621 lines
18 KiB
C
621 lines
18 KiB
C
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/*****************************************************************************
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** **
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** COPYRIGHT (C) 2000, 2001 MKNET CORPORATION **
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** DEVELOPED FOR THE MK7100-BASED VFIR PCI CONTROLLER. **
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** **
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*****************************************************************************/
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/*****************************************************************************
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Module Name:
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MKMINI.C
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Routines:
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MKMiniportReturnPackets
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MKMiniportCheckForHang
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MKMiniportHalt
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MKMiniportShutdownHandler
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MKMiniportInitialize
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MKMiniportReset
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(MK7EnableInterrupt & Disable in MK7COMM.C.)
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DriverEntry
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Comments:
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Contains most NDIS API routines supplied to Windows by the miniport.
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*****************************************************************************/
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#include "precomp.h"
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#pragma hdrstop
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#include "protot.h"
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// Globals to help debug/test
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PMK7_ADAPTER GAdapter;
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//-----------------------------------------------------------------------------
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// Procedure: [MKMiniportReturnPackets]
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//
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// Description: NDIS returns a previously indicated pkt by calling this routine.
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//
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// Arguments:
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// IN NDIS_HANDLE MiniportAdapterContext
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// - a context version of our Adapter pointer
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// IN NDIS_PACKET Packet
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// - the packet that is being freed
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//
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// Returns: (none)
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//
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//-----------------------------------------------------------------------------
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VOID MKMiniportReturnPackets( NDIS_HANDLE MiniportAdapterContext,
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PNDIS_PACKET Packet)
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{
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PMK7_ADAPTER Adapter;
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PRPD rpd;
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PRCB rcb;
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//****************************************
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// - SpinLock brackets the FreeList resource.
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// - Recover the RPD from the returned pkt, then return
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// the RPD to the FreeList.
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//****************************************
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Adapter = PMK7_ADAPTER_FROM_CONTEXT_HANDLE(MiniportAdapterContext);
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NdisAcquireSpinLock(&Adapter->Lock);
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ASSERT(Packet);
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#if DBG
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GDbgStat.rxPktsRtn++;
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#endif
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rpd = *(PRPD *)(Packet->MiniportReserved);
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ASSERT(rpd);
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ProcReturnedRpd(Adapter, rpd);
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// 4.0.1 BOC
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Adapter->UsedRpdCount--;
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// 4.0.1 EOC
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NdisReleaseSpinLock(&Adapter->Lock);
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}
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//-----------------------------------------------------------------------------
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// Procedure: [MKMiniportCheckForHang]
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//
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// Description: This procedure does not do much for now.
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//
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// Arguments:
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// MiniportAdapterContext (both) - pointer to the adapter object data area
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//
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// Returns:
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// FALSE or TRUE
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//-----------------------------------------------------------------------------
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BOOLEAN MKMiniportCheckForHang(NDIS_HANDLE MiniportAdapterContext)
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{
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PMK7_ADAPTER Adapter;
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Adapter = PMK7_ADAPTER_FROM_CONTEXT_HANDLE(MiniportAdapterContext);
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NdisAcquireSpinLock(&Adapter->Lock);
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// DbgPrint(" ==> Hang Check\n\r");
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if (Adapter->IOMode == TX_MODE) {
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Adapter->HangCheck++;
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if (Adapter->HangCheck >= 3) {
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NdisReleaseSpinLock(&Adapter->Lock);
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return(TRUE);
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}
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}
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NdisReleaseSpinLock(&Adapter->Lock);
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return(FALSE);
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}
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//-----------------------------------------------------------------------------
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// Procedure: [MKMiniportHalt]
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//
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// Description: Halts our hardware. We disable interrupts as well as the hw
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// itself. We release other Windows resources such as allocated
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// memory and timers.
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//
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// Arguments:
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// MiniportAdapterContext - pointer to the adapter object data area.
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//
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// Returns: (none)
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//-----------------------------------------------------------------------------
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VOID MKMiniportHalt(NDIS_HANDLE MiniportAdapterContext)
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{
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PMK7_ADAPTER Adapter;
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BOOLEAN Cancelled;
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DBGFUNC(" MKMiniportHalt");
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Adapter = PMK7_ADAPTER_FROM_CONTEXT_HANDLE(MiniportAdapterContext);
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MK7DisableInterrupt(Adapter);
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MK7DisableIr(Adapter);
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Adapter->hardwareStatus = NdisHardwareStatusClosing;
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// check to make sure there are no outstanding transmits
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while(Adapter->FirstTxQueue) {
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PNDIS_PACKET QueuePacket = Adapter->FirstTxQueue;
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Adapter->NumPacketsQueued--;
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DequeuePacket(Adapter->FirstTxQueue, Adapter->LastTxQueue);
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NDIS_SET_PACKET_STATUS(QueuePacket, NDIS_STATUS_FAILURE);
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NdisMSendComplete(
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Adapter->MK7AdapterHandle,
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QueuePacket,
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NDIS_STATUS_FAILURE);
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}
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// deregister shutdown handler
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NdisMDeregisterAdapterShutdownHandler(Adapter->MK7AdapterHandle);
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// Free the interrupt object
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NdisMDeregisterInterrupt(&Adapter->Interrupt);
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NdisMCancelTimer(&Adapter->MinTurnaroundTxTimer, &Cancelled);
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NdisFreeSpinLock(&Adapter->Lock);
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// Free the entire adapter object, including the shared memory structures.
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FreeAdapterObject(Adapter);
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}
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//-----------------------------------------------------------------------------
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// Procedure: [MKMiniportShutdownHandler]
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//
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// Description: Removes an adapter instance that was previously initialized.
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// To Shutdown simply Disable interrupts. Since the system is shutting
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// down there is no need to release resources (memory, i/o space, etc.)
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// that the adapter instance was using.
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//
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// Arguments:
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// MiniportAdapterContext - pointer to the adapter object data area.
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//
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// Returns: (none)
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//-----------------------------------------------------------------------------
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VOID MKMiniportShutdownHandler(NDIS_HANDLE MiniportAdapterContext)
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{
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PMK7_ADAPTER Adapter;
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Adapter = PMK7_ADAPTER_FROM_CONTEXT_HANDLE(MiniportAdapterContext);
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MK7DisableInterrupt(Adapter);
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}
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//-----------------------------------------------------------------------------
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// Procedure: [MKMiniportInitialize] (only single adapter support for now)
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//
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// Description: This routine is called once per supported adapter card in the
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// system. This routine is responsible for initializing each adapter.
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// This includes parsing all of the necessary parameters from the registry,
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// allocating and initializing shared memory structures, configuring the
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// MK7100 chip, registering the interrupt, etc.
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//
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// Arguments:
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// OpenErrorStatus (mini) - Returns more info about any failure
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// SelectedMediumIndex (mini) - Returns the index in MediumArray of the
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// medium that the miniport is using
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// MediumArraySize (mini) - An array of medium types that the driver
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// supports
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// MiniportAdapterHandle (mini) - pointer to the adapter object data area.
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//
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// WrapperConfigurationContext (both) - A value that we will pass to
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// NdisOpenConfiguration.
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//
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//
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// Returns:
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// NDIS_STATUS_SUCCESS - If the adapter was initialized successfully.
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// <not NDIS_STATUS_SUCCESS> - If for some reason the adapter didn't
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// initialize
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//-----------------------------------------------------------------------------
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NDIS_STATUS
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MKMiniportInitialize(PNDIS_STATUS OpenErrorStatus,
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PUINT SelectedMediumIndex,
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PNDIS_MEDIUM MediumArray,
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UINT MediumArraySize,
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NDIS_HANDLE MiniportAdapterHandle,
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NDIS_HANDLE WrapperConfigurationContext)
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{
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ULONG i;
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NDIS_STATUS Status;
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PMK7_ADAPTER Adapter;
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NDIS_HANDLE ConfigHandle;
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NDIS_INTERFACE_TYPE IfType;
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PVOID OverrideNetAddress;
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MK7REG mk7reg;
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DBGFUNC(" MKMiniportInitialize");
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//****************************************
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// We're an IrDA device. Exit w/ error if type not passed in.
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//****************************************
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for (i = 0; i < MediumArraySize; i++) {
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if (MediumArray[i] == NdisMediumIrda)
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break;
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}
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if (i == MediumArraySize) {
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DBGSTR(("ERROR: IrDA Media type not found.\n"));
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DBGLOG("=> MKMiniportInitialize (ERR): IrDA not found", 0);
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return (NDIS_STATUS_UNSUPPORTED_MEDIA);
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}
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*SelectedMediumIndex = i;
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//****************************************
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// Allocate the Adapter Object, exit if error.
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// (Cacheable, non-paged system memory)
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//****************************************
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Status = ALLOC_SYS_MEM(&Adapter, sizeof(MK7_ADAPTER));
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if (Status != NDIS_STATUS_SUCCESS) {
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DBGSTR(("ERROR: ADAPTER Allocate Memory failed (Status = 0x%x)\n", Status));
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DBGLOG("<= MKMiniportInitialize: (ERR - 1)", 0);
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return (Status);
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}
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NdisZeroMemory(Adapter, sizeof(MK7_ADAPTER));
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Adapter->MK7AdapterHandle = MiniportAdapterHandle;
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GAdapter = Adapter;
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Adapter->hardwareStatus = NdisHardwareStatusInitializing;
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//****************************************
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// Process the Registry -- Get config settings, etc.
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//****************************************
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Status = ProcessRegistry(Adapter, WrapperConfigurationContext);
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if (Status != NDIS_STATUS_SUCCESS) {
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FreeAdapterObject(Adapter);
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DBGSTR(("ERROR: ProcessRegistry() \n"));
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DBGLOG("<= MKMiniportInitialize: (ERR - 2)", 0);
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return (NDIS_STATUS_FAILURE);
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}
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//****************************************
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// Let NDIS know kind of driver and features we support
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//****************************************
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IfType = NdisInterfacePci;
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NdisMSetAttributesEx(
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Adapter->MK7AdapterHandle,
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(NDIS_HANDLE) Adapter,
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0,
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(ULONG) NDIS_ATTRIBUTE_DESERIALIZE | NDIS_ATTRIBUTE_BUS_MASTER,
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IfType );
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//****************************************
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// Claim the physical Adapter for this Adapter object. We call on
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// NdisMPciAssignResources to find our assigned resources.
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//****************************************
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if (ClaimAdapter(Adapter, WrapperConfigurationContext) != NDIS_STATUS_SUCCESS) {
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FreeAdapterObject(Adapter);
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DBGSTR(("ERROR: No adapter detected\n"));
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DBGLOG("<= MKMiniportInitialize: (ERR - 3)", 0);
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return (NDIS_STATUS_FAILURE);
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}
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//****************************************
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// Set up the MK7 register I/O mapping w/ NDIS, interrupt mode, etc.
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//****************************************
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Status = SetupAdapterInfo(Adapter);
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if (Status != NDIS_STATUS_SUCCESS) {
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FreeAdapterObject(Adapter);
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DBGSTR(("ERROR: I/O Space allocation failed (Status = 0x%X)\n",Status));
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DBGLOG("<= MKMiniportInitialize: (ERR - 4)", 0);
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return(NDIS_STATUS_FAILURE);
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}
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//****************************************
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// Allocate & initialize memory/buffer needs.
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//****************************************
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Status = AllocAdapterMemory(Adapter);
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if (Status != NDIS_STATUS_SUCCESS) {
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FreeAdapterObject(Adapter);
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MKLogError(Adapter, EVENT_10, NDIS_ERROR_CODE_OUT_OF_RESOURCES, 0);
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DBGSTR(("ERROR: Shared Memory Allocation failed (Status = 0x%x)\n", Status));
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DBGLOG("<= MKMiniportInitialize: (ERR - 5)", 0);
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return (NDIS_STATUS_FAILURE);
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}
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// 4.1.0 Check hw version.
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MK7Reg_Read(Adapter, R_CFG3, &mk7reg);
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if ((mk7reg & 0x1000) != 0){
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mk7reg &= 0xEFFF;
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MK7Reg_Write(Adapter, R_CFG3, mk7reg);
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mk7reg |= 0x1000;
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MK7Reg_Write(Adapter, R_CFG3, mk7reg);
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MK7Reg_Read(Adapter, R_CFG3, &mk7reg);
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if ((mk7reg & 0x1000) != 0)
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Adapter->HwVersion = HW_VER_1;
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else
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Adapter->HwVersion = HW_VER_2;
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}
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else{
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Adapter->HwVersion = HW_VER_2;
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}
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//****************************************
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// Disable interrupts while we finish with the initialization
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// Must AllocAdapterMemory() before you can do this.
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//****************************************
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MK7DisableInterrupt(Adapter);
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//****************************************
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// Register our interrupt with the NDIS wrapper, hook our interrupt
|
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// vector, & use shared interrupts for our PCI adapters
|
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//****************************************
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Status = NdisMRegisterInterrupt(&Adapter->Interrupt,
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Adapter->MK7AdapterHandle,
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Adapter->MKInterrupt,
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Adapter->MKInterrupt,
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TRUE, // call ISR each time NIC interrupts
|
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TRUE, // shared irq
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Adapter->InterruptMode); // NdisInterruptLatched, NdisInterruptLevelSensitive
|
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if (Status != NDIS_STATUS_SUCCESS) {
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FreeAdapterObject(Adapter);
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MKLogError(Adapter,
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EVENT_0,
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NDIS_ERROR_CODE_INTERRUPT_CONNECT,
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(ULONG) Adapter->MKInterrupt);
|
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DBGLOG("<= MKMiniportInitialize: (ERR - 6)", 0);
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return (NDIS_STATUS_FAILURE);
|
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}
|
||
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|
||
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|
||
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|
||
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#if DBG
|
||
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DbgTestInit(Adapter);
|
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#endif
|
||
|
|
||
|
|
||
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//****************************************
|
||
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// allocate a spin lock
|
||
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//****************************************
|
||
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NdisAllocateSpinLock(&Adapter->Lock);
|
||
|
|
||
|
|
||
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Adapter->HangCheck = 0;
|
||
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Adapter->nowReceiving=FALSE; // 4.1.0
|
||
|
|
||
|
|
||
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//****************************************
|
||
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// Setup and initialize the transmit and receive structures then
|
||
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// init the adapter
|
||
|
//****************************************
|
||
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SetupTransmitQueues(Adapter, TRUE);
|
||
|
|
||
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SetupReceiveQueues(Adapter);
|
||
|
|
||
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if (!InitializeAdapter(Adapter)) {
|
||
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FreeAdapterObject(Adapter);
|
||
|
NdisMDeregisterInterrupt(&Adapter->Interrupt);
|
||
|
|
||
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DBGSTR(("ERROR: InitializeAdapter Failed.\n"));
|
||
|
DBGLOG("<= MKMiniportInitialize: (ERR - 7)", 0);
|
||
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return (NDIS_STATUS_FAILURE);
|
||
|
}
|
||
|
|
||
|
|
||
|
//****************************************
|
||
|
// Register a shutdown handler
|
||
|
//****************************************
|
||
|
NdisMRegisterAdapterShutdownHandler(Adapter->MK7AdapterHandle,
|
||
|
(PVOID) Adapter,
|
||
|
(ADAPTER_SHUTDOWN_HANDLER) MKMiniportShutdownHandler);
|
||
|
|
||
|
StartAdapter(Adapter);
|
||
|
MK7EnableInterrupt(Adapter);
|
||
|
|
||
|
Adapter->hardwareStatus = NdisHardwareStatusReady;
|
||
|
|
||
|
DBGSTR(("MKMiniportInitialize: Completed Init Successfully\n"));
|
||
|
DBGLOG("<= MKMiniportInitialize", 0);
|
||
|
return (NDIS_STATUS_SUCCESS);
|
||
|
}
|
||
|
|
||
|
|
||
|
//-----------------------------------------------------------------------------
|
||
|
// RYM-5++
|
||
|
// Procedure: [MKMiniportReset]
|
||
|
//
|
||
|
// Description: Instructs the Miniport to issue a hardware reset to the
|
||
|
// network adapter. The driver also resets its software state. this
|
||
|
// function also resets the transmit queues.
|
||
|
//
|
||
|
// Arguments:
|
||
|
// AddressingReset - TRUE if the wrapper needs to call
|
||
|
// MiniportSetInformation to restore the addressing
|
||
|
// information to the current values
|
||
|
// MiniportAdapterContext - pointer to the adapter object data area.
|
||
|
//
|
||
|
// Returns:
|
||
|
// NDIS_STATUS_PENDING - This function sets a timer to complete, so
|
||
|
// pending is always returned
|
||
|
//
|
||
|
// (NOTE: The timer-based completion scheme has been disable by now starting
|
||
|
// the timer. We may now want to return Success instead of Pending.)
|
||
|
//-----------------------------------------------------------------------------
|
||
|
NDIS_STATUS
|
||
|
MKMiniportReset(PBOOLEAN AddressingReset,
|
||
|
NDIS_HANDLE MiniportAdapterContext)
|
||
|
{
|
||
|
PMK7_ADAPTER Adapter;
|
||
|
MK7REG mk7reg;
|
||
|
|
||
|
|
||
|
DBGFUNC("MKMiniportReset");
|
||
|
|
||
|
Adapter = PMK7_ADAPTER_FROM_CONTEXT_HANDLE(MiniportAdapterContext);
|
||
|
|
||
|
NdisAcquireSpinLock(&Adapter->Lock);
|
||
|
|
||
|
Adapter->hardwareStatus = NdisHardwareStatusReset;
|
||
|
|
||
|
*AddressingReset = TRUE;
|
||
|
|
||
|
// *** possible temporary code
|
||
|
// *** NDIS may actually handle this
|
||
|
Adapter->ResetInProgress = TRUE;
|
||
|
|
||
|
// Disable interrupts while we re-init the transmit structures
|
||
|
MK7DisableInterrupt(Adapter);
|
||
|
MK7DisableIr(Adapter);
|
||
|
|
||
|
|
||
|
// The NDIS 5 support for deserialized miniports requires that
|
||
|
// when reset is called, the driver de-queue and fail all uncompleted
|
||
|
// sends, and complete any uncompleted sends. Essentially we must have
|
||
|
// no pending send requests left when we leave this routine.
|
||
|
|
||
|
|
||
|
// we will fail all sends that we have left right now.
|
||
|
while(Adapter->FirstTxQueue) {
|
||
|
PNDIS_PACKET QueuePacket = Adapter->FirstTxQueue;
|
||
|
|
||
|
Adapter->NumPacketsQueued--;
|
||
|
DequeuePacket(Adapter->FirstTxQueue, Adapter->LastTxQueue);
|
||
|
|
||
|
// we must release the lock here before returning control to ndis
|
||
|
// (even temporarily like this)
|
||
|
NdisReleaseSpinLock(&Adapter->Lock);
|
||
|
|
||
|
NDIS_SET_PACKET_STATUS(QueuePacket, NDIS_STATUS_FAILURE);
|
||
|
NdisMSendComplete(
|
||
|
Adapter->MK7AdapterHandle,
|
||
|
QueuePacket,
|
||
|
NDIS_STATUS_FAILURE);
|
||
|
|
||
|
NdisAcquireSpinLock(&Adapter->Lock);
|
||
|
}
|
||
|
|
||
|
// clean up all the packets we have successfully TX'd
|
||
|
// ProcessTXInterrupt(Adapter);
|
||
|
|
||
|
|
||
|
// Clear out our software transmit structures
|
||
|
NdisZeroMemory((PVOID) Adapter->XmitCached, Adapter->XmitCachedSize);
|
||
|
|
||
|
// Re-initialize the transmit structures
|
||
|
ResetTransmitQueues(Adapter, FALSE);
|
||
|
ResetReceiveQueues(Adapter);
|
||
|
Adapter->tcbUsed = 0;
|
||
|
NdisMSetTimer(&Adapter->MK7AsyncResetTimer, 500);
|
||
|
|
||
|
// Adapter->hardwareStatus = NdisHardwareStatusReady;
|
||
|
// Adapter->ResetInProgress = FALSE;
|
||
|
// MK7EnableInterrupt(Adapter);
|
||
|
// MK7EnableIr(Adapter);
|
||
|
|
||
|
NdisReleaseSpinLock(&Adapter->Lock);
|
||
|
return(NDIS_STATUS_PENDING);
|
||
|
}
|
||
|
|
||
|
|
||
|
|
||
|
//-----------------------------------------------------------------------------
|
||
|
// Procedure: [DriverEntry]
|
||
|
//
|
||
|
// Description: This is the primary initialization routine for the MK7 driver.
|
||
|
// It is simply responsible for the intializing the wrapper and registering
|
||
|
// the adapter driver. The routine gets called once per driver, but
|
||
|
// MKMiniportInitialize(miniport) will get called multiple times if there are
|
||
|
// multiple adapters.
|
||
|
//
|
||
|
// Arguments:
|
||
|
// DriverObject - Pointer to driver object created by the system.
|
||
|
// RegistryPath - The registry path of this driver
|
||
|
//
|
||
|
// Returns:
|
||
|
// The status of the operation, normally this will be NDIS_STATUS_SUCCESS
|
||
|
//-----------------------------------------------------------------------------
|
||
|
NTSTATUS
|
||
|
DriverEntry(PDRIVER_OBJECT DriverObject,
|
||
|
PUNICODE_STRING RegistryPath)
|
||
|
{
|
||
|
NDIS_STATUS Status;
|
||
|
NDIS_HANDLE NdisWrapperHandle;
|
||
|
|
||
|
|
||
|
NDIS_MINIPORT_CHARACTERISTICS MKMiniportChar;
|
||
|
|
||
|
DBGFUNC("MK7-DriverEntry");
|
||
|
DBGLOG("=> DriverEntry", 0);
|
||
|
|
||
|
//****************************************
|
||
|
// Now we must initialize the wrapper, and then register the Miniport
|
||
|
//****************************************
|
||
|
NdisMInitializeWrapper( &NdisWrapperHandle,
|
||
|
DriverObject,
|
||
|
RegistryPath,
|
||
|
NULL );
|
||
|
|
||
|
NdisZeroMemory(&MKMiniportChar, sizeof(MKMiniportChar));
|
||
|
|
||
|
// Initialize the Miniport characteristics for the call to
|
||
|
// NdisMRegisterMiniport.
|
||
|
MKMiniportChar.MajorNdisVersion = MK7_NDIS_MAJOR_VERSION;
|
||
|
MKMiniportChar.MinorNdisVersion = MK7_NDIS_MINOR_VERSION;
|
||
|
MKMiniportChar.CheckForHangHandler = MKMiniportCheckForHang;
|
||
|
MKMiniportChar.DisableInterruptHandler = MK7DisableInterrupt;
|
||
|
MKMiniportChar.EnableInterruptHandler = MK7EnableInterrupt;
|
||
|
MKMiniportChar.HaltHandler = MKMiniportHalt;
|
||
|
MKMiniportChar.HandleInterruptHandler = MKMiniportHandleInterrupt;
|
||
|
MKMiniportChar.InitializeHandler = MKMiniportInitialize;
|
||
|
MKMiniportChar.ISRHandler = MKMiniportIsr;
|
||
|
MKMiniportChar.QueryInformationHandler = MKMiniportQueryInformation;
|
||
|
MKMiniportChar.ReconfigureHandler = NULL;
|
||
|
MKMiniportChar.ResetHandler = MKMiniportReset;
|
||
|
MKMiniportChar.SetInformationHandler = MKMiniportSetInformation;
|
||
|
MKMiniportChar.SendHandler = NULL;
|
||
|
MKMiniportChar.SendPacketsHandler = MKMiniportMultiSend;
|
||
|
MKMiniportChar.ReturnPacketHandler = MKMiniportReturnPackets;
|
||
|
MKMiniportChar.TransferDataHandler = NULL;
|
||
|
// MKMiniportChar.AllocateCompleteHandler = D100AllocateComplete;
|
||
|
|
||
|
|
||
|
//****************************************
|
||
|
// Register this driver with the NDIS wrapper
|
||
|
// This will cause MKMiniportInitialize to be called before returning
|
||
|
// (is this really true? -- SoftIce shows this returning before
|
||
|
// MKMiniportInitialize() is called(?))
|
||
|
//****************************************
|
||
|
Status = NdisMRegisterMiniport( NdisWrapperHandle,
|
||
|
&MKMiniportChar,
|
||
|
sizeof(NDIS_MINIPORT_CHARACTERISTICS));
|
||
|
|
||
|
if (Status == NDIS_STATUS_SUCCESS) {
|
||
|
DBGLOG("<= DriverEntry", 0);
|
||
|
return (STATUS_SUCCESS);
|
||
|
}
|
||
|
|
||
|
DBGLOG("<= DriverEntry: Failed!", 0);
|
||
|
return (Status);
|
||
|
}
|
||
|
|