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[thirdparty/kernel/stable.git] / drivers / spi / spidev.c
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c942fddf 1// SPDX-License-Identifier: GPL-2.0-or-later
814a8d50 2/*
ca632f55 3 * Simple synchronous userspace interface to SPI devices
814a8d50
AP
4 *
5 * Copyright (C) 2006 SWAPP
6 * Andrea Paterniani <a.paterniani@swapp-eng.it>
7 * Copyright (C) 2007 David Brownell (simplification, cleanup)
814a8d50
AP
8 */
9
10#include <linux/init.h>
814a8d50
AP
11#include <linux/ioctl.h>
12#include <linux/fs.h>
13#include <linux/device.h>
b2c8dadd 14#include <linux/err.h>
814a8d50
AP
15#include <linux/list.h>
16#include <linux/errno.h>
2a7f669d
AS
17#include <linux/mod_devicetable.h>
18#include <linux/module.h>
814a8d50 19#include <linux/mutex.h>
2a7f669d 20#include <linux/property.h>
814a8d50 21#include <linux/slab.h>
7d48ec36 22#include <linux/compat.h>
814a8d50
AP
23
24#include <linux/spi/spi.h>
25#include <linux/spi/spidev.h>
26
95c63cfb 27#include <linux/uaccess.h>
814a8d50
AP
28
29
30/*
b595076a 31 * This supports access to SPI devices using normal userspace I/O calls.
814a8d50
AP
32 * Note that while traditional UNIX/POSIX I/O semantics are half duplex,
33 * and often mask message boundaries, full SPI support requires full duplex
137f1188 34 * transfers. There are several kinds of internal message boundaries to
814a8d50
AP
35 * handle chipselect management and other protocol options.
36 *
37 * SPI has a character major number assigned. We allocate minor numbers
38 * dynamically using a bitmask. You must use hotplug tools, such as udev
39 * (or mdev with busybox) to create and destroy the /dev/spidevB.C device
40 * nodes, since there is no fixed association of minor numbers with any
41 * particular SPI bus or device.
42 */
43#define SPIDEV_MAJOR 153 /* assigned */
44#define N_SPI_MINORS 32 /* ... up to 256 */
45
8ae1c924 46static DECLARE_BITMAP(minors, N_SPI_MINORS);
814a8d50 47
d21b94bf 48static_assert(N_SPI_MINORS > 0 && N_SPI_MINORS <= 256);
814a8d50 49
6f166e38 50/* Bit masks for spi_device.mode management. Note that incorrect
b55f627f
DB
51 * settings for some settings can cause *lots* of trouble for other
52 * devices on a shared bus:
6f166e38 53 *
b55f627f
DB
54 * - CS_HIGH ... this device will be active when it shouldn't be
55 * - 3WIRE ... when active, it won't behave as it should
56 * - NO_CS ... there will be no explicit message boundaries; this
57 * is completely incompatible with the shared bus model
58 * - READY ... transfers may proceed when they shouldn't.
59 *
60 * REVISIT should changing those flags be privileged?
6f166e38 61 */
dd507b5e 62#define SPI_MODE_MASK (SPI_MODE_X_MASK | SPI_CS_HIGH \
b55f627f 63 | SPI_LSB_FIRST | SPI_3WIRE | SPI_LOOP \
dc64d39b 64 | SPI_NO_CS | SPI_READY | SPI_TX_DUAL \
66ec7b3b 65 | SPI_TX_QUAD | SPI_TX_OCTAL | SPI_RX_DUAL \
178d0cbb 66 | SPI_RX_QUAD | SPI_RX_OCTAL \
5cc223ca
BS
67 | SPI_RX_CPHA_FLIP | SPI_3WIRE_HIZ \
68 | SPI_MOSI_IDLE_LOW)
814a8d50
AP
69
70struct spidev_data {
b2c8dadd 71 dev_t devt;
1f4d2dd4 72 struct mutex spi_lock;
814a8d50
AP
73 struct spi_device *spi;
74 struct list_head device_entry;
75
865f6d19 76 /* TX/RX buffers are NULL unless this device is open (users > 0) */
814a8d50
AP
77 struct mutex buf_lock;
78 unsigned users;
865f6d19
RJ
79 u8 *tx_buffer;
80 u8 *rx_buffer;
91690516 81 u32 speed_hz;
814a8d50
AP
82};
83
84static LIST_HEAD(device_list);
85static DEFINE_MUTEX(device_list_lock);
86
87static unsigned bufsiz = 4096;
88module_param(bufsiz, uint, S_IRUGO);
89MODULE_PARM_DESC(bufsiz, "data bytes in biggest supported SPI message");
90
91/*-------------------------------------------------------------------------*/
92
eede42c9
BG
93static ssize_t
94spidev_sync_unlocked(struct spi_device *spi, struct spi_message *message)
95{
96 ssize_t status;
97
98 status = spi_sync(spi, message);
99 if (status == 0)
100 status = message->actual_length;
101
102 return status;
103}
104
25d5cb4b
DB
105static ssize_t
106spidev_sync(struct spidev_data *spidev, struct spi_message *message)
107{
eede42c9 108 ssize_t status;
98d6f479 109 struct spi_device *spi;
25d5cb4b 110
1f4d2dd4 111 mutex_lock(&spidev->spi_lock);
98d6f479 112 spi = spidev->spi;
98d6f479
MS
113
114 if (spi == NULL)
25d5cb4b
DB
115 status = -ESHUTDOWN;
116 else
eede42c9 117 status = spidev_sync_unlocked(spi, message);
98d6f479 118
1f4d2dd4 119 mutex_unlock(&spidev->spi_lock);
25d5cb4b
DB
120 return status;
121}
122
123static inline ssize_t
124spidev_sync_write(struct spidev_data *spidev, size_t len)
125{
126 struct spi_transfer t = {
865f6d19 127 .tx_buf = spidev->tx_buffer,
25d5cb4b 128 .len = len,
91690516 129 .speed_hz = spidev->speed_hz,
25d5cb4b
DB
130 };
131 struct spi_message m;
132
133 spi_message_init(&m);
134 spi_message_add_tail(&t, &m);
135 return spidev_sync(spidev, &m);
136}
137
138static inline ssize_t
139spidev_sync_read(struct spidev_data *spidev, size_t len)
140{
141 struct spi_transfer t = {
865f6d19 142 .rx_buf = spidev->rx_buffer,
25d5cb4b 143 .len = len,
91690516 144 .speed_hz = spidev->speed_hz,
25d5cb4b
DB
145 };
146 struct spi_message m;
147
148 spi_message_init(&m);
149 spi_message_add_tail(&t, &m);
150 return spidev_sync(spidev, &m);
151}
152
153/*-------------------------------------------------------------------------*/
154
814a8d50
AP
155/* Read-only message with current device setup */
156static ssize_t
157spidev_read(struct file *filp, char __user *buf, size_t count, loff_t *f_pos)
158{
159 struct spidev_data *spidev;
4ebf8816 160 ssize_t status;
814a8d50
AP
161
162 /* chipselect only toggles at start or end of operation */
163 if (count > bufsiz)
164 return -EMSGSIZE;
165
166 spidev = filp->private_data;
814a8d50
AP
167
168 mutex_lock(&spidev->buf_lock);
25d5cb4b 169 status = spidev_sync_read(spidev, count);
4b1295b0 170 if (status > 0) {
814a8d50
AP
171 unsigned long missing;
172
865f6d19 173 missing = copy_to_user(buf, spidev->rx_buffer, status);
4b1295b0 174 if (missing == status)
814a8d50
AP
175 status = -EFAULT;
176 else
4b1295b0 177 status = status - missing;
814a8d50
AP
178 }
179 mutex_unlock(&spidev->buf_lock);
180
181 return status;
182}
183
184/* Write-only message with current device setup */
185static ssize_t
186spidev_write(struct file *filp, const char __user *buf,
187 size_t count, loff_t *f_pos)
188{
189 struct spidev_data *spidev;
4ebf8816 190 ssize_t status;
814a8d50
AP
191 unsigned long missing;
192
193 /* chipselect only toggles at start or end of operation */
194 if (count > bufsiz)
195 return -EMSGSIZE;
196
197 spidev = filp->private_data;
814a8d50
AP
198
199 mutex_lock(&spidev->buf_lock);
865f6d19 200 missing = copy_from_user(spidev->tx_buffer, buf, count);
95c63cfb 201 if (missing == 0)
25d5cb4b 202 status = spidev_sync_write(spidev, count);
95c63cfb 203 else
814a8d50
AP
204 status = -EFAULT;
205 mutex_unlock(&spidev->buf_lock);
206
207 return status;
208}
209
210static int spidev_message(struct spidev_data *spidev,
211 struct spi_ioc_transfer *u_xfers, unsigned n_xfers)
212{
213 struct spi_message msg;
214 struct spi_transfer *k_xfers;
215 struct spi_transfer *k_tmp;
216 struct spi_ioc_transfer *u_tmp;
9a12bff7 217 unsigned n, total, tx_total, rx_total;
865f6d19 218 u8 *tx_buf, *rx_buf;
814a8d50
AP
219 int status = -EFAULT;
220
221 spi_message_init(&msg);
222 k_xfers = kcalloc(n_xfers, sizeof(*k_tmp), GFP_KERNEL);
223 if (k_xfers == NULL)
224 return -ENOMEM;
225
226 /* Construct spi_message, copying any tx data to bounce buffer.
227 * We walk the array of user-provided transfers, using each one
228 * to initialize a kernel version of the same transfer.
229 */
865f6d19
RJ
230 tx_buf = spidev->tx_buffer;
231 rx_buf = spidev->rx_buffer;
814a8d50 232 total = 0;
9a12bff7
IA
233 tx_total = 0;
234 rx_total = 0;
814a8d50
AP
235 for (n = n_xfers, k_tmp = k_xfers, u_tmp = u_xfers;
236 n;
237 n--, k_tmp++, u_tmp++) {
aa9e862d
CE
238 /* Ensure that also following allocations from rx_buf/tx_buf will meet
239 * DMA alignment requirements.
240 */
3cbbb410 241 unsigned int len_aligned = ALIGN(u_tmp->len, ARCH_DMA_MINALIGN);
aa9e862d 242
814a8d50
AP
243 k_tmp->len = u_tmp->len;
244
da90fa8f 245 total += k_tmp->len;
9a12bff7
IA
246 /* Since the function returns the total length of transfers
247 * on success, restrict the total to positive int values to
f20fbaad
IA
248 * avoid the return value looking like an error. Also check
249 * each transfer length to avoid arithmetic overflow.
9a12bff7 250 */
f20fbaad 251 if (total > INT_MAX || k_tmp->len > INT_MAX) {
da90fa8f
DP
252 status = -EMSGSIZE;
253 goto done;
254 }
255
814a8d50 256 if (u_tmp->rx_buf) {
9a12bff7 257 /* this transfer needs space in RX bounce buffer */
aa9e862d 258 rx_total += len_aligned;
9a12bff7
IA
259 if (rx_total > bufsiz) {
260 status = -EMSGSIZE;
261 goto done;
262 }
865f6d19 263 k_tmp->rx_buf = rx_buf;
aa9e862d 264 rx_buf += len_aligned;
814a8d50
AP
265 }
266 if (u_tmp->tx_buf) {
9a12bff7 267 /* this transfer needs space in TX bounce buffer */
aa9e862d 268 tx_total += len_aligned;
9a12bff7
IA
269 if (tx_total > bufsiz) {
270 status = -EMSGSIZE;
271 goto done;
272 }
865f6d19
RJ
273 k_tmp->tx_buf = tx_buf;
274 if (copy_from_user(tx_buf, (const u8 __user *)
142956af 275 (uintptr_t) u_tmp->tx_buf,
814a8d50
AP
276 u_tmp->len))
277 goto done;
aa9e862d 278 tx_buf += len_aligned;
814a8d50 279 }
814a8d50
AP
280
281 k_tmp->cs_change = !!u_tmp->cs_change;
dc64d39b
GU
282 k_tmp->tx_nbits = u_tmp->tx_nbits;
283 k_tmp->rx_nbits = u_tmp->rx_nbits;
814a8d50 284 k_tmp->bits_per_word = u_tmp->bits_per_word;
8e319dd5
AA
285 k_tmp->delay.value = u_tmp->delay_usecs;
286 k_tmp->delay.unit = SPI_DELAY_UNIT_USECS;
814a8d50 287 k_tmp->speed_hz = u_tmp->speed_hz;
ec3fa72f
AA
288 k_tmp->word_delay.value = u_tmp->word_delay_usecs;
289 k_tmp->word_delay.unit = SPI_DELAY_UNIT_USECS;
91690516
MB
290 if (!k_tmp->speed_hz)
291 k_tmp->speed_hz = spidev->speed_hz;
814a8d50 292#ifdef VERBOSE
41df70d9 293 dev_dbg(&spidev->spi->dev,
2ed6692e 294 " xfer len %u %s%s%s%dbits %u usec %u usec %uHz\n",
ea70fb5b
OS
295 k_tmp->len,
296 k_tmp->rx_buf ? "rx " : "",
297 k_tmp->tx_buf ? "tx " : "",
298 k_tmp->cs_change ? "cs " : "",
299 k_tmp->bits_per_word ? : spidev->spi->bits_per_word,
300 k_tmp->delay.value,
301 k_tmp->word_delay.value,
302 k_tmp->speed_hz ? : spidev->spi->max_speed_hz);
814a8d50
AP
303#endif
304 spi_message_add_tail(k_tmp, &msg);
305 }
306
eede42c9 307 status = spidev_sync_unlocked(spidev->spi, &msg);
814a8d50
AP
308 if (status < 0)
309 goto done;
310
311 /* copy any rx data out of bounce buffer */
aa9e862d
CE
312 for (n = n_xfers, k_tmp = k_xfers, u_tmp = u_xfers;
313 n;
314 n--, k_tmp++, u_tmp++) {
814a8d50 315 if (u_tmp->rx_buf) {
251d5951 316 if (copy_to_user((u8 __user *)
aa9e862d 317 (uintptr_t) u_tmp->rx_buf, k_tmp->rx_buf,
814a8d50
AP
318 u_tmp->len)) {
319 status = -EFAULT;
320 goto done;
321 }
322 }
814a8d50
AP
323 }
324 status = total;
325
326done:
814a8d50
AP
327 kfree(k_xfers);
328 return status;
329}
330
7782a1a9
IA
331static struct spi_ioc_transfer *
332spidev_get_ioc_message(unsigned int cmd, struct spi_ioc_transfer __user *u_ioc,
333 unsigned *n_ioc)
334{
7782a1a9
IA
335 u32 tmp;
336
337 /* Check type, command number and direction */
338 if (_IOC_TYPE(cmd) != SPI_IOC_MAGIC
339 || _IOC_NR(cmd) != _IOC_NR(SPI_IOC_MESSAGE(0))
340 || _IOC_DIR(cmd) != _IOC_WRITE)
341 return ERR_PTR(-ENOTTY);
342
343 tmp = _IOC_SIZE(cmd);
344 if ((tmp % sizeof(struct spi_ioc_transfer)) != 0)
345 return ERR_PTR(-EINVAL);
346 *n_ioc = tmp / sizeof(struct spi_ioc_transfer);
347 if (*n_ioc == 0)
348 return NULL;
349
350 /* copy into scratch area */
f7929436 351 return memdup_user(u_ioc, tmp);
7782a1a9
IA
352}
353
4ef754b7
AC
354static long
355spidev_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
814a8d50 356{
814a8d50
AP
357 int retval = 0;
358 struct spidev_data *spidev;
359 struct spi_device *spi;
12c8d7a7 360 struct spi_controller *ctlr;
814a8d50
AP
361 u32 tmp;
362 unsigned n_ioc;
363 struct spi_ioc_transfer *ioc;
364
365 /* Check type and command number */
366 if (_IOC_TYPE(cmd) != SPI_IOC_MAGIC)
367 return -ENOTTY;
368
25d5cb4b
DB
369 /* guard against device removal before, or while,
370 * we issue this ioctl.
371 */
814a8d50 372 spidev = filp->private_data;
1f4d2dd4 373 mutex_lock(&spidev->spi_lock);
25d5cb4b 374 spi = spi_dev_get(spidev->spi);
1f4d2dd4
BG
375 if (spi == NULL) {
376 mutex_unlock(&spidev->spi_lock);
25d5cb4b 377 return -ESHUTDOWN;
1f4d2dd4 378 }
814a8d50 379
12c8d7a7
AS
380 ctlr = spi->controller;
381
4ef754b7
AC
382 /* use the buffer lock here for triple duty:
383 * - prevent I/O (from us) so calling spi_setup() is safe;
384 * - prevent concurrent SPI_IOC_WR_* from morphing
385 * data fields while SPI_IOC_RD_* reads them;
386 * - SPI_IOC_MESSAGE needs the buffer locked "normally".
387 */
388 mutex_lock(&spidev->buf_lock);
389
814a8d50
AP
390 switch (cmd) {
391 /* read requests */
392 case SPI_IOC_RD_MODE:
dc64d39b 393 case SPI_IOC_RD_MODE32:
764246c7 394 tmp = spi->mode & SPI_MODE_MASK;
7dbfa445 395
193a7f9e 396 if (ctlr->use_gpio_descriptors && spi_get_csgpiod(spi, 0))
12c8d7a7 397 tmp &= ~SPI_CS_HIGH;
7dbfa445
AS
398
399 if (cmd == SPI_IOC_RD_MODE)
764246c7 400 retval = put_user(tmp, (__u8 __user *)arg);
7dbfa445 401 else
764246c7 402 retval = put_user(tmp, (__u32 __user *)arg);
dc64d39b 403 break;
814a8d50 404 case SPI_IOC_RD_LSB_FIRST:
251d5951 405 retval = put_user((spi->mode & SPI_LSB_FIRST) ? 1 : 0,
814a8d50
AP
406 (__u8 __user *)arg);
407 break;
408 case SPI_IOC_RD_BITS_PER_WORD:
251d5951 409 retval = put_user(spi->bits_per_word, (__u8 __user *)arg);
814a8d50
AP
410 break;
411 case SPI_IOC_RD_MAX_SPEED_HZ:
251d5951 412 retval = put_user(spidev->speed_hz, (__u32 __user *)arg);
814a8d50
AP
413 break;
414
415 /* write requests */
416 case SPI_IOC_WR_MODE:
dc64d39b
GU
417 case SPI_IOC_WR_MODE32:
418 if (cmd == SPI_IOC_WR_MODE)
251d5951 419 retval = get_user(tmp, (u8 __user *)arg);
dc64d39b 420 else
251d5951 421 retval = get_user(tmp, (u32 __user *)arg);
814a8d50 422 if (retval == 0) {
e6456186 423 u32 save = spi->mode;
814a8d50
AP
424
425 if (tmp & ~SPI_MODE_MASK) {
426 retval = -EINVAL;
427 break;
428 }
429
193a7f9e 430 if (ctlr->use_gpio_descriptors && spi_get_csgpiod(spi, 0))
138c9c32
LW
431 tmp |= SPI_CS_HIGH;
432
814a8d50 433 tmp |= spi->mode & ~SPI_MODE_MASK;
dd06a0c6 434 spi->mode = tmp & SPI_MODE_USER_MASK;
814a8d50
AP
435 retval = spi_setup(spi);
436 if (retval < 0)
437 spi->mode = save;
438 else
dc64d39b 439 dev_dbg(&spi->dev, "spi mode %x\n", tmp);
814a8d50
AP
440 }
441 break;
442 case SPI_IOC_WR_LSB_FIRST:
251d5951 443 retval = get_user(tmp, (__u8 __user *)arg);
814a8d50 444 if (retval == 0) {
e6456186 445 u32 save = spi->mode;
814a8d50
AP
446
447 if (tmp)
448 spi->mode |= SPI_LSB_FIRST;
449 else
450 spi->mode &= ~SPI_LSB_FIRST;
451 retval = spi_setup(spi);
452 if (retval < 0)
453 spi->mode = save;
454 else
455 dev_dbg(&spi->dev, "%csb first\n",
456 tmp ? 'l' : 'm');
457 }
458 break;
459 case SPI_IOC_WR_BITS_PER_WORD:
251d5951 460 retval = get_user(tmp, (__u8 __user *)arg);
814a8d50
AP
461 if (retval == 0) {
462 u8 save = spi->bits_per_word;
463
464 spi->bits_per_word = tmp;
465 retval = spi_setup(spi);
466 if (retval < 0)
467 spi->bits_per_word = save;
468 else
469 dev_dbg(&spi->dev, "%d bits per word\n", tmp);
470 }
471 break;
833026ad
DC
472 case SPI_IOC_WR_MAX_SPEED_HZ: {
473 u32 save;
474
251d5951 475 retval = get_user(tmp, (__u32 __user *)arg);
833026ad
DC
476 if (retval)
477 break;
478 if (tmp == 0) {
479 retval = -EINVAL;
480 break;
481 }
814a8d50 482
833026ad
DC
483 save = spi->max_speed_hz;
484
485 spi->max_speed_hz = tmp;
486 retval = spi_setup(spi);
487 if (retval == 0) {
488 spidev->speed_hz = tmp;
489 dev_dbg(&spi->dev, "%d Hz (max)\n", spidev->speed_hz);
814a8d50 490 }
814a8d50 491
833026ad
DC
492 spi->max_speed_hz = save;
493 break;
494 }
814a8d50
AP
495 default:
496 /* segmented and/or full-duplex I/O request */
7782a1a9
IA
497 /* Check message and copy into scratch area */
498 ioc = spidev_get_ioc_message(cmd,
499 (struct spi_ioc_transfer __user *)arg, &n_ioc);
500 if (IS_ERR(ioc)) {
501 retval = PTR_ERR(ioc);
814a8d50
AP
502 break;
503 }
7782a1a9
IA
504 if (!ioc)
505 break; /* n_ioc is also 0 */
814a8d50
AP
506
507 /* translate to spi_message, execute */
508 retval = spidev_message(spidev, ioc, n_ioc);
509 kfree(ioc);
510 break;
511 }
4ef754b7
AC
512
513 mutex_unlock(&spidev->buf_lock);
25d5cb4b 514 spi_dev_put(spi);
1f4d2dd4 515 mutex_unlock(&spidev->spi_lock);
814a8d50
AP
516 return retval;
517}
518
7d48ec36 519#ifdef CONFIG_COMPAT
7782a1a9
IA
520static long
521spidev_compat_ioc_message(struct file *filp, unsigned int cmd,
522 unsigned long arg)
523{
524 struct spi_ioc_transfer __user *u_ioc;
525 int retval = 0;
526 struct spidev_data *spidev;
527 struct spi_device *spi;
528 unsigned n_ioc, n;
529 struct spi_ioc_transfer *ioc;
530
531 u_ioc = (struct spi_ioc_transfer __user *) compat_ptr(arg);
7782a1a9
IA
532
533 /* guard against device removal before, or while,
534 * we issue this ioctl.
535 */
536 spidev = filp->private_data;
1f4d2dd4 537 mutex_lock(&spidev->spi_lock);
7782a1a9 538 spi = spi_dev_get(spidev->spi);
1f4d2dd4
BG
539 if (spi == NULL) {
540 mutex_unlock(&spidev->spi_lock);
7782a1a9 541 return -ESHUTDOWN;
1f4d2dd4 542 }
7782a1a9
IA
543
544 /* SPI_IOC_MESSAGE needs the buffer locked "normally" */
545 mutex_lock(&spidev->buf_lock);
546
547 /* Check message and copy into scratch area */
548 ioc = spidev_get_ioc_message(cmd, u_ioc, &n_ioc);
549 if (IS_ERR(ioc)) {
550 retval = PTR_ERR(ioc);
551 goto done;
552 }
553 if (!ioc)
554 goto done; /* n_ioc is also 0 */
555
556 /* Convert buffer pointers */
557 for (n = 0; n < n_ioc; n++) {
558 ioc[n].rx_buf = (uintptr_t) compat_ptr(ioc[n].rx_buf);
559 ioc[n].tx_buf = (uintptr_t) compat_ptr(ioc[n].tx_buf);
560 }
561
562 /* translate to spi_message, execute */
563 retval = spidev_message(spidev, ioc, n_ioc);
564 kfree(ioc);
565
566done:
567 mutex_unlock(&spidev->buf_lock);
568 spi_dev_put(spi);
1f4d2dd4 569 mutex_unlock(&spidev->spi_lock);
7782a1a9
IA
570 return retval;
571}
572
7d48ec36
BW
573static long
574spidev_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
575{
7782a1a9
IA
576 if (_IOC_TYPE(cmd) == SPI_IOC_MAGIC
577 && _IOC_NR(cmd) == _IOC_NR(SPI_IOC_MESSAGE(0))
578 && _IOC_DIR(cmd) == _IOC_WRITE)
579 return spidev_compat_ioc_message(filp, cmd, arg);
580
7d48ec36
BW
581 return spidev_ioctl(filp, cmd, (unsigned long)compat_ptr(arg));
582}
583#else
584#define spidev_compat_ioctl NULL
585#endif /* CONFIG_COMPAT */
586
814a8d50
AP
587static int spidev_open(struct inode *inode, struct file *filp)
588{
d50d7e91 589 struct spidev_data *spidev = NULL, *iter;
814a8d50
AP
590 int status = -ENXIO;
591
592 mutex_lock(&device_list_lock);
593
d50d7e91
JK
594 list_for_each_entry(iter, &device_list, device_entry) {
595 if (iter->devt == inode->i_rdev) {
814a8d50 596 status = 0;
d50d7e91 597 spidev = iter;
814a8d50
AP
598 break;
599 }
600 }
865f6d19 601
d50d7e91 602 if (!spidev) {
865f6d19
RJ
603 pr_debug("spidev: nothing for minor %d\n", iminor(inode));
604 goto err_find_dev;
605 }
606
607 if (!spidev->tx_buffer) {
608 spidev->tx_buffer = kmalloc(bufsiz, GFP_KERNEL);
609 if (!spidev->tx_buffer) {
89a63566 610 status = -ENOMEM;
865f6d19 611 goto err_find_dev;
814a8d50 612 }
89a63566 613 }
865f6d19
RJ
614
615 if (!spidev->rx_buffer) {
616 spidev->rx_buffer = kmalloc(bufsiz, GFP_KERNEL);
617 if (!spidev->rx_buffer) {
865f6d19
RJ
618 status = -ENOMEM;
619 goto err_alloc_rx_buf;
814a8d50 620 }
865f6d19
RJ
621 }
622
623 spidev->users++;
624 filp->private_data = spidev;
c5bf68fe 625 stream_open(inode, filp);
814a8d50 626
865f6d19
RJ
627 mutex_unlock(&device_list_lock);
628 return 0;
629
630err_alloc_rx_buf:
631 kfree(spidev->tx_buffer);
632 spidev->tx_buffer = NULL;
633err_find_dev:
814a8d50
AP
634 mutex_unlock(&device_list_lock);
635 return status;
636}
637
638static int spidev_release(struct inode *inode, struct file *filp)
639{
640 struct spidev_data *spidev;
06096cc6 641 int dofree;
814a8d50
AP
642
643 mutex_lock(&device_list_lock);
644 spidev = filp->private_data;
645 filp->private_data = NULL;
b2c8dadd 646
1f4d2dd4 647 mutex_lock(&spidev->spi_lock);
06096cc6
ZD
648 /* ... after we unbound from the underlying device? */
649 dofree = (spidev->spi == NULL);
1f4d2dd4 650 mutex_unlock(&spidev->spi_lock);
06096cc6 651
b2c8dadd 652 /* last close? */
814a8d50
AP
653 spidev->users--;
654 if (!spidev->users) {
b2c8dadd 655
865f6d19
RJ
656 kfree(spidev->tx_buffer);
657 spidev->tx_buffer = NULL;
658
659 kfree(spidev->rx_buffer);
660 spidev->rx_buffer = NULL;
b2c8dadd 661
b2c8dadd
DB
662 if (dofree)
663 kfree(spidev);
06096cc6
ZD
664 else
665 spidev->speed_hz = spidev->spi->max_speed_hz;
814a8d50 666 }
9f918a72 667#ifdef CONFIG_SPI_SLAVE
06096cc6 668 if (!dofree)
94628e5a 669 spi_target_abort(spidev->spi);
9f918a72 670#endif
814a8d50
AP
671 mutex_unlock(&device_list_lock);
672
99472cc0 673 return 0;
814a8d50
AP
674}
675
828c0950 676static const struct file_operations spidev_fops = {
814a8d50
AP
677 .owner = THIS_MODULE,
678 /* REVISIT switch to aio primitives, so that userspace
679 * gets more complete API coverage. It'll simplify things
680 * too, except for the locking.
681 */
682 .write = spidev_write,
683 .read = spidev_read,
4ef754b7 684 .unlocked_ioctl = spidev_ioctl,
7d48ec36 685 .compat_ioctl = spidev_compat_ioctl,
814a8d50
AP
686 .open = spidev_open,
687 .release = spidev_release,
688};
689
690/*-------------------------------------------------------------------------*/
691
692/* The main reason to have this class is to make mdev/udev create the
693 * /dev/spidevB.C character device nodes exposing our userspace API.
694 * It also simplifies memory management.
695 */
696
df22568a
GKH
697static const struct class spidev_class = {
698 .name = "spidev",
699};
814a8d50 700
e490ceff
UKK
701/*
702 * The spi device ids are expected to match the device names of the
703 * spidev_dt_ids array below. Both arrays are kept in the same ordering.
704 */
6840615f 705static const struct spi_device_id spidev_spi_ids[] = {
e490ceff
UKK
706 { .name = /* cisco */ "spi-petra" },
707 { .name = /* dh */ "dhcom-board" },
708 { .name = /* elgin */ "jg10309-01" },
10254a6c 709 { .name = /* gocontroll */ "moduline-module-slot"},
e490ceff
UKK
710 { .name = /* lineartechnology */ "ltc2488" },
711 { .name = /* lwn */ "bk4" },
712 { .name = /* lwn */ "bk4-spi" },
713 { .name = /* menlo */ "m53cpld" },
714 { .name = /* micron */ "spi-authenta" },
715 { .name = /* rohm */ "bh2228fv" },
716 { .name = /* rohm */ "dh2228fv" },
717 { .name = /* semtech */ "sx1301" },
718 { .name = /* silabs */ "em3581" },
719 { .name = /* silabs */ "si3210" },
6840615f
MB
720 {},
721};
722MODULE_DEVICE_TABLE(spi, spidev_spi_ids);
723
88a28519
AS
724/*
725 * spidev should never be referenced in DT without a specific compatible string,
726 * it is a Linux implementation thing rather than a description of the hardware.
727 */
728static int spidev_of_check(struct device *dev)
729{
730 if (device_property_match_string(dev, "compatible", "spidev") < 0)
731 return 0;
732
733 dev_err(dev, "spidev listed directly in DT is not supported\n");
734 return -EINVAL;
735}
736
956b200a 737static const struct of_device_id spidev_dt_ids[] = {
be585245
KK
738 { .compatible = "cisco,spi-petra", .data = &spidev_of_check },
739 { .compatible = "dh,dhcom-board", .data = &spidev_of_check },
ab3f6e15 740 { .compatible = "elgin,jg10309-01", .data = &spidev_of_check },
10254a6c 741 { .compatible = "gocontroll,moduline-module-slot", .data = &spidev_of_check},
88a28519 742 { .compatible = "lineartechnology,ltc2488", .data = &spidev_of_check },
88a28519 743 { .compatible = "lwn,bk4", .data = &spidev_of_check },
096c34dd 744 { .compatible = "lwn,bk4-spi", .data = &spidev_of_check },
88a28519 745 { .compatible = "menlo,m53cpld", .data = &spidev_of_check },
88a28519 746 { .compatible = "micron,spi-authenta", .data = &spidev_of_check },
fc28d1c1 747 { .compatible = "rohm,bh2228fv", .data = &spidev_of_check },
be585245
KK
748 { .compatible = "rohm,dh2228fv", .data = &spidev_of_check },
749 { .compatible = "semtech,sx1301", .data = &spidev_of_check },
c67d90e0 750 { .compatible = "silabs,em3581", .data = &spidev_of_check },
6c9d1fd5 751 { .compatible = "silabs,si3210", .data = &spidev_of_check },
956b200a
MB
752 {},
753};
754MODULE_DEVICE_TABLE(of, spidev_dt_ids);
956b200a 755
cf9f4327 756/* Dummy SPI devices not to be used in production systems */
2a7f669d
AS
757static int spidev_acpi_check(struct device *dev)
758{
759 dev_warn(dev, "do not use this driver in production systems!\n");
760 return 0;
761}
cf9f4327
MW
762
763static const struct acpi_device_id spidev_acpi_ids[] = {
764 /*
765 * The ACPI SPT000* devices are only meant for development and
766 * testing. Systems used in production should have a proper ACPI
767 * description of the connected peripheral and they should also use
768 * a proper driver instead of poking directly to the SPI bus.
769 */
2a7f669d
AS
770 { "SPT0001", (kernel_ulong_t)&spidev_acpi_check },
771 { "SPT0002", (kernel_ulong_t)&spidev_acpi_check },
772 { "SPT0003", (kernel_ulong_t)&spidev_acpi_check },
cf9f4327
MW
773 {},
774};
775MODULE_DEVICE_TABLE(acpi, spidev_acpi_ids);
776
814a8d50
AP
777/*-------------------------------------------------------------------------*/
778
fd4a319b 779static int spidev_probe(struct spi_device *spi)
814a8d50 780{
2a7f669d 781 int (*match)(struct device *dev);
814a8d50
AP
782 struct spidev_data *spidev;
783 int status;
784 unsigned long minor;
785
2a7f669d
AS
786 match = device_get_match_data(&spi->dev);
787 if (match) {
788 status = match(&spi->dev);
789 if (status)
790 return status;
791 }
cf9f4327 792
814a8d50
AP
793 /* Allocate driver data */
794 spidev = kzalloc(sizeof(*spidev), GFP_KERNEL);
795 if (!spidev)
796 return -ENOMEM;
797
798 /* Initialize the driver data */
799 spidev->spi = spi;
1f4d2dd4 800 mutex_init(&spidev->spi_lock);
814a8d50
AP
801 mutex_init(&spidev->buf_lock);
802
803 INIT_LIST_HEAD(&spidev->device_entry);
804
805 /* If we can allocate a minor number, hook up this device.
806 * Reusing minors is fine so long as udev or mdev is working.
807 */
808 mutex_lock(&device_list_lock);
0a4dd778 809 minor = find_first_zero_bit(minors, N_SPI_MINORS);
814a8d50 810 if (minor < N_SPI_MINORS) {
b2c8dadd
DB
811 struct device *dev;
812
813 spidev->devt = MKDEV(SPIDEV_MAJOR, minor);
df22568a 814 dev = device_create(&spidev_class, &spi->dev, spidev->devt,
a9b12619 815 spidev, "spidev%d.%d",
d934cd6f 816 spi->controller->bus_num, spi_get_chipselect(spi, 0));
8c6ffba0 817 status = PTR_ERR_OR_ZERO(dev);
814a8d50
AP
818 } else {
819 dev_dbg(&spi->dev, "no minor number available!\n");
820 status = -ENODEV;
821 }
822 if (status == 0) {
823 set_bit(minor, minors);
814a8d50
AP
824 list_add(&spidev->device_entry, &device_list);
825 }
826 mutex_unlock(&device_list_lock);
827
91690516
MB
828 spidev->speed_hz = spi->max_speed_hz;
829
aaacf4bb
WO
830 if (status == 0)
831 spi_set_drvdata(spi, spidev);
832 else
814a8d50
AP
833 kfree(spidev);
834
835 return status;
836}
837
a0386bba 838static void spidev_remove(struct spi_device *spi)
814a8d50 839{
b2c8dadd 840 struct spidev_data *spidev = spi_get_drvdata(spi);
814a8d50 841
abd42781
ZD
842 /* prevent new opens */
843 mutex_lock(&device_list_lock);
25d5cb4b 844 /* make sure ops on existing fds can abort cleanly */
1f4d2dd4 845 mutex_lock(&spidev->spi_lock);
25d5cb4b 846 spidev->spi = NULL;
1f4d2dd4 847 mutex_unlock(&spidev->spi_lock);
814a8d50
AP
848
849 list_del(&spidev->device_entry);
df22568a 850 device_destroy(&spidev_class, spidev->devt);
b2c8dadd
DB
851 clear_bit(MINOR(spidev->devt), minors);
852 if (spidev->users == 0)
853 kfree(spidev);
814a8d50 854 mutex_unlock(&device_list_lock);
814a8d50
AP
855}
856
db389b61 857static struct spi_driver spidev_spi_driver = {
814a8d50
AP
858 .driver = {
859 .name = "spidev",
88a28519 860 .of_match_table = spidev_dt_ids,
2a7f669d 861 .acpi_match_table = spidev_acpi_ids,
814a8d50
AP
862 },
863 .probe = spidev_probe,
fd4a319b 864 .remove = spidev_remove,
6840615f 865 .id_table = spidev_spi_ids,
814a8d50
AP
866
867 /* NOTE: suspend/resume methods are not necessary here.
868 * We don't do anything except pass the requests to/from
869 * the underlying controller. The refrigerator handles
870 * most issues; the controller driver handles the rest.
871 */
872};
873
874/*-------------------------------------------------------------------------*/
875
876static int __init spidev_init(void)
877{
878 int status;
879
880 /* Claim our 256 reserved device numbers. Then register a class
881 * that will key udev/mdev to add/remove /dev nodes. Last, register
882 * the driver which manages those device numbers.
883 */
814a8d50
AP
884 status = register_chrdev(SPIDEV_MAJOR, "spi", &spidev_fops);
885 if (status < 0)
886 return status;
887
df22568a
GKH
888 status = class_register(&spidev_class);
889 if (status) {
db389b61 890 unregister_chrdev(SPIDEV_MAJOR, spidev_spi_driver.driver.name);
df22568a 891 return status;
814a8d50
AP
892 }
893
db389b61 894 status = spi_register_driver(&spidev_spi_driver);
814a8d50 895 if (status < 0) {
df22568a 896 class_unregister(&spidev_class);
db389b61 897 unregister_chrdev(SPIDEV_MAJOR, spidev_spi_driver.driver.name);
814a8d50
AP
898 }
899 return status;
900}
901module_init(spidev_init);
902
903static void __exit spidev_exit(void)
904{
db389b61 905 spi_unregister_driver(&spidev_spi_driver);
df22568a 906 class_unregister(&spidev_class);
db389b61 907 unregister_chrdev(SPIDEV_MAJOR, spidev_spi_driver.driver.name);
814a8d50
AP
908}
909module_exit(spidev_exit);
910
911MODULE_AUTHOR("Andrea Paterniani, <a.paterniani@swapp-eng.it>");
912MODULE_DESCRIPTION("User mode SPI device interface");
913MODULE_LICENSE("GPL");
e0626e38 914MODULE_ALIAS("spi:spidev");