2 * LCD driver for MIPI DBI-C / DCS compatible LCDs
4 * Copyright (C) 2006 Nokia Corporation
5 * Author: Imre Deak <imre.deak@nokia.com>
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; either version 2 of the License, or (at your
10 * option) any later version.
12 * This program is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
17 * You should have received a copy of the GNU General Public License along
18 * with this program; if not, write to the Free Software Foundation, Inc.,
19 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
21 #include <linux/device.h>
22 #include <linux/delay.h>
23 #include <linux/workqueue.h>
24 #include <linux/spi/spi.h>
26 #include <mach/omapfb.h>
27 #include <mach/lcd_mipid.h>
29 #define MIPID_MODULE_NAME "lcd_mipid"
31 #define MIPID_CMD_READ_DISP_ID 0x04
32 #define MIPID_CMD_READ_RED 0x06
33 #define MIPID_CMD_READ_GREEN 0x07
34 #define MIPID_CMD_READ_BLUE 0x08
35 #define MIPID_CMD_READ_DISP_STATUS 0x09
36 #define MIPID_CMD_RDDSDR 0x0F
37 #define MIPID_CMD_SLEEP_IN 0x10
38 #define MIPID_CMD_SLEEP_OUT 0x11
39 #define MIPID_CMD_DISP_OFF 0x28
40 #define MIPID_CMD_DISP_ON 0x29
42 #define MIPID_ESD_CHECK_PERIOD msecs_to_jiffies(5000)
44 #define to_mipid_device(p) container_of(p, struct mipid_device, \
49 unsigned int saved_bklight_level
;
50 unsigned long hw_guard_end
; /* next value of jiffies
52 next sleep in/out command */
53 unsigned long hw_guard_wait
; /* max guard time in jiffies */
55 struct omapfb_device
*fbdev
;
56 struct spi_device
*spi
;
58 struct lcd_panel panel
;
60 struct workqueue_struct
*esd_wq
;
61 struct delayed_work esd_work
;
62 void (*esd_check
)(struct mipid_device
*m
);
65 static void mipid_transfer(struct mipid_device
*md
, int cmd
, const u8
*wbuf
,
66 int wlen
, u8
*rbuf
, int rlen
)
69 struct spi_transfer
*x
, xfer
[4];
73 BUG_ON(md
->spi
== NULL
);
77 memset(xfer
, 0, sizeof(xfer
));
84 spi_message_add_tail(x
, &m
);
91 spi_message_add_tail(x
, &m
);
98 spi_message_add_tail(x
, &m
);
101 /* Arrange for the extra clock before the first
104 x
->bits_per_word
= 9;
108 x
->rx_buf
= &rbuf
[1];
110 spi_message_add_tail(x
, &m
);
114 r
= spi_sync(md
->spi
, &m
);
116 dev_dbg(&md
->spi
->dev
, "spi_sync %d\n", r
);
122 static inline void mipid_cmd(struct mipid_device
*md
, int cmd
)
124 mipid_transfer(md
, cmd
, NULL
, 0, NULL
, 0);
127 static inline void mipid_write(struct mipid_device
*md
,
128 int reg
, const u8
*buf
, int len
)
130 mipid_transfer(md
, reg
, buf
, len
, NULL
, 0);
133 static inline void mipid_read(struct mipid_device
*md
,
134 int reg
, u8
*buf
, int len
)
136 mipid_transfer(md
, reg
, NULL
, 0, buf
, len
);
139 static void set_data_lines(struct mipid_device
*md
, int data_lines
)
143 switch (data_lines
) {
154 mipid_write(md
, 0x3a, (u8
*)&par
, 2);
157 static void send_init_string(struct mipid_device
*md
)
159 u16 initpar
[] = { 0x0102, 0x0100, 0x0100 };
161 mipid_write(md
, 0xc2, (u8
*)initpar
, sizeof(initpar
));
162 set_data_lines(md
, md
->panel
.data_lines
);
165 static void hw_guard_start(struct mipid_device
*md
, int guard_msec
)
167 md
->hw_guard_wait
= msecs_to_jiffies(guard_msec
);
168 md
->hw_guard_end
= jiffies
+ md
->hw_guard_wait
;
171 static void hw_guard_wait(struct mipid_device
*md
)
173 unsigned long wait
= md
->hw_guard_end
- jiffies
;
175 if ((long)wait
> 0 && wait
<= md
->hw_guard_wait
) {
176 set_current_state(TASK_UNINTERRUPTIBLE
);
177 schedule_timeout(wait
);
181 static void set_sleep_mode(struct mipid_device
*md
, int on
)
183 int cmd
, sleep_time
= 50;
186 cmd
= MIPID_CMD_SLEEP_IN
;
188 cmd
= MIPID_CMD_SLEEP_OUT
;
191 hw_guard_start(md
, 120);
193 * When we enable the panel, it seems we _have_ to sleep
194 * 120 ms before sending the init string. When disabling the
195 * panel we'll sleep for the duration of 2 frames, so that the
196 * controller can still provide the PCLK,HS,VS signals.
203 static void set_display_state(struct mipid_device
*md
, int enabled
)
205 int cmd
= enabled
? MIPID_CMD_DISP_ON
: MIPID_CMD_DISP_OFF
;
210 static int mipid_set_bklight_level(struct lcd_panel
*panel
, unsigned int level
)
212 struct mipid_device
*md
= to_mipid_device(panel
);
213 struct mipid_platform_data
*pd
= md
->spi
->dev
.platform_data
;
215 if (pd
->get_bklight_max
== NULL
|| pd
->set_bklight_level
== NULL
)
217 if (level
> pd
->get_bklight_max(pd
))
220 md
->saved_bklight_level
= level
;
223 pd
->set_bklight_level(pd
, level
);
228 static unsigned int mipid_get_bklight_level(struct lcd_panel
*panel
)
230 struct mipid_device
*md
= to_mipid_device(panel
);
231 struct mipid_platform_data
*pd
= md
->spi
->dev
.platform_data
;
233 if (pd
->get_bklight_level
== NULL
)
235 return pd
->get_bklight_level(pd
);
238 static unsigned int mipid_get_bklight_max(struct lcd_panel
*panel
)
240 struct mipid_device
*md
= to_mipid_device(panel
);
241 struct mipid_platform_data
*pd
= md
->spi
->dev
.platform_data
;
243 if (pd
->get_bklight_max
== NULL
)
246 return pd
->get_bklight_max(pd
);
249 static unsigned long mipid_get_caps(struct lcd_panel
*panel
)
251 return OMAPFB_CAPS_SET_BACKLIGHT
;
254 static u16
read_first_pixel(struct mipid_device
*md
)
259 mutex_lock(&md
->mutex
);
260 mipid_read(md
, MIPID_CMD_READ_RED
, &red
, 1);
261 mipid_read(md
, MIPID_CMD_READ_GREEN
, &green
, 1);
262 mipid_read(md
, MIPID_CMD_READ_BLUE
, &blue
, 1);
263 mutex_unlock(&md
->mutex
);
265 switch (md
->panel
.data_lines
) {
267 pixel
= ((red
>> 1) << 11) | (green
<< 5) | (blue
>> 1);
270 /* 24 bit -> 16 bit */
271 pixel
= ((red
>> 3) << 11) | ((green
>> 2) << 5) |
282 static int mipid_run_test(struct lcd_panel
*panel
, int test_num
)
284 struct mipid_device
*md
= to_mipid_device(panel
);
285 static const u16 test_values
[4] = {
286 0x0000, 0xffff, 0xaaaa, 0x5555,
290 if (test_num
!= MIPID_TEST_RGB_LINES
)
291 return MIPID_TEST_INVALID
;
293 for (i
= 0; i
< ARRAY_SIZE(test_values
); i
++) {
297 omapfb_write_first_pixel(md
->fbdev
, test_values
[i
]);
298 tmo
= jiffies
+ msecs_to_jiffies(100);
304 pixel
= read_first_pixel(md
);
305 if (pixel
== test_values
[i
])
307 if (time_after(jiffies
, tmo
)) {
308 dev_err(&md
->spi
->dev
,
309 "MIPI LCD RGB I/F test failed: "
310 "expecting %04x, got %04x\n",
311 test_values
[i
], pixel
);
312 return MIPID_TEST_FAILED
;
321 static void ls041y3_esd_recover(struct mipid_device
*md
)
323 dev_err(&md
->spi
->dev
, "performing LCD ESD recovery\n");
324 set_sleep_mode(md
, 1);
325 set_sleep_mode(md
, 0);
328 static void ls041y3_esd_check_mode1(struct mipid_device
*md
)
332 mipid_read(md
, MIPID_CMD_RDDSDR
, &state1
, 1);
333 set_sleep_mode(md
, 0);
334 mipid_read(md
, MIPID_CMD_RDDSDR
, &state2
, 1);
335 dev_dbg(&md
->spi
->dev
, "ESD mode 1 state1 %02x state2 %02x\n",
337 /* Each sleep out command will trigger a self diagnostic and flip
338 * Bit6 if the test passes.
340 if (!((state1
^ state2
) & (1 << 6)))
341 ls041y3_esd_recover(md
);
344 static void ls041y3_esd_check_mode2(struct mipid_device
*md
)
348 static const struct {
352 } *rd
, rd_ctrl
[7] = {
353 { 0xb0, 4, { 0x0101, 0x01fe, } },
354 { 0xb1, 4, { 0x01de, 0x0121, } },
355 { 0xc2, 4, { 0x0100, 0x0100, } },
356 { 0xbd, 2, { 0x0100, } },
357 { 0xc2, 4, { 0x01fc, 0x0103, } },
363 for (i
= 0; i
< 3; i
++, rd
++)
364 mipid_write(md
, rd
->cmd
, (u8
*)rd
->wbuf
, rd
->wlen
);
367 mipid_read(md
, rd
->cmd
, rbuf
, 2);
370 for (i
= 0; i
< 3; i
++, rd
++) {
372 mipid_write(md
, rd
->cmd
, (u8
*)rd
->wbuf
, rd
->wlen
);
375 dev_dbg(&md
->spi
->dev
, "ESD mode 2 state %02x\n", rbuf
[1]);
377 ls041y3_esd_recover(md
);
380 static void ls041y3_esd_check(struct mipid_device
*md
)
382 ls041y3_esd_check_mode1(md
);
383 if (md
->revision
>= 0x88)
384 ls041y3_esd_check_mode2(md
);
387 static void mipid_esd_start_check(struct mipid_device
*md
)
389 if (md
->esd_check
!= NULL
)
390 queue_delayed_work(md
->esd_wq
, &md
->esd_work
,
391 MIPID_ESD_CHECK_PERIOD
);
394 static void mipid_esd_stop_check(struct mipid_device
*md
)
396 if (md
->esd_check
!= NULL
)
397 cancel_rearming_delayed_workqueue(md
->esd_wq
, &md
->esd_work
);
400 static void mipid_esd_work(struct work_struct
*work
)
402 struct mipid_device
*md
= container_of(work
, struct mipid_device
,
405 mutex_lock(&md
->mutex
);
407 mutex_unlock(&md
->mutex
);
408 mipid_esd_start_check(md
);
411 static int mipid_enable(struct lcd_panel
*panel
)
413 struct mipid_device
*md
= to_mipid_device(panel
);
415 mutex_lock(&md
->mutex
);
418 mutex_unlock(&md
->mutex
);
421 set_sleep_mode(md
, 0);
423 send_init_string(md
);
424 set_display_state(md
, 1);
425 mipid_set_bklight_level(panel
, md
->saved_bklight_level
);
426 mipid_esd_start_check(md
);
428 mutex_unlock(&md
->mutex
);
432 static void mipid_disable(struct lcd_panel
*panel
)
434 struct mipid_device
*md
= to_mipid_device(panel
);
437 * A final ESD work might be called before returning,
438 * so do this without holding the lock.
440 mipid_esd_stop_check(md
);
441 mutex_lock(&md
->mutex
);
444 mutex_unlock(&md
->mutex
);
447 md
->saved_bklight_level
= mipid_get_bklight_level(panel
);
448 mipid_set_bklight_level(panel
, 0);
449 set_display_state(md
, 0);
450 set_sleep_mode(md
, 1);
453 mutex_unlock(&md
->mutex
);
456 static int panel_enabled(struct mipid_device
*md
)
461 mipid_read(md
, MIPID_CMD_READ_DISP_STATUS
, (u8
*)&disp_status
, 4);
462 disp_status
= __be32_to_cpu(disp_status
);
463 enabled
= (disp_status
& (1 << 17)) && (disp_status
& (1 << 10));
464 dev_dbg(&md
->spi
->dev
,
465 "LCD panel %senabled by bootloader (status 0x%04x)\n",
466 enabled
? "" : "not ", disp_status
);
470 static int mipid_init(struct lcd_panel
*panel
,
471 struct omapfb_device
*fbdev
)
473 struct mipid_device
*md
= to_mipid_device(panel
);
476 md
->esd_wq
= create_singlethread_workqueue("mipid_esd");
477 if (md
->esd_wq
== NULL
) {
478 dev_err(&md
->spi
->dev
, "can't create ESD workqueue\n");
481 INIT_DELAYED_WORK(&md
->esd_work
, mipid_esd_work
);
482 mutex_init(&md
->mutex
);
484 md
->enabled
= panel_enabled(md
);
487 mipid_esd_start_check(md
);
489 md
->saved_bklight_level
= mipid_get_bklight_level(panel
);
494 static void mipid_cleanup(struct lcd_panel
*panel
)
496 struct mipid_device
*md
= to_mipid_device(panel
);
499 mipid_esd_stop_check(md
);
500 destroy_workqueue(md
->esd_wq
);
503 static struct lcd_panel mipid_panel
= {
504 .config
= OMAP_LCDC_PANEL_TFT
,
509 .pixel_clock
= 21940,
518 .cleanup
= mipid_cleanup
,
519 .enable
= mipid_enable
,
520 .disable
= mipid_disable
,
521 .get_caps
= mipid_get_caps
,
522 .set_bklight_level
= mipid_set_bklight_level
,
523 .get_bklight_level
= mipid_get_bklight_level
,
524 .get_bklight_max
= mipid_get_bklight_max
,
525 .run_test
= mipid_run_test
,
528 static int mipid_detect(struct mipid_device
*md
)
530 struct mipid_platform_data
*pdata
;
533 pdata
= md
->spi
->dev
.platform_data
;
535 dev_err(&md
->spi
->dev
, "missing platform data\n");
539 mipid_read(md
, MIPID_CMD_READ_DISP_ID
, display_id
, 3);
540 dev_dbg(&md
->spi
->dev
, "MIPI display ID: %02x%02x%02x\n",
541 display_id
[0], display_id
[1], display_id
[2]);
543 switch (display_id
[0]) {
545 md
->panel
.name
= "lph8923";
548 md
->panel
.name
= "ls041y3";
549 md
->esd_check
= ls041y3_esd_check
;
552 md
->panel
.name
= "unknown";
553 dev_err(&md
->spi
->dev
, "invalid display ID\n");
557 md
->revision
= display_id
[1];
558 md
->panel
.data_lines
= pdata
->data_lines
;
559 pr_info("omapfb: %s rev %02x LCD detected, %d data lines\n",
560 md
->panel
.name
, md
->revision
, md
->panel
.data_lines
);
565 static int mipid_spi_probe(struct spi_device
*spi
)
567 struct mipid_device
*md
;
570 md
= kzalloc(sizeof(*md
), GFP_KERNEL
);
572 dev_err(&spi
->dev
, "out of memory\n");
576 spi
->mode
= SPI_MODE_0
;
578 dev_set_drvdata(&spi
->dev
, md
);
579 md
->panel
= mipid_panel
;
581 r
= mipid_detect(md
);
585 omapfb_register_panel(&md
->panel
);
590 static int mipid_spi_remove(struct spi_device
*spi
)
592 struct mipid_device
*md
= dev_get_drvdata(&spi
->dev
);
594 mipid_disable(&md
->panel
);
600 static struct spi_driver mipid_spi_driver
= {
602 .name
= MIPID_MODULE_NAME
,
603 .bus
= &spi_bus_type
,
604 .owner
= THIS_MODULE
,
606 .probe
= mipid_spi_probe
,
607 .remove
= __devexit_p(mipid_spi_remove
),
610 static int mipid_drv_init(void)
612 spi_register_driver(&mipid_spi_driver
);
616 module_init(mipid_drv_init
);
618 static void mipid_drv_cleanup(void)
620 spi_unregister_driver(&mipid_spi_driver
);
622 module_exit(mipid_drv_cleanup
);
624 MODULE_DESCRIPTION("MIPI display driver");
625 MODULE_LICENSE("GPL");