//*****************************************************************************
//
// usbdevicepriv.h - Private header file used to share internal variables and
//                   function prototypes between the various device-related
//                   modules in the USB library.  This header MUST NOT be
//                   used by application code.
//
// Copyright (c) 2008-2020 Texas Instruments Incorporated.  All rights reserved.
// Software License Agreement
// 
// Texas Instruments (TI) is supplying this software for use solely and
// exclusively on TI's microcontroller products. The software is owned by
// TI and/or its suppliers, and is protected under applicable copyright
// laws. You may not combine this software with "viral" open-source
// software in order to form a larger program.
// 
// THIS SOFTWARE IS PROVIDED "AS IS" AND WITH ALL FAULTS.
// NO WARRANTIES, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING, BUT
// NOT LIMITED TO, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE APPLY TO THIS SOFTWARE. TI SHALL NOT, UNDER ANY
// CIRCUMSTANCES, BE LIABLE FOR SPECIAL, INCIDENTAL, OR CONSEQUENTIAL
// DAMAGES, FOR ANY REASON WHATSOEVER.
// 
// This is part of revision 2.2.0.295 of the Tiva USB Library.
//
//*****************************************************************************

#ifndef __USBDEVICEPRIV_H__
#define __USBDEVICEPRIV_H__

//*****************************************************************************
//
// If building with a C++ compiler, make all of the definitions in this header
// have a C binding.
//
//*****************************************************************************
#ifdef __cplusplus
extern "C"
{
#endif

//*****************************************************************************
//
// The states for endpoint zero during enumeration.
//
//*****************************************************************************
typedef enum
{
    //
    // The USB device is waiting on a request from the host controller on
    // endpoint zero.
    //
    eUSBStateIdle,

    //
    // The USB device is sending data back to the host due to an IN request.
    //
    eUSBStateTx,

    //
    // The USB device is sending the configuration descriptor back to the host
    // due to an IN request.
    //
    eUSBStateTxConfig,

    //
    // The USB device is receiving data from the host due to an OUT
    // request from the host.
    //
    eUSBStateRx,

    //
    // The USB device has completed the IN or OUT request and is now waiting
    // for the host to acknowledge the end of the IN/OUT transaction.  This
    // is the status phase for a USB control transaction.
    //
    eUSBStateStatus,

    //
    // This endpoint has signaled a stall condition and is waiting for the
    // stall to be acknowledged by the host controller.
    //
    eUSBStateStall
}
tEP0State;

typedef struct tDeviceInfo tDeviceInfo;

//*****************************************************************************
//
// The USB controller device information.
//
//*****************************************************************************
typedef struct
{
    //
    // The current state of endpoint zero.
    //
    volatile tEP0State iEP0State;

    //
    // The devices current address, this also has a change pending bit in the
    // MSB of this value specified by DEV_ADDR_PENDING.
    //
    volatile uint32_t ui32DevAddress;

    //
    // This holds the current active configuration for this device.
    //
    uint32_t ui32Configuration;

    //
    // This holds the configuration id that will take effect after a reset.
    //
    uint32_t ui32DefaultConfiguration;

    //
    // This holds the current alternate interface for this device.
    //
    uint8_t pui8AltSetting[USB_MAX_INTERFACES_PER_DEVICE];

    //
    // This is the pointer to the current data being sent out or received
    // on endpoint zero.
    //
    uint8_t *pui8EP0Data;

    //
    // This is the number of bytes that remain to be sent from or received
    // into the g_sUSBDeviceState.pui8EP0Data data buffer.
    //
    volatile uint32_t ui32EP0DataRemain;

    //
    // The amount of data being sent/received due to a custom request.
    //
    uint32_t ui32OUTDataSize;

    //
    // Holds the current device status.
    //
    uint8_t ui8Status;

    //
    // Holds the endpoint status for the HALT condition.  This array is sized
    // to hold halt status for all IN and OUT endpoints.
    //
    uint8_t ppui8Halt[2][USBLIB_NUM_EP - 1];

    //
    // Holds the configuration descriptor section number currently being sent
    // to the host.
    //
    uint8_t ui8ConfigSection;

    //
    // Holds the offset within the configuration descriptor section currently
    // being sent to the host.
    //
    uint16_t ui16SectionOffset;

    //
    // Holds the index of the configuration that we are currently sending back
    // to the host.
    //
    uint8_t ui8ConfigIndex;

    //
    // This flag is set to true if the client has called USBDPowerStatusSet()
    // and tells the USB library not to try to determine the current power
    // status from the configuration descriptor.
    //
    bool bPwrSrcSet;

    //
    // This flag indicates whether or not remote wake up signaling is in
    // progress.
    //
    bool bRemoteWakeup;

    //
    // During remote wake up signaling, this counter is used to track the
    // number of milliseconds since the signaling was initiated.
    //
    uint8_t ui8RemoteWakeupCount;

    //
    // The DMA instance information for this USB controller.
    //
    tUSBDMAInstance *psDMAInstance;

    //
    // The interrupt number for this instance.
    //
    uint32_t ui32IntNum;

    //
    // Pointer to the device supplied call back data.
    //
    void *pvCBData;

    //
    // This holds the state of the LPM support for the device.
    //
    uint32_t ui32LPMState;

    //
    // Device feature flags.
    //
    uint32_t ui32Features;
}
tDCDInstance;

extern tDCDInstance g_psDCDInst[];
extern tDeviceInfo *g_ppsDevInfo[];

//*****************************************************************************
//
// Device enumeration functions provided by device/usbenum.c and called from
// the interrupt handler in device/usbhandler.c
//
//*****************************************************************************
extern bool USBDeviceConfig(tDCDInstance *psDevInst,
                            const tConfigHeader *psConfig);
extern bool USBDeviceConfigAlternate(tDCDInstance *psDevInst,
                                     const tConfigHeader *psConfig,
                                     uint8_t ui8InterfaceNum,
                                     uint8_t ui8AlternateSetting);

extern void USBDCDDeviceInfoInit(uint32_t ui32Index, tDeviceInfo *psDevice);

//*****************************************************************************
//
// Macro access function to device information.
//
//*****************************************************************************
#define DCDGetDMAInstance(psDevInfo)    (&(psDevInfo->psDCDInst->sDMAInstance))

//*****************************************************************************
//
// Mark the end of the C bindings section for C++ compilers.
//
//*****************************************************************************
#ifdef __cplusplus
}
#endif

#endif // __USBDEVICEPRIV_H__
