📄 usbacm_dsp.c
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/*****************************************************************************
* Copyright Statement:
* --------------------
* This software is protected by Copyright and the information contained
* herein is confidential. The software may not be copied and the information
* contained herein may not be used or disclosed except with the written
* permission of MediaTek Inc. (C) 2005
*
* BY OPENING THIS FILE, BUYER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
* THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
* RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO BUYER ON
* AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
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* NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
* SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
* SUPPLIED WITH THE MEDIATEK SOFTWARE, AND BUYER AGREES TO LOOK ONLY TO SUCH
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*
* THE TRANSACTION CONTEMPLATED HEREUNDER SHALL BE CONSTRUED IN ACCORDANCE
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*
*****************************************************************************/
/*****************************************************************************
*
* Filename:
* ---------
* usbacm_dsp.c
*
* Project:
* --------
* Maui_Software
*
* Description:
* ------------
* This file implements usb adaption layer for DSP API
*
* Author:
* -------
* -------
*
*============================================================================
* HISTORY
* Below this line, this part is controlled by PVCS VM. DO NOT MODIFY!!
*------------------------------------------------------------------------------
* removed!
* removed!
* removed!
*
* removed!
* removed!
* removed!
*
* removed!
* removed!
* removed!
*
*------------------------------------------------------------------------------
* Upper this line, this part is controlled by PVCS VM. DO NOT MODIFY!!
*============================================================================
****************************************************************************/
#include "kal_release.h"
#include "drv_comm.h"
#include "intrCtrl.h"
#include "usb_drv.h"
#include "irdbg_drv.h"
#include "irdbg_hw.h"
#include "usb_comm.h"
#include "usb.h"
#include "usb_resource.h"
#include "usbacm_drv.h"
#include "usbacm_dsp.h"
#ifdef __DSPIRDBG__
/* Exception flag*/
extern kal_uint8 INT_Exception_Enter;
USB_DSPIRDBG_Struct g_USB_DSPLog;
static void USB_DSPIRDBG_DMA_Callback(void);
static void USB_DSPIRDBG_Hdlr(void);
static void USB_DSPIRDBG_Update_Write_Status(void);
static void USB_DSPIRDBG_Update_Read_Status(void);
static void USB_DSPIRDBG_Update_Transmit_Status(void);
/* call at IRDBG_HISR */
static void USB_DSPIRDBG_Update_Write_Status(void)
{
#if (defined(MT6229) || defined(MT6230))
/*
if(g_USB_DSPLog.buffer_full_index&(IRDBG_BUF_INDEX<<(g_USB_DSPLog.dma_write_index)) != 0)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<(g_USB_DSPLog.dma_write_index), 0);
g_USB_DSPLog.buffer_full_index |= IRDBG_BUF_INDEX<<(g_USB_DSPLog.dma_write_index);
g_USB_DSPLog.dma_write_index = (g_USB_DSPLog.dma_write_index+1)%g_USB_DSPLog.buff_num;
*/
#elif defined(MT6225)
kal_uint16 buffer_status;
kal_uint32 current_write_ptr = 255;
kal_uint32 index;
buffer_status = DRV_Reg(IRDBG_STA);
/* find current write pointer */
for (index = 0; index < g_USB_DSPLog.buff_num ; index++)
{
if((buffer_status&(IRDBG_BUF_INDEX<<index)) != 0)
{
current_write_ptr = index;
break;
}
}
if (current_write_ptr == 255)
ASSERT(0);
if(g_USB_DSPLog.dma_write_index <= current_write_ptr)
{
for (index = g_USB_DSPLog.dma_write_index; index <= current_write_ptr ; index++)
{
if((g_USB_DSPLog.buffer_full_index&(IRDBG_BUF_INDEX<<index)) != 0)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<index, 0);
g_USB_DSPLog.buffer_full_index |= IRDBG_BUF_INDEX<<index;
}
}
else
{
for (index = g_USB_DSPLog.dma_write_index; index < g_USB_DSPLog.buff_num ; index++)
{
if((g_USB_DSPLog.buffer_full_index&(IRDBG_BUF_INDEX<<index)) != 0)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<index, 0);
g_USB_DSPLog.buffer_full_index |= IRDBG_BUF_INDEX<<index;
}
for (index = 0; index <= current_write_ptr ; index++)
{
if((g_USB_DSPLog.buffer_full_index&(IRDBG_BUF_INDEX<<index)) != 0)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<index, 0);
g_USB_DSPLog.buffer_full_index |= IRDBG_BUF_INDEX<<index;
}
}
/* update write pointer */
// g_USB_DSPLog.dma_write_index = (current_write_ptr+1)%g_USB_DSPLog.buff_num;
if((current_write_ptr+1) == g_USB_DSPLog.buff_num)
g_USB_DSPLog.dma_write_index = 0;
else
g_USB_DSPLog.dma_write_index = (current_write_ptr+1);
#endif
}
/* Only be called at DMA call back */
static void USB_DSPIRDBG_Update_Read_Status(void)
{
kal_uint32 index;
for(index = g_USB_DSPLog.dma_read_index; index < (g_USB_DSPLog.dma_read_index + g_USB_DSPLog.transmit_count); index++)
{
if(IRDBG_Check_Buff_Full(index) == KAL_FALSE)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<index, 0);
IRDBG_Clear_Buff(index);
}
if((g_USB_DSPLog.dma_read_index + g_USB_DSPLog.transmit_count) > g_USB_DSPLog.buff_num)
EXT_ASSERT(0, g_USB_DSPLog.dma_read_index + g_USB_DSPLog.transmit_count, g_USB_DSPLog.buff_num, 0);
// g_USB_DSPLog.dma_read_index = (g_USB_DSPLog.dma_read_index + g_USB_DSPLog.transmit_count)%g_USB_DSPLog.buff_num;
if((g_USB_DSPLog.dma_read_index + g_USB_DSPLog.transmit_count) == g_USB_DSPLog.buff_num)
g_USB_DSPLog.dma_read_index = 0;
else
g_USB_DSPLog.dma_read_index += g_USB_DSPLog.transmit_count;
}
static void USB_DSPIRDBG_Update_Transmit_Status(void)
{
kal_uint32 index;
g_USB_DSPLog.transmit_count = 1;
if(IRDBG_Check_Buff_Full(g_USB_DSPLog.dma_read_index) == KAL_FALSE)
EXT_ASSERT(0, g_USB_DSPLog.buffer_full_index, IRDBG_BUF_INDEX<<g_USB_DSPLog.dma_read_index, 0);
for (index = (g_USB_DSPLog.dma_read_index+1); index < g_USB_DSPLog.buff_num; index++)
{
if(IRDBG_Check_Buff_Full(index) == KAL_TRUE)
g_USB_DSPLog.transmit_count++;
else
break;
}
}
/* DMA callback function for TX sent out data */
static void USB_DSPIRDBG_DMA_Callback(void)
{
kal_uint32 savedMask;
kal_uint8* buff_addr;
kal_uint32 count;
kal_bool bDMA = KAL_FALSE;
USB_DMA_Set_Run_Status(g_UsbACM.txpipe->byEP, KAL_FALSE);
if( (g_USB_DSPLog.dma_owner!=USB_DSPIRDBG_DMA_OWNER_DMA)
&& (g_USB_DSPLog.dma_owner!=USB_DSPIRDBG_DMA_OWNER_DSP))
{
EXT_ASSERT(0, g_USB_DSPLog.dma_owner, g_USB_DSPLog.dma_write_index, g_USB_DSPLog.dma_read_index);
}
USB_DSPIRDBG_Update_Read_Status();
g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_NONE;
savedMask = SaveAndSetIRQMask();
/* in case usb cable is plugged out just before this critical section*/
if(gUsbDevice.device_type == USB_CDC_ACM)
{
if((g_USB_DSPLog.dma_owner==USB_DSPIRDBG_DMA_OWNER_NONE) &&
(IRDBG_Check_Buff_Full(g_USB_DSPLog.dma_read_index)==KAL_TRUE))
{
/* decide to trigger DMA */
USB_DSPIRDBG_Update_Transmit_Status();
g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_DMA;
bDMA = KAL_TRUE;
}
}
RestoreIRQMask(savedMask);
if(bDMA==KAL_TRUE)
{
if(g_USB_DSPLog.dma_owner!= USB_DSPIRDBG_DMA_OWNER_DMA)
{
EXT_ASSERT(0, g_USB_DSPLog.dma_owner, g_USB_DSPLog.dma_write_index, g_USB_DSPLog.dma_read_index);
}
buff_addr = IRDBG_Get_Buff_Addr(g_USB_DSPLog.dma_read_index);
count = g_USB_DSPLog.buff_size*g_USB_DSPLog.transmit_count ;
USB_DMA_Setup(g_UsbACM.txpipe->byEP, USB_IN_EP_TYPE, (kal_uint32)buff_addr, count, USB_DSPIRDBG_DMA_Callback, KAL_TRUE);
}
}
/* IRDBG_HISR */
static void USB_DSPIRDBG_Hdlr(void)
{
kal_uint32 savedMask;
kal_uint8* buff_addr;
kal_uint32 count;
kal_bool bDMA = KAL_FALSE;
USB_DSPIRDBG_Update_Write_Status();
savedMask = SaveAndSetIRQMask();
/* in case usb is plugged out just before this critical section*/
if(gUsbDevice.device_type == USB_CDC_ACM)
{
if(g_USB_DSPLog.dma_owner==USB_DSPIRDBG_DMA_OWNER_NONE)
{
/* decide to trigger DMA */
USB_DSPIRDBG_Update_Transmit_Status();
g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_DSP;
bDMA = KAL_TRUE;
}
}
RestoreIRQMask(savedMask);
if(bDMA==KAL_TRUE)
{
if(g_USB_DSPLog.dma_owner!= USB_DSPIRDBG_DMA_OWNER_DSP)
{
EXT_ASSERT(0, g_USB_DSPLog.dma_owner, g_USB_DSPLog.dma_write_index, g_USB_DSPLog.dma_read_index);
}
buff_addr = IRDBG_Get_Buff_Addr(g_USB_DSPLog.dma_read_index);
count = g_USB_DSPLog.buff_size*g_USB_DSPLog.transmit_count ;
USB_DMA_Setup(g_UsbACM.txpipe->byEP, USB_IN_EP_TYPE, (kal_uint32)buff_addr, count, USB_DSPIRDBG_DMA_Callback, KAL_TRUE);
}
#if defined(MT6225)
IRQClearInt(IRQ_IRDBG_CODE);
IRQUnmask(IRQ_IRDBG_CODE);
#endif
}
/* Be called when USB configure type */
void USB_DSPIRDBG_Init(void)
{
if(g_USB_DSPLog.b_not_first_time==KAL_FALSE)
{
g_USB_DSPLog.b_not_first_time = KAL_TRUE;
g_USB_DSPLog.buff_num = IRDBG_Get_Buff_Num();
g_USB_DSPLog.buff_size = IRDBG_Get_Buff_Size();
g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_NONE;
g_USB_DSPLog.dma_read_index = 0;
g_USB_DSPLog.dma_write_index = 0;
g_USB_DSPLog.transmit_count = 0;
g_USB_DSPLog.buffer_full_index = 0;
IRDBG_Init(USB_DSPIRDBG_Hdlr);
}
else
{
/* Do not reset read and write index because DSP has already sent data to buffer */
g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_NONE;
}
}
/* Be called when PC configure USB */
void USB_DSPIRDBG_Start(void)
{
// kal_uint8* buff_addr;
/* send the previous time data before plug out cable */
// if(IRDBG_Check_Buff_Full(g_USB_DSPLog.dma_read_index) == KAL_TRUE)
// {
// g_USB_DSPLog.dma_owner = USB_DSPIRDBG_DMA_OWNER_DMA;
// buff_addr = IRDBG_Get_Buff_Addr(g_USB_DSPLog.dma_read_index);
// USB_DMA_Setup(g_UsbACM.txpipe->byEP, USB_IN_EP_TYPE, (kal_uint32)buff_addr, g_USB_DSPLog.buff_size, USB_DSPIRDBG_DMA_Callback, KAL_TRUE);
// }
IRDBG_Start();
}
/* Be called when plugging out cable */
void USB_DSPIRDBG_Stop(void)
{
IRDBG_Stop();
}
// for test
static kal_bool b_test_pattern = KAL_TRUE;
void USB_DSPIRDBG_Flush_Data(void)
{
kal_uint32 index;
kal_uint8 *buff_addr;
static kal_uint8 dummy_data = 0xff;
if(INT_Exception_Enter == 0)
ASSERT(0);
if ( (gUsbDevice.device_type != USB_CDC_ACM) || (g_UsbACM.acm_owner != USB_ACM_OWNER_DSP))
{
/* This function should only be called when assertion, if not CDC_ACM type, return it directly*/
return;
}
/* wait for the running DMA done */
USB_Polling_Transmit_Done(g_UsbACM.txpipe->byEP);
for(index = 0; index < g_USB_DSPLog.buff_num; index++)
{
// buff_addr = IRDBG_Get_Buff_Addr((g_USB_DSPLog.dma_read_index+index)%g_USB_DSPLog.buff_num);
if((g_USB_DSPLog.dma_read_index + index) == g_USB_DSPLog.buff_num)
buff_addr = IRDBG_Get_Buff_Addr(0);
else
buff_addr = IRDBG_Get_Buff_Addr(g_USB_DSPLog.dma_read_index + index);
if(b_test_pattern==KAL_TRUE)
{
// add only for test
buff_addr[0] = 0x77;
buff_addr[1] = 0x88;
buff_addr[2] = index;
}
USB_Polling_Transmit_Data(g_UsbACM.txpipe->byEP, USB_IN_EP_TYPE, (kal_uint32)buff_addr, g_USB_DSPLog.buff_size, NULL, KAL_FALSE);
}
// send one byte dummy data
USB_Polling_Transmit_Data(g_UsbACM.txpipe->byEP, USB_IN_EP_TYPE, (kal_uint32)&dummy_data, 1, NULL, KAL_FALSE);
}
#endif /*__DSPIRDBG__ */
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