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1 /*
2  * Renesas USB driver
3  *
4  * Copyright (C) 2011 Renesas Solutions Corp.
5  * Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
6  *
7  * This program is distributed in the hope that it will be useful,
8  * but WITHOUT ANY WARRANTY; without even the implied warranty of
9  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
10  * GNU General Public License for more details.
11  *
12  * You should have received a copy of the GNU General Public License
13  * along with this program; if not, write to the Free Software
14  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
15  *
16  */
17 #include <linux/delay.h>
18 #include <linux/io.h>
19 #include <linux/scatterlist.h>
20 #include "common.h"
21 #include "pipe.h"
22 
23 #define usbhsf_get_cfifo(p)	(&((p)->fifo_info.cfifo))
24 #define usbhsf_is_cfifo(p, f)	(usbhsf_get_cfifo(p) == f)
25 
26 #define usbhsf_fifo_is_busy(f)	((f)->pipe) /* see usbhs_pipe_select_fifo */
27 
28 /*
29  *		packet initialize
30  */
usbhs_pkt_init(struct usbhs_pkt * pkt)31 void usbhs_pkt_init(struct usbhs_pkt *pkt)
32 {
33 	INIT_LIST_HEAD(&pkt->node);
34 }
35 
36 /*
37  *		packet control function
38  */
usbhsf_null_handle(struct usbhs_pkt * pkt,int * is_done)39 static int usbhsf_null_handle(struct usbhs_pkt *pkt, int *is_done)
40 {
41 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pkt->pipe);
42 	struct device *dev = usbhs_priv_to_dev(priv);
43 
44 	dev_err(dev, "null handler\n");
45 
46 	return -EINVAL;
47 }
48 
49 static struct usbhs_pkt_handle usbhsf_null_handler = {
50 	.prepare = usbhsf_null_handle,
51 	.try_run = usbhsf_null_handle,
52 };
53 
usbhs_pkt_push(struct usbhs_pipe * pipe,struct usbhs_pkt * pkt,void (* done)(struct usbhs_priv * priv,struct usbhs_pkt * pkt),void * buf,int len,int zero,int sequence)54 void usbhs_pkt_push(struct usbhs_pipe *pipe, struct usbhs_pkt *pkt,
55 		    void (*done)(struct usbhs_priv *priv,
56 				 struct usbhs_pkt *pkt),
57 		    void *buf, int len, int zero, int sequence)
58 {
59 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
60 	struct device *dev = usbhs_priv_to_dev(priv);
61 	unsigned long flags;
62 
63 	if (!done) {
64 		dev_err(dev, "no done function\n");
65 		return;
66 	}
67 
68 	/********************  spin lock ********************/
69 	usbhs_lock(priv, flags);
70 
71 	if (!pipe->handler) {
72 		dev_err(dev, "no handler function\n");
73 		pipe->handler = &usbhsf_null_handler;
74 	}
75 
76 	list_move_tail(&pkt->node, &pipe->list);
77 
78 	/*
79 	 * each pkt must hold own handler.
80 	 * because handler might be changed by its situation.
81 	 * dma handler -> pio handler.
82 	 */
83 	pkt->pipe	= pipe;
84 	pkt->buf	= buf;
85 	pkt->handler	= pipe->handler;
86 	pkt->length	= len;
87 	pkt->zero	= zero;
88 	pkt->actual	= 0;
89 	pkt->done	= done;
90 	pkt->sequence	= sequence;
91 
92 	usbhs_unlock(priv, flags);
93 	/********************  spin unlock ******************/
94 }
95 
__usbhsf_pkt_del(struct usbhs_pkt * pkt)96 static void __usbhsf_pkt_del(struct usbhs_pkt *pkt)
97 {
98 	list_del_init(&pkt->node);
99 }
100 
__usbhsf_pkt_get(struct usbhs_pipe * pipe)101 struct usbhs_pkt *__usbhsf_pkt_get(struct usbhs_pipe *pipe)
102 {
103 	if (list_empty(&pipe->list))
104 		return NULL;
105 
106 	return list_first_entry(&pipe->list, struct usbhs_pkt, node);
107 }
108 
109 static void usbhsf_fifo_clear(struct usbhs_pipe *pipe,
110 			      struct usbhs_fifo *fifo);
111 static void usbhsf_fifo_unselect(struct usbhs_pipe *pipe,
112 				 struct usbhs_fifo *fifo);
113 static struct dma_chan *usbhsf_dma_chan_get(struct usbhs_fifo *fifo,
114 					    struct usbhs_pkt *pkt);
115 #define usbhsf_dma_map(p)	__usbhsf_dma_map_ctrl(p, 1)
116 #define usbhsf_dma_unmap(p)	__usbhsf_dma_map_ctrl(p, 0)
117 static int __usbhsf_dma_map_ctrl(struct usbhs_pkt *pkt, int map);
118 static void usbhsf_tx_irq_ctrl(struct usbhs_pipe *pipe, int enable);
119 static void usbhsf_rx_irq_ctrl(struct usbhs_pipe *pipe, int enable);
usbhs_pkt_pop(struct usbhs_pipe * pipe,struct usbhs_pkt * pkt)120 struct usbhs_pkt *usbhs_pkt_pop(struct usbhs_pipe *pipe, struct usbhs_pkt *pkt)
121 {
122 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
123 	struct usbhs_fifo *fifo = usbhs_pipe_to_fifo(pipe);
124 	unsigned long flags;
125 
126 	/********************  spin lock ********************/
127 	usbhs_lock(priv, flags);
128 
129 	usbhs_pipe_disable(pipe);
130 
131 	if (!pkt)
132 		pkt = __usbhsf_pkt_get(pipe);
133 
134 	if (pkt) {
135 		struct dma_chan *chan = NULL;
136 
137 		if (fifo)
138 			chan = usbhsf_dma_chan_get(fifo, pkt);
139 		if (chan) {
140 			dmaengine_terminate_all(chan);
141 			usbhsf_fifo_clear(pipe, fifo);
142 			usbhsf_dma_unmap(pkt);
143 		} else {
144 			if (usbhs_pipe_is_dir_in(pipe))
145 				usbhsf_rx_irq_ctrl(pipe, 0);
146 			else
147 				usbhsf_tx_irq_ctrl(pipe, 0);
148 		}
149 
150 		usbhs_pipe_running(pipe, 0);
151 
152 		__usbhsf_pkt_del(pkt);
153 	}
154 
155 	if (fifo)
156 		usbhsf_fifo_unselect(pipe, fifo);
157 
158 	usbhs_unlock(priv, flags);
159 	/********************  spin unlock ******************/
160 
161 	return pkt;
162 }
163 
164 enum {
165 	USBHSF_PKT_PREPARE,
166 	USBHSF_PKT_TRY_RUN,
167 	USBHSF_PKT_DMA_DONE,
168 };
169 
usbhsf_pkt_handler(struct usbhs_pipe * pipe,int type)170 static int usbhsf_pkt_handler(struct usbhs_pipe *pipe, int type)
171 {
172 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
173 	struct usbhs_pkt *pkt;
174 	struct device *dev = usbhs_priv_to_dev(priv);
175 	int (*func)(struct usbhs_pkt *pkt, int *is_done);
176 	unsigned long flags;
177 	int ret = 0;
178 	int is_done = 0;
179 
180 	/********************  spin lock ********************/
181 	usbhs_lock(priv, flags);
182 
183 	pkt = __usbhsf_pkt_get(pipe);
184 	if (!pkt)
185 		goto __usbhs_pkt_handler_end;
186 
187 	switch (type) {
188 	case USBHSF_PKT_PREPARE:
189 		func = pkt->handler->prepare;
190 		break;
191 	case USBHSF_PKT_TRY_RUN:
192 		func = pkt->handler->try_run;
193 		break;
194 	case USBHSF_PKT_DMA_DONE:
195 		func = pkt->handler->dma_done;
196 		break;
197 	default:
198 		dev_err(dev, "unknown pkt handler\n");
199 		goto __usbhs_pkt_handler_end;
200 	}
201 
202 	if (likely(func))
203 		ret = func(pkt, &is_done);
204 
205 	if (is_done)
206 		__usbhsf_pkt_del(pkt);
207 
208 __usbhs_pkt_handler_end:
209 	usbhs_unlock(priv, flags);
210 	/********************  spin unlock ******************/
211 
212 	if (is_done) {
213 		pkt->done(priv, pkt);
214 		usbhs_pkt_start(pipe);
215 	}
216 
217 	return ret;
218 }
219 
usbhs_pkt_start(struct usbhs_pipe * pipe)220 void usbhs_pkt_start(struct usbhs_pipe *pipe)
221 {
222 	usbhsf_pkt_handler(pipe, USBHSF_PKT_PREPARE);
223 }
224 
225 /*
226  *		irq enable/disable function
227  */
228 #define usbhsf_irq_empty_ctrl(p, e) usbhsf_irq_callback_ctrl(p, irq_bempsts, e)
229 #define usbhsf_irq_ready_ctrl(p, e) usbhsf_irq_callback_ctrl(p, irq_brdysts, e)
230 #define usbhsf_irq_callback_ctrl(pipe, status, enable)			\
231 	({								\
232 		struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);	\
233 		struct usbhs_mod *mod = usbhs_mod_get_current(priv);	\
234 		u16 status = (1 << usbhs_pipe_number(pipe));		\
235 		if (!mod)						\
236 			return;						\
237 		if (enable)						\
238 			mod->status |= status;				\
239 		else							\
240 			mod->status &= ~status;				\
241 		usbhs_irq_callback_update(priv, mod);			\
242 	})
243 
usbhsf_tx_irq_ctrl(struct usbhs_pipe * pipe,int enable)244 static void usbhsf_tx_irq_ctrl(struct usbhs_pipe *pipe, int enable)
245 {
246 	/*
247 	 * And DCP pipe can NOT use "ready interrupt" for "send"
248 	 * it should use "empty" interrupt.
249 	 * see
250 	 *   "Operation" - "Interrupt Function" - "BRDY Interrupt"
251 	 *
252 	 * on the other hand, normal pipe can use "ready interrupt" for "send"
253 	 * even though it is single/double buffer
254 	 */
255 	if (usbhs_pipe_is_dcp(pipe))
256 		usbhsf_irq_empty_ctrl(pipe, enable);
257 	else
258 		usbhsf_irq_ready_ctrl(pipe, enable);
259 }
260 
usbhsf_rx_irq_ctrl(struct usbhs_pipe * pipe,int enable)261 static void usbhsf_rx_irq_ctrl(struct usbhs_pipe *pipe, int enable)
262 {
263 	usbhsf_irq_ready_ctrl(pipe, enable);
264 }
265 
266 /*
267  *		FIFO ctrl
268  */
usbhsf_send_terminator(struct usbhs_pipe * pipe,struct usbhs_fifo * fifo)269 static void usbhsf_send_terminator(struct usbhs_pipe *pipe,
270 				   struct usbhs_fifo *fifo)
271 {
272 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
273 
274 	usbhs_bset(priv, fifo->ctr, BVAL, BVAL);
275 }
276 
usbhsf_fifo_barrier(struct usbhs_priv * priv,struct usbhs_fifo * fifo)277 static int usbhsf_fifo_barrier(struct usbhs_priv *priv,
278 			       struct usbhs_fifo *fifo)
279 {
280 	int timeout = 1024;
281 
282 	do {
283 		/* The FIFO port is accessible */
284 		if (usbhs_read(priv, fifo->ctr) & FRDY)
285 			return 0;
286 
287 		udelay(10);
288 	} while (timeout--);
289 
290 	return -EBUSY;
291 }
292 
usbhsf_fifo_clear(struct usbhs_pipe * pipe,struct usbhs_fifo * fifo)293 static void usbhsf_fifo_clear(struct usbhs_pipe *pipe,
294 			      struct usbhs_fifo *fifo)
295 {
296 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
297 	int ret = 0;
298 
299 	if (!usbhs_pipe_is_dcp(pipe)) {
300 		/*
301 		 * This driver checks the pipe condition first to avoid -EBUSY
302 		 * from usbhsf_fifo_barrier() with about 10 msec delay in
303 		 * the interrupt handler if the pipe is RX direction and empty.
304 		 */
305 		if (usbhs_pipe_is_dir_in(pipe))
306 			ret = usbhs_pipe_is_accessible(pipe);
307 		if (!ret)
308 			ret = usbhsf_fifo_barrier(priv, fifo);
309 	}
310 
311 	/*
312 	 * if non-DCP pipe, this driver should set BCLR when
313 	 * usbhsf_fifo_barrier() returns 0.
314 	 */
315 	if (!ret)
316 		usbhs_write(priv, fifo->ctr, BCLR);
317 }
318 
usbhsf_fifo_rcv_len(struct usbhs_priv * priv,struct usbhs_fifo * fifo)319 static int usbhsf_fifo_rcv_len(struct usbhs_priv *priv,
320 			       struct usbhs_fifo *fifo)
321 {
322 	return usbhs_read(priv, fifo->ctr) & DTLN_MASK;
323 }
324 
usbhsf_fifo_unselect(struct usbhs_pipe * pipe,struct usbhs_fifo * fifo)325 static void usbhsf_fifo_unselect(struct usbhs_pipe *pipe,
326 				 struct usbhs_fifo *fifo)
327 {
328 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
329 
330 	usbhs_pipe_select_fifo(pipe, NULL);
331 	usbhs_write(priv, fifo->sel, 0);
332 }
333 
usbhsf_fifo_select(struct usbhs_pipe * pipe,struct usbhs_fifo * fifo,int write)334 static int usbhsf_fifo_select(struct usbhs_pipe *pipe,
335 			      struct usbhs_fifo *fifo,
336 			      int write)
337 {
338 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
339 	struct device *dev = usbhs_priv_to_dev(priv);
340 	int timeout = 1024;
341 	u16 mask = ((1 << 5) | 0xF);		/* mask of ISEL | CURPIPE */
342 	u16 base = usbhs_pipe_number(pipe);	/* CURPIPE */
343 
344 	if (usbhs_pipe_is_busy(pipe) ||
345 	    usbhsf_fifo_is_busy(fifo))
346 		return -EBUSY;
347 
348 	if (usbhs_pipe_is_dcp(pipe)) {
349 		base |= (1 == write) << 5;	/* ISEL */
350 
351 		if (usbhs_mod_is_host(priv))
352 			usbhs_dcp_dir_for_host(pipe, write);
353 	}
354 
355 	/* "base" will be used below  */
356 	if (usbhs_get_dparam(priv, has_sudmac) && !usbhsf_is_cfifo(priv, fifo))
357 		usbhs_write(priv, fifo->sel, base);
358 	else
359 		usbhs_write(priv, fifo->sel, base | MBW_32);
360 
361 	/* check ISEL and CURPIPE value */
362 	while (timeout--) {
363 		if (base == (mask & usbhs_read(priv, fifo->sel))) {
364 			usbhs_pipe_select_fifo(pipe, fifo);
365 			return 0;
366 		}
367 		udelay(10);
368 	}
369 
370 	dev_err(dev, "fifo select error\n");
371 
372 	return -EIO;
373 }
374 
375 /*
376  *		DCP status stage
377  */
usbhs_dcp_dir_switch_to_write(struct usbhs_pkt * pkt,int * is_done)378 static int usbhs_dcp_dir_switch_to_write(struct usbhs_pkt *pkt, int *is_done)
379 {
380 	struct usbhs_pipe *pipe = pkt->pipe;
381 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
382 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
383 	struct device *dev = usbhs_priv_to_dev(priv);
384 	int ret;
385 
386 	usbhs_pipe_disable(pipe);
387 
388 	ret = usbhsf_fifo_select(pipe, fifo, 1);
389 	if (ret < 0) {
390 		dev_err(dev, "%s() faile\n", __func__);
391 		return ret;
392 	}
393 
394 	usbhs_pipe_sequence_data1(pipe); /* DATA1 */
395 
396 	usbhsf_fifo_clear(pipe, fifo);
397 	usbhsf_send_terminator(pipe, fifo);
398 
399 	usbhsf_fifo_unselect(pipe, fifo);
400 
401 	usbhsf_tx_irq_ctrl(pipe, 1);
402 	usbhs_pipe_enable(pipe);
403 
404 	return ret;
405 }
406 
usbhs_dcp_dir_switch_to_read(struct usbhs_pkt * pkt,int * is_done)407 static int usbhs_dcp_dir_switch_to_read(struct usbhs_pkt *pkt, int *is_done)
408 {
409 	struct usbhs_pipe *pipe = pkt->pipe;
410 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
411 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
412 	struct device *dev = usbhs_priv_to_dev(priv);
413 	int ret;
414 
415 	usbhs_pipe_disable(pipe);
416 
417 	ret = usbhsf_fifo_select(pipe, fifo, 0);
418 	if (ret < 0) {
419 		dev_err(dev, "%s() fail\n", __func__);
420 		return ret;
421 	}
422 
423 	usbhs_pipe_sequence_data1(pipe); /* DATA1 */
424 	usbhsf_fifo_clear(pipe, fifo);
425 
426 	usbhsf_fifo_unselect(pipe, fifo);
427 
428 	usbhsf_rx_irq_ctrl(pipe, 1);
429 	usbhs_pipe_enable(pipe);
430 
431 	return ret;
432 
433 }
434 
usbhs_dcp_dir_switch_done(struct usbhs_pkt * pkt,int * is_done)435 static int usbhs_dcp_dir_switch_done(struct usbhs_pkt *pkt, int *is_done)
436 {
437 	struct usbhs_pipe *pipe = pkt->pipe;
438 
439 	if (pkt->handler == &usbhs_dcp_status_stage_in_handler)
440 		usbhsf_tx_irq_ctrl(pipe, 0);
441 	else
442 		usbhsf_rx_irq_ctrl(pipe, 0);
443 
444 	pkt->actual = pkt->length;
445 	*is_done = 1;
446 
447 	return 0;
448 }
449 
450 struct usbhs_pkt_handle usbhs_dcp_status_stage_in_handler = {
451 	.prepare = usbhs_dcp_dir_switch_to_write,
452 	.try_run = usbhs_dcp_dir_switch_done,
453 };
454 
455 struct usbhs_pkt_handle usbhs_dcp_status_stage_out_handler = {
456 	.prepare = usbhs_dcp_dir_switch_to_read,
457 	.try_run = usbhs_dcp_dir_switch_done,
458 };
459 
460 /*
461  *		DCP data stage (push)
462  */
usbhsf_dcp_data_stage_try_push(struct usbhs_pkt * pkt,int * is_done)463 static int usbhsf_dcp_data_stage_try_push(struct usbhs_pkt *pkt, int *is_done)
464 {
465 	struct usbhs_pipe *pipe = pkt->pipe;
466 
467 	usbhs_pipe_sequence_data1(pipe); /* DATA1 */
468 
469 	/*
470 	 * change handler to PIO push
471 	 */
472 	pkt->handler = &usbhs_fifo_pio_push_handler;
473 
474 	return pkt->handler->prepare(pkt, is_done);
475 }
476 
477 struct usbhs_pkt_handle usbhs_dcp_data_stage_out_handler = {
478 	.prepare = usbhsf_dcp_data_stage_try_push,
479 };
480 
481 /*
482  *		DCP data stage (pop)
483  */
usbhsf_dcp_data_stage_prepare_pop(struct usbhs_pkt * pkt,int * is_done)484 static int usbhsf_dcp_data_stage_prepare_pop(struct usbhs_pkt *pkt,
485 					     int *is_done)
486 {
487 	struct usbhs_pipe *pipe = pkt->pipe;
488 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
489 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv);
490 
491 	if (usbhs_pipe_is_busy(pipe))
492 		return 0;
493 
494 	/*
495 	 * prepare pop for DCP should
496 	 *  - change DCP direction,
497 	 *  - clear fifo
498 	 *  - DATA1
499 	 */
500 	usbhs_pipe_disable(pipe);
501 
502 	usbhs_pipe_sequence_data1(pipe); /* DATA1 */
503 
504 	usbhsf_fifo_select(pipe, fifo, 0);
505 	usbhsf_fifo_clear(pipe, fifo);
506 	usbhsf_fifo_unselect(pipe, fifo);
507 
508 	/*
509 	 * change handler to PIO pop
510 	 */
511 	pkt->handler = &usbhs_fifo_pio_pop_handler;
512 
513 	return pkt->handler->prepare(pkt, is_done);
514 }
515 
516 struct usbhs_pkt_handle usbhs_dcp_data_stage_in_handler = {
517 	.prepare = usbhsf_dcp_data_stage_prepare_pop,
518 };
519 
520 /*
521  *		PIO push handler
522  */
usbhsf_pio_try_push(struct usbhs_pkt * pkt,int * is_done)523 static int usbhsf_pio_try_push(struct usbhs_pkt *pkt, int *is_done)
524 {
525 	struct usbhs_pipe *pipe = pkt->pipe;
526 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
527 	struct device *dev = usbhs_priv_to_dev(priv);
528 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
529 	void __iomem *addr = priv->base + fifo->port;
530 	u8 *buf;
531 	int maxp = usbhs_pipe_get_maxpacket(pipe);
532 	int total_len;
533 	int i, ret, len;
534 	int is_short;
535 
536 	usbhs_pipe_data_sequence(pipe, pkt->sequence);
537 	pkt->sequence = -1; /* -1 sequence will be ignored */
538 
539 	usbhs_pipe_set_trans_count_if_bulk(pipe, pkt->length);
540 
541 	ret = usbhsf_fifo_select(pipe, fifo, 1);
542 	if (ret < 0)
543 		return 0;
544 
545 	ret = usbhs_pipe_is_accessible(pipe);
546 	if (ret < 0) {
547 		/* inaccessible pipe is not an error */
548 		ret = 0;
549 		goto usbhs_fifo_write_busy;
550 	}
551 
552 	ret = usbhsf_fifo_barrier(priv, fifo);
553 	if (ret < 0)
554 		goto usbhs_fifo_write_busy;
555 
556 	buf		= pkt->buf    + pkt->actual;
557 	len		= pkt->length - pkt->actual;
558 	len		= min(len, maxp);
559 	total_len	= len;
560 	is_short	= total_len < maxp;
561 
562 	/*
563 	 * FIXME
564 	 *
565 	 * 32-bit access only
566 	 */
567 	if (len >= 4 && !((unsigned long)buf & 0x03)) {
568 		iowrite32_rep(addr, buf, len / 4);
569 		len %= 4;
570 		buf += total_len - len;
571 	}
572 
573 	/* the rest operation */
574 	for (i = 0; i < len; i++)
575 		iowrite8(buf[i], addr + (0x03 - (i & 0x03)));
576 
577 	/*
578 	 * variable update
579 	 */
580 	pkt->actual += total_len;
581 
582 	if (pkt->actual < pkt->length)
583 		*is_done = 0;		/* there are remainder data */
584 	else if (is_short)
585 		*is_done = 1;		/* short packet */
586 	else
587 		*is_done = !pkt->zero;	/* send zero packet ? */
588 
589 	/*
590 	 * pipe/irq handling
591 	 */
592 	if (is_short)
593 		usbhsf_send_terminator(pipe, fifo);
594 
595 	usbhsf_tx_irq_ctrl(pipe, !*is_done);
596 	usbhs_pipe_running(pipe, !*is_done);
597 	usbhs_pipe_enable(pipe);
598 
599 	dev_dbg(dev, "  send %d (%d/ %d/ %d/ %d)\n",
600 		usbhs_pipe_number(pipe),
601 		pkt->length, pkt->actual, *is_done, pkt->zero);
602 
603 	usbhsf_fifo_unselect(pipe, fifo);
604 
605 	return 0;
606 
607 usbhs_fifo_write_busy:
608 	usbhsf_fifo_unselect(pipe, fifo);
609 
610 	/*
611 	 * pipe is busy.
612 	 * retry in interrupt
613 	 */
614 	usbhsf_tx_irq_ctrl(pipe, 1);
615 	usbhs_pipe_running(pipe, 1);
616 
617 	return ret;
618 }
619 
usbhsf_pio_prepare_push(struct usbhs_pkt * pkt,int * is_done)620 static int usbhsf_pio_prepare_push(struct usbhs_pkt *pkt, int *is_done)
621 {
622 	if (usbhs_pipe_is_running(pkt->pipe))
623 		return 0;
624 
625 	return usbhsf_pio_try_push(pkt, is_done);
626 }
627 
628 struct usbhs_pkt_handle usbhs_fifo_pio_push_handler = {
629 	.prepare = usbhsf_pio_prepare_push,
630 	.try_run = usbhsf_pio_try_push,
631 };
632 
633 /*
634  *		PIO pop handler
635  */
usbhsf_prepare_pop(struct usbhs_pkt * pkt,int * is_done)636 static int usbhsf_prepare_pop(struct usbhs_pkt *pkt, int *is_done)
637 {
638 	struct usbhs_pipe *pipe = pkt->pipe;
639 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
640 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv);
641 
642 	if (usbhs_pipe_is_busy(pipe))
643 		return 0;
644 
645 	if (usbhs_pipe_is_running(pipe))
646 		return 0;
647 
648 	/*
649 	 * pipe enable to prepare packet receive
650 	 */
651 	usbhs_pipe_data_sequence(pipe, pkt->sequence);
652 	pkt->sequence = -1; /* -1 sequence will be ignored */
653 
654 	if (usbhs_pipe_is_dcp(pipe))
655 		usbhsf_fifo_clear(pipe, fifo);
656 
657 	usbhs_pipe_set_trans_count_if_bulk(pipe, pkt->length);
658 	usbhs_pipe_enable(pipe);
659 	usbhs_pipe_running(pipe, 1);
660 	usbhsf_rx_irq_ctrl(pipe, 1);
661 
662 	return 0;
663 }
664 
usbhsf_pio_try_pop(struct usbhs_pkt * pkt,int * is_done)665 static int usbhsf_pio_try_pop(struct usbhs_pkt *pkt, int *is_done)
666 {
667 	struct usbhs_pipe *pipe = pkt->pipe;
668 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
669 	struct device *dev = usbhs_priv_to_dev(priv);
670 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
671 	void __iomem *addr = priv->base + fifo->port;
672 	u8 *buf;
673 	u32 data = 0;
674 	int maxp = usbhs_pipe_get_maxpacket(pipe);
675 	int rcv_len, len;
676 	int i, ret;
677 	int total_len = 0;
678 
679 	ret = usbhsf_fifo_select(pipe, fifo, 0);
680 	if (ret < 0)
681 		return 0;
682 
683 	ret = usbhsf_fifo_barrier(priv, fifo);
684 	if (ret < 0)
685 		goto usbhs_fifo_read_busy;
686 
687 	rcv_len = usbhsf_fifo_rcv_len(priv, fifo);
688 
689 	buf		= pkt->buf    + pkt->actual;
690 	len		= pkt->length - pkt->actual;
691 	len		= min(len, rcv_len);
692 	total_len	= len;
693 
694 	/*
695 	 * update actual length first here to decide disable pipe.
696 	 * if this pipe keeps BUF status and all data were popped,
697 	 * then, next interrupt/token will be issued again
698 	 */
699 	pkt->actual += total_len;
700 
701 	if ((pkt->actual == pkt->length) ||	/* receive all data */
702 	    (total_len < maxp)) {		/* short packet */
703 		*is_done = 1;
704 		usbhsf_rx_irq_ctrl(pipe, 0);
705 		usbhs_pipe_running(pipe, 0);
706 		/*
707 		 * If function mode, since this controller is possible to enter
708 		 * Control Write status stage at this timing, this driver
709 		 * should not disable the pipe. If such a case happens, this
710 		 * controller is not able to complete the status stage.
711 		 */
712 		if (!usbhs_mod_is_host(priv) && !usbhs_pipe_is_dcp(pipe))
713 			usbhs_pipe_disable(pipe);	/* disable pipe first */
714 	}
715 
716 	/*
717 	 * Buffer clear if Zero-Length packet
718 	 *
719 	 * see
720 	 * "Operation" - "FIFO Buffer Memory" - "FIFO Port Function"
721 	 */
722 	if (0 == rcv_len) {
723 		pkt->zero = 1;
724 		usbhsf_fifo_clear(pipe, fifo);
725 		goto usbhs_fifo_read_end;
726 	}
727 
728 	/*
729 	 * FIXME
730 	 *
731 	 * 32-bit access only
732 	 */
733 	if (len >= 4 && !((unsigned long)buf & 0x03)) {
734 		ioread32_rep(addr, buf, len / 4);
735 		len %= 4;
736 		buf += total_len - len;
737 	}
738 
739 	/* the rest operation */
740 	for (i = 0; i < len; i++) {
741 		if (!(i & 0x03))
742 			data = ioread32(addr);
743 
744 		buf[i] = (data >> ((i & 0x03) * 8)) & 0xff;
745 	}
746 
747 usbhs_fifo_read_end:
748 	dev_dbg(dev, "  recv %d (%d/ %d/ %d/ %d)\n",
749 		usbhs_pipe_number(pipe),
750 		pkt->length, pkt->actual, *is_done, pkt->zero);
751 
752 usbhs_fifo_read_busy:
753 	usbhsf_fifo_unselect(pipe, fifo);
754 
755 	return ret;
756 }
757 
758 struct usbhs_pkt_handle usbhs_fifo_pio_pop_handler = {
759 	.prepare = usbhsf_prepare_pop,
760 	.try_run = usbhsf_pio_try_pop,
761 };
762 
763 /*
764  *		DCP ctrol statge handler
765  */
usbhsf_ctrl_stage_end(struct usbhs_pkt * pkt,int * is_done)766 static int usbhsf_ctrl_stage_end(struct usbhs_pkt *pkt, int *is_done)
767 {
768 	usbhs_dcp_control_transfer_done(pkt->pipe);
769 
770 	*is_done = 1;
771 
772 	return 0;
773 }
774 
775 struct usbhs_pkt_handle usbhs_ctrl_stage_end_handler = {
776 	.prepare = usbhsf_ctrl_stage_end,
777 	.try_run = usbhsf_ctrl_stage_end,
778 };
779 
780 /*
781  *		DMA fifo functions
782  */
usbhsf_dma_chan_get(struct usbhs_fifo * fifo,struct usbhs_pkt * pkt)783 static struct dma_chan *usbhsf_dma_chan_get(struct usbhs_fifo *fifo,
784 					    struct usbhs_pkt *pkt)
785 {
786 	if (&usbhs_fifo_dma_push_handler == pkt->handler)
787 		return fifo->tx_chan;
788 
789 	if (&usbhs_fifo_dma_pop_handler == pkt->handler)
790 		return fifo->rx_chan;
791 
792 	return NULL;
793 }
794 
usbhsf_get_dma_fifo(struct usbhs_priv * priv,struct usbhs_pkt * pkt)795 static struct usbhs_fifo *usbhsf_get_dma_fifo(struct usbhs_priv *priv,
796 					      struct usbhs_pkt *pkt)
797 {
798 	struct usbhs_fifo *fifo;
799 	int i;
800 
801 	usbhs_for_each_dfifo(priv, fifo, i) {
802 		if (usbhsf_dma_chan_get(fifo, pkt) &&
803 		    !usbhsf_fifo_is_busy(fifo))
804 			return fifo;
805 	}
806 
807 	return NULL;
808 }
809 
810 #define usbhsf_dma_start(p, f)	__usbhsf_dma_ctrl(p, f, DREQE)
811 #define usbhsf_dma_stop(p, f)	__usbhsf_dma_ctrl(p, f, 0)
__usbhsf_dma_ctrl(struct usbhs_pipe * pipe,struct usbhs_fifo * fifo,u16 dreqe)812 static void __usbhsf_dma_ctrl(struct usbhs_pipe *pipe,
813 			      struct usbhs_fifo *fifo,
814 			      u16 dreqe)
815 {
816 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
817 
818 	usbhs_bset(priv, fifo->sel, DREQE, dreqe);
819 }
820 
__usbhsf_dma_map_ctrl(struct usbhs_pkt * pkt,int map)821 static int __usbhsf_dma_map_ctrl(struct usbhs_pkt *pkt, int map)
822 {
823 	struct usbhs_pipe *pipe = pkt->pipe;
824 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
825 	struct usbhs_pipe_info *info = usbhs_priv_to_pipeinfo(priv);
826 
827 	return info->dma_map_ctrl(pkt, map);
828 }
829 
830 static void usbhsf_dma_complete(void *arg);
usbhsf_dma_xfer_preparing(struct usbhs_pkt * pkt)831 static void usbhsf_dma_xfer_preparing(struct usbhs_pkt *pkt)
832 {
833 	struct usbhs_pipe *pipe = pkt->pipe;
834 	struct usbhs_fifo *fifo;
835 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
836 	struct dma_async_tx_descriptor *desc;
837 	struct dma_chan *chan;
838 	struct device *dev = usbhs_priv_to_dev(priv);
839 	enum dma_transfer_direction dir;
840 
841 	fifo = usbhs_pipe_to_fifo(pipe);
842 	if (!fifo)
843 		return;
844 
845 	chan = usbhsf_dma_chan_get(fifo, pkt);
846 	dir = usbhs_pipe_is_dir_in(pipe) ? DMA_DEV_TO_MEM : DMA_MEM_TO_DEV;
847 
848 	desc = dmaengine_prep_slave_single(chan, pkt->dma + pkt->actual,
849 					pkt->trans, dir,
850 					DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
851 	if (!desc)
852 		return;
853 
854 	desc->callback		= usbhsf_dma_complete;
855 	desc->callback_param	= pipe;
856 
857 	pkt->cookie = dmaengine_submit(desc);
858 	if (pkt->cookie < 0) {
859 		dev_err(dev, "Failed to submit dma descriptor\n");
860 		return;
861 	}
862 
863 	dev_dbg(dev, "  %s %d (%d/ %d)\n",
864 		fifo->name, usbhs_pipe_number(pipe), pkt->length, pkt->zero);
865 
866 	usbhs_pipe_running(pipe, 1);
867 	usbhs_pipe_set_trans_count_if_bulk(pipe, pkt->trans);
868 	dma_async_issue_pending(chan);
869 	usbhsf_dma_start(pipe, fifo);
870 	usbhs_pipe_enable(pipe);
871 }
872 
xfer_work(struct work_struct * work)873 static void xfer_work(struct work_struct *work)
874 {
875 	struct usbhs_pkt *pkt = container_of(work, struct usbhs_pkt, work);
876 	struct usbhs_pipe *pipe = pkt->pipe;
877 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
878 	unsigned long flags;
879 
880 	usbhs_lock(priv, flags);
881 	usbhsf_dma_xfer_preparing(pkt);
882 	usbhs_unlock(priv, flags);
883 }
884 
885 /*
886  *		DMA push handler
887  */
usbhsf_dma_prepare_push(struct usbhs_pkt * pkt,int * is_done)888 static int usbhsf_dma_prepare_push(struct usbhs_pkt *pkt, int *is_done)
889 {
890 	struct usbhs_pipe *pipe = pkt->pipe;
891 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
892 	struct usbhs_fifo *fifo;
893 	int len = pkt->length - pkt->actual;
894 	int ret;
895 	uintptr_t align_mask;
896 
897 	if (usbhs_pipe_is_busy(pipe))
898 		return 0;
899 
900 	/* use PIO if packet is less than pio_dma_border or pipe is DCP */
901 	if ((len < usbhs_get_dparam(priv, pio_dma_border)) ||
902 	    usbhs_pipe_type_is(pipe, USB_ENDPOINT_XFER_ISOC))
903 		goto usbhsf_pio_prepare_push;
904 
905 	/* check data length if this driver don't use USB-DMAC */
906 	if (!usbhs_get_dparam(priv, has_usb_dmac) && len & 0x7)
907 		goto usbhsf_pio_prepare_push;
908 
909 	/* check buffer alignment */
910 	align_mask = usbhs_get_dparam(priv, has_usb_dmac) ?
911 					USBHS_USB_DMAC_XFER_SIZE - 1 : 0x7;
912 	if ((uintptr_t)(pkt->buf + pkt->actual) & align_mask)
913 		goto usbhsf_pio_prepare_push;
914 
915 	/* return at this time if the pipe is running */
916 	if (usbhs_pipe_is_running(pipe))
917 		return 0;
918 
919 	/* get enable DMA fifo */
920 	fifo = usbhsf_get_dma_fifo(priv, pkt);
921 	if (!fifo)
922 		goto usbhsf_pio_prepare_push;
923 
924 	if (usbhsf_dma_map(pkt) < 0)
925 		goto usbhsf_pio_prepare_push;
926 
927 	ret = usbhsf_fifo_select(pipe, fifo, 0);
928 	if (ret < 0)
929 		goto usbhsf_pio_prepare_push_unmap;
930 
931 	pkt->trans = len;
932 
933 	usbhsf_tx_irq_ctrl(pipe, 0);
934 	/* FIXME: Workaound for usb dmac that driver can be used in atomic */
935 	if (usbhs_get_dparam(priv, has_usb_dmac)) {
936 		usbhsf_dma_xfer_preparing(pkt);
937 	} else {
938 		INIT_WORK(&pkt->work, xfer_work);
939 		schedule_work(&pkt->work);
940 	}
941 
942 	return 0;
943 
944 usbhsf_pio_prepare_push_unmap:
945 	usbhsf_dma_unmap(pkt);
946 usbhsf_pio_prepare_push:
947 	/*
948 	 * change handler to PIO
949 	 */
950 	pkt->handler = &usbhs_fifo_pio_push_handler;
951 
952 	return pkt->handler->prepare(pkt, is_done);
953 }
954 
usbhsf_dma_push_done(struct usbhs_pkt * pkt,int * is_done)955 static int usbhsf_dma_push_done(struct usbhs_pkt *pkt, int *is_done)
956 {
957 	struct usbhs_pipe *pipe = pkt->pipe;
958 	int is_short = pkt->trans % usbhs_pipe_get_maxpacket(pipe);
959 
960 	pkt->actual += pkt->trans;
961 
962 	if (pkt->actual < pkt->length)
963 		*is_done = 0;		/* there are remainder data */
964 	else if (is_short)
965 		*is_done = 1;		/* short packet */
966 	else
967 		*is_done = !pkt->zero;	/* send zero packet? */
968 
969 	usbhs_pipe_running(pipe, !*is_done);
970 
971 	usbhsf_dma_stop(pipe, pipe->fifo);
972 	usbhsf_dma_unmap(pkt);
973 	usbhsf_fifo_unselect(pipe, pipe->fifo);
974 
975 	if (!*is_done) {
976 		/* change handler to PIO */
977 		pkt->handler = &usbhs_fifo_pio_push_handler;
978 		return pkt->handler->try_run(pkt, is_done);
979 	}
980 
981 	return 0;
982 }
983 
984 struct usbhs_pkt_handle usbhs_fifo_dma_push_handler = {
985 	.prepare	= usbhsf_dma_prepare_push,
986 	.dma_done	= usbhsf_dma_push_done,
987 };
988 
989 /*
990  *		DMA pop handler
991  */
992 
usbhsf_dma_prepare_pop_with_rx_irq(struct usbhs_pkt * pkt,int * is_done)993 static int usbhsf_dma_prepare_pop_with_rx_irq(struct usbhs_pkt *pkt,
994 					      int *is_done)
995 {
996 	return usbhsf_prepare_pop(pkt, is_done);
997 }
998 
usbhsf_dma_prepare_pop_with_usb_dmac(struct usbhs_pkt * pkt,int * is_done)999 static int usbhsf_dma_prepare_pop_with_usb_dmac(struct usbhs_pkt *pkt,
1000 						int *is_done)
1001 {
1002 	struct usbhs_pipe *pipe = pkt->pipe;
1003 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
1004 	struct usbhs_fifo *fifo;
1005 	int ret;
1006 
1007 	if (usbhs_pipe_is_busy(pipe))
1008 		return 0;
1009 
1010 	/* use PIO if packet is less than pio_dma_border or pipe is DCP */
1011 	if ((pkt->length < usbhs_get_dparam(priv, pio_dma_border)) ||
1012 	    usbhs_pipe_type_is(pipe, USB_ENDPOINT_XFER_ISOC))
1013 		goto usbhsf_pio_prepare_pop;
1014 
1015 	fifo = usbhsf_get_dma_fifo(priv, pkt);
1016 	if (!fifo)
1017 		goto usbhsf_pio_prepare_pop;
1018 
1019 	if ((uintptr_t)pkt->buf & (USBHS_USB_DMAC_XFER_SIZE - 1))
1020 		goto usbhsf_pio_prepare_pop;
1021 
1022 	/* return at this time if the pipe is running */
1023 	if (usbhs_pipe_is_running(pipe))
1024 		return 0;
1025 
1026 	usbhs_pipe_config_change_bfre(pipe, 1);
1027 
1028 	ret = usbhsf_fifo_select(pipe, fifo, 0);
1029 	if (ret < 0)
1030 		goto usbhsf_pio_prepare_pop;
1031 
1032 	if (usbhsf_dma_map(pkt) < 0)
1033 		goto usbhsf_pio_prepare_pop_unselect;
1034 
1035 	/* DMA */
1036 
1037 	/*
1038 	 * usbhs_fifo_dma_pop_handler :: prepare
1039 	 * enabled irq to come here.
1040 	 * but it is no longer needed for DMA. disable it.
1041 	 */
1042 	usbhsf_rx_irq_ctrl(pipe, 0);
1043 
1044 	pkt->trans = pkt->length;
1045 
1046 	usbhsf_dma_xfer_preparing(pkt);
1047 
1048 	return 0;
1049 
1050 usbhsf_pio_prepare_pop_unselect:
1051 	usbhsf_fifo_unselect(pipe, fifo);
1052 usbhsf_pio_prepare_pop:
1053 
1054 	/*
1055 	 * change handler to PIO
1056 	 */
1057 	pkt->handler = &usbhs_fifo_pio_pop_handler;
1058 	usbhs_pipe_config_change_bfre(pipe, 0);
1059 
1060 	return pkt->handler->prepare(pkt, is_done);
1061 }
1062 
usbhsf_dma_prepare_pop(struct usbhs_pkt * pkt,int * is_done)1063 static int usbhsf_dma_prepare_pop(struct usbhs_pkt *pkt, int *is_done)
1064 {
1065 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pkt->pipe);
1066 
1067 	if (usbhs_get_dparam(priv, has_usb_dmac))
1068 		return usbhsf_dma_prepare_pop_with_usb_dmac(pkt, is_done);
1069 	else
1070 		return usbhsf_dma_prepare_pop_with_rx_irq(pkt, is_done);
1071 }
1072 
usbhsf_dma_try_pop_with_rx_irq(struct usbhs_pkt * pkt,int * is_done)1073 static int usbhsf_dma_try_pop_with_rx_irq(struct usbhs_pkt *pkt, int *is_done)
1074 {
1075 	struct usbhs_pipe *pipe = pkt->pipe;
1076 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
1077 	struct usbhs_fifo *fifo;
1078 	int len, ret;
1079 
1080 	if (usbhs_pipe_is_busy(pipe))
1081 		return 0;
1082 
1083 	if (usbhs_pipe_is_dcp(pipe))
1084 		goto usbhsf_pio_prepare_pop;
1085 
1086 	/* get enable DMA fifo */
1087 	fifo = usbhsf_get_dma_fifo(priv, pkt);
1088 	if (!fifo)
1089 		goto usbhsf_pio_prepare_pop;
1090 
1091 	if ((uintptr_t)(pkt->buf + pkt->actual) & 0x7) /* 8byte alignment */
1092 		goto usbhsf_pio_prepare_pop;
1093 
1094 	ret = usbhsf_fifo_select(pipe, fifo, 0);
1095 	if (ret < 0)
1096 		goto usbhsf_pio_prepare_pop;
1097 
1098 	/* use PIO if packet is less than pio_dma_border */
1099 	len = usbhsf_fifo_rcv_len(priv, fifo);
1100 	len = min(pkt->length - pkt->actual, len);
1101 	if (len & 0x7) /* 8byte alignment */
1102 		goto usbhsf_pio_prepare_pop_unselect;
1103 
1104 	if (len < usbhs_get_dparam(priv, pio_dma_border))
1105 		goto usbhsf_pio_prepare_pop_unselect;
1106 
1107 	ret = usbhsf_fifo_barrier(priv, fifo);
1108 	if (ret < 0)
1109 		goto usbhsf_pio_prepare_pop_unselect;
1110 
1111 	if (usbhsf_dma_map(pkt) < 0)
1112 		goto usbhsf_pio_prepare_pop_unselect;
1113 
1114 	/* DMA */
1115 
1116 	/*
1117 	 * usbhs_fifo_dma_pop_handler :: prepare
1118 	 * enabled irq to come here.
1119 	 * but it is no longer needed for DMA. disable it.
1120 	 */
1121 	usbhsf_rx_irq_ctrl(pipe, 0);
1122 
1123 	pkt->trans = len;
1124 
1125 	INIT_WORK(&pkt->work, xfer_work);
1126 	schedule_work(&pkt->work);
1127 
1128 	return 0;
1129 
1130 usbhsf_pio_prepare_pop_unselect:
1131 	usbhsf_fifo_unselect(pipe, fifo);
1132 usbhsf_pio_prepare_pop:
1133 
1134 	/*
1135 	 * change handler to PIO
1136 	 */
1137 	pkt->handler = &usbhs_fifo_pio_pop_handler;
1138 
1139 	return pkt->handler->try_run(pkt, is_done);
1140 }
1141 
usbhsf_dma_try_pop(struct usbhs_pkt * pkt,int * is_done)1142 static int usbhsf_dma_try_pop(struct usbhs_pkt *pkt, int *is_done)
1143 {
1144 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pkt->pipe);
1145 
1146 	BUG_ON(usbhs_get_dparam(priv, has_usb_dmac));
1147 
1148 	return usbhsf_dma_try_pop_with_rx_irq(pkt, is_done);
1149 }
1150 
usbhsf_dma_pop_done_with_rx_irq(struct usbhs_pkt * pkt,int * is_done)1151 static int usbhsf_dma_pop_done_with_rx_irq(struct usbhs_pkt *pkt, int *is_done)
1152 {
1153 	struct usbhs_pipe *pipe = pkt->pipe;
1154 	int maxp = usbhs_pipe_get_maxpacket(pipe);
1155 
1156 	usbhsf_dma_stop(pipe, pipe->fifo);
1157 	usbhsf_dma_unmap(pkt);
1158 	usbhsf_fifo_unselect(pipe, pipe->fifo);
1159 
1160 	pkt->actual += pkt->trans;
1161 
1162 	if ((pkt->actual == pkt->length) ||	/* receive all data */
1163 	    (pkt->trans < maxp)) {		/* short packet */
1164 		*is_done = 1;
1165 		usbhs_pipe_running(pipe, 0);
1166 	} else {
1167 		/* re-enable */
1168 		usbhs_pipe_running(pipe, 0);
1169 		usbhsf_prepare_pop(pkt, is_done);
1170 	}
1171 
1172 	return 0;
1173 }
1174 
usbhs_dma_calc_received_size(struct usbhs_pkt * pkt,struct dma_chan * chan,int dtln)1175 static size_t usbhs_dma_calc_received_size(struct usbhs_pkt *pkt,
1176 					   struct dma_chan *chan, int dtln)
1177 {
1178 	struct usbhs_pipe *pipe = pkt->pipe;
1179 	struct dma_tx_state state;
1180 	size_t received_size;
1181 	int maxp = usbhs_pipe_get_maxpacket(pipe);
1182 
1183 	dmaengine_tx_status(chan, pkt->cookie, &state);
1184 	received_size = pkt->length - state.residue;
1185 
1186 	if (dtln) {
1187 		received_size -= USBHS_USB_DMAC_XFER_SIZE;
1188 		received_size &= ~(maxp - 1);
1189 		received_size += dtln;
1190 	}
1191 
1192 	return received_size;
1193 }
1194 
usbhsf_dma_pop_done_with_usb_dmac(struct usbhs_pkt * pkt,int * is_done)1195 static int usbhsf_dma_pop_done_with_usb_dmac(struct usbhs_pkt *pkt,
1196 					     int *is_done)
1197 {
1198 	struct usbhs_pipe *pipe = pkt->pipe;
1199 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
1200 	struct usbhs_fifo *fifo = usbhs_pipe_to_fifo(pipe);
1201 	struct dma_chan *chan = usbhsf_dma_chan_get(fifo, pkt);
1202 	int rcv_len;
1203 
1204 	/*
1205 	 * Since the driver disables rx_irq in DMA mode, the interrupt handler
1206 	 * cannot the BRDYSTS. So, the function clears it here because the
1207 	 * driver may use PIO mode next time.
1208 	 */
1209 	usbhs_xxxsts_clear(priv, BRDYSTS, usbhs_pipe_number(pipe));
1210 
1211 	rcv_len = usbhsf_fifo_rcv_len(priv, fifo);
1212 	usbhsf_fifo_clear(pipe, fifo);
1213 	pkt->actual = usbhs_dma_calc_received_size(pkt, chan, rcv_len);
1214 
1215 	usbhs_pipe_running(pipe, 0);
1216 	usbhsf_dma_stop(pipe, fifo);
1217 	usbhsf_dma_unmap(pkt);
1218 	usbhsf_fifo_unselect(pipe, pipe->fifo);
1219 
1220 	/* The driver can assume the rx transaction is always "done" */
1221 	*is_done = 1;
1222 
1223 	return 0;
1224 }
1225 
usbhsf_dma_pop_done(struct usbhs_pkt * pkt,int * is_done)1226 static int usbhsf_dma_pop_done(struct usbhs_pkt *pkt, int *is_done)
1227 {
1228 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pkt->pipe);
1229 
1230 	if (usbhs_get_dparam(priv, has_usb_dmac))
1231 		return usbhsf_dma_pop_done_with_usb_dmac(pkt, is_done);
1232 	else
1233 		return usbhsf_dma_pop_done_with_rx_irq(pkt, is_done);
1234 }
1235 
1236 struct usbhs_pkt_handle usbhs_fifo_dma_pop_handler = {
1237 	.prepare	= usbhsf_dma_prepare_pop,
1238 	.try_run	= usbhsf_dma_try_pop,
1239 	.dma_done	= usbhsf_dma_pop_done
1240 };
1241 
1242 /*
1243  *		DMA setting
1244  */
usbhsf_dma_filter(struct dma_chan * chan,void * param)1245 static bool usbhsf_dma_filter(struct dma_chan *chan, void *param)
1246 {
1247 	struct sh_dmae_slave *slave = param;
1248 
1249 	/*
1250 	 * FIXME
1251 	 *
1252 	 * usbhs doesn't recognize id = 0 as valid DMA
1253 	 */
1254 	if (0 == slave->shdma_slave.slave_id)
1255 		return false;
1256 
1257 	chan->private = slave;
1258 
1259 	return true;
1260 }
1261 
usbhsf_dma_quit(struct usbhs_priv * priv,struct usbhs_fifo * fifo)1262 static void usbhsf_dma_quit(struct usbhs_priv *priv, struct usbhs_fifo *fifo)
1263 {
1264 	if (fifo->tx_chan)
1265 		dma_release_channel(fifo->tx_chan);
1266 	if (fifo->rx_chan)
1267 		dma_release_channel(fifo->rx_chan);
1268 
1269 	fifo->tx_chan = NULL;
1270 	fifo->rx_chan = NULL;
1271 }
1272 
usbhsf_dma_init_pdev(struct usbhs_fifo * fifo)1273 static void usbhsf_dma_init_pdev(struct usbhs_fifo *fifo)
1274 {
1275 	dma_cap_mask_t mask;
1276 
1277 	dma_cap_zero(mask);
1278 	dma_cap_set(DMA_SLAVE, mask);
1279 	fifo->tx_chan = dma_request_channel(mask, usbhsf_dma_filter,
1280 					    &fifo->tx_slave);
1281 
1282 	dma_cap_zero(mask);
1283 	dma_cap_set(DMA_SLAVE, mask);
1284 	fifo->rx_chan = dma_request_channel(mask, usbhsf_dma_filter,
1285 					    &fifo->rx_slave);
1286 }
1287 
usbhsf_dma_init_dt(struct device * dev,struct usbhs_fifo * fifo,int channel)1288 static void usbhsf_dma_init_dt(struct device *dev, struct usbhs_fifo *fifo,
1289 			       int channel)
1290 {
1291 	char name[16];
1292 
1293 	/*
1294 	 * To avoid complex handing for DnFIFOs, the driver uses each
1295 	 * DnFIFO as TX or RX direction (not bi-direction).
1296 	 * So, the driver uses odd channels for TX, even channels for RX.
1297 	 */
1298 	snprintf(name, sizeof(name), "ch%d", channel);
1299 	if (channel & 1) {
1300 		fifo->tx_chan = dma_request_slave_channel_reason(dev, name);
1301 		if (IS_ERR(fifo->tx_chan))
1302 			fifo->tx_chan = NULL;
1303 	} else {
1304 		fifo->rx_chan = dma_request_slave_channel_reason(dev, name);
1305 		if (IS_ERR(fifo->rx_chan))
1306 			fifo->rx_chan = NULL;
1307 	}
1308 }
1309 
usbhsf_dma_init(struct usbhs_priv * priv,struct usbhs_fifo * fifo,int channel)1310 static void usbhsf_dma_init(struct usbhs_priv *priv, struct usbhs_fifo *fifo,
1311 			    int channel)
1312 {
1313 	struct device *dev = usbhs_priv_to_dev(priv);
1314 
1315 	if (dev->of_node)
1316 		usbhsf_dma_init_dt(dev, fifo, channel);
1317 	else
1318 		usbhsf_dma_init_pdev(fifo);
1319 
1320 	if (fifo->tx_chan || fifo->rx_chan)
1321 		dev_dbg(dev, "enable DMAEngine (%s%s%s)\n",
1322 			 fifo->name,
1323 			 fifo->tx_chan ? "[TX]" : "    ",
1324 			 fifo->rx_chan ? "[RX]" : "    ");
1325 }
1326 
1327 /*
1328  *		irq functions
1329  */
usbhsf_irq_empty(struct usbhs_priv * priv,struct usbhs_irq_state * irq_state)1330 static int usbhsf_irq_empty(struct usbhs_priv *priv,
1331 			    struct usbhs_irq_state *irq_state)
1332 {
1333 	struct usbhs_pipe *pipe;
1334 	struct device *dev = usbhs_priv_to_dev(priv);
1335 	int i, ret;
1336 
1337 	if (!irq_state->bempsts) {
1338 		dev_err(dev, "debug %s !!\n", __func__);
1339 		return -EIO;
1340 	}
1341 
1342 	dev_dbg(dev, "irq empty [0x%04x]\n", irq_state->bempsts);
1343 
1344 	/*
1345 	 * search interrupted "pipe"
1346 	 * not "uep".
1347 	 */
1348 	usbhs_for_each_pipe_with_dcp(pipe, priv, i) {
1349 		if (!(irq_state->bempsts & (1 << i)))
1350 			continue;
1351 
1352 		ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_TRY_RUN);
1353 		if (ret < 0)
1354 			dev_err(dev, "irq_empty run_error %d : %d\n", i, ret);
1355 	}
1356 
1357 	return 0;
1358 }
1359 
usbhsf_irq_ready(struct usbhs_priv * priv,struct usbhs_irq_state * irq_state)1360 static int usbhsf_irq_ready(struct usbhs_priv *priv,
1361 			    struct usbhs_irq_state *irq_state)
1362 {
1363 	struct usbhs_pipe *pipe;
1364 	struct device *dev = usbhs_priv_to_dev(priv);
1365 	int i, ret;
1366 
1367 	if (!irq_state->brdysts) {
1368 		dev_err(dev, "debug %s !!\n", __func__);
1369 		return -EIO;
1370 	}
1371 
1372 	dev_dbg(dev, "irq ready [0x%04x]\n", irq_state->brdysts);
1373 
1374 	/*
1375 	 * search interrupted "pipe"
1376 	 * not "uep".
1377 	 */
1378 	usbhs_for_each_pipe_with_dcp(pipe, priv, i) {
1379 		if (!(irq_state->brdysts & (1 << i)))
1380 			continue;
1381 
1382 		ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_TRY_RUN);
1383 		if (ret < 0)
1384 			dev_err(dev, "irq_ready run_error %d : %d\n", i, ret);
1385 	}
1386 
1387 	return 0;
1388 }
1389 
usbhsf_dma_complete(void * arg)1390 static void usbhsf_dma_complete(void *arg)
1391 {
1392 	struct usbhs_pipe *pipe = arg;
1393 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
1394 	struct device *dev = usbhs_priv_to_dev(priv);
1395 	int ret;
1396 
1397 	ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_DMA_DONE);
1398 	if (ret < 0)
1399 		dev_err(dev, "dma_complete run_error %d : %d\n",
1400 			usbhs_pipe_number(pipe), ret);
1401 }
1402 
usbhs_fifo_clear_dcp(struct usbhs_pipe * pipe)1403 void usbhs_fifo_clear_dcp(struct usbhs_pipe *pipe)
1404 {
1405 	struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
1406 	struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
1407 
1408 	/* clear DCP FIFO of transmission */
1409 	if (usbhsf_fifo_select(pipe, fifo, 1) < 0)
1410 		return;
1411 	usbhsf_fifo_clear(pipe, fifo);
1412 	usbhsf_fifo_unselect(pipe, fifo);
1413 
1414 	/* clear DCP FIFO of reception */
1415 	if (usbhsf_fifo_select(pipe, fifo, 0) < 0)
1416 		return;
1417 	usbhsf_fifo_clear(pipe, fifo);
1418 	usbhsf_fifo_unselect(pipe, fifo);
1419 }
1420 
1421 /*
1422  *		fifo init
1423  */
usbhs_fifo_init(struct usbhs_priv * priv)1424 void usbhs_fifo_init(struct usbhs_priv *priv)
1425 {
1426 	struct usbhs_mod *mod = usbhs_mod_get_current(priv);
1427 	struct usbhs_fifo *cfifo = usbhsf_get_cfifo(priv);
1428 	struct usbhs_fifo *dfifo;
1429 	int i;
1430 
1431 	mod->irq_empty		= usbhsf_irq_empty;
1432 	mod->irq_ready		= usbhsf_irq_ready;
1433 	mod->irq_bempsts	= 0;
1434 	mod->irq_brdysts	= 0;
1435 
1436 	cfifo->pipe	= NULL;
1437 	usbhs_for_each_dfifo(priv, dfifo, i)
1438 		dfifo->pipe	= NULL;
1439 }
1440 
usbhs_fifo_quit(struct usbhs_priv * priv)1441 void usbhs_fifo_quit(struct usbhs_priv *priv)
1442 {
1443 	struct usbhs_mod *mod = usbhs_mod_get_current(priv);
1444 
1445 	mod->irq_empty		= NULL;
1446 	mod->irq_ready		= NULL;
1447 	mod->irq_bempsts	= 0;
1448 	mod->irq_brdysts	= 0;
1449 }
1450 
1451 #define __USBHS_DFIFO_INIT(priv, fifo, channel, fifo_port)		\
1452 do {									\
1453 	fifo = usbhsf_get_dnfifo(priv, channel);			\
1454 	fifo->name	= "D"#channel"FIFO";				\
1455 	fifo->port	= fifo_port;					\
1456 	fifo->sel	= D##channel##FIFOSEL;				\
1457 	fifo->ctr	= D##channel##FIFOCTR;				\
1458 	fifo->tx_slave.shdma_slave.slave_id =				\
1459 			usbhs_get_dparam(priv, d##channel##_tx_id);	\
1460 	fifo->rx_slave.shdma_slave.slave_id =				\
1461 			usbhs_get_dparam(priv, d##channel##_rx_id);	\
1462 	usbhsf_dma_init(priv, fifo, channel);				\
1463 } while (0)
1464 
1465 #define USBHS_DFIFO_INIT(priv, fifo, channel)				\
1466 		__USBHS_DFIFO_INIT(priv, fifo, channel, D##channel##FIFO)
1467 #define USBHS_DFIFO_INIT_NO_PORT(priv, fifo, channel)			\
1468 		__USBHS_DFIFO_INIT(priv, fifo, channel, 0)
1469 
usbhs_fifo_probe(struct usbhs_priv * priv)1470 int usbhs_fifo_probe(struct usbhs_priv *priv)
1471 {
1472 	struct usbhs_fifo *fifo;
1473 
1474 	/* CFIFO */
1475 	fifo = usbhsf_get_cfifo(priv);
1476 	fifo->name	= "CFIFO";
1477 	fifo->port	= CFIFO;
1478 	fifo->sel	= CFIFOSEL;
1479 	fifo->ctr	= CFIFOCTR;
1480 
1481 	/* DFIFO */
1482 	USBHS_DFIFO_INIT(priv, fifo, 0);
1483 	USBHS_DFIFO_INIT(priv, fifo, 1);
1484 	USBHS_DFIFO_INIT_NO_PORT(priv, fifo, 2);
1485 	USBHS_DFIFO_INIT_NO_PORT(priv, fifo, 3);
1486 
1487 	return 0;
1488 }
1489 
usbhs_fifo_remove(struct usbhs_priv * priv)1490 void usbhs_fifo_remove(struct usbhs_priv *priv)
1491 {
1492 	struct usbhs_fifo *fifo;
1493 	int i;
1494 
1495 	usbhs_for_each_dfifo(priv, fifo, i)
1496 		usbhsf_dma_quit(priv, fifo);
1497 }
1498