Merge branch 'acpica'
[linux-2.6-block.git] / drivers / spi / spi-fsl-spi.c
CommitLineData
ccf06998 1/*
b36ece83 2 * Freescale SPI controller driver.
ccf06998
KG
3 *
4 * Maintainer: Kumar Gala
5 *
6 * Copyright (C) 2006 Polycom, Inc.
b36ece83 7 * Copyright 2010 Freescale Semiconductor, Inc.
ccf06998 8 *
4c1fba44
AV
9 * CPM SPI and QE buffer descriptors mode support:
10 * Copyright (c) 2009 MontaVista Software, Inc.
11 * Author: Anton Vorontsov <avorontsov@ru.mvista.com>
12 *
447b0c7b
AL
13 * GRLIB support:
14 * Copyright (c) 2012 Aeroflex Gaisler AB.
15 * Author: Andreas Larsson <andreas@gaisler.com>
16 *
ccf06998
KG
17 * This program is free software; you can redistribute it and/or modify it
18 * under the terms of the GNU General Public License as published by the
19 * Free Software Foundation; either version 2 of the License, or (at your
20 * option) any later version.
21 */
ccf06998 22#include <linux/delay.h>
4c1fba44 23#include <linux/dma-mapping.h>
a3108360
XL
24#include <linux/fsl_devices.h>
25#include <linux/gpio.h>
26#include <linux/interrupt.h>
27#include <linux/irq.h>
28#include <linux/kernel.h>
4c1fba44 29#include <linux/mm.h>
a3108360 30#include <linux/module.h>
4c1fba44 31#include <linux/mutex.h>
35b4b3c0 32#include <linux/of.h>
e8beacbb
AL
33#include <linux/of_address.h>
34#include <linux/of_irq.h>
35b4b3c0 35#include <linux/of_gpio.h>
a3108360
XL
36#include <linux/of_platform.h>
37#include <linux/platform_device.h>
38#include <linux/spi/spi.h>
39#include <linux/spi/spi_bitbang.h>
40#include <linux/types.h>
ccf06998 41
ca632f55 42#include "spi-fsl-lib.h"
e8beacbb
AL
43#include "spi-fsl-cpm.h"
44#include "spi-fsl-spi.h"
ccf06998 45
c3f3e771 46#define TYPE_FSL 0
447b0c7b 47#define TYPE_GRLIB 1
c3f3e771
AL
48
49struct fsl_spi_match_data {
50 int type;
51};
52
53static struct fsl_spi_match_data of_fsl_spi_fsl_config = {
54 .type = TYPE_FSL,
55};
56
447b0c7b
AL
57static struct fsl_spi_match_data of_fsl_spi_grlib_config = {
58 .type = TYPE_GRLIB,
59};
60
3aea901d 61static const struct of_device_id of_fsl_spi_match[] = {
c3f3e771
AL
62 {
63 .compatible = "fsl,spi",
64 .data = &of_fsl_spi_fsl_config,
65 },
447b0c7b
AL
66 {
67 .compatible = "aeroflexgaisler,spictrl",
68 .data = &of_fsl_spi_grlib_config,
69 },
c3f3e771
AL
70 {}
71};
72MODULE_DEVICE_TABLE(of, of_fsl_spi_match);
73
74static int fsl_spi_get_type(struct device *dev)
75{
76 const struct of_device_id *match;
77
78 if (dev->of_node) {
79 match = of_match_node(of_fsl_spi_match, dev->of_node);
80 if (match && match->data)
81 return ((struct fsl_spi_match_data *)match->data)->type;
82 }
83 return TYPE_FSL;
84}
85
b36ece83 86static void fsl_spi_change_mode(struct spi_device *spi)
a35c1710
AV
87{
88 struct mpc8xxx_spi *mspi = spi_master_get_devdata(spi->master);
89 struct spi_mpc8xxx_cs *cs = spi->controller_state;
b36ece83
MH
90 struct fsl_spi_reg *reg_base = mspi->reg_base;
91 __be32 __iomem *mode = &reg_base->mode;
a35c1710
AV
92 unsigned long flags;
93
94 if (cs->hw_mode == mpc8xxx_spi_read_reg(mode))
95 return;
96
97 /* Turn off IRQs locally to minimize time that SPI is disabled. */
98 local_irq_save(flags);
99
100 /* Turn off SPI unit prior changing mode */
101 mpc8xxx_spi_write_reg(mode, cs->hw_mode & ~SPMODE_ENABLE);
a35c1710 102
4c1fba44
AV
103 /* When in CPM mode, we need to reinit tx and rx. */
104 if (mspi->flags & SPI_CPM_MODE) {
e8beacbb 105 fsl_spi_cpm_reinit_txrx(mspi);
4c1fba44 106 }
f9218c2a 107 mpc8xxx_spi_write_reg(mode, cs->hw_mode);
a35c1710
AV
108 local_irq_restore(flags);
109}
110
b36ece83 111static void fsl_spi_chipselect(struct spi_device *spi, int value)
ccf06998 112{
575c5807 113 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(spi->master);
5039a869 114 struct fsl_spi_platform_data *pdata;
364fdbc0 115 bool pol = spi->mode & SPI_CS_HIGH;
575c5807 116 struct spi_mpc8xxx_cs *cs = spi->controller_state;
ccf06998 117
5039a869
KE
118 pdata = spi->dev.parent->parent->platform_data;
119
ccf06998 120 if (value == BITBANG_CS_INACTIVE) {
364fdbc0
AV
121 if (pdata->cs_control)
122 pdata->cs_control(spi, !pol);
ccf06998
KG
123 }
124
125 if (value == BITBANG_CS_ACTIVE) {
575c5807
AV
126 mpc8xxx_spi->rx_shift = cs->rx_shift;
127 mpc8xxx_spi->tx_shift = cs->tx_shift;
128 mpc8xxx_spi->get_rx = cs->get_rx;
129 mpc8xxx_spi->get_tx = cs->get_tx;
c9bfcb31 130
b36ece83 131 fsl_spi_change_mode(spi);
a35c1710 132
364fdbc0
AV
133 if (pdata->cs_control)
134 pdata->cs_control(spi, pol);
ccf06998
KG
135 }
136}
137
b48c4e3c
AL
138static void fsl_spi_qe_cpu_set_shifts(u32 *rx_shift, u32 *tx_shift,
139 int bits_per_word, int msb_first)
140{
141 *rx_shift = 0;
142 *tx_shift = 0;
143 if (msb_first) {
144 if (bits_per_word <= 8) {
145 *rx_shift = 16;
146 *tx_shift = 24;
147 } else if (bits_per_word <= 16) {
148 *rx_shift = 16;
149 *tx_shift = 16;
150 }
151 } else {
152 if (bits_per_word <= 8)
153 *rx_shift = 8;
154 }
155}
156
447b0c7b
AL
157static void fsl_spi_grlib_set_shifts(u32 *rx_shift, u32 *tx_shift,
158 int bits_per_word, int msb_first)
159{
160 *rx_shift = 0;
161 *tx_shift = 0;
162 if (bits_per_word <= 16) {
163 if (msb_first) {
164 *rx_shift = 16; /* LSB in bit 16 */
165 *tx_shift = 32 - bits_per_word; /* MSB in bit 31 */
166 } else {
167 *rx_shift = 16 - bits_per_word; /* MSB in bit 15 */
168 }
169 }
170}
171
b36ece83
MH
172static int mspi_apply_cpu_mode_quirks(struct spi_mpc8xxx_cs *cs,
173 struct spi_device *spi,
174 struct mpc8xxx_spi *mpc8xxx_spi,
175 int bits_per_word)
ccf06998 176{
c9bfcb31
JT
177 cs->rx_shift = 0;
178 cs->tx_shift = 0;
ccf06998 179 if (bits_per_word <= 8) {
575c5807
AV
180 cs->get_rx = mpc8xxx_spi_rx_buf_u8;
181 cs->get_tx = mpc8xxx_spi_tx_buf_u8;
ccf06998 182 } else if (bits_per_word <= 16) {
575c5807
AV
183 cs->get_rx = mpc8xxx_spi_rx_buf_u16;
184 cs->get_tx = mpc8xxx_spi_tx_buf_u16;
ccf06998 185 } else if (bits_per_word <= 32) {
575c5807
AV
186 cs->get_rx = mpc8xxx_spi_rx_buf_u32;
187 cs->get_tx = mpc8xxx_spi_tx_buf_u32;
ccf06998
KG
188 } else
189 return -EINVAL;
190
b48c4e3c
AL
191 if (mpc8xxx_spi->set_shifts)
192 mpc8xxx_spi->set_shifts(&cs->rx_shift, &cs->tx_shift,
193 bits_per_word,
194 !(spi->mode & SPI_LSB_FIRST));
195
575c5807
AV
196 mpc8xxx_spi->rx_shift = cs->rx_shift;
197 mpc8xxx_spi->tx_shift = cs->tx_shift;
198 mpc8xxx_spi->get_rx = cs->get_rx;
199 mpc8xxx_spi->get_tx = cs->get_tx;
ccf06998 200
0398fb70
JT
201 return bits_per_word;
202}
203
b36ece83
MH
204static int mspi_apply_qe_mode_quirks(struct spi_mpc8xxx_cs *cs,
205 struct spi_device *spi,
206 int bits_per_word)
0398fb70
JT
207{
208 /* QE uses Little Endian for words > 8
209 * so transform all words > 8 into 8 bits
210 * Unfortnatly that doesn't work for LSB so
211 * reject these for now */
212 /* Note: 32 bits word, LSB works iff
213 * tfcr/rfcr is set to CPMFCR_GBL */
214 if (spi->mode & SPI_LSB_FIRST &&
215 bits_per_word > 8)
216 return -EINVAL;
217 if (bits_per_word > 8)
218 return 8; /* pretend its 8 bits */
219 return bits_per_word;
220}
221
b36ece83
MH
222static int fsl_spi_setup_transfer(struct spi_device *spi,
223 struct spi_transfer *t)
0398fb70
JT
224{
225 struct mpc8xxx_spi *mpc8xxx_spi;
b36ece83 226 int bits_per_word = 0;
0398fb70 227 u8 pm;
b36ece83 228 u32 hz = 0;
0398fb70
JT
229 struct spi_mpc8xxx_cs *cs = spi->controller_state;
230
231 mpc8xxx_spi = spi_master_get_devdata(spi->master);
232
233 if (t) {
234 bits_per_word = t->bits_per_word;
235 hz = t->speed_hz;
0398fb70
JT
236 }
237
238 /* spi_transfer level calls that work per-word */
239 if (!bits_per_word)
240 bits_per_word = spi->bits_per_word;
241
0398fb70
JT
242 if (!hz)
243 hz = spi->max_speed_hz;
244
245 if (!(mpc8xxx_spi->flags & SPI_CPM_MODE))
246 bits_per_word = mspi_apply_cpu_mode_quirks(cs, spi,
247 mpc8xxx_spi,
248 bits_per_word);
249 else if (mpc8xxx_spi->flags & SPI_QE)
250 bits_per_word = mspi_apply_qe_mode_quirks(cs, spi,
251 bits_per_word);
252
253 if (bits_per_word < 0)
254 return bits_per_word;
255
ccf06998
KG
256 if (bits_per_word == 32)
257 bits_per_word = 0;
258 else
259 bits_per_word = bits_per_word - 1;
260
32421daa 261 /* mask out bits we are going to set */
c9bfcb31
JT
262 cs->hw_mode &= ~(SPMODE_LEN(0xF) | SPMODE_DIV16
263 | SPMODE_PM(0xF));
264
265 cs->hw_mode |= SPMODE_LEN(bits_per_word);
266
575c5807 267 if ((mpc8xxx_spi->spibrg / hz) > 64) {
53604dbe 268 cs->hw_mode |= SPMODE_DIV16;
4f4517c4 269 pm = (mpc8xxx_spi->spibrg - 1) / (hz * 64) + 1;
fd8a11e1
AV
270
271 WARN_ONCE(pm > 16, "%s: Requested speed is too low: %d Hz. "
272 "Will use %d Hz instead.\n", dev_name(&spi->dev),
575c5807 273 hz, mpc8xxx_spi->spibrg / 1024);
fd8a11e1 274 if (pm > 16)
53604dbe 275 pm = 16;
b36ece83 276 } else {
4f4517c4 277 pm = (mpc8xxx_spi->spibrg - 1) / (hz * 4) + 1;
b36ece83 278 }
a61f5345
CG
279 if (pm)
280 pm--;
281
282 cs->hw_mode |= SPMODE_PM(pm);
a35c1710 283
b36ece83 284 fsl_spi_change_mode(spi);
c9bfcb31
JT
285 return 0;
286}
ccf06998 287
b36ece83 288static int fsl_spi_cpu_bufs(struct mpc8xxx_spi *mspi,
4c1fba44
AV
289 struct spi_transfer *t, unsigned int len)
290{
291 u32 word;
b36ece83 292 struct fsl_spi_reg *reg_base = mspi->reg_base;
4c1fba44
AV
293
294 mspi->count = len;
295
296 /* enable rx ints */
b36ece83 297 mpc8xxx_spi_write_reg(&reg_base->mask, SPIM_NE);
4c1fba44
AV
298
299 /* transmit word */
300 word = mspi->get_tx(mspi);
b36ece83 301 mpc8xxx_spi_write_reg(&reg_base->transmit, word);
4c1fba44
AV
302
303 return 0;
304}
305
b36ece83 306static int fsl_spi_bufs(struct spi_device *spi, struct spi_transfer *t,
4c1fba44
AV
307 bool is_dma_mapped)
308{
309 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(spi->master);
b36ece83 310 struct fsl_spi_reg *reg_base;
4c1fba44
AV
311 unsigned int len = t->len;
312 u8 bits_per_word;
313 int ret;
c9bfcb31 314
b36ece83 315 reg_base = mpc8xxx_spi->reg_base;
c9bfcb31
JT
316 bits_per_word = spi->bits_per_word;
317 if (t->bits_per_word)
318 bits_per_word = t->bits_per_word;
4c1fba44 319
aa77d96b
PK
320 if (bits_per_word > 8) {
321 /* invalid length? */
322 if (len & 1)
323 return -EINVAL;
c9bfcb31 324 len /= 2;
aa77d96b
PK
325 }
326 if (bits_per_word > 16) {
327 /* invalid length? */
328 if (len & 1)
329 return -EINVAL;
c9bfcb31 330 len /= 2;
aa77d96b 331 }
aa77d96b 332
4c1fba44
AV
333 mpc8xxx_spi->tx = t->tx_buf;
334 mpc8xxx_spi->rx = t->rx_buf;
c9bfcb31 335
16735d02 336 reinit_completion(&mpc8xxx_spi->done);
c9bfcb31 337
4c1fba44 338 if (mpc8xxx_spi->flags & SPI_CPM_MODE)
b36ece83 339 ret = fsl_spi_cpm_bufs(mpc8xxx_spi, t, is_dma_mapped);
4c1fba44 340 else
b36ece83 341 ret = fsl_spi_cpu_bufs(mpc8xxx_spi, t, len);
4c1fba44
AV
342 if (ret)
343 return ret;
c9bfcb31 344
575c5807 345 wait_for_completion(&mpc8xxx_spi->done);
c9bfcb31
JT
346
347 /* disable rx ints */
b36ece83 348 mpc8xxx_spi_write_reg(&reg_base->mask, 0);
c9bfcb31 349
4c1fba44 350 if (mpc8xxx_spi->flags & SPI_CPM_MODE)
b36ece83 351 fsl_spi_cpm_bufs_complete(mpc8xxx_spi);
4c1fba44 352
575c5807 353 return mpc8xxx_spi->count;
c9bfcb31
JT
354}
355
c592becb
HK
356static int fsl_spi_do_one_msg(struct spi_master *master,
357 struct spi_message *m)
c9bfcb31 358{
b9b9af11 359 struct spi_device *spi = m->spi;
4302a596 360 struct spi_transfer *t, *first;
b9b9af11
AV
361 unsigned int cs_change;
362 const int nsecs = 50;
363 int status;
364
4302a596
SR
365 /* Don't allow changes if CS is active */
366 first = list_first_entry(&m->transfers, struct spi_transfer,
367 transfer_list);
b9b9af11 368 list_for_each_entry(t, &m->transfers, transfer_list) {
4302a596
SR
369 if ((first->bits_per_word != t->bits_per_word) ||
370 (first->speed_hz != t->speed_hz)) {
4302a596
SR
371 dev_err(&spi->dev,
372 "bits_per_word/speed_hz should be same for the same SPI transfer\n");
75c41088 373 return -EINVAL;
4302a596
SR
374 }
375 }
b9b9af11 376
4302a596
SR
377 cs_change = 1;
378 status = -EINVAL;
379 list_for_each_entry(t, &m->transfers, transfer_list) {
380 if (t->bits_per_word || t->speed_hz) {
b9b9af11 381 if (cs_change)
b36ece83 382 status = fsl_spi_setup_transfer(spi, t);
b9b9af11 383 if (status < 0)
c9bfcb31 384 break;
b9b9af11 385 }
c9bfcb31 386
b9b9af11 387 if (cs_change) {
b36ece83 388 fsl_spi_chipselect(spi, BITBANG_CS_ACTIVE);
b9b9af11
AV
389 ndelay(nsecs);
390 }
391 cs_change = t->cs_change;
392 if (t->len)
b36ece83 393 status = fsl_spi_bufs(spi, t, m->is_dma_mapped);
b9b9af11
AV
394 if (status) {
395 status = -EMSGSIZE;
396 break;
c9bfcb31 397 }
b9b9af11 398 m->actual_length += t->len;
c9bfcb31 399
b9b9af11
AV
400 if (t->delay_usecs)
401 udelay(t->delay_usecs);
c9bfcb31 402
b9b9af11 403 if (cs_change) {
c9bfcb31 404 ndelay(nsecs);
b36ece83 405 fsl_spi_chipselect(spi, BITBANG_CS_INACTIVE);
b9b9af11 406 ndelay(nsecs);
c9bfcb31 407 }
b9b9af11
AV
408 }
409
410 m->status = status;
c592becb 411 spi_finalize_current_message(master);
b9b9af11
AV
412
413 if (status || !cs_change) {
414 ndelay(nsecs);
b36ece83 415 fsl_spi_chipselect(spi, BITBANG_CS_INACTIVE);
b9b9af11
AV
416 }
417
b36ece83 418 fsl_spi_setup_transfer(spi, NULL);
c592becb 419 return 0;
ccf06998
KG
420}
421
b36ece83 422static int fsl_spi_setup(struct spi_device *spi)
ccf06998 423{
575c5807 424 struct mpc8xxx_spi *mpc8xxx_spi;
b36ece83 425 struct fsl_spi_reg *reg_base;
ccf06998 426 int retval;
c9bfcb31 427 u32 hw_mode;
d9f26748 428 struct spi_mpc8xxx_cs *cs = spi_get_ctldata(spi);
ccf06998
KG
429
430 if (!spi->max_speed_hz)
431 return -EINVAL;
432
c9bfcb31 433 if (!cs) {
d9f26748 434 cs = kzalloc(sizeof(*cs), GFP_KERNEL);
c9bfcb31
JT
435 if (!cs)
436 return -ENOMEM;
d9f26748 437 spi_set_ctldata(spi, cs);
c9bfcb31 438 }
575c5807 439 mpc8xxx_spi = spi_master_get_devdata(spi->master);
ccf06998 440
b36ece83
MH
441 reg_base = mpc8xxx_spi->reg_base;
442
88393161 443 hw_mode = cs->hw_mode; /* Save original settings */
b36ece83 444 cs->hw_mode = mpc8xxx_spi_read_reg(&reg_base->mode);
c9bfcb31
JT
445 /* mask out bits we are going to set */
446 cs->hw_mode &= ~(SPMODE_CP_BEGIN_EDGECLK | SPMODE_CI_INACTIVEHIGH
447 | SPMODE_REV | SPMODE_LOOP);
448
449 if (spi->mode & SPI_CPHA)
450 cs->hw_mode |= SPMODE_CP_BEGIN_EDGECLK;
451 if (spi->mode & SPI_CPOL)
452 cs->hw_mode |= SPMODE_CI_INACTIVEHIGH;
453 if (!(spi->mode & SPI_LSB_FIRST))
454 cs->hw_mode |= SPMODE_REV;
455 if (spi->mode & SPI_LOOP)
456 cs->hw_mode |= SPMODE_LOOP;
457
b36ece83 458 retval = fsl_spi_setup_transfer(spi, NULL);
c9bfcb31
JT
459 if (retval < 0) {
460 cs->hw_mode = hw_mode; /* Restore settings */
ccf06998 461 return retval;
c9bfcb31 462 }
f482cd0f 463
76a7498f
AL
464 if (mpc8xxx_spi->type == TYPE_GRLIB) {
465 if (gpio_is_valid(spi->cs_gpio)) {
466 int desel;
467
468 retval = gpio_request(spi->cs_gpio,
469 dev_name(&spi->dev));
470 if (retval)
471 return retval;
472
473 desel = !(spi->mode & SPI_CS_HIGH);
474 retval = gpio_direction_output(spi->cs_gpio, desel);
475 if (retval) {
476 gpio_free(spi->cs_gpio);
477 return retval;
478 }
479 } else if (spi->cs_gpio != -ENOENT) {
480 if (spi->cs_gpio < 0)
481 return spi->cs_gpio;
482 return -EINVAL;
483 }
484 /* When spi->cs_gpio == -ENOENT, a hole in the phandle list
485 * indicates to use native chipselect if present, or allow for
486 * an always selected chip
487 */
488 }
489
f482cd0f
AL
490 /* Initialize chipselect - might be active for SPI_CS_HIGH mode */
491 fsl_spi_chipselect(spi, BITBANG_CS_INACTIVE);
492
ccf06998
KG
493 return 0;
494}
495
76a7498f
AL
496static void fsl_spi_cleanup(struct spi_device *spi)
497{
498 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(spi->master);
d9f26748 499 struct spi_mpc8xxx_cs *cs = spi_get_ctldata(spi);
76a7498f
AL
500
501 if (mpc8xxx_spi->type == TYPE_GRLIB && gpio_is_valid(spi->cs_gpio))
502 gpio_free(spi->cs_gpio);
d9f26748
AL
503
504 kfree(cs);
505 spi_set_ctldata(spi, NULL);
76a7498f
AL
506}
507
b36ece83 508static void fsl_spi_cpu_irq(struct mpc8xxx_spi *mspi, u32 events)
4c1fba44 509{
b36ece83
MH
510 struct fsl_spi_reg *reg_base = mspi->reg_base;
511
4c1fba44
AV
512 /* We need handle RX first */
513 if (events & SPIE_NE) {
b36ece83 514 u32 rx_data = mpc8xxx_spi_read_reg(&reg_base->receive);
4c1fba44
AV
515
516 if (mspi->rx)
517 mspi->get_rx(rx_data, mspi);
ccf06998
KG
518 }
519
4c1fba44 520 if ((events & SPIE_NF) == 0)
ccf06998 521 /* spin until TX is done */
4c1fba44 522 while (((events =
b36ece83 523 mpc8xxx_spi_read_reg(&reg_base->event)) &
ccf06998 524 SPIE_NF) == 0)
9effb959 525 cpu_relax();
ccf06998 526
4c1fba44 527 /* Clear the events */
b36ece83 528 mpc8xxx_spi_write_reg(&reg_base->event, events);
4c1fba44
AV
529
530 mspi->count -= 1;
531 if (mspi->count) {
532 u32 word = mspi->get_tx(mspi);
533
b36ece83 534 mpc8xxx_spi_write_reg(&reg_base->transmit, word);
ccf06998 535 } else {
4c1fba44 536 complete(&mspi->done);
ccf06998 537 }
4c1fba44 538}
ccf06998 539
b36ece83 540static irqreturn_t fsl_spi_irq(s32 irq, void *context_data)
4c1fba44
AV
541{
542 struct mpc8xxx_spi *mspi = context_data;
543 irqreturn_t ret = IRQ_NONE;
544 u32 events;
b36ece83 545 struct fsl_spi_reg *reg_base = mspi->reg_base;
4c1fba44
AV
546
547 /* Get interrupt events(tx/rx) */
b36ece83 548 events = mpc8xxx_spi_read_reg(&reg_base->event);
4c1fba44
AV
549 if (events)
550 ret = IRQ_HANDLED;
551
552 dev_dbg(mspi->dev, "%s: events %x\n", __func__, events);
553
554 if (mspi->flags & SPI_CPM_MODE)
b36ece83 555 fsl_spi_cpm_irq(mspi, events);
4c1fba44 556 else
b36ece83 557 fsl_spi_cpu_irq(mspi, events);
ccf06998
KG
558
559 return ret;
560}
4c1fba44 561
447b0c7b
AL
562static void fsl_spi_grlib_cs_control(struct spi_device *spi, bool on)
563{
564 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(spi->master);
565 struct fsl_spi_reg *reg_base = mpc8xxx_spi->reg_base;
566 u32 slvsel;
567 u16 cs = spi->chip_select;
568
76a7498f
AL
569 if (gpio_is_valid(spi->cs_gpio)) {
570 gpio_set_value(spi->cs_gpio, on);
571 } else if (cs < mpc8xxx_spi->native_chipselects) {
572 slvsel = mpc8xxx_spi_read_reg(&reg_base->slvsel);
573 slvsel = on ? (slvsel | (1 << cs)) : (slvsel & ~(1 << cs));
574 mpc8xxx_spi_write_reg(&reg_base->slvsel, slvsel);
575 }
447b0c7b
AL
576}
577
578static void fsl_spi_grlib_probe(struct device *dev)
579{
8074cf06 580 struct fsl_spi_platform_data *pdata = dev_get_platdata(dev);
447b0c7b
AL
581 struct spi_master *master = dev_get_drvdata(dev);
582 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(master);
583 struct fsl_spi_reg *reg_base = mpc8xxx_spi->reg_base;
584 int mbits;
585 u32 capabilities;
586
587 capabilities = mpc8xxx_spi_read_reg(&reg_base->cap);
588
589 mpc8xxx_spi->set_shifts = fsl_spi_grlib_set_shifts;
590 mbits = SPCAP_MAXWLEN(capabilities);
591 if (mbits)
592 mpc8xxx_spi->max_bits_per_word = mbits + 1;
593
76a7498f 594 mpc8xxx_spi->native_chipselects = 0;
447b0c7b 595 if (SPCAP_SSEN(capabilities)) {
76a7498f 596 mpc8xxx_spi->native_chipselects = SPCAP_SSSZ(capabilities);
447b0c7b
AL
597 mpc8xxx_spi_write_reg(&reg_base->slvsel, 0xffffffff);
598 }
76a7498f 599 master->num_chipselect = mpc8xxx_spi->native_chipselects;
447b0c7b
AL
600 pdata->cs_control = fsl_spi_grlib_cs_control;
601}
602
fd4a319b 603static struct spi_master * fsl_spi_probe(struct device *dev,
b36ece83 604 struct resource *mem, unsigned int irq)
ccf06998 605{
8074cf06 606 struct fsl_spi_platform_data *pdata = dev_get_platdata(dev);
ccf06998 607 struct spi_master *master;
575c5807 608 struct mpc8xxx_spi *mpc8xxx_spi;
b36ece83 609 struct fsl_spi_reg *reg_base;
ccf06998
KG
610 u32 regval;
611 int ret = 0;
612
575c5807 613 master = spi_alloc_master(dev, sizeof(struct mpc8xxx_spi));
ccf06998
KG
614 if (master == NULL) {
615 ret = -ENOMEM;
616 goto err;
617 }
618
35b4b3c0 619 dev_set_drvdata(dev, master);
ccf06998 620
c592becb 621 mpc8xxx_spi_probe(dev, mem, irq);
e7db06b5 622
b36ece83 623 master->setup = fsl_spi_setup;
76a7498f 624 master->cleanup = fsl_spi_cleanup;
c592becb 625 master->transfer_one_message = fsl_spi_do_one_msg;
575c5807
AV
626
627 mpc8xxx_spi = spi_master_get_devdata(master);
8922a366 628 mpc8xxx_spi->max_bits_per_word = 32;
c3f3e771 629 mpc8xxx_spi->type = fsl_spi_get_type(dev);
575c5807 630
b36ece83 631 ret = fsl_spi_cpm_init(mpc8xxx_spi);
4c1fba44
AV
632 if (ret)
633 goto err_cpm_init;
634
4178b6b1 635 mpc8xxx_spi->reg_base = devm_ioremap_resource(dev, mem);
37c5db79
AL
636 if (IS_ERR(mpc8xxx_spi->reg_base)) {
637 ret = PTR_ERR(mpc8xxx_spi->reg_base);
4178b6b1 638 goto err_probe;
447b0c7b
AL
639 }
640
641 if (mpc8xxx_spi->type == TYPE_GRLIB)
642 fsl_spi_grlib_probe(dev);
643
f734394d
AL
644 master->bits_per_word_mask =
645 (SPI_BPW_RANGE_MASK(4, 16) | SPI_BPW_MASK(32)) &
646 SPI_BPW_RANGE_MASK(1, mpc8xxx_spi->max_bits_per_word);
647
b48c4e3c
AL
648 if (mpc8xxx_spi->flags & SPI_QE_CPU_MODE)
649 mpc8xxx_spi->set_shifts = fsl_spi_qe_cpu_set_shifts;
650
651 if (mpc8xxx_spi->set_shifts)
652 /* 8 bits per word and MSB first */
653 mpc8xxx_spi->set_shifts(&mpc8xxx_spi->rx_shift,
654 &mpc8xxx_spi->tx_shift, 8, 1);
f29ba280 655
ccf06998 656 /* Register for SPI Interrupt */
4178b6b1
HK
657 ret = devm_request_irq(dev, mpc8xxx_spi->irq, fsl_spi_irq,
658 0, "fsl_spi", mpc8xxx_spi);
ccf06998
KG
659
660 if (ret != 0)
4178b6b1 661 goto err_probe;
ccf06998 662
b36ece83 663 reg_base = mpc8xxx_spi->reg_base;
ccf06998
KG
664
665 /* SPI controller initializations */
b36ece83
MH
666 mpc8xxx_spi_write_reg(&reg_base->mode, 0);
667 mpc8xxx_spi_write_reg(&reg_base->mask, 0);
668 mpc8xxx_spi_write_reg(&reg_base->command, 0);
669 mpc8xxx_spi_write_reg(&reg_base->event, 0xffffffff);
ccf06998
KG
670
671 /* Enable SPI interface */
672 regval = pdata->initial_spmode | SPMODE_INIT_VAL | SPMODE_ENABLE;
8922a366
AL
673 if (mpc8xxx_spi->max_bits_per_word < 8) {
674 regval &= ~SPMODE_LEN(0xF);
675 regval |= SPMODE_LEN(mpc8xxx_spi->max_bits_per_word - 1);
676 }
87ec0e98 677 if (mpc8xxx_spi->flags & SPI_QE_CPU_MODE)
f29ba280
JT
678 regval |= SPMODE_OP;
679
b36ece83 680 mpc8xxx_spi_write_reg(&reg_base->mode, regval);
c9bfcb31 681
4178b6b1 682 ret = devm_spi_register_master(dev, master);
c9bfcb31 683 if (ret < 0)
4178b6b1 684 goto err_probe;
ccf06998 685
b36ece83 686 dev_info(dev, "at 0x%p (irq = %d), %s mode\n", reg_base,
87ec0e98 687 mpc8xxx_spi->irq, mpc8xxx_spi_strmode(mpc8xxx_spi->flags));
ccf06998 688
35b4b3c0 689 return master;
ccf06998 690
4178b6b1 691err_probe:
b36ece83 692 fsl_spi_cpm_free(mpc8xxx_spi);
4c1fba44 693err_cpm_init:
ccf06998 694 spi_master_put(master);
ccf06998 695err:
35b4b3c0 696 return ERR_PTR(ret);
ccf06998
KG
697}
698
b36ece83 699static void fsl_spi_cs_control(struct spi_device *spi, bool on)
35b4b3c0 700{
067aa481 701 struct device *dev = spi->dev.parent->parent;
8074cf06
JH
702 struct fsl_spi_platform_data *pdata = dev_get_platdata(dev);
703 struct mpc8xxx_spi_probe_info *pinfo = to_of_pinfo(pdata);
35b4b3c0
AV
704 u16 cs = spi->chip_select;
705 int gpio = pinfo->gpios[cs];
706 bool alow = pinfo->alow_flags[cs];
707
708 gpio_set_value(gpio, on ^ alow);
709}
710
b36ece83 711static int of_fsl_spi_get_chipselects(struct device *dev)
35b4b3c0 712{
61c7a080 713 struct device_node *np = dev->of_node;
8074cf06 714 struct fsl_spi_platform_data *pdata = dev_get_platdata(dev);
575c5807 715 struct mpc8xxx_spi_probe_info *pinfo = to_of_pinfo(pdata);
e80beb27 716 int ngpios;
35b4b3c0
AV
717 int i = 0;
718 int ret;
719
720 ngpios = of_gpio_count(np);
e80beb27 721 if (ngpios <= 0) {
35b4b3c0
AV
722 /*
723 * SPI w/o chip-select line. One SPI device is still permitted
724 * though.
725 */
726 pdata->max_chipselect = 1;
727 return 0;
728 }
729
02141546 730 pinfo->gpios = kmalloc(ngpios * sizeof(*pinfo->gpios), GFP_KERNEL);
35b4b3c0
AV
731 if (!pinfo->gpios)
732 return -ENOMEM;
02141546 733 memset(pinfo->gpios, -1, ngpios * sizeof(*pinfo->gpios));
35b4b3c0 734
02141546 735 pinfo->alow_flags = kzalloc(ngpios * sizeof(*pinfo->alow_flags),
35b4b3c0
AV
736 GFP_KERNEL);
737 if (!pinfo->alow_flags) {
738 ret = -ENOMEM;
739 goto err_alloc_flags;
740 }
741
742 for (; i < ngpios; i++) {
743 int gpio;
744 enum of_gpio_flags flags;
745
746 gpio = of_get_gpio_flags(np, i, &flags);
747 if (!gpio_is_valid(gpio)) {
748 dev_err(dev, "invalid gpio #%d: %d\n", i, gpio);
783058fd 749 ret = gpio;
35b4b3c0
AV
750 goto err_loop;
751 }
752
753 ret = gpio_request(gpio, dev_name(dev));
754 if (ret) {
755 dev_err(dev, "can't request gpio #%d: %d\n", i, ret);
756 goto err_loop;
757 }
758
759 pinfo->gpios[i] = gpio;
760 pinfo->alow_flags[i] = flags & OF_GPIO_ACTIVE_LOW;
761
762 ret = gpio_direction_output(pinfo->gpios[i],
763 pinfo->alow_flags[i]);
764 if (ret) {
765 dev_err(dev, "can't set output direction for gpio "
766 "#%d: %d\n", i, ret);
767 goto err_loop;
768 }
769 }
770
771 pdata->max_chipselect = ngpios;
b36ece83 772 pdata->cs_control = fsl_spi_cs_control;
35b4b3c0
AV
773
774 return 0;
775
776err_loop:
777 while (i >= 0) {
778 if (gpio_is_valid(pinfo->gpios[i]))
779 gpio_free(pinfo->gpios[i]);
780 i--;
781 }
782
783 kfree(pinfo->alow_flags);
784 pinfo->alow_flags = NULL;
785err_alloc_flags:
786 kfree(pinfo->gpios);
787 pinfo->gpios = NULL;
788 return ret;
789}
790
b36ece83 791static int of_fsl_spi_free_chipselects(struct device *dev)
35b4b3c0 792{
8074cf06 793 struct fsl_spi_platform_data *pdata = dev_get_platdata(dev);
575c5807 794 struct mpc8xxx_spi_probe_info *pinfo = to_of_pinfo(pdata);
35b4b3c0
AV
795 int i;
796
797 if (!pinfo->gpios)
798 return 0;
799
800 for (i = 0; i < pdata->max_chipselect; i++) {
801 if (gpio_is_valid(pinfo->gpios[i]))
802 gpio_free(pinfo->gpios[i]);
803 }
804
805 kfree(pinfo->gpios);
806 kfree(pinfo->alow_flags);
807 return 0;
808}
809
fd4a319b 810static int of_fsl_spi_probe(struct platform_device *ofdev)
35b4b3c0
AV
811{
812 struct device *dev = &ofdev->dev;
61c7a080 813 struct device_node *np = ofdev->dev.of_node;
35b4b3c0
AV
814 struct spi_master *master;
815 struct resource mem;
447b0c7b 816 int irq, type;
35b4b3c0
AV
817 int ret = -ENOMEM;
818
18d306d1 819 ret = of_mpc8xxx_spi_probe(ofdev);
b36ece83
MH
820 if (ret)
821 return ret;
35b4b3c0 822
447b0c7b
AL
823 type = fsl_spi_get_type(&ofdev->dev);
824 if (type == TYPE_FSL) {
825 ret = of_fsl_spi_get_chipselects(dev);
826 if (ret)
827 goto err;
828 }
35b4b3c0
AV
829
830 ret = of_address_to_resource(np, 0, &mem);
831 if (ret)
832 goto err;
833
e8beacbb
AL
834 irq = irq_of_parse_and_map(np, 0);
835 if (!irq) {
35b4b3c0
AV
836 ret = -EINVAL;
837 goto err;
838 }
839
e8beacbb 840 master = fsl_spi_probe(dev, &mem, irq);
35b4b3c0
AV
841 if (IS_ERR(master)) {
842 ret = PTR_ERR(master);
843 goto err;
844 }
845
35b4b3c0
AV
846 return 0;
847
848err:
447b0c7b
AL
849 if (type == TYPE_FSL)
850 of_fsl_spi_free_chipselects(dev);
35b4b3c0
AV
851 return ret;
852}
853
fd4a319b 854static int of_fsl_spi_remove(struct platform_device *ofdev)
35b4b3c0 855{
24b5a82c 856 struct spi_master *master = platform_get_drvdata(ofdev);
447b0c7b 857 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(master);
35b4b3c0 858
3c5395b6 859 fsl_spi_cpm_free(mpc8xxx_spi);
447b0c7b
AL
860 if (mpc8xxx_spi->type == TYPE_FSL)
861 of_fsl_spi_free_chipselects(&ofdev->dev);
35b4b3c0
AV
862 return 0;
863}
864
18d306d1 865static struct platform_driver of_fsl_spi_driver = {
4018294b 866 .driver = {
b36ece83 867 .name = "fsl_spi",
b36ece83 868 .of_match_table = of_fsl_spi_match,
4018294b 869 },
b36ece83 870 .probe = of_fsl_spi_probe,
fd4a319b 871 .remove = of_fsl_spi_remove,
35b4b3c0
AV
872};
873
874#ifdef CONFIG_MPC832x_RDB
875/*
b36ece83 876 * XXX XXX XXX
35b4b3c0
AV
877 * This is "legacy" platform driver, was used by the MPC8323E-RDB boards
878 * only. The driver should go away soon, since newer MPC8323E-RDB's device
879 * tree can work with OpenFirmware driver. But for now we support old trees
880 * as well.
881 */
fd4a319b 882static int plat_mpc8xxx_spi_probe(struct platform_device *pdev)
35b4b3c0
AV
883{
884 struct resource *mem;
e9a172f0 885 int irq;
35b4b3c0
AV
886 struct spi_master *master;
887
8074cf06 888 if (!dev_get_platdata(&pdev->dev))
35b4b3c0
AV
889 return -EINVAL;
890
891 mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
892 if (!mem)
893 return -EINVAL;
894
895 irq = platform_get_irq(pdev, 0);
e9a172f0 896 if (irq <= 0)
35b4b3c0
AV
897 return -EINVAL;
898
b36ece83 899 master = fsl_spi_probe(&pdev->dev, mem, irq);
8c6ffba0 900 return PTR_ERR_OR_ZERO(master);
35b4b3c0
AV
901}
902
fd4a319b 903static int plat_mpc8xxx_spi_remove(struct platform_device *pdev)
35b4b3c0 904{
3c5395b6
HK
905 struct spi_master *master = platform_get_drvdata(pdev);
906 struct mpc8xxx_spi *mpc8xxx_spi = spi_master_get_devdata(master);
907
908 fsl_spi_cpm_free(mpc8xxx_spi);
909
910 return 0;
35b4b3c0
AV
911}
912
575c5807
AV
913MODULE_ALIAS("platform:mpc8xxx_spi");
914static struct platform_driver mpc8xxx_spi_driver = {
915 .probe = plat_mpc8xxx_spi_probe,
fd4a319b 916 .remove = plat_mpc8xxx_spi_remove,
ccf06998 917 .driver = {
575c5807 918 .name = "mpc8xxx_spi",
ccf06998
KG
919 },
920};
921
35b4b3c0
AV
922static bool legacy_driver_failed;
923
924static void __init legacy_driver_register(void)
925{
575c5807 926 legacy_driver_failed = platform_driver_register(&mpc8xxx_spi_driver);
35b4b3c0
AV
927}
928
929static void __exit legacy_driver_unregister(void)
930{
931 if (legacy_driver_failed)
932 return;
575c5807 933 platform_driver_unregister(&mpc8xxx_spi_driver);
35b4b3c0
AV
934}
935#else
936static void __init legacy_driver_register(void) {}
937static void __exit legacy_driver_unregister(void) {}
938#endif /* CONFIG_MPC832x_RDB */
939
b36ece83 940static int __init fsl_spi_init(void)
ccf06998 941{
35b4b3c0 942 legacy_driver_register();
18d306d1 943 return platform_driver_register(&of_fsl_spi_driver);
ccf06998 944}
b36ece83 945module_init(fsl_spi_init);
ccf06998 946
b36ece83 947static void __exit fsl_spi_exit(void)
ccf06998 948{
18d306d1 949 platform_driver_unregister(&of_fsl_spi_driver);
35b4b3c0 950 legacy_driver_unregister();
ccf06998 951}
b36ece83 952module_exit(fsl_spi_exit);
ccf06998
KG
953
954MODULE_AUTHOR("Kumar Gala");
b36ece83 955MODULE_DESCRIPTION("Simple Freescale SPI Driver");
ccf06998 956MODULE_LICENSE("GPL");