xref: /openbmc/u-boot/drivers/usb/gadget/designware_udc.c (revision 83d290c56fab2d38cd1ab4c4cc7099559c1d5046)
1*83d290c5STom Rini // SPDX-License-Identifier: GPL-2.0+
22721551aSVipin KUMAR /*
32721551aSVipin KUMAR  * Based on drivers/usb/gadget/omap1510_udc.c
42721551aSVipin KUMAR  * TI OMAP1510 USB bus interface driver
52721551aSVipin KUMAR  *
62721551aSVipin KUMAR  * (C) Copyright 2009
72721551aSVipin KUMAR  * Vipin Kumar, ST Micoelectronics, vipin.kumar@st.com.
82721551aSVipin KUMAR  */
92721551aSVipin KUMAR 
102721551aSVipin KUMAR #include <common.h>
112721551aSVipin KUMAR #include <asm/io.h>
122721551aSVipin KUMAR 
132721551aSVipin KUMAR #include <usbdevice.h>
142721551aSVipin KUMAR #include "ep0.h"
152721551aSVipin KUMAR #include <usb/designware_udc.h>
16449697f1STroy Kisky #include <usb/udc.h>
172721551aSVipin KUMAR #include <asm/arch/hardware.h>
182721551aSVipin KUMAR 
192721551aSVipin KUMAR #define UDC_INIT_MDELAY		80	/* Device settle delay */
202721551aSVipin KUMAR 
212721551aSVipin KUMAR /* Some kind of debugging output... */
222721551aSVipin KUMAR #ifndef DEBUG_DWUSBTTY
232721551aSVipin KUMAR #define UDCDBG(str)
242721551aSVipin KUMAR #define UDCDBGA(fmt, args...)
252721551aSVipin KUMAR #else
262721551aSVipin KUMAR #define UDCDBG(str) serial_printf(str "\n")
272721551aSVipin KUMAR #define UDCDBGA(fmt, args...) serial_printf(fmt "\n", ##args)
282721551aSVipin KUMAR #endif
292721551aSVipin KUMAR 
302721551aSVipin KUMAR static struct urb *ep0_urb;
312721551aSVipin KUMAR static struct usb_device_instance *udc_device;
322721551aSVipin KUMAR 
332721551aSVipin KUMAR static struct plug_regs *const plug_regs_p =
342721551aSVipin KUMAR     (struct plug_regs * const)CONFIG_SYS_PLUG_BASE;
352721551aSVipin KUMAR static struct udc_regs *const udc_regs_p =
362721551aSVipin KUMAR     (struct udc_regs * const)CONFIG_SYS_USBD_BASE;
372721551aSVipin KUMAR static struct udc_endp_regs *const outep_regs_p =
382721551aSVipin KUMAR     &((struct udc_regs * const)CONFIG_SYS_USBD_BASE)->out_regs[0];
392721551aSVipin KUMAR static struct udc_endp_regs *const inep_regs_p =
402721551aSVipin KUMAR     &((struct udc_regs * const)CONFIG_SYS_USBD_BASE)->in_regs[0];
412721551aSVipin KUMAR 
422721551aSVipin KUMAR /*
432721551aSVipin KUMAR  * udc_state_transition - Write the next packet to TxFIFO.
442721551aSVipin KUMAR  * @initial:	Initial state.
452721551aSVipin KUMAR  * @final:	Final state.
462721551aSVipin KUMAR  *
472721551aSVipin KUMAR  * Helper function to implement device state changes. The device states and
482721551aSVipin KUMAR  * the events that transition between them are:
492721551aSVipin KUMAR  *
502721551aSVipin KUMAR  *				STATE_ATTACHED
512721551aSVipin KUMAR  *				||	/\
522721551aSVipin KUMAR  *				\/	||
532721551aSVipin KUMAR  *	DEVICE_HUB_CONFIGURED			DEVICE_HUB_RESET
542721551aSVipin KUMAR  *				||	/\
552721551aSVipin KUMAR  *				\/	||
562721551aSVipin KUMAR  *				STATE_POWERED
572721551aSVipin KUMAR  *				||	/\
582721551aSVipin KUMAR  *				\/	||
592721551aSVipin KUMAR  *	DEVICE_RESET				DEVICE_POWER_INTERRUPTION
602721551aSVipin KUMAR  *				||	/\
612721551aSVipin KUMAR  *				\/	||
622721551aSVipin KUMAR  *				STATE_DEFAULT
632721551aSVipin KUMAR  *				||	/\
642721551aSVipin KUMAR  *				\/	||
652721551aSVipin KUMAR  *	DEVICE_ADDRESS_ASSIGNED			DEVICE_RESET
662721551aSVipin KUMAR  *				||	/\
672721551aSVipin KUMAR  *				\/	||
682721551aSVipin KUMAR  *				STATE_ADDRESSED
692721551aSVipin KUMAR  *				||	/\
702721551aSVipin KUMAR  *				\/	||
712721551aSVipin KUMAR  *	DEVICE_CONFIGURED			DEVICE_DE_CONFIGURED
722721551aSVipin KUMAR  *				||	/\
732721551aSVipin KUMAR  *				\/	||
742721551aSVipin KUMAR  *				STATE_CONFIGURED
752721551aSVipin KUMAR  *
762721551aSVipin KUMAR  * udc_state_transition transitions up (in the direction from STATE_ATTACHED
772721551aSVipin KUMAR  * to STATE_CONFIGURED) from the specified initial state to the specified final
782721551aSVipin KUMAR  * state, passing through each intermediate state on the way. If the initial
792721551aSVipin KUMAR  * state is at or above (i.e. nearer to STATE_CONFIGURED) the final state, then
802721551aSVipin KUMAR  * no state transitions will take place.
812721551aSVipin KUMAR  *
822721551aSVipin KUMAR  * udc_state_transition also transitions down (in the direction from
832721551aSVipin KUMAR  * STATE_CONFIGURED to STATE_ATTACHED) from the specified initial state to the
842721551aSVipin KUMAR  * specified final state, passing through each intermediate state on the way.
852721551aSVipin KUMAR  * If the initial state is at or below (i.e. nearer to STATE_ATTACHED) the final
862721551aSVipin KUMAR  * state, then no state transitions will take place.
872721551aSVipin KUMAR  *
882721551aSVipin KUMAR  * This function must only be called with interrupts disabled.
892721551aSVipin KUMAR  */
udc_state_transition(usb_device_state_t initial,usb_device_state_t final)902721551aSVipin KUMAR static void udc_state_transition(usb_device_state_t initial,
912721551aSVipin KUMAR 				 usb_device_state_t final)
922721551aSVipin KUMAR {
932721551aSVipin KUMAR 	if (initial < final) {
942721551aSVipin KUMAR 		switch (initial) {
952721551aSVipin KUMAR 		case STATE_ATTACHED:
962721551aSVipin KUMAR 			usbd_device_event_irq(udc_device,
972721551aSVipin KUMAR 					      DEVICE_HUB_CONFIGURED, 0);
982721551aSVipin KUMAR 			if (final == STATE_POWERED)
992721551aSVipin KUMAR 				break;
1002721551aSVipin KUMAR 		case STATE_POWERED:
1012721551aSVipin KUMAR 			usbd_device_event_irq(udc_device, DEVICE_RESET, 0);
1022721551aSVipin KUMAR 			if (final == STATE_DEFAULT)
1032721551aSVipin KUMAR 				break;
1042721551aSVipin KUMAR 		case STATE_DEFAULT:
1052721551aSVipin KUMAR 			usbd_device_event_irq(udc_device,
1062721551aSVipin KUMAR 					      DEVICE_ADDRESS_ASSIGNED, 0);
1072721551aSVipin KUMAR 			if (final == STATE_ADDRESSED)
1082721551aSVipin KUMAR 				break;
1092721551aSVipin KUMAR 		case STATE_ADDRESSED:
1102721551aSVipin KUMAR 			usbd_device_event_irq(udc_device, DEVICE_CONFIGURED, 0);
1112721551aSVipin KUMAR 		case STATE_CONFIGURED:
1122721551aSVipin KUMAR 			break;
1132721551aSVipin KUMAR 		default:
1142721551aSVipin KUMAR 			break;
1152721551aSVipin KUMAR 		}
1162721551aSVipin KUMAR 	} else if (initial > final) {
1172721551aSVipin KUMAR 		switch (initial) {
1182721551aSVipin KUMAR 		case STATE_CONFIGURED:
1192721551aSVipin KUMAR 			usbd_device_event_irq(udc_device,
1202721551aSVipin KUMAR 					      DEVICE_DE_CONFIGURED, 0);
1212721551aSVipin KUMAR 			if (final == STATE_ADDRESSED)
1222721551aSVipin KUMAR 				break;
1232721551aSVipin KUMAR 		case STATE_ADDRESSED:
1242721551aSVipin KUMAR 			usbd_device_event_irq(udc_device, DEVICE_RESET, 0);
1252721551aSVipin KUMAR 			if (final == STATE_DEFAULT)
1262721551aSVipin KUMAR 				break;
1272721551aSVipin KUMAR 		case STATE_DEFAULT:
1282721551aSVipin KUMAR 			usbd_device_event_irq(udc_device,
1292721551aSVipin KUMAR 					      DEVICE_POWER_INTERRUPTION, 0);
1302721551aSVipin KUMAR 			if (final == STATE_POWERED)
1312721551aSVipin KUMAR 				break;
1322721551aSVipin KUMAR 		case STATE_POWERED:
1332721551aSVipin KUMAR 			usbd_device_event_irq(udc_device, DEVICE_HUB_RESET, 0);
1342721551aSVipin KUMAR 		case STATE_ATTACHED:
1352721551aSVipin KUMAR 			break;
1362721551aSVipin KUMAR 		default:
1372721551aSVipin KUMAR 			break;
1382721551aSVipin KUMAR 		}
1392721551aSVipin KUMAR 	}
1402721551aSVipin KUMAR }
1412721551aSVipin KUMAR 
1422721551aSVipin KUMAR /* Stall endpoint */
udc_stall_ep(u32 ep_num)1432721551aSVipin KUMAR static void udc_stall_ep(u32 ep_num)
1442721551aSVipin KUMAR {
1452721551aSVipin KUMAR 	writel(readl(&inep_regs_p[ep_num].endp_cntl) | ENDP_CNTL_STALL,
1462721551aSVipin KUMAR 	       &inep_regs_p[ep_num].endp_cntl);
1472721551aSVipin KUMAR 
1482721551aSVipin KUMAR 	writel(readl(&outep_regs_p[ep_num].endp_cntl) | ENDP_CNTL_STALL,
1492721551aSVipin KUMAR 	       &outep_regs_p[ep_num].endp_cntl);
1502721551aSVipin KUMAR }
1512721551aSVipin KUMAR 
get_fifo(int ep_num,int in)1522721551aSVipin KUMAR static void *get_fifo(int ep_num, int in)
1532721551aSVipin KUMAR {
1542721551aSVipin KUMAR 	u32 *fifo_ptr = (u32 *)CONFIG_SYS_FIFO_BASE;
1552721551aSVipin KUMAR 
1562721551aSVipin KUMAR 	switch (ep_num) {
1572721551aSVipin KUMAR 	case UDC_EP3:
1582721551aSVipin KUMAR 		fifo_ptr += readl(&inep_regs_p[1].endp_bsorfn);
1592721551aSVipin KUMAR 		/* break intentionally left out */
1602721551aSVipin KUMAR 
1612721551aSVipin KUMAR 	case UDC_EP1:
1622721551aSVipin KUMAR 		fifo_ptr += readl(&inep_regs_p[0].endp_bsorfn);
1632721551aSVipin KUMAR 		/* break intentionally left out */
1642721551aSVipin KUMAR 
1652721551aSVipin KUMAR 	case UDC_EP0:
1662721551aSVipin KUMAR 	default:
1672721551aSVipin KUMAR 		if (in) {
1682721551aSVipin KUMAR 			fifo_ptr +=
1692721551aSVipin KUMAR 			    readl(&outep_regs_p[2].endp_maxpacksize) >> 16;
1702721551aSVipin KUMAR 			/* break intentionally left out */
1712721551aSVipin KUMAR 		} else {
1722721551aSVipin KUMAR 			break;
1732721551aSVipin KUMAR 		}
1742721551aSVipin KUMAR 
1752721551aSVipin KUMAR 	case UDC_EP2:
1762721551aSVipin KUMAR 		fifo_ptr += readl(&outep_regs_p[0].endp_maxpacksize) >> 16;
1772721551aSVipin KUMAR 		/* break intentionally left out */
1782721551aSVipin KUMAR 	}
1792721551aSVipin KUMAR 
1802721551aSVipin KUMAR 	return (void *)fifo_ptr;
1812721551aSVipin KUMAR }
1822721551aSVipin KUMAR 
usbgetpckfromfifo(int epNum,u8 * bufp,u32 len)1832721551aSVipin KUMAR static int usbgetpckfromfifo(int epNum, u8 *bufp, u32 len)
1842721551aSVipin KUMAR {
1852721551aSVipin KUMAR 	u8 *fifo_ptr = (u8 *)get_fifo(epNum, 0);
1862721551aSVipin KUMAR 	u32 i, nw, nb;
1872721551aSVipin KUMAR 	u32 *wrdp;
1882721551aSVipin KUMAR 	u8 *bytp;
189f50dcd60SShiraz Hashim 	u32 tmp[128];
1902721551aSVipin KUMAR 
1912721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_stat) & DEV_STAT_RXFIFO_EMPTY)
1922721551aSVipin KUMAR 		return -1;
1932721551aSVipin KUMAR 
1942721551aSVipin KUMAR 	nw = len / sizeof(u32);
1952721551aSVipin KUMAR 	nb = len % sizeof(u32);
1962721551aSVipin KUMAR 
197f50dcd60SShiraz Hashim 	/* use tmp buf if bufp is not word aligned */
198f50dcd60SShiraz Hashim 	if ((int)bufp & 0x3)
199f50dcd60SShiraz Hashim 		wrdp = (u32 *)&tmp[0];
200f50dcd60SShiraz Hashim 	else
2012721551aSVipin KUMAR 		wrdp = (u32 *)bufp;
202f50dcd60SShiraz Hashim 
2032721551aSVipin KUMAR 	for (i = 0; i < nw; i++) {
2042721551aSVipin KUMAR 		writel(readl(fifo_ptr), wrdp);
2052721551aSVipin KUMAR 		wrdp++;
2062721551aSVipin KUMAR 	}
2072721551aSVipin KUMAR 
2082721551aSVipin KUMAR 	bytp = (u8 *)wrdp;
2092721551aSVipin KUMAR 	for (i = 0; i < nb; i++) {
2102721551aSVipin KUMAR 		writeb(readb(fifo_ptr), bytp);
2112721551aSVipin KUMAR 		fifo_ptr++;
2122721551aSVipin KUMAR 		bytp++;
2132721551aSVipin KUMAR 	}
2142721551aSVipin KUMAR 	readl(&outep_regs_p[epNum].write_done);
2152721551aSVipin KUMAR 
216f50dcd60SShiraz Hashim 	/* copy back tmp buffer to bufp if bufp is not word aligned */
217f50dcd60SShiraz Hashim 	if ((int)bufp & 0x3)
218f50dcd60SShiraz Hashim 		memcpy(bufp, tmp, len);
219f50dcd60SShiraz Hashim 
2202721551aSVipin KUMAR 	return 0;
2212721551aSVipin KUMAR }
2222721551aSVipin KUMAR 
usbputpcktofifo(int epNum,u8 * bufp,u32 len)2232721551aSVipin KUMAR static void usbputpcktofifo(int epNum, u8 *bufp, u32 len)
2242721551aSVipin KUMAR {
2252721551aSVipin KUMAR 	u32 i, nw, nb;
2262721551aSVipin KUMAR 	u32 *wrdp;
2272721551aSVipin KUMAR 	u8 *bytp;
2282721551aSVipin KUMAR 	u8 *fifo_ptr = get_fifo(epNum, 1);
2292721551aSVipin KUMAR 
2302721551aSVipin KUMAR 	nw = len / sizeof(int);
2312721551aSVipin KUMAR 	nb = len % sizeof(int);
2322721551aSVipin KUMAR 	wrdp = (u32 *)bufp;
2332721551aSVipin KUMAR 	for (i = 0; i < nw; i++) {
2342721551aSVipin KUMAR 		writel(*wrdp, fifo_ptr);
2352721551aSVipin KUMAR 		wrdp++;
2362721551aSVipin KUMAR 	}
2372721551aSVipin KUMAR 
2382721551aSVipin KUMAR 	bytp = (u8 *)wrdp;
2392721551aSVipin KUMAR 	for (i = 0; i < nb; i++) {
2402721551aSVipin KUMAR 		writeb(*bytp, fifo_ptr);
2412721551aSVipin KUMAR 		fifo_ptr++;
2422721551aSVipin KUMAR 		bytp++;
2432721551aSVipin KUMAR 	}
2442721551aSVipin KUMAR }
2452721551aSVipin KUMAR 
2462721551aSVipin KUMAR /*
2472721551aSVipin KUMAR  * dw_write_noniso_tx_fifo - Write the next packet to TxFIFO.
2482721551aSVipin KUMAR  * @endpoint:		Endpoint pointer.
2492721551aSVipin KUMAR  *
2502721551aSVipin KUMAR  * If the endpoint has an active tx_urb, then the next packet of data from the
2512721551aSVipin KUMAR  * URB is written to the tx FIFO.  The total amount of data in the urb is given
2522721551aSVipin KUMAR  * by urb->actual_length.  The maximum amount of data that can be sent in any
2532721551aSVipin KUMAR  * one packet is given by endpoint->tx_packetSize.  The number of data bytes
2542721551aSVipin KUMAR  * from this URB that have already been transmitted is given by endpoint->sent.
2552721551aSVipin KUMAR  * endpoint->last is updated by this routine with the number of data bytes
2562721551aSVipin KUMAR  * transmitted in this packet.
2572721551aSVipin KUMAR  *
2582721551aSVipin KUMAR  */
dw_write_noniso_tx_fifo(struct usb_endpoint_instance * endpoint)2592721551aSVipin KUMAR static void dw_write_noniso_tx_fifo(struct usb_endpoint_instance
2602721551aSVipin KUMAR 				       *endpoint)
2612721551aSVipin KUMAR {
2622721551aSVipin KUMAR 	struct urb *urb = endpoint->tx_urb;
2632721551aSVipin KUMAR 	int align;
2642721551aSVipin KUMAR 
2652721551aSVipin KUMAR 	if (urb) {
2662721551aSVipin KUMAR 		u32 last;
2672721551aSVipin KUMAR 
2682721551aSVipin KUMAR 		UDCDBGA("urb->buffer %p, buffer_length %d, actual_length %d",
2692721551aSVipin KUMAR 			urb->buffer, urb->buffer_length, urb->actual_length);
2702721551aSVipin KUMAR 
271b4141195SMasahiro Yamada 		last = min_t(u32, urb->actual_length - endpoint->sent,
2722721551aSVipin KUMAR 			     endpoint->tx_packetSize);
2732721551aSVipin KUMAR 
2742721551aSVipin KUMAR 		if (last) {
2752721551aSVipin KUMAR 			u8 *cp = urb->buffer + endpoint->sent;
2762721551aSVipin KUMAR 
2772721551aSVipin KUMAR 			/*
2782721551aSVipin KUMAR 			 * This ensures that USBD packet fifo is accessed
2792721551aSVipin KUMAR 			 * - through word aligned pointer or
2802721551aSVipin KUMAR 			 * - through non word aligned pointer but only
2812721551aSVipin KUMAR 			 *   with a max length to make the next packet
2822721551aSVipin KUMAR 			 *   word aligned
2832721551aSVipin KUMAR 			 */
2842721551aSVipin KUMAR 
2852721551aSVipin KUMAR 			align = ((ulong)cp % sizeof(int));
2862721551aSVipin KUMAR 			if (align)
287c79cba37SMasahiro Yamada 				last = min(last, sizeof(int) - align);
2882721551aSVipin KUMAR 
2892721551aSVipin KUMAR 			UDCDBGA("endpoint->sent %d, tx_packetSize %d, last %d",
2902721551aSVipin KUMAR 				endpoint->sent, endpoint->tx_packetSize, last);
2912721551aSVipin KUMAR 
2922721551aSVipin KUMAR 			usbputpcktofifo(endpoint->endpoint_address &
2932721551aSVipin KUMAR 					USB_ENDPOINT_NUMBER_MASK, cp, last);
2942721551aSVipin KUMAR 		}
2952721551aSVipin KUMAR 		endpoint->last = last;
2962721551aSVipin KUMAR 	}
2972721551aSVipin KUMAR }
2982721551aSVipin KUMAR 
2992721551aSVipin KUMAR /*
3002721551aSVipin KUMAR  * Handle SETUP USB interrupt.
3012721551aSVipin KUMAR  * This function implements TRM Figure 14-14.
3022721551aSVipin KUMAR  */
dw_udc_setup(struct usb_endpoint_instance * endpoint)3032721551aSVipin KUMAR static void dw_udc_setup(struct usb_endpoint_instance *endpoint)
3042721551aSVipin KUMAR {
3052721551aSVipin KUMAR 	u8 *datap = (u8 *)&ep0_urb->device_request;
3062721551aSVipin KUMAR 	int ep_addr = endpoint->endpoint_address;
3072721551aSVipin KUMAR 
3082721551aSVipin KUMAR 	UDCDBG("-> Entering device setup");
3092721551aSVipin KUMAR 	usbgetpckfromfifo(ep_addr, datap, 8);
3102721551aSVipin KUMAR 
3112721551aSVipin KUMAR 	/* Try to process setup packet */
3122721551aSVipin KUMAR 	if (ep0_recv_setup(ep0_urb)) {
3132721551aSVipin KUMAR 		/* Not a setup packet, stall next EP0 transaction */
3142721551aSVipin KUMAR 		udc_stall_ep(0);
3152721551aSVipin KUMAR 		UDCDBG("can't parse setup packet, still waiting for setup");
3162721551aSVipin KUMAR 		return;
3172721551aSVipin KUMAR 	}
3182721551aSVipin KUMAR 
3192721551aSVipin KUMAR 	/* Check direction */
3202721551aSVipin KUMAR 	if ((ep0_urb->device_request.bmRequestType & USB_REQ_DIRECTION_MASK)
3212721551aSVipin KUMAR 	    == USB_REQ_HOST2DEVICE) {
3222721551aSVipin KUMAR 		UDCDBG("control write on EP0");
3232721551aSVipin KUMAR 		if (le16_to_cpu(ep0_urb->device_request.wLength)) {
3242721551aSVipin KUMAR 			/* Stall this request */
3252721551aSVipin KUMAR 			UDCDBG("Stalling unsupported EP0 control write data "
3262721551aSVipin KUMAR 			       "stage.");
3272721551aSVipin KUMAR 			udc_stall_ep(0);
3282721551aSVipin KUMAR 		}
3292721551aSVipin KUMAR 	} else {
3302721551aSVipin KUMAR 
3312721551aSVipin KUMAR 		UDCDBG("control read on EP0");
3322721551aSVipin KUMAR 		/*
3332721551aSVipin KUMAR 		 * The ep0_recv_setup function has already placed our response
3342721551aSVipin KUMAR 		 * packet data in ep0_urb->buffer and the packet length in
3352721551aSVipin KUMAR 		 * ep0_urb->actual_length.
3362721551aSVipin KUMAR 		 */
3372721551aSVipin KUMAR 		endpoint->tx_urb = ep0_urb;
3382721551aSVipin KUMAR 		endpoint->sent = 0;
3392721551aSVipin KUMAR 		/*
3402721551aSVipin KUMAR 		 * Write packet data to the FIFO.  dw_write_noniso_tx_fifo
3412721551aSVipin KUMAR 		 * will update endpoint->last with the number of bytes written
3422721551aSVipin KUMAR 		 * to the FIFO.
3432721551aSVipin KUMAR 		 */
3442721551aSVipin KUMAR 		dw_write_noniso_tx_fifo(endpoint);
3452721551aSVipin KUMAR 
3462721551aSVipin KUMAR 		writel(0x0, &inep_regs_p[ep_addr].write_done);
3472721551aSVipin KUMAR 	}
3482721551aSVipin KUMAR 
3492721551aSVipin KUMAR 	udc_unset_nak(endpoint->endpoint_address);
3502721551aSVipin KUMAR 
3512721551aSVipin KUMAR 	UDCDBG("<- Leaving device setup");
3522721551aSVipin KUMAR }
3532721551aSVipin KUMAR 
3542721551aSVipin KUMAR /*
3552721551aSVipin KUMAR  * Handle endpoint 0 RX interrupt
3562721551aSVipin KUMAR  */
dw_udc_ep0_rx(struct usb_endpoint_instance * endpoint)3572721551aSVipin KUMAR static void dw_udc_ep0_rx(struct usb_endpoint_instance *endpoint)
3582721551aSVipin KUMAR {
3592721551aSVipin KUMAR 	u8 dummy[64];
3602721551aSVipin KUMAR 
3612721551aSVipin KUMAR 	UDCDBG("RX on EP0");
3622721551aSVipin KUMAR 
3632721551aSVipin KUMAR 	/* Check direction */
3642721551aSVipin KUMAR 	if ((ep0_urb->device_request.bmRequestType
3652721551aSVipin KUMAR 	     & USB_REQ_DIRECTION_MASK) == USB_REQ_HOST2DEVICE) {
3662721551aSVipin KUMAR 		/*
3672721551aSVipin KUMAR 		 * This rx interrupt must be for a control write data
3682721551aSVipin KUMAR 		 * stage packet.
3692721551aSVipin KUMAR 		 *
3702721551aSVipin KUMAR 		 * We don't support control write data stages.
3712721551aSVipin KUMAR 		 * We should never end up here.
3722721551aSVipin KUMAR 		 */
3732721551aSVipin KUMAR 
3742721551aSVipin KUMAR 		UDCDBG("Stalling unexpected EP0 control write "
3752721551aSVipin KUMAR 		       "data stage packet");
3762721551aSVipin KUMAR 		udc_stall_ep(0);
3772721551aSVipin KUMAR 	} else {
3782721551aSVipin KUMAR 		/*
3792721551aSVipin KUMAR 		 * This rx interrupt must be for a control read status
3802721551aSVipin KUMAR 		 * stage packet.
3812721551aSVipin KUMAR 		 */
3822721551aSVipin KUMAR 		UDCDBG("ACK on EP0 control read status stage packet");
3832721551aSVipin KUMAR 		u32 len = (readl(&outep_regs_p[0].endp_status) >> 11) & 0xfff;
3842721551aSVipin KUMAR 		usbgetpckfromfifo(0, dummy, len);
3852721551aSVipin KUMAR 	}
3862721551aSVipin KUMAR }
3872721551aSVipin KUMAR 
3882721551aSVipin KUMAR /*
3892721551aSVipin KUMAR  * Handle endpoint 0 TX interrupt
3902721551aSVipin KUMAR  */
dw_udc_ep0_tx(struct usb_endpoint_instance * endpoint)3912721551aSVipin KUMAR static void dw_udc_ep0_tx(struct usb_endpoint_instance *endpoint)
3922721551aSVipin KUMAR {
3932721551aSVipin KUMAR 	struct usb_device_request *request = &ep0_urb->device_request;
3942721551aSVipin KUMAR 	int ep_addr;
3952721551aSVipin KUMAR 
3962721551aSVipin KUMAR 	UDCDBG("TX on EP0");
3972721551aSVipin KUMAR 
3982721551aSVipin KUMAR 	/* Check direction */
3992721551aSVipin KUMAR 	if ((request->bmRequestType & USB_REQ_DIRECTION_MASK) ==
4002721551aSVipin KUMAR 	    USB_REQ_HOST2DEVICE) {
4012721551aSVipin KUMAR 		/*
4022721551aSVipin KUMAR 		 * This tx interrupt must be for a control write status
4032721551aSVipin KUMAR 		 * stage packet.
4042721551aSVipin KUMAR 		 */
4052721551aSVipin KUMAR 		UDCDBG("ACK on EP0 control write status stage packet");
4062721551aSVipin KUMAR 	} else {
4072721551aSVipin KUMAR 		/*
4082721551aSVipin KUMAR 		 * This tx interrupt must be for a control read data
4092721551aSVipin KUMAR 		 * stage packet.
4102721551aSVipin KUMAR 		 */
4112721551aSVipin KUMAR 		int wLength = le16_to_cpu(request->wLength);
4122721551aSVipin KUMAR 
4132721551aSVipin KUMAR 		/*
4142721551aSVipin KUMAR 		 * Update our count of bytes sent so far in this
4152721551aSVipin KUMAR 		 * transfer.
4162721551aSVipin KUMAR 		 */
4172721551aSVipin KUMAR 		endpoint->sent += endpoint->last;
4182721551aSVipin KUMAR 
4192721551aSVipin KUMAR 		/*
4202721551aSVipin KUMAR 		 * We are finished with this transfer if we have sent
4212721551aSVipin KUMAR 		 * all of the bytes in our tx urb (urb->actual_length)
4222721551aSVipin KUMAR 		 * unless we need a zero-length terminating packet.  We
4232721551aSVipin KUMAR 		 * need a zero-length terminating packet if we returned
4242721551aSVipin KUMAR 		 * fewer bytes than were requested (wLength) by the host,
4252721551aSVipin KUMAR 		 * and the number of bytes we returned is an exact
4262721551aSVipin KUMAR 		 * multiple of the packet size endpoint->tx_packetSize.
4272721551aSVipin KUMAR 		 */
4282721551aSVipin KUMAR 		if ((endpoint->sent == ep0_urb->actual_length) &&
4292721551aSVipin KUMAR 		    ((ep0_urb->actual_length == wLength) ||
4302721551aSVipin KUMAR 		     (endpoint->last != endpoint->tx_packetSize))) {
4312721551aSVipin KUMAR 			/* Done with control read data stage. */
4322721551aSVipin KUMAR 			UDCDBG("control read data stage complete");
4332721551aSVipin KUMAR 		} else {
4342721551aSVipin KUMAR 			/*
4352721551aSVipin KUMAR 			 * We still have another packet of data to send
4362721551aSVipin KUMAR 			 * in this control read data stage or else we
4372721551aSVipin KUMAR 			 * need a zero-length terminating packet.
4382721551aSVipin KUMAR 			 */
4392721551aSVipin KUMAR 			UDCDBG("ACK control read data stage packet");
4402721551aSVipin KUMAR 			dw_write_noniso_tx_fifo(endpoint);
4412721551aSVipin KUMAR 
4422721551aSVipin KUMAR 			ep_addr = endpoint->endpoint_address;
4432721551aSVipin KUMAR 			writel(0x0, &inep_regs_p[ep_addr].write_done);
4442721551aSVipin KUMAR 		}
4452721551aSVipin KUMAR 	}
4462721551aSVipin KUMAR }
4472721551aSVipin KUMAR 
dw_find_ep(int ep)4482721551aSVipin KUMAR static struct usb_endpoint_instance *dw_find_ep(int ep)
4492721551aSVipin KUMAR {
4502721551aSVipin KUMAR 	int i;
4512721551aSVipin KUMAR 
4522721551aSVipin KUMAR 	for (i = 0; i < udc_device->bus->max_endpoints; i++) {
4532721551aSVipin KUMAR 		if ((udc_device->bus->endpoint_array[i].endpoint_address &
4542721551aSVipin KUMAR 		     USB_ENDPOINT_NUMBER_MASK) == ep)
4552721551aSVipin KUMAR 			return &udc_device->bus->endpoint_array[i];
4562721551aSVipin KUMAR 	}
4572721551aSVipin KUMAR 	return NULL;
4582721551aSVipin KUMAR }
4592721551aSVipin KUMAR 
4602721551aSVipin KUMAR /*
4612721551aSVipin KUMAR  * Handle RX transaction on non-ISO endpoint.
4622721551aSVipin KUMAR  * The ep argument is a physical endpoint number for a non-ISO IN endpoint
4632721551aSVipin KUMAR  * in the range 1 to 15.
4642721551aSVipin KUMAR  */
dw_udc_epn_rx(int ep)4652721551aSVipin KUMAR static void dw_udc_epn_rx(int ep)
4662721551aSVipin KUMAR {
4672721551aSVipin KUMAR 	int nbytes = 0;
4682721551aSVipin KUMAR 	struct urb *urb;
4692721551aSVipin KUMAR 	struct usb_endpoint_instance *endpoint = dw_find_ep(ep);
4702721551aSVipin KUMAR 
4712721551aSVipin KUMAR 	if (endpoint) {
4722721551aSVipin KUMAR 		urb = endpoint->rcv_urb;
4732721551aSVipin KUMAR 
4742721551aSVipin KUMAR 		if (urb) {
4752721551aSVipin KUMAR 			u8 *cp = urb->buffer + urb->actual_length;
4762721551aSVipin KUMAR 
4772721551aSVipin KUMAR 			nbytes = (readl(&outep_regs_p[ep].endp_status) >> 11) &
4782721551aSVipin KUMAR 			    0xfff;
4792721551aSVipin KUMAR 			usbgetpckfromfifo(ep, cp, nbytes);
4802721551aSVipin KUMAR 			usbd_rcv_complete(endpoint, nbytes, 0);
4812721551aSVipin KUMAR 		}
4822721551aSVipin KUMAR 	}
4832721551aSVipin KUMAR }
4842721551aSVipin KUMAR 
4852721551aSVipin KUMAR /*
4862721551aSVipin KUMAR  * Handle TX transaction on non-ISO endpoint.
4872721551aSVipin KUMAR  * The ep argument is a physical endpoint number for a non-ISO IN endpoint
4882721551aSVipin KUMAR  * in the range 16 to 30.
4892721551aSVipin KUMAR  */
dw_udc_epn_tx(int ep)4902721551aSVipin KUMAR static void dw_udc_epn_tx(int ep)
4912721551aSVipin KUMAR {
4922721551aSVipin KUMAR 	struct usb_endpoint_instance *endpoint = dw_find_ep(ep);
4932721551aSVipin KUMAR 
494dc3e7739SVipin KUMAR 	if (!endpoint)
495dc3e7739SVipin KUMAR 		return;
496dc3e7739SVipin KUMAR 
4972721551aSVipin KUMAR 	/*
4982721551aSVipin KUMAR 	 * We need to transmit a terminating zero-length packet now if
4992721551aSVipin KUMAR 	 * we have sent all of the data in this URB and the transfer
5002721551aSVipin KUMAR 	 * size was an exact multiple of the packet size.
5012721551aSVipin KUMAR 	 */
502dc3e7739SVipin KUMAR 	if (endpoint->tx_urb &&
503dc3e7739SVipin KUMAR 	    (endpoint->last == endpoint->tx_packetSize) &&
504dc3e7739SVipin KUMAR 	    (endpoint->tx_urb->actual_length - endpoint->sent -
505dc3e7739SVipin KUMAR 	     endpoint->last == 0)) {
5062721551aSVipin KUMAR 		/* handle zero length packet here */
5072721551aSVipin KUMAR 		writel(0x0, &inep_regs_p[ep].write_done);
508dc3e7739SVipin KUMAR 
5092721551aSVipin KUMAR 	}
510dc3e7739SVipin KUMAR 
511dc3e7739SVipin KUMAR 	if (endpoint->tx_urb && endpoint->tx_urb->actual_length) {
5122721551aSVipin KUMAR 		/* retire the data that was just sent */
5132721551aSVipin KUMAR 		usbd_tx_complete(endpoint);
5142721551aSVipin KUMAR 		/*
5152721551aSVipin KUMAR 		 * Check to see if we have more data ready to transmit
5162721551aSVipin KUMAR 		 * now.
5172721551aSVipin KUMAR 		 */
5182721551aSVipin KUMAR 		if (endpoint->tx_urb && endpoint->tx_urb->actual_length) {
5192721551aSVipin KUMAR 			/* write data to FIFO */
5202721551aSVipin KUMAR 			dw_write_noniso_tx_fifo(endpoint);
5212721551aSVipin KUMAR 			writel(0x0, &inep_regs_p[ep].write_done);
5222721551aSVipin KUMAR 
5232721551aSVipin KUMAR 		} else if (endpoint->tx_urb
5242721551aSVipin KUMAR 			   && (endpoint->tx_urb->actual_length == 0)) {
5252721551aSVipin KUMAR 			/* udc_set_nak(ep); */
5262721551aSVipin KUMAR 		}
5272721551aSVipin KUMAR 	}
5282721551aSVipin KUMAR }
5292721551aSVipin KUMAR 
5302721551aSVipin KUMAR /*
5312721551aSVipin KUMAR  * Start of public functions.
5322721551aSVipin KUMAR  */
5332721551aSVipin KUMAR 
5342721551aSVipin KUMAR /* Called to start packet transmission. */
udc_endpoint_write(struct usb_endpoint_instance * endpoint)5352721551aSVipin KUMAR int udc_endpoint_write(struct usb_endpoint_instance *endpoint)
5362721551aSVipin KUMAR {
5372721551aSVipin KUMAR 	udc_unset_nak(endpoint->endpoint_address & USB_ENDPOINT_NUMBER_MASK);
5382721551aSVipin KUMAR 	return 0;
5392721551aSVipin KUMAR }
5402721551aSVipin KUMAR 
5412721551aSVipin KUMAR /* Start to initialize h/w stuff */
udc_init(void)5422721551aSVipin KUMAR int udc_init(void)
5432721551aSVipin KUMAR {
5442721551aSVipin KUMAR 	int i;
5452721551aSVipin KUMAR 	u32 plug_st;
5462721551aSVipin KUMAR 
5472721551aSVipin KUMAR 	udc_device = NULL;
5482721551aSVipin KUMAR 
5492721551aSVipin KUMAR 	UDCDBG("starting");
5502721551aSVipin KUMAR 
5512721551aSVipin KUMAR 	readl(&plug_regs_p->plug_pending);
5522721551aSVipin KUMAR 
5532721551aSVipin KUMAR 	for (i = 0; i < UDC_INIT_MDELAY; i++)
5542721551aSVipin KUMAR 		udelay(1000);
5552721551aSVipin KUMAR 
5562721551aSVipin KUMAR 	plug_st = readl(&plug_regs_p->plug_state);
5572721551aSVipin KUMAR 	writel(plug_st | PLUG_STATUS_EN, &plug_regs_p->plug_state);
5582721551aSVipin KUMAR 
5592721551aSVipin KUMAR 	writel(~0x0, &udc_regs_p->endp_int);
5602721551aSVipin KUMAR 	writel(~0x0, &udc_regs_p->dev_int_mask);
5612721551aSVipin KUMAR 	writel(~0x0, &udc_regs_p->endp_int_mask);
5622721551aSVipin KUMAR 
56323b0e694SVipin KUMAR #ifndef CONFIG_USBD_HS
5642721551aSVipin KUMAR 	writel(DEV_CONF_FS_SPEED | DEV_CONF_REMWAKEUP | DEV_CONF_SELFPOW |
5652721551aSVipin KUMAR 	       DEV_CONF_PHYINT_16, &udc_regs_p->dev_conf);
56623b0e694SVipin KUMAR #else
56723b0e694SVipin KUMAR 	writel(DEV_CONF_HS_SPEED | DEV_CONF_REMWAKEUP | DEV_CONF_SELFPOW |
56823b0e694SVipin KUMAR 			DEV_CONF_PHYINT_16, &udc_regs_p->dev_conf);
56923b0e694SVipin KUMAR #endif
5702721551aSVipin KUMAR 
571dc3e7739SVipin KUMAR 	writel(DEV_CNTL_SOFTDISCONNECT, &udc_regs_p->dev_cntl);
5722721551aSVipin KUMAR 
5732721551aSVipin KUMAR 	/* Clear all interrupts pending */
5742721551aSVipin KUMAR 	writel(DEV_INT_MSK, &udc_regs_p->dev_int);
5752721551aSVipin KUMAR 
5762721551aSVipin KUMAR 	return 0;
5772721551aSVipin KUMAR }
5782721551aSVipin KUMAR 
is_usbd_high_speed(void)57923b0e694SVipin KUMAR int is_usbd_high_speed(void)
58023b0e694SVipin KUMAR {
58123b0e694SVipin KUMAR 	return (readl(&udc_regs_p->dev_stat) & DEV_STAT_ENUM) ? 0 : 1;
58223b0e694SVipin KUMAR }
58323b0e694SVipin KUMAR 
5842721551aSVipin KUMAR /*
5852721551aSVipin KUMAR  * udc_setup_ep - setup endpoint
5862721551aSVipin KUMAR  * Associate a physical endpoint with endpoint_instance
5872721551aSVipin KUMAR  */
udc_setup_ep(struct usb_device_instance * device,u32 ep,struct usb_endpoint_instance * endpoint)5882721551aSVipin KUMAR void udc_setup_ep(struct usb_device_instance *device,
5892721551aSVipin KUMAR 		  u32 ep, struct usb_endpoint_instance *endpoint)
5902721551aSVipin KUMAR {
5912721551aSVipin KUMAR 	UDCDBGA("setting up endpoint addr %x", endpoint->endpoint_address);
5922721551aSVipin KUMAR 	int ep_addr;
5932721551aSVipin KUMAR 	int ep_num, ep_type;
5942721551aSVipin KUMAR 	int packet_size;
5952721551aSVipin KUMAR 	int buffer_size;
5962721551aSVipin KUMAR 	int attributes;
5972721551aSVipin KUMAR 	char *tt;
5982721551aSVipin KUMAR 	u32 endp_intmask;
5992721551aSVipin KUMAR 
600dc3e7739SVipin KUMAR 	if ((ep != 0) && (udc_device->device_state < STATE_ADDRESSED))
601dc3e7739SVipin KUMAR 		return;
602dc3e7739SVipin KUMAR 
60300caae6dSSimon Glass 	tt = env_get("usbtty");
6042721551aSVipin KUMAR 	if (!tt)
6052721551aSVipin KUMAR 		tt = "generic";
6062721551aSVipin KUMAR 
6072721551aSVipin KUMAR 	ep_addr = endpoint->endpoint_address;
6082721551aSVipin KUMAR 	ep_num = ep_addr & USB_ENDPOINT_NUMBER_MASK;
6092721551aSVipin KUMAR 
6102721551aSVipin KUMAR 	if ((ep_addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN) {
6112721551aSVipin KUMAR 		/* IN endpoint */
6122721551aSVipin KUMAR 		packet_size = endpoint->tx_packetSize;
6132721551aSVipin KUMAR 		buffer_size = packet_size * 2;
6142721551aSVipin KUMAR 		attributes = endpoint->tx_attributes;
6152721551aSVipin KUMAR 	} else {
6162721551aSVipin KUMAR 		/* OUT endpoint */
6172721551aSVipin KUMAR 		packet_size = endpoint->rcv_packetSize;
6182721551aSVipin KUMAR 		buffer_size = packet_size * 2;
6192721551aSVipin KUMAR 		attributes = endpoint->rcv_attributes;
6202721551aSVipin KUMAR 	}
6212721551aSVipin KUMAR 
6222721551aSVipin KUMAR 	switch (attributes & USB_ENDPOINT_XFERTYPE_MASK) {
6232721551aSVipin KUMAR 	case USB_ENDPOINT_XFER_CONTROL:
6242721551aSVipin KUMAR 		ep_type = ENDP_EPTYPE_CNTL;
6252721551aSVipin KUMAR 		break;
6262721551aSVipin KUMAR 	case USB_ENDPOINT_XFER_BULK:
6272721551aSVipin KUMAR 	default:
6282721551aSVipin KUMAR 		ep_type = ENDP_EPTYPE_BULK;
6292721551aSVipin KUMAR 		break;
6302721551aSVipin KUMAR 	case USB_ENDPOINT_XFER_INT:
6312721551aSVipin KUMAR 		ep_type = ENDP_EPTYPE_INT;
6322721551aSVipin KUMAR 		break;
6332721551aSVipin KUMAR 	case USB_ENDPOINT_XFER_ISOC:
6342721551aSVipin KUMAR 		ep_type = ENDP_EPTYPE_ISO;
6352721551aSVipin KUMAR 		break;
6362721551aSVipin KUMAR 	}
6372721551aSVipin KUMAR 
6382721551aSVipin KUMAR 	struct udc_endp_regs *out_p = &outep_regs_p[ep_num];
6392721551aSVipin KUMAR 	struct udc_endp_regs *in_p = &inep_regs_p[ep_num];
6402721551aSVipin KUMAR 
6412721551aSVipin KUMAR 	if (!ep_addr) {
6422721551aSVipin KUMAR 		/* Setup endpoint 0 */
6432721551aSVipin KUMAR 		buffer_size = packet_size;
6442721551aSVipin KUMAR 
6452721551aSVipin KUMAR 		writel(readl(&in_p->endp_cntl) | ENDP_CNTL_CNAK,
6462721551aSVipin KUMAR 		       &in_p->endp_cntl);
6472721551aSVipin KUMAR 
6482721551aSVipin KUMAR 		writel(readl(&out_p->endp_cntl) | ENDP_CNTL_CNAK,
6492721551aSVipin KUMAR 		       &out_p->endp_cntl);
6502721551aSVipin KUMAR 
6512721551aSVipin KUMAR 		writel(ENDP_CNTL_CONTROL | ENDP_CNTL_FLUSH, &in_p->endp_cntl);
6522721551aSVipin KUMAR 
6532721551aSVipin KUMAR 		writel(buffer_size / sizeof(int), &in_p->endp_bsorfn);
6542721551aSVipin KUMAR 
6552721551aSVipin KUMAR 		writel(packet_size, &in_p->endp_maxpacksize);
6562721551aSVipin KUMAR 
6572721551aSVipin KUMAR 		writel(ENDP_CNTL_CONTROL | ENDP_CNTL_RRDY, &out_p->endp_cntl);
6582721551aSVipin KUMAR 
6592721551aSVipin KUMAR 		writel(packet_size | ((buffer_size / sizeof(int)) << 16),
6602721551aSVipin KUMAR 		       &out_p->endp_maxpacksize);
6612721551aSVipin KUMAR 
6622721551aSVipin KUMAR 	} else if ((ep_addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN) {
6632721551aSVipin KUMAR 		/* Setup the IN endpoint */
6642721551aSVipin KUMAR 		writel(0x0, &in_p->endp_status);
6652721551aSVipin KUMAR 		writel((ep_type << 4) | ENDP_CNTL_RRDY, &in_p->endp_cntl);
6662721551aSVipin KUMAR 		writel(buffer_size / sizeof(int), &in_p->endp_bsorfn);
6672721551aSVipin KUMAR 		writel(packet_size, &in_p->endp_maxpacksize);
6682721551aSVipin KUMAR 
6692721551aSVipin KUMAR 		if (!strcmp(tt, "cdc_acm")) {
6702721551aSVipin KUMAR 			if (ep_type == ENDP_EPTYPE_INT) {
6712721551aSVipin KUMAR 				/* Conf no. 1 Interface no. 0 */
6722721551aSVipin KUMAR 				writel((packet_size << 19) |
6732721551aSVipin KUMAR 				       ENDP_EPDIR_IN | (1 << 7) |
6742721551aSVipin KUMAR 				       (0 << 11) | (ep_type << 5) | ep_num,
6752721551aSVipin KUMAR 				       &udc_regs_p->udc_endp_reg[ep_num]);
6762721551aSVipin KUMAR 			} else {
6772721551aSVipin KUMAR 				/* Conf no. 1 Interface no. 1 */
6782721551aSVipin KUMAR 				writel((packet_size << 19) |
6792721551aSVipin KUMAR 				       ENDP_EPDIR_IN | (1 << 7) |
6802721551aSVipin KUMAR 				       (1 << 11) | (ep_type << 5) | ep_num,
6812721551aSVipin KUMAR 				       &udc_regs_p->udc_endp_reg[ep_num]);
6822721551aSVipin KUMAR 			}
6832721551aSVipin KUMAR 		} else {
6842721551aSVipin KUMAR 			/* Conf no. 1 Interface no. 0 */
6852721551aSVipin KUMAR 			writel((packet_size << 19) |
6862721551aSVipin KUMAR 			       ENDP_EPDIR_IN | (1 << 7) |
6872721551aSVipin KUMAR 			       (0 << 11) | (ep_type << 5) | ep_num,
6882721551aSVipin KUMAR 			       &udc_regs_p->udc_endp_reg[ep_num]);
6892721551aSVipin KUMAR 		}
6902721551aSVipin KUMAR 
6912721551aSVipin KUMAR 	} else {
6922721551aSVipin KUMAR 		/* Setup the OUT endpoint */
6932721551aSVipin KUMAR 		writel(0x0, &out_p->endp_status);
6942721551aSVipin KUMAR 		writel((ep_type << 4) | ENDP_CNTL_RRDY, &out_p->endp_cntl);
6952721551aSVipin KUMAR 		writel(packet_size | ((buffer_size / sizeof(int)) << 16),
6962721551aSVipin KUMAR 		       &out_p->endp_maxpacksize);
6972721551aSVipin KUMAR 
6982721551aSVipin KUMAR 		if (!strcmp(tt, "cdc_acm")) {
6992721551aSVipin KUMAR 			writel((packet_size << 19) |
7002721551aSVipin KUMAR 			       ENDP_EPDIR_OUT | (1 << 7) |
7012721551aSVipin KUMAR 			       (1 << 11) | (ep_type << 5) | ep_num,
7022721551aSVipin KUMAR 			       &udc_regs_p->udc_endp_reg[ep_num]);
7032721551aSVipin KUMAR 		} else {
7042721551aSVipin KUMAR 			writel((packet_size << 19) |
7052721551aSVipin KUMAR 			       ENDP_EPDIR_OUT | (1 << 7) |
7062721551aSVipin KUMAR 			       (0 << 11) | (ep_type << 5) | ep_num,
7072721551aSVipin KUMAR 			       &udc_regs_p->udc_endp_reg[ep_num]);
7082721551aSVipin KUMAR 		}
7092721551aSVipin KUMAR 
7102721551aSVipin KUMAR 	}
7112721551aSVipin KUMAR 
7122721551aSVipin KUMAR 	endp_intmask = readl(&udc_regs_p->endp_int_mask);
7132721551aSVipin KUMAR 	endp_intmask &= ~((1 << ep_num) | 0x10000 << ep_num);
7142721551aSVipin KUMAR 	writel(endp_intmask, &udc_regs_p->endp_int_mask);
7152721551aSVipin KUMAR }
7162721551aSVipin KUMAR 
7172721551aSVipin KUMAR /* Turn on the USB connection by enabling the pullup resistor */
udc_connect(void)7182721551aSVipin KUMAR void udc_connect(void)
7192721551aSVipin KUMAR {
720dc3e7739SVipin KUMAR 	u32 plug_st, dev_cntl;
721dc3e7739SVipin KUMAR 
722dc3e7739SVipin KUMAR 	dev_cntl = readl(&udc_regs_p->dev_cntl);
723dc3e7739SVipin KUMAR 	dev_cntl |= DEV_CNTL_SOFTDISCONNECT;
724dc3e7739SVipin KUMAR 	writel(dev_cntl, &udc_regs_p->dev_cntl);
725dc3e7739SVipin KUMAR 
726dc3e7739SVipin KUMAR 	udelay(1000);
727dc3e7739SVipin KUMAR 
728dc3e7739SVipin KUMAR 	dev_cntl = readl(&udc_regs_p->dev_cntl);
729dc3e7739SVipin KUMAR 	dev_cntl &= ~DEV_CNTL_SOFTDISCONNECT;
730dc3e7739SVipin KUMAR 	writel(dev_cntl, &udc_regs_p->dev_cntl);
7312721551aSVipin KUMAR 
7322721551aSVipin KUMAR 	plug_st = readl(&plug_regs_p->plug_state);
7332721551aSVipin KUMAR 	plug_st &= ~(PLUG_STATUS_PHY_RESET | PLUG_STATUS_PHY_MODE);
7342721551aSVipin KUMAR 	writel(plug_st, &plug_regs_p->plug_state);
7352721551aSVipin KUMAR }
7362721551aSVipin KUMAR 
7372721551aSVipin KUMAR /* Turn off the USB connection by disabling the pullup resistor */
udc_disconnect(void)7382721551aSVipin KUMAR void udc_disconnect(void)
7392721551aSVipin KUMAR {
7402721551aSVipin KUMAR 	u32 plug_st;
7412721551aSVipin KUMAR 
742dc3e7739SVipin KUMAR 	writel(DEV_CNTL_SOFTDISCONNECT, &udc_regs_p->dev_cntl);
743dc3e7739SVipin KUMAR 
7442721551aSVipin KUMAR 	plug_st = readl(&plug_regs_p->plug_state);
7452721551aSVipin KUMAR 	plug_st |= (PLUG_STATUS_PHY_RESET | PLUG_STATUS_PHY_MODE);
7462721551aSVipin KUMAR 	writel(plug_st, &plug_regs_p->plug_state);
7472721551aSVipin KUMAR }
7482721551aSVipin KUMAR 
7492721551aSVipin KUMAR /* Switch on the UDC */
udc_enable(struct usb_device_instance * device)7502721551aSVipin KUMAR void udc_enable(struct usb_device_instance *device)
7512721551aSVipin KUMAR {
7522721551aSVipin KUMAR 	UDCDBGA("enable device %p, status %d", device, device->status);
7532721551aSVipin KUMAR 
7542721551aSVipin KUMAR 	/* Save the device structure pointer */
7552721551aSVipin KUMAR 	udc_device = device;
7562721551aSVipin KUMAR 
7572721551aSVipin KUMAR 	/* Setup ep0 urb */
7582721551aSVipin KUMAR 	if (!ep0_urb) {
7592721551aSVipin KUMAR 		ep0_urb =
7602721551aSVipin KUMAR 		    usbd_alloc_urb(udc_device, udc_device->bus->endpoint_array);
7612721551aSVipin KUMAR 	} else {
7622721551aSVipin KUMAR 		serial_printf("udc_enable: ep0_urb already allocated %p\n",
7632721551aSVipin KUMAR 			      ep0_urb);
7642721551aSVipin KUMAR 	}
7652721551aSVipin KUMAR 
7662721551aSVipin KUMAR 	writel(DEV_INT_SOF, &udc_regs_p->dev_int_mask);
7672721551aSVipin KUMAR }
7682721551aSVipin KUMAR 
7692721551aSVipin KUMAR /**
7702721551aSVipin KUMAR  * udc_startup - allow udc code to do any additional startup
7712721551aSVipin KUMAR  */
udc_startup_events(struct usb_device_instance * device)7722721551aSVipin KUMAR void udc_startup_events(struct usb_device_instance *device)
7732721551aSVipin KUMAR {
7742721551aSVipin KUMAR 	/* The DEVICE_INIT event puts the USB device in the state STATE_INIT. */
7752721551aSVipin KUMAR 	usbd_device_event_irq(device, DEVICE_INIT, 0);
7762721551aSVipin KUMAR 
7772721551aSVipin KUMAR 	/*
7782721551aSVipin KUMAR 	 * The DEVICE_CREATE event puts the USB device in the state
7792721551aSVipin KUMAR 	 * STATE_ATTACHED.
7802721551aSVipin KUMAR 	 */
7812721551aSVipin KUMAR 	usbd_device_event_irq(device, DEVICE_CREATE, 0);
7822721551aSVipin KUMAR 
7832721551aSVipin KUMAR 	/*
7842721551aSVipin KUMAR 	 * Some USB controller driver implementations signal
7852721551aSVipin KUMAR 	 * DEVICE_HUB_CONFIGURED and DEVICE_RESET events here.
7862721551aSVipin KUMAR 	 * DEVICE_HUB_CONFIGURED causes a transition to the state STATE_POWERED,
7872721551aSVipin KUMAR 	 * and DEVICE_RESET causes a transition to the state STATE_DEFAULT.
7882721551aSVipin KUMAR 	 * The DW USB client controller has the capability to detect when the
7892721551aSVipin KUMAR 	 * USB cable is connected to a powered USB bus, so we will defer the
7902721551aSVipin KUMAR 	 * DEVICE_HUB_CONFIGURED and DEVICE_RESET events until later.
7912721551aSVipin KUMAR 	 */
7922721551aSVipin KUMAR 
7932721551aSVipin KUMAR 	udc_enable(device);
7942721551aSVipin KUMAR }
7952721551aSVipin KUMAR 
7962721551aSVipin KUMAR /*
7972721551aSVipin KUMAR  * Plug detection interrupt handling
7982721551aSVipin KUMAR  */
dw_udc_plug_irq(void)7994df4f3c9SAmit Virdi static void dw_udc_plug_irq(void)
8002721551aSVipin KUMAR {
8012721551aSVipin KUMAR 	if (readl(&plug_regs_p->plug_state) & PLUG_STATUS_ATTACHED) {
8022721551aSVipin KUMAR 		/*
8032721551aSVipin KUMAR 		 * USB cable attached
8042721551aSVipin KUMAR 		 * Turn off PHY reset bit (PLUG detect).
8052721551aSVipin KUMAR 		 * Switch PHY opmode to normal operation (PLUG detect).
8062721551aSVipin KUMAR 		 */
8072721551aSVipin KUMAR 		udc_connect();
8082721551aSVipin KUMAR 		writel(DEV_INT_SOF, &udc_regs_p->dev_int_mask);
8092721551aSVipin KUMAR 
8102721551aSVipin KUMAR 		UDCDBG("device attached and powered");
8112721551aSVipin KUMAR 		udc_state_transition(udc_device->device_state, STATE_POWERED);
8122721551aSVipin KUMAR 	} else {
8132721551aSVipin KUMAR 		writel(~0x0, &udc_regs_p->dev_int_mask);
8142721551aSVipin KUMAR 
8152721551aSVipin KUMAR 		UDCDBG("device detached or unpowered");
8162721551aSVipin KUMAR 		udc_state_transition(udc_device->device_state, STATE_ATTACHED);
8172721551aSVipin KUMAR 	}
8182721551aSVipin KUMAR }
8192721551aSVipin KUMAR 
8202721551aSVipin KUMAR /*
8212721551aSVipin KUMAR  * Device interrupt handling
8222721551aSVipin KUMAR  */
dw_udc_dev_irq(void)8234df4f3c9SAmit Virdi static void dw_udc_dev_irq(void)
8242721551aSVipin KUMAR {
8252721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_USBRESET) {
8262721551aSVipin KUMAR 		writel(~0x0, &udc_regs_p->endp_int_mask);
8272721551aSVipin KUMAR 
8282721551aSVipin KUMAR 		writel(readl(&inep_regs_p[0].endp_cntl) | ENDP_CNTL_FLUSH,
8292721551aSVipin KUMAR 		       &inep_regs_p[0].endp_cntl);
8302721551aSVipin KUMAR 
8312721551aSVipin KUMAR 		writel(DEV_INT_USBRESET, &udc_regs_p->dev_int);
8322721551aSVipin KUMAR 
833dc3e7739SVipin KUMAR 		/*
834dc3e7739SVipin KUMAR 		 * This endpoint0 specific register can be programmed only
835dc3e7739SVipin KUMAR 		 * after the phy clock is initialized
836dc3e7739SVipin KUMAR 		 */
837dc3e7739SVipin KUMAR 		writel((EP0_MAX_PACKET_SIZE << 19) | ENDP_EPTYPE_CNTL,
838dc3e7739SVipin KUMAR 				&udc_regs_p->udc_endp_reg[0]);
839dc3e7739SVipin KUMAR 
8402721551aSVipin KUMAR 		UDCDBG("device reset in progess");
8412721551aSVipin KUMAR 		udc_state_transition(udc_device->device_state, STATE_DEFAULT);
8422721551aSVipin KUMAR 	}
8432721551aSVipin KUMAR 
8442721551aSVipin KUMAR 	/* Device Enumeration completed */
8452721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_ENUM) {
8462721551aSVipin KUMAR 		writel(DEV_INT_ENUM, &udc_regs_p->dev_int);
8472721551aSVipin KUMAR 
8482721551aSVipin KUMAR 		/* Endpoint interrupt enabled for Ctrl IN & Ctrl OUT */
8492721551aSVipin KUMAR 		writel(readl(&udc_regs_p->endp_int_mask) & ~0x10001,
8502721551aSVipin KUMAR 		       &udc_regs_p->endp_int_mask);
8512721551aSVipin KUMAR 
8522721551aSVipin KUMAR 		UDCDBG("default -> addressed");
8532721551aSVipin KUMAR 		udc_state_transition(udc_device->device_state, STATE_ADDRESSED);
8542721551aSVipin KUMAR 	}
8552721551aSVipin KUMAR 
8562721551aSVipin KUMAR 	/* The USB will be in SUSPEND in 3 ms */
8572721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_INACTIVE) {
8582721551aSVipin KUMAR 		writel(DEV_INT_INACTIVE, &udc_regs_p->dev_int);
8592721551aSVipin KUMAR 
8602721551aSVipin KUMAR 		UDCDBG("entering inactive state");
8612721551aSVipin KUMAR 		/* usbd_device_event_irq(udc_device, DEVICE_BUS_INACTIVE, 0); */
8622721551aSVipin KUMAR 	}
8632721551aSVipin KUMAR 
8642721551aSVipin KUMAR 	/* SetConfiguration command received */
8652721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_SETCFG) {
8662721551aSVipin KUMAR 		writel(DEV_INT_SETCFG, &udc_regs_p->dev_int);
8672721551aSVipin KUMAR 
8682721551aSVipin KUMAR 		UDCDBG("entering configured state");
8692721551aSVipin KUMAR 		udc_state_transition(udc_device->device_state,
8702721551aSVipin KUMAR 				     STATE_CONFIGURED);
8712721551aSVipin KUMAR 	}
8722721551aSVipin KUMAR 
8732721551aSVipin KUMAR 	/* SetInterface command received */
8742721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_SETINTF)
8752721551aSVipin KUMAR 		writel(DEV_INT_SETINTF, &udc_regs_p->dev_int);
8762721551aSVipin KUMAR 
8772721551aSVipin KUMAR 	/* USB Suspend detected on cable */
8782721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_SUSPUSB) {
8792721551aSVipin KUMAR 		writel(DEV_INT_SUSPUSB, &udc_regs_p->dev_int);
8802721551aSVipin KUMAR 
8812721551aSVipin KUMAR 		UDCDBG("entering suspended state");
8822721551aSVipin KUMAR 		usbd_device_event_irq(udc_device, DEVICE_BUS_INACTIVE, 0);
8832721551aSVipin KUMAR 	}
8842721551aSVipin KUMAR 
8852721551aSVipin KUMAR 	/* USB Start-Of-Frame detected on cable */
8862721551aSVipin KUMAR 	if (readl(&udc_regs_p->dev_int) & DEV_INT_SOF)
8872721551aSVipin KUMAR 		writel(DEV_INT_SOF, &udc_regs_p->dev_int);
8882721551aSVipin KUMAR }
8892721551aSVipin KUMAR 
8902721551aSVipin KUMAR /*
8912721551aSVipin KUMAR  * Endpoint interrupt handling
8922721551aSVipin KUMAR  */
dw_udc_endpoint_irq(void)8934df4f3c9SAmit Virdi static void dw_udc_endpoint_irq(void)
8942721551aSVipin KUMAR {
8952721551aSVipin KUMAR 	while (readl(&udc_regs_p->endp_int) & ENDP0_INT_CTRLOUT) {
8962721551aSVipin KUMAR 
8972721551aSVipin KUMAR 		writel(ENDP0_INT_CTRLOUT, &udc_regs_p->endp_int);
8982721551aSVipin KUMAR 
8992721551aSVipin KUMAR 		if ((readl(&outep_regs_p[0].endp_status) & ENDP_STATUS_OUTMSK)
9002721551aSVipin KUMAR 		    == ENDP_STATUS_OUT_SETUP) {
9012721551aSVipin KUMAR 			dw_udc_setup(udc_device->bus->endpoint_array + 0);
9022721551aSVipin KUMAR 			writel(ENDP_STATUS_OUT_SETUP,
9032721551aSVipin KUMAR 			       &outep_regs_p[0].endp_status);
9042721551aSVipin KUMAR 
9052721551aSVipin KUMAR 		} else if ((readl(&outep_regs_p[0].endp_status) &
9062721551aSVipin KUMAR 			    ENDP_STATUS_OUTMSK) == ENDP_STATUS_OUT_DATA) {
9072721551aSVipin KUMAR 			dw_udc_ep0_rx(udc_device->bus->endpoint_array + 0);
9082721551aSVipin KUMAR 			writel(ENDP_STATUS_OUT_DATA,
9092721551aSVipin KUMAR 			       &outep_regs_p[0].endp_status);
9102721551aSVipin KUMAR 
9112721551aSVipin KUMAR 		} else if ((readl(&outep_regs_p[0].endp_status) &
9122721551aSVipin KUMAR 			    ENDP_STATUS_OUTMSK) == ENDP_STATUS_OUT_NONE) {
9132721551aSVipin KUMAR 			/* NONE received */
9142721551aSVipin KUMAR 		}
9152721551aSVipin KUMAR 
9162721551aSVipin KUMAR 		writel(0x0, &outep_regs_p[0].endp_status);
9172721551aSVipin KUMAR 	}
9182721551aSVipin KUMAR 
9192721551aSVipin KUMAR 	if (readl(&udc_regs_p->endp_int) & ENDP0_INT_CTRLIN) {
9202721551aSVipin KUMAR 		dw_udc_ep0_tx(udc_device->bus->endpoint_array + 0);
9212721551aSVipin KUMAR 
9222721551aSVipin KUMAR 		writel(ENDP_STATUS_IN, &inep_regs_p[0].endp_status);
9232721551aSVipin KUMAR 		writel(ENDP0_INT_CTRLIN, &udc_regs_p->endp_int);
9242721551aSVipin KUMAR 	}
9252721551aSVipin KUMAR 
926dc3e7739SVipin KUMAR 	if (readl(&udc_regs_p->endp_int) & ENDP_INT_NONISOOUT_MSK) {
9272721551aSVipin KUMAR 		u32 epnum = 0;
9282721551aSVipin KUMAR 		u32 ep_int = readl(&udc_regs_p->endp_int) &
9292721551aSVipin KUMAR 		    ENDP_INT_NONISOOUT_MSK;
9302721551aSVipin KUMAR 
9312721551aSVipin KUMAR 		ep_int >>= 16;
9322721551aSVipin KUMAR 		while (0x0 == (ep_int & 0x1)) {
9332721551aSVipin KUMAR 			ep_int >>= 1;
9342721551aSVipin KUMAR 			epnum++;
9352721551aSVipin KUMAR 		}
9362721551aSVipin KUMAR 
9372721551aSVipin KUMAR 		writel((1 << 16) << epnum, &udc_regs_p->endp_int);
9382721551aSVipin KUMAR 
9392721551aSVipin KUMAR 		if ((readl(&outep_regs_p[epnum].endp_status) &
9402721551aSVipin KUMAR 		     ENDP_STATUS_OUTMSK) == ENDP_STATUS_OUT_DATA) {
9412721551aSVipin KUMAR 
9422721551aSVipin KUMAR 			dw_udc_epn_rx(epnum);
9432721551aSVipin KUMAR 			writel(ENDP_STATUS_OUT_DATA,
9442721551aSVipin KUMAR 			       &outep_regs_p[epnum].endp_status);
9452721551aSVipin KUMAR 		} else if ((readl(&outep_regs_p[epnum].endp_status) &
9462721551aSVipin KUMAR 			    ENDP_STATUS_OUTMSK) == ENDP_STATUS_OUT_NONE) {
9472721551aSVipin KUMAR 			writel(0x0, &outep_regs_p[epnum].endp_status);
9482721551aSVipin KUMAR 		}
9492721551aSVipin KUMAR 	}
9502721551aSVipin KUMAR 
9512721551aSVipin KUMAR 	if (readl(&udc_regs_p->endp_int) & ENDP_INT_NONISOIN_MSK) {
9522721551aSVipin KUMAR 		u32 epnum = 0;
9532721551aSVipin KUMAR 		u32 ep_int = readl(&udc_regs_p->endp_int) &
9542721551aSVipin KUMAR 		    ENDP_INT_NONISOIN_MSK;
9552721551aSVipin KUMAR 
9562721551aSVipin KUMAR 		while (0x0 == (ep_int & 0x1)) {
9572721551aSVipin KUMAR 			ep_int >>= 1;
9582721551aSVipin KUMAR 			epnum++;
9592721551aSVipin KUMAR 		}
9602721551aSVipin KUMAR 
9612721551aSVipin KUMAR 		if (readl(&inep_regs_p[epnum].endp_status) & ENDP_STATUS_IN) {
9622721551aSVipin KUMAR 			writel(ENDP_STATUS_IN,
9632721551aSVipin KUMAR 			       &outep_regs_p[epnum].endp_status);
9642721551aSVipin KUMAR 			dw_udc_epn_tx(epnum);
9652721551aSVipin KUMAR 
9662721551aSVipin KUMAR 			writel(ENDP_STATUS_IN,
9672721551aSVipin KUMAR 			       &outep_regs_p[epnum].endp_status);
9682721551aSVipin KUMAR 		}
9692721551aSVipin KUMAR 
9702721551aSVipin KUMAR 		writel((1 << epnum), &udc_regs_p->endp_int);
9712721551aSVipin KUMAR 	}
9722721551aSVipin KUMAR }
9732721551aSVipin KUMAR 
9742721551aSVipin KUMAR /*
9752721551aSVipin KUMAR  * UDC interrupts
9762721551aSVipin KUMAR  */
udc_irq(void)9772721551aSVipin KUMAR void udc_irq(void)
9782721551aSVipin KUMAR {
9792721551aSVipin KUMAR 	/*
9802721551aSVipin KUMAR 	 * Loop while we have interrupts.
9812721551aSVipin KUMAR 	 * If we don't do this, the input chain
9822721551aSVipin KUMAR 	 * polling delay is likely to miss
9832721551aSVipin KUMAR 	 * host requests.
9842721551aSVipin KUMAR 	 */
9852721551aSVipin KUMAR 	while (readl(&plug_regs_p->plug_pending))
9862721551aSVipin KUMAR 		dw_udc_plug_irq();
9872721551aSVipin KUMAR 
9882721551aSVipin KUMAR 	while (readl(&udc_regs_p->dev_int))
9892721551aSVipin KUMAR 		dw_udc_dev_irq();
9902721551aSVipin KUMAR 
9912721551aSVipin KUMAR 	if (readl(&udc_regs_p->endp_int))
9922721551aSVipin KUMAR 		dw_udc_endpoint_irq();
9932721551aSVipin KUMAR }
9942721551aSVipin KUMAR 
9952721551aSVipin KUMAR /* Flow control */
udc_set_nak(int epid)9962721551aSVipin KUMAR void udc_set_nak(int epid)
9972721551aSVipin KUMAR {
9982721551aSVipin KUMAR 	writel(readl(&inep_regs_p[epid].endp_cntl) | ENDP_CNTL_SNAK,
9992721551aSVipin KUMAR 	       &inep_regs_p[epid].endp_cntl);
10002721551aSVipin KUMAR 
10012721551aSVipin KUMAR 	writel(readl(&outep_regs_p[epid].endp_cntl) | ENDP_CNTL_SNAK,
10022721551aSVipin KUMAR 	       &outep_regs_p[epid].endp_cntl);
10032721551aSVipin KUMAR }
10042721551aSVipin KUMAR 
udc_unset_nak(int epid)10052721551aSVipin KUMAR void udc_unset_nak(int epid)
10062721551aSVipin KUMAR {
10072721551aSVipin KUMAR 	u32 val;
10082721551aSVipin KUMAR 
10092721551aSVipin KUMAR 	val = readl(&inep_regs_p[epid].endp_cntl);
10102721551aSVipin KUMAR 	val &= ~ENDP_CNTL_SNAK;
10112721551aSVipin KUMAR 	val |= ENDP_CNTL_CNAK;
10122721551aSVipin KUMAR 	writel(val, &inep_regs_p[epid].endp_cntl);
10132721551aSVipin KUMAR 
10142721551aSVipin KUMAR 	val = readl(&outep_regs_p[epid].endp_cntl);
10152721551aSVipin KUMAR 	val &= ~ENDP_CNTL_SNAK;
10162721551aSVipin KUMAR 	val |= ENDP_CNTL_CNAK;
10172721551aSVipin KUMAR 	writel(val, &outep_regs_p[epid].endp_cntl);
10182721551aSVipin KUMAR }
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