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166 lines
5.4 KiB
166 lines
5.4 KiB
/*
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* @file srio.cfg
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*
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* @brief
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* Memory Map and Program intiializations for the HPDSP Utility.
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*
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*/
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/*
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* Specify all needed RTSC MOudles and ocnfigure them.
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*/
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var Memory = xdc.useModule('xdc.runtime.Memory');
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var BIOS = xdc.useModule('ti.sysbios.BIOS');
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var Task = xdc.useModule('ti.sysbios.knl.Task');
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var Queue = xdc.useModule('ti.sysbios.knl.Queue');
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var HeapBuf = xdc.useModule('ti.sysbios.heaps.HeapBuf');
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var Log = xdc.useModule('xdc.runtime.Log');
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var Settings = xdc.useModule('vsky.libdsp.Settings');
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var HiSpeed = xdc.useModule('vsky.libdsp.HiSpeed');
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/*
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* Allow storing of task names. By default if you name a task with a friendly display name it will not be saved
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* to conserve RAM. This must be set to true to allow it. We use friendly names on the Task List display.
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*/
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//Defaults.common$.namedInstance = true;
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Task.common$.namedInstance = true;
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var Clock = xdc.useModule ('ti.sysbios.knl.Clock');
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/*
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* Interface with IPC. Depending on the version of BIOS you are using the
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* module name may have changed.
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*/
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/* Use this for pre BIOS 6.30 */
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/* var Sem = xdc.useModule ('ti.sysbios.ipc.Semaphore'); */
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/* Use this for BIOS 6.30 plus to get the IPC module */
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var Sem = xdc.useModule ('ti.sysbios.knl.Semaphore');
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var Hwi = xdc.useModule ('ti.sysbios.hal.Hwi');
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var CPINTC = xdc.useModule ('ti.sysbios.family.c66.tci66xx.CpIntc');
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var Ecm = xdc.useModule ('ti.sysbios.family.c64p.EventCombiner');
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/*
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* Configure this to turn on the CPU Load Module for BIOS.
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*
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*/
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/*
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var Load = xdc.useModule('ti.sysbios.utils.Load');
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Load.common$.diags_USER4 = Diags.ALWAYS_ON;
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*/
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var Diags = xdc.useModule('xdc.runtime.Diags');
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/*
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* Sets up the exception log so you can read it with ROV in CCS
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*/
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var LoggerBuf = xdc.useModule('xdc.runtime.LoggerBuf');
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var Exc = xdc.useModule('ti.sysbios.family.c64p.Exception');
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Exc.common$.logger = LoggerBuf.create();
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Exc.enablePrint = true; /* prints exception details to the CCS console */
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/*
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* Give the Load module it's own LoggerBuf to make sure the
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* events are not overwritten.
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*/
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/* var loggerBufParams = new LoggerBuf.Params();
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loggerBufParams.exitFlush = true;
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loggerBufParams.numEntries = 64;
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Load.common$.logger = LoggerBuf.create(loggerBufParams);
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*/
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/*
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* Use this load to configure NDK 2.2 and above using RTSC. In previous versions of
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* the NDK RTSC configuration was not supported and you should comment this out.
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*/
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var Global = xdc.useModule('ti.ndk.config.Global');
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/*
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* This allows the heart beat (poll function) to be created but does not generate the stack threads
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*
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* Look in the cdoc (help files) to see what CfgAddEntry items can be configured. We tell it NOT
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* to create any stack threads (services) as we configure those ourselves in our Main Task
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* thread hpdspuaStart.
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*/
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Global.enableCodeGeneration = false;
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/* Define a variable to set the MAR mode for MSMCSRAM as all cacheable */
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var Cache = xdc.useModule('ti.sysbios.family.c66.Cache');
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//Cache.MAR224_255 = 0x0000000f;
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var Startup = xdc.useModule('xdc.runtime.Startup');
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var System = xdc.useModule('xdc.runtime.System');
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/*
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* Create a Heap.
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*/
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var HeapMem = xdc.useModule('ti.sysbios.heaps.HeapMem');
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var heapMemParams = new HeapMem.Params();
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heapMemParams.size = 0x8000000;
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heapMemParams.sectionName = "systemHeap";
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Program.global.heap0 = HeapMem.create(heapMemParams);
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/* This is the default memory heap. */
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Memory.defaultHeapInstance = Program.global.heap0;
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Program.sectMap["systemHeap"] = "DDR3";
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/* Required if using System_printf to output on the console */
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SysStd = xdc.useModule('xdc.runtime.SysStd');
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System.SupportProxy = SysStd;
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/*
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* Define hooks and static tasks that will always be running.
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*/
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/*
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* Register an EVM Init handler with BIOS. This will initialize the hardware. BIOS calls before it starts.
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*
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* If yuo are debugging with CCS, then this function will execute as CCS loads it if the option in your
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* Target Configuraiton file (.ccxml) has the option set to execute all code before Main. That is the
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* default.
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*/
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//Startup.lastFxns.$add('&board_init');
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/*
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* Create the stack Thread Task for our application.
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*/
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var tskNdkStackTest = Task.create("&doTestTask");
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tskNdkStackTest.stackSize = 0x200000;
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tskNdkStackTest.priority = 0x2;
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/*
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* Create a Periodic task to handle all NDK polling functions.
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* If you are using RTSC configuration with NDK 2.2 and above, this is done by default and
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* you do not need to do this.
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*/
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/* var prdNdkClkParams = new Clock.Params ();
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prdNdkClkParams.period = 0x64;
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prdNdkClkParams.startFlag = true;
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Program.global.clockInst1 = Clock.create("&llTimerTick", 5, prdNdkClkParams);
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*/
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/*
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* If you are using RTSC configuration with NDK 2.2 and above, this is done by default, else
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* register hooks so that the stack can track all Task creation
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*/
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//Task.common$.namedInstance = true;
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//Task.addHookSet ({ registerFxn: '&NDK_hookInit', createFxn: '&NDK_hookCreate', });
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/* Enable BIOS Task Scheduler */
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BIOS.taskEnabled = true;
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/*
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* Enable Event Groups here and registering of ISR for specific GEM INTC is done
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* using EventCombiner_dispatchPlug() and Hwi_eventMap() APIs
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*/
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Ecm.eventGroupHwiNum[0] = 7;
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Ecm.eventGroupHwiNum[1] = 8;
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Ecm.eventGroupHwiNum[2] = 9;
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Ecm.eventGroupHwiNum[3] = 10;
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Settings.hyperlink_clock = 156250000;
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Settings.emac_port = 1;
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Settings.emac_address = "80:00:00:03:12:2C";
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Settings.sgmii_clock = 156250000;
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