?? usbhw.c
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/*----------------------------------------------------------------------------
* U S B - K e r n e l
*----------------------------------------------------------------------------
* Name: USBHW.C
* Purpose: USB Hardware Layer Module for Philips LPC214x/LPC318x/23xx/24xx
* Version: V1.10
*----------------------------------------------------------------------------
* This file is part of the uVision/ARM development tools.
* This software may only be used under the terms of a valid, current,
* end user licence from KEIL for a compatible version of KEIL software
* development tools. Nothing else gives you the right to use it.
*
* Copyright (c) 2005-2007 Keil Software.
*---------------------------------------------------------------------------*/
#include <LPC23xx.H> /* LPC23xx definitions */
#include "type.h"
#include "usb.h"
#include "usbcfg.h"
#include "usbreg.h"
#include "usbhw.h"
#include "usbcore.h"
#include "usbuser.h"
#pragma diag_suppress 1441
#define EP_MSK_CTRL 0x0001 /* Control Endpoint Logical Address Mask */
#define EP_MSK_BULK 0xC924 /* Bulk Endpoint Logical Address Mask */
#define EP_MSK_INT 0x4492 /* Interrupt Endpoint Logical Address Mask */
#define EP_MSK_ISO 0x1248 /* Isochronous Endpoint Logical Address Mask */
#if USB_DMA
#pragma arm section zidata = "USB_RAM"
DWORD UDCA[USB_EP_NUM]; /* UDCA in USB RAM */
DWORD DD_NISO_Mem[4*DD_NISO_CNT]; /* Non-Iso DMA Descriptor Memory */
DWORD DD_ISO_Mem [5*DD_ISO_CNT]; /* Iso DMA Descriptor Memory */
#pragma arm section zidata
DWORD udca[USB_EP_NUM]; /* UDCA saved values */
DWORD DDMemMap[2]; /* DMA Descriptor Memory Usage */
#endif
/*
* Get Endpoint Physical Address
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: Endpoint Physical Address
*/
DWORD EPAdr (DWORD EPNum) {
DWORD val;
val = (EPNum & 0x0F) << 1;
if (EPNum & 0x80) {
val += 1;
}
return (val);
}
/*
* Write Command
* Parameters: cmd: Command
* Return Value: None
*/
void WrCmd (DWORD cmd) {
DEV_INT_CLR = CCEMTY_INT;
CMD_CODE = cmd;
while ((DEV_INT_STAT & CCEMTY_INT) == 0);
}
/*
* Write Command Data
* Parameters: cmd: Command
* val: Data
* Return Value: None
*/
void WrCmdDat (DWORD cmd, DWORD val) {
DEV_INT_CLR = CCEMTY_INT;
CMD_CODE = cmd;
while ((DEV_INT_STAT & CCEMTY_INT) == 0);
DEV_INT_CLR = CCEMTY_INT;
CMD_CODE = val;
while ((DEV_INT_STAT & CCEMTY_INT) == 0);
}
/*
* Read Command Data
* Parameters: cmd: Command
* Return Value: Data Value
*/
DWORD RdCmdDat (DWORD cmd) {
DEV_INT_CLR = CCEMTY_INT | CDFULL_INT;
CMD_CODE = cmd;
while ((DEV_INT_STAT & CDFULL_INT) == 0);
return (CMD_DATA);
}
/*
* USB Initialize Function
* Called by the User to initialize USB
* Return Value: None
*/
void USB_Init (void) {
PINSEL1 &= ~0x3C000000; /* P0.29 USB1_D+, P0.30 USB1_D- */
PINSEL1 |= 0x14000000; /* PINSEL1 26.27, 28.29 */
PINSEL3 &= ~0x30000030; /* P1.18 GoodLink, P1.30 VBus */
PINSEL3 |= 0x20000010; /* PINSEL3 4.5, 28.29 */
/* The SoftConnect pin for LPC2300 on USB_U1 doesn't work for now,
make it GPIO and make it low to turn on pull-up on D+.
Once it's fixed, make #if 1 and set it as SoftConn Pin. */
#if 0
PINSEL4 &= ~0x000C0000; /* P2.9 USB1 SoftConnect */
PINSEL4 |= 0x000040000; /* PINSEl4 18.19 */
#else
PINSEL4 &= ~0x000C0000;
FIO2DIR |= (1 << 9);
FIO2CLR = (1 << 9);
#endif
PCONP |= 0x80000000; /* USB PCLK -> enable USB Per. */
OTG_CLK_CTRL = 0x12; /* Dev clock, AHB clock enable */
while ((OTG_CLK_STAT & 0x12) != 0x12);
VICVectAddr22 = (unsigned long)USB_ISR; /* USB Interrupt -> Vector 22 */
VICVectCntl22 = 0x01; /* USB Interrupt -> Priority 1 */
VICIntEnable = 1 << 22; /* Enable USB Interrupt */
// DEV_INT_EN = DEV_STAT_INT; /* Enable Device Status Interrupt */
#if 1 /* Partial Manual Reset since Automatic Bus Reset is not working */
USB_Reset();
USB_SetAddress(0);
#endif
}
/*
* USB Connect Function
* Called by the User to Connect/Disconnect USB
* Parameters: con: Connect/Disconnect
* Return Value: None
*/
void USB_Connect (BOOL con) {
WrCmdDat(CMD_SET_DEV_STAT, DAT_WR_BYTE(con ? DEV_CON : 0));
}
/*
* USB Reset Function
* Called automatically on USB Reset
* Return Value: None
*/
void USB_Reset (void) {
#if USB_DMA
DWORD n;
#endif
EP_INDEX = 0;
MAXPACKET_SIZE = USB_MAX_PACKET0;
EP_INDEX = 1;
MAXPACKET_SIZE = USB_MAX_PACKET0;
while ((DEV_INT_STAT & EP_RLZED_INT) == 0);
EP_INT_CLR = 0xFFFFFFFF;
EP_INT_EN = 0xFFFFFFFF ^ USB_DMA_EP;
DEV_INT_CLR = 0xFFFFFFFF;
DEV_INT_EN = DEV_STAT_INT | EP_SLOW_INT |
(USB_SOF_EVENT ? FRAME_INT : 0) |
(USB_ERROR_EVENT ? ERR_INT : 0);
#if USB_DMA
UDCA_HEAD = USB_RAM_ADR;
DMA_REQ_CLR = 0xFFFFFFFF;
EP_DMA_DIS = 0xFFFFFFFF;
EP_DMA_EN = USB_DMA_EP;
EOT_INT_CLR = 0xFFFFFFFF;
NDD_REQ_INT_CLR = 0xFFFFFFFF;
SYS_ERR_INT_CLR = 0xFFFFFFFF;
DMA_INT_EN = 0x00000007;
DDMemMap[0] = 0x00000000;
DDMemMap[1] = 0x00000000;
for (n = 0; n < USB_EP_NUM; n++) {
udca[n] = 0;
UDCA[n] = 0;
}
#endif
}
/*
* USB Suspend Function
* Called automatically on USB Suspend
* Return Value: None
*/
void USB_Suspend (void) {
/* Performed by Hardware */
}
/*
* USB Resume Function
* Called automatically on USB Resume
* Return Value: None
*/
void USB_Resume (void) {
/* Performed by Hardware */
}
/*
* USB Remote Wakeup Function
* Called automatically on USB Remote Wakeup
* Return Value: None
*/
void USB_WakeUp (void) {
if (USB_DeviceStatus & USB_GETSTATUS_REMOTE_WAKEUP) {
WrCmdDat(CMD_SET_DEV_STAT, DAT_WR_BYTE(DEV_CON));
}
}
/*
* USB Remote Wakeup Configuration Function
* Parameters: cfg: Enable/Disable
* Return Value: None
*/
void USB_WakeUpCfg (BOOL cfg) {
/* Not needed */
}
/*
* USB Set Address Function
* Parameters: adr: USB Address
* Return Value: None
*/
void USB_SetAddress (DWORD adr) {
WrCmdDat(CMD_SET_ADDR, DAT_WR_BYTE(DEV_EN | adr)); /* Don't wait for next */
WrCmdDat(CMD_SET_ADDR, DAT_WR_BYTE(DEV_EN | adr)); /* Setup Status Phase */
}
/*
* USB Configure Function
* Parameters: cfg: Configure/Deconfigure
* Return Value: None
*/
void USB_Configure (BOOL cfg) {
WrCmdDat(CMD_CFG_DEV, DAT_WR_BYTE(cfg ? CONF_DVICE : 0));
REALIZE_EP = 0x00000003;
while ((DEV_INT_STAT & EP_RLZED_INT) == 0);
DEV_INT_CLR = EP_RLZED_INT;
}
/*
* Configure USB Endpoint according to Descriptor
* Parameters: pEPD: Pointer to Endpoint Descriptor
* Return Value: None
*/
void USB_ConfigEP (USB_ENDPOINT_DESCRIPTOR *pEPD) {
DWORD num;
num = EPAdr(pEPD->bEndpointAddress);
REALIZE_EP |= (1 << num);
EP_INDEX = num;
MAXPACKET_SIZE = pEPD->wMaxPacketSize;
while ((DEV_INT_STAT & EP_RLZED_INT) == 0);
DEV_INT_CLR = EP_RLZED_INT;
}
/*
* Set Direction for USB Control Endpoint
* Parameters: dir: Out (dir == 0), In (dir <> 0)
* Return Value: None
*/
void USB_DirCtrlEP (DWORD dir) {
/* Not needed */
}
/*
* Enable USB Endpoint
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: None
*/
void USB_EnableEP (DWORD EPNum) {
WrCmdDat(CMD_SET_EP_STAT(EPAdr(EPNum)), DAT_WR_BYTE(0));
}
/*
* Disable USB Endpoint
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: None
*/
void USB_DisableEP (DWORD EPNum) {
WrCmdDat(CMD_SET_EP_STAT(EPAdr(EPNum)), DAT_WR_BYTE(EP_STAT_DA));
}
/*
* Reset USB Endpoint
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: None
*/
void USB_ResetEP (DWORD EPNum) {
WrCmdDat(CMD_SET_EP_STAT(EPAdr(EPNum)), DAT_WR_BYTE(0));
}
/*
* Set Stall for USB Endpoint
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: None
*/
void USB_SetStallEP (DWORD EPNum) {
WrCmdDat(CMD_SET_EP_STAT(EPAdr(EPNum)), DAT_WR_BYTE(EP_STAT_ST));
}
/*
* Clear Stall for USB Endpoint
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* Return Value: None
*/
void USB_ClrStallEP (DWORD EPNum) {
WrCmdDat(CMD_SET_EP_STAT(EPAdr(EPNum)), DAT_WR_BYTE(0));
}
/*
* Read USB Endpoint Data
* Parameters: EPNum: Endpoint Number
* EPNum.0..3: Address
* EPNum.7: Dir
* pData: Pointer to Data Buffer
* Return Value: Number of bytes read
*/
DWORD USB_ReadEP (DWORD EPNum, BYTE *pData) {
DWORD cnt, n;
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