blob: d723d4193b9014a6bc1730b106798d22fe9ca59d [file] [log] [blame]
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001/****************************************************************************
2 *
3 * Driver for the IFX 6x60 spi modem.
4 *
5 * Copyright (C) 2008 Option International
6 * Copyright (C) 2008 Filip Aben <f.aben@option.com>
7 * Denis Joseph Barrow <d.barow@option.com>
8 * Jan Dumon <j.dumon@option.com>
9 *
10 * Copyright (C) 2009, 2010 Intel Corp
Russ Gorby2f1522e2011-02-02 12:56:58 -080011 * Russ Gorby <russ.gorby@intel.com>
Russ Gorbyaf3b8882010-10-26 14:13:52 +010012 *
13 * This program is free software; you can redistribute it and/or modify
14 * it under the terms of the GNU General Public License version 2 as
15 * published by the Free Software Foundation.
16 *
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software
24 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
25 * USA
26 *
27 * Driver modified by Intel from Option gtm501l_spi.c
28 *
29 * Notes
30 * o The driver currently assumes a single device only. If you need to
31 * change this then look for saved_ifx_dev and add a device lookup
32 * o The driver is intended to be big-endian safe but has never been
33 * tested that way (no suitable hardware). There are a couple of FIXME
34 * notes by areas that may need addressing
35 * o Some of the GPIO naming/setup assumptions may need revisiting if
36 * you need to use this driver for another platform.
37 *
38 *****************************************************************************/
Alexey Dobriyanb7f080c2011-06-16 11:01:34 +000039#include <linux/dma-mapping.h>
Russ Gorbyaf3b8882010-10-26 14:13:52 +010040#include <linux/module.h>
41#include <linux/termios.h>
42#include <linux/tty.h>
43#include <linux/device.h>
44#include <linux/spi/spi.h>
Russ Gorbyaf3b8882010-10-26 14:13:52 +010045#include <linux/kfifo.h>
46#include <linux/tty_flip.h>
47#include <linux/timer.h>
48#include <linux/serial.h>
49#include <linux/interrupt.h>
50#include <linux/irq.h>
51#include <linux/rfkill.h>
52#include <linux/fs.h>
53#include <linux/ip.h>
54#include <linux/dmapool.h>
55#include <linux/gpio.h>
56#include <linux/sched.h>
57#include <linux/time.h>
58#include <linux/wait.h>
Russ Gorbyaf3b8882010-10-26 14:13:52 +010059#include <linux/pm.h>
60#include <linux/pm_runtime.h>
61#include <linux/spi/ifx_modem.h>
Alan Cox83abd0d2010-11-12 10:46:23 +000062#include <linux/delay.h>
Jun Chen72d47242012-11-23 06:07:27 -050063#include <linux/reboot.h>
Russ Gorbyaf3b8882010-10-26 14:13:52 +010064
65#include "ifx6x60.h"
66
67#define IFX_SPI_MORE_MASK 0x10
chao bi1b2f8a92012-11-06 11:13:59 +080068#define IFX_SPI_MORE_BIT 4 /* bit position in u8 */
69#define IFX_SPI_CTS_BIT 6 /* bit position in u8 */
Russ Gorby2aff8d92011-02-07 12:02:31 -080070#define IFX_SPI_MODE SPI_MODE_1
Russ Gorbyaf3b8882010-10-26 14:13:52 +010071#define IFX_SPI_TTY_ID 0
72#define IFX_SPI_TIMEOUT_SEC 2
73#define IFX_SPI_HEADER_0 (-1)
74#define IFX_SPI_HEADER_F (-2)
75
Jun Chen72d47242012-11-23 06:07:27 -050076#define PO_POST_DELAY 200
77#define IFX_MDM_RST_PMU 4
78
Russ Gorbyaf3b8882010-10-26 14:13:52 +010079/* forward reference */
80static void ifx_spi_handle_srdy(struct ifx_spi_device *ifx_dev);
Jun Chen72d47242012-11-23 06:07:27 -050081static int ifx_modem_reboot_callback(struct notifier_block *nfb,
82 unsigned long event, void *data);
83static int ifx_modem_power_off(struct ifx_spi_device *ifx_dev);
Russ Gorbyaf3b8882010-10-26 14:13:52 +010084
85/* local variables */
Russ Gorbyf0891402011-02-07 12:02:29 -080086static int spi_bpw = 16; /* 8, 16 or 32 bit word length */
Russ Gorbyaf3b8882010-10-26 14:13:52 +010087static struct tty_driver *tty_drv;
88static struct ifx_spi_device *saved_ifx_dev;
89static struct lock_class_key ifx_spi_key;
90
Jun Chen72d47242012-11-23 06:07:27 -050091static struct notifier_block ifx_modem_reboot_notifier_block = {
92 .notifier_call = ifx_modem_reboot_callback,
93};
94
95static int ifx_modem_power_off(struct ifx_spi_device *ifx_dev)
96{
97 gpio_set_value(IFX_MDM_RST_PMU, 1);
98 msleep(PO_POST_DELAY);
99
100 return 0;
101}
102
103static int ifx_modem_reboot_callback(struct notifier_block *nfb,
104 unsigned long event, void *data)
105{
106 if (saved_ifx_dev)
107 ifx_modem_power_off(saved_ifx_dev);
108 else
109 pr_warn("no ifx modem active;\n");
110
111 return NOTIFY_OK;
112}
113
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100114/* GPIO/GPE settings */
115
116/**
117 * mrdy_set_high - set MRDY GPIO
118 * @ifx: device we are controlling
119 *
120 */
121static inline void mrdy_set_high(struct ifx_spi_device *ifx)
122{
123 gpio_set_value(ifx->gpio.mrdy, 1);
124}
125
126/**
127 * mrdy_set_low - clear MRDY GPIO
128 * @ifx: device we are controlling
129 *
130 */
131static inline void mrdy_set_low(struct ifx_spi_device *ifx)
132{
133 gpio_set_value(ifx->gpio.mrdy, 0);
134}
135
136/**
137 * ifx_spi_power_state_set
138 * @ifx_dev: our SPI device
139 * @val: bits to set
140 *
141 * Set bit in power status and signal power system if status becomes non-0
142 */
143static void
144ifx_spi_power_state_set(struct ifx_spi_device *ifx_dev, unsigned char val)
145{
146 unsigned long flags;
147
148 spin_lock_irqsave(&ifx_dev->power_lock, flags);
149
150 /*
151 * if power status is already non-0, just update, else
152 * tell power system
153 */
154 if (!ifx_dev->power_status)
155 pm_runtime_get(&ifx_dev->spi_dev->dev);
156 ifx_dev->power_status |= val;
157
158 spin_unlock_irqrestore(&ifx_dev->power_lock, flags);
159}
160
161/**
162 * ifx_spi_power_state_clear - clear power bit
163 * @ifx_dev: our SPI device
164 * @val: bits to clear
165 *
166 * clear bit in power status and signal power system if status becomes 0
167 */
168static void
169ifx_spi_power_state_clear(struct ifx_spi_device *ifx_dev, unsigned char val)
170{
171 unsigned long flags;
172
173 spin_lock_irqsave(&ifx_dev->power_lock, flags);
174
175 if (ifx_dev->power_status) {
176 ifx_dev->power_status &= ~val;
177 if (!ifx_dev->power_status)
178 pm_runtime_put(&ifx_dev->spi_dev->dev);
179 }
180
181 spin_unlock_irqrestore(&ifx_dev->power_lock, flags);
182}
183
184/**
chao bi319fb0d2012-10-25 09:02:32 +0800185 * swap_buf_8
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100186 * @buf: our buffer
187 * @len : number of bytes (not words) in the buffer
188 * @end: end of buffer
189 *
190 * Swap the contents of a buffer into big endian format
191 */
chao bi319fb0d2012-10-25 09:02:32 +0800192static inline void swap_buf_8(unsigned char *buf, int len, void *end)
193{
194 /* don't swap buffer if SPI word width is 8 bits */
195 return;
196}
197
198/**
199 * swap_buf_16
200 * @buf: our buffer
201 * @len : number of bytes (not words) in the buffer
202 * @end: end of buffer
203 *
204 * Swap the contents of a buffer into big endian format
205 */
206static inline void swap_buf_16(unsigned char *buf, int len, void *end)
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100207{
208 int n;
209
chao bi319fb0d2012-10-25 09:02:32 +0800210 u16 *buf_16 = (u16 *)buf;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100211 len = ((len + 1) >> 1);
chao bi319fb0d2012-10-25 09:02:32 +0800212 if ((void *)&buf_16[len] > end) {
213 pr_err("swap_buf_16: swap exceeds boundary (%p > %p)!",
214 &buf_16[len], end);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100215 return;
216 }
217 for (n = 0; n < len; n++) {
chao bi319fb0d2012-10-25 09:02:32 +0800218 *buf_16 = cpu_to_be16(*buf_16);
219 buf_16++;
220 }
221}
222
223/**
224 * swap_buf_32
225 * @buf: our buffer
226 * @len : number of bytes (not words) in the buffer
227 * @end: end of buffer
228 *
229 * Swap the contents of a buffer into big endian format
230 */
231static inline void swap_buf_32(unsigned char *buf, int len, void *end)
232{
233 int n;
234
235 u32 *buf_32 = (u32 *)buf;
236 len = (len + 3) >> 2;
237
238 if ((void *)&buf_32[len] > end) {
239 pr_err("swap_buf_32: swap exceeds boundary (%p > %p)!\n",
240 &buf_32[len], end);
241 return;
242 }
243 for (n = 0; n < len; n++) {
244 *buf_32 = cpu_to_be32(*buf_32);
245 buf_32++;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100246 }
247}
248
249/**
250 * mrdy_assert - assert MRDY line
251 * @ifx_dev: our SPI device
252 *
253 * Assert mrdy and set timer to wait for SRDY interrupt, if SRDY is low
254 * now.
255 *
256 * FIXME: Can SRDY even go high as we are running this code ?
257 */
258static void mrdy_assert(struct ifx_spi_device *ifx_dev)
259{
260 int val = gpio_get_value(ifx_dev->gpio.srdy);
261 if (!val) {
262 if (!test_and_set_bit(IFX_SPI_STATE_TIMER_PENDING,
263 &ifx_dev->flags)) {
Jun Chenc73ba2a2012-10-22 10:23:07 -0400264 mod_timer(&ifx_dev->spi_timer,jiffies + IFX_SPI_TIMEOUT_SEC*HZ);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100265
266 }
267 }
268 ifx_spi_power_state_set(ifx_dev, IFX_SPI_POWER_DATA_PENDING);
269 mrdy_set_high(ifx_dev);
270}
271
272/**
273 * ifx_spi_hangup - hang up an IFX device
274 * @ifx_dev: our SPI device
275 *
276 * Hang up the tty attached to the IFX device if one is currently
277 * open. If not take no action
278 */
279static void ifx_spi_ttyhangup(struct ifx_spi_device *ifx_dev)
280{
281 struct tty_port *pport = &ifx_dev->tty_port;
282 struct tty_struct *tty = tty_port_tty_get(pport);
283 if (tty) {
284 tty_hangup(tty);
285 tty_kref_put(tty);
286 }
287}
288
289/**
290 * ifx_spi_timeout - SPI timeout
291 * @arg: our SPI device
292 *
293 * The SPI has timed out: hang up the tty. Users will then see a hangup
294 * and error events.
295 */
296static void ifx_spi_timeout(unsigned long arg)
297{
298 struct ifx_spi_device *ifx_dev = (struct ifx_spi_device *)arg;
299
300 dev_warn(&ifx_dev->spi_dev->dev, "*** SPI Timeout ***");
301 ifx_spi_ttyhangup(ifx_dev);
302 mrdy_set_low(ifx_dev);
303 clear_bit(IFX_SPI_STATE_TIMER_PENDING, &ifx_dev->flags);
304}
305
306/* char/tty operations */
307
308/**
309 * ifx_spi_tiocmget - get modem lines
310 * @tty: our tty device
311 * @filp: file handle issuing the request
312 *
313 * Map the signal state into Linux modem flags and report the value
314 * in Linux terms
315 */
Alan Cox60b33c12011-02-14 16:26:14 +0000316static int ifx_spi_tiocmget(struct tty_struct *tty)
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100317{
318 unsigned int value;
319 struct ifx_spi_device *ifx_dev = tty->driver_data;
320
321 value =
322 (test_bit(IFX_SPI_RTS, &ifx_dev->signal_state) ? TIOCM_RTS : 0) |
323 (test_bit(IFX_SPI_DTR, &ifx_dev->signal_state) ? TIOCM_DTR : 0) |
324 (test_bit(IFX_SPI_CTS, &ifx_dev->signal_state) ? TIOCM_CTS : 0) |
325 (test_bit(IFX_SPI_DSR, &ifx_dev->signal_state) ? TIOCM_DSR : 0) |
326 (test_bit(IFX_SPI_DCD, &ifx_dev->signal_state) ? TIOCM_CAR : 0) |
327 (test_bit(IFX_SPI_RI, &ifx_dev->signal_state) ? TIOCM_RNG : 0);
328 return value;
329}
330
331/**
332 * ifx_spi_tiocmset - set modem bits
333 * @tty: the tty structure
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100334 * @set: bits to set
335 * @clear: bits to clear
336 *
337 * The IFX6x60 only supports DTR and RTS. Set them accordingly
338 * and flag that an update to the modem is needed.
339 *
340 * FIXME: do we need to kick the tranfers when we do this ?
341 */
Alan Cox20b9d172011-02-14 16:26:50 +0000342static int ifx_spi_tiocmset(struct tty_struct *tty,
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100343 unsigned int set, unsigned int clear)
344{
345 struct ifx_spi_device *ifx_dev = tty->driver_data;
346
347 if (set & TIOCM_RTS)
348 set_bit(IFX_SPI_RTS, &ifx_dev->signal_state);
349 if (set & TIOCM_DTR)
350 set_bit(IFX_SPI_DTR, &ifx_dev->signal_state);
351 if (clear & TIOCM_RTS)
352 clear_bit(IFX_SPI_RTS, &ifx_dev->signal_state);
353 if (clear & TIOCM_DTR)
354 clear_bit(IFX_SPI_DTR, &ifx_dev->signal_state);
355
356 set_bit(IFX_SPI_UPDATE, &ifx_dev->signal_state);
357 return 0;
358}
359
360/**
361 * ifx_spi_open - called on tty open
362 * @tty: our tty device
363 * @filp: file handle being associated with the tty
364 *
365 * Open the tty interface. We let the tty_port layer do all the work
366 * for us.
367 *
368 * FIXME: Remove single device assumption and saved_ifx_dev
369 */
370static int ifx_spi_open(struct tty_struct *tty, struct file *filp)
371{
372 return tty_port_open(&saved_ifx_dev->tty_port, tty, filp);
373}
374
375/**
376 * ifx_spi_close - called when our tty closes
377 * @tty: the tty being closed
378 * @filp: the file handle being closed
379 *
380 * Perform the close of the tty. We use the tty_port layer to do all
381 * our hard work.
382 */
383static void ifx_spi_close(struct tty_struct *tty, struct file *filp)
384{
385 struct ifx_spi_device *ifx_dev = tty->driver_data;
386 tty_port_close(&ifx_dev->tty_port, tty, filp);
387 /* FIXME: should we do an ifx_spi_reset here ? */
388}
389
390/**
391 * ifx_decode_spi_header - decode received header
392 * @buffer: the received data
393 * @length: decoded length
394 * @more: decoded more flag
395 * @received_cts: status of cts we received
396 *
397 * Note how received_cts is handled -- if header is all F it is left
398 * the same as it was, if header is all 0 it is set to 0 otherwise it is
399 * taken from the incoming header.
400 *
401 * FIXME: endianness
402 */
403static int ifx_spi_decode_spi_header(unsigned char *buffer, int *length,
404 unsigned char *more, unsigned char *received_cts)
405{
406 u16 h1;
407 u16 h2;
408 u16 *in_buffer = (u16 *)buffer;
409
410 h1 = *in_buffer;
411 h2 = *(in_buffer+1);
412
413 if (h1 == 0 && h2 == 0) {
414 *received_cts = 0;
415 return IFX_SPI_HEADER_0;
416 } else if (h1 == 0xffff && h2 == 0xffff) {
417 /* spi_slave_cts remains as it was */
418 return IFX_SPI_HEADER_F;
419 }
420
421 *length = h1 & 0xfff; /* upper bits of byte are flags */
422 *more = (buffer[1] >> IFX_SPI_MORE_BIT) & 1;
423 *received_cts = (buffer[3] >> IFX_SPI_CTS_BIT) & 1;
424 return 0;
425}
426
427/**
428 * ifx_setup_spi_header - set header fields
429 * @txbuffer: pointer to start of SPI buffer
430 * @tx_count: bytes
431 * @more: indicate if more to follow
432 *
433 * Format up an SPI header for a transfer
434 *
435 * FIXME: endianness?
436 */
437static void ifx_spi_setup_spi_header(unsigned char *txbuffer, int tx_count,
438 unsigned char more)
439{
440 *(u16 *)(txbuffer) = tx_count;
441 *(u16 *)(txbuffer+2) = IFX_SPI_PAYLOAD_SIZE;
442 txbuffer[1] |= (more << IFX_SPI_MORE_BIT) & IFX_SPI_MORE_MASK;
443}
444
445/**
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100446 * ifx_spi_prepare_tx_buffer - prepare transmit frame
447 * @ifx_dev: our SPI device
448 *
449 * The transmit buffr needs a header and various other bits of
450 * information followed by as much data as we can pull from the FIFO
451 * and transfer. This function formats up a suitable buffer in the
452 * ifx_dev->tx_buffer
453 *
454 * FIXME: performance - should we wake the tty when the queue is half
455 * empty ?
456 */
457static int ifx_spi_prepare_tx_buffer(struct ifx_spi_device *ifx_dev)
458{
459 int temp_count;
460 int queue_length;
461 int tx_count;
462 unsigned char *tx_buffer;
463
464 tx_buffer = ifx_dev->tx_buffer;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100465
466 /* make room for required SPI header */
467 tx_buffer += IFX_SPI_HEADER_OVERHEAD;
468 tx_count = IFX_SPI_HEADER_OVERHEAD;
469
470 /* clear to signal no more data if this turns out to be the
471 * last buffer sent in a sequence */
472 ifx_dev->spi_more = 0;
473
474 /* if modem cts is set, just send empty buffer */
475 if (!ifx_dev->spi_slave_cts) {
476 /* see if there's tx data */
477 queue_length = kfifo_len(&ifx_dev->tx_fifo);
478 if (queue_length != 0) {
479 /* data to mux -- see if there's room for it */
480 temp_count = min(queue_length, IFX_SPI_PAYLOAD_SIZE);
481 temp_count = kfifo_out_locked(&ifx_dev->tx_fifo,
482 tx_buffer, temp_count,
483 &ifx_dev->fifo_lock);
484
485 /* update buffer pointer and data count in message */
486 tx_buffer += temp_count;
487 tx_count += temp_count;
488 if (temp_count == queue_length)
489 /* poke port to get more data */
Jiri Slaby6aad04f2013-03-07 13:12:29 +0100490 tty_port_tty_wakeup(&ifx_dev->tty_port);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100491 else /* more data in port, use next SPI message */
492 ifx_dev->spi_more = 1;
493 }
494 }
495 /* have data and info for header -- set up SPI header in buffer */
496 /* spi header needs payload size, not entire buffer size */
497 ifx_spi_setup_spi_header(ifx_dev->tx_buffer,
498 tx_count-IFX_SPI_HEADER_OVERHEAD,
499 ifx_dev->spi_more);
500 /* swap actual data in the buffer */
chao bi319fb0d2012-10-25 09:02:32 +0800501 ifx_dev->swap_buf((ifx_dev->tx_buffer), tx_count,
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100502 &ifx_dev->tx_buffer[IFX_SPI_TRANSFER_SIZE]);
503 return tx_count;
504}
505
506/**
507 * ifx_spi_write - line discipline write
508 * @tty: our tty device
509 * @buf: pointer to buffer to write (kernel space)
510 * @count: size of buffer
511 *
512 * Write the characters we have been given into the FIFO. If the device
513 * is not active then activate it, when the SRDY line is asserted back
514 * this will commence I/O
515 */
516static int ifx_spi_write(struct tty_struct *tty, const unsigned char *buf,
517 int count)
518{
519 struct ifx_spi_device *ifx_dev = tty->driver_data;
520 unsigned char *tmp_buf = (unsigned char *)buf;
Jun Chene8823f12012-11-07 12:04:04 -0500521 unsigned long flags;
522 bool is_fifo_empty;
Randy Dunlapbc6835a2012-11-26 11:07:25 -0800523 int tx_count;
Jun Chene8823f12012-11-07 12:04:04 -0500524
525 spin_lock_irqsave(&ifx_dev->fifo_lock, flags);
526 is_fifo_empty = kfifo_is_empty(&ifx_dev->tx_fifo);
Randy Dunlapbc6835a2012-11-26 11:07:25 -0800527 tx_count = kfifo_in(&ifx_dev->tx_fifo, tmp_buf, count);
Jun Chene8823f12012-11-07 12:04:04 -0500528 spin_unlock_irqrestore(&ifx_dev->fifo_lock, flags);
529 if (is_fifo_empty)
530 mrdy_assert(ifx_dev);
531
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100532 return tx_count;
533}
534
535/**
536 * ifx_spi_chars_in_buffer - line discipline helper
537 * @tty: our tty device
538 *
539 * Report how much data we can accept before we drop bytes. As we use
540 * a simple FIFO this is nice and easy.
541 */
542static int ifx_spi_write_room(struct tty_struct *tty)
543{
544 struct ifx_spi_device *ifx_dev = tty->driver_data;
545 return IFX_SPI_FIFO_SIZE - kfifo_len(&ifx_dev->tx_fifo);
546}
547
548/**
549 * ifx_spi_chars_in_buffer - line discipline helper
550 * @tty: our tty device
551 *
552 * Report how many characters we have buffered. In our case this is the
553 * number of bytes sitting in our transmit FIFO.
554 */
555static int ifx_spi_chars_in_buffer(struct tty_struct *tty)
556{
557 struct ifx_spi_device *ifx_dev = tty->driver_data;
558 return kfifo_len(&ifx_dev->tx_fifo);
559}
560
561/**
562 * ifx_port_hangup
563 * @port: our tty port
564 *
565 * tty port hang up. Called when tty_hangup processing is invoked either
566 * by loss of carrier, or by software (eg vhangup). Serialized against
567 * activate/shutdown by the tty layer.
568 */
569static void ifx_spi_hangup(struct tty_struct *tty)
570{
571 struct ifx_spi_device *ifx_dev = tty->driver_data;
572 tty_port_hangup(&ifx_dev->tty_port);
573}
574
575/**
576 * ifx_port_activate
577 * @port: our tty port
578 *
579 * tty port activate method - called for first open. Serialized
580 * with hangup and shutdown by the tty layer.
581 */
582static int ifx_port_activate(struct tty_port *port, struct tty_struct *tty)
583{
584 struct ifx_spi_device *ifx_dev =
585 container_of(port, struct ifx_spi_device, tty_port);
586
587 /* clear any old data; can't do this in 'close' */
588 kfifo_reset(&ifx_dev->tx_fifo);
589
chao bi31fe9902012-10-31 16:54:07 +0800590 /* clear any flag which may be set in port shutdown procedure */
591 clear_bit(IFX_SPI_STATE_IO_IN_PROGRESS, &ifx_dev->flags);
592 clear_bit(IFX_SPI_STATE_IO_READY, &ifx_dev->flags);
593
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100594 /* put port data into this tty */
595 tty->driver_data = ifx_dev;
596
597 /* allows flip string push from int context */
Jiri Slabyd6c53c02013-01-03 15:53:05 +0100598 port->low_latency = 1;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100599
chao bi31fe9902012-10-31 16:54:07 +0800600 /* set flag to allows data transfer */
601 set_bit(IFX_SPI_STATE_IO_AVAILABLE, &ifx_dev->flags);
602
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100603 return 0;
604}
605
606/**
607 * ifx_port_shutdown
608 * @port: our tty port
609 *
610 * tty port shutdown method - called for last port close. Serialized
611 * with hangup and activate by the tty layer.
612 */
613static void ifx_port_shutdown(struct tty_port *port)
614{
615 struct ifx_spi_device *ifx_dev =
616 container_of(port, struct ifx_spi_device, tty_port);
617
chao bi31fe9902012-10-31 16:54:07 +0800618 clear_bit(IFX_SPI_STATE_IO_AVAILABLE, &ifx_dev->flags);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100619 mrdy_set_low(ifx_dev);
chao bi014b9b42012-12-12 11:40:56 +0800620 del_timer(&ifx_dev->spi_timer);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100621 clear_bit(IFX_SPI_STATE_TIMER_PENDING, &ifx_dev->flags);
622 tasklet_kill(&ifx_dev->io_work_tasklet);
623}
624
625static const struct tty_port_operations ifx_tty_port_ops = {
626 .activate = ifx_port_activate,
627 .shutdown = ifx_port_shutdown,
628};
629
630static const struct tty_operations ifx_spi_serial_ops = {
631 .open = ifx_spi_open,
632 .close = ifx_spi_close,
633 .write = ifx_spi_write,
634 .hangup = ifx_spi_hangup,
635 .write_room = ifx_spi_write_room,
636 .chars_in_buffer = ifx_spi_chars_in_buffer,
637 .tiocmget = ifx_spi_tiocmget,
638 .tiocmset = ifx_spi_tiocmset,
639};
640
641/**
642 * ifx_spi_insert_fip_string - queue received data
643 * @ifx_ser: our SPI device
644 * @chars: buffer we have received
645 * @size: number of chars reeived
646 *
647 * Queue bytes to the tty assuming the tty side is currently open. If
648 * not the discard the data.
649 */
650static void ifx_spi_insert_flip_string(struct ifx_spi_device *ifx_dev,
651 unsigned char *chars, size_t size)
652{
Jiri Slaby05c7cd32013-01-03 15:53:04 +0100653 tty_insert_flip_string(&ifx_dev->tty_port, chars, size);
Jiri Slaby2e124b42013-01-03 15:53:06 +0100654 tty_flip_buffer_push(&ifx_dev->tty_port);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100655}
656
657/**
658 * ifx_spi_complete - SPI transfer completed
659 * @ctx: our SPI device
660 *
661 * An SPI transfer has completed. Process any received data and kick off
662 * any further transmits we can commence.
663 */
664static void ifx_spi_complete(void *ctx)
665{
666 struct ifx_spi_device *ifx_dev = ctx;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100667 int length;
668 int actual_length;
669 unsigned char more;
670 unsigned char cts;
671 int local_write_pending = 0;
672 int queue_length;
673 int srdy;
674 int decode_result;
675
676 mrdy_set_low(ifx_dev);
677
678 if (!ifx_dev->spi_msg.status) {
679 /* check header validity, get comm flags */
chao bi319fb0d2012-10-25 09:02:32 +0800680 ifx_dev->swap_buf(ifx_dev->rx_buffer, IFX_SPI_HEADER_OVERHEAD,
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100681 &ifx_dev->rx_buffer[IFX_SPI_HEADER_OVERHEAD]);
682 decode_result = ifx_spi_decode_spi_header(ifx_dev->rx_buffer,
683 &length, &more, &cts);
684 if (decode_result == IFX_SPI_HEADER_0) {
685 dev_dbg(&ifx_dev->spi_dev->dev,
686 "ignore input: invalid header 0");
687 ifx_dev->spi_slave_cts = 0;
688 goto complete_exit;
689 } else if (decode_result == IFX_SPI_HEADER_F) {
690 dev_dbg(&ifx_dev->spi_dev->dev,
691 "ignore input: invalid header F");
692 goto complete_exit;
693 }
694
695 ifx_dev->spi_slave_cts = cts;
696
697 actual_length = min((unsigned int)length,
698 ifx_dev->spi_msg.actual_length);
chao bi319fb0d2012-10-25 09:02:32 +0800699 ifx_dev->swap_buf(
700 (ifx_dev->rx_buffer + IFX_SPI_HEADER_OVERHEAD),
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100701 actual_length,
702 &ifx_dev->rx_buffer[IFX_SPI_TRANSFER_SIZE]);
703 ifx_spi_insert_flip_string(
704 ifx_dev,
705 ifx_dev->rx_buffer + IFX_SPI_HEADER_OVERHEAD,
706 (size_t)actual_length);
707 } else {
708 dev_dbg(&ifx_dev->spi_dev->dev, "SPI transfer error %d",
709 ifx_dev->spi_msg.status);
710 }
711
712complete_exit:
713 if (ifx_dev->write_pending) {
714 ifx_dev->write_pending = 0;
715 local_write_pending = 1;
716 }
717
718 clear_bit(IFX_SPI_STATE_IO_IN_PROGRESS, &(ifx_dev->flags));
719
720 queue_length = kfifo_len(&ifx_dev->tx_fifo);
721 srdy = gpio_get_value(ifx_dev->gpio.srdy);
722 if (!srdy)
723 ifx_spi_power_state_clear(ifx_dev, IFX_SPI_POWER_SRDY);
724
725 /* schedule output if there is more to do */
726 if (test_and_clear_bit(IFX_SPI_STATE_IO_READY, &ifx_dev->flags))
727 tasklet_schedule(&ifx_dev->io_work_tasklet);
728 else {
729 if (more || ifx_dev->spi_more || queue_length > 0 ||
730 local_write_pending) {
731 if (ifx_dev->spi_slave_cts) {
732 if (more)
733 mrdy_assert(ifx_dev);
734 } else
735 mrdy_assert(ifx_dev);
736 } else {
737 /*
738 * poke line discipline driver if any for more data
739 * may or may not get more data to write
740 * for now, say not busy
741 */
742 ifx_spi_power_state_clear(ifx_dev,
743 IFX_SPI_POWER_DATA_PENDING);
Jiri Slaby6aad04f2013-03-07 13:12:29 +0100744 tty_port_tty_wakeup(&ifx_dev->tty_port);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100745 }
746 }
747}
748
749/**
750 * ifx_spio_io - I/O tasklet
751 * @data: our SPI device
752 *
753 * Queue data for transmission if possible and then kick off the
754 * transfer.
755 */
756static void ifx_spi_io(unsigned long data)
757{
758 int retval;
759 struct ifx_spi_device *ifx_dev = (struct ifx_spi_device *) data;
760
chao bi31fe9902012-10-31 16:54:07 +0800761 if (!test_and_set_bit(IFX_SPI_STATE_IO_IN_PROGRESS, &ifx_dev->flags) &&
762 test_bit(IFX_SPI_STATE_IO_AVAILABLE, &ifx_dev->flags)) {
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100763 if (ifx_dev->gpio.unack_srdy_int_nb > 0)
764 ifx_dev->gpio.unack_srdy_int_nb--;
765
766 ifx_spi_prepare_tx_buffer(ifx_dev);
767
768 spi_message_init(&ifx_dev->spi_msg);
769 INIT_LIST_HEAD(&ifx_dev->spi_msg.queue);
770
771 ifx_dev->spi_msg.context = ifx_dev;
772 ifx_dev->spi_msg.complete = ifx_spi_complete;
773
774 /* set up our spi transfer */
775 /* note len is BYTES, not transfers */
776 ifx_dev->spi_xfer.len = IFX_SPI_TRANSFER_SIZE;
777 ifx_dev->spi_xfer.cs_change = 0;
Russ Gorby1b79b4402011-02-07 12:02:30 -0800778 ifx_dev->spi_xfer.speed_hz = ifx_dev->spi_dev->max_speed_hz;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100779 /* ifx_dev->spi_xfer.speed_hz = 390625; */
channing5dd070d2013-01-16 13:14:20 +0800780 ifx_dev->spi_xfer.bits_per_word =
781 ifx_dev->spi_dev->bits_per_word;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100782
783 ifx_dev->spi_xfer.tx_buf = ifx_dev->tx_buffer;
784 ifx_dev->spi_xfer.rx_buf = ifx_dev->rx_buffer;
785
786 /*
787 * setup dma pointers
788 */
Russ Gorby2f1522e2011-02-02 12:56:58 -0800789 if (ifx_dev->use_dma) {
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100790 ifx_dev->spi_msg.is_dma_mapped = 1;
791 ifx_dev->tx_dma = ifx_dev->tx_bus;
792 ifx_dev->rx_dma = ifx_dev->rx_bus;
793 ifx_dev->spi_xfer.tx_dma = ifx_dev->tx_dma;
794 ifx_dev->spi_xfer.rx_dma = ifx_dev->rx_dma;
795 } else {
796 ifx_dev->spi_msg.is_dma_mapped = 0;
797 ifx_dev->tx_dma = (dma_addr_t)0;
798 ifx_dev->rx_dma = (dma_addr_t)0;
799 ifx_dev->spi_xfer.tx_dma = (dma_addr_t)0;
800 ifx_dev->spi_xfer.rx_dma = (dma_addr_t)0;
801 }
802
803 spi_message_add_tail(&ifx_dev->spi_xfer, &ifx_dev->spi_msg);
804
805 /* Assert MRDY. This may have already been done by the write
806 * routine.
807 */
808 mrdy_assert(ifx_dev);
809
810 retval = spi_async(ifx_dev->spi_dev, &ifx_dev->spi_msg);
811 if (retval) {
812 clear_bit(IFX_SPI_STATE_IO_IN_PROGRESS,
813 &ifx_dev->flags);
814 tasklet_schedule(&ifx_dev->io_work_tasklet);
815 return;
816 }
817 } else
818 ifx_dev->write_pending = 1;
819}
820
821/**
822 * ifx_spi_free_port - free up the tty side
823 * @ifx_dev: IFX device going away
824 *
825 * Unregister and free up a port when the device goes away
826 */
827static void ifx_spi_free_port(struct ifx_spi_device *ifx_dev)
828{
829 if (ifx_dev->tty_dev)
830 tty_unregister_device(tty_drv, ifx_dev->minor);
Jiri Slaby191c5f12012-11-15 09:49:56 +0100831 tty_port_destroy(&ifx_dev->tty_port);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100832 kfifo_free(&ifx_dev->tx_fifo);
833}
834
835/**
836 * ifx_spi_create_port - create a new port
837 * @ifx_dev: our spi device
838 *
839 * Allocate and initialise the tty port that goes with this interface
840 * and add it to the tty layer so that it can be opened.
841 */
842static int ifx_spi_create_port(struct ifx_spi_device *ifx_dev)
843{
844 int ret = 0;
845 struct tty_port *pport = &ifx_dev->tty_port;
846
847 spin_lock_init(&ifx_dev->fifo_lock);
848 lockdep_set_class_and_subclass(&ifx_dev->fifo_lock,
849 &ifx_spi_key, 0);
850
851 if (kfifo_alloc(&ifx_dev->tx_fifo, IFX_SPI_FIFO_SIZE, GFP_KERNEL)) {
852 ret = -ENOMEM;
853 goto error_ret;
854 }
855
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100856 tty_port_init(pport);
Russ Gorbyb68f23b2011-02-07 12:02:27 -0800857 pport->ops = &ifx_tty_port_ops;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100858 ifx_dev->minor = IFX_SPI_TTY_ID;
Jiri Slaby734cc172012-08-07 21:47:47 +0200859 ifx_dev->tty_dev = tty_port_register_device(pport, tty_drv,
860 ifx_dev->minor, &ifx_dev->spi_dev->dev);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100861 if (IS_ERR(ifx_dev->tty_dev)) {
862 dev_dbg(&ifx_dev->spi_dev->dev,
863 "%s: registering tty device failed", __func__);
864 ret = PTR_ERR(ifx_dev->tty_dev);
Jiri Slaby191c5f12012-11-15 09:49:56 +0100865 goto error_port;
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100866 }
867 return 0;
868
Jiri Slaby191c5f12012-11-15 09:49:56 +0100869error_port:
870 tty_port_destroy(pport);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100871error_ret:
872 ifx_spi_free_port(ifx_dev);
873 return ret;
874}
875
876/**
877 * ifx_spi_handle_srdy - handle SRDY
878 * @ifx_dev: device asserting SRDY
879 *
880 * Check our device state and see what we need to kick off when SRDY
881 * is asserted. This usually means killing the timer and firing off the
882 * I/O processing.
883 */
884static void ifx_spi_handle_srdy(struct ifx_spi_device *ifx_dev)
885{
886 if (test_bit(IFX_SPI_STATE_TIMER_PENDING, &ifx_dev->flags)) {
Jun Chen2e308022012-10-19 09:51:30 -0400887 del_timer(&ifx_dev->spi_timer);
Russ Gorbyaf3b8882010-10-26 14:13:52 +0100888 clear_bit(IFX_SPI_STATE_TIMER_PENDING, &ifx_dev->flags);
889 }
890
891 ifx_spi_power_state_set(ifx_dev, IFX_SPI_POWER_SRDY);
892
893 if (!test_bit(IFX_SPI_STATE_IO_IN_PROGRESS, &ifx_dev->flags))
894 tasklet_schedule(&ifx_dev->io_work_tasklet);
895 else
896 set_bit(IFX_SPI_STATE_IO_READY, &ifx_dev->flags);
897}
898
899/**
900 * ifx_spi_srdy_interrupt - SRDY asserted
901 * @irq: our IRQ number
902 * @dev: our ifx device
903 *
904 * The modem asserted SRDY. Handle the srdy event
905 */
906static irqreturn_t ifx_spi_srdy_interrupt(int irq, void *dev)
907{
908 struct ifx_spi_device *ifx_dev = dev;
909 ifx_dev->gpio.unack_srdy_int_nb++;
910 ifx_spi_handle_srdy(ifx_dev);
911 return IRQ_HANDLED;
912}
913
914/**
915 * ifx_spi_reset_interrupt - Modem has changed reset state
916 * @irq: interrupt number
917 * @dev: our device pointer
918 *
919 * The modem has either entered or left reset state. Check the GPIO
920 * line to see which.
921 *
922 * FIXME: review locking on MR_INPROGRESS versus
923 * parallel unsolicited reset/solicited reset
924 */
925static irqreturn_t ifx_spi_reset_interrupt(int irq, void *dev)
926{
927 struct ifx_spi_device *ifx_dev = dev;
928 int val = gpio_get_value(ifx_dev->gpio.reset_out);
929 int solreset = test_bit(MR_START, &ifx_dev->mdm_reset_state);
930
931 if (val == 0) {
932 /* entered reset */
933 set_bit(MR_INPROGRESS, &ifx_dev->mdm_reset_state);
934 if (!solreset) {
935 /* unsolicited reset */
936 ifx_spi_ttyhangup(ifx_dev);
937 }
938 } else {
939 /* exited reset */
940 clear_bit(MR_INPROGRESS, &ifx_dev->mdm_reset_state);
941 if (solreset) {
942 set_bit(MR_COMPLETE, &ifx_dev->mdm_reset_state);
943 wake_up(&ifx_dev->mdm_reset_wait);
944 }
945 }
946 return IRQ_HANDLED;
947}
948
949/**
950 * ifx_spi_free_device - free device
951 * @ifx_dev: device to free
952 *
953 * Free the IFX device
954 */
955static void ifx_spi_free_device(struct ifx_spi_device *ifx_dev)
956{
957 ifx_spi_free_port(ifx_dev);
958 dma_free_coherent(&ifx_dev->spi_dev->dev,
959 IFX_SPI_TRANSFER_SIZE,
960 ifx_dev->tx_buffer,
961 ifx_dev->tx_bus);
962 dma_free_coherent(&ifx_dev->spi_dev->dev,
963 IFX_SPI_TRANSFER_SIZE,
964 ifx_dev->rx_buffer,
965 ifx_dev->rx_bus);
966}
967
968/**
969 * ifx_spi_reset - reset modem
970 * @ifx_dev: modem to reset
971 *
972 * Perform a reset on the modem
973 */
974static int ifx_spi_reset(struct ifx_spi_device *ifx_dev)
975{
976 int ret;
977 /*
978 * set up modem power, reset
979 *
980 * delays are required on some platforms for the modem
981 * to reset properly
982 */
983 set_bit(MR_START, &ifx_dev->mdm_reset_state);
984 gpio_set_value(ifx_dev->gpio.po, 0);
985 gpio_set_value(ifx_dev->gpio.reset, 0);
986 msleep(25);
987 gpio_set_value(ifx_dev->gpio.reset, 1);
988 msleep(1);
989 gpio_set_value(ifx_dev->gpio.po, 1);
990 msleep(1);
991 gpio_set_value(ifx_dev->gpio.po, 0);
992 ret = wait_event_timeout(ifx_dev->mdm_reset_wait,
993 test_bit(MR_COMPLETE,
994 &ifx_dev->mdm_reset_state),
995 IFX_RESET_TIMEOUT);
996 if (!ret)
997 dev_warn(&ifx_dev->spi_dev->dev, "Modem reset timeout: (state:%lx)",
998 ifx_dev->mdm_reset_state);
999
1000 ifx_dev->mdm_reset_state = 0;
1001 return ret;
1002}
1003
1004/**
1005 * ifx_spi_spi_probe - probe callback
1006 * @spi: our possible matching SPI device
1007 *
1008 * Probe for a 6x60 modem on SPI bus. Perform any needed device and
1009 * GPIO setup.
1010 *
1011 * FIXME:
1012 * - Support for multiple devices
1013 * - Split out MID specific GPIO handling eventually
1014 */
1015
1016static int ifx_spi_spi_probe(struct spi_device *spi)
1017{
1018 int ret;
1019 int srdy;
Russ Gorby2f1522e2011-02-02 12:56:58 -08001020 struct ifx_modem_platform_data *pl_data;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001021 struct ifx_spi_device *ifx_dev;
1022
1023 if (saved_ifx_dev) {
1024 dev_dbg(&spi->dev, "ignoring subsequent detection");
1025 return -ENODEV;
1026 }
1027
Russ Gorby2f1522e2011-02-02 12:56:58 -08001028 pl_data = (struct ifx_modem_platform_data *)spi->dev.platform_data;
1029 if (!pl_data) {
1030 dev_err(&spi->dev, "missing platform data!");
1031 return -ENODEV;
1032 }
1033
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001034 /* initialize structure to hold our device variables */
1035 ifx_dev = kzalloc(sizeof(struct ifx_spi_device), GFP_KERNEL);
1036 if (!ifx_dev) {
1037 dev_err(&spi->dev, "spi device allocation failed");
1038 return -ENOMEM;
1039 }
1040 saved_ifx_dev = ifx_dev;
1041 ifx_dev->spi_dev = spi;
1042 clear_bit(IFX_SPI_STATE_IO_IN_PROGRESS, &ifx_dev->flags);
1043 spin_lock_init(&ifx_dev->write_lock);
1044 spin_lock_init(&ifx_dev->power_lock);
1045 ifx_dev->power_status = 0;
1046 init_timer(&ifx_dev->spi_timer);
1047 ifx_dev->spi_timer.function = ifx_spi_timeout;
1048 ifx_dev->spi_timer.data = (unsigned long)ifx_dev;
Russ Gorby2f1522e2011-02-02 12:56:58 -08001049 ifx_dev->modem = pl_data->modem_type;
1050 ifx_dev->use_dma = pl_data->use_dma;
1051 ifx_dev->max_hz = pl_data->max_hz;
Russ Gorby2aff8d92011-02-07 12:02:31 -08001052 /* initialize spi mode, etc */
Russ Gorby1b79b4402011-02-07 12:02:30 -08001053 spi->max_speed_hz = ifx_dev->max_hz;
Russ Gorby2aff8d92011-02-07 12:02:31 -08001054 spi->mode = IFX_SPI_MODE | (SPI_LOOP & spi->mode);
1055 spi->bits_per_word = spi_bpw;
1056 ret = spi_setup(spi);
1057 if (ret) {
1058 dev_err(&spi->dev, "SPI setup wasn't successful %d", ret);
1059 return -ENODEV;
1060 }
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001061
chao bi319fb0d2012-10-25 09:02:32 +08001062 /* init swap_buf function according to word width configuration */
1063 if (spi->bits_per_word == 32)
1064 ifx_dev->swap_buf = swap_buf_32;
1065 else if (spi->bits_per_word == 16)
1066 ifx_dev->swap_buf = swap_buf_16;
1067 else
1068 ifx_dev->swap_buf = swap_buf_8;
1069
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001070 /* ensure SPI protocol flags are initialized to enable transfer */
1071 ifx_dev->spi_more = 0;
1072 ifx_dev->spi_slave_cts = 0;
1073
1074 /*initialize transfer and dma buffers */
Russ Gorby5fc324952011-02-07 12:02:28 -08001075 ifx_dev->tx_buffer = dma_alloc_coherent(ifx_dev->spi_dev->dev.parent,
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001076 IFX_SPI_TRANSFER_SIZE,
1077 &ifx_dev->tx_bus,
1078 GFP_KERNEL);
1079 if (!ifx_dev->tx_buffer) {
1080 dev_err(&spi->dev, "DMA-TX buffer allocation failed");
1081 ret = -ENOMEM;
1082 goto error_ret;
1083 }
Russ Gorby5fc324952011-02-07 12:02:28 -08001084 ifx_dev->rx_buffer = dma_alloc_coherent(ifx_dev->spi_dev->dev.parent,
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001085 IFX_SPI_TRANSFER_SIZE,
1086 &ifx_dev->rx_bus,
1087 GFP_KERNEL);
1088 if (!ifx_dev->rx_buffer) {
1089 dev_err(&spi->dev, "DMA-RX buffer allocation failed");
1090 ret = -ENOMEM;
1091 goto error_ret;
1092 }
1093
1094 /* initialize waitq for modem reset */
1095 init_waitqueue_head(&ifx_dev->mdm_reset_wait);
1096
1097 spi_set_drvdata(spi, ifx_dev);
1098 tasklet_init(&ifx_dev->io_work_tasklet, ifx_spi_io,
1099 (unsigned long)ifx_dev);
1100
1101 set_bit(IFX_SPI_STATE_PRESENT, &ifx_dev->flags);
1102
1103 /* create our tty port */
1104 ret = ifx_spi_create_port(ifx_dev);
1105 if (ret != 0) {
1106 dev_err(&spi->dev, "create default tty port failed");
1107 goto error_ret;
1108 }
1109
Russ Gorby2f1522e2011-02-02 12:56:58 -08001110 ifx_dev->gpio.reset = pl_data->rst_pmu;
1111 ifx_dev->gpio.po = pl_data->pwr_on;
1112 ifx_dev->gpio.mrdy = pl_data->mrdy;
1113 ifx_dev->gpio.srdy = pl_data->srdy;
1114 ifx_dev->gpio.reset_out = pl_data->rst_out;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001115
1116 dev_info(&spi->dev, "gpios %d, %d, %d, %d, %d",
1117 ifx_dev->gpio.reset, ifx_dev->gpio.po, ifx_dev->gpio.mrdy,
1118 ifx_dev->gpio.srdy, ifx_dev->gpio.reset_out);
1119
1120 /* Configure gpios */
1121 ret = gpio_request(ifx_dev->gpio.reset, "ifxModem");
1122 if (ret < 0) {
1123 dev_err(&spi->dev, "Unable to allocate GPIO%d (RESET)",
1124 ifx_dev->gpio.reset);
1125 goto error_ret;
1126 }
1127 ret += gpio_direction_output(ifx_dev->gpio.reset, 0);
1128 ret += gpio_export(ifx_dev->gpio.reset, 1);
1129 if (ret) {
1130 dev_err(&spi->dev, "Unable to configure GPIO%d (RESET)",
1131 ifx_dev->gpio.reset);
1132 ret = -EBUSY;
1133 goto error_ret2;
1134 }
1135
1136 ret = gpio_request(ifx_dev->gpio.po, "ifxModem");
1137 ret += gpio_direction_output(ifx_dev->gpio.po, 0);
1138 ret += gpio_export(ifx_dev->gpio.po, 1);
1139 if (ret) {
1140 dev_err(&spi->dev, "Unable to configure GPIO%d (ON)",
1141 ifx_dev->gpio.po);
1142 ret = -EBUSY;
1143 goto error_ret3;
1144 }
1145
1146 ret = gpio_request(ifx_dev->gpio.mrdy, "ifxModem");
1147 if (ret < 0) {
1148 dev_err(&spi->dev, "Unable to allocate GPIO%d (MRDY)",
1149 ifx_dev->gpio.mrdy);
1150 goto error_ret3;
1151 }
1152 ret += gpio_export(ifx_dev->gpio.mrdy, 1);
1153 ret += gpio_direction_output(ifx_dev->gpio.mrdy, 0);
1154 if (ret) {
1155 dev_err(&spi->dev, "Unable to configure GPIO%d (MRDY)",
1156 ifx_dev->gpio.mrdy);
1157 ret = -EBUSY;
1158 goto error_ret4;
1159 }
1160
1161 ret = gpio_request(ifx_dev->gpio.srdy, "ifxModem");
1162 if (ret < 0) {
1163 dev_err(&spi->dev, "Unable to allocate GPIO%d (SRDY)",
1164 ifx_dev->gpio.srdy);
1165 ret = -EBUSY;
1166 goto error_ret4;
1167 }
1168 ret += gpio_export(ifx_dev->gpio.srdy, 1);
1169 ret += gpio_direction_input(ifx_dev->gpio.srdy);
1170 if (ret) {
1171 dev_err(&spi->dev, "Unable to configure GPIO%d (SRDY)",
1172 ifx_dev->gpio.srdy);
1173 ret = -EBUSY;
1174 goto error_ret5;
1175 }
1176
1177 ret = gpio_request(ifx_dev->gpio.reset_out, "ifxModem");
1178 if (ret < 0) {
1179 dev_err(&spi->dev, "Unable to allocate GPIO%d (RESET_OUT)",
1180 ifx_dev->gpio.reset_out);
1181 goto error_ret5;
1182 }
1183 ret += gpio_export(ifx_dev->gpio.reset_out, 1);
1184 ret += gpio_direction_input(ifx_dev->gpio.reset_out);
1185 if (ret) {
1186 dev_err(&spi->dev, "Unable to configure GPIO%d (RESET_OUT)",
1187 ifx_dev->gpio.reset_out);
1188 ret = -EBUSY;
1189 goto error_ret6;
1190 }
1191
1192 ret = request_irq(gpio_to_irq(ifx_dev->gpio.reset_out),
1193 ifx_spi_reset_interrupt,
1194 IRQF_TRIGGER_RISING|IRQF_TRIGGER_FALLING, DRVNAME,
1195 (void *)ifx_dev);
1196 if (ret) {
1197 dev_err(&spi->dev, "Unable to get irq %x\n",
1198 gpio_to_irq(ifx_dev->gpio.reset_out));
1199 goto error_ret6;
1200 }
1201
1202 ret = ifx_spi_reset(ifx_dev);
1203
1204 ret = request_irq(gpio_to_irq(ifx_dev->gpio.srdy),
1205 ifx_spi_srdy_interrupt,
1206 IRQF_TRIGGER_RISING, DRVNAME,
1207 (void *)ifx_dev);
1208 if (ret) {
1209 dev_err(&spi->dev, "Unable to get irq %x",
1210 gpio_to_irq(ifx_dev->gpio.srdy));
Vasiliy Kulikovbadb9532010-11-19 21:42:03 +03001211 goto error_ret7;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001212 }
1213
1214 /* set pm runtime power state and register with power system */
1215 pm_runtime_set_active(&spi->dev);
1216 pm_runtime_enable(&spi->dev);
1217
1218 /* handle case that modem is already signaling SRDY */
1219 /* no outgoing tty open at this point, this just satisfies the
1220 * modem's read and should reset communication properly
1221 */
1222 srdy = gpio_get_value(ifx_dev->gpio.srdy);
1223
1224 if (srdy) {
1225 mrdy_assert(ifx_dev);
1226 ifx_spi_handle_srdy(ifx_dev);
1227 } else
1228 mrdy_set_low(ifx_dev);
1229 return 0;
1230
Vasiliy Kulikovbadb9532010-11-19 21:42:03 +03001231error_ret7:
1232 free_irq(gpio_to_irq(ifx_dev->gpio.reset_out), (void *)ifx_dev);
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001233error_ret6:
1234 gpio_free(ifx_dev->gpio.srdy);
1235error_ret5:
1236 gpio_free(ifx_dev->gpio.mrdy);
1237error_ret4:
1238 gpio_free(ifx_dev->gpio.reset);
1239error_ret3:
1240 gpio_free(ifx_dev->gpio.po);
1241error_ret2:
1242 gpio_free(ifx_dev->gpio.reset_out);
1243error_ret:
1244 ifx_spi_free_device(ifx_dev);
1245 saved_ifx_dev = NULL;
1246 return ret;
1247}
1248
1249/**
1250 * ifx_spi_spi_remove - SPI device was removed
1251 * @spi: SPI device
1252 *
1253 * FIXME: We should be shutting the device down here not in
1254 * the module unload path.
1255 */
1256
1257static int ifx_spi_spi_remove(struct spi_device *spi)
1258{
1259 struct ifx_spi_device *ifx_dev = spi_get_drvdata(spi);
1260 /* stop activity */
1261 tasklet_kill(&ifx_dev->io_work_tasklet);
1262 /* free irq */
1263 free_irq(gpio_to_irq(ifx_dev->gpio.reset_out), (void *)ifx_dev);
1264 free_irq(gpio_to_irq(ifx_dev->gpio.srdy), (void *)ifx_dev);
1265
1266 gpio_free(ifx_dev->gpio.srdy);
1267 gpio_free(ifx_dev->gpio.mrdy);
1268 gpio_free(ifx_dev->gpio.reset);
1269 gpio_free(ifx_dev->gpio.po);
1270 gpio_free(ifx_dev->gpio.reset_out);
1271
1272 /* free allocations */
1273 ifx_spi_free_device(ifx_dev);
1274
1275 saved_ifx_dev = NULL;
1276 return 0;
1277}
1278
1279/**
1280 * ifx_spi_spi_shutdown - called on SPI shutdown
1281 * @spi: SPI device
1282 *
1283 * No action needs to be taken here
1284 */
1285
1286static void ifx_spi_spi_shutdown(struct spi_device *spi)
1287{
Jun Chen72d47242012-11-23 06:07:27 -05001288 struct ifx_spi_device *ifx_dev = spi_get_drvdata(spi);
1289
1290 ifx_modem_power_off(ifx_dev);
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001291}
1292
1293/*
1294 * various suspends and resumes have nothing to do
1295 * no hardware to save state for
1296 */
1297
1298/**
1299 * ifx_spi_spi_suspend - suspend SPI on system suspend
1300 * @dev: device being suspended
1301 *
1302 * Suspend the SPI side. No action needed on Intel MID platforms, may
1303 * need extending for other systems.
1304 */
1305static int ifx_spi_spi_suspend(struct spi_device *spi, pm_message_t msg)
1306{
1307 return 0;
1308}
1309
1310/**
1311 * ifx_spi_spi_resume - resume SPI side on system resume
1312 * @dev: device being suspended
1313 *
1314 * Suspend the SPI side. No action needed on Intel MID platforms, may
1315 * need extending for other systems.
1316 */
1317static int ifx_spi_spi_resume(struct spi_device *spi)
1318{
1319 return 0;
1320}
1321
1322/**
1323 * ifx_spi_pm_suspend - suspend modem on system suspend
1324 * @dev: device being suspended
1325 *
1326 * Suspend the modem. No action needed on Intel MID platforms, may
1327 * need extending for other systems.
1328 */
1329static int ifx_spi_pm_suspend(struct device *dev)
1330{
1331 return 0;
1332}
1333
1334/**
1335 * ifx_spi_pm_resume - resume modem on system resume
1336 * @dev: device being suspended
1337 *
1338 * Allow the modem to resume. No action needed.
1339 *
1340 * FIXME: do we need to reset anything here ?
1341 */
1342static int ifx_spi_pm_resume(struct device *dev)
1343{
1344 return 0;
1345}
1346
1347/**
1348 * ifx_spi_pm_runtime_resume - suspend modem
1349 * @dev: device being suspended
1350 *
1351 * Allow the modem to resume. No action needed.
1352 */
1353static int ifx_spi_pm_runtime_resume(struct device *dev)
1354{
1355 return 0;
1356}
1357
1358/**
1359 * ifx_spi_pm_runtime_suspend - suspend modem
1360 * @dev: device being suspended
1361 *
1362 * Allow the modem to suspend and thus suspend to continue up the
1363 * device tree.
1364 */
1365static int ifx_spi_pm_runtime_suspend(struct device *dev)
1366{
1367 return 0;
1368}
1369
1370/**
1371 * ifx_spi_pm_runtime_idle - check if modem idle
1372 * @dev: our device
1373 *
1374 * Check conditions and queue runtime suspend if idle.
1375 */
1376static int ifx_spi_pm_runtime_idle(struct device *dev)
1377{
1378 struct spi_device *spi = to_spi_device(dev);
1379 struct ifx_spi_device *ifx_dev = spi_get_drvdata(spi);
1380
1381 if (!ifx_dev->power_status)
1382 pm_runtime_suspend(dev);
1383
1384 return 0;
1385}
1386
1387static const struct dev_pm_ops ifx_spi_pm = {
1388 .resume = ifx_spi_pm_resume,
1389 .suspend = ifx_spi_pm_suspend,
1390 .runtime_resume = ifx_spi_pm_runtime_resume,
1391 .runtime_suspend = ifx_spi_pm_runtime_suspend,
1392 .runtime_idle = ifx_spi_pm_runtime_idle
1393};
1394
1395static const struct spi_device_id ifx_id_table[] = {
1396 {"ifx6160", 0},
1397 {"ifx6260", 0},
1398 { }
1399};
1400MODULE_DEVICE_TABLE(spi, ifx_id_table);
1401
1402/* spi operations */
Fengguang Wu7d9739c2012-08-07 13:12:47 +08001403static struct spi_driver ifx_spi_driver = {
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001404 .driver = {
Russ Gorby8115be02011-02-07 12:02:32 -08001405 .name = DRVNAME,
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001406 .pm = &ifx_spi_pm,
1407 .owner = THIS_MODULE},
1408 .probe = ifx_spi_spi_probe,
1409 .shutdown = ifx_spi_spi_shutdown,
Bill Pemberton2d47b712012-11-19 13:21:34 -05001410 .remove = ifx_spi_spi_remove,
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001411 .suspend = ifx_spi_spi_suspend,
1412 .resume = ifx_spi_spi_resume,
1413 .id_table = ifx_id_table
1414};
1415
1416/**
1417 * ifx_spi_exit - module exit
1418 *
1419 * Unload the module.
1420 */
1421
1422static void __exit ifx_spi_exit(void)
1423{
1424 /* unregister */
1425 tty_unregister_driver(tty_drv);
Jun Chen72d47242012-11-23 06:07:27 -05001426 put_tty_driver(tty_drv);
Russ Gorby8115be02011-02-07 12:02:32 -08001427 spi_unregister_driver((void *)&ifx_spi_driver);
Jun Chen72d47242012-11-23 06:07:27 -05001428 unregister_reboot_notifier(&ifx_modem_reboot_notifier_block);
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001429}
1430
1431/**
1432 * ifx_spi_init - module entry point
1433 *
1434 * Initialise the SPI and tty interfaces for the IFX SPI driver
1435 * We need to initialize upper-edge spi driver after the tty
1436 * driver because otherwise the spi probe will race
1437 */
1438
1439static int __init ifx_spi_init(void)
1440{
1441 int result;
1442
1443 tty_drv = alloc_tty_driver(1);
1444 if (!tty_drv) {
1445 pr_err("%s: alloc_tty_driver failed", DRVNAME);
1446 return -ENOMEM;
1447 }
1448
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001449 tty_drv->driver_name = DRVNAME;
1450 tty_drv->name = TTYNAME;
1451 tty_drv->minor_start = IFX_SPI_TTY_ID;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001452 tty_drv->type = TTY_DRIVER_TYPE_SERIAL;
1453 tty_drv->subtype = SERIAL_TYPE_NORMAL;
1454 tty_drv->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV;
1455 tty_drv->init_termios = tty_std_termios;
1456
1457 tty_set_operations(tty_drv, &ifx_spi_serial_ops);
1458
1459 result = tty_register_driver(tty_drv);
1460 if (result) {
1461 pr_err("%s: tty_register_driver failed(%d)",
1462 DRVNAME, result);
Jun Chen72d47242012-11-23 06:07:27 -05001463 goto err_free_tty;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001464 }
1465
Russ Gorby8115be02011-02-07 12:02:32 -08001466 result = spi_register_driver((void *)&ifx_spi_driver);
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001467 if (result) {
1468 pr_err("%s: spi_register_driver failed(%d)",
1469 DRVNAME, result);
Jun Chen72d47242012-11-23 06:07:27 -05001470 goto err_unreg_tty;
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001471 }
Jun Chen72d47242012-11-23 06:07:27 -05001472
1473 result = register_reboot_notifier(&ifx_modem_reboot_notifier_block);
1474 if (result) {
1475 pr_err("%s: register ifx modem reboot notifier failed(%d)",
1476 DRVNAME, result);
1477 goto err_unreg_spi;
1478 }
1479
1480 return 0;
1481err_unreg_spi:
1482 spi_unregister_driver((void *)&ifx_spi_driver);
1483err_unreg_tty:
1484 tty_unregister_driver(tty_drv);
1485err_free_tty:
1486 put_tty_driver(tty_drv);
1487
Russ Gorbyaf3b8882010-10-26 14:13:52 +01001488 return result;
1489}
1490
1491module_init(ifx_spi_init);
1492module_exit(ifx_spi_exit);
1493
1494MODULE_AUTHOR("Intel");
1495MODULE_DESCRIPTION("IFX6x60 spi driver");
1496MODULE_LICENSE("GPL");
1497MODULE_INFO(Version, "0.1-IFX6x60");