omapfb-main.c 58 KB

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  1. /*
  2. * linux/drivers/video/omap2/omapfb-main.c
  3. *
  4. * Copyright (C) 2008 Nokia Corporation
  5. * Author: Tomi Valkeinen <tomi.valkeinen@nokia.com>
  6. *
  7. * Some code and ideas taken from drivers/video/omap/ driver
  8. * by Imre Deak.
  9. *
  10. * This program is free software; you can redistribute it and/or modify it
  11. * under the terms of the GNU General Public License version 2 as published by
  12. * the Free Software Foundation.
  13. *
  14. * This program is distributed in the hope that it will be useful, but WITHOUT
  15. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  16. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  17. * more details.
  18. *
  19. * You should have received a copy of the GNU General Public License along with
  20. * this program. If not, see <http://www.gnu.org/licenses/>.
  21. */
  22. #include <linux/module.h>
  23. #include <linux/delay.h>
  24. #include <linux/slab.h>
  25. #include <linux/fb.h>
  26. #include <linux/dma-mapping.h>
  27. #include <linux/vmalloc.h>
  28. #include <linux/device.h>
  29. #include <linux/platform_device.h>
  30. #include <linux/omapfb.h>
  31. #include <video/omapdss.h>
  32. #include <video/omapvrfb.h>
  33. #include "omapfb.h"
  34. #define MODULE_NAME "omapfb"
  35. #define OMAPFB_PLANE_XRES_MIN 8
  36. #define OMAPFB_PLANE_YRES_MIN 8
  37. static char *def_mode;
  38. static char *def_vram;
  39. static bool def_vrfb;
  40. static int def_rotate;
  41. static bool def_mirror;
  42. static bool auto_update;
  43. static unsigned int auto_update_freq;
  44. module_param(auto_update, bool, 0);
  45. module_param(auto_update_freq, uint, 0644);
  46. #ifdef DEBUG
  47. bool omapfb_debug;
  48. module_param_named(debug, omapfb_debug, bool, 0644);
  49. static bool omapfb_test_pattern;
  50. module_param_named(test, omapfb_test_pattern, bool, 0644);
  51. #endif
  52. static int omapfb_fb_init(struct omapfb2_device *fbdev, struct fb_info *fbi);
  53. static int omapfb_get_recommended_bpp(struct omapfb2_device *fbdev,
  54. struct omap_dss_device *dssdev);
  55. #ifdef DEBUG
  56. static void draw_pixel(struct fb_info *fbi, int x, int y, unsigned color)
  57. {
  58. struct fb_var_screeninfo *var = &fbi->var;
  59. struct fb_fix_screeninfo *fix = &fbi->fix;
  60. void __iomem *addr = fbi->screen_base;
  61. const unsigned bytespp = var->bits_per_pixel >> 3;
  62. const unsigned line_len = fix->line_length / bytespp;
  63. int r = (color >> 16) & 0xff;
  64. int g = (color >> 8) & 0xff;
  65. int b = (color >> 0) & 0xff;
  66. if (var->bits_per_pixel == 16) {
  67. u16 __iomem *p = (u16 __iomem *)addr;
  68. p += y * line_len + x;
  69. r = r * 32 / 256;
  70. g = g * 64 / 256;
  71. b = b * 32 / 256;
  72. __raw_writew((r << 11) | (g << 5) | (b << 0), p);
  73. } else if (var->bits_per_pixel == 24) {
  74. u8 __iomem *p = (u8 __iomem *)addr;
  75. p += (y * line_len + x) * 3;
  76. __raw_writeb(b, p + 0);
  77. __raw_writeb(g, p + 1);
  78. __raw_writeb(r, p + 2);
  79. } else if (var->bits_per_pixel == 32) {
  80. u32 __iomem *p = (u32 __iomem *)addr;
  81. p += y * line_len + x;
  82. __raw_writel(color, p);
  83. }
  84. }
  85. static void fill_fb(struct fb_info *fbi)
  86. {
  87. struct fb_var_screeninfo *var = &fbi->var;
  88. const short w = var->xres_virtual;
  89. const short h = var->yres_virtual;
  90. void __iomem *addr = fbi->screen_base;
  91. int y, x;
  92. if (!addr)
  93. return;
  94. DBG("fill_fb %dx%d, line_len %d bytes\n", w, h, fbi->fix.line_length);
  95. for (y = 0; y < h; y++) {
  96. for (x = 0; x < w; x++) {
  97. if (x < 20 && y < 20)
  98. draw_pixel(fbi, x, y, 0xffffff);
  99. else if (x < 20 && (y > 20 && y < h - 20))
  100. draw_pixel(fbi, x, y, 0xff);
  101. else if (y < 20 && (x > 20 && x < w - 20))
  102. draw_pixel(fbi, x, y, 0xff00);
  103. else if (x > w - 20 && (y > 20 && y < h - 20))
  104. draw_pixel(fbi, x, y, 0xff0000);
  105. else if (y > h - 20 && (x > 20 && x < w - 20))
  106. draw_pixel(fbi, x, y, 0xffff00);
  107. else if (x == 20 || x == w - 20 ||
  108. y == 20 || y == h - 20)
  109. draw_pixel(fbi, x, y, 0xffffff);
  110. else if (x == y || w - x == h - y)
  111. draw_pixel(fbi, x, y, 0xff00ff);
  112. else if (w - x == y || x == h - y)
  113. draw_pixel(fbi, x, y, 0x00ffff);
  114. else if (x > 20 && y > 20 && x < w - 20 && y < h - 20) {
  115. int t = x * 3 / w;
  116. unsigned r = 0, g = 0, b = 0;
  117. unsigned c;
  118. if (var->bits_per_pixel == 16) {
  119. if (t == 0)
  120. b = (y % 32) * 256 / 32;
  121. else if (t == 1)
  122. g = (y % 64) * 256 / 64;
  123. else if (t == 2)
  124. r = (y % 32) * 256 / 32;
  125. } else {
  126. if (t == 0)
  127. b = (y % 256);
  128. else if (t == 1)
  129. g = (y % 256);
  130. else if (t == 2)
  131. r = (y % 256);
  132. }
  133. c = (r << 16) | (g << 8) | (b << 0);
  134. draw_pixel(fbi, x, y, c);
  135. } else {
  136. draw_pixel(fbi, x, y, 0);
  137. }
  138. }
  139. }
  140. }
  141. #endif
  142. static unsigned omapfb_get_vrfb_offset(const struct omapfb_info *ofbi, int rot)
  143. {
  144. const struct vrfb *vrfb = &ofbi->region->vrfb;
  145. unsigned offset;
  146. switch (rot) {
  147. case FB_ROTATE_UR:
  148. offset = 0;
  149. break;
  150. case FB_ROTATE_CW:
  151. offset = vrfb->yoffset;
  152. break;
  153. case FB_ROTATE_UD:
  154. offset = vrfb->yoffset * OMAP_VRFB_LINE_LEN + vrfb->xoffset;
  155. break;
  156. case FB_ROTATE_CCW:
  157. offset = vrfb->xoffset * OMAP_VRFB_LINE_LEN;
  158. break;
  159. default:
  160. BUG();
  161. return 0;
  162. }
  163. offset *= vrfb->bytespp;
  164. return offset;
  165. }
  166. static u32 omapfb_get_region_rot_paddr(const struct omapfb_info *ofbi, int rot)
  167. {
  168. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  169. return ofbi->region->vrfb.paddr[rot]
  170. + omapfb_get_vrfb_offset(ofbi, rot);
  171. } else {
  172. return ofbi->region->paddr;
  173. }
  174. }
  175. static u32 omapfb_get_region_paddr(const struct omapfb_info *ofbi)
  176. {
  177. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  178. return ofbi->region->vrfb.paddr[0];
  179. else
  180. return ofbi->region->paddr;
  181. }
  182. static void __iomem *omapfb_get_region_vaddr(const struct omapfb_info *ofbi)
  183. {
  184. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  185. return ofbi->region->vrfb.vaddr[0];
  186. else
  187. return ofbi->region->vaddr;
  188. }
  189. static struct omapfb_colormode omapfb_colormodes[] = {
  190. {
  191. .dssmode = OMAP_DSS_COLOR_UYVY,
  192. .bits_per_pixel = 16,
  193. .nonstd = OMAPFB_COLOR_YUV422,
  194. }, {
  195. .dssmode = OMAP_DSS_COLOR_YUV2,
  196. .bits_per_pixel = 16,
  197. .nonstd = OMAPFB_COLOR_YUY422,
  198. }, {
  199. .dssmode = OMAP_DSS_COLOR_ARGB16,
  200. .bits_per_pixel = 16,
  201. .red = { .length = 4, .offset = 8, .msb_right = 0 },
  202. .green = { .length = 4, .offset = 4, .msb_right = 0 },
  203. .blue = { .length = 4, .offset = 0, .msb_right = 0 },
  204. .transp = { .length = 4, .offset = 12, .msb_right = 0 },
  205. }, {
  206. .dssmode = OMAP_DSS_COLOR_RGB16,
  207. .bits_per_pixel = 16,
  208. .red = { .length = 5, .offset = 11, .msb_right = 0 },
  209. .green = { .length = 6, .offset = 5, .msb_right = 0 },
  210. .blue = { .length = 5, .offset = 0, .msb_right = 0 },
  211. .transp = { .length = 0, .offset = 0, .msb_right = 0 },
  212. }, {
  213. .dssmode = OMAP_DSS_COLOR_RGB24P,
  214. .bits_per_pixel = 24,
  215. .red = { .length = 8, .offset = 16, .msb_right = 0 },
  216. .green = { .length = 8, .offset = 8, .msb_right = 0 },
  217. .blue = { .length = 8, .offset = 0, .msb_right = 0 },
  218. .transp = { .length = 0, .offset = 0, .msb_right = 0 },
  219. }, {
  220. .dssmode = OMAP_DSS_COLOR_RGB24U,
  221. .bits_per_pixel = 32,
  222. .red = { .length = 8, .offset = 16, .msb_right = 0 },
  223. .green = { .length = 8, .offset = 8, .msb_right = 0 },
  224. .blue = { .length = 8, .offset = 0, .msb_right = 0 },
  225. .transp = { .length = 0, .offset = 0, .msb_right = 0 },
  226. }, {
  227. .dssmode = OMAP_DSS_COLOR_ARGB32,
  228. .bits_per_pixel = 32,
  229. .red = { .length = 8, .offset = 16, .msb_right = 0 },
  230. .green = { .length = 8, .offset = 8, .msb_right = 0 },
  231. .blue = { .length = 8, .offset = 0, .msb_right = 0 },
  232. .transp = { .length = 8, .offset = 24, .msb_right = 0 },
  233. }, {
  234. .dssmode = OMAP_DSS_COLOR_RGBA32,
  235. .bits_per_pixel = 32,
  236. .red = { .length = 8, .offset = 24, .msb_right = 0 },
  237. .green = { .length = 8, .offset = 16, .msb_right = 0 },
  238. .blue = { .length = 8, .offset = 8, .msb_right = 0 },
  239. .transp = { .length = 8, .offset = 0, .msb_right = 0 },
  240. }, {
  241. .dssmode = OMAP_DSS_COLOR_RGBX32,
  242. .bits_per_pixel = 32,
  243. .red = { .length = 8, .offset = 24, .msb_right = 0 },
  244. .green = { .length = 8, .offset = 16, .msb_right = 0 },
  245. .blue = { .length = 8, .offset = 8, .msb_right = 0 },
  246. .transp = { .length = 0, .offset = 0, .msb_right = 0 },
  247. },
  248. };
  249. static bool cmp_var_to_colormode(struct fb_var_screeninfo *var,
  250. struct omapfb_colormode *color)
  251. {
  252. bool cmp_component(struct fb_bitfield *f1, struct fb_bitfield *f2)
  253. {
  254. return f1->length == f2->length &&
  255. f1->offset == f2->offset &&
  256. f1->msb_right == f2->msb_right;
  257. }
  258. if (var->bits_per_pixel == 0 ||
  259. var->red.length == 0 ||
  260. var->blue.length == 0 ||
  261. var->green.length == 0)
  262. return 0;
  263. return var->bits_per_pixel == color->bits_per_pixel &&
  264. cmp_component(&var->red, &color->red) &&
  265. cmp_component(&var->green, &color->green) &&
  266. cmp_component(&var->blue, &color->blue) &&
  267. cmp_component(&var->transp, &color->transp);
  268. }
  269. static void assign_colormode_to_var(struct fb_var_screeninfo *var,
  270. struct omapfb_colormode *color)
  271. {
  272. var->bits_per_pixel = color->bits_per_pixel;
  273. var->nonstd = color->nonstd;
  274. var->red = color->red;
  275. var->green = color->green;
  276. var->blue = color->blue;
  277. var->transp = color->transp;
  278. }
  279. static int fb_mode_to_dss_mode(struct fb_var_screeninfo *var,
  280. enum omap_color_mode *mode)
  281. {
  282. enum omap_color_mode dssmode;
  283. int i;
  284. /* first match with nonstd field */
  285. if (var->nonstd) {
  286. for (i = 0; i < ARRAY_SIZE(omapfb_colormodes); ++i) {
  287. struct omapfb_colormode *m = &omapfb_colormodes[i];
  288. if (var->nonstd == m->nonstd) {
  289. assign_colormode_to_var(var, m);
  290. *mode = m->dssmode;
  291. return 0;
  292. }
  293. }
  294. return -EINVAL;
  295. }
  296. /* then try exact match of bpp and colors */
  297. for (i = 0; i < ARRAY_SIZE(omapfb_colormodes); ++i) {
  298. struct omapfb_colormode *m = &omapfb_colormodes[i];
  299. if (cmp_var_to_colormode(var, m)) {
  300. assign_colormode_to_var(var, m);
  301. *mode = m->dssmode;
  302. return 0;
  303. }
  304. }
  305. /* match with bpp if user has not filled color fields
  306. * properly */
  307. switch (var->bits_per_pixel) {
  308. case 1:
  309. dssmode = OMAP_DSS_COLOR_CLUT1;
  310. break;
  311. case 2:
  312. dssmode = OMAP_DSS_COLOR_CLUT2;
  313. break;
  314. case 4:
  315. dssmode = OMAP_DSS_COLOR_CLUT4;
  316. break;
  317. case 8:
  318. dssmode = OMAP_DSS_COLOR_CLUT8;
  319. break;
  320. case 12:
  321. dssmode = OMAP_DSS_COLOR_RGB12U;
  322. break;
  323. case 16:
  324. dssmode = OMAP_DSS_COLOR_RGB16;
  325. break;
  326. case 24:
  327. dssmode = OMAP_DSS_COLOR_RGB24P;
  328. break;
  329. case 32:
  330. dssmode = OMAP_DSS_COLOR_RGB24U;
  331. break;
  332. default:
  333. return -EINVAL;
  334. }
  335. for (i = 0; i < ARRAY_SIZE(omapfb_colormodes); ++i) {
  336. struct omapfb_colormode *m = &omapfb_colormodes[i];
  337. if (dssmode == m->dssmode) {
  338. assign_colormode_to_var(var, m);
  339. *mode = m->dssmode;
  340. return 0;
  341. }
  342. }
  343. return -EINVAL;
  344. }
  345. static int check_fb_res_bounds(struct fb_var_screeninfo *var)
  346. {
  347. int xres_min = OMAPFB_PLANE_XRES_MIN;
  348. int xres_max = 2048;
  349. int yres_min = OMAPFB_PLANE_YRES_MIN;
  350. int yres_max = 2048;
  351. /* XXX: some applications seem to set virtual res to 0. */
  352. if (var->xres_virtual == 0)
  353. var->xres_virtual = var->xres;
  354. if (var->yres_virtual == 0)
  355. var->yres_virtual = var->yres;
  356. if (var->xres_virtual < xres_min || var->yres_virtual < yres_min)
  357. return -EINVAL;
  358. if (var->xres < xres_min)
  359. var->xres = xres_min;
  360. if (var->yres < yres_min)
  361. var->yres = yres_min;
  362. if (var->xres > xres_max)
  363. var->xres = xres_max;
  364. if (var->yres > yres_max)
  365. var->yres = yres_max;
  366. if (var->xres > var->xres_virtual)
  367. var->xres = var->xres_virtual;
  368. if (var->yres > var->yres_virtual)
  369. var->yres = var->yres_virtual;
  370. return 0;
  371. }
  372. static void shrink_height(unsigned long max_frame_size,
  373. struct fb_var_screeninfo *var)
  374. {
  375. DBG("can't fit FB into memory, reducing y\n");
  376. var->yres_virtual = max_frame_size /
  377. (var->xres_virtual * var->bits_per_pixel >> 3);
  378. if (var->yres_virtual < OMAPFB_PLANE_YRES_MIN)
  379. var->yres_virtual = OMAPFB_PLANE_YRES_MIN;
  380. if (var->yres > var->yres_virtual)
  381. var->yres = var->yres_virtual;
  382. }
  383. static void shrink_width(unsigned long max_frame_size,
  384. struct fb_var_screeninfo *var)
  385. {
  386. DBG("can't fit FB into memory, reducing x\n");
  387. var->xres_virtual = max_frame_size / var->yres_virtual /
  388. (var->bits_per_pixel >> 3);
  389. if (var->xres_virtual < OMAPFB_PLANE_XRES_MIN)
  390. var->xres_virtual = OMAPFB_PLANE_XRES_MIN;
  391. if (var->xres > var->xres_virtual)
  392. var->xres = var->xres_virtual;
  393. }
  394. static int check_vrfb_fb_size(unsigned long region_size,
  395. const struct fb_var_screeninfo *var)
  396. {
  397. unsigned long min_phys_size = omap_vrfb_min_phys_size(var->xres_virtual,
  398. var->yres_virtual, var->bits_per_pixel >> 3);
  399. return min_phys_size > region_size ? -EINVAL : 0;
  400. }
  401. static int check_fb_size(const struct omapfb_info *ofbi,
  402. struct fb_var_screeninfo *var)
  403. {
  404. unsigned long max_frame_size = ofbi->region->size;
  405. int bytespp = var->bits_per_pixel >> 3;
  406. unsigned long line_size = var->xres_virtual * bytespp;
  407. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  408. /* One needs to check for both VRFB and OMAPFB limitations. */
  409. if (check_vrfb_fb_size(max_frame_size, var))
  410. shrink_height(omap_vrfb_max_height(
  411. max_frame_size, var->xres_virtual, bytespp) *
  412. line_size, var);
  413. if (check_vrfb_fb_size(max_frame_size, var)) {
  414. DBG("cannot fit FB to memory\n");
  415. return -EINVAL;
  416. }
  417. return 0;
  418. }
  419. DBG("max frame size %lu, line size %lu\n", max_frame_size, line_size);
  420. if (line_size * var->yres_virtual > max_frame_size)
  421. shrink_height(max_frame_size, var);
  422. if (line_size * var->yres_virtual > max_frame_size) {
  423. shrink_width(max_frame_size, var);
  424. line_size = var->xres_virtual * bytespp;
  425. }
  426. if (line_size * var->yres_virtual > max_frame_size) {
  427. DBG("cannot fit FB to memory\n");
  428. return -EINVAL;
  429. }
  430. return 0;
  431. }
  432. /*
  433. * Consider if VRFB assisted rotation is in use and if the virtual space for
  434. * the zero degree view needs to be mapped. The need for mapping also acts as
  435. * the trigger for setting up the hardware on the context in question. This
  436. * ensures that one does not attempt to access the virtual view before the
  437. * hardware is serving the address translations.
  438. */
  439. static int setup_vrfb_rotation(struct fb_info *fbi)
  440. {
  441. struct omapfb_info *ofbi = FB2OFB(fbi);
  442. struct omapfb2_mem_region *rg = ofbi->region;
  443. struct vrfb *vrfb = &rg->vrfb;
  444. struct fb_var_screeninfo *var = &fbi->var;
  445. struct fb_fix_screeninfo *fix = &fbi->fix;
  446. unsigned bytespp;
  447. bool yuv_mode;
  448. enum omap_color_mode mode;
  449. int r;
  450. bool reconf;
  451. if (!rg->size || ofbi->rotation_type != OMAP_DSS_ROT_VRFB)
  452. return 0;
  453. DBG("setup_vrfb_rotation\n");
  454. r = fb_mode_to_dss_mode(var, &mode);
  455. if (r)
  456. return r;
  457. bytespp = var->bits_per_pixel >> 3;
  458. yuv_mode = mode == OMAP_DSS_COLOR_YUV2 || mode == OMAP_DSS_COLOR_UYVY;
  459. /* We need to reconfigure VRFB if the resolution changes, if yuv mode
  460. * is enabled/disabled, or if bytes per pixel changes */
  461. /* XXX we shouldn't allow this when framebuffer is mmapped */
  462. reconf = false;
  463. if (yuv_mode != vrfb->yuv_mode)
  464. reconf = true;
  465. else if (bytespp != vrfb->bytespp)
  466. reconf = true;
  467. else if (vrfb->xres != var->xres_virtual ||
  468. vrfb->yres != var->yres_virtual)
  469. reconf = true;
  470. if (vrfb->vaddr[0] && reconf) {
  471. fbi->screen_base = NULL;
  472. fix->smem_start = 0;
  473. fix->smem_len = 0;
  474. iounmap(vrfb->vaddr[0]);
  475. vrfb->vaddr[0] = NULL;
  476. DBG("setup_vrfb_rotation: reset fb\n");
  477. }
  478. if (vrfb->vaddr[0])
  479. return 0;
  480. omap_vrfb_setup(&rg->vrfb, rg->paddr,
  481. var->xres_virtual,
  482. var->yres_virtual,
  483. bytespp, yuv_mode);
  484. /* Now one can ioremap the 0 angle view */
  485. r = omap_vrfb_map_angle(vrfb, var->yres_virtual, 0);
  486. if (r)
  487. return r;
  488. /* used by open/write in fbmem.c */
  489. fbi->screen_base = ofbi->region->vrfb.vaddr[0];
  490. fix->smem_start = ofbi->region->vrfb.paddr[0];
  491. switch (var->nonstd) {
  492. case OMAPFB_COLOR_YUV422:
  493. case OMAPFB_COLOR_YUY422:
  494. fix->line_length =
  495. (OMAP_VRFB_LINE_LEN * var->bits_per_pixel) >> 2;
  496. break;
  497. default:
  498. fix->line_length =
  499. (OMAP_VRFB_LINE_LEN * var->bits_per_pixel) >> 3;
  500. break;
  501. }
  502. fix->smem_len = var->yres_virtual * fix->line_length;
  503. return 0;
  504. }
  505. int dss_mode_to_fb_mode(enum omap_color_mode dssmode,
  506. struct fb_var_screeninfo *var)
  507. {
  508. int i;
  509. for (i = 0; i < ARRAY_SIZE(omapfb_colormodes); ++i) {
  510. struct omapfb_colormode *mode = &omapfb_colormodes[i];
  511. if (dssmode == mode->dssmode) {
  512. assign_colormode_to_var(var, mode);
  513. return 0;
  514. }
  515. }
  516. return -ENOENT;
  517. }
  518. void set_fb_fix(struct fb_info *fbi)
  519. {
  520. struct fb_fix_screeninfo *fix = &fbi->fix;
  521. struct fb_var_screeninfo *var = &fbi->var;
  522. struct omapfb_info *ofbi = FB2OFB(fbi);
  523. struct omapfb2_mem_region *rg = ofbi->region;
  524. DBG("set_fb_fix\n");
  525. /* used by open/write in fbmem.c */
  526. fbi->screen_base = (char __iomem *)omapfb_get_region_vaddr(ofbi);
  527. /* used by mmap in fbmem.c */
  528. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  529. switch (var->nonstd) {
  530. case OMAPFB_COLOR_YUV422:
  531. case OMAPFB_COLOR_YUY422:
  532. fix->line_length =
  533. (OMAP_VRFB_LINE_LEN * var->bits_per_pixel) >> 2;
  534. break;
  535. default:
  536. fix->line_length =
  537. (OMAP_VRFB_LINE_LEN * var->bits_per_pixel) >> 3;
  538. break;
  539. }
  540. fix->smem_len = var->yres_virtual * fix->line_length;
  541. } else {
  542. fix->line_length =
  543. (var->xres_virtual * var->bits_per_pixel) >> 3;
  544. fix->smem_len = rg->size;
  545. }
  546. fix->smem_start = omapfb_get_region_paddr(ofbi);
  547. fix->type = FB_TYPE_PACKED_PIXELS;
  548. if (var->nonstd)
  549. fix->visual = FB_VISUAL_PSEUDOCOLOR;
  550. else {
  551. switch (var->bits_per_pixel) {
  552. case 32:
  553. case 24:
  554. case 16:
  555. case 12:
  556. fix->visual = FB_VISUAL_TRUECOLOR;
  557. /* 12bpp is stored in 16 bits */
  558. break;
  559. case 1:
  560. case 2:
  561. case 4:
  562. case 8:
  563. fix->visual = FB_VISUAL_PSEUDOCOLOR;
  564. break;
  565. }
  566. }
  567. fix->accel = FB_ACCEL_NONE;
  568. fix->xpanstep = 1;
  569. fix->ypanstep = 1;
  570. }
  571. /* check new var and possibly modify it to be ok */
  572. int check_fb_var(struct fb_info *fbi, struct fb_var_screeninfo *var)
  573. {
  574. struct omapfb_info *ofbi = FB2OFB(fbi);
  575. struct omap_dss_device *display = fb2display(fbi);
  576. enum omap_color_mode mode = 0;
  577. int i;
  578. int r;
  579. DBG("check_fb_var %d\n", ofbi->id);
  580. WARN_ON(!atomic_read(&ofbi->region->lock_count));
  581. r = fb_mode_to_dss_mode(var, &mode);
  582. if (r) {
  583. DBG("cannot convert var to omap dss mode\n");
  584. return r;
  585. }
  586. for (i = 0; i < ofbi->num_overlays; ++i) {
  587. if ((ofbi->overlays[i]->supported_modes & mode) == 0) {
  588. DBG("invalid mode\n");
  589. return -EINVAL;
  590. }
  591. }
  592. if (var->rotate > 3)
  593. return -EINVAL;
  594. if (check_fb_res_bounds(var))
  595. return -EINVAL;
  596. /* When no memory is allocated ignore the size check */
  597. if (ofbi->region->size != 0 && check_fb_size(ofbi, var))
  598. return -EINVAL;
  599. if (var->xres + var->xoffset > var->xres_virtual)
  600. var->xoffset = var->xres_virtual - var->xres;
  601. if (var->yres + var->yoffset > var->yres_virtual)
  602. var->yoffset = var->yres_virtual - var->yres;
  603. DBG("xres = %d, yres = %d, vxres = %d, vyres = %d\n",
  604. var->xres, var->yres,
  605. var->xres_virtual, var->yres_virtual);
  606. if (display && display->driver->get_dimensions) {
  607. u32 w, h;
  608. display->driver->get_dimensions(display, &w, &h);
  609. var->width = DIV_ROUND_CLOSEST(w, 1000);
  610. var->height = DIV_ROUND_CLOSEST(h, 1000);
  611. } else {
  612. var->height = -1;
  613. var->width = -1;
  614. }
  615. var->grayscale = 0;
  616. if (display && display->driver->get_timings) {
  617. struct omap_video_timings timings;
  618. display->driver->get_timings(display, &timings);
  619. /* pixclock in ps, the rest in pixclock */
  620. var->pixclock = timings.pixel_clock != 0 ?
  621. KHZ2PICOS(timings.pixel_clock) :
  622. 0;
  623. var->left_margin = timings.hbp;
  624. var->right_margin = timings.hfp;
  625. var->upper_margin = timings.vbp;
  626. var->lower_margin = timings.vfp;
  627. var->hsync_len = timings.hsw;
  628. var->vsync_len = timings.vsw;
  629. var->sync |= timings.hsync_level == OMAPDSS_SIG_ACTIVE_HIGH ?
  630. FB_SYNC_HOR_HIGH_ACT : 0;
  631. var->sync |= timings.vsync_level == OMAPDSS_SIG_ACTIVE_HIGH ?
  632. FB_SYNC_VERT_HIGH_ACT : 0;
  633. var->vmode = timings.interlace ?
  634. FB_VMODE_INTERLACED : FB_VMODE_NONINTERLACED;
  635. } else {
  636. var->pixclock = 0;
  637. var->left_margin = 0;
  638. var->right_margin = 0;
  639. var->upper_margin = 0;
  640. var->lower_margin = 0;
  641. var->hsync_len = 0;
  642. var->vsync_len = 0;
  643. var->sync = 0;
  644. var->vmode = FB_VMODE_NONINTERLACED;
  645. }
  646. return 0;
  647. }
  648. /*
  649. * ---------------------------------------------------------------------------
  650. * fbdev framework callbacks
  651. * ---------------------------------------------------------------------------
  652. */
  653. static int omapfb_open(struct fb_info *fbi, int user)
  654. {
  655. return 0;
  656. }
  657. static int omapfb_release(struct fb_info *fbi, int user)
  658. {
  659. return 0;
  660. }
  661. static unsigned calc_rotation_offset_dma(const struct fb_var_screeninfo *var,
  662. const struct fb_fix_screeninfo *fix, int rotation)
  663. {
  664. unsigned offset;
  665. offset = var->yoffset * fix->line_length +
  666. var->xoffset * (var->bits_per_pixel >> 3);
  667. return offset;
  668. }
  669. static unsigned calc_rotation_offset_vrfb(const struct fb_var_screeninfo *var,
  670. const struct fb_fix_screeninfo *fix, int rotation)
  671. {
  672. unsigned offset;
  673. if (rotation == FB_ROTATE_UD)
  674. offset = (var->yres_virtual - var->yres) *
  675. fix->line_length;
  676. else if (rotation == FB_ROTATE_CW)
  677. offset = (var->yres_virtual - var->yres) *
  678. (var->bits_per_pixel >> 3);
  679. else
  680. offset = 0;
  681. if (rotation == FB_ROTATE_UR)
  682. offset += var->yoffset * fix->line_length +
  683. var->xoffset * (var->bits_per_pixel >> 3);
  684. else if (rotation == FB_ROTATE_UD)
  685. offset -= var->yoffset * fix->line_length +
  686. var->xoffset * (var->bits_per_pixel >> 3);
  687. else if (rotation == FB_ROTATE_CW)
  688. offset -= var->xoffset * fix->line_length +
  689. var->yoffset * (var->bits_per_pixel >> 3);
  690. else if (rotation == FB_ROTATE_CCW)
  691. offset += var->xoffset * fix->line_length +
  692. var->yoffset * (var->bits_per_pixel >> 3);
  693. return offset;
  694. }
  695. static void omapfb_calc_addr(const struct omapfb_info *ofbi,
  696. const struct fb_var_screeninfo *var,
  697. const struct fb_fix_screeninfo *fix,
  698. int rotation, u32 *paddr)
  699. {
  700. u32 data_start_p;
  701. int offset;
  702. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  703. data_start_p = omapfb_get_region_rot_paddr(ofbi, rotation);
  704. else
  705. data_start_p = omapfb_get_region_paddr(ofbi);
  706. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  707. offset = calc_rotation_offset_vrfb(var, fix, rotation);
  708. else
  709. offset = calc_rotation_offset_dma(var, fix, rotation);
  710. data_start_p += offset;
  711. if (offset)
  712. DBG("offset %d, %d = %d\n",
  713. var->xoffset, var->yoffset, offset);
  714. DBG("paddr %x\n", data_start_p);
  715. *paddr = data_start_p;
  716. }
  717. /* setup overlay according to the fb */
  718. int omapfb_setup_overlay(struct fb_info *fbi, struct omap_overlay *ovl,
  719. u16 posx, u16 posy, u16 outw, u16 outh)
  720. {
  721. int r = 0;
  722. struct omapfb_info *ofbi = FB2OFB(fbi);
  723. struct fb_var_screeninfo *var = &fbi->var;
  724. struct fb_fix_screeninfo *fix = &fbi->fix;
  725. enum omap_color_mode mode = 0;
  726. u32 data_start_p = 0;
  727. struct omap_overlay_info info;
  728. int xres, yres;
  729. int screen_width;
  730. int mirror;
  731. int rotation = var->rotate;
  732. int i;
  733. WARN_ON(!atomic_read(&ofbi->region->lock_count));
  734. for (i = 0; i < ofbi->num_overlays; i++) {
  735. if (ovl != ofbi->overlays[i])
  736. continue;
  737. rotation = (rotation + ofbi->rotation[i]) % 4;
  738. break;
  739. }
  740. DBG("setup_overlay %d, posx %d, posy %d, outw %d, outh %d\n", ofbi->id,
  741. posx, posy, outw, outh);
  742. if (rotation == FB_ROTATE_CW || rotation == FB_ROTATE_CCW) {
  743. xres = var->yres;
  744. yres = var->xres;
  745. } else {
  746. xres = var->xres;
  747. yres = var->yres;
  748. }
  749. if (ofbi->region->size)
  750. omapfb_calc_addr(ofbi, var, fix, rotation, &data_start_p);
  751. r = fb_mode_to_dss_mode(var, &mode);
  752. if (r) {
  753. DBG("fb_mode_to_dss_mode failed");
  754. goto err;
  755. }
  756. switch (var->nonstd) {
  757. case OMAPFB_COLOR_YUV422:
  758. case OMAPFB_COLOR_YUY422:
  759. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  760. screen_width = fix->line_length
  761. / (var->bits_per_pixel >> 2);
  762. break;
  763. }
  764. default:
  765. screen_width = fix->line_length / (var->bits_per_pixel >> 3);
  766. break;
  767. }
  768. ovl->get_overlay_info(ovl, &info);
  769. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  770. mirror = 0;
  771. else
  772. mirror = ofbi->mirror;
  773. info.paddr = data_start_p;
  774. info.screen_width = screen_width;
  775. info.width = xres;
  776. info.height = yres;
  777. info.color_mode = mode;
  778. info.rotation_type = ofbi->rotation_type;
  779. info.rotation = rotation;
  780. info.mirror = mirror;
  781. info.pos_x = posx;
  782. info.pos_y = posy;
  783. info.out_width = outw;
  784. info.out_height = outh;
  785. r = ovl->set_overlay_info(ovl, &info);
  786. if (r) {
  787. DBG("ovl->setup_overlay_info failed\n");
  788. goto err;
  789. }
  790. return 0;
  791. err:
  792. DBG("setup_overlay failed\n");
  793. return r;
  794. }
  795. /* apply var to the overlay */
  796. int omapfb_apply_changes(struct fb_info *fbi, int init)
  797. {
  798. int r = 0;
  799. struct omapfb_info *ofbi = FB2OFB(fbi);
  800. struct fb_var_screeninfo *var = &fbi->var;
  801. struct omap_overlay *ovl;
  802. u16 posx, posy;
  803. u16 outw, outh;
  804. int i;
  805. #ifdef DEBUG
  806. if (omapfb_test_pattern)
  807. fill_fb(fbi);
  808. #endif
  809. WARN_ON(!atomic_read(&ofbi->region->lock_count));
  810. for (i = 0; i < ofbi->num_overlays; i++) {
  811. ovl = ofbi->overlays[i];
  812. DBG("apply_changes, fb %d, ovl %d\n", ofbi->id, ovl->id);
  813. if (ofbi->region->size == 0) {
  814. /* the fb is not available. disable the overlay */
  815. omapfb_overlay_enable(ovl, 0);
  816. if (!init && ovl->manager)
  817. ovl->manager->apply(ovl->manager);
  818. continue;
  819. }
  820. if (init || (ovl->caps & OMAP_DSS_OVL_CAP_SCALE) == 0) {
  821. int rotation = (var->rotate + ofbi->rotation[i]) % 4;
  822. if (rotation == FB_ROTATE_CW ||
  823. rotation == FB_ROTATE_CCW) {
  824. outw = var->yres;
  825. outh = var->xres;
  826. } else {
  827. outw = var->xres;
  828. outh = var->yres;
  829. }
  830. } else {
  831. struct omap_overlay_info info;
  832. ovl->get_overlay_info(ovl, &info);
  833. outw = info.out_width;
  834. outh = info.out_height;
  835. }
  836. if (init) {
  837. posx = 0;
  838. posy = 0;
  839. } else {
  840. struct omap_overlay_info info;
  841. ovl->get_overlay_info(ovl, &info);
  842. posx = info.pos_x;
  843. posy = info.pos_y;
  844. }
  845. r = omapfb_setup_overlay(fbi, ovl, posx, posy, outw, outh);
  846. if (r)
  847. goto err;
  848. if (!init && ovl->manager)
  849. ovl->manager->apply(ovl->manager);
  850. }
  851. return 0;
  852. err:
  853. DBG("apply_changes failed\n");
  854. return r;
  855. }
  856. /* checks var and eventually tweaks it to something supported,
  857. * DO NOT MODIFY PAR */
  858. static int omapfb_check_var(struct fb_var_screeninfo *var, struct fb_info *fbi)
  859. {
  860. struct omapfb_info *ofbi = FB2OFB(fbi);
  861. int r;
  862. DBG("check_var(%d)\n", FB2OFB(fbi)->id);
  863. omapfb_get_mem_region(ofbi->region);
  864. r = check_fb_var(fbi, var);
  865. omapfb_put_mem_region(ofbi->region);
  866. return r;
  867. }
  868. /* set the video mode according to info->var */
  869. static int omapfb_set_par(struct fb_info *fbi)
  870. {
  871. struct omapfb_info *ofbi = FB2OFB(fbi);
  872. int r;
  873. DBG("set_par(%d)\n", FB2OFB(fbi)->id);
  874. omapfb_get_mem_region(ofbi->region);
  875. set_fb_fix(fbi);
  876. r = setup_vrfb_rotation(fbi);
  877. if (r)
  878. goto out;
  879. r = omapfb_apply_changes(fbi, 0);
  880. out:
  881. omapfb_put_mem_region(ofbi->region);
  882. return r;
  883. }
  884. static int omapfb_pan_display(struct fb_var_screeninfo *var,
  885. struct fb_info *fbi)
  886. {
  887. struct omapfb_info *ofbi = FB2OFB(fbi);
  888. struct fb_var_screeninfo new_var;
  889. int r;
  890. DBG("pan_display(%d)\n", FB2OFB(fbi)->id);
  891. if (var->xoffset == fbi->var.xoffset &&
  892. var->yoffset == fbi->var.yoffset)
  893. return 0;
  894. new_var = fbi->var;
  895. new_var.xoffset = var->xoffset;
  896. new_var.yoffset = var->yoffset;
  897. fbi->var = new_var;
  898. omapfb_get_mem_region(ofbi->region);
  899. r = omapfb_apply_changes(fbi, 0);
  900. omapfb_put_mem_region(ofbi->region);
  901. return r;
  902. }
  903. static void mmap_user_open(struct vm_area_struct *vma)
  904. {
  905. struct omapfb2_mem_region *rg = vma->vm_private_data;
  906. omapfb_get_mem_region(rg);
  907. atomic_inc(&rg->map_count);
  908. omapfb_put_mem_region(rg);
  909. }
  910. static void mmap_user_close(struct vm_area_struct *vma)
  911. {
  912. struct omapfb2_mem_region *rg = vma->vm_private_data;
  913. omapfb_get_mem_region(rg);
  914. atomic_dec(&rg->map_count);
  915. omapfb_put_mem_region(rg);
  916. }
  917. static struct vm_operations_struct mmap_user_ops = {
  918. .open = mmap_user_open,
  919. .close = mmap_user_close,
  920. };
  921. static int omapfb_mmap(struct fb_info *fbi, struct vm_area_struct *vma)
  922. {
  923. struct omapfb_info *ofbi = FB2OFB(fbi);
  924. struct fb_fix_screeninfo *fix = &fbi->fix;
  925. struct omapfb2_mem_region *rg;
  926. unsigned long start;
  927. u32 len;
  928. int r;
  929. rg = omapfb_get_mem_region(ofbi->region);
  930. start = omapfb_get_region_paddr(ofbi);
  931. len = fix->smem_len;
  932. DBG("user mmap region start %lx, len %d, off %lx\n", start, len,
  933. vma->vm_pgoff << PAGE_SHIFT);
  934. vma->vm_page_prot = pgprot_writecombine(vma->vm_page_prot);
  935. vma->vm_ops = &mmap_user_ops;
  936. vma->vm_private_data = rg;
  937. r = vm_iomap_memory(vma, start, len);
  938. if (r)
  939. goto error;
  940. /* vm_ops.open won't be called for mmap itself. */
  941. atomic_inc(&rg->map_count);
  942. omapfb_put_mem_region(rg);
  943. return 0;
  944. error:
  945. omapfb_put_mem_region(ofbi->region);
  946. return r;
  947. }
  948. /* Store a single color palette entry into a pseudo palette or the hardware
  949. * palette if one is available. For now we support only 16bpp and thus store
  950. * the entry only to the pseudo palette.
  951. */
  952. static int _setcolreg(struct fb_info *fbi, u_int regno, u_int red, u_int green,
  953. u_int blue, u_int transp, int update_hw_pal)
  954. {
  955. /*struct omapfb_info *ofbi = FB2OFB(fbi);*/
  956. /*struct omapfb2_device *fbdev = ofbi->fbdev;*/
  957. struct fb_var_screeninfo *var = &fbi->var;
  958. int r = 0;
  959. enum omapfb_color_format mode = OMAPFB_COLOR_RGB24U; /* XXX */
  960. /*switch (plane->color_mode) {*/
  961. switch (mode) {
  962. case OMAPFB_COLOR_YUV422:
  963. case OMAPFB_COLOR_YUV420:
  964. case OMAPFB_COLOR_YUY422:
  965. r = -EINVAL;
  966. break;
  967. case OMAPFB_COLOR_CLUT_8BPP:
  968. case OMAPFB_COLOR_CLUT_4BPP:
  969. case OMAPFB_COLOR_CLUT_2BPP:
  970. case OMAPFB_COLOR_CLUT_1BPP:
  971. /*
  972. if (fbdev->ctrl->setcolreg)
  973. r = fbdev->ctrl->setcolreg(regno, red, green, blue,
  974. transp, update_hw_pal);
  975. */
  976. /* Fallthrough */
  977. r = -EINVAL;
  978. break;
  979. case OMAPFB_COLOR_RGB565:
  980. case OMAPFB_COLOR_RGB444:
  981. case OMAPFB_COLOR_RGB24P:
  982. case OMAPFB_COLOR_RGB24U:
  983. if (r != 0)
  984. break;
  985. if (regno < 16) {
  986. u32 pal;
  987. pal = ((red >> (16 - var->red.length)) <<
  988. var->red.offset) |
  989. ((green >> (16 - var->green.length)) <<
  990. var->green.offset) |
  991. (blue >> (16 - var->blue.length));
  992. ((u32 *)(fbi->pseudo_palette))[regno] = pal;
  993. }
  994. break;
  995. default:
  996. BUG();
  997. }
  998. return r;
  999. }
  1000. static int omapfb_setcolreg(u_int regno, u_int red, u_int green, u_int blue,
  1001. u_int transp, struct fb_info *info)
  1002. {
  1003. DBG("setcolreg\n");
  1004. return _setcolreg(info, regno, red, green, blue, transp, 1);
  1005. }
  1006. static int omapfb_setcmap(struct fb_cmap *cmap, struct fb_info *info)
  1007. {
  1008. int count, index, r;
  1009. u16 *red, *green, *blue, *transp;
  1010. u16 trans = 0xffff;
  1011. DBG("setcmap\n");
  1012. red = cmap->red;
  1013. green = cmap->green;
  1014. blue = cmap->blue;
  1015. transp = cmap->transp;
  1016. index = cmap->start;
  1017. for (count = 0; count < cmap->len; count++) {
  1018. if (transp)
  1019. trans = *transp++;
  1020. r = _setcolreg(info, index++, *red++, *green++, *blue++, trans,
  1021. count == cmap->len - 1);
  1022. if (r != 0)
  1023. return r;
  1024. }
  1025. return 0;
  1026. }
  1027. static int omapfb_blank(int blank, struct fb_info *fbi)
  1028. {
  1029. struct omapfb_info *ofbi = FB2OFB(fbi);
  1030. struct omapfb2_device *fbdev = ofbi->fbdev;
  1031. struct omap_dss_device *display = fb2display(fbi);
  1032. struct omapfb_display_data *d;
  1033. int r = 0;
  1034. if (!display)
  1035. return -EINVAL;
  1036. omapfb_lock(fbdev);
  1037. d = get_display_data(fbdev, display);
  1038. switch (blank) {
  1039. case FB_BLANK_UNBLANK:
  1040. if (display->state == OMAP_DSS_DISPLAY_ACTIVE)
  1041. goto exit;
  1042. r = display->driver->enable(display);
  1043. if ((display->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE) &&
  1044. d->update_mode == OMAPFB_AUTO_UPDATE &&
  1045. !d->auto_update_work_enabled)
  1046. omapfb_start_auto_update(fbdev, display);
  1047. break;
  1048. case FB_BLANK_NORMAL:
  1049. /* FB_BLANK_NORMAL could be implemented.
  1050. * Needs DSS additions. */
  1051. case FB_BLANK_VSYNC_SUSPEND:
  1052. case FB_BLANK_HSYNC_SUSPEND:
  1053. case FB_BLANK_POWERDOWN:
  1054. if (display->state != OMAP_DSS_DISPLAY_ACTIVE)
  1055. goto exit;
  1056. if (d->auto_update_work_enabled)
  1057. omapfb_stop_auto_update(fbdev, display);
  1058. display->driver->disable(display);
  1059. break;
  1060. default:
  1061. r = -EINVAL;
  1062. }
  1063. exit:
  1064. omapfb_unlock(fbdev);
  1065. return r;
  1066. }
  1067. #if 0
  1068. /* XXX fb_read and fb_write are needed for VRFB */
  1069. ssize_t omapfb_write(struct fb_info *info, const char __user *buf,
  1070. size_t count, loff_t *ppos)
  1071. {
  1072. DBG("omapfb_write %d, %lu\n", count, (unsigned long)*ppos);
  1073. /* XXX needed for VRFB */
  1074. return count;
  1075. }
  1076. #endif
  1077. static struct fb_ops omapfb_ops = {
  1078. .owner = THIS_MODULE,
  1079. .fb_open = omapfb_open,
  1080. .fb_release = omapfb_release,
  1081. .fb_fillrect = cfb_fillrect,
  1082. .fb_copyarea = cfb_copyarea,
  1083. .fb_imageblit = cfb_imageblit,
  1084. .fb_blank = omapfb_blank,
  1085. .fb_ioctl = omapfb_ioctl,
  1086. .fb_check_var = omapfb_check_var,
  1087. .fb_set_par = omapfb_set_par,
  1088. .fb_pan_display = omapfb_pan_display,
  1089. .fb_mmap = omapfb_mmap,
  1090. .fb_setcolreg = omapfb_setcolreg,
  1091. .fb_setcmap = omapfb_setcmap,
  1092. /*.fb_write = omapfb_write,*/
  1093. };
  1094. static void omapfb_free_fbmem(struct fb_info *fbi)
  1095. {
  1096. struct omapfb_info *ofbi = FB2OFB(fbi);
  1097. struct omapfb2_device *fbdev = ofbi->fbdev;
  1098. struct omapfb2_mem_region *rg;
  1099. rg = ofbi->region;
  1100. if (rg->token == NULL)
  1101. return;
  1102. WARN_ON(atomic_read(&rg->map_count));
  1103. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  1104. /* unmap the 0 angle rotation */
  1105. if (rg->vrfb.vaddr[0]) {
  1106. iounmap(rg->vrfb.vaddr[0]);
  1107. rg->vrfb.vaddr[0] = NULL;
  1108. }
  1109. omap_vrfb_release_ctx(&rg->vrfb);
  1110. }
  1111. dma_free_attrs(fbdev->dev, rg->size, rg->token, rg->dma_handle,
  1112. &rg->attrs);
  1113. rg->token = NULL;
  1114. rg->vaddr = NULL;
  1115. rg->paddr = 0;
  1116. rg->alloc = 0;
  1117. rg->size = 0;
  1118. }
  1119. static void clear_fb_info(struct fb_info *fbi)
  1120. {
  1121. memset(&fbi->var, 0, sizeof(fbi->var));
  1122. memset(&fbi->fix, 0, sizeof(fbi->fix));
  1123. strlcpy(fbi->fix.id, MODULE_NAME, sizeof(fbi->fix.id));
  1124. }
  1125. static int omapfb_free_all_fbmem(struct omapfb2_device *fbdev)
  1126. {
  1127. int i;
  1128. DBG("free all fbmem\n");
  1129. for (i = 0; i < fbdev->num_fbs; i++) {
  1130. struct fb_info *fbi = fbdev->fbs[i];
  1131. omapfb_free_fbmem(fbi);
  1132. clear_fb_info(fbi);
  1133. }
  1134. return 0;
  1135. }
  1136. static int omapfb_alloc_fbmem(struct fb_info *fbi, unsigned long size,
  1137. unsigned long paddr)
  1138. {
  1139. struct omapfb_info *ofbi = FB2OFB(fbi);
  1140. struct omapfb2_device *fbdev = ofbi->fbdev;
  1141. struct omapfb2_mem_region *rg;
  1142. void *token;
  1143. DEFINE_DMA_ATTRS(attrs);
  1144. dma_addr_t dma_handle;
  1145. int r;
  1146. rg = ofbi->region;
  1147. rg->paddr = 0;
  1148. rg->vaddr = NULL;
  1149. memset(&rg->vrfb, 0, sizeof rg->vrfb);
  1150. rg->size = 0;
  1151. rg->type = 0;
  1152. rg->alloc = false;
  1153. rg->map = false;
  1154. size = PAGE_ALIGN(size);
  1155. dma_set_attr(DMA_ATTR_WRITE_COMBINE, &attrs);
  1156. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB)
  1157. dma_set_attr(DMA_ATTR_NO_KERNEL_MAPPING, &attrs);
  1158. DBG("allocating %lu bytes for fb %d\n", size, ofbi->id);
  1159. token = dma_alloc_attrs(fbdev->dev, size, &dma_handle,
  1160. GFP_KERNEL, &attrs);
  1161. if (token == NULL) {
  1162. dev_err(fbdev->dev, "failed to allocate framebuffer\n");
  1163. return -ENOMEM;
  1164. }
  1165. DBG("allocated VRAM paddr %lx, vaddr %p\n",
  1166. (unsigned long)dma_handle, token);
  1167. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  1168. r = omap_vrfb_request_ctx(&rg->vrfb);
  1169. if (r) {
  1170. dma_free_attrs(fbdev->dev, size, token, dma_handle,
  1171. &attrs);
  1172. dev_err(fbdev->dev, "vrfb create ctx failed\n");
  1173. return r;
  1174. }
  1175. }
  1176. rg->attrs = attrs;
  1177. rg->token = token;
  1178. rg->dma_handle = dma_handle;
  1179. rg->paddr = (unsigned long)dma_handle;
  1180. rg->vaddr = (void __iomem *)token;
  1181. rg->size = size;
  1182. rg->alloc = 1;
  1183. return 0;
  1184. }
  1185. /* allocate fbmem using display resolution as reference */
  1186. static int omapfb_alloc_fbmem_display(struct fb_info *fbi, unsigned long size,
  1187. unsigned long paddr)
  1188. {
  1189. struct omapfb_info *ofbi = FB2OFB(fbi);
  1190. struct omapfb2_device *fbdev = ofbi->fbdev;
  1191. struct omap_dss_device *display;
  1192. int bytespp;
  1193. display = fb2display(fbi);
  1194. if (!display)
  1195. return 0;
  1196. switch (omapfb_get_recommended_bpp(fbdev, display)) {
  1197. case 16:
  1198. bytespp = 2;
  1199. break;
  1200. case 24:
  1201. bytespp = 4;
  1202. break;
  1203. default:
  1204. bytespp = 4;
  1205. break;
  1206. }
  1207. if (!size) {
  1208. u16 w, h;
  1209. display->driver->get_resolution(display, &w, &h);
  1210. if (ofbi->rotation_type == OMAP_DSS_ROT_VRFB) {
  1211. size = max(omap_vrfb_min_phys_size(w, h, bytespp),
  1212. omap_vrfb_min_phys_size(h, w, bytespp));
  1213. DBG("adjusting fb mem size for VRFB, %u -> %lu\n",
  1214. w * h * bytespp, size);
  1215. } else {
  1216. size = w * h * bytespp;
  1217. }
  1218. }
  1219. if (!size)
  1220. return 0;
  1221. return omapfb_alloc_fbmem(fbi, size, paddr);
  1222. }
  1223. static int omapfb_parse_vram_param(const char *param, int max_entries,
  1224. unsigned long *sizes, unsigned long *paddrs)
  1225. {
  1226. int fbnum;
  1227. unsigned long size;
  1228. unsigned long paddr = 0;
  1229. char *p, *start;
  1230. start = (char *)param;
  1231. while (1) {
  1232. p = start;
  1233. fbnum = simple_strtoul(p, &p, 10);
  1234. if (p == start)
  1235. return -EINVAL;
  1236. if (*p != ':')
  1237. return -EINVAL;
  1238. if (fbnum >= max_entries)
  1239. return -EINVAL;
  1240. size = memparse(p + 1, &p);
  1241. if (!size)
  1242. return -EINVAL;
  1243. paddr = 0;
  1244. if (*p == '@') {
  1245. paddr = simple_strtoul(p + 1, &p, 16);
  1246. if (!paddr)
  1247. return -EINVAL;
  1248. }
  1249. WARN_ONCE(paddr,
  1250. "reserving memory at predefined address not supported\n");
  1251. paddrs[fbnum] = paddr;
  1252. sizes[fbnum] = size;
  1253. if (*p == 0)
  1254. break;
  1255. if (*p != ',')
  1256. return -EINVAL;
  1257. ++p;
  1258. start = p;
  1259. }
  1260. return 0;
  1261. }
  1262. static int omapfb_allocate_all_fbs(struct omapfb2_device *fbdev)
  1263. {
  1264. int i, r;
  1265. unsigned long vram_sizes[10];
  1266. unsigned long vram_paddrs[10];
  1267. memset(&vram_sizes, 0, sizeof(vram_sizes));
  1268. memset(&vram_paddrs, 0, sizeof(vram_paddrs));
  1269. if (def_vram && omapfb_parse_vram_param(def_vram, 10,
  1270. vram_sizes, vram_paddrs)) {
  1271. dev_err(fbdev->dev, "failed to parse vram parameter\n");
  1272. memset(&vram_sizes, 0, sizeof(vram_sizes));
  1273. memset(&vram_paddrs, 0, sizeof(vram_paddrs));
  1274. }
  1275. for (i = 0; i < fbdev->num_fbs; i++) {
  1276. /* allocate memory automatically only for fb0, or if
  1277. * excplicitly defined with vram or plat data option */
  1278. if (i == 0 || vram_sizes[i] != 0) {
  1279. r = omapfb_alloc_fbmem_display(fbdev->fbs[i],
  1280. vram_sizes[i], vram_paddrs[i]);
  1281. if (r)
  1282. return r;
  1283. }
  1284. }
  1285. for (i = 0; i < fbdev->num_fbs; i++) {
  1286. struct omapfb_info *ofbi = FB2OFB(fbdev->fbs[i]);
  1287. struct omapfb2_mem_region *rg;
  1288. rg = ofbi->region;
  1289. DBG("region%d phys %08x virt %p size=%lu\n",
  1290. i,
  1291. rg->paddr,
  1292. rg->vaddr,
  1293. rg->size);
  1294. }
  1295. return 0;
  1296. }
  1297. static void omapfb_clear_fb(struct fb_info *fbi)
  1298. {
  1299. const struct fb_fillrect rect = {
  1300. .dx = 0,
  1301. .dy = 0,
  1302. .width = fbi->var.xres_virtual,
  1303. .height = fbi->var.yres_virtual,
  1304. .color = 0,
  1305. .rop = ROP_COPY,
  1306. };
  1307. cfb_fillrect(fbi, &rect);
  1308. }
  1309. int omapfb_realloc_fbmem(struct fb_info *fbi, unsigned long size, int type)
  1310. {
  1311. struct omapfb_info *ofbi = FB2OFB(fbi);
  1312. struct omapfb2_device *fbdev = ofbi->fbdev;
  1313. struct omapfb2_mem_region *rg = ofbi->region;
  1314. unsigned long old_size = rg->size;
  1315. unsigned long old_paddr = rg->paddr;
  1316. int old_type = rg->type;
  1317. int r;
  1318. if (type != OMAPFB_MEMTYPE_SDRAM)
  1319. return -EINVAL;
  1320. size = PAGE_ALIGN(size);
  1321. if (old_size == size && old_type == type)
  1322. return 0;
  1323. omapfb_free_fbmem(fbi);
  1324. if (size == 0) {
  1325. clear_fb_info(fbi);
  1326. return 0;
  1327. }
  1328. r = omapfb_alloc_fbmem(fbi, size, 0);
  1329. if (r) {
  1330. if (old_size)
  1331. omapfb_alloc_fbmem(fbi, old_size, old_paddr);
  1332. if (rg->size == 0)
  1333. clear_fb_info(fbi);
  1334. return r;
  1335. }
  1336. if (old_size == size)
  1337. return 0;
  1338. if (old_size == 0) {
  1339. DBG("initializing fb %d\n", ofbi->id);
  1340. r = omapfb_fb_init(fbdev, fbi);
  1341. if (r) {
  1342. DBG("omapfb_fb_init failed\n");
  1343. goto err;
  1344. }
  1345. r = omapfb_apply_changes(fbi, 1);
  1346. if (r) {
  1347. DBG("omapfb_apply_changes failed\n");
  1348. goto err;
  1349. }
  1350. } else {
  1351. struct fb_var_screeninfo new_var;
  1352. memcpy(&new_var, &fbi->var, sizeof(new_var));
  1353. r = check_fb_var(fbi, &new_var);
  1354. if (r)
  1355. goto err;
  1356. memcpy(&fbi->var, &new_var, sizeof(fbi->var));
  1357. set_fb_fix(fbi);
  1358. r = setup_vrfb_rotation(fbi);
  1359. if (r)
  1360. goto err;
  1361. }
  1362. omapfb_clear_fb(fbi);
  1363. return 0;
  1364. err:
  1365. omapfb_free_fbmem(fbi);
  1366. clear_fb_info(fbi);
  1367. return r;
  1368. }
  1369. static void omapfb_auto_update_work(struct work_struct *work)
  1370. {
  1371. struct omap_dss_device *dssdev;
  1372. struct omap_dss_driver *dssdrv;
  1373. struct omapfb_display_data *d;
  1374. u16 w, h;
  1375. unsigned int freq;
  1376. struct omapfb2_device *fbdev;
  1377. d = container_of(work, struct omapfb_display_data,
  1378. auto_update_work.work);
  1379. dssdev = d->dssdev;
  1380. dssdrv = dssdev->driver;
  1381. fbdev = d->fbdev;
  1382. if (!dssdrv || !dssdrv->update)
  1383. return;
  1384. if (dssdrv->sync)
  1385. dssdrv->sync(dssdev);
  1386. dssdrv->get_resolution(dssdev, &w, &h);
  1387. dssdrv->update(dssdev, 0, 0, w, h);
  1388. freq = auto_update_freq;
  1389. if (freq == 0)
  1390. freq = 20;
  1391. queue_delayed_work(fbdev->auto_update_wq,
  1392. &d->auto_update_work, HZ / freq);
  1393. }
  1394. void omapfb_start_auto_update(struct omapfb2_device *fbdev,
  1395. struct omap_dss_device *display)
  1396. {
  1397. struct omapfb_display_data *d;
  1398. if (fbdev->auto_update_wq == NULL) {
  1399. struct workqueue_struct *wq;
  1400. wq = create_singlethread_workqueue("omapfb_auto_update");
  1401. if (wq == NULL) {
  1402. dev_err(fbdev->dev, "Failed to create workqueue for "
  1403. "auto-update\n");
  1404. return;
  1405. }
  1406. fbdev->auto_update_wq = wq;
  1407. }
  1408. d = get_display_data(fbdev, display);
  1409. INIT_DELAYED_WORK(&d->auto_update_work, omapfb_auto_update_work);
  1410. d->auto_update_work_enabled = true;
  1411. omapfb_auto_update_work(&d->auto_update_work.work);
  1412. }
  1413. void omapfb_stop_auto_update(struct omapfb2_device *fbdev,
  1414. struct omap_dss_device *display)
  1415. {
  1416. struct omapfb_display_data *d;
  1417. d = get_display_data(fbdev, display);
  1418. cancel_delayed_work_sync(&d->auto_update_work);
  1419. d->auto_update_work_enabled = false;
  1420. }
  1421. /* initialize fb_info, var, fix to something sane based on the display */
  1422. static int omapfb_fb_init(struct omapfb2_device *fbdev, struct fb_info *fbi)
  1423. {
  1424. struct fb_var_screeninfo *var = &fbi->var;
  1425. struct omap_dss_device *display = fb2display(fbi);
  1426. struct omapfb_info *ofbi = FB2OFB(fbi);
  1427. int r = 0;
  1428. fbi->fbops = &omapfb_ops;
  1429. fbi->flags = FBINFO_FLAG_DEFAULT;
  1430. fbi->pseudo_palette = fbdev->pseudo_palette;
  1431. if (ofbi->region->size == 0) {
  1432. clear_fb_info(fbi);
  1433. return 0;
  1434. }
  1435. var->nonstd = 0;
  1436. var->bits_per_pixel = 0;
  1437. var->rotate = def_rotate;
  1438. if (display) {
  1439. u16 w, h;
  1440. int rotation = (var->rotate + ofbi->rotation[0]) % 4;
  1441. display->driver->get_resolution(display, &w, &h);
  1442. if (rotation == FB_ROTATE_CW ||
  1443. rotation == FB_ROTATE_CCW) {
  1444. var->xres = h;
  1445. var->yres = w;
  1446. } else {
  1447. var->xres = w;
  1448. var->yres = h;
  1449. }
  1450. var->xres_virtual = var->xres;
  1451. var->yres_virtual = var->yres;
  1452. if (!var->bits_per_pixel) {
  1453. switch (omapfb_get_recommended_bpp(fbdev, display)) {
  1454. case 16:
  1455. var->bits_per_pixel = 16;
  1456. break;
  1457. case 24:
  1458. var->bits_per_pixel = 32;
  1459. break;
  1460. default:
  1461. dev_err(fbdev->dev, "illegal display "
  1462. "bpp\n");
  1463. return -EINVAL;
  1464. }
  1465. }
  1466. } else {
  1467. /* if there's no display, let's just guess some basic values */
  1468. var->xres = 320;
  1469. var->yres = 240;
  1470. var->xres_virtual = var->xres;
  1471. var->yres_virtual = var->yres;
  1472. if (!var->bits_per_pixel)
  1473. var->bits_per_pixel = 16;
  1474. }
  1475. r = check_fb_var(fbi, var);
  1476. if (r)
  1477. goto err;
  1478. set_fb_fix(fbi);
  1479. r = setup_vrfb_rotation(fbi);
  1480. if (r)
  1481. goto err;
  1482. r = fb_alloc_cmap(&fbi->cmap, 256, 0);
  1483. if (r)
  1484. dev_err(fbdev->dev, "unable to allocate color map memory\n");
  1485. err:
  1486. return r;
  1487. }
  1488. static void fbinfo_cleanup(struct omapfb2_device *fbdev, struct fb_info *fbi)
  1489. {
  1490. fb_dealloc_cmap(&fbi->cmap);
  1491. }
  1492. static void omapfb_free_resources(struct omapfb2_device *fbdev)
  1493. {
  1494. int i;
  1495. DBG("free_resources\n");
  1496. if (fbdev == NULL)
  1497. return;
  1498. for (i = 0; i < fbdev->num_fbs; i++)
  1499. unregister_framebuffer(fbdev->fbs[i]);
  1500. /* free the reserved fbmem */
  1501. omapfb_free_all_fbmem(fbdev);
  1502. for (i = 0; i < fbdev->num_fbs; i++) {
  1503. fbinfo_cleanup(fbdev, fbdev->fbs[i]);
  1504. framebuffer_release(fbdev->fbs[i]);
  1505. }
  1506. for (i = 0; i < fbdev->num_displays; i++) {
  1507. struct omap_dss_device *dssdev = fbdev->displays[i].dssdev;
  1508. if (fbdev->displays[i].auto_update_work_enabled)
  1509. omapfb_stop_auto_update(fbdev, dssdev);
  1510. if (dssdev->state != OMAP_DSS_DISPLAY_DISABLED)
  1511. dssdev->driver->disable(dssdev);
  1512. omap_dss_put_device(dssdev);
  1513. }
  1514. if (fbdev->auto_update_wq != NULL) {
  1515. flush_workqueue(fbdev->auto_update_wq);
  1516. destroy_workqueue(fbdev->auto_update_wq);
  1517. fbdev->auto_update_wq = NULL;
  1518. }
  1519. dev_set_drvdata(fbdev->dev, NULL);
  1520. }
  1521. static int omapfb_create_framebuffers(struct omapfb2_device *fbdev)
  1522. {
  1523. int r, i;
  1524. fbdev->num_fbs = 0;
  1525. DBG("create %d framebuffers\n", CONFIG_FB_OMAP2_NUM_FBS);
  1526. /* allocate fb_infos */
  1527. for (i = 0; i < CONFIG_FB_OMAP2_NUM_FBS; i++) {
  1528. struct fb_info *fbi;
  1529. struct omapfb_info *ofbi;
  1530. fbi = framebuffer_alloc(sizeof(struct omapfb_info),
  1531. fbdev->dev);
  1532. if (fbi == NULL) {
  1533. dev_err(fbdev->dev,
  1534. "unable to allocate memory for plane info\n");
  1535. return -ENOMEM;
  1536. }
  1537. clear_fb_info(fbi);
  1538. fbdev->fbs[i] = fbi;
  1539. ofbi = FB2OFB(fbi);
  1540. ofbi->fbdev = fbdev;
  1541. ofbi->id = i;
  1542. ofbi->region = &fbdev->regions[i];
  1543. ofbi->region->id = i;
  1544. init_rwsem(&ofbi->region->lock);
  1545. /* assign these early, so that fb alloc can use them */
  1546. ofbi->rotation_type = def_vrfb ? OMAP_DSS_ROT_VRFB :
  1547. OMAP_DSS_ROT_DMA;
  1548. ofbi->mirror = def_mirror;
  1549. fbdev->num_fbs++;
  1550. }
  1551. DBG("fb_infos allocated\n");
  1552. /* assign overlays for the fbs */
  1553. for (i = 0; i < min(fbdev->num_fbs, fbdev->num_overlays); i++) {
  1554. struct omapfb_info *ofbi = FB2OFB(fbdev->fbs[i]);
  1555. ofbi->overlays[0] = fbdev->overlays[i];
  1556. ofbi->num_overlays = 1;
  1557. }
  1558. /* allocate fb memories */
  1559. r = omapfb_allocate_all_fbs(fbdev);
  1560. if (r) {
  1561. dev_err(fbdev->dev, "failed to allocate fbmem\n");
  1562. return r;
  1563. }
  1564. DBG("fbmems allocated\n");
  1565. /* setup fb_infos */
  1566. for (i = 0; i < fbdev->num_fbs; i++) {
  1567. struct fb_info *fbi = fbdev->fbs[i];
  1568. struct omapfb_info *ofbi = FB2OFB(fbi);
  1569. omapfb_get_mem_region(ofbi->region);
  1570. r = omapfb_fb_init(fbdev, fbi);
  1571. omapfb_put_mem_region(ofbi->region);
  1572. if (r) {
  1573. dev_err(fbdev->dev, "failed to setup fb_info\n");
  1574. return r;
  1575. }
  1576. }
  1577. for (i = 0; i < fbdev->num_fbs; i++) {
  1578. struct fb_info *fbi = fbdev->fbs[i];
  1579. struct omapfb_info *ofbi = FB2OFB(fbi);
  1580. if (ofbi->region->size == 0)
  1581. continue;
  1582. omapfb_clear_fb(fbi);
  1583. }
  1584. DBG("fb_infos initialized\n");
  1585. for (i = 0; i < fbdev->num_fbs; i++) {
  1586. r = register_framebuffer(fbdev->fbs[i]);
  1587. if (r != 0) {
  1588. dev_err(fbdev->dev,
  1589. "registering framebuffer %d failed\n", i);
  1590. return r;
  1591. }
  1592. }
  1593. DBG("framebuffers registered\n");
  1594. for (i = 0; i < fbdev->num_fbs; i++) {
  1595. struct fb_info *fbi = fbdev->fbs[i];
  1596. struct omapfb_info *ofbi = FB2OFB(fbi);
  1597. omapfb_get_mem_region(ofbi->region);
  1598. r = omapfb_apply_changes(fbi, 1);
  1599. omapfb_put_mem_region(ofbi->region);
  1600. if (r) {
  1601. dev_err(fbdev->dev, "failed to change mode\n");
  1602. return r;
  1603. }
  1604. }
  1605. /* Enable fb0 */
  1606. if (fbdev->num_fbs > 0) {
  1607. struct omapfb_info *ofbi = FB2OFB(fbdev->fbs[0]);
  1608. if (ofbi->num_overlays > 0) {
  1609. struct omap_overlay *ovl = ofbi->overlays[0];
  1610. ovl->manager->apply(ovl->manager);
  1611. r = omapfb_overlay_enable(ovl, 1);
  1612. if (r) {
  1613. dev_err(fbdev->dev,
  1614. "failed to enable overlay\n");
  1615. return r;
  1616. }
  1617. }
  1618. }
  1619. DBG("create_framebuffers done\n");
  1620. return 0;
  1621. }
  1622. static int omapfb_mode_to_timings(const char *mode_str,
  1623. struct omap_dss_device *display,
  1624. struct omap_video_timings *timings, u8 *bpp)
  1625. {
  1626. struct fb_info *fbi;
  1627. struct fb_var_screeninfo *var;
  1628. struct fb_ops *fbops;
  1629. int r;
  1630. #ifdef CONFIG_OMAP2_DSS_VENC
  1631. if (strcmp(mode_str, "pal") == 0) {
  1632. *timings = omap_dss_pal_timings;
  1633. *bpp = 24;
  1634. return 0;
  1635. } else if (strcmp(mode_str, "ntsc") == 0) {
  1636. *timings = omap_dss_ntsc_timings;
  1637. *bpp = 24;
  1638. return 0;
  1639. }
  1640. #endif
  1641. /* this is quite a hack, but I wanted to use the modedb and for
  1642. * that we need fb_info and var, so we create dummy ones */
  1643. *bpp = 0;
  1644. fbi = NULL;
  1645. var = NULL;
  1646. fbops = NULL;
  1647. fbi = kzalloc(sizeof(*fbi), GFP_KERNEL);
  1648. if (fbi == NULL) {
  1649. r = -ENOMEM;
  1650. goto err;
  1651. }
  1652. var = kzalloc(sizeof(*var), GFP_KERNEL);
  1653. if (var == NULL) {
  1654. r = -ENOMEM;
  1655. goto err;
  1656. }
  1657. fbops = kzalloc(sizeof(*fbops), GFP_KERNEL);
  1658. if (fbops == NULL) {
  1659. r = -ENOMEM;
  1660. goto err;
  1661. }
  1662. fbi->fbops = fbops;
  1663. r = fb_find_mode(var, fbi, mode_str, NULL, 0, NULL, 24);
  1664. if (r == 0) {
  1665. r = -EINVAL;
  1666. goto err;
  1667. }
  1668. if (display->driver->get_timings) {
  1669. display->driver->get_timings(display, timings);
  1670. } else {
  1671. timings->data_pclk_edge = OMAPDSS_DRIVE_SIG_RISING_EDGE;
  1672. timings->de_level = OMAPDSS_SIG_ACTIVE_HIGH;
  1673. timings->sync_pclk_edge = OMAPDSS_DRIVE_SIG_OPPOSITE_EDGES;
  1674. }
  1675. timings->pixel_clock = PICOS2KHZ(var->pixclock);
  1676. timings->hbp = var->left_margin;
  1677. timings->hfp = var->right_margin;
  1678. timings->vbp = var->upper_margin;
  1679. timings->vfp = var->lower_margin;
  1680. timings->hsw = var->hsync_len;
  1681. timings->vsw = var->vsync_len;
  1682. timings->x_res = var->xres;
  1683. timings->y_res = var->yres;
  1684. timings->hsync_level = var->sync & FB_SYNC_HOR_HIGH_ACT ?
  1685. OMAPDSS_SIG_ACTIVE_HIGH :
  1686. OMAPDSS_SIG_ACTIVE_LOW;
  1687. timings->vsync_level = var->sync & FB_SYNC_VERT_HIGH_ACT ?
  1688. OMAPDSS_SIG_ACTIVE_HIGH :
  1689. OMAPDSS_SIG_ACTIVE_LOW;
  1690. timings->interlace = var->vmode & FB_VMODE_INTERLACED;
  1691. switch (var->bits_per_pixel) {
  1692. case 16:
  1693. *bpp = 16;
  1694. break;
  1695. case 24:
  1696. case 32:
  1697. default:
  1698. *bpp = 24;
  1699. break;
  1700. }
  1701. r = 0;
  1702. err:
  1703. kfree(fbi);
  1704. kfree(var);
  1705. kfree(fbops);
  1706. return r;
  1707. }
  1708. static int omapfb_set_def_mode(struct omapfb2_device *fbdev,
  1709. struct omap_dss_device *display, char *mode_str)
  1710. {
  1711. int r;
  1712. u8 bpp;
  1713. struct omap_video_timings timings, temp_timings;
  1714. struct omapfb_display_data *d;
  1715. r = omapfb_mode_to_timings(mode_str, display, &timings, &bpp);
  1716. if (r)
  1717. return r;
  1718. d = get_display_data(fbdev, display);
  1719. d->bpp_override = bpp;
  1720. if (display->driver->check_timings) {
  1721. r = display->driver->check_timings(display, &timings);
  1722. if (r)
  1723. return r;
  1724. } else {
  1725. /* If check_timings is not present compare xres and yres */
  1726. if (display->driver->get_timings) {
  1727. display->driver->get_timings(display, &temp_timings);
  1728. if (temp_timings.x_res != timings.x_res ||
  1729. temp_timings.y_res != timings.y_res)
  1730. return -EINVAL;
  1731. }
  1732. }
  1733. if (display->driver->set_timings)
  1734. display->driver->set_timings(display, &timings);
  1735. return 0;
  1736. }
  1737. static int omapfb_get_recommended_bpp(struct omapfb2_device *fbdev,
  1738. struct omap_dss_device *dssdev)
  1739. {
  1740. struct omapfb_display_data *d;
  1741. BUG_ON(dssdev->driver->get_recommended_bpp == NULL);
  1742. d = get_display_data(fbdev, dssdev);
  1743. if (d->bpp_override != 0)
  1744. return d->bpp_override;
  1745. return dssdev->driver->get_recommended_bpp(dssdev);
  1746. }
  1747. static int omapfb_parse_def_modes(struct omapfb2_device *fbdev)
  1748. {
  1749. char *str, *options, *this_opt;
  1750. int r = 0;
  1751. str = kstrdup(def_mode, GFP_KERNEL);
  1752. if (!str)
  1753. return -ENOMEM;
  1754. options = str;
  1755. while (!r && (this_opt = strsep(&options, ",")) != NULL) {
  1756. char *p, *display_str, *mode_str;
  1757. struct omap_dss_device *display;
  1758. int i;
  1759. p = strchr(this_opt, ':');
  1760. if (!p) {
  1761. r = -EINVAL;
  1762. break;
  1763. }
  1764. *p = 0;
  1765. display_str = this_opt;
  1766. mode_str = p + 1;
  1767. display = NULL;
  1768. for (i = 0; i < fbdev->num_displays; ++i) {
  1769. if (strcmp(fbdev->displays[i].dssdev->name,
  1770. display_str) == 0) {
  1771. display = fbdev->displays[i].dssdev;
  1772. break;
  1773. }
  1774. }
  1775. if (!display) {
  1776. r = -EINVAL;
  1777. break;
  1778. }
  1779. r = omapfb_set_def_mode(fbdev, display, mode_str);
  1780. if (r)
  1781. break;
  1782. }
  1783. kfree(str);
  1784. return r;
  1785. }
  1786. static void fb_videomode_to_omap_timings(struct fb_videomode *m,
  1787. struct omap_dss_device *display,
  1788. struct omap_video_timings *t)
  1789. {
  1790. if (display->driver->get_timings) {
  1791. display->driver->get_timings(display, t);
  1792. } else {
  1793. t->data_pclk_edge = OMAPDSS_DRIVE_SIG_RISING_EDGE;
  1794. t->de_level = OMAPDSS_SIG_ACTIVE_HIGH;
  1795. t->sync_pclk_edge = OMAPDSS_DRIVE_SIG_OPPOSITE_EDGES;
  1796. }
  1797. t->x_res = m->xres;
  1798. t->y_res = m->yres;
  1799. t->pixel_clock = PICOS2KHZ(m->pixclock);
  1800. t->hsw = m->hsync_len;
  1801. t->hfp = m->right_margin;
  1802. t->hbp = m->left_margin;
  1803. t->vsw = m->vsync_len;
  1804. t->vfp = m->lower_margin;
  1805. t->vbp = m->upper_margin;
  1806. t->hsync_level = m->sync & FB_SYNC_HOR_HIGH_ACT ?
  1807. OMAPDSS_SIG_ACTIVE_HIGH :
  1808. OMAPDSS_SIG_ACTIVE_LOW;
  1809. t->vsync_level = m->sync & FB_SYNC_VERT_HIGH_ACT ?
  1810. OMAPDSS_SIG_ACTIVE_HIGH :
  1811. OMAPDSS_SIG_ACTIVE_LOW;
  1812. t->interlace = m->vmode & FB_VMODE_INTERLACED;
  1813. }
  1814. static int omapfb_find_best_mode(struct omap_dss_device *display,
  1815. struct omap_video_timings *timings)
  1816. {
  1817. struct fb_monspecs *specs;
  1818. u8 *edid;
  1819. int r, i, best_idx, len;
  1820. if (!display->driver->read_edid)
  1821. return -ENODEV;
  1822. len = 0x80 * 2;
  1823. edid = kmalloc(len, GFP_KERNEL);
  1824. if (edid == NULL)
  1825. return -ENOMEM;
  1826. r = display->driver->read_edid(display, edid, len);
  1827. if (r < 0)
  1828. goto err1;
  1829. specs = kzalloc(sizeof(*specs), GFP_KERNEL);
  1830. if (specs == NULL) {
  1831. r = -ENOMEM;
  1832. goto err1;
  1833. }
  1834. fb_edid_to_monspecs(edid, specs);
  1835. best_idx = -1;
  1836. for (i = 0; i < specs->modedb_len; ++i) {
  1837. struct fb_videomode *m;
  1838. struct omap_video_timings t;
  1839. m = &specs->modedb[i];
  1840. if (m->pixclock == 0)
  1841. continue;
  1842. /* skip repeated pixel modes */
  1843. if (m->xres == 2880 || m->xres == 1440)
  1844. continue;
  1845. if (m->vmode & FB_VMODE_INTERLACED ||
  1846. m->vmode & FB_VMODE_DOUBLE)
  1847. continue;
  1848. fb_videomode_to_omap_timings(m, display, &t);
  1849. r = display->driver->check_timings(display, &t);
  1850. if (r == 0) {
  1851. best_idx = i;
  1852. break;
  1853. }
  1854. }
  1855. if (best_idx == -1) {
  1856. r = -ENOENT;
  1857. goto err2;
  1858. }
  1859. fb_videomode_to_omap_timings(&specs->modedb[best_idx], display,
  1860. timings);
  1861. r = 0;
  1862. err2:
  1863. fb_destroy_modedb(specs->modedb);
  1864. kfree(specs);
  1865. err1:
  1866. kfree(edid);
  1867. return r;
  1868. }
  1869. static int omapfb_init_display(struct omapfb2_device *fbdev,
  1870. struct omap_dss_device *dssdev)
  1871. {
  1872. struct omap_dss_driver *dssdrv = dssdev->driver;
  1873. struct omapfb_display_data *d;
  1874. int r;
  1875. r = dssdrv->enable(dssdev);
  1876. if (r) {
  1877. dev_warn(fbdev->dev, "Failed to enable display '%s'\n",
  1878. dssdev->name);
  1879. return r;
  1880. }
  1881. d = get_display_data(fbdev, dssdev);
  1882. d->fbdev = fbdev;
  1883. if (dssdev->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE) {
  1884. u16 w, h;
  1885. if (auto_update) {
  1886. omapfb_start_auto_update(fbdev, dssdev);
  1887. d->update_mode = OMAPFB_AUTO_UPDATE;
  1888. } else {
  1889. d->update_mode = OMAPFB_MANUAL_UPDATE;
  1890. }
  1891. if (dssdrv->enable_te) {
  1892. r = dssdrv->enable_te(dssdev, 1);
  1893. if (r) {
  1894. dev_err(fbdev->dev, "Failed to set TE\n");
  1895. return r;
  1896. }
  1897. }
  1898. dssdrv->get_resolution(dssdev, &w, &h);
  1899. r = dssdrv->update(dssdev, 0, 0, w, h);
  1900. if (r) {
  1901. dev_err(fbdev->dev,
  1902. "Failed to update display\n");
  1903. return r;
  1904. }
  1905. } else {
  1906. d->update_mode = OMAPFB_AUTO_UPDATE;
  1907. }
  1908. return 0;
  1909. }
  1910. static int omapfb_init_connections(struct omapfb2_device *fbdev,
  1911. struct omap_dss_device *def_dssdev)
  1912. {
  1913. int i, r;
  1914. struct omap_overlay_manager *mgr;
  1915. if (!def_dssdev->output) {
  1916. dev_err(fbdev->dev, "no output for the default display\n");
  1917. return -EINVAL;
  1918. }
  1919. for (i = 0; i < fbdev->num_displays; ++i) {
  1920. struct omap_dss_device *dssdev = fbdev->displays[i].dssdev;
  1921. struct omap_dss_output *out = dssdev->output;
  1922. mgr = omap_dss_get_overlay_manager(out->dispc_channel);
  1923. if (!mgr || !out)
  1924. continue;
  1925. if (mgr->output)
  1926. mgr->unset_output(mgr);
  1927. mgr->set_output(mgr, out);
  1928. }
  1929. mgr = def_dssdev->output->manager;
  1930. if (!mgr) {
  1931. dev_err(fbdev->dev, "no ovl manager for the default display\n");
  1932. return -EINVAL;
  1933. }
  1934. for (i = 0; i < fbdev->num_overlays; i++) {
  1935. struct omap_overlay *ovl = fbdev->overlays[i];
  1936. if (ovl->manager)
  1937. ovl->unset_manager(ovl);
  1938. r = ovl->set_manager(ovl, mgr);
  1939. if (r)
  1940. dev_warn(fbdev->dev,
  1941. "failed to connect overlay %s to manager %s\n",
  1942. ovl->name, mgr->name);
  1943. }
  1944. return 0;
  1945. }
  1946. static int omapfb_probe(struct platform_device *pdev)
  1947. {
  1948. struct omapfb2_device *fbdev = NULL;
  1949. int r = 0;
  1950. int i;
  1951. struct omap_dss_device *def_display;
  1952. struct omap_dss_device *dssdev;
  1953. DBG("omapfb_probe\n");
  1954. if (pdev->num_resources != 0) {
  1955. dev_err(&pdev->dev, "probed for an unknown device\n");
  1956. r = -ENODEV;
  1957. goto err0;
  1958. }
  1959. fbdev = devm_kzalloc(&pdev->dev, sizeof(struct omapfb2_device),
  1960. GFP_KERNEL);
  1961. if (fbdev == NULL) {
  1962. r = -ENOMEM;
  1963. goto err0;
  1964. }
  1965. if (def_vrfb && !omap_vrfb_supported()) {
  1966. def_vrfb = 0;
  1967. dev_warn(&pdev->dev, "VRFB is not supported on this hardware, "
  1968. "ignoring the module parameter vrfb=y\n");
  1969. }
  1970. r = omapdss_compat_init();
  1971. if (r)
  1972. goto err0;
  1973. mutex_init(&fbdev->mtx);
  1974. fbdev->dev = &pdev->dev;
  1975. platform_set_drvdata(pdev, fbdev);
  1976. fbdev->num_displays = 0;
  1977. dssdev = NULL;
  1978. for_each_dss_dev(dssdev) {
  1979. struct omapfb_display_data *d;
  1980. omap_dss_get_device(dssdev);
  1981. if (!dssdev->driver) {
  1982. dev_warn(&pdev->dev, "no driver for display: %s\n",
  1983. dssdev->name);
  1984. omap_dss_put_device(dssdev);
  1985. continue;
  1986. }
  1987. d = &fbdev->displays[fbdev->num_displays++];
  1988. d->dssdev = dssdev;
  1989. if (dssdev->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE)
  1990. d->update_mode = OMAPFB_MANUAL_UPDATE;
  1991. else
  1992. d->update_mode = OMAPFB_AUTO_UPDATE;
  1993. }
  1994. if (fbdev->num_displays == 0) {
  1995. dev_err(&pdev->dev, "no displays\n");
  1996. r = -EPROBE_DEFER;
  1997. goto cleanup;
  1998. }
  1999. fbdev->num_overlays = omap_dss_get_num_overlays();
  2000. for (i = 0; i < fbdev->num_overlays; i++)
  2001. fbdev->overlays[i] = omap_dss_get_overlay(i);
  2002. fbdev->num_managers = omap_dss_get_num_overlay_managers();
  2003. for (i = 0; i < fbdev->num_managers; i++)
  2004. fbdev->managers[i] = omap_dss_get_overlay_manager(i);
  2005. def_display = NULL;
  2006. for (i = 0; i < fbdev->num_displays; ++i) {
  2007. struct omap_dss_device *dssdev;
  2008. const char *def_name;
  2009. def_name = omapdss_get_default_display_name();
  2010. dssdev = fbdev->displays[i].dssdev;
  2011. if (def_name == NULL ||
  2012. (dssdev->name && strcmp(def_name, dssdev->name) == 0)) {
  2013. def_display = dssdev;
  2014. break;
  2015. }
  2016. }
  2017. if (def_display == NULL) {
  2018. dev_err(fbdev->dev, "failed to find default display\n");
  2019. r = -EINVAL;
  2020. goto cleanup;
  2021. }
  2022. r = omapfb_init_connections(fbdev, def_display);
  2023. if (r) {
  2024. dev_err(fbdev->dev, "failed to init overlay connections\n");
  2025. goto cleanup;
  2026. }
  2027. if (def_mode && strlen(def_mode) > 0) {
  2028. if (omapfb_parse_def_modes(fbdev))
  2029. dev_warn(&pdev->dev, "cannot parse default modes\n");
  2030. } else if (def_display && def_display->driver->set_timings &&
  2031. def_display->driver->check_timings) {
  2032. struct omap_video_timings t;
  2033. r = omapfb_find_best_mode(def_display, &t);
  2034. if (r == 0)
  2035. def_display->driver->set_timings(def_display, &t);
  2036. }
  2037. r = omapfb_create_framebuffers(fbdev);
  2038. if (r)
  2039. goto cleanup;
  2040. for (i = 0; i < fbdev->num_managers; i++) {
  2041. struct omap_overlay_manager *mgr;
  2042. mgr = fbdev->managers[i];
  2043. r = mgr->apply(mgr);
  2044. if (r)
  2045. dev_warn(fbdev->dev, "failed to apply dispc config\n");
  2046. }
  2047. DBG("mgr->apply'ed\n");
  2048. if (def_display) {
  2049. r = omapfb_init_display(fbdev, def_display);
  2050. if (r) {
  2051. dev_err(fbdev->dev,
  2052. "failed to initialize default "
  2053. "display\n");
  2054. goto cleanup;
  2055. }
  2056. }
  2057. DBG("create sysfs for fbs\n");
  2058. r = omapfb_create_sysfs(fbdev);
  2059. if (r) {
  2060. dev_err(fbdev->dev, "failed to create sysfs entries\n");
  2061. goto cleanup;
  2062. }
  2063. return 0;
  2064. cleanup:
  2065. omapfb_free_resources(fbdev);
  2066. omapdss_compat_uninit();
  2067. err0:
  2068. dev_err(&pdev->dev, "failed to setup omapfb\n");
  2069. return r;
  2070. }
  2071. static int __exit omapfb_remove(struct platform_device *pdev)
  2072. {
  2073. struct omapfb2_device *fbdev = platform_get_drvdata(pdev);
  2074. /* FIXME: wait till completion of pending events */
  2075. omapfb_remove_sysfs(fbdev);
  2076. omapfb_free_resources(fbdev);
  2077. omapdss_compat_uninit();
  2078. return 0;
  2079. }
  2080. static struct platform_driver omapfb_driver = {
  2081. .probe = omapfb_probe,
  2082. .remove = __exit_p(omapfb_remove),
  2083. .driver = {
  2084. .name = "omapfb",
  2085. .owner = THIS_MODULE,
  2086. },
  2087. };
  2088. module_param_named(mode, def_mode, charp, 0);
  2089. module_param_named(vram, def_vram, charp, 0);
  2090. module_param_named(rotate, def_rotate, int, 0);
  2091. module_param_named(vrfb, def_vrfb, bool, 0);
  2092. module_param_named(mirror, def_mirror, bool, 0);
  2093. module_platform_driver(omapfb_driver);
  2094. MODULE_AUTHOR("Tomi Valkeinen <tomi.valkeinen@nokia.com>");
  2095. MODULE_DESCRIPTION("OMAP2/3 Framebuffer");
  2096. MODULE_LICENSE("GPL v2");