fsl_diu_fb.c 15 KB

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  1. /*
  2. * Copyright 2007 Freescale Semiconductor, Inc.
  3. * York Sun <yorksun@freescale.com>
  4. *
  5. * FSL DIU Framebuffer driver
  6. *
  7. * See file CREDITS for list of people who contributed to this
  8. * project.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License as
  12. * published by the Free Software Foundation; either version 2 of
  13. * the License, or (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  23. * MA 02111-1307 USA
  24. */
  25. #include <common.h>
  26. #include <i2c.h>
  27. #include <malloc.h>
  28. #include "fsl_diu_fb.h"
  29. struct fb_videomode {
  30. const char *name; /* optional */
  31. unsigned int refresh; /* optional */
  32. unsigned int xres;
  33. unsigned int yres;
  34. unsigned int pixclock;
  35. unsigned int left_margin;
  36. unsigned int right_margin;
  37. unsigned int upper_margin;
  38. unsigned int lower_margin;
  39. unsigned int hsync_len;
  40. unsigned int vsync_len;
  41. unsigned int sync;
  42. unsigned int vmode;
  43. unsigned int flag;
  44. };
  45. #define FB_SYNC_VERT_HIGH_ACT 2 /* vertical sync high active */
  46. #define FB_SYNC_COMP_HIGH_ACT 8 /* composite sync high active */
  47. #define FB_VMODE_NONINTERLACED 0 /* non interlaced */
  48. /*
  49. * These parameters give default parameters
  50. * for video output 1024x768,
  51. * FIXME - change timing to proper amounts
  52. * hsync 31.5kHz, vsync 60Hz
  53. */
  54. static struct fb_videomode fsl_diu_mode_1024 = {
  55. .refresh = 60,
  56. .xres = 1024,
  57. .yres = 768,
  58. .pixclock = 15385,
  59. .left_margin = 160,
  60. .right_margin = 24,
  61. .upper_margin = 29,
  62. .lower_margin = 3,
  63. .hsync_len = 136,
  64. .vsync_len = 6,
  65. .sync = FB_SYNC_COMP_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,
  66. .vmode = FB_VMODE_NONINTERLACED
  67. };
  68. static struct fb_videomode fsl_diu_mode_1280 = {
  69. .name = "1280x1024-60",
  70. .refresh = 60,
  71. .xres = 1280,
  72. .yres = 1024,
  73. .pixclock = 9375,
  74. .left_margin = 38,
  75. .right_margin = 128,
  76. .upper_margin = 2,
  77. .lower_margin = 7,
  78. .hsync_len = 216,
  79. .vsync_len = 37,
  80. .sync = FB_SYNC_COMP_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,
  81. .vmode = FB_VMODE_NONINTERLACED
  82. };
  83. /*
  84. * These are the fields of area descriptor(in DDR memory) for every plane
  85. */
  86. struct diu_ad {
  87. /* Word 0(32-bit) in DDR memory */
  88. unsigned int pix_fmt; /* hard coding pixel format */
  89. /* Word 1(32-bit) in DDR memory */
  90. unsigned int addr;
  91. /* Word 2(32-bit) in DDR memory */
  92. unsigned int src_size_g_alpha;
  93. /* Word 3(32-bit) in DDR memory */
  94. unsigned int aoi_size;
  95. /* Word 4(32-bit) in DDR memory */
  96. unsigned int offset_xyi;
  97. /* Word 5(32-bit) in DDR memory */
  98. unsigned int offset_xyd;
  99. /* Word 6(32-bit) in DDR memory */
  100. unsigned int ckmax_r:8;
  101. unsigned int ckmax_g:8;
  102. unsigned int ckmax_b:8;
  103. unsigned int res9:8;
  104. /* Word 7(32-bit) in DDR memory */
  105. unsigned int ckmin_r:8;
  106. unsigned int ckmin_g:8;
  107. unsigned int ckmin_b:8;
  108. unsigned int res10:8;
  109. /* Word 8(32-bit) in DDR memory */
  110. unsigned int next_ad;
  111. /* Word 9(32-bit) in DDR memory, just for 64-bit aligned */
  112. unsigned int res1;
  113. unsigned int res2;
  114. unsigned int res3;
  115. }__attribute__ ((packed));
  116. /*
  117. * DIU register map
  118. */
  119. struct diu {
  120. unsigned int desc[3];
  121. unsigned int gamma;
  122. unsigned int pallete;
  123. unsigned int cursor;
  124. unsigned int curs_pos;
  125. unsigned int diu_mode;
  126. unsigned int bgnd;
  127. unsigned int bgnd_wb;
  128. unsigned int disp_size;
  129. unsigned int wb_size;
  130. unsigned int wb_mem_addr;
  131. unsigned int hsyn_para;
  132. unsigned int vsyn_para;
  133. unsigned int syn_pol;
  134. unsigned int thresholds;
  135. unsigned int int_status;
  136. unsigned int int_mask;
  137. unsigned int colorbar[8];
  138. unsigned int filling;
  139. unsigned int plut;
  140. } __attribute__ ((packed));
  141. struct diu_hw {
  142. struct diu *diu_reg;
  143. volatile unsigned int mode; /* DIU operation mode */
  144. };
  145. struct diu_addr {
  146. unsigned char * paddr; /* Virtual address */
  147. unsigned int offset;
  148. };
  149. /*
  150. * Modes of operation of DIU
  151. */
  152. #define MFB_MODE0 0 /* DIU off */
  153. #define MFB_MODE1 1 /* All three planes output to display */
  154. #define MFB_MODE2 2 /* Plane 1 to display,
  155. * planes 2+3 written back to memory */
  156. #define MFB_MODE3 3 /* All three planes written back to memory */
  157. #define MFB_MODE4 4 /* Color bar generation */
  158. #define MAX_CURS 32
  159. static struct fb_info fsl_fb_info;
  160. static struct diu_addr gamma, cursor;
  161. static struct diu_ad fsl_diu_fb_ad __attribute__ ((aligned(32)));
  162. static struct diu_ad dummy_ad __attribute__ ((aligned(32)));
  163. static unsigned char *dummy_fb;
  164. static struct diu_hw dr = {
  165. .mode = MFB_MODE1,
  166. };
  167. int fb_enabled = 0;
  168. int fb_initialized = 0;
  169. const int default_xres = 1280;
  170. const int default_pixel_format = 0x88882317;
  171. static int map_video_memory(struct fb_info *info, unsigned long bytes_align);
  172. static void enable_lcdc(void);
  173. static void disable_lcdc(void);
  174. static int fsl_diu_enable_panel(struct fb_info *info);
  175. static int fsl_diu_disable_panel(struct fb_info *info);
  176. static int allocate_buf(struct diu_addr *buf, u32 size, u32 bytes_align);
  177. void diu_set_pixel_clock(unsigned int pixclock);
  178. int fsl_diu_init(int xres,
  179. unsigned int pixel_format,
  180. int gamma_fix,
  181. unsigned char *splash_bmp)
  182. {
  183. struct fb_videomode *fsl_diu_mode_db;
  184. struct diu_ad *ad = &fsl_diu_fb_ad;
  185. struct diu *hw;
  186. struct fb_info *info = &fsl_fb_info;
  187. struct fb_var_screeninfo *var = &info->var;
  188. unsigned char *gamma_table_base;
  189. unsigned int i, j;
  190. debug("Enter fsl_diu_init\n");
  191. dr.diu_reg = (struct diu *) (CONFIG_SYS_DIU_ADDR);
  192. hw = (struct diu *) dr.diu_reg;
  193. disable_lcdc();
  194. if (xres == 1280) {
  195. fsl_diu_mode_db = &fsl_diu_mode_1280;
  196. } else {
  197. fsl_diu_mode_db = &fsl_diu_mode_1024;
  198. }
  199. if (0 == fb_initialized) {
  200. allocate_buf(&gamma, 768, 32);
  201. debug("gamma is allocated @ 0x%x\n",
  202. (unsigned int)gamma.paddr);
  203. allocate_buf(&cursor, MAX_CURS * MAX_CURS * 2, 32);
  204. debug("curosr is allocated @ 0x%x\n",
  205. (unsigned int)cursor.paddr);
  206. /* create a dummy fb and dummy ad */
  207. dummy_fb = malloc(64);
  208. if (NULL == dummy_fb) {
  209. printf("Cannot allocate dummy fb\n");
  210. return -1;
  211. }
  212. dummy_ad.addr = cpu_to_le32((unsigned int)dummy_fb);
  213. dummy_ad.pix_fmt = 0x88882317;
  214. dummy_ad.src_size_g_alpha = 0x04400000; /* alpha = 0 */
  215. dummy_ad.aoi_size = 0x02000400;
  216. dummy_ad.offset_xyi = 0;
  217. dummy_ad.offset_xyd = 0;
  218. dummy_ad.next_ad = 0;
  219. /* Memory allocation for framebuffer */
  220. if (map_video_memory(info, 32)) {
  221. printf("Unable to allocate fb memory 1\n");
  222. return -1;
  223. }
  224. }
  225. memset(info->screen_base, 0, info->smem_len);
  226. dr.diu_reg->desc[0] = (unsigned int) &dummy_ad;
  227. dr.diu_reg->desc[1] = (unsigned int) &dummy_ad;
  228. dr.diu_reg->desc[2] = (unsigned int) &dummy_ad;
  229. debug("dummy dr.diu_reg->desc[0] = 0x%x\n", dr.diu_reg->desc[0]);
  230. debug("dummy desc[0] = 0x%x\n", hw->desc[0]);
  231. /* read mode info */
  232. var->xres = fsl_diu_mode_db->xres;
  233. var->yres = fsl_diu_mode_db->yres;
  234. var->bits_per_pixel = 32;
  235. var->pixclock = fsl_diu_mode_db->pixclock;
  236. var->left_margin = fsl_diu_mode_db->left_margin;
  237. var->right_margin = fsl_diu_mode_db->right_margin;
  238. var->upper_margin = fsl_diu_mode_db->upper_margin;
  239. var->lower_margin = fsl_diu_mode_db->lower_margin;
  240. var->hsync_len = fsl_diu_mode_db->hsync_len;
  241. var->vsync_len = fsl_diu_mode_db->vsync_len;
  242. var->sync = fsl_diu_mode_db->sync;
  243. var->vmode = fsl_diu_mode_db->vmode;
  244. info->line_length = var->xres * var->bits_per_pixel / 8;
  245. info->logo_size = 0;
  246. info->logo_height = 0;
  247. ad->pix_fmt = pixel_format;
  248. ad->addr = cpu_to_le32((unsigned int)info->screen_base);
  249. ad->src_size_g_alpha
  250. = cpu_to_le32((var->yres << 12) | var->xres);
  251. /* fix me. AOI should not be greater than display size */
  252. ad->aoi_size = cpu_to_le32(( var->yres << 16) | var->xres);
  253. ad->offset_xyi = 0;
  254. ad->offset_xyd = 0;
  255. /* Disable chroma keying function */
  256. ad->ckmax_r = 0;
  257. ad->ckmax_g = 0;
  258. ad->ckmax_b = 0;
  259. ad->ckmin_r = 255;
  260. ad->ckmin_g = 255;
  261. ad->ckmin_b = 255;
  262. gamma_table_base = gamma.paddr;
  263. debug("gamma_table_base is allocated @ 0x%x\n",
  264. (unsigned int)gamma_table_base);
  265. /* Prep for DIU init - gamma table */
  266. for (i = 0; i <= 2; i++)
  267. for (j = 0; j <= 255; j++)
  268. *gamma_table_base++ = j;
  269. if (gamma_fix == 1) { /* fix the gamma */
  270. debug("Fix gamma table\n");
  271. gamma_table_base = gamma.paddr;
  272. for (i = 0; i < 256*3; i++) {
  273. gamma_table_base[i] = (gamma_table_base[i] << 2)
  274. | ((gamma_table_base[i] >> 6) & 0x03);
  275. }
  276. }
  277. debug("update-lcdc: HW - %p\n Disabling DIU\n", hw);
  278. /* Program DIU registers */
  279. hw->gamma = (unsigned int) gamma.paddr;
  280. hw->cursor= (unsigned int) cursor.paddr;
  281. hw->bgnd = 0x007F7F7F; /* BGND */
  282. hw->bgnd_wb = 0; /* BGND_WB */
  283. hw->disp_size = var->yres << 16 | var->xres; /* DISP SIZE */
  284. hw->wb_size = 0; /* WB SIZE */
  285. hw->wb_mem_addr = 0; /* WB MEM ADDR */
  286. hw->hsyn_para = var->left_margin << 22 | /* BP_H */
  287. var->hsync_len << 11 | /* PW_H */
  288. var->right_margin; /* FP_H */
  289. hw->vsyn_para = var->upper_margin << 22 | /* BP_V */
  290. var->vsync_len << 11 | /* PW_V */
  291. var->lower_margin; /* FP_V */
  292. hw->syn_pol = 0; /* SYNC SIGNALS POLARITY */
  293. hw->thresholds = 0x00037800; /* The Thresholds */
  294. hw->int_status = 0; /* INTERRUPT STATUS */
  295. hw->int_mask = 0; /* INT MASK */
  296. hw->plut = 0x01F5F666;
  297. /* Pixel Clock configuration */
  298. debug("DIU pixclock in ps - %d\n", var->pixclock);
  299. diu_set_pixel_clock(var->pixclock);
  300. fb_initialized = 1;
  301. if (splash_bmp) {
  302. info->logo_height = fsl_diu_display_bmp(splash_bmp, 0, 0, 0);
  303. info->logo_size = info->logo_height * info->line_length;
  304. debug("logo height %d, logo_size 0x%x\n",
  305. info->logo_height,info->logo_size);
  306. }
  307. /* Enable the DIU */
  308. fsl_diu_enable_panel(info);
  309. enable_lcdc();
  310. return 0;
  311. }
  312. char *fsl_fb_open(struct fb_info **info)
  313. {
  314. *info = &fsl_fb_info;
  315. return (char *) ((unsigned int)(*info)->screen_base
  316. + (*info)->logo_size);
  317. }
  318. void fsl_diu_close(void)
  319. {
  320. struct fb_info *info = &fsl_fb_info;
  321. fsl_diu_disable_panel(info);
  322. }
  323. static int fsl_diu_enable_panel(struct fb_info *info)
  324. {
  325. struct diu *hw = dr.diu_reg;
  326. struct diu_ad *ad = &fsl_diu_fb_ad;
  327. debug("Entered: enable_panel\n");
  328. if (hw->desc[0] != (unsigned int)ad)
  329. hw->desc[0] = (unsigned int)ad;
  330. debug("desc[0] = 0x%x\n", hw->desc[0]);
  331. return 0;
  332. }
  333. static int fsl_diu_disable_panel(struct fb_info *info)
  334. {
  335. struct diu *hw = dr.diu_reg;
  336. debug("Entered: disable_panel\n");
  337. if (hw->desc[0] != (unsigned int)&dummy_ad)
  338. hw->desc[0] = (unsigned int)&dummy_ad;
  339. return 0;
  340. }
  341. static int map_video_memory(struct fb_info *info, unsigned long bytes_align)
  342. {
  343. unsigned long offset;
  344. unsigned long mask;
  345. debug("Entered: map_video_memory\n");
  346. /* allocate maximum 1280*1024 with 32bpp */
  347. info->smem_len = 1280 * 4 *1024 + bytes_align;
  348. debug("MAP_VIDEO_MEMORY: smem_len = %d\n", info->smem_len);
  349. info->screen_base = malloc(info->smem_len);
  350. if (info->screen_base == NULL) {
  351. printf("Unable to allocate fb memory\n");
  352. return -1;
  353. }
  354. info->smem_start = (unsigned int) info->screen_base;
  355. mask = bytes_align - 1;
  356. offset = (unsigned long)info->screen_base & mask;
  357. if (offset) {
  358. info->screen_base += (bytes_align - offset);
  359. info->smem_len = info->smem_len - (bytes_align - offset);
  360. } else
  361. info->smem_len = info->smem_len - bytes_align;
  362. info->screen_size = info->smem_len;
  363. debug("Allocated fb @ 0x%08lx, size=%d.\n",
  364. info->smem_start, info->smem_len);
  365. return 0;
  366. }
  367. static void enable_lcdc(void)
  368. {
  369. struct diu *hw = dr.diu_reg;
  370. debug("Entered: enable_lcdc, fb_enabled = %d\n", fb_enabled);
  371. if (!fb_enabled) {
  372. hw->diu_mode = dr.mode;
  373. fb_enabled++;
  374. }
  375. debug("diu_mode = %d\n", hw->diu_mode);
  376. }
  377. static void disable_lcdc(void)
  378. {
  379. struct diu *hw = dr.diu_reg;
  380. debug("Entered: disable_lcdc, fb_enabled = %d\n", fb_enabled);
  381. if (fb_enabled) {
  382. hw->diu_mode = 0;
  383. fb_enabled = 0;
  384. }
  385. }
  386. /*
  387. * Align to 64-bit(8-byte), 32-byte, etc.
  388. */
  389. static int allocate_buf(struct diu_addr *buf, u32 size, u32 bytes_align)
  390. {
  391. u32 offset, ssize;
  392. u32 mask;
  393. debug("Entered: allocate_buf\n");
  394. ssize = size + bytes_align;
  395. buf->paddr = malloc(ssize);
  396. if (!buf->paddr)
  397. return -1;
  398. memset(buf->paddr, 0, ssize);
  399. mask = bytes_align - 1;
  400. offset = (u32)buf->paddr & mask;
  401. if (offset) {
  402. buf->offset = bytes_align - offset;
  403. buf->paddr = (unsigned char *) ((u32)buf->paddr + offset);
  404. } else
  405. buf->offset = 0;
  406. return 0;
  407. }
  408. int fsl_diu_display_bmp(unsigned char *bmp,
  409. int xoffset,
  410. int yoffset,
  411. int transpar)
  412. {
  413. struct fb_info *info = &fsl_fb_info;
  414. unsigned char r, g, b;
  415. unsigned int *fb_t, val;
  416. unsigned char *bitmap;
  417. unsigned int palette[256];
  418. int width, height, bpp, ncolors, raster, offset, x, y, i, k, cpp;
  419. if (!bmp) {
  420. printf("Must supply a bitmap address\n");
  421. return 0;
  422. }
  423. raster = bmp[10] + (bmp[11] << 8) + (bmp[12] << 16) + (bmp[13] << 24);
  424. width = (bmp[21] << 24) | (bmp[20] << 16) | (bmp[19] << 8) | bmp[18];
  425. height = (bmp[25] << 24) | (bmp[24] << 16) | (bmp[23] << 8) | bmp[22];
  426. bpp = (bmp[29] << 8) | (bmp[28]);
  427. ncolors = bmp[46] + (bmp[47] << 8) + (bmp[48] << 16) + (bmp[49] << 24);
  428. bitmap = bmp + raster;
  429. cpp = info->var.bits_per_pixel / 8;
  430. debug("bmp = 0x%08x\n", (unsigned int)bmp);
  431. debug("bitmap = 0x%08x\n", (unsigned int)bitmap);
  432. debug("width = %d\n", width);
  433. debug("height = %d\n", height);
  434. debug("bpp = %d\n", bpp);
  435. debug("ncolors = %d\n", ncolors);
  436. debug("xres = %d\n", info->var.xres);
  437. debug("yres = %d\n", info->var.yres);
  438. debug("Screen_base = 0x%x\n", (unsigned int)info->screen_base);
  439. if (((width+xoffset) > info->var.xres) ||
  440. ((height+yoffset) > info->var.yres)) {
  441. printf("bitmap is out of range, image too large or too much offset\n");
  442. return 0;
  443. }
  444. if (bpp < 24) {
  445. for (i = 0, offset = 54; i < ncolors; i++, offset += 4)
  446. palette[i] = (bmp[offset+2] << 16)
  447. + (bmp[offset+1] << 8) + bmp[offset];
  448. }
  449. switch (bpp) {
  450. case 1:
  451. for (y = height - 1; y >= 0; y--) {
  452. fb_t = (unsigned int *) ((unsigned int)info->screen_base + (((y+yoffset) * info->var.xres) + xoffset)*cpp);
  453. for (x = 0; x < width; x += 8) {
  454. b = *bitmap++;
  455. for (k = 0; k < 8; k++) {
  456. if (b & 0x80)
  457. *fb_t = palette[1];
  458. else
  459. *fb_t = palette[0];
  460. b = b << 1;
  461. }
  462. }
  463. for (i = (width / 2) % 4; i > 0; i--)
  464. bitmap++;
  465. }
  466. break;
  467. case 4:
  468. for (y = height - 1; y >= 0; y--) {
  469. fb_t = (unsigned int *) ((unsigned int)info->screen_base + (((y+yoffset) * info->var.xres) + xoffset)*cpp);
  470. for (x = 0; x < width; x += 2) {
  471. b = *bitmap++;
  472. r = (b >> 4) & 0x0F;
  473. g = b & 0x0F;
  474. *fb_t++ = palette[r];
  475. *fb_t++ = palette[g];
  476. }
  477. for (i = (width / 2) % 4; i > 0; i--)
  478. bitmap++;
  479. }
  480. break;
  481. case 8:
  482. for (y = height - 1; y >= 0; y--) {
  483. fb_t = (unsigned int *) ((unsigned int)info->screen_base + (((y+yoffset) * info->var.xres) + xoffset)*cpp);
  484. for (x = 0; x < width; x++) {
  485. *fb_t++ = palette[ *bitmap++ ];
  486. }
  487. for (i = (width / 2) % 4; i > 0; i--)
  488. bitmap++;
  489. }
  490. break;
  491. case 24:
  492. for (y = height - 1; y >= 0; y--) {
  493. fb_t = (unsigned int *) ((unsigned int)info->screen_base + (((y+yoffset) * info->var.xres) + xoffset)*cpp);
  494. for (x = 0; x < width; x++) {
  495. b = *bitmap++;
  496. g = *bitmap++;
  497. r = *bitmap++;
  498. val = (r << 16) + (g << 8) + b;
  499. *fb_t++ = val;
  500. }
  501. for (; (x % 4) != 0; x++) /* 4-byte alignment */
  502. bitmap++;
  503. }
  504. break;
  505. }
  506. return height;
  507. }
  508. void fsl_diu_clear_screen(void)
  509. {
  510. struct fb_info *info = &fsl_fb_info;
  511. memset(info->screen_base, 0, info->smem_len);
  512. }