xref: /openbmc/linux/drivers/usb/musb/musb_gadget.c (revision e75df37165c639b06213ec88b4763c3e50a7f079)
1550a7375SFelipe Balbi /*
2550a7375SFelipe Balbi  * MUSB OTG driver peripheral support
3550a7375SFelipe Balbi  *
4550a7375SFelipe Balbi  * Copyright 2005 Mentor Graphics Corporation
5550a7375SFelipe Balbi  * Copyright (C) 2005-2006 by Texas Instruments
6550a7375SFelipe Balbi  * Copyright (C) 2006-2007 Nokia Corporation
7cea83241SSergei Shtylyov  * Copyright (C) 2009 MontaVista Software, Inc. <source@mvista.com>
8550a7375SFelipe Balbi  *
9550a7375SFelipe Balbi  * This program is free software; you can redistribute it and/or
10550a7375SFelipe Balbi  * modify it under the terms of the GNU General Public License
11550a7375SFelipe Balbi  * version 2 as published by the Free Software Foundation.
12550a7375SFelipe Balbi  *
13550a7375SFelipe Balbi  * This program is distributed in the hope that it will be useful, but
14550a7375SFelipe Balbi  * WITHOUT ANY WARRANTY; without even the implied warranty of
15550a7375SFelipe Balbi  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
16550a7375SFelipe Balbi  * General Public License for more details.
17550a7375SFelipe Balbi  *
18550a7375SFelipe Balbi  * You should have received a copy of the GNU General Public License
19550a7375SFelipe Balbi  * along with this program; if not, write to the Free Software
20550a7375SFelipe Balbi  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
21550a7375SFelipe Balbi  * 02110-1301 USA
22550a7375SFelipe Balbi  *
23550a7375SFelipe Balbi  * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
24550a7375SFelipe Balbi  * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
25550a7375SFelipe Balbi  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  IN
26550a7375SFelipe Balbi  * NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
27550a7375SFelipe Balbi  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28550a7375SFelipe Balbi  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
29550a7375SFelipe Balbi  * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
30550a7375SFelipe Balbi  * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31550a7375SFelipe Balbi  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32550a7375SFelipe Balbi  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33550a7375SFelipe Balbi  *
34550a7375SFelipe Balbi  */
35550a7375SFelipe Balbi 
36550a7375SFelipe Balbi #include <linux/kernel.h>
37550a7375SFelipe Balbi #include <linux/list.h>
38550a7375SFelipe Balbi #include <linux/timer.h>
39550a7375SFelipe Balbi #include <linux/module.h>
40550a7375SFelipe Balbi #include <linux/smp.h>
41550a7375SFelipe Balbi #include <linux/spinlock.h>
42550a7375SFelipe Balbi #include <linux/delay.h>
43550a7375SFelipe Balbi #include <linux/moduleparam.h>
44550a7375SFelipe Balbi #include <linux/stat.h>
45550a7375SFelipe Balbi #include <linux/dma-mapping.h>
465a0e3ad6STejun Heo #include <linux/slab.h>
47550a7375SFelipe Balbi 
48550a7375SFelipe Balbi #include "musb_core.h"
49550a7375SFelipe Balbi 
50550a7375SFelipe Balbi 
51550a7375SFelipe Balbi /* MUSB PERIPHERAL status 3-mar-2006:
52550a7375SFelipe Balbi  *
53550a7375SFelipe Balbi  * - EP0 seems solid.  It passes both USBCV and usbtest control cases.
54550a7375SFelipe Balbi  *   Minor glitches:
55550a7375SFelipe Balbi  *
56550a7375SFelipe Balbi  *     + remote wakeup to Linux hosts work, but saw USBCV failures;
57550a7375SFelipe Balbi  *       in one test run (operator error?)
58550a7375SFelipe Balbi  *     + endpoint halt tests -- in both usbtest and usbcv -- seem
59550a7375SFelipe Balbi  *       to break when dma is enabled ... is something wrongly
60550a7375SFelipe Balbi  *       clearing SENDSTALL?
61550a7375SFelipe Balbi  *
62550a7375SFelipe Balbi  * - Mass storage behaved ok when last tested.  Network traffic patterns
63550a7375SFelipe Balbi  *   (with lots of short transfers etc) need retesting; they turn up the
64550a7375SFelipe Balbi  *   worst cases of the DMA, since short packets are typical but are not
65550a7375SFelipe Balbi  *   required.
66550a7375SFelipe Balbi  *
67550a7375SFelipe Balbi  * - TX/IN
68550a7375SFelipe Balbi  *     + both pio and dma behave in with network and g_zero tests
69550a7375SFelipe Balbi  *     + no cppi throughput issues other than no-hw-queueing
70550a7375SFelipe Balbi  *     + failed with FLAT_REG (DaVinci)
71550a7375SFelipe Balbi  *     + seems to behave with double buffering, PIO -and- CPPI
72550a7375SFelipe Balbi  *     + with gadgetfs + AIO, requests got lost?
73550a7375SFelipe Balbi  *
74550a7375SFelipe Balbi  * - RX/OUT
75550a7375SFelipe Balbi  *     + both pio and dma behave in with network and g_zero tests
76550a7375SFelipe Balbi  *     + dma is slow in typical case (short_not_ok is clear)
77550a7375SFelipe Balbi  *     + double buffering ok with PIO
78550a7375SFelipe Balbi  *     + double buffering *FAILS* with CPPI, wrong data bytes sometimes
79550a7375SFelipe Balbi  *     + request lossage observed with gadgetfs
80550a7375SFelipe Balbi  *
81550a7375SFelipe Balbi  * - ISO not tested ... might work, but only weakly isochronous
82550a7375SFelipe Balbi  *
83550a7375SFelipe Balbi  * - Gadget driver disabling of softconnect during bind() is ignored; so
84550a7375SFelipe Balbi  *   drivers can't hold off host requests until userspace is ready.
85550a7375SFelipe Balbi  *   (Workaround:  they can turn it off later.)
86550a7375SFelipe Balbi  *
87550a7375SFelipe Balbi  * - PORTABILITY (assumes PIO works):
88550a7375SFelipe Balbi  *     + DaVinci, basically works with cppi dma
89550a7375SFelipe Balbi  *     + OMAP 2430, ditto with mentor dma
90550a7375SFelipe Balbi  *     + TUSB 6010, platform-specific dma in the works
91550a7375SFelipe Balbi  */
92550a7375SFelipe Balbi 
93550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
94550a7375SFelipe Balbi 
9592d2711fSHema Kalliguddi /* Maps the buffer to dma  */
9692d2711fSHema Kalliguddi 
9792d2711fSHema Kalliguddi static inline void map_dma_buffer(struct musb_request *request,
9892d2711fSHema Kalliguddi 				struct musb *musb)
9992d2711fSHema Kalliguddi {
10092d2711fSHema Kalliguddi 	if (request->request.dma == DMA_ADDR_INVALID) {
10192d2711fSHema Kalliguddi 		request->request.dma = dma_map_single(
10292d2711fSHema Kalliguddi 				musb->controller,
10392d2711fSHema Kalliguddi 				request->request.buf,
10492d2711fSHema Kalliguddi 				request->request.length,
10592d2711fSHema Kalliguddi 				request->tx
10692d2711fSHema Kalliguddi 					? DMA_TO_DEVICE
10792d2711fSHema Kalliguddi 					: DMA_FROM_DEVICE);
10892d2711fSHema Kalliguddi 		request->mapped = 1;
10992d2711fSHema Kalliguddi 	} else {
11092d2711fSHema Kalliguddi 		dma_sync_single_for_device(musb->controller,
11192d2711fSHema Kalliguddi 			request->request.dma,
11292d2711fSHema Kalliguddi 			request->request.length,
11392d2711fSHema Kalliguddi 			request->tx
11492d2711fSHema Kalliguddi 				? DMA_TO_DEVICE
11592d2711fSHema Kalliguddi 				: DMA_FROM_DEVICE);
11692d2711fSHema Kalliguddi 		request->mapped = 0;
11792d2711fSHema Kalliguddi 	}
11892d2711fSHema Kalliguddi }
11992d2711fSHema Kalliguddi 
12092d2711fSHema Kalliguddi /* Unmap the buffer from dma and maps it back to cpu */
12192d2711fSHema Kalliguddi static inline void unmap_dma_buffer(struct musb_request *request,
12292d2711fSHema Kalliguddi 				struct musb *musb)
12392d2711fSHema Kalliguddi {
12492d2711fSHema Kalliguddi 	if (request->request.dma == DMA_ADDR_INVALID) {
12592d2711fSHema Kalliguddi 		DBG(20, "not unmapping a never mapped buffer\n");
12692d2711fSHema Kalliguddi 		return;
12792d2711fSHema Kalliguddi 	}
12892d2711fSHema Kalliguddi 	if (request->mapped) {
12992d2711fSHema Kalliguddi 		dma_unmap_single(musb->controller,
13092d2711fSHema Kalliguddi 			request->request.dma,
13192d2711fSHema Kalliguddi 			request->request.length,
13292d2711fSHema Kalliguddi 			request->tx
13392d2711fSHema Kalliguddi 				? DMA_TO_DEVICE
13492d2711fSHema Kalliguddi 				: DMA_FROM_DEVICE);
13592d2711fSHema Kalliguddi 		request->request.dma = DMA_ADDR_INVALID;
13692d2711fSHema Kalliguddi 		request->mapped = 0;
13792d2711fSHema Kalliguddi 	} else {
13892d2711fSHema Kalliguddi 		dma_sync_single_for_cpu(musb->controller,
13992d2711fSHema Kalliguddi 			request->request.dma,
14092d2711fSHema Kalliguddi 			request->request.length,
14192d2711fSHema Kalliguddi 			request->tx
14292d2711fSHema Kalliguddi 				? DMA_TO_DEVICE
14392d2711fSHema Kalliguddi 				: DMA_FROM_DEVICE);
14492d2711fSHema Kalliguddi 
14592d2711fSHema Kalliguddi 	}
14692d2711fSHema Kalliguddi }
14792d2711fSHema Kalliguddi 
148550a7375SFelipe Balbi /*
149550a7375SFelipe Balbi  * Immediately complete a request.
150550a7375SFelipe Balbi  *
151550a7375SFelipe Balbi  * @param request the request to complete
152550a7375SFelipe Balbi  * @param status the status to complete the request with
153550a7375SFelipe Balbi  * Context: controller locked, IRQs blocked.
154550a7375SFelipe Balbi  */
155550a7375SFelipe Balbi void musb_g_giveback(
156550a7375SFelipe Balbi 	struct musb_ep		*ep,
157550a7375SFelipe Balbi 	struct usb_request	*request,
158550a7375SFelipe Balbi 	int			status)
159550a7375SFelipe Balbi __releases(ep->musb->lock)
160550a7375SFelipe Balbi __acquires(ep->musb->lock)
161550a7375SFelipe Balbi {
162550a7375SFelipe Balbi 	struct musb_request	*req;
163550a7375SFelipe Balbi 	struct musb		*musb;
164550a7375SFelipe Balbi 	int			busy = ep->busy;
165550a7375SFelipe Balbi 
166550a7375SFelipe Balbi 	req = to_musb_request(request);
167550a7375SFelipe Balbi 
168550a7375SFelipe Balbi 	list_del(&request->list);
169550a7375SFelipe Balbi 	if (req->request.status == -EINPROGRESS)
170550a7375SFelipe Balbi 		req->request.status = status;
171550a7375SFelipe Balbi 	musb = req->musb;
172550a7375SFelipe Balbi 
173550a7375SFelipe Balbi 	ep->busy = 1;
174550a7375SFelipe Balbi 	spin_unlock(&musb->lock);
17592d2711fSHema Kalliguddi 	if (is_dma_capable() && ep->dma)
17692d2711fSHema Kalliguddi 		unmap_dma_buffer(req, musb);
177550a7375SFelipe Balbi 	if (request->status == 0)
178550a7375SFelipe Balbi 		DBG(5, "%s done request %p,  %d/%d\n",
179550a7375SFelipe Balbi 				ep->end_point.name, request,
180550a7375SFelipe Balbi 				req->request.actual, req->request.length);
181550a7375SFelipe Balbi 	else
182550a7375SFelipe Balbi 		DBG(2, "%s request %p, %d/%d fault %d\n",
183550a7375SFelipe Balbi 				ep->end_point.name, request,
184550a7375SFelipe Balbi 				req->request.actual, req->request.length,
185550a7375SFelipe Balbi 				request->status);
186550a7375SFelipe Balbi 	req->request.complete(&req->ep->end_point, &req->request);
187550a7375SFelipe Balbi 	spin_lock(&musb->lock);
188550a7375SFelipe Balbi 	ep->busy = busy;
189550a7375SFelipe Balbi }
190550a7375SFelipe Balbi 
191550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
192550a7375SFelipe Balbi 
193550a7375SFelipe Balbi /*
194550a7375SFelipe Balbi  * Abort requests queued to an endpoint using the status. Synchronous.
195550a7375SFelipe Balbi  * caller locked controller and blocked irqs, and selected this ep.
196550a7375SFelipe Balbi  */
197550a7375SFelipe Balbi static void nuke(struct musb_ep *ep, const int status)
198550a7375SFelipe Balbi {
199550a7375SFelipe Balbi 	struct musb_request	*req = NULL;
200550a7375SFelipe Balbi 	void __iomem *epio = ep->musb->endpoints[ep->current_epnum].regs;
201550a7375SFelipe Balbi 
202550a7375SFelipe Balbi 	ep->busy = 1;
203550a7375SFelipe Balbi 
204550a7375SFelipe Balbi 	if (is_dma_capable() && ep->dma) {
205550a7375SFelipe Balbi 		struct dma_controller	*c = ep->musb->dma_controller;
206550a7375SFelipe Balbi 		int value;
207b6e434a5SSergei Shtylyov 
208550a7375SFelipe Balbi 		if (ep->is_in) {
209b6e434a5SSergei Shtylyov 			/*
210b6e434a5SSergei Shtylyov 			 * The programming guide says that we must not clear
211b6e434a5SSergei Shtylyov 			 * the DMAMODE bit before DMAENAB, so we only
212b6e434a5SSergei Shtylyov 			 * clear it in the second write...
213b6e434a5SSergei Shtylyov 			 */
214550a7375SFelipe Balbi 			musb_writew(epio, MUSB_TXCSR,
215b6e434a5SSergei Shtylyov 				    MUSB_TXCSR_DMAMODE | MUSB_TXCSR_FLUSHFIFO);
216550a7375SFelipe Balbi 			musb_writew(epio, MUSB_TXCSR,
217550a7375SFelipe Balbi 					0 | MUSB_TXCSR_FLUSHFIFO);
218550a7375SFelipe Balbi 		} else {
219550a7375SFelipe Balbi 			musb_writew(epio, MUSB_RXCSR,
220550a7375SFelipe Balbi 					0 | MUSB_RXCSR_FLUSHFIFO);
221550a7375SFelipe Balbi 			musb_writew(epio, MUSB_RXCSR,
222550a7375SFelipe Balbi 					0 | MUSB_RXCSR_FLUSHFIFO);
223550a7375SFelipe Balbi 		}
224550a7375SFelipe Balbi 
225550a7375SFelipe Balbi 		value = c->channel_abort(ep->dma);
226550a7375SFelipe Balbi 		DBG(value ? 1 : 6, "%s: abort DMA --> %d\n", ep->name, value);
227550a7375SFelipe Balbi 		c->channel_release(ep->dma);
228550a7375SFelipe Balbi 		ep->dma = NULL;
229550a7375SFelipe Balbi 	}
230550a7375SFelipe Balbi 
231550a7375SFelipe Balbi 	while (!list_empty(&(ep->req_list))) {
232550a7375SFelipe Balbi 		req = container_of(ep->req_list.next, struct musb_request,
233550a7375SFelipe Balbi 				request.list);
234550a7375SFelipe Balbi 		musb_g_giveback(ep, &req->request, status);
235550a7375SFelipe Balbi 	}
236550a7375SFelipe Balbi }
237550a7375SFelipe Balbi 
238550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
239550a7375SFelipe Balbi 
240550a7375SFelipe Balbi /* Data transfers - pure PIO, pure DMA, or mixed mode */
241550a7375SFelipe Balbi 
242550a7375SFelipe Balbi /*
243550a7375SFelipe Balbi  * This assumes the separate CPPI engine is responding to DMA requests
244550a7375SFelipe Balbi  * from the usb core ... sequenced a bit differently from mentor dma.
245550a7375SFelipe Balbi  */
246550a7375SFelipe Balbi 
247550a7375SFelipe Balbi static inline int max_ep_writesize(struct musb *musb, struct musb_ep *ep)
248550a7375SFelipe Balbi {
249550a7375SFelipe Balbi 	if (can_bulk_split(musb, ep->type))
250550a7375SFelipe Balbi 		return ep->hw_ep->max_packet_sz_tx;
251550a7375SFelipe Balbi 	else
252550a7375SFelipe Balbi 		return ep->packet_sz;
253550a7375SFelipe Balbi }
254550a7375SFelipe Balbi 
255550a7375SFelipe Balbi 
256550a7375SFelipe Balbi #ifdef CONFIG_USB_INVENTRA_DMA
257550a7375SFelipe Balbi 
258550a7375SFelipe Balbi /* Peripheral tx (IN) using Mentor DMA works as follows:
259550a7375SFelipe Balbi 	Only mode 0 is used for transfers <= wPktSize,
260550a7375SFelipe Balbi 	mode 1 is used for larger transfers,
261550a7375SFelipe Balbi 
262550a7375SFelipe Balbi 	One of the following happens:
263550a7375SFelipe Balbi 	- Host sends IN token which causes an endpoint interrupt
264550a7375SFelipe Balbi 		-> TxAvail
265550a7375SFelipe Balbi 			-> if DMA is currently busy, exit.
266550a7375SFelipe Balbi 			-> if queue is non-empty, txstate().
267550a7375SFelipe Balbi 
268550a7375SFelipe Balbi 	- Request is queued by the gadget driver.
269550a7375SFelipe Balbi 		-> if queue was previously empty, txstate()
270550a7375SFelipe Balbi 
271550a7375SFelipe Balbi 	txstate()
272550a7375SFelipe Balbi 		-> start
273550a7375SFelipe Balbi 		  /\	-> setup DMA
274550a7375SFelipe Balbi 		  |     (data is transferred to the FIFO, then sent out when
275550a7375SFelipe Balbi 		  |	IN token(s) are recd from Host.
276550a7375SFelipe Balbi 		  |		-> DMA interrupt on completion
277550a7375SFelipe Balbi 		  |		   calls TxAvail.
278b6e434a5SSergei Shtylyov 		  |		      -> stop DMA, ~DMAENAB,
279550a7375SFelipe Balbi 		  |		      -> set TxPktRdy for last short pkt or zlp
280550a7375SFelipe Balbi 		  |		      -> Complete Request
281550a7375SFelipe Balbi 		  |		      -> Continue next request (call txstate)
282550a7375SFelipe Balbi 		  |___________________________________|
283550a7375SFelipe Balbi 
284550a7375SFelipe Balbi  * Non-Mentor DMA engines can of course work differently, such as by
285550a7375SFelipe Balbi  * upleveling from irq-per-packet to irq-per-buffer.
286550a7375SFelipe Balbi  */
287550a7375SFelipe Balbi 
288550a7375SFelipe Balbi #endif
289550a7375SFelipe Balbi 
290550a7375SFelipe Balbi /*
291550a7375SFelipe Balbi  * An endpoint is transmitting data. This can be called either from
292550a7375SFelipe Balbi  * the IRQ routine or from ep.queue() to kickstart a request on an
293550a7375SFelipe Balbi  * endpoint.
294550a7375SFelipe Balbi  *
295550a7375SFelipe Balbi  * Context: controller locked, IRQs blocked, endpoint selected
296550a7375SFelipe Balbi  */
297550a7375SFelipe Balbi static void txstate(struct musb *musb, struct musb_request *req)
298550a7375SFelipe Balbi {
299550a7375SFelipe Balbi 	u8			epnum = req->epnum;
300550a7375SFelipe Balbi 	struct musb_ep		*musb_ep;
301550a7375SFelipe Balbi 	void __iomem		*epio = musb->endpoints[epnum].regs;
302550a7375SFelipe Balbi 	struct usb_request	*request;
303550a7375SFelipe Balbi 	u16			fifo_count = 0, csr;
304550a7375SFelipe Balbi 	int			use_dma = 0;
305550a7375SFelipe Balbi 
306550a7375SFelipe Balbi 	musb_ep = req->ep;
307550a7375SFelipe Balbi 
308550a7375SFelipe Balbi 	/* we shouldn't get here while DMA is active ... but we do ... */
309550a7375SFelipe Balbi 	if (dma_channel_status(musb_ep->dma) == MUSB_DMA_STATUS_BUSY) {
310550a7375SFelipe Balbi 		DBG(4, "dma pending...\n");
311550a7375SFelipe Balbi 		return;
312550a7375SFelipe Balbi 	}
313550a7375SFelipe Balbi 
314550a7375SFelipe Balbi 	/* read TXCSR before */
315550a7375SFelipe Balbi 	csr = musb_readw(epio, MUSB_TXCSR);
316550a7375SFelipe Balbi 
317550a7375SFelipe Balbi 	request = &req->request;
318550a7375SFelipe Balbi 	fifo_count = min(max_ep_writesize(musb, musb_ep),
319550a7375SFelipe Balbi 			(int)(request->length - request->actual));
320550a7375SFelipe Balbi 
321550a7375SFelipe Balbi 	if (csr & MUSB_TXCSR_TXPKTRDY) {
322550a7375SFelipe Balbi 		DBG(5, "%s old packet still ready , txcsr %03x\n",
323550a7375SFelipe Balbi 				musb_ep->end_point.name, csr);
324550a7375SFelipe Balbi 		return;
325550a7375SFelipe Balbi 	}
326550a7375SFelipe Balbi 
327550a7375SFelipe Balbi 	if (csr & MUSB_TXCSR_P_SENDSTALL) {
328550a7375SFelipe Balbi 		DBG(5, "%s stalling, txcsr %03x\n",
329550a7375SFelipe Balbi 				musb_ep->end_point.name, csr);
330550a7375SFelipe Balbi 		return;
331550a7375SFelipe Balbi 	}
332550a7375SFelipe Balbi 
333550a7375SFelipe Balbi 	DBG(4, "hw_ep%d, maxpacket %d, fifo count %d, txcsr %03x\n",
334550a7375SFelipe Balbi 			epnum, musb_ep->packet_sz, fifo_count,
335550a7375SFelipe Balbi 			csr);
336550a7375SFelipe Balbi 
337550a7375SFelipe Balbi #ifndef	CONFIG_MUSB_PIO_ONLY
338550a7375SFelipe Balbi 	if (is_dma_capable() && musb_ep->dma) {
339550a7375SFelipe Balbi 		struct dma_controller	*c = musb->dma_controller;
34066af83ddSMing Lei 		size_t request_size;
34166af83ddSMing Lei 
34266af83ddSMing Lei 		/* setup DMA, then program endpoint CSR */
34366af83ddSMing Lei 		request_size = min_t(size_t, request->length - request->actual,
34466af83ddSMing Lei 					musb_ep->dma->max_len);
345550a7375SFelipe Balbi 
346550a7375SFelipe Balbi 		use_dma = (request->dma != DMA_ADDR_INVALID);
347550a7375SFelipe Balbi 
348550a7375SFelipe Balbi 		/* MUSB_TXCSR_P_ISO is still set correctly */
349550a7375SFelipe Balbi 
350550a7375SFelipe Balbi #ifdef CONFIG_USB_INVENTRA_DMA
351550a7375SFelipe Balbi 		{
352d1043a26SAnand Gadiyar 			if (request_size < musb_ep->packet_sz)
353550a7375SFelipe Balbi 				musb_ep->dma->desired_mode = 0;
354550a7375SFelipe Balbi 			else
355550a7375SFelipe Balbi 				musb_ep->dma->desired_mode = 1;
356550a7375SFelipe Balbi 
357550a7375SFelipe Balbi 			use_dma = use_dma && c->channel_program(
358550a7375SFelipe Balbi 					musb_ep->dma, musb_ep->packet_sz,
359550a7375SFelipe Balbi 					musb_ep->dma->desired_mode,
360796a83faSCliff Cai 					request->dma + request->actual, request_size);
361550a7375SFelipe Balbi 			if (use_dma) {
362550a7375SFelipe Balbi 				if (musb_ep->dma->desired_mode == 0) {
363b6e434a5SSergei Shtylyov 					/*
364b6e434a5SSergei Shtylyov 					 * We must not clear the DMAMODE bit
365b6e434a5SSergei Shtylyov 					 * before the DMAENAB bit -- and the
366b6e434a5SSergei Shtylyov 					 * latter doesn't always get cleared
367b6e434a5SSergei Shtylyov 					 * before we get here...
368b6e434a5SSergei Shtylyov 					 */
369b6e434a5SSergei Shtylyov 					csr &= ~(MUSB_TXCSR_AUTOSET
370b6e434a5SSergei Shtylyov 						| MUSB_TXCSR_DMAENAB);
371b6e434a5SSergei Shtylyov 					musb_writew(epio, MUSB_TXCSR, csr
372b6e434a5SSergei Shtylyov 						| MUSB_TXCSR_P_WZC_BITS);
373b6e434a5SSergei Shtylyov 					csr &= ~MUSB_TXCSR_DMAMODE;
374550a7375SFelipe Balbi 					csr |= (MUSB_TXCSR_DMAENAB |
375550a7375SFelipe Balbi 							MUSB_TXCSR_MODE);
376550a7375SFelipe Balbi 					/* against programming guide */
377f11d893dSMing Lei 				} else {
378f11d893dSMing Lei 					csr |= (MUSB_TXCSR_DMAENAB
379550a7375SFelipe Balbi 							| MUSB_TXCSR_DMAMODE
380550a7375SFelipe Balbi 							| MUSB_TXCSR_MODE);
381f11d893dSMing Lei 					if (!musb_ep->hb_mult)
382f11d893dSMing Lei 						csr |= MUSB_TXCSR_AUTOSET;
383f11d893dSMing Lei 				}
384550a7375SFelipe Balbi 				csr &= ~MUSB_TXCSR_P_UNDERRUN;
385f11d893dSMing Lei 
386550a7375SFelipe Balbi 				musb_writew(epio, MUSB_TXCSR, csr);
387550a7375SFelipe Balbi 			}
388550a7375SFelipe Balbi 		}
389550a7375SFelipe Balbi 
390550a7375SFelipe Balbi #elif defined(CONFIG_USB_TI_CPPI_DMA)
391550a7375SFelipe Balbi 		/* program endpoint CSR first, then setup DMA */
392b6e434a5SSergei Shtylyov 		csr &= ~(MUSB_TXCSR_P_UNDERRUN | MUSB_TXCSR_TXPKTRDY);
39337e3ee99SSergei Shtylyov 		csr |= MUSB_TXCSR_DMAENAB | MUSB_TXCSR_DMAMODE |
39437e3ee99SSergei Shtylyov 		       MUSB_TXCSR_MODE;
395550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXCSR,
396550a7375SFelipe Balbi 			(MUSB_TXCSR_P_WZC_BITS & ~MUSB_TXCSR_P_UNDERRUN)
397550a7375SFelipe Balbi 				| csr);
398550a7375SFelipe Balbi 
399550a7375SFelipe Balbi 		/* ensure writebuffer is empty */
400550a7375SFelipe Balbi 		csr = musb_readw(epio, MUSB_TXCSR);
401550a7375SFelipe Balbi 
402550a7375SFelipe Balbi 		/* NOTE host side sets DMAENAB later than this; both are
403550a7375SFelipe Balbi 		 * OK since the transfer dma glue (between CPPI and Mentor
404550a7375SFelipe Balbi 		 * fifos) just tells CPPI it could start.  Data only moves
405550a7375SFelipe Balbi 		 * to the USB TX fifo when both fifos are ready.
406550a7375SFelipe Balbi 		 */
407550a7375SFelipe Balbi 
408550a7375SFelipe Balbi 		/* "mode" is irrelevant here; handle terminating ZLPs like
409550a7375SFelipe Balbi 		 * PIO does, since the hardware RNDIS mode seems unreliable
410550a7375SFelipe Balbi 		 * except for the last-packet-is-already-short case.
411550a7375SFelipe Balbi 		 */
412550a7375SFelipe Balbi 		use_dma = use_dma && c->channel_program(
413550a7375SFelipe Balbi 				musb_ep->dma, musb_ep->packet_sz,
414550a7375SFelipe Balbi 				0,
41566af83ddSMing Lei 				request->dma + request->actual,
41666af83ddSMing Lei 				request_size);
417550a7375SFelipe Balbi 		if (!use_dma) {
418550a7375SFelipe Balbi 			c->channel_release(musb_ep->dma);
419550a7375SFelipe Balbi 			musb_ep->dma = NULL;
420b6e434a5SSergei Shtylyov 			csr &= ~MUSB_TXCSR_DMAENAB;
421b6e434a5SSergei Shtylyov 			musb_writew(epio, MUSB_TXCSR, csr);
422550a7375SFelipe Balbi 			/* invariant: prequest->buf is non-null */
423550a7375SFelipe Balbi 		}
424550a7375SFelipe Balbi #elif defined(CONFIG_USB_TUSB_OMAP_DMA)
425550a7375SFelipe Balbi 		use_dma = use_dma && c->channel_program(
426550a7375SFelipe Balbi 				musb_ep->dma, musb_ep->packet_sz,
427550a7375SFelipe Balbi 				request->zero,
42866af83ddSMing Lei 				request->dma + request->actual,
42966af83ddSMing Lei 				request_size);
430550a7375SFelipe Balbi #endif
431550a7375SFelipe Balbi 	}
432550a7375SFelipe Balbi #endif
433550a7375SFelipe Balbi 
434550a7375SFelipe Balbi 	if (!use_dma) {
43592d2711fSHema Kalliguddi 		/*
43692d2711fSHema Kalliguddi 		 * Unmap the dma buffer back to cpu if dma channel
43792d2711fSHema Kalliguddi 		 * programming fails
43892d2711fSHema Kalliguddi 		 */
43992d2711fSHema Kalliguddi 		if (is_dma_capable() && musb_ep->dma)
44092d2711fSHema Kalliguddi 			unmap_dma_buffer(req, musb);
44192d2711fSHema Kalliguddi 
442550a7375SFelipe Balbi 		musb_write_fifo(musb_ep->hw_ep, fifo_count,
443550a7375SFelipe Balbi 				(u8 *) (request->buf + request->actual));
444550a7375SFelipe Balbi 		request->actual += fifo_count;
445550a7375SFelipe Balbi 		csr |= MUSB_TXCSR_TXPKTRDY;
446550a7375SFelipe Balbi 		csr &= ~MUSB_TXCSR_P_UNDERRUN;
447550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXCSR, csr);
448550a7375SFelipe Balbi 	}
449550a7375SFelipe Balbi 
450550a7375SFelipe Balbi 	/* host may already have the data when this message shows... */
451550a7375SFelipe Balbi 	DBG(3, "%s TX/IN %s len %d/%d, txcsr %04x, fifo %d/%d\n",
452550a7375SFelipe Balbi 			musb_ep->end_point.name, use_dma ? "dma" : "pio",
453550a7375SFelipe Balbi 			request->actual, request->length,
454550a7375SFelipe Balbi 			musb_readw(epio, MUSB_TXCSR),
455550a7375SFelipe Balbi 			fifo_count,
456550a7375SFelipe Balbi 			musb_readw(epio, MUSB_TXMAXP));
457550a7375SFelipe Balbi }
458550a7375SFelipe Balbi 
459550a7375SFelipe Balbi /*
460550a7375SFelipe Balbi  * FIFO state update (e.g. data ready).
461550a7375SFelipe Balbi  * Called from IRQ,  with controller locked.
462550a7375SFelipe Balbi  */
463550a7375SFelipe Balbi void musb_g_tx(struct musb *musb, u8 epnum)
464550a7375SFelipe Balbi {
465550a7375SFelipe Balbi 	u16			csr;
466550a7375SFelipe Balbi 	struct usb_request	*request;
467550a7375SFelipe Balbi 	u8 __iomem		*mbase = musb->mregs;
468550a7375SFelipe Balbi 	struct musb_ep		*musb_ep = &musb->endpoints[epnum].ep_in;
469550a7375SFelipe Balbi 	void __iomem		*epio = musb->endpoints[epnum].regs;
470550a7375SFelipe Balbi 	struct dma_channel	*dma;
471550a7375SFelipe Balbi 
472550a7375SFelipe Balbi 	musb_ep_select(mbase, epnum);
473550a7375SFelipe Balbi 	request = next_request(musb_ep);
474550a7375SFelipe Balbi 
475550a7375SFelipe Balbi 	csr = musb_readw(epio, MUSB_TXCSR);
476550a7375SFelipe Balbi 	DBG(4, "<== %s, txcsr %04x\n", musb_ep->end_point.name, csr);
477550a7375SFelipe Balbi 
478550a7375SFelipe Balbi 	dma = is_dma_capable() ? musb_ep->dma : NULL;
4797723de7eSSergei Shtylyov 
4807723de7eSSergei Shtylyov 	/*
4817723de7eSSergei Shtylyov 	 * REVISIT: for high bandwidth, MUSB_TXCSR_P_INCOMPTX
4827723de7eSSergei Shtylyov 	 * probably rates reporting as a host error.
483550a7375SFelipe Balbi 	 */
484550a7375SFelipe Balbi 	if (csr & MUSB_TXCSR_P_SENTSTALL) {
485550a7375SFelipe Balbi 		csr |=	MUSB_TXCSR_P_WZC_BITS;
486550a7375SFelipe Balbi 		csr &= ~MUSB_TXCSR_P_SENTSTALL;
487550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXCSR, csr);
4887723de7eSSergei Shtylyov 		return;
489550a7375SFelipe Balbi 	}
490550a7375SFelipe Balbi 
491550a7375SFelipe Balbi 	if (csr & MUSB_TXCSR_P_UNDERRUN) {
4927723de7eSSergei Shtylyov 		/* We NAKed, no big deal... little reason to care. */
493550a7375SFelipe Balbi 		csr |=	 MUSB_TXCSR_P_WZC_BITS;
4947723de7eSSergei Shtylyov 		csr &= ~(MUSB_TXCSR_P_UNDERRUN | MUSB_TXCSR_TXPKTRDY);
495550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXCSR, csr);
496550a7375SFelipe Balbi 		DBG(20, "underrun on ep%d, req %p\n", epnum, request);
497550a7375SFelipe Balbi 	}
498550a7375SFelipe Balbi 
499550a7375SFelipe Balbi 	if (dma_channel_status(dma) == MUSB_DMA_STATUS_BUSY) {
5007723de7eSSergei Shtylyov 		/*
5017723de7eSSergei Shtylyov 		 * SHOULD NOT HAPPEN... has with CPPI though, after
502550a7375SFelipe Balbi 		 * changing SENDSTALL (and other cases); harmless?
503550a7375SFelipe Balbi 		 */
504550a7375SFelipe Balbi 		DBG(5, "%s dma still busy?\n", musb_ep->end_point.name);
5057723de7eSSergei Shtylyov 		return;
506550a7375SFelipe Balbi 	}
507550a7375SFelipe Balbi 
508550a7375SFelipe Balbi 	if (request) {
509550a7375SFelipe Balbi 		u8	is_dma = 0;
510550a7375SFelipe Balbi 
511550a7375SFelipe Balbi 		if (dma && (csr & MUSB_TXCSR_DMAENAB)) {
512550a7375SFelipe Balbi 			is_dma = 1;
513550a7375SFelipe Balbi 			csr |= MUSB_TXCSR_P_WZC_BITS;
5147723de7eSSergei Shtylyov 			csr &= ~(MUSB_TXCSR_DMAENAB | MUSB_TXCSR_P_UNDERRUN |
5157723de7eSSergei Shtylyov 				 MUSB_TXCSR_TXPKTRDY);
516550a7375SFelipe Balbi 			musb_writew(epio, MUSB_TXCSR, csr);
5177723de7eSSergei Shtylyov 			/* Ensure writebuffer is empty. */
518550a7375SFelipe Balbi 			csr = musb_readw(epio, MUSB_TXCSR);
519550a7375SFelipe Balbi 			request->actual += musb_ep->dma->actual_len;
5207723de7eSSergei Shtylyov 			DBG(4, "TXCSR%d %04x, DMA off, len %zu, req %p\n",
5217723de7eSSergei Shtylyov 				epnum, csr, musb_ep->dma->actual_len, request);
522550a7375SFelipe Balbi 		}
523550a7375SFelipe Balbi 
5247723de7eSSergei Shtylyov 		/*
5257723de7eSSergei Shtylyov 		 * First, maybe a terminating short packet. Some DMA
5267723de7eSSergei Shtylyov 		 * engines might handle this by themselves.
527550a7375SFelipe Balbi 		 */
5287723de7eSSergei Shtylyov 		if ((request->zero && request->length
529e7379aaaSMing Lei 			&& (request->length % musb_ep->packet_sz == 0)
530e7379aaaSMing Lei 			&& (request->actual == request->length))
531550a7375SFelipe Balbi #ifdef CONFIG_USB_INVENTRA_DMA
5327723de7eSSergei Shtylyov 			|| (is_dma && (!dma->desired_mode ||
533550a7375SFelipe Balbi 				(request->actual &
534550a7375SFelipe Balbi 					(musb_ep->packet_sz - 1))))
535550a7375SFelipe Balbi #endif
536550a7375SFelipe Balbi 		) {
5377723de7eSSergei Shtylyov 			/*
5387723de7eSSergei Shtylyov 			 * On DMA completion, FIFO may not be
5397723de7eSSergei Shtylyov 			 * available yet...
540550a7375SFelipe Balbi 			 */
541550a7375SFelipe Balbi 			if (csr & MUSB_TXCSR_TXPKTRDY)
5427723de7eSSergei Shtylyov 				return;
543550a7375SFelipe Balbi 
544550a7375SFelipe Balbi 			DBG(4, "sending zero pkt\n");
5457723de7eSSergei Shtylyov 			musb_writew(epio, MUSB_TXCSR, MUSB_TXCSR_MODE
546550a7375SFelipe Balbi 					| MUSB_TXCSR_TXPKTRDY);
547550a7375SFelipe Balbi 			request->zero = 0;
548550a7375SFelipe Balbi 		}
549550a7375SFelipe Balbi 
550bb27bc2cSMing Lei 		if (request->actual == request->length) {
551550a7375SFelipe Balbi 			musb_g_giveback(musb_ep, request, 0);
55295962a77SSergei Shtylyov 			request = musb_ep->desc ? next_request(musb_ep) : NULL;
55395962a77SSergei Shtylyov 			if (!request) {
554550a7375SFelipe Balbi 				DBG(4, "%s idle now\n",
555550a7375SFelipe Balbi 					musb_ep->end_point.name);
5567723de7eSSergei Shtylyov 				return;
55795962a77SSergei Shtylyov 			}
558550a7375SFelipe Balbi 		}
559550a7375SFelipe Balbi 
560550a7375SFelipe Balbi 		txstate(musb, to_musb_request(request));
561550a7375SFelipe Balbi 	}
562550a7375SFelipe Balbi }
563550a7375SFelipe Balbi 
564550a7375SFelipe Balbi /* ------------------------------------------------------------ */
565550a7375SFelipe Balbi 
566550a7375SFelipe Balbi #ifdef CONFIG_USB_INVENTRA_DMA
567550a7375SFelipe Balbi 
568550a7375SFelipe Balbi /* Peripheral rx (OUT) using Mentor DMA works as follows:
569550a7375SFelipe Balbi 	- Only mode 0 is used.
570550a7375SFelipe Balbi 
571550a7375SFelipe Balbi 	- Request is queued by the gadget class driver.
572550a7375SFelipe Balbi 		-> if queue was previously empty, rxstate()
573550a7375SFelipe Balbi 
574550a7375SFelipe Balbi 	- Host sends OUT token which causes an endpoint interrupt
575550a7375SFelipe Balbi 	  /\      -> RxReady
576550a7375SFelipe Balbi 	  |	      -> if request queued, call rxstate
577550a7375SFelipe Balbi 	  |		/\	-> setup DMA
578550a7375SFelipe Balbi 	  |		|	     -> DMA interrupt on completion
579550a7375SFelipe Balbi 	  |		|		-> RxReady
580550a7375SFelipe Balbi 	  |		|		      -> stop DMA
581550a7375SFelipe Balbi 	  |		|		      -> ack the read
582550a7375SFelipe Balbi 	  |		|		      -> if data recd = max expected
583550a7375SFelipe Balbi 	  |		|				by the request, or host
584550a7375SFelipe Balbi 	  |		|				sent a short packet,
585550a7375SFelipe Balbi 	  |		|				complete the request,
586550a7375SFelipe Balbi 	  |		|				and start the next one.
587550a7375SFelipe Balbi 	  |		|_____________________________________|
588550a7375SFelipe Balbi 	  |					 else just wait for the host
589550a7375SFelipe Balbi 	  |					    to send the next OUT token.
590550a7375SFelipe Balbi 	  |__________________________________________________|
591550a7375SFelipe Balbi 
592550a7375SFelipe Balbi  * Non-Mentor DMA engines can of course work differently.
593550a7375SFelipe Balbi  */
594550a7375SFelipe Balbi 
595550a7375SFelipe Balbi #endif
596550a7375SFelipe Balbi 
597550a7375SFelipe Balbi /*
598550a7375SFelipe Balbi  * Context: controller locked, IRQs blocked, endpoint selected
599550a7375SFelipe Balbi  */
600550a7375SFelipe Balbi static void rxstate(struct musb *musb, struct musb_request *req)
601550a7375SFelipe Balbi {
602550a7375SFelipe Balbi 	const u8		epnum = req->epnum;
603550a7375SFelipe Balbi 	struct usb_request	*request = &req->request;
604bd2e74d6SMing Lei 	struct musb_ep		*musb_ep;
605550a7375SFelipe Balbi 	void __iomem		*epio = musb->endpoints[epnum].regs;
606c2c96321SFelipe Balbi 	unsigned		fifo_count = 0;
607bd2e74d6SMing Lei 	u16			len;
608cea83241SSergei Shtylyov 	u16			csr = musb_readw(epio, MUSB_RXCSR);
609bd2e74d6SMing Lei 	struct musb_hw_ep	*hw_ep = &musb->endpoints[epnum];
610bd2e74d6SMing Lei 
611bd2e74d6SMing Lei 	if (hw_ep->is_shared_fifo)
612bd2e74d6SMing Lei 		musb_ep = &hw_ep->ep_in;
613bd2e74d6SMing Lei 	else
614bd2e74d6SMing Lei 		musb_ep = &hw_ep->ep_out;
615bd2e74d6SMing Lei 
616bd2e74d6SMing Lei 	len = musb_ep->packet_sz;
617550a7375SFelipe Balbi 
618cea83241SSergei Shtylyov 	/* We shouldn't get here while DMA is active, but we do... */
619cea83241SSergei Shtylyov 	if (dma_channel_status(musb_ep->dma) == MUSB_DMA_STATUS_BUSY) {
620cea83241SSergei Shtylyov 		DBG(4, "DMA pending...\n");
621cea83241SSergei Shtylyov 		return;
622cea83241SSergei Shtylyov 	}
623cea83241SSergei Shtylyov 
624cea83241SSergei Shtylyov 	if (csr & MUSB_RXCSR_P_SENDSTALL) {
625cea83241SSergei Shtylyov 		DBG(5, "%s stalling, RXCSR %04x\n",
626cea83241SSergei Shtylyov 		    musb_ep->end_point.name, csr);
627cea83241SSergei Shtylyov 		return;
628cea83241SSergei Shtylyov 	}
629550a7375SFelipe Balbi 
630550a7375SFelipe Balbi 	if (is_cppi_enabled() && musb_ep->dma) {
631550a7375SFelipe Balbi 		struct dma_controller	*c = musb->dma_controller;
632550a7375SFelipe Balbi 		struct dma_channel	*channel = musb_ep->dma;
633550a7375SFelipe Balbi 
634550a7375SFelipe Balbi 		/* NOTE:  CPPI won't actually stop advancing the DMA
635550a7375SFelipe Balbi 		 * queue after short packet transfers, so this is almost
636550a7375SFelipe Balbi 		 * always going to run as IRQ-per-packet DMA so that
637550a7375SFelipe Balbi 		 * faults will be handled correctly.
638550a7375SFelipe Balbi 		 */
639550a7375SFelipe Balbi 		if (c->channel_program(channel,
640550a7375SFelipe Balbi 				musb_ep->packet_sz,
641550a7375SFelipe Balbi 				!request->short_not_ok,
642550a7375SFelipe Balbi 				request->dma + request->actual,
643550a7375SFelipe Balbi 				request->length - request->actual)) {
644550a7375SFelipe Balbi 
645550a7375SFelipe Balbi 			/* make sure that if an rxpkt arrived after the irq,
646550a7375SFelipe Balbi 			 * the cppi engine will be ready to take it as soon
647550a7375SFelipe Balbi 			 * as DMA is enabled
648550a7375SFelipe Balbi 			 */
649550a7375SFelipe Balbi 			csr &= ~(MUSB_RXCSR_AUTOCLEAR
650550a7375SFelipe Balbi 					| MUSB_RXCSR_DMAMODE);
651550a7375SFelipe Balbi 			csr |= MUSB_RXCSR_DMAENAB | MUSB_RXCSR_P_WZC_BITS;
652550a7375SFelipe Balbi 			musb_writew(epio, MUSB_RXCSR, csr);
653550a7375SFelipe Balbi 			return;
654550a7375SFelipe Balbi 		}
655550a7375SFelipe Balbi 	}
656550a7375SFelipe Balbi 
657550a7375SFelipe Balbi 	if (csr & MUSB_RXCSR_RXPKTRDY) {
658550a7375SFelipe Balbi 		len = musb_readw(epio, MUSB_RXCOUNT);
659550a7375SFelipe Balbi 		if (request->actual < request->length) {
660550a7375SFelipe Balbi #ifdef CONFIG_USB_INVENTRA_DMA
661550a7375SFelipe Balbi 			if (is_dma_capable() && musb_ep->dma) {
662550a7375SFelipe Balbi 				struct dma_controller	*c;
663550a7375SFelipe Balbi 				struct dma_channel	*channel;
664550a7375SFelipe Balbi 				int			use_dma = 0;
665550a7375SFelipe Balbi 
666550a7375SFelipe Balbi 				c = musb->dma_controller;
667550a7375SFelipe Balbi 				channel = musb_ep->dma;
668550a7375SFelipe Balbi 
669550a7375SFelipe Balbi 	/* We use DMA Req mode 0 in rx_csr, and DMA controller operates in
670550a7375SFelipe Balbi 	 * mode 0 only. So we do not get endpoint interrupts due to DMA
671550a7375SFelipe Balbi 	 * completion. We only get interrupts from DMA controller.
672550a7375SFelipe Balbi 	 *
673550a7375SFelipe Balbi 	 * We could operate in DMA mode 1 if we knew the size of the tranfer
674550a7375SFelipe Balbi 	 * in advance. For mass storage class, request->length = what the host
675550a7375SFelipe Balbi 	 * sends, so that'd work.  But for pretty much everything else,
676550a7375SFelipe Balbi 	 * request->length is routinely more than what the host sends. For
677550a7375SFelipe Balbi 	 * most these gadgets, end of is signified either by a short packet,
678550a7375SFelipe Balbi 	 * or filling the last byte of the buffer.  (Sending extra data in
679550a7375SFelipe Balbi 	 * that last pckate should trigger an overflow fault.)  But in mode 1,
680550a7375SFelipe Balbi 	 * we don't get DMA completion interrrupt for short packets.
681550a7375SFelipe Balbi 	 *
682550a7375SFelipe Balbi 	 * Theoretically, we could enable DMAReq irq (MUSB_RXCSR_DMAMODE = 1),
683550a7375SFelipe Balbi 	 * to get endpoint interrupt on every DMA req, but that didn't seem
684550a7375SFelipe Balbi 	 * to work reliably.
685550a7375SFelipe Balbi 	 *
686550a7375SFelipe Balbi 	 * REVISIT an updated g_file_storage can set req->short_not_ok, which
687550a7375SFelipe Balbi 	 * then becomes usable as a runtime "use mode 1" hint...
688550a7375SFelipe Balbi 	 */
689550a7375SFelipe Balbi 
690550a7375SFelipe Balbi 				csr |= MUSB_RXCSR_DMAENAB;
691490e5fbeSMing Lei #ifdef USE_MODE1
6929001d80dSMing Lei 				csr |= MUSB_RXCSR_AUTOCLEAR;
693550a7375SFelipe Balbi 				/* csr |= MUSB_RXCSR_DMAMODE; */
694550a7375SFelipe Balbi 
695550a7375SFelipe Balbi 				/* this special sequence (enabling and then
696550a7375SFelipe Balbi 				 * disabling MUSB_RXCSR_DMAMODE) is required
697550a7375SFelipe Balbi 				 * to get DMAReq to activate
698550a7375SFelipe Balbi 				 */
699550a7375SFelipe Balbi 				musb_writew(epio, MUSB_RXCSR,
700550a7375SFelipe Balbi 					csr | MUSB_RXCSR_DMAMODE);
7019001d80dSMing Lei #else
7029001d80dSMing Lei 				if (!musb_ep->hb_mult &&
7039001d80dSMing Lei 					musb_ep->hw_ep->rx_double_buffered)
7049001d80dSMing Lei 					csr |= MUSB_RXCSR_AUTOCLEAR;
705550a7375SFelipe Balbi #endif
706550a7375SFelipe Balbi 				musb_writew(epio, MUSB_RXCSR, csr);
707550a7375SFelipe Balbi 
708550a7375SFelipe Balbi 				if (request->actual < request->length) {
709550a7375SFelipe Balbi 					int transfer_size = 0;
710550a7375SFelipe Balbi #ifdef USE_MODE1
7111018b4e4SMing Lei 					transfer_size = min(request->length - request->actual,
712550a7375SFelipe Balbi 							channel->max_len);
713550a7375SFelipe Balbi #else
7141018b4e4SMing Lei 					transfer_size = min(request->length - request->actual,
7151018b4e4SMing Lei 							(unsigned)len);
716550a7375SFelipe Balbi #endif
717550a7375SFelipe Balbi 					if (transfer_size <= musb_ep->packet_sz)
718550a7375SFelipe Balbi 						musb_ep->dma->desired_mode = 0;
719550a7375SFelipe Balbi 					else
720550a7375SFelipe Balbi 						musb_ep->dma->desired_mode = 1;
721550a7375SFelipe Balbi 
722550a7375SFelipe Balbi 					use_dma = c->channel_program(
723550a7375SFelipe Balbi 							channel,
724550a7375SFelipe Balbi 							musb_ep->packet_sz,
725550a7375SFelipe Balbi 							channel->desired_mode,
726550a7375SFelipe Balbi 							request->dma
727550a7375SFelipe Balbi 							+ request->actual,
728550a7375SFelipe Balbi 							transfer_size);
729550a7375SFelipe Balbi 				}
730550a7375SFelipe Balbi 
731550a7375SFelipe Balbi 				if (use_dma)
732550a7375SFelipe Balbi 					return;
733550a7375SFelipe Balbi 			}
734550a7375SFelipe Balbi #endif	/* Mentor's DMA */
735550a7375SFelipe Balbi 
736550a7375SFelipe Balbi 			fifo_count = request->length - request->actual;
737550a7375SFelipe Balbi 			DBG(3, "%s OUT/RX pio fifo %d/%d, maxpacket %d\n",
738550a7375SFelipe Balbi 					musb_ep->end_point.name,
739550a7375SFelipe Balbi 					len, fifo_count,
740550a7375SFelipe Balbi 					musb_ep->packet_sz);
741550a7375SFelipe Balbi 
742c2c96321SFelipe Balbi 			fifo_count = min_t(unsigned, len, fifo_count);
743550a7375SFelipe Balbi 
744550a7375SFelipe Balbi #ifdef	CONFIG_USB_TUSB_OMAP_DMA
745550a7375SFelipe Balbi 			if (tusb_dma_omap() && musb_ep->dma) {
746550a7375SFelipe Balbi 				struct dma_controller *c = musb->dma_controller;
747550a7375SFelipe Balbi 				struct dma_channel *channel = musb_ep->dma;
748550a7375SFelipe Balbi 				u32 dma_addr = request->dma + request->actual;
749550a7375SFelipe Balbi 				int ret;
750550a7375SFelipe Balbi 
751550a7375SFelipe Balbi 				ret = c->channel_program(channel,
752550a7375SFelipe Balbi 						musb_ep->packet_sz,
753550a7375SFelipe Balbi 						channel->desired_mode,
754550a7375SFelipe Balbi 						dma_addr,
755550a7375SFelipe Balbi 						fifo_count);
756550a7375SFelipe Balbi 				if (ret)
757550a7375SFelipe Balbi 					return;
758550a7375SFelipe Balbi 			}
759550a7375SFelipe Balbi #endif
76092d2711fSHema Kalliguddi 			/*
76192d2711fSHema Kalliguddi 			 * Unmap the dma buffer back to cpu if dma channel
76292d2711fSHema Kalliguddi 			 * programming fails. This buffer is mapped if the
76392d2711fSHema Kalliguddi 			 * channel allocation is successful
76492d2711fSHema Kalliguddi 			 */
76592d2711fSHema Kalliguddi 			 if (is_dma_capable() && musb_ep->dma) {
76692d2711fSHema Kalliguddi 				unmap_dma_buffer(req, musb);
76792d2711fSHema Kalliguddi 
768*e75df371SMing Lei 				/*
769*e75df371SMing Lei 				 * Clear DMAENAB and AUTOCLEAR for the
77092d2711fSHema Kalliguddi 				 * PIO mode transfer
77192d2711fSHema Kalliguddi 				 */
772*e75df371SMing Lei 				csr &= ~(MUSB_RXCSR_DMAENAB | MUSB_RXCSR_AUTOCLEAR);
77392d2711fSHema Kalliguddi 				musb_writew(epio, MUSB_RXCSR, csr);
77492d2711fSHema Kalliguddi 			}
775550a7375SFelipe Balbi 
776550a7375SFelipe Balbi 			musb_read_fifo(musb_ep->hw_ep, fifo_count, (u8 *)
777550a7375SFelipe Balbi 					(request->buf + request->actual));
778550a7375SFelipe Balbi 			request->actual += fifo_count;
779550a7375SFelipe Balbi 
780550a7375SFelipe Balbi 			/* REVISIT if we left anything in the fifo, flush
781550a7375SFelipe Balbi 			 * it and report -EOVERFLOW
782550a7375SFelipe Balbi 			 */
783550a7375SFelipe Balbi 
784550a7375SFelipe Balbi 			/* ack the read! */
785550a7375SFelipe Balbi 			csr |= MUSB_RXCSR_P_WZC_BITS;
786550a7375SFelipe Balbi 			csr &= ~MUSB_RXCSR_RXPKTRDY;
787550a7375SFelipe Balbi 			musb_writew(epio, MUSB_RXCSR, csr);
788550a7375SFelipe Balbi 		}
789550a7375SFelipe Balbi 	}
790550a7375SFelipe Balbi 
791550a7375SFelipe Balbi 	/* reach the end or short packet detected */
792550a7375SFelipe Balbi 	if (request->actual == request->length || len < musb_ep->packet_sz)
793550a7375SFelipe Balbi 		musb_g_giveback(musb_ep, request, 0);
794550a7375SFelipe Balbi }
795550a7375SFelipe Balbi 
796550a7375SFelipe Balbi /*
797550a7375SFelipe Balbi  * Data ready for a request; called from IRQ
798550a7375SFelipe Balbi  */
799550a7375SFelipe Balbi void musb_g_rx(struct musb *musb, u8 epnum)
800550a7375SFelipe Balbi {
801550a7375SFelipe Balbi 	u16			csr;
802550a7375SFelipe Balbi 	struct usb_request	*request;
803550a7375SFelipe Balbi 	void __iomem		*mbase = musb->mregs;
804bd2e74d6SMing Lei 	struct musb_ep		*musb_ep;
805550a7375SFelipe Balbi 	void __iomem		*epio = musb->endpoints[epnum].regs;
806550a7375SFelipe Balbi 	struct dma_channel	*dma;
807bd2e74d6SMing Lei 	struct musb_hw_ep	*hw_ep = &musb->endpoints[epnum];
808bd2e74d6SMing Lei 
809bd2e74d6SMing Lei 	if (hw_ep->is_shared_fifo)
810bd2e74d6SMing Lei 		musb_ep = &hw_ep->ep_in;
811bd2e74d6SMing Lei 	else
812bd2e74d6SMing Lei 		musb_ep = &hw_ep->ep_out;
813550a7375SFelipe Balbi 
814550a7375SFelipe Balbi 	musb_ep_select(mbase, epnum);
815550a7375SFelipe Balbi 
816550a7375SFelipe Balbi 	request = next_request(musb_ep);
8170abdc36fSMaulik Mankad 	if (!request)
8180abdc36fSMaulik Mankad 		return;
819550a7375SFelipe Balbi 
820550a7375SFelipe Balbi 	csr = musb_readw(epio, MUSB_RXCSR);
821550a7375SFelipe Balbi 	dma = is_dma_capable() ? musb_ep->dma : NULL;
822550a7375SFelipe Balbi 
823550a7375SFelipe Balbi 	DBG(4, "<== %s, rxcsr %04x%s %p\n", musb_ep->end_point.name,
824550a7375SFelipe Balbi 			csr, dma ? " (dma)" : "", request);
825550a7375SFelipe Balbi 
826550a7375SFelipe Balbi 	if (csr & MUSB_RXCSR_P_SENTSTALL) {
827550a7375SFelipe Balbi 		csr |= MUSB_RXCSR_P_WZC_BITS;
828550a7375SFelipe Balbi 		csr &= ~MUSB_RXCSR_P_SENTSTALL;
829550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR, csr);
830cea83241SSergei Shtylyov 		return;
831550a7375SFelipe Balbi 	}
832550a7375SFelipe Balbi 
833550a7375SFelipe Balbi 	if (csr & MUSB_RXCSR_P_OVERRUN) {
834550a7375SFelipe Balbi 		/* csr |= MUSB_RXCSR_P_WZC_BITS; */
835550a7375SFelipe Balbi 		csr &= ~MUSB_RXCSR_P_OVERRUN;
836550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR, csr);
837550a7375SFelipe Balbi 
838550a7375SFelipe Balbi 		DBG(3, "%s iso overrun on %p\n", musb_ep->name, request);
83943467868SSergei Shtylyov 		if (request->status == -EINPROGRESS)
840550a7375SFelipe Balbi 			request->status = -EOVERFLOW;
841550a7375SFelipe Balbi 	}
842550a7375SFelipe Balbi 	if (csr & MUSB_RXCSR_INCOMPRX) {
843550a7375SFelipe Balbi 		/* REVISIT not necessarily an error */
844550a7375SFelipe Balbi 		DBG(4, "%s, incomprx\n", musb_ep->end_point.name);
845550a7375SFelipe Balbi 	}
846550a7375SFelipe Balbi 
847550a7375SFelipe Balbi 	if (dma_channel_status(dma) == MUSB_DMA_STATUS_BUSY) {
848550a7375SFelipe Balbi 		/* "should not happen"; likely RXPKTRDY pending for DMA */
849550a7375SFelipe Balbi 		DBG((csr & MUSB_RXCSR_DMAENAB) ? 4 : 1,
850550a7375SFelipe Balbi 			"%s busy, csr %04x\n",
851550a7375SFelipe Balbi 			musb_ep->end_point.name, csr);
852cea83241SSergei Shtylyov 		return;
853550a7375SFelipe Balbi 	}
854550a7375SFelipe Balbi 
855550a7375SFelipe Balbi 	if (dma && (csr & MUSB_RXCSR_DMAENAB)) {
856550a7375SFelipe Balbi 		csr &= ~(MUSB_RXCSR_AUTOCLEAR
857550a7375SFelipe Balbi 				| MUSB_RXCSR_DMAENAB
858550a7375SFelipe Balbi 				| MUSB_RXCSR_DMAMODE);
859550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR,
860550a7375SFelipe Balbi 			MUSB_RXCSR_P_WZC_BITS | csr);
861550a7375SFelipe Balbi 
862550a7375SFelipe Balbi 		request->actual += musb_ep->dma->actual_len;
863550a7375SFelipe Balbi 
864550a7375SFelipe Balbi 		DBG(4, "RXCSR%d %04x, dma off, %04x, len %zu, req %p\n",
865550a7375SFelipe Balbi 			epnum, csr,
866550a7375SFelipe Balbi 			musb_readw(epio, MUSB_RXCSR),
867550a7375SFelipe Balbi 			musb_ep->dma->actual_len, request);
868550a7375SFelipe Balbi 
869550a7375SFelipe Balbi #if defined(CONFIG_USB_INVENTRA_DMA) || defined(CONFIG_USB_TUSB_OMAP_DMA)
870550a7375SFelipe Balbi 		/* Autoclear doesn't clear RxPktRdy for short packets */
8719001d80dSMing Lei 		if ((dma->desired_mode == 0 && !hw_ep->rx_double_buffered)
872550a7375SFelipe Balbi 				|| (dma->actual_len
873550a7375SFelipe Balbi 					& (musb_ep->packet_sz - 1))) {
874550a7375SFelipe Balbi 			/* ack the read! */
875550a7375SFelipe Balbi 			csr &= ~MUSB_RXCSR_RXPKTRDY;
876550a7375SFelipe Balbi 			musb_writew(epio, MUSB_RXCSR, csr);
877550a7375SFelipe Balbi 		}
878550a7375SFelipe Balbi 
879550a7375SFelipe Balbi 		/* incomplete, and not short? wait for next IN packet */
880550a7375SFelipe Balbi 		if ((request->actual < request->length)
881550a7375SFelipe Balbi 				&& (musb_ep->dma->actual_len
8829001d80dSMing Lei 					== musb_ep->packet_sz)) {
8839001d80dSMing Lei 			/* In double buffer case, continue to unload fifo if
8849001d80dSMing Lei  			 * there is Rx packet in FIFO.
8859001d80dSMing Lei  			 **/
8869001d80dSMing Lei 			csr = musb_readw(epio, MUSB_RXCSR);
8879001d80dSMing Lei 			if ((csr & MUSB_RXCSR_RXPKTRDY) &&
8889001d80dSMing Lei 				hw_ep->rx_double_buffered)
8899001d80dSMing Lei 				goto exit;
890cea83241SSergei Shtylyov 			return;
8919001d80dSMing Lei 		}
892550a7375SFelipe Balbi #endif
893550a7375SFelipe Balbi 		musb_g_giveback(musb_ep, request, 0);
894550a7375SFelipe Balbi 
895550a7375SFelipe Balbi 		request = next_request(musb_ep);
896550a7375SFelipe Balbi 		if (!request)
897cea83241SSergei Shtylyov 			return;
898550a7375SFelipe Balbi 	}
8999001d80dSMing Lei exit:
90043467868SSergei Shtylyov 	/* Analyze request */
901550a7375SFelipe Balbi 	rxstate(musb, to_musb_request(request));
902550a7375SFelipe Balbi }
903550a7375SFelipe Balbi 
904550a7375SFelipe Balbi /* ------------------------------------------------------------ */
905550a7375SFelipe Balbi 
906550a7375SFelipe Balbi static int musb_gadget_enable(struct usb_ep *ep,
907550a7375SFelipe Balbi 			const struct usb_endpoint_descriptor *desc)
908550a7375SFelipe Balbi {
909550a7375SFelipe Balbi 	unsigned long		flags;
910550a7375SFelipe Balbi 	struct musb_ep		*musb_ep;
911550a7375SFelipe Balbi 	struct musb_hw_ep	*hw_ep;
912550a7375SFelipe Balbi 	void __iomem		*regs;
913550a7375SFelipe Balbi 	struct musb		*musb;
914550a7375SFelipe Balbi 	void __iomem	*mbase;
915550a7375SFelipe Balbi 	u8		epnum;
916550a7375SFelipe Balbi 	u16		csr;
917550a7375SFelipe Balbi 	unsigned	tmp;
918550a7375SFelipe Balbi 	int		status = -EINVAL;
919550a7375SFelipe Balbi 
920550a7375SFelipe Balbi 	if (!ep || !desc)
921550a7375SFelipe Balbi 		return -EINVAL;
922550a7375SFelipe Balbi 
923550a7375SFelipe Balbi 	musb_ep = to_musb_ep(ep);
924550a7375SFelipe Balbi 	hw_ep = musb_ep->hw_ep;
925550a7375SFelipe Balbi 	regs = hw_ep->regs;
926550a7375SFelipe Balbi 	musb = musb_ep->musb;
927550a7375SFelipe Balbi 	mbase = musb->mregs;
928550a7375SFelipe Balbi 	epnum = musb_ep->current_epnum;
929550a7375SFelipe Balbi 
930550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
931550a7375SFelipe Balbi 
932550a7375SFelipe Balbi 	if (musb_ep->desc) {
933550a7375SFelipe Balbi 		status = -EBUSY;
934550a7375SFelipe Balbi 		goto fail;
935550a7375SFelipe Balbi 	}
93696bcd090SJulia Lawall 	musb_ep->type = usb_endpoint_type(desc);
937550a7375SFelipe Balbi 
938550a7375SFelipe Balbi 	/* check direction and (later) maxpacket size against endpoint */
93996bcd090SJulia Lawall 	if (usb_endpoint_num(desc) != epnum)
940550a7375SFelipe Balbi 		goto fail;
941550a7375SFelipe Balbi 
942550a7375SFelipe Balbi 	/* REVISIT this rules out high bandwidth periodic transfers */
943550a7375SFelipe Balbi 	tmp = le16_to_cpu(desc->wMaxPacketSize);
944f11d893dSMing Lei 	if (tmp & ~0x07ff) {
945f11d893dSMing Lei 		int ok;
946f11d893dSMing Lei 
947f11d893dSMing Lei 		if (usb_endpoint_dir_in(desc))
948f11d893dSMing Lei 			ok = musb->hb_iso_tx;
949f11d893dSMing Lei 		else
950f11d893dSMing Lei 			ok = musb->hb_iso_rx;
951f11d893dSMing Lei 
952f11d893dSMing Lei 		if (!ok) {
953f11d893dSMing Lei 			DBG(4, "%s: not support ISO high bandwidth\n", __func__);
954550a7375SFelipe Balbi 			goto fail;
955f11d893dSMing Lei 		}
956f11d893dSMing Lei 		musb_ep->hb_mult = (tmp >> 11) & 3;
957f11d893dSMing Lei 	} else {
958f11d893dSMing Lei 		musb_ep->hb_mult = 0;
959f11d893dSMing Lei 	}
960f11d893dSMing Lei 
961f11d893dSMing Lei 	musb_ep->packet_sz = tmp & 0x7ff;
962f11d893dSMing Lei 	tmp = musb_ep->packet_sz * (musb_ep->hb_mult + 1);
963550a7375SFelipe Balbi 
964550a7375SFelipe Balbi 	/* enable the interrupts for the endpoint, set the endpoint
965550a7375SFelipe Balbi 	 * packet size (or fail), set the mode, clear the fifo
966550a7375SFelipe Balbi 	 */
967550a7375SFelipe Balbi 	musb_ep_select(mbase, epnum);
96896bcd090SJulia Lawall 	if (usb_endpoint_dir_in(desc)) {
969550a7375SFelipe Balbi 		u16 int_txe = musb_readw(mbase, MUSB_INTRTXE);
970550a7375SFelipe Balbi 
971550a7375SFelipe Balbi 		if (hw_ep->is_shared_fifo)
972550a7375SFelipe Balbi 			musb_ep->is_in = 1;
973550a7375SFelipe Balbi 		if (!musb_ep->is_in)
974550a7375SFelipe Balbi 			goto fail;
975f11d893dSMing Lei 
976f11d893dSMing Lei 		if (tmp > hw_ep->max_packet_sz_tx) {
977f11d893dSMing Lei 			DBG(4, "%s: packet size beyond hw fifo size\n", __func__);
978550a7375SFelipe Balbi 			goto fail;
979f11d893dSMing Lei 		}
980550a7375SFelipe Balbi 
981550a7375SFelipe Balbi 		int_txe |= (1 << epnum);
982550a7375SFelipe Balbi 		musb_writew(mbase, MUSB_INTRTXE, int_txe);
983550a7375SFelipe Balbi 
984550a7375SFelipe Balbi 		/* REVISIT if can_bulk_split(), use by updating "tmp";
985550a7375SFelipe Balbi 		 * likewise high bandwidth periodic tx
986550a7375SFelipe Balbi 		 */
9879f445cb2SCliff Cai 		/* Set TXMAXP with the FIFO size of the endpoint
98831c9909bSMing Lei 		 * to disable double buffering mode.
9899f445cb2SCliff Cai 		 */
990f11d893dSMing Lei 		musb_writew(regs, MUSB_TXMAXP, musb_ep->packet_sz | (musb_ep->hb_mult << 11));
991550a7375SFelipe Balbi 
992550a7375SFelipe Balbi 		csr = MUSB_TXCSR_MODE | MUSB_TXCSR_CLRDATATOG;
993550a7375SFelipe Balbi 		if (musb_readw(regs, MUSB_TXCSR)
994550a7375SFelipe Balbi 				& MUSB_TXCSR_FIFONOTEMPTY)
995550a7375SFelipe Balbi 			csr |= MUSB_TXCSR_FLUSHFIFO;
996550a7375SFelipe Balbi 		if (musb_ep->type == USB_ENDPOINT_XFER_ISOC)
997550a7375SFelipe Balbi 			csr |= MUSB_TXCSR_P_ISO;
998550a7375SFelipe Balbi 
999550a7375SFelipe Balbi 		/* set twice in case of double buffering */
1000550a7375SFelipe Balbi 		musb_writew(regs, MUSB_TXCSR, csr);
1001550a7375SFelipe Balbi 		/* REVISIT may be inappropriate w/o FIFONOTEMPTY ... */
1002550a7375SFelipe Balbi 		musb_writew(regs, MUSB_TXCSR, csr);
1003550a7375SFelipe Balbi 
1004550a7375SFelipe Balbi 	} else {
1005550a7375SFelipe Balbi 		u16 int_rxe = musb_readw(mbase, MUSB_INTRRXE);
1006550a7375SFelipe Balbi 
1007550a7375SFelipe Balbi 		if (hw_ep->is_shared_fifo)
1008550a7375SFelipe Balbi 			musb_ep->is_in = 0;
1009550a7375SFelipe Balbi 		if (musb_ep->is_in)
1010550a7375SFelipe Balbi 			goto fail;
1011f11d893dSMing Lei 
1012f11d893dSMing Lei 		if (tmp > hw_ep->max_packet_sz_rx) {
1013f11d893dSMing Lei 			DBG(4, "%s: packet size beyond hw fifo size\n", __func__);
1014550a7375SFelipe Balbi 			goto fail;
1015f11d893dSMing Lei 		}
1016550a7375SFelipe Balbi 
1017550a7375SFelipe Balbi 		int_rxe |= (1 << epnum);
1018550a7375SFelipe Balbi 		musb_writew(mbase, MUSB_INTRRXE, int_rxe);
1019550a7375SFelipe Balbi 
1020550a7375SFelipe Balbi 		/* REVISIT if can_bulk_combine() use by updating "tmp"
1021550a7375SFelipe Balbi 		 * likewise high bandwidth periodic rx
1022550a7375SFelipe Balbi 		 */
10239f445cb2SCliff Cai 		/* Set RXMAXP with the FIFO size of the endpoint
10249f445cb2SCliff Cai 		 * to disable double buffering mode.
10259f445cb2SCliff Cai 		 */
1026f11d893dSMing Lei 		musb_writew(regs, MUSB_RXMAXP, musb_ep->packet_sz | (musb_ep->hb_mult << 11));
1027550a7375SFelipe Balbi 
1028550a7375SFelipe Balbi 		/* force shared fifo to OUT-only mode */
1029550a7375SFelipe Balbi 		if (hw_ep->is_shared_fifo) {
1030550a7375SFelipe Balbi 			csr = musb_readw(regs, MUSB_TXCSR);
1031550a7375SFelipe Balbi 			csr &= ~(MUSB_TXCSR_MODE | MUSB_TXCSR_TXPKTRDY);
1032550a7375SFelipe Balbi 			musb_writew(regs, MUSB_TXCSR, csr);
1033550a7375SFelipe Balbi 		}
1034550a7375SFelipe Balbi 
1035550a7375SFelipe Balbi 		csr = MUSB_RXCSR_FLUSHFIFO | MUSB_RXCSR_CLRDATATOG;
1036550a7375SFelipe Balbi 		if (musb_ep->type == USB_ENDPOINT_XFER_ISOC)
1037550a7375SFelipe Balbi 			csr |= MUSB_RXCSR_P_ISO;
1038550a7375SFelipe Balbi 		else if (musb_ep->type == USB_ENDPOINT_XFER_INT)
1039550a7375SFelipe Balbi 			csr |= MUSB_RXCSR_DISNYET;
1040550a7375SFelipe Balbi 
1041550a7375SFelipe Balbi 		/* set twice in case of double buffering */
1042550a7375SFelipe Balbi 		musb_writew(regs, MUSB_RXCSR, csr);
1043550a7375SFelipe Balbi 		musb_writew(regs, MUSB_RXCSR, csr);
1044550a7375SFelipe Balbi 	}
1045550a7375SFelipe Balbi 
1046550a7375SFelipe Balbi 	/* NOTE:  all the I/O code _should_ work fine without DMA, in case
1047550a7375SFelipe Balbi 	 * for some reason you run out of channels here.
1048550a7375SFelipe Balbi 	 */
1049550a7375SFelipe Balbi 	if (is_dma_capable() && musb->dma_controller) {
1050550a7375SFelipe Balbi 		struct dma_controller	*c = musb->dma_controller;
1051550a7375SFelipe Balbi 
1052550a7375SFelipe Balbi 		musb_ep->dma = c->channel_alloc(c, hw_ep,
1053550a7375SFelipe Balbi 				(desc->bEndpointAddress & USB_DIR_IN));
1054550a7375SFelipe Balbi 	} else
1055550a7375SFelipe Balbi 		musb_ep->dma = NULL;
1056550a7375SFelipe Balbi 
1057550a7375SFelipe Balbi 	musb_ep->desc = desc;
1058550a7375SFelipe Balbi 	musb_ep->busy = 0;
105947e97605SSergei Shtylyov 	musb_ep->wedged = 0;
1060550a7375SFelipe Balbi 	status = 0;
1061550a7375SFelipe Balbi 
1062550a7375SFelipe Balbi 	pr_debug("%s periph: enabled %s for %s %s, %smaxpacket %d\n",
1063550a7375SFelipe Balbi 			musb_driver_name, musb_ep->end_point.name,
1064550a7375SFelipe Balbi 			({ char *s; switch (musb_ep->type) {
1065550a7375SFelipe Balbi 			case USB_ENDPOINT_XFER_BULK:	s = "bulk"; break;
1066550a7375SFelipe Balbi 			case USB_ENDPOINT_XFER_INT:	s = "int"; break;
1067550a7375SFelipe Balbi 			default:			s = "iso"; break;
1068550a7375SFelipe Balbi 			}; s; }),
1069550a7375SFelipe Balbi 			musb_ep->is_in ? "IN" : "OUT",
1070550a7375SFelipe Balbi 			musb_ep->dma ? "dma, " : "",
1071550a7375SFelipe Balbi 			musb_ep->packet_sz);
1072550a7375SFelipe Balbi 
1073550a7375SFelipe Balbi 	schedule_work(&musb->irq_work);
1074550a7375SFelipe Balbi 
1075550a7375SFelipe Balbi fail:
1076550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1077550a7375SFelipe Balbi 	return status;
1078550a7375SFelipe Balbi }
1079550a7375SFelipe Balbi 
1080550a7375SFelipe Balbi /*
1081550a7375SFelipe Balbi  * Disable an endpoint flushing all requests queued.
1082550a7375SFelipe Balbi  */
1083550a7375SFelipe Balbi static int musb_gadget_disable(struct usb_ep *ep)
1084550a7375SFelipe Balbi {
1085550a7375SFelipe Balbi 	unsigned long	flags;
1086550a7375SFelipe Balbi 	struct musb	*musb;
1087550a7375SFelipe Balbi 	u8		epnum;
1088550a7375SFelipe Balbi 	struct musb_ep	*musb_ep;
1089550a7375SFelipe Balbi 	void __iomem	*epio;
1090550a7375SFelipe Balbi 	int		status = 0;
1091550a7375SFelipe Balbi 
1092550a7375SFelipe Balbi 	musb_ep = to_musb_ep(ep);
1093550a7375SFelipe Balbi 	musb = musb_ep->musb;
1094550a7375SFelipe Balbi 	epnum = musb_ep->current_epnum;
1095550a7375SFelipe Balbi 	epio = musb->endpoints[epnum].regs;
1096550a7375SFelipe Balbi 
1097550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1098550a7375SFelipe Balbi 	musb_ep_select(musb->mregs, epnum);
1099550a7375SFelipe Balbi 
1100550a7375SFelipe Balbi 	/* zero the endpoint sizes */
1101550a7375SFelipe Balbi 	if (musb_ep->is_in) {
1102550a7375SFelipe Balbi 		u16 int_txe = musb_readw(musb->mregs, MUSB_INTRTXE);
1103550a7375SFelipe Balbi 		int_txe &= ~(1 << epnum);
1104550a7375SFelipe Balbi 		musb_writew(musb->mregs, MUSB_INTRTXE, int_txe);
1105550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXMAXP, 0);
1106550a7375SFelipe Balbi 	} else {
1107550a7375SFelipe Balbi 		u16 int_rxe = musb_readw(musb->mregs, MUSB_INTRRXE);
1108550a7375SFelipe Balbi 		int_rxe &= ~(1 << epnum);
1109550a7375SFelipe Balbi 		musb_writew(musb->mregs, MUSB_INTRRXE, int_rxe);
1110550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXMAXP, 0);
1111550a7375SFelipe Balbi 	}
1112550a7375SFelipe Balbi 
1113550a7375SFelipe Balbi 	musb_ep->desc = NULL;
1114550a7375SFelipe Balbi 
1115550a7375SFelipe Balbi 	/* abort all pending DMA and requests */
1116550a7375SFelipe Balbi 	nuke(musb_ep, -ESHUTDOWN);
1117550a7375SFelipe Balbi 
1118550a7375SFelipe Balbi 	schedule_work(&musb->irq_work);
1119550a7375SFelipe Balbi 
1120550a7375SFelipe Balbi 	spin_unlock_irqrestore(&(musb->lock), flags);
1121550a7375SFelipe Balbi 
1122550a7375SFelipe Balbi 	DBG(2, "%s\n", musb_ep->end_point.name);
1123550a7375SFelipe Balbi 
1124550a7375SFelipe Balbi 	return status;
1125550a7375SFelipe Balbi }
1126550a7375SFelipe Balbi 
1127550a7375SFelipe Balbi /*
1128550a7375SFelipe Balbi  * Allocate a request for an endpoint.
1129550a7375SFelipe Balbi  * Reused by ep0 code.
1130550a7375SFelipe Balbi  */
1131550a7375SFelipe Balbi struct usb_request *musb_alloc_request(struct usb_ep *ep, gfp_t gfp_flags)
1132550a7375SFelipe Balbi {
1133550a7375SFelipe Balbi 	struct musb_ep		*musb_ep = to_musb_ep(ep);
1134550a7375SFelipe Balbi 	struct musb_request	*request = NULL;
1135550a7375SFelipe Balbi 
1136550a7375SFelipe Balbi 	request = kzalloc(sizeof *request, gfp_flags);
1137550a7375SFelipe Balbi 	if (request) {
1138550a7375SFelipe Balbi 		INIT_LIST_HEAD(&request->request.list);
1139550a7375SFelipe Balbi 		request->request.dma = DMA_ADDR_INVALID;
1140550a7375SFelipe Balbi 		request->epnum = musb_ep->current_epnum;
1141550a7375SFelipe Balbi 		request->ep = musb_ep;
1142550a7375SFelipe Balbi 	}
1143550a7375SFelipe Balbi 
1144550a7375SFelipe Balbi 	return &request->request;
1145550a7375SFelipe Balbi }
1146550a7375SFelipe Balbi 
1147550a7375SFelipe Balbi /*
1148550a7375SFelipe Balbi  * Free a request
1149550a7375SFelipe Balbi  * Reused by ep0 code.
1150550a7375SFelipe Balbi  */
1151550a7375SFelipe Balbi void musb_free_request(struct usb_ep *ep, struct usb_request *req)
1152550a7375SFelipe Balbi {
1153550a7375SFelipe Balbi 	kfree(to_musb_request(req));
1154550a7375SFelipe Balbi }
1155550a7375SFelipe Balbi 
1156550a7375SFelipe Balbi static LIST_HEAD(buffers);
1157550a7375SFelipe Balbi 
1158550a7375SFelipe Balbi struct free_record {
1159550a7375SFelipe Balbi 	struct list_head	list;
1160550a7375SFelipe Balbi 	struct device		*dev;
1161550a7375SFelipe Balbi 	unsigned		bytes;
1162550a7375SFelipe Balbi 	dma_addr_t		dma;
1163550a7375SFelipe Balbi };
1164550a7375SFelipe Balbi 
1165550a7375SFelipe Balbi /*
1166550a7375SFelipe Balbi  * Context: controller locked, IRQs blocked.
1167550a7375SFelipe Balbi  */
1168a666e3e6SSergei Shtylyov void musb_ep_restart(struct musb *musb, struct musb_request *req)
1169550a7375SFelipe Balbi {
1170550a7375SFelipe Balbi 	DBG(3, "<== %s request %p len %u on hw_ep%d\n",
1171550a7375SFelipe Balbi 		req->tx ? "TX/IN" : "RX/OUT",
1172550a7375SFelipe Balbi 		&req->request, req->request.length, req->epnum);
1173550a7375SFelipe Balbi 
1174550a7375SFelipe Balbi 	musb_ep_select(musb->mregs, req->epnum);
1175550a7375SFelipe Balbi 	if (req->tx)
1176550a7375SFelipe Balbi 		txstate(musb, req);
1177550a7375SFelipe Balbi 	else
1178550a7375SFelipe Balbi 		rxstate(musb, req);
1179550a7375SFelipe Balbi }
1180550a7375SFelipe Balbi 
1181550a7375SFelipe Balbi static int musb_gadget_queue(struct usb_ep *ep, struct usb_request *req,
1182550a7375SFelipe Balbi 			gfp_t gfp_flags)
1183550a7375SFelipe Balbi {
1184550a7375SFelipe Balbi 	struct musb_ep		*musb_ep;
1185550a7375SFelipe Balbi 	struct musb_request	*request;
1186550a7375SFelipe Balbi 	struct musb		*musb;
1187550a7375SFelipe Balbi 	int			status = 0;
1188550a7375SFelipe Balbi 	unsigned long		lockflags;
1189550a7375SFelipe Balbi 
1190550a7375SFelipe Balbi 	if (!ep || !req)
1191550a7375SFelipe Balbi 		return -EINVAL;
1192550a7375SFelipe Balbi 	if (!req->buf)
1193550a7375SFelipe Balbi 		return -ENODATA;
1194550a7375SFelipe Balbi 
1195550a7375SFelipe Balbi 	musb_ep = to_musb_ep(ep);
1196550a7375SFelipe Balbi 	musb = musb_ep->musb;
1197550a7375SFelipe Balbi 
1198550a7375SFelipe Balbi 	request = to_musb_request(req);
1199550a7375SFelipe Balbi 	request->musb = musb;
1200550a7375SFelipe Balbi 
1201550a7375SFelipe Balbi 	if (request->ep != musb_ep)
1202550a7375SFelipe Balbi 		return -EINVAL;
1203550a7375SFelipe Balbi 
1204550a7375SFelipe Balbi 	DBG(4, "<== to %s request=%p\n", ep->name, req);
1205550a7375SFelipe Balbi 
1206550a7375SFelipe Balbi 	/* request is mine now... */
1207550a7375SFelipe Balbi 	request->request.actual = 0;
1208550a7375SFelipe Balbi 	request->request.status = -EINPROGRESS;
1209550a7375SFelipe Balbi 	request->epnum = musb_ep->current_epnum;
1210550a7375SFelipe Balbi 	request->tx = musb_ep->is_in;
1211550a7375SFelipe Balbi 
121292d2711fSHema Kalliguddi 	if (is_dma_capable() && musb_ep->dma)
121392d2711fSHema Kalliguddi 		map_dma_buffer(request, musb);
121492d2711fSHema Kalliguddi 	else
1215550a7375SFelipe Balbi 		request->mapped = 0;
1216550a7375SFelipe Balbi 
1217550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, lockflags);
1218550a7375SFelipe Balbi 
1219550a7375SFelipe Balbi 	/* don't queue if the ep is down */
1220550a7375SFelipe Balbi 	if (!musb_ep->desc) {
1221550a7375SFelipe Balbi 		DBG(4, "req %p queued to %s while ep %s\n",
1222550a7375SFelipe Balbi 				req, ep->name, "disabled");
1223550a7375SFelipe Balbi 		status = -ESHUTDOWN;
1224550a7375SFelipe Balbi 		goto cleanup;
1225550a7375SFelipe Balbi 	}
1226550a7375SFelipe Balbi 
1227550a7375SFelipe Balbi 	/* add request to the list */
1228550a7375SFelipe Balbi 	list_add_tail(&(request->request.list), &(musb_ep->req_list));
1229550a7375SFelipe Balbi 
1230550a7375SFelipe Balbi 	/* it this is the head of the queue, start i/o ... */
1231550a7375SFelipe Balbi 	if (!musb_ep->busy && &request->request.list == musb_ep->req_list.next)
1232550a7375SFelipe Balbi 		musb_ep_restart(musb, request);
1233550a7375SFelipe Balbi 
1234550a7375SFelipe Balbi cleanup:
1235550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, lockflags);
1236550a7375SFelipe Balbi 	return status;
1237550a7375SFelipe Balbi }
1238550a7375SFelipe Balbi 
1239550a7375SFelipe Balbi static int musb_gadget_dequeue(struct usb_ep *ep, struct usb_request *request)
1240550a7375SFelipe Balbi {
1241550a7375SFelipe Balbi 	struct musb_ep		*musb_ep = to_musb_ep(ep);
1242550a7375SFelipe Balbi 	struct usb_request	*r;
1243550a7375SFelipe Balbi 	unsigned long		flags;
1244550a7375SFelipe Balbi 	int			status = 0;
1245550a7375SFelipe Balbi 	struct musb		*musb = musb_ep->musb;
1246550a7375SFelipe Balbi 
1247550a7375SFelipe Balbi 	if (!ep || !request || to_musb_request(request)->ep != musb_ep)
1248550a7375SFelipe Balbi 		return -EINVAL;
1249550a7375SFelipe Balbi 
1250550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1251550a7375SFelipe Balbi 
1252550a7375SFelipe Balbi 	list_for_each_entry(r, &musb_ep->req_list, list) {
1253550a7375SFelipe Balbi 		if (r == request)
1254550a7375SFelipe Balbi 			break;
1255550a7375SFelipe Balbi 	}
1256550a7375SFelipe Balbi 	if (r != request) {
1257550a7375SFelipe Balbi 		DBG(3, "request %p not queued to %s\n", request, ep->name);
1258550a7375SFelipe Balbi 		status = -EINVAL;
1259550a7375SFelipe Balbi 		goto done;
1260550a7375SFelipe Balbi 	}
1261550a7375SFelipe Balbi 
1262550a7375SFelipe Balbi 	/* if the hardware doesn't have the request, easy ... */
1263550a7375SFelipe Balbi 	if (musb_ep->req_list.next != &request->list || musb_ep->busy)
1264550a7375SFelipe Balbi 		musb_g_giveback(musb_ep, request, -ECONNRESET);
1265550a7375SFelipe Balbi 
1266550a7375SFelipe Balbi 	/* ... else abort the dma transfer ... */
1267550a7375SFelipe Balbi 	else if (is_dma_capable() && musb_ep->dma) {
1268550a7375SFelipe Balbi 		struct dma_controller	*c = musb->dma_controller;
1269550a7375SFelipe Balbi 
1270550a7375SFelipe Balbi 		musb_ep_select(musb->mregs, musb_ep->current_epnum);
1271550a7375SFelipe Balbi 		if (c->channel_abort)
1272550a7375SFelipe Balbi 			status = c->channel_abort(musb_ep->dma);
1273550a7375SFelipe Balbi 		else
1274550a7375SFelipe Balbi 			status = -EBUSY;
1275550a7375SFelipe Balbi 		if (status == 0)
1276550a7375SFelipe Balbi 			musb_g_giveback(musb_ep, request, -ECONNRESET);
1277550a7375SFelipe Balbi 	} else {
1278550a7375SFelipe Balbi 		/* NOTE: by sticking to easily tested hardware/driver states,
1279550a7375SFelipe Balbi 		 * we leave counting of in-flight packets imprecise.
1280550a7375SFelipe Balbi 		 */
1281550a7375SFelipe Balbi 		musb_g_giveback(musb_ep, request, -ECONNRESET);
1282550a7375SFelipe Balbi 	}
1283550a7375SFelipe Balbi 
1284550a7375SFelipe Balbi done:
1285550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1286550a7375SFelipe Balbi 	return status;
1287550a7375SFelipe Balbi }
1288550a7375SFelipe Balbi 
1289550a7375SFelipe Balbi /*
1290550a7375SFelipe Balbi  * Set or clear the halt bit of an endpoint. A halted enpoint won't tx/rx any
1291550a7375SFelipe Balbi  * data but will queue requests.
1292550a7375SFelipe Balbi  *
1293550a7375SFelipe Balbi  * exported to ep0 code
1294550a7375SFelipe Balbi  */
12951b6c3b0fSFelipe Balbi static int musb_gadget_set_halt(struct usb_ep *ep, int value)
1296550a7375SFelipe Balbi {
1297550a7375SFelipe Balbi 	struct musb_ep		*musb_ep = to_musb_ep(ep);
1298550a7375SFelipe Balbi 	u8			epnum = musb_ep->current_epnum;
1299550a7375SFelipe Balbi 	struct musb		*musb = musb_ep->musb;
1300550a7375SFelipe Balbi 	void __iomem		*epio = musb->endpoints[epnum].regs;
1301550a7375SFelipe Balbi 	void __iomem		*mbase;
1302550a7375SFelipe Balbi 	unsigned long		flags;
1303550a7375SFelipe Balbi 	u16			csr;
1304cea83241SSergei Shtylyov 	struct musb_request	*request;
1305550a7375SFelipe Balbi 	int			status = 0;
1306550a7375SFelipe Balbi 
1307550a7375SFelipe Balbi 	if (!ep)
1308550a7375SFelipe Balbi 		return -EINVAL;
1309550a7375SFelipe Balbi 	mbase = musb->mregs;
1310550a7375SFelipe Balbi 
1311550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1312550a7375SFelipe Balbi 
1313550a7375SFelipe Balbi 	if ((USB_ENDPOINT_XFER_ISOC == musb_ep->type)) {
1314550a7375SFelipe Balbi 		status = -EINVAL;
1315550a7375SFelipe Balbi 		goto done;
1316550a7375SFelipe Balbi 	}
1317550a7375SFelipe Balbi 
1318550a7375SFelipe Balbi 	musb_ep_select(mbase, epnum);
1319550a7375SFelipe Balbi 
1320550a7375SFelipe Balbi 	request = to_musb_request(next_request(musb_ep));
1321cea83241SSergei Shtylyov 	if (value) {
1322cea83241SSergei Shtylyov 		if (request) {
1323cea83241SSergei Shtylyov 			DBG(3, "request in progress, cannot halt %s\n",
1324cea83241SSergei Shtylyov 			    ep->name);
1325cea83241SSergei Shtylyov 			status = -EAGAIN;
1326cea83241SSergei Shtylyov 			goto done;
1327cea83241SSergei Shtylyov 		}
1328cea83241SSergei Shtylyov 		/* Cannot portably stall with non-empty FIFO */
1329cea83241SSergei Shtylyov 		if (musb_ep->is_in) {
1330550a7375SFelipe Balbi 			csr = musb_readw(epio, MUSB_TXCSR);
1331550a7375SFelipe Balbi 			if (csr & MUSB_TXCSR_FIFONOTEMPTY) {
1332cea83241SSergei Shtylyov 				DBG(3, "FIFO busy, cannot halt %s\n", ep->name);
1333cea83241SSergei Shtylyov 				status = -EAGAIN;
1334cea83241SSergei Shtylyov 				goto done;
1335550a7375SFelipe Balbi 			}
1336cea83241SSergei Shtylyov 		}
133747e97605SSergei Shtylyov 	} else
133847e97605SSergei Shtylyov 		musb_ep->wedged = 0;
1339550a7375SFelipe Balbi 
1340550a7375SFelipe Balbi 	/* set/clear the stall and toggle bits */
1341550a7375SFelipe Balbi 	DBG(2, "%s: %s stall\n", ep->name, value ? "set" : "clear");
1342550a7375SFelipe Balbi 	if (musb_ep->is_in) {
1343550a7375SFelipe Balbi 		csr = musb_readw(epio, MUSB_TXCSR);
1344550a7375SFelipe Balbi 		csr |= MUSB_TXCSR_P_WZC_BITS
1345550a7375SFelipe Balbi 			| MUSB_TXCSR_CLRDATATOG;
1346550a7375SFelipe Balbi 		if (value)
1347550a7375SFelipe Balbi 			csr |= MUSB_TXCSR_P_SENDSTALL;
1348550a7375SFelipe Balbi 		else
1349550a7375SFelipe Balbi 			csr &= ~(MUSB_TXCSR_P_SENDSTALL
1350550a7375SFelipe Balbi 				| MUSB_TXCSR_P_SENTSTALL);
1351550a7375SFelipe Balbi 		csr &= ~MUSB_TXCSR_TXPKTRDY;
1352550a7375SFelipe Balbi 		musb_writew(epio, MUSB_TXCSR, csr);
1353550a7375SFelipe Balbi 	} else {
1354550a7375SFelipe Balbi 		csr = musb_readw(epio, MUSB_RXCSR);
1355550a7375SFelipe Balbi 		csr |= MUSB_RXCSR_P_WZC_BITS
1356550a7375SFelipe Balbi 			| MUSB_RXCSR_FLUSHFIFO
1357550a7375SFelipe Balbi 			| MUSB_RXCSR_CLRDATATOG;
1358550a7375SFelipe Balbi 		if (value)
1359550a7375SFelipe Balbi 			csr |= MUSB_RXCSR_P_SENDSTALL;
1360550a7375SFelipe Balbi 		else
1361550a7375SFelipe Balbi 			csr &= ~(MUSB_RXCSR_P_SENDSTALL
1362550a7375SFelipe Balbi 				| MUSB_RXCSR_P_SENTSTALL);
1363550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR, csr);
1364550a7375SFelipe Balbi 	}
1365550a7375SFelipe Balbi 
1366550a7375SFelipe Balbi 	/* maybe start the first request in the queue */
1367550a7375SFelipe Balbi 	if (!musb_ep->busy && !value && request) {
1368550a7375SFelipe Balbi 		DBG(3, "restarting the request\n");
1369550a7375SFelipe Balbi 		musb_ep_restart(musb, request);
1370550a7375SFelipe Balbi 	}
1371550a7375SFelipe Balbi 
1372cea83241SSergei Shtylyov done:
1373550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1374550a7375SFelipe Balbi 	return status;
1375550a7375SFelipe Balbi }
1376550a7375SFelipe Balbi 
137747e97605SSergei Shtylyov /*
137847e97605SSergei Shtylyov  * Sets the halt feature with the clear requests ignored
137947e97605SSergei Shtylyov  */
13801b6c3b0fSFelipe Balbi static int musb_gadget_set_wedge(struct usb_ep *ep)
138147e97605SSergei Shtylyov {
138247e97605SSergei Shtylyov 	struct musb_ep		*musb_ep = to_musb_ep(ep);
138347e97605SSergei Shtylyov 
138447e97605SSergei Shtylyov 	if (!ep)
138547e97605SSergei Shtylyov 		return -EINVAL;
138647e97605SSergei Shtylyov 
138747e97605SSergei Shtylyov 	musb_ep->wedged = 1;
138847e97605SSergei Shtylyov 
138947e97605SSergei Shtylyov 	return usb_ep_set_halt(ep);
139047e97605SSergei Shtylyov }
139147e97605SSergei Shtylyov 
1392550a7375SFelipe Balbi static int musb_gadget_fifo_status(struct usb_ep *ep)
1393550a7375SFelipe Balbi {
1394550a7375SFelipe Balbi 	struct musb_ep		*musb_ep = to_musb_ep(ep);
1395550a7375SFelipe Balbi 	void __iomem		*epio = musb_ep->hw_ep->regs;
1396550a7375SFelipe Balbi 	int			retval = -EINVAL;
1397550a7375SFelipe Balbi 
1398550a7375SFelipe Balbi 	if (musb_ep->desc && !musb_ep->is_in) {
1399550a7375SFelipe Balbi 		struct musb		*musb = musb_ep->musb;
1400550a7375SFelipe Balbi 		int			epnum = musb_ep->current_epnum;
1401550a7375SFelipe Balbi 		void __iomem		*mbase = musb->mregs;
1402550a7375SFelipe Balbi 		unsigned long		flags;
1403550a7375SFelipe Balbi 
1404550a7375SFelipe Balbi 		spin_lock_irqsave(&musb->lock, flags);
1405550a7375SFelipe Balbi 
1406550a7375SFelipe Balbi 		musb_ep_select(mbase, epnum);
1407550a7375SFelipe Balbi 		/* FIXME return zero unless RXPKTRDY is set */
1408550a7375SFelipe Balbi 		retval = musb_readw(epio, MUSB_RXCOUNT);
1409550a7375SFelipe Balbi 
1410550a7375SFelipe Balbi 		spin_unlock_irqrestore(&musb->lock, flags);
1411550a7375SFelipe Balbi 	}
1412550a7375SFelipe Balbi 	return retval;
1413550a7375SFelipe Balbi }
1414550a7375SFelipe Balbi 
1415550a7375SFelipe Balbi static void musb_gadget_fifo_flush(struct usb_ep *ep)
1416550a7375SFelipe Balbi {
1417550a7375SFelipe Balbi 	struct musb_ep	*musb_ep = to_musb_ep(ep);
1418550a7375SFelipe Balbi 	struct musb	*musb = musb_ep->musb;
1419550a7375SFelipe Balbi 	u8		epnum = musb_ep->current_epnum;
1420550a7375SFelipe Balbi 	void __iomem	*epio = musb->endpoints[epnum].regs;
1421550a7375SFelipe Balbi 	void __iomem	*mbase;
1422550a7375SFelipe Balbi 	unsigned long	flags;
1423550a7375SFelipe Balbi 	u16		csr, int_txe;
1424550a7375SFelipe Balbi 
1425550a7375SFelipe Balbi 	mbase = musb->mregs;
1426550a7375SFelipe Balbi 
1427550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1428550a7375SFelipe Balbi 	musb_ep_select(mbase, (u8) epnum);
1429550a7375SFelipe Balbi 
1430550a7375SFelipe Balbi 	/* disable interrupts */
1431550a7375SFelipe Balbi 	int_txe = musb_readw(mbase, MUSB_INTRTXE);
1432550a7375SFelipe Balbi 	musb_writew(mbase, MUSB_INTRTXE, int_txe & ~(1 << epnum));
1433550a7375SFelipe Balbi 
1434550a7375SFelipe Balbi 	if (musb_ep->is_in) {
1435550a7375SFelipe Balbi 		csr = musb_readw(epio, MUSB_TXCSR);
1436550a7375SFelipe Balbi 		if (csr & MUSB_TXCSR_FIFONOTEMPTY) {
1437550a7375SFelipe Balbi 			csr |= MUSB_TXCSR_FLUSHFIFO | MUSB_TXCSR_P_WZC_BITS;
1438550a7375SFelipe Balbi 			musb_writew(epio, MUSB_TXCSR, csr);
1439550a7375SFelipe Balbi 			/* REVISIT may be inappropriate w/o FIFONOTEMPTY ... */
1440550a7375SFelipe Balbi 			musb_writew(epio, MUSB_TXCSR, csr);
1441550a7375SFelipe Balbi 		}
1442550a7375SFelipe Balbi 	} else {
1443550a7375SFelipe Balbi 		csr = musb_readw(epio, MUSB_RXCSR);
1444550a7375SFelipe Balbi 		csr |= MUSB_RXCSR_FLUSHFIFO | MUSB_RXCSR_P_WZC_BITS;
1445550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR, csr);
1446550a7375SFelipe Balbi 		musb_writew(epio, MUSB_RXCSR, csr);
1447550a7375SFelipe Balbi 	}
1448550a7375SFelipe Balbi 
1449550a7375SFelipe Balbi 	/* re-enable interrupt */
1450550a7375SFelipe Balbi 	musb_writew(mbase, MUSB_INTRTXE, int_txe);
1451550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1452550a7375SFelipe Balbi }
1453550a7375SFelipe Balbi 
1454550a7375SFelipe Balbi static const struct usb_ep_ops musb_ep_ops = {
1455550a7375SFelipe Balbi 	.enable		= musb_gadget_enable,
1456550a7375SFelipe Balbi 	.disable	= musb_gadget_disable,
1457550a7375SFelipe Balbi 	.alloc_request	= musb_alloc_request,
1458550a7375SFelipe Balbi 	.free_request	= musb_free_request,
1459550a7375SFelipe Balbi 	.queue		= musb_gadget_queue,
1460550a7375SFelipe Balbi 	.dequeue	= musb_gadget_dequeue,
1461550a7375SFelipe Balbi 	.set_halt	= musb_gadget_set_halt,
146247e97605SSergei Shtylyov 	.set_wedge	= musb_gadget_set_wedge,
1463550a7375SFelipe Balbi 	.fifo_status	= musb_gadget_fifo_status,
1464550a7375SFelipe Balbi 	.fifo_flush	= musb_gadget_fifo_flush
1465550a7375SFelipe Balbi };
1466550a7375SFelipe Balbi 
1467550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
1468550a7375SFelipe Balbi 
1469550a7375SFelipe Balbi static int musb_gadget_get_frame(struct usb_gadget *gadget)
1470550a7375SFelipe Balbi {
1471550a7375SFelipe Balbi 	struct musb	*musb = gadget_to_musb(gadget);
1472550a7375SFelipe Balbi 
1473550a7375SFelipe Balbi 	return (int)musb_readw(musb->mregs, MUSB_FRAME);
1474550a7375SFelipe Balbi }
1475550a7375SFelipe Balbi 
1476550a7375SFelipe Balbi static int musb_gadget_wakeup(struct usb_gadget *gadget)
1477550a7375SFelipe Balbi {
1478550a7375SFelipe Balbi 	struct musb	*musb = gadget_to_musb(gadget);
1479550a7375SFelipe Balbi 	void __iomem	*mregs = musb->mregs;
1480550a7375SFelipe Balbi 	unsigned long	flags;
1481550a7375SFelipe Balbi 	int		status = -EINVAL;
1482550a7375SFelipe Balbi 	u8		power, devctl;
1483550a7375SFelipe Balbi 	int		retries;
1484550a7375SFelipe Balbi 
1485550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1486550a7375SFelipe Balbi 
148784e250ffSDavid Brownell 	switch (musb->xceiv->state) {
1488550a7375SFelipe Balbi 	case OTG_STATE_B_PERIPHERAL:
1489550a7375SFelipe Balbi 		/* NOTE:  OTG state machine doesn't include B_SUSPENDED;
1490550a7375SFelipe Balbi 		 * that's part of the standard usb 1.1 state machine, and
1491550a7375SFelipe Balbi 		 * doesn't affect OTG transitions.
1492550a7375SFelipe Balbi 		 */
1493550a7375SFelipe Balbi 		if (musb->may_wakeup && musb->is_suspended)
1494550a7375SFelipe Balbi 			break;
1495550a7375SFelipe Balbi 		goto done;
1496550a7375SFelipe Balbi 	case OTG_STATE_B_IDLE:
1497550a7375SFelipe Balbi 		/* Start SRP ... OTG not required. */
1498550a7375SFelipe Balbi 		devctl = musb_readb(mregs, MUSB_DEVCTL);
1499550a7375SFelipe Balbi 		DBG(2, "Sending SRP: devctl: %02x\n", devctl);
1500550a7375SFelipe Balbi 		devctl |= MUSB_DEVCTL_SESSION;
1501550a7375SFelipe Balbi 		musb_writeb(mregs, MUSB_DEVCTL, devctl);
1502550a7375SFelipe Balbi 		devctl = musb_readb(mregs, MUSB_DEVCTL);
1503550a7375SFelipe Balbi 		retries = 100;
1504550a7375SFelipe Balbi 		while (!(devctl & MUSB_DEVCTL_SESSION)) {
1505550a7375SFelipe Balbi 			devctl = musb_readb(mregs, MUSB_DEVCTL);
1506550a7375SFelipe Balbi 			if (retries-- < 1)
1507550a7375SFelipe Balbi 				break;
1508550a7375SFelipe Balbi 		}
1509550a7375SFelipe Balbi 		retries = 10000;
1510550a7375SFelipe Balbi 		while (devctl & MUSB_DEVCTL_SESSION) {
1511550a7375SFelipe Balbi 			devctl = musb_readb(mregs, MUSB_DEVCTL);
1512550a7375SFelipe Balbi 			if (retries-- < 1)
1513550a7375SFelipe Balbi 				break;
1514550a7375SFelipe Balbi 		}
1515550a7375SFelipe Balbi 
1516550a7375SFelipe Balbi 		/* Block idling for at least 1s */
1517550a7375SFelipe Balbi 		musb_platform_try_idle(musb,
1518550a7375SFelipe Balbi 			jiffies + msecs_to_jiffies(1 * HZ));
1519550a7375SFelipe Balbi 
1520550a7375SFelipe Balbi 		status = 0;
1521550a7375SFelipe Balbi 		goto done;
1522550a7375SFelipe Balbi 	default:
1523550a7375SFelipe Balbi 		DBG(2, "Unhandled wake: %s\n", otg_state_string(musb));
1524550a7375SFelipe Balbi 		goto done;
1525550a7375SFelipe Balbi 	}
1526550a7375SFelipe Balbi 
1527550a7375SFelipe Balbi 	status = 0;
1528550a7375SFelipe Balbi 
1529550a7375SFelipe Balbi 	power = musb_readb(mregs, MUSB_POWER);
1530550a7375SFelipe Balbi 	power |= MUSB_POWER_RESUME;
1531550a7375SFelipe Balbi 	musb_writeb(mregs, MUSB_POWER, power);
1532550a7375SFelipe Balbi 	DBG(2, "issue wakeup\n");
1533550a7375SFelipe Balbi 
1534550a7375SFelipe Balbi 	/* FIXME do this next chunk in a timer callback, no udelay */
1535550a7375SFelipe Balbi 	mdelay(2);
1536550a7375SFelipe Balbi 
1537550a7375SFelipe Balbi 	power = musb_readb(mregs, MUSB_POWER);
1538550a7375SFelipe Balbi 	power &= ~MUSB_POWER_RESUME;
1539550a7375SFelipe Balbi 	musb_writeb(mregs, MUSB_POWER, power);
1540550a7375SFelipe Balbi done:
1541550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1542550a7375SFelipe Balbi 	return status;
1543550a7375SFelipe Balbi }
1544550a7375SFelipe Balbi 
1545550a7375SFelipe Balbi static int
1546550a7375SFelipe Balbi musb_gadget_set_self_powered(struct usb_gadget *gadget, int is_selfpowered)
1547550a7375SFelipe Balbi {
1548550a7375SFelipe Balbi 	struct musb	*musb = gadget_to_musb(gadget);
1549550a7375SFelipe Balbi 
1550550a7375SFelipe Balbi 	musb->is_self_powered = !!is_selfpowered;
1551550a7375SFelipe Balbi 	return 0;
1552550a7375SFelipe Balbi }
1553550a7375SFelipe Balbi 
1554550a7375SFelipe Balbi static void musb_pullup(struct musb *musb, int is_on)
1555550a7375SFelipe Balbi {
1556550a7375SFelipe Balbi 	u8 power;
1557550a7375SFelipe Balbi 
1558550a7375SFelipe Balbi 	power = musb_readb(musb->mregs, MUSB_POWER);
1559550a7375SFelipe Balbi 	if (is_on)
1560550a7375SFelipe Balbi 		power |= MUSB_POWER_SOFTCONN;
1561550a7375SFelipe Balbi 	else
1562550a7375SFelipe Balbi 		power &= ~MUSB_POWER_SOFTCONN;
1563550a7375SFelipe Balbi 
1564550a7375SFelipe Balbi 	/* FIXME if on, HdrcStart; if off, HdrcStop */
1565550a7375SFelipe Balbi 
1566550a7375SFelipe Balbi 	DBG(3, "gadget %s D+ pullup %s\n",
1567550a7375SFelipe Balbi 		musb->gadget_driver->function, is_on ? "on" : "off");
1568550a7375SFelipe Balbi 	musb_writeb(musb->mregs, MUSB_POWER, power);
1569550a7375SFelipe Balbi }
1570550a7375SFelipe Balbi 
1571550a7375SFelipe Balbi #if 0
1572550a7375SFelipe Balbi static int musb_gadget_vbus_session(struct usb_gadget *gadget, int is_active)
1573550a7375SFelipe Balbi {
1574550a7375SFelipe Balbi 	DBG(2, "<= %s =>\n", __func__);
1575550a7375SFelipe Balbi 
1576550a7375SFelipe Balbi 	/*
1577550a7375SFelipe Balbi 	 * FIXME iff driver's softconnect flag is set (as it is during probe,
1578550a7375SFelipe Balbi 	 * though that can clear it), just musb_pullup().
1579550a7375SFelipe Balbi 	 */
1580550a7375SFelipe Balbi 
1581550a7375SFelipe Balbi 	return -EINVAL;
1582550a7375SFelipe Balbi }
1583550a7375SFelipe Balbi #endif
1584550a7375SFelipe Balbi 
1585550a7375SFelipe Balbi static int musb_gadget_vbus_draw(struct usb_gadget *gadget, unsigned mA)
1586550a7375SFelipe Balbi {
1587550a7375SFelipe Balbi 	struct musb	*musb = gadget_to_musb(gadget);
1588550a7375SFelipe Balbi 
158984e250ffSDavid Brownell 	if (!musb->xceiv->set_power)
1590550a7375SFelipe Balbi 		return -EOPNOTSUPP;
159184e250ffSDavid Brownell 	return otg_set_power(musb->xceiv, mA);
1592550a7375SFelipe Balbi }
1593550a7375SFelipe Balbi 
1594550a7375SFelipe Balbi static int musb_gadget_pullup(struct usb_gadget *gadget, int is_on)
1595550a7375SFelipe Balbi {
1596550a7375SFelipe Balbi 	struct musb	*musb = gadget_to_musb(gadget);
1597550a7375SFelipe Balbi 	unsigned long	flags;
1598550a7375SFelipe Balbi 
1599550a7375SFelipe Balbi 	is_on = !!is_on;
1600550a7375SFelipe Balbi 
1601550a7375SFelipe Balbi 	/* NOTE: this assumes we are sensing vbus; we'd rather
1602550a7375SFelipe Balbi 	 * not pullup unless the B-session is active.
1603550a7375SFelipe Balbi 	 */
1604550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1605550a7375SFelipe Balbi 	if (is_on != musb->softconnect) {
1606550a7375SFelipe Balbi 		musb->softconnect = is_on;
1607550a7375SFelipe Balbi 		musb_pullup(musb, is_on);
1608550a7375SFelipe Balbi 	}
1609550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1610550a7375SFelipe Balbi 	return 0;
1611550a7375SFelipe Balbi }
1612550a7375SFelipe Balbi 
1613550a7375SFelipe Balbi static const struct usb_gadget_ops musb_gadget_operations = {
1614550a7375SFelipe Balbi 	.get_frame		= musb_gadget_get_frame,
1615550a7375SFelipe Balbi 	.wakeup			= musb_gadget_wakeup,
1616550a7375SFelipe Balbi 	.set_selfpowered	= musb_gadget_set_self_powered,
1617550a7375SFelipe Balbi 	/* .vbus_session		= musb_gadget_vbus_session, */
1618550a7375SFelipe Balbi 	.vbus_draw		= musb_gadget_vbus_draw,
1619550a7375SFelipe Balbi 	.pullup			= musb_gadget_pullup,
1620550a7375SFelipe Balbi };
1621550a7375SFelipe Balbi 
1622550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
1623550a7375SFelipe Balbi 
1624550a7375SFelipe Balbi /* Registration */
1625550a7375SFelipe Balbi 
1626550a7375SFelipe Balbi /* Only this registration code "knows" the rule (from USB standards)
1627550a7375SFelipe Balbi  * about there being only one external upstream port.  It assumes
1628550a7375SFelipe Balbi  * all peripheral ports are external...
1629550a7375SFelipe Balbi  */
1630550a7375SFelipe Balbi static struct musb *the_gadget;
1631550a7375SFelipe Balbi 
1632550a7375SFelipe Balbi static void musb_gadget_release(struct device *dev)
1633550a7375SFelipe Balbi {
1634550a7375SFelipe Balbi 	/* kref_put(WHAT) */
1635550a7375SFelipe Balbi 	dev_dbg(dev, "%s\n", __func__);
1636550a7375SFelipe Balbi }
1637550a7375SFelipe Balbi 
1638550a7375SFelipe Balbi 
1639550a7375SFelipe Balbi static void __init
1640550a7375SFelipe Balbi init_peripheral_ep(struct musb *musb, struct musb_ep *ep, u8 epnum, int is_in)
1641550a7375SFelipe Balbi {
1642550a7375SFelipe Balbi 	struct musb_hw_ep	*hw_ep = musb->endpoints + epnum;
1643550a7375SFelipe Balbi 
1644550a7375SFelipe Balbi 	memset(ep, 0, sizeof *ep);
1645550a7375SFelipe Balbi 
1646550a7375SFelipe Balbi 	ep->current_epnum = epnum;
1647550a7375SFelipe Balbi 	ep->musb = musb;
1648550a7375SFelipe Balbi 	ep->hw_ep = hw_ep;
1649550a7375SFelipe Balbi 	ep->is_in = is_in;
1650550a7375SFelipe Balbi 
1651550a7375SFelipe Balbi 	INIT_LIST_HEAD(&ep->req_list);
1652550a7375SFelipe Balbi 
1653550a7375SFelipe Balbi 	sprintf(ep->name, "ep%d%s", epnum,
1654550a7375SFelipe Balbi 			(!epnum || hw_ep->is_shared_fifo) ? "" : (
1655550a7375SFelipe Balbi 				is_in ? "in" : "out"));
1656550a7375SFelipe Balbi 	ep->end_point.name = ep->name;
1657550a7375SFelipe Balbi 	INIT_LIST_HEAD(&ep->end_point.ep_list);
1658550a7375SFelipe Balbi 	if (!epnum) {
1659550a7375SFelipe Balbi 		ep->end_point.maxpacket = 64;
1660550a7375SFelipe Balbi 		ep->end_point.ops = &musb_g_ep0_ops;
1661550a7375SFelipe Balbi 		musb->g.ep0 = &ep->end_point;
1662550a7375SFelipe Balbi 	} else {
1663550a7375SFelipe Balbi 		if (is_in)
1664550a7375SFelipe Balbi 			ep->end_point.maxpacket = hw_ep->max_packet_sz_tx;
1665550a7375SFelipe Balbi 		else
1666550a7375SFelipe Balbi 			ep->end_point.maxpacket = hw_ep->max_packet_sz_rx;
1667550a7375SFelipe Balbi 		ep->end_point.ops = &musb_ep_ops;
1668550a7375SFelipe Balbi 		list_add_tail(&ep->end_point.ep_list, &musb->g.ep_list);
1669550a7375SFelipe Balbi 	}
1670550a7375SFelipe Balbi }
1671550a7375SFelipe Balbi 
1672550a7375SFelipe Balbi /*
1673550a7375SFelipe Balbi  * Initialize the endpoints exposed to peripheral drivers, with backlinks
1674550a7375SFelipe Balbi  * to the rest of the driver state.
1675550a7375SFelipe Balbi  */
1676550a7375SFelipe Balbi static inline void __init musb_g_init_endpoints(struct musb *musb)
1677550a7375SFelipe Balbi {
1678550a7375SFelipe Balbi 	u8			epnum;
1679550a7375SFelipe Balbi 	struct musb_hw_ep	*hw_ep;
1680550a7375SFelipe Balbi 	unsigned		count = 0;
1681550a7375SFelipe Balbi 
1682550a7375SFelipe Balbi 	/* intialize endpoint list just once */
1683550a7375SFelipe Balbi 	INIT_LIST_HEAD(&(musb->g.ep_list));
1684550a7375SFelipe Balbi 
1685550a7375SFelipe Balbi 	for (epnum = 0, hw_ep = musb->endpoints;
1686550a7375SFelipe Balbi 			epnum < musb->nr_endpoints;
1687550a7375SFelipe Balbi 			epnum++, hw_ep++) {
1688550a7375SFelipe Balbi 		if (hw_ep->is_shared_fifo /* || !epnum */) {
1689550a7375SFelipe Balbi 			init_peripheral_ep(musb, &hw_ep->ep_in, epnum, 0);
1690550a7375SFelipe Balbi 			count++;
1691550a7375SFelipe Balbi 		} else {
1692550a7375SFelipe Balbi 			if (hw_ep->max_packet_sz_tx) {
1693550a7375SFelipe Balbi 				init_peripheral_ep(musb, &hw_ep->ep_in,
1694550a7375SFelipe Balbi 							epnum, 1);
1695550a7375SFelipe Balbi 				count++;
1696550a7375SFelipe Balbi 			}
1697550a7375SFelipe Balbi 			if (hw_ep->max_packet_sz_rx) {
1698550a7375SFelipe Balbi 				init_peripheral_ep(musb, &hw_ep->ep_out,
1699550a7375SFelipe Balbi 							epnum, 0);
1700550a7375SFelipe Balbi 				count++;
1701550a7375SFelipe Balbi 			}
1702550a7375SFelipe Balbi 		}
1703550a7375SFelipe Balbi 	}
1704550a7375SFelipe Balbi }
1705550a7375SFelipe Balbi 
1706550a7375SFelipe Balbi /* called once during driver setup to initialize and link into
1707550a7375SFelipe Balbi  * the driver model; memory is zeroed.
1708550a7375SFelipe Balbi  */
1709550a7375SFelipe Balbi int __init musb_gadget_setup(struct musb *musb)
1710550a7375SFelipe Balbi {
1711550a7375SFelipe Balbi 	int status;
1712550a7375SFelipe Balbi 
1713550a7375SFelipe Balbi 	/* REVISIT minor race:  if (erroneously) setting up two
1714550a7375SFelipe Balbi 	 * musb peripherals at the same time, only the bus lock
1715550a7375SFelipe Balbi 	 * is probably held.
1716550a7375SFelipe Balbi 	 */
1717550a7375SFelipe Balbi 	if (the_gadget)
1718550a7375SFelipe Balbi 		return -EBUSY;
1719550a7375SFelipe Balbi 	the_gadget = musb;
1720550a7375SFelipe Balbi 
1721550a7375SFelipe Balbi 	musb->g.ops = &musb_gadget_operations;
1722550a7375SFelipe Balbi 	musb->g.is_dualspeed = 1;
1723550a7375SFelipe Balbi 	musb->g.speed = USB_SPEED_UNKNOWN;
1724550a7375SFelipe Balbi 
1725550a7375SFelipe Balbi 	/* this "gadget" abstracts/virtualizes the controller */
1726427c4f33SKay Sievers 	dev_set_name(&musb->g.dev, "gadget");
1727550a7375SFelipe Balbi 	musb->g.dev.parent = musb->controller;
1728550a7375SFelipe Balbi 	musb->g.dev.dma_mask = musb->controller->dma_mask;
1729550a7375SFelipe Balbi 	musb->g.dev.release = musb_gadget_release;
1730550a7375SFelipe Balbi 	musb->g.name = musb_driver_name;
1731550a7375SFelipe Balbi 
1732550a7375SFelipe Balbi 	if (is_otg_enabled(musb))
1733550a7375SFelipe Balbi 		musb->g.is_otg = 1;
1734550a7375SFelipe Balbi 
1735550a7375SFelipe Balbi 	musb_g_init_endpoints(musb);
1736550a7375SFelipe Balbi 
1737550a7375SFelipe Balbi 	musb->is_active = 0;
1738550a7375SFelipe Balbi 	musb_platform_try_idle(musb, 0);
1739550a7375SFelipe Balbi 
1740550a7375SFelipe Balbi 	status = device_register(&musb->g.dev);
1741e2c34045SRahul Ruikar 	if (status != 0) {
1742e2c34045SRahul Ruikar 		put_device(&musb->g.dev);
1743550a7375SFelipe Balbi 		the_gadget = NULL;
1744e2c34045SRahul Ruikar 	}
1745550a7375SFelipe Balbi 	return status;
1746550a7375SFelipe Balbi }
1747550a7375SFelipe Balbi 
1748550a7375SFelipe Balbi void musb_gadget_cleanup(struct musb *musb)
1749550a7375SFelipe Balbi {
1750550a7375SFelipe Balbi 	if (musb != the_gadget)
1751550a7375SFelipe Balbi 		return;
1752550a7375SFelipe Balbi 
1753550a7375SFelipe Balbi 	device_unregister(&musb->g.dev);
1754550a7375SFelipe Balbi 	the_gadget = NULL;
1755550a7375SFelipe Balbi }
1756550a7375SFelipe Balbi 
1757550a7375SFelipe Balbi /*
1758550a7375SFelipe Balbi  * Register the gadget driver. Used by gadget drivers when
1759550a7375SFelipe Balbi  * registering themselves with the controller.
1760550a7375SFelipe Balbi  *
1761550a7375SFelipe Balbi  * -EINVAL something went wrong (not driver)
1762550a7375SFelipe Balbi  * -EBUSY another gadget is already using the controller
1763550a7375SFelipe Balbi  * -ENOMEM no memeory to perform the operation
1764550a7375SFelipe Balbi  *
1765550a7375SFelipe Balbi  * @param driver the gadget driver
1766b0fca50fSUwe Kleine-König  * @param bind the driver's bind function
1767550a7375SFelipe Balbi  * @return <0 if error, 0 if everything is fine
1768550a7375SFelipe Balbi  */
1769b0fca50fSUwe Kleine-König int usb_gadget_probe_driver(struct usb_gadget_driver *driver,
1770b0fca50fSUwe Kleine-König 		int (*bind)(struct usb_gadget *))
1771550a7375SFelipe Balbi {
1772550a7375SFelipe Balbi 	int retval;
1773550a7375SFelipe Balbi 	unsigned long flags;
1774550a7375SFelipe Balbi 	struct musb *musb = the_gadget;
1775550a7375SFelipe Balbi 
1776550a7375SFelipe Balbi 	if (!driver
1777550a7375SFelipe Balbi 			|| driver->speed != USB_SPEED_HIGH
1778b0fca50fSUwe Kleine-König 			|| !bind || !driver->setup)
1779550a7375SFelipe Balbi 		return -EINVAL;
1780550a7375SFelipe Balbi 
1781550a7375SFelipe Balbi 	/* driver must be initialized to support peripheral mode */
178208e6c972SRoel Kluin 	if (!musb) {
1783550a7375SFelipe Balbi 		DBG(1, "%s, no dev??\n", __func__);
1784550a7375SFelipe Balbi 		return -ENODEV;
1785550a7375SFelipe Balbi 	}
1786550a7375SFelipe Balbi 
1787550a7375SFelipe Balbi 	DBG(3, "registering driver %s\n", driver->function);
1788550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1789550a7375SFelipe Balbi 
1790550a7375SFelipe Balbi 	if (musb->gadget_driver) {
1791550a7375SFelipe Balbi 		DBG(1, "%s is already bound to %s\n",
1792550a7375SFelipe Balbi 				musb_driver_name,
1793550a7375SFelipe Balbi 				musb->gadget_driver->driver.name);
1794550a7375SFelipe Balbi 		retval = -EBUSY;
1795550a7375SFelipe Balbi 	} else {
1796550a7375SFelipe Balbi 		musb->gadget_driver = driver;
1797550a7375SFelipe Balbi 		musb->g.dev.driver = &driver->driver;
1798550a7375SFelipe Balbi 		driver->driver.bus = NULL;
1799550a7375SFelipe Balbi 		musb->softconnect = 1;
1800550a7375SFelipe Balbi 		retval = 0;
1801550a7375SFelipe Balbi 	}
1802550a7375SFelipe Balbi 
1803550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1804550a7375SFelipe Balbi 
1805f362a475SFelipe Balbi 	if (retval == 0) {
1806b0fca50fSUwe Kleine-König 		retval = bind(&musb->g);
1807550a7375SFelipe Balbi 		if (retval != 0) {
1808550a7375SFelipe Balbi 			DBG(3, "bind to driver %s failed --> %d\n",
1809550a7375SFelipe Balbi 					driver->driver.name, retval);
1810550a7375SFelipe Balbi 			musb->gadget_driver = NULL;
1811550a7375SFelipe Balbi 			musb->g.dev.driver = NULL;
1812550a7375SFelipe Balbi 		}
1813550a7375SFelipe Balbi 
1814550a7375SFelipe Balbi 		spin_lock_irqsave(&musb->lock, flags);
1815550a7375SFelipe Balbi 
181684e250ffSDavid Brownell 		otg_set_peripheral(musb->xceiv, &musb->g);
1817d4c433feSArnaud Mandy 		musb->xceiv->state = OTG_STATE_B_IDLE;
1818550a7375SFelipe Balbi 		musb->is_active = 1;
1819550a7375SFelipe Balbi 
1820550a7375SFelipe Balbi 		/* FIXME this ignores the softconnect flag.  Drivers are
1821550a7375SFelipe Balbi 		 * allowed hold the peripheral inactive until for example
1822550a7375SFelipe Balbi 		 * userspace hooks up printer hardware or DSP codecs, so
1823550a7375SFelipe Balbi 		 * hosts only see fully functional devices.
1824550a7375SFelipe Balbi 		 */
1825550a7375SFelipe Balbi 
1826550a7375SFelipe Balbi 		if (!is_otg_enabled(musb))
1827550a7375SFelipe Balbi 			musb_start(musb);
1828550a7375SFelipe Balbi 
182984e250ffSDavid Brownell 		otg_set_peripheral(musb->xceiv, &musb->g);
183084e250ffSDavid Brownell 
1831550a7375SFelipe Balbi 		spin_unlock_irqrestore(&musb->lock, flags);
1832550a7375SFelipe Balbi 
1833550a7375SFelipe Balbi 		if (is_otg_enabled(musb)) {
1834550a7375SFelipe Balbi 			DBG(3, "OTG startup...\n");
1835550a7375SFelipe Balbi 
1836550a7375SFelipe Balbi 			/* REVISIT:  funcall to other code, which also
1837550a7375SFelipe Balbi 			 * handles power budgeting ... this way also
1838550a7375SFelipe Balbi 			 * ensures HdrcStart is indirectly called.
1839550a7375SFelipe Balbi 			 */
1840550a7375SFelipe Balbi 			retval = usb_add_hcd(musb_to_hcd(musb), -1, 0);
1841550a7375SFelipe Balbi 			if (retval < 0) {
1842550a7375SFelipe Balbi 				DBG(1, "add_hcd failed, %d\n", retval);
1843550a7375SFelipe Balbi 				spin_lock_irqsave(&musb->lock, flags);
184484e250ffSDavid Brownell 				otg_set_peripheral(musb->xceiv, NULL);
1845550a7375SFelipe Balbi 				musb->gadget_driver = NULL;
1846550a7375SFelipe Balbi 				musb->g.dev.driver = NULL;
1847550a7375SFelipe Balbi 				spin_unlock_irqrestore(&musb->lock, flags);
1848550a7375SFelipe Balbi 			}
1849550a7375SFelipe Balbi 		}
1850550a7375SFelipe Balbi 	}
1851550a7375SFelipe Balbi 
1852550a7375SFelipe Balbi 	return retval;
1853550a7375SFelipe Balbi }
1854b0fca50fSUwe Kleine-König EXPORT_SYMBOL(usb_gadget_probe_driver);
1855550a7375SFelipe Balbi 
1856550a7375SFelipe Balbi static void stop_activity(struct musb *musb, struct usb_gadget_driver *driver)
1857550a7375SFelipe Balbi {
1858550a7375SFelipe Balbi 	int			i;
1859550a7375SFelipe Balbi 	struct musb_hw_ep	*hw_ep;
1860550a7375SFelipe Balbi 
1861550a7375SFelipe Balbi 	/* don't disconnect if it's not connected */
1862550a7375SFelipe Balbi 	if (musb->g.speed == USB_SPEED_UNKNOWN)
1863550a7375SFelipe Balbi 		driver = NULL;
1864550a7375SFelipe Balbi 	else
1865550a7375SFelipe Balbi 		musb->g.speed = USB_SPEED_UNKNOWN;
1866550a7375SFelipe Balbi 
1867550a7375SFelipe Balbi 	/* deactivate the hardware */
1868550a7375SFelipe Balbi 	if (musb->softconnect) {
1869550a7375SFelipe Balbi 		musb->softconnect = 0;
1870550a7375SFelipe Balbi 		musb_pullup(musb, 0);
1871550a7375SFelipe Balbi 	}
1872550a7375SFelipe Balbi 	musb_stop(musb);
1873550a7375SFelipe Balbi 
1874550a7375SFelipe Balbi 	/* killing any outstanding requests will quiesce the driver;
1875550a7375SFelipe Balbi 	 * then report disconnect
1876550a7375SFelipe Balbi 	 */
1877550a7375SFelipe Balbi 	if (driver) {
1878550a7375SFelipe Balbi 		for (i = 0, hw_ep = musb->endpoints;
1879550a7375SFelipe Balbi 				i < musb->nr_endpoints;
1880550a7375SFelipe Balbi 				i++, hw_ep++) {
1881550a7375SFelipe Balbi 			musb_ep_select(musb->mregs, i);
1882550a7375SFelipe Balbi 			if (hw_ep->is_shared_fifo /* || !epnum */) {
1883550a7375SFelipe Balbi 				nuke(&hw_ep->ep_in, -ESHUTDOWN);
1884550a7375SFelipe Balbi 			} else {
1885550a7375SFelipe Balbi 				if (hw_ep->max_packet_sz_tx)
1886550a7375SFelipe Balbi 					nuke(&hw_ep->ep_in, -ESHUTDOWN);
1887550a7375SFelipe Balbi 				if (hw_ep->max_packet_sz_rx)
1888550a7375SFelipe Balbi 					nuke(&hw_ep->ep_out, -ESHUTDOWN);
1889550a7375SFelipe Balbi 			}
1890550a7375SFelipe Balbi 		}
1891550a7375SFelipe Balbi 
1892550a7375SFelipe Balbi 		spin_unlock(&musb->lock);
1893550a7375SFelipe Balbi 		driver->disconnect(&musb->g);
1894550a7375SFelipe Balbi 		spin_lock(&musb->lock);
1895550a7375SFelipe Balbi 	}
1896550a7375SFelipe Balbi }
1897550a7375SFelipe Balbi 
1898550a7375SFelipe Balbi /*
1899550a7375SFelipe Balbi  * Unregister the gadget driver. Used by gadget drivers when
1900550a7375SFelipe Balbi  * unregistering themselves from the controller.
1901550a7375SFelipe Balbi  *
1902550a7375SFelipe Balbi  * @param driver the gadget driver to unregister
1903550a7375SFelipe Balbi  */
1904550a7375SFelipe Balbi int usb_gadget_unregister_driver(struct usb_gadget_driver *driver)
1905550a7375SFelipe Balbi {
1906550a7375SFelipe Balbi 	unsigned long	flags;
1907550a7375SFelipe Balbi 	int		retval = 0;
1908550a7375SFelipe Balbi 	struct musb	*musb = the_gadget;
1909550a7375SFelipe Balbi 
1910550a7375SFelipe Balbi 	if (!driver || !driver->unbind || !musb)
1911550a7375SFelipe Balbi 		return -EINVAL;
1912550a7375SFelipe Balbi 
1913550a7375SFelipe Balbi 	/* REVISIT always use otg_set_peripheral() here too;
1914550a7375SFelipe Balbi 	 * this needs to shut down the OTG engine.
1915550a7375SFelipe Balbi 	 */
1916550a7375SFelipe Balbi 
1917550a7375SFelipe Balbi 	spin_lock_irqsave(&musb->lock, flags);
1918550a7375SFelipe Balbi 
1919550a7375SFelipe Balbi #ifdef	CONFIG_USB_MUSB_OTG
1920550a7375SFelipe Balbi 	musb_hnp_stop(musb);
1921550a7375SFelipe Balbi #endif
1922550a7375SFelipe Balbi 
1923550a7375SFelipe Balbi 	if (musb->gadget_driver == driver) {
1924550a7375SFelipe Balbi 
1925550a7375SFelipe Balbi 		(void) musb_gadget_vbus_draw(&musb->g, 0);
1926550a7375SFelipe Balbi 
192784e250ffSDavid Brownell 		musb->xceiv->state = OTG_STATE_UNDEFINED;
1928550a7375SFelipe Balbi 		stop_activity(musb, driver);
192984e250ffSDavid Brownell 		otg_set_peripheral(musb->xceiv, NULL);
1930550a7375SFelipe Balbi 
1931550a7375SFelipe Balbi 		DBG(3, "unregistering driver %s\n", driver->function);
1932550a7375SFelipe Balbi 		spin_unlock_irqrestore(&musb->lock, flags);
1933550a7375SFelipe Balbi 		driver->unbind(&musb->g);
1934550a7375SFelipe Balbi 		spin_lock_irqsave(&musb->lock, flags);
1935550a7375SFelipe Balbi 
1936550a7375SFelipe Balbi 		musb->gadget_driver = NULL;
1937550a7375SFelipe Balbi 		musb->g.dev.driver = NULL;
1938550a7375SFelipe Balbi 
1939550a7375SFelipe Balbi 		musb->is_active = 0;
1940550a7375SFelipe Balbi 		musb_platform_try_idle(musb, 0);
1941550a7375SFelipe Balbi 	} else
1942550a7375SFelipe Balbi 		retval = -EINVAL;
1943550a7375SFelipe Balbi 	spin_unlock_irqrestore(&musb->lock, flags);
1944550a7375SFelipe Balbi 
1945550a7375SFelipe Balbi 	if (is_otg_enabled(musb) && retval == 0) {
1946550a7375SFelipe Balbi 		usb_remove_hcd(musb_to_hcd(musb));
1947550a7375SFelipe Balbi 		/* FIXME we need to be able to register another
1948550a7375SFelipe Balbi 		 * gadget driver here and have everything work;
1949550a7375SFelipe Balbi 		 * that currently misbehaves.
1950550a7375SFelipe Balbi 		 */
1951550a7375SFelipe Balbi 	}
1952550a7375SFelipe Balbi 
1953550a7375SFelipe Balbi 	return retval;
1954550a7375SFelipe Balbi }
1955550a7375SFelipe Balbi EXPORT_SYMBOL(usb_gadget_unregister_driver);
1956550a7375SFelipe Balbi 
1957550a7375SFelipe Balbi 
1958550a7375SFelipe Balbi /* ----------------------------------------------------------------------- */
1959550a7375SFelipe Balbi 
1960550a7375SFelipe Balbi /* lifecycle operations called through plat_uds.c */
1961550a7375SFelipe Balbi 
1962550a7375SFelipe Balbi void musb_g_resume(struct musb *musb)
1963550a7375SFelipe Balbi {
1964550a7375SFelipe Balbi 	musb->is_suspended = 0;
196584e250ffSDavid Brownell 	switch (musb->xceiv->state) {
1966550a7375SFelipe Balbi 	case OTG_STATE_B_IDLE:
1967550a7375SFelipe Balbi 		break;
1968550a7375SFelipe Balbi 	case OTG_STATE_B_WAIT_ACON:
1969550a7375SFelipe Balbi 	case OTG_STATE_B_PERIPHERAL:
1970550a7375SFelipe Balbi 		musb->is_active = 1;
1971550a7375SFelipe Balbi 		if (musb->gadget_driver && musb->gadget_driver->resume) {
1972550a7375SFelipe Balbi 			spin_unlock(&musb->lock);
1973550a7375SFelipe Balbi 			musb->gadget_driver->resume(&musb->g);
1974550a7375SFelipe Balbi 			spin_lock(&musb->lock);
1975550a7375SFelipe Balbi 		}
1976550a7375SFelipe Balbi 		break;
1977550a7375SFelipe Balbi 	default:
1978550a7375SFelipe Balbi 		WARNING("unhandled RESUME transition (%s)\n",
1979550a7375SFelipe Balbi 				otg_state_string(musb));
1980550a7375SFelipe Balbi 	}
1981550a7375SFelipe Balbi }
1982550a7375SFelipe Balbi 
1983550a7375SFelipe Balbi /* called when SOF packets stop for 3+ msec */
1984550a7375SFelipe Balbi void musb_g_suspend(struct musb *musb)
1985550a7375SFelipe Balbi {
1986550a7375SFelipe Balbi 	u8	devctl;
1987550a7375SFelipe Balbi 
1988550a7375SFelipe Balbi 	devctl = musb_readb(musb->mregs, MUSB_DEVCTL);
1989550a7375SFelipe Balbi 	DBG(3, "devctl %02x\n", devctl);
1990550a7375SFelipe Balbi 
199184e250ffSDavid Brownell 	switch (musb->xceiv->state) {
1992550a7375SFelipe Balbi 	case OTG_STATE_B_IDLE:
1993550a7375SFelipe Balbi 		if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS)
199484e250ffSDavid Brownell 			musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
1995550a7375SFelipe Balbi 		break;
1996550a7375SFelipe Balbi 	case OTG_STATE_B_PERIPHERAL:
1997550a7375SFelipe Balbi 		musb->is_suspended = 1;
1998550a7375SFelipe Balbi 		if (musb->gadget_driver && musb->gadget_driver->suspend) {
1999550a7375SFelipe Balbi 			spin_unlock(&musb->lock);
2000550a7375SFelipe Balbi 			musb->gadget_driver->suspend(&musb->g);
2001550a7375SFelipe Balbi 			spin_lock(&musb->lock);
2002550a7375SFelipe Balbi 		}
2003550a7375SFelipe Balbi 		break;
2004550a7375SFelipe Balbi 	default:
2005550a7375SFelipe Balbi 		/* REVISIT if B_HOST, clear DEVCTL.HOSTREQ;
2006550a7375SFelipe Balbi 		 * A_PERIPHERAL may need care too
2007550a7375SFelipe Balbi 		 */
2008550a7375SFelipe Balbi 		WARNING("unhandled SUSPEND transition (%s)\n",
2009550a7375SFelipe Balbi 				otg_state_string(musb));
2010550a7375SFelipe Balbi 	}
2011550a7375SFelipe Balbi }
2012550a7375SFelipe Balbi 
2013550a7375SFelipe Balbi /* Called during SRP */
2014550a7375SFelipe Balbi void musb_g_wakeup(struct musb *musb)
2015550a7375SFelipe Balbi {
2016550a7375SFelipe Balbi 	musb_gadget_wakeup(&musb->g);
2017550a7375SFelipe Balbi }
2018550a7375SFelipe Balbi 
2019550a7375SFelipe Balbi /* called when VBUS drops below session threshold, and in other cases */
2020550a7375SFelipe Balbi void musb_g_disconnect(struct musb *musb)
2021550a7375SFelipe Balbi {
2022550a7375SFelipe Balbi 	void __iomem	*mregs = musb->mregs;
2023550a7375SFelipe Balbi 	u8	devctl = musb_readb(mregs, MUSB_DEVCTL);
2024550a7375SFelipe Balbi 
2025550a7375SFelipe Balbi 	DBG(3, "devctl %02x\n", devctl);
2026550a7375SFelipe Balbi 
2027550a7375SFelipe Balbi 	/* clear HR */
2028550a7375SFelipe Balbi 	musb_writeb(mregs, MUSB_DEVCTL, devctl & MUSB_DEVCTL_SESSION);
2029550a7375SFelipe Balbi 
2030550a7375SFelipe Balbi 	/* don't draw vbus until new b-default session */
2031550a7375SFelipe Balbi 	(void) musb_gadget_vbus_draw(&musb->g, 0);
2032550a7375SFelipe Balbi 
2033550a7375SFelipe Balbi 	musb->g.speed = USB_SPEED_UNKNOWN;
2034550a7375SFelipe Balbi 	if (musb->gadget_driver && musb->gadget_driver->disconnect) {
2035550a7375SFelipe Balbi 		spin_unlock(&musb->lock);
2036550a7375SFelipe Balbi 		musb->gadget_driver->disconnect(&musb->g);
2037550a7375SFelipe Balbi 		spin_lock(&musb->lock);
2038550a7375SFelipe Balbi 	}
2039550a7375SFelipe Balbi 
204084e250ffSDavid Brownell 	switch (musb->xceiv->state) {
2041550a7375SFelipe Balbi 	default:
2042550a7375SFelipe Balbi #ifdef	CONFIG_USB_MUSB_OTG
2043550a7375SFelipe Balbi 		DBG(2, "Unhandled disconnect %s, setting a_idle\n",
2044550a7375SFelipe Balbi 			otg_state_string(musb));
204584e250ffSDavid Brownell 		musb->xceiv->state = OTG_STATE_A_IDLE;
2046ab983f2aSDavid Brownell 		MUSB_HST_MODE(musb);
2047550a7375SFelipe Balbi 		break;
2048550a7375SFelipe Balbi 	case OTG_STATE_A_PERIPHERAL:
20491de00daeSDavid Brownell 		musb->xceiv->state = OTG_STATE_A_WAIT_BCON;
2050ab983f2aSDavid Brownell 		MUSB_HST_MODE(musb);
2051550a7375SFelipe Balbi 		break;
2052550a7375SFelipe Balbi 	case OTG_STATE_B_WAIT_ACON:
2053550a7375SFelipe Balbi 	case OTG_STATE_B_HOST:
2054550a7375SFelipe Balbi #endif
2055550a7375SFelipe Balbi 	case OTG_STATE_B_PERIPHERAL:
2056550a7375SFelipe Balbi 	case OTG_STATE_B_IDLE:
205784e250ffSDavid Brownell 		musb->xceiv->state = OTG_STATE_B_IDLE;
2058550a7375SFelipe Balbi 		break;
2059550a7375SFelipe Balbi 	case OTG_STATE_B_SRP_INIT:
2060550a7375SFelipe Balbi 		break;
2061550a7375SFelipe Balbi 	}
2062550a7375SFelipe Balbi 
2063550a7375SFelipe Balbi 	musb->is_active = 0;
2064550a7375SFelipe Balbi }
2065550a7375SFelipe Balbi 
2066550a7375SFelipe Balbi void musb_g_reset(struct musb *musb)
2067550a7375SFelipe Balbi __releases(musb->lock)
2068550a7375SFelipe Balbi __acquires(musb->lock)
2069550a7375SFelipe Balbi {
2070550a7375SFelipe Balbi 	void __iomem	*mbase = musb->mregs;
2071550a7375SFelipe Balbi 	u8		devctl = musb_readb(mbase, MUSB_DEVCTL);
2072550a7375SFelipe Balbi 	u8		power;
2073550a7375SFelipe Balbi 
2074550a7375SFelipe Balbi 	DBG(3, "<== %s addr=%x driver '%s'\n",
2075550a7375SFelipe Balbi 			(devctl & MUSB_DEVCTL_BDEVICE)
2076550a7375SFelipe Balbi 				? "B-Device" : "A-Device",
2077550a7375SFelipe Balbi 			musb_readb(mbase, MUSB_FADDR),
2078550a7375SFelipe Balbi 			musb->gadget_driver
2079550a7375SFelipe Balbi 				? musb->gadget_driver->driver.name
2080550a7375SFelipe Balbi 				: NULL
2081550a7375SFelipe Balbi 			);
2082550a7375SFelipe Balbi 
2083550a7375SFelipe Balbi 	/* report disconnect, if we didn't already (flushing EP state) */
2084550a7375SFelipe Balbi 	if (musb->g.speed != USB_SPEED_UNKNOWN)
2085550a7375SFelipe Balbi 		musb_g_disconnect(musb);
2086550a7375SFelipe Balbi 
2087550a7375SFelipe Balbi 	/* clear HR */
2088550a7375SFelipe Balbi 	else if (devctl & MUSB_DEVCTL_HR)
2089550a7375SFelipe Balbi 		musb_writeb(mbase, MUSB_DEVCTL, MUSB_DEVCTL_SESSION);
2090550a7375SFelipe Balbi 
2091550a7375SFelipe Balbi 
2092550a7375SFelipe Balbi 	/* what speed did we negotiate? */
2093550a7375SFelipe Balbi 	power = musb_readb(mbase, MUSB_POWER);
2094550a7375SFelipe Balbi 	musb->g.speed = (power & MUSB_POWER_HSMODE)
2095550a7375SFelipe Balbi 			? USB_SPEED_HIGH : USB_SPEED_FULL;
2096550a7375SFelipe Balbi 
2097550a7375SFelipe Balbi 	/* start in USB_STATE_DEFAULT */
2098550a7375SFelipe Balbi 	musb->is_active = 1;
2099550a7375SFelipe Balbi 	musb->is_suspended = 0;
2100550a7375SFelipe Balbi 	MUSB_DEV_MODE(musb);
2101550a7375SFelipe Balbi 	musb->address = 0;
2102550a7375SFelipe Balbi 	musb->ep0_state = MUSB_EP0_STAGE_SETUP;
2103550a7375SFelipe Balbi 
2104550a7375SFelipe Balbi 	musb->may_wakeup = 0;
2105550a7375SFelipe Balbi 	musb->g.b_hnp_enable = 0;
2106550a7375SFelipe Balbi 	musb->g.a_alt_hnp_support = 0;
2107550a7375SFelipe Balbi 	musb->g.a_hnp_support = 0;
2108550a7375SFelipe Balbi 
2109550a7375SFelipe Balbi 	/* Normal reset, as B-Device;
2110550a7375SFelipe Balbi 	 * or else after HNP, as A-Device
2111550a7375SFelipe Balbi 	 */
2112550a7375SFelipe Balbi 	if (devctl & MUSB_DEVCTL_BDEVICE) {
211384e250ffSDavid Brownell 		musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
2114550a7375SFelipe Balbi 		musb->g.is_a_peripheral = 0;
2115550a7375SFelipe Balbi 	} else if (is_otg_enabled(musb)) {
211684e250ffSDavid Brownell 		musb->xceiv->state = OTG_STATE_A_PERIPHERAL;
2117550a7375SFelipe Balbi 		musb->g.is_a_peripheral = 1;
2118550a7375SFelipe Balbi 	} else
2119550a7375SFelipe Balbi 		WARN_ON(1);
2120550a7375SFelipe Balbi 
2121550a7375SFelipe Balbi 	/* start with default limits on VBUS power draw */
2122550a7375SFelipe Balbi 	(void) musb_gadget_vbus_draw(&musb->g,
2123550a7375SFelipe Balbi 			is_otg_enabled(musb) ? 8 : 100);
2124550a7375SFelipe Balbi }
2125