xref: /linux/drivers/dma/tegra210-adma.c (revision 8795a739e5c72abeec51caf36b6df2b37e5720c5)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * ADMA driver for Nvidia's Tegra210 ADMA controller.
4  *
5  * Copyright (c) 2016, NVIDIA CORPORATION.  All rights reserved.
6  */
7 
8 #include <linux/clk.h>
9 #include <linux/iopoll.h>
10 #include <linux/module.h>
11 #include <linux/of_device.h>
12 #include <linux/of_dma.h>
13 #include <linux/of_irq.h>
14 #include <linux/pm_runtime.h>
15 #include <linux/slab.h>
16 
17 #include "virt-dma.h"
18 
19 #define ADMA_CH_CMD					0x00
20 #define ADMA_CH_STATUS					0x0c
21 #define ADMA_CH_STATUS_XFER_EN				BIT(0)
22 #define ADMA_CH_STATUS_XFER_PAUSED			BIT(1)
23 
24 #define ADMA_CH_INT_STATUS				0x10
25 #define ADMA_CH_INT_STATUS_XFER_DONE			BIT(0)
26 
27 #define ADMA_CH_INT_CLEAR				0x1c
28 #define ADMA_CH_CTRL					0x24
29 #define ADMA_CH_CTRL_DIR(val)				(((val) & 0xf) << 12)
30 #define ADMA_CH_CTRL_DIR_AHUB2MEM			2
31 #define ADMA_CH_CTRL_DIR_MEM2AHUB			4
32 #define ADMA_CH_CTRL_MODE_CONTINUOUS			(2 << 8)
33 #define ADMA_CH_CTRL_FLOWCTRL_EN			BIT(1)
34 #define ADMA_CH_CTRL_XFER_PAUSE_SHIFT			0
35 
36 #define ADMA_CH_CONFIG					0x28
37 #define ADMA_CH_CONFIG_SRC_BUF(val)			(((val) & 0x7) << 28)
38 #define ADMA_CH_CONFIG_TRG_BUF(val)			(((val) & 0x7) << 24)
39 #define ADMA_CH_CONFIG_BURST_SIZE_SHIFT			20
40 #define ADMA_CH_CONFIG_MAX_BURST_SIZE                   16
41 #define ADMA_CH_CONFIG_WEIGHT_FOR_WRR(val)		((val) & 0xf)
42 #define ADMA_CH_CONFIG_MAX_BUFS				8
43 
44 #define ADMA_CH_FIFO_CTRL				0x2c
45 #define TEGRA210_ADMA_CH_FIFO_CTRL_TXSIZE(val)		(((val) & 0xf) << 8)
46 #define TEGRA210_ADMA_CH_FIFO_CTRL_RXSIZE(val)		((val) & 0xf)
47 #define TEGRA186_ADMA_CH_FIFO_CTRL_TXSIZE(val)		(((val) & 0x1f) << 8)
48 #define TEGRA186_ADMA_CH_FIFO_CTRL_RXSIZE(val)		((val) & 0x1f)
49 
50 #define ADMA_CH_LOWER_SRC_ADDR				0x34
51 #define ADMA_CH_LOWER_TRG_ADDR				0x3c
52 #define ADMA_CH_TC					0x44
53 #define ADMA_CH_TC_COUNT_MASK				0x3ffffffc
54 
55 #define ADMA_CH_XFER_STATUS				0x54
56 #define ADMA_CH_XFER_STATUS_COUNT_MASK			0xffff
57 
58 #define ADMA_GLOBAL_CMD					0x00
59 #define ADMA_GLOBAL_SOFT_RESET				0x04
60 
61 #define TEGRA_ADMA_BURST_COMPLETE_TIME			20
62 
63 #define TEGRA210_FIFO_CTRL_DEFAULT (TEGRA210_ADMA_CH_FIFO_CTRL_TXSIZE(3) | \
64 				    TEGRA210_ADMA_CH_FIFO_CTRL_RXSIZE(3))
65 
66 #define TEGRA186_FIFO_CTRL_DEFAULT (TEGRA186_ADMA_CH_FIFO_CTRL_TXSIZE(3) | \
67 				    TEGRA186_ADMA_CH_FIFO_CTRL_RXSIZE(3))
68 
69 #define ADMA_CH_REG_FIELD_VAL(val, mask, shift)	(((val) & mask) << shift)
70 
71 struct tegra_adma;
72 
73 /*
74  * struct tegra_adma_chip_data - Tegra chip specific data
75  * @global_reg_offset: Register offset of DMA global register.
76  * @global_int_clear: Register offset of DMA global interrupt clear.
77  * @ch_req_tx_shift: Register offset for AHUB transmit channel select.
78  * @ch_req_rx_shift: Register offset for AHUB receive channel select.
79  * @ch_base_offset: Register offset of DMA channel registers.
80  * @ch_fifo_ctrl: Default value for channel FIFO CTRL register.
81  * @ch_req_mask: Mask for Tx or Rx channel select.
82  * @ch_req_max: Maximum number of Tx or Rx channels available.
83  * @ch_reg_size: Size of DMA channel register space.
84  * @nr_channels: Number of DMA channels available.
85  */
86 struct tegra_adma_chip_data {
87 	unsigned int (*adma_get_burst_config)(unsigned int burst_size);
88 	unsigned int global_reg_offset;
89 	unsigned int global_int_clear;
90 	unsigned int ch_req_tx_shift;
91 	unsigned int ch_req_rx_shift;
92 	unsigned int ch_base_offset;
93 	unsigned int ch_fifo_ctrl;
94 	unsigned int ch_req_mask;
95 	unsigned int ch_req_max;
96 	unsigned int ch_reg_size;
97 	unsigned int nr_channels;
98 };
99 
100 /*
101  * struct tegra_adma_chan_regs - Tegra ADMA channel registers
102  */
103 struct tegra_adma_chan_regs {
104 	unsigned int ctrl;
105 	unsigned int config;
106 	unsigned int src_addr;
107 	unsigned int trg_addr;
108 	unsigned int fifo_ctrl;
109 	unsigned int cmd;
110 	unsigned int tc;
111 };
112 
113 /*
114  * struct tegra_adma_desc - Tegra ADMA descriptor to manage transfer requests.
115  */
116 struct tegra_adma_desc {
117 	struct virt_dma_desc		vd;
118 	struct tegra_adma_chan_regs	ch_regs;
119 	size_t				buf_len;
120 	size_t				period_len;
121 	size_t				num_periods;
122 };
123 
124 /*
125  * struct tegra_adma_chan - Tegra ADMA channel information
126  */
127 struct tegra_adma_chan {
128 	struct virt_dma_chan		vc;
129 	struct tegra_adma_desc		*desc;
130 	struct tegra_adma		*tdma;
131 	int				irq;
132 	void __iomem			*chan_addr;
133 
134 	/* Slave channel configuration info */
135 	struct dma_slave_config		sconfig;
136 	enum dma_transfer_direction	sreq_dir;
137 	unsigned int			sreq_index;
138 	bool				sreq_reserved;
139 	struct tegra_adma_chan_regs	ch_regs;
140 
141 	/* Transfer count and position info */
142 	unsigned int			tx_buf_count;
143 	unsigned int			tx_buf_pos;
144 };
145 
146 /*
147  * struct tegra_adma - Tegra ADMA controller information
148  */
149 struct tegra_adma {
150 	struct dma_device		dma_dev;
151 	struct device			*dev;
152 	void __iomem			*base_addr;
153 	struct clk			*ahub_clk;
154 	unsigned int			nr_channels;
155 	unsigned long			rx_requests_reserved;
156 	unsigned long			tx_requests_reserved;
157 
158 	/* Used to store global command register state when suspending */
159 	unsigned int			global_cmd;
160 
161 	const struct tegra_adma_chip_data *cdata;
162 
163 	/* Last member of the structure */
164 	struct tegra_adma_chan		channels[0];
165 };
166 
167 static inline void tdma_write(struct tegra_adma *tdma, u32 reg, u32 val)
168 {
169 	writel(val, tdma->base_addr + tdma->cdata->global_reg_offset + reg);
170 }
171 
172 static inline u32 tdma_read(struct tegra_adma *tdma, u32 reg)
173 {
174 	return readl(tdma->base_addr + tdma->cdata->global_reg_offset + reg);
175 }
176 
177 static inline void tdma_ch_write(struct tegra_adma_chan *tdc, u32 reg, u32 val)
178 {
179 	writel(val, tdc->chan_addr + reg);
180 }
181 
182 static inline u32 tdma_ch_read(struct tegra_adma_chan *tdc, u32 reg)
183 {
184 	return readl(tdc->chan_addr + reg);
185 }
186 
187 static inline struct tegra_adma_chan *to_tegra_adma_chan(struct dma_chan *dc)
188 {
189 	return container_of(dc, struct tegra_adma_chan, vc.chan);
190 }
191 
192 static inline struct tegra_adma_desc *to_tegra_adma_desc(
193 		struct dma_async_tx_descriptor *td)
194 {
195 	return container_of(td, struct tegra_adma_desc, vd.tx);
196 }
197 
198 static inline struct device *tdc2dev(struct tegra_adma_chan *tdc)
199 {
200 	return tdc->tdma->dev;
201 }
202 
203 static void tegra_adma_desc_free(struct virt_dma_desc *vd)
204 {
205 	kfree(container_of(vd, struct tegra_adma_desc, vd));
206 }
207 
208 static int tegra_adma_slave_config(struct dma_chan *dc,
209 				   struct dma_slave_config *sconfig)
210 {
211 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
212 
213 	memcpy(&tdc->sconfig, sconfig, sizeof(*sconfig));
214 
215 	return 0;
216 }
217 
218 static int tegra_adma_init(struct tegra_adma *tdma)
219 {
220 	u32 status;
221 	int ret;
222 
223 	/* Clear any interrupts */
224 	tdma_write(tdma, tdma->cdata->global_int_clear, 0x1);
225 
226 	/* Assert soft reset */
227 	tdma_write(tdma, ADMA_GLOBAL_SOFT_RESET, 0x1);
228 
229 	/* Wait for reset to clear */
230 	ret = readx_poll_timeout(readl,
231 				 tdma->base_addr +
232 				 tdma->cdata->global_reg_offset +
233 				 ADMA_GLOBAL_SOFT_RESET,
234 				 status, status == 0, 20, 10000);
235 	if (ret)
236 		return ret;
237 
238 	/* Enable global ADMA registers */
239 	tdma_write(tdma, ADMA_GLOBAL_CMD, 1);
240 
241 	return 0;
242 }
243 
244 static int tegra_adma_request_alloc(struct tegra_adma_chan *tdc,
245 				    enum dma_transfer_direction direction)
246 {
247 	struct tegra_adma *tdma = tdc->tdma;
248 	unsigned int sreq_index = tdc->sreq_index;
249 
250 	if (tdc->sreq_reserved)
251 		return tdc->sreq_dir == direction ? 0 : -EINVAL;
252 
253 	if (sreq_index > tdma->cdata->ch_req_max) {
254 		dev_err(tdma->dev, "invalid DMA request\n");
255 		return -EINVAL;
256 	}
257 
258 	switch (direction) {
259 	case DMA_MEM_TO_DEV:
260 		if (test_and_set_bit(sreq_index, &tdma->tx_requests_reserved)) {
261 			dev_err(tdma->dev, "DMA request reserved\n");
262 			return -EINVAL;
263 		}
264 		break;
265 
266 	case DMA_DEV_TO_MEM:
267 		if (test_and_set_bit(sreq_index, &tdma->rx_requests_reserved)) {
268 			dev_err(tdma->dev, "DMA request reserved\n");
269 			return -EINVAL;
270 		}
271 		break;
272 
273 	default:
274 		dev_WARN(tdma->dev, "channel %s has invalid transfer type\n",
275 			 dma_chan_name(&tdc->vc.chan));
276 		return -EINVAL;
277 	}
278 
279 	tdc->sreq_dir = direction;
280 	tdc->sreq_reserved = true;
281 
282 	return 0;
283 }
284 
285 static void tegra_adma_request_free(struct tegra_adma_chan *tdc)
286 {
287 	struct tegra_adma *tdma = tdc->tdma;
288 
289 	if (!tdc->sreq_reserved)
290 		return;
291 
292 	switch (tdc->sreq_dir) {
293 	case DMA_MEM_TO_DEV:
294 		clear_bit(tdc->sreq_index, &tdma->tx_requests_reserved);
295 		break;
296 
297 	case DMA_DEV_TO_MEM:
298 		clear_bit(tdc->sreq_index, &tdma->rx_requests_reserved);
299 		break;
300 
301 	default:
302 		dev_WARN(tdma->dev, "channel %s has invalid transfer type\n",
303 			 dma_chan_name(&tdc->vc.chan));
304 		return;
305 	}
306 
307 	tdc->sreq_reserved = false;
308 }
309 
310 static u32 tegra_adma_irq_status(struct tegra_adma_chan *tdc)
311 {
312 	u32 status = tdma_ch_read(tdc, ADMA_CH_INT_STATUS);
313 
314 	return status & ADMA_CH_INT_STATUS_XFER_DONE;
315 }
316 
317 static u32 tegra_adma_irq_clear(struct tegra_adma_chan *tdc)
318 {
319 	u32 status = tegra_adma_irq_status(tdc);
320 
321 	if (status)
322 		tdma_ch_write(tdc, ADMA_CH_INT_CLEAR, status);
323 
324 	return status;
325 }
326 
327 static void tegra_adma_stop(struct tegra_adma_chan *tdc)
328 {
329 	unsigned int status;
330 
331 	/* Disable ADMA */
332 	tdma_ch_write(tdc, ADMA_CH_CMD, 0);
333 
334 	/* Clear interrupt status */
335 	tegra_adma_irq_clear(tdc);
336 
337 	if (readx_poll_timeout_atomic(readl, tdc->chan_addr + ADMA_CH_STATUS,
338 			status, !(status & ADMA_CH_STATUS_XFER_EN),
339 			20, 10000)) {
340 		dev_err(tdc2dev(tdc), "unable to stop DMA channel\n");
341 		return;
342 	}
343 
344 	kfree(tdc->desc);
345 	tdc->desc = NULL;
346 }
347 
348 static void tegra_adma_start(struct tegra_adma_chan *tdc)
349 {
350 	struct virt_dma_desc *vd = vchan_next_desc(&tdc->vc);
351 	struct tegra_adma_chan_regs *ch_regs;
352 	struct tegra_adma_desc *desc;
353 
354 	if (!vd)
355 		return;
356 
357 	list_del(&vd->node);
358 
359 	desc = to_tegra_adma_desc(&vd->tx);
360 
361 	if (!desc) {
362 		dev_warn(tdc2dev(tdc), "unable to start DMA, no descriptor\n");
363 		return;
364 	}
365 
366 	ch_regs = &desc->ch_regs;
367 
368 	tdc->tx_buf_pos = 0;
369 	tdc->tx_buf_count = 0;
370 	tdma_ch_write(tdc, ADMA_CH_TC, ch_regs->tc);
371 	tdma_ch_write(tdc, ADMA_CH_CTRL, ch_regs->ctrl);
372 	tdma_ch_write(tdc, ADMA_CH_LOWER_SRC_ADDR, ch_regs->src_addr);
373 	tdma_ch_write(tdc, ADMA_CH_LOWER_TRG_ADDR, ch_regs->trg_addr);
374 	tdma_ch_write(tdc, ADMA_CH_FIFO_CTRL, ch_regs->fifo_ctrl);
375 	tdma_ch_write(tdc, ADMA_CH_CONFIG, ch_regs->config);
376 
377 	/* Start ADMA */
378 	tdma_ch_write(tdc, ADMA_CH_CMD, 1);
379 
380 	tdc->desc = desc;
381 }
382 
383 static unsigned int tegra_adma_get_residue(struct tegra_adma_chan *tdc)
384 {
385 	struct tegra_adma_desc *desc = tdc->desc;
386 	unsigned int max = ADMA_CH_XFER_STATUS_COUNT_MASK + 1;
387 	unsigned int pos = tdma_ch_read(tdc, ADMA_CH_XFER_STATUS);
388 	unsigned int periods_remaining;
389 
390 	/*
391 	 * Handle wrap around of buffer count register
392 	 */
393 	if (pos < tdc->tx_buf_pos)
394 		tdc->tx_buf_count += pos + (max - tdc->tx_buf_pos);
395 	else
396 		tdc->tx_buf_count += pos - tdc->tx_buf_pos;
397 
398 	periods_remaining = tdc->tx_buf_count % desc->num_periods;
399 	tdc->tx_buf_pos = pos;
400 
401 	return desc->buf_len - (periods_remaining * desc->period_len);
402 }
403 
404 static irqreturn_t tegra_adma_isr(int irq, void *dev_id)
405 {
406 	struct tegra_adma_chan *tdc = dev_id;
407 	unsigned long status;
408 	unsigned long flags;
409 
410 	spin_lock_irqsave(&tdc->vc.lock, flags);
411 
412 	status = tegra_adma_irq_clear(tdc);
413 	if (status == 0 || !tdc->desc) {
414 		spin_unlock_irqrestore(&tdc->vc.lock, flags);
415 		return IRQ_NONE;
416 	}
417 
418 	vchan_cyclic_callback(&tdc->desc->vd);
419 
420 	spin_unlock_irqrestore(&tdc->vc.lock, flags);
421 
422 	return IRQ_HANDLED;
423 }
424 
425 static void tegra_adma_issue_pending(struct dma_chan *dc)
426 {
427 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
428 	unsigned long flags;
429 
430 	spin_lock_irqsave(&tdc->vc.lock, flags);
431 
432 	if (vchan_issue_pending(&tdc->vc)) {
433 		if (!tdc->desc)
434 			tegra_adma_start(tdc);
435 	}
436 
437 	spin_unlock_irqrestore(&tdc->vc.lock, flags);
438 }
439 
440 static bool tegra_adma_is_paused(struct tegra_adma_chan *tdc)
441 {
442 	u32 csts;
443 
444 	csts = tdma_ch_read(tdc, ADMA_CH_STATUS);
445 	csts &= ADMA_CH_STATUS_XFER_PAUSED;
446 
447 	return csts ? true : false;
448 }
449 
450 static int tegra_adma_pause(struct dma_chan *dc)
451 {
452 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
453 	struct tegra_adma_desc *desc = tdc->desc;
454 	struct tegra_adma_chan_regs *ch_regs = &desc->ch_regs;
455 	int dcnt = 10;
456 
457 	ch_regs->ctrl = tdma_ch_read(tdc, ADMA_CH_CTRL);
458 	ch_regs->ctrl |= (1 << ADMA_CH_CTRL_XFER_PAUSE_SHIFT);
459 	tdma_ch_write(tdc, ADMA_CH_CTRL, ch_regs->ctrl);
460 
461 	while (dcnt-- && !tegra_adma_is_paused(tdc))
462 		udelay(TEGRA_ADMA_BURST_COMPLETE_TIME);
463 
464 	if (dcnt < 0) {
465 		dev_err(tdc2dev(tdc), "unable to pause DMA channel\n");
466 		return -EBUSY;
467 	}
468 
469 	return 0;
470 }
471 
472 static int tegra_adma_resume(struct dma_chan *dc)
473 {
474 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
475 	struct tegra_adma_desc *desc = tdc->desc;
476 	struct tegra_adma_chan_regs *ch_regs = &desc->ch_regs;
477 
478 	ch_regs->ctrl = tdma_ch_read(tdc, ADMA_CH_CTRL);
479 	ch_regs->ctrl &= ~(1 << ADMA_CH_CTRL_XFER_PAUSE_SHIFT);
480 	tdma_ch_write(tdc, ADMA_CH_CTRL, ch_regs->ctrl);
481 
482 	return 0;
483 }
484 
485 static int tegra_adma_terminate_all(struct dma_chan *dc)
486 {
487 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
488 	unsigned long flags;
489 	LIST_HEAD(head);
490 
491 	spin_lock_irqsave(&tdc->vc.lock, flags);
492 
493 	if (tdc->desc)
494 		tegra_adma_stop(tdc);
495 
496 	tegra_adma_request_free(tdc);
497 	vchan_get_all_descriptors(&tdc->vc, &head);
498 	spin_unlock_irqrestore(&tdc->vc.lock, flags);
499 	vchan_dma_desc_free_list(&tdc->vc, &head);
500 
501 	return 0;
502 }
503 
504 static enum dma_status tegra_adma_tx_status(struct dma_chan *dc,
505 					    dma_cookie_t cookie,
506 					    struct dma_tx_state *txstate)
507 {
508 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
509 	struct tegra_adma_desc *desc;
510 	struct virt_dma_desc *vd;
511 	enum dma_status ret;
512 	unsigned long flags;
513 	unsigned int residual;
514 
515 	ret = dma_cookie_status(dc, cookie, txstate);
516 	if (ret == DMA_COMPLETE || !txstate)
517 		return ret;
518 
519 	spin_lock_irqsave(&tdc->vc.lock, flags);
520 
521 	vd = vchan_find_desc(&tdc->vc, cookie);
522 	if (vd) {
523 		desc = to_tegra_adma_desc(&vd->tx);
524 		residual = desc->ch_regs.tc;
525 	} else if (tdc->desc && tdc->desc->vd.tx.cookie == cookie) {
526 		residual = tegra_adma_get_residue(tdc);
527 	} else {
528 		residual = 0;
529 	}
530 
531 	spin_unlock_irqrestore(&tdc->vc.lock, flags);
532 
533 	dma_set_residue(txstate, residual);
534 
535 	return ret;
536 }
537 
538 static unsigned int tegra210_adma_get_burst_config(unsigned int burst_size)
539 {
540 	if (!burst_size || burst_size > ADMA_CH_CONFIG_MAX_BURST_SIZE)
541 		burst_size = ADMA_CH_CONFIG_MAX_BURST_SIZE;
542 
543 	return fls(burst_size) << ADMA_CH_CONFIG_BURST_SIZE_SHIFT;
544 }
545 
546 static unsigned int tegra186_adma_get_burst_config(unsigned int burst_size)
547 {
548 	if (!burst_size || burst_size > ADMA_CH_CONFIG_MAX_BURST_SIZE)
549 		burst_size = ADMA_CH_CONFIG_MAX_BURST_SIZE;
550 
551 	return (burst_size - 1) << ADMA_CH_CONFIG_BURST_SIZE_SHIFT;
552 }
553 
554 static int tegra_adma_set_xfer_params(struct tegra_adma_chan *tdc,
555 				      struct tegra_adma_desc *desc,
556 				      dma_addr_t buf_addr,
557 				      enum dma_transfer_direction direction)
558 {
559 	struct tegra_adma_chan_regs *ch_regs = &desc->ch_regs;
560 	const struct tegra_adma_chip_data *cdata = tdc->tdma->cdata;
561 	unsigned int burst_size, adma_dir;
562 
563 	if (desc->num_periods > ADMA_CH_CONFIG_MAX_BUFS)
564 		return -EINVAL;
565 
566 	switch (direction) {
567 	case DMA_MEM_TO_DEV:
568 		adma_dir = ADMA_CH_CTRL_DIR_MEM2AHUB;
569 		burst_size = tdc->sconfig.dst_maxburst;
570 		ch_regs->config = ADMA_CH_CONFIG_SRC_BUF(desc->num_periods - 1);
571 		ch_regs->ctrl = ADMA_CH_REG_FIELD_VAL(tdc->sreq_index,
572 						      cdata->ch_req_mask,
573 						      cdata->ch_req_tx_shift);
574 		ch_regs->src_addr = buf_addr;
575 		break;
576 
577 	case DMA_DEV_TO_MEM:
578 		adma_dir = ADMA_CH_CTRL_DIR_AHUB2MEM;
579 		burst_size = tdc->sconfig.src_maxburst;
580 		ch_regs->config = ADMA_CH_CONFIG_TRG_BUF(desc->num_periods - 1);
581 		ch_regs->ctrl = ADMA_CH_REG_FIELD_VAL(tdc->sreq_index,
582 						      cdata->ch_req_mask,
583 						      cdata->ch_req_rx_shift);
584 		ch_regs->trg_addr = buf_addr;
585 		break;
586 
587 	default:
588 		dev_err(tdc2dev(tdc), "DMA direction is not supported\n");
589 		return -EINVAL;
590 	}
591 
592 	ch_regs->ctrl |= ADMA_CH_CTRL_DIR(adma_dir) |
593 			 ADMA_CH_CTRL_MODE_CONTINUOUS |
594 			 ADMA_CH_CTRL_FLOWCTRL_EN;
595 	ch_regs->config |= cdata->adma_get_burst_config(burst_size);
596 	ch_regs->config |= ADMA_CH_CONFIG_WEIGHT_FOR_WRR(1);
597 	ch_regs->fifo_ctrl = cdata->ch_fifo_ctrl;
598 	ch_regs->tc = desc->period_len & ADMA_CH_TC_COUNT_MASK;
599 
600 	return tegra_adma_request_alloc(tdc, direction);
601 }
602 
603 static struct dma_async_tx_descriptor *tegra_adma_prep_dma_cyclic(
604 	struct dma_chan *dc, dma_addr_t buf_addr, size_t buf_len,
605 	size_t period_len, enum dma_transfer_direction direction,
606 	unsigned long flags)
607 {
608 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
609 	struct tegra_adma_desc *desc = NULL;
610 
611 	if (!buf_len || !period_len || period_len > ADMA_CH_TC_COUNT_MASK) {
612 		dev_err(tdc2dev(tdc), "invalid buffer/period len\n");
613 		return NULL;
614 	}
615 
616 	if (buf_len % period_len) {
617 		dev_err(tdc2dev(tdc), "buf_len not a multiple of period_len\n");
618 		return NULL;
619 	}
620 
621 	if (!IS_ALIGNED(buf_addr, 4)) {
622 		dev_err(tdc2dev(tdc), "invalid buffer alignment\n");
623 		return NULL;
624 	}
625 
626 	desc = kzalloc(sizeof(*desc), GFP_NOWAIT);
627 	if (!desc)
628 		return NULL;
629 
630 	desc->buf_len = buf_len;
631 	desc->period_len = period_len;
632 	desc->num_periods = buf_len / period_len;
633 
634 	if (tegra_adma_set_xfer_params(tdc, desc, buf_addr, direction)) {
635 		kfree(desc);
636 		return NULL;
637 	}
638 
639 	return vchan_tx_prep(&tdc->vc, &desc->vd, flags);
640 }
641 
642 static int tegra_adma_alloc_chan_resources(struct dma_chan *dc)
643 {
644 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
645 	int ret;
646 
647 	ret = request_irq(tdc->irq, tegra_adma_isr, 0, dma_chan_name(dc), tdc);
648 	if (ret) {
649 		dev_err(tdc2dev(tdc), "failed to get interrupt for %s\n",
650 			dma_chan_name(dc));
651 		return ret;
652 	}
653 
654 	ret = pm_runtime_get_sync(tdc2dev(tdc));
655 	if (ret < 0) {
656 		free_irq(tdc->irq, tdc);
657 		return ret;
658 	}
659 
660 	dma_cookie_init(&tdc->vc.chan);
661 
662 	return 0;
663 }
664 
665 static void tegra_adma_free_chan_resources(struct dma_chan *dc)
666 {
667 	struct tegra_adma_chan *tdc = to_tegra_adma_chan(dc);
668 
669 	tegra_adma_terminate_all(dc);
670 	vchan_free_chan_resources(&tdc->vc);
671 	tasklet_kill(&tdc->vc.task);
672 	free_irq(tdc->irq, tdc);
673 	pm_runtime_put(tdc2dev(tdc));
674 
675 	tdc->sreq_index = 0;
676 	tdc->sreq_dir = DMA_TRANS_NONE;
677 }
678 
679 static struct dma_chan *tegra_dma_of_xlate(struct of_phandle_args *dma_spec,
680 					   struct of_dma *ofdma)
681 {
682 	struct tegra_adma *tdma = ofdma->of_dma_data;
683 	struct tegra_adma_chan *tdc;
684 	struct dma_chan *chan;
685 	unsigned int sreq_index;
686 
687 	if (dma_spec->args_count != 1)
688 		return NULL;
689 
690 	sreq_index = dma_spec->args[0];
691 
692 	if (sreq_index == 0) {
693 		dev_err(tdma->dev, "DMA request must not be 0\n");
694 		return NULL;
695 	}
696 
697 	chan = dma_get_any_slave_channel(&tdma->dma_dev);
698 	if (!chan)
699 		return NULL;
700 
701 	tdc = to_tegra_adma_chan(chan);
702 	tdc->sreq_index = sreq_index;
703 
704 	return chan;
705 }
706 
707 static int __maybe_unused tegra_adma_runtime_suspend(struct device *dev)
708 {
709 	struct tegra_adma *tdma = dev_get_drvdata(dev);
710 	struct tegra_adma_chan_regs *ch_reg;
711 	struct tegra_adma_chan *tdc;
712 	int i;
713 
714 	tdma->global_cmd = tdma_read(tdma, ADMA_GLOBAL_CMD);
715 	if (!tdma->global_cmd)
716 		goto clk_disable;
717 
718 	for (i = 0; i < tdma->nr_channels; i++) {
719 		tdc = &tdma->channels[i];
720 		ch_reg = &tdc->ch_regs;
721 		ch_reg->cmd = tdma_ch_read(tdc, ADMA_CH_CMD);
722 		/* skip if channel is not active */
723 		if (!ch_reg->cmd)
724 			continue;
725 		ch_reg->tc = tdma_ch_read(tdc, ADMA_CH_TC);
726 		ch_reg->src_addr = tdma_ch_read(tdc, ADMA_CH_LOWER_SRC_ADDR);
727 		ch_reg->trg_addr = tdma_ch_read(tdc, ADMA_CH_LOWER_TRG_ADDR);
728 		ch_reg->ctrl = tdma_ch_read(tdc, ADMA_CH_CTRL);
729 		ch_reg->fifo_ctrl = tdma_ch_read(tdc, ADMA_CH_FIFO_CTRL);
730 		ch_reg->config = tdma_ch_read(tdc, ADMA_CH_CONFIG);
731 	}
732 
733 clk_disable:
734 	clk_disable_unprepare(tdma->ahub_clk);
735 
736 	return 0;
737 }
738 
739 static int __maybe_unused tegra_adma_runtime_resume(struct device *dev)
740 {
741 	struct tegra_adma *tdma = dev_get_drvdata(dev);
742 	struct tegra_adma_chan_regs *ch_reg;
743 	struct tegra_adma_chan *tdc;
744 	int ret, i;
745 
746 	ret = clk_prepare_enable(tdma->ahub_clk);
747 	if (ret) {
748 		dev_err(dev, "ahub clk_enable failed: %d\n", ret);
749 		return ret;
750 	}
751 	tdma_write(tdma, ADMA_GLOBAL_CMD, tdma->global_cmd);
752 
753 	if (!tdma->global_cmd)
754 		return 0;
755 
756 	for (i = 0; i < tdma->nr_channels; i++) {
757 		tdc = &tdma->channels[i];
758 		ch_reg = &tdc->ch_regs;
759 		/* skip if channel was not active earlier */
760 		if (!ch_reg->cmd)
761 			continue;
762 		tdma_ch_write(tdc, ADMA_CH_TC, ch_reg->tc);
763 		tdma_ch_write(tdc, ADMA_CH_LOWER_SRC_ADDR, ch_reg->src_addr);
764 		tdma_ch_write(tdc, ADMA_CH_LOWER_TRG_ADDR, ch_reg->trg_addr);
765 		tdma_ch_write(tdc, ADMA_CH_CTRL, ch_reg->ctrl);
766 		tdma_ch_write(tdc, ADMA_CH_FIFO_CTRL, ch_reg->fifo_ctrl);
767 		tdma_ch_write(tdc, ADMA_CH_CONFIG, ch_reg->config);
768 		tdma_ch_write(tdc, ADMA_CH_CMD, ch_reg->cmd);
769 	}
770 
771 	return 0;
772 }
773 
774 static const struct tegra_adma_chip_data tegra210_chip_data = {
775 	.adma_get_burst_config  = tegra210_adma_get_burst_config,
776 	.global_reg_offset	= 0xc00,
777 	.global_int_clear	= 0x20,
778 	.ch_req_tx_shift	= 28,
779 	.ch_req_rx_shift	= 24,
780 	.ch_base_offset		= 0,
781 	.ch_fifo_ctrl		= TEGRA210_FIFO_CTRL_DEFAULT,
782 	.ch_req_mask		= 0xf,
783 	.ch_req_max		= 10,
784 	.ch_reg_size		= 0x80,
785 	.nr_channels		= 22,
786 };
787 
788 static const struct tegra_adma_chip_data tegra186_chip_data = {
789 	.adma_get_burst_config  = tegra186_adma_get_burst_config,
790 	.global_reg_offset	= 0,
791 	.global_int_clear	= 0x402c,
792 	.ch_req_tx_shift	= 27,
793 	.ch_req_rx_shift	= 22,
794 	.ch_base_offset		= 0x10000,
795 	.ch_fifo_ctrl		= TEGRA186_FIFO_CTRL_DEFAULT,
796 	.ch_req_mask		= 0x1f,
797 	.ch_req_max		= 20,
798 	.ch_reg_size		= 0x100,
799 	.nr_channels		= 32,
800 };
801 
802 static const struct of_device_id tegra_adma_of_match[] = {
803 	{ .compatible = "nvidia,tegra210-adma", .data = &tegra210_chip_data },
804 	{ .compatible = "nvidia,tegra186-adma", .data = &tegra186_chip_data },
805 	{ },
806 };
807 MODULE_DEVICE_TABLE(of, tegra_adma_of_match);
808 
809 static int tegra_adma_probe(struct platform_device *pdev)
810 {
811 	const struct tegra_adma_chip_data *cdata;
812 	struct tegra_adma *tdma;
813 	struct resource	*res;
814 	int ret, i;
815 
816 	cdata = of_device_get_match_data(&pdev->dev);
817 	if (!cdata) {
818 		dev_err(&pdev->dev, "device match data not found\n");
819 		return -ENODEV;
820 	}
821 
822 	tdma = devm_kzalloc(&pdev->dev,
823 			    struct_size(tdma, channels, cdata->nr_channels),
824 			    GFP_KERNEL);
825 	if (!tdma)
826 		return -ENOMEM;
827 
828 	tdma->dev = &pdev->dev;
829 	tdma->cdata = cdata;
830 	tdma->nr_channels = cdata->nr_channels;
831 	platform_set_drvdata(pdev, tdma);
832 
833 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
834 	tdma->base_addr = devm_ioremap_resource(&pdev->dev, res);
835 	if (IS_ERR(tdma->base_addr))
836 		return PTR_ERR(tdma->base_addr);
837 
838 	tdma->ahub_clk = devm_clk_get(&pdev->dev, "d_audio");
839 	if (IS_ERR(tdma->ahub_clk)) {
840 		dev_err(&pdev->dev, "Error: Missing ahub controller clock\n");
841 		return PTR_ERR(tdma->ahub_clk);
842 	}
843 
844 	INIT_LIST_HEAD(&tdma->dma_dev.channels);
845 	for (i = 0; i < tdma->nr_channels; i++) {
846 		struct tegra_adma_chan *tdc = &tdma->channels[i];
847 
848 		tdc->chan_addr = tdma->base_addr + cdata->ch_base_offset
849 				 + (cdata->ch_reg_size * i);
850 
851 		tdc->irq = of_irq_get(pdev->dev.of_node, i);
852 		if (tdc->irq <= 0) {
853 			ret = tdc->irq ?: -ENXIO;
854 			goto irq_dispose;
855 		}
856 
857 		vchan_init(&tdc->vc, &tdma->dma_dev);
858 		tdc->vc.desc_free = tegra_adma_desc_free;
859 		tdc->tdma = tdma;
860 	}
861 
862 	pm_runtime_enable(&pdev->dev);
863 
864 	ret = pm_runtime_get_sync(&pdev->dev);
865 	if (ret < 0)
866 		goto rpm_disable;
867 
868 	ret = tegra_adma_init(tdma);
869 	if (ret)
870 		goto rpm_put;
871 
872 	dma_cap_set(DMA_SLAVE, tdma->dma_dev.cap_mask);
873 	dma_cap_set(DMA_PRIVATE, tdma->dma_dev.cap_mask);
874 	dma_cap_set(DMA_CYCLIC, tdma->dma_dev.cap_mask);
875 
876 	tdma->dma_dev.dev = &pdev->dev;
877 	tdma->dma_dev.device_alloc_chan_resources =
878 					tegra_adma_alloc_chan_resources;
879 	tdma->dma_dev.device_free_chan_resources =
880 					tegra_adma_free_chan_resources;
881 	tdma->dma_dev.device_issue_pending = tegra_adma_issue_pending;
882 	tdma->dma_dev.device_prep_dma_cyclic = tegra_adma_prep_dma_cyclic;
883 	tdma->dma_dev.device_config = tegra_adma_slave_config;
884 	tdma->dma_dev.device_tx_status = tegra_adma_tx_status;
885 	tdma->dma_dev.device_terminate_all = tegra_adma_terminate_all;
886 	tdma->dma_dev.src_addr_widths = BIT(DMA_SLAVE_BUSWIDTH_4_BYTES);
887 	tdma->dma_dev.dst_addr_widths = BIT(DMA_SLAVE_BUSWIDTH_4_BYTES);
888 	tdma->dma_dev.directions = BIT(DMA_DEV_TO_MEM) | BIT(DMA_MEM_TO_DEV);
889 	tdma->dma_dev.residue_granularity = DMA_RESIDUE_GRANULARITY_SEGMENT;
890 	tdma->dma_dev.device_pause = tegra_adma_pause;
891 	tdma->dma_dev.device_resume = tegra_adma_resume;
892 
893 	ret = dma_async_device_register(&tdma->dma_dev);
894 	if (ret < 0) {
895 		dev_err(&pdev->dev, "ADMA registration failed: %d\n", ret);
896 		goto irq_dispose;
897 	}
898 
899 	ret = of_dma_controller_register(pdev->dev.of_node,
900 					 tegra_dma_of_xlate, tdma);
901 	if (ret < 0) {
902 		dev_err(&pdev->dev, "ADMA OF registration failed %d\n", ret);
903 		goto dma_remove;
904 	}
905 
906 	pm_runtime_put(&pdev->dev);
907 
908 	dev_info(&pdev->dev, "Tegra210 ADMA driver registered %d channels\n",
909 		 tdma->nr_channels);
910 
911 	return 0;
912 
913 dma_remove:
914 	dma_async_device_unregister(&tdma->dma_dev);
915 rpm_put:
916 	pm_runtime_put_sync(&pdev->dev);
917 rpm_disable:
918 	pm_runtime_disable(&pdev->dev);
919 irq_dispose:
920 	while (--i >= 0)
921 		irq_dispose_mapping(tdma->channels[i].irq);
922 
923 	return ret;
924 }
925 
926 static int tegra_adma_remove(struct platform_device *pdev)
927 {
928 	struct tegra_adma *tdma = platform_get_drvdata(pdev);
929 	int i;
930 
931 	of_dma_controller_free(pdev->dev.of_node);
932 	dma_async_device_unregister(&tdma->dma_dev);
933 
934 	for (i = 0; i < tdma->nr_channels; ++i)
935 		irq_dispose_mapping(tdma->channels[i].irq);
936 
937 	pm_runtime_put_sync(&pdev->dev);
938 	pm_runtime_disable(&pdev->dev);
939 
940 	return 0;
941 }
942 
943 static const struct dev_pm_ops tegra_adma_dev_pm_ops = {
944 	SET_RUNTIME_PM_OPS(tegra_adma_runtime_suspend,
945 			   tegra_adma_runtime_resume, NULL)
946 	SET_LATE_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
947 				     pm_runtime_force_resume)
948 };
949 
950 static struct platform_driver tegra_admac_driver = {
951 	.driver = {
952 		.name	= "tegra-adma",
953 		.pm	= &tegra_adma_dev_pm_ops,
954 		.of_match_table = tegra_adma_of_match,
955 	},
956 	.probe		= tegra_adma_probe,
957 	.remove		= tegra_adma_remove,
958 };
959 
960 module_platform_driver(tegra_admac_driver);
961 
962 MODULE_ALIAS("platform:tegra210-adma");
963 MODULE_DESCRIPTION("NVIDIA Tegra ADMA driver");
964 MODULE_AUTHOR("Dara Ramesh <dramesh@nvidia.com>");
965 MODULE_AUTHOR("Jon Hunter <jonathanh@nvidia.com>");
966 MODULE_LICENSE("GPL v2");
967