xref: /openbmc/linux/drivers/spi/spi-bcm63xx.c (revision 7b6d864b)
1 /*
2  * Broadcom BCM63xx SPI controller support
3  *
4  * Copyright (C) 2009-2012 Florian Fainelli <florian@openwrt.org>
5  * Copyright (C) 2010 Tanguy Bouzeloc <tanguy.bouzeloc@efixo.com>
6  *
7  * This program is free software; you can redistribute it and/or
8  * modify it under the terms of the GNU General Public License
9  * as published by the Free Software Foundation; either version 2
10  * of the License, or (at your option) any later version.
11  *
12  * This program is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15  * GNU General Public License for more details.
16  *
17  * You should have received a copy of the GNU General Public License
18  * along with this program; if not, write to the
19  * Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
20  */
21 
22 #include <linux/kernel.h>
23 #include <linux/init.h>
24 #include <linux/clk.h>
25 #include <linux/io.h>
26 #include <linux/module.h>
27 #include <linux/platform_device.h>
28 #include <linux/delay.h>
29 #include <linux/interrupt.h>
30 #include <linux/spi/spi.h>
31 #include <linux/completion.h>
32 #include <linux/err.h>
33 #include <linux/workqueue.h>
34 #include <linux/pm_runtime.h>
35 
36 #include <bcm63xx_dev_spi.h>
37 
38 #define PFX		KBUILD_MODNAME
39 
40 #define BCM63XX_SPI_MAX_PREPEND		15
41 
42 struct bcm63xx_spi {
43 	struct completion	done;
44 
45 	void __iomem		*regs;
46 	int			irq;
47 
48 	/* Platform data */
49 	unsigned		fifo_size;
50 	unsigned int		msg_type_shift;
51 	unsigned int		msg_ctl_width;
52 
53 	/* data iomem */
54 	u8 __iomem		*tx_io;
55 	const u8 __iomem	*rx_io;
56 
57 	struct clk		*clk;
58 	struct platform_device	*pdev;
59 };
60 
61 static inline u8 bcm_spi_readb(struct bcm63xx_spi *bs,
62 				unsigned int offset)
63 {
64 	return bcm_readb(bs->regs + bcm63xx_spireg(offset));
65 }
66 
67 static inline u16 bcm_spi_readw(struct bcm63xx_spi *bs,
68 				unsigned int offset)
69 {
70 	return bcm_readw(bs->regs + bcm63xx_spireg(offset));
71 }
72 
73 static inline void bcm_spi_writeb(struct bcm63xx_spi *bs,
74 				  u8 value, unsigned int offset)
75 {
76 	bcm_writeb(value, bs->regs + bcm63xx_spireg(offset));
77 }
78 
79 static inline void bcm_spi_writew(struct bcm63xx_spi *bs,
80 				  u16 value, unsigned int offset)
81 {
82 	bcm_writew(value, bs->regs + bcm63xx_spireg(offset));
83 }
84 
85 static const unsigned bcm63xx_spi_freq_table[SPI_CLK_MASK][2] = {
86 	{ 20000000, SPI_CLK_20MHZ },
87 	{ 12500000, SPI_CLK_12_50MHZ },
88 	{  6250000, SPI_CLK_6_250MHZ },
89 	{  3125000, SPI_CLK_3_125MHZ },
90 	{  1563000, SPI_CLK_1_563MHZ },
91 	{   781000, SPI_CLK_0_781MHZ },
92 	{   391000, SPI_CLK_0_391MHZ }
93 };
94 
95 static void bcm63xx_spi_setup_transfer(struct spi_device *spi,
96 				      struct spi_transfer *t)
97 {
98 	struct bcm63xx_spi *bs = spi_master_get_devdata(spi->master);
99 	u8 clk_cfg, reg;
100 	int i;
101 
102 	/* Find the closest clock configuration */
103 	for (i = 0; i < SPI_CLK_MASK; i++) {
104 		if (t->speed_hz >= bcm63xx_spi_freq_table[i][0]) {
105 			clk_cfg = bcm63xx_spi_freq_table[i][1];
106 			break;
107 		}
108 	}
109 
110 	/* No matching configuration found, default to lowest */
111 	if (i == SPI_CLK_MASK)
112 		clk_cfg = SPI_CLK_0_391MHZ;
113 
114 	/* clear existing clock configuration bits of the register */
115 	reg = bcm_spi_readb(bs, SPI_CLK_CFG);
116 	reg &= ~SPI_CLK_MASK;
117 	reg |= clk_cfg;
118 
119 	bcm_spi_writeb(bs, reg, SPI_CLK_CFG);
120 	dev_dbg(&spi->dev, "Setting clock register to %02x (hz %d)\n",
121 		clk_cfg, t->speed_hz);
122 }
123 
124 /* the spi->mode bits understood by this driver: */
125 #define MODEBITS (SPI_CPOL | SPI_CPHA)
126 
127 static int bcm63xx_txrx_bufs(struct spi_device *spi, struct spi_transfer *first,
128 				unsigned int num_transfers)
129 {
130 	struct bcm63xx_spi *bs = spi_master_get_devdata(spi->master);
131 	u16 msg_ctl;
132 	u16 cmd;
133 	u8 rx_tail;
134 	unsigned int i, timeout = 0, prepend_len = 0, len = 0;
135 	struct spi_transfer *t = first;
136 	bool do_rx = false;
137 	bool do_tx = false;
138 
139 	/* Disable the CMD_DONE interrupt */
140 	bcm_spi_writeb(bs, 0, SPI_INT_MASK);
141 
142 	dev_dbg(&spi->dev, "txrx: tx %p, rx %p, len %d\n",
143 		t->tx_buf, t->rx_buf, t->len);
144 
145 	if (num_transfers > 1 && t->tx_buf && t->len <= BCM63XX_SPI_MAX_PREPEND)
146 		prepend_len = t->len;
147 
148 	/* prepare the buffer */
149 	for (i = 0; i < num_transfers; i++) {
150 		if (t->tx_buf) {
151 			do_tx = true;
152 			memcpy_toio(bs->tx_io + len, t->tx_buf, t->len);
153 
154 			/* don't prepend more than one tx */
155 			if (t != first)
156 				prepend_len = 0;
157 		}
158 
159 		if (t->rx_buf) {
160 			do_rx = true;
161 			/* prepend is half-duplex write only */
162 			if (t == first)
163 				prepend_len = 0;
164 		}
165 
166 		len += t->len;
167 
168 		t = list_entry(t->transfer_list.next, struct spi_transfer,
169 			       transfer_list);
170 	}
171 
172 	len -= prepend_len;
173 
174 	init_completion(&bs->done);
175 
176 	/* Fill in the Message control register */
177 	msg_ctl = (len << SPI_BYTE_CNT_SHIFT);
178 
179 	if (do_rx && do_tx && prepend_len == 0)
180 		msg_ctl |= (SPI_FD_RW << bs->msg_type_shift);
181 	else if (do_rx)
182 		msg_ctl |= (SPI_HD_R << bs->msg_type_shift);
183 	else if (do_tx)
184 		msg_ctl |= (SPI_HD_W << bs->msg_type_shift);
185 
186 	switch (bs->msg_ctl_width) {
187 	case 8:
188 		bcm_spi_writeb(bs, msg_ctl, SPI_MSG_CTL);
189 		break;
190 	case 16:
191 		bcm_spi_writew(bs, msg_ctl, SPI_MSG_CTL);
192 		break;
193 	}
194 
195 	/* Issue the transfer */
196 	cmd = SPI_CMD_START_IMMEDIATE;
197 	cmd |= (prepend_len << SPI_CMD_PREPEND_BYTE_CNT_SHIFT);
198 	cmd |= (spi->chip_select << SPI_CMD_DEVICE_ID_SHIFT);
199 	bcm_spi_writew(bs, cmd, SPI_CMD);
200 
201 	/* Enable the CMD_DONE interrupt */
202 	bcm_spi_writeb(bs, SPI_INTR_CMD_DONE, SPI_INT_MASK);
203 
204 	timeout = wait_for_completion_timeout(&bs->done, HZ);
205 	if (!timeout)
206 		return -ETIMEDOUT;
207 
208 	/* read out all data */
209 	rx_tail = bcm_spi_readb(bs, SPI_RX_TAIL);
210 
211 	if (do_rx && rx_tail != len)
212 		return -EIO;
213 
214 	if (!rx_tail)
215 		return 0;
216 
217 	len = 0;
218 	t = first;
219 	/* Read out all the data */
220 	for (i = 0; i < num_transfers; i++) {
221 		if (t->rx_buf)
222 			memcpy_fromio(t->rx_buf, bs->rx_io + len, t->len);
223 
224 		if (t != first || prepend_len == 0)
225 			len += t->len;
226 
227 		t = list_entry(t->transfer_list.next, struct spi_transfer,
228 			       transfer_list);
229 	}
230 
231 	return 0;
232 }
233 
234 static int bcm63xx_spi_prepare_transfer(struct spi_master *master)
235 {
236 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
237 
238 	pm_runtime_get_sync(&bs->pdev->dev);
239 
240 	return 0;
241 }
242 
243 static int bcm63xx_spi_unprepare_transfer(struct spi_master *master)
244 {
245 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
246 
247 	pm_runtime_put(&bs->pdev->dev);
248 
249 	return 0;
250 }
251 
252 static int bcm63xx_spi_transfer_one(struct spi_master *master,
253 					struct spi_message *m)
254 {
255 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
256 	struct spi_transfer *t, *first = NULL;
257 	struct spi_device *spi = m->spi;
258 	int status = 0;
259 	unsigned int n_transfers = 0, total_len = 0;
260 	bool can_use_prepend = false;
261 
262 	/*
263 	 * This SPI controller does not support keeping CS active after a
264 	 * transfer.
265 	 * Work around this by merging as many transfers we can into one big
266 	 * full-duplex transfers.
267 	 */
268 	list_for_each_entry(t, &m->transfers, transfer_list) {
269 		if (!first)
270 			first = t;
271 
272 		n_transfers++;
273 		total_len += t->len;
274 
275 		if (n_transfers == 2 && !first->rx_buf && !t->tx_buf &&
276 		    first->len <= BCM63XX_SPI_MAX_PREPEND)
277 			can_use_prepend = true;
278 		else if (can_use_prepend && t->tx_buf)
279 			can_use_prepend = false;
280 
281 		/* we can only transfer one fifo worth of data */
282 		if ((can_use_prepend &&
283 		     total_len > (bs->fifo_size + BCM63XX_SPI_MAX_PREPEND)) ||
284 		    (!can_use_prepend && total_len > bs->fifo_size)) {
285 			dev_err(&spi->dev, "unable to do transfers larger than FIFO size (%i > %i)\n",
286 				total_len, bs->fifo_size);
287 			status = -EINVAL;
288 			goto exit;
289 		}
290 
291 		/* all combined transfers have to have the same speed */
292 		if (t->speed_hz != first->speed_hz) {
293 			dev_err(&spi->dev, "unable to change speed between transfers\n");
294 			status = -EINVAL;
295 			goto exit;
296 		}
297 
298 		/* CS will be deasserted directly after transfer */
299 		if (t->delay_usecs) {
300 			dev_err(&spi->dev, "unable to keep CS asserted after transfer\n");
301 			status = -EINVAL;
302 			goto exit;
303 		}
304 
305 		if (t->cs_change ||
306 		    list_is_last(&t->transfer_list, &m->transfers)) {
307 			/* configure adapter for a new transfer */
308 			bcm63xx_spi_setup_transfer(spi, first);
309 
310 			/* send the data */
311 			status = bcm63xx_txrx_bufs(spi, first, n_transfers);
312 			if (status)
313 				goto exit;
314 
315 			m->actual_length += total_len;
316 
317 			first = NULL;
318 			n_transfers = 0;
319 			total_len = 0;
320 			can_use_prepend = false;
321 		}
322 	}
323 exit:
324 	m->status = status;
325 	spi_finalize_current_message(master);
326 
327 	return 0;
328 }
329 
330 /* This driver supports single master mode only. Hence
331  * CMD_DONE is the only interrupt we care about
332  */
333 static irqreturn_t bcm63xx_spi_interrupt(int irq, void *dev_id)
334 {
335 	struct spi_master *master = (struct spi_master *)dev_id;
336 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
337 	u8 intr;
338 
339 	/* Read interupts and clear them immediately */
340 	intr = bcm_spi_readb(bs, SPI_INT_STATUS);
341 	bcm_spi_writeb(bs, SPI_INTR_CLEAR_ALL, SPI_INT_STATUS);
342 	bcm_spi_writeb(bs, 0, SPI_INT_MASK);
343 
344 	/* A transfer completed */
345 	if (intr & SPI_INTR_CMD_DONE)
346 		complete(&bs->done);
347 
348 	return IRQ_HANDLED;
349 }
350 
351 
352 static int bcm63xx_spi_probe(struct platform_device *pdev)
353 {
354 	struct resource *r;
355 	struct device *dev = &pdev->dev;
356 	struct bcm63xx_spi_pdata *pdata = pdev->dev.platform_data;
357 	int irq;
358 	struct spi_master *master;
359 	struct clk *clk;
360 	struct bcm63xx_spi *bs;
361 	int ret;
362 
363 	r = platform_get_resource(pdev, IORESOURCE_MEM, 0);
364 	if (!r) {
365 		dev_err(dev, "no iomem\n");
366 		ret = -ENXIO;
367 		goto out;
368 	}
369 
370 	irq = platform_get_irq(pdev, 0);
371 	if (irq < 0) {
372 		dev_err(dev, "no irq\n");
373 		ret = -ENXIO;
374 		goto out;
375 	}
376 
377 	clk = clk_get(dev, "spi");
378 	if (IS_ERR(clk)) {
379 		dev_err(dev, "no clock for device\n");
380 		ret = PTR_ERR(clk);
381 		goto out;
382 	}
383 
384 	master = spi_alloc_master(dev, sizeof(*bs));
385 	if (!master) {
386 		dev_err(dev, "out of memory\n");
387 		ret = -ENOMEM;
388 		goto out_clk;
389 	}
390 
391 	bs = spi_master_get_devdata(master);
392 
393 	platform_set_drvdata(pdev, master);
394 	bs->pdev = pdev;
395 
396 	bs->regs = devm_ioremap_resource(&pdev->dev, r);
397 	if (IS_ERR(bs->regs)) {
398 		ret = PTR_ERR(bs->regs);
399 		goto out_err;
400 	}
401 
402 	bs->irq = irq;
403 	bs->clk = clk;
404 	bs->fifo_size = pdata->fifo_size;
405 
406 	ret = devm_request_irq(&pdev->dev, irq, bcm63xx_spi_interrupt, 0,
407 							pdev->name, master);
408 	if (ret) {
409 		dev_err(dev, "unable to request irq\n");
410 		goto out_err;
411 	}
412 
413 	master->bus_num = pdata->bus_num;
414 	master->num_chipselect = pdata->num_chipselect;
415 	master->prepare_transfer_hardware = bcm63xx_spi_prepare_transfer;
416 	master->unprepare_transfer_hardware = bcm63xx_spi_unprepare_transfer;
417 	master->transfer_one_message = bcm63xx_spi_transfer_one;
418 	master->mode_bits = MODEBITS;
419 	master->bits_per_word_mask = SPI_BPW_MASK(8);
420 	bs->msg_type_shift = pdata->msg_type_shift;
421 	bs->msg_ctl_width = pdata->msg_ctl_width;
422 	bs->tx_io = (u8 *)(bs->regs + bcm63xx_spireg(SPI_MSG_DATA));
423 	bs->rx_io = (const u8 *)(bs->regs + bcm63xx_spireg(SPI_RX_DATA));
424 
425 	switch (bs->msg_ctl_width) {
426 	case 8:
427 	case 16:
428 		break;
429 	default:
430 		dev_err(dev, "unsupported MSG_CTL width: %d\n",
431 			 bs->msg_ctl_width);
432 		goto out_err;
433 	}
434 
435 	/* Initialize hardware */
436 	clk_prepare_enable(bs->clk);
437 	bcm_spi_writeb(bs, SPI_INTR_CLEAR_ALL, SPI_INT_STATUS);
438 
439 	/* register and we are done */
440 	ret = spi_register_master(master);
441 	if (ret) {
442 		dev_err(dev, "spi register failed\n");
443 		goto out_clk_disable;
444 	}
445 
446 	dev_info(dev, "at 0x%08x (irq %d, FIFOs size %d)\n",
447 		 r->start, irq, bs->fifo_size);
448 
449 	return 0;
450 
451 out_clk_disable:
452 	clk_disable_unprepare(clk);
453 out_err:
454 	spi_master_put(master);
455 out_clk:
456 	clk_put(clk);
457 out:
458 	return ret;
459 }
460 
461 static int bcm63xx_spi_remove(struct platform_device *pdev)
462 {
463 	struct spi_master *master = spi_master_get(platform_get_drvdata(pdev));
464 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
465 
466 	spi_unregister_master(master);
467 
468 	/* reset spi block */
469 	bcm_spi_writeb(bs, 0, SPI_INT_MASK);
470 
471 	/* HW shutdown */
472 	clk_disable_unprepare(bs->clk);
473 	clk_put(bs->clk);
474 
475 	spi_master_put(master);
476 
477 	return 0;
478 }
479 
480 #ifdef CONFIG_PM
481 static int bcm63xx_spi_suspend(struct device *dev)
482 {
483 	struct spi_master *master =
484 			platform_get_drvdata(to_platform_device(dev));
485 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
486 
487 	spi_master_suspend(master);
488 
489 	clk_disable_unprepare(bs->clk);
490 
491 	return 0;
492 }
493 
494 static int bcm63xx_spi_resume(struct device *dev)
495 {
496 	struct spi_master *master =
497 			platform_get_drvdata(to_platform_device(dev));
498 	struct bcm63xx_spi *bs = spi_master_get_devdata(master);
499 
500 	clk_prepare_enable(bs->clk);
501 
502 	spi_master_resume(master);
503 
504 	return 0;
505 }
506 
507 static const struct dev_pm_ops bcm63xx_spi_pm_ops = {
508 	.suspend	= bcm63xx_spi_suspend,
509 	.resume		= bcm63xx_spi_resume,
510 };
511 
512 #define BCM63XX_SPI_PM_OPS	(&bcm63xx_spi_pm_ops)
513 #else
514 #define BCM63XX_SPI_PM_OPS	NULL
515 #endif
516 
517 static struct platform_driver bcm63xx_spi_driver = {
518 	.driver = {
519 		.name	= "bcm63xx-spi",
520 		.owner	= THIS_MODULE,
521 		.pm	= BCM63XX_SPI_PM_OPS,
522 	},
523 	.probe		= bcm63xx_spi_probe,
524 	.remove		= bcm63xx_spi_remove,
525 };
526 
527 module_platform_driver(bcm63xx_spi_driver);
528 
529 MODULE_ALIAS("platform:bcm63xx_spi");
530 MODULE_AUTHOR("Florian Fainelli <florian@openwrt.org>");
531 MODULE_AUTHOR("Tanguy Bouzeloc <tanguy.bouzeloc@efixo.com>");
532 MODULE_DESCRIPTION("Broadcom BCM63xx SPI Controller driver");
533 MODULE_LICENSE("GPL");
534