au1200fb.c 50 KB

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  1. /*
  2. * BRIEF MODULE DESCRIPTION
  3. * Au1200 LCD Driver.
  4. *
  5. * Copyright 2004-2005 AMD
  6. * Author: AMD
  7. *
  8. * Based on:
  9. * linux/drivers/video/skeletonfb.c -- Skeleton for a frame buffer device
  10. * Created 28 Dec 1997 by Geert Uytterhoeven
  11. *
  12. * This program is free software; you can redistribute it and/or modify it
  13. * under the terms of the GNU General Public License as published by the
  14. * Free Software Foundation; either version 2 of the License, or (at your
  15. * option) any later version.
  16. *
  17. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
  18. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  19. * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN
  20. * NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
  21. * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
  22. * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
  23. * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
  24. * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  25. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
  26. * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  27. *
  28. * You should have received a copy of the GNU General Public License along
  29. * with this program; if not, write to the Free Software Foundation, Inc.,
  30. * 675 Mass Ave, Cambridge, MA 02139, USA.
  31. */
  32. #include <linux/module.h>
  33. #include <linux/platform_device.h>
  34. #include <linux/kernel.h>
  35. #include <linux/errno.h>
  36. #include <linux/string.h>
  37. #include <linux/mm.h>
  38. #include <linux/fb.h>
  39. #include <linux/init.h>
  40. #include <linux/interrupt.h>
  41. #include <linux/ctype.h>
  42. #include <linux/dma-mapping.h>
  43. #include <linux/slab.h>
  44. #include <asm/mach-au1x00/au1000.h>
  45. #include "au1200fb.h"
  46. #define DRIVER_NAME "au1200fb"
  47. #define DRIVER_DESC "LCD controller driver for AU1200 processors"
  48. #define DEBUG 0
  49. #define print_err(f, arg...) printk(KERN_ERR DRIVER_NAME ": " f "\n", ## arg)
  50. #define print_warn(f, arg...) printk(KERN_WARNING DRIVER_NAME ": " f "\n", ## arg)
  51. #define print_info(f, arg...) printk(KERN_INFO DRIVER_NAME ": " f "\n", ## arg)
  52. #if DEBUG
  53. #define print_dbg(f, arg...) printk(KERN_DEBUG __FILE__ ": " f "\n", ## arg)
  54. #else
  55. #define print_dbg(f, arg...) do {} while (0)
  56. #endif
  57. #define AU1200_LCD_FB_IOCTL 0x46FF
  58. #define AU1200_LCD_SET_SCREEN 1
  59. #define AU1200_LCD_GET_SCREEN 2
  60. #define AU1200_LCD_SET_WINDOW 3
  61. #define AU1200_LCD_GET_WINDOW 4
  62. #define AU1200_LCD_SET_PANEL 5
  63. #define AU1200_LCD_GET_PANEL 6
  64. #define SCREEN_SIZE (1<< 1)
  65. #define SCREEN_BACKCOLOR (1<< 2)
  66. #define SCREEN_BRIGHTNESS (1<< 3)
  67. #define SCREEN_COLORKEY (1<< 4)
  68. #define SCREEN_MASK (1<< 5)
  69. struct au1200_lcd_global_regs_t {
  70. unsigned int flags;
  71. unsigned int xsize;
  72. unsigned int ysize;
  73. unsigned int backcolor;
  74. unsigned int brightness;
  75. unsigned int colorkey;
  76. unsigned int mask;
  77. unsigned int panel_choice;
  78. char panel_desc[80];
  79. };
  80. #define WIN_POSITION (1<< 0)
  81. #define WIN_ALPHA_COLOR (1<< 1)
  82. #define WIN_ALPHA_MODE (1<< 2)
  83. #define WIN_PRIORITY (1<< 3)
  84. #define WIN_CHANNEL (1<< 4)
  85. #define WIN_BUFFER_FORMAT (1<< 5)
  86. #define WIN_COLOR_ORDER (1<< 6)
  87. #define WIN_PIXEL_ORDER (1<< 7)
  88. #define WIN_SIZE (1<< 8)
  89. #define WIN_COLORKEY_MODE (1<< 9)
  90. #define WIN_DOUBLE_BUFFER_MODE (1<< 10)
  91. #define WIN_RAM_ARRAY_MODE (1<< 11)
  92. #define WIN_BUFFER_SCALE (1<< 12)
  93. #define WIN_ENABLE (1<< 13)
  94. struct au1200_lcd_window_regs_t {
  95. unsigned int flags;
  96. unsigned int xpos;
  97. unsigned int ypos;
  98. unsigned int alpha_color;
  99. unsigned int alpha_mode;
  100. unsigned int priority;
  101. unsigned int channel;
  102. unsigned int buffer_format;
  103. unsigned int color_order;
  104. unsigned int pixel_order;
  105. unsigned int xsize;
  106. unsigned int ysize;
  107. unsigned int colorkey_mode;
  108. unsigned int double_buffer_mode;
  109. unsigned int ram_array_mode;
  110. unsigned int xscale;
  111. unsigned int yscale;
  112. unsigned int enable;
  113. };
  114. struct au1200_lcd_iodata_t {
  115. unsigned int subcmd;
  116. struct au1200_lcd_global_regs_t global;
  117. struct au1200_lcd_window_regs_t window;
  118. };
  119. #if defined(__BIG_ENDIAN)
  120. #define LCD_CONTROL_DEFAULT_PO LCD_CONTROL_PO_11
  121. #else
  122. #define LCD_CONTROL_DEFAULT_PO LCD_CONTROL_PO_00
  123. #endif
  124. #define LCD_CONTROL_DEFAULT_SBPPF LCD_CONTROL_SBPPF_565
  125. /* Private, per-framebuffer management information (independent of the panel itself) */
  126. struct au1200fb_device {
  127. struct fb_info *fb_info; /* FB driver info record */
  128. int plane;
  129. unsigned char* fb_mem; /* FrameBuffer memory map */
  130. unsigned int fb_len;
  131. dma_addr_t fb_phys;
  132. };
  133. /********************************************************************/
  134. /* LCD controller restrictions */
  135. #define AU1200_LCD_MAX_XRES 1280
  136. #define AU1200_LCD_MAX_YRES 1024
  137. #define AU1200_LCD_MAX_BPP 32
  138. #define AU1200_LCD_MAX_CLK 96000000 /* fixme: this needs to go away ? */
  139. #define AU1200_LCD_NBR_PALETTE_ENTRIES 256
  140. /* Default number of visible screen buffer to allocate */
  141. #define AU1200FB_NBR_VIDEO_BUFFERS 1
  142. /* Default maximum number of fb devices to create */
  143. #define MAX_DEVICE_COUNT 4
  144. /* Default window configuration entry to use (see windows[]) */
  145. #define DEFAULT_WINDOW_INDEX 2
  146. /********************************************************************/
  147. static struct fb_info *_au1200fb_infos[MAX_DEVICE_COUNT];
  148. static struct au1200_lcd *lcd = (struct au1200_lcd *) AU1200_LCD_ADDR;
  149. static int device_count = MAX_DEVICE_COUNT;
  150. static int window_index = DEFAULT_WINDOW_INDEX; /* default is zero */
  151. static int panel_index = 2; /* default is zero */
  152. static struct window_settings *win;
  153. static struct panel_settings *panel;
  154. static int noblanking = 1;
  155. static int nohwcursor = 0;
  156. struct window_settings {
  157. unsigned char name[64];
  158. uint32 mode_backcolor;
  159. uint32 mode_colorkey;
  160. uint32 mode_colorkeymsk;
  161. struct {
  162. int xres;
  163. int yres;
  164. int xpos;
  165. int ypos;
  166. uint32 mode_winctrl1; /* winctrl1[FRM,CCO,PO,PIPE] */
  167. uint32 mode_winenable;
  168. } w[4];
  169. };
  170. #if defined(__BIG_ENDIAN)
  171. #define LCD_WINCTRL1_PO_16BPP LCD_WINCTRL1_PO_00
  172. #else
  173. #define LCD_WINCTRL1_PO_16BPP LCD_WINCTRL1_PO_01
  174. #endif
  175. extern int board_au1200fb_panel_init (void);
  176. extern int board_au1200fb_panel_shutdown (void);
  177. /*
  178. * Default window configurations
  179. */
  180. static struct window_settings windows[] = {
  181. { /* Index 0 */
  182. "0-FS gfx, 1-video, 2-ovly gfx, 3-ovly gfx",
  183. /* mode_backcolor */ 0x006600ff,
  184. /* mode_colorkey,msk*/ 0, 0,
  185. {
  186. {
  187. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  188. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  189. LCD_WINCTRL1_PO_16BPP,
  190. /* mode_winenable*/ LCD_WINENABLE_WEN0,
  191. },
  192. {
  193. /* xres, yres, xpos, ypos */ 100, 100, 100, 100,
  194. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  195. LCD_WINCTRL1_PO_16BPP |
  196. LCD_WINCTRL1_PIPE,
  197. /* mode_winenable*/ LCD_WINENABLE_WEN1,
  198. },
  199. {
  200. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  201. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  202. LCD_WINCTRL1_PO_16BPP,
  203. /* mode_winenable*/ 0,
  204. },
  205. {
  206. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  207. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  208. LCD_WINCTRL1_PO_16BPP |
  209. LCD_WINCTRL1_PIPE,
  210. /* mode_winenable*/ 0,
  211. },
  212. },
  213. },
  214. { /* Index 1 */
  215. "0-FS gfx, 1-video, 2-ovly gfx, 3-ovly gfx",
  216. /* mode_backcolor */ 0x006600ff,
  217. /* mode_colorkey,msk*/ 0, 0,
  218. {
  219. {
  220. /* xres, yres, xpos, ypos */ 320, 240, 5, 5,
  221. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_24BPP |
  222. LCD_WINCTRL1_PO_00,
  223. /* mode_winenable*/ LCD_WINENABLE_WEN0,
  224. },
  225. {
  226. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  227. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565
  228. | LCD_WINCTRL1_PO_16BPP,
  229. /* mode_winenable*/ 0,
  230. },
  231. {
  232. /* xres, yres, xpos, ypos */ 100, 100, 0, 0,
  233. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  234. LCD_WINCTRL1_PO_16BPP |
  235. LCD_WINCTRL1_PIPE,
  236. /* mode_winenable*/ 0/*LCD_WINENABLE_WEN2*/,
  237. },
  238. {
  239. /* xres, yres, xpos, ypos */ 200, 25, 0, 0,
  240. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  241. LCD_WINCTRL1_PO_16BPP |
  242. LCD_WINCTRL1_PIPE,
  243. /* mode_winenable*/ 0,
  244. },
  245. },
  246. },
  247. { /* Index 2 */
  248. "0-FS gfx, 1-video, 2-ovly gfx, 3-ovly gfx",
  249. /* mode_backcolor */ 0x006600ff,
  250. /* mode_colorkey,msk*/ 0, 0,
  251. {
  252. {
  253. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  254. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  255. LCD_WINCTRL1_PO_16BPP,
  256. /* mode_winenable*/ LCD_WINENABLE_WEN0,
  257. },
  258. {
  259. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  260. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  261. LCD_WINCTRL1_PO_16BPP,
  262. /* mode_winenable*/ 0,
  263. },
  264. {
  265. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  266. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_32BPP |
  267. LCD_WINCTRL1_PO_00|LCD_WINCTRL1_PIPE,
  268. /* mode_winenable*/ 0/*LCD_WINENABLE_WEN2*/,
  269. },
  270. {
  271. /* xres, yres, xpos, ypos */ 0, 0, 0, 0,
  272. /* mode_winctrl1 */ LCD_WINCTRL1_FRM_16BPP565 |
  273. LCD_WINCTRL1_PO_16BPP |
  274. LCD_WINCTRL1_PIPE,
  275. /* mode_winenable*/ 0,
  276. },
  277. },
  278. },
  279. /* Need VGA 640 @ 24bpp, @ 32bpp */
  280. /* Need VGA 800 @ 24bpp, @ 32bpp */
  281. /* Need VGA 1024 @ 24bpp, @ 32bpp */
  282. };
  283. /*
  284. * Controller configurations for various panels.
  285. */
  286. struct panel_settings
  287. {
  288. const char name[25]; /* Full name <vendor>_<model> */
  289. struct fb_monspecs monspecs; /* FB monitor specs */
  290. /* panel timings */
  291. uint32 mode_screen;
  292. uint32 mode_horztiming;
  293. uint32 mode_verttiming;
  294. uint32 mode_clkcontrol;
  295. uint32 mode_pwmdiv;
  296. uint32 mode_pwmhi;
  297. uint32 mode_outmask;
  298. uint32 mode_fifoctrl;
  299. uint32 mode_toyclksrc;
  300. uint32 mode_backlight;
  301. uint32 mode_auxpll;
  302. int (*device_init)(void);
  303. int (*device_shutdown)(void);
  304. #define Xres min_xres
  305. #define Yres min_yres
  306. u32 min_xres; /* Minimum horizontal resolution */
  307. u32 max_xres; /* Maximum horizontal resolution */
  308. u32 min_yres; /* Minimum vertical resolution */
  309. u32 max_yres; /* Maximum vertical resolution */
  310. };
  311. /********************************************************************/
  312. /* fixme: Maybe a modedb for the CRT ? otherwise panels should be as-is */
  313. /* List of panels known to work with the AU1200 LCD controller.
  314. * To add a new panel, enter the same specifications as the
  315. * Generic_TFT one, and MAKE SURE that it doesn't conflicts
  316. * with the controller restrictions. Restrictions are:
  317. *
  318. * STN color panels: max_bpp <= 12
  319. * STN mono panels: max_bpp <= 4
  320. * TFT panels: max_bpp <= 16
  321. * max_xres <= 800
  322. * max_yres <= 600
  323. */
  324. static struct panel_settings known_lcd_panels[] =
  325. {
  326. [0] = { /* QVGA 320x240 H:33.3kHz V:110Hz */
  327. .name = "QVGA_320x240",
  328. .monspecs = {
  329. .modedb = NULL,
  330. .modedb_len = 0,
  331. .hfmin = 30000,
  332. .hfmax = 70000,
  333. .vfmin = 60,
  334. .vfmax = 60,
  335. .dclkmin = 6000000,
  336. .dclkmax = 28000000,
  337. .input = FB_DISP_RGB,
  338. },
  339. .mode_screen = LCD_SCREEN_SX_N(320) |
  340. LCD_SCREEN_SY_N(240),
  341. .mode_horztiming = 0x00c4623b,
  342. .mode_verttiming = 0x00502814,
  343. .mode_clkcontrol = 0x00020002, /* /4=24Mhz */
  344. .mode_pwmdiv = 0x00000000,
  345. .mode_pwmhi = 0x00000000,
  346. .mode_outmask = 0x00FFFFFF,
  347. .mode_fifoctrl = 0x2f2f2f2f,
  348. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  349. .mode_backlight = 0x00000000,
  350. .mode_auxpll = 8, /* 96MHz AUXPLL */
  351. .device_init = NULL,
  352. .device_shutdown = NULL,
  353. 320, 320,
  354. 240, 240,
  355. },
  356. [1] = { /* VGA 640x480 H:30.3kHz V:58Hz */
  357. .name = "VGA_640x480",
  358. .monspecs = {
  359. .modedb = NULL,
  360. .modedb_len = 0,
  361. .hfmin = 30000,
  362. .hfmax = 70000,
  363. .vfmin = 60,
  364. .vfmax = 60,
  365. .dclkmin = 6000000,
  366. .dclkmax = 28000000,
  367. .input = FB_DISP_RGB,
  368. },
  369. .mode_screen = 0x13f9df80,
  370. .mode_horztiming = 0x003c5859,
  371. .mode_verttiming = 0x00741201,
  372. .mode_clkcontrol = 0x00020001, /* /4=24Mhz */
  373. .mode_pwmdiv = 0x00000000,
  374. .mode_pwmhi = 0x00000000,
  375. .mode_outmask = 0x00FFFFFF,
  376. .mode_fifoctrl = 0x2f2f2f2f,
  377. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  378. .mode_backlight = 0x00000000,
  379. .mode_auxpll = 8, /* 96MHz AUXPLL */
  380. .device_init = NULL,
  381. .device_shutdown = NULL,
  382. 640, 480,
  383. 640, 480,
  384. },
  385. [2] = { /* SVGA 800x600 H:46.1kHz V:69Hz */
  386. .name = "SVGA_800x600",
  387. .monspecs = {
  388. .modedb = NULL,
  389. .modedb_len = 0,
  390. .hfmin = 30000,
  391. .hfmax = 70000,
  392. .vfmin = 60,
  393. .vfmax = 60,
  394. .dclkmin = 6000000,
  395. .dclkmax = 28000000,
  396. .input = FB_DISP_RGB,
  397. },
  398. .mode_screen = 0x18fa5780,
  399. .mode_horztiming = 0x00dc7e77,
  400. .mode_verttiming = 0x00584805,
  401. .mode_clkcontrol = 0x00020000, /* /2=48Mhz */
  402. .mode_pwmdiv = 0x00000000,
  403. .mode_pwmhi = 0x00000000,
  404. .mode_outmask = 0x00FFFFFF,
  405. .mode_fifoctrl = 0x2f2f2f2f,
  406. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  407. .mode_backlight = 0x00000000,
  408. .mode_auxpll = 8, /* 96MHz AUXPLL */
  409. .device_init = NULL,
  410. .device_shutdown = NULL,
  411. 800, 800,
  412. 600, 600,
  413. },
  414. [3] = { /* XVGA 1024x768 H:56.2kHz V:70Hz */
  415. .name = "XVGA_1024x768",
  416. .monspecs = {
  417. .modedb = NULL,
  418. .modedb_len = 0,
  419. .hfmin = 30000,
  420. .hfmax = 70000,
  421. .vfmin = 60,
  422. .vfmax = 60,
  423. .dclkmin = 6000000,
  424. .dclkmax = 28000000,
  425. .input = FB_DISP_RGB,
  426. },
  427. .mode_screen = 0x1ffaff80,
  428. .mode_horztiming = 0x007d0e57,
  429. .mode_verttiming = 0x00740a01,
  430. .mode_clkcontrol = 0x000A0000, /* /1 */
  431. .mode_pwmdiv = 0x00000000,
  432. .mode_pwmhi = 0x00000000,
  433. .mode_outmask = 0x00FFFFFF,
  434. .mode_fifoctrl = 0x2f2f2f2f,
  435. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  436. .mode_backlight = 0x00000000,
  437. .mode_auxpll = 6, /* 72MHz AUXPLL */
  438. .device_init = NULL,
  439. .device_shutdown = NULL,
  440. 1024, 1024,
  441. 768, 768,
  442. },
  443. [4] = { /* XVGA XVGA 1280x1024 H:68.5kHz V:65Hz */
  444. .name = "XVGA_1280x1024",
  445. .monspecs = {
  446. .modedb = NULL,
  447. .modedb_len = 0,
  448. .hfmin = 30000,
  449. .hfmax = 70000,
  450. .vfmin = 60,
  451. .vfmax = 60,
  452. .dclkmin = 6000000,
  453. .dclkmax = 28000000,
  454. .input = FB_DISP_RGB,
  455. },
  456. .mode_screen = 0x27fbff80,
  457. .mode_horztiming = 0x00cdb2c7,
  458. .mode_verttiming = 0x00600002,
  459. .mode_clkcontrol = 0x000A0000, /* /1 */
  460. .mode_pwmdiv = 0x00000000,
  461. .mode_pwmhi = 0x00000000,
  462. .mode_outmask = 0x00FFFFFF,
  463. .mode_fifoctrl = 0x2f2f2f2f,
  464. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  465. .mode_backlight = 0x00000000,
  466. .mode_auxpll = 10, /* 120MHz AUXPLL */
  467. .device_init = NULL,
  468. .device_shutdown = NULL,
  469. 1280, 1280,
  470. 1024, 1024,
  471. },
  472. [5] = { /* Samsung 1024x768 TFT */
  473. .name = "Samsung_1024x768_TFT",
  474. .monspecs = {
  475. .modedb = NULL,
  476. .modedb_len = 0,
  477. .hfmin = 30000,
  478. .hfmax = 70000,
  479. .vfmin = 60,
  480. .vfmax = 60,
  481. .dclkmin = 6000000,
  482. .dclkmax = 28000000,
  483. .input = FB_DISP_RGB,
  484. },
  485. .mode_screen = 0x1ffaff80,
  486. .mode_horztiming = 0x018cc677,
  487. .mode_verttiming = 0x00241217,
  488. .mode_clkcontrol = 0x00000000, /* SCB 0x1 /4=24Mhz */
  489. .mode_pwmdiv = 0x8000063f, /* SCB 0x0 */
  490. .mode_pwmhi = 0x03400000, /* SCB 0x0 */
  491. .mode_outmask = 0x00FFFFFF,
  492. .mode_fifoctrl = 0x2f2f2f2f,
  493. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  494. .mode_backlight = 0x00000000,
  495. .mode_auxpll = 8, /* 96MHz AUXPLL */
  496. .device_init = board_au1200fb_panel_init,
  497. .device_shutdown = board_au1200fb_panel_shutdown,
  498. 1024, 1024,
  499. 768, 768,
  500. },
  501. [6] = { /* Toshiba 640x480 TFT */
  502. .name = "Toshiba_640x480_TFT",
  503. .monspecs = {
  504. .modedb = NULL,
  505. .modedb_len = 0,
  506. .hfmin = 30000,
  507. .hfmax = 70000,
  508. .vfmin = 60,
  509. .vfmax = 60,
  510. .dclkmin = 6000000,
  511. .dclkmax = 28000000,
  512. .input = FB_DISP_RGB,
  513. },
  514. .mode_screen = LCD_SCREEN_SX_N(640) |
  515. LCD_SCREEN_SY_N(480),
  516. .mode_horztiming = LCD_HORZTIMING_HPW_N(96) |
  517. LCD_HORZTIMING_HND1_N(13) | LCD_HORZTIMING_HND2_N(51),
  518. .mode_verttiming = LCD_VERTTIMING_VPW_N(2) |
  519. LCD_VERTTIMING_VND1_N(11) | LCD_VERTTIMING_VND2_N(32),
  520. .mode_clkcontrol = 0x00000000, /* /4=24Mhz */
  521. .mode_pwmdiv = 0x8000063f,
  522. .mode_pwmhi = 0x03400000,
  523. .mode_outmask = 0x00fcfcfc,
  524. .mode_fifoctrl = 0x2f2f2f2f,
  525. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  526. .mode_backlight = 0x00000000,
  527. .mode_auxpll = 8, /* 96MHz AUXPLL */
  528. .device_init = board_au1200fb_panel_init,
  529. .device_shutdown = board_au1200fb_panel_shutdown,
  530. 640, 480,
  531. 640, 480,
  532. },
  533. [7] = { /* Sharp 320x240 TFT */
  534. .name = "Sharp_320x240_TFT",
  535. .monspecs = {
  536. .modedb = NULL,
  537. .modedb_len = 0,
  538. .hfmin = 12500,
  539. .hfmax = 20000,
  540. .vfmin = 38,
  541. .vfmax = 81,
  542. .dclkmin = 4500000,
  543. .dclkmax = 6800000,
  544. .input = FB_DISP_RGB,
  545. },
  546. .mode_screen = LCD_SCREEN_SX_N(320) |
  547. LCD_SCREEN_SY_N(240),
  548. .mode_horztiming = LCD_HORZTIMING_HPW_N(60) |
  549. LCD_HORZTIMING_HND1_N(13) | LCD_HORZTIMING_HND2_N(2),
  550. .mode_verttiming = LCD_VERTTIMING_VPW_N(2) |
  551. LCD_VERTTIMING_VND1_N(2) | LCD_VERTTIMING_VND2_N(5),
  552. .mode_clkcontrol = LCD_CLKCONTROL_PCD_N(7), /*16=6Mhz*/
  553. .mode_pwmdiv = 0x8000063f,
  554. .mode_pwmhi = 0x03400000,
  555. .mode_outmask = 0x00fcfcfc,
  556. .mode_fifoctrl = 0x2f2f2f2f,
  557. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  558. .mode_backlight = 0x00000000,
  559. .mode_auxpll = 8, /* 96MHz AUXPLL */
  560. .device_init = board_au1200fb_panel_init,
  561. .device_shutdown = board_au1200fb_panel_shutdown,
  562. 320, 320,
  563. 240, 240,
  564. },
  565. [8] = { /* Toppoly TD070WGCB2 7" 856x480 TFT */
  566. .name = "Toppoly_TD070WGCB2",
  567. .monspecs = {
  568. .modedb = NULL,
  569. .modedb_len = 0,
  570. .hfmin = 30000,
  571. .hfmax = 70000,
  572. .vfmin = 60,
  573. .vfmax = 60,
  574. .dclkmin = 6000000,
  575. .dclkmax = 28000000,
  576. .input = FB_DISP_RGB,
  577. },
  578. .mode_screen = LCD_SCREEN_SX_N(856) |
  579. LCD_SCREEN_SY_N(480),
  580. .mode_horztiming = LCD_HORZTIMING_HND2_N(43) |
  581. LCD_HORZTIMING_HND1_N(43) | LCD_HORZTIMING_HPW_N(114),
  582. .mode_verttiming = LCD_VERTTIMING_VND2_N(20) |
  583. LCD_VERTTIMING_VND1_N(21) | LCD_VERTTIMING_VPW_N(4),
  584. .mode_clkcontrol = 0x00020001, /* /4=24Mhz */
  585. .mode_pwmdiv = 0x8000063f,
  586. .mode_pwmhi = 0x03400000,
  587. .mode_outmask = 0x00fcfcfc,
  588. .mode_fifoctrl = 0x2f2f2f2f,
  589. .mode_toyclksrc = 0x00000004, /* AUXPLL directly */
  590. .mode_backlight = 0x00000000,
  591. .mode_auxpll = 8, /* 96MHz AUXPLL */
  592. .device_init = board_au1200fb_panel_init,
  593. .device_shutdown = board_au1200fb_panel_shutdown,
  594. 856, 856,
  595. 480, 480,
  596. },
  597. };
  598. #define NUM_PANELS (ARRAY_SIZE(known_lcd_panels))
  599. /********************************************************************/
  600. static int winbpp (unsigned int winctrl1)
  601. {
  602. int bits = 0;
  603. /* how many bits are needed for each pixel format */
  604. switch (winctrl1 & LCD_WINCTRL1_FRM) {
  605. case LCD_WINCTRL1_FRM_1BPP:
  606. bits = 1;
  607. break;
  608. case LCD_WINCTRL1_FRM_2BPP:
  609. bits = 2;
  610. break;
  611. case LCD_WINCTRL1_FRM_4BPP:
  612. bits = 4;
  613. break;
  614. case LCD_WINCTRL1_FRM_8BPP:
  615. bits = 8;
  616. break;
  617. case LCD_WINCTRL1_FRM_12BPP:
  618. case LCD_WINCTRL1_FRM_16BPP655:
  619. case LCD_WINCTRL1_FRM_16BPP565:
  620. case LCD_WINCTRL1_FRM_16BPP556:
  621. case LCD_WINCTRL1_FRM_16BPPI1555:
  622. case LCD_WINCTRL1_FRM_16BPPI5551:
  623. case LCD_WINCTRL1_FRM_16BPPA1555:
  624. case LCD_WINCTRL1_FRM_16BPPA5551:
  625. bits = 16;
  626. break;
  627. case LCD_WINCTRL1_FRM_24BPP:
  628. case LCD_WINCTRL1_FRM_32BPP:
  629. bits = 32;
  630. break;
  631. }
  632. return bits;
  633. }
  634. static int fbinfo2index (struct fb_info *fb_info)
  635. {
  636. int i;
  637. for (i = 0; i < device_count; ++i) {
  638. if (fb_info == _au1200fb_infos[i])
  639. return i;
  640. }
  641. printk("au1200fb: ERROR: fbinfo2index failed!\n");
  642. return -1;
  643. }
  644. static int au1200_setlocation (struct au1200fb_device *fbdev, int plane,
  645. int xpos, int ypos)
  646. {
  647. uint32 winctrl0, winctrl1, winenable, fb_offset = 0;
  648. int xsz, ysz;
  649. /* FIX!!! NOT CHECKING FOR COMPLETE OFFSCREEN YET */
  650. winctrl0 = lcd->window[plane].winctrl0;
  651. winctrl1 = lcd->window[plane].winctrl1;
  652. winctrl0 &= (LCD_WINCTRL0_A | LCD_WINCTRL0_AEN);
  653. winctrl1 &= ~(LCD_WINCTRL1_SZX | LCD_WINCTRL1_SZY);
  654. /* Check for off-screen adjustments */
  655. xsz = win->w[plane].xres;
  656. ysz = win->w[plane].yres;
  657. if ((xpos + win->w[plane].xres) > panel->Xres) {
  658. /* Off-screen to the right */
  659. xsz = panel->Xres - xpos; /* off by 1 ??? */
  660. /*printk("off screen right\n");*/
  661. }
  662. if ((ypos + win->w[plane].yres) > panel->Yres) {
  663. /* Off-screen to the bottom */
  664. ysz = panel->Yres - ypos; /* off by 1 ??? */
  665. /*printk("off screen bottom\n");*/
  666. }
  667. if (xpos < 0) {
  668. /* Off-screen to the left */
  669. xsz = win->w[plane].xres + xpos;
  670. fb_offset += (((0 - xpos) * winbpp(lcd->window[plane].winctrl1))/8);
  671. xpos = 0;
  672. /*printk("off screen left\n");*/
  673. }
  674. if (ypos < 0) {
  675. /* Off-screen to the top */
  676. ysz = win->w[plane].yres + ypos;
  677. /* fixme: fb_offset += ((0-ypos)*fb_pars[plane].line_length); */
  678. ypos = 0;
  679. /*printk("off screen top\n");*/
  680. }
  681. /* record settings */
  682. win->w[plane].xpos = xpos;
  683. win->w[plane].ypos = ypos;
  684. xsz -= 1;
  685. ysz -= 1;
  686. winctrl0 |= (xpos << 21);
  687. winctrl0 |= (ypos << 10);
  688. winctrl1 |= (xsz << 11);
  689. winctrl1 |= (ysz << 0);
  690. /* Disable the window while making changes, then restore WINEN */
  691. winenable = lcd->winenable & (1 << plane);
  692. au_sync();
  693. lcd->winenable &= ~(1 << plane);
  694. lcd->window[plane].winctrl0 = winctrl0;
  695. lcd->window[plane].winctrl1 = winctrl1;
  696. lcd->window[plane].winbuf0 =
  697. lcd->window[plane].winbuf1 = fbdev->fb_phys;
  698. lcd->window[plane].winbufctrl = 0; /* select winbuf0 */
  699. lcd->winenable |= winenable;
  700. au_sync();
  701. return 0;
  702. }
  703. static void au1200_setpanel (struct panel_settings *newpanel)
  704. {
  705. /*
  706. * Perform global setup/init of LCD controller
  707. */
  708. uint32 winenable;
  709. /* Make sure all windows disabled */
  710. winenable = lcd->winenable;
  711. lcd->winenable = 0;
  712. au_sync();
  713. /*
  714. * Ensure everything is disabled before reconfiguring
  715. */
  716. if (lcd->screen & LCD_SCREEN_SEN) {
  717. /* Wait for vertical sync period */
  718. lcd->intstatus = LCD_INT_SS;
  719. while ((lcd->intstatus & LCD_INT_SS) == 0) {
  720. au_sync();
  721. }
  722. lcd->screen &= ~LCD_SCREEN_SEN; /*disable the controller*/
  723. do {
  724. lcd->intstatus = lcd->intstatus; /*clear interrupts*/
  725. au_sync();
  726. /*wait for controller to shut down*/
  727. } while ((lcd->intstatus & LCD_INT_SD) == 0);
  728. /* Call shutdown of current panel (if up) */
  729. /* this must occur last, because if an external clock is driving
  730. the controller, the clock cannot be turned off before first
  731. shutting down the controller.
  732. */
  733. if (panel->device_shutdown != NULL)
  734. panel->device_shutdown();
  735. }
  736. /* Newpanel == NULL indicates a shutdown operation only */
  737. if (newpanel == NULL)
  738. return;
  739. panel = newpanel;
  740. printk("Panel(%s), %dx%d\n", panel->name, panel->Xres, panel->Yres);
  741. /*
  742. * Setup clocking if internal LCD clock source (assumes sys_auxpll valid)
  743. */
  744. if (!(panel->mode_clkcontrol & LCD_CLKCONTROL_EXT))
  745. {
  746. uint32 sys_clksrc;
  747. au_writel(panel->mode_auxpll, SYS_AUXPLL);
  748. sys_clksrc = au_readl(SYS_CLKSRC) & ~0x0000001f;
  749. sys_clksrc |= panel->mode_toyclksrc;
  750. au_writel(sys_clksrc, SYS_CLKSRC);
  751. }
  752. /*
  753. * Configure panel timings
  754. */
  755. lcd->screen = panel->mode_screen;
  756. lcd->horztiming = panel->mode_horztiming;
  757. lcd->verttiming = panel->mode_verttiming;
  758. lcd->clkcontrol = panel->mode_clkcontrol;
  759. lcd->pwmdiv = panel->mode_pwmdiv;
  760. lcd->pwmhi = panel->mode_pwmhi;
  761. lcd->outmask = panel->mode_outmask;
  762. lcd->fifoctrl = panel->mode_fifoctrl;
  763. au_sync();
  764. /* fixme: Check window settings to make sure still valid
  765. * for new geometry */
  766. #if 0
  767. au1200_setlocation(fbdev, 0, win->w[0].xpos, win->w[0].ypos);
  768. au1200_setlocation(fbdev, 1, win->w[1].xpos, win->w[1].ypos);
  769. au1200_setlocation(fbdev, 2, win->w[2].xpos, win->w[2].ypos);
  770. au1200_setlocation(fbdev, 3, win->w[3].xpos, win->w[3].ypos);
  771. #endif
  772. lcd->winenable = winenable;
  773. /*
  774. * Re-enable screen now that it is configured
  775. */
  776. lcd->screen |= LCD_SCREEN_SEN;
  777. au_sync();
  778. /* Call init of panel */
  779. if (panel->device_init != NULL) panel->device_init();
  780. /* FIX!!!! not appropriate on panel change!!! Global setup/init */
  781. lcd->intenable = 0;
  782. lcd->intstatus = ~0;
  783. lcd->backcolor = win->mode_backcolor;
  784. /* Setup Color Key - FIX!!! */
  785. lcd->colorkey = win->mode_colorkey;
  786. lcd->colorkeymsk = win->mode_colorkeymsk;
  787. /* Setup HWCursor - FIX!!! Need to support this eventually */
  788. lcd->hwc.cursorctrl = 0;
  789. lcd->hwc.cursorpos = 0;
  790. lcd->hwc.cursorcolor0 = 0;
  791. lcd->hwc.cursorcolor1 = 0;
  792. lcd->hwc.cursorcolor2 = 0;
  793. lcd->hwc.cursorcolor3 = 0;
  794. #if 0
  795. #define D(X) printk("%25s: %08X\n", #X, X)
  796. D(lcd->screen);
  797. D(lcd->horztiming);
  798. D(lcd->verttiming);
  799. D(lcd->clkcontrol);
  800. D(lcd->pwmdiv);
  801. D(lcd->pwmhi);
  802. D(lcd->outmask);
  803. D(lcd->fifoctrl);
  804. D(lcd->window[0].winctrl0);
  805. D(lcd->window[0].winctrl1);
  806. D(lcd->window[0].winctrl2);
  807. D(lcd->window[0].winbuf0);
  808. D(lcd->window[0].winbuf1);
  809. D(lcd->window[0].winbufctrl);
  810. D(lcd->window[1].winctrl0);
  811. D(lcd->window[1].winctrl1);
  812. D(lcd->window[1].winctrl2);
  813. D(lcd->window[1].winbuf0);
  814. D(lcd->window[1].winbuf1);
  815. D(lcd->window[1].winbufctrl);
  816. D(lcd->window[2].winctrl0);
  817. D(lcd->window[2].winctrl1);
  818. D(lcd->window[2].winctrl2);
  819. D(lcd->window[2].winbuf0);
  820. D(lcd->window[2].winbuf1);
  821. D(lcd->window[2].winbufctrl);
  822. D(lcd->window[3].winctrl0);
  823. D(lcd->window[3].winctrl1);
  824. D(lcd->window[3].winctrl2);
  825. D(lcd->window[3].winbuf0);
  826. D(lcd->window[3].winbuf1);
  827. D(lcd->window[3].winbufctrl);
  828. D(lcd->winenable);
  829. D(lcd->intenable);
  830. D(lcd->intstatus);
  831. D(lcd->backcolor);
  832. D(lcd->winenable);
  833. D(lcd->colorkey);
  834. D(lcd->colorkeymsk);
  835. D(lcd->hwc.cursorctrl);
  836. D(lcd->hwc.cursorpos);
  837. D(lcd->hwc.cursorcolor0);
  838. D(lcd->hwc.cursorcolor1);
  839. D(lcd->hwc.cursorcolor2);
  840. D(lcd->hwc.cursorcolor3);
  841. #endif
  842. }
  843. static void au1200_setmode(struct au1200fb_device *fbdev)
  844. {
  845. int plane = fbdev->plane;
  846. /* Window/plane setup */
  847. lcd->window[plane].winctrl1 = ( 0
  848. | LCD_WINCTRL1_PRI_N(plane)
  849. | win->w[plane].mode_winctrl1 /* FRM,CCO,PO,PIPE */
  850. ) ;
  851. au1200_setlocation(fbdev, plane, win->w[plane].xpos, win->w[plane].ypos);
  852. lcd->window[plane].winctrl2 = ( 0
  853. | LCD_WINCTRL2_CKMODE_00
  854. | LCD_WINCTRL2_DBM
  855. | LCD_WINCTRL2_BX_N(fbdev->fb_info->fix.line_length)
  856. | LCD_WINCTRL2_SCX_1
  857. | LCD_WINCTRL2_SCY_1
  858. ) ;
  859. lcd->winenable |= win->w[plane].mode_winenable;
  860. au_sync();
  861. }
  862. /* Inline helpers */
  863. /*#define panel_is_dual(panel) ((panel->mode_screen & LCD_SCREEN_PT) == LCD_SCREEN_PT_010)*/
  864. /*#define panel_is_active(panel)((panel->mode_screen & LCD_SCREEN_PT) == LCD_SCREEN_PT_010)*/
  865. #define panel_is_color(panel) ((panel->mode_screen & LCD_SCREEN_PT) <= LCD_SCREEN_PT_CDSTN)
  866. /* Bitfields format supported by the controller. */
  867. static struct fb_bitfield rgb_bitfields[][4] = {
  868. /* Red, Green, Blue, Transp */
  869. [LCD_WINCTRL1_FRM_16BPP655 >> 25] =
  870. { { 10, 6, 0 }, { 5, 5, 0 }, { 0, 5, 0 }, { 0, 0, 0 } },
  871. [LCD_WINCTRL1_FRM_16BPP565 >> 25] =
  872. { { 11, 5, 0 }, { 5, 6, 0 }, { 0, 5, 0 }, { 0, 0, 0 } },
  873. [LCD_WINCTRL1_FRM_16BPP556 >> 25] =
  874. { { 11, 5, 0 }, { 6, 5, 0 }, { 0, 6, 0 }, { 0, 0, 0 } },
  875. [LCD_WINCTRL1_FRM_16BPPI1555 >> 25] =
  876. { { 10, 5, 0 }, { 5, 5, 0 }, { 0, 5, 0 }, { 0, 0, 0 } },
  877. [LCD_WINCTRL1_FRM_16BPPI5551 >> 25] =
  878. { { 11, 5, 0 }, { 6, 5, 0 }, { 1, 5, 0 }, { 0, 0, 0 } },
  879. [LCD_WINCTRL1_FRM_16BPPA1555 >> 25] =
  880. { { 10, 5, 0 }, { 5, 5, 0 }, { 0, 5, 0 }, { 15, 1, 0 } },
  881. [LCD_WINCTRL1_FRM_16BPPA5551 >> 25] =
  882. { { 11, 5, 0 }, { 6, 5, 0 }, { 1, 5, 0 }, { 0, 1, 0 } },
  883. [LCD_WINCTRL1_FRM_24BPP >> 25] =
  884. { { 16, 8, 0 }, { 8, 8, 0 }, { 0, 8, 0 }, { 0, 0, 0 } },
  885. [LCD_WINCTRL1_FRM_32BPP >> 25] =
  886. { { 16, 8, 0 }, { 8, 8, 0 }, { 0, 8, 0 }, { 24, 0, 0 } },
  887. };
  888. /*-------------------------------------------------------------------------*/
  889. /* Helpers */
  890. static void au1200fb_update_fbinfo(struct fb_info *fbi)
  891. {
  892. /* FIX!!!! This also needs to take the window pixel format into account!!! */
  893. /* Update var-dependent FB info */
  894. if (panel_is_color(panel)) {
  895. if (fbi->var.bits_per_pixel <= 8) {
  896. /* palettized */
  897. fbi->fix.visual = FB_VISUAL_PSEUDOCOLOR;
  898. fbi->fix.line_length = fbi->var.xres_virtual /
  899. (8/fbi->var.bits_per_pixel);
  900. } else {
  901. /* non-palettized */
  902. fbi->fix.visual = FB_VISUAL_TRUECOLOR;
  903. fbi->fix.line_length = fbi->var.xres_virtual * (fbi->var.bits_per_pixel / 8);
  904. }
  905. } else {
  906. /* mono FIX!!! mono 8 and 4 bits */
  907. fbi->fix.visual = FB_VISUAL_MONO10;
  908. fbi->fix.line_length = fbi->var.xres_virtual / 8;
  909. }
  910. fbi->screen_size = fbi->fix.line_length * fbi->var.yres_virtual;
  911. print_dbg("line length: %d\n", fbi->fix.line_length);
  912. print_dbg("bits_per_pixel: %d\n", fbi->var.bits_per_pixel);
  913. }
  914. /*-------------------------------------------------------------------------*/
  915. /* AU1200 framebuffer driver */
  916. /* fb_check_var
  917. * Validate var settings with hardware restrictions and modify it if necessary
  918. */
  919. static int au1200fb_fb_check_var(struct fb_var_screeninfo *var,
  920. struct fb_info *fbi)
  921. {
  922. struct au1200fb_device *fbdev = fbi->par;
  923. u32 pixclock;
  924. int screen_size, plane;
  925. plane = fbdev->plane;
  926. /* Make sure that the mode respect all LCD controller and
  927. * panel restrictions. */
  928. var->xres = win->w[plane].xres;
  929. var->yres = win->w[plane].yres;
  930. /* No need for virtual resolution support */
  931. var->xres_virtual = var->xres;
  932. var->yres_virtual = var->yres;
  933. var->bits_per_pixel = winbpp(win->w[plane].mode_winctrl1);
  934. screen_size = var->xres_virtual * var->yres_virtual;
  935. if (var->bits_per_pixel > 8) screen_size *= (var->bits_per_pixel / 8);
  936. else screen_size /= (8/var->bits_per_pixel);
  937. if (fbdev->fb_len < screen_size)
  938. return -EINVAL; /* Virtual screen is to big, abort */
  939. /* FIX!!!! what are the implicaitons of ignoring this for windows ??? */
  940. /* The max LCD clock is fixed to 48MHz (value of AUX_CLK). The pixel
  941. * clock can only be obtain by dividing this value by an even integer.
  942. * Fallback to a slower pixel clock if necessary. */
  943. pixclock = max((u32)(PICOS2KHZ(var->pixclock) * 1000), fbi->monspecs.dclkmin);
  944. pixclock = min3(pixclock, fbi->monspecs.dclkmax, (u32)AU1200_LCD_MAX_CLK/2);
  945. if (AU1200_LCD_MAX_CLK % pixclock) {
  946. int diff = AU1200_LCD_MAX_CLK % pixclock;
  947. pixclock -= diff;
  948. }
  949. var->pixclock = KHZ2PICOS(pixclock/1000);
  950. #if 0
  951. if (!panel_is_active(panel)) {
  952. int pcd = AU1200_LCD_MAX_CLK / (pixclock * 2) - 1;
  953. if (!panel_is_color(panel)
  954. && (panel->control_base & LCD_CONTROL_MPI) && (pcd < 3)) {
  955. /* STN 8bit mono panel support is up to 6MHz pixclock */
  956. var->pixclock = KHZ2PICOS(6000);
  957. } else if (!pcd) {
  958. /* Other STN panel support is up to 12MHz */
  959. var->pixclock = KHZ2PICOS(12000);
  960. }
  961. }
  962. #endif
  963. /* Set bitfield accordingly */
  964. switch (var->bits_per_pixel) {
  965. case 16:
  966. {
  967. /* 16bpp True color.
  968. * These must be set to MATCH WINCTRL[FORM] */
  969. int idx;
  970. idx = (win->w[0].mode_winctrl1 & LCD_WINCTRL1_FRM) >> 25;
  971. var->red = rgb_bitfields[idx][0];
  972. var->green = rgb_bitfields[idx][1];
  973. var->blue = rgb_bitfields[idx][2];
  974. var->transp = rgb_bitfields[idx][3];
  975. break;
  976. }
  977. case 32:
  978. {
  979. /* 32bpp True color.
  980. * These must be set to MATCH WINCTRL[FORM] */
  981. int idx;
  982. idx = (win->w[0].mode_winctrl1 & LCD_WINCTRL1_FRM) >> 25;
  983. var->red = rgb_bitfields[idx][0];
  984. var->green = rgb_bitfields[idx][1];
  985. var->blue = rgb_bitfields[idx][2];
  986. var->transp = rgb_bitfields[idx][3];
  987. break;
  988. }
  989. default:
  990. print_dbg("Unsupported depth %dbpp", var->bits_per_pixel);
  991. return -EINVAL;
  992. }
  993. return 0;
  994. }
  995. /* fb_set_par
  996. * Set hardware with var settings. This will enable the controller with a
  997. * specific mode, normally validated with the fb_check_var method
  998. */
  999. static int au1200fb_fb_set_par(struct fb_info *fbi)
  1000. {
  1001. struct au1200fb_device *fbdev = fbi->par;
  1002. au1200fb_update_fbinfo(fbi);
  1003. au1200_setmode(fbdev);
  1004. return 0;
  1005. }
  1006. /* fb_setcolreg
  1007. * Set color in LCD palette.
  1008. */
  1009. static int au1200fb_fb_setcolreg(unsigned regno, unsigned red, unsigned green,
  1010. unsigned blue, unsigned transp, struct fb_info *fbi)
  1011. {
  1012. volatile u32 *palette = lcd->palette;
  1013. u32 value;
  1014. if (regno > (AU1200_LCD_NBR_PALETTE_ENTRIES - 1))
  1015. return -EINVAL;
  1016. if (fbi->var.grayscale) {
  1017. /* Convert color to grayscale */
  1018. red = green = blue =
  1019. (19595 * red + 38470 * green + 7471 * blue) >> 16;
  1020. }
  1021. if (fbi->fix.visual == FB_VISUAL_TRUECOLOR) {
  1022. /* Place color in the pseudopalette */
  1023. if (regno > 16)
  1024. return -EINVAL;
  1025. palette = (u32*) fbi->pseudo_palette;
  1026. red >>= (16 - fbi->var.red.length);
  1027. green >>= (16 - fbi->var.green.length);
  1028. blue >>= (16 - fbi->var.blue.length);
  1029. value = (red << fbi->var.red.offset) |
  1030. (green << fbi->var.green.offset)|
  1031. (blue << fbi->var.blue.offset);
  1032. value &= 0xFFFF;
  1033. } else if (1 /*FIX!!! panel_is_active(fbdev->panel)*/) {
  1034. /* COLOR TFT PALLETTIZED (use RGB 565) */
  1035. value = (red & 0xF800)|((green >> 5) &
  1036. 0x07E0)|((blue >> 11) & 0x001F);
  1037. value &= 0xFFFF;
  1038. } else if (0 /*panel_is_color(fbdev->panel)*/) {
  1039. /* COLOR STN MODE */
  1040. value = 0x1234;
  1041. value &= 0xFFF;
  1042. } else {
  1043. /* MONOCHROME MODE */
  1044. value = (green >> 12) & 0x000F;
  1045. value &= 0xF;
  1046. }
  1047. palette[regno] = value;
  1048. return 0;
  1049. }
  1050. /* fb_blank
  1051. * Blank the screen. Depending on the mode, the screen will be
  1052. * activated with the backlight color, or desactivated
  1053. */
  1054. static int au1200fb_fb_blank(int blank_mode, struct fb_info *fbi)
  1055. {
  1056. /* Short-circuit screen blanking */
  1057. if (noblanking)
  1058. return 0;
  1059. switch (blank_mode) {
  1060. case FB_BLANK_UNBLANK:
  1061. case FB_BLANK_NORMAL:
  1062. /* printk("turn on panel\n"); */
  1063. au1200_setpanel(panel);
  1064. break;
  1065. case FB_BLANK_VSYNC_SUSPEND:
  1066. case FB_BLANK_HSYNC_SUSPEND:
  1067. case FB_BLANK_POWERDOWN:
  1068. /* printk("turn off panel\n"); */
  1069. au1200_setpanel(NULL);
  1070. break;
  1071. default:
  1072. break;
  1073. }
  1074. /* FB_BLANK_NORMAL is a soft blank */
  1075. return (blank_mode == FB_BLANK_NORMAL) ? -EINVAL : 0;
  1076. }
  1077. /* fb_mmap
  1078. * Map video memory in user space. We don't use the generic fb_mmap
  1079. * method mainly to allow the use of the TLB streaming flag (CCA=6)
  1080. */
  1081. static int au1200fb_fb_mmap(struct fb_info *info, struct vm_area_struct *vma)
  1082. {
  1083. unsigned int len;
  1084. unsigned long start=0, off;
  1085. struct au1200fb_device *fbdev = info->par;
  1086. if (vma->vm_pgoff > (~0UL >> PAGE_SHIFT)) {
  1087. return -EINVAL;
  1088. }
  1089. start = fbdev->fb_phys & PAGE_MASK;
  1090. len = PAGE_ALIGN((start & ~PAGE_MASK) + fbdev->fb_len);
  1091. off = vma->vm_pgoff << PAGE_SHIFT;
  1092. if ((vma->vm_end - vma->vm_start + off) > len) {
  1093. return -EINVAL;
  1094. }
  1095. off += start;
  1096. vma->vm_pgoff = off >> PAGE_SHIFT;
  1097. vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
  1098. pgprot_val(vma->vm_page_prot) |= _CACHE_MASK; /* CCA=7 */
  1099. vma->vm_flags |= VM_IO;
  1100. return io_remap_pfn_range(vma, vma->vm_start, off >> PAGE_SHIFT,
  1101. vma->vm_end - vma->vm_start,
  1102. vma->vm_page_prot);
  1103. return 0;
  1104. }
  1105. static void set_global(u_int cmd, struct au1200_lcd_global_regs_t *pdata)
  1106. {
  1107. unsigned int hi1, divider;
  1108. /* SCREEN_SIZE: user cannot reset size, must switch panel choice */
  1109. if (pdata->flags & SCREEN_BACKCOLOR)
  1110. lcd->backcolor = pdata->backcolor;
  1111. if (pdata->flags & SCREEN_BRIGHTNESS) {
  1112. // limit brightness pwm duty to >= 30/1600
  1113. if (pdata->brightness < 30) {
  1114. pdata->brightness = 30;
  1115. }
  1116. divider = (lcd->pwmdiv & 0x3FFFF) + 1;
  1117. hi1 = (lcd->pwmhi >> 16) + 1;
  1118. hi1 = (((pdata->brightness & 0xFF)+1) * divider >> 8);
  1119. lcd->pwmhi &= 0xFFFF;
  1120. lcd->pwmhi |= (hi1 << 16);
  1121. }
  1122. if (pdata->flags & SCREEN_COLORKEY)
  1123. lcd->colorkey = pdata->colorkey;
  1124. if (pdata->flags & SCREEN_MASK)
  1125. lcd->colorkeymsk = pdata->mask;
  1126. au_sync();
  1127. }
  1128. static void get_global(u_int cmd, struct au1200_lcd_global_regs_t *pdata)
  1129. {
  1130. unsigned int hi1, divider;
  1131. pdata->xsize = ((lcd->screen & LCD_SCREEN_SX) >> 19) + 1;
  1132. pdata->ysize = ((lcd->screen & LCD_SCREEN_SY) >> 8) + 1;
  1133. pdata->backcolor = lcd->backcolor;
  1134. pdata->colorkey = lcd->colorkey;
  1135. pdata->mask = lcd->colorkeymsk;
  1136. // brightness
  1137. hi1 = (lcd->pwmhi >> 16) + 1;
  1138. divider = (lcd->pwmdiv & 0x3FFFF) + 1;
  1139. pdata->brightness = ((hi1 << 8) / divider) - 1;
  1140. au_sync();
  1141. }
  1142. static void set_window(unsigned int plane,
  1143. struct au1200_lcd_window_regs_t *pdata)
  1144. {
  1145. unsigned int val, bpp;
  1146. /* Window control register 0 */
  1147. if (pdata->flags & WIN_POSITION) {
  1148. val = lcd->window[plane].winctrl0 & ~(LCD_WINCTRL0_OX |
  1149. LCD_WINCTRL0_OY);
  1150. val |= ((pdata->xpos << 21) & LCD_WINCTRL0_OX);
  1151. val |= ((pdata->ypos << 10) & LCD_WINCTRL0_OY);
  1152. lcd->window[plane].winctrl0 = val;
  1153. }
  1154. if (pdata->flags & WIN_ALPHA_COLOR) {
  1155. val = lcd->window[plane].winctrl0 & ~(LCD_WINCTRL0_A);
  1156. val |= ((pdata->alpha_color << 2) & LCD_WINCTRL0_A);
  1157. lcd->window[plane].winctrl0 = val;
  1158. }
  1159. if (pdata->flags & WIN_ALPHA_MODE) {
  1160. val = lcd->window[plane].winctrl0 & ~(LCD_WINCTRL0_AEN);
  1161. val |= ((pdata->alpha_mode << 1) & LCD_WINCTRL0_AEN);
  1162. lcd->window[plane].winctrl0 = val;
  1163. }
  1164. /* Window control register 1 */
  1165. if (pdata->flags & WIN_PRIORITY) {
  1166. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_PRI);
  1167. val |= ((pdata->priority << 30) & LCD_WINCTRL1_PRI);
  1168. lcd->window[plane].winctrl1 = val;
  1169. }
  1170. if (pdata->flags & WIN_CHANNEL) {
  1171. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_PIPE);
  1172. val |= ((pdata->channel << 29) & LCD_WINCTRL1_PIPE);
  1173. lcd->window[plane].winctrl1 = val;
  1174. }
  1175. if (pdata->flags & WIN_BUFFER_FORMAT) {
  1176. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_FRM);
  1177. val |= ((pdata->buffer_format << 25) & LCD_WINCTRL1_FRM);
  1178. lcd->window[plane].winctrl1 = val;
  1179. }
  1180. if (pdata->flags & WIN_COLOR_ORDER) {
  1181. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_CCO);
  1182. val |= ((pdata->color_order << 24) & LCD_WINCTRL1_CCO);
  1183. lcd->window[plane].winctrl1 = val;
  1184. }
  1185. if (pdata->flags & WIN_PIXEL_ORDER) {
  1186. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_PO);
  1187. val |= ((pdata->pixel_order << 22) & LCD_WINCTRL1_PO);
  1188. lcd->window[plane].winctrl1 = val;
  1189. }
  1190. if (pdata->flags & WIN_SIZE) {
  1191. val = lcd->window[plane].winctrl1 & ~(LCD_WINCTRL1_SZX |
  1192. LCD_WINCTRL1_SZY);
  1193. val |= (((pdata->xsize << 11) - 1) & LCD_WINCTRL1_SZX);
  1194. val |= (((pdata->ysize) - 1) & LCD_WINCTRL1_SZY);
  1195. lcd->window[plane].winctrl1 = val;
  1196. /* program buffer line width */
  1197. bpp = winbpp(val) / 8;
  1198. val = lcd->window[plane].winctrl2 & ~(LCD_WINCTRL2_BX);
  1199. val |= (((pdata->xsize * bpp) << 8) & LCD_WINCTRL2_BX);
  1200. lcd->window[plane].winctrl2 = val;
  1201. }
  1202. /* Window control register 2 */
  1203. if (pdata->flags & WIN_COLORKEY_MODE) {
  1204. val = lcd->window[plane].winctrl2 & ~(LCD_WINCTRL2_CKMODE);
  1205. val |= ((pdata->colorkey_mode << 24) & LCD_WINCTRL2_CKMODE);
  1206. lcd->window[plane].winctrl2 = val;
  1207. }
  1208. if (pdata->flags & WIN_DOUBLE_BUFFER_MODE) {
  1209. val = lcd->window[plane].winctrl2 & ~(LCD_WINCTRL2_DBM);
  1210. val |= ((pdata->double_buffer_mode << 23) & LCD_WINCTRL2_DBM);
  1211. lcd->window[plane].winctrl2 = val;
  1212. }
  1213. if (pdata->flags & WIN_RAM_ARRAY_MODE) {
  1214. val = lcd->window[plane].winctrl2 & ~(LCD_WINCTRL2_RAM);
  1215. val |= ((pdata->ram_array_mode << 21) & LCD_WINCTRL2_RAM);
  1216. lcd->window[plane].winctrl2 = val;
  1217. }
  1218. /* Buffer line width programmed with WIN_SIZE */
  1219. if (pdata->flags & WIN_BUFFER_SCALE) {
  1220. val = lcd->window[plane].winctrl2 & ~(LCD_WINCTRL2_SCX |
  1221. LCD_WINCTRL2_SCY);
  1222. val |= ((pdata->xsize << 11) & LCD_WINCTRL2_SCX);
  1223. val |= ((pdata->ysize) & LCD_WINCTRL2_SCY);
  1224. lcd->window[plane].winctrl2 = val;
  1225. }
  1226. if (pdata->flags & WIN_ENABLE) {
  1227. val = lcd->winenable;
  1228. val &= ~(1<<plane);
  1229. val |= (pdata->enable & 1) << plane;
  1230. lcd->winenable = val;
  1231. }
  1232. au_sync();
  1233. }
  1234. static void get_window(unsigned int plane,
  1235. struct au1200_lcd_window_regs_t *pdata)
  1236. {
  1237. /* Window control register 0 */
  1238. pdata->xpos = (lcd->window[plane].winctrl0 & LCD_WINCTRL0_OX) >> 21;
  1239. pdata->ypos = (lcd->window[plane].winctrl0 & LCD_WINCTRL0_OY) >> 10;
  1240. pdata->alpha_color = (lcd->window[plane].winctrl0 & LCD_WINCTRL0_A) >> 2;
  1241. pdata->alpha_mode = (lcd->window[plane].winctrl0 & LCD_WINCTRL0_AEN) >> 1;
  1242. /* Window control register 1 */
  1243. pdata->priority = (lcd->window[plane].winctrl1& LCD_WINCTRL1_PRI) >> 30;
  1244. pdata->channel = (lcd->window[plane].winctrl1 & LCD_WINCTRL1_PIPE) >> 29;
  1245. pdata->buffer_format = (lcd->window[plane].winctrl1 & LCD_WINCTRL1_FRM) >> 25;
  1246. pdata->color_order = (lcd->window[plane].winctrl1 & LCD_WINCTRL1_CCO) >> 24;
  1247. pdata->pixel_order = (lcd->window[plane].winctrl1 & LCD_WINCTRL1_PO) >> 22;
  1248. pdata->xsize = ((lcd->window[plane].winctrl1 & LCD_WINCTRL1_SZX) >> 11) + 1;
  1249. pdata->ysize = (lcd->window[plane].winctrl1 & LCD_WINCTRL1_SZY) + 1;
  1250. /* Window control register 2 */
  1251. pdata->colorkey_mode = (lcd->window[plane].winctrl2 & LCD_WINCTRL2_CKMODE) >> 24;
  1252. pdata->double_buffer_mode = (lcd->window[plane].winctrl2 & LCD_WINCTRL2_DBM) >> 23;
  1253. pdata->ram_array_mode = (lcd->window[plane].winctrl2 & LCD_WINCTRL2_RAM) >> 21;
  1254. pdata->enable = (lcd->winenable >> plane) & 1;
  1255. au_sync();
  1256. }
  1257. static int au1200fb_ioctl(struct fb_info *info, unsigned int cmd,
  1258. unsigned long arg)
  1259. {
  1260. int plane;
  1261. int val;
  1262. plane = fbinfo2index(info);
  1263. print_dbg("au1200fb: ioctl %d on plane %d\n", cmd, plane);
  1264. if (cmd == AU1200_LCD_FB_IOCTL) {
  1265. struct au1200_lcd_iodata_t iodata;
  1266. if (copy_from_user(&iodata, (void __user *) arg, sizeof(iodata)))
  1267. return -EFAULT;
  1268. print_dbg("FB IOCTL called\n");
  1269. switch (iodata.subcmd) {
  1270. case AU1200_LCD_SET_SCREEN:
  1271. print_dbg("AU1200_LCD_SET_SCREEN\n");
  1272. set_global(cmd, &iodata.global);
  1273. break;
  1274. case AU1200_LCD_GET_SCREEN:
  1275. print_dbg("AU1200_LCD_GET_SCREEN\n");
  1276. get_global(cmd, &iodata.global);
  1277. break;
  1278. case AU1200_LCD_SET_WINDOW:
  1279. print_dbg("AU1200_LCD_SET_WINDOW\n");
  1280. set_window(plane, &iodata.window);
  1281. break;
  1282. case AU1200_LCD_GET_WINDOW:
  1283. print_dbg("AU1200_LCD_GET_WINDOW\n");
  1284. get_window(plane, &iodata.window);
  1285. break;
  1286. case AU1200_LCD_SET_PANEL:
  1287. print_dbg("AU1200_LCD_SET_PANEL\n");
  1288. if ((iodata.global.panel_choice >= 0) &&
  1289. (iodata.global.panel_choice <
  1290. NUM_PANELS))
  1291. {
  1292. struct panel_settings *newpanel;
  1293. panel_index = iodata.global.panel_choice;
  1294. newpanel = &known_lcd_panels[panel_index];
  1295. au1200_setpanel(newpanel);
  1296. }
  1297. break;
  1298. case AU1200_LCD_GET_PANEL:
  1299. print_dbg("AU1200_LCD_GET_PANEL\n");
  1300. iodata.global.panel_choice = panel_index;
  1301. break;
  1302. default:
  1303. return -EINVAL;
  1304. }
  1305. val = copy_to_user((void __user *) arg, &iodata, sizeof(iodata));
  1306. if (val) {
  1307. print_dbg("error: could not copy %d bytes\n", val);
  1308. return -EFAULT;
  1309. }
  1310. }
  1311. return 0;
  1312. }
  1313. static struct fb_ops au1200fb_fb_ops = {
  1314. .owner = THIS_MODULE,
  1315. .fb_check_var = au1200fb_fb_check_var,
  1316. .fb_set_par = au1200fb_fb_set_par,
  1317. .fb_setcolreg = au1200fb_fb_setcolreg,
  1318. .fb_blank = au1200fb_fb_blank,
  1319. .fb_fillrect = sys_fillrect,
  1320. .fb_copyarea = sys_copyarea,
  1321. .fb_imageblit = sys_imageblit,
  1322. .fb_read = fb_sys_read,
  1323. .fb_write = fb_sys_write,
  1324. .fb_sync = NULL,
  1325. .fb_ioctl = au1200fb_ioctl,
  1326. .fb_mmap = au1200fb_fb_mmap,
  1327. };
  1328. /*-------------------------------------------------------------------------*/
  1329. static irqreturn_t au1200fb_handle_irq(int irq, void* dev_id)
  1330. {
  1331. /* Nothing to do for now, just clear any pending interrupt */
  1332. lcd->intstatus = lcd->intstatus;
  1333. au_sync();
  1334. return IRQ_HANDLED;
  1335. }
  1336. /*-------------------------------------------------------------------------*/
  1337. /* AU1200 LCD device probe helpers */
  1338. static int au1200fb_init_fbinfo(struct au1200fb_device *fbdev)
  1339. {
  1340. struct fb_info *fbi = fbdev->fb_info;
  1341. int bpp;
  1342. fbi->fbops = &au1200fb_fb_ops;
  1343. bpp = winbpp(win->w[fbdev->plane].mode_winctrl1);
  1344. /* Copy monitor specs from panel data */
  1345. /* fixme: we're setting up LCD controller windows, so these dont give a
  1346. damn as to what the monitor specs are (the panel itself does, but that
  1347. isn't done here...so maybe need a generic catchall monitor setting??? */
  1348. memcpy(&fbi->monspecs, &panel->monspecs, sizeof(struct fb_monspecs));
  1349. /* We first try the user mode passed in argument. If that failed,
  1350. * or if no one has been specified, we default to the first mode of the
  1351. * panel list. Note that after this call, var data will be set */
  1352. if (!fb_find_mode(&fbi->var,
  1353. fbi,
  1354. NULL, /* drv_info.opt_mode, */
  1355. fbi->monspecs.modedb,
  1356. fbi->monspecs.modedb_len,
  1357. fbi->monspecs.modedb,
  1358. bpp)) {
  1359. print_err("Cannot find valid mode for panel %s", panel->name);
  1360. return -EFAULT;
  1361. }
  1362. fbi->pseudo_palette = kcalloc(16, sizeof(u32), GFP_KERNEL);
  1363. if (!fbi->pseudo_palette) {
  1364. return -ENOMEM;
  1365. }
  1366. if (fb_alloc_cmap(&fbi->cmap, AU1200_LCD_NBR_PALETTE_ENTRIES, 0) < 0) {
  1367. print_err("Fail to allocate colormap (%d entries)",
  1368. AU1200_LCD_NBR_PALETTE_ENTRIES);
  1369. kfree(fbi->pseudo_palette);
  1370. return -EFAULT;
  1371. }
  1372. strncpy(fbi->fix.id, "AU1200", sizeof(fbi->fix.id));
  1373. fbi->fix.smem_start = fbdev->fb_phys;
  1374. fbi->fix.smem_len = fbdev->fb_len;
  1375. fbi->fix.type = FB_TYPE_PACKED_PIXELS;
  1376. fbi->fix.xpanstep = 0;
  1377. fbi->fix.ypanstep = 0;
  1378. fbi->fix.mmio_start = 0;
  1379. fbi->fix.mmio_len = 0;
  1380. fbi->fix.accel = FB_ACCEL_NONE;
  1381. fbi->screen_base = (char __iomem *) fbdev->fb_mem;
  1382. au1200fb_update_fbinfo(fbi);
  1383. return 0;
  1384. }
  1385. /*-------------------------------------------------------------------------*/
  1386. /* AU1200 LCD controller device driver */
  1387. static int __devinit au1200fb_drv_probe(struct platform_device *dev)
  1388. {
  1389. struct au1200fb_device *fbdev;
  1390. struct fb_info *fbi = NULL;
  1391. unsigned long page;
  1392. int bpp, plane, ret, irq;
  1393. /* shut gcc up */
  1394. ret = 0;
  1395. fbdev = NULL;
  1396. /* Kickstart the panel */
  1397. au1200_setpanel(panel);
  1398. for (plane = 0; plane < device_count; ++plane) {
  1399. bpp = winbpp(win->w[plane].mode_winctrl1);
  1400. if (win->w[plane].xres == 0)
  1401. win->w[plane].xres = panel->Xres;
  1402. if (win->w[plane].yres == 0)
  1403. win->w[plane].yres = panel->Yres;
  1404. fbi = framebuffer_alloc(sizeof(struct au1200fb_device),
  1405. &dev->dev);
  1406. if (!fbi)
  1407. goto failed;
  1408. _au1200fb_infos[plane] = fbi;
  1409. fbdev = fbi->par;
  1410. fbdev->fb_info = fbi;
  1411. fbdev->plane = plane;
  1412. /* Allocate the framebuffer to the maximum screen size */
  1413. fbdev->fb_len = (win->w[plane].xres * win->w[plane].yres * bpp) / 8;
  1414. fbdev->fb_mem = dma_alloc_noncoherent(&dev->dev,
  1415. PAGE_ALIGN(fbdev->fb_len),
  1416. &fbdev->fb_phys, GFP_KERNEL);
  1417. if (!fbdev->fb_mem) {
  1418. print_err("fail to allocate frambuffer (size: %dK))",
  1419. fbdev->fb_len / 1024);
  1420. return -ENOMEM;
  1421. }
  1422. /*
  1423. * Set page reserved so that mmap will work. This is necessary
  1424. * since we'll be remapping normal memory.
  1425. */
  1426. for (page = (unsigned long)fbdev->fb_phys;
  1427. page < PAGE_ALIGN((unsigned long)fbdev->fb_phys +
  1428. fbdev->fb_len);
  1429. page += PAGE_SIZE) {
  1430. SetPageReserved(pfn_to_page(page >> PAGE_SHIFT)); /* LCD DMA is NOT coherent on Au1200 */
  1431. }
  1432. print_dbg("Framebuffer memory map at %p", fbdev->fb_mem);
  1433. print_dbg("phys=0x%08x, size=%dK", fbdev->fb_phys, fbdev->fb_len / 1024);
  1434. /* Init FB data */
  1435. if ((ret = au1200fb_init_fbinfo(fbdev)) < 0)
  1436. goto failed;
  1437. /* Register new framebuffer */
  1438. ret = register_framebuffer(fbi);
  1439. if (ret < 0) {
  1440. print_err("cannot register new framebuffer");
  1441. goto failed;
  1442. }
  1443. au1200fb_fb_set_par(fbi);
  1444. #if !defined(CONFIG_FRAMEBUFFER_CONSOLE) && defined(CONFIG_LOGO)
  1445. if (plane == 0)
  1446. if (fb_prepare_logo(fbi, FB_ROTATE_UR)) {
  1447. /* Start display and show logo on boot */
  1448. fb_set_cmap(&fbi->cmap, fbi);
  1449. fb_show_logo(fbi, FB_ROTATE_UR);
  1450. }
  1451. #endif
  1452. }
  1453. /* Now hook interrupt too */
  1454. irq = platform_get_irq(dev, 0);
  1455. ret = request_irq(irq, au1200fb_handle_irq,
  1456. IRQF_SHARED, "lcd", (void *)dev);
  1457. if (ret) {
  1458. print_err("fail to request interrupt line %d (err: %d)",
  1459. irq, ret);
  1460. goto failed;
  1461. }
  1462. return 0;
  1463. failed:
  1464. /* NOTE: This only does the current plane/window that failed; others are still active */
  1465. if (fbdev->fb_mem)
  1466. dma_free_noncoherent(&dev->dev, PAGE_ALIGN(fbdev->fb_len),
  1467. fbdev->fb_mem, fbdev->fb_phys);
  1468. if (fbi) {
  1469. if (fbi->cmap.len != 0)
  1470. fb_dealloc_cmap(&fbi->cmap);
  1471. kfree(fbi->pseudo_palette);
  1472. }
  1473. if (plane == 0)
  1474. free_irq(AU1200_LCD_INT, (void*)dev);
  1475. return ret;
  1476. }
  1477. static int __devexit au1200fb_drv_remove(struct platform_device *dev)
  1478. {
  1479. struct au1200fb_device *fbdev;
  1480. struct fb_info *fbi;
  1481. int plane;
  1482. /* Turn off the panel */
  1483. au1200_setpanel(NULL);
  1484. for (plane = 0; plane < device_count; ++plane) {
  1485. fbi = _au1200fb_infos[plane];
  1486. fbdev = fbi->par;
  1487. /* Clean up all probe data */
  1488. unregister_framebuffer(fbi);
  1489. if (fbdev->fb_mem)
  1490. dma_free_noncoherent(&dev->dev,
  1491. PAGE_ALIGN(fbdev->fb_len),
  1492. fbdev->fb_mem, fbdev->fb_phys);
  1493. if (fbi->cmap.len != 0)
  1494. fb_dealloc_cmap(&fbi->cmap);
  1495. kfree(fbi->pseudo_palette);
  1496. framebuffer_release(fbi);
  1497. _au1200fb_infos[plane] = NULL;
  1498. }
  1499. free_irq(platform_get_irq(dev, 0), (void *)dev);
  1500. return 0;
  1501. }
  1502. #ifdef CONFIG_PM
  1503. static int au1200fb_drv_suspend(struct device *dev)
  1504. {
  1505. au1200_setpanel(NULL);
  1506. lcd->outmask = 0;
  1507. au_sync();
  1508. return 0;
  1509. }
  1510. static int au1200fb_drv_resume(struct device *dev)
  1511. {
  1512. struct fb_info *fbi;
  1513. int i;
  1514. /* Kickstart the panel */
  1515. au1200_setpanel(panel);
  1516. for (i = 0; i < device_count; i++) {
  1517. fbi = _au1200fb_infos[i];
  1518. au1200fb_fb_set_par(fbi);
  1519. }
  1520. return 0;
  1521. }
  1522. static const struct dev_pm_ops au1200fb_pmops = {
  1523. .suspend = au1200fb_drv_suspend,
  1524. .resume = au1200fb_drv_resume,
  1525. .freeze = au1200fb_drv_suspend,
  1526. .thaw = au1200fb_drv_resume,
  1527. };
  1528. #define AU1200FB_PMOPS (&au1200fb_pmops)
  1529. #else
  1530. #define AU1200FB_PMOPS NULL
  1531. #endif /* CONFIG_PM */
  1532. static struct platform_driver au1200fb_driver = {
  1533. .driver = {
  1534. .name = "au1200-lcd",
  1535. .owner = THIS_MODULE,
  1536. .pm = AU1200FB_PMOPS,
  1537. },
  1538. .probe = au1200fb_drv_probe,
  1539. .remove = __devexit_p(au1200fb_drv_remove),
  1540. };
  1541. /*-------------------------------------------------------------------------*/
  1542. /* Kernel driver */
  1543. static int au1200fb_setup(void)
  1544. {
  1545. char *options = NULL;
  1546. char *this_opt, *endptr;
  1547. int num_panels = ARRAY_SIZE(known_lcd_panels);
  1548. int panel_idx = -1;
  1549. fb_get_options(DRIVER_NAME, &options);
  1550. if (options) {
  1551. while ((this_opt = strsep(&options,",")) != NULL) {
  1552. /* Panel option - can be panel name,
  1553. * "bs" for board-switch, or number/index */
  1554. if (!strncmp(this_opt, "panel:", 6)) {
  1555. int i;
  1556. long int li;
  1557. char *endptr;
  1558. this_opt += 6;
  1559. /* First check for index, which allows
  1560. * to short circuit this mess */
  1561. li = simple_strtol(this_opt, &endptr, 0);
  1562. if (*endptr == '\0') {
  1563. panel_idx = (int)li;
  1564. }
  1565. else if (strcmp(this_opt, "bs") == 0) {
  1566. extern int board_au1200fb_panel(void);
  1567. panel_idx = board_au1200fb_panel();
  1568. }
  1569. else
  1570. for (i = 0; i < num_panels; i++) {
  1571. if (!strcmp(this_opt, known_lcd_panels[i].name)) {
  1572. panel_idx = i;
  1573. break;
  1574. }
  1575. }
  1576. if ((panel_idx < 0) || (panel_idx >= num_panels)) {
  1577. print_warn("Panel %s not supported!", this_opt);
  1578. }
  1579. else
  1580. panel_index = panel_idx;
  1581. }
  1582. else if (strncmp(this_opt, "nohwcursor", 10) == 0) {
  1583. nohwcursor = 1;
  1584. }
  1585. else if (strncmp(this_opt, "devices:", 8) == 0) {
  1586. this_opt += 8;
  1587. device_count = simple_strtol(this_opt,
  1588. &endptr, 0);
  1589. if ((device_count < 0) ||
  1590. (device_count > MAX_DEVICE_COUNT))
  1591. device_count = MAX_DEVICE_COUNT;
  1592. }
  1593. else if (strncmp(this_opt, "wincfg:", 7) == 0) {
  1594. this_opt += 7;
  1595. window_index = simple_strtol(this_opt,
  1596. &endptr, 0);
  1597. if ((window_index < 0) ||
  1598. (window_index >= ARRAY_SIZE(windows)))
  1599. window_index = DEFAULT_WINDOW_INDEX;
  1600. }
  1601. else if (strncmp(this_opt, "off", 3) == 0)
  1602. return 1;
  1603. /* Unsupported option */
  1604. else {
  1605. print_warn("Unsupported option \"%s\"", this_opt);
  1606. }
  1607. }
  1608. }
  1609. return 0;
  1610. }
  1611. static int __init au1200fb_init(void)
  1612. {
  1613. print_info("" DRIVER_DESC "");
  1614. /* Setup driver with options */
  1615. if (au1200fb_setup())
  1616. return -ENODEV;
  1617. /* Point to the panel selected */
  1618. panel = &known_lcd_panels[panel_index];
  1619. win = &windows[window_index];
  1620. printk(DRIVER_NAME ": Panel %d %s\n", panel_index, panel->name);
  1621. printk(DRIVER_NAME ": Win %d %s\n", window_index, win->name);
  1622. return platform_driver_register(&au1200fb_driver);
  1623. }
  1624. static void __exit au1200fb_cleanup(void)
  1625. {
  1626. platform_driver_unregister(&au1200fb_driver);
  1627. }
  1628. module_init(au1200fb_init);
  1629. module_exit(au1200fb_cleanup);
  1630. MODULE_DESCRIPTION(DRIVER_DESC);
  1631. MODULE_LICENSE("GPL");