3028a hdmi: improve Signal consistency
[firefly-linux-kernel-4.4.55.git] / drivers / video / rockchip / hdmi / rk_hdmi_lcdc.c
1 #include <linux/console.h>
2 #include<linux/rk_fb.h>
3 #include "rk_hdmi.h"
4
5 #define OUT_TYPE                SCREEN_HDMI
6 #define OUT_FACE                OUT_P888
7 #define DCLK_POL                1
8 #define SWAP_RB                 0
9 #define LCD_ACLK                800000000
10
11 static const struct fb_videomode hdmi_mode [] = {
12         //name                  refresh         xres    yres    pixclock                h_bp    h_fp    v_bp    v_fp    h_pw    v_pw    polariry        PorI    flag(used for vic)
13 //{     "640x480p@60Hz",                60,             640,    480,    25175000,       48,     16,     33,     10,     96,     2,      0,      0,      1       },
14 //{     "720x480i@60Hz",                60,             720,    480,    27000000,       114,    38,     15,     4,      124,    3,      0,      1,      6       },
15 //{     "720x576i@50Hz",                50,             720,    576,    27000000,       138,    24,     19,     2,      126,    3,      0,      1,      21      },
16 {       "720x480p@60Hz",        60,             720,    480,    27000000,       60,     16,     30,     9,      62,     6,      0,      0,      2       },
17 {       "720x576p@50Hz",        50,             720,    576,    27000000,       68,     12,     39,     5,      64,     5,      0,      0,      17      },
18 //{     "1280x720p@24Hz",       24,             1280,   720,    59400000,       220,    1760,   20,     5,      40,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              60      },
19 //{     "1280x720p@25Hz",       25,             1280,   720,    74250000,       220,    2420,   20,     5,      40,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              61      },
20 //{     "1280x720p@30Hz",       30,             1280,   720,    74250000,       220,    1760,   20,     5,      40,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              62      },
21 {       "1280x720p@50Hz",       50,             1280,   720,    74250000,       220,    440,    20,     5,      40,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              19      },
22 {       "1280x720p@60Hz",       60,             1280,   720,    74250000,       220,    110,    20,     5,      40,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              4       },
23 //{     "1920x1080p@24Hz",      24,             1920,   1080,   74250000,       148,    638,    36,     4,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              32      },
24 //{     "1920x1080p@25Hz",      25,             1920,   1080,   74250000,       148,    528,    36,     4,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              33      },
25 //{     "1920x1080p@30Hz",      30,             1920,   1080,   74250000,       148,    88,     36,     4,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              34      },      
26 //{     "1920x1080i@50Hz_2",    50,             1920,   1080,   72000000,       184,    32,     57,     23,     168,    5,      FB_SYNC_HOR_HIGH_ACT,                   1,              39      },
27 //{     "1920x1080i@50Hz",      50,             1920,   1080,   74250000,       148,    528,    15,     2,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   1,              20      },
28 //{     "1920x1080i@60Hz",      60,             1920,   1080,   74250000,       148,    88,     15,     2,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   1,              5       },
29 {       "1920x1080p@50Hz",      50,             1920,   1080,   148500000,      148,    528,    36,     4,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              31      },
30 {       "1920x1080p@60Hz",      60,             1920,   1080,   148500000,      148,    88,     36,     4,      44,     5,      FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,                   0,              16      },
31 /*
32 {       "1440x288p@50Hz",       50,             720,    480,    27000000,       138,    24,     19,     2,      126,    3,              0,                      0,              23      },
33 {       "2880x576i@50Hz",       50,             1440,   240,    54000000,       276,    48,     19,     2,      252,    3,              0,                      1,              25      },
34 {       "2880x288p@50Hz",       50,             2880,   480,    54000000,       276,    48,     19,     3,      252,    3,              0,                      0,              27      },
35 {       "1440x576p@50Hz",       50,             2880,   480,    54000000,       136,    24,     39,     5,      128,    5,              0,                      0,              29      },
36 {       "2880x576p@50Hz",       50,             1920,   1080,   108000000,      272,    48,     39,     5,      256,    5,              0,                      0,              37      },
37 {       "1440x240p@60Hz",       60,             1440,   240,    27000000,       114,    38,     15,     4,      124,    3,              0,                      0,              8       },
38 {       "2880x480i@60Hz",       60,             2880,   480,    54000000,       228,    76,     15,     4,      248,    3,              0,                      1,              10      },
39 {       "2880x480p@60Hz",       60,             2880,   480,    54000000,       228,    76,     15,     4,      248,    3,              0,                      0,              12      },
40 {       "1440x480p@60Hz",       60,             1440,   480,    54000000,       120,    32,     30,     9,      124,    6,              0,                      0,              14      },
41 {       "2880x480p@60Hz",       60,             2880,   480,    54000000,       240,    64,     30,     9,      248,    6,              0,                      0,              35      },
42
43 {       "1920x1080i@100Hz",     100,            1920,   1080,   148500000,      148,    528,    15,     2,      44,     5,              1,                      1,              40      },
44 {       "1280x720p@100Hz",      100,            1280,   720,    148500000,      220,    440,    20,     5,      40,     5,              1,                      0,              41      },
45 {       "720x576p@100Hz",       100,            720,    576,    54000000,       68,             12,     39,     5,      64,             5,              0,                      0,              42      },
46 {       "1440x576i@100Hz",      100,            1440,   576,    54000000,       138,    24,     19,     2,      12,     3,              0,                      1,              44      },
47 {       "1920x1080p@100Hz",     100,            1920,   1080,   297000000,      148,    528,    36,     4,      44,     5,              1,                      0,              64      },
48
49 {       "1920x1080i@120Hz",     120,            1920,   1080,   148500000,      148,    88,     15,     2,      44,     5,              1,                      1,              46      },
50 {       "1280x720p@120Hz",      120,            1280,   720,    148500000,      220,    110,    20,     5,      40,     5,              1,                      0,              47      },
51 {       "720x480p@120Hz",       120,            720,    480,    54000000,       60,             16,     30,     9,      62,             6,              0,                      0,              48      },
52 {       "1440x480i@120Hz",      120,            1440,   480,    54000000,       114,    38,     15,     4,      12,     3,              0,                      1,              50      },
53 {       "1920x1080p@120Hz",     120,            1920,   1080,   297000000,      148,    88,     36,     4,      44,     5,              1,                      0,              63      },
54
55 {       "720x576p@200Hz",       200,            720,    576,    108000000,      68,     12,     39,     5,      64,     5,              0,                      0,              52      },
56 {       "1440x576i@200Hz",      200,            1920,   1080,   108000000,      138,    24,     19,     2,      12,     3,              0,                      1,              54      },
57
58 {       "720x480p@240Hz",       240,            720,    480,    108000000,      60,     16,     30,     9,      62,     6,              0,                      0,              56      },
59 {       "1440x480i@240Hz",      240,            1440,   480,    108000000,      114,    38,     15,     4,      12,     3,              0,                      1,              58      },
60 */
61
62 };
63
64 void hdmi_init_lcdc(struct rk29fb_screen *screen, struct rk29lcd_info *lcd_info)
65 {
66         hdmi_set_info(screen, HDMI_VIDEO_DEFAULT_MODE);
67 }
68
69 int hdmi_set_info(struct rk29fb_screen *screen, unsigned int vic)
70 {
71     int i;
72     
73     if(screen == NULL)
74         return -1;
75     
76     if(vic == 0)
77         vic = HDMI_VIDEO_DEFAULT_MODE;
78         
79     for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++)
80     {
81         if(hdmi_mode[i].flag == vic)
82                 break;
83     }
84     if(i == ARRAY_SIZE(hdmi_mode))
85         return -1;
86     
87     memset(screen, 0, sizeof(struct rk29fb_screen));
88     
89     /* screen type & face */
90     screen->type = OUT_TYPE;
91     screen->face = OUT_FACE;
92
93     /* Screen size */
94     screen->x_res = hdmi_mode[i].xres;
95     screen->y_res = hdmi_mode[i].yres;
96     
97     /* Timing */
98     screen->pixclock = hdmi_mode[i].pixclock;
99     screen->fps = hdmi_mode[i].refresh;
100         screen->lcdc_aclk = LCD_ACLK;
101         screen->left_margin = hdmi_mode[i].left_margin;
102         screen->right_margin = hdmi_mode[i].right_margin;
103         screen->hsync_len = hdmi_mode[i].hsync_len;
104         screen->upper_margin = hdmi_mode[i].upper_margin;
105         screen->lower_margin = hdmi_mode[i].lower_margin;
106         screen->vsync_len = hdmi_mode[i].vsync_len;
107         screen->hdmi_resolution = hdmi_mode[i].flag;
108
109         /* Pin polarity */
110 #if defined(CONFIG_HDMI_RK616) && !defined(CONFIG_ARCH_RK3026)
111         screen->pin_hsync = 0;
112         screen->pin_vsync = 0;
113 #else 
114         screen->pin_hsync = 0;
115         if(FB_SYNC_HOR_HIGH_ACT & hdmi_mode[i].sync)
116                 screen->pin_hsync = 1;
117         else
118                 screen->pin_hsync = 0;
119         if(FB_SYNC_VERT_HIGH_ACT & hdmi_mode[i].sync)
120                 screen->pin_vsync = 1;
121         else
122                 screen->pin_vsync = 0;
123 #endif
124         screen->pin_den = 0;
125         screen->pin_dclk = DCLK_POL;
126
127         /* Swap rule */
128     screen->swap_rb = SWAP_RB;
129     screen->swap_rg = 0;
130     screen->swap_gb = 0;
131     screen->swap_delta = 0;
132     screen->swap_dumy = 0;
133
134     /* Operation function*/
135     screen->init = NULL;
136     screen->standby = NULL;
137     
138     return 0;
139 }
140
141 static void hdmi_show_sink_info(struct hdmi *hdmi)
142 {
143         struct list_head *pos, *head = &hdmi->edid.modelist;
144         struct fb_modelist *modelist;
145         struct fb_videomode *m;
146         int i;
147         struct hdmi_audio *audio;
148
149         hdmi_dbg(hdmi->dev, "******** Show Sink Info ********\n");
150         hdmi_dbg(hdmi->dev, "Support video mode: \n");
151         list_for_each(pos, head) {
152                 modelist = list_entry(pos, struct fb_modelist, list);
153                 m = &modelist->mode;
154                 hdmi_dbg(hdmi->dev, "   %s.\n", m->name);
155         }
156         
157         for(i = 0; i < hdmi->edid.audio_num; i++)
158         {
159                 audio = &(hdmi->edid.audio[i]);
160                 switch(audio->type)
161                 {
162                         case HDMI_AUDIO_LPCM:
163                                 hdmi_dbg(hdmi->dev, "Support audio type: LPCM\n");
164                                 break;
165                         case HDMI_AUDIO_AC3:
166                                 hdmi_dbg(hdmi->dev, "Support audio type: AC3\n");
167                                 break;
168                         case HDMI_AUDIO_MPEG1:
169                                 hdmi_dbg(hdmi->dev, "Support audio type: MPEG1\n");
170                                 break;
171                         case HDMI_AUDIO_MP3:
172                                 hdmi_dbg(hdmi->dev, "Support audio type: MP3\n");
173                                 break;
174                         case HDMI_AUDIO_MPEG2:
175                                 hdmi_dbg(hdmi->dev, "Support audio type: MPEG2\n");
176                                 break;
177                         case HDMI_AUDIO_AAC_LC:
178                                 hdmi_dbg(hdmi->dev, "Support audio type: AAC\n");
179                                 break;
180                         case HDMI_AUDIO_DTS:
181                                 hdmi_dbg(hdmi->dev, "Support audio type: DTS\n");
182                                 break;
183                         case HDMI_AUDIO_ATARC:
184                                 hdmi_dbg(hdmi->dev, "Support audio type: ATARC\n");
185                                 break;
186                         case HDMI_AUDIO_DSD:
187                                 hdmi_dbg(hdmi->dev, "Support audio type: DSD\n");
188                                 break;
189                         case HDMI_AUDIO_E_AC3:
190                                 hdmi_dbg(hdmi->dev, "Support audio type: E-AC3\n");
191                                 break;
192                         case HDMI_AUDIO_DTS_HD:
193                                 hdmi_dbg(hdmi->dev, "Support audio type: DTS-HD\n");
194                                 break;
195                         case HDMI_AUDIO_MLP:
196                                 hdmi_dbg(hdmi->dev, "Support audio type: MLP\n");
197                                 break;
198                         case HDMI_AUDIO_DST:
199                                 hdmi_dbg(hdmi->dev, "Support audio type: DST\n");
200                                 break;
201                         case HDMI_AUDIO_WMA_PRO:
202                                 hdmi_dbg(hdmi->dev, "Support audio type: WMP-PRO\n");
203                                 break;
204                         default:
205                                 hdmi_dbg(hdmi->dev, "Support audio type: Unkown\n");
206                                 break;
207                 }
208                 
209                 hdmi_dbg(hdmi->dev, "Support audio sample rate: \n");
210                 if(audio->rate & HDMI_AUDIO_FS_32000)
211                         hdmi_dbg(hdmi->dev, "   32000\n");
212                 if(audio->rate & HDMI_AUDIO_FS_44100)
213                         hdmi_dbg(hdmi->dev, "   44100\n");
214                 if(audio->rate & HDMI_AUDIO_FS_48000)
215                         hdmi_dbg(hdmi->dev, "   48000\n");
216                 if(audio->rate & HDMI_AUDIO_FS_88200)
217                         hdmi_dbg(hdmi->dev, "   88200\n");
218                 if(audio->rate & HDMI_AUDIO_FS_96000)
219                         hdmi_dbg(hdmi->dev, "   96000\n");
220                 if(audio->rate & HDMI_AUDIO_FS_176400)
221                         hdmi_dbg(hdmi->dev, "   176400\n");
222                 if(audio->rate & HDMI_AUDIO_FS_192000)
223                         hdmi_dbg(hdmi->dev, "   192000\n");
224                 
225                 hdmi_dbg(hdmi->dev, "Support audio word lenght: \n");
226                 if(audio->rate & HDMI_AUDIO_WORD_LENGTH_16bit)
227                         hdmi_dbg(hdmi->dev, "   16bit\n");
228                 if(audio->rate & HDMI_AUDIO_WORD_LENGTH_20bit)
229                         hdmi_dbg(hdmi->dev, "   20bit\n");
230                 if(audio->rate & HDMI_AUDIO_WORD_LENGTH_24bit)
231                         hdmi_dbg(hdmi->dev, "   24bit\n");
232         }
233         hdmi_dbg(hdmi->dev, "******** Show Sink Info ********\n");
234 }
235
236 /**
237  * hdmi_ouputmode_select - select hdmi transmitter output mode: hdmi or dvi?
238  * @hdmi: handle of hdmi
239  * @edid_ok: get EDID data success or not, HDMI_ERROR_SUCESS means success.
240  */
241 int hdmi_ouputmode_select(struct hdmi *hdmi, int edid_ok)
242 {
243         struct list_head *head = &hdmi->edid.modelist;
244         struct fb_monspecs      *specs = hdmi->edid.specs;
245         struct fb_videomode *modedb = NULL;
246         int i, pixclock;
247         
248         if(edid_ok != HDMI_ERROR_SUCESS) {
249                 dev_err(hdmi->dev, "warning: EDID error, assume sink as HDMI !!!!");
250                 hdmi->edid.sink_hdmi = 1;
251         }
252
253         if(edid_ok != HDMI_ERROR_SUCESS) {
254                 hdmi->edid.ycbcr444 = 0;
255                 hdmi->edid.ycbcr422 = 0;
256                 hdmi->autoconfig = HDMI_DISABLE;
257         }
258         if(head->next == head) {
259                 dev_info(hdmi->dev, "warning: no CEA video mode parsed from EDID !!!!");
260                 // If EDID get error, list all system supported mode.
261                 // If output mode is set to DVI and EDID is ok, check
262                 // the output timing.
263                 
264                 if(hdmi->edid.sink_hdmi == 0 && specs && specs->modedb_len) {
265                         /* Get max resolution timing */
266                         modedb = &specs->modedb[0];
267                         for (i = 0; i < specs->modedb_len; i++) {
268                                 if(specs->modedb[i].xres > modedb->xres)
269                                         modedb = &specs->modedb[i];
270                                 else if(specs->modedb[i].yres > modedb->yres)
271                                         modedb = &specs->modedb[i];
272                         }
273                         // For some monitor, the max pixclock read from EDID is smaller
274                         // than the clock of max resolution mode supported. We fix it.
275                         pixclock = PICOS2KHZ(modedb->pixclock);
276                         pixclock /= 250;
277                         pixclock *= 250;
278                         pixclock *= 1000;
279                         if(pixclock == 148250000)
280                                 pixclock = 148500000;
281                         if(pixclock > specs->dclkmax)
282                                 specs->dclkmax = pixclock;
283                 }
284                 
285                 for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++) {
286                         if(modedb) {
287                                 if( (hdmi_mode[i].pixclock < specs->dclkmin) || 
288                                         (hdmi_mode[i].pixclock > specs->dclkmax) || 
289                                         (hdmi_mode[i].refresh < specs->vfmin) ||
290                                         (hdmi_mode[i].refresh > specs->vfmax) ||
291                                         (hdmi_mode[i].xres > modedb->xres) ||
292                                         (hdmi_mode[i].yres > modedb->yres) )
293                                 continue;
294                         }
295                         hdmi_add_videomode(&hdmi_mode[i], head);
296                 }
297         }
298         
299         #ifdef HDMI_DEBUG
300         hdmi_show_sink_info(hdmi);
301         #endif
302         return HDMI_ERROR_SUCESS;
303 }
304 /**
305  * hdmi_videomode_compare - compare 2 videomodes
306  * @mode1: first videomode
307  * @mode2: second videomode
308  *
309  * RETURNS:
310  * 1 if mode1 > mode2, 0 if mode1 = mode2, -1 mode1 < mode2
311  */
312 static int hdmi_videomode_compare(const struct fb_videomode *mode1,
313                      const struct fb_videomode *mode2)
314 {
315         if(mode1->xres > mode2->xres)
316                 return 1;
317         else if(mode1->xres == mode2->xres)
318         { 
319                 if(mode1->yres > mode2->yres)
320                         return 1;
321                 else if(mode1->yres == mode2->yres)
322                 {
323                         if(mode1->pixclock > mode2->pixclock)   
324                                 return 1;
325                         else if(mode1->pixclock == mode2->pixclock)
326                         {       
327                                 if(mode1->refresh > mode2->refresh)
328                                         return 1;
329                                 else if(mode1->refresh == mode2->refresh) 
330                                         return 0;
331                         }
332                 }
333         }
334         return -1;              
335 }
336 /**
337  * hdmi_add_videomode: adds videomode entry to modelist
338  * @mode: videomode to add
339  * @head: struct list_head of modelist
340  *
341  * NOTES:
342  * Will only add unmatched mode entries
343  */
344 int hdmi_add_videomode(const struct fb_videomode *mode, struct list_head *head)
345 {
346         struct list_head *pos;
347         struct fb_modelist *modelist, *modelist_new;
348         struct fb_videomode *m;
349         int i, found = 0;
350
351         for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++)
352     {
353         m =(struct fb_videomode*) &hdmi_mode[i];
354         if (fb_mode_is_equal(m, mode)) {
355                         found = 1;
356                         break;
357                 }
358     }
359
360         if (found) {
361                 list_for_each(pos, head) {
362                         modelist = list_entry(pos, struct fb_modelist, list);
363                         m = &modelist->mode;
364                         if (fb_mode_is_equal(m, mode)) {
365                         // m == mode    
366                                 return 0;
367                         }
368                         else
369                         { 
370                                 if(hdmi_videomode_compare(m, mode) == -1) {
371                                         break;
372                                 }
373                         }
374                 }
375
376                 modelist_new = kmalloc(sizeof(struct fb_modelist),
377                                   GFP_KERNEL);                                  
378                 if (!modelist_new)
379                         return -ENOMEM; 
380                 modelist_new->mode = hdmi_mode[i];
381                 list_add_tail(&modelist_new->list, pos);
382         }
383         
384         return 0;
385 }
386
387 /**
388  * hdmi_videomode_to_vic: transverse video mode to vic
389  * @vmode: videomode to transverse
390  * 
391  */
392 int hdmi_videomode_to_vic(struct fb_videomode *vmode)
393 {
394         unsigned char vic = 0;
395         int i = 0;
396         
397         for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++)
398         {
399                 if(     vmode->vmode == hdmi_mode[i].vmode &&
400                         vmode->refresh == hdmi_mode[i].refresh &&
401                         vmode->xres == hdmi_mode[i].xres && 
402                         vmode->left_margin == hdmi_mode[i].left_margin &&
403                         vmode->right_margin == hdmi_mode[i].right_margin &&
404                         vmode->upper_margin == hdmi_mode[i].upper_margin &&
405                         vmode->lower_margin == hdmi_mode[i].lower_margin && 
406                         vmode->hsync_len == hdmi_mode[i].hsync_len && 
407                         vmode->vsync_len == hdmi_mode[i].vsync_len)
408                 {
409                         if( (vmode->vmode == FB_VMODE_NONINTERLACED && vmode->yres == hdmi_mode[i].yres) || 
410                                 (vmode->vmode == FB_VMODE_INTERLACED && vmode->yres == hdmi_mode[i].yres/2))
411                         {                                                               
412                                 vic = hdmi_mode[i].flag;
413                                 break;
414                         }
415                 }
416         }
417         return vic;
418 }
419
420 /**
421  * hdmi_vic_to_videomode: transverse vic mode to video mode
422  * @vmode: vic to transverse
423  * 
424  */
425 const struct fb_videomode* hdmi_vic_to_videomode(int vic)
426 {
427         int i;
428         
429         if(vic == 0)
430                 return NULL;
431         
432         for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++)
433         {
434                 if(hdmi_mode[i].flag == vic)
435                         return &hdmi_mode[i];
436         }
437         return NULL;
438 }
439
440 /**
441  * hdmi_find_best_mode: find the video mode nearest to input vic
442  * @hdmi: 
443  * @vic: input vic
444  * 
445  * NOTES:
446  * If vic is zero, return the high resolution video mode vic.
447  */
448 int hdmi_find_best_mode(struct hdmi* hdmi, int vic)
449 {
450         struct list_head *pos, *head = &hdmi->edid.modelist;
451         struct fb_modelist *modelist;
452         struct fb_videomode *m = NULL;
453         int found = 0;
454         
455         if(vic)
456         {
457                 list_for_each(pos, head) {
458                         modelist = list_entry(pos, struct fb_modelist, list);
459                         m = &modelist->mode;
460                         if(m->flag == vic)
461                         {
462                                 found = 1;      
463                                 break;
464                         }
465                 }
466         }
467         if( (vic == 0 || found == 0) && head->next != head)
468         {
469                 modelist = list_entry(head->next, struct fb_modelist, list);
470                 m = &modelist->mode;
471         }
472         if(m != NULL)
473                 return m->flag;
474         else
475                 return 0;
476 }
477
478 const char *hdmi_get_video_mode_name(unsigned char vic)
479 {
480         int i;
481         
482         for(i = 0; i < ARRAY_SIZE(hdmi_mode); i++)
483         {
484                 if(vic == hdmi_mode[i].flag)
485                         break;
486         }
487         if(i == ARRAY_SIZE(hdmi_mode))
488                 return NULL;
489         else
490                 return hdmi_mode[i].name;
491 }
492
493 /**
494  * hdmi_switch_fb: switch lcdc mode to required video mode
495  * @hdmi: 
496  * @type:
497  * 
498  * NOTES:
499  * 
500  */
501 int hdmi_switch_fb(struct hdmi *hdmi, int vic)
502 {
503         int rc = 0;
504         rk_screen *screen;
505         
506         
507         screen =  kzalloc(sizeof(struct rk29fb_screen), GFP_KERNEL);
508         if(screen == NULL)
509                 return -1;
510         
511         if(hdmi->vic == 0)
512                 hdmi->vic = HDMI_VIDEO_DEFAULT_MODE;
513                 
514
515         rc = hdmi_set_info(screen, hdmi->vic);
516
517         if(rc == 0) {
518                 if(hdmi->set_vif)
519                         hdmi->set_vif(screen,0); //turn off vif for jettab
520                 rk_fb_switch_screen(screen, 1, hdmi->lcdc->id);
521                 rk_fb_disp_scale(hdmi->xscale, hdmi->yscale, hdmi->lcdc->id);
522                 if(hdmi->set_vif)
523                         hdmi->set_vif(screen,1);
524
525         }
526         
527         kfree(screen);
528         
529         return rc;
530 }
531
532 /**
533  * hdmi_get_status: get hdmi hotplug status
534  * 
535  * NOTES:
536  * 
537  */
538 int hdmi_get_hotplug(void)
539 {
540         if(hdmi)
541                 return hdmi->hotplug;
542         else
543                 return HDMI_HPD_REMOVED;
544 }