2 * Driver for AT91/AT32 LCD Controller
4 * Copyright (C) 2007 Atmel Corporation
6 * This file is subject to the terms and conditions of the GNU General Public
7 * License. See the file COPYING in the main directory of this archive for
11 #include <linux/kernel.h>
12 #include <linux/platform_device.h>
13 #include <linux/dma-mapping.h>
14 #include <linux/interrupt.h>
15 #include <linux/clk.h>
17 #include <linux/init.h>
18 #include <linux/delay.h>
19 #include <linux/backlight.h>
20 #include <linux/gfp.h>
21 #include <linux/module.h>
22 #include <linux/platform_data/atmel.h>
24 #include <linux/of_device.h>
25 #include <linux/of_gpio.h>
26 #include <video/of_display_timing.h>
27 #include <video/videomode.h>
32 #include <video/atmel_lcdc.h>
34 struct atmel_lcdfb_config
{
35 bool have_alt_pixclock
;
37 bool have_intensity_bit
;
40 /* LCD Controller info data structure, stored in device platform_data */
41 struct atmel_lcdfb_info
{
46 struct work_struct task
;
48 unsigned int smem_len
;
49 struct platform_device
*pdev
;
53 struct backlight_device
*backlight
;
57 u32 pseudo_palette
[16];
58 bool have_intensity_bit
;
60 struct atmel_lcdfb_pdata pdata
;
62 struct atmel_lcdfb_config
*config
;
65 struct atmel_lcdfb_power_ctrl_gpio
{
69 struct list_head list
;
72 #define lcdc_readl(sinfo, reg) __raw_readl((sinfo)->mmio+(reg))
73 #define lcdc_writel(sinfo, reg, val) __raw_writel((val), (sinfo)->mmio+(reg))
75 /* configurable parameters */
76 #define ATMEL_LCDC_CVAL_DEFAULT 0xc8
77 #define ATMEL_LCDC_DMA_BURST_LEN 8 /* words */
78 #define ATMEL_LCDC_FIFO_SIZE 512 /* words */
80 static struct atmel_lcdfb_config at91sam9261_config
= {
82 .have_intensity_bit
= true,
85 static struct atmel_lcdfb_config at91sam9263_config
= {
86 .have_intensity_bit
= true,
89 static struct atmel_lcdfb_config at91sam9g10_config
= {
93 static struct atmel_lcdfb_config at91sam9g45_config
= {
94 .have_alt_pixclock
= true,
97 static struct atmel_lcdfb_config at91sam9g45es_config
= {
100 static struct atmel_lcdfb_config at91sam9rl_config
= {
101 .have_intensity_bit
= true,
104 static struct atmel_lcdfb_config at32ap_config
= {
108 static const struct platform_device_id atmel_lcdfb_devtypes
[] = {
110 .name
= "at91sam9261-lcdfb",
111 .driver_data
= (unsigned long)&at91sam9261_config
,
113 .name
= "at91sam9263-lcdfb",
114 .driver_data
= (unsigned long)&at91sam9263_config
,
116 .name
= "at91sam9g10-lcdfb",
117 .driver_data
= (unsigned long)&at91sam9g10_config
,
119 .name
= "at91sam9g45-lcdfb",
120 .driver_data
= (unsigned long)&at91sam9g45_config
,
122 .name
= "at91sam9g45es-lcdfb",
123 .driver_data
= (unsigned long)&at91sam9g45es_config
,
125 .name
= "at91sam9rl-lcdfb",
126 .driver_data
= (unsigned long)&at91sam9rl_config
,
128 .name
= "at32ap-lcdfb",
129 .driver_data
= (unsigned long)&at32ap_config
,
134 MODULE_DEVICE_TABLE(platform
, atmel_lcdfb_devtypes
);
136 static struct atmel_lcdfb_config
*
137 atmel_lcdfb_get_config(struct platform_device
*pdev
)
141 data
= platform_get_device_id(pdev
)->driver_data
;
143 return (struct atmel_lcdfb_config
*)data
;
146 #if defined(CONFIG_ARCH_AT91)
147 #define ATMEL_LCDFB_FBINFO_DEFAULT (FBINFO_DEFAULT \
148 | FBINFO_PARTIAL_PAN_OK \
149 | FBINFO_HWACCEL_YPAN)
151 static inline void atmel_lcdfb_update_dma2d(struct atmel_lcdfb_info
*sinfo
,
152 struct fb_var_screeninfo
*var
,
153 struct fb_info
*info
)
157 #elif defined(CONFIG_AVR32)
158 #define ATMEL_LCDFB_FBINFO_DEFAULT (FBINFO_DEFAULT \
159 | FBINFO_PARTIAL_PAN_OK \
160 | FBINFO_HWACCEL_XPAN \
161 | FBINFO_HWACCEL_YPAN)
163 static void atmel_lcdfb_update_dma2d(struct atmel_lcdfb_info
*sinfo
,
164 struct fb_var_screeninfo
*var
,
165 struct fb_info
*info
)
170 pixeloff
= (var
->xoffset
* info
->var
.bits_per_pixel
) & 0x1f;
172 dma2dcfg
= (info
->var
.xres_virtual
- info
->var
.xres
)
173 * info
->var
.bits_per_pixel
/ 8;
174 dma2dcfg
|= pixeloff
<< ATMEL_LCDC_PIXELOFF_OFFSET
;
175 lcdc_writel(sinfo
, ATMEL_LCDC_DMA2DCFG
, dma2dcfg
);
177 /* Update configuration */
178 lcdc_writel(sinfo
, ATMEL_LCDC_DMACON
,
179 lcdc_readl(sinfo
, ATMEL_LCDC_DMACON
)
180 | ATMEL_LCDC_DMAUPDT
);
184 static u32 contrast_ctr
= ATMEL_LCDC_PS_DIV8
185 | ATMEL_LCDC_POL_POSITIVE
186 | ATMEL_LCDC_ENA_PWMENABLE
;
188 #ifdef CONFIG_BACKLIGHT_ATMEL_LCDC
190 /* some bl->props field just changed */
191 static int atmel_bl_update_status(struct backlight_device
*bl
)
193 struct atmel_lcdfb_info
*sinfo
= bl_get_data(bl
);
194 int power
= sinfo
->bl_power
;
195 int brightness
= bl
->props
.brightness
;
197 /* REVISIT there may be a meaningful difference between
198 * fb_blank and power ... there seem to be some cases
199 * this doesn't handle correctly.
201 if (bl
->props
.fb_blank
!= sinfo
->bl_power
)
202 power
= bl
->props
.fb_blank
;
203 else if (bl
->props
.power
!= sinfo
->bl_power
)
204 power
= bl
->props
.power
;
206 if (brightness
< 0 && power
== FB_BLANK_UNBLANK
)
207 brightness
= lcdc_readl(sinfo
, ATMEL_LCDC_CONTRAST_VAL
);
208 else if (power
!= FB_BLANK_UNBLANK
)
211 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_VAL
, brightness
);
212 if (contrast_ctr
& ATMEL_LCDC_POL_POSITIVE
)
213 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_CTR
,
214 brightness
? contrast_ctr
: 0);
216 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_CTR
, contrast_ctr
);
218 bl
->props
.fb_blank
= bl
->props
.power
= sinfo
->bl_power
= power
;
223 static int atmel_bl_get_brightness(struct backlight_device
*bl
)
225 struct atmel_lcdfb_info
*sinfo
= bl_get_data(bl
);
227 return lcdc_readl(sinfo
, ATMEL_LCDC_CONTRAST_VAL
);
230 static const struct backlight_ops atmel_lcdc_bl_ops
= {
231 .update_status
= atmel_bl_update_status
,
232 .get_brightness
= atmel_bl_get_brightness
,
235 static void init_backlight(struct atmel_lcdfb_info
*sinfo
)
237 struct backlight_properties props
;
238 struct backlight_device
*bl
;
240 sinfo
->bl_power
= FB_BLANK_UNBLANK
;
242 if (sinfo
->backlight
)
245 memset(&props
, 0, sizeof(struct backlight_properties
));
246 props
.type
= BACKLIGHT_RAW
;
247 props
.max_brightness
= 0xff;
248 bl
= backlight_device_register("backlight", &sinfo
->pdev
->dev
, sinfo
,
249 &atmel_lcdc_bl_ops
, &props
);
251 dev_err(&sinfo
->pdev
->dev
, "error %ld on backlight register\n",
255 sinfo
->backlight
= bl
;
257 bl
->props
.power
= FB_BLANK_UNBLANK
;
258 bl
->props
.fb_blank
= FB_BLANK_UNBLANK
;
259 bl
->props
.brightness
= atmel_bl_get_brightness(bl
);
262 static void exit_backlight(struct atmel_lcdfb_info
*sinfo
)
264 if (!sinfo
->backlight
)
267 if (sinfo
->backlight
->ops
) {
268 sinfo
->backlight
->props
.power
= FB_BLANK_POWERDOWN
;
269 sinfo
->backlight
->ops
->update_status(sinfo
->backlight
);
271 backlight_device_unregister(sinfo
->backlight
);
276 static void init_backlight(struct atmel_lcdfb_info
*sinfo
)
278 dev_warn(&sinfo
->pdev
->dev
, "backlight control is not available\n");
281 static void exit_backlight(struct atmel_lcdfb_info
*sinfo
)
287 static void init_contrast(struct atmel_lcdfb_info
*sinfo
)
289 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
291 /* contrast pwm can be 'inverted' */
292 if (pdata
->lcdcon_pol_negative
)
293 contrast_ctr
&= ~(ATMEL_LCDC_POL_POSITIVE
);
295 /* have some default contrast/backlight settings */
296 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_CTR
, contrast_ctr
);
297 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_VAL
, ATMEL_LCDC_CVAL_DEFAULT
);
299 if (pdata
->lcdcon_is_backlight
)
300 init_backlight(sinfo
);
303 static inline void atmel_lcdfb_power_control(struct atmel_lcdfb_info
*sinfo
, int on
)
305 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
307 if (pdata
->atmel_lcdfb_power_control
)
308 pdata
->atmel_lcdfb_power_control(pdata
, on
);
311 static struct fb_fix_screeninfo atmel_lcdfb_fix __initdata
= {
312 .type
= FB_TYPE_PACKED_PIXELS
,
313 .visual
= FB_VISUAL_TRUECOLOR
,
317 .accel
= FB_ACCEL_NONE
,
320 static unsigned long compute_hozval(struct atmel_lcdfb_info
*sinfo
,
323 unsigned long lcdcon2
;
326 if (!sinfo
->config
->have_hozval
)
329 lcdcon2
= lcdc_readl(sinfo
, ATMEL_LCDC_LCDCON2
);
331 if ((lcdcon2
& ATMEL_LCDC_DISTYPE
) != ATMEL_LCDC_DISTYPE_TFT
) {
333 if ((lcdcon2
& ATMEL_LCDC_DISTYPE
) == ATMEL_LCDC_DISTYPE_STNCOLOR
) {
336 if ( (lcdcon2
& ATMEL_LCDC_IFWIDTH
) == ATMEL_LCDC_IFWIDTH_4
337 || ( (lcdcon2
& ATMEL_LCDC_IFWIDTH
) == ATMEL_LCDC_IFWIDTH_8
338 && (lcdcon2
& ATMEL_LCDC_SCANMOD
) == ATMEL_LCDC_SCANMOD_DUAL
))
339 value
= DIV_ROUND_UP(value
, 4);
341 value
= DIV_ROUND_UP(value
, 8);
347 static void atmel_lcdfb_stop_nowait(struct atmel_lcdfb_info
*sinfo
)
349 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
351 /* Turn off the LCD controller and the DMA controller */
352 lcdc_writel(sinfo
, ATMEL_LCDC_PWRCON
,
353 pdata
->guard_time
<< ATMEL_LCDC_GUARDT_OFFSET
);
355 /* Wait for the LCDC core to become idle */
356 while (lcdc_readl(sinfo
, ATMEL_LCDC_PWRCON
) & ATMEL_LCDC_BUSY
)
359 lcdc_writel(sinfo
, ATMEL_LCDC_DMACON
, 0);
362 static void atmel_lcdfb_stop(struct atmel_lcdfb_info
*sinfo
)
364 atmel_lcdfb_stop_nowait(sinfo
);
366 /* Wait for DMA engine to become idle... */
367 while (lcdc_readl(sinfo
, ATMEL_LCDC_DMACON
) & ATMEL_LCDC_DMABUSY
)
371 static void atmel_lcdfb_start(struct atmel_lcdfb_info
*sinfo
)
373 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
375 lcdc_writel(sinfo
, ATMEL_LCDC_DMACON
, pdata
->default_dmacon
);
376 lcdc_writel(sinfo
, ATMEL_LCDC_PWRCON
,
377 (pdata
->guard_time
<< ATMEL_LCDC_GUARDT_OFFSET
)
381 static void atmel_lcdfb_update_dma(struct fb_info
*info
,
382 struct fb_var_screeninfo
*var
)
384 struct atmel_lcdfb_info
*sinfo
= info
->par
;
385 struct fb_fix_screeninfo
*fix
= &info
->fix
;
386 unsigned long dma_addr
;
388 dma_addr
= (fix
->smem_start
+ var
->yoffset
* fix
->line_length
389 + var
->xoffset
* info
->var
.bits_per_pixel
/ 8);
393 /* Set framebuffer DMA base address and pixel offset */
394 lcdc_writel(sinfo
, ATMEL_LCDC_DMABADDR1
, dma_addr
);
396 atmel_lcdfb_update_dma2d(sinfo
, var
, info
);
399 static inline void atmel_lcdfb_free_video_memory(struct atmel_lcdfb_info
*sinfo
)
401 struct fb_info
*info
= sinfo
->info
;
403 dma_free_writecombine(info
->device
, info
->fix
.smem_len
,
404 info
->screen_base
, info
->fix
.smem_start
);
408 * atmel_lcdfb_alloc_video_memory - Allocate framebuffer memory
409 * @sinfo: the frame buffer to allocate memory for
411 * This function is called only from the atmel_lcdfb_probe()
412 * so no locking by fb_info->mm_lock around smem_len setting is needed.
414 static int atmel_lcdfb_alloc_video_memory(struct atmel_lcdfb_info
*sinfo
)
416 struct fb_info
*info
= sinfo
->info
;
417 struct fb_var_screeninfo
*var
= &info
->var
;
418 unsigned int smem_len
;
420 smem_len
= (var
->xres_virtual
* var
->yres_virtual
421 * ((var
->bits_per_pixel
+ 7) / 8));
422 info
->fix
.smem_len
= max(smem_len
, sinfo
->smem_len
);
424 info
->screen_base
= dma_alloc_writecombine(info
->device
, info
->fix
.smem_len
,
425 (dma_addr_t
*)&info
->fix
.smem_start
, GFP_KERNEL
);
427 if (!info
->screen_base
) {
431 memset(info
->screen_base
, 0, info
->fix
.smem_len
);
436 static const struct fb_videomode
*atmel_lcdfb_choose_mode(struct fb_var_screeninfo
*var
,
437 struct fb_info
*info
)
439 struct fb_videomode varfbmode
;
440 const struct fb_videomode
*fbmode
= NULL
;
442 fb_var_to_videomode(&varfbmode
, var
);
443 fbmode
= fb_find_nearest_mode(&varfbmode
, &info
->modelist
);
445 fb_videomode_to_var(var
, fbmode
);
451 * atmel_lcdfb_check_var - Validates a var passed in.
452 * @var: frame buffer variable screen structure
453 * @info: frame buffer structure that represents a single frame buffer
455 * Checks to see if the hardware supports the state requested by
456 * var passed in. This function does not alter the hardware
457 * state!!! This means the data stored in struct fb_info and
458 * struct atmel_lcdfb_info do not change. This includes the var
459 * inside of struct fb_info. Do NOT change these. This function
460 * can be called on its own if we intent to only test a mode and
461 * not actually set it. The stuff in modedb.c is a example of
462 * this. If the var passed in is slightly off by what the
463 * hardware can support then we alter the var PASSED in to what
464 * we can do. If the hardware doesn't support mode change a
465 * -EINVAL will be returned by the upper layers. You don't need
466 * to implement this function then. If you hardware doesn't
467 * support changing the resolution then this function is not
468 * needed. In this case the driver would just provide a var that
469 * represents the static state the screen is in.
471 * Returns negative errno on error, or zero on success.
473 static int atmel_lcdfb_check_var(struct fb_var_screeninfo
*var
,
474 struct fb_info
*info
)
476 struct device
*dev
= info
->device
;
477 struct atmel_lcdfb_info
*sinfo
= info
->par
;
478 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
479 unsigned long clk_value_khz
;
481 clk_value_khz
= clk_get_rate(sinfo
->lcdc_clk
) / 1000;
483 dev_dbg(dev
, "%s:\n", __func__
);
485 if (!(var
->pixclock
&& var
->bits_per_pixel
)) {
486 /* choose a suitable mode if possible */
487 if (!atmel_lcdfb_choose_mode(var
, info
)) {
488 dev_err(dev
, "needed value not specified\n");
493 dev_dbg(dev
, " resolution: %ux%u\n", var
->xres
, var
->yres
);
494 dev_dbg(dev
, " pixclk: %lu KHz\n", PICOS2KHZ(var
->pixclock
));
495 dev_dbg(dev
, " bpp: %u\n", var
->bits_per_pixel
);
496 dev_dbg(dev
, " clk: %lu KHz\n", clk_value_khz
);
498 if (PICOS2KHZ(var
->pixclock
) > clk_value_khz
) {
499 dev_err(dev
, "%lu KHz pixel clock is too fast\n", PICOS2KHZ(var
->pixclock
));
503 /* Do not allow to have real resoulution larger than virtual */
504 if (var
->xres
> var
->xres_virtual
)
505 var
->xres_virtual
= var
->xres
;
507 if (var
->yres
> var
->yres_virtual
)
508 var
->yres_virtual
= var
->yres
;
510 /* Force same alignment for each line */
511 var
->xres
= (var
->xres
+ 3) & ~3UL;
512 var
->xres_virtual
= (var
->xres_virtual
+ 3) & ~3UL;
514 var
->red
.msb_right
= var
->green
.msb_right
= var
->blue
.msb_right
= 0;
515 var
->transp
.msb_right
= 0;
516 var
->transp
.offset
= var
->transp
.length
= 0;
517 var
->xoffset
= var
->yoffset
= 0;
519 if (info
->fix
.smem_len
) {
520 unsigned int smem_len
= (var
->xres_virtual
* var
->yres_virtual
521 * ((var
->bits_per_pixel
+ 7) / 8));
522 if (smem_len
> info
->fix
.smem_len
) {
523 dev_err(dev
, "Frame buffer is too small (%u) for screen size (need at least %u)\n",
524 info
->fix
.smem_len
, smem_len
);
529 /* Saturate vertical and horizontal timings at maximum values */
530 var
->vsync_len
= min_t(u32
, var
->vsync_len
,
531 (ATMEL_LCDC_VPW
>> ATMEL_LCDC_VPW_OFFSET
) + 1);
532 var
->upper_margin
= min_t(u32
, var
->upper_margin
,
533 ATMEL_LCDC_VBP
>> ATMEL_LCDC_VBP_OFFSET
);
534 var
->lower_margin
= min_t(u32
, var
->lower_margin
,
536 var
->right_margin
= min_t(u32
, var
->right_margin
,
537 (ATMEL_LCDC_HFP
>> ATMEL_LCDC_HFP_OFFSET
) + 1);
538 var
->hsync_len
= min_t(u32
, var
->hsync_len
,
539 (ATMEL_LCDC_HPW
>> ATMEL_LCDC_HPW_OFFSET
) + 1);
540 var
->left_margin
= min_t(u32
, var
->left_margin
,
543 /* Some parameters can't be zero */
544 var
->vsync_len
= max_t(u32
, var
->vsync_len
, 1);
545 var
->right_margin
= max_t(u32
, var
->right_margin
, 1);
546 var
->hsync_len
= max_t(u32
, var
->hsync_len
, 1);
547 var
->left_margin
= max_t(u32
, var
->left_margin
, 1);
549 switch (var
->bits_per_pixel
) {
554 var
->red
.offset
= var
->green
.offset
= var
->blue
.offset
= 0;
555 var
->red
.length
= var
->green
.length
= var
->blue
.length
556 = var
->bits_per_pixel
;
559 /* Older SOCs use IBGR:555 rather than BGR:565. */
560 if (sinfo
->config
->have_intensity_bit
)
561 var
->green
.length
= 5;
563 var
->green
.length
= 6;
565 if (pdata
->lcd_wiring_mode
== ATMEL_LCDC_WIRING_RGB
) {
567 var
->red
.offset
= var
->green
.length
+ 5;
568 var
->blue
.offset
= 0;
572 var
->blue
.offset
= var
->green
.length
+ 5;
574 var
->green
.offset
= 5;
575 var
->red
.length
= var
->blue
.length
= 5;
578 var
->transp
.offset
= 24;
579 var
->transp
.length
= 8;
582 if (pdata
->lcd_wiring_mode
== ATMEL_LCDC_WIRING_RGB
) {
584 var
->red
.offset
= 16;
585 var
->blue
.offset
= 0;
589 var
->blue
.offset
= 16;
591 var
->green
.offset
= 8;
592 var
->red
.length
= var
->green
.length
= var
->blue
.length
= 8;
595 dev_err(dev
, "color depth %d not supported\n",
596 var
->bits_per_pixel
);
606 static void atmel_lcdfb_reset(struct atmel_lcdfb_info
*sinfo
)
610 atmel_lcdfb_stop(sinfo
);
611 atmel_lcdfb_start(sinfo
);
615 * atmel_lcdfb_set_par - Alters the hardware state.
616 * @info: frame buffer structure that represents a single frame buffer
618 * Using the fb_var_screeninfo in fb_info we set the resolution
619 * of the this particular framebuffer. This function alters the
620 * par AND the fb_fix_screeninfo stored in fb_info. It doesn't
621 * not alter var in fb_info since we are using that data. This
622 * means we depend on the data in var inside fb_info to be
623 * supported by the hardware. atmel_lcdfb_check_var is always called
624 * before atmel_lcdfb_set_par to ensure this. Again if you can't
625 * change the resolution you don't need this function.
628 static int atmel_lcdfb_set_par(struct fb_info
*info
)
630 struct atmel_lcdfb_info
*sinfo
= info
->par
;
631 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
632 unsigned long hozval_linesz
;
634 unsigned long clk_value_khz
;
635 unsigned long bits_per_line
;
636 unsigned long pix_factor
= 2;
640 dev_dbg(info
->device
, "%s:\n", __func__
);
641 dev_dbg(info
->device
, " * resolution: %ux%u (%ux%u virtual)\n",
642 info
->var
.xres
, info
->var
.yres
,
643 info
->var
.xres_virtual
, info
->var
.yres_virtual
);
645 atmel_lcdfb_stop_nowait(sinfo
);
647 if (info
->var
.bits_per_pixel
== 1)
648 info
->fix
.visual
= FB_VISUAL_MONO01
;
649 else if (info
->var
.bits_per_pixel
<= 8)
650 info
->fix
.visual
= FB_VISUAL_PSEUDOCOLOR
;
652 info
->fix
.visual
= FB_VISUAL_TRUECOLOR
;
654 bits_per_line
= info
->var
.xres_virtual
* info
->var
.bits_per_pixel
;
655 info
->fix
.line_length
= DIV_ROUND_UP(bits_per_line
, 8);
657 /* Re-initialize the DMA engine... */
658 dev_dbg(info
->device
, " * update DMA engine\n");
659 atmel_lcdfb_update_dma(info
, &info
->var
);
661 /* ...set frame size and burst length = 8 words (?) */
662 value
= (info
->var
.yres
* info
->var
.xres
* info
->var
.bits_per_pixel
) / 32;
663 value
|= ((ATMEL_LCDC_DMA_BURST_LEN
- 1) << ATMEL_LCDC_BLENGTH_OFFSET
);
664 lcdc_writel(sinfo
, ATMEL_LCDC_DMAFRMCFG
, value
);
666 /* Now, the LCDC core... */
668 /* Set pixel clock */
669 if (sinfo
->config
->have_alt_pixclock
)
672 clk_value_khz
= clk_get_rate(sinfo
->lcdc_clk
) / 1000;
674 value
= DIV_ROUND_UP(clk_value_khz
, PICOS2KHZ(info
->var
.pixclock
));
676 if (value
< pix_factor
) {
677 dev_notice(info
->device
, "Bypassing pixel clock divider\n");
678 lcdc_writel(sinfo
, ATMEL_LCDC_LCDCON1
, ATMEL_LCDC_BYPASS
);
680 value
= (value
/ pix_factor
) - 1;
681 dev_dbg(info
->device
, " * programming CLKVAL = 0x%08lx\n",
683 lcdc_writel(sinfo
, ATMEL_LCDC_LCDCON1
,
684 value
<< ATMEL_LCDC_CLKVAL_OFFSET
);
686 KHZ2PICOS(clk_value_khz
/ (pix_factor
* (value
+ 1)));
687 dev_dbg(info
->device
, " updated pixclk: %lu KHz\n",
688 PICOS2KHZ(info
->var
.pixclock
));
692 /* Initialize control register 2 */
693 value
= pdata
->default_lcdcon2
;
695 if (!(info
->var
.sync
& FB_SYNC_HOR_HIGH_ACT
))
696 value
|= ATMEL_LCDC_INVLINE_INVERTED
;
697 if (!(info
->var
.sync
& FB_SYNC_VERT_HIGH_ACT
))
698 value
|= ATMEL_LCDC_INVFRAME_INVERTED
;
700 switch (info
->var
.bits_per_pixel
) {
701 case 1: value
|= ATMEL_LCDC_PIXELSIZE_1
; break;
702 case 2: value
|= ATMEL_LCDC_PIXELSIZE_2
; break;
703 case 4: value
|= ATMEL_LCDC_PIXELSIZE_4
; break;
704 case 8: value
|= ATMEL_LCDC_PIXELSIZE_8
; break;
705 case 15: /* fall through */
706 case 16: value
|= ATMEL_LCDC_PIXELSIZE_16
; break;
707 case 24: value
|= ATMEL_LCDC_PIXELSIZE_24
; break;
708 case 32: value
|= ATMEL_LCDC_PIXELSIZE_32
; break;
709 default: BUG(); break;
711 dev_dbg(info
->device
, " * LCDCON2 = %08lx\n", value
);
712 lcdc_writel(sinfo
, ATMEL_LCDC_LCDCON2
, value
);
714 /* Vertical timing */
715 value
= (info
->var
.vsync_len
- 1) << ATMEL_LCDC_VPW_OFFSET
;
716 value
|= info
->var
.upper_margin
<< ATMEL_LCDC_VBP_OFFSET
;
717 value
|= info
->var
.lower_margin
;
718 dev_dbg(info
->device
, " * LCDTIM1 = %08lx\n", value
);
719 lcdc_writel(sinfo
, ATMEL_LCDC_TIM1
, value
);
721 /* Horizontal timing */
722 value
= (info
->var
.right_margin
- 1) << ATMEL_LCDC_HFP_OFFSET
;
723 value
|= (info
->var
.hsync_len
- 1) << ATMEL_LCDC_HPW_OFFSET
;
724 value
|= (info
->var
.left_margin
- 1);
725 dev_dbg(info
->device
, " * LCDTIM2 = %08lx\n", value
);
726 lcdc_writel(sinfo
, ATMEL_LCDC_TIM2
, value
);
728 /* Horizontal value (aka line size) */
729 hozval_linesz
= compute_hozval(sinfo
, info
->var
.xres
);
732 value
= (hozval_linesz
- 1) << ATMEL_LCDC_HOZVAL_OFFSET
;
733 value
|= info
->var
.yres
- 1;
734 dev_dbg(info
->device
, " * LCDFRMCFG = %08lx\n", value
);
735 lcdc_writel(sinfo
, ATMEL_LCDC_LCDFRMCFG
, value
);
737 /* FIFO Threshold: Use formula from data sheet */
738 value
= ATMEL_LCDC_FIFO_SIZE
- (2 * ATMEL_LCDC_DMA_BURST_LEN
+ 3);
739 lcdc_writel(sinfo
, ATMEL_LCDC_FIFO
, value
);
741 /* Toggle LCD_MODE every frame */
742 lcdc_writel(sinfo
, ATMEL_LCDC_MVAL
, 0);
744 /* Disable all interrupts */
745 lcdc_writel(sinfo
, ATMEL_LCDC_IDR
, ~0UL);
746 /* Enable FIFO & DMA errors */
747 lcdc_writel(sinfo
, ATMEL_LCDC_IER
, ATMEL_LCDC_UFLWI
| ATMEL_LCDC_OWRI
| ATMEL_LCDC_MERI
);
749 /* ...wait for DMA engine to become idle... */
750 while (lcdc_readl(sinfo
, ATMEL_LCDC_DMACON
) & ATMEL_LCDC_DMABUSY
)
753 atmel_lcdfb_start(sinfo
);
755 dev_dbg(info
->device
, " * DONE\n");
760 static inline unsigned int chan_to_field(unsigned int chan
, const struct fb_bitfield
*bf
)
763 chan
>>= 16 - bf
->length
;
764 return chan
<< bf
->offset
;
768 * atmel_lcdfb_setcolreg - Optional function. Sets a color register.
769 * @regno: Which register in the CLUT we are programming
770 * @red: The red value which can be up to 16 bits wide
771 * @green: The green value which can be up to 16 bits wide
772 * @blue: The blue value which can be up to 16 bits wide.
773 * @transp: If supported the alpha value which can be up to 16 bits wide.
774 * @info: frame buffer info structure
776 * Set a single color register. The values supplied have a 16 bit
777 * magnitude which needs to be scaled in this function for the hardware.
778 * Things to take into consideration are how many color registers, if
779 * any, are supported with the current color visual. With truecolor mode
780 * no color palettes are supported. Here a pseudo palette is created
781 * which we store the value in pseudo_palette in struct fb_info. For
782 * pseudocolor mode we have a limited color palette. To deal with this
783 * we can program what color is displayed for a particular pixel value.
784 * DirectColor is similar in that we can program each color field. If
785 * we have a static colormap we don't need to implement this function.
787 * Returns negative errno on error, or zero on success. In an
788 * ideal world, this would have been the case, but as it turns
789 * out, the other drivers return 1 on failure, so that's what
792 static int atmel_lcdfb_setcolreg(unsigned int regno
, unsigned int red
,
793 unsigned int green
, unsigned int blue
,
794 unsigned int transp
, struct fb_info
*info
)
796 struct atmel_lcdfb_info
*sinfo
= info
->par
;
797 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
802 if (info
->var
.grayscale
)
803 red
= green
= blue
= (19595 * red
+ 38470 * green
804 + 7471 * blue
) >> 16;
806 switch (info
->fix
.visual
) {
807 case FB_VISUAL_TRUECOLOR
:
809 pal
= info
->pseudo_palette
;
811 val
= chan_to_field(red
, &info
->var
.red
);
812 val
|= chan_to_field(green
, &info
->var
.green
);
813 val
|= chan_to_field(blue
, &info
->var
.blue
);
820 case FB_VISUAL_PSEUDOCOLOR
:
822 if (sinfo
->config
->have_intensity_bit
) {
823 /* old style I+BGR:555 */
824 val
= ((red
>> 11) & 0x001f);
825 val
|= ((green
>> 6) & 0x03e0);
826 val
|= ((blue
>> 1) & 0x7c00);
829 * TODO: intensity bit. Maybe something like
830 * ~(red[10] ^ green[10] ^ blue[10]) & 1
833 /* new style BGR:565 / RGB:565 */
834 if (pdata
->lcd_wiring_mode
== ATMEL_LCDC_WIRING_RGB
) {
835 val
= ((blue
>> 11) & 0x001f);
836 val
|= ((red
>> 0) & 0xf800);
838 val
= ((red
>> 11) & 0x001f);
839 val
|= ((blue
>> 0) & 0xf800);
842 val
|= ((green
>> 5) & 0x07e0);
845 lcdc_writel(sinfo
, ATMEL_LCDC_LUT(regno
), val
);
850 case FB_VISUAL_MONO01
:
852 val
= (regno
== 0) ? 0x00 : 0x1F;
853 lcdc_writel(sinfo
, ATMEL_LCDC_LUT(regno
), val
);
863 static int atmel_lcdfb_pan_display(struct fb_var_screeninfo
*var
,
864 struct fb_info
*info
)
866 dev_dbg(info
->device
, "%s\n", __func__
);
868 atmel_lcdfb_update_dma(info
, var
);
873 static int atmel_lcdfb_blank(int blank_mode
, struct fb_info
*info
)
875 struct atmel_lcdfb_info
*sinfo
= info
->par
;
877 switch (blank_mode
) {
878 case FB_BLANK_UNBLANK
:
879 case FB_BLANK_NORMAL
:
880 atmel_lcdfb_start(sinfo
);
882 case FB_BLANK_VSYNC_SUSPEND
:
883 case FB_BLANK_HSYNC_SUSPEND
:
885 case FB_BLANK_POWERDOWN
:
886 atmel_lcdfb_stop(sinfo
);
892 /* let fbcon do a soft blank for us */
893 return ((blank_mode
== FB_BLANK_NORMAL
) ? 1 : 0);
896 static struct fb_ops atmel_lcdfb_ops
= {
897 .owner
= THIS_MODULE
,
898 .fb_check_var
= atmel_lcdfb_check_var
,
899 .fb_set_par
= atmel_lcdfb_set_par
,
900 .fb_setcolreg
= atmel_lcdfb_setcolreg
,
901 .fb_blank
= atmel_lcdfb_blank
,
902 .fb_pan_display
= atmel_lcdfb_pan_display
,
903 .fb_fillrect
= cfb_fillrect
,
904 .fb_copyarea
= cfb_copyarea
,
905 .fb_imageblit
= cfb_imageblit
,
908 static irqreturn_t
atmel_lcdfb_interrupt(int irq
, void *dev_id
)
910 struct fb_info
*info
= dev_id
;
911 struct atmel_lcdfb_info
*sinfo
= info
->par
;
914 status
= lcdc_readl(sinfo
, ATMEL_LCDC_ISR
);
915 if (status
& ATMEL_LCDC_UFLWI
) {
916 dev_warn(info
->device
, "FIFO underflow %#x\n", status
);
917 /* reset DMA and FIFO to avoid screen shifting */
918 schedule_work(&sinfo
->task
);
920 lcdc_writel(sinfo
, ATMEL_LCDC_ICR
, status
);
925 * LCD controller task (to reset the LCD)
927 static void atmel_lcdfb_task(struct work_struct
*work
)
929 struct atmel_lcdfb_info
*sinfo
=
930 container_of(work
, struct atmel_lcdfb_info
, task
);
932 atmel_lcdfb_reset(sinfo
);
935 static int __init
atmel_lcdfb_init_fbinfo(struct atmel_lcdfb_info
*sinfo
)
937 struct fb_info
*info
= sinfo
->info
;
940 info
->var
.activate
|= FB_ACTIVATE_FORCE
| FB_ACTIVATE_NOW
;
942 dev_info(info
->device
,
943 "%luKiB frame buffer at %08lx (mapped at %p)\n",
944 (unsigned long)info
->fix
.smem_len
/ 1024,
945 (unsigned long)info
->fix
.smem_start
,
948 /* Allocate colormap */
949 ret
= fb_alloc_cmap(&info
->cmap
, 256, 0);
951 dev_err(info
->device
, "Alloc color map failed\n");
956 static void atmel_lcdfb_start_clock(struct atmel_lcdfb_info
*sinfo
)
958 clk_prepare_enable(sinfo
->bus_clk
);
959 clk_prepare_enable(sinfo
->lcdc_clk
);
962 static void atmel_lcdfb_stop_clock(struct atmel_lcdfb_info
*sinfo
)
964 clk_disable_unprepare(sinfo
->bus_clk
);
965 clk_disable_unprepare(sinfo
->lcdc_clk
);
969 static const struct of_device_id atmel_lcdfb_dt_ids
[] = {
970 { .compatible
= "atmel,at91sam9261-lcdc" , .data
= &at91sam9261_config
, },
971 { .compatible
= "atmel,at91sam9263-lcdc" , .data
= &at91sam9263_config
, },
972 { .compatible
= "atmel,at91sam9g10-lcdc" , .data
= &at91sam9g10_config
, },
973 { .compatible
= "atmel,at91sam9g45-lcdc" , .data
= &at91sam9g45_config
, },
974 { .compatible
= "atmel,at91sam9g45es-lcdc" , .data
= &at91sam9g45es_config
, },
975 { .compatible
= "atmel,at91sam9rl-lcdc" , .data
= &at91sam9rl_config
, },
976 { .compatible
= "atmel,at32ap-lcdc" , .data
= &at32ap_config
, },
980 MODULE_DEVICE_TABLE(of
, atmel_lcdfb_dt_ids
);
982 static const char *atmel_lcdfb_wiring_modes
[] = {
983 [ATMEL_LCDC_WIRING_BGR
] = "BRG",
984 [ATMEL_LCDC_WIRING_RGB
] = "RGB",
987 const int atmel_lcdfb_get_of_wiring_modes(struct device_node
*np
)
992 err
= of_property_read_string(np
, "atmel,lcd-wiring-mode", &mode
);
994 return ATMEL_LCDC_WIRING_BGR
;
996 for (i
= 0; i
< ARRAY_SIZE(atmel_lcdfb_wiring_modes
); i
++)
997 if (!strcasecmp(mode
, atmel_lcdfb_wiring_modes
[i
]))
1003 static void atmel_lcdfb_power_control_gpio(struct atmel_lcdfb_pdata
*pdata
, int on
)
1005 struct atmel_lcdfb_power_ctrl_gpio
*og
;
1007 list_for_each_entry(og
, &pdata
->pwr_gpios
, list
)
1008 gpio_set_value(og
->gpio
, on
);
1011 static int atmel_lcdfb_of_init(struct atmel_lcdfb_info
*sinfo
)
1013 struct fb_info
*info
= sinfo
->info
;
1014 struct atmel_lcdfb_pdata
*pdata
= &sinfo
->pdata
;
1015 struct fb_var_screeninfo
*var
= &info
->var
;
1016 struct device
*dev
= &sinfo
->pdev
->dev
;
1017 struct device_node
*np
=dev
->of_node
;
1018 struct device_node
*display_np
;
1019 struct device_node
*timings_np
;
1020 struct display_timings
*timings
;
1021 enum of_gpio_flags flags
;
1022 struct atmel_lcdfb_power_ctrl_gpio
*og
;
1023 bool is_gpio_power
= false;
1027 sinfo
->config
= (struct atmel_lcdfb_config
*)
1028 of_match_device(atmel_lcdfb_dt_ids
, dev
)->data
;
1030 display_np
= of_parse_phandle(np
, "display", 0);
1032 dev_err(dev
, "failed to find display phandle\n");
1036 ret
= of_property_read_u32(display_np
, "bits-per-pixel", &var
->bits_per_pixel
);
1038 dev_err(dev
, "failed to get property bits-per-pixel\n");
1039 goto put_display_node
;
1042 ret
= of_property_read_u32(display_np
, "atmel,guard-time", &pdata
->guard_time
);
1044 dev_err(dev
, "failed to get property atmel,guard-time\n");
1045 goto put_display_node
;
1048 ret
= of_property_read_u32(display_np
, "atmel,lcdcon2", &pdata
->default_lcdcon2
);
1050 dev_err(dev
, "failed to get property atmel,lcdcon2\n");
1051 goto put_display_node
;
1054 ret
= of_property_read_u32(display_np
, "atmel,dmacon", &pdata
->default_dmacon
);
1056 dev_err(dev
, "failed to get property bits-per-pixel\n");
1057 goto put_display_node
;
1061 for (i
= 0; i
< of_gpio_named_count(display_np
, "atmel,power-control-gpio"); i
++) {
1062 gpio
= of_get_named_gpio_flags(display_np
, "atmel,power-control-gpio",
1067 og
= devm_kzalloc(dev
, sizeof(*og
), GFP_KERNEL
);
1069 goto put_display_node
;
1072 og
->active_low
= flags
& OF_GPIO_ACTIVE_LOW
;
1073 is_gpio_power
= true;
1074 ret
= devm_gpio_request(dev
, gpio
, "lcd-power-control-gpio");
1076 dev_err(dev
, "request gpio %d failed\n", gpio
);
1077 goto put_display_node
;
1080 ret
= gpio_direction_output(gpio
, og
->active_low
);
1082 dev_err(dev
, "set direction output gpio %d failed\n", gpio
);
1083 goto put_display_node
;
1088 pdata
->atmel_lcdfb_power_control
= atmel_lcdfb_power_control_gpio
;
1090 ret
= atmel_lcdfb_get_of_wiring_modes(display_np
);
1092 dev_err(dev
, "invalid atmel,lcd-wiring-mode\n");
1093 goto put_display_node
;
1095 pdata
->lcd_wiring_mode
= ret
;
1097 pdata
->lcdcon_is_backlight
= of_property_read_bool(display_np
, "atmel,lcdcon-backlight");
1099 timings
= of_get_display_timings(display_np
);
1101 dev_err(dev
, "failed to get display timings\n");
1102 goto put_display_node
;
1105 timings_np
= of_find_node_by_name(display_np
, "display-timings");
1107 dev_err(dev
, "failed to find display-timings node\n");
1108 goto put_display_node
;
1111 for (i
= 0; i
< of_get_child_count(timings_np
); i
++) {
1112 struct videomode vm
;
1113 struct fb_videomode fb_vm
;
1115 ret
= videomode_from_timings(timings
, &vm
, i
);
1117 goto put_timings_node
;
1118 ret
= fb_videomode_from_videomode(&vm
, &fb_vm
);
1120 goto put_timings_node
;
1122 fb_add_videomode(&fb_vm
, &info
->modelist
);
1128 of_node_put(timings_np
);
1130 of_node_put(display_np
);
1134 static int atmel_lcdfb_of_init(struct atmel_lcdfb_info
*sinfo
)
1140 static int __init
atmel_lcdfb_probe(struct platform_device
*pdev
)
1142 struct device
*dev
= &pdev
->dev
;
1143 struct fb_info
*info
;
1144 struct atmel_lcdfb_info
*sinfo
;
1145 struct atmel_lcdfb_pdata
*pdata
= NULL
;
1146 struct resource
*regs
= NULL
;
1147 struct resource
*map
= NULL
;
1148 struct fb_modelist
*modelist
;
1151 dev_dbg(dev
, "%s BEGIN\n", __func__
);
1154 info
= framebuffer_alloc(sizeof(struct atmel_lcdfb_info
), dev
);
1156 dev_err(dev
, "cannot allocate memory\n");
1164 INIT_LIST_HEAD(&info
->modelist
);
1166 if (pdev
->dev
.of_node
) {
1167 ret
= atmel_lcdfb_of_init(sinfo
);
1170 } else if (dev_get_platdata(dev
)) {
1171 struct fb_monspecs
*monspecs
;
1174 pdata
= dev_get_platdata(dev
);
1175 monspecs
= pdata
->default_monspecs
;
1176 sinfo
->pdata
= *pdata
;
1178 for (i
= 0; i
< monspecs
->modedb_len
; i
++)
1179 fb_add_videomode(&monspecs
->modedb
[i
], &info
->modelist
);
1181 sinfo
->config
= atmel_lcdfb_get_config(pdev
);
1183 info
->var
.bits_per_pixel
= pdata
->default_bpp
? pdata
->default_bpp
: 16;
1184 memcpy(&info
->monspecs
, pdata
->default_monspecs
, sizeof(info
->monspecs
));
1186 dev_err(dev
, "cannot get default configuration\n");
1193 strcpy(info
->fix
.id
, sinfo
->pdev
->name
);
1194 info
->flags
= ATMEL_LCDFB_FBINFO_DEFAULT
;
1195 info
->pseudo_palette
= sinfo
->pseudo_palette
;
1196 info
->fbops
= &atmel_lcdfb_ops
;
1198 info
->fix
= atmel_lcdfb_fix
;
1200 /* Enable LCDC Clocks */
1201 sinfo
->bus_clk
= clk_get(dev
, "hclk");
1202 if (IS_ERR(sinfo
->bus_clk
)) {
1203 ret
= PTR_ERR(sinfo
->bus_clk
);
1206 sinfo
->lcdc_clk
= clk_get(dev
, "lcdc_clk");
1207 if (IS_ERR(sinfo
->lcdc_clk
)) {
1208 ret
= PTR_ERR(sinfo
->lcdc_clk
);
1211 atmel_lcdfb_start_clock(sinfo
);
1213 modelist
= list_first_entry(&info
->modelist
,
1214 struct fb_modelist
, list
);
1215 fb_videomode_to_var(&info
->var
, &modelist
->mode
);
1217 atmel_lcdfb_check_var(&info
->var
, info
);
1219 regs
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
1221 dev_err(dev
, "resources unusable\n");
1226 sinfo
->irq_base
= platform_get_irq(pdev
, 0);
1227 if (sinfo
->irq_base
< 0) {
1228 dev_err(dev
, "unable to get irq\n");
1229 ret
= sinfo
->irq_base
;
1233 /* Initialize video memory */
1234 map
= platform_get_resource(pdev
, IORESOURCE_MEM
, 1);
1236 /* use a pre-allocated memory buffer */
1237 info
->fix
.smem_start
= map
->start
;
1238 info
->fix
.smem_len
= resource_size(map
);
1239 if (!request_mem_region(info
->fix
.smem_start
,
1240 info
->fix
.smem_len
, pdev
->name
)) {
1245 info
->screen_base
= ioremap(info
->fix
.smem_start
, info
->fix
.smem_len
);
1246 if (!info
->screen_base
) {
1248 goto release_intmem
;
1252 * Don't clear the framebuffer -- someone may have set
1253 * up a splash image.
1256 /* allocate memory buffer */
1257 ret
= atmel_lcdfb_alloc_video_memory(sinfo
);
1259 dev_err(dev
, "cannot allocate framebuffer: %d\n", ret
);
1264 /* LCDC registers */
1265 info
->fix
.mmio_start
= regs
->start
;
1266 info
->fix
.mmio_len
= resource_size(regs
);
1268 if (!request_mem_region(info
->fix
.mmio_start
,
1269 info
->fix
.mmio_len
, pdev
->name
)) {
1274 sinfo
->mmio
= ioremap(info
->fix
.mmio_start
, info
->fix
.mmio_len
);
1276 dev_err(dev
, "cannot map LCDC registers\n");
1281 /* Initialize PWM for contrast or backlight ("off") */
1282 init_contrast(sinfo
);
1285 ret
= request_irq(sinfo
->irq_base
, atmel_lcdfb_interrupt
, 0, pdev
->name
, info
);
1287 dev_err(dev
, "request_irq failed: %d\n", ret
);
1291 /* Some operations on the LCDC might sleep and
1292 * require a preemptible task context */
1293 INIT_WORK(&sinfo
->task
, atmel_lcdfb_task
);
1295 ret
= atmel_lcdfb_init_fbinfo(sinfo
);
1297 dev_err(dev
, "init fbinfo failed: %d\n", ret
);
1298 goto unregister_irqs
;
1301 dev_set_drvdata(dev
, info
);
1304 * Tell the world that we're ready to go
1306 ret
= register_framebuffer(info
);
1308 dev_err(dev
, "failed to register framebuffer device: %d\n", ret
);
1312 /* Power up the LCDC screen */
1313 atmel_lcdfb_power_control(sinfo
, 1);
1315 dev_info(dev
, "fb%d: Atmel LCDC at 0x%08lx (mapped at %p), irq %d\n",
1316 info
->node
, info
->fix
.mmio_start
, sinfo
->mmio
, sinfo
->irq_base
);
1321 dev_set_drvdata(dev
, NULL
);
1322 fb_dealloc_cmap(&info
->cmap
);
1324 cancel_work_sync(&sinfo
->task
);
1325 free_irq(sinfo
->irq_base
, info
);
1327 exit_backlight(sinfo
);
1328 iounmap(sinfo
->mmio
);
1330 release_mem_region(info
->fix
.mmio_start
, info
->fix
.mmio_len
);
1333 iounmap(info
->screen_base
);
1335 atmel_lcdfb_free_video_memory(sinfo
);
1339 release_mem_region(info
->fix
.smem_start
, info
->fix
.smem_len
);
1341 atmel_lcdfb_stop_clock(sinfo
);
1342 clk_put(sinfo
->lcdc_clk
);
1344 clk_put(sinfo
->bus_clk
);
1346 framebuffer_release(info
);
1348 dev_dbg(dev
, "%s FAILED\n", __func__
);
1352 static int __exit
atmel_lcdfb_remove(struct platform_device
*pdev
)
1354 struct device
*dev
= &pdev
->dev
;
1355 struct fb_info
*info
= dev_get_drvdata(dev
);
1356 struct atmel_lcdfb_info
*sinfo
;
1357 struct atmel_lcdfb_pdata
*pdata
;
1359 if (!info
|| !info
->par
)
1362 pdata
= &sinfo
->pdata
;
1364 cancel_work_sync(&sinfo
->task
);
1365 exit_backlight(sinfo
);
1366 atmel_lcdfb_power_control(sinfo
, 0);
1367 unregister_framebuffer(info
);
1368 atmel_lcdfb_stop_clock(sinfo
);
1369 clk_put(sinfo
->lcdc_clk
);
1370 clk_put(sinfo
->bus_clk
);
1371 fb_dealloc_cmap(&info
->cmap
);
1372 free_irq(sinfo
->irq_base
, info
);
1373 iounmap(sinfo
->mmio
);
1374 release_mem_region(info
->fix
.mmio_start
, info
->fix
.mmio_len
);
1375 if (platform_get_resource(pdev
, IORESOURCE_MEM
, 1)) {
1376 iounmap(info
->screen_base
);
1377 release_mem_region(info
->fix
.smem_start
, info
->fix
.smem_len
);
1379 atmel_lcdfb_free_video_memory(sinfo
);
1382 framebuffer_release(info
);
1389 static int atmel_lcdfb_suspend(struct platform_device
*pdev
, pm_message_t mesg
)
1391 struct fb_info
*info
= platform_get_drvdata(pdev
);
1392 struct atmel_lcdfb_info
*sinfo
= info
->par
;
1395 * We don't want to handle interrupts while the clock is
1396 * stopped. It may take forever.
1398 lcdc_writel(sinfo
, ATMEL_LCDC_IDR
, ~0UL);
1400 sinfo
->saved_lcdcon
= lcdc_readl(sinfo
, ATMEL_LCDC_CONTRAST_CTR
);
1401 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_CTR
, 0);
1402 atmel_lcdfb_power_control(sinfo
, 0);
1403 atmel_lcdfb_stop(sinfo
);
1404 atmel_lcdfb_stop_clock(sinfo
);
1409 static int atmel_lcdfb_resume(struct platform_device
*pdev
)
1411 struct fb_info
*info
= platform_get_drvdata(pdev
);
1412 struct atmel_lcdfb_info
*sinfo
= info
->par
;
1414 atmel_lcdfb_start_clock(sinfo
);
1415 atmel_lcdfb_start(sinfo
);
1416 atmel_lcdfb_power_control(sinfo
, 1);
1417 lcdc_writel(sinfo
, ATMEL_LCDC_CONTRAST_CTR
, sinfo
->saved_lcdcon
);
1419 /* Enable FIFO & DMA errors */
1420 lcdc_writel(sinfo
, ATMEL_LCDC_IER
, ATMEL_LCDC_UFLWI
1421 | ATMEL_LCDC_OWRI
| ATMEL_LCDC_MERI
);
1427 #define atmel_lcdfb_suspend NULL
1428 #define atmel_lcdfb_resume NULL
1431 static struct platform_driver atmel_lcdfb_driver
= {
1432 .remove
= __exit_p(atmel_lcdfb_remove
),
1433 .suspend
= atmel_lcdfb_suspend
,
1434 .resume
= atmel_lcdfb_resume
,
1435 .id_table
= atmel_lcdfb_devtypes
,
1437 .name
= "atmel_lcdfb",
1438 .owner
= THIS_MODULE
,
1439 .of_match_table
= of_match_ptr(atmel_lcdfb_dt_ids
),
1443 module_platform_driver_probe(atmel_lcdfb_driver
, atmel_lcdfb_probe
);
1445 MODULE_DESCRIPTION("AT91/AT32 LCD Controller framebuffer driver");
1446 MODULE_AUTHOR("Nicolas Ferre <nicolas.ferre@atmel.com>");
1447 MODULE_LICENSE("GPL");