2 * Freescale i.MX Frame Buffer device driver
4 * Copyright (C) 2004 Sascha Hauer, Pengutronix
5 * Based on acornfb.c Copyright (C) Russell King.
7 * This file is subject to the terms and conditions of the GNU General Public
8 * License. See the file COPYING in the main directory of this archive for
11 * Please direct your questions and comments on this driver to the following
14 * linux-arm-kernel@lists.arm.linux.org.uk
17 #include <linux/module.h>
18 #include <linux/kernel.h>
19 #include <linux/errno.h>
20 #include <linux/string.h>
21 #include <linux/interrupt.h>
22 #include <linux/slab.h>
25 #include <linux/delay.h>
26 #include <linux/init.h>
27 #include <linux/ioport.h>
28 #include <linux/cpufreq.h>
29 #include <linux/clk.h>
30 #include <linux/platform_device.h>
31 #include <linux/dma-mapping.h>
33 #include <linux/math64.h>
35 #include <mach/imxfb.h>
36 #include <mach/hardware.h>
39 * Complain if VAR is out of range.
43 #if defined(CONFIG_BACKLIGHT_CLASS_DEVICE) || \
44 (defined(CONFIG_BACKLIGHT_CLASS_DEVICE_MODULE) && \
45 defined(CONFIG_FB_IMX_MODULE))
46 #define PWMR_BACKLIGHT_AVAILABLE
49 #define DRIVER_NAME "imx-fb"
53 #define LCDC_SIZE 0x04
54 #define SIZE_XMAX(x) ((((x) >> 4) & 0x3f) << 20)
56 #define YMAX_MASK (cpu_is_mx1() ? 0x1ff : 0x3ff)
57 #define SIZE_YMAX(y) ((y) & YMAX_MASK)
60 #define VPW_VPW(x) ((x) & 0x3ff)
62 #define LCDC_CPOS 0x0C
63 #define CPOS_CC1 (1<<31)
64 #define CPOS_CC0 (1<<30)
65 #define CPOS_OP (1<<28)
66 #define CPOS_CXP(x) (((x) & 3ff) << 16)
68 #ifdef CONFIG_ARCH_MX1
69 #define CPOS_CYP(y) ((y) & 0x1ff)
71 #define CPOS_CYP(y) ((y) & 0x3ff)
74 #define LCDC_LCWHB 0x10
75 #define LCWHB_BK_EN (1<<31)
76 #define LCWHB_CW(w) (((w) & 0x1f) << 24)
77 #define LCWHB_CH(h) (((h) & 0x1f) << 16)
78 #define LCWHB_BD(x) ((x) & 0xff)
80 #define LCDC_LCHCC 0x14
82 #ifdef CONFIG_ARCH_MX1
83 #define LCHCC_CUR_COL_R(r) (((r) & 0x1f) << 11)
84 #define LCHCC_CUR_COL_G(g) (((g) & 0x3f) << 5)
85 #define LCHCC_CUR_COL_B(b) ((b) & 0x1f)
87 #define LCHCC_CUR_COL_R(r) (((r) & 0x3f) << 12)
88 #define LCHCC_CUR_COL_G(g) (((g) & 0x3f) << 6)
89 #define LCHCC_CUR_COL_B(b) ((b) & 0x3f)
95 #define HCR_H_WIDTH(x) (((x) & 0x3f) << 26)
96 #define HCR_H_WAIT_1(x) (((x) & 0xff) << 8)
97 #define HCR_H_WAIT_2(x) ((x) & 0xff)
100 #define VCR_V_WIDTH(x) (((x) & 0x3f) << 26)
101 #define VCR_V_WAIT_1(x) (((x) & 0xff) << 8)
102 #define VCR_V_WAIT_2(x) ((x) & 0xff)
104 #define LCDC_POS 0x24
105 #define POS_POS(x) ((x) & 1f)
107 #define LCDC_LSCR1 0x28
108 /* bit fields in imxfb.h */
110 #define LCDC_PWMR 0x2C
111 /* bit fields in imxfb.h */
113 #define LCDC_DMACR 0x30
114 /* bit fields in imxfb.h */
116 #define LCDC_RMCR 0x34
118 #ifdef CONFIG_ARCH_MX1
119 #define RMCR_LCDC_EN (1<<1)
121 #define RMCR_LCDC_EN 0
124 #define RMCR_SELF_REF (1<<0)
126 #define LCDC_LCDICR 0x38
127 #define LCDICR_INT_SYN (1<<2)
128 #define LCDICR_INT_CON (1)
130 #define LCDC_LCDISR 0x40
131 #define LCDISR_UDR_ERR (1<<3)
132 #define LCDISR_ERR_RES (1<<2)
133 #define LCDISR_EOF (1<<1)
134 #define LCDISR_BOF (1<<0)
136 /* Used fb-mode. Can be set on kernel command line, therefore file-static. */
137 static const char *fb_mode
;
141 * These are the bitfields for each
142 * display depth that we support.
145 struct fb_bitfield red
;
146 struct fb_bitfield green
;
147 struct fb_bitfield blue
;
148 struct fb_bitfield transp
;
152 struct platform_device
*pdev
;
157 * These are the addresses we mapped
158 * the framebuffer memory region to.
165 dma_addr_t screen_dma
;
175 u_int cmap_inverse
:1,
179 struct imx_fb_videomode
*mode
;
181 #ifdef PWMR_BACKLIGHT_AVAILABLE
182 struct backlight_device
*bl
;
185 void (*lcd_power
)(int);
186 void (*backlight_power
)(int);
189 #define IMX_NAME "IMX"
192 * Minimum X and Y resolutions
197 /* Actually this really is 18bit support, the lowest 2 bits of each colour
198 * are unused in hardware. We claim to have 24bit support to make software
199 * like X work, which does not support 18bit.
201 static struct imxfb_rgb def_rgb_18
= {
202 .red
= {.offset
= 16, .length
= 8,},
203 .green
= {.offset
= 8, .length
= 8,},
204 .blue
= {.offset
= 0, .length
= 8,},
205 .transp
= {.offset
= 0, .length
= 0,},
208 static struct imxfb_rgb def_rgb_16_tft
= {
209 .red
= {.offset
= 11, .length
= 5,},
210 .green
= {.offset
= 5, .length
= 6,},
211 .blue
= {.offset
= 0, .length
= 5,},
212 .transp
= {.offset
= 0, .length
= 0,},
215 static struct imxfb_rgb def_rgb_16_stn
= {
216 .red
= {.offset
= 8, .length
= 4,},
217 .green
= {.offset
= 4, .length
= 4,},
218 .blue
= {.offset
= 0, .length
= 4,},
219 .transp
= {.offset
= 0, .length
= 0,},
222 static struct imxfb_rgb def_rgb_8
= {
223 .red
= {.offset
= 0, .length
= 8,},
224 .green
= {.offset
= 0, .length
= 8,},
225 .blue
= {.offset
= 0, .length
= 8,},
226 .transp
= {.offset
= 0, .length
= 0,},
229 static int imxfb_activate_var(struct fb_var_screeninfo
*var
,
230 struct fb_info
*info
);
232 static inline u_int
chan_to_field(u_int chan
, struct fb_bitfield
*bf
)
235 chan
>>= 16 - bf
->length
;
236 return chan
<< bf
->offset
;
239 static int imxfb_setpalettereg(u_int regno
, u_int red
, u_int green
, u_int blue
,
240 u_int trans
, struct fb_info
*info
)
242 struct imxfb_info
*fbi
= info
->par
;
245 #define CNVT_TOHW(val,width) ((((val)<<(width))+0x7FFF-(val))>>16)
246 if (regno
< fbi
->palette_size
) {
247 val
= (CNVT_TOHW(red
, 4) << 8) |
248 (CNVT_TOHW(green
,4) << 4) |
251 writel(val
, fbi
->regs
+ 0x800 + (regno
<< 2));
257 static int imxfb_setcolreg(u_int regno
, u_int red
, u_int green
, u_int blue
,
258 u_int trans
, struct fb_info
*info
)
260 struct imxfb_info
*fbi
= info
->par
;
265 * If inverse mode was selected, invert all the colours
266 * rather than the register number. The register number
267 * is what you poke into the framebuffer to produce the
268 * colour you requested.
270 if (fbi
->cmap_inverse
) {
272 green
= 0xffff - green
;
273 blue
= 0xffff - blue
;
277 * If greyscale is true, then we convert the RGB value
278 * to greyscale no mater what visual we are using.
280 if (info
->var
.grayscale
)
281 red
= green
= blue
= (19595 * red
+ 38470 * green
+
284 switch (info
->fix
.visual
) {
285 case FB_VISUAL_TRUECOLOR
:
287 * 12 or 16-bit True Colour. We encode the RGB value
288 * according to the RGB bitfield information.
291 u32
*pal
= info
->pseudo_palette
;
293 val
= chan_to_field(red
, &info
->var
.red
);
294 val
|= chan_to_field(green
, &info
->var
.green
);
295 val
|= chan_to_field(blue
, &info
->var
.blue
);
302 case FB_VISUAL_STATIC_PSEUDOCOLOR
:
303 case FB_VISUAL_PSEUDOCOLOR
:
304 ret
= imxfb_setpalettereg(regno
, red
, green
, blue
, trans
, info
);
311 static const struct imx_fb_videomode
*imxfb_find_mode(struct imxfb_info
*fbi
)
313 struct imx_fb_videomode
*m
;
316 for (i
= 0, m
= &fbi
->mode
[0]; i
< fbi
->num_modes
; i
++, m
++) {
317 if (!strcmp(m
->mode
.name
, fb_mode
))
325 * Round up in the following order: bits_per_pixel, xres,
326 * yres, xres_virtual, yres_virtual, xoffset, yoffset, grayscale,
327 * bitfields, horizontal timing, vertical timing.
329 static int imxfb_check_var(struct fb_var_screeninfo
*var
, struct fb_info
*info
)
331 struct imxfb_info
*fbi
= info
->par
;
332 struct imxfb_rgb
*rgb
;
333 const struct imx_fb_videomode
*imxfb_mode
;
334 unsigned long lcd_clk
;
335 unsigned long long tmp
;
338 if (var
->xres
< MIN_XRES
)
339 var
->xres
= MIN_XRES
;
340 if (var
->yres
< MIN_YRES
)
341 var
->yres
= MIN_YRES
;
343 imxfb_mode
= imxfb_find_mode(fbi
);
347 var
->xres
= imxfb_mode
->mode
.xres
;
348 var
->yres
= imxfb_mode
->mode
.yres
;
349 var
->bits_per_pixel
= imxfb_mode
->bpp
;
350 var
->pixclock
= imxfb_mode
->mode
.pixclock
;
351 var
->hsync_len
= imxfb_mode
->mode
.hsync_len
;
352 var
->left_margin
= imxfb_mode
->mode
.left_margin
;
353 var
->right_margin
= imxfb_mode
->mode
.right_margin
;
354 var
->vsync_len
= imxfb_mode
->mode
.vsync_len
;
355 var
->upper_margin
= imxfb_mode
->mode
.upper_margin
;
356 var
->lower_margin
= imxfb_mode
->mode
.lower_margin
;
357 var
->sync
= imxfb_mode
->mode
.sync
;
358 var
->xres_virtual
= max(var
->xres_virtual
, var
->xres
);
359 var
->yres_virtual
= max(var
->yres_virtual
, var
->yres
);
361 pr_debug("var->bits_per_pixel=%d\n", var
->bits_per_pixel
);
363 lcd_clk
= clk_get_rate(fbi
->clk
);
365 tmp
= var
->pixclock
* (unsigned long long)lcd_clk
;
367 do_div(tmp
, 1000000);
369 if (do_div(tmp
, 1000000) > 500000)
372 pcr
= (unsigned int)tmp
;
376 printk(KERN_WARNING
"Must limit pixel clock to %luHz\n",
380 switch (var
->bits_per_pixel
) {
392 if (imxfb_mode
->pcr
& PCR_TFT
)
393 rgb
= &def_rgb_16_tft
;
395 rgb
= &def_rgb_16_stn
;
403 /* add sync polarities */
404 pcr
|= imxfb_mode
->pcr
& ~(0x3f | (7 << 25));
409 * Copy the RGB parameters for this display
410 * from the machine specific parameters.
413 var
->green
= rgb
->green
;
414 var
->blue
= rgb
->blue
;
415 var
->transp
= rgb
->transp
;
417 pr_debug("RGBT length = %d:%d:%d:%d\n",
418 var
->red
.length
, var
->green
.length
, var
->blue
.length
,
421 pr_debug("RGBT offset = %d:%d:%d:%d\n",
422 var
->red
.offset
, var
->green
.offset
, var
->blue
.offset
,
430 * Set the user defined part of the display for the specified console
432 static int imxfb_set_par(struct fb_info
*info
)
434 struct imxfb_info
*fbi
= info
->par
;
435 struct fb_var_screeninfo
*var
= &info
->var
;
437 if (var
->bits_per_pixel
== 16 || var
->bits_per_pixel
== 32)
438 info
->fix
.visual
= FB_VISUAL_TRUECOLOR
;
439 else if (!fbi
->cmap_static
)
440 info
->fix
.visual
= FB_VISUAL_PSEUDOCOLOR
;
443 * Some people have weird ideas about wanting static
444 * pseudocolor maps. I suspect their user space
445 * applications are broken.
447 info
->fix
.visual
= FB_VISUAL_STATIC_PSEUDOCOLOR
;
450 info
->fix
.line_length
= var
->xres_virtual
* var
->bits_per_pixel
/ 8;
451 fbi
->palette_size
= var
->bits_per_pixel
== 8 ? 256 : 16;
453 imxfb_activate_var(var
, info
);
458 #ifdef PWMR_BACKLIGHT_AVAILABLE
459 static int imxfb_bl_get_brightness(struct backlight_device
*bl
)
461 struct imxfb_info
*fbi
= bl_get_data(bl
);
463 return readl(fbi
->regs
+ LCDC_PWMR
) & 0xFF;
466 static int imxfb_bl_update_status(struct backlight_device
*bl
)
468 struct imxfb_info
*fbi
= bl_get_data(bl
);
469 int brightness
= bl
->props
.brightness
;
471 if (bl
->props
.power
!= FB_BLANK_UNBLANK
)
473 if (bl
->props
.fb_blank
!= FB_BLANK_UNBLANK
)
476 fbi
->pwmr
= (fbi
->pwmr
& ~0xFF) | brightness
;
478 if (bl
->props
.fb_blank
!= FB_BLANK_UNBLANK
)
479 clk_enable(fbi
->clk
);
480 writel(fbi
->pwmr
, fbi
->regs
+ LCDC_PWMR
);
481 if (bl
->props
.fb_blank
!= FB_BLANK_UNBLANK
)
482 clk_disable(fbi
->clk
);
487 static const struct backlight_ops imxfb_lcdc_bl_ops
= {
488 .update_status
= imxfb_bl_update_status
,
489 .get_brightness
= imxfb_bl_get_brightness
,
492 static void imxfb_init_backlight(struct imxfb_info
*fbi
)
494 struct backlight_properties props
;
495 struct backlight_device
*bl
;
500 memset(&props
, 0, sizeof(struct backlight_properties
));
501 props
.max_brightness
= 0xff;
502 props
.type
= BACKLIGHT_RAW
;
503 writel(fbi
->pwmr
, fbi
->regs
+ LCDC_PWMR
);
505 bl
= backlight_device_register("imxfb-bl", &fbi
->pdev
->dev
, fbi
,
506 &imxfb_lcdc_bl_ops
, &props
);
508 dev_err(&fbi
->pdev
->dev
, "error %ld on backlight register\n",
514 bl
->props
.power
= FB_BLANK_UNBLANK
;
515 bl
->props
.fb_blank
= FB_BLANK_UNBLANK
;
516 bl
->props
.brightness
= imxfb_bl_get_brightness(bl
);
519 static void imxfb_exit_backlight(struct imxfb_info
*fbi
)
522 backlight_device_unregister(fbi
->bl
);
526 static void imxfb_enable_controller(struct imxfb_info
*fbi
)
528 pr_debug("Enabling LCD controller\n");
530 writel(fbi
->screen_dma
, fbi
->regs
+ LCDC_SSA
);
532 /* panning offset 0 (0 pixel offset) */
533 writel(0x00000000, fbi
->regs
+ LCDC_POS
);
535 /* disable hardware cursor */
536 writel(readl(fbi
->regs
+ LCDC_CPOS
) & ~(CPOS_CC0
| CPOS_CC1
),
537 fbi
->regs
+ LCDC_CPOS
);
539 writel(RMCR_LCDC_EN
, fbi
->regs
+ LCDC_RMCR
);
541 clk_enable(fbi
->clk
);
543 if (fbi
->backlight_power
)
544 fbi
->backlight_power(1);
549 static void imxfb_disable_controller(struct imxfb_info
*fbi
)
551 pr_debug("Disabling LCD controller\n");
553 if (fbi
->backlight_power
)
554 fbi
->backlight_power(0);
558 clk_disable(fbi
->clk
);
560 writel(0, fbi
->regs
+ LCDC_RMCR
);
563 static int imxfb_blank(int blank
, struct fb_info
*info
)
565 struct imxfb_info
*fbi
= info
->par
;
567 pr_debug("imxfb_blank: blank=%d\n", blank
);
570 case FB_BLANK_POWERDOWN
:
571 case FB_BLANK_VSYNC_SUSPEND
:
572 case FB_BLANK_HSYNC_SUSPEND
:
573 case FB_BLANK_NORMAL
:
574 imxfb_disable_controller(fbi
);
577 case FB_BLANK_UNBLANK
:
578 imxfb_enable_controller(fbi
);
584 static struct fb_ops imxfb_ops
= {
585 .owner
= THIS_MODULE
,
586 .fb_check_var
= imxfb_check_var
,
587 .fb_set_par
= imxfb_set_par
,
588 .fb_setcolreg
= imxfb_setcolreg
,
589 .fb_fillrect
= cfb_fillrect
,
590 .fb_copyarea
= cfb_copyarea
,
591 .fb_imageblit
= cfb_imageblit
,
592 .fb_blank
= imxfb_blank
,
596 * imxfb_activate_var():
597 * Configures LCD Controller based on entries in var parameter. Settings are
598 * only written to the controller if changes were made.
600 static int imxfb_activate_var(struct fb_var_screeninfo
*var
, struct fb_info
*info
)
602 struct imxfb_info
*fbi
= info
->par
;
604 pr_debug("var: xres=%d hslen=%d lm=%d rm=%d\n",
605 var
->xres
, var
->hsync_len
,
606 var
->left_margin
, var
->right_margin
);
607 pr_debug("var: yres=%d vslen=%d um=%d bm=%d\n",
608 var
->yres
, var
->vsync_len
,
609 var
->upper_margin
, var
->lower_margin
);
612 if (var
->xres
< 16 || var
->xres
> 1024)
613 printk(KERN_ERR
"%s: invalid xres %d\n",
614 info
->fix
.id
, var
->xres
);
615 if (var
->hsync_len
< 1 || var
->hsync_len
> 64)
616 printk(KERN_ERR
"%s: invalid hsync_len %d\n",
617 info
->fix
.id
, var
->hsync_len
);
618 if (var
->left_margin
> 255)
619 printk(KERN_ERR
"%s: invalid left_margin %d\n",
620 info
->fix
.id
, var
->left_margin
);
621 if (var
->right_margin
> 255)
622 printk(KERN_ERR
"%s: invalid right_margin %d\n",
623 info
->fix
.id
, var
->right_margin
);
624 if (var
->yres
< 1 || var
->yres
> YMAX_MASK
)
625 printk(KERN_ERR
"%s: invalid yres %d\n",
626 info
->fix
.id
, var
->yres
);
627 if (var
->vsync_len
> 100)
628 printk(KERN_ERR
"%s: invalid vsync_len %d\n",
629 info
->fix
.id
, var
->vsync_len
);
630 if (var
->upper_margin
> 63)
631 printk(KERN_ERR
"%s: invalid upper_margin %d\n",
632 info
->fix
.id
, var
->upper_margin
);
633 if (var
->lower_margin
> 255)
634 printk(KERN_ERR
"%s: invalid lower_margin %d\n",
635 info
->fix
.id
, var
->lower_margin
);
638 /* physical screen start address */
639 writel(VPW_VPW(var
->xres
* var
->bits_per_pixel
/ 8 / 4),
640 fbi
->regs
+ LCDC_VPW
);
642 writel(HCR_H_WIDTH(var
->hsync_len
- 1) |
643 HCR_H_WAIT_1(var
->right_margin
- 1) |
644 HCR_H_WAIT_2(var
->left_margin
- 3),
645 fbi
->regs
+ LCDC_HCR
);
647 writel(VCR_V_WIDTH(var
->vsync_len
) |
648 VCR_V_WAIT_1(var
->lower_margin
) |
649 VCR_V_WAIT_2(var
->upper_margin
),
650 fbi
->regs
+ LCDC_VCR
);
652 writel(SIZE_XMAX(var
->xres
) | SIZE_YMAX(var
->yres
),
653 fbi
->regs
+ LCDC_SIZE
);
655 writel(fbi
->pcr
, fbi
->regs
+ LCDC_PCR
);
656 #ifndef PWMR_BACKLIGHT_AVAILABLE
657 writel(fbi
->pwmr
, fbi
->regs
+ LCDC_PWMR
);
659 writel(fbi
->lscr1
, fbi
->regs
+ LCDC_LSCR1
);
660 writel(fbi
->dmacr
, fbi
->regs
+ LCDC_DMACR
);
667 * Power management hooks. Note that we won't be called from IRQ context,
668 * unlike the blank functions above, so we may sleep.
670 static int imxfb_suspend(struct platform_device
*dev
, pm_message_t state
)
672 struct fb_info
*info
= platform_get_drvdata(dev
);
673 struct imxfb_info
*fbi
= info
->par
;
675 pr_debug("%s\n", __func__
);
677 imxfb_disable_controller(fbi
);
681 static int imxfb_resume(struct platform_device
*dev
)
683 struct fb_info
*info
= platform_get_drvdata(dev
);
684 struct imxfb_info
*fbi
= info
->par
;
686 pr_debug("%s\n", __func__
);
688 imxfb_enable_controller(fbi
);
692 #define imxfb_suspend NULL
693 #define imxfb_resume NULL
696 static int __init
imxfb_init_fbinfo(struct platform_device
*pdev
)
698 struct imx_fb_platform_data
*pdata
= pdev
->dev
.platform_data
;
699 struct fb_info
*info
= dev_get_drvdata(&pdev
->dev
);
700 struct imxfb_info
*fbi
= info
->par
;
701 struct imx_fb_videomode
*m
;
704 pr_debug("%s\n",__func__
);
706 info
->pseudo_palette
= kmalloc(sizeof(u32
) * 16, GFP_KERNEL
);
707 if (!info
->pseudo_palette
)
710 memset(fbi
, 0, sizeof(struct imxfb_info
));
712 strlcpy(info
->fix
.id
, IMX_NAME
, sizeof(info
->fix
.id
));
714 info
->fix
.type
= FB_TYPE_PACKED_PIXELS
;
715 info
->fix
.type_aux
= 0;
716 info
->fix
.xpanstep
= 0;
717 info
->fix
.ypanstep
= 0;
718 info
->fix
.ywrapstep
= 0;
719 info
->fix
.accel
= FB_ACCEL_NONE
;
721 info
->var
.nonstd
= 0;
722 info
->var
.activate
= FB_ACTIVATE_NOW
;
723 info
->var
.height
= -1;
724 info
->var
.width
= -1;
725 info
->var
.accel_flags
= 0;
726 info
->var
.vmode
= FB_VMODE_NONINTERLACED
;
728 info
->fbops
= &imxfb_ops
;
729 info
->flags
= FBINFO_FLAG_DEFAULT
|
731 info
->var
.grayscale
= pdata
->cmap_greyscale
;
732 fbi
->cmap_inverse
= pdata
->cmap_inverse
;
733 fbi
->cmap_static
= pdata
->cmap_static
;
734 fbi
->lscr1
= pdata
->lscr1
;
735 fbi
->dmacr
= pdata
->dmacr
;
736 fbi
->pwmr
= pdata
->pwmr
;
737 fbi
->lcd_power
= pdata
->lcd_power
;
738 fbi
->backlight_power
= pdata
->backlight_power
;
740 for (i
= 0, m
= &pdata
->mode
[0]; i
< pdata
->num_modes
; i
++, m
++)
741 info
->fix
.smem_len
= max_t(size_t, info
->fix
.smem_len
,
742 m
->mode
.xres
* m
->mode
.yres
* m
->bpp
/ 8);
747 static int __init
imxfb_probe(struct platform_device
*pdev
)
749 struct imxfb_info
*fbi
;
750 struct fb_info
*info
;
751 struct imx_fb_platform_data
*pdata
;
752 struct resource
*res
;
755 dev_info(&pdev
->dev
, "i.MX Framebuffer driver\n");
757 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
761 pdata
= pdev
->dev
.platform_data
;
763 dev_err(&pdev
->dev
,"No platform_data available\n");
767 info
= framebuffer_alloc(sizeof(struct imxfb_info
), &pdev
->dev
);
774 fb_mode
= pdata
->mode
[0].mode
.name
;
776 platform_set_drvdata(pdev
, info
);
778 ret
= imxfb_init_fbinfo(pdev
);
782 res
= request_mem_region(res
->start
, resource_size(res
),
789 fbi
->clk
= clk_get(&pdev
->dev
, NULL
);
790 if (IS_ERR(fbi
->clk
)) {
791 ret
= PTR_ERR(fbi
->clk
);
792 dev_err(&pdev
->dev
, "unable to get clock: %d\n", ret
);
793 goto failed_getclock
;
796 fbi
->regs
= ioremap(res
->start
, resource_size(res
));
797 if (fbi
->regs
== NULL
) {
798 dev_err(&pdev
->dev
, "Cannot map frame buffer registers\n");
802 if (!pdata
->fixed_screen_cpu
) {
803 fbi
->map_size
= PAGE_ALIGN(info
->fix
.smem_len
);
804 fbi
->map_cpu
= dma_alloc_writecombine(&pdev
->dev
,
805 fbi
->map_size
, &fbi
->map_dma
, GFP_KERNEL
);
808 dev_err(&pdev
->dev
, "Failed to allocate video RAM: %d\n", ret
);
813 info
->screen_base
= fbi
->map_cpu
;
814 fbi
->screen_cpu
= fbi
->map_cpu
;
815 fbi
->screen_dma
= fbi
->map_dma
;
816 info
->fix
.smem_start
= fbi
->screen_dma
;
818 /* Fixed framebuffer mapping enables location of the screen in eSRAM */
819 fbi
->map_cpu
= pdata
->fixed_screen_cpu
;
820 fbi
->map_dma
= pdata
->fixed_screen_dma
;
821 info
->screen_base
= fbi
->map_cpu
;
822 fbi
->screen_cpu
= fbi
->map_cpu
;
823 fbi
->screen_dma
= fbi
->map_dma
;
824 info
->fix
.smem_start
= fbi
->screen_dma
;
828 ret
= pdata
->init(fbi
->pdev
);
830 goto failed_platform_init
;
833 fbi
->mode
= pdata
->mode
;
834 fbi
->num_modes
= pdata
->num_modes
;
836 INIT_LIST_HEAD(&info
->modelist
);
837 for (i
= 0; i
< pdata
->num_modes
; i
++)
838 fb_add_videomode(&pdata
->mode
[i
].mode
, &info
->modelist
);
841 * This makes sure that our colour bitfield
842 * descriptors are correctly initialised.
844 imxfb_check_var(&info
->var
, info
);
846 ret
= fb_alloc_cmap(&info
->cmap
, 1 << info
->var
.bits_per_pixel
, 0);
851 ret
= register_framebuffer(info
);
853 dev_err(&pdev
->dev
, "failed to register framebuffer\n");
854 goto failed_register
;
857 imxfb_enable_controller(fbi
);
859 #ifdef PWMR_BACKLIGHT_AVAILABLE
860 imxfb_init_backlight(fbi
);
866 fb_dealloc_cmap(&info
->cmap
);
869 pdata
->exit(fbi
->pdev
);
870 failed_platform_init
:
871 if (!pdata
->fixed_screen_cpu
)
872 dma_free_writecombine(&pdev
->dev
,fbi
->map_size
,fbi
->map_cpu
,
879 release_mem_region(res
->start
, resource_size(res
));
881 kfree(info
->pseudo_palette
);
883 platform_set_drvdata(pdev
, NULL
);
884 framebuffer_release(info
);
888 static int __devexit
imxfb_remove(struct platform_device
*pdev
)
890 struct imx_fb_platform_data
*pdata
;
891 struct fb_info
*info
= platform_get_drvdata(pdev
);
892 struct imxfb_info
*fbi
= info
->par
;
893 struct resource
*res
;
895 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
897 imxfb_disable_controller(fbi
);
899 #ifdef PWMR_BACKLIGHT_AVAILABLE
900 imxfb_exit_backlight(fbi
);
902 unregister_framebuffer(info
);
904 pdata
= pdev
->dev
.platform_data
;
906 pdata
->exit(fbi
->pdev
);
908 fb_dealloc_cmap(&info
->cmap
);
909 kfree(info
->pseudo_palette
);
910 framebuffer_release(info
);
913 release_mem_region(res
->start
, resource_size(res
));
914 clk_disable(fbi
->clk
);
917 platform_set_drvdata(pdev
, NULL
);
922 void imxfb_shutdown(struct platform_device
* dev
)
924 struct fb_info
*info
= platform_get_drvdata(dev
);
925 struct imxfb_info
*fbi
= info
->par
;
926 imxfb_disable_controller(fbi
);
929 static struct platform_driver imxfb_driver
= {
930 .suspend
= imxfb_suspend
,
931 .resume
= imxfb_resume
,
932 .remove
= __devexit_p(imxfb_remove
),
933 .shutdown
= imxfb_shutdown
,
939 static int imxfb_setup(void)
942 char *opt
, *options
= NULL
;
944 if (fb_get_options("imxfb", &options
))
947 if (!options
|| !*options
)
950 while ((opt
= strsep(&options
, ",")) != NULL
) {
960 int __init
imxfb_init(void)
962 int ret
= imxfb_setup();
967 return platform_driver_probe(&imxfb_driver
, imxfb_probe
);
970 static void __exit
imxfb_cleanup(void)
972 platform_driver_unregister(&imxfb_driver
);
975 module_init(imxfb_init
);
976 module_exit(imxfb_cleanup
);
978 MODULE_DESCRIPTION("Freescale i.MX framebuffer driver");
979 MODULE_AUTHOR("Sascha Hauer, Pengutronix");
980 MODULE_LICENSE("GPL");