rk fb:move screen related power control from fb driver to lcdc driver
[firefly-linux-kernel-4.4.55.git] / drivers / video / rockchip / lcdc / rk3066b_lcdc.c
1 /*
2  * drivers/video/rockchip/chips/rk3066b_lcdc.c
3  *
4  * Copyright (C) 2012 ROCKCHIP, Inc.
5  *Author:yzq<yzq@rock-chips.com>
6  *      yxj<yxj@rock-chips.com>
7  *This software is licensed under the terms of the GNU General Public
8  * License version 2, as published by the Free Software Foundation, and
9  * may be copied, distributed, and modified under those terms.
10  *
11  * This program is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14  * GNU General Public License for more details.
15  *
16  */
17
18 #include <linux/module.h>
19 #include <linux/kernel.h>
20 #include <linux/errno.h>
21 #include <linux/string.h>
22 #include <linux/mm.h>
23 #include <linux/slab.h>
24 #include <linux/device.h>
25 #include <linux/delay.h>
26 #include <linux/init.h>
27 #include <linux/interrupt.h>
28 #include <linux/platform_device.h>
29 #include <linux/clk.h>
30 #include <linux/earlysuspend.h>
31 #include <asm/div64.h>
32 #include <asm/uaccess.h>
33 #include <mach/iomux.h>
34
35 #include "rk3066b_lcdc.h"
36
37
38
39
40
41
42 static int dbg_thresd = 0;
43 module_param(dbg_thresd, int, S_IRUGO|S_IWUSR);
44 #define DBG(level,x...) do { if(unlikely(dbg_thresd >= level)) printk(KERN_INFO x); } while (0)
45
46
47 static int init_rk3066b_lcdc(struct rk_lcdc_device_driver *dev_drv)
48 {
49         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
50         if(lcdc_dev->id == 0) //lcdc0
51         {
52                 lcdc_dev->pd = clk_get(NULL,"pd_lcdc0");
53                 lcdc_dev->hclk = clk_get(NULL,"hclk_lcdc0"); 
54                 lcdc_dev->aclk = clk_get(NULL,"aclk_lcdc0");
55                 lcdc_dev->dclk = clk_get(NULL,"dclk_lcdc0");
56         }
57         else if(lcdc_dev->id == 1)
58         {
59                 lcdc_dev->pd = clk_get(NULL,"pd_lcdc1");
60                 lcdc_dev->hclk = clk_get(NULL,"hclk_lcdc1");  
61                 lcdc_dev->aclk = clk_get(NULL,"aclk_lcdc1");
62                 lcdc_dev->dclk = clk_get(NULL,"dclk_lcdc1");
63         }
64         else
65         {
66                 printk(KERN_ERR "invalid lcdc device!\n");
67                 return -EINVAL;
68         }
69         if (IS_ERR(lcdc_dev->pd) || (IS_ERR(lcdc_dev->aclk)) ||(IS_ERR(lcdc_dev->dclk)) || (IS_ERR(lcdc_dev->hclk)))
70         {
71                 printk(KERN_ERR "failed to get lcdc%d clk source\n",lcdc_dev->id);
72         }
73         clk_enable(lcdc_dev->pd);
74         clk_enable(lcdc_dev->hclk);  //enable aclk and hclk for register config
75         clk_enable(lcdc_dev->aclk);  
76         lcdc_dev->clk_on = 1;
77
78         if(lcdc_dev->id == 1) //iomux for lcdc1
79         {
80                 iomux_set(LCDC1_DCLK);
81                 iomux_set(LCDC1_DEN);
82                 iomux_set(LCDC1_HSYNC);
83                 iomux_set(LCDC1_VSYNC);
84                 iomux_set(LCDC1_D0);
85                 iomux_set(LCDC1_D1);
86                 iomux_set(LCDC1_D2);
87                 iomux_set(LCDC1_D3);
88                 iomux_set(LCDC1_D4);
89                 iomux_set(LCDC1_D5);
90                 iomux_set(LCDC1_D6);
91                 iomux_set(LCDC1_D7);
92                 iomux_set(LCDC1_D8);
93                 iomux_set(LCDC1_D9);
94                 iomux_set(LCDC1_D10);
95                 iomux_set(LCDC1_D11);
96                 iomux_set(LCDC1_D12);
97                 iomux_set(LCDC1_D13);
98                 iomux_set(LCDC1_D14);
99                 iomux_set(LCDC1_D15);
100                 iomux_set(LCDC1_D16);
101                 iomux_set(LCDC1_D17);
102                 iomux_set(LCDC1_D18);
103                 iomux_set(LCDC1_D19);
104                 iomux_set(LCDC1_D20);
105                 iomux_set(LCDC1_D21);
106                 iomux_set(LCDC1_D22);
107                 iomux_set(LCDC1_D23);
108                 
109         }
110         LcdMskReg(lcdc_dev,SYS_CFG, m_LCDC_AXICLK_AUTO_ENABLE | m_W0_AXI_OUTSTANDING2 |
111                 m_W1_AXI_OUTSTANDING2,v_LCDC_AXICLK_AUTO_ENABLE(1) | v_W0_AXI_OUTSTANDING2(1) |
112                 v_W1_AXI_OUTSTANDING2(1));//eanble axi-clk auto gating for low power
113          LcdWrReg(lcdc_dev,AXI_MS_ID,v_HWC_CHANNEL_ID(5) | v_WIN2_CHANNEL_ID(4) |
114                 v_WIN1_YRGB_CHANNEL_ID(3) | v_WIN0_CBR_CHANNEL_ID(2) | 
115                 v_WIN0_YRGB_CHANNEL_ID(1));
116         LcdMskReg(lcdc_dev, INT_STATUS,m_HOR_STARTMASK| m_FRM_STARTMASK | 
117               m_SCANNING_MASK, v_HOR_STARTMASK(1) | v_FRM_STARTMASK(1) | 
118               v_SCANNING_MASK(1));  //mask all interrupt in init
119         LcdMskReg(lcdc_dev,FIFO_WATER_MARK,m_WIN1_FIFO_FULL_LEVEL,v_WIN1_FIFO_FULL_LEVEL(0x1e0));
120         //LCDC_REG_CFG_DONE();  // write any value to  REG_CFG_DONE let config become effective
121         return 0;
122 }
123
124 static int rk3066b_lcdc_deinit(struct rk3066b_lcdc_device *lcdc_dev)
125 {
126         spin_lock(&lcdc_dev->reg_lock);
127         if(likely(lcdc_dev->clk_on))
128         {
129                 lcdc_dev->clk_on = 0;
130                 LcdMskReg(lcdc_dev, INT_STATUS, m_FRM_STARTCLEAR, v_FRM_STARTCLEAR(1));
131                 LcdMskReg(lcdc_dev, INT_STATUS,m_HOR_STARTMASK| m_FRM_STARTMASK | 
132                           m_SCANNING_MASK, v_HOR_STARTMASK(1) | v_FRM_STARTMASK(1) | 
133                           v_SCANNING_MASK(1));  //mask all interrupt in init
134                 LcdSetBit(lcdc_dev,SYS_CFG,m_LCDC_STANDBY);
135                 LCDC_REG_CFG_DONE();
136                 spin_unlock(&lcdc_dev->reg_lock);
137         }
138         else   //clk already disabled 
139         {
140                 spin_unlock(&lcdc_dev->reg_lock);
141                 return 0;
142         }
143         mdelay(1);
144         
145         return 0;
146 }
147
148 static int rk3066b_load_screen(struct rk_lcdc_device_driver *dev_drv, bool initscreen)
149 {
150         int ret = -EINVAL;
151         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
152         rk_screen *screen = dev_drv->cur_screen;
153         u64 ft;
154         int fps;
155         u16 face;
156         u16 mcu_total, mcu_rwstart, mcu_csstart, mcu_rwend, mcu_csend;
157         u16 right_margin = screen->right_margin;
158         u16 lower_margin = screen->lower_margin;
159         u16 x_res = screen->x_res, y_res = screen->y_res;
160
161         // set the rgb or mcu
162         spin_lock(&lcdc_dev->reg_lock);
163         if(likely(lcdc_dev->clk_on))
164         {
165                 if(screen->type==SCREEN_MCU)
166                 {
167                         LcdMskReg(lcdc_dev, MCU_CTRL, m_MCU_OUTPUT_SELECT,v_MCU_OUTPUT_SELECT(1));
168                         // set out format and mcu timing
169                         mcu_total  = (screen->mcu_wrperiod*150*1000)/1000000;
170                         if(mcu_total>31)    
171                                 mcu_total = 31;
172                         if(mcu_total<3)    
173                                 mcu_total = 3;
174                         mcu_rwstart = (mcu_total+1)/4 - 1;
175                         mcu_rwend = ((mcu_total+1)*3)/4 - 1;
176                         mcu_csstart = (mcu_rwstart>2) ? (mcu_rwstart-3) : (0);
177                         mcu_csend = (mcu_rwend>15) ? (mcu_rwend-1) : (mcu_rwend);
178
179                         //DBG(1,">> mcu_total=%d, mcu_rwstart=%d, mcu_csstart=%d, mcu_rwend=%d, mcu_csend=%d \n",
180                         //      mcu_total, mcu_rwstart, mcu_csstart, mcu_rwend, mcu_csend);
181
182                         // set horizontal & vertical out timing
183                 
184                         right_margin = x_res/6; 
185                         screen->pixclock = 150000000; //mcu fix to 150 MHz
186                         LcdMskReg(lcdc_dev, MCU_CTRL,m_MCU_CS_ST | m_MCU_CS_END| m_MCU_RW_ST | m_MCU_RW_END |
187                                 m_MCU_WRITE_PERIOD | m_MCU_HOLDMODE_SELECT | m_MCU_HOLDMODE_FRAME_ST,
188                                 v_MCU_CS_ST(mcu_csstart) | v_MCU_CS_END(mcu_csend) | v_MCU_RW_ST(mcu_rwstart) |
189                                 v_MCU_RW_END(mcu_rwend) |  v_MCU_WRITE_PERIOD(mcu_total) |
190                                 v_MCU_HOLDMODE_SELECT((SCREEN_MCU==screen->type)?(1):(0)) | v_MCU_HOLDMODE_FRAME_ST(0));
191         
192                 }
193
194                 switch (screen->face)
195                 {
196                         case OUT_P565:
197                                 face = OUT_P565;
198                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(1) | v_DITHER_DOWN_MODE(0));
199                                 break;
200                         case OUT_P666:
201                                 face = OUT_P666;
202                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(1) | v_DITHER_DOWN_MODE(1));
203                                 break;
204                         case OUT_D888_P565:
205                                 face = OUT_P888;
206                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(1) | v_DITHER_DOWN_MODE(0));
207                                 break;
208                         case OUT_D888_P666:
209                                 face = OUT_P888;
210                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(1) | v_DITHER_DOWN_MODE(1));
211                                 break;
212                         case OUT_P888:
213                                 face = OUT_P888;
214                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_UP_EN, v_DITHER_UP_EN(1));
215                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(0) | v_DITHER_DOWN_MODE(0));
216                                 break;
217                         default:
218                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_UP_EN, v_DITHER_UP_EN(0));
219                                 LcdMskReg(lcdc_dev, DSP_CTRL0, m_DITHER_DOWN_EN | m_DITHER_DOWN_MODE, v_DITHER_DOWN_EN(0) | v_DITHER_DOWN_MODE(0));
220                                 face = screen->face;
221                                 break;
222                 }
223
224                 //use default overlay,set vsyn hsync den dclk polarity
225                 LcdMskReg(lcdc_dev, DSP_CTRL0,m_DISPLAY_FORMAT | m_HSYNC_POLARITY | m_VSYNC_POLARITY |
226                         m_DEN_POLARITY |m_DCLK_POLARITY,v_DISPLAY_FORMAT(face) | 
227                         v_HSYNC_POLARITY(screen->pin_hsync) | v_VSYNC_POLARITY(screen->pin_vsync) |
228                         v_DEN_POLARITY(screen->pin_den) | v_DCLK_POLARITY(screen->pin_dclk));
229
230                 //set background color to black,set swap according to the screen panel,disable blank mode
231                 LcdMskReg(lcdc_dev, DSP_CTRL1, m_BG_COLOR | m_OUTPUT_RB_SWAP | m_OUTPUT_RG_SWAP | m_DELTA_SWAP | 
232                         m_DUMMY_SWAP | m_BLANK_MODE,v_BG_COLOR(0x000000) | v_OUTPUT_RB_SWAP(screen->swap_rb) | 
233                         v_OUTPUT_RG_SWAP(screen->swap_rg) | v_DELTA_SWAP(screen->swap_delta) | v_DUMMY_SWAP(screen->swap_dumy) |
234                         v_BLACK_MODE(0));
235
236                 
237                 LcdWrReg(lcdc_dev, DSP_HTOTAL_HS_END,v_HSYNC(screen->hsync_len) |
238                      v_HORPRD(screen->hsync_len + screen->left_margin + x_res + right_margin));
239                 LcdWrReg(lcdc_dev, DSP_HACT_ST_END, v_HAEP(screen->hsync_len + screen->left_margin + x_res) |
240                      v_HASP(screen->hsync_len + screen->left_margin));
241
242                 LcdWrReg(lcdc_dev, DSP_VTOTAL_VS_END, v_VSYNC(screen->vsync_len) |
243                       v_VERPRD(screen->vsync_len + screen->upper_margin + y_res + lower_margin));
244                 LcdWrReg(lcdc_dev, DSP_VACT_ST_END,  v_VAEP(screen->vsync_len + screen->upper_margin+y_res)|
245                       v_VASP(screen->vsync_len + screen->upper_margin));
246                 // let above to take effect
247                 //LCDC_REG_CFG_DONE();
248         }
249         spin_unlock(&lcdc_dev->reg_lock);
250
251         ret = clk_set_rate(lcdc_dev->dclk, screen->pixclock);
252         if(ret)
253         {
254                 printk(KERN_ERR ">>>>>> set lcdc%d dclk failed\n",lcdc_dev->id);
255         }
256         lcdc_dev->driver.pixclock = lcdc_dev->pixclock = div_u64(1000000000000llu, clk_get_rate(lcdc_dev->dclk));
257         clk_enable(lcdc_dev->dclk);
258         
259         ft = (u64)(screen->upper_margin + screen->lower_margin + screen->y_res +screen->vsync_len)*
260                 (screen->left_margin + screen->right_margin + screen->x_res + screen->hsync_len)*
261                 (dev_drv->pixclock);       // one frame time ,(pico seconds)
262         fps = div64_u64(1000000000000llu,ft);
263         screen->ft = 1000/fps;
264         printk("%s: dclk:%lu>>fps:%d ",lcdc_dev->driver.name,clk_get_rate(lcdc_dev->dclk),fps);
265
266         if(screen->init)
267         {
268                 screen->init();
269         }
270         if(screen->sscreen_set)
271         {
272                 screen->sscreen_set(screen,!initscreen);
273         }
274         printk("%s for lcdc%d ok!\n",__func__,lcdc_dev->id);
275         return 0;
276 }
277
278 static int mcu_refresh(struct rk3066b_lcdc_device *lcdc_dev)
279 {
280    
281     return 0;
282 }
283
284
285
286 //enable layer,open:1,enable;0 disable
287 static int win0_open(struct rk3066b_lcdc_device *lcdc_dev,bool open)
288 {
289         
290         spin_lock(&lcdc_dev->reg_lock);
291         if(likely(lcdc_dev->clk_on))
292         {
293                 if(open)
294                 {
295                         if(!lcdc_dev->atv_layer_cnt)
296                         {
297                                 LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(0));
298                         }
299                         lcdc_dev->atv_layer_cnt++;
300                 }
301                 else
302                 {
303                         lcdc_dev->atv_layer_cnt--;
304                 }
305                 lcdc_dev->driver.layer_par[0]->state = open;
306                 
307                 LcdMskReg(lcdc_dev, SYS_CFG, m_W0_EN, v_W0_EN(open));
308                 if(!lcdc_dev->atv_layer_cnt)  //if no layer used,disable lcdc
309                 {
310                         LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(1));
311                 }
312                 //LCDC_REG_CFG_DONE();  
313         }
314         spin_unlock(&lcdc_dev->reg_lock);
315         printk(KERN_INFO "lcdc%d win0 %s\n",lcdc_dev->id,open?"open":"closed");
316         return 0;
317 }
318 static int win1_open(struct rk3066b_lcdc_device *lcdc_dev,bool open)
319 {
320         spin_lock(&lcdc_dev->reg_lock);
321         if(likely(lcdc_dev->clk_on))
322         {
323                 if(open)
324                 {
325                         if(!lcdc_dev->atv_layer_cnt)
326                         {
327                                 printk("lcdc%d wakeup from stanby\n",lcdc_dev->id);
328                                 LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(0));
329                         }
330                         lcdc_dev->atv_layer_cnt++;
331                 }
332                 else
333                 {
334                         lcdc_dev->atv_layer_cnt--;
335                 }
336                 lcdc_dev->driver.layer_par[1]->state = open;
337                 
338                 LcdMskReg(lcdc_dev, SYS_CFG, m_W1_EN, v_W1_EN(open));
339                 if(!lcdc_dev->atv_layer_cnt)  //if no layer used,disable lcdc
340                 {
341                         printk(KERN_INFO "no layer of lcdc%d is used,go to standby!",lcdc_dev->id);
342                         LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(1));
343                 }
344                 LCDC_REG_CFG_DONE();
345         }
346         spin_unlock(&lcdc_dev->reg_lock);
347         printk(KERN_INFO "lcdc%d win1 %s\n",lcdc_dev->id,open?"open":"closed");
348         return 0;
349 }
350
351
352 static int rk3066b_lcdc_blank(struct rk_lcdc_device_driver*lcdc_drv,int layer_id,int blank_mode)
353 {
354         struct rk3066b_lcdc_device * lcdc_dev = container_of(lcdc_drv,struct rk3066b_lcdc_device ,driver);
355
356         spin_lock(&lcdc_dev->reg_lock);
357         if(likely(lcdc_dev->clk_on))
358         {
359                 switch(blank_mode)
360                 {
361                         case FB_BLANK_UNBLANK:
362                                 LcdMskReg(lcdc_dev,DSP_CTRL1,m_BLANK_MODE ,v_BLANK_MODE(0));
363                                 break;
364                         case FB_BLANK_NORMAL:
365                                 LcdMskReg(lcdc_dev,DSP_CTRL1,m_BLANK_MODE ,v_BLANK_MODE(1));
366                                 break;
367                         default:
368                                 LcdMskReg(lcdc_dev,DSP_CTRL1,m_BLANK_MODE ,v_BLANK_MODE(1));
369                                 break;
370                 }
371                 LCDC_REG_CFG_DONE();
372                 printk(KERN_INFO "%s>>>>>%d\n",__func__, blank_mode);
373         }
374         spin_unlock(&lcdc_dev->reg_lock);
375         
376         return 0;
377 }
378
379 static  int win0_display(struct rk3066b_lcdc_device *lcdc_dev,struct layer_par *par )
380 {
381         u32 y_addr;
382         u32 uv_addr;
383         y_addr = par->smem_start + par->y_offset;
384         uv_addr = par->cbr_start + par->c_offset;
385         DBG(2,KERN_INFO "lcdc%d>>%s:y_addr:0x%x>>uv_addr:0x%x\n",lcdc_dev->id,__func__,y_addr,uv_addr);
386
387         spin_lock(&lcdc_dev->reg_lock);
388         if(likely(lcdc_dev->clk_on))
389         {
390                 LcdWrReg(lcdc_dev, WIN0_YRGB_MST,y_addr);
391                 LcdWrReg(lcdc_dev, WIN0_CBR_MST,uv_addr);
392                 LCDC_REG_CFG_DONE();
393         }
394         spin_unlock(&lcdc_dev->reg_lock);
395
396         return 0;
397         
398 }
399
400 static  int win1_display(struct rk3066b_lcdc_device *lcdc_dev,struct layer_par *par )
401 {
402         u32 y_addr;
403         u32 uv_addr;
404         y_addr = par->smem_start + par->y_offset;
405         uv_addr = par->cbr_start + par->c_offset;
406         DBG(2,KERN_INFO "lcdc%d>>%s>>y_addr:0x%x>>uv_addr:0x%x\n",lcdc_dev->id,__func__,y_addr,uv_addr);
407         
408         spin_lock(&lcdc_dev->reg_lock);
409         if(likely(lcdc_dev->clk_on))
410         {
411                 LcdWrReg(lcdc_dev, WIN1_YRGB_MST, y_addr);
412                 LCDC_REG_CFG_DONE();
413         }
414         spin_unlock(&lcdc_dev->reg_lock);
415         
416         return 0;
417 }
418
419 static  int win0_set_par(struct rk3066b_lcdc_device *lcdc_dev,rk_screen *screen,
420         struct layer_par *par )
421 {
422         u32 xact, yact, xvir, yvir, xpos, ypos;
423         u32 ScaleYrgbX = 0x1000;
424         u32 ScaleYrgbY = 0x1000;
425         u32 ScaleCbrX = 0x1000;
426         u32 ScaleCbrY = 0x1000;
427         u8 fmt_cfg =0 ; //data format register config value
428
429         xact = par->xact;                           //active (origin) picture window width/height               
430         yact = par->yact;
431         xvir = par->xvir;                          // virtual resolution                
432         yvir = par->yvir;
433         xpos = par->xpos+screen->left_margin + screen->hsync_len;
434         ypos = par->ypos+screen->upper_margin + screen->vsync_len;
435    
436         
437         ScaleYrgbX = CalScale(xact, par->xsize); //both RGB and yuv need this two factor
438         ScaleYrgbY = CalScale(yact, par->ysize);
439         switch (par->format)
440         {
441                 case ARGB888:
442                         fmt_cfg = 0;
443                         break;
444                 case RGB565:
445                         fmt_cfg = 1;
446                         break;
447                 case YUV422:// yuv422
448                         fmt_cfg = 2;
449                         ScaleCbrX = CalScale((xact/2), par->xsize);
450                         ScaleCbrY = CalScale(yact, par->ysize);
451                         break;
452                 case YUV420: // yuv420
453                         fmt_cfg = 3;
454                         ScaleCbrX = CalScale(xact/2, par->xsize);
455                         ScaleCbrY = CalScale(yact/2, par->ysize);
456                         break;
457                 case YUV444:// yuv444
458                         fmt_cfg = 4;
459                         ScaleCbrX = CalScale(xact, par->xsize);
460                         ScaleCbrY = CalScale(yact, par->ysize);
461                         break;
462                 default:
463                    break;
464         }
465
466         DBG(1,"%s for lcdc%d>>format:%d>>>xact:%d>>yact:%d>>xsize:%d>>ysize:%d>>xvir:%d>>yvir:%d>>xpos:%d>>ypos:%d>>\n",
467                 __func__,lcdc_dev->id,par->format,xact,yact,par->xsize,par->ysize,xvir,yvir,xpos,ypos);
468         
469         spin_lock(&lcdc_dev->reg_lock);
470         if(likely(lcdc_dev->clk_on))
471         {
472                 LcdWrReg(lcdc_dev, WIN0_SCL_FACTOR_YRGB, v_X_SCL_FACTOR(ScaleYrgbX) | v_Y_SCL_FACTOR(ScaleYrgbY));
473                 LcdWrReg(lcdc_dev, WIN0_SCL_FACTOR_CBR,v_X_SCL_FACTOR(ScaleCbrX)| v_Y_SCL_FACTOR(ScaleCbrY));
474                 LcdMskReg(lcdc_dev,SYS_CFG, m_W0_FORMAT, v_W0_FORMAT(fmt_cfg));         //(inf->video_mode==0)
475                 LcdWrReg(lcdc_dev, WIN0_ACT_INFO,v_ACT_WIDTH(xact) | v_ACT_HEIGHT(yact));
476                 LcdWrReg(lcdc_dev, WIN0_DSP_ST, v_DSP_STX(xpos) | v_DSP_STY(ypos));
477                 LcdWrReg(lcdc_dev, WIN0_DSP_INFO, v_DSP_WIDTH(par->xsize)| v_DSP_HEIGHT(par->ysize));
478                 LcdMskReg(lcdc_dev, WIN0_COLOR_KEY_CTRL, m_COLORKEY_EN | m_KEYCOLOR,
479                         v_COLORKEY_EN(0) | v_KEYCOLOR(0));
480                 LcdWrReg(lcdc_dev,WIN0_VIR,v_VIRWIDTH(xvir));
481                 //LCDC_REG_CFG_DONE();
482         }
483         spin_unlock(&lcdc_dev->reg_lock);
484
485     return 0;
486
487 }
488
489 static int win1_set_par(struct rk3066b_lcdc_device *lcdc_dev,rk_screen *screen,
490         struct layer_par *par )
491 {
492         u32 xact, yact, xvir, yvir, xpos, ypos;
493         u8 fmt_cfg;
494         
495         xact = par->xact;                       
496         yact = par->yact;
497         xvir = par->xvir;               
498         yvir = par->yvir;
499         xpos = par->xpos+screen->left_margin + screen->hsync_len;
500         ypos = par->ypos+screen->upper_margin + screen->vsync_len;
501         
502         
503         DBG(1,"%s for lcdc%d>>format:%d>>>xact:%d>>yact:%d>>xsize:%d>>ysize:%d>>xvir:%d>>yvir:%d>>xpos:%d>>ypos:%d>>\n",
504                 __func__,lcdc_dev->id,par->format,xact,yact,par->xsize,par->ysize,xvir,yvir,xpos,ypos);
505
506         
507         spin_lock(&lcdc_dev->reg_lock);
508         if(likely(lcdc_dev->clk_on))
509         {
510                 switch (par->format)
511                 {
512                         case ARGB888:
513                                 fmt_cfg = 0;
514                                 break;
515                         case RGB565:
516                                 fmt_cfg = 1;
517                                 break;
518                         default:
519                                 break;
520                 }
521
522                 LcdMskReg(lcdc_dev,SYS_CFG, m_W1_FORMAT, v_W1_FORMAT(fmt_cfg));
523                 LcdWrReg(lcdc_dev, WIN1_DSP_ST,v_DSP_STX(xpos) | v_DSP_STY(ypos));
524                 LcdWrReg(lcdc_dev, WIN1_DSP_INFO,v_DSP_WIDTH(par->xsize) | v_DSP_HEIGHT(par->ysize));
525                 // enable win1 color key and set the color to black(rgb=0)
526                 LcdMskReg(lcdc_dev,WIN1_COLOR_KEY_CTRL, m_COLORKEY_EN | m_KEYCOLOR,v_COLORKEY_EN(0) | v_KEYCOLOR(0));
527                 LcdWrReg(lcdc_dev,WIN1_VIR,v_VIRWIDTH(xvir));
528                 
529                 //LCDC_REG_CFG_DONE(); 
530         }
531         spin_unlock(&lcdc_dev->reg_lock);
532     return 0;
533 }
534
535 static int rk3066b_lcdc_open(struct rk_lcdc_device_driver *dev_drv,int layer_id,bool open)
536 {
537         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
538         if(layer_id == 0)
539         {
540                 win0_open(lcdc_dev,open);       
541         }
542         else if(layer_id == 1)
543         {
544                 win1_open(lcdc_dev,open);
545         }
546
547         return 0;
548 }
549
550 static int rk3066b_lcdc_set_par(struct rk_lcdc_device_driver *dev_drv,int layer_id)
551 {
552         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
553         struct layer_par *par = NULL;
554         rk_screen *screen = dev_drv->cur_screen;
555         if(!screen)
556         {
557                 printk(KERN_ERR "screen is null!\n");
558                 return -ENOENT;
559         }
560         if(layer_id==0)
561         {
562                 par = dev_drv->layer_par[0];
563                 win0_set_par(lcdc_dev,screen,par);
564         }
565         else if(layer_id==1)
566         {
567                 par = dev_drv->layer_par[1];
568                 win1_set_par(lcdc_dev,screen,par);
569         }
570         
571         return 0;
572 }
573
574 int rk3066b_lcdc_pan_display(struct rk_lcdc_device_driver * dev_drv,int layer_id)
575 {
576         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
577         struct layer_par *par = NULL;
578         rk_screen *screen = dev_drv->cur_screen;
579         unsigned long flags;
580         int timeout;
581         if(!screen)
582         {
583                 printk(KERN_ERR "screen is null!\n");
584                 return -ENOENT; 
585         }
586         if(layer_id==0)
587         {
588                 par = dev_drv->layer_par[0];
589                 win0_display(lcdc_dev,par);
590         }
591         else if(layer_id==1)
592         {
593                 par = dev_drv->layer_par[1];
594                 win1_display(lcdc_dev,par);
595         }
596         if((dev_drv->first_frame))  //this is the first frame of the system ,enable frame start interrupt
597         {
598                 dev_drv->first_frame = 0;
599                 LcdMskReg(lcdc_dev,INT_STATUS,m_FRM_STARTCLEAR | m_FRM_STARTMASK ,
600                           v_FRM_STARTCLEAR(1) | v_FRM_STARTMASK(0));
601                 LCDC_REG_CFG_DONE();  // write any value to  REG_CFG_DONE let config become effective
602                  
603         }
604
605         if(dev_drv->num_buf < 3) //3buffer ,no need to  wait for sysn
606         {
607                 spin_lock_irqsave(&dev_drv->cpl_lock,flags);
608                 init_completion(&dev_drv->frame_done);
609                 spin_unlock_irqrestore(&dev_drv->cpl_lock,flags);
610                 timeout = wait_for_completion_timeout(&dev_drv->frame_done,msecs_to_jiffies(dev_drv->cur_screen->ft+5));
611                 if(!timeout&&(!dev_drv->frame_done.done))
612                 {
613                         printk(KERN_ERR "wait for new frame start time out!\n");
614                         return -ETIMEDOUT;
615                 }
616         }
617         
618         return 0;
619 }
620
621 int rk3066b_lcdc_ioctl(struct rk_lcdc_device_driver * dev_drv,unsigned int cmd, unsigned long arg,int layer_id)
622 {
623         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
624         u32 panel_size[2];
625         void __user *argp = (void __user *)arg;
626         int ret = 0;
627         switch(cmd)
628         {
629                 case FBIOGET_PANEL_SIZE:    //get panel size
630                         panel_size[0] = lcdc_dev->screen->x_res;
631                         panel_size[1] = lcdc_dev->screen->y_res;
632                         if(copy_to_user(argp, panel_size, 8)) 
633                                 return -EFAULT;
634                         break;
635                 default:
636                         break;
637         }
638
639         return ret;
640 }
641 static int rk3066b_lcdc_get_layer_state(struct rk_lcdc_device_driver *dev_drv,int layer_id)
642 {
643         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
644         struct layer_par *par = dev_drv->layer_par[layer_id];
645
646         spin_lock(&lcdc_dev->reg_lock);
647         if(lcdc_dev->clk_on)
648         {
649                 if(layer_id == 0)
650                 {
651                         par->state = LcdReadBit(lcdc_dev,SYS_CFG,m_W0_EN);
652                 }
653                 else if( layer_id == 1)
654                 {
655                         par->state = LcdReadBit(lcdc_dev,SYS_CFG,m_W1_EN);
656                 }
657         }
658         spin_unlock(&lcdc_dev->reg_lock);
659         
660         return par->state;
661         
662 }
663
664 /***********************************
665 overlay manager
666 swap:1 win0 on the top of win1
667         0 win1 on the top of win0
668 set  : 1 set overlay 
669         0 get overlay state
670 ************************************/
671 static int rk3066b_lcdc_ovl_mgr(struct rk_lcdc_device_driver *dev_drv,int swap,bool set)
672 {
673         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
674         int ovl;
675         spin_lock(&lcdc_dev->reg_lock);
676         if(lcdc_dev->clk_on)
677         {
678                 if(set)  //set overlay
679                 {
680                         LcdMskReg(lcdc_dev,DSP_CTRL0,m_W0W1_POSITION_SWAP,v_W0W1_POSITION_SWAP(swap));
681                         LcdWrReg(lcdc_dev, REG_CFG_DONE, 0x01);
682                         LCDC_REG_CFG_DONE();
683                         ovl = swap;
684                 }
685                 else  //get overlay
686                 {
687                         ovl = LcdReadBit(lcdc_dev,DSP_CTRL0,m_W0W1_POSITION_SWAP);
688                 }
689         }
690         else
691         {
692                 ovl = -EPERM;
693         }
694         spin_unlock(&lcdc_dev->reg_lock);
695
696         return ovl;
697 }
698
699
700 static ssize_t dump_win0_disp_info(struct rk3066b_lcdc_device *lcdc_dev,char *buf)
701 {
702         char format[9] = "NULL";
703         u32 fmt_id = LcdRdReg(lcdc_dev,SYS_CFG);
704         u32 xvir,act_info,dsp_info,dsp_st,factor;
705         u16 x_act,y_act,x_dsp,y_dsp,x_factor,y_factor;
706         u16 x_scale,y_scale;
707         switch((fmt_id&m_W0_FORMAT)>>3)
708         {
709                 case 0:
710                         strcpy(format,"ARGB888");
711                         break;
712                 case 1:
713                         strcpy(format,"RGB565");
714                         break;
715                 case 2:
716                         strcpy(format,"YCbCr420");
717                         break;
718                 case 3:
719                         strcpy(format,"YCbCr422");
720                         break;
721                 case 5:
722                         strcpy(format,"YCbCr444");
723                         break;
724                 case 6:
725                         strcpy(format,"AYCBCr");
726                         break;
727                 default:
728                         strcpy(format,"inval\n");
729                         break;
730         }
731
732         xvir = LcdRdReg(lcdc_dev,WIN0_VIR)&0xffff;
733         act_info = LcdRdReg(lcdc_dev,WIN0_ACT_INFO);
734         dsp_info = LcdRdReg(lcdc_dev,WIN0_DSP_INFO);
735         dsp_st = LcdRdReg(lcdc_dev,WIN0_DSP_ST);
736         factor = LcdRdReg(lcdc_dev,WIN0_SCL_FACTOR_YRGB);
737         x_act =  (act_info&0xffff);
738         y_act = (act_info>>16);
739         x_dsp = (dsp_info&0x7ff);
740         y_dsp = (dsp_info>>16);
741         x_factor = factor&0xffff;
742         y_factor = factor>>16;
743         x_scale = 4096*100/x_factor;
744         y_scale = 4096*100/y_factor;
745         return snprintf(buf,PAGE_SIZE,
746                 "xvir:%d\n"
747                 "xact:%d\n"
748                 "yact:%d\n"
749                 "xdsp:%d\n"
750                 "ydsp:%d\n"
751                 "x_st:%d\n"
752                 "y_st:%d\n"
753                 "x_scale:%d.%d\n"
754                 "y_scale:%d.%d\n"
755                 "format:%s\n",
756                 xvir,
757                 x_act,
758                 y_act,
759                 x_dsp,
760                 y_dsp,
761                 dsp_st&0xffff,
762                 dsp_st>>16,
763                 x_scale/100,
764                 x_scale%100,
765                 y_scale/100,
766                 y_scale%100,
767                 format);
768
769 }
770
771
772 static ssize_t dump_win1_disp_info(struct rk3066b_lcdc_device *lcdc_dev,char *buf)
773 {
774         char format[9] = "NULL";
775         u32 fmt_id = LcdRdReg(lcdc_dev,SYS_CFG);
776         u32 xvir,act_info,dsp_info,dsp_st,factor;
777         u16 x_act,y_act,x_dsp,y_dsp,x_factor,y_factor;
778         u16 x_scale,y_scale;
779         switch((fmt_id&m_W1_FORMAT)>>2)
780         {
781                 case 0:
782                         strcpy(format,"ARGB888");
783                         break;
784                 case 1:
785                         strcpy(format,"RGB565");
786                         break;
787                 default:
788                         strcpy(format,"inval\n");
789                         break;
790         }
791
792         xvir = LcdRdReg(lcdc_dev,WIN1_VIR)&0xffff;
793         dsp_info = LcdRdReg(lcdc_dev,WIN1_DSP_INFO);
794         dsp_st = LcdRdReg(lcdc_dev,WIN1_DSP_ST);
795
796         x_dsp = dsp_info&0x7ff;
797         y_dsp = dsp_info>>16;
798
799         return snprintf(buf,PAGE_SIZE,
800                 "xvir:%d\n"
801                 "xdsp:%d\n"
802                 "ydsp:%d\n"
803                 "x_st:%d\n"
804                 "y_st:%d\n"
805                 "format:%s\n",
806                 xvir,
807                 x_dsp,
808                 y_dsp,
809                 dsp_st&0xffff,
810                 dsp_st>>16,
811                 format);
812 }
813
814 static ssize_t rk3066b_lcdc_get_disp_info(struct rk_lcdc_device_driver *dev_drv,char *buf,int layer_id)
815
816 {
817         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
818          if(layer_id == 0)
819         {
820                 return dump_win0_disp_info(lcdc_dev,buf);
821         }
822         else if(layer_id == 1)
823         {
824                 return dump_win1_disp_info(lcdc_dev,buf);
825         }
826         
827         return 0;
828 }
829
830
831 /*******************************************
832 lcdc fps manager,set or get lcdc fps
833 set:0 get
834      1 set
835 ********************************************/
836 static int rk3066b_lcdc_fps_mgr(struct rk_lcdc_device_driver *dev_drv,int fps,bool set)
837 {
838         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
839         rk_screen * screen = dev_drv->cur_screen;
840         u64 ft = 0;
841         u32 dotclk;
842         int ret;
843
844         if(set)
845         {
846                 ft = div_u64(1000000000000llu,fps);
847                 dev_drv->pixclock = div_u64(ft,(screen->upper_margin + screen->lower_margin + screen->y_res +screen->vsync_len)*
848                                 (screen->left_margin + screen->right_margin + screen->x_res + screen->hsync_len));
849                 dotclk = div_u64(1000000000000llu,dev_drv->pixclock);
850                 ret = clk_set_rate(lcdc_dev->dclk, dotclk);
851                 if(ret)
852                 {
853                         printk(KERN_ERR ">>>>>> set lcdc%d dclk failed\n",lcdc_dev->id);
854                 }
855                 dev_drv->pixclock = lcdc_dev->pixclock = div_u64(1000000000000llu, clk_get_rate(lcdc_dev->dclk));
856                         
857         }
858         
859         ft = (u64)(screen->upper_margin + screen->lower_margin + screen->y_res +screen->vsync_len)*
860         (screen->left_margin + screen->right_margin + screen->x_res + screen->hsync_len)*
861         (dev_drv->pixclock);       // one frame time ,(pico seconds)
862         fps = div64_u64(1000000000000llu,ft);
863         screen->ft = 1000/fps ;  //one frame time in ms
864         return fps;
865 }
866
867 static int rk3066b_fb_layer_remap(struct rk_lcdc_device_driver *dev_drv,
868         enum fb_win_map_order order)
869 {
870         mutex_lock(&dev_drv->fb_win_id_mutex);
871         if(order == FB_DEFAULT_ORDER)
872         {
873                 order = FB0_WIN0_FB1_WIN1_FB2_WIN2;
874         }
875         dev_drv->fb2_win_id  = order/100;
876         dev_drv->fb1_win_id = (order/10)%10;
877         dev_drv->fb0_win_id = order%10;
878         mutex_unlock(&dev_drv->fb_win_id_mutex);
879
880         printk("fb0:win%d\nfb1:win%d\nfb2:win%d\n",dev_drv->fb0_win_id,dev_drv->fb1_win_id,
881                 dev_drv->fb2_win_id);
882
883         return 0;
884 }
885
886 static int rk3066b_fb_get_layer(struct rk_lcdc_device_driver *dev_drv,const char *id)
887 {
888         int layer_id = 0;
889         mutex_lock(&dev_drv->fb_win_id_mutex);
890         if(!strcmp(id,"fb0") || !strcmp(id,"fb2"))
891         {
892                 layer_id = dev_drv->fb0_win_id;
893         }
894         else if(!strcmp(id,"fb1") || !strcmp(id,"fb3"))
895         {
896                 layer_id = dev_drv->fb1_win_id;
897         }
898         else
899         {
900                 printk(KERN_ERR "%s>>un supported %s\n",__func__,id);
901                 layer_id = -1;
902         }
903         mutex_unlock(&dev_drv->fb_win_id_mutex);
904         
905         return  layer_id;
906 }
907
908
909 static void rk3066b_lcdc_reg_dump(struct rk3066b_lcdc_device *lcdc_dev)
910 {
911         int *cbase =  (int *)lcdc_dev->reg_vir_base;
912         int i,j;
913         
914         for(i=0; i<=(0xa0>>4);i++)
915         {
916                 for(j=0;j<4;j++)
917                         printk("%08x  ",readl(cbase+i*4 +j));
918                 printk("\n");
919         }
920         
921 }
922
923 int rk3066b_lcdc_early_suspend(struct rk_lcdc_device_driver *dev_drv)
924 {
925         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
926
927         if(dev_drv->screen0->standby)
928                 dev_drv->screen0->standby(1);
929         if(dev_drv->screen_ctr_info->io_disable)
930                 dev_drv->screen_ctr_info->io_disable();
931         
932         spin_lock(&lcdc_dev->reg_lock);
933         if(likely(lcdc_dev->clk_on))
934         {
935                 lcdc_dev->clk_on = 0;
936                 LcdMskReg(lcdc_dev, INT_STATUS, m_FRM_STARTCLEAR, v_FRM_STARTCLEAR(1));
937                 LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(1));
938                 LCDC_REG_CFG_DONE();
939                 spin_unlock(&lcdc_dev->reg_lock);
940         }
941         else  //clk already disabled
942         {
943                 spin_unlock(&lcdc_dev->reg_lock);
944                 return 0;
945         }
946         
947                 
948         mdelay(30);
949         clk_disable(lcdc_dev->dclk);
950         clk_disable(lcdc_dev->hclk);
951         clk_disable(lcdc_dev->aclk);
952         clk_disable(lcdc_dev->pd);
953
954         return 0;
955 }
956
957
958 int rk3066b_lcdc_early_resume(struct rk_lcdc_device_driver *dev_drv)
959 {  
960         struct rk3066b_lcdc_device *lcdc_dev = container_of(dev_drv,struct rk3066b_lcdc_device,driver);
961
962         if(dev_drv->screen_ctr_info->io_enable)                 //power on
963                 dev_drv->screen_ctr_info->io_enable();
964         
965         if(!lcdc_dev->clk_on)
966         {
967                 clk_enable(lcdc_dev->pd);
968                 clk_enable(lcdc_dev->hclk);
969                 clk_enable(lcdc_dev->dclk);
970                 clk_enable(lcdc_dev->aclk);
971         }
972         mdelay(5);
973         memcpy((u8*)lcdc_dev->preg, (u8*)&lcdc_dev->regbak, 0x24);  //resume reg ,skip INT_STATUS reg
974         memcpy(((u8*)lcdc_dev->preg) + 0x28,((u8*)&lcdc_dev->regbak) + 0x28, 0x74);
975
976         spin_lock(&lcdc_dev->reg_lock);
977         if(lcdc_dev->atv_layer_cnt)
978         {
979                 LcdMskReg(lcdc_dev, SYS_CFG,m_LCDC_STANDBY,v_LCDC_STANDBY(0));
980                 LcdMskReg(lcdc_dev, INT_STATUS, m_SCANNING_CLEAR | m_FRM_STARTCLEAR | m_HOR_STARTCLEAR |
981                                         m_SCANNING_MASK | m_HOR_STARTMASK | m_FRM_STARTMASK , 
982                                         v_SCANNING_CLEAR(1) | v_FRM_STARTCLEAR(1) | v_HOR_STARTCLEAR(1) | 
983                                         v_SCANNING_MASK(1) | v_FRM_STARTMASK(0) | v_HOR_STARTMASK(1));
984                 LCDC_REG_CFG_DONE();
985         }
986         lcdc_dev->clk_on = 1;
987         spin_unlock(&lcdc_dev->reg_lock);
988
989         if(dev_drv->screen0->standby)
990                 dev_drv->screen0->standby(0);         //screen wake up
991         
992         return 0;
993 }
994 static irqreturn_t rk3066b_lcdc_isr(int irq, void *dev_id)
995 {
996         struct rk3066b_lcdc_device *lcdc_dev = (struct rk3066b_lcdc_device *)dev_id;
997         
998         LcdMskReg(lcdc_dev, INT_STATUS, m_FRM_STARTCLEAR, v_FRM_STARTCLEAR(1));
999         LCDC_REG_CFG_DONE();
1000         //LcdMskReg(lcdc_dev, INT_STATUS, m_LINE_FLAG_INT_CLEAR, v_LINE_FLAG_INT_CLEAR(1));
1001  
1002         if(lcdc_dev->driver.num_buf < 3)  //three buffer ,no need to wait for sync
1003         {
1004                 spin_lock(&(lcdc_dev->driver.cpl_lock));
1005                 complete(&(lcdc_dev->driver.frame_done));
1006                 spin_unlock(&(lcdc_dev->driver.cpl_lock));
1007         }
1008         return IRQ_HANDLED;
1009 }
1010
1011 static struct layer_par lcdc_layer[] = {
1012         [0] = {
1013                 .name           = "win0",
1014                 .id             = 0,
1015                 .support_3d     = true,
1016         },
1017         [1] = {
1018                 .name           = "win1",
1019                 .id             = 1,
1020                 .support_3d     = false,
1021         },
1022 };
1023
1024 static struct rk_lcdc_device_driver lcdc_driver = {
1025         .name                   = "lcdc",
1026         .def_layer_par          = lcdc_layer,
1027         .num_layer              = ARRAY_SIZE(lcdc_layer),
1028         .open                   = rk3066b_lcdc_open,
1029         .init_lcdc              = init_rk3066b_lcdc,
1030         .ioctl                  = rk3066b_lcdc_ioctl,
1031         .suspend                = rk3066b_lcdc_early_suspend,
1032         .resume                 = rk3066b_lcdc_early_resume,
1033         .set_par                = rk3066b_lcdc_set_par,
1034         .blank                  = rk3066b_lcdc_blank,
1035         .pan_display            = rk3066b_lcdc_pan_display,
1036         .load_screen            = rk3066b_load_screen,
1037         .get_layer_state        = rk3066b_lcdc_get_layer_state,
1038         .ovl_mgr                = rk3066b_lcdc_ovl_mgr,
1039         .get_disp_info          = rk3066b_lcdc_get_disp_info,
1040         .fps_mgr                = rk3066b_lcdc_fps_mgr,
1041         .fb_get_layer           = rk3066b_fb_get_layer,
1042         .fb_layer_remap         = rk3066b_fb_layer_remap,
1043 };
1044 #ifdef CONFIG_PM
1045 static int rk3066b_lcdc_suspend(struct platform_device *pdev, pm_message_t state)
1046 {
1047         return 0;
1048 }
1049
1050 static int rk3066b_lcdc_resume(struct platform_device *pdev)
1051 {
1052         return 0;
1053 }
1054
1055 #else
1056 #define rk3066b_lcdc_suspend NULL
1057 #define rk3066b_lcdc_resume NULL
1058 #endif
1059
1060 static int __devinit rk3066b_lcdc_probe (struct platform_device *pdev)
1061 {
1062         struct rk3066b_lcdc_device *lcdc_dev=NULL;
1063         rk_screen *screen;
1064         rk_screen *screen1;
1065         struct rk29fb_info *screen_ctr_info;
1066         struct resource *res = NULL;
1067         struct resource *mem;
1068         int ret = 0;
1069         
1070         /*************Malloc rk3066blcdc_inf and set it to pdev for drvdata**********/
1071         lcdc_dev = kzalloc(sizeof(struct rk3066b_lcdc_device), GFP_KERNEL);
1072         if(!lcdc_dev)
1073         {
1074                 dev_err(&pdev->dev, ">>rk3066b lcdc device kmalloc fail!");
1075                 return -ENOMEM;
1076         }
1077         platform_set_drvdata(pdev, lcdc_dev);
1078         lcdc_dev->id = pdev->id;
1079         screen_ctr_info = (struct rk29fb_info * )pdev->dev.platform_data;
1080         screen =  kzalloc(sizeof(rk_screen), GFP_KERNEL);
1081         if(!screen)
1082         {
1083                 dev_err(&pdev->dev, ">>rk3066b lcdc screen kmalloc fail!");
1084                 ret =  -ENOMEM;
1085                 goto err0;
1086         }
1087         else
1088         {
1089                 lcdc_dev->screen = screen;
1090         }
1091         screen->lcdc_id = lcdc_dev->id;
1092         screen->screen_id = 0;
1093
1094 #if defined(CONFIG_ONE_LCDC_DUAL_OUTPUT_INF)&& defined(CONFIG_RK610_LVDS)
1095         screen1 =  kzalloc(sizeof(rk_screen), GFP_KERNEL);
1096         if(!screen1)
1097         {
1098                 dev_err(&pdev->dev, ">>rk3066b lcdc screen1 kmalloc fail!");
1099                 ret =  -ENOMEM;
1100                 goto err0;
1101         }
1102         screen1->lcdc_id = 1;
1103         screen1->screen_id = 1;
1104         printk("use lcdc%d and rk610 implemention dual display!\n",lcdc_dev->id);
1105         
1106 #endif
1107         /****************get lcdc0 reg  *************************/
1108         res = platform_get_resource(pdev, IORESOURCE_MEM,0);
1109         if (res == NULL)
1110         {
1111                 dev_err(&pdev->dev, "failed to get io resource for lcdc%d \n",lcdc_dev->id);
1112                 ret = -ENOENT;
1113                 goto err1;
1114         }
1115         lcdc_dev->reg_phy_base = res->start;
1116         lcdc_dev->len = resource_size(res);
1117         mem = request_mem_region(lcdc_dev->reg_phy_base, resource_size(res), pdev->name);
1118         if (mem == NULL)
1119         {
1120                 dev_err(&pdev->dev, "failed to request mem region for lcdc%d\n",lcdc_dev->id);
1121                 ret = -ENOENT;
1122                 goto err1;
1123         }
1124         lcdc_dev->reg_vir_base = ioremap(lcdc_dev->reg_phy_base,  resource_size(res));
1125         if (lcdc_dev->reg_vir_base == NULL)
1126         {
1127                 dev_err(&pdev->dev, "cannot map IO\n");
1128                 ret = -ENXIO;
1129                 goto err2;
1130         }
1131         
1132         lcdc_dev->preg = (LCDC_REG*)lcdc_dev->reg_vir_base;
1133         printk("lcdc%d:reg_phy_base = 0x%08x,reg_vir_base:0x%p\n",pdev->id,lcdc_dev->reg_phy_base, lcdc_dev->preg);
1134         lcdc_dev->driver.dev=&pdev->dev;
1135         lcdc_dev->driver.screen0 = screen;
1136 #if defined(CONFIG_ONE_LCDC_DUAL_OUTPUT_INF)&& defined(CONFIG_RK610_LVDS)
1137         lcdc_dev->driver.screen1 = screen1;
1138 #endif
1139         lcdc_dev->driver.cur_screen = screen;
1140         lcdc_dev->driver.screen_ctr_info = screen_ctr_info;
1141         spin_lock_init(&lcdc_dev->reg_lock);
1142         lcdc_dev->irq = platform_get_irq(pdev, 0);
1143         if(lcdc_dev->irq < 0)
1144         {
1145                 dev_err(&pdev->dev, "cannot find IRQ\n");
1146                 goto err3;
1147         }
1148         ret = request_irq(lcdc_dev->irq, rk3066b_lcdc_isr, IRQF_DISABLED,dev_name(&pdev->dev),lcdc_dev);
1149         if (ret)
1150         {
1151                dev_err(&pdev->dev, "cannot requeset irq %d - err %d\n", lcdc_dev->irq, ret);
1152                ret = -EBUSY;
1153                goto err3;
1154         }
1155
1156         if(screen_ctr_info->set_screen_info)
1157         {
1158                 screen_ctr_info->set_screen_info(screen,screen_ctr_info->lcd_info);
1159                 if(SCREEN_NULL==screen->type)
1160                 {
1161                         printk(KERN_WARNING "no display device on lcdc%d!?\n",lcdc_dev->id);
1162                         ret = -ENODEV;
1163                 }
1164                 if(screen_ctr_info->io_init)
1165                         screen_ctr_info->io_init(NULL);
1166         }
1167         else
1168         {
1169                 printk(KERN_WARNING "no display device on lcdc%d!?\n",lcdc_dev->id);
1170                 ret =  -ENODEV;
1171                 goto err4;
1172         }
1173                 
1174         ret = rk_fb_register(&(lcdc_dev->driver),&lcdc_driver,lcdc_dev->id);
1175         if(ret < 0)
1176         {
1177                 printk(KERN_ERR "register fb for lcdc%d failed!\n",lcdc_dev->id);
1178                 goto err4;
1179         }
1180         printk("rk3066b lcdc%d probe ok!\n",lcdc_dev->id);
1181
1182         return 0;
1183
1184 err4:
1185         free_irq(lcdc_dev->irq,lcdc_dev);
1186 err3:   
1187         iounmap(lcdc_dev->reg_vir_base);
1188 err2:
1189         release_mem_region(lcdc_dev->reg_phy_base,resource_size(res));
1190 err1:
1191         kfree(screen);
1192 err0:
1193         platform_set_drvdata(pdev, NULL);
1194         kfree(lcdc_dev);
1195         return ret;
1196     
1197 }
1198 static int __devexit rk3066b_lcdc_remove(struct platform_device *pdev)
1199 {
1200         struct rk3066b_lcdc_device *lcdc_dev = platform_get_drvdata(pdev);
1201         rk_fb_unregister(&(lcdc_dev->driver));
1202         rk3066b_lcdc_deinit(lcdc_dev);
1203         iounmap(lcdc_dev->reg_vir_base);
1204         release_mem_region(lcdc_dev->reg_phy_base,lcdc_dev->len);
1205         kfree(lcdc_dev->screen);
1206         kfree(lcdc_dev);
1207         return 0;
1208 }
1209
1210 static void rk3066b_lcdc_shutdown(struct platform_device *pdev)
1211 {
1212         struct rk3066b_lcdc_device *lcdc_dev = platform_get_drvdata(pdev);
1213         if(lcdc_dev->driver.cur_screen->standby) //standby the screen if necessary
1214                 lcdc_dev->driver.cur_screen->standby(1);
1215         if(lcdc_dev->driver.screen_ctr_info->io_disable) //power off the screen if necessary
1216                 lcdc_dev->driver.screen_ctr_info->io_disable();
1217         if(lcdc_dev->driver.cur_screen->sscreen_set) //turn off  lvds if necessary
1218                 lcdc_dev->driver.cur_screen->sscreen_set(lcdc_dev->driver.cur_screen , 0);
1219         rk_fb_unregister(&(lcdc_dev->driver));
1220         rk3066b_lcdc_deinit(lcdc_dev);
1221         /*iounmap(lcdc_dev->reg_vir_base);
1222         release_mem_region(lcdc_dev->reg_phy_base,lcdc_dev->len);
1223         kfree(lcdc_dev->screen);
1224         kfree(lcdc_dev);*/
1225 }
1226
1227
1228 static struct platform_driver rk3066b_lcdc_driver = {
1229         .probe          = rk3066b_lcdc_probe,
1230         .remove         = __devexit_p(rk3066b_lcdc_remove),
1231         .driver         = {
1232                 .name   = "rk30-lcdc",
1233                 .owner  = THIS_MODULE,
1234         },
1235         .suspend        = rk3066b_lcdc_suspend,
1236         .resume         = rk3066b_lcdc_resume,
1237         .shutdown       = rk3066b_lcdc_shutdown,
1238 };
1239
1240 static int __init rk3066b_lcdc_init(void)
1241 {
1242         return platform_driver_register(&rk3066b_lcdc_driver);
1243 }
1244
1245 static void __exit rk3066b_lcdc_exit(void)
1246 {
1247         platform_driver_unregister(&rk3066b_lcdc_driver);
1248 }
1249
1250
1251
1252 fs_initcall(rk3066b_lcdc_init);
1253 module_exit(rk3066b_lcdc_exit);
1254
1255
1256