/** * These arguments were used when this file was generated. They will be automatically applied on subsequent loads * via the GUI or CLI. Run CLI with '--help' for additional information on how to override these arguments. * @cliArgs --device "AM62Px" --part "Default" --package "AMH" --context "wkup-r5fss0-0" --product "MCU-PLUS-SDK-AM62P@11.02.00" * @v2CliArgs --device "AM62P" --package "FCBGA (AMH)" --variant "AM62P54-M" --context "wkup-r5fss0-0" --product "MCU-PLUS-SDK-AM62P@11.02.00" * @versions {"tool":"1.24.2+4234"} */ /** * Import the modules used in this configuration. */ const flash = scripting.addModule("/board/flash/flash", {}, false); const flash1 = flash.addInstance(); const bootloader = scripting.addModule("/drivers/bootloader/bootloader", {}, false); const bootloader1 = bootloader.addInstance(); const bootloader2 = bootloader.addInstance(); const bootloader3 = bootloader.addInstance(); const dss = scripting.addModule("/drivers/dss/dss", {}, false); const dss1 = dss.addInstance(); const gtc = scripting.addModule("/drivers/gtc/gtc"); const ipc = scripting.addModule("/drivers/ipc/ipc"); const mcan = scripting.addModule("/drivers/mcan/mcan", {}, false); const mcan1 = mcan.addInstance(); const mcasp = scripting.addModule("/drivers/mcasp/mcasp", {}, false); const mcasp1 = mcasp.addInstance(); const uart = scripting.addModule("/drivers/uart/uart", {}, false); const uart1 = uart.addInstance(); const clock = scripting.addModule("/kernel/dpl/clock"); const debug_log = scripting.addModule("/kernel/dpl/debug_log"); const mpu_armv7 = scripting.addModule("/kernel/dpl/mpu_armv7", {}, false); const mpu_armv71 = mpu_armv7.addInstance(); const mpu_armv72 = mpu_armv7.addInstance(); const mpu_armv73 = mpu_armv7.addInstance(); const mpu_armv74 = mpu_armv7.addInstance(); const mpu_armv75 = mpu_armv7.addInstance(); const mpu_armv76 = mpu_armv7.addInstance(); const mpu_armv77 = mpu_armv7.addInstance(); const mpu_armv78 = mpu_armv7.addInstance(); const mpu_armv79 = mpu_armv7.addInstance(); const mpu_armv710 = mpu_armv7.addInstance(); const mpu_armv711 = mpu_armv7.addInstance(); const mpu_armv712 = mpu_armv7.addInstance(); /** * Write custom configuration values to the imported modules. */ bootloader1.appImageOffset = "0x240000"; bootloader1.$name = "CONFIG_BOOTLOADER_FLASH_HSM"; bootloader2.$name = "CONFIG_BOOTLOADER_FLASH_MCU"; bootloader2.appImageOffset = "0x800000"; bootloader3.$name = "CONFIG_BOOTLOADER_FLASH_LINUX"; bootloader3.appImageOffset = "0x1200000"; bootloader1.flashDriver = flash1; bootloader2.flashDriver = flash1; bootloader3.flashDriver = flash1; flash1.$name = "CONFIG_FLASH_SBL"; flash1.serialFlashDriver.$name = "board_flash_serialFlash_serialflash0"; flash1.serialFlashDriver.peripheralDriver.dmaEnable = true; flash1.serialFlashDriver.peripheralDriver.phyEnable = true; flash1.serialFlashDriver.peripheralDriver.$name = "CONFIG_OSPI_SBL"; flash1.serialFlashDriver.peripheralDriver.phySkipTuning = true; dss1.$name = "CONFIG_DSS0"; dss1.backgroundColor = 0x0; dss1.vidlFrameFormat = "ARGB32_8888"; dss1.selectOverlayManager = "OVR2"; dss1.selectVP = "VP2"; dss1.selectDisplayInterface = "DPI"; dss1.dispShare = true; dss1.vidlInputFrameheight = 720; dss1.vidlOutputFrameHeight = 720; dss1.pixelClkFreq = 100200000; dss1.panelHeight = 720; dss1.hSyncLength = 120; dss1.vBackPorch = 10; dss1.vFrontPorch = 10; dss1.vSyncLength = 16; dss1.hBackPorch = 76; dss1.hFrontPorch = 64; dss1.dispShareMode = "independentVP"; dss1.DPIPanel[0].$name = "CONFIG_PANEL0"; dss1.DPIPanel[0].bridgeSII9022A.$name = "board_panel_bridge_bridge_sii9022a0"; dss1.DPIPanel[0].i2cInstance.I2C_child.$name = "drivers_i2c_v0_i2c_v0_template0"; dss1.DPIPanel[0].i2cInstance.I2C.$assign = "I2C1"; ipc.vringAllocationPDK = false; mcan1.$name = "CONFIG_MCAN0"; mcan1.MCU_MCAN.$assign = "MCU_MCAN1"; mcasp1.$name = "CONFIG_MCASP0"; mcasp1.enableLoopback = false; mcasp1.enableMcaspRx = false; mcasp1.txCallbackFxn = "mcasp_txcb"; mcasp1.txActiveSlotMask = 0x3; mcasp1.txDataMask = 0xFFFFFFFF; mcasp1.txFsSource = 0; mcasp1.txAclkSource = 0; mcasp1.rxFsSource = 0; mcasp1.rxAclkSource = 0; mcasp1.externTxLoopjob = true; mcasp1.txLoopjobBufExtern = "unsigned int audio_sample[]"; mcasp1.txLoopjobBuf = "audio_sample"; mcasp1.txLoopjobBufLength = 384000; mcasp1.txBclkExpected = 3072000; mcasp1.txFsyncExpected = 48000; mcasp1.rxBclkExpected = 3072000; mcasp1.rxFsyncExpected = 48000; mcasp1.txClkDiv = 1; mcasp1.rxClkDiv = 1; mcasp1.txClkApplyAlert = false; mcasp1.rxClkApplyAlert = false; mcasp1.mcaspSer.create(1); mcasp1.mcaspSer[0].$name = "CONFIG_MCASP_SER0"; mcasp1.mcaspSer[0].MCASP.$assignAllowConflicts = "MCASP1"; mcasp1.MCASP.$assignAllowConflicts = "MCASP1"; scripting.suppress("Resource conflict,MCASP1 is also in use by @@@.+?@@@", mcasp1.mcaspSer[0].MCASP, "$assign"); scripting.suppress("Resource conflict,MCASP1 is also in use by @@@.+?@@@", mcasp1.MCASP, "$assign"); uart1.$name = "CONFIG_UART_SBL"; uart1.useWakeupDomainPeripherals = false; uart1.intrEnable = "DISABLE"; uart1.addedByBootloader = true; uart1.UART.$assign = "USART0"; const udma = scripting.addModule("/drivers/udma/udma", {}, false); const udma1 = udma.addInstance({}, false); udma1.$name = "CONFIG_UDMA0"; mcasp1.bcDmaDriver = udma1; flash1.serialFlashDriver.peripheralDriver.udmaDriver = udma1; bootloader1.udmaDriver = udma1; bootloader2.udmaDriver = udma1; bootloader3.udmaDriver = udma1; const udma_blkcopy_channel = scripting.addModule("/drivers/udma/udma_blkcopy_channel", {}, false); const udma_blkcopy_channel1 = udma_blkcopy_channel.addInstance({}, false); udma_blkcopy_channel1.$name = "CONFIG_UDMA_BLKCOPY_CH0"; flash1.serialFlashDriver.peripheralDriver.udmaBlkCopyChannel = udma_blkcopy_channel1; bootloader1.udmaBlkCopyChannel = udma_blkcopy_channel1; bootloader2.udmaBlkCopyChannel = udma_blkcopy_channel1; bootloader3.udmaBlkCopyChannel = udma_blkcopy_channel1; debug_log.enableUartLog = true; debug_log.uartTrace = true; debug_log.uartLog.intrEnable = "DISABLE"; debug_log.uartLog.$name = "CONFIG_UART_APP"; mpu_armv71.accessPermissions = "Supervisor RD+WR, User RD"; mpu_armv71.allowExecute = false; mpu_armv71.size = 31; mpu_armv71.attributes = "Device"; mpu_armv71.$name = "REGISTER_REGION"; mpu_armv72.accessPermissions = "Supervisor RD+WR, User RD"; mpu_armv72.size = 7; mpu_armv72.$name = "TCMA_VEC"; mpu_armv73.$name = "DDR"; mpu_armv73.baseAddr = 0x80000000; mpu_armv73.size = 31; mpu_armv74.baseAddr = 0x41010000; mpu_armv74.size = 15; mpu_armv74.attributes = "NonCached"; mpu_armv74.$name = "TCMB"; mpu_armv75.size = 15; mpu_armv75.attributes = "NonCached"; mpu_armv75.$name = "TCMA"; mpu_armv76.baseAddr = 0x43C00000; mpu_armv76.size = 18; mpu_armv76.$name = "HSM_RAM"; mpu_armv77.$name = "LINUX_VRING"; mpu_armv77.baseAddr = 0x9C800000; mpu_armv77.attributes = "NonCached"; mpu_armv77.size = 20; mpu_armv77.allowExecute = false; mpu_armv78.attributes = "NonCached"; mpu_armv78.size = 20; mpu_armv78.allowExecute = false; mpu_armv78.baseAddr = 0x9C900000; mpu_armv78.$name = "RESOURCE_TABLE_AND_TRACE"; mpu_armv79.baseAddr = 0x9B500000; mpu_armv79.allowExecute = false; mpu_armv79.attributes = "NonCached"; mpu_armv79.$name = "RTOS_NORTOS_IPC_VRING1"; mpu_armv79.size = 20; mpu_armv710.$name = "RTOS_NORTOS_IPC_VRING2"; mpu_armv710.baseAddr = 0x9B600000; mpu_armv710.size = 21; mpu_armv710.allowExecute = false; mpu_armv710.attributes = "NonCached"; mpu_armv711.$name = "FSS0_OSPI0_CTRL_REG"; mpu_armv711.baseAddr = 0xFC40000; mpu_armv711.size = 8; mpu_armv711.attributes = "Device"; mpu_armv711.allowExecute = false; mpu_armv712.$name = "UART0_REG"; mpu_armv712.baseAddr = 0x2800000; mpu_armv712.size = 9; mpu_armv712.attributes = "Device"; mpu_armv712.allowExecute = false; /** * Pinmux solution for unlocked pins/peripherals. This ensures that minor changes to the automatic solver in a future * version of the tool will not impact the pinmux you originally saw. These lines can be completely deleted in order to * re-solve from scratch. */ flash1.serialFlashDriver.peripheralDriver.OSPI.$suggestSolution = "OSPI0"; flash1.serialFlashDriver.peripheralDriver.OSPI.CLK.$suggestSolution = "OSPI0_CLK"; flash1.serialFlashDriver.peripheralDriver.OSPI.CSn0.$suggestSolution = "OSPI0_CSn0"; flash1.serialFlashDriver.peripheralDriver.OSPI.DQS.$suggestSolution = "OSPI0_DQS"; flash1.serialFlashDriver.peripheralDriver.OSPI.D7.$suggestSolution = "OSPI0_D7"; flash1.serialFlashDriver.peripheralDriver.OSPI.D6.$suggestSolution = "OSPI0_D6"; flash1.serialFlashDriver.peripheralDriver.OSPI.D5.$suggestSolution = "OSPI0_D5"; flash1.serialFlashDriver.peripheralDriver.OSPI.D4.$suggestSolution = "OSPI0_D4"; flash1.serialFlashDriver.peripheralDriver.OSPI.D3.$suggestSolution = "OSPI0_D3"; flash1.serialFlashDriver.peripheralDriver.OSPI.D2.$suggestSolution = "OSPI0_D2"; flash1.serialFlashDriver.peripheralDriver.OSPI.D1.$suggestSolution = "OSPI0_D1"; flash1.serialFlashDriver.peripheralDriver.OSPI.D0.$suggestSolution = "OSPI0_D0"; dss1.DSS.$suggestSolution = "DSS0"; dss1.DSS.DATA0.$suggestSolution = "VOUT0_DATA0"; dss1.DSS.DATA1.$suggestSolution = "VOUT0_DATA1"; dss1.DSS.DATA2.$suggestSolution = "VOUT0_DATA2"; dss1.DSS.DATA3.$suggestSolution = "VOUT0_DATA3"; dss1.DSS.DATA4.$suggestSolution = "VOUT0_DATA4"; dss1.DSS.DATA5.$suggestSolution = "VOUT0_DATA5"; dss1.DSS.DATA6.$suggestSolution = "VOUT0_DATA6"; dss1.DSS.DATA7.$suggestSolution = "VOUT0_DATA7"; dss1.DSS.DATA8.$suggestSolution = "VOUT0_DATA8"; dss1.DSS.DATA9.$suggestSolution = "VOUT0_DATA9"; dss1.DSS.DATA10.$suggestSolution = "VOUT0_DATA10"; dss1.DSS.DATA11.$suggestSolution = "VOUT0_DATA11"; dss1.DSS.DATA12.$suggestSolution = "VOUT0_DATA12"; dss1.DSS.DATA13.$suggestSolution = "VOUT0_DATA13"; dss1.DSS.DATA14.$suggestSolution = "VOUT0_DATA14"; dss1.DSS.DATA15.$suggestSolution = "VOUT0_DATA15"; dss1.DSS.DATA16.$suggestSolution = "GPMC0_AD8"; dss1.DSS.DATA17.$suggestSolution = "GPMC0_AD9"; dss1.DSS.DATA18.$suggestSolution = "GPMC0_AD10"; dss1.DSS.DATA19.$suggestSolution = "GPMC0_AD11"; dss1.DSS.DATA20.$suggestSolution = "GPMC0_AD12"; dss1.DSS.DATA21.$suggestSolution = "GPMC0_AD13"; dss1.DSS.DATA22.$suggestSolution = "GPMC0_AD14"; dss1.DSS.DATA23.$suggestSolution = "GPMC0_AD15"; dss1.DSS.DE.$suggestSolution = "VOUT0_DE"; dss1.DSS.EXTPCLKIN.$suggestSolution = "GPMC0_WAIT1"; dss1.DSS.HSYNC.$suggestSolution = "VOUT0_HSYNC"; dss1.DSS.PCLK.$suggestSolution = "VOUT0_PCLK"; dss1.DSS.VSYNC.$suggestSolution = "VOUT0_VSYNC"; dss1.DPIPanel[0].i2cInstance.I2C.SCL.$suggestSolution = "I2C1_SCL"; dss1.DPIPanel[0].i2cInstance.I2C.SDA.$suggestSolution = "I2C1_SDA"; mcan1.MCU_MCAN.RX.$suggestSolution = "MCU_MCAN1_RX"; mcan1.MCU_MCAN.TX.$suggestSolution = "MCU_MCAN1_TX"; mcasp1.SYSTEM.$suggestSolution = "SYSTEM0"; mcasp1.mcaspSer[0].MCASP.AXR0.$suggestSolution = "GPMC0_WEn"; mcasp1.MCASP.AFSX.$suggestSolution = "GPMC0_WAIT0"; mcasp1.MCASP.ACLKX.$suggestSolution = "GPMC0_BE0n_CLE"; uart1.UART.RXD.$suggestSolution = "UART0_RXD"; uart1.UART.TXD.$suggestSolution = "UART0_TXD"; debug_log.uartLog.WKUP_UART.$suggestSolution = "WKUP_USART0"; debug_log.uartLog.WKUP_UART.RXD.$suggestSolution = "WKUP_UART0_RXD"; debug_log.uartLog.WKUP_UART.TXD.$suggestSolution = "WKUP_UART0_TXD";