In this example, one esai instance playbacks the audio data recorded by the same esai instance using edma." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/esai" path="boards/mekmimx8qm/driver_examples/esai/edma_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/esai/edma_transfer/cm4_core0" type="xml">
<files mask="esai_edma_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_esai_interrupt_transfer_m40" name="esai_interrupt_transfer_m40" brief="The esai_interrupt_transfer example shows how to use esai driver with interrupt:In this example, one esai instance playbacks the audio data recorded by the same esai instance using interrupt." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/esai" path="boards/mekmimx8qm/driver_examples/esai/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/esai/interrupt_transfer/cm4_core0" type="xml">
<files mask="esai_interrupt_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_interrupt_transfer_m40" name="flexcan_interrupt_transfer_m40" brief="The flexcan_interrupt example shows how to use FlexCAN driver in none-blocking interrupt way:In this example, 2 boards are connected through CAN bus. Endpoint A(board A) send a CAN Message toEndpoint B(board B) when user press space key in terminal. Endpoint B receive the message, printthe message content to terminal and echo back the message. Endpoint A will increase the receivedmessage and waiting for the next transmission of the user initiated." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/flexcan/interrupt_transfer/cm4_core0" type="xml">
<files mask="flexcan_interrupt_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_m40" name="flexcan_loopback_m40" brief="The flexcan_loopback_functional example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrouth internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback/cm4_core0" type="xml">
<files mask="flexcan_loopback_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_edma_transfer_m40" name="flexcan_loopback_edma_transfer_m40" brief="The flexcan_loopback_edma example shows how to use the EDMA version transactional driver to receiveCAN Message from Rx FIFO:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Tx Message Buffer and also setup Rx FIFO. After that, the example will send 4 CAN Messagesfrom Tx Message Buffer to Rx FIFO through internal loopback interconnect and read them out usingEDMA version FlexCAN transactional driver. The Sent and received message will be print out to terminalat last." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback_edma_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback_edma_transfer/cm4_core0" type="xml">
<files mask="flexcan_loopback_edma_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_transfer_m40" name="flexcan_loopback_transfer_m40" brief="The flexcan_loopback example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrough internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback_transfer/cm4_core0" type="xml">
<files mask="flexcan_loopback_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexspi_octal_polling_transfer_m40" name="flexspi_octal_polling_transfer_m40" brief="The flexspi_octal_polling_transfer example shows how to use flexspi driver with polling:In this example, flexspi will send data and operate the external octal flash connected with FLEXSPI. Some simple flash command willbe executed, such as Write Enable, Erase sector, Program page.Example will first erase the sector and program a page into the flash, at last check if the data in flash is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexspi" path="boards/mekmimx8qm/driver_examples/flexspi/octal/polling_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/flexspi/octal/polling_transfer/cm4_core0" type="xml">
<files mask="flexspi_octal_polling_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_event_m40" name="freertos_event_m40" brief="This document explains the freertos_event example. It shows how task waits for an event (defined setof bits in event group). This event can be set by any other process or interrupt in the system.The example application creates three tasks. Two write tasks write_task_1 and write_task_2continuously setting event bit 0 and bit 1.Read_task is waiting for any event bit and printing actual state on console. Event bits areautomatically cleared after read task is entered.Three possible states can occurre:Both bits are set.zBit B0 is set.Bit B1 is set." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_event/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_event/cm4_core0" type="xml">
<files mask="freertos_event_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_generic_m40" name="freertos_generic_m40" brief="This document explains the freertos_generic example. It is based on code FreeRTOS documentation fromhttp://www.freertos.org/Hardware-independent-RTOS-example.html. It shows combination of severaltasks with queue, software timer, tick hook and semaphore.The example application creates three tasks. The prvQueueSendTask periodically sending data toxQueue queue. The prvQueueReceiveTask is waiting for incoming message and counting number ofreceived messages. Task prvEventSemaphoreTask is waiting for xEventSemaphore semaphore given fromvApplicationTickHook. Tick hook give semaphore every 500 ms.Other hook types used for RTOS and resource statistics are also demonstrated in example:* vApplicationIdleHook* vApplicationStackOverflowHook* vApplicationMallocFailedHook" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_generic/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_generic/cm4_core0" type="xml">
<files mask="freertos_generic_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_hello_m40" name="freertos_hello_m40" brief="The Hello World project is a simple demonstration program that uses the SDK UART drivere incombination with FreeRTOS. The purpose of this demo is to show how to use the debug console and toprovide a simple project for debugging and further development.The example application creates one task called hello_task. This task print "Hello world." messagevia debug console utility and suspend itself." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_hello/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_hello/cm4_core0" type="xml">
<files mask="freertos_hello_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpi2c_m40" name="freertos_lpi2c_m40" brief="The LPI2C Example project is a demonstration program that uses the KSDK software to manipulate the Low Power Inter-Integrated Circuit.The example uses two instances of LPI2C, one in configured as master and the other one as slave.The LPI2C master sends data to LPI2C slave. The slave will check the data it receives and shows the log." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpi2c/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpi2c/cm4_core0" type="xml">
<files mask="freertos_lpi2c_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_m40" name="freertos_lpspi_m40" brief="The lpspi_interrupt example shows how to use LPSPI driver in interrupt way:In this example , one lpspi instance used as LPSPI master and another lpspi instance used as LPSPI slave.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi/cm4_core0" type="xml">
<files mask="freertos_lpspi_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_b2b_master_m40" name="freertos_lpspi_b2b_master_m40" brief="The freertos_lpspi_b2b_master example shows how to use LPSPI driver in FreeRTOS." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/master/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/master/cm4_core0" type="xml">
<files mask="freertos_lpspi_b2b_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_b2b_slave_m40" name="freertos_lpspi_b2b_slave_m40" brief="The freertos_lpspi_b2b_slave example shows how to use LPSPI driver in FreeRTOS." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/slave/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/slave/cm4_core0" type="xml">
<files mask="freertos_lpspi_b2b_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpuart_m40" name="freertos_lpuart_m40" brief="The LPUART example for FreeRTOS demonstrates the possibility to use the LPUART driver in the RTOS.The example uses single instance of LPUART IP and writes string into, then reads back chars.After every 4B received, these are sent back on LPUART." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpuart/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpuart/cm4_core0" type="xml">
<files mask="freertos_lpuart_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_mutex_m40" name="freertos_mutex_m40" brief="This document explains the freertos_mutex example. It shows how mutex manage access to commonresource (terminal output).The example application creates two identical instances of write_task. Each task will lock the mutexbefore printing and unlock it after printing to ensure that the outputs from tasks are not mixedtogether.The test_task accept output message during creation as function parameter. Output message have twoparts. If xMutex is unlocked, the write_task_1 acquire xMutex and print first part of message. Thenrescheduling is performed. In this moment scheduler check if some other task could run, but secondtask write_task+_2 is blocked because xMutex is already locked by first write task. The firstwrite_task_1 continue from last point by printing of second message part. Finaly the xMutex isunlocked and second instance of write_task_2 is executed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_mutex/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_mutex/cm4_core0" type="xml">
<files mask="freertos_mutex_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_queue_m40" name="freertos_queue_m40" brief="This document explains the freertos_queue example. This example introduce simple logging mechanismbased on message passing.Example could be devided in two parts. First part is logger. It contain three tasks:log_add().....Add new message into the log. Call xQueueSend function to pass new message into message queue.log_init()....Initialize logger (create logging task and message queue log_queue).log_task()....Task responsible for printing of log output.Second part is application of this simple logging mechanism. Each of two tasks write_task_1 andwrite_task_2 print 5 messages into log." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_queue/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_queue/cm4_core0" type="xml">
<files mask="freertos_queue_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_sem_m40" name="freertos_sem_m40" brief="This document explains the freertos_sem example, what to expect when running it and a briefintroduction to the API. The freertos_sem example code shows how semaphores works. Two differenttasks are synchronized in bilateral rendezvous model.The example uses four tasks. One producer_task and three consumer_tasks. The producer_task starts bycreating of two semaphores (xSemaphore_producer and xSemaphore_consumer). These semaphores controlaccess to virtual item. The synchronization is based on bilateral rendezvous pattern. Both ofconsumer and producer must be prepared to enable transaction." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_sem/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_sem/cm4_core0" type="xml">
<files mask="freertos_sem_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_swtimer_m40" name="freertos_swtimer_m40" brief="This document explains the freertos_swtimer example. It shows usage of software timer and itscallback.The example application creates one software timer SwTimer. The timer's callback SwTimerCallback isperiodically executed and text "Tick." is printed to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_swtimer/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_swtimer/cm4_core0" type="xml">
<files mask="freertos_swtimer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_tickless_m40" name="freertos_tickless_m40" brief="This document explains the freertos_tickless example. It shows the CPU enter at sleep mode and then it is waked up by expired time delay that using GPT module." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_tickless/cm4_core0">
<external path="boards/mekmimx8qm/rtos_examples/freertos_tickless/cm4_core0" type="xml">
<files mask="freertos_tickless_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_ftm_timer_m40" name="ftm_timer_m40" brief="The FTM project is a simple demonstration program of the SDK FTM driver to use FTM as a timer.It sets up the FTM hardware block to trigger an interrupt every 1 millisecond.When the FTM interrupt is triggered a message a printed on the UART terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/ftm" path="boards/mekmimx8qm/driver_examples/ftm/timer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/ftm/timer/cm4_core0" type="xml">
<files mask="ftm_timer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxas21002_fifo_core0" name="fxas21002_fifo_core0" brief="The FXAS21002 FIFO example application demonstrates the use of the FXAS21002 sensor in buffered (FIFO) Mode.The example demonstrates configuration of all registers reguired to put the sensor in FIFO Mode and read out samples.The sensor reads samples and are buffered upto the configured Water Mark Level and then a Flag is set.The application consistently checks the Flag and when set, reads out all(count=Water Mark Level) samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_fifo/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_fifo/cm4_core0" type="xml">
<files mask="fxas21002_fifo_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxas21002_poll_core0" name="fxas21002_poll_core0" brief="The FXAS21002 Poll example application demonstrates the use of the on-board FXAS21002 sensor in the Poll (Non-Buffered) Mode. The example demonstrates configuration of all registers reguired to put the sensor into Standard polling Mode and read out a sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_poll/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_poll/cm4_core0" type="xml">
<files mask="fxas21002_poll_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxos8700_fifo_core0" name="fxos8700_fifo_core0" brief="The FXAS8700 FIFO example application demonstrates the use of the FXAS8700 sensor in buffered (FIFO) Mode.The example demonstrates configuration of all registers reguired to put the sensor in FIFO Mode and read out samples.The sensor reads samples and are buffered upto the configured Water Mark Level and then a Flag is set.The application consistently checks the Flag and when set, reads out all(count=Water Mark Level) samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_fifo/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_fifo/cm4_core0" type="xml">
<files mask="fxos8700_fifo_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxos8700_poll_core0" name="fxos8700_poll_core0" brief="The FXOS8700 Poll example application demonstrates the use of the on-board FXOS8700 sensor in the Poll (Non-Buffered) Mode. The example demonstrates configuration of all registers reguired to put the sensor into Standard polling Mode and read out a sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_poll/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_poll/cm4_core0" type="xml">
<files mask="fxos8700_poll_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_hello_world_m40" name="hello_world_m40" brief="The HelloWorld demo prints the "Hello World" string to the terminal using the SDK UART drivers and repeat what user input. The purpose of this demo is to show how to use the UART, and to provide a simple project for debugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="demo_apps" path="boards/mekmimx8qm/demo_apps/hello_world/cm4_core0">
<external path="boards/mekmimx8qm/demo_apps/hello_world/cm4_core0" type="xml">
<files mask="hello_world_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_igpio_led_output_m40" name="igpio_led_output_m40" brief="The GPIO Example project is a demonstration program that uses the KSDK software to manipulate the general-purposeoutputs.The example is supported by the set, clear, and toggle write-only registers for each port output data register. The example take turns to shine the LED." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/gpio" path="boards/mekmimx8qm/driver_examples/gpio/led_output/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/gpio/led_output/cm4_core0" type="xml">
<files mask="igpio_led_output_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_intmux_m40" name="intmux_m40" brief="This example shows how to use INTMUX to route the internel interrupt to the system.In this example, one of the INTMUX input source(such as LPIT, TPM) is used to generate internel interrupt.The internel interrupt is outputted to system through INTMUX. Then the interrupt is handled by IRQSTEER, whichlocated outside of the CM4 subsystem." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples" path="boards/mekmimx8qm/driver_examples/intmux/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/intmux/cm4_core0" type="xml">
<files mask="intmux_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_isl29023_poll_core0" name="isl29023_poll_core0" brief="The ISL29023 Poll example application demonstrates the use of the ISL29023 in ALS continuous mode. The example demonstrates configuration of all registers reguired to put the ISL29023 sensor into 16-bits ALS continuous mode and read out ambient light samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/isl29023/isl29023_poll/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/isl29023/isl29023_poll/cm4_core0" type="xml">
<files mask="isl29023_poll_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpadc_interrupt_m40" name="lpadc_interrupt_m40" brief="The lpadc_interrupt example shows how to use interrupt with LPADC driver.In this example, user should indicate a channel to provide a voltage signal (can be controlled by user) as the LPADC'ssample input. When running the project, typing any key into debug console would trigger the conversion. ADC watermark interrupt would be asserted once the number of datawords stored in the ADC Result FIFO is greater than watermark value.In ADC ISR, the watermark flag would be cleared by reading the conversion result value. Also, result information wouldbe printed when the execution return to the main function." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpadc" path="boards/mekmimx8qm/driver_examples/lpadc/interrupt/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpadc/interrupt/cm4_core0" type="xml">
<files mask="lpadc_interrupt_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpadc_polling_m40" name="lpadc_polling_m40" brief="The lpadc_single_polling example shows the simplest way to use LPADC driver.In this example, user should indicate a channel to provide a voltage signal (can be controlled by user) as the LPADC'ssample input. When running the project, typing any key into debug console would trigger the conversion. The execution would check the FIFO valid flag in loop until the flag is asserted, which means the conversion is completed. Then read the conversion result value and print it to debug console.Note, the default setting of initialization for the ADC converter is just an available configuration. User can changethe configuration structure's setting in application to fit the special requirement." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpadc" path="boards/mekmimx8qm/driver_examples/lpadc/polling/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpadc/polling/cm4_core0" type="xml">
<files mask="lpadc_polling_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_edma_b2b_xfer_master_m40" name="lpi2c_edma_b2b_xfer_master_m40" brief="The lpi2c_edma_b2b_transfer_master example shows how to use lpi2c driver as master to do board to board transfer with EDMA:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core0" type="xml">
<files mask="lpi2c_edma_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_edma_b2b_xfer_slave_m40" name="lpi2c_edma_b2b_xfer_slave_m40" brief="The lpi2c_edma_b2b_transfer_slave example shows how to use lpi2c driver as slave to do board to board transfer with a EDMA master:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="lpi2c_edma_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_interrupt_b2b_xfer_master_m40" name="lpi2c_interrupt_b2b_xfer_master_m40" brief="The lpi2c_interrupt_b2b_transfer_master example shows how to use lpi2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/master/cm4_core0" type="xml">
<files mask="lpi2c_interrupt_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_interrupt_b2b_xfer_slave_m40" name="lpi2c_interrupt_b2b_xfer_slave_m40" brief="The lpi2c_interrupt_b2b_transfer_slave example shows how to use lpi2c driver as slave to do board to board transfer with interrupt:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="lpi2c_interrupt_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_polling_b2b_master_m40" name="lpi2c_polling_b2b_master_m40" brief="The lpi2c_polling_b2b_master example shows how to use lpi2c driver as master to do board to board transfer using polling method:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/master/cm4_core0" type="xml">
<files mask="lpi2c_polling_b2b_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_polling_b2b_slave_m40" name="lpi2c_polling_b2b_slave_m40" brief="The lpi2c_polling_b2b_slave example shows how to use lpi2c driver as slave to do board to board transfer with a polling master:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/slave/cm4_core0" type="xml">
<files mask="lpi2c_polling_b2b_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_read_accel_value_xfer_m40" name="lpi2c_read_accel_value_xfer_m40" brief="The lpi2c_read_accel_value example shows how to use LPI2C driver to communicate with an lpi2c device: 1. How to use the lpi2c driver to read a lpi2c device who_am_I register. 2. How to use the lpi2c driver to write/read the device registers.In this example, the values of three-axis accelerometer print to the serial terminal on PC throughthe virtual serial port on board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/read_accel_value_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/read_accel_value_transfer/cm4_core0" type="xml">
<files mask="lpi2c_read_accel_value_xfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpit_single_channel_m40" name="lpit_single_channel_m40" brief="The LPIT single channel project is a simple example of the SDK LPIT driver. It sets up the LPIThardware block to trigger a periodic interrupt after every 1 second. When the LPIT interrupt is triggereda message a printed on the serial terminal and an LED is toggled on the board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpit" path="boards/mekmimx8qm/driver_examples/lpit/single_channel/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpit/single_channel/cm4_core0" type="xml">
<files mask="lpit_single_channel_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_edma_b2b_xfer_master_m40" name="lpspi_edma_b2b_xfer_master_m40" brief="The lpspi_edma_b2b_transfer example shows how to use LPSPI driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_edma_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in edma . (LPSPI Slave using edma to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/master/cm4_core0" type="xml">
<files mask="lpspi_edma_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_edma_b2b_xfer_slave_m40" name="lpspi_edma_b2b_xfer_slave_m40" brief="The lpspi_edma_b2b_transfer example shows how to use LPSPI driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_edma_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in edma . (LPSPI Slave using edma to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="lpspi_edma_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_master_m40" name="lpspi_interrupt_b2b_master_m40" brief="The lpspi_interrupt_b2b example shows how to use LPSPI driver in interrupt way:In this example , we need two boards , one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_master.c' includes the LPSPI master code.This example does not use the transactional API in LPSPI driver. It's a demonstration that how to use the interrupt in KSDK driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/master/cm4_core0" type="xml">
<files mask="lpspi_interrupt_b2b_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_slave_m40" name="lpspi_interrupt_b2b_slave_m40" brief="The lpspi_interrupt_b2b example shows how to use LPSPI driver in interrupt way:In this example , we need two boards , one board used as LPSPI master and another board used as LPSPI slave.The file 'dspi_interrupt_b2b_slave.c' includes the LPSPI slave code.This example does not use the transactional API in LPSPI driver. It's a demonstration that how to use the interrupt in KSDK driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/slave/cm4_core0" type="xml">
<files mask="lpspi_interrupt_b2b_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_xfer_master_m40" name="lpspi_interrupt_b2b_xfer_master_m40" brief="The lpspi_interrupt_b2b_transfer example shows how to use LPSPI driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_transfer_master.c' includes the LPSPI master code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/master/cm4_core0" type="xml">
<files mask="lpspi_interrupt_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_xfer_slave_m40" name="lpspi_interrupt_b2b_xfer_slave_m40" brief="The lpspi_interrupt_b2b_transfer example shows how to use LPSPI driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_transfer_slave.c' includes the LPSPI slave code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="lpspi_interrupt_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_polling_b2b_xfer_master_m40" name="lpspi_polling_b2b_xfer_master_m40" brief="The lpspi_polling_b2b_transfer example shows how to use LPSPI driver in polling way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_polling_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in polling . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/master/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/master/cm4_core0" type="xml">
<files mask="lpspi_polling_b2b_xfer_master_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_polling_b2b_xfer_slave_m40" name="lpspi_polling_b2b_xfer_slave_m40" brief="The lpspi_polling_b2b_transfer example shows how to use LPSPI driver in polling way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_polling_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in polling . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/slave/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/slave/cm4_core0" type="xml">
<files mask="lpspi_polling_b2b_xfer_slave_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_edma_transfer_m40" name="lpuart_edma_transfer_m40" brief="The lpuart_edma Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/edma_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpuart/edma_transfer/cm4_core0" type="xml">
<files mask="lpuart_edma_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_m40" name="lpuart_interrupt_m40" brief="The lpuart_functioncal_interrupt example shows how to use lpuart driver functionalAPI to receive data with interrupt method:In this example, one lpuart instance connect to PC, the board willsend back all characters that PC send to the board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt/cm4_core0" type="xml">
<files mask="lpuart_interrupt_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_rb_transfer_m40" name="lpuart_interrupt_rb_transfer_m40" brief="The lpuart_interrupt_ring_buffer Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_rb_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_rb_transfer/cm4_core0" type="xml">
<files mask="lpuart_interrupt_rb_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_transfer_m40" name="lpuart_interrupt_transfer_m40" brief="The lpuart_interrupt Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_transfer/cm4_core0" type="xml">
<files mask="lpuart_interrupt_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_polling_m40" name="lpuart_polling_m40" brief="The lpuart_polling Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console instantly." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/polling/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/lpuart/polling/cm4_core0" type="xml">
<files mask="lpuart_polling_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_dhcp_bm_m40" name="lwip_dhcp_bm_m40" brief="The lwip_dhcp demo application demonstrates a DHCP demo on the lwIP TCP/IP stack.The application acts as a DHCP client and prints the status as it is progressing.Once the interface is being bound to an IP address obtained from DHCP server, address information is printed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/bm/cm4_core0" type="xml">
<files mask="lwip_dhcp_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_dhcp_freertos_m40" name="lwip_dhcp_freertos_m40" brief="The lwip_dhcp demo application demonstrates a DHCP demo on the lwIP TCP/IP stack.The application acts as a DHCP client and prints the status as it is progressing.Once the interface is being bound to an IP address obtained from DHCP server, address information is printed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/freertos/cm4_core0" type="xml">
<files mask="lwip_dhcp_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_httpsrv_bm_m40" name="lwip_httpsrv_bm_m40" brief="The lwip_httpsrv demo application demonstrates an HTTPServer on the lwIP TCP/IP stack with bare metal SDK or FreeRTOS.The user uses an Internet browser to send a request for connection. The board acts as an HTTP server and sends a Webpage back to the PC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/bm/cm4_core0" type="xml">
<files mask="lwip_httpsrv_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_httpsrv_freertos_m40" name="lwip_httpsrv_freertos_m40" brief="The lwip_httpsrv demo application demonstrates an HTTPServer on the lwIP TCP/IP stack with bare metal SDK or FreeRTOS.The user uses an Internet browser to send a request for connection. The board acts as an HTTP server and sends a Webpage back to the PC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/freertos/cm4_core0" type="xml">
<files mask="lwip_httpsrv_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_iperf_bm_m40" name="lwip_iperf_bm_m40" brief="This is the IPerf server example to check your bandwidth using the network performance measurement IPerf application on a PC as a client.It is currently a minimal implementation providing an IPv4 TCP server only.Instead of the command line IPerf application, for more convenience, it is recommended to use the JPerf2 graphical tool, which can be downloaded here: https://sourceforge.net/projects/iperf/files/jperf/jperf%202.0.0/jperf-2.0.0.zip/download" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_iperf/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_iperf/bm/cm4_core0" type="xml">
<files mask="lwip_iperf_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_mqtt_freertos_m40" name="lwip_mqtt_freertos_m40" brief="The lwip_mqtt demo application demonstrates MQTT client connecting to MQTT broker via unsecured socket. The application obtains IP and DNS addresses from DHCP and resolves broker's hostname if needed. Then it connects to the broker and subscribes to the "lwip_topic/#" and "lwip_other/#" topics. Further it publishes five messages to the "lwip_topic/100" which are also received back as the board is subscribed to the "lwip_topic/#". Meanwhile it continues to receive messages published to the subscribed topics from other clients." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_mqtt/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_mqtt/freertos/cm4_core0" type="xml">
<files mask="lwip_mqtt_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_ping_bm_m40" name="lwip_ping_bm_m40" brief="The lwip_ping demo application demonstrates a Ping Demo on the lwIP TCP/IP stack, which uses the ICMP protocol. Theapplication periodically sends the ICMP echo request to a PC, and processes the PC reply. Type "ping $board_address"in the PC command window to send an ICMP echo request to the board. The lwIP stack sends the ICMP echo reply back to thePC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_ping/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_ping/bm/cm4_core0" type="xml">
<files mask="lwip_ping_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_ping_freertos_m40" name="lwip_ping_freertos_m40" brief="The lwip_ping demo application demonstrates a Ping Demo on the lwIP TCP/IP stack which using the ICMP protocol. Theapplication periodically sends the ICMP echo request to a PC and processes the PC reply. Type the "ping $board_address"in the PC command window to send an ICMP echo request to the board. The lwIP stack sends the ICMP echo reply back to thePC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_ping/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_ping/freertos/cm4_core0" type="xml">
<files mask="lwip_ping_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_tcpecho_bm_m40" name="lwip_tcpecho_bm_m40" brief="The lwip_tcpecho demo application demonstrates a TCP echo demo on the lwIP TCP/IP stack with bare metal KSDK orFreeRTOS. The demo uses the TCP protocol and acts as an echo server. The application sends back the received TCPpackets from the PC, which can be used to test whether a TCP connection is available." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_tcpecho/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_tcpecho/bm/cm4_core0" type="xml">
<files mask="lwip_tcpecho_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_tcpecho_freertos_m40" name="lwip_tcpecho_freertos_m40" brief="The lwip_tcpecho demo application demonstrates a TCP echo demo on the lwIP TCP/IP stack with bare metal KSDK orFreeRTOS. The demo uses the TCP protocol and acts as an echo server. The application sends back the received TCPpackets from the PC, which can be used to test whether a TCP connection is available." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_tcpecho/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_tcpecho/freertos/cm4_core0" type="xml">
<files mask="lwip_tcpecho_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_udpecho_bm_m40" name="lwip_udpecho_bm_m40" brief="The lwip_udpecho demo application demonstrates a UDP echo demo on the lwIP TCP/IP stack with bare metal KSDK orFreeRTOS, which uses the UDP protocol and acts as an echo server. The application sends back the received UDP packetsfrom the PC, which can be used to test whether a UDP connection is available." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_udpecho/bm/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_udpecho/bm/cm4_core0" type="xml">
<files mask="lwip_udpecho_bm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_udpecho_freertos_m40" name="lwip_udpecho_freertos_m40" brief="The lwip_udpecho demo application demonstrates a UDP echo demo on the lwIP TCP/IP stack with bare metal KSDK orFreeRTOS, which uses the UDP protocol and acts as an echo server. The application sends back the received UDP packetsfrom the PC, which can be used to test whether a UDP connection is available." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_udpecho/freertos/cm4_core0">
<external path="boards/mekmimx8qm/lwip_examples/lwip_udpecho/freertos/cm4_core0" type="xml">
<files mask="lwip_udpecho_freertos_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mmcau_m40" name="mmcau_m40" brief="Memory-Mapped Cryptographic Acceleration Unit (MMCAU)This project is a demonstration program that uses the KSDK software for encryption/decryption sampledata using AES-CBC, DES3-CBC and Hash algorithms MD5, SHA1 and SHA256." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="mmcau_examples" path="boards/mekmimx8qm/mmcau_examples/mmcau_api/cm4_core0">
<external path="boards/mekmimx8qm/mmcau_examples/mmcau_api/cm4_core0" type="xml">
<files mask="mmcau_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mpl3115_altitude_core0" name="mpl3115_altitude_core0" brief="The MPL3115 example application demonstrates the altitude measurement using MPL3115 sensor. The example demonstrates configuration of all registers reguired to put the sensor into Altitude mode and read Altitude & Temperature samples. The sensor reads samples as per the configured Auto acquisition time step and sets a Flag. The application consistently checks the Flag and when set reads out the sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_altitude/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_altitude/cm4_core0" type="xml">
<files mask="mpl3115_altitude_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mpl3115_fifo_core0" name="mpl3115_fifo_core0" brief="The MPL3115 FIFO example application demonstrates the use of the MPL3115 sensor in buffered (FIFO) Mode.The example demonstrates configuration of all registers reguired to put the sensor in FIFO Mode and read out samples.The sensor reads samples and are buffered upto the configured Water Mark Level and then a Flag is set.The application consistently checks the Flag and when set, reads out all(count=Water Mark Level) samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_fifo/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_fifo/cm4_core0" type="xml">
<files mask="mpl3115_fifo_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mpl3115_oneshot_core0" name="mpl3115_oneshot_core0" brief="The MPL3115 One-Shot example application demonstrates the use of the MPL3115 sensor in the One-Shot (on demand sampling) Mode. The example demonstrates configuration of all registers reguired to put the sensor into One-Shot Mode and read out a Pressure+Temp sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_oneshot/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_oneshot/cm4_core0" type="xml">
<files mask="mpl3115_oneshot_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mpl3115_poll_core0" name="mpl3115_poll_core0" brief="The MPL3115 Poll example application demonstrates the use of the MPL3115 sensor in the Poll (Non-Buffered) Mode. The example demonstrates configuration of all registers reguired to put the sensor into Standard Polling Mode and read out a Pressure+Temperature sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_poll/cm4_core0">
<external path="boards/mekmimx8qm/issdk_examples/sensors/mpl3115/mpl3115_poll/cm4_core0" type="xml">
<files mask="mpl3115_poll_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mu_interrupt_core0" name="mu_interrupt_core0" brief="The mu_interrupt example shows how to use MU driver in interrupt way:In this example:1. Core 0 send message to Core 1 in interrupt mode via MU module.2. Core 1 send message back to Core 0 in interrupt mode.3. Core 0 receive message sent from Core 1 in interrupt mode." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/mu" linked_projects="mekmimx8qm_mu_interrupt_core1" path="boards/mekmimx8qm/driver_examples/mu/interrupt/core0">
<external path="boards/mekmimx8qm/driver_examples/mu/interrupt/core0" type="xml">
<files mask="mu_interrupt_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_mu_polling_core0" name="mu_polling_core0" brief="The mu_polling example shows how to use MU driver in polling way:In this example:1. Core 0 send message to Core 1 in polling mode via MU module.2. Core 1 send message back to Core 0 in polling mode.3. Core 0 receive message sent from Core 1 in polling mode." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/mu" linked_projects="mekmimx8qm_mu_polling_core1" path="boards/mekmimx8qm/driver_examples/mu/polling/core0">
<external path="boards/mekmimx8qm/driver_examples/mu/polling/core0" type="xml">
<files mask="mu_polling_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_power_mode_switch_m40" name="power_mode_switch_m40" brief="The Power mode switch demo application demonstrates the use of power modes in the KSDK. The demo prints the power mode menuthrough the debug console, where the user can set the MCU to a specific power mode. The user can also set the wakeupsource by following the debug console prompts. The purpose of this demo is to show how to switch between different power modes, and how to configure a wakeup source and wakeup the MCU from low power modes. Tips: This demo is to show how the various power mode can switch to each other. However, in actual low power use case, to save energy and reduce the consumption even more, many things can be done including: - Disable the clock for unnecessary module during low power mode. That means, programmer can disable the clocks before entering the low power mode and re-enable them after exiting the low power mode when necessary. - Disable the function for unnecessary part of a module when other part would keep working in low power mode. At the most time, more powerful function means more power consumption. For example, disable the digital function for the unnecessary pin mux, and so on. - Set the proper pin state (direction and logic level) according to the actual application hardware. Otherwise, the pin cirrent would be activied unexpectedly waste some energy. - Other low power consideration based on the actual application hardware. - Debug pins(e.g SWD_DIO) would consume addtional power, had better to disable related pins or disconnect them. " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="demo_apps" path="boards/mekmimx8qm/demo_apps/power_mode_switch/cm4_core0">
<external path="boards/mekmimx8qm/demo_apps/power_mode_switch/cm4_core0" type="xml">
<files mask="power_mode_switch_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_rgpio_led_output_m40" name="rgpio_led_output_m40" brief="The RGPIO Example project is a demonstration program that uses the SDK software to manipulate the general-purposeoutputs.The example is supported by the set, clear, and toggle write-only registers for each port output data register. The example take turns to shine the LED." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/rgpio" path="boards/mekmimx8qm/driver_examples/rgpio/led_output/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/rgpio/led_output/cm4_core0" type="xml">
<files mask="rgpio_led_output_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_rpmsg_lite_pingpong_rtos_linux_remote_m40" name="rpmsg_lite_pingpong_rtos_linux_remote_m40" brief="The Multicore RPMsg-Lite pingpong RTOS project is a simple demonstration program that uses theMCUXpresso SDK software and the RPMsg-Lite library and shows how to implement the inter-corecommunicaton between cores of the multicore system. The primary core releases the secondary corefrom the reset and then the inter-core communication is established. Once the RPMsg is initializedand endpoints are created the message exchange starts, incrementing a virtual counter that is partof the message payload. The message pingpong finishes when the counter reaches the value of 100.Then the RPMsg-Lite is deinitialized and the procedure of the data exchange is repeated again.Shared memory usageThis multicore example uses the shared memory for data exchange. The shared memory region isdefined and the size can be adjustable in the linker file. The shared memory region start addressand the size have to be defined in linker file for each core equally. The shared memory startaddress is then exported from the linker to the application." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="multicore_examples" path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_pingpong_rtos/linux_remote/cm4_core0">
<external path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_pingpong_rtos/linux_remote/cm4_core0" type="xml">
<files mask="rpmsg_lite_pingpong_rtos_linux_remote_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_rpmsg_lite_pingpong_rtos_sdk_master" name="rpmsg_lite_pingpong_rtos_sdk_master" brief="The Multicore RPMsg-Lite pingpong RTOS project is a simple demonstration program that uses theMCUXpresso SDK software and the RPMsg-Lite library and shows how to implement the inter-corecommunicaton between cores of the multicore system. The primary core releases the secondary corefrom the reset and then the inter-core communication is established. Once the RPMsg is initializedand endpoints are created the message exchange starts, incrementing a virtual counter that is partof the message payload. The message pingpong finishes when the counter reaches the value of 100.Then the RPMsg-Lite is deinitialized and the procedure of the data exchange is repeated again.Shared memory usageThis multicore example uses the shared memory for data exchange. The shared memory region isdefined and the size can be adjustable in the linker file. The shared memory region start addressand the size have to be defined in linker file for each core equally. The shared memory startaddress is then exported from the linker to the application." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="multicore_examples" path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_pingpong_rtos/sdk_master/cm4_core0">
<external path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_pingpong_rtos/sdk_master/cm4_core0" type="xml">
<files mask="rpmsg_lite_pingpong_rtos_sdk_master_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_rpmsg_lite_str_echo_rtos_imxcm4_m40" name="rpmsg_lite_str_echo_rtos_imxcm4_m40" brief="The Multicore RPMsg-Lite string echo project is a simple demonstration program that uses theMCUXpresso SDK software and the RPMsg-Lite library and shows how to implement the inter-corecommunicaton between cores of the multicore system.It works with Linux RPMsg master peer to transfer string content back and forth. The name servicehandshake is performed first to create the communication channels. Next, Linux OS waits for userinput to the RPMsg virtual tty. Anything which is received is sent to M4. M4 displays what isreceived, and echoes back the same message as an acknowledgement. The tty reader on the Linux sidecan get the message, and start another transaction. The demo demonstrates RPMsg’s ability to sendarbitrary content back and forth. Note: The maximum message length supported by RPMsg is now 496bytes. String longer than 496 will be divided by virtual tty into several messages.Shared memory usageThis multicore example uses the shared memory for data exchange. The shared memory region isdefined and the size can be adjustable in the linker file. The shared memory region start addressand the size have to be defined in linker file for each core equally. The shared memory startaddress is then exported from the linker to the application." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="multicore_examples" path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_str_echo_rtos/cm4_core0">
<external path="boards/mekmimx8qm/multicore_examples/rpmsg_lite_str_echo_rtos/cm4_core0" type="xml">
<files mask="rpmsg_lite_str_echo_rtos_imxcm4_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_sai_edma_transfer_m40" name="sai_edma_transfer_m40" brief="The sai_edma_transfer example shows how to use sai driver with EDMA:In this example, one sai instance playbacks the audio data stored in flash/SRAM using EDMA channel." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/sai" path="boards/mekmimx8qm/driver_examples/sai/edma_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/sai/edma_transfer/cm4_core0" type="xml">
<files mask="sai_edma_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_sai_interrupt_m40" name="sai_interrupt_m40" brief="The sai_interrupt example shows how to use sai functional API to implement interrupt playback:In this example, one sai instance playbacks the audio data stored in flash/SRAM using interrupt." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/sai" path="boards/mekmimx8qm/driver_examples/sai/interrupt/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/sai/interrupt/cm4_core0" type="xml">
<files mask="sai_interrupt_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_sai_interrupt_transfer_m40" name="sai_interrupt_transfer_m40" brief="The sai_interrupt_transfer example shows how to use sai driver with interrupt:In this example, one sai instance playbacks the audio data stored in flash/SRAM using interrupt." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/sai" path="boards/mekmimx8qm/driver_examples/sai/interrupt_transfer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/sai/interrupt_transfer/cm4_core0" type="xml">
<files mask="sai_interrupt_transfer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_sema42_dual_core_core0" name="sema42_dual_core_core0" brief="The sema42 example shows how to use SEMA42 driver to lock and unlock a sema gate:In this example:1. Firstly, Core 0 turn on LED and lock a sema gate then boot up Core 1 wake up.2. Core 1 must be wait until Core 0 unlocks this sema gate to lock it.3. After user press any key in terminal window, the sema gate will be unlocked by core 0,then core 1 will lock it and turn off the LEDIf the board does not have LED to show the status, then core 1 will send a flagto core 0 when core 1 has locked the sema gate. Core 0 outputs the success logafter it received the flag." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/sema42" linked_projects="mekmimx8qm_sema42_dual_core_core1" path="boards/mekmimx8qm/driver_examples/sema42/dual_core/core0">
<external path="boards/mekmimx8qm/driver_examples/sema42/dual_core/core0" type="xml">
<files mask="sema42_dual_core_core0_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_sema42_uboot_m40" name="sema42_uboot_m40" brief="The sema42 uboot example shows how to use SEMA42 driver to lock and unlock a sema gate.This example should work together with uboot. This example runs on Cortex-M core,the uboot runs on the Cortex-A core." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/sema42" path="boards/mekmimx8qm/driver_examples/sema42/uboot/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/sema42/uboot/cm4_core0" type="xml">
<files mask="sema42_uboot_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_combine_pwm_m40" name="tpm_combine_pwm_m40" brief="The TPM project is a demonstration program of generating a combined PWM signal by the SDK TPM driver. It sets up the TPMhardware block to output PWM signals on two TPM channels. The example also show's the complementary mode of operationand deadtime insertion.On boards that have 2 LEDs connected to the TPM pins, the user will seea change in LED brightness if user enter different values.And if the board do not support LEDs to show, the outputs can be observed by oscilloscope." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/combine_pwm/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/combine_pwm/cm4_core0" type="xml">
<files mask="tpm_combine_pwm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_dual_edge_capture_m40" name="tpm_dual_edge_capture_m40" brief="The TPM project is a demonstration program of the SDK TPM driver's dual-edge capture feature.This feature is available only on certain SoC's.The example sets up a TPM channel-pair for dual-edge capture. Once the input signal is received,this example will print the capture values and period of the input signal on the terminal window." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/dual_edge_capture/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/dual_edge_capture/cm4_core0" type="xml">
<files mask="tpm_dual_edge_capture_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_input_capture_m40" name="tpm_input_capture_m40" brief="The TPM project is a demonstration program of the SDK TPM driver's input capture feature.The example sets up a TPM channel for dual-edge capture. Once the input signal is received,this example will print the capture value." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/input_capture/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/input_capture/cm4_core0" type="xml">
<files mask="tpm_input_capture_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_output_compare_m40" name="tpm_output_compare_m40" brief="The TPM project is a demonstration program of the SDK TPM driver's output compare feature.It sets up one TPM channel to toggle the output when a match occurs with the channel value. The usershould probe the TPM output with a oscilloscope to see the signal toggling." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/output_compare/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/output_compare/cm4_core0" type="xml">
<files mask="tpm_output_compare_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_pwm_twochannel_m40" name="tpm_pwm_twochannel_m40" brief="The TPM project is a simple demonstration program of the SDK TPM driver. It sets up the TPMhardware block to output PWM signals on two TPM channels. The PWM dutycycle on both channelsis manually updated. On boards that have an LED connected to the TPM pins, the user will seea change in LED brightness if user enter different values." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/pwm_twochannel/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/pwm_twochannel/cm4_core0" type="xml">
<files mask="tpm_pwm_twochannel_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_simple_pwm_m40" name="tpm_simple_pwm_m40" brief="The TPM project is a simple demonstration program of the SDK TPM driver. It sets up the TPMhardware block to output a center-aligned PWM signal. The PWM dutycycle is manually updated.On boards that have an LED connected to the TPM pins, the user will see a change in LEDbrightness if user enter different values." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/simple_pwm/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/simple_pwm/cm4_core0" type="xml">
<files mask="tpm_simple_pwm_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tpm_timer_m40" name="tpm_timer_m40" brief="The TPM project is a simple demonstration program of the SDK TPM driver to use TPM as a timer.It sets up the TPM hardware block to trigger an interrupt every 1 millisecond.When the TPM interrupt is triggered a message a printed on the UART terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/tpm" path="boards/mekmimx8qm/driver_examples/tpm/timer/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tpm/timer/cm4_core0" type="xml">
<files mask="tpm_timer_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_tstmr_m40" name="tstmr_m40" brief="The tstmr example shows the usage of TSTMR driver in application. The TSTMR module is a free running incrementing counter that starts running after system reset de-assertion and can be read at any time by the software for determining the software ticks.The TSTMR runs off the 1 MHz clock and resets on every system reset.In this example, it would output a time stamp information when the application is ready. And then, delay for 1 second with TSTMR_DelayUs() function. Before and after the delay, it would output the two time stamps information again." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples" path="boards/mekmimx8qm/driver_examples/tstmr/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/tstmr/cm4_core0" type="xml">
<files mask="tstmr_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_wdog32_m40" name="wdog32_m40" brief="The WDOG32 Example project is to demonstrate usage of the KSDK wdog32 driver.In this example, fast testing is first implemented to test the wdog32.After this, refreshing the watchdog in None-window mode and window mode is executed.Note wdog32 is disabled in SystemInit function which means wdog32 is disabledafter chip emerges from reset." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples" path="boards/mekmimx8qm/driver_examples/wdog32/cm4_core0">
<external path="boards/mekmimx8qm/driver_examples/wdog32/cm4_core0" type="xml">
<files mask="wdog32_m40_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_canfd_interrupt_transfer_m41" name="canfd_interrupt_transfer_m41" brief="The canfd_interrupt example shows how to use FlexCAN driver in none-blocking interrupt way:In this example, 2 boards are connected through CAN bus. Endpoint A(board A) send a CAN Message toEndpoint B(board B) when user press space key in terminal. Endpoint B receive the message, printthe message content to terminal and echo back the message. Endpoint A will increase the receivedmessage and waiting for the next transmission of the user initiated." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/interrupt_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/canfd/interrupt_transfer/cm4_core1" type="xml">
<files mask="canfd_interrupt_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_canfd_loopback_m41" name="canfd_loopback_m41" brief="The canfd_loopback_functional example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrouth internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/loopback/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/canfd/loopback/cm4_core1" type="xml">
<files mask="canfd_loopback_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_canfd_loopback_transfer_m41" name="canfd_loopback_transfer_m41" brief="The canfd_loopback example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrough internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/canfd" path="boards/mekmimx8qm/driver_examples/canfd/loopback_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/canfd/loopback_transfer/cm4_core1" type="xml">
<files mask="canfd_loopback_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_enet_txrx_transfer_m41" name="cmsis_enet_txrx_transfer_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage method please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html. The cmsis_enet_transfer example shows how to use CMSIS ENET driver: In this example, the ENET transmits 20 number broadcast frames and will print the received frame. " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/enet" path="boards/mekmimx8qm/cmsis_driver_examples/enet/txrx_transfer/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/enet/txrx_transfer/cm4_core1" type="xml">
<files mask="cmsis_enet_txrx_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_edma_b2b_xfer_master_m41" name="cmsis_lpi2c_edma_b2b_xfer_master_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_i2c_edma_b2b_transfer_master example shows how to use i2c driver as master to do board to board transfer with EDMA:In this example, one i2c instance as master and another i2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core1" type="xml">
<files mask="cmsis_lpi2c_edma_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_edma_b2b_xfer_slave_m41" name="cmsis_lpi2c_edma_b2b_xfer_slave_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_i2c_edma_b2b_transfer_master example shows how to use i2c driver as master to do board to board transfer with EDMA:In this example, one i2c instance as master and another i2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="cmsis_lpi2c_edma_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_int_b2b_xfer_master_m41" name="cmsis_lpi2c_int_b2b_xfer_master_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The lpi2c_int_b2b_transfer_master example shows how to use CMSIS i2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/master/cm4_core1" type="xml">
<files mask="cmsis_lpi2c_int_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpi2c_int_b2b_xfer_slave_m41" name="cmsis_lpi2c_int_b2b_xfer_slave_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The lpi2c_int_b2b_transfer_master example shows how to use CMSIS i2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpi2c" path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpi2c/int_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="cmsis_lpi2c_int_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_edma_b2b_xfer_master_m41" name="cmsis_lpspi_edma_b2b_xfer_master_m41" brief="The cmsis_lpspi_edma_b2b_transfer example shows how to use LPSPI CMSIS driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_edma_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in edma . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/master/cm4_core1" type="xml">
<files mask="cmsis_lpspi_edma_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_edma_b2b_xfer_slave_m41" name="cmsis_lpspi_edma_b2b_xfer_slave_m41" brief="The cmsis_lpspi_edma_b2b_transfer example shows how to use LPSPI CMSIS driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_edma_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in edma . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="cmsis_lpspi_edma_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_int_b2b_xfer_master_m41" name="cmsis_lpspi_int_b2b_xfer_master_m41" brief="The cmsis_lpspi_int_b2b_transfer example shows how to use LPSPI CMSIS driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_int_b2b_transfer_master.c' includes the LPSPI master code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/master/cm4_core1" type="xml">
<files mask="cmsis_lpspi_int_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpspi_int_b2b_xfer_slave_m41" name="cmsis_lpspi_int_b2b_xfer_slave_m41" brief="The lpspi_int_b2b_transfer example shows how to use LPSPI CMSIS driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'cmsis_lpspi_int_b2b_transfer_slave.c' includes the LPSPI slave code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . " toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpspi" path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpspi/int_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="cmsis_lpspi_int_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpuart_edma_xfer_m41" name="cmsis_lpuart_edma_xfer_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_uart_edma_transfer example shows how to use uart cmsis driver with EDMA:In this example, one uart instance connect to PC through uart, the board willsend back all characters that PC send to the board.Note: The example echo every 8 characters, so input 8 characters every time." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpuart" path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/edma_transfer/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/edma_transfer/cm4_core1" type="xml">
<files mask="cmsis_lpuart_edma_xfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_cmsis_lpuart_interrupt_xfer_m41" name="cmsis_lpuart_interrupt_xfer_m41" brief="CMSIS-Driver defines generic peripheral driver interfaces for middleware making it reusable across a wide range of supported microcontroller devices. The API connects microcontroller peripherals with middleware that implements for example communication stacks, file systems, or graphic user interfaces. More information and usage methord please refer to http://www.keil.com/pack/doc/cmsis/Driver/html/index.html.The cmsis_uart_interrupt_transfer example shows how to use uart cmsis driver in interrupt way:In this example, one uart instance connect to PC through uart, the board willsend back all characters that PC send to the board.Note: The example echo every 8 characters, so input 8 characters every time." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="cmsis_driver_examples/lpuart" path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/interrupt_transfer/cm4_core1">
<external path="boards/mekmimx8qm/cmsis_driver_examples/lpuart/interrupt_transfer/cm4_core1" type="xml">
<files mask="cmsis_lpuart_interrupt_xfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dma3_memory_to_memory_m41" name="dma3_memory_to_memory_m41" brief="The EDMA memory to memory example is a simple demonstration program that uses the SDK software.It executes one shot transfer from source buffer to destination buffer using the SDK EDMA drivers.The purpose of this example is to show how to use the EDMA and to provide a simple example fordebugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/edma" path="boards/mekmimx8qm/driver_examples/edma/memory_to_memory/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/edma/memory_to_memory/cm4_core1" type="xml">
<files mask="dma3_memory_to_memory_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dma3_scatter_gather_m41" name="dma3_scatter_gather_m41" brief="The EDMA memory to memory example is a simple demonstration program that uses the SDK software.It excuates one shot transfer from source buffer to destination buffer using the SDK EDMA drivers.The purpose of this example is to show how to use the EDMA and to provide a simple example fordebugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/edma" path="boards/mekmimx8qm/driver_examples/edma/scatter_gather/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/edma/scatter_gather/cm4_core1" type="xml">
<files mask="dma3_scatter_gather_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dpu_blitblend" name="dpu_blitblend" brief="In this project, the safety stream and content stream are both displayed.safety stream on the left part, content stream on the right part.The blit engine generates the frame buffers, the blend modes are differentfor safety stream and content stream.For each stream, there are 5 rectangles, 4 of them are fixed (red, green, blue,and white) and 1 of them is floating (yellow). When the floating rectangleoverlay occurs, the blend modes are different for safety stream and contentstream. For the left part, the overlay color is fixed rectangle adds floatingrectangle. For the right part, the overlay color is fixed rectangle subtractsthe floating rectangle.In this project, the blit engine shadow register feature is used. Newconfiguration is written to the registers during the previous process isstill on-going. The pipline sequence completed interrupt is used to make sureall pending process finished when necessary." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/dpu" path="boards/mekmimx8qm/driver_examples/dpu/blitblend/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/dpu/blitblend/cm4_core1" type="xml">
<files mask="dpu_blitblend_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dpu_character" name="dpu_character" brief="The DPU Character example shows how to use the DPU driver to show characters. In this example, the fetch decode is used to fetch frame buffer to show. Two frame buffers are used, CPU fills the inactive frame buffer DPU shows the active frame buffer. When the example runs, you can see character changing in the middle of the screen." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/dpu" path="boards/mekmimx8qm/driver_examples/dpu/character/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/dpu/character/cm4_core1" type="xml">
<files mask="dpu_character_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dpu_fetch_decode" name="dpu_fetch_decode" brief="The DPU Fetch Decode example shows how to use the DPU driver to enable fetch decoderunit and the scaler. The fetch decoder output frame size is smaller than desiredoutput, so the scaler units are used for the frame size convert.In this example, the screen is divided to two parts, one for content stream, andthe other for safty stream.If this example runs success, rectangles will move in the screen." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/dpu" path="boards/mekmimx8qm/driver_examples/dpu/fetch_decode/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/dpu/fetch_decode/cm4_core1" type="xml">
<files mask="dpu_fetch_decode_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_dpu_rop" name="dpu_rop" brief="This example shows how to use the ROP unit in blit engine. In this project,there are three input frame buffers to the blit engine. The blit enginegenerates two frames using different ROP configurations, so the output framesare different.For landscape display panel:Output frame 0 +------------------+------------------+------------------+ | | | | | Red | Yellow | Green | | | | | | | | | | +--------------------------------------+ | | | | | | | | | Magenta | White | Cyan | | | | | | | | | | | | | | +--------|---------+------------------+------------------+ | | | | | Black | | Black | | | Blue | | | | | | +--------+--------------------------------------+--------+Output frame 1 +------------------+------------------+------------------+ | | | | | Cyan | Blue | Magenta | | | | | | | | | | +--------------------------------------+ | | | | | | | | | Green | Black | Red | | | | | | | | | | | | | | +--------|---------+------------------+------------------+ | | | | | White | | White | | | Yellow | | | | | | +--------+--------------------------------------+--------+For portrait display panel:Output frame 0 +------------------+------------------+------------------+ | | | | | Red | Yellow | Green | | | | | | | | | | | | | | | | | | | | | | +--------------------------------------+ | | | | | | | | | Magenta | White | Cyan | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | +--------|---------+------------------+------------------+ | | | | | Black | | Black | | | Blue | | | | | | | | | | | | | | | | | | +--------+--------------------------------------+--------+Output frame 1 +------------------+------------------+------------------+ | | | | | Cyan | Blue | Magenta | | | | | | | | | | | | | | | | | | | | | | +--------------------------------------+ | | | | | | | | | Green | Black | Red | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | +--------|---------+------------------+------------------+ | | | | | White | | White | | | Yellow | | | | | | | | | | | | | | | | | | +--------+--------------------------------------+--------+The two frames are shown one by one. Because the switch intervalis controlled by an software loop delay, so the interval might be differentfor debug target and release target.In this project, a new blit engine process is started only when the previousframe finished." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/dpu" path="boards/mekmimx8qm/driver_examples/dpu/rop/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/dpu/rop/cm4_core1" type="xml">
<files mask="dpu_rop_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_multiring_transfer_m41" name="enet_txrx_multiring_transfer_m41" brief="The enet_txrx_multiring_transfer example shows the way to use ENET driver to receive and transmit avb frame in the avb feature supported multi-ring platforms. this example is only supported in multi-ring platform.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to transmit frames in avb supported multiple-ring platforms.The example transmits 30 number frames. For simple demo, we create frames with some special definition.1. Build transmission frames with broadcast mac address.2. Build different frames for each ring: 10 normal ethernet frame, 10 similar IEC 61883-6 type frames,10 similar IEC 61883-8 type frames and the two IEC 1722 avb frames are set with different vlan priority . Notice, To simply show how to use three different rings in rx/tx on one board. This example set PHY local loop and you will see there will be PHY init auto-negotiation fail and this is normal. because phy can not finishauto-negotiation when phy is in loop back mode. However, the auto-negotiation fail has no impact on this loop back example, so just forget about the failure auto-negotiation." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_multiring_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_multiring_transfer/cm4_core1" type="xml">
<files mask="enet_txrx_multiring_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_ptp1588_transfer_m41" name="enet_txrx_ptp1588_transfer_m41" brief="The enet_rxtx_ptp1588 example shows the way to use ENET driver to receive and transmit frame in the 1588 feature required cases.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to receive and transmit frame.3. How to add to the multicast group to receive PTP 1588 message.4. How to get the time stamp of the PTP 1588 timer.4. How to use Get the ENET transmit and receive frame time stamp.The example transmits 20 number PTP event frame, shows the timestamp of the transmitted frame.The length, source MAC address and destination MAC address of the received frame will be print. The time stamp of the received timestamp will be print when the PTP message frame is received. Note, The RMII mode is used for default setting to initialize the ENET interface between MAC and the external PHY. you can change it to MII mode as you wish. Please make sure the MII Mode setting in the MAC is synchronize to the settingin TWR-SERIAL board for the external PHY." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_ptp1588_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_ptp1588_transfer/cm4_core1" type="xml">
<files mask="enet_txrx_ptp1588_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_enet_txrx_transfer_m41" name="enet_txrx_transfer_m41" brief="The enet_rxtx example shows the simplest way to use ENET driver for simple frame receive and transmit.1. This example shows how to initialize the ENET MAC.2. How to use ENET MAC to receive and transmit frame.The example transmits 20 number broadcast frame, print the frame length, source MAC addressand destination MAC address when receive frame.Note, The RMII mode is used for default setting to initialize the ENET interface between MAC and the external PHY. youcan change it to MII mode as you wish. Please make sure the MII Mode setting in the MAC is synchronize to the settingin TWR-SERIAL board for the external PHY." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/enet" path="boards/mekmimx8qm/driver_examples/enet/txrx_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/enet/txrx_transfer/cm4_core1" type="xml">
<files mask="enet_txrx_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_esai_edma_transfer_m41" name="esai_edma_transfer_m41" brief="The esai_edma_transfer example shows how to use esai driver with edma:In this example, one esai instance playbacks the audio data recorded by the same esai instance using edma." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/esai" path="boards/mekmimx8qm/driver_examples/esai/edma_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/esai/edma_transfer/cm4_core1" type="xml">
<files mask="esai_edma_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_esai_interrupt_transfer_m41" name="esai_interrupt_transfer_m41" brief="The esai_interrupt_transfer example shows how to use esai driver with interrupt:In this example, one esai instance playbacks the audio data recorded by the same esai instance using interrupt." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/esai" path="boards/mekmimx8qm/driver_examples/esai/interrupt_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/esai/interrupt_transfer/cm4_core1" type="xml">
<files mask="esai_interrupt_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_interrupt_transfer_m41" name="flexcan_interrupt_transfer_m41" brief="The flexcan_interrupt example shows how to use FlexCAN driver in none-blocking interrupt way:In this example, 2 boards are connected through CAN bus. Endpoint A(board A) send a CAN Message toEndpoint B(board B) when user press space key in terminal. Endpoint B receive the message, printthe message content to terminal and echo back the message. Endpoint A will increase the receivedmessage and waiting for the next transmission of the user initiated." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/interrupt_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/flexcan/interrupt_transfer/cm4_core1" type="xml">
<files mask="flexcan_interrupt_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_m41" name="flexcan_loopback_m41" brief="The flexcan_loopback_functional example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrouth internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback/cm4_core1" type="xml">
<files mask="flexcan_loopback_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_edma_transfer_m41" name="flexcan_loopback_edma_transfer_m41" brief="The flexcan_loopback_edma example shows how to use the EDMA version transactional driver to receiveCAN Message from Rx FIFO:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Tx Message Buffer and also setup Rx FIFO. After that, the example will send 4 CAN Messagesfrom Tx Message Buffer to Rx FIFO through internal loopback interconnect and read them out usingEDMA version FlexCAN transactional driver. The Sent and received message will be print out to terminalat last." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback_edma_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback_edma_transfer/cm4_core1" type="xml">
<files mask="flexcan_loopback_edma_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexcan_loopback_transfer_m41" name="flexcan_loopback_transfer_m41" brief="The flexcan_loopback example shows how to use the loopback test mode to debug your CAN Bus design:To demonstrates this example, only one board is needed. The example will config one FlexCAN MessageBuffer to Rx Message Buffer and the other FlexCAN Message Buffer to Tx Message Buffer with same ID.After that, the example will send a CAN Message from the Tx Message Buffer to the Rx Message Bufferthrough internal loopback interconnect and print out the Message payload to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexcan" path="boards/mekmimx8qm/driver_examples/flexcan/loopback_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/flexcan/loopback_transfer/cm4_core1" type="xml">
<files mask="flexcan_loopback_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_flexspi_octal_polling_transfer_m41" name="flexspi_octal_polling_transfer_m41" brief="The flexspi_octal_polling_transfer example shows how to use flexspi driver with polling:In this example, flexspi will send data and operate the external octal flash connected with FLEXSPI. Some simple flash command willbe executed, such as Write Enable, Erase sector, Program page.Example will first erase the sector and program a page into the flash, at last check if the data in flash is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/flexspi" path="boards/mekmimx8qm/driver_examples/flexspi/octal/polling_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/flexspi/octal/polling_transfer/cm4_core1" type="xml">
<files mask="flexspi_octal_polling_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_event_m41" name="freertos_event_m41" brief="This document explains the freertos_event example. It shows how task waits for an event (defined setof bits in event group). This event can be set by any other process or interrupt in the system.The example application creates three tasks. Two write tasks write_task_1 and write_task_2continuously setting event bit 0 and bit 1.Read_task is waiting for any event bit and printing actual state on console. Event bits areautomatically cleared after read task is entered.Three possible states can occurre:Both bits are set.zBit B0 is set.Bit B1 is set." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_event/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_event/cm4_core1" type="xml">
<files mask="freertos_event_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_generic_m41" name="freertos_generic_m41" brief="This document explains the freertos_generic example. It is based on code FreeRTOS documentation fromhttp://www.freertos.org/Hardware-independent-RTOS-example.html. It shows combination of severaltasks with queue, software timer, tick hook and semaphore.The example application creates three tasks. The prvQueueSendTask periodically sending data toxQueue queue. The prvQueueReceiveTask is waiting for incoming message and counting number ofreceived messages. Task prvEventSemaphoreTask is waiting for xEventSemaphore semaphore given fromvApplicationTickHook. Tick hook give semaphore every 500 ms.Other hook types used for RTOS and resource statistics are also demonstrated in example:* vApplicationIdleHook* vApplicationStackOverflowHook* vApplicationMallocFailedHook" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_generic/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_generic/cm4_core1" type="xml">
<files mask="freertos_generic_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_hello_m41" name="freertos_hello_m41" brief="The Hello World project is a simple demonstration program that uses the SDK UART drivere incombination with FreeRTOS. The purpose of this demo is to show how to use the debug console and toprovide a simple project for debugging and further development.The example application creates one task called hello_task. This task print "Hello world." messagevia debug console utility and suspend itself." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_hello/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_hello/cm4_core1" type="xml">
<files mask="freertos_hello_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpi2c_m41" name="freertos_lpi2c_m41" brief="The LPI2C Example project is a demonstration program that uses the KSDK software to manipulate the Low Power Inter-Integrated Circuit.The example uses two instances of LPI2C, one in configured as master and the other one as slave.The LPI2C master sends data to LPI2C slave. The slave will check the data it receives and shows the log." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpi2c/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpi2c/cm4_core1" type="xml">
<files mask="freertos_lpi2c_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_m41" name="freertos_lpspi_m41" brief="The lpspi_interrupt example shows how to use LPSPI driver in interrupt way:In this example , one lpspi instance used as LPSPI master and another lpspi instance used as LPSPI slave.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi/cm4_core1" type="xml">
<files mask="freertos_lpspi_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_b2b_master_m41" name="freertos_lpspi_b2b_master_m41" brief="The freertos_lpspi_b2b_master example shows how to use LPSPI driver in FreeRTOS." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/master/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/master/cm4_core1" type="xml">
<files mask="freertos_lpspi_b2b_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpspi_b2b_slave_m41" name="freertos_lpspi_b2b_slave_m41" brief="The freertos_lpspi_b2b_slave example shows how to use LPSPI driver in FreeRTOS." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/slave/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpspi_b2b/slave/cm4_core1" type="xml">
<files mask="freertos_lpspi_b2b_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_lpuart_m41" name="freertos_lpuart_m41" brief="The LPUART example for FreeRTOS demonstrates the possibility to use the LPUART driver in the RTOS.The example uses single instance of LPUART IP and writes string into, then reads back chars.After every 4B received, these are sent back on LPUART." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_lpuart/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_lpuart/cm4_core1" type="xml">
<files mask="freertos_lpuart_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_mutex_m41" name="freertos_mutex_m41" brief="This document explains the freertos_mutex example. It shows how mutex manage access to commonresource (terminal output).The example application creates two identical instances of write_task. Each task will lock the mutexbefore printing and unlock it after printing to ensure that the outputs from tasks are not mixedtogether.The test_task accept output message during creation as function parameter. Output message have twoparts. If xMutex is unlocked, the write_task_1 acquire xMutex and print first part of message. Thenrescheduling is performed. In this moment scheduler check if some other task could run, but secondtask write_task+_2 is blocked because xMutex is already locked by first write task. The firstwrite_task_1 continue from last point by printing of second message part. Finaly the xMutex isunlocked and second instance of write_task_2 is executed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_mutex/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_mutex/cm4_core1" type="xml">
<files mask="freertos_mutex_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_queue_m41" name="freertos_queue_m41" brief="This document explains the freertos_queue example. This example introduce simple logging mechanismbased on message passing.Example could be devided in two parts. First part is logger. It contain three tasks:log_add().....Add new message into the log. Call xQueueSend function to pass new message into message queue.log_init()....Initialize logger (create logging task and message queue log_queue).log_task()....Task responsible for printing of log output.Second part is application of this simple logging mechanism. Each of two tasks write_task_1 andwrite_task_2 print 5 messages into log." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_queue/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_queue/cm4_core1" type="xml">
<files mask="freertos_queue_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_sem_m41" name="freertos_sem_m41" brief="This document explains the freertos_sem example, what to expect when running it and a briefintroduction to the API. The freertos_sem example code shows how semaphores works. Two differenttasks are synchronized in bilateral rendezvous model.The example uses four tasks. One producer_task and three consumer_tasks. The producer_task starts bycreating of two semaphores (xSemaphore_producer and xSemaphore_consumer). These semaphores controlaccess to virtual item. The synchronization is based on bilateral rendezvous pattern. Both ofconsumer and producer must be prepared to enable transaction." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_sem/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_sem/cm4_core1" type="xml">
<files mask="freertos_sem_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_swtimer_m41" name="freertos_swtimer_m41" brief="This document explains the freertos_swtimer example. It shows usage of software timer and itscallback.The example application creates one software timer SwTimer. The timer's callback SwTimerCallback isperiodically executed and text "Tick." is printed to terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_swtimer/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_swtimer/cm4_core1" type="xml">
<files mask="freertos_swtimer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_freertos_tickless_m41" name="freertos_tickless_m41" brief="This document explains the freertos_tickless example. It shows the CPU enter at sleep mode and then it is waked up by expired time delay that using GPT module." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="rtos_examples" path="boards/mekmimx8qm/rtos_examples/freertos_tickless/cm4_core1">
<external path="boards/mekmimx8qm/rtos_examples/freertos_tickless/cm4_core1" type="xml">
<files mask="freertos_tickless_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_ftm_timer_m41" name="ftm_timer_m41" brief="The FTM project is a simple demonstration program of the SDK FTM driver to use FTM as a timer.It sets up the FTM hardware block to trigger an interrupt every 1 millisecond.When the FTM interrupt is triggered a message a printed on the UART terminal." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/ftm" path="boards/mekmimx8qm/driver_examples/ftm/timer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/ftm/timer/cm4_core1" type="xml">
<files mask="ftm_timer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxas21002_fifo_core1" name="fxas21002_fifo_core1" brief="The FXAS21002 FIFO example application demonstrates the use of the FXAS21002 sensor in buffered (FIFO) Mode.The example demonstrates configuration of all registers reguired to put the sensor in FIFO Mode and read out samples.The sensor reads samples and are buffered upto the configured Water Mark Level and then a Flag is set.The application consistently checks the Flag and when set, reads out all(count=Water Mark Level) samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_fifo/cm4_core1">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_fifo/cm4_core1" type="xml">
<files mask="fxas21002_fifo_core1_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxas21002_poll_core1" name="fxas21002_poll_core1" brief="The FXAS21002 Poll example application demonstrates the use of the on-board FXAS21002 sensor in the Poll (Non-Buffered) Mode. The example demonstrates configuration of all registers reguired to put the sensor into Standard polling Mode and read out a sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_poll/cm4_core1">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxas21002/fxas21002_poll/cm4_core1" type="xml">
<files mask="fxas21002_poll_core1_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxos8700_fifo_core1" name="fxos8700_fifo_core1" brief="The FXAS8700 FIFO example application demonstrates the use of the FXAS8700 sensor in buffered (FIFO) Mode.The example demonstrates configuration of all registers reguired to put the sensor in FIFO Mode and read out samples.The sensor reads samples and are buffered upto the configured Water Mark Level and then a Flag is set.The application consistently checks the Flag and when set, reads out all(count=Water Mark Level) samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_fifo/cm4_core1">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_fifo/cm4_core1" type="xml">
<files mask="fxos8700_fifo_core1_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_fxos8700_poll_core1" name="fxos8700_poll_core1" brief="The FXOS8700 Poll example application demonstrates the use of the on-board FXOS8700 sensor in the Poll (Non-Buffered) Mode. The example demonstrates configuration of all registers reguired to put the sensor into Standard polling Mode and read out a sample." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_poll/cm4_core1">
<external path="boards/mekmimx8qm/issdk_examples/sensors/fxos8700/fxos8700_poll/cm4_core1" type="xml">
<files mask="fxos8700_poll_core1_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_hello_world_m41" name="hello_world_m41" brief="The HelloWorld demo prints the "Hello World" string to the terminal using the SDK UART drivers and repeat what user input. The purpose of this demo is to show how to use the UART, and to provide a simple project for debugging and further development." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="demo_apps" path="boards/mekmimx8qm/demo_apps/hello_world/cm4_core1">
<external path="boards/mekmimx8qm/demo_apps/hello_world/cm4_core1" type="xml">
<files mask="hello_world_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_igpio_led_output_m41" name="igpio_led_output_m41" brief="The GPIO Example project is a demonstration program that uses the KSDK software to manipulate the general-purposeoutputs.The example is supported by the set, clear, and toggle write-only registers for each port output data register. The example take turns to shine the LED." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/gpio" path="boards/mekmimx8qm/driver_examples/gpio/led_output/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/gpio/led_output/cm4_core1" type="xml">
<files mask="igpio_led_output_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_intmux_m41" name="intmux_m41" brief="This example shows how to use INTMUX to route the internel interrupt to the system.In this example, one of the INTMUX input source(such as LPIT, TPM) is used to generate internel interrupt.The internel interrupt is outputted to system through INTMUX. Then the interrupt is handled by IRQSTEER, whichlocated outside of the CM4 subsystem." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples" path="boards/mekmimx8qm/driver_examples/intmux/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/intmux/cm4_core1" type="xml">
<files mask="intmux_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_isi_mipi_csi2_rgb565" name="isi_mipi_csi2_rgb565" brief="This example shows how to use ISI to receive camera frame through MIPI CSI2.In this example, the camera input frame and ISI output frame are both RGB656format. The output frame is shown in the screen.NOTE:This example must run continously to get the right result, breaking during debugwill results to display tearing. Because the ISI driver maintains IP state throughISR, if the core is halted, then driver state does not match the IP state. Whenexiting debug, the core might be halted for a short while, so the tearing mayhappen when exiting debug.If the camera and LCD panel resolutions are not the same, then only part of thecamera frame will be shown." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/isi/mipi_csi2/rgb565" path="boards/mekmimx8qm/driver_examples/isi/mipi_csi2/rgb565/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/isi/mipi_csi2/rgb565/cm4_core1" type="xml">
<files mask="isi_mipi_csi2_rgb565_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_isi_mipi_csi2_yuv422" name="isi_mipi_csi2_yuv422" brief="This example shows how to use ISI to receive camera frame through MIPI CSI2.In this example, the camera input frame is YUV422 format and ISI output frameis RGB656 format. The output frame is shown in the screen.NOTE:This example must run continously to get the right result, breaking during debugwill results to display tearing. Because the ISI driver maintains IP state throughISR, if the core is halted, then driver state does not match the IP state. Whenexiting debug, the core might be halted for a short while, so the tearing mayhappen when exiting debug.If the camera and LCD panel resolutions are not the same, then only part of thecamera frame will be shown." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/isi/mipi_csi2/yuv422" path="boards/mekmimx8qm/driver_examples/isi/mipi_csi2/yuv422/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/isi/mipi_csi2/yuv422/cm4_core1" type="xml">
<files mask="isi_mipi_csi2_yuv422_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_isl29023_poll_core1" name="isl29023_poll_core1" brief="The ISL29023 Poll example application demonstrates the use of the ISL29023 in ALS continuous mode. The example demonstrates configuration of all registers reguired to put the ISL29023 sensor into 16-bits ALS continuous mode and read out ambient light samples." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="issdk/sensors" path="boards/mekmimx8qm/issdk_examples/sensors/isl29023/isl29023_poll/cm4_core1">
<external path="boards/mekmimx8qm/issdk_examples/sensors/isl29023/isl29023_poll/cm4_core1" type="xml">
<files mask="isl29023_poll_core1_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpadc_interrupt_m41" name="lpadc_interrupt_m41" brief="The lpadc_interrupt example shows how to use interrupt with LPADC driver.In this example, user should indicate a channel to provide a voltage signal (can be controlled by user) as the LPADC'ssample input. When running the project, typing any key into debug console would trigger the conversion. ADC watermark interrupt would be asserted once the number of datawords stored in the ADC Result FIFO is greater than watermark value.In ADC ISR, the watermark flag would be cleared by reading the conversion result value. Also, result information wouldbe printed when the execution return to the main function." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpadc" path="boards/mekmimx8qm/driver_examples/lpadc/interrupt/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpadc/interrupt/cm4_core1" type="xml">
<files mask="lpadc_interrupt_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpadc_polling_m41" name="lpadc_polling_m41" brief="The lpadc_single_polling example shows the simplest way to use LPADC driver.In this example, user should indicate a channel to provide a voltage signal (can be controlled by user) as the LPADC'ssample input. When running the project, typing any key into debug console would trigger the conversion. The execution would check the FIFO valid flag in loop until the flag is asserted, which means the conversion is completed. Then read the conversion result value and print it to debug console.Note, the default setting of initialization for the ADC converter is just an available configuration. User can changethe configuration structure's setting in application to fit the special requirement." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpadc" path="boards/mekmimx8qm/driver_examples/lpadc/polling/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpadc/polling/cm4_core1" type="xml">
<files mask="lpadc_polling_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_edma_b2b_xfer_master_m41" name="lpi2c_edma_b2b_xfer_master_m41" brief="The lpi2c_edma_b2b_transfer_master example shows how to use lpi2c driver as master to do board to board transfer with EDMA:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/master/cm4_core1" type="xml">
<files mask="lpi2c_edma_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_edma_b2b_xfer_slave_m41" name="lpi2c_edma_b2b_xfer_slave_m41" brief="The lpi2c_edma_b2b_transfer_slave example shows how to use lpi2c driver as slave to do board to board transfer with a EDMA master:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/edma_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="lpi2c_edma_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_interrupt_b2b_xfer_master_m41" name="lpi2c_interrupt_b2b_xfer_master_m41" brief="The lpi2c_interrupt_b2b_transfer_master example shows how to use lpi2c driver as master to do board to board transfer with interrupt:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/master/cm4_core1" type="xml">
<files mask="lpi2c_interrupt_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_interrupt_b2b_xfer_slave_m41" name="lpi2c_interrupt_b2b_xfer_slave_m41" brief="The lpi2c_interrupt_b2b_transfer_slave example shows how to use lpi2c driver as slave to do board to board transfer with interrupt:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/interrupt_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="lpi2c_interrupt_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_polling_b2b_master_m41" name="lpi2c_polling_b2b_master_m41" brief="The lpi2c_polling_b2b_master example shows how to use lpi2c driver as master to do board to board transfer using polling method:In this example, one lpi2c instance as master and another lpi2c instance on the other board as slave. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/master/cm4_core1" type="xml">
<files mask="lpi2c_polling_b2b_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_polling_b2b_slave_m41" name="lpi2c_polling_b2b_slave_m41" brief="The lpi2c_polling_b2b_slave example shows how to use lpi2c driver as slave to do board to board transfer with a polling master:In this example, one lpi2c instance as slave and another lpi2c instance on the other board as master. Master sends a piece of data to slave, and receive a piece of data from slave. This example checks if the data received from slave is correct." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/polling_b2b/slave/cm4_core1" type="xml">
<files mask="lpi2c_polling_b2b_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpi2c_read_accel_value_xfer_m41" name="lpi2c_read_accel_value_xfer_m41" brief="The lpi2c_read_accel_value example shows how to use LPI2C driver to communicate with an lpi2c device: 1. How to use the lpi2c driver to read a lpi2c device who_am_I register. 2. How to use the lpi2c driver to write/read the device registers.In this example, the values of three-axis accelerometer print to the serial terminal on PC throughthe virtual serial port on board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpi2c" path="boards/mekmimx8qm/driver_examples/lpi2c/read_accel_value_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpi2c/read_accel_value_transfer/cm4_core1" type="xml">
<files mask="lpi2c_read_accel_value_xfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpit_single_channel_m41" name="lpit_single_channel_m41" brief="The LPIT single channel project is a simple example of the SDK LPIT driver. It sets up the LPIThardware block to trigger a periodic interrupt after every 1 second. When the LPIT interrupt is triggereda message a printed on the serial terminal and an LED is toggled on the board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpit" path="boards/mekmimx8qm/driver_examples/lpit/single_channel/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpit/single_channel/cm4_core1" type="xml">
<files mask="lpit_single_channel_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_edma_b2b_xfer_master_m41" name="lpspi_edma_b2b_xfer_master_m41" brief="The lpspi_edma_b2b_transfer example shows how to use LPSPI driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_edma_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in edma . (LPSPI Slave using edma to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/master/cm4_core1" type="xml">
<files mask="lpspi_edma_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_edma_b2b_xfer_slave_m41" name="lpspi_edma_b2b_xfer_slave_m41" brief="The lpspi_edma_b2b_transfer example shows how to use LPSPI driver in edma way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_edma_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in edma . (LPSPI Slave using edma to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/edma_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="lpspi_edma_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_master_m41" name="lpspi_interrupt_b2b_master_m41" brief="The lpspi_interrupt_b2b example shows how to use LPSPI driver in interrupt way:In this example , we need two boards , one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_master.c' includes the LPSPI master code.This example does not use the transactional API in LPSPI driver. It's a demonstration that how to use the interrupt in KSDK driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/master/cm4_core1" type="xml">
<files mask="lpspi_interrupt_b2b_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_slave_m41" name="lpspi_interrupt_b2b_slave_m41" brief="The lpspi_interrupt_b2b example shows how to use LPSPI driver in interrupt way:In this example , we need two boards , one board used as LPSPI master and another board used as LPSPI slave.The file 'dspi_interrupt_b2b_slave.c' includes the LPSPI slave code.This example does not use the transactional API in LPSPI driver. It's a demonstration that how to use the interrupt in KSDK driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b/slave/cm4_core1" type="xml">
<files mask="lpspi_interrupt_b2b_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_xfer_master_m41" name="lpspi_interrupt_b2b_xfer_master_m41" brief="The lpspi_interrupt_b2b_transfer example shows how to use LPSPI driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_transfer_master.c' includes the LPSPI master code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/master/cm4_core1" type="xml">
<files mask="lpspi_interrupt_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_interrupt_b2b_xfer_slave_m41" name="lpspi_interrupt_b2b_xfer_slave_m41" brief="The lpspi_interrupt_b2b_transfer example shows how to use LPSPI driver in interrupt way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_interrupt_b2b_transfer_slave.c' includes the LPSPI slave code.This example uses the transactional API in LPSPI driver.1. LPSPI master send/received data to/from LPSPI slave in interrupt . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/interrupt_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="lpspi_interrupt_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_polling_b2b_xfer_master_m41" name="lpspi_polling_b2b_xfer_master_m41" brief="The lpspi_polling_b2b_transfer example shows how to use LPSPI driver in polling way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_polling_b2b_transfer_master.c' includes the LPSPI master code.1. LPSPI master send/received data to/from LPSPI slave in polling . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/master/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/master/cm4_core1" type="xml">
<files mask="lpspi_polling_b2b_xfer_master_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpspi_polling_b2b_xfer_slave_m41" name="lpspi_polling_b2b_xfer_slave_m41" brief="The lpspi_polling_b2b_transfer example shows how to use LPSPI driver in polling way:In this example , we need two boards, one board used as LPSPI master and another board used as LPSPI slave.The file 'lpspi_polling_b2b_transfer_slave.c' includes the LPSPI slave code.1. LPSPI master send/received data to/from LPSPI slave in polling . (LPSPI Slave using interrupt to receive/send the data)" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpspi" path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/slave/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpspi/polling_b2b_transfer/slave/cm4_core1" type="xml">
<files mask="lpspi_polling_b2b_xfer_slave_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_edma_transfer_m41" name="lpuart_edma_transfer_m41" brief="The lpuart_edma Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/edma_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpuart/edma_transfer/cm4_core1" type="xml">
<files mask="lpuart_edma_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_m41" name="lpuart_interrupt_m41" brief="The lpuart_functioncal_interrupt example shows how to use lpuart driver functionalAPI to receive data with interrupt method:In this example, one lpuart instance connect to PC, the board willsend back all characters that PC send to the board." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt/cm4_core1" type="xml">
<files mask="lpuart_interrupt_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_rb_transfer_m41" name="lpuart_interrupt_rb_transfer_m41" brief="The lpuart_interrupt_ring_buffer Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_rb_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_rb_transfer/cm4_core1" type="xml">
<files mask="lpuart_interrupt_rb_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_interrupt_transfer_m41" name="lpuart_interrupt_transfer_m41" brief="The lpuart_interrupt Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console in a group of 8 characters." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_transfer/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpuart/interrupt_transfer/cm4_core1" type="xml">
<files mask="lpuart_interrupt_transfer_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lpuart_polling_m41" name="lpuart_polling_m41" brief="The lpuart_polling Example project is to demonstrate usage of the KSDK lpuart driver.In the example, you can send characters to the console back and they will be printed out onto console instantly." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="driver_examples/lpuart" path="boards/mekmimx8qm/driver_examples/lpuart/polling/cm4_core1">
<external path="boards/mekmimx8qm/driver_examples/lpuart/polling/cm4_core1" type="xml">
<files mask="lpuart_polling_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_dhcp_bm_m41" name="lwip_dhcp_bm_m41" brief="The lwip_dhcp demo application demonstrates a DHCP demo on the lwIP TCP/IP stack.The application acts as a DHCP client and prints the status as it is progressing.Once the interface is being bound to an IP address obtained from DHCP server, address information is printed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/bm/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/bm/cm4_core1" type="xml">
<files mask="lwip_dhcp_bm_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_dhcp_freertos_m41" name="lwip_dhcp_freertos_m41" brief="The lwip_dhcp demo application demonstrates a DHCP demo on the lwIP TCP/IP stack.The application acts as a DHCP client and prints the status as it is progressing.Once the interface is being bound to an IP address obtained from DHCP server, address information is printed." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/freertos/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_dhcp/freertos/cm4_core1" type="xml">
<files mask="lwip_dhcp_freertos_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_httpsrv_bm_m41" name="lwip_httpsrv_bm_m41" brief="The lwip_httpsrv demo application demonstrates an HTTPServer on the lwIP TCP/IP stack with bare metal SDK or FreeRTOS.The user uses an Internet browser to send a request for connection. The board acts as an HTTP server and sends a Webpage back to the PC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/bm/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/bm/cm4_core1" type="xml">
<files mask="lwip_httpsrv_bm_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_httpsrv_freertos_m41" name="lwip_httpsrv_freertos_m41" brief="The lwip_httpsrv demo application demonstrates an HTTPServer on the lwIP TCP/IP stack with bare metal SDK or FreeRTOS.The user uses an Internet browser to send a request for connection. The board acts as an HTTP server and sends a Webpage back to the PC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/freertos/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_httpsrv/freertos/cm4_core1" type="xml">
<files mask="lwip_httpsrv_freertos_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_iperf_bm_m41" name="lwip_iperf_bm_m41" brief="This is the IPerf server example to check your bandwidth using the network performance measurement IPerf application on a PC as a client.It is currently a minimal implementation providing an IPv4 TCP server only.Instead of the command line IPerf application, for more convenience, it is recommended to use the JPerf2 graphical tool, which can be downloaded here: https://sourceforge.net/projects/iperf/files/jperf/jperf%202.0.0/jperf-2.0.0.zip/download" toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_iperf/bm/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_iperf/bm/cm4_core1" type="xml">
<files mask="lwip_iperf_bm_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_mqtt_freertos_m41" name="lwip_mqtt_freertos_m41" brief="The lwip_mqtt demo application demonstrates MQTT client connecting to MQTT broker via unsecured socket. The application obtains IP and DNS addresses from DHCP and resolves broker's hostname if needed. Then it connects to the broker and subscribes to the "lwip_topic/#" and "lwip_other/#" topics. Further it publishes five messages to the "lwip_topic/100" which are also received back as the board is subscribed to the "lwip_topic/#". Meanwhile it continues to receive messages published to the subscribed topics from other clients." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_mqtt/freertos/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_mqtt/freertos/cm4_core1" type="xml">
<files mask="lwip_mqtt_freertos_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_ping_bm_m41" name="lwip_ping_bm_m41" brief="The lwip_ping demo application demonstrates a Ping Demo on the lwIP TCP/IP stack, which uses the ICMP protocol. Theapplication periodically sends the ICMP echo request to a PC, and processes the PC reply. Type "ping $board_address"in the PC command window to send an ICMP echo request to the board. The lwIP stack sends the ICMP echo reply back to thePC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_ping/bm/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_ping/bm/cm4_core1" type="xml">
<files mask="lwip_ping_bm_m41_v3_8.xml"/>
</external>
</example>
<example id="mekmimx8qm_lwip_ping_freertos_m41" name="lwip_ping_freertos_m41" brief="The lwip_ping demo application demonstrates a Ping Demo on the lwIP TCP/IP stack which using the ICMP protocol. Theapplication periodically sends the ICMP echo request to a PC and processes the PC reply. Type the "ping $board_address"in the PC command window to send an ICMP echo request to the board. The lwIP stack sends the ICMP echo reply back to thePC." toolchain="armgcc iar" compiler="compiler_gcc compiler_iar" category="lwip_examples" path="boards/mekmimx8qm/lwip_examples/lwip_ping/freertos/cm4_core1">
<external path="boards/mekmimx8qm/lwip_examples/lwip_ping/freertos/cm4_core1" type="xml">
<files mask="lwip_ping_freertos_m41_v3_8.xml"/>
</external>