musb_gadget.c 55.8 KB
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/*
 * MUSB OTG driver peripheral support
 *
 * Copyright 2005 Mentor Graphics Corporation
 * Copyright (C) 2005-2006 by Texas Instruments
 * Copyright (C) 2006-2007 Nokia Corporation
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 * Copyright (C) 2009 MontaVista Software, Inc. <source@mvista.com>
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 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * version 2 as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
 * 02110-1301 USA
 *
 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  IN
 * NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
 * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
 * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 *
 */

#include <linux/kernel.h>
#include <linux/list.h>
#include <linux/timer.h>
#include <linux/module.h>
#include <linux/smp.h>
#include <linux/spinlock.h>
#include <linux/delay.h>
#include <linux/dma-mapping.h>
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#include <linux/slab.h>
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#include "musb_core.h"
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#include "musb_trace.h"
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/* ----------------------------------------------------------------------- */

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#define is_buffer_mapped(req) (is_dma_capable() && \
					(req->map_state != UN_MAPPED))

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/* Maps the buffer to dma  */

static inline void map_dma_buffer(struct musb_request *request,
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			struct musb *musb, struct musb_ep *musb_ep)
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{
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	int compatible = true;
	struct dma_controller *dma = musb->dma_controller;

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	request->map_state = UN_MAPPED;

	if (!is_dma_capable() || !musb_ep->dma)
		return;

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	/* Check if DMA engine can handle this request.
	 * DMA code must reject the USB request explicitly.
	 * Default behaviour is to map the request.
	 */
	if (dma->is_compatible)
		compatible = dma->is_compatible(musb_ep->dma,
				musb_ep->packet_sz, request->request.buf,
				request->request.length);
	if (!compatible)
		return;

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	if (request->request.dma == DMA_ADDR_INVALID) {
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		dma_addr_t dma_addr;
		int ret;

		dma_addr = dma_map_single(
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				musb->controller,
				request->request.buf,
				request->request.length,
				request->tx
					? DMA_TO_DEVICE
					: DMA_FROM_DEVICE);
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		ret = dma_mapping_error(musb->controller, dma_addr);
		if (ret)
			return;

		request->request.dma = dma_addr;
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		request->map_state = MUSB_MAPPED;
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	} else {
		dma_sync_single_for_device(musb->controller,
			request->request.dma,
			request->request.length,
			request->tx
				? DMA_TO_DEVICE
				: DMA_FROM_DEVICE);
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		request->map_state = PRE_MAPPED;
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	}
}

/* Unmap the buffer from dma and maps it back to cpu */
static inline void unmap_dma_buffer(struct musb_request *request,
				struct musb *musb)
{
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	struct musb_ep *musb_ep = request->ep;

	if (!is_buffer_mapped(request) || !musb_ep->dma)
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		return;

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	if (request->request.dma == DMA_ADDR_INVALID) {
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		dev_vdbg(musb->controller,
				"not unmapping a never mapped buffer\n");
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		return;
	}
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	if (request->map_state == MUSB_MAPPED) {
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		dma_unmap_single(musb->controller,
			request->request.dma,
			request->request.length,
			request->tx
				? DMA_TO_DEVICE
				: DMA_FROM_DEVICE);
		request->request.dma = DMA_ADDR_INVALID;
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	} else { /* PRE_MAPPED */
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		dma_sync_single_for_cpu(musb->controller,
			request->request.dma,
			request->request.length,
			request->tx
				? DMA_TO_DEVICE
				: DMA_FROM_DEVICE);
	}
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	request->map_state = UN_MAPPED;
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}

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/*
 * Immediately complete a request.
 *
 * @param request the request to complete
 * @param status the status to complete the request with
 * Context: controller locked, IRQs blocked.
 */
void musb_g_giveback(
	struct musb_ep		*ep,
	struct usb_request	*request,
	int			status)
__releases(ep->musb->lock)
__acquires(ep->musb->lock)
{
	struct musb_request	*req;
	struct musb		*musb;
	int			busy = ep->busy;

	req = to_musb_request(request);

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	list_del(&req->list);
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	if (req->request.status == -EINPROGRESS)
		req->request.status = status;
	musb = req->musb;

	ep->busy = 1;
	spin_unlock(&musb->lock);
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	if (!dma_mapping_error(&musb->g.dev, request->dma))
		unmap_dma_buffer(req, musb);

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	trace_musb_req_gb(req);
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	usb_gadget_giveback_request(&req->ep->end_point, &req->request);
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	spin_lock(&musb->lock);
	ep->busy = busy;
}

/* ----------------------------------------------------------------------- */

/*
 * Abort requests queued to an endpoint using the status. Synchronous.
 * caller locked controller and blocked irqs, and selected this ep.
 */
static void nuke(struct musb_ep *ep, const int status)
{
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	struct musb		*musb = ep->musb;
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	struct musb_request	*req = NULL;
	void __iomem *epio = ep->musb->endpoints[ep->current_epnum].regs;

	ep->busy = 1;

	if (is_dma_capable() && ep->dma) {
		struct dma_controller	*c = ep->musb->dma_controller;
		int value;
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		if (ep->is_in) {
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			/*
			 * The programming guide says that we must not clear
			 * the DMAMODE bit before DMAENAB, so we only
			 * clear it in the second write...
			 */
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			musb_writew(epio, MUSB_TXCSR,
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				    MUSB_TXCSR_DMAMODE | MUSB_TXCSR_FLUSHFIFO);
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			musb_writew(epio, MUSB_TXCSR,
					0 | MUSB_TXCSR_FLUSHFIFO);
		} else {
			musb_writew(epio, MUSB_RXCSR,
					0 | MUSB_RXCSR_FLUSHFIFO);
			musb_writew(epio, MUSB_RXCSR,
					0 | MUSB_RXCSR_FLUSHFIFO);
		}

		value = c->channel_abort(ep->dma);
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		musb_dbg(musb, "%s: abort DMA --> %d", ep->name, value);
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		c->channel_release(ep->dma);
		ep->dma = NULL;
	}

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	while (!list_empty(&ep->req_list)) {
		req = list_first_entry(&ep->req_list, struct musb_request, list);
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		musb_g_giveback(ep, &req->request, status);
	}
}

/* ----------------------------------------------------------------------- */

/* Data transfers - pure PIO, pure DMA, or mixed mode */

/*
 * This assumes the separate CPPI engine is responding to DMA requests
 * from the usb core ... sequenced a bit differently from mentor dma.
 */

static inline int max_ep_writesize(struct musb *musb, struct musb_ep *ep)
{
	if (can_bulk_split(musb, ep->type))
		return ep->hw_ep->max_packet_sz_tx;
	else
		return ep->packet_sz;
}

/*
 * An endpoint is transmitting data. This can be called either from
 * the IRQ routine or from ep.queue() to kickstart a request on an
 * endpoint.
 *
 * Context: controller locked, IRQs blocked, endpoint selected
 */
static void txstate(struct musb *musb, struct musb_request *req)
{
	u8			epnum = req->epnum;
	struct musb_ep		*musb_ep;
	void __iomem		*epio = musb->endpoints[epnum].regs;
	struct usb_request	*request;
	u16			fifo_count = 0, csr;
	int			use_dma = 0;

	musb_ep = req->ep;

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	/* Check if EP is disabled */
	if (!musb_ep->desc) {
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		musb_dbg(musb, "ep:%s disabled - ignore request",
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						musb_ep->end_point.name);
		return;
	}

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	/* we shouldn't get here while DMA is active ... but we do ... */
	if (dma_channel_status(musb_ep->dma) == MUSB_DMA_STATUS_BUSY) {
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		musb_dbg(musb, "dma pending...");
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		return;
	}

	/* read TXCSR before */
	csr = musb_readw(epio, MUSB_TXCSR);

	request = &req->request;
	fifo_count = min(max_ep_writesize(musb, musb_ep),
			(int)(request->length - request->actual));

	if (csr & MUSB_TXCSR_TXPKTRDY) {
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		musb_dbg(musb, "%s old packet still ready , txcsr %03x",
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				musb_ep->end_point.name, csr);
		return;
	}

	if (csr & MUSB_TXCSR_P_SENDSTALL) {
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		musb_dbg(musb, "%s stalling, txcsr %03x",
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				musb_ep->end_point.name, csr);
		return;
	}

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	musb_dbg(musb, "hw_ep%d, maxpacket %d, fifo count %d, txcsr %03x",
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			epnum, musb_ep->packet_sz, fifo_count,
			csr);

#ifndef	CONFIG_MUSB_PIO_ONLY
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	if (is_buffer_mapped(req)) {
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		struct dma_controller	*c = musb->dma_controller;
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		size_t request_size;

		/* setup DMA, then program endpoint CSR */
		request_size = min_t(size_t, request->length - request->actual,
					musb_ep->dma->max_len);
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		use_dma = (request->dma != DMA_ADDR_INVALID && request_size);
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		/* MUSB_TXCSR_P_ISO is still set correctly */

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		if (musb_dma_inventra(musb) || musb_dma_ux500(musb)) {
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			if (request_size < musb_ep->packet_sz)
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				musb_ep->dma->desired_mode = 0;
			else
				musb_ep->dma->desired_mode = 1;

			use_dma = use_dma && c->channel_program(
					musb_ep->dma, musb_ep->packet_sz,
					musb_ep->dma->desired_mode,
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					request->dma + request->actual, request_size);
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			if (use_dma) {
				if (musb_ep->dma->desired_mode == 0) {
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					/*
					 * We must not clear the DMAMODE bit
					 * before the DMAENAB bit -- and the
					 * latter doesn't always get cleared
					 * before we get here...
					 */
					csr &= ~(MUSB_TXCSR_AUTOSET
						| MUSB_TXCSR_DMAENAB);
					musb_writew(epio, MUSB_TXCSR, csr
						| MUSB_TXCSR_P_WZC_BITS);
					csr &= ~MUSB_TXCSR_DMAMODE;
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					csr |= (MUSB_TXCSR_DMAENAB |
							MUSB_TXCSR_MODE);
					/* against programming guide */
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				} else {
					csr |= (MUSB_TXCSR_DMAENAB
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							| MUSB_TXCSR_DMAMODE
							| MUSB_TXCSR_MODE);
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					/*
					 * Enable Autoset according to table
					 * below
					 * bulk_split hb_mult	Autoset_Enable
					 *	0	0	Yes(Normal)
					 *	0	>0	No(High BW ISO)
					 *	1	0	Yes(HS bulk)
					 *	1	>0	Yes(FS bulk)
					 */
					if (!musb_ep->hb_mult ||
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					    can_bulk_split(musb,
							   musb_ep->type))
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						csr |= MUSB_TXCSR_AUTOSET;
				}
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				csr &= ~MUSB_TXCSR_P_UNDERRUN;
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				musb_writew(epio, MUSB_TXCSR, csr);
			}
		}

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		if (is_cppi_enabled(musb)) {
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			/* program endpoint CSR first, then setup DMA */
			csr &= ~(MUSB_TXCSR_P_UNDERRUN | MUSB_TXCSR_TXPKTRDY);
			csr |= MUSB_TXCSR_DMAENAB | MUSB_TXCSR_DMAMODE |
				MUSB_TXCSR_MODE;
			musb_writew(epio, MUSB_TXCSR, (MUSB_TXCSR_P_WZC_BITS &
						~MUSB_TXCSR_P_UNDERRUN) | csr);

			/* ensure writebuffer is empty */
			csr = musb_readw(epio, MUSB_TXCSR);

			/*
			 * NOTE host side sets DMAENAB later than this; both are
			 * OK since the transfer dma glue (between CPPI and
			 * Mentor fifos) just tells CPPI it could start. Data
			 * only moves to the USB TX fifo when both fifos are
			 * ready.
			 */
			/*
			 * "mode" is irrelevant here; handle terminating ZLPs
			 * like PIO does, since the hardware RNDIS mode seems
			 * unreliable except for the
			 * last-packet-is-already-short case.
			 */
			use_dma = use_dma && c->channel_program(
					musb_ep->dma, musb_ep->packet_sz,
					0,
					request->dma + request->actual,
					request_size);
			if (!use_dma) {
				c->channel_release(musb_ep->dma);
				musb_ep->dma = NULL;
				csr &= ~MUSB_TXCSR_DMAENAB;
				musb_writew(epio, MUSB_TXCSR, csr);
				/* invariant: prequest->buf is non-null */
			}
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		} else if (tusb_dma_omap(musb))
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			use_dma = use_dma && c->channel_program(
					musb_ep->dma, musb_ep->packet_sz,
					request->zero,
					request->dma + request->actual,
					request_size);
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	}
#endif

	if (!use_dma) {
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		/*
		 * Unmap the dma buffer back to cpu if dma channel
		 * programming fails
		 */
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		unmap_dma_buffer(req, musb);
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		musb_write_fifo(musb_ep->hw_ep, fifo_count,
				(u8 *) (request->buf + request->actual));
		request->actual += fifo_count;
		csr |= MUSB_TXCSR_TXPKTRDY;
		csr &= ~MUSB_TXCSR_P_UNDERRUN;
		musb_writew(epio, MUSB_TXCSR, csr);
	}

	/* host may already have the data when this message shows... */
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	musb_dbg(musb, "%s TX/IN %s len %d/%d, txcsr %04x, fifo %d/%d",
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			musb_ep->end_point.name, use_dma ? "dma" : "pio",
			request->actual, request->length,
			musb_readw(epio, MUSB_TXCSR),
			fifo_count,
			musb_readw(epio, MUSB_TXMAXP));
}

/*
 * FIFO state update (e.g. data ready).
 * Called from IRQ,  with controller locked.
 */
void musb_g_tx(struct musb *musb, u8 epnum)
{
	u16			csr;
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	struct musb_request	*req;
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	struct usb_request	*request;
	u8 __iomem		*mbase = musb->mregs;
	struct musb_ep		*musb_ep = &musb->endpoints[epnum].ep_in;
	void __iomem		*epio = musb->endpoints[epnum].regs;
	struct dma_channel	*dma;

	musb_ep_select(mbase, epnum);
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	req = next_request(musb_ep);
	request = &req->request;
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	trace_musb_req_tx(req);
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	csr = musb_readw(epio, MUSB_TXCSR);
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	musb_dbg(musb, "<== %s, txcsr %04x", musb_ep->end_point.name, csr);
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	dma = is_dma_capable() ? musb_ep->dma : NULL;
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	/*
	 * REVISIT: for high bandwidth, MUSB_TXCSR_P_INCOMPTX
	 * probably rates reporting as a host error.
	 */
	if (csr & MUSB_TXCSR_P_SENTSTALL) {
		csr |=	MUSB_TXCSR_P_WZC_BITS;
		csr &= ~MUSB_TXCSR_P_SENTSTALL;
		musb_writew(epio, MUSB_TXCSR, csr);
		return;
	}

	if (csr & MUSB_TXCSR_P_UNDERRUN) {
		/* We NAKed, no big deal... little reason to care. */
		csr |=	 MUSB_TXCSR_P_WZC_BITS;
		csr &= ~(MUSB_TXCSR_P_UNDERRUN | MUSB_TXCSR_TXPKTRDY);
		musb_writew(epio, MUSB_TXCSR, csr);
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		dev_vdbg(musb->controller, "underrun on ep%d, req %p\n",
				epnum, request);
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	}

	if (dma_channel_status(dma) == MUSB_DMA_STATUS_BUSY) {
		/*
		 * SHOULD NOT HAPPEN... has with CPPI though, after
		 * changing SENDSTALL (and other cases); harmless?
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		 */
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		musb_dbg(musb, "%s dma still busy?", musb_ep->end_point.name);
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		return;
	}
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	if (request) {
		u8	is_dma = 0;
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		bool	short_packet = false;
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		if (dma && (csr & MUSB_TXCSR_DMAENAB)) {
			is_dma = 1;
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			csr |= MUSB_TXCSR_P_WZC_BITS;
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			csr &= ~(MUSB_TXCSR_DMAENAB | MUSB_TXCSR_P_UNDERRUN |
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				 MUSB_TXCSR_TXPKTRDY | MUSB_TXCSR_AUTOSET);
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			musb_writew(epio, MUSB_TXCSR, csr);
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			/* Ensure writebuffer is empty. */
			csr = musb_readw(epio, MUSB_TXCSR);
			request->actual += musb_ep->dma->actual_len;
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			musb_dbg(musb, "TXCSR%d %04x, DMA off, len %zu, req %p",
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				epnum, csr, musb_ep->dma->actual_len, request);
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		}

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		/*
		 * First, maybe a terminating short packet. Some DMA
		 * engines might handle this by themselves.
		 */
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		if ((request->zero && request->length)
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			&& (request->length % musb_ep->packet_sz == 0)
			&& (request->actual == request->length))
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				short_packet = true;

		if ((musb_dma_inventra(musb) || musb_dma_ux500(musb)) &&
			(is_dma && (!dma->desired_mode ||
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				(request->actual &
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					(musb_ep->packet_sz - 1)))))
				short_packet = true;

		if (short_packet) {
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			/*
			 * On DMA completion, FIFO may not be
			 * available yet...
			 */
			if (csr & MUSB_TXCSR_TXPKTRDY)
				return;
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			musb_writew(epio, MUSB_TXCSR, MUSB_TXCSR_MODE
					| MUSB_TXCSR_TXPKTRDY);
			request->zero = 0;
		}

		if (request->actual == request->length) {
			musb_g_giveback(musb_ep, request, 0);
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			/*
			 * In the giveback function the MUSB lock is
			 * released and acquired after sometime. During
			 * this time period the INDEX register could get
			 * changed by the gadget_queue function especially
			 * on SMP systems. Reselect the INDEX to be sure
			 * we are reading/modifying the right registers
			 */
			musb_ep_select(mbase, epnum);
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			req = musb_ep->desc ? next_request(musb_ep) : NULL;
			if (!req) {
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				musb_dbg(musb, "%s idle now",
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					musb_ep->end_point.name);
				return;
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			}
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		}

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		txstate(musb, req);
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	}
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}

/* ------------------------------------------------------------ */

/*
 * Context: controller locked, IRQs blocked, endpoint selected
 */
static void rxstate(struct musb *musb, struct musb_request *req)
{
	const u8		epnum = req->epnum;
	struct usb_request	*request = &req->request;
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	struct musb_ep		*musb_ep;
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	void __iomem		*epio = musb->endpoints[epnum].regs;
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	unsigned		len = 0;
	u16			fifo_count;
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	u16			csr = musb_readw(epio, MUSB_RXCSR);
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	struct musb_hw_ep	*hw_ep = &musb->endpoints[epnum];
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	u8			use_mode_1;
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	if (hw_ep->is_shared_fifo)
		musb_ep = &hw_ep->ep_in;
	else
		musb_ep = &hw_ep->ep_out;

570
	fifo_count = musb_ep->packet_sz;
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571

572 573
	/* Check if EP is disabled */
	if (!musb_ep->desc) {
574
		musb_dbg(musb, "ep:%s disabled - ignore request",
575 576 577 578
						musb_ep->end_point.name);
		return;
	}

579 580
	/* We shouldn't get here while DMA is active, but we do... */
	if (dma_channel_status(musb_ep->dma) == MUSB_DMA_STATUS_BUSY) {
581
		musb_dbg(musb, "DMA pending...");
582 583 584 585
		return;
	}

	if (csr & MUSB_RXCSR_P_SENDSTALL) {
586
		musb_dbg(musb, "%s stalling, RXCSR %04x",
587 588 589
		    musb_ep->end_point.name, csr);
		return;
	}
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590

591
	if (is_cppi_enabled(musb) && is_buffer_mapped(req)) {
F
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592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618
		struct dma_controller	*c = musb->dma_controller;
		struct dma_channel	*channel = musb_ep->dma;

		/* NOTE:  CPPI won't actually stop advancing the DMA
		 * queue after short packet transfers, so this is almost
		 * always going to run as IRQ-per-packet DMA so that
		 * faults will be handled correctly.
		 */
		if (c->channel_program(channel,
				musb_ep->packet_sz,
				!request->short_not_ok,
				request->dma + request->actual,
				request->length - request->actual)) {

			/* make sure that if an rxpkt arrived after the irq,
			 * the cppi engine will be ready to take it as soon
			 * as DMA is enabled
			 */
			csr &= ~(MUSB_RXCSR_AUTOCLEAR
					| MUSB_RXCSR_DMAMODE);
			csr |= MUSB_RXCSR_DMAENAB | MUSB_RXCSR_P_WZC_BITS;
			musb_writew(epio, MUSB_RXCSR, csr);
			return;
		}
	}

	if (csr & MUSB_RXCSR_RXPKTRDY) {
619
		fifo_count = musb_readw(epio, MUSB_RXCOUNT);
620 621

		/*
622 623 624
		 * Enable Mode 1 on RX transfers only when short_not_ok flag
		 * is set. Currently short_not_ok flag is set only from
		 * file_storage and f_mass_storage drivers
625
		 */
626 627

		if (request->short_not_ok && fifo_count == musb_ep->packet_sz)
628 629 630 631
			use_mode_1 = 1;
		else
			use_mode_1 = 0;

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632
		if (request->actual < request->length) {
633 634 635 636
			if (!is_buffer_mapped(req))
				goto buffer_aint_mapped;

			if (musb_dma_inventra(musb)) {
F
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637 638 639
				struct dma_controller	*c;
				struct dma_channel	*channel;
				int			use_dma = 0;
640
				unsigned int transfer_size;
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641 642 643 644

				c = musb->dma_controller;
				channel = musb_ep->dma;

645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665
	/* We use DMA Req mode 0 in rx_csr, and DMA controller operates in
	 * mode 0 only. So we do not get endpoint interrupts due to DMA
	 * completion. We only get interrupts from DMA controller.
	 *
	 * We could operate in DMA mode 1 if we knew the size of the tranfer
	 * in advance. For mass storage class, request->length = what the host
	 * sends, so that'd work.  But for pretty much everything else,
	 * request->length is routinely more than what the host sends. For
	 * most these gadgets, end of is signified either by a short packet,
	 * or filling the last byte of the buffer.  (Sending extra data in
	 * that last pckate should trigger an overflow fault.)  But in mode 1,
	 * we don't get DMA completion interrupt for short packets.
	 *
	 * Theoretically, we could enable DMAReq irq (MUSB_RXCSR_DMAMODE = 1),
	 * to get endpoint interrupt on every DMA req, but that didn't seem
	 * to work reliably.
	 *
	 * REVISIT an updated g_file_storage can set req->short_not_ok, which
	 * then becomes usable as a runtime "use mode 1" hint...
	 */

666 667
				/* Experimental: Mode1 works with mass storage use cases */
				if (use_mode_1) {
668
					csr |= MUSB_RXCSR_AUTOCLEAR;
669 670 671 672 673 674 675 676 677 678 679 680 681
					musb_writew(epio, MUSB_RXCSR, csr);
					csr |= MUSB_RXCSR_DMAENAB;
					musb_writew(epio, MUSB_RXCSR, csr);

					/*
					 * this special sequence (enabling and then
					 * disabling MUSB_RXCSR_DMAMODE) is required
					 * to get DMAReq to activate
					 */
					musb_writew(epio, MUSB_RXCSR,
						csr | MUSB_RXCSR_DMAMODE);
					musb_writew(epio, MUSB_RXCSR, csr);

682 683 684
					transfer_size = min_t(unsigned int,
							request->length -
							request->actual,
685 686
							channel->max_len);
					musb_ep->dma->desired_mode = 1;
687 688 689 690 691 692
				} else {
					if (!musb_ep->hb_mult &&
						musb_ep->hw_ep->rx_double_buffered)
						csr |= MUSB_RXCSR_AUTOCLEAR;
					csr |= MUSB_RXCSR_DMAENAB;
					musb_writew(epio, MUSB_RXCSR, csr);
F
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693

694
					transfer_size = min(request->length - request->actual,
695
							(unsigned)fifo_count);
696
					musb_ep->dma->desired_mode = 0;
F
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697 698
				}

699 700 701 702 703 704 705 706
				use_dma = c->channel_program(
						channel,
						musb_ep->packet_sz,
						channel->desired_mode,
						request->dma
						+ request->actual,
						transfer_size);

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707
				if (use_dma)
708 709
					return;
			}
710 711

			if ((musb_dma_ux500(musb)) &&
712 713 714 715
				(request->actual < request->length)) {

				struct dma_controller *c;
				struct dma_channel *channel;
716
				unsigned int transfer_size = 0;
717 718 719 720 721

				c = musb->dma_controller;
				channel = musb_ep->dma;

				/* In case first packet is short */
722 723
				if (fifo_count < musb_ep->packet_sz)
					transfer_size = fifo_count;
724
				else if (request->short_not_ok)
725 726
					transfer_size =	min_t(unsigned int,
							request->length -
727 728 729
							request->actual,
							channel->max_len);
				else
730 731
					transfer_size = min_t(unsigned int,
							request->length -
732
							request->actual,
733
							(unsigned)fifo_count);
734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756

				csr &= ~MUSB_RXCSR_DMAMODE;
				csr |= (MUSB_RXCSR_DMAENAB |
					MUSB_RXCSR_AUTOCLEAR);

				musb_writew(epio, MUSB_RXCSR, csr);

				if (transfer_size <= musb_ep->packet_sz) {
					musb_ep->dma->desired_mode = 0;
				} else {
					musb_ep->dma->desired_mode = 1;
					/* Mode must be set after DMAENAB */
					csr |= MUSB_RXCSR_DMAMODE;
					musb_writew(epio, MUSB_RXCSR, csr);
				}

				if (c->channel_program(channel,
							musb_ep->packet_sz,
							channel->desired_mode,
							request->dma
							+ request->actual,
							transfer_size))

F
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757 758 759
					return;
			}

760
			len = request->length - request->actual;
761
			musb_dbg(musb, "%s OUT/RX pio fifo %d/%d, maxpacket %d",
F
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762
					musb_ep->end_point.name,
763
					fifo_count, len,
F
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764 765
					musb_ep->packet_sz);

766
			fifo_count = min_t(unsigned, len, fifo_count);
F
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767

768
			if (tusb_dma_omap(musb)) {
F
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769 770 771 772 773 774 775 776 777 778 779 780 781
				struct dma_controller *c = musb->dma_controller;
				struct dma_channel *channel = musb_ep->dma;
				u32 dma_addr = request->dma + request->actual;
				int ret;

				ret = c->channel_program(channel,
						musb_ep->packet_sz,
						channel->desired_mode,
						dma_addr,
						fifo_count);
				if (ret)
					return;
			}
782

783 784 785 786 787
			/*
			 * Unmap the dma buffer back to cpu if dma channel
			 * programming fails. This buffer is mapped if the
			 * channel allocation is successful
			 */
788 789 790 791 792 793 794 795
			unmap_dma_buffer(req, musb);

			/*
			 * Clear DMAENAB and AUTOCLEAR for the
			 * PIO mode transfer
			 */
			csr &= ~(MUSB_RXCSR_DMAENAB | MUSB_RXCSR_AUTOCLEAR);
			musb_writew(epio, MUSB_RXCSR, csr);
F
Felipe Balbi 已提交
796

797
buffer_aint_mapped:
F
Felipe Balbi 已提交
798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813
			musb_read_fifo(musb_ep->hw_ep, fifo_count, (u8 *)
					(request->buf + request->actual));
			request->actual += fifo_count;

			/* REVISIT if we left anything in the fifo, flush
			 * it and report -EOVERFLOW
			 */

			/* ack the read! */
			csr |= MUSB_RXCSR_P_WZC_BITS;
			csr &= ~MUSB_RXCSR_RXPKTRDY;
			musb_writew(epio, MUSB_RXCSR, csr);
		}
	}

	/* reach the end or short packet detected */
814 815
	if (request->actual == request->length ||
	    fifo_count < musb_ep->packet_sz)
F
Felipe Balbi 已提交
816 817 818 819 820 821 822 823 824
		musb_g_giveback(musb_ep, request, 0);
}

/*
 * Data ready for a request; called from IRQ
 */
void musb_g_rx(struct musb *musb, u8 epnum)
{
	u16			csr;
825
	struct musb_request	*req;
F
Felipe Balbi 已提交
826 827
	struct usb_request	*request;
	void __iomem		*mbase = musb->mregs;
828
	struct musb_ep		*musb_ep;
F
Felipe Balbi 已提交
829 830
	void __iomem		*epio = musb->endpoints[epnum].regs;
	struct dma_channel	*dma;
831 832 833 834 835 836
	struct musb_hw_ep	*hw_ep = &musb->endpoints[epnum];

	if (hw_ep->is_shared_fifo)
		musb_ep = &hw_ep->ep_in;
	else
		musb_ep = &hw_ep->ep_out;
F
Felipe Balbi 已提交
837 838 839

	musb_ep_select(mbase, epnum);

840 841
	req = next_request(musb_ep);
	if (!req)
842
		return;
F
Felipe Balbi 已提交
843

844
	trace_musb_req_rx(req);
845 846
	request = &req->request;

F
Felipe Balbi 已提交
847 848 849
	csr = musb_readw(epio, MUSB_RXCSR);
	dma = is_dma_capable() ? musb_ep->dma : NULL;

850
	musb_dbg(musb, "<== %s, rxcsr %04x%s %p", musb_ep->end_point.name,
F
Felipe Balbi 已提交
851 852 853 854 855 856
			csr, dma ? " (dma)" : "", request);

	if (csr & MUSB_RXCSR_P_SENTSTALL) {
		csr |= MUSB_RXCSR_P_WZC_BITS;
		csr &= ~MUSB_RXCSR_P_SENTSTALL;
		musb_writew(epio, MUSB_RXCSR, csr);
857
		return;
F
Felipe Balbi 已提交
858 859 860 861 862 863 864
	}

	if (csr & MUSB_RXCSR_P_OVERRUN) {
		/* csr |= MUSB_RXCSR_P_WZC_BITS; */
		csr &= ~MUSB_RXCSR_P_OVERRUN;
		musb_writew(epio, MUSB_RXCSR, csr);

865
		musb_dbg(musb, "%s iso overrun on %p", musb_ep->name, request);
866
		if (request->status == -EINPROGRESS)
F
Felipe Balbi 已提交
867 868 869 870
			request->status = -EOVERFLOW;
	}
	if (csr & MUSB_RXCSR_INCOMPRX) {
		/* REVISIT not necessarily an error */
871
		musb_dbg(musb, "%s, incomprx", musb_ep->end_point.name);
F
Felipe Balbi 已提交
872 873 874 875
	}

	if (dma_channel_status(dma) == MUSB_DMA_STATUS_BUSY) {
		/* "should not happen"; likely RXPKTRDY pending for DMA */
876
		musb_dbg(musb, "%s busy, csr %04x",
F
Felipe Balbi 已提交
877
			musb_ep->end_point.name, csr);
878
		return;
F
Felipe Balbi 已提交
879 880 881 882 883 884 885 886 887 888 889
	}

	if (dma && (csr & MUSB_RXCSR_DMAENAB)) {
		csr &= ~(MUSB_RXCSR_AUTOCLEAR
				| MUSB_RXCSR_DMAENAB
				| MUSB_RXCSR_DMAMODE);
		musb_writew(epio, MUSB_RXCSR,
			MUSB_RXCSR_P_WZC_BITS | csr);

		request->actual += musb_ep->dma->actual_len;

890 891
#if defined(CONFIG_USB_INVENTRA_DMA) || defined(CONFIG_USB_TUSB_OMAP_DMA) || \
	defined(CONFIG_USB_UX500_DMA)
F
Felipe Balbi 已提交
892
		/* Autoclear doesn't clear RxPktRdy for short packets */
893
		if ((dma->desired_mode == 0 && !hw_ep->rx_double_buffered)
F
Felipe Balbi 已提交
894 895 896 897 898 899 900 901 902 903
				|| (dma->actual_len
					& (musb_ep->packet_sz - 1))) {
			/* ack the read! */
			csr &= ~MUSB_RXCSR_RXPKTRDY;
			musb_writew(epio, MUSB_RXCSR, csr);
		}

		/* incomplete, and not short? wait for next IN packet */
		if ((request->actual < request->length)
				&& (musb_ep->dma->actual_len
904 905 906 907 908 909 910 911
					== musb_ep->packet_sz)) {
			/* In double buffer case, continue to unload fifo if
 			 * there is Rx packet in FIFO.
 			 **/
			csr = musb_readw(epio, MUSB_RXCSR);
			if ((csr & MUSB_RXCSR_RXPKTRDY) &&
				hw_ep->rx_double_buffered)
				goto exit;
912
			return;
913
		}
F
Felipe Balbi 已提交
914 915
#endif
		musb_g_giveback(musb_ep, request, 0);
916 917 918 919 920 921 922 923 924
		/*
		 * In the giveback function the MUSB lock is
		 * released and acquired after sometime. During
		 * this time period the INDEX register could get
		 * changed by the gadget_queue function especially
		 * on SMP systems. Reselect the INDEX to be sure
		 * we are reading/modifying the right registers
		 */
		musb_ep_select(mbase, epnum);
F
Felipe Balbi 已提交
925

926 927
		req = next_request(musb_ep);
		if (!req)
928
			return;
F
Felipe Balbi 已提交
929
	}
930 931
#if defined(CONFIG_USB_INVENTRA_DMA) || defined(CONFIG_USB_TUSB_OMAP_DMA) || \
	defined(CONFIG_USB_UX500_DMA)
932
exit:
933
#endif
934
	/* Analyze request */
935
	rxstate(musb, req);
F
Felipe Balbi 已提交
936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969
}

/* ------------------------------------------------------------ */

static int musb_gadget_enable(struct usb_ep *ep,
			const struct usb_endpoint_descriptor *desc)
{
	unsigned long		flags;
	struct musb_ep		*musb_ep;
	struct musb_hw_ep	*hw_ep;
	void __iomem		*regs;
	struct musb		*musb;
	void __iomem	*mbase;
	u8		epnum;
	u16		csr;
	unsigned	tmp;
	int		status = -EINVAL;

	if (!ep || !desc)
		return -EINVAL;

	musb_ep = to_musb_ep(ep);
	hw_ep = musb_ep->hw_ep;
	regs = hw_ep->regs;
	musb = musb_ep->musb;
	mbase = musb->mregs;
	epnum = musb_ep->current_epnum;

	spin_lock_irqsave(&musb->lock, flags);

	if (musb_ep->desc) {
		status = -EBUSY;
		goto fail;
	}
J
Julia Lawall 已提交
970
	musb_ep->type = usb_endpoint_type(desc);
F
Felipe Balbi 已提交
971 972

	/* check direction and (later) maxpacket size against endpoint */
J
Julia Lawall 已提交
973
	if (usb_endpoint_num(desc) != epnum)
F
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974 975 976
		goto fail;

	/* REVISIT this rules out high bandwidth periodic transfers */
977
	tmp = usb_endpoint_maxp(desc);
978 979 980 981 982 983 984 985 986
	if (tmp & ~0x07ff) {
		int ok;

		if (usb_endpoint_dir_in(desc))
			ok = musb->hb_iso_tx;
		else
			ok = musb->hb_iso_rx;

		if (!ok) {
987
			musb_dbg(musb, "no support for high bandwidth ISO");
988 989 990 991 992 993 994 995 996
			goto fail;
		}
		musb_ep->hb_mult = (tmp >> 11) & 3;
	} else {
		musb_ep->hb_mult = 0;
	}

	musb_ep->packet_sz = tmp & 0x7ff;
	tmp = musb_ep->packet_sz * (musb_ep->hb_mult + 1);
F
Felipe Balbi 已提交
997 998 999 1000 1001

	/* enable the interrupts for the endpoint, set the endpoint
	 * packet size (or fail), set the mode, clear the fifo
	 */
	musb_ep_select(mbase, epnum);
J
Julia Lawall 已提交
1002
	if (usb_endpoint_dir_in(desc)) {
F
Felipe Balbi 已提交
1003 1004 1005 1006 1007

		if (hw_ep->is_shared_fifo)
			musb_ep->is_in = 1;
		if (!musb_ep->is_in)
			goto fail;
1008 1009

		if (tmp > hw_ep->max_packet_sz_tx) {
1010
			musb_dbg(musb, "packet size beyond hardware FIFO size");
F
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1011
			goto fail;
1012
		}
F
Felipe Balbi 已提交
1013

1014 1015
		musb->intrtxe |= (1 << epnum);
		musb_writew(mbase, MUSB_INTRTXE, musb->intrtxe);
F
Felipe Balbi 已提交
1016 1017 1018 1019

		/* REVISIT if can_bulk_split(), use by updating "tmp";
		 * likewise high bandwidth periodic tx
		 */
1020
		/* Set TXMAXP with the FIFO size of the endpoint
1021
		 * to disable double buffering mode.
1022
		 */
1023
		if (musb->double_buffer_not_ok) {
1024
			musb_writew(regs, MUSB_TXMAXP, hw_ep->max_packet_sz_tx);
1025 1026 1027 1028
		} else {
			if (can_bulk_split(musb, musb_ep->type))
				musb_ep->hb_mult = (hw_ep->max_packet_sz_tx /
							musb_ep->packet_sz) - 1;
1029 1030
			musb_writew(regs, MUSB_TXMAXP, musb_ep->packet_sz
					| (musb_ep->hb_mult << 11));
1031
		}
F
Felipe Balbi 已提交
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050

		csr = MUSB_TXCSR_MODE | MUSB_TXCSR_CLRDATATOG;
		if (musb_readw(regs, MUSB_TXCSR)
				& MUSB_TXCSR_FIFONOTEMPTY)
			csr |= MUSB_TXCSR_FLUSHFIFO;
		if (musb_ep->type == USB_ENDPOINT_XFER_ISOC)
			csr |= MUSB_TXCSR_P_ISO;

		/* set twice in case of double buffering */
		musb_writew(regs, MUSB_TXCSR, csr);
		/* REVISIT may be inappropriate w/o FIFONOTEMPTY ... */
		musb_writew(regs, MUSB_TXCSR, csr);

	} else {

		if (hw_ep->is_shared_fifo)
			musb_ep->is_in = 0;
		if (musb_ep->is_in)
			goto fail;
1051 1052

		if (tmp > hw_ep->max_packet_sz_rx) {
1053
			musb_dbg(musb, "packet size beyond hardware FIFO size");
F
Felipe Balbi 已提交
1054
			goto fail;
1055
		}
F
Felipe Balbi 已提交
1056

1057 1058
		musb->intrrxe |= (1 << epnum);
		musb_writew(mbase, MUSB_INTRRXE, musb->intrrxe);
F
Felipe Balbi 已提交
1059 1060 1061 1062

		/* REVISIT if can_bulk_combine() use by updating "tmp"
		 * likewise high bandwidth periodic rx
		 */
1063 1064 1065
		/* Set RXMAXP with the FIFO size of the endpoint
		 * to disable double buffering mode.
		 */
1066 1067 1068 1069 1070
		if (musb->double_buffer_not_ok)
			musb_writew(regs, MUSB_RXMAXP, hw_ep->max_packet_sz_tx);
		else
			musb_writew(regs, MUSB_RXMAXP, musb_ep->packet_sz
					| (musb_ep->hb_mult << 11));
F
Felipe Balbi 已提交
1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102

		/* force shared fifo to OUT-only mode */
		if (hw_ep->is_shared_fifo) {
			csr = musb_readw(regs, MUSB_TXCSR);
			csr &= ~(MUSB_TXCSR_MODE | MUSB_TXCSR_TXPKTRDY);
			musb_writew(regs, MUSB_TXCSR, csr);
		}

		csr = MUSB_RXCSR_FLUSHFIFO | MUSB_RXCSR_CLRDATATOG;
		if (musb_ep->type == USB_ENDPOINT_XFER_ISOC)
			csr |= MUSB_RXCSR_P_ISO;
		else if (musb_ep->type == USB_ENDPOINT_XFER_INT)
			csr |= MUSB_RXCSR_DISNYET;

		/* set twice in case of double buffering */
		musb_writew(regs, MUSB_RXCSR, csr);
		musb_writew(regs, MUSB_RXCSR, csr);
	}

	/* NOTE:  all the I/O code _should_ work fine without DMA, in case
	 * for some reason you run out of channels here.
	 */
	if (is_dma_capable() && musb->dma_controller) {
		struct dma_controller	*c = musb->dma_controller;

		musb_ep->dma = c->channel_alloc(c, hw_ep,
				(desc->bEndpointAddress & USB_DIR_IN));
	} else
		musb_ep->dma = NULL;

	musb_ep->desc = desc;
	musb_ep->busy = 0;
1103
	musb_ep->wedged = 0;
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1104 1105 1106 1107 1108 1109 1110 1111
	status = 0;

	pr_debug("%s periph: enabled %s for %s %s, %smaxpacket %d\n",
			musb_driver_name, musb_ep->end_point.name,
			({ char *s; switch (musb_ep->type) {
			case USB_ENDPOINT_XFER_BULK:	s = "bulk"; break;
			case USB_ENDPOINT_XFER_INT:	s = "int"; break;
			default:			s = "iso"; break;
J
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1112
			} s; }),
F
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1113 1114 1115 1116
			musb_ep->is_in ? "IN" : "OUT",
			musb_ep->dma ? "dma, " : "",
			musb_ep->packet_sz);

1117
	schedule_delayed_work(&musb->irq_work, 0);
F
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1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145

fail:
	spin_unlock_irqrestore(&musb->lock, flags);
	return status;
}

/*
 * Disable an endpoint flushing all requests queued.
 */
static int musb_gadget_disable(struct usb_ep *ep)
{
	unsigned long	flags;
	struct musb	*musb;
	u8		epnum;
	struct musb_ep	*musb_ep;
	void __iomem	*epio;
	int		status = 0;

	musb_ep = to_musb_ep(ep);
	musb = musb_ep->musb;
	epnum = musb_ep->current_epnum;
	epio = musb->endpoints[epnum].regs;

	spin_lock_irqsave(&musb->lock, flags);
	musb_ep_select(musb->mregs, epnum);

	/* zero the endpoint sizes */
	if (musb_ep->is_in) {
1146 1147
		musb->intrtxe &= ~(1 << epnum);
		musb_writew(musb->mregs, MUSB_INTRTXE, musb->intrtxe);
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1148 1149
		musb_writew(epio, MUSB_TXMAXP, 0);
	} else {
1150 1151
		musb->intrrxe &= ~(1 << epnum);
		musb_writew(musb->mregs, MUSB_INTRRXE, musb->intrrxe);
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		musb_writew(epio, MUSB_RXMAXP, 0);
	}

	/* abort all pending DMA and requests */
	nuke(musb_ep, -ESHUTDOWN);

1158 1159 1160
	musb_ep->desc = NULL;
	musb_ep->end_point.desc = NULL;

1161
	schedule_delayed_work(&musb->irq_work, 0);
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1162 1163 1164

	spin_unlock_irqrestore(&(musb->lock), flags);

1165
	musb_dbg(musb, "%s", musb_ep->end_point.name);
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	return status;
}

/*
 * Allocate a request for an endpoint.
 * Reused by ep0 code.
 */
struct usb_request *musb_alloc_request(struct usb_ep *ep, gfp_t gfp_flags)
{
	struct musb_ep		*musb_ep = to_musb_ep(ep);
	struct musb_request	*request = NULL;

	request = kzalloc(sizeof *request, gfp_flags);
1180
	if (!request)
1181
		return NULL;
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1183 1184 1185 1186
	request->request.dma = DMA_ADDR_INVALID;
	request->epnum = musb_ep->current_epnum;
	request->ep = musb_ep;

1187
	trace_musb_req_alloc(request);
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	return &request->request;
}

/*
 * Free a request
 * Reused by ep0 code.
 */
void musb_free_request(struct usb_ep *ep, struct usb_request *req)
{
1197 1198 1199 1200
	struct musb_request *request = to_musb_request(req);

	trace_musb_req_free(request);
	kfree(request);
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}

static LIST_HEAD(buffers);

struct free_record {
	struct list_head	list;
	struct device		*dev;
	unsigned		bytes;
	dma_addr_t		dma;
};

/*
 * Context: controller locked, IRQs blocked.
 */
1215
void musb_ep_restart(struct musb *musb, struct musb_request *req)
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{
1217
	trace_musb_req_start(req);
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	musb_ep_select(musb->mregs, req->epnum);
	if (req->tx)
		txstate(musb, req);
	else
		rxstate(musb, req);
}

1225 1226 1227 1228 1229 1230 1231 1232 1233
static int musb_ep_restart_resume_work(struct musb *musb, void *data)
{
	struct musb_request *req = data;

	musb_ep_restart(musb, req);

	return 0;
}

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static int musb_gadget_queue(struct usb_ep *ep, struct usb_request *req,
			gfp_t gfp_flags)
{
	struct musb_ep		*musb_ep;
	struct musb_request	*request;
	struct musb		*musb;
1240
	int			status;
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	unsigned long		lockflags;

	if (!ep || !req)
		return -EINVAL;
	if (!req->buf)
		return -ENODATA;

	musb_ep = to_musb_ep(ep);
	musb = musb_ep->musb;

	request = to_musb_request(req);
	request->musb = musb;

	if (request->ep != musb_ep)
		return -EINVAL;

1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267
	status = pm_runtime_get(musb->controller);
	if ((status != -EINPROGRESS) && status < 0) {
		dev_err(musb->controller,
			"pm runtime get failed in %s\n",
			__func__);
		pm_runtime_put_noidle(musb->controller);

		return status;
	}
	status = 0;

1268
	trace_musb_req_enq(request);
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	/* request is mine now... */
	request->request.actual = 0;
	request->request.status = -EINPROGRESS;
	request->epnum = musb_ep->current_epnum;
	request->tx = musb_ep->is_in;

1276
	map_dma_buffer(request, musb, musb_ep);
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1277 1278 1279 1280 1281

	spin_lock_irqsave(&musb->lock, lockflags);

	/* don't queue if the ep is down */
	if (!musb_ep->desc) {
1282
		musb_dbg(musb, "req %p queued to %s while ep %s",
F
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				req, ep->name, "disabled");
		status = -ESHUTDOWN;
1285 1286
		unmap_dma_buffer(request, musb);
		goto unlock;
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1287 1288 1289
	}

	/* add request to the list */
1290
	list_add_tail(&request->list, &musb_ep->req_list);
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1291 1292

	/* it this is the head of the queue, start i/o ... */
1293 1294 1295 1296 1297 1298 1299 1300
	if (!musb_ep->busy && &request->list == musb_ep->req_list.next) {
		status = musb_queue_resume_work(musb,
						musb_ep_restart_resume_work,
						request);
		if (status < 0)
			dev_err(musb->controller, "%s resume work: %i\n",
				__func__, status);
	}
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1302
unlock:
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	spin_unlock_irqrestore(&musb->lock, lockflags);
1304 1305 1306
	pm_runtime_mark_last_busy(musb->controller);
	pm_runtime_put_autosuspend(musb->controller);

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	return status;
}

static int musb_gadget_dequeue(struct usb_ep *ep, struct usb_request *request)
{
	struct musb_ep		*musb_ep = to_musb_ep(ep);
1313 1314
	struct musb_request	*req = to_musb_request(request);
	struct musb_request	*r;
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	unsigned long		flags;
	int			status = 0;
	struct musb		*musb = musb_ep->musb;

1319
	if (!ep || !request || req->ep != musb_ep)
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		return -EINVAL;

1322 1323
	trace_musb_req_deq(req);

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	spin_lock_irqsave(&musb->lock, flags);

	list_for_each_entry(r, &musb_ep->req_list, list) {
1327
		if (r == req)
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			break;
	}
1330
	if (r != req) {
1331 1332
		dev_err(musb->controller, "request %p not queued to %s\n",
				request, ep->name);
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		status = -EINVAL;
		goto done;
	}

	/* if the hardware doesn't have the request, easy ... */
1338
	if (musb_ep->req_list.next != &req->list || musb_ep->busy)
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		musb_g_giveback(musb_ep, request, -ECONNRESET);

	/* ... else abort the dma transfer ... */
	else if (is_dma_capable() && musb_ep->dma) {
		struct dma_controller	*c = musb->dma_controller;

		musb_ep_select(musb->mregs, musb_ep->current_epnum);
		if (c->channel_abort)
			status = c->channel_abort(musb_ep->dma);
		else
			status = -EBUSY;
		if (status == 0)
			musb_g_giveback(musb_ep, request, -ECONNRESET);
	} else {
		/* NOTE: by sticking to easily tested hardware/driver states,
		 * we leave counting of in-flight packets imprecise.
		 */
		musb_g_giveback(musb_ep, request, -ECONNRESET);
	}

done:
	spin_unlock_irqrestore(&musb->lock, flags);
	return status;
}

/*
 * Set or clear the halt bit of an endpoint. A halted enpoint won't tx/rx any
 * data but will queue requests.
 *
 * exported to ep0 code
 */
1370
static int musb_gadget_set_halt(struct usb_ep *ep, int value)
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{
	struct musb_ep		*musb_ep = to_musb_ep(ep);
	u8			epnum = musb_ep->current_epnum;
	struct musb		*musb = musb_ep->musb;
	void __iomem		*epio = musb->endpoints[epnum].regs;
	void __iomem		*mbase;
	unsigned long		flags;
	u16			csr;
1379
	struct musb_request	*request;
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	int			status = 0;

	if (!ep)
		return -EINVAL;
	mbase = musb->mregs;

	spin_lock_irqsave(&musb->lock, flags);

	if ((USB_ENDPOINT_XFER_ISOC == musb_ep->type)) {
		status = -EINVAL;
		goto done;
	}

	musb_ep_select(mbase, epnum);

1395
	request = next_request(musb_ep);
1396 1397
	if (value) {
		if (request) {
1398
			musb_dbg(musb, "request in progress, cannot halt %s",
1399 1400 1401 1402 1403 1404 1405 1406
			    ep->name);
			status = -EAGAIN;
			goto done;
		}
		/* Cannot portably stall with non-empty FIFO */
		if (musb_ep->is_in) {
			csr = musb_readw(epio, MUSB_TXCSR);
			if (csr & MUSB_TXCSR_FIFONOTEMPTY) {
1407 1408
				musb_dbg(musb, "FIFO busy, cannot halt %s",
						ep->name);
1409 1410 1411
				status = -EAGAIN;
				goto done;
			}
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		}
1413 1414
	} else
		musb_ep->wedged = 0;
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1415 1416

	/* set/clear the stall and toggle bits */
1417
	musb_dbg(musb, "%s: %s stall", ep->name, value ? "set" : "clear");
F
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1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443
	if (musb_ep->is_in) {
		csr = musb_readw(epio, MUSB_TXCSR);
		csr |= MUSB_TXCSR_P_WZC_BITS
			| MUSB_TXCSR_CLRDATATOG;
		if (value)
			csr |= MUSB_TXCSR_P_SENDSTALL;
		else
			csr &= ~(MUSB_TXCSR_P_SENDSTALL
				| MUSB_TXCSR_P_SENTSTALL);
		csr &= ~MUSB_TXCSR_TXPKTRDY;
		musb_writew(epio, MUSB_TXCSR, csr);
	} else {
		csr = musb_readw(epio, MUSB_RXCSR);
		csr |= MUSB_RXCSR_P_WZC_BITS
			| MUSB_RXCSR_FLUSHFIFO
			| MUSB_RXCSR_CLRDATATOG;
		if (value)
			csr |= MUSB_RXCSR_P_SENDSTALL;
		else
			csr &= ~(MUSB_RXCSR_P_SENDSTALL
				| MUSB_RXCSR_P_SENTSTALL);
		musb_writew(epio, MUSB_RXCSR, csr);
	}

	/* maybe start the first request in the queue */
	if (!musb_ep->busy && !value && request) {
1444
		musb_dbg(musb, "restarting the request");
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1445 1446 1447
		musb_ep_restart(musb, request);
	}

1448
done:
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1449 1450 1451 1452
	spin_unlock_irqrestore(&musb->lock, flags);
	return status;
}

1453 1454 1455
/*
 * Sets the halt feature with the clear requests ignored
 */
1456
static int musb_gadget_set_wedge(struct usb_ep *ep)
1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467
{
	struct musb_ep		*musb_ep = to_musb_ep(ep);

	if (!ep)
		return -EINVAL;

	musb_ep->wedged = 1;

	return usb_ep_set_halt(ep);
}

F
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1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498
static int musb_gadget_fifo_status(struct usb_ep *ep)
{
	struct musb_ep		*musb_ep = to_musb_ep(ep);
	void __iomem		*epio = musb_ep->hw_ep->regs;
	int			retval = -EINVAL;

	if (musb_ep->desc && !musb_ep->is_in) {
		struct musb		*musb = musb_ep->musb;
		int			epnum = musb_ep->current_epnum;
		void __iomem		*mbase = musb->mregs;
		unsigned long		flags;

		spin_lock_irqsave(&musb->lock, flags);

		musb_ep_select(mbase, epnum);
		/* FIXME return zero unless RXPKTRDY is set */
		retval = musb_readw(epio, MUSB_RXCOUNT);

		spin_unlock_irqrestore(&musb->lock, flags);
	}
	return retval;
}

static void musb_gadget_fifo_flush(struct usb_ep *ep)
{
	struct musb_ep	*musb_ep = to_musb_ep(ep);
	struct musb	*musb = musb_ep->musb;
	u8		epnum = musb_ep->current_epnum;
	void __iomem	*epio = musb->endpoints[epnum].regs;
	void __iomem	*mbase;
	unsigned long	flags;
1499
	u16		csr;
F
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1500 1501 1502 1503 1504 1505 1506

	mbase = musb->mregs;

	spin_lock_irqsave(&musb->lock, flags);
	musb_ep_select(mbase, (u8) epnum);

	/* disable interrupts */
1507
	musb_writew(mbase, MUSB_INTRTXE, musb->intrtxe & ~(1 << epnum));
F
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1508 1509 1510 1511 1512

	if (musb_ep->is_in) {
		csr = musb_readw(epio, MUSB_TXCSR);
		if (csr & MUSB_TXCSR_FIFONOTEMPTY) {
			csr |= MUSB_TXCSR_FLUSHFIFO | MUSB_TXCSR_P_WZC_BITS;
1513 1514 1515 1516 1517 1518
			/*
			 * Setting both TXPKTRDY and FLUSHFIFO makes controller
			 * to interrupt current FIFO loading, but not flushing
			 * the already loaded ones.
			 */
			csr &= ~MUSB_TXCSR_TXPKTRDY;
F
Felipe Balbi 已提交
1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530
			musb_writew(epio, MUSB_TXCSR, csr);
			/* REVISIT may be inappropriate w/o FIFONOTEMPTY ... */
			musb_writew(epio, MUSB_TXCSR, csr);
		}
	} else {
		csr = musb_readw(epio, MUSB_RXCSR);
		csr |= MUSB_RXCSR_FLUSHFIFO | MUSB_RXCSR_P_WZC_BITS;
		musb_writew(epio, MUSB_RXCSR, csr);
		musb_writew(epio, MUSB_RXCSR, csr);
	}

	/* re-enable interrupt */
1531
	musb_writew(mbase, MUSB_INTRTXE, musb->intrtxe);
F
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1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542
	spin_unlock_irqrestore(&musb->lock, flags);
}

static const struct usb_ep_ops musb_ep_ops = {
	.enable		= musb_gadget_enable,
	.disable	= musb_gadget_disable,
	.alloc_request	= musb_alloc_request,
	.free_request	= musb_free_request,
	.queue		= musb_gadget_queue,
	.dequeue	= musb_gadget_dequeue,
	.set_halt	= musb_gadget_set_halt,
1543
	.set_wedge	= musb_gadget_set_wedge,
F
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1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567
	.fifo_status	= musb_gadget_fifo_status,
	.fifo_flush	= musb_gadget_fifo_flush
};

/* ----------------------------------------------------------------------- */

static int musb_gadget_get_frame(struct usb_gadget *gadget)
{
	struct musb	*musb = gadget_to_musb(gadget);

	return (int)musb_readw(musb->mregs, MUSB_FRAME);
}

static int musb_gadget_wakeup(struct usb_gadget *gadget)
{
	struct musb	*musb = gadget_to_musb(gadget);
	void __iomem	*mregs = musb->mregs;
	unsigned long	flags;
	int		status = -EINVAL;
	u8		power, devctl;
	int		retries;

	spin_lock_irqsave(&musb->lock, flags);

1568
	switch (musb->xceiv->otg->state) {
F
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1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579
	case OTG_STATE_B_PERIPHERAL:
		/* NOTE:  OTG state machine doesn't include B_SUSPENDED;
		 * that's part of the standard usb 1.1 state machine, and
		 * doesn't affect OTG transitions.
		 */
		if (musb->may_wakeup && musb->is_suspended)
			break;
		goto done;
	case OTG_STATE_B_IDLE:
		/* Start SRP ... OTG not required. */
		devctl = musb_readb(mregs, MUSB_DEVCTL);
1580
		musb_dbg(musb, "Sending SRP: devctl: %02x", devctl);
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1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596
		devctl |= MUSB_DEVCTL_SESSION;
		musb_writeb(mregs, MUSB_DEVCTL, devctl);
		devctl = musb_readb(mregs, MUSB_DEVCTL);
		retries = 100;
		while (!(devctl & MUSB_DEVCTL_SESSION)) {
			devctl = musb_readb(mregs, MUSB_DEVCTL);
			if (retries-- < 1)
				break;
		}
		retries = 10000;
		while (devctl & MUSB_DEVCTL_SESSION) {
			devctl = musb_readb(mregs, MUSB_DEVCTL);
			if (retries-- < 1)
				break;
		}

1597
		spin_unlock_irqrestore(&musb->lock, flags);
1598
		otg_start_srp(musb->xceiv->otg);
1599 1600
		spin_lock_irqsave(&musb->lock, flags);

F
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1601 1602 1603 1604 1605 1606 1607
		/* Block idling for at least 1s */
		musb_platform_try_idle(musb,
			jiffies + msecs_to_jiffies(1 * HZ));

		status = 0;
		goto done;
	default:
1608
		musb_dbg(musb, "Unhandled wake: %s",
1609
			usb_otg_state_string(musb->xceiv->otg->state));
F
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1610 1611 1612 1613 1614 1615 1616 1617
		goto done;
	}

	status = 0;

	power = musb_readb(mregs, MUSB_POWER);
	power |= MUSB_POWER_RESUME;
	musb_writeb(mregs, MUSB_POWER, power);
1618
	musb_dbg(musb, "issue wakeup");
F
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1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633

	/* FIXME do this next chunk in a timer callback, no udelay */
	mdelay(2);

	power = musb_readb(mregs, MUSB_POWER);
	power &= ~MUSB_POWER_RESUME;
	musb_writeb(mregs, MUSB_POWER, power);
done:
	spin_unlock_irqrestore(&musb->lock, flags);
	return status;
}

static int
musb_gadget_set_self_powered(struct usb_gadget *gadget, int is_selfpowered)
{
1634
	gadget->is_selfpowered = !!is_selfpowered;
F
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1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649
	return 0;
}

static void musb_pullup(struct musb *musb, int is_on)
{
	u8 power;

	power = musb_readb(musb->mregs, MUSB_POWER);
	if (is_on)
		power |= MUSB_POWER_SOFTCONN;
	else
		power &= ~MUSB_POWER_SOFTCONN;

	/* FIXME if on, HdrcStart; if off, HdrcStop */

1650
	musb_dbg(musb, "gadget D+ pullup %s",
1651
		is_on ? "on" : "off");
F
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1652 1653 1654 1655 1656 1657
	musb_writeb(musb->mregs, MUSB_POWER, power);
}

#if 0
static int musb_gadget_vbus_session(struct usb_gadget *gadget, int is_active)
{
1658
	musb_dbg(musb, "<= %s =>\n", __func__);
F
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1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672

	/*
	 * FIXME iff driver's softconnect flag is set (as it is during probe,
	 * though that can clear it), just musb_pullup().
	 */

	return -EINVAL;
}
#endif

static int musb_gadget_vbus_draw(struct usb_gadget *gadget, unsigned mA)
{
	struct musb	*musb = gadget_to_musb(gadget);

1673
	if (!musb->xceiv->set_power)
F
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1674
		return -EOPNOTSUPP;
1675
	return usb_phy_set_power(musb->xceiv, mA);
F
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1676 1677
}

1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691
static void musb_gadget_work(struct work_struct *work)
{
	struct musb *musb;
	unsigned long flags;

	musb = container_of(work, struct musb, gadget_work.work);
	pm_runtime_get_sync(musb->controller);
	spin_lock_irqsave(&musb->lock, flags);
	musb_pullup(musb, musb->softconnect);
	spin_unlock_irqrestore(&musb->lock, flags);
	pm_runtime_mark_last_busy(musb->controller);
	pm_runtime_put_autosuspend(musb->controller);
}

F
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1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704
static int musb_gadget_pullup(struct usb_gadget *gadget, int is_on)
{
	struct musb	*musb = gadget_to_musb(gadget);
	unsigned long	flags;

	is_on = !!is_on;

	/* NOTE: this assumes we are sensing vbus; we'd rather
	 * not pullup unless the B-session is active.
	 */
	spin_lock_irqsave(&musb->lock, flags);
	if (is_on != musb->softconnect) {
		musb->softconnect = is_on;
1705
		schedule_delayed_work(&musb->gadget_work, 0);
F
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	}
	spin_unlock_irqrestore(&musb->lock, flags);
1708

F
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1709 1710 1711
	return 0;
}

1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733
#ifdef CONFIG_BLACKFIN
static struct usb_ep *musb_match_ep(struct usb_gadget *g,
		struct usb_endpoint_descriptor *desc,
		struct usb_ss_ep_comp_descriptor *ep_comp)
{
	struct usb_ep *ep = NULL;

	switch (usb_endpoint_type(desc)) {
	case USB_ENDPOINT_XFER_ISOC:
	case USB_ENDPOINT_XFER_BULK:
		if (usb_endpoint_dir_in(desc))
			ep = gadget_find_ep_by_name(g, "ep5in");
		else
			ep = gadget_find_ep_by_name(g, "ep6out");
		break;
	case USB_ENDPOINT_XFER_INT:
		if (usb_endpoint_dir_in(desc))
			ep = gadget_find_ep_by_name(g, "ep1in");
		else
			ep = gadget_find_ep_by_name(g, "ep2out");
		break;
	default:
1734
		break;
1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745
	}

	if (ep && usb_gadget_ep_match_desc(g, ep, desc, ep_comp))
		return ep;

	return NULL;
}
#else
#define musb_match_ep NULL
#endif

1746 1747
static int musb_gadget_start(struct usb_gadget *g,
		struct usb_gadget_driver *driver);
1748
static int musb_gadget_stop(struct usb_gadget *g);
1749

F
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1750 1751 1752 1753 1754 1755 1756
static const struct usb_gadget_ops musb_gadget_operations = {
	.get_frame		= musb_gadget_get_frame,
	.wakeup			= musb_gadget_wakeup,
	.set_selfpowered	= musb_gadget_set_self_powered,
	/* .vbus_session		= musb_gadget_vbus_session, */
	.vbus_draw		= musb_gadget_vbus_draw,
	.pullup			= musb_gadget_pullup,
1757 1758
	.udc_start		= musb_gadget_start,
	.udc_stop		= musb_gadget_stop,
1759
	.match_ep		= musb_match_ep,
F
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};

/* ----------------------------------------------------------------------- */

/* Registration */

/* Only this registration code "knows" the rule (from USB standards)
 * about there being only one external upstream port.  It assumes
 * all peripheral ports are external...
 */

B
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1771
static void
F
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1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790
init_peripheral_ep(struct musb *musb, struct musb_ep *ep, u8 epnum, int is_in)
{
	struct musb_hw_ep	*hw_ep = musb->endpoints + epnum;

	memset(ep, 0, sizeof *ep);

	ep->current_epnum = epnum;
	ep->musb = musb;
	ep->hw_ep = hw_ep;
	ep->is_in = is_in;

	INIT_LIST_HEAD(&ep->req_list);

	sprintf(ep->name, "ep%d%s", epnum,
			(!epnum || hw_ep->is_shared_fifo) ? "" : (
				is_in ? "in" : "out"));
	ep->end_point.name = ep->name;
	INIT_LIST_HEAD(&ep->end_point.ep_list);
	if (!epnum) {
1791
		usb_ep_set_maxpacket_limit(&ep->end_point, 64);
1792
		ep->end_point.caps.type_control = true;
F
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1793 1794 1795 1796
		ep->end_point.ops = &musb_g_ep0_ops;
		musb->g.ep0 = &ep->end_point;
	} else {
		if (is_in)
1797
			usb_ep_set_maxpacket_limit(&ep->end_point, hw_ep->max_packet_sz_tx);
F
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1798
		else
1799
			usb_ep_set_maxpacket_limit(&ep->end_point, hw_ep->max_packet_sz_rx);
1800 1801 1802
		ep->end_point.caps.type_iso = true;
		ep->end_point.caps.type_bulk = true;
		ep->end_point.caps.type_int = true;
F
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1803 1804 1805
		ep->end_point.ops = &musb_ep_ops;
		list_add_tail(&ep->end_point.ep_list, &musb->g.ep_list);
	}
1806 1807 1808 1809 1810 1811 1812 1813

	if (!epnum || hw_ep->is_shared_fifo) {
		ep->end_point.caps.dir_in = true;
		ep->end_point.caps.dir_out = true;
	} else if (is_in)
		ep->end_point.caps.dir_in = true;
	else
		ep->end_point.caps.dir_out = true;
F
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1814 1815 1816 1817 1818 1819
}

/*
 * Initialize the endpoints exposed to peripheral drivers, with backlinks
 * to the rest of the driver state.
 */
B
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1820
static inline void musb_g_init_endpoints(struct musb *musb)
F
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1821 1822 1823 1824 1825
{
	u8			epnum;
	struct musb_hw_ep	*hw_ep;
	unsigned		count = 0;

1826
	/* initialize endpoint list just once */
F
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1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852
	INIT_LIST_HEAD(&(musb->g.ep_list));

	for (epnum = 0, hw_ep = musb->endpoints;
			epnum < musb->nr_endpoints;
			epnum++, hw_ep++) {
		if (hw_ep->is_shared_fifo /* || !epnum */) {
			init_peripheral_ep(musb, &hw_ep->ep_in, epnum, 0);
			count++;
		} else {
			if (hw_ep->max_packet_sz_tx) {
				init_peripheral_ep(musb, &hw_ep->ep_in,
							epnum, 1);
				count++;
			}
			if (hw_ep->max_packet_sz_rx) {
				init_peripheral_ep(musb, &hw_ep->ep_out,
							epnum, 0);
				count++;
			}
		}
	}
}

/* called once during driver setup to initialize and link into
 * the driver model; memory is zeroed.
 */
B
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1853
int musb_gadget_setup(struct musb *musb)
F
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1854 1855 1856 1857 1858 1859 1860 1861 1862
{
	int status;

	/* REVISIT minor race:  if (erroneously) setting up two
	 * musb peripherals at the same time, only the bus lock
	 * is probably held.
	 */

	musb->g.ops = &musb_gadget_operations;
1863
	musb->g.max_speed = USB_SPEED_HIGH;
F
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1864 1865
	musb->g.speed = USB_SPEED_UNKNOWN;

B
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1866 1867
	MUSB_DEV_MODE(musb);
	musb->xceiv->otg->default_a = 0;
1868
	musb->xceiv->otg->state = OTG_STATE_B_IDLE;
B
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1869

F
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1870 1871
	/* this "gadget" abstracts/virtualizes the controller */
	musb->g.name = musb_driver_name;
1872
#if IS_ENABLED(CONFIG_USB_MUSB_DUAL_ROLE)
1873
	musb->g.is_otg = 1;
1874 1875 1876
#elif IS_ENABLED(CONFIG_USB_MUSB_GADGET)
	musb->g.is_otg = 0;
#endif
1877
	INIT_DELAYED_WORK(&musb->gadget_work, musb_gadget_work);
F
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1878 1879 1880 1881 1882
	musb_g_init_endpoints(musb);

	musb->is_active = 0;
	musb_platform_try_idle(musb, 0);

1883 1884 1885 1886 1887 1888
	status = usb_add_gadget_udc(musb->controller, &musb->g);
	if (status)
		goto err;

	return 0;
err:
1889
	musb->g.dev.parent = NULL;
1890
	device_unregister(&musb->g.dev);
F
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1891 1892 1893 1894 1895
	return status;
}

void musb_gadget_cleanup(struct musb *musb)
{
1896 1897
	if (musb->port_mode == MUSB_PORT_MODE_HOST)
		return;
1898 1899

	cancel_delayed_work_sync(&musb->gadget_work);
1900
	usb_del_gadget_udc(&musb->g);
F
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1901 1902 1903 1904 1905 1906 1907 1908
}

/*
 * Register the gadget driver. Used by gadget drivers when
 * registering themselves with the controller.
 *
 * -EINVAL something went wrong (not driver)
 * -EBUSY another gadget is already using the controller
1909
 * -ENOMEM no memory to perform the operation
F
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1910 1911 1912 1913
 *
 * @param driver the gadget driver
 * @return <0 if error, 0 if everything is fine
 */
1914 1915
static int musb_gadget_start(struct usb_gadget *g,
		struct usb_gadget_driver *driver)
F
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1916
{
1917
	struct musb		*musb = gadget_to_musb(g);
1918
	struct usb_otg		*otg = musb->xceiv->otg;
1919
	unsigned long		flags;
1920
	int			retval = 0;
F
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1921

1922 1923 1924 1925
	if (driver->max_speed < USB_SPEED_HIGH) {
		retval = -EINVAL;
		goto err;
	}
F
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1926

1927 1928
	pm_runtime_get_sync(musb->controller);

1929
	musb->softconnect = 0;
1930
	musb->gadget_driver = driver;
F
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1931

1932
	spin_lock_irqsave(&musb->lock, flags);
1933
	musb->is_active = 1;
F
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1934

1935
	otg_set_peripheral(otg, &musb->g);
1936
	musb->xceiv->otg->state = OTG_STATE_B_IDLE;
1937
	spin_unlock_irqrestore(&musb->lock, flags);
F
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1938

1939 1940
	musb_start(musb);

1941 1942 1943 1944
	/* REVISIT:  funcall to other code, which also
	 * handles power budgeting ... this way also
	 * ensures HdrcStart is indirectly called.
	 */
1945 1946
	if (musb->xceiv->last_event == USB_EVENT_ID)
		musb_platform_set_vbus(musb, 1);
1947

1948 1949
	pm_runtime_mark_last_busy(musb->controller);
	pm_runtime_put_autosuspend(musb->controller);
F
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1950

1951 1952
	return 0;

1953
err:
F
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1954 1955 1956 1957 1958 1959 1960 1961 1962
	return retval;
}

/*
 * Unregister the gadget driver. Used by gadget drivers when
 * unregistering themselves from the controller.
 *
 * @param driver the gadget driver to unregister
 */
1963
static int musb_gadget_stop(struct usb_gadget *g)
F
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1964
{
1965
	struct musb	*musb = gadget_to_musb(g);
1966
	unsigned long	flags;
F
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1967

1968
	pm_runtime_get_sync(musb->controller);
1969

1970 1971
	/*
	 * REVISIT always use otg_set_peripheral() here too;
F
Felipe Balbi 已提交
1972 1973 1974 1975 1976 1977 1978
	 * this needs to shut down the OTG engine.
	 */

	spin_lock_irqsave(&musb->lock, flags);

	musb_hnp_stop(musb);

1979
	(void) musb_gadget_vbus_draw(&musb->g, 0);
F
Felipe Balbi 已提交
1980

1981
	musb->xceiv->otg->state = OTG_STATE_UNDEFINED;
1982
	musb_stop(musb);
1983
	otg_set_peripheral(musb->xceiv->otg, NULL);
F
Felipe Balbi 已提交
1984

1985
	musb->is_active = 0;
1986
	musb->gadget_driver = NULL;
1987
	musb_platform_try_idle(musb, 0);
F
Felipe Balbi 已提交
1988 1989
	spin_unlock_irqrestore(&musb->lock, flags);

1990 1991 1992 1993 1994
	/*
	 * FIXME we need to be able to register another
	 * gadget driver here and have everything work;
	 * that currently misbehaves.
	 */
1995

1996
	/* Force check of devctl register for PM runtime */
1997
	schedule_delayed_work(&musb->irq_work, 0);
1998

1999 2000
	pm_runtime_mark_last_busy(musb->controller);
	pm_runtime_put_autosuspend(musb->controller);
2001

2002
	return 0;
F
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2003 2004 2005 2006 2007 2008 2009 2010 2011
}

/* ----------------------------------------------------------------------- */

/* lifecycle operations called through plat_uds.c */

void musb_g_resume(struct musb *musb)
{
	musb->is_suspended = 0;
2012
	switch (musb->xceiv->otg->state) {
F
Felipe Balbi 已提交
2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025
	case OTG_STATE_B_IDLE:
		break;
	case OTG_STATE_B_WAIT_ACON:
	case OTG_STATE_B_PERIPHERAL:
		musb->is_active = 1;
		if (musb->gadget_driver && musb->gadget_driver->resume) {
			spin_unlock(&musb->lock);
			musb->gadget_driver->resume(&musb->g);
			spin_lock(&musb->lock);
		}
		break;
	default:
		WARNING("unhandled RESUME transition (%s)\n",
2026
				usb_otg_state_string(musb->xceiv->otg->state));
F
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2027 2028 2029 2030 2031 2032 2033 2034 2035
	}
}

/* called when SOF packets stop for 3+ msec */
void musb_g_suspend(struct musb *musb)
{
	u8	devctl;

	devctl = musb_readb(musb->mregs, MUSB_DEVCTL);
2036
	musb_dbg(musb, "musb_g_suspend: devctl %02x", devctl);
F
Felipe Balbi 已提交
2037

2038
	switch (musb->xceiv->otg->state) {
F
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2039 2040
	case OTG_STATE_B_IDLE:
		if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS)
2041
			musb->xceiv->otg->state = OTG_STATE_B_PERIPHERAL;
F
Felipe Balbi 已提交
2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054
		break;
	case OTG_STATE_B_PERIPHERAL:
		musb->is_suspended = 1;
		if (musb->gadget_driver && musb->gadget_driver->suspend) {
			spin_unlock(&musb->lock);
			musb->gadget_driver->suspend(&musb->g);
			spin_lock(&musb->lock);
		}
		break;
	default:
		/* REVISIT if B_HOST, clear DEVCTL.HOSTREQ;
		 * A_PERIPHERAL may need care too
		 */
2055
		WARNING("unhandled SUSPEND transition (%s)",
2056
				usb_otg_state_string(musb->xceiv->otg->state));
F
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2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071
	}
}

/* Called during SRP */
void musb_g_wakeup(struct musb *musb)
{
	musb_gadget_wakeup(&musb->g);
}

/* called when VBUS drops below session threshold, and in other cases */
void musb_g_disconnect(struct musb *musb)
{
	void __iomem	*mregs = musb->mregs;
	u8	devctl = musb_readb(mregs, MUSB_DEVCTL);

2072
	musb_dbg(musb, "musb_g_disconnect: devctl %02x", devctl);
F
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2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086

	/* clear HR */
	musb_writeb(mregs, MUSB_DEVCTL, devctl & MUSB_DEVCTL_SESSION);

	/* don't draw vbus until new b-default session */
	(void) musb_gadget_vbus_draw(&musb->g, 0);

	musb->g.speed = USB_SPEED_UNKNOWN;
	if (musb->gadget_driver && musb->gadget_driver->disconnect) {
		spin_unlock(&musb->lock);
		musb->gadget_driver->disconnect(&musb->g);
		spin_lock(&musb->lock);
	}

2087
	switch (musb->xceiv->otg->state) {
F
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2088
	default:
2089
		musb_dbg(musb, "Unhandled disconnect %s, setting a_idle",
2090 2091
			usb_otg_state_string(musb->xceiv->otg->state));
		musb->xceiv->otg->state = OTG_STATE_A_IDLE;
2092
		MUSB_HST_MODE(musb);
F
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2093 2094
		break;
	case OTG_STATE_A_PERIPHERAL:
2095
		musb->xceiv->otg->state = OTG_STATE_A_WAIT_BCON;
2096
		MUSB_HST_MODE(musb);
F
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2097 2098 2099 2100 2101
		break;
	case OTG_STATE_B_WAIT_ACON:
	case OTG_STATE_B_HOST:
	case OTG_STATE_B_PERIPHERAL:
	case OTG_STATE_B_IDLE:
2102
		musb->xceiv->otg->state = OTG_STATE_B_IDLE;
F
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2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118
		break;
	case OTG_STATE_B_SRP_INIT:
		break;
	}

	musb->is_active = 0;
}

void musb_g_reset(struct musb *musb)
__releases(musb->lock)
__acquires(musb->lock)
{
	void __iomem	*mbase = musb->mregs;
	u8		devctl = musb_readb(mbase, MUSB_DEVCTL);
	u8		power;

2119
	musb_dbg(musb, "<== %s driver '%s'",
F
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2120 2121 2122 2123 2124 2125 2126
			(devctl & MUSB_DEVCTL_BDEVICE)
				? "B-Device" : "A-Device",
			musb->gadget_driver
				? musb->gadget_driver->driver.name
				: NULL
			);

2127 2128 2129 2130 2131 2132
	/* report reset, if we didn't already (flushing EP state) */
	if (musb->gadget_driver && musb->g.speed != USB_SPEED_UNKNOWN) {
		spin_unlock(&musb->lock);
		usb_gadget_udc_reset(&musb->g, musb->gadget_driver);
		spin_lock(&musb->lock);
	}
F
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2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154

	/* clear HR */
	else if (devctl & MUSB_DEVCTL_HR)
		musb_writeb(mbase, MUSB_DEVCTL, MUSB_DEVCTL_SESSION);


	/* what speed did we negotiate? */
	power = musb_readb(mbase, MUSB_POWER);
	musb->g.speed = (power & MUSB_POWER_HSMODE)
			? USB_SPEED_HIGH : USB_SPEED_FULL;

	/* start in USB_STATE_DEFAULT */
	musb->is_active = 1;
	musb->is_suspended = 0;
	MUSB_DEV_MODE(musb);
	musb->address = 0;
	musb->ep0_state = MUSB_EP0_STAGE_SETUP;

	musb->may_wakeup = 0;
	musb->g.b_hnp_enable = 0;
	musb->g.a_alt_hnp_support = 0;
	musb->g.a_hnp_support = 0;
2155
	musb->g.quirk_zlp_not_supp = 1;
F
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2156 2157 2158 2159

	/* Normal reset, as B-Device;
	 * or else after HNP, as A-Device
	 */
2160 2161 2162 2163 2164 2165
	if (!musb->g.is_otg) {
		/* USB device controllers that are not OTG compatible
		 * may not have DEVCTL register in silicon.
		 * In that case, do not rely on devctl for setting
		 * peripheral mode.
		 */
2166
		musb->xceiv->otg->state = OTG_STATE_B_PERIPHERAL;
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		musb->g.is_a_peripheral = 0;
	} else if (devctl & MUSB_DEVCTL_BDEVICE) {
2169
		musb->xceiv->otg->state = OTG_STATE_B_PERIPHERAL;
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		musb->g.is_a_peripheral = 0;
2171
	} else {
2172
		musb->xceiv->otg->state = OTG_STATE_A_PERIPHERAL;
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		musb->g.is_a_peripheral = 1;
2174
	}
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	/* start with default limits on VBUS power draw */
2177
	(void) musb_gadget_vbus_draw(&musb->g, 8);
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}