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1/*
2 * Copyright (c) 2006 Ben Dooks
3 * Copyright 2006-2009 Simtec Electronics
4 * Ben Dooks <ben@simtec.co.uk>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 *
10*/
11
12#include <linux/init.h>
13#include <linux/spinlock.h>
14#include <linux/workqueue.h>
15#include <linux/interrupt.h>
16#include <linux/delay.h>
17#include <linux/errno.h>
18#include <linux/err.h>
19#include <linux/clk.h>
20#include <linux/platform_device.h>
21#include <linux/gpio.h>
22#include <linux/io.h>
23#include <linux/slab.h>
24
25#include <linux/spi/spi.h>
26#include <linux/spi/spi_bitbang.h>
27
28#include <plat/regs-spi.h>
29#include <mach/spi.h>
30
31#include <plat/fiq.h>
32#include <asm/fiq.h>
33
34#include "spi-s3c24xx-fiq.h"
35
36/**
37 * s3c24xx_spi_devstate - per device data
38 * @hz: Last frequency calculated for @sppre field.
39 * @mode: Last mode setting for the @spcon field.
40 * @spcon: Value to write to the SPCON register.
41 * @sppre: Value to write to the SPPRE register.
42 */
43struct s3c24xx_spi_devstate {
44 unsigned int hz;
45 unsigned int mode;
46 u8 spcon;
47 u8 sppre;
48};
49
50enum spi_fiq_mode {
51 FIQ_MODE_NONE = 0,
52 FIQ_MODE_TX = 1,
53 FIQ_MODE_RX = 2,
54 FIQ_MODE_TXRX = 3,
55};
56
57struct s3c24xx_spi {
58 /* bitbang has to be first */
59 struct spi_bitbang bitbang;
60 struct completion done;
61
62 void __iomem *regs;
63 int irq;
64 int len;
65 int count;
66
67 struct fiq_handler fiq_handler;
68 enum spi_fiq_mode fiq_mode;
69 unsigned char fiq_inuse;
70 unsigned char fiq_claimed;
71
72 void (*set_cs)(struct s3c2410_spi_info *spi,
73 int cs, int pol);
74
75 /* data buffers */
76 const unsigned char *tx;
77 unsigned char *rx;
78
79 struct clk *clk;
80 struct resource *ioarea;
81 struct spi_master *master;
82 struct spi_device *curdev;
83 struct device *dev;
84 struct s3c2410_spi_info *pdata;
85};
86
87
88#define SPCON_DEFAULT (S3C2410_SPCON_MSTR | S3C2410_SPCON_SMOD_INT)
89#define SPPIN_DEFAULT (S3C2410_SPPIN_KEEP)
90
91static inline struct s3c24xx_spi *to_hw(struct spi_device *sdev)
92{
93 return spi_master_get_devdata(sdev->master);
94}
95
96static void s3c24xx_spi_gpiocs(struct s3c2410_spi_info *spi, int cs, int pol)
97{
98 gpio_set_value(spi->pin_cs, pol);
99}
100
101static void s3c24xx_spi_chipsel(struct spi_device *spi, int value)
102{
103 struct s3c24xx_spi_devstate *cs = spi->controller_state;
104 struct s3c24xx_spi *hw = to_hw(spi);
105 unsigned int cspol = spi->mode & SPI_CS_HIGH ? 1 : 0;
106
107 /* change the chipselect state and the state of the spi engine clock */
108
109 switch (value) {
110 case BITBANG_CS_INACTIVE:
111 hw->set_cs(hw->pdata, spi->chip_select, cspol^1);
112 writeb(cs->spcon, hw->regs + S3C2410_SPCON);
113 break;
114
115 case BITBANG_CS_ACTIVE:
116 writeb(cs->spcon | S3C2410_SPCON_ENSCK,
117 hw->regs + S3C2410_SPCON);
118 hw->set_cs(hw->pdata, spi->chip_select, cspol);
119 break;
120 }
121}
122
123static int s3c24xx_spi_update_state(struct spi_device *spi,
124 struct spi_transfer *t)
125{
126 struct s3c24xx_spi *hw = to_hw(spi);
127 struct s3c24xx_spi_devstate *cs = spi->controller_state;
128 unsigned int bpw;
129 unsigned int hz;
130 unsigned int div;
131 unsigned long clk;
132
133 bpw = t ? t->bits_per_word : spi->bits_per_word;
134 hz = t ? t->speed_hz : spi->max_speed_hz;
135
136 if (!bpw)
137 bpw = 8;
138
139 if (!hz)
140 hz = spi->max_speed_hz;
141
142 if (bpw != 8) {
143 dev_err(&spi->dev, "invalid bits-per-word (%d)\n", bpw);
144 return -EINVAL;
145 }
146
147 if (spi->mode != cs->mode) {
148 u8 spcon = SPCON_DEFAULT | S3C2410_SPCON_ENSCK;
149
150 if (spi->mode & SPI_CPHA)
151 spcon |= S3C2410_SPCON_CPHA_FMTB;
152
153 if (spi->mode & SPI_CPOL)
154 spcon |= S3C2410_SPCON_CPOL_HIGH;
155
156 cs->mode = spi->mode;
157 cs->spcon = spcon;
158 }
159
160 if (cs->hz != hz) {
161 clk = clk_get_rate(hw->clk);
162 div = DIV_ROUND_UP(clk, hz * 2) - 1;
163
164 if (div > 255)
165 div = 255;
166
167 dev_dbg(&spi->dev, "pre-scaler=%d (wanted %d, got %ld)\n",
168 div, hz, clk / (2 * (div + 1)));
169
170 cs->hz = hz;
171 cs->sppre = div;
172 }
173
174 return 0;
175}
176
177static int s3c24xx_spi_setupxfer(struct spi_device *spi,
178 struct spi_transfer *t)
179{
180 struct s3c24xx_spi_devstate *cs = spi->controller_state;
181 struct s3c24xx_spi *hw = to_hw(spi);
182 int ret;
183
184 ret = s3c24xx_spi_update_state(spi, t);
185 if (!ret)
186 writeb(cs->sppre, hw->regs + S3C2410_SPPRE);
187
188 return ret;
189}
190
191static int s3c24xx_spi_setup(struct spi_device *spi)
192{
193 struct s3c24xx_spi_devstate *cs = spi->controller_state;
194 struct s3c24xx_spi *hw = to_hw(spi);
195 int ret;
196
197 /* allocate settings on the first call */
198 if (!cs) {
199 cs = kzalloc(sizeof(struct s3c24xx_spi_devstate), GFP_KERNEL);
200 if (!cs) {
201 dev_err(&spi->dev, "no memory for controller state\n");
202 return -ENOMEM;
203 }
204
205 cs->spcon = SPCON_DEFAULT;
206 cs->hz = -1;
207 spi->controller_state = cs;
208 }
209
210 /* initialise the state from the device */
211 ret = s3c24xx_spi_update_state(spi, NULL);
212 if (ret)
213 return ret;
214
215 spin_lock(&hw->bitbang.lock);
216 if (!hw->bitbang.busy) {
217 hw->bitbang.chipselect(spi, BITBANG_CS_INACTIVE);
218 /* need to ndelay for 0.5 clocktick ? */
219 }
220 spin_unlock(&hw->bitbang.lock);
221
222 return 0;
223}
224
225static void s3c24xx_spi_cleanup(struct spi_device *spi)
226{
227 kfree(spi->controller_state);
228}
229
230static inline unsigned int hw_txbyte(struct s3c24xx_spi *hw, int count)
231{
232 return hw->tx ? hw->tx[count] : 0;
233}
234
235#ifdef CONFIG_SPI_S3C24XX_FIQ
236/* Support for FIQ based pseudo-DMA to improve the transfer speed.
237 *
238 * This code uses the assembly helper in spi_s3c24xx_spi.S which is
239 * used by the FIQ core to move data between main memory and the peripheral
240 * block. Since this is code running on the processor, there is no problem
241 * with cache coherency of the buffers, so we can use any buffer we like.
242 */
243
244/**
245 * struct spi_fiq_code - FIQ code and header
246 * @length: The length of the code fragment, excluding this header.
247 * @ack_offset: The offset from @data to the word to place the IRQ ACK bit at.
248 * @data: The code itself to install as a FIQ handler.
249 */
250struct spi_fiq_code {
251 u32 length;
252 u32 ack_offset;
253 u8 data[0];
254};
255
256extern struct spi_fiq_code s3c24xx_spi_fiq_txrx;
257extern struct spi_fiq_code s3c24xx_spi_fiq_tx;
258extern struct spi_fiq_code s3c24xx_spi_fiq_rx;
259
260/**
261 * ack_bit - turn IRQ into IRQ acknowledgement bit
262 * @irq: The interrupt number
263 *
264 * Returns the bit to write to the interrupt acknowledge register.
265 */
266static inline u32 ack_bit(unsigned int irq)
267{
268 return 1 << (irq - IRQ_EINT0);
269}
270
271/**
272 * s3c24xx_spi_tryfiq - attempt to claim and setup FIQ for transfer
273 * @hw: The hardware state.
274 *
275 * Claim the FIQ handler (only one can be active at any one time) and
276 * then setup the correct transfer code for this transfer.
277 *
278 * This call updates all the necessary state information if successful,
279 * so the caller does not need to do anything more than start the transfer
280 * as normal, since the IRQ will have been re-routed to the FIQ handler.
281*/
282void s3c24xx_spi_tryfiq(struct s3c24xx_spi *hw)
283{
284 struct pt_regs regs;
285 enum spi_fiq_mode mode;
286 struct spi_fiq_code *code;
287 int ret;
288
289 if (!hw->fiq_claimed) {
290 /* try and claim fiq if we haven't got it, and if not
291 * then return and simply use another transfer method */
292
293 ret = claim_fiq(&hw->fiq_handler);
294 if (ret)
295 return;
296 }
297
298 if (hw->tx && !hw->rx)
299 mode = FIQ_MODE_TX;
300 else if (hw->rx && !hw->tx)
301 mode = FIQ_MODE_RX;
302 else
303 mode = FIQ_MODE_TXRX;
304
305 regs.uregs[fiq_rspi] = (long)hw->regs;
306 regs.uregs[fiq_rrx] = (long)hw->rx;
307 regs.uregs[fiq_rtx] = (long)hw->tx + 1;
308 regs.uregs[fiq_rcount] = hw->len - 1;
309 regs.uregs[fiq_rirq] = (long)S3C24XX_VA_IRQ;
310
311 set_fiq_regs(®s);
312
313 if (hw->fiq_mode != mode) {
314 u32 *ack_ptr;
315
316 hw->fiq_mode = mode;
317
318 switch (mode) {
319 case FIQ_MODE_TX:
320 code = &s3c24xx_spi_fiq_tx;
321 break;
322 case FIQ_MODE_RX:
323 code = &s3c24xx_spi_fiq_rx;
324 break;
325 case FIQ_MODE_TXRX:
326 code = &s3c24xx_spi_fiq_txrx;
327 break;
328 default:
329 code = NULL;
330 }
331
332 BUG_ON(!code);
333
334 ack_ptr = (u32 *)&code->data[code->ack_offset];
335 *ack_ptr = ack_bit(hw->irq);
336
337 set_fiq_handler(&code->data, code->length);
338 }
339
340 s3c24xx_set_fiq(hw->irq, true);
341
342 hw->fiq_mode = mode;
343 hw->fiq_inuse = 1;
344}
345
346/**
347 * s3c24xx_spi_fiqop - FIQ core code callback
348 * @pw: Data registered with the handler
349 * @release: Whether this is a release or a return.
350 *
351 * Called by the FIQ code when another module wants to use the FIQ, so
352 * return whether we are currently using this or not and then update our
353 * internal state.
354 */
355static int s3c24xx_spi_fiqop(void *pw, int release)
356{
357 struct s3c24xx_spi *hw = pw;
358 int ret = 0;
359
360 if (release) {
361 if (hw->fiq_inuse)
362 ret = -EBUSY;
363
364 /* note, we do not need to unroute the FIQ, as the FIQ
365 * vector code de-routes it to signal the end of transfer */
366
367 hw->fiq_mode = FIQ_MODE_NONE;
368 hw->fiq_claimed = 0;
369 } else {
370 hw->fiq_claimed = 1;
371 }
372
373 return ret;
374}
375
376/**
377 * s3c24xx_spi_initfiq - setup the information for the FIQ core
378 * @hw: The hardware state.
379 *
380 * Setup the fiq_handler block to pass to the FIQ core.
381 */
382static inline void s3c24xx_spi_initfiq(struct s3c24xx_spi *hw)
383{
384 hw->fiq_handler.dev_id = hw;
385 hw->fiq_handler.name = dev_name(hw->dev);
386 hw->fiq_handler.fiq_op = s3c24xx_spi_fiqop;
387}
388
389/**
390 * s3c24xx_spi_usefiq - return if we should be using FIQ.
391 * @hw: The hardware state.
392 *
393 * Return true if the platform data specifies whether this channel is
394 * allowed to use the FIQ.
395 */
396static inline bool s3c24xx_spi_usefiq(struct s3c24xx_spi *hw)
397{
398 return hw->pdata->use_fiq;
399}
400
401/**
402 * s3c24xx_spi_usingfiq - return if channel is using FIQ
403 * @spi: The hardware state.
404 *
405 * Return whether the channel is currently using the FIQ (separate from
406 * whether the FIQ is claimed).
407 */
408static inline bool s3c24xx_spi_usingfiq(struct s3c24xx_spi *spi)
409{
410 return spi->fiq_inuse;
411}
412#else
413
414static inline void s3c24xx_spi_initfiq(struct s3c24xx_spi *s) { }
415static inline void s3c24xx_spi_tryfiq(struct s3c24xx_spi *s) { }
416static inline bool s3c24xx_spi_usefiq(struct s3c24xx_spi *s) { return false; }
417static inline bool s3c24xx_spi_usingfiq(struct s3c24xx_spi *s) { return false; }
418
419#endif /* CONFIG_SPI_S3C24XX_FIQ */
420
421static int s3c24xx_spi_txrx(struct spi_device *spi, struct spi_transfer *t)
422{
423 struct s3c24xx_spi *hw = to_hw(spi);
424
425 hw->tx = t->tx_buf;
426 hw->rx = t->rx_buf;
427 hw->len = t->len;
428 hw->count = 0;
429
430 init_completion(&hw->done);
431
432 hw->fiq_inuse = 0;
433 if (s3c24xx_spi_usefiq(hw) && t->len >= 3)
434 s3c24xx_spi_tryfiq(hw);
435
436 /* send the first byte */
437 writeb(hw_txbyte(hw, 0), hw->regs + S3C2410_SPTDAT);
438
439 wait_for_completion(&hw->done);
440 return hw->count;
441}
442
443static irqreturn_t s3c24xx_spi_irq(int irq, void *dev)
444{
445 struct s3c24xx_spi *hw = dev;
446 unsigned int spsta = readb(hw->regs + S3C2410_SPSTA);
447 unsigned int count = hw->count;
448
449 if (spsta & S3C2410_SPSTA_DCOL) {
450 dev_dbg(hw->dev, "data-collision\n");
451 complete(&hw->done);
452 goto irq_done;
453 }
454
455 if (!(spsta & S3C2410_SPSTA_READY)) {
456 dev_dbg(hw->dev, "spi not ready for tx?\n");
457 complete(&hw->done);
458 goto irq_done;
459 }
460
461 if (!s3c24xx_spi_usingfiq(hw)) {
462 hw->count++;
463
464 if (hw->rx)
465 hw->rx[count] = readb(hw->regs + S3C2410_SPRDAT);
466
467 count++;
468
469 if (count < hw->len)
470 writeb(hw_txbyte(hw, count), hw->regs + S3C2410_SPTDAT);
471 else
472 complete(&hw->done);
473 } else {
474 hw->count = hw->len;
475 hw->fiq_inuse = 0;
476
477 if (hw->rx)
478 hw->rx[hw->len-1] = readb(hw->regs + S3C2410_SPRDAT);
479
480 complete(&hw->done);
481 }
482
483 irq_done:
484 return IRQ_HANDLED;
485}
486
487static void s3c24xx_spi_initialsetup(struct s3c24xx_spi *hw)
488{
489 /* for the moment, permanently enable the clock */
490
491 clk_enable(hw->clk);
492
493 /* program defaults into the registers */
494
495 writeb(0xff, hw->regs + S3C2410_SPPRE);
496 writeb(SPPIN_DEFAULT, hw->regs + S3C2410_SPPIN);
497 writeb(SPCON_DEFAULT, hw->regs + S3C2410_SPCON);
498
499 if (hw->pdata) {
500 if (hw->set_cs == s3c24xx_spi_gpiocs)
501 gpio_direction_output(hw->pdata->pin_cs, 1);
502
503 if (hw->pdata->gpio_setup)
504 hw->pdata->gpio_setup(hw->pdata, 1);
505 }
506}
507
508static int __init s3c24xx_spi_probe(struct platform_device *pdev)
509{
510 struct s3c2410_spi_info *pdata;
511 struct s3c24xx_spi *hw;
512 struct spi_master *master;
513 struct resource *res;
514 int err = 0;
515
516 master = spi_alloc_master(&pdev->dev, sizeof(struct s3c24xx_spi));
517 if (master == NULL) {
518 dev_err(&pdev->dev, "No memory for spi_master\n");
519 err = -ENOMEM;
520 goto err_nomem;
521 }
522
523 hw = spi_master_get_devdata(master);
524 memset(hw, 0, sizeof(struct s3c24xx_spi));
525
526 hw->master = spi_master_get(master);
527 hw->pdata = pdata = pdev->dev.platform_data;
528 hw->dev = &pdev->dev;
529
530 if (pdata == NULL) {
531 dev_err(&pdev->dev, "No platform data supplied\n");
532 err = -ENOENT;
533 goto err_no_pdata;
534 }
535
536 platform_set_drvdata(pdev, hw);
537 init_completion(&hw->done);
538
539 /* initialise fiq handler */
540
541 s3c24xx_spi_initfiq(hw);
542
543 /* setup the master state. */
544
545 /* the spi->mode bits understood by this driver: */
546 master->mode_bits = SPI_CPOL | SPI_CPHA | SPI_CS_HIGH;
547
548 master->num_chipselect = hw->pdata->num_cs;
549 master->bus_num = pdata->bus_num;
550
551 /* setup the state for the bitbang driver */
552
553 hw->bitbang.master = hw->master;
554 hw->bitbang.setup_transfer = s3c24xx_spi_setupxfer;
555 hw->bitbang.chipselect = s3c24xx_spi_chipsel;
556 hw->bitbang.txrx_bufs = s3c24xx_spi_txrx;
557
558 hw->master->setup = s3c24xx_spi_setup;
559 hw->master->cleanup = s3c24xx_spi_cleanup;
560
561 dev_dbg(hw->dev, "bitbang at %p\n", &hw->bitbang);
562
563 /* find and map our resources */
564
565 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
566 if (res == NULL) {
567 dev_err(&pdev->dev, "Cannot get IORESOURCE_MEM\n");
568 err = -ENOENT;
569 goto err_no_iores;
570 }
571
572 hw->ioarea = request_mem_region(res->start, resource_size(res),
573 pdev->name);
574
575 if (hw->ioarea == NULL) {
576 dev_err(&pdev->dev, "Cannot reserve region\n");
577 err = -ENXIO;
578 goto err_no_iores;
579 }
580
581 hw->regs = ioremap(res->start, resource_size(res));
582 if (hw->regs == NULL) {
583 dev_err(&pdev->dev, "Cannot map IO\n");
584 err = -ENXIO;
585 goto err_no_iomap;
586 }
587
588 hw->irq = platform_get_irq(pdev, 0);
589 if (hw->irq < 0) {
590 dev_err(&pdev->dev, "No IRQ specified\n");
591 err = -ENOENT;
592 goto err_no_irq;
593 }
594
595 err = request_irq(hw->irq, s3c24xx_spi_irq, 0, pdev->name, hw);
596 if (err) {
597 dev_err(&pdev->dev, "Cannot claim IRQ\n");
598 goto err_no_irq;
599 }
600
601 hw->clk = clk_get(&pdev->dev, "spi");
602 if (IS_ERR(hw->clk)) {
603 dev_err(&pdev->dev, "No clock for device\n");
604 err = PTR_ERR(hw->clk);
605 goto err_no_clk;
606 }
607
608 /* setup any gpio we can */
609
610 if (!pdata->set_cs) {
611 if (pdata->pin_cs < 0) {
612 dev_err(&pdev->dev, "No chipselect pin\n");
613 goto err_register;
614 }
615
616 err = gpio_request(pdata->pin_cs, dev_name(&pdev->dev));
617 if (err) {
618 dev_err(&pdev->dev, "Failed to get gpio for cs\n");
619 goto err_register;
620 }
621
622 hw->set_cs = s3c24xx_spi_gpiocs;
623 gpio_direction_output(pdata->pin_cs, 1);
624 } else
625 hw->set_cs = pdata->set_cs;
626
627 s3c24xx_spi_initialsetup(hw);
628
629 /* register our spi controller */
630
631 err = spi_bitbang_start(&hw->bitbang);
632 if (err) {
633 dev_err(&pdev->dev, "Failed to register SPI master\n");
634 goto err_register;
635 }
636
637 return 0;
638
639 err_register:
640 if (hw->set_cs == s3c24xx_spi_gpiocs)
641 gpio_free(pdata->pin_cs);
642
643 clk_disable(hw->clk);
644 clk_put(hw->clk);
645
646 err_no_clk:
647 free_irq(hw->irq, hw);
648
649 err_no_irq:
650 iounmap(hw->regs);
651
652 err_no_iomap:
653 release_resource(hw->ioarea);
654 kfree(hw->ioarea);
655
656 err_no_iores:
657 err_no_pdata:
658 spi_master_put(hw->master);
659
660 err_nomem:
661 return err;
662}
663
664static int __exit s3c24xx_spi_remove(struct platform_device *dev)
665{
666 struct s3c24xx_spi *hw = platform_get_drvdata(dev);
667
668 platform_set_drvdata(dev, NULL);
669
670 spi_bitbang_stop(&hw->bitbang);
671
672 clk_disable(hw->clk);
673 clk_put(hw->clk);
674
675 free_irq(hw->irq, hw);
676 iounmap(hw->regs);
677
678 if (hw->set_cs == s3c24xx_spi_gpiocs)
679 gpio_free(hw->pdata->pin_cs);
680
681 release_resource(hw->ioarea);
682 kfree(hw->ioarea);
683
684 spi_master_put(hw->master);
685 return 0;
686}
687
688
689#ifdef CONFIG_PM
690
691static int s3c24xx_spi_suspend(struct device *dev)
692{
693 struct s3c24xx_spi *hw = platform_get_drvdata(to_platform_device(dev));
694
695 if (hw->pdata && hw->pdata->gpio_setup)
696 hw->pdata->gpio_setup(hw->pdata, 0);
697
698 clk_disable(hw->clk);
699 return 0;
700}
701
702static int s3c24xx_spi_resume(struct device *dev)
703{
704 struct s3c24xx_spi *hw = platform_get_drvdata(to_platform_device(dev));
705
706 s3c24xx_spi_initialsetup(hw);
707 return 0;
708}
709
710static const struct dev_pm_ops s3c24xx_spi_pmops = {
711 .suspend = s3c24xx_spi_suspend,
712 .resume = s3c24xx_spi_resume,
713};
714
715#define S3C24XX_SPI_PMOPS &s3c24xx_spi_pmops
716#else
717#define S3C24XX_SPI_PMOPS NULL
718#endif /* CONFIG_PM */
719
720MODULE_ALIAS("platform:s3c2410-spi");
721static struct platform_driver s3c24xx_spi_driver = {
722 .remove = __exit_p(s3c24xx_spi_remove),
723 .driver = {
724 .name = "s3c2410-spi",
725 .owner = THIS_MODULE,
726 .pm = S3C24XX_SPI_PMOPS,
727 },
728};
729
730static int __init s3c24xx_spi_init(void)
731{
732 return platform_driver_probe(&s3c24xx_spi_driver, s3c24xx_spi_probe);
733}
734
735static void __exit s3c24xx_spi_exit(void)
736{
737 platform_driver_unregister(&s3c24xx_spi_driver);
738}
739
740module_init(s3c24xx_spi_init);
741module_exit(s3c24xx_spi_exit);
742
743MODULE_DESCRIPTION("S3C24XX SPI Driver");
744MODULE_AUTHOR("Ben Dooks, <ben@simtec.co.uk>");
745MODULE_LICENSE("GPL");
1/*
2 * Copyright (c) 2006 Ben Dooks
3 * Copyright 2006-2009 Simtec Electronics
4 * Ben Dooks <ben@simtec.co.uk>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 *
10*/
11
12#include <linux/spinlock.h>
13#include <linux/interrupt.h>
14#include <linux/delay.h>
15#include <linux/errno.h>
16#include <linux/err.h>
17#include <linux/clk.h>
18#include <linux/platform_device.h>
19#include <linux/gpio.h>
20#include <linux/io.h>
21#include <linux/slab.h>
22
23#include <linux/spi/spi.h>
24#include <linux/spi/spi_bitbang.h>
25#include <linux/spi/s3c24xx.h>
26#include <linux/module.h>
27
28#include <plat/regs-spi.h>
29
30#include <asm/fiq.h>
31
32#include "spi-s3c24xx-fiq.h"
33
34/**
35 * s3c24xx_spi_devstate - per device data
36 * @hz: Last frequency calculated for @sppre field.
37 * @mode: Last mode setting for the @spcon field.
38 * @spcon: Value to write to the SPCON register.
39 * @sppre: Value to write to the SPPRE register.
40 */
41struct s3c24xx_spi_devstate {
42 unsigned int hz;
43 unsigned int mode;
44 u8 spcon;
45 u8 sppre;
46};
47
48enum spi_fiq_mode {
49 FIQ_MODE_NONE = 0,
50 FIQ_MODE_TX = 1,
51 FIQ_MODE_RX = 2,
52 FIQ_MODE_TXRX = 3,
53};
54
55struct s3c24xx_spi {
56 /* bitbang has to be first */
57 struct spi_bitbang bitbang;
58 struct completion done;
59
60 void __iomem *regs;
61 int irq;
62 int len;
63 int count;
64
65 struct fiq_handler fiq_handler;
66 enum spi_fiq_mode fiq_mode;
67 unsigned char fiq_inuse;
68 unsigned char fiq_claimed;
69
70 void (*set_cs)(struct s3c2410_spi_info *spi,
71 int cs, int pol);
72
73 /* data buffers */
74 const unsigned char *tx;
75 unsigned char *rx;
76
77 struct clk *clk;
78 struct spi_master *master;
79 struct spi_device *curdev;
80 struct device *dev;
81 struct s3c2410_spi_info *pdata;
82};
83
84#define SPCON_DEFAULT (S3C2410_SPCON_MSTR | S3C2410_SPCON_SMOD_INT)
85#define SPPIN_DEFAULT (S3C2410_SPPIN_KEEP)
86
87static inline struct s3c24xx_spi *to_hw(struct spi_device *sdev)
88{
89 return spi_master_get_devdata(sdev->master);
90}
91
92static void s3c24xx_spi_gpiocs(struct s3c2410_spi_info *spi, int cs, int pol)
93{
94 gpio_set_value(spi->pin_cs, pol);
95}
96
97static void s3c24xx_spi_chipsel(struct spi_device *spi, int value)
98{
99 struct s3c24xx_spi_devstate *cs = spi->controller_state;
100 struct s3c24xx_spi *hw = to_hw(spi);
101 unsigned int cspol = spi->mode & SPI_CS_HIGH ? 1 : 0;
102
103 /* change the chipselect state and the state of the spi engine clock */
104
105 switch (value) {
106 case BITBANG_CS_INACTIVE:
107 hw->set_cs(hw->pdata, spi->chip_select, cspol^1);
108 writeb(cs->spcon, hw->regs + S3C2410_SPCON);
109 break;
110
111 case BITBANG_CS_ACTIVE:
112 writeb(cs->spcon | S3C2410_SPCON_ENSCK,
113 hw->regs + S3C2410_SPCON);
114 hw->set_cs(hw->pdata, spi->chip_select, cspol);
115 break;
116 }
117}
118
119static int s3c24xx_spi_update_state(struct spi_device *spi,
120 struct spi_transfer *t)
121{
122 struct s3c24xx_spi *hw = to_hw(spi);
123 struct s3c24xx_spi_devstate *cs = spi->controller_state;
124 unsigned int hz;
125 unsigned int div;
126 unsigned long clk;
127
128 hz = t ? t->speed_hz : spi->max_speed_hz;
129
130 if (!hz)
131 hz = spi->max_speed_hz;
132
133 if (spi->mode != cs->mode) {
134 u8 spcon = SPCON_DEFAULT | S3C2410_SPCON_ENSCK;
135
136 if (spi->mode & SPI_CPHA)
137 spcon |= S3C2410_SPCON_CPHA_FMTB;
138
139 if (spi->mode & SPI_CPOL)
140 spcon |= S3C2410_SPCON_CPOL_HIGH;
141
142 cs->mode = spi->mode;
143 cs->spcon = spcon;
144 }
145
146 if (cs->hz != hz) {
147 clk = clk_get_rate(hw->clk);
148 div = DIV_ROUND_UP(clk, hz * 2) - 1;
149
150 if (div > 255)
151 div = 255;
152
153 dev_dbg(&spi->dev, "pre-scaler=%d (wanted %d, got %ld)\n",
154 div, hz, clk / (2 * (div + 1)));
155
156 cs->hz = hz;
157 cs->sppre = div;
158 }
159
160 return 0;
161}
162
163static int s3c24xx_spi_setupxfer(struct spi_device *spi,
164 struct spi_transfer *t)
165{
166 struct s3c24xx_spi_devstate *cs = spi->controller_state;
167 struct s3c24xx_spi *hw = to_hw(spi);
168 int ret;
169
170 ret = s3c24xx_spi_update_state(spi, t);
171 if (!ret)
172 writeb(cs->sppre, hw->regs + S3C2410_SPPRE);
173
174 return ret;
175}
176
177static int s3c24xx_spi_setup(struct spi_device *spi)
178{
179 struct s3c24xx_spi_devstate *cs = spi->controller_state;
180 struct s3c24xx_spi *hw = to_hw(spi);
181 int ret;
182
183 /* allocate settings on the first call */
184 if (!cs) {
185 cs = devm_kzalloc(&spi->dev,
186 sizeof(struct s3c24xx_spi_devstate),
187 GFP_KERNEL);
188 if (!cs)
189 return -ENOMEM;
190
191 cs->spcon = SPCON_DEFAULT;
192 cs->hz = -1;
193 spi->controller_state = cs;
194 }
195
196 /* initialise the state from the device */
197 ret = s3c24xx_spi_update_state(spi, NULL);
198 if (ret)
199 return ret;
200
201 mutex_lock(&hw->bitbang.lock);
202 if (!hw->bitbang.busy) {
203 hw->bitbang.chipselect(spi, BITBANG_CS_INACTIVE);
204 /* need to ndelay for 0.5 clocktick ? */
205 }
206 mutex_unlock(&hw->bitbang.lock);
207
208 return 0;
209}
210
211static inline unsigned int hw_txbyte(struct s3c24xx_spi *hw, int count)
212{
213 return hw->tx ? hw->tx[count] : 0;
214}
215
216#ifdef CONFIG_SPI_S3C24XX_FIQ
217/* Support for FIQ based pseudo-DMA to improve the transfer speed.
218 *
219 * This code uses the assembly helper in spi_s3c24xx_spi.S which is
220 * used by the FIQ core to move data between main memory and the peripheral
221 * block. Since this is code running on the processor, there is no problem
222 * with cache coherency of the buffers, so we can use any buffer we like.
223 */
224
225/**
226 * struct spi_fiq_code - FIQ code and header
227 * @length: The length of the code fragment, excluding this header.
228 * @ack_offset: The offset from @data to the word to place the IRQ ACK bit at.
229 * @data: The code itself to install as a FIQ handler.
230 */
231struct spi_fiq_code {
232 u32 length;
233 u32 ack_offset;
234 u8 data[0];
235};
236
237extern struct spi_fiq_code s3c24xx_spi_fiq_txrx;
238extern struct spi_fiq_code s3c24xx_spi_fiq_tx;
239extern struct spi_fiq_code s3c24xx_spi_fiq_rx;
240
241/**
242 * ack_bit - turn IRQ into IRQ acknowledgement bit
243 * @irq: The interrupt number
244 *
245 * Returns the bit to write to the interrupt acknowledge register.
246 */
247static inline u32 ack_bit(unsigned int irq)
248{
249 return 1 << (irq - IRQ_EINT0);
250}
251
252/**
253 * s3c24xx_spi_tryfiq - attempt to claim and setup FIQ for transfer
254 * @hw: The hardware state.
255 *
256 * Claim the FIQ handler (only one can be active at any one time) and
257 * then setup the correct transfer code for this transfer.
258 *
259 * This call updates all the necessary state information if successful,
260 * so the caller does not need to do anything more than start the transfer
261 * as normal, since the IRQ will have been re-routed to the FIQ handler.
262*/
263static void s3c24xx_spi_tryfiq(struct s3c24xx_spi *hw)
264{
265 struct pt_regs regs;
266 enum spi_fiq_mode mode;
267 struct spi_fiq_code *code;
268 int ret;
269
270 if (!hw->fiq_claimed) {
271 /* try and claim fiq if we haven't got it, and if not
272 * then return and simply use another transfer method */
273
274 ret = claim_fiq(&hw->fiq_handler);
275 if (ret)
276 return;
277 }
278
279 if (hw->tx && !hw->rx)
280 mode = FIQ_MODE_TX;
281 else if (hw->rx && !hw->tx)
282 mode = FIQ_MODE_RX;
283 else
284 mode = FIQ_MODE_TXRX;
285
286 regs.uregs[fiq_rspi] = (long)hw->regs;
287 regs.uregs[fiq_rrx] = (long)hw->rx;
288 regs.uregs[fiq_rtx] = (long)hw->tx + 1;
289 regs.uregs[fiq_rcount] = hw->len - 1;
290 regs.uregs[fiq_rirq] = (long)S3C24XX_VA_IRQ;
291
292 set_fiq_regs(®s);
293
294 if (hw->fiq_mode != mode) {
295 u32 *ack_ptr;
296
297 hw->fiq_mode = mode;
298
299 switch (mode) {
300 case FIQ_MODE_TX:
301 code = &s3c24xx_spi_fiq_tx;
302 break;
303 case FIQ_MODE_RX:
304 code = &s3c24xx_spi_fiq_rx;
305 break;
306 case FIQ_MODE_TXRX:
307 code = &s3c24xx_spi_fiq_txrx;
308 break;
309 default:
310 code = NULL;
311 }
312
313 BUG_ON(!code);
314
315 ack_ptr = (u32 *)&code->data[code->ack_offset];
316 *ack_ptr = ack_bit(hw->irq);
317
318 set_fiq_handler(&code->data, code->length);
319 }
320
321 s3c24xx_set_fiq(hw->irq, true);
322
323 hw->fiq_mode = mode;
324 hw->fiq_inuse = 1;
325}
326
327/**
328 * s3c24xx_spi_fiqop - FIQ core code callback
329 * @pw: Data registered with the handler
330 * @release: Whether this is a release or a return.
331 *
332 * Called by the FIQ code when another module wants to use the FIQ, so
333 * return whether we are currently using this or not and then update our
334 * internal state.
335 */
336static int s3c24xx_spi_fiqop(void *pw, int release)
337{
338 struct s3c24xx_spi *hw = pw;
339 int ret = 0;
340
341 if (release) {
342 if (hw->fiq_inuse)
343 ret = -EBUSY;
344
345 /* note, we do not need to unroute the FIQ, as the FIQ
346 * vector code de-routes it to signal the end of transfer */
347
348 hw->fiq_mode = FIQ_MODE_NONE;
349 hw->fiq_claimed = 0;
350 } else {
351 hw->fiq_claimed = 1;
352 }
353
354 return ret;
355}
356
357/**
358 * s3c24xx_spi_initfiq - setup the information for the FIQ core
359 * @hw: The hardware state.
360 *
361 * Setup the fiq_handler block to pass to the FIQ core.
362 */
363static inline void s3c24xx_spi_initfiq(struct s3c24xx_spi *hw)
364{
365 hw->fiq_handler.dev_id = hw;
366 hw->fiq_handler.name = dev_name(hw->dev);
367 hw->fiq_handler.fiq_op = s3c24xx_spi_fiqop;
368}
369
370/**
371 * s3c24xx_spi_usefiq - return if we should be using FIQ.
372 * @hw: The hardware state.
373 *
374 * Return true if the platform data specifies whether this channel is
375 * allowed to use the FIQ.
376 */
377static inline bool s3c24xx_spi_usefiq(struct s3c24xx_spi *hw)
378{
379 return hw->pdata->use_fiq;
380}
381
382/**
383 * s3c24xx_spi_usingfiq - return if channel is using FIQ
384 * @spi: The hardware state.
385 *
386 * Return whether the channel is currently using the FIQ (separate from
387 * whether the FIQ is claimed).
388 */
389static inline bool s3c24xx_spi_usingfiq(struct s3c24xx_spi *spi)
390{
391 return spi->fiq_inuse;
392}
393#else
394
395static inline void s3c24xx_spi_initfiq(struct s3c24xx_spi *s) { }
396static inline void s3c24xx_spi_tryfiq(struct s3c24xx_spi *s) { }
397static inline bool s3c24xx_spi_usefiq(struct s3c24xx_spi *s) { return false; }
398static inline bool s3c24xx_spi_usingfiq(struct s3c24xx_spi *s) { return false; }
399
400#endif /* CONFIG_SPI_S3C24XX_FIQ */
401
402static int s3c24xx_spi_txrx(struct spi_device *spi, struct spi_transfer *t)
403{
404 struct s3c24xx_spi *hw = to_hw(spi);
405
406 hw->tx = t->tx_buf;
407 hw->rx = t->rx_buf;
408 hw->len = t->len;
409 hw->count = 0;
410
411 init_completion(&hw->done);
412
413 hw->fiq_inuse = 0;
414 if (s3c24xx_spi_usefiq(hw) && t->len >= 3)
415 s3c24xx_spi_tryfiq(hw);
416
417 /* send the first byte */
418 writeb(hw_txbyte(hw, 0), hw->regs + S3C2410_SPTDAT);
419
420 wait_for_completion(&hw->done);
421 return hw->count;
422}
423
424static irqreturn_t s3c24xx_spi_irq(int irq, void *dev)
425{
426 struct s3c24xx_spi *hw = dev;
427 unsigned int spsta = readb(hw->regs + S3C2410_SPSTA);
428 unsigned int count = hw->count;
429
430 if (spsta & S3C2410_SPSTA_DCOL) {
431 dev_dbg(hw->dev, "data-collision\n");
432 complete(&hw->done);
433 goto irq_done;
434 }
435
436 if (!(spsta & S3C2410_SPSTA_READY)) {
437 dev_dbg(hw->dev, "spi not ready for tx?\n");
438 complete(&hw->done);
439 goto irq_done;
440 }
441
442 if (!s3c24xx_spi_usingfiq(hw)) {
443 hw->count++;
444
445 if (hw->rx)
446 hw->rx[count] = readb(hw->regs + S3C2410_SPRDAT);
447
448 count++;
449
450 if (count < hw->len)
451 writeb(hw_txbyte(hw, count), hw->regs + S3C2410_SPTDAT);
452 else
453 complete(&hw->done);
454 } else {
455 hw->count = hw->len;
456 hw->fiq_inuse = 0;
457
458 if (hw->rx)
459 hw->rx[hw->len-1] = readb(hw->regs + S3C2410_SPRDAT);
460
461 complete(&hw->done);
462 }
463
464 irq_done:
465 return IRQ_HANDLED;
466}
467
468static void s3c24xx_spi_initialsetup(struct s3c24xx_spi *hw)
469{
470 /* for the moment, permanently enable the clock */
471
472 clk_enable(hw->clk);
473
474 /* program defaults into the registers */
475
476 writeb(0xff, hw->regs + S3C2410_SPPRE);
477 writeb(SPPIN_DEFAULT, hw->regs + S3C2410_SPPIN);
478 writeb(SPCON_DEFAULT, hw->regs + S3C2410_SPCON);
479
480 if (hw->pdata) {
481 if (hw->set_cs == s3c24xx_spi_gpiocs)
482 gpio_direction_output(hw->pdata->pin_cs, 1);
483
484 if (hw->pdata->gpio_setup)
485 hw->pdata->gpio_setup(hw->pdata, 1);
486 }
487}
488
489static int s3c24xx_spi_probe(struct platform_device *pdev)
490{
491 struct s3c2410_spi_info *pdata;
492 struct s3c24xx_spi *hw;
493 struct spi_master *master;
494 struct resource *res;
495 int err = 0;
496
497 master = spi_alloc_master(&pdev->dev, sizeof(struct s3c24xx_spi));
498 if (master == NULL) {
499 dev_err(&pdev->dev, "No memory for spi_master\n");
500 return -ENOMEM;
501 }
502
503 hw = spi_master_get_devdata(master);
504
505 hw->master = master;
506 hw->pdata = pdata = dev_get_platdata(&pdev->dev);
507 hw->dev = &pdev->dev;
508
509 if (pdata == NULL) {
510 dev_err(&pdev->dev, "No platform data supplied\n");
511 err = -ENOENT;
512 goto err_no_pdata;
513 }
514
515 platform_set_drvdata(pdev, hw);
516 init_completion(&hw->done);
517
518 /* initialise fiq handler */
519
520 s3c24xx_spi_initfiq(hw);
521
522 /* setup the master state. */
523
524 /* the spi->mode bits understood by this driver: */
525 master->mode_bits = SPI_CPOL | SPI_CPHA | SPI_CS_HIGH;
526
527 master->num_chipselect = hw->pdata->num_cs;
528 master->bus_num = pdata->bus_num;
529 master->bits_per_word_mask = SPI_BPW_MASK(8);
530
531 /* setup the state for the bitbang driver */
532
533 hw->bitbang.master = hw->master;
534 hw->bitbang.setup_transfer = s3c24xx_spi_setupxfer;
535 hw->bitbang.chipselect = s3c24xx_spi_chipsel;
536 hw->bitbang.txrx_bufs = s3c24xx_spi_txrx;
537
538 hw->master->setup = s3c24xx_spi_setup;
539
540 dev_dbg(hw->dev, "bitbang at %p\n", &hw->bitbang);
541
542 /* find and map our resources */
543 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
544 hw->regs = devm_ioremap_resource(&pdev->dev, res);
545 if (IS_ERR(hw->regs)) {
546 err = PTR_ERR(hw->regs);
547 goto err_no_pdata;
548 }
549
550 hw->irq = platform_get_irq(pdev, 0);
551 if (hw->irq < 0) {
552 dev_err(&pdev->dev, "No IRQ specified\n");
553 err = -ENOENT;
554 goto err_no_pdata;
555 }
556
557 err = devm_request_irq(&pdev->dev, hw->irq, s3c24xx_spi_irq, 0,
558 pdev->name, hw);
559 if (err) {
560 dev_err(&pdev->dev, "Cannot claim IRQ\n");
561 goto err_no_pdata;
562 }
563
564 hw->clk = devm_clk_get(&pdev->dev, "spi");
565 if (IS_ERR(hw->clk)) {
566 dev_err(&pdev->dev, "No clock for device\n");
567 err = PTR_ERR(hw->clk);
568 goto err_no_pdata;
569 }
570
571 /* setup any gpio we can */
572
573 if (!pdata->set_cs) {
574 if (pdata->pin_cs < 0) {
575 dev_err(&pdev->dev, "No chipselect pin\n");
576 err = -EINVAL;
577 goto err_register;
578 }
579
580 err = devm_gpio_request(&pdev->dev, pdata->pin_cs,
581 dev_name(&pdev->dev));
582 if (err) {
583 dev_err(&pdev->dev, "Failed to get gpio for cs\n");
584 goto err_register;
585 }
586
587 hw->set_cs = s3c24xx_spi_gpiocs;
588 gpio_direction_output(pdata->pin_cs, 1);
589 } else
590 hw->set_cs = pdata->set_cs;
591
592 s3c24xx_spi_initialsetup(hw);
593
594 /* register our spi controller */
595
596 err = spi_bitbang_start(&hw->bitbang);
597 if (err) {
598 dev_err(&pdev->dev, "Failed to register SPI master\n");
599 goto err_register;
600 }
601
602 return 0;
603
604 err_register:
605 clk_disable(hw->clk);
606
607 err_no_pdata:
608 spi_master_put(hw->master);
609 return err;
610}
611
612static int s3c24xx_spi_remove(struct platform_device *dev)
613{
614 struct s3c24xx_spi *hw = platform_get_drvdata(dev);
615
616 spi_bitbang_stop(&hw->bitbang);
617 clk_disable(hw->clk);
618 spi_master_put(hw->master);
619 return 0;
620}
621
622
623#ifdef CONFIG_PM
624
625static int s3c24xx_spi_suspend(struct device *dev)
626{
627 struct s3c24xx_spi *hw = dev_get_drvdata(dev);
628 int ret;
629
630 ret = spi_master_suspend(hw->master);
631 if (ret)
632 return ret;
633
634 if (hw->pdata && hw->pdata->gpio_setup)
635 hw->pdata->gpio_setup(hw->pdata, 0);
636
637 clk_disable(hw->clk);
638 return 0;
639}
640
641static int s3c24xx_spi_resume(struct device *dev)
642{
643 struct s3c24xx_spi *hw = dev_get_drvdata(dev);
644
645 s3c24xx_spi_initialsetup(hw);
646 return spi_master_resume(hw->master);
647}
648
649static const struct dev_pm_ops s3c24xx_spi_pmops = {
650 .suspend = s3c24xx_spi_suspend,
651 .resume = s3c24xx_spi_resume,
652};
653
654#define S3C24XX_SPI_PMOPS &s3c24xx_spi_pmops
655#else
656#define S3C24XX_SPI_PMOPS NULL
657#endif /* CONFIG_PM */
658
659MODULE_ALIAS("platform:s3c2410-spi");
660static struct platform_driver s3c24xx_spi_driver = {
661 .probe = s3c24xx_spi_probe,
662 .remove = s3c24xx_spi_remove,
663 .driver = {
664 .name = "s3c2410-spi",
665 .pm = S3C24XX_SPI_PMOPS,
666 },
667};
668module_platform_driver(s3c24xx_spi_driver);
669
670MODULE_DESCRIPTION("S3C24XX SPI Driver");
671MODULE_AUTHOR("Ben Dooks, <ben@simtec.co.uk>");
672MODULE_LICENSE("GPL");