blob: 9500720e4af4f30473637fe630746ea1816d3f10 [file] [log] [blame]
Matt Porterc2dde5f2012-08-22 21:09:34 -04001/*
2 * TI EDMA DMA engine driver
3 *
4 * Copyright 2012 Texas Instruments
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License as
8 * published by the Free Software Foundation version 2.
9 *
10 * This program is distributed "as is" WITHOUT ANY WARRANTY of any
11 * kind, whether express or implied; without even the implied warranty
12 * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 */
15
16#include <linux/dmaengine.h>
17#include <linux/dma-mapping.h>
18#include <linux/err.h>
19#include <linux/init.h>
20#include <linux/interrupt.h>
21#include <linux/list.h>
22#include <linux/module.h>
23#include <linux/platform_device.h>
24#include <linux/slab.h>
25#include <linux/spinlock.h>
26
Matt Porter3ad7a422013-03-06 11:15:31 -050027#include <linux/platform_data/edma.h>
Matt Porterc2dde5f2012-08-22 21:09:34 -040028
29#include "dmaengine.h"
30#include "virt-dma.h"
31
32/*
33 * This will go away when the private EDMA API is folded
34 * into this driver and the platform device(s) are
35 * instantiated in the arch code. We can only get away
36 * with this simplification because DA8XX may not be built
37 * in the same kernel image with other DaVinci parts. This
38 * avoids having to sprinkle dmaengine driver platform devices
39 * and data throughout all the existing board files.
40 */
41#ifdef CONFIG_ARCH_DAVINCI_DA8XX
42#define EDMA_CTLRS 2
43#define EDMA_CHANS 32
44#else
45#define EDMA_CTLRS 1
46#define EDMA_CHANS 64
47#endif /* CONFIG_ARCH_DAVINCI_DA8XX */
48
49/* Max of 16 segments per channel to conserve PaRAM slots */
50#define MAX_NR_SG 16
51#define EDMA_MAX_SLOTS MAX_NR_SG
52#define EDMA_DESCRIPTORS 16
53
54struct edma_desc {
55 struct virt_dma_desc vdesc;
56 struct list_head node;
57 int absync;
58 int pset_nr;
Joel Fernandes53407062013-09-03 10:02:46 -050059 int processed;
Matt Porterc2dde5f2012-08-22 21:09:34 -040060 struct edmacc_param pset[0];
61};
62
63struct edma_cc;
64
65struct edma_chan {
66 struct virt_dma_chan vchan;
67 struct list_head node;
68 struct edma_desc *edesc;
69 struct edma_cc *ecc;
70 int ch_num;
71 bool alloced;
72 int slot[EDMA_MAX_SLOTS];
Joel Fernandesc5f47992013-08-29 18:05:43 -050073 int missed;
Matt Porter661f7cb2013-01-10 13:41:04 -050074 struct dma_slave_config cfg;
Matt Porterc2dde5f2012-08-22 21:09:34 -040075};
76
77struct edma_cc {
78 int ctlr;
79 struct dma_device dma_slave;
80 struct edma_chan slave_chans[EDMA_CHANS];
81 int num_slave_chans;
82 int dummy_slot;
83};
84
85static inline struct edma_cc *to_edma_cc(struct dma_device *d)
86{
87 return container_of(d, struct edma_cc, dma_slave);
88}
89
90static inline struct edma_chan *to_edma_chan(struct dma_chan *c)
91{
92 return container_of(c, struct edma_chan, vchan.chan);
93}
94
95static inline struct edma_desc
96*to_edma_desc(struct dma_async_tx_descriptor *tx)
97{
98 return container_of(tx, struct edma_desc, vdesc.tx);
99}
100
101static void edma_desc_free(struct virt_dma_desc *vdesc)
102{
103 kfree(container_of(vdesc, struct edma_desc, vdesc));
104}
105
106/* Dispatch a queued descriptor to the controller (caller holds lock) */
107static void edma_execute(struct edma_chan *echan)
108{
Joel Fernandes53407062013-09-03 10:02:46 -0500109 struct virt_dma_desc *vdesc;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400110 struct edma_desc *edesc;
Joel Fernandes53407062013-09-03 10:02:46 -0500111 struct device *dev = echan->vchan.chan.device->dev;
112 int i, j, left, nslots;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400113
Joel Fernandes53407062013-09-03 10:02:46 -0500114 /* If either we processed all psets or we're still not started */
115 if (!echan->edesc ||
116 echan->edesc->pset_nr == echan->edesc->processed) {
117 /* Get next vdesc */
118 vdesc = vchan_next_desc(&echan->vchan);
119 if (!vdesc) {
120 echan->edesc = NULL;
121 return;
122 }
123 list_del(&vdesc->node);
124 echan->edesc = to_edma_desc(&vdesc->tx);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400125 }
126
Joel Fernandes53407062013-09-03 10:02:46 -0500127 edesc = echan->edesc;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400128
Joel Fernandes53407062013-09-03 10:02:46 -0500129 /* Find out how many left */
130 left = edesc->pset_nr - edesc->processed;
131 nslots = min(MAX_NR_SG, left);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400132
133 /* Write descriptor PaRAM set(s) */
Joel Fernandes53407062013-09-03 10:02:46 -0500134 for (i = 0; i < nslots; i++) {
135 j = i + edesc->processed;
136 edma_write_slot(echan->slot[i], &edesc->pset[j]);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400137 dev_dbg(echan->vchan.chan.device->dev,
138 "\n pset[%d]:\n"
139 " chnum\t%d\n"
140 " slot\t%d\n"
141 " opt\t%08x\n"
142 " src\t%08x\n"
143 " dst\t%08x\n"
144 " abcnt\t%08x\n"
145 " ccnt\t%08x\n"
146 " bidx\t%08x\n"
147 " cidx\t%08x\n"
148 " lkrld\t%08x\n",
Joel Fernandes53407062013-09-03 10:02:46 -0500149 j, echan->ch_num, echan->slot[i],
150 edesc->pset[j].opt,
151 edesc->pset[j].src,
152 edesc->pset[j].dst,
153 edesc->pset[j].a_b_cnt,
154 edesc->pset[j].ccnt,
155 edesc->pset[j].src_dst_bidx,
156 edesc->pset[j].src_dst_cidx,
157 edesc->pset[j].link_bcntrld);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400158 /* Link to the previous slot if not the last set */
Joel Fernandes53407062013-09-03 10:02:46 -0500159 if (i != (nslots - 1))
Matt Porterc2dde5f2012-08-22 21:09:34 -0400160 edma_link(echan->slot[i], echan->slot[i+1]);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400161 }
162
Joel Fernandes53407062013-09-03 10:02:46 -0500163 edesc->processed += nslots;
164
Joel Fernandesb267b3b2013-08-29 18:05:44 -0500165 /*
166 * If this is either the last set in a set of SG-list transactions
167 * then setup a link to the dummy slot, this results in all future
168 * events being absorbed and that's OK because we're done
169 */
170 if (edesc->processed == edesc->pset_nr)
171 edma_link(echan->slot[nslots-1], echan->ecc->dummy_slot);
172
Joel Fernandes53407062013-09-03 10:02:46 -0500173 edma_resume(echan->ch_num);
174
175 if (edesc->processed <= MAX_NR_SG) {
176 dev_dbg(dev, "first transfer starting %d\n", echan->ch_num);
177 edma_start(echan->ch_num);
178 }
Joel Fernandesc5f47992013-08-29 18:05:43 -0500179
180 /*
181 * This happens due to setup times between intermediate transfers
182 * in long SG lists which have to be broken up into transfers of
183 * MAX_NR_SG
184 */
185 if (echan->missed) {
186 dev_dbg(dev, "missed event in execute detected\n");
187 edma_clean_channel(echan->ch_num);
188 edma_stop(echan->ch_num);
189 edma_start(echan->ch_num);
190 edma_trigger_channel(echan->ch_num);
191 echan->missed = 0;
192 }
Matt Porterc2dde5f2012-08-22 21:09:34 -0400193}
194
195static int edma_terminate_all(struct edma_chan *echan)
196{
197 unsigned long flags;
198 LIST_HEAD(head);
199
200 spin_lock_irqsave(&echan->vchan.lock, flags);
201
202 /*
203 * Stop DMA activity: we assume the callback will not be called
204 * after edma_dma() returns (even if it does, it will see
205 * echan->edesc is NULL and exit.)
206 */
207 if (echan->edesc) {
208 echan->edesc = NULL;
209 edma_stop(echan->ch_num);
210 }
211
212 vchan_get_all_descriptors(&echan->vchan, &head);
213 spin_unlock_irqrestore(&echan->vchan.lock, flags);
214 vchan_dma_desc_free_list(&echan->vchan, &head);
215
216 return 0;
217}
218
Matt Porterc2dde5f2012-08-22 21:09:34 -0400219static int edma_slave_config(struct edma_chan *echan,
Matt Porter661f7cb2013-01-10 13:41:04 -0500220 struct dma_slave_config *cfg)
Matt Porterc2dde5f2012-08-22 21:09:34 -0400221{
Matt Porter661f7cb2013-01-10 13:41:04 -0500222 if (cfg->src_addr_width == DMA_SLAVE_BUSWIDTH_8_BYTES ||
223 cfg->dst_addr_width == DMA_SLAVE_BUSWIDTH_8_BYTES)
Matt Porterc2dde5f2012-08-22 21:09:34 -0400224 return -EINVAL;
225
Matt Porter661f7cb2013-01-10 13:41:04 -0500226 memcpy(&echan->cfg, cfg, sizeof(echan->cfg));
Matt Porterc2dde5f2012-08-22 21:09:34 -0400227
228 return 0;
229}
230
231static int edma_control(struct dma_chan *chan, enum dma_ctrl_cmd cmd,
232 unsigned long arg)
233{
234 int ret = 0;
235 struct dma_slave_config *config;
236 struct edma_chan *echan = to_edma_chan(chan);
237
238 switch (cmd) {
239 case DMA_TERMINATE_ALL:
240 edma_terminate_all(echan);
241 break;
242 case DMA_SLAVE_CONFIG:
243 config = (struct dma_slave_config *)arg;
244 ret = edma_slave_config(echan, config);
245 break;
246 default:
247 ret = -ENOSYS;
248 }
249
250 return ret;
251}
252
253static struct dma_async_tx_descriptor *edma_prep_slave_sg(
254 struct dma_chan *chan, struct scatterlist *sgl,
255 unsigned int sg_len, enum dma_transfer_direction direction,
256 unsigned long tx_flags, void *context)
257{
258 struct edma_chan *echan = to_edma_chan(chan);
259 struct device *dev = chan->device->dev;
260 struct edma_desc *edesc;
Matt Porter661f7cb2013-01-10 13:41:04 -0500261 dma_addr_t dev_addr;
262 enum dma_slave_buswidth dev_width;
263 u32 burst;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400264 struct scatterlist *sg;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400265 int acnt, bcnt, ccnt, src, dst, cidx;
266 int src_bidx, dst_bidx, src_cidx, dst_cidx;
Joel Fernandes6fbe24d2013-08-29 18:05:40 -0500267 int i, nslots;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400268
269 if (unlikely(!echan || !sgl || !sg_len))
270 return NULL;
271
Matt Porter661f7cb2013-01-10 13:41:04 -0500272 if (direction == DMA_DEV_TO_MEM) {
273 dev_addr = echan->cfg.src_addr;
274 dev_width = echan->cfg.src_addr_width;
275 burst = echan->cfg.src_maxburst;
276 } else if (direction == DMA_MEM_TO_DEV) {
277 dev_addr = echan->cfg.dst_addr;
278 dev_width = echan->cfg.dst_addr_width;
279 burst = echan->cfg.dst_maxburst;
280 } else {
281 dev_err(dev, "%s: bad direction?\n", __func__);
282 return NULL;
283 }
284
285 if (dev_width == DMA_SLAVE_BUSWIDTH_UNDEFINED) {
Matt Porterc2dde5f2012-08-22 21:09:34 -0400286 dev_err(dev, "Undefined slave buswidth\n");
287 return NULL;
288 }
289
290 if (sg_len > MAX_NR_SG) {
291 dev_err(dev, "Exceeded max SG segments %d > %d\n",
292 sg_len, MAX_NR_SG);
293 return NULL;
294 }
295
296 edesc = kzalloc(sizeof(*edesc) + sg_len *
297 sizeof(edesc->pset[0]), GFP_ATOMIC);
298 if (!edesc) {
299 dev_dbg(dev, "Failed to allocate a descriptor\n");
300 return NULL;
301 }
302
303 edesc->pset_nr = sg_len;
304
Joel Fernandes6fbe24d2013-08-29 18:05:40 -0500305 /* Allocate a PaRAM slot, if needed */
306 nslots = min_t(unsigned, MAX_NR_SG, sg_len);
307
308 for (i = 0; i < nslots; i++) {
Matt Porterc2dde5f2012-08-22 21:09:34 -0400309 if (echan->slot[i] < 0) {
310 echan->slot[i] =
311 edma_alloc_slot(EDMA_CTLR(echan->ch_num),
312 EDMA_SLOT_ANY);
313 if (echan->slot[i] < 0) {
314 dev_err(dev, "Failed to allocate slot\n");
315 return NULL;
316 }
317 }
Joel Fernandes6fbe24d2013-08-29 18:05:40 -0500318 }
319
320 /* Configure PaRAM sets for each SG */
321 for_each_sg(sgl, sg, sg_len, i) {
Matt Porterc2dde5f2012-08-22 21:09:34 -0400322
Matt Porter661f7cb2013-01-10 13:41:04 -0500323 acnt = dev_width;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400324
325 /*
326 * If the maxburst is equal to the fifo width, use
327 * A-synced transfers. This allows for large contiguous
328 * buffer transfers using only one PaRAM set.
329 */
Matt Porter661f7cb2013-01-10 13:41:04 -0500330 if (burst == 1) {
Matt Porterc2dde5f2012-08-22 21:09:34 -0400331 edesc->absync = false;
332 ccnt = sg_dma_len(sg) / acnt / (SZ_64K - 1);
333 bcnt = sg_dma_len(sg) / acnt - ccnt * (SZ_64K - 1);
334 if (bcnt)
335 ccnt++;
336 else
337 bcnt = SZ_64K - 1;
338 cidx = acnt;
339 /*
340 * If maxburst is greater than the fifo address_width,
341 * use AB-synced transfers where A count is the fifo
342 * address_width and B count is the maxburst. In this
343 * case, we are limited to transfers of C count frames
344 * of (address_width * maxburst) where C count is limited
345 * to SZ_64K-1. This places an upper bound on the length
346 * of an SG segment that can be handled.
347 */
348 } else {
349 edesc->absync = true;
Matt Porter661f7cb2013-01-10 13:41:04 -0500350 bcnt = burst;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400351 ccnt = sg_dma_len(sg) / (acnt * bcnt);
352 if (ccnt > (SZ_64K - 1)) {
353 dev_err(dev, "Exceeded max SG segment size\n");
354 return NULL;
355 }
356 cidx = acnt * bcnt;
357 }
358
359 if (direction == DMA_MEM_TO_DEV) {
360 src = sg_dma_address(sg);
Matt Porter661f7cb2013-01-10 13:41:04 -0500361 dst = dev_addr;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400362 src_bidx = acnt;
363 src_cidx = cidx;
364 dst_bidx = 0;
365 dst_cidx = 0;
366 } else {
Matt Porter661f7cb2013-01-10 13:41:04 -0500367 src = dev_addr;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400368 dst = sg_dma_address(sg);
369 src_bidx = 0;
370 src_cidx = 0;
371 dst_bidx = acnt;
372 dst_cidx = cidx;
373 }
374
375 edesc->pset[i].opt = EDMA_TCC(EDMA_CHAN_SLOT(echan->ch_num));
376 /* Configure A or AB synchronized transfers */
377 if (edesc->absync)
378 edesc->pset[i].opt |= SYNCDIM;
Joel Fernandes6fbe24d2013-08-29 18:05:40 -0500379
380 /* If this is the last in a current SG set of transactions,
381 enable interrupts so that next set is processed */
382 if (!((i+1) % MAX_NR_SG))
383 edesc->pset[i].opt |= TCINTEN;
384
Matt Porterc2dde5f2012-08-22 21:09:34 -0400385 /* If this is the last set, enable completion interrupt flag */
386 if (i == sg_len - 1)
387 edesc->pset[i].opt |= TCINTEN;
388
389 edesc->pset[i].src = src;
390 edesc->pset[i].dst = dst;
391
392 edesc->pset[i].src_dst_bidx = (dst_bidx << 16) | src_bidx;
393 edesc->pset[i].src_dst_cidx = (dst_cidx << 16) | src_cidx;
394
395 edesc->pset[i].a_b_cnt = bcnt << 16 | acnt;
396 edesc->pset[i].ccnt = ccnt;
397 edesc->pset[i].link_bcntrld = 0xffffffff;
398
399 }
400
401 return vchan_tx_prep(&echan->vchan, &edesc->vdesc, tx_flags);
402}
403
404static void edma_callback(unsigned ch_num, u16 ch_status, void *data)
405{
406 struct edma_chan *echan = data;
407 struct device *dev = echan->vchan.chan.device->dev;
408 struct edma_desc *edesc;
409 unsigned long flags;
Joel Fernandesc5f47992013-08-29 18:05:43 -0500410 struct edmacc_param p;
Matt Porterc2dde5f2012-08-22 21:09:34 -0400411
Joel Fernandes53407062013-09-03 10:02:46 -0500412 /* Pause the channel */
413 edma_pause(echan->ch_num);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400414
415 switch (ch_status) {
416 case DMA_COMPLETE:
Matt Porterc2dde5f2012-08-22 21:09:34 -0400417 spin_lock_irqsave(&echan->vchan.lock, flags);
418
419 edesc = echan->edesc;
420 if (edesc) {
Joel Fernandes53407062013-09-03 10:02:46 -0500421 if (edesc->processed == edesc->pset_nr) {
422 dev_dbg(dev, "Transfer complete, stopping channel %d\n", ch_num);
423 edma_stop(echan->ch_num);
424 vchan_cookie_complete(&edesc->vdesc);
425 } else {
426 dev_dbg(dev, "Intermediate transfer complete on channel %d\n", ch_num);
427 }
428
Matt Porterc2dde5f2012-08-22 21:09:34 -0400429 edma_execute(echan);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400430 }
431
432 spin_unlock_irqrestore(&echan->vchan.lock, flags);
433
434 break;
435 case DMA_CC_ERROR:
Joel Fernandesc5f47992013-08-29 18:05:43 -0500436 spin_lock_irqsave(&echan->vchan.lock, flags);
437
438 edma_read_slot(EDMA_CHAN_SLOT(echan->slot[0]), &p);
439
440 /*
441 * Issue later based on missed flag which will be sure
442 * to happen as:
443 * (1) we finished transmitting an intermediate slot and
444 * edma_execute is coming up.
445 * (2) or we finished current transfer and issue will
446 * call edma_execute.
447 *
448 * Important note: issuing can be dangerous here and
449 * lead to some nasty recursion when we are in a NULL
450 * slot. So we avoid doing so and set the missed flag.
451 */
452 if (p.a_b_cnt == 0 && p.ccnt == 0) {
453 dev_dbg(dev, "Error occurred, looks like slot is null, just setting miss\n");
454 echan->missed = 1;
455 } else {
456 /*
457 * The slot is already programmed but the event got
458 * missed, so its safe to issue it here.
459 */
460 dev_dbg(dev, "Error occurred but slot is non-null, TRIGGERING\n");
461 edma_clean_channel(echan->ch_num);
462 edma_stop(echan->ch_num);
463 edma_start(echan->ch_num);
464 edma_trigger_channel(echan->ch_num);
465 }
466
467 spin_unlock_irqrestore(&echan->vchan.lock, flags);
468
Matt Porterc2dde5f2012-08-22 21:09:34 -0400469 break;
470 default:
471 break;
472 }
473}
474
475/* Alloc channel resources */
476static int edma_alloc_chan_resources(struct dma_chan *chan)
477{
478 struct edma_chan *echan = to_edma_chan(chan);
479 struct device *dev = chan->device->dev;
480 int ret;
481 int a_ch_num;
482 LIST_HEAD(descs);
483
484 a_ch_num = edma_alloc_channel(echan->ch_num, edma_callback,
485 chan, EVENTQ_DEFAULT);
486
487 if (a_ch_num < 0) {
488 ret = -ENODEV;
489 goto err_no_chan;
490 }
491
492 if (a_ch_num != echan->ch_num) {
493 dev_err(dev, "failed to allocate requested channel %u:%u\n",
494 EDMA_CTLR(echan->ch_num),
495 EDMA_CHAN_SLOT(echan->ch_num));
496 ret = -ENODEV;
497 goto err_wrong_chan;
498 }
499
500 echan->alloced = true;
501 echan->slot[0] = echan->ch_num;
502
503 dev_info(dev, "allocated channel for %u:%u\n",
504 EDMA_CTLR(echan->ch_num), EDMA_CHAN_SLOT(echan->ch_num));
505
506 return 0;
507
508err_wrong_chan:
509 edma_free_channel(a_ch_num);
510err_no_chan:
511 return ret;
512}
513
514/* Free channel resources */
515static void edma_free_chan_resources(struct dma_chan *chan)
516{
517 struct edma_chan *echan = to_edma_chan(chan);
518 struct device *dev = chan->device->dev;
519 int i;
520
521 /* Terminate transfers */
522 edma_stop(echan->ch_num);
523
524 vchan_free_chan_resources(&echan->vchan);
525
526 /* Free EDMA PaRAM slots */
527 for (i = 1; i < EDMA_MAX_SLOTS; i++) {
528 if (echan->slot[i] >= 0) {
529 edma_free_slot(echan->slot[i]);
530 echan->slot[i] = -1;
531 }
532 }
533
534 /* Free EDMA channel */
535 if (echan->alloced) {
536 edma_free_channel(echan->ch_num);
537 echan->alloced = false;
538 }
539
540 dev_info(dev, "freeing channel for %u\n", echan->ch_num);
541}
542
543/* Send pending descriptor to hardware */
544static void edma_issue_pending(struct dma_chan *chan)
545{
546 struct edma_chan *echan = to_edma_chan(chan);
547 unsigned long flags;
548
549 spin_lock_irqsave(&echan->vchan.lock, flags);
550 if (vchan_issue_pending(&echan->vchan) && !echan->edesc)
551 edma_execute(echan);
552 spin_unlock_irqrestore(&echan->vchan.lock, flags);
553}
554
555static size_t edma_desc_size(struct edma_desc *edesc)
556{
557 int i;
558 size_t size;
559
560 if (edesc->absync)
561 for (size = i = 0; i < edesc->pset_nr; i++)
562 size += (edesc->pset[i].a_b_cnt & 0xffff) *
563 (edesc->pset[i].a_b_cnt >> 16) *
564 edesc->pset[i].ccnt;
565 else
566 size = (edesc->pset[0].a_b_cnt & 0xffff) *
567 (edesc->pset[0].a_b_cnt >> 16) +
568 (edesc->pset[0].a_b_cnt & 0xffff) *
569 (SZ_64K - 1) * edesc->pset[0].ccnt;
570
571 return size;
572}
573
574/* Check request completion status */
575static enum dma_status edma_tx_status(struct dma_chan *chan,
576 dma_cookie_t cookie,
577 struct dma_tx_state *txstate)
578{
579 struct edma_chan *echan = to_edma_chan(chan);
580 struct virt_dma_desc *vdesc;
581 enum dma_status ret;
582 unsigned long flags;
583
584 ret = dma_cookie_status(chan, cookie, txstate);
585 if (ret == DMA_SUCCESS || !txstate)
586 return ret;
587
588 spin_lock_irqsave(&echan->vchan.lock, flags);
589 vdesc = vchan_find_desc(&echan->vchan, cookie);
590 if (vdesc) {
591 txstate->residue = edma_desc_size(to_edma_desc(&vdesc->tx));
592 } else if (echan->edesc && echan->edesc->vdesc.tx.cookie == cookie) {
593 struct edma_desc *edesc = echan->edesc;
594 txstate->residue = edma_desc_size(edesc);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400595 }
596 spin_unlock_irqrestore(&echan->vchan.lock, flags);
597
598 return ret;
599}
600
601static void __init edma_chan_init(struct edma_cc *ecc,
602 struct dma_device *dma,
603 struct edma_chan *echans)
604{
605 int i, j;
606
607 for (i = 0; i < EDMA_CHANS; i++) {
608 struct edma_chan *echan = &echans[i];
609 echan->ch_num = EDMA_CTLR_CHAN(ecc->ctlr, i);
610 echan->ecc = ecc;
611 echan->vchan.desc_free = edma_desc_free;
612
613 vchan_init(&echan->vchan, dma);
614
615 INIT_LIST_HEAD(&echan->node);
616 for (j = 0; j < EDMA_MAX_SLOTS; j++)
617 echan->slot[j] = -1;
618 }
619}
620
621static void edma_dma_init(struct edma_cc *ecc, struct dma_device *dma,
622 struct device *dev)
623{
624 dma->device_prep_slave_sg = edma_prep_slave_sg;
625 dma->device_alloc_chan_resources = edma_alloc_chan_resources;
626 dma->device_free_chan_resources = edma_free_chan_resources;
627 dma->device_issue_pending = edma_issue_pending;
628 dma->device_tx_status = edma_tx_status;
629 dma->device_control = edma_control;
630 dma->dev = dev;
631
632 INIT_LIST_HEAD(&dma->channels);
633}
634
Bill Pemberton463a1f82012-11-19 13:22:55 -0500635static int edma_probe(struct platform_device *pdev)
Matt Porterc2dde5f2012-08-22 21:09:34 -0400636{
637 struct edma_cc *ecc;
638 int ret;
639
640 ecc = devm_kzalloc(&pdev->dev, sizeof(*ecc), GFP_KERNEL);
641 if (!ecc) {
642 dev_err(&pdev->dev, "Can't allocate controller\n");
643 return -ENOMEM;
644 }
645
646 ecc->ctlr = pdev->id;
647 ecc->dummy_slot = edma_alloc_slot(ecc->ctlr, EDMA_SLOT_ANY);
648 if (ecc->dummy_slot < 0) {
649 dev_err(&pdev->dev, "Can't allocate PaRAM dummy slot\n");
650 return -EIO;
651 }
652
653 dma_cap_zero(ecc->dma_slave.cap_mask);
654 dma_cap_set(DMA_SLAVE, ecc->dma_slave.cap_mask);
655
656 edma_dma_init(ecc, &ecc->dma_slave, &pdev->dev);
657
658 edma_chan_init(ecc, &ecc->dma_slave, ecc->slave_chans);
659
660 ret = dma_async_device_register(&ecc->dma_slave);
661 if (ret)
662 goto err_reg1;
663
664 platform_set_drvdata(pdev, ecc);
665
666 dev_info(&pdev->dev, "TI EDMA DMA engine driver\n");
667
668 return 0;
669
670err_reg1:
671 edma_free_slot(ecc->dummy_slot);
672 return ret;
673}
674
Greg Kroah-Hartman4bf27b82012-12-21 15:09:59 -0800675static int edma_remove(struct platform_device *pdev)
Matt Porterc2dde5f2012-08-22 21:09:34 -0400676{
677 struct device *dev = &pdev->dev;
678 struct edma_cc *ecc = dev_get_drvdata(dev);
679
680 dma_async_device_unregister(&ecc->dma_slave);
681 edma_free_slot(ecc->dummy_slot);
682
683 return 0;
684}
685
686static struct platform_driver edma_driver = {
687 .probe = edma_probe,
Bill Pembertona7d6e3e2012-11-19 13:20:04 -0500688 .remove = edma_remove,
Matt Porterc2dde5f2012-08-22 21:09:34 -0400689 .driver = {
690 .name = "edma-dma-engine",
691 .owner = THIS_MODULE,
692 },
693};
694
695bool edma_filter_fn(struct dma_chan *chan, void *param)
696{
697 if (chan->device->dev->driver == &edma_driver.driver) {
698 struct edma_chan *echan = to_edma_chan(chan);
699 unsigned ch_req = *(unsigned *)param;
700 return ch_req == echan->ch_num;
701 }
702 return false;
703}
704EXPORT_SYMBOL(edma_filter_fn);
705
706static struct platform_device *pdev0, *pdev1;
707
708static const struct platform_device_info edma_dev_info0 = {
709 .name = "edma-dma-engine",
710 .id = 0,
Matt Porterc2dde5f2012-08-22 21:09:34 -0400711};
712
713static const struct platform_device_info edma_dev_info1 = {
714 .name = "edma-dma-engine",
715 .id = 1,
Matt Porterc2dde5f2012-08-22 21:09:34 -0400716};
717
718static int edma_init(void)
719{
720 int ret = platform_driver_register(&edma_driver);
721
722 if (ret == 0) {
723 pdev0 = platform_device_register_full(&edma_dev_info0);
724 if (IS_ERR(pdev0)) {
725 platform_driver_unregister(&edma_driver);
726 ret = PTR_ERR(pdev0);
727 goto out;
728 }
Andy Shevchenko373459e2013-02-14 11:00:19 +0200729 pdev0->dev.dma_mask = &pdev0->dev.coherent_dma_mask;
730 pdev0->dev.coherent_dma_mask = DMA_BIT_MASK(32);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400731 }
732
733 if (EDMA_CTLRS == 2) {
734 pdev1 = platform_device_register_full(&edma_dev_info1);
735 if (IS_ERR(pdev1)) {
736 platform_driver_unregister(&edma_driver);
737 platform_device_unregister(pdev0);
738 ret = PTR_ERR(pdev1);
739 }
Andy Shevchenko373459e2013-02-14 11:00:19 +0200740 pdev1->dev.dma_mask = &pdev1->dev.coherent_dma_mask;
741 pdev1->dev.coherent_dma_mask = DMA_BIT_MASK(32);
Matt Porterc2dde5f2012-08-22 21:09:34 -0400742 }
743
744out:
745 return ret;
746}
747subsys_initcall(edma_init);
748
749static void __exit edma_exit(void)
750{
751 platform_device_unregister(pdev0);
752 if (pdev1)
753 platform_device_unregister(pdev1);
754 platform_driver_unregister(&edma_driver);
755}
756module_exit(edma_exit);
757
758MODULE_AUTHOR("Matt Porter <mporter@ti.com>");
759MODULE_DESCRIPTION("TI EDMA DMA engine driver");
760MODULE_LICENSE("GPL v2");