📄 usbout.c
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/****************************************************************
NAME: usbout.c
DESC: USB bulk-OUT operation related functions
HISTORY:
****************************************************************/
#include <stdio.h>
#include <string.h>
#include "option.h"
#include "2460addr.h"
#include "2460lib.h"
#include "2460usb.h"
#include "usbmain.h"
#include "usb.h"
#include "usblib.h"
#include "usbsetup.h"
#include "usbout.h"
#include "2460MON.h"
static void PrintEpoPkt(unsigned char *pt,int cnt);
static void RdPktEp3_CheckSum(unsigned char *buf,int num);
// ===================================================================
// All following commands will operate in case
// - out_csr3 is valid.
// ===================================================================
#define CLR_EP3_OUT_PKT_READY() rOUT_CSR1_REG= ( out_csr3 &(~ EPO_WR_BITS)\
&(~EPO_OUT_PKT_READY) )
#define SET_EP3_SEND_STALL() rOUT_CSR1_REG= ( out_csr3 & (~EPO_WR_BITS)\
| EPO_SEND_STALL) )
#define CLR_EP3_SENT_STALL() rOUT_CSR1_REG= ( out_csr3 & (~EPO_WR_BITS)\
&(~EPO_SENT_STALL) )
#define FLUSH_EP3_FIFO() rOUT_CSR1_REG= ( out_csr3 & (~EPO_WR_BITS)\
|EPO_FIFO_FLUSH) )
// ***************************
// *** VERY IMPORTANT NOTE ***
// ***************************
// Prepare for the packit size constraint!!!
// EP3 = OUT end point.
unsigned char ep3Buf[EP3_PKT_SIZE];
static unsigned char tempBuf[64+1];
void Ep3Handler(void)
{
unsigned char out_csr3;
int fifoCnt;
rINDEX_REG=3;
out_csr3=rOUT_CSR1_REG;
DbgPrintf("<3:%x]",out_csr3);
if(out_csr3 & EPO_OUT_PKT_READY)
{
fifoCnt=rOUT_FIFO_CNT1_REG;
#if 0
RdPktEp3(ep3Buf,fifoCnt);
PrintEpoPkt(ep3Buf,fifoCnt);
#else
if(downloadFileSize==0)
{
RdPktEp3((unsigned char *)downPt,8);
if(download_run==0)
{
downloadAddress=tempDownloadAddress;
}
else
{
downloadAddress=
*((unsigned char *)(downPt+0))+
(*((unsigned char *)(downPt+1))<<8)+
(*((unsigned char *)(downPt+2))<<16)+
(*((unsigned char *)(downPt+3))<<24);
// SRAMKey_Run=downloadAddress;
}
downloadFileSize=
*((unsigned char *)(downPt+4))+
(*((unsigned char *)(downPt+5))<<8)+
(*((unsigned char *)(downPt+6))<<16)+
(*((unsigned char *)(downPt+7))<<24);
checkSum=0;
downPt=(unsigned char *)downloadAddress;
RdPktEp3_CheckSum((unsigned char *)downPt,fifoCnt-8); //The first 8-bytes are deleted.
downPt+=fifoCnt-8;
#if USBDMA
//CLR_EP3_OUT_PKT_READY() is not executed.
//So, USBD may generate NAK until DMA2 is configured for USB_EP3;
rINTMSK|=BIT_USB; //for debug
rINTSUBMSK|=BIT_SUB_USBD;
return;
#endif
}
else
{
#if USBDMA
printf("<ERROR>");
#endif
RdPktEp3_CheckSum((unsigned char *)downPt,fifoCnt);
downPt+=fifoCnt; //fifoCnt=64
}
#endif
CLR_EP3_OUT_PKT_READY();
// sw workaround for fixing lost last interrupt : 02.25,'04
#if 1
if(((rOUT_CSR1_REG&0x1)==1) && ((rEP_INT_REG & 0x8)==0))
{
fifoCnt=rOUT_FIFO_CNT1_REG;
RdPktEp3_CheckSum((unsigned char *)downPt,fifoCnt);
downPt+=fifoCnt; //fifoCnt=64
CLR_EP3_OUT_PKT_READY();
}
#endif
return;
}
//I think that EPO_SENT_STALL will not be set to 1.
if(out_csr3 & EPO_SENT_STALL)
{
DbgPrintf("[STALL]");
CLR_EP3_SENT_STALL();
return;
}
}
void PrintEpoPkt(unsigned char *pt,int cnt)
{
int i;
DbgPrintf("[BOUT:%d:",cnt);
for(i=0;i<cnt;i++)
DbgPrintf("%x,",pt[i]);
DbgPrintf("]");
}
void RdPktEp3_CheckSum(unsigned char *buf,int num)
{
int i;
for(i=0;i<num;i++)
{
buf[i]=(unsigned char)rEP3_FIFO;
checkSum+=buf[i];
}
}
void __irq IsrDma2(void)
{
unsigned char out_csr3;
unsigned int nextTotalDmaCount;
unsigned char saveIndexReg=rINDEX_REG;
rINDEX_REG=3;
out_csr3=rOUT_CSR1_REG;
rSUBSRCPND|=BIT_SUB_DMA2;
ClearPending(BIT_DMA_SBUS);
totalDmaCount+=0x80000;
if(totalDmaCount>=downloadFileSize)// is last?
{
totalDmaCount=downloadFileSize;
ConfigEp3IntMode();
if(out_csr3& EPO_OUT_PKT_READY)
{
CLR_EP3_OUT_PKT_READY();
}
rINTMSK|=BIT_DMA_SBUS;
rINTMSK&=~(BIT_USB);
rINTSUBMSK&=~(BIT_SUB_USBD);
}
else
{
if((totalDmaCount+0x80000)<downloadFileSize)
{
nextTotalDmaCount=totalDmaCount+0x80000;
if((nextTotalDmaCount+0x80000)<downloadFileSize)
{
//for (2~n)th autoreload.
while((rDSTAT2&0xfffff)==0); //wait until autoreload occurs.
rDIDST2=((unsigned int)downloadAddress+nextTotalDmaCount-8);
rDIDSTC2=(0<<1)|(0<<0);
#if USBDMA_BURST
rDCON2=rDCON2&~(0xfffff)|(0x20000);
#else
rDCON2=rDCON2&~(0xfffff)|(0x80000);
#endif
while(rEP3_DMA_TTC<0xfffff)
{
rEP3_DMA_TTC_L=0xff;
rEP3_DMA_TTC_M=0xff;
rEP3_DMA_TTC_H=0xf;
//0xfffff;
}
}
else
{
while((rDSTAT2&0xfffff)==0); //wait until autoreload occurs.
rDIDST2=((unsigned int)downloadAddress+nextTotalDmaCount-8);
rDIDSTC2=(0<<1)|(0<<0);
#if USBDMA_BURST
rDCON2=rDCON2&~(0xfffff)|((downloadFileSize-nextTotalDmaCount)/4+1);
#else
rDCON2=rDCON2&~(0xfffff)|(downloadFileSize-nextTotalDmaCount);
#endif
while(rEP3_DMA_TTC<0xfffff)
{
rEP3_DMA_TTC_L=0xff;
rEP3_DMA_TTC_M=0xff;
rEP3_DMA_TTC_H=0xf;
//0xfffff;
}
}
}
else
{
while((rDSTAT2&0xfffff)==0); //wait until autoreload occurs.
rDIDST2=((unsigned int)downloadAddress+downloadFileSize-8); //for next autoreload.
rDIDSTC2=(0<<1)|(0<<0);
rDCON2=rDCON2&~(0xfffff)|(0);
//There is no 2nd autoreload. This will not be used.
//rDMA_TX+=0x0; //USBD register
}
}
rINDEX_REG=saveIndexReg;
}
void ClearEp3OutPktReady(void)
{
unsigned char out_csr3;
rINDEX_REG=3;
out_csr3=rOUT_CSR1_REG;
CLR_EP3_OUT_PKT_READY();
}
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