xref: /linux/drivers/dma/pxa_dma.c (revision a10a019dd4c7c57bef6b8dda962c8881ad220af2)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright 2015 Robert Jarzmik <robert.jarzmik@free.fr>
4  */
5 
6 #include <linux/err.h>
7 #include <linux/module.h>
8 #include <linux/init.h>
9 #include <linux/types.h>
10 #include <linux/interrupt.h>
11 #include <linux/dma-mapping.h>
12 #include <linux/slab.h>
13 #include <linux/string_choices.h>
14 #include <linux/dmaengine.h>
15 #include <linux/platform_device.h>
16 #include <linux/device.h>
17 #include <linux/platform_data/mmp_dma.h>
18 #include <linux/dmapool.h>
19 #include <linux/of.h>
20 #include <linux/of_dma.h>
21 #include <linux/wait.h>
22 #include <linux/dma/pxa-dma.h>
23 
24 #include "dmaengine.h"
25 #include "virt-dma.h"
26 
27 #define DCSR(n)		(0x0000 + ((n) << 2))
28 #define DALGN(n)	0x00a0
29 #define DINT		0x00f0
30 #define DDADR(n)	(0x0200 + ((n) << 4))
31 #define DSADR(n)	(0x0204 + ((n) << 4))
32 #define DTADR(n)	(0x0208 + ((n) << 4))
33 #define DCMD(n)		(0x020c + ((n) << 4))
34 
35 #define PXA_DCSR_RUN		BIT(31)	/* Run Bit (read / write) */
36 #define PXA_DCSR_NODESC		BIT(30)	/* No-Descriptor Fetch (read / write) */
37 #define PXA_DCSR_STOPIRQEN	BIT(29)	/* Stop Interrupt Enable (R/W) */
38 #define PXA_DCSR_REQPEND	BIT(8)	/* Request Pending (read-only) */
39 #define PXA_DCSR_STOPSTATE	BIT(3)	/* Stop State (read-only) */
40 #define PXA_DCSR_ENDINTR	BIT(2)	/* End Interrupt (read / write) */
41 #define PXA_DCSR_STARTINTR	BIT(1)	/* Start Interrupt (read / write) */
42 #define PXA_DCSR_BUSERR		BIT(0)	/* Bus Error Interrupt (read / write) */
43 
44 #define PXA_DCSR_EORIRQEN	BIT(28)	/* End of Receive IRQ Enable (R/W) */
45 #define PXA_DCSR_EORJMPEN	BIT(27)	/* Jump to next descriptor on EOR */
46 #define PXA_DCSR_EORSTOPEN	BIT(26)	/* STOP on an EOR */
47 #define PXA_DCSR_SETCMPST	BIT(25)	/* Set Descriptor Compare Status */
48 #define PXA_DCSR_CLRCMPST	BIT(24)	/* Clear Descriptor Compare Status */
49 #define PXA_DCSR_CMPST		BIT(10)	/* The Descriptor Compare Status */
50 #define PXA_DCSR_EORINTR	BIT(9)	/* The end of Receive */
51 
52 #define DRCMR_MAPVLD	BIT(7)	/* Map Valid (read / write) */
53 #define DRCMR_CHLNUM	0x1f	/* mask for Channel Number (read / write) */
54 
55 #define DDADR_DESCADDR	0xfffffff0	/* Address of next descriptor (mask) */
56 #define DDADR_STOP	BIT(0)	/* Stop (read / write) */
57 
58 #define PXA_DCMD_INCSRCADDR	BIT(31)	/* Source Address Increment Setting. */
59 #define PXA_DCMD_INCTRGADDR	BIT(30)	/* Target Address Increment Setting. */
60 #define PXA_DCMD_FLOWSRC	BIT(29)	/* Flow Control by the source. */
61 #define PXA_DCMD_FLOWTRG	BIT(28)	/* Flow Control by the target. */
62 #define PXA_DCMD_STARTIRQEN	BIT(22)	/* Start Interrupt Enable */
63 #define PXA_DCMD_ENDIRQEN	BIT(21)	/* End Interrupt Enable */
64 #define PXA_DCMD_ENDIAN		BIT(18)	/* Device Endian-ness. */
65 #define PXA_DCMD_BURST8		(1 << 16)	/* 8 byte burst */
66 #define PXA_DCMD_BURST16	(2 << 16)	/* 16 byte burst */
67 #define PXA_DCMD_BURST32	(3 << 16)	/* 32 byte burst */
68 #define PXA_DCMD_WIDTH1		(1 << 14)	/* 1 byte width */
69 #define PXA_DCMD_WIDTH2		(2 << 14)	/* 2 byte width (HalfWord) */
70 #define PXA_DCMD_WIDTH4		(3 << 14)	/* 4 byte width (Word) */
71 #define PXA_DCMD_LENGTH		0x01fff		/* length mask (max = 8K - 1) */
72 
73 #define PDMA_ALIGNMENT		3
74 #define PDMA_MAX_DESC_BYTES	(PXA_DCMD_LENGTH & ~((1 << PDMA_ALIGNMENT) - 1))
75 
76 struct pxad_desc_hw {
77 	u32 ddadr;	/* Points to the next descriptor + flags */
78 	u32 dsadr;	/* DSADR value for the current transfer */
79 	u32 dtadr;	/* DTADR value for the current transfer */
80 	u32 dcmd;	/* DCMD value for the current transfer */
81 } __aligned(16);
82 
83 struct pxad_desc_sw {
84 	struct virt_dma_desc	vd;		/* Virtual descriptor */
85 	int			nb_desc;	/* Number of hw. descriptors */
86 	size_t			len;		/* Number of bytes xfered */
87 	dma_addr_t		first;		/* First descriptor's addr */
88 
89 	/* At least one descriptor has an src/dst address not multiple of 8 */
90 	bool			misaligned;
91 	bool			cyclic;
92 	struct dma_pool		*desc_pool;	/* Channel's used allocator */
93 
94 	struct pxad_desc_hw	*hw_desc[] __counted_by(nb_desc);
95 						/* DMA coherent descriptors */
96 };
97 
98 struct pxad_phy {
99 	int			idx;
100 	void __iomem		*base;
101 	struct pxad_chan	*vchan;
102 };
103 
104 struct pxad_chan {
105 	struct virt_dma_chan	vc;		/* Virtual channel */
106 	u32			drcmr;		/* Requestor of the channel */
107 	enum pxad_chan_prio	prio;		/* Required priority of phy */
108 	/*
109 	 * At least one desc_sw in submitted or issued transfers on this channel
110 	 * has one address such as: addr % 8 != 0. This implies the DALGN
111 	 * setting on the phy.
112 	 */
113 	bool			misaligned;
114 	struct dma_slave_config	cfg;		/* Runtime config */
115 
116 	/* protected by vc->lock */
117 	struct pxad_phy		*phy;
118 	struct dma_pool		*desc_pool;	/* Descriptors pool */
119 	dma_cookie_t		bus_error;
120 
121 	wait_queue_head_t	wq_state;
122 };
123 
124 struct pxad_device {
125 	struct dma_device		slave;
126 	int				nr_chans;
127 	int				nr_requestors;
128 	void __iomem			*base;
129 	struct pxad_phy			*phys;
130 	spinlock_t			phy_lock;	/* Phy association */
131 #ifdef CONFIG_DEBUG_FS
132 	struct dentry			*dbgfs_root;
133 	struct dentry			**dbgfs_chan;
134 #endif
135 };
136 
137 #define tx_to_pxad_desc(tx)					\
138 	container_of(tx, struct pxad_desc_sw, async_tx)
139 #define to_pxad_chan(dchan)					\
140 	container_of(dchan, struct pxad_chan, vc.chan)
141 #define to_pxad_dev(dmadev)					\
142 	container_of(dmadev, struct pxad_device, slave)
143 #define to_pxad_sw_desc(_vd)				\
144 	container_of((_vd), struct pxad_desc_sw, vd)
145 
146 #define _phy_readl_relaxed(phy, _reg)					\
147 	readl_relaxed((phy)->base + _reg((phy)->idx))
148 #define phy_readl_relaxed(phy, _reg)					\
149 	({								\
150 		u32 _v;							\
151 		_v = readl_relaxed((phy)->base + _reg((phy)->idx));	\
152 		dev_vdbg(&phy->vchan->vc.chan.dev->device,		\
153 			 "%s(): readl(%s): 0x%08x\n", __func__, #_reg,	\
154 			  _v);						\
155 		_v;							\
156 	})
157 #define phy_writel(phy, val, _reg)					\
158 	do {								\
159 		writel((val), (phy)->base + _reg((phy)->idx));		\
160 		dev_vdbg(&phy->vchan->vc.chan.dev->device,		\
161 			 "%s(): writel(0x%08x, %s)\n",			\
162 			 __func__, (u32)(val), #_reg);			\
163 	} while (0)
164 #define phy_writel_relaxed(phy, val, _reg)				\
165 	do {								\
166 		writel_relaxed((val), (phy)->base + _reg((phy)->idx));	\
167 		dev_vdbg(&phy->vchan->vc.chan.dev->device,		\
168 			 "%s(): writel_relaxed(0x%08x, %s)\n",		\
169 			 __func__, (u32)(val), #_reg);			\
170 	} while (0)
171 
pxad_drcmr(unsigned int line)172 static unsigned int pxad_drcmr(unsigned int line)
173 {
174 	if (line < 64)
175 		return 0x100 + line * 4;
176 	return 0x1000 + line * 4;
177 }
178 
179 static bool pxad_filter_fn(struct dma_chan *chan, void *param);
180 
181 /*
182  * Debug fs
183  */
184 #ifdef CONFIG_DEBUG_FS
185 #include <linux/debugfs.h>
186 #include <linux/uaccess.h>
187 #include <linux/seq_file.h>
188 
requester_chan_show(struct seq_file * s,void * p)189 static int requester_chan_show(struct seq_file *s, void *p)
190 {
191 	struct pxad_phy *phy = s->private;
192 	int i;
193 	u32 drcmr;
194 
195 	seq_printf(s, "DMA channel %d requester :\n", phy->idx);
196 	for (i = 0; i < 70; i++) {
197 		drcmr = readl_relaxed(phy->base + pxad_drcmr(i));
198 		if ((drcmr & DRCMR_CHLNUM) == phy->idx)
199 			seq_printf(s, "\tRequester %d (MAPVLD=%d)\n", i,
200 				   !!(drcmr & DRCMR_MAPVLD));
201 	}
202 	return 0;
203 }
204 
dbg_burst_from_dcmd(u32 dcmd)205 static inline int dbg_burst_from_dcmd(u32 dcmd)
206 {
207 	int burst = (dcmd >> 16) & 0x3;
208 
209 	return burst ? 4 << burst : 0;
210 }
211 
is_phys_valid(unsigned long addr)212 static int is_phys_valid(unsigned long addr)
213 {
214 	return pfn_valid(__phys_to_pfn(addr));
215 }
216 
217 #define PXA_DCSR_STR(flag) (dcsr & PXA_DCSR_##flag ? #flag" " : "")
218 #define PXA_DCMD_STR(flag) (dcmd & PXA_DCMD_##flag ? #flag" " : "")
219 
descriptors_show(struct seq_file * s,void * p)220 static int descriptors_show(struct seq_file *s, void *p)
221 {
222 	struct pxad_phy *phy = s->private;
223 	int i, max_show = 20, burst, width;
224 	u32 dcmd;
225 	unsigned long phys_desc, ddadr;
226 	struct pxad_desc_hw *desc;
227 
228 	phys_desc = ddadr = _phy_readl_relaxed(phy, DDADR);
229 
230 	seq_printf(s, "DMA channel %d descriptors :\n", phy->idx);
231 	seq_printf(s, "[%03d] First descriptor unknown\n", 0);
232 	for (i = 1; i < max_show && is_phys_valid(phys_desc); i++) {
233 		desc = phys_to_virt(phys_desc);
234 		dcmd = desc->dcmd;
235 		burst = dbg_burst_from_dcmd(dcmd);
236 		width = (1 << ((dcmd >> 14) & 0x3)) >> 1;
237 
238 		seq_printf(s, "[%03d] Desc at %08lx(virt %p)\n",
239 			   i, phys_desc, desc);
240 		seq_printf(s, "\tDDADR = %08x\n", desc->ddadr);
241 		seq_printf(s, "\tDSADR = %08x\n", desc->dsadr);
242 		seq_printf(s, "\tDTADR = %08x\n", desc->dtadr);
243 		seq_printf(s, "\tDCMD  = %08x (%s%s%s%s%s%s%sburst=%d width=%d len=%d)\n",
244 			   dcmd,
245 			   PXA_DCMD_STR(INCSRCADDR), PXA_DCMD_STR(INCTRGADDR),
246 			   PXA_DCMD_STR(FLOWSRC), PXA_DCMD_STR(FLOWTRG),
247 			   PXA_DCMD_STR(STARTIRQEN), PXA_DCMD_STR(ENDIRQEN),
248 			   PXA_DCMD_STR(ENDIAN), burst, width,
249 			   dcmd & PXA_DCMD_LENGTH);
250 		phys_desc = desc->ddadr;
251 	}
252 	if (i == max_show)
253 		seq_printf(s, "[%03d] Desc at %08lx ... max display reached\n",
254 			   i, phys_desc);
255 	else
256 		seq_printf(s, "[%03d] Desc at %08lx is %s\n",
257 			   i, phys_desc, phys_desc == DDADR_STOP ?
258 			   "DDADR_STOP" : "invalid");
259 
260 	return 0;
261 }
262 
chan_state_show(struct seq_file * s,void * p)263 static int chan_state_show(struct seq_file *s, void *p)
264 {
265 	struct pxad_phy *phy = s->private;
266 	u32 dcsr, dcmd;
267 	int burst, width;
268 	static const char * const str_prio[] = {
269 		"high", "normal", "low", "invalid"
270 	};
271 
272 	dcsr = _phy_readl_relaxed(phy, DCSR);
273 	dcmd = _phy_readl_relaxed(phy, DCMD);
274 	burst = dbg_burst_from_dcmd(dcmd);
275 	width = (1 << ((dcmd >> 14) & 0x3)) >> 1;
276 
277 	seq_printf(s, "DMA channel %d\n", phy->idx);
278 	seq_printf(s, "\tPriority : %s\n",
279 			  str_prio[(phy->idx & 0xf) / 4]);
280 	seq_printf(s, "\tUnaligned transfer bit: %s\n",
281 			  str_yes_no(_phy_readl_relaxed(phy, DALGN) & BIT(phy->idx)));
282 	seq_printf(s, "\tDCSR  = %08x (%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s)\n",
283 		   dcsr, PXA_DCSR_STR(RUN), PXA_DCSR_STR(NODESC),
284 		   PXA_DCSR_STR(STOPIRQEN), PXA_DCSR_STR(EORIRQEN),
285 		   PXA_DCSR_STR(EORJMPEN), PXA_DCSR_STR(EORSTOPEN),
286 		   PXA_DCSR_STR(SETCMPST), PXA_DCSR_STR(CLRCMPST),
287 		   PXA_DCSR_STR(CMPST), PXA_DCSR_STR(EORINTR),
288 		   PXA_DCSR_STR(REQPEND), PXA_DCSR_STR(STOPSTATE),
289 		   PXA_DCSR_STR(ENDINTR), PXA_DCSR_STR(STARTINTR),
290 		   PXA_DCSR_STR(BUSERR));
291 
292 	seq_printf(s, "\tDCMD  = %08x (%s%s%s%s%s%s%sburst=%d width=%d len=%d)\n",
293 		   dcmd,
294 		   PXA_DCMD_STR(INCSRCADDR), PXA_DCMD_STR(INCTRGADDR),
295 		   PXA_DCMD_STR(FLOWSRC), PXA_DCMD_STR(FLOWTRG),
296 		   PXA_DCMD_STR(STARTIRQEN), PXA_DCMD_STR(ENDIRQEN),
297 		   PXA_DCMD_STR(ENDIAN), burst, width, dcmd & PXA_DCMD_LENGTH);
298 	seq_printf(s, "\tDSADR = %08x\n", _phy_readl_relaxed(phy, DSADR));
299 	seq_printf(s, "\tDTADR = %08x\n", _phy_readl_relaxed(phy, DTADR));
300 	seq_printf(s, "\tDDADR = %08x\n", _phy_readl_relaxed(phy, DDADR));
301 
302 	return 0;
303 }
304 
state_show(struct seq_file * s,void * p)305 static int state_show(struct seq_file *s, void *p)
306 {
307 	struct pxad_device *pdev = s->private;
308 
309 	/* basic device status */
310 	seq_puts(s, "DMA engine status\n");
311 	seq_printf(s, "\tChannel number: %d\n", pdev->nr_chans);
312 
313 	return 0;
314 }
315 
316 DEFINE_SHOW_ATTRIBUTE(state);
317 DEFINE_SHOW_ATTRIBUTE(chan_state);
318 DEFINE_SHOW_ATTRIBUTE(descriptors);
319 DEFINE_SHOW_ATTRIBUTE(requester_chan);
320 
pxad_dbg_alloc_chan(struct pxad_device * pdev,int ch,struct dentry * chandir)321 static struct dentry *pxad_dbg_alloc_chan(struct pxad_device *pdev,
322 					     int ch, struct dentry *chandir)
323 {
324 	char chan_name[11];
325 	struct dentry *chan;
326 	void *dt;
327 
328 	scnprintf(chan_name, sizeof(chan_name), "%d", ch);
329 	chan = debugfs_create_dir(chan_name, chandir);
330 	dt = (void *)&pdev->phys[ch];
331 
332 	debugfs_create_file("state", 0400, chan, dt, &chan_state_fops);
333 	debugfs_create_file("descriptors", 0400, chan, dt, &descriptors_fops);
334 	debugfs_create_file("requesters", 0400, chan, dt, &requester_chan_fops);
335 
336 	return chan;
337 }
338 
pxad_init_debugfs(struct pxad_device * pdev)339 static void pxad_init_debugfs(struct pxad_device *pdev)
340 {
341 	int i;
342 	struct dentry *chandir;
343 
344 	pdev->dbgfs_chan =
345 		kmalloc_objs(struct dentry *, pdev->nr_chans);
346 	if (!pdev->dbgfs_chan)
347 		return;
348 
349 	pdev->dbgfs_root = debugfs_create_dir(dev_name(pdev->slave.dev), NULL);
350 
351 	debugfs_create_file("state", 0400, pdev->dbgfs_root, pdev, &state_fops);
352 
353 	chandir = debugfs_create_dir("channels", pdev->dbgfs_root);
354 
355 	for (i = 0; i < pdev->nr_chans; i++)
356 		pdev->dbgfs_chan[i] = pxad_dbg_alloc_chan(pdev, i, chandir);
357 }
358 
pxad_cleanup_debugfs(struct pxad_device * pdev)359 static void pxad_cleanup_debugfs(struct pxad_device *pdev)
360 {
361 	debugfs_remove_recursive(pdev->dbgfs_root);
362 }
363 #else
pxad_init_debugfs(struct pxad_device * pdev)364 static inline void pxad_init_debugfs(struct pxad_device *pdev) {}
pxad_cleanup_debugfs(struct pxad_device * pdev)365 static inline void pxad_cleanup_debugfs(struct pxad_device *pdev) {}
366 #endif
367 
lookup_phy(struct pxad_chan * pchan)368 static struct pxad_phy *lookup_phy(struct pxad_chan *pchan)
369 {
370 	int prio, i;
371 	struct pxad_device *pdev = to_pxad_dev(pchan->vc.chan.device);
372 	struct pxad_phy *phy, *found = NULL;
373 	unsigned long flags;
374 
375 	/*
376 	 * dma channel priorities
377 	 * ch 0 - 3,  16 - 19  <--> (0)
378 	 * ch 4 - 7,  20 - 23  <--> (1)
379 	 * ch 8 - 11, 24 - 27  <--> (2)
380 	 * ch 12 - 15, 28 - 31  <--> (3)
381 	 */
382 
383 	spin_lock_irqsave(&pdev->phy_lock, flags);
384 	for (prio = pchan->prio; prio >= PXAD_PRIO_HIGHEST; prio--) {
385 		for (i = 0; i < pdev->nr_chans; i++) {
386 			if (prio != (i & 0xf) >> 2)
387 				continue;
388 			phy = &pdev->phys[i];
389 			if (!phy->vchan) {
390 				phy->vchan = pchan;
391 				found = phy;
392 				goto out_unlock;
393 			}
394 		}
395 	}
396 
397 out_unlock:
398 	spin_unlock_irqrestore(&pdev->phy_lock, flags);
399 	dev_dbg(&pchan->vc.chan.dev->device,
400 		"%s(): phy=%p(%d)\n", __func__, found,
401 		found ? found->idx : -1);
402 
403 	return found;
404 }
405 
pxad_free_phy(struct pxad_chan * chan)406 static void pxad_free_phy(struct pxad_chan *chan)
407 {
408 	struct pxad_device *pdev = to_pxad_dev(chan->vc.chan.device);
409 	unsigned long flags;
410 	u32 reg;
411 
412 	dev_dbg(&chan->vc.chan.dev->device,
413 		"%s(): freeing\n", __func__);
414 	if (!chan->phy)
415 		return;
416 
417 	/* clear the channel mapping in DRCMR */
418 	if (chan->drcmr <= pdev->nr_requestors) {
419 		reg = pxad_drcmr(chan->drcmr);
420 		writel_relaxed(0, chan->phy->base + reg);
421 	}
422 
423 	spin_lock_irqsave(&pdev->phy_lock, flags);
424 	chan->phy->vchan = NULL;
425 	chan->phy = NULL;
426 	spin_unlock_irqrestore(&pdev->phy_lock, flags);
427 }
428 
is_chan_running(struct pxad_chan * chan)429 static bool is_chan_running(struct pxad_chan *chan)
430 {
431 	u32 dcsr;
432 	struct pxad_phy *phy = chan->phy;
433 
434 	if (!phy)
435 		return false;
436 	dcsr = phy_readl_relaxed(phy, DCSR);
437 	return dcsr & PXA_DCSR_RUN;
438 }
439 
is_running_chan_misaligned(struct pxad_chan * chan)440 static bool is_running_chan_misaligned(struct pxad_chan *chan)
441 {
442 	u32 dalgn;
443 
444 	BUG_ON(!chan->phy);
445 	dalgn = phy_readl_relaxed(chan->phy, DALGN);
446 	return dalgn & (BIT(chan->phy->idx));
447 }
448 
phy_enable(struct pxad_phy * phy,bool misaligned)449 static void phy_enable(struct pxad_phy *phy, bool misaligned)
450 {
451 	struct pxad_device *pdev;
452 	u32 reg, dalgn;
453 
454 	if (!phy->vchan)
455 		return;
456 
457 	dev_dbg(&phy->vchan->vc.chan.dev->device,
458 		"%s(); phy=%p(%d) misaligned=%d\n", __func__,
459 		phy, phy->idx, misaligned);
460 
461 	pdev = to_pxad_dev(phy->vchan->vc.chan.device);
462 	if (phy->vchan->drcmr <= pdev->nr_requestors) {
463 		reg = pxad_drcmr(phy->vchan->drcmr);
464 		writel_relaxed(DRCMR_MAPVLD | phy->idx, phy->base + reg);
465 	}
466 
467 	dalgn = phy_readl_relaxed(phy, DALGN);
468 	if (misaligned)
469 		dalgn |= BIT(phy->idx);
470 	else
471 		dalgn &= ~BIT(phy->idx);
472 	phy_writel_relaxed(phy, dalgn, DALGN);
473 
474 	phy_writel(phy, PXA_DCSR_STOPIRQEN | PXA_DCSR_ENDINTR |
475 		   PXA_DCSR_BUSERR | PXA_DCSR_RUN, DCSR);
476 }
477 
phy_disable(struct pxad_phy * phy)478 static void phy_disable(struct pxad_phy *phy)
479 {
480 	u32 dcsr;
481 
482 	if (!phy)
483 		return;
484 
485 	dcsr = phy_readl_relaxed(phy, DCSR);
486 	dev_dbg(&phy->vchan->vc.chan.dev->device,
487 		"%s(): phy=%p(%d)\n", __func__, phy, phy->idx);
488 	phy_writel(phy, dcsr & ~PXA_DCSR_RUN & ~PXA_DCSR_STOPIRQEN, DCSR);
489 }
490 
pxad_launch_chan(struct pxad_chan * chan,struct pxad_desc_sw * desc)491 static void pxad_launch_chan(struct pxad_chan *chan,
492 				 struct pxad_desc_sw *desc)
493 {
494 	dev_dbg(&chan->vc.chan.dev->device,
495 		"%s(): desc=%p\n", __func__, desc);
496 	if (!chan->phy) {
497 		chan->phy = lookup_phy(chan);
498 		if (!chan->phy) {
499 			dev_dbg(&chan->vc.chan.dev->device,
500 				"%s(): no free dma channel\n", __func__);
501 			return;
502 		}
503 	}
504 	chan->bus_error = 0;
505 
506 	/*
507 	 * Program the descriptor's address into the DMA controller,
508 	 * then start the DMA transaction
509 	 */
510 	phy_writel(chan->phy, desc->first, DDADR);
511 	phy_enable(chan->phy, chan->misaligned);
512 	wake_up(&chan->wq_state);
513 }
514 
set_updater_desc(struct pxad_desc_sw * sw_desc,unsigned long flags)515 static void set_updater_desc(struct pxad_desc_sw *sw_desc,
516 			     unsigned long flags)
517 {
518 	struct pxad_desc_hw *updater =
519 		sw_desc->hw_desc[sw_desc->nb_desc - 1];
520 	dma_addr_t dma = sw_desc->hw_desc[sw_desc->nb_desc - 2]->ddadr;
521 
522 	updater->ddadr = DDADR_STOP;
523 	updater->dsadr = dma;
524 	updater->dtadr = dma + 8;
525 	updater->dcmd = PXA_DCMD_WIDTH4 | PXA_DCMD_BURST32 |
526 		(PXA_DCMD_LENGTH & sizeof(u32));
527 	if (flags & DMA_PREP_INTERRUPT)
528 		updater->dcmd |= PXA_DCMD_ENDIRQEN;
529 	if (sw_desc->cyclic)
530 		sw_desc->hw_desc[sw_desc->nb_desc - 2]->ddadr = sw_desc->first;
531 }
532 
is_desc_completed(struct virt_dma_desc * vd)533 static bool is_desc_completed(struct virt_dma_desc *vd)
534 {
535 	struct pxad_desc_sw *sw_desc = to_pxad_sw_desc(vd);
536 	struct pxad_desc_hw *updater =
537 		sw_desc->hw_desc[sw_desc->nb_desc - 1];
538 
539 	return updater->dtadr != (updater->dsadr + 8);
540 }
541 
pxad_desc_chain(struct virt_dma_desc * vd1,struct virt_dma_desc * vd2)542 static void pxad_desc_chain(struct virt_dma_desc *vd1,
543 				struct virt_dma_desc *vd2)
544 {
545 	struct pxad_desc_sw *desc1 = to_pxad_sw_desc(vd1);
546 	struct pxad_desc_sw *desc2 = to_pxad_sw_desc(vd2);
547 	dma_addr_t dma_to_chain;
548 
549 	dma_to_chain = desc2->first;
550 	desc1->hw_desc[desc1->nb_desc - 1]->ddadr = dma_to_chain;
551 }
552 
pxad_try_hotchain(struct virt_dma_chan * vc,struct virt_dma_desc * vd)553 static bool pxad_try_hotchain(struct virt_dma_chan *vc,
554 				  struct virt_dma_desc *vd)
555 {
556 	struct virt_dma_desc *vd_last_issued = NULL;
557 	struct pxad_chan *chan = to_pxad_chan(&vc->chan);
558 
559 	/*
560 	 * Attempt to hot chain the tx if the phy is still running. This is
561 	 * considered successful only if either the channel is still running
562 	 * after the chaining, or if the chained transfer is completed after
563 	 * having been hot chained.
564 	 * A change of alignment is not allowed, and forbids hotchaining.
565 	 */
566 	if (is_chan_running(chan)) {
567 		BUG_ON(list_empty(&vc->desc_issued));
568 
569 		if (!is_running_chan_misaligned(chan) &&
570 		    to_pxad_sw_desc(vd)->misaligned)
571 			return false;
572 
573 		vd_last_issued = list_entry(vc->desc_issued.prev,
574 					    struct virt_dma_desc, node);
575 		pxad_desc_chain(vd_last_issued, vd);
576 		if (is_chan_running(chan) || is_desc_completed(vd))
577 			return true;
578 	}
579 
580 	return false;
581 }
582 
clear_chan_irq(struct pxad_phy * phy)583 static unsigned int clear_chan_irq(struct pxad_phy *phy)
584 {
585 	u32 dcsr;
586 	u32 dint = readl(phy->base + DINT);
587 
588 	if (!(dint & BIT(phy->idx)))
589 		return PXA_DCSR_RUN;
590 
591 	/* clear irq */
592 	dcsr = phy_readl_relaxed(phy, DCSR);
593 	phy_writel(phy, dcsr, DCSR);
594 	if ((dcsr & PXA_DCSR_BUSERR) && (phy->vchan))
595 		dev_warn(&phy->vchan->vc.chan.dev->device,
596 			 "%s(chan=%p): PXA_DCSR_BUSERR\n",
597 			 __func__, &phy->vchan);
598 
599 	return dcsr & ~PXA_DCSR_RUN;
600 }
601 
pxad_chan_handler(int irq,void * dev_id)602 static irqreturn_t pxad_chan_handler(int irq, void *dev_id)
603 {
604 	struct pxad_phy *phy = dev_id;
605 	struct pxad_chan *chan = phy->vchan;
606 	struct virt_dma_desc *vd, *tmp;
607 	unsigned int dcsr;
608 	bool vd_completed;
609 	dma_cookie_t last_started = 0;
610 
611 	BUG_ON(!chan);
612 
613 	dcsr = clear_chan_irq(phy);
614 	if (dcsr & PXA_DCSR_RUN)
615 		return IRQ_NONE;
616 
617 	spin_lock(&chan->vc.lock);
618 	list_for_each_entry_safe(vd, tmp, &chan->vc.desc_issued, node) {
619 		vd_completed = is_desc_completed(vd);
620 		dev_dbg(&chan->vc.chan.dev->device,
621 			"%s(): checking txd %p[%x]: completed=%d dcsr=0x%x\n",
622 			__func__, vd, vd->tx.cookie, vd_completed,
623 			dcsr);
624 		last_started = vd->tx.cookie;
625 		if (to_pxad_sw_desc(vd)->cyclic) {
626 			vchan_cyclic_callback(vd);
627 			break;
628 		}
629 		if (vd_completed) {
630 			list_del(&vd->node);
631 			vchan_cookie_complete(vd);
632 		} else {
633 			break;
634 		}
635 	}
636 
637 	if (dcsr & PXA_DCSR_BUSERR) {
638 		chan->bus_error = last_started;
639 		phy_disable(phy);
640 	}
641 
642 	if (!chan->bus_error && dcsr & PXA_DCSR_STOPSTATE) {
643 		dev_dbg(&chan->vc.chan.dev->device,
644 		"%s(): channel stopped, submitted_empty=%d issued_empty=%d",
645 			__func__,
646 			list_empty(&chan->vc.desc_submitted),
647 			list_empty(&chan->vc.desc_issued));
648 		phy_writel_relaxed(phy, dcsr & ~PXA_DCSR_STOPIRQEN, DCSR);
649 
650 		if (list_empty(&chan->vc.desc_issued)) {
651 			chan->misaligned =
652 				!list_empty(&chan->vc.desc_submitted);
653 		} else {
654 			vd = list_first_entry(&chan->vc.desc_issued,
655 					      struct virt_dma_desc, node);
656 			pxad_launch_chan(chan, to_pxad_sw_desc(vd));
657 		}
658 	}
659 	spin_unlock(&chan->vc.lock);
660 	wake_up(&chan->wq_state);
661 
662 	return IRQ_HANDLED;
663 }
664 
pxad_int_handler(int irq,void * dev_id)665 static irqreturn_t pxad_int_handler(int irq, void *dev_id)
666 {
667 	struct pxad_device *pdev = dev_id;
668 	struct pxad_phy *phy;
669 	u32 dint = readl(pdev->base + DINT);
670 	int i, ret = IRQ_NONE;
671 
672 	while (dint) {
673 		i = __ffs(dint);
674 		dint &= (dint - 1);
675 		phy = &pdev->phys[i];
676 		if (pxad_chan_handler(irq, phy) == IRQ_HANDLED)
677 			ret = IRQ_HANDLED;
678 	}
679 
680 	return ret;
681 }
682 
pxad_alloc_chan_resources(struct dma_chan * dchan)683 static int pxad_alloc_chan_resources(struct dma_chan *dchan)
684 {
685 	struct pxad_chan *chan = to_pxad_chan(dchan);
686 	struct pxad_device *pdev = to_pxad_dev(chan->vc.chan.device);
687 
688 	if (chan->desc_pool)
689 		return 1;
690 
691 	chan->desc_pool = dma_pool_create(dma_chan_name(dchan),
692 					  pdev->slave.dev,
693 					  sizeof(struct pxad_desc_hw),
694 					  __alignof__(struct pxad_desc_hw),
695 					  0);
696 	if (!chan->desc_pool) {
697 		dev_err(&chan->vc.chan.dev->device,
698 			"%s(): unable to allocate descriptor pool\n",
699 			__func__);
700 		return -ENOMEM;
701 	}
702 
703 	return 1;
704 }
705 
pxad_free_chan_resources(struct dma_chan * dchan)706 static void pxad_free_chan_resources(struct dma_chan *dchan)
707 {
708 	struct pxad_chan *chan = to_pxad_chan(dchan);
709 
710 	vchan_free_chan_resources(&chan->vc);
711 	dma_pool_destroy(chan->desc_pool);
712 	chan->desc_pool = NULL;
713 
714 	chan->drcmr = U32_MAX;
715 	chan->prio = PXAD_PRIO_LOWEST;
716 }
717 
pxad_free_desc(struct virt_dma_desc * vd)718 static void pxad_free_desc(struct virt_dma_desc *vd)
719 {
720 	int i;
721 	dma_addr_t dma;
722 	struct pxad_desc_sw *sw_desc = to_pxad_sw_desc(vd);
723 
724 	for (i = sw_desc->nb_desc - 1; i >= 0; i--) {
725 		if (i > 0)
726 			dma = sw_desc->hw_desc[i - 1]->ddadr;
727 		else
728 			dma = sw_desc->first;
729 		dma_pool_free(sw_desc->desc_pool,
730 			      sw_desc->hw_desc[i], dma);
731 	}
732 	sw_desc->nb_desc = 0;
733 	kfree(sw_desc);
734 }
735 
736 static struct pxad_desc_sw *
pxad_alloc_desc(struct pxad_chan * chan,unsigned int nb_hw_desc)737 pxad_alloc_desc(struct pxad_chan *chan, unsigned int nb_hw_desc)
738 {
739 	struct pxad_desc_sw *sw_desc;
740 	dma_addr_t dma;
741 	void *desc;
742 	int i;
743 
744 	sw_desc = kzalloc_flex(*sw_desc, hw_desc, nb_hw_desc, GFP_NOWAIT);
745 	if (!sw_desc)
746 		return NULL;
747 	sw_desc->nb_desc = nb_hw_desc;
748 	sw_desc->desc_pool = chan->desc_pool;
749 
750 	for (i = 0; i < nb_hw_desc; i++) {
751 		desc = dma_pool_alloc(sw_desc->desc_pool, GFP_NOWAIT, &dma);
752 		if (!desc) {
753 			dev_err(&chan->vc.chan.dev->device,
754 				"%s(): Couldn't allocate the %dth hw_desc from dma_pool %p\n",
755 				__func__, i, sw_desc->desc_pool);
756 			sw_desc->nb_desc = i;
757 			goto err;
758 		}
759 
760 		sw_desc->hw_desc[i] = desc;
761 
762 		if (i == 0)
763 			sw_desc->first = dma;
764 		else
765 			sw_desc->hw_desc[i - 1]->ddadr = dma;
766 	}
767 
768 	return sw_desc;
769 err:
770 	pxad_free_desc(&sw_desc->vd);
771 	return NULL;
772 }
773 
pxad_tx_submit(struct dma_async_tx_descriptor * tx)774 static dma_cookie_t pxad_tx_submit(struct dma_async_tx_descriptor *tx)
775 {
776 	struct virt_dma_chan *vc = to_virt_chan(tx->chan);
777 	struct pxad_chan *chan = to_pxad_chan(&vc->chan);
778 	struct virt_dma_desc *vd_chained = NULL,
779 		*vd = container_of(tx, struct virt_dma_desc, tx);
780 	dma_cookie_t cookie;
781 	unsigned long flags;
782 
783 	set_updater_desc(to_pxad_sw_desc(vd), tx->flags);
784 
785 	spin_lock_irqsave(&vc->lock, flags);
786 	cookie = dma_cookie_assign(tx);
787 
788 	if (list_empty(&vc->desc_submitted) && pxad_try_hotchain(vc, vd)) {
789 		list_move_tail(&vd->node, &vc->desc_issued);
790 		dev_dbg(&chan->vc.chan.dev->device,
791 			"%s(): txd %p[%x]: submitted (hot linked)\n",
792 			__func__, vd, cookie);
793 		goto out;
794 	}
795 
796 	/*
797 	 * Fallback to placing the tx in the submitted queue
798 	 */
799 	if (!list_empty(&vc->desc_submitted)) {
800 		vd_chained = list_entry(vc->desc_submitted.prev,
801 					struct virt_dma_desc, node);
802 		/*
803 		 * Only chain the descriptors if no new misalignment is
804 		 * introduced. If a new misalignment is chained, let the channel
805 		 * stop, and be relaunched in misalign mode from the irq
806 		 * handler.
807 		 */
808 		if (chan->misaligned || !to_pxad_sw_desc(vd)->misaligned)
809 			pxad_desc_chain(vd_chained, vd);
810 		else
811 			vd_chained = NULL;
812 	}
813 	dev_dbg(&chan->vc.chan.dev->device,
814 		"%s(): txd %p[%x]: submitted (%s linked)\n",
815 		__func__, vd, cookie, vd_chained ? "cold" : "not");
816 	list_move_tail(&vd->node, &vc->desc_submitted);
817 	chan->misaligned |= to_pxad_sw_desc(vd)->misaligned;
818 
819 out:
820 	spin_unlock_irqrestore(&vc->lock, flags);
821 	return cookie;
822 }
823 
pxad_issue_pending(struct dma_chan * dchan)824 static void pxad_issue_pending(struct dma_chan *dchan)
825 {
826 	struct pxad_chan *chan = to_pxad_chan(dchan);
827 	struct virt_dma_desc *vd_first;
828 	unsigned long flags;
829 
830 	spin_lock_irqsave(&chan->vc.lock, flags);
831 	if (list_empty(&chan->vc.desc_submitted))
832 		goto out;
833 
834 	vd_first = list_first_entry(&chan->vc.desc_submitted,
835 				    struct virt_dma_desc, node);
836 	dev_dbg(&chan->vc.chan.dev->device,
837 		"%s(): txd %p[%x]", __func__, vd_first, vd_first->tx.cookie);
838 
839 	vchan_issue_pending(&chan->vc);
840 	if (!pxad_try_hotchain(&chan->vc, vd_first))
841 		pxad_launch_chan(chan, to_pxad_sw_desc(vd_first));
842 out:
843 	spin_unlock_irqrestore(&chan->vc.lock, flags);
844 }
845 
846 static inline struct dma_async_tx_descriptor *
pxad_tx_prep(struct virt_dma_chan * vc,struct virt_dma_desc * vd,unsigned long tx_flags)847 pxad_tx_prep(struct virt_dma_chan *vc, struct virt_dma_desc *vd,
848 		 unsigned long tx_flags)
849 {
850 	struct dma_async_tx_descriptor *tx;
851 	struct pxad_chan *chan = container_of(vc, struct pxad_chan, vc);
852 
853 	INIT_LIST_HEAD(&vd->node);
854 	tx = vchan_tx_prep(vc, vd, tx_flags);
855 	tx->tx_submit = pxad_tx_submit;
856 	dev_dbg(&chan->vc.chan.dev->device,
857 		"%s(): vc=%p txd=%p[%x] flags=0x%lx\n", __func__,
858 		vc, vd, vd->tx.cookie,
859 		tx_flags);
860 
861 	return tx;
862 }
863 
pxad_get_config(struct pxad_chan * chan,enum dma_transfer_direction dir,u32 * dcmd,u32 * dev_src,u32 * dev_dst)864 static void pxad_get_config(struct pxad_chan *chan,
865 			    enum dma_transfer_direction dir,
866 			    u32 *dcmd, u32 *dev_src, u32 *dev_dst)
867 {
868 	u32 maxburst = 0, dev_addr = 0;
869 	enum dma_slave_buswidth width = DMA_SLAVE_BUSWIDTH_UNDEFINED;
870 	struct pxad_device *pdev = to_pxad_dev(chan->vc.chan.device);
871 
872 	*dcmd = 0;
873 	if (dir == DMA_DEV_TO_MEM) {
874 		maxburst = chan->cfg.src_maxburst;
875 		width = chan->cfg.src_addr_width;
876 		dev_addr = chan->cfg.src_addr;
877 		*dev_src = dev_addr;
878 		*dcmd |= PXA_DCMD_INCTRGADDR;
879 		if (chan->drcmr <= pdev->nr_requestors)
880 			*dcmd |= PXA_DCMD_FLOWSRC;
881 	}
882 	if (dir == DMA_MEM_TO_DEV) {
883 		maxburst = chan->cfg.dst_maxburst;
884 		width = chan->cfg.dst_addr_width;
885 		dev_addr = chan->cfg.dst_addr;
886 		*dev_dst = dev_addr;
887 		*dcmd |= PXA_DCMD_INCSRCADDR;
888 		if (chan->drcmr <= pdev->nr_requestors)
889 			*dcmd |= PXA_DCMD_FLOWTRG;
890 	}
891 	if (dir == DMA_MEM_TO_MEM)
892 		*dcmd |= PXA_DCMD_BURST32 | PXA_DCMD_INCTRGADDR |
893 			PXA_DCMD_INCSRCADDR;
894 
895 	dev_dbg(&chan->vc.chan.dev->device,
896 		"%s(): dev_addr=0x%x maxburst=%d width=%d  dir=%d\n",
897 		__func__, dev_addr, maxburst, width, dir);
898 
899 	if (width == DMA_SLAVE_BUSWIDTH_1_BYTE)
900 		*dcmd |= PXA_DCMD_WIDTH1;
901 	else if (width == DMA_SLAVE_BUSWIDTH_2_BYTES)
902 		*dcmd |= PXA_DCMD_WIDTH2;
903 	else if (width == DMA_SLAVE_BUSWIDTH_4_BYTES)
904 		*dcmd |= PXA_DCMD_WIDTH4;
905 
906 	if (maxburst == 8)
907 		*dcmd |= PXA_DCMD_BURST8;
908 	else if (maxburst == 16)
909 		*dcmd |= PXA_DCMD_BURST16;
910 	else if (maxburst == 32)
911 		*dcmd |= PXA_DCMD_BURST32;
912 }
913 
914 static struct dma_async_tx_descriptor *
pxad_prep_memcpy(struct dma_chan * dchan,dma_addr_t dma_dst,dma_addr_t dma_src,size_t len,unsigned long flags)915 pxad_prep_memcpy(struct dma_chan *dchan,
916 		 dma_addr_t dma_dst, dma_addr_t dma_src,
917 		 size_t len, unsigned long flags)
918 {
919 	struct pxad_chan *chan = to_pxad_chan(dchan);
920 	struct pxad_desc_sw *sw_desc;
921 	struct pxad_desc_hw *hw_desc;
922 	u32 dcmd;
923 	unsigned int i, nb_desc = 0;
924 	size_t copy;
925 
926 	if (!dchan || !len)
927 		return NULL;
928 
929 	dev_dbg(&chan->vc.chan.dev->device,
930 		"%s(): dma_dst=0x%lx dma_src=0x%lx len=%zu flags=%lx\n",
931 		__func__, (unsigned long)dma_dst, (unsigned long)dma_src,
932 		len, flags);
933 	pxad_get_config(chan, DMA_MEM_TO_MEM, &dcmd, NULL, NULL);
934 
935 	nb_desc = DIV_ROUND_UP(len, PDMA_MAX_DESC_BYTES);
936 	sw_desc = pxad_alloc_desc(chan, nb_desc + 1);
937 	if (!sw_desc)
938 		return NULL;
939 	sw_desc->len = len;
940 
941 	if (!IS_ALIGNED(dma_src, 1 << PDMA_ALIGNMENT) ||
942 	    !IS_ALIGNED(dma_dst, 1 << PDMA_ALIGNMENT))
943 		sw_desc->misaligned = true;
944 
945 	i = 0;
946 	do {
947 		hw_desc = sw_desc->hw_desc[i++];
948 		copy = min_t(size_t, len, PDMA_MAX_DESC_BYTES);
949 		hw_desc->dcmd = dcmd | (PXA_DCMD_LENGTH & copy);
950 		hw_desc->dsadr = dma_src;
951 		hw_desc->dtadr = dma_dst;
952 		len -= copy;
953 		dma_src += copy;
954 		dma_dst += copy;
955 	} while (len);
956 	set_updater_desc(sw_desc, flags);
957 
958 	return pxad_tx_prep(&chan->vc, &sw_desc->vd, flags);
959 }
960 
961 static struct dma_async_tx_descriptor *
pxad_prep_slave_sg(struct dma_chan * dchan,struct scatterlist * sgl,unsigned int sg_len,enum dma_transfer_direction dir,unsigned long flags,void * context)962 pxad_prep_slave_sg(struct dma_chan *dchan, struct scatterlist *sgl,
963 		   unsigned int sg_len, enum dma_transfer_direction dir,
964 		   unsigned long flags, void *context)
965 {
966 	struct pxad_chan *chan = to_pxad_chan(dchan);
967 	struct pxad_desc_sw *sw_desc;
968 	size_t len, avail;
969 	struct scatterlist *sg;
970 	dma_addr_t dma;
971 	u32 dcmd, dsadr = 0, dtadr = 0;
972 	unsigned int nb_desc, i, j = 0;
973 
974 	if ((sgl == NULL) || (sg_len == 0))
975 		return NULL;
976 
977 	pxad_get_config(chan, dir, &dcmd, &dsadr, &dtadr);
978 	dev_dbg(&chan->vc.chan.dev->device,
979 		"%s(): dir=%d flags=%lx\n", __func__, dir, flags);
980 
981 	nb_desc = sg_nents_for_dma(sgl, sg_len, PDMA_MAX_DESC_BYTES);
982 	sw_desc = pxad_alloc_desc(chan, nb_desc + 1);
983 	if (!sw_desc)
984 		return NULL;
985 
986 	for_each_sg(sgl, sg, sg_len, i) {
987 		dma = sg_dma_address(sg);
988 		avail = sg_dma_len(sg);
989 		sw_desc->len += avail;
990 
991 		do {
992 			len = min_t(size_t, avail, PDMA_MAX_DESC_BYTES);
993 			if (dma & 0x7)
994 				sw_desc->misaligned = true;
995 
996 			sw_desc->hw_desc[j]->dcmd =
997 				dcmd | (PXA_DCMD_LENGTH & len);
998 			sw_desc->hw_desc[j]->dsadr = dsadr ? dsadr : dma;
999 			sw_desc->hw_desc[j++]->dtadr = dtadr ? dtadr : dma;
1000 
1001 			dma += len;
1002 			avail -= len;
1003 		} while (avail);
1004 	}
1005 	set_updater_desc(sw_desc, flags);
1006 
1007 	return pxad_tx_prep(&chan->vc, &sw_desc->vd, flags);
1008 }
1009 
1010 static struct dma_async_tx_descriptor *
pxad_prep_dma_cyclic(struct dma_chan * dchan,dma_addr_t buf_addr,size_t len,size_t period_len,enum dma_transfer_direction dir,unsigned long flags)1011 pxad_prep_dma_cyclic(struct dma_chan *dchan,
1012 		     dma_addr_t buf_addr, size_t len, size_t period_len,
1013 		     enum dma_transfer_direction dir, unsigned long flags)
1014 {
1015 	struct pxad_chan *chan = to_pxad_chan(dchan);
1016 	struct pxad_desc_sw *sw_desc;
1017 	struct pxad_desc_hw **phw_desc;
1018 	dma_addr_t dma;
1019 	u32 dcmd, dsadr = 0, dtadr = 0;
1020 	unsigned int nb_desc = 0;
1021 
1022 	if (!dchan || !len || !period_len)
1023 		return NULL;
1024 	if ((dir != DMA_DEV_TO_MEM) && (dir != DMA_MEM_TO_DEV)) {
1025 		dev_err(&chan->vc.chan.dev->device,
1026 			"Unsupported direction for cyclic DMA\n");
1027 		return NULL;
1028 	}
1029 	/* the buffer length must be a multiple of period_len */
1030 	if (len % period_len != 0 || period_len > PDMA_MAX_DESC_BYTES ||
1031 	    !IS_ALIGNED(period_len, 1 << PDMA_ALIGNMENT))
1032 		return NULL;
1033 
1034 	pxad_get_config(chan, dir, &dcmd, &dsadr, &dtadr);
1035 	dcmd |= PXA_DCMD_ENDIRQEN | (PXA_DCMD_LENGTH & period_len);
1036 	dev_dbg(&chan->vc.chan.dev->device,
1037 		"%s(): buf_addr=0x%lx len=%zu period=%zu dir=%d flags=%lx\n",
1038 		__func__, (unsigned long)buf_addr, len, period_len, dir, flags);
1039 
1040 	nb_desc = DIV_ROUND_UP(period_len, PDMA_MAX_DESC_BYTES);
1041 	nb_desc *= DIV_ROUND_UP(len, period_len);
1042 	sw_desc = pxad_alloc_desc(chan, nb_desc + 1);
1043 	if (!sw_desc)
1044 		return NULL;
1045 	sw_desc->cyclic = true;
1046 	sw_desc->len = len;
1047 
1048 	phw_desc = sw_desc->hw_desc;
1049 	dma = buf_addr;
1050 	do {
1051 		phw_desc[0]->dsadr = dsadr ? dsadr : dma;
1052 		phw_desc[0]->dtadr = dtadr ? dtadr : dma;
1053 		phw_desc[0]->dcmd = dcmd;
1054 		phw_desc++;
1055 		dma += period_len;
1056 		len -= period_len;
1057 	} while (len);
1058 	set_updater_desc(sw_desc, flags);
1059 
1060 	return pxad_tx_prep(&chan->vc, &sw_desc->vd, flags);
1061 }
1062 
pxad_config(struct dma_chan * dchan,struct dma_slave_config * cfg)1063 static int pxad_config(struct dma_chan *dchan,
1064 		       struct dma_slave_config *cfg)
1065 {
1066 	struct pxad_chan *chan = to_pxad_chan(dchan);
1067 
1068 	if (!dchan)
1069 		return -EINVAL;
1070 
1071 	chan->cfg = *cfg;
1072 	return 0;
1073 }
1074 
pxad_terminate_all(struct dma_chan * dchan)1075 static int pxad_terminate_all(struct dma_chan *dchan)
1076 {
1077 	struct pxad_chan *chan = to_pxad_chan(dchan);
1078 	struct pxad_device *pdev = to_pxad_dev(chan->vc.chan.device);
1079 	struct virt_dma_desc *vd = NULL;
1080 	unsigned long flags;
1081 	struct pxad_phy *phy;
1082 	LIST_HEAD(head);
1083 
1084 	dev_dbg(&chan->vc.chan.dev->device,
1085 		"%s(): vchan %p: terminate all\n", __func__, &chan->vc);
1086 
1087 	spin_lock_irqsave(&chan->vc.lock, flags);
1088 	vchan_get_all_descriptors(&chan->vc, &head);
1089 
1090 	list_for_each_entry(vd, &head, node) {
1091 		dev_dbg(&chan->vc.chan.dev->device,
1092 			"%s(): cancelling txd %p[%x] (completed=%d)", __func__,
1093 			vd, vd->tx.cookie, is_desc_completed(vd));
1094 	}
1095 
1096 	phy = chan->phy;
1097 	if (phy) {
1098 		phy_disable(chan->phy);
1099 		pxad_free_phy(chan);
1100 		chan->phy = NULL;
1101 		spin_lock(&pdev->phy_lock);
1102 		phy->vchan = NULL;
1103 		spin_unlock(&pdev->phy_lock);
1104 	}
1105 	spin_unlock_irqrestore(&chan->vc.lock, flags);
1106 	vchan_dma_desc_free_list(&chan->vc, &head);
1107 
1108 	return 0;
1109 }
1110 
pxad_residue(struct pxad_chan * chan,dma_cookie_t cookie)1111 static unsigned int pxad_residue(struct pxad_chan *chan,
1112 				 dma_cookie_t cookie)
1113 {
1114 	struct virt_dma_desc *vd = NULL;
1115 	struct pxad_desc_sw *sw_desc = NULL;
1116 	struct pxad_desc_hw *hw_desc = NULL;
1117 	u32 curr, start, len, end, residue = 0;
1118 	unsigned long flags;
1119 	bool passed = false;
1120 	int i;
1121 
1122 	/*
1123 	 * If the channel does not have a phy pointer anymore, it has already
1124 	 * been completed. Therefore, its residue is 0.
1125 	 */
1126 	if (!chan->phy)
1127 		return 0;
1128 
1129 	spin_lock_irqsave(&chan->vc.lock, flags);
1130 
1131 	vd = vchan_find_desc(&chan->vc, cookie);
1132 	if (!vd)
1133 		goto out;
1134 
1135 	sw_desc = to_pxad_sw_desc(vd);
1136 	if (sw_desc->hw_desc[0]->dcmd & PXA_DCMD_INCSRCADDR)
1137 		curr = phy_readl_relaxed(chan->phy, DSADR);
1138 	else
1139 		curr = phy_readl_relaxed(chan->phy, DTADR);
1140 
1141 	/*
1142 	 * curr has to be actually read before checking descriptor
1143 	 * completion, so that a curr inside a status updater
1144 	 * descriptor implies the following test returns true, and
1145 	 * preventing reordering of curr load and the test.
1146 	 */
1147 	rmb();
1148 	if (is_desc_completed(vd))
1149 		goto out;
1150 
1151 	for (i = 0; i < sw_desc->nb_desc - 1; i++) {
1152 		hw_desc = sw_desc->hw_desc[i];
1153 		if (sw_desc->hw_desc[0]->dcmd & PXA_DCMD_INCSRCADDR)
1154 			start = hw_desc->dsadr;
1155 		else
1156 			start = hw_desc->dtadr;
1157 		len = hw_desc->dcmd & PXA_DCMD_LENGTH;
1158 		end = start + len;
1159 
1160 		/*
1161 		 * 'passed' will be latched once we found the descriptor
1162 		 * which lies inside the boundaries of the curr
1163 		 * pointer. All descriptors that occur in the list
1164 		 * _after_ we found that partially handled descriptor
1165 		 * are still to be processed and are hence added to the
1166 		 * residual bytes counter.
1167 		 */
1168 
1169 		if (passed) {
1170 			residue += len;
1171 		} else if (curr >= start && curr <= end) {
1172 			residue += end - curr;
1173 			passed = true;
1174 		}
1175 	}
1176 	if (!passed)
1177 		residue = sw_desc->len;
1178 
1179 out:
1180 	spin_unlock_irqrestore(&chan->vc.lock, flags);
1181 	dev_dbg(&chan->vc.chan.dev->device,
1182 		"%s(): txd %p[%x] sw_desc=%p: %d\n",
1183 		__func__, vd, cookie, sw_desc, residue);
1184 	return residue;
1185 }
1186 
pxad_tx_status(struct dma_chan * dchan,dma_cookie_t cookie,struct dma_tx_state * txstate)1187 static enum dma_status pxad_tx_status(struct dma_chan *dchan,
1188 				      dma_cookie_t cookie,
1189 				      struct dma_tx_state *txstate)
1190 {
1191 	struct pxad_chan *chan = to_pxad_chan(dchan);
1192 	enum dma_status ret;
1193 
1194 	if (cookie == chan->bus_error)
1195 		return DMA_ERROR;
1196 
1197 	ret = dma_cookie_status(dchan, cookie, txstate);
1198 	if (likely(txstate && (ret != DMA_ERROR)))
1199 		dma_set_residue(txstate, pxad_residue(chan, cookie));
1200 
1201 	return ret;
1202 }
1203 
pxad_synchronize(struct dma_chan * dchan)1204 static void pxad_synchronize(struct dma_chan *dchan)
1205 {
1206 	struct pxad_chan *chan = to_pxad_chan(dchan);
1207 
1208 	wait_event(chan->wq_state, !is_chan_running(chan));
1209 	vchan_synchronize(&chan->vc);
1210 }
1211 
pxad_free_channels(struct dma_device * dmadev)1212 static void pxad_free_channels(struct dma_device *dmadev)
1213 {
1214 	struct pxad_chan *c, *cn;
1215 
1216 	list_for_each_entry_safe(c, cn, &dmadev->channels,
1217 				 vc.chan.device_node) {
1218 		list_del(&c->vc.chan.device_node);
1219 		tasklet_kill(&c->vc.task);
1220 	}
1221 }
1222 
pxad_remove(struct platform_device * op)1223 static void pxad_remove(struct platform_device *op)
1224 {
1225 	struct pxad_device *pdev = platform_get_drvdata(op);
1226 
1227 	pxad_cleanup_debugfs(pdev);
1228 	pxad_free_channels(&pdev->slave);
1229 }
1230 
pxad_init_phys(struct platform_device * op,struct pxad_device * pdev,unsigned int nb_phy_chans)1231 static int pxad_init_phys(struct platform_device *op,
1232 			  struct pxad_device *pdev,
1233 			  unsigned int nb_phy_chans)
1234 {
1235 	int irq0, irq, nr_irq = 0, i, ret;
1236 	struct pxad_phy *phy;
1237 
1238 	irq0 = platform_get_irq(op, 0);
1239 	if (irq0 < 0)
1240 		return irq0;
1241 
1242 	pdev->phys = devm_kcalloc(&op->dev, nb_phy_chans,
1243 				  sizeof(pdev->phys[0]), GFP_KERNEL);
1244 	if (!pdev->phys)
1245 		return -ENOMEM;
1246 
1247 	for (i = 0; i < nb_phy_chans; i++)
1248 		if (platform_get_irq_optional(op, i) > 0)
1249 			nr_irq++;
1250 
1251 	for (i = 0; i < nb_phy_chans; i++) {
1252 		phy = &pdev->phys[i];
1253 		phy->base = pdev->base;
1254 		phy->idx = i;
1255 		irq = platform_get_irq_optional(op, i);
1256 		if ((nr_irq > 1) && (irq > 0))
1257 			ret = devm_request_irq(&op->dev, irq,
1258 					       pxad_chan_handler,
1259 					       IRQF_SHARED, "pxa-dma", phy);
1260 		if ((nr_irq == 1) && (i == 0))
1261 			ret = devm_request_irq(&op->dev, irq0,
1262 					       pxad_int_handler,
1263 					       IRQF_SHARED, "pxa-dma", pdev);
1264 		if (ret) {
1265 			dev_err(pdev->slave.dev,
1266 				"%s(): can't request irq %d:%d\n", __func__,
1267 				irq, ret);
1268 			return ret;
1269 		}
1270 	}
1271 
1272 	return 0;
1273 }
1274 
1275 static const struct of_device_id pxad_dt_ids[] = {
1276 	{ .compatible = "marvell,pdma-1.0", },
1277 	{}
1278 };
1279 MODULE_DEVICE_TABLE(of, pxad_dt_ids);
1280 
pxad_dma_xlate(struct of_phandle_args * dma_spec,struct of_dma * ofdma)1281 static struct dma_chan *pxad_dma_xlate(struct of_phandle_args *dma_spec,
1282 					   struct of_dma *ofdma)
1283 {
1284 	struct pxad_device *d = ofdma->of_dma_data;
1285 	struct dma_chan *chan;
1286 
1287 	chan = dma_get_any_slave_channel(&d->slave);
1288 	if (!chan)
1289 		return NULL;
1290 
1291 	to_pxad_chan(chan)->drcmr = dma_spec->args[0];
1292 	to_pxad_chan(chan)->prio = dma_spec->args[1];
1293 
1294 	return chan;
1295 }
1296 
pxad_init_dmadev(struct platform_device * op,struct pxad_device * pdev,unsigned int nr_phy_chans,unsigned int nr_requestors)1297 static int pxad_init_dmadev(struct platform_device *op,
1298 			    struct pxad_device *pdev,
1299 			    unsigned int nr_phy_chans,
1300 			    unsigned int nr_requestors)
1301 {
1302 	int ret;
1303 	unsigned int i;
1304 	struct pxad_chan *c;
1305 
1306 	pdev->nr_chans = nr_phy_chans;
1307 	pdev->nr_requestors = nr_requestors;
1308 	INIT_LIST_HEAD(&pdev->slave.channels);
1309 	pdev->slave.device_alloc_chan_resources = pxad_alloc_chan_resources;
1310 	pdev->slave.device_free_chan_resources = pxad_free_chan_resources;
1311 	pdev->slave.device_tx_status = pxad_tx_status;
1312 	pdev->slave.device_issue_pending = pxad_issue_pending;
1313 	pdev->slave.device_config = pxad_config;
1314 	pdev->slave.device_synchronize = pxad_synchronize;
1315 	pdev->slave.device_terminate_all = pxad_terminate_all;
1316 
1317 	if (op->dev.coherent_dma_mask)
1318 		dma_set_mask(&op->dev, op->dev.coherent_dma_mask);
1319 	else
1320 		dma_set_mask(&op->dev, DMA_BIT_MASK(32));
1321 
1322 	ret = pxad_init_phys(op, pdev, nr_phy_chans);
1323 	if (ret)
1324 		return ret;
1325 
1326 	for (i = 0; i < nr_phy_chans; i++) {
1327 		c = devm_kzalloc(&op->dev, sizeof(*c), GFP_KERNEL);
1328 		if (!c)
1329 			return -ENOMEM;
1330 
1331 		c->drcmr = U32_MAX;
1332 		c->prio = PXAD_PRIO_LOWEST;
1333 		c->vc.desc_free = pxad_free_desc;
1334 		vchan_init(&c->vc, &pdev->slave);
1335 		init_waitqueue_head(&c->wq_state);
1336 	}
1337 
1338 	return dmaenginem_async_device_register(&pdev->slave);
1339 }
1340 
pxad_probe(struct platform_device * op)1341 static int pxad_probe(struct platform_device *op)
1342 {
1343 	struct pxad_device *pdev;
1344 	const struct dma_slave_map *slave_map = NULL;
1345 	struct mmp_dma_platdata *pdata = dev_get_platdata(&op->dev);
1346 	int ret, dma_channels = 0, nb_requestors = 0, slave_map_cnt = 0;
1347 	const enum dma_slave_buswidth widths =
1348 		DMA_SLAVE_BUSWIDTH_1_BYTE   | DMA_SLAVE_BUSWIDTH_2_BYTES |
1349 		DMA_SLAVE_BUSWIDTH_4_BYTES;
1350 
1351 	pdev = devm_kzalloc(&op->dev, sizeof(*pdev), GFP_KERNEL);
1352 	if (!pdev)
1353 		return -ENOMEM;
1354 
1355 	spin_lock_init(&pdev->phy_lock);
1356 
1357 	pdev->base = devm_platform_ioremap_resource(op, 0);
1358 	if (IS_ERR(pdev->base))
1359 		return PTR_ERR(pdev->base);
1360 
1361 	if (op->dev.of_node) {
1362 		/* Parse new and deprecated dma-channels properties */
1363 		if (of_property_read_u32(op->dev.of_node, "dma-channels",
1364 					 &dma_channels))
1365 			of_property_read_u32(op->dev.of_node, "#dma-channels",
1366 					     &dma_channels);
1367 		/* Parse new and deprecated dma-requests properties */
1368 		ret = of_property_read_u32(op->dev.of_node, "dma-requests",
1369 					   &nb_requestors);
1370 		if (ret)
1371 			ret = of_property_read_u32(op->dev.of_node, "#dma-requests",
1372 						   &nb_requestors);
1373 		if (ret) {
1374 			dev_warn(pdev->slave.dev,
1375 				 "#dma-requests set to default 32 as missing in OF: %d",
1376 				 ret);
1377 			nb_requestors = 32;
1378 		}
1379 	} else if (pdata && pdata->dma_channels) {
1380 		dma_channels = pdata->dma_channels;
1381 		nb_requestors = pdata->nb_requestors;
1382 		slave_map = pdata->slave_map;
1383 		slave_map_cnt = pdata->slave_map_cnt;
1384 	} else {
1385 		dma_channels = 32;	/* default 32 channel */
1386 	}
1387 
1388 	dma_cap_set(DMA_SLAVE, pdev->slave.cap_mask);
1389 	dma_cap_set(DMA_MEMCPY, pdev->slave.cap_mask);
1390 	dma_cap_set(DMA_CYCLIC, pdev->slave.cap_mask);
1391 	dma_cap_set(DMA_PRIVATE, pdev->slave.cap_mask);
1392 	pdev->slave.device_prep_dma_memcpy = pxad_prep_memcpy;
1393 	pdev->slave.device_prep_slave_sg = pxad_prep_slave_sg;
1394 	pdev->slave.device_prep_dma_cyclic = pxad_prep_dma_cyclic;
1395 	pdev->slave.filter.map = slave_map;
1396 	pdev->slave.filter.mapcnt = slave_map_cnt;
1397 	pdev->slave.filter.fn = pxad_filter_fn;
1398 
1399 	pdev->slave.copy_align = PDMA_ALIGNMENT;
1400 	pdev->slave.src_addr_widths = widths;
1401 	pdev->slave.dst_addr_widths = widths;
1402 	pdev->slave.directions = BIT(DMA_MEM_TO_DEV) | BIT(DMA_DEV_TO_MEM);
1403 	pdev->slave.residue_granularity = DMA_RESIDUE_GRANULARITY_DESCRIPTOR;
1404 	pdev->slave.descriptor_reuse = true;
1405 
1406 	pdev->slave.dev = &op->dev;
1407 	ret = pxad_init_dmadev(op, pdev, dma_channels, nb_requestors);
1408 	if (ret) {
1409 		dev_err(pdev->slave.dev, "unable to register\n");
1410 		return ret;
1411 	}
1412 
1413 	if (op->dev.of_node) {
1414 		/* Device-tree DMA controller registration */
1415 		ret = of_dma_controller_register(op->dev.of_node,
1416 						 pxad_dma_xlate, pdev);
1417 		if (ret < 0) {
1418 			dev_err(pdev->slave.dev,
1419 				"of_dma_controller_register failed\n");
1420 			return ret;
1421 		}
1422 	}
1423 
1424 	platform_set_drvdata(op, pdev);
1425 	pxad_init_debugfs(pdev);
1426 	dev_info(pdev->slave.dev, "initialized %d channels on %d requestors\n",
1427 		 dma_channels, nb_requestors);
1428 	return 0;
1429 }
1430 
1431 static const struct platform_device_id pxad_id_table[] = {
1432 	{ "pxa-dma", },
1433 	{ },
1434 };
1435 
1436 static struct platform_driver pxad_driver = {
1437 	.driver		= {
1438 		.name	= "pxa-dma",
1439 		.of_match_table = pxad_dt_ids,
1440 	},
1441 	.id_table	= pxad_id_table,
1442 	.probe		= pxad_probe,
1443 	.remove		= pxad_remove,
1444 };
1445 
pxad_filter_fn(struct dma_chan * chan,void * param)1446 static bool pxad_filter_fn(struct dma_chan *chan, void *param)
1447 {
1448 	struct pxad_chan *c = to_pxad_chan(chan);
1449 	struct pxad_param *p = param;
1450 
1451 	if (chan->device->dev->driver != &pxad_driver.driver)
1452 		return false;
1453 
1454 	c->drcmr = p->drcmr;
1455 	c->prio = p->prio;
1456 
1457 	return true;
1458 }
1459 
1460 module_platform_driver(pxad_driver);
1461 
1462 MODULE_DESCRIPTION("Marvell PXA Peripheral DMA Driver");
1463 MODULE_AUTHOR("Robert Jarzmik <robert.jarzmik@free.fr>");
1464 MODULE_LICENSE("GPL v2");
1465