mdp_ppp.c 21 KB

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  1. /* drivers/video/msm/mdp_ppp.c
  2. *
  3. * Copyright (C) 2007 QUALCOMM Incorporated
  4. * Copyright (C) 2007 Google Incorporated
  5. *
  6. * This software is licensed under the terms of the GNU General Public
  7. * License version 2, as published by the Free Software Foundation, and
  8. * may be copied, distributed, and modified under those terms.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. */
  15. #include <linux/fb.h>
  16. #include <linux/file.h>
  17. #include <linux/delay.h>
  18. #include <linux/msm_mdp.h>
  19. #include <mach/msm_fb.h>
  20. #include "mdp_hw.h"
  21. #include "mdp_scale_tables.h"
  22. #define DLOG(x...) do {} while (0)
  23. #define MDP_DOWNSCALE_BLUR (MDP_DOWNSCALE_MAX + 1)
  24. static int downscale_y_table = MDP_DOWNSCALE_MAX;
  25. static int downscale_x_table = MDP_DOWNSCALE_MAX;
  26. struct mdp_regs {
  27. uint32_t src0;
  28. uint32_t src1;
  29. uint32_t dst0;
  30. uint32_t dst1;
  31. uint32_t src_cfg;
  32. uint32_t dst_cfg;
  33. uint32_t src_pack;
  34. uint32_t dst_pack;
  35. uint32_t src_rect;
  36. uint32_t dst_rect;
  37. uint32_t src_ystride;
  38. uint32_t dst_ystride;
  39. uint32_t op;
  40. uint32_t src_bpp;
  41. uint32_t dst_bpp;
  42. uint32_t edge;
  43. uint32_t phasex_init;
  44. uint32_t phasey_init;
  45. uint32_t phasex_step;
  46. uint32_t phasey_step;
  47. };
  48. static uint32_t pack_pattern[] = {
  49. PPP_ARRAY0(PACK_PATTERN)
  50. };
  51. static uint32_t src_img_cfg[] = {
  52. PPP_ARRAY1(CFG, SRC)
  53. };
  54. static uint32_t dst_img_cfg[] = {
  55. PPP_ARRAY1(CFG, DST)
  56. };
  57. static uint32_t bytes_per_pixel[] = {
  58. [MDP_RGB_565] = 2,
  59. [MDP_RGB_888] = 3,
  60. [MDP_XRGB_8888] = 4,
  61. [MDP_ARGB_8888] = 4,
  62. [MDP_RGBA_8888] = 4,
  63. [MDP_BGRA_8888] = 4,
  64. [MDP_Y_CBCR_H2V1] = 1,
  65. [MDP_Y_CBCR_H2V2] = 1,
  66. [MDP_Y_CRCB_H2V1] = 1,
  67. [MDP_Y_CRCB_H2V2] = 1,
  68. [MDP_YCRYCB_H2V1] = 2
  69. };
  70. static uint32_t dst_op_chroma[] = {
  71. PPP_ARRAY1(CHROMA_SAMP, DST)
  72. };
  73. static uint32_t src_op_chroma[] = {
  74. PPP_ARRAY1(CHROMA_SAMP, SRC)
  75. };
  76. static uint32_t bg_op_chroma[] = {
  77. PPP_ARRAY1(CHROMA_SAMP, BG)
  78. };
  79. static void rotate_dst_addr_x(struct mdp_blit_req *req, struct mdp_regs *regs)
  80. {
  81. regs->dst0 += (req->dst_rect.w -
  82. min((uint32_t)16, req->dst_rect.w)) * regs->dst_bpp;
  83. regs->dst1 += (req->dst_rect.w -
  84. min((uint32_t)16, req->dst_rect.w)) * regs->dst_bpp;
  85. }
  86. static void rotate_dst_addr_y(struct mdp_blit_req *req, struct mdp_regs *regs)
  87. {
  88. regs->dst0 += (req->dst_rect.h -
  89. min((uint32_t)16, req->dst_rect.h)) *
  90. regs->dst_ystride;
  91. regs->dst1 += (req->dst_rect.h -
  92. min((uint32_t)16, req->dst_rect.h)) *
  93. regs->dst_ystride;
  94. }
  95. static void blit_rotate(struct mdp_blit_req *req,
  96. struct mdp_regs *regs)
  97. {
  98. if (req->flags == MDP_ROT_NOP)
  99. return;
  100. regs->op |= PPP_OP_ROT_ON;
  101. if ((req->flags & MDP_ROT_90 || req->flags & MDP_FLIP_LR) &&
  102. !(req->flags & MDP_ROT_90 && req->flags & MDP_FLIP_LR))
  103. rotate_dst_addr_x(req, regs);
  104. if (req->flags & MDP_ROT_90)
  105. regs->op |= PPP_OP_ROT_90;
  106. if (req->flags & MDP_FLIP_UD) {
  107. regs->op |= PPP_OP_FLIP_UD;
  108. rotate_dst_addr_y(req, regs);
  109. }
  110. if (req->flags & MDP_FLIP_LR)
  111. regs->op |= PPP_OP_FLIP_LR;
  112. }
  113. static void blit_convert(struct mdp_blit_req *req, struct mdp_regs *regs)
  114. {
  115. if (req->src.format == req->dst.format)
  116. return;
  117. if (IS_RGB(req->src.format) && IS_YCRCB(req->dst.format)) {
  118. regs->op |= PPP_OP_CONVERT_RGB2YCBCR | PPP_OP_CONVERT_ON;
  119. } else if (IS_YCRCB(req->src.format) && IS_RGB(req->dst.format)) {
  120. regs->op |= PPP_OP_CONVERT_YCBCR2RGB | PPP_OP_CONVERT_ON;
  121. if (req->dst.format == MDP_RGB_565)
  122. regs->op |= PPP_OP_CONVERT_MATRIX_SECONDARY;
  123. }
  124. }
  125. #define GET_BIT_RANGE(value, high, low) \
  126. (((1 << (high - low + 1)) - 1) & (value >> low))
  127. static uint32_t transp_convert(struct mdp_blit_req *req)
  128. {
  129. uint32_t transp = 0;
  130. if (req->src.format == MDP_RGB_565) {
  131. /* pad each value to 8 bits by copying the high bits into the
  132. * low end, convert RGB to RBG by switching low 2 components */
  133. transp |= ((GET_BIT_RANGE(req->transp_mask, 15, 11) << 3) |
  134. (GET_BIT_RANGE(req->transp_mask, 15, 13))) << 16;
  135. transp |= ((GET_BIT_RANGE(req->transp_mask, 4, 0) << 3) |
  136. (GET_BIT_RANGE(req->transp_mask, 4, 2))) << 8;
  137. transp |= (GET_BIT_RANGE(req->transp_mask, 10, 5) << 2) |
  138. (GET_BIT_RANGE(req->transp_mask, 10, 9));
  139. } else {
  140. /* convert RGB to RBG */
  141. transp |= (GET_BIT_RANGE(req->transp_mask, 15, 8)) |
  142. (GET_BIT_RANGE(req->transp_mask, 23, 16) << 16) |
  143. (GET_BIT_RANGE(req->transp_mask, 7, 0) << 8);
  144. }
  145. return transp;
  146. }
  147. #undef GET_BIT_RANGE
  148. static void blit_blend(struct mdp_blit_req *req, struct mdp_regs *regs)
  149. {
  150. /* TRANSP BLEND */
  151. if (req->transp_mask != MDP_TRANSP_NOP) {
  152. req->transp_mask = transp_convert(req);
  153. if (req->alpha != MDP_ALPHA_NOP) {
  154. /* use blended transparancy mode
  155. * pixel = (src == transp) ? dst : blend
  156. * blend is combo of blend_eq_sel and
  157. * blend_alpha_sel */
  158. regs->op |= PPP_OP_ROT_ON | PPP_OP_BLEND_ON |
  159. PPP_OP_BLEND_ALPHA_BLEND_NORMAL |
  160. PPP_OP_BLEND_CONSTANT_ALPHA |
  161. PPP_BLEND_ALPHA_TRANSP;
  162. } else {
  163. /* simple transparancy mode
  164. * pixel = (src == transp) ? dst : src */
  165. regs->op |= PPP_OP_ROT_ON | PPP_OP_BLEND_ON |
  166. PPP_OP_BLEND_SRCPIXEL_TRANSP;
  167. }
  168. }
  169. req->alpha &= 0xff;
  170. /* ALPHA BLEND */
  171. if (HAS_ALPHA(req->src.format)) {
  172. regs->op |= PPP_OP_ROT_ON | PPP_OP_BLEND_ON |
  173. PPP_OP_BLEND_SRCPIXEL_ALPHA;
  174. } else if (req->alpha < MDP_ALPHA_NOP) {
  175. /* just blend by alpha */
  176. regs->op |= PPP_OP_ROT_ON | PPP_OP_BLEND_ON |
  177. PPP_OP_BLEND_ALPHA_BLEND_NORMAL |
  178. PPP_OP_BLEND_CONSTANT_ALPHA;
  179. }
  180. regs->op |= bg_op_chroma[req->dst.format];
  181. }
  182. #define ONE_HALF (1LL << 32)
  183. #define ONE (1LL << 33)
  184. #define TWO (2LL << 33)
  185. #define THREE (3LL << 33)
  186. #define FRAC_MASK (ONE - 1)
  187. #define INT_MASK (~FRAC_MASK)
  188. static int scale_params(uint32_t dim_in, uint32_t dim_out, uint32_t origin,
  189. uint32_t *phase_init, uint32_t *phase_step)
  190. {
  191. /* to improve precicsion calculations are done in U31.33 and converted
  192. * to U3.29 at the end */
  193. int64_t k1, k2, k3, k4, tmp;
  194. uint64_t n, d, os, os_p, od, od_p, oreq;
  195. unsigned rpa = 0;
  196. int64_t ip64, delta;
  197. if (dim_out % 3 == 0)
  198. rpa = !(dim_in % (dim_out / 3));
  199. n = ((uint64_t)dim_out) << 34;
  200. d = dim_in;
  201. if (!d)
  202. return -1;
  203. do_div(n, d);
  204. k3 = (n + 1) >> 1;
  205. if ((k3 >> 4) < (1LL << 27) || (k3 >> 4) > (1LL << 31)) {
  206. DLOG("crap bad scale\n");
  207. return -1;
  208. }
  209. n = ((uint64_t)dim_in) << 34;
  210. d = (uint64_t)dim_out;
  211. if (!d)
  212. return -1;
  213. do_div(n, d);
  214. k1 = (n + 1) >> 1;
  215. k2 = (k1 - ONE) >> 1;
  216. *phase_init = (int)(k2 >> 4);
  217. k4 = (k3 - ONE) >> 1;
  218. if (rpa) {
  219. os = ((uint64_t)origin << 33) - ONE_HALF;
  220. tmp = (dim_out * os) + ONE_HALF;
  221. if (!dim_in)
  222. return -1;
  223. do_div(tmp, dim_in);
  224. od = tmp - ONE_HALF;
  225. } else {
  226. os = ((uint64_t)origin << 1) - 1;
  227. od = (((k3 * os) >> 1) + k4);
  228. }
  229. od_p = od & INT_MASK;
  230. if (od_p != od)
  231. od_p += ONE;
  232. if (rpa) {
  233. tmp = (dim_in * od_p) + ONE_HALF;
  234. if (!dim_in)
  235. return -1;
  236. do_div(tmp, dim_in);
  237. os_p = tmp - ONE_HALF;
  238. } else {
  239. os_p = ((k1 * (od_p >> 33)) + k2);
  240. }
  241. oreq = (os_p & INT_MASK) - ONE;
  242. ip64 = os_p - oreq;
  243. delta = ((int64_t)(origin) << 33) - oreq;
  244. ip64 -= delta;
  245. /* limit to valid range before the left shift */
  246. delta = (ip64 & (1LL << 63)) ? 4 : -4;
  247. delta <<= 33;
  248. while (abs((int)(ip64 >> 33)) > 4)
  249. ip64 += delta;
  250. *phase_init = (int)(ip64 >> 4);
  251. *phase_step = (uint32_t)(k1 >> 4);
  252. return 0;
  253. }
  254. static void load_scale_table(const struct mdp_info *mdp,
  255. struct mdp_table_entry *table, int len)
  256. {
  257. int i;
  258. for (i = 0; i < len; i++)
  259. mdp_writel(mdp, table[i].val, table[i].reg);
  260. }
  261. enum {
  262. IMG_LEFT,
  263. IMG_RIGHT,
  264. IMG_TOP,
  265. IMG_BOTTOM,
  266. };
  267. static void get_edge_info(uint32_t src, uint32_t src_coord, uint32_t dst,
  268. uint32_t *interp1, uint32_t *interp2,
  269. uint32_t *repeat1, uint32_t *repeat2) {
  270. if (src > 3 * dst) {
  271. *interp1 = 0;
  272. *interp2 = src - 1;
  273. *repeat1 = 0;
  274. *repeat2 = 0;
  275. } else if (src == 3 * dst) {
  276. *interp1 = 0;
  277. *interp2 = src;
  278. *repeat1 = 0;
  279. *repeat2 = 1;
  280. } else if (src > dst && src < 3 * dst) {
  281. *interp1 = -1;
  282. *interp2 = src;
  283. *repeat1 = 1;
  284. *repeat2 = 1;
  285. } else if (src == dst) {
  286. *interp1 = -1;
  287. *interp2 = src + 1;
  288. *repeat1 = 1;
  289. *repeat2 = 2;
  290. } else {
  291. *interp1 = -2;
  292. *interp2 = src + 1;
  293. *repeat1 = 2;
  294. *repeat2 = 2;
  295. }
  296. *interp1 += src_coord;
  297. *interp2 += src_coord;
  298. }
  299. static int get_edge_cond(struct mdp_blit_req *req, struct mdp_regs *regs)
  300. {
  301. int32_t luma_interp[4];
  302. int32_t luma_repeat[4];
  303. int32_t chroma_interp[4];
  304. int32_t chroma_bound[4];
  305. int32_t chroma_repeat[4];
  306. uint32_t dst_w, dst_h;
  307. memset(&luma_interp, 0, sizeof(int32_t) * 4);
  308. memset(&luma_repeat, 0, sizeof(int32_t) * 4);
  309. memset(&chroma_interp, 0, sizeof(int32_t) * 4);
  310. memset(&chroma_bound, 0, sizeof(int32_t) * 4);
  311. memset(&chroma_repeat, 0, sizeof(int32_t) * 4);
  312. regs->edge = 0;
  313. if (req->flags & MDP_ROT_90) {
  314. dst_w = req->dst_rect.h;
  315. dst_h = req->dst_rect.w;
  316. } else {
  317. dst_w = req->dst_rect.w;
  318. dst_h = req->dst_rect.h;
  319. }
  320. if (regs->op & (PPP_OP_SCALE_Y_ON | PPP_OP_SCALE_X_ON)) {
  321. get_edge_info(req->src_rect.h, req->src_rect.y, dst_h,
  322. &luma_interp[IMG_TOP], &luma_interp[IMG_BOTTOM],
  323. &luma_repeat[IMG_TOP], &luma_repeat[IMG_BOTTOM]);
  324. get_edge_info(req->src_rect.w, req->src_rect.x, dst_w,
  325. &luma_interp[IMG_LEFT], &luma_interp[IMG_RIGHT],
  326. &luma_repeat[IMG_LEFT], &luma_repeat[IMG_RIGHT]);
  327. } else {
  328. luma_interp[IMG_LEFT] = req->src_rect.x;
  329. luma_interp[IMG_RIGHT] = req->src_rect.x + req->src_rect.w - 1;
  330. luma_interp[IMG_TOP] = req->src_rect.y;
  331. luma_interp[IMG_BOTTOM] = req->src_rect.y + req->src_rect.h - 1;
  332. luma_repeat[IMG_LEFT] = 0;
  333. luma_repeat[IMG_TOP] = 0;
  334. luma_repeat[IMG_RIGHT] = 0;
  335. luma_repeat[IMG_BOTTOM] = 0;
  336. }
  337. chroma_interp[IMG_LEFT] = luma_interp[IMG_LEFT];
  338. chroma_interp[IMG_RIGHT] = luma_interp[IMG_RIGHT];
  339. chroma_interp[IMG_TOP] = luma_interp[IMG_TOP];
  340. chroma_interp[IMG_BOTTOM] = luma_interp[IMG_BOTTOM];
  341. chroma_bound[IMG_LEFT] = req->src_rect.x;
  342. chroma_bound[IMG_RIGHT] = req->src_rect.x + req->src_rect.w - 1;
  343. chroma_bound[IMG_TOP] = req->src_rect.y;
  344. chroma_bound[IMG_BOTTOM] = req->src_rect.y + req->src_rect.h - 1;
  345. if (IS_YCRCB(req->src.format)) {
  346. chroma_interp[IMG_LEFT] = chroma_interp[IMG_LEFT] >> 1;
  347. chroma_interp[IMG_RIGHT] = (chroma_interp[IMG_RIGHT] + 1) >> 1;
  348. chroma_bound[IMG_LEFT] = chroma_bound[IMG_LEFT] >> 1;
  349. chroma_bound[IMG_RIGHT] = chroma_bound[IMG_RIGHT] >> 1;
  350. }
  351. if (req->src.format == MDP_Y_CBCR_H2V2 ||
  352. req->src.format == MDP_Y_CRCB_H2V2) {
  353. chroma_interp[IMG_TOP] = (chroma_interp[IMG_TOP] - 1) >> 1;
  354. chroma_interp[IMG_BOTTOM] = (chroma_interp[IMG_BOTTOM] + 1)
  355. >> 1;
  356. chroma_bound[IMG_TOP] = (chroma_bound[IMG_TOP] + 1) >> 1;
  357. chroma_bound[IMG_BOTTOM] = chroma_bound[IMG_BOTTOM] >> 1;
  358. }
  359. chroma_repeat[IMG_LEFT] = chroma_bound[IMG_LEFT] -
  360. chroma_interp[IMG_LEFT];
  361. chroma_repeat[IMG_RIGHT] = chroma_interp[IMG_RIGHT] -
  362. chroma_bound[IMG_RIGHT];
  363. chroma_repeat[IMG_TOP] = chroma_bound[IMG_TOP] -
  364. chroma_interp[IMG_TOP];
  365. chroma_repeat[IMG_BOTTOM] = chroma_interp[IMG_BOTTOM] -
  366. chroma_bound[IMG_BOTTOM];
  367. if (chroma_repeat[IMG_LEFT] < 0 || chroma_repeat[IMG_LEFT] > 3 ||
  368. chroma_repeat[IMG_RIGHT] < 0 || chroma_repeat[IMG_RIGHT] > 3 ||
  369. chroma_repeat[IMG_TOP] < 0 || chroma_repeat[IMG_TOP] > 3 ||
  370. chroma_repeat[IMG_BOTTOM] < 0 || chroma_repeat[IMG_BOTTOM] > 3 ||
  371. luma_repeat[IMG_LEFT] < 0 || luma_repeat[IMG_LEFT] > 3 ||
  372. luma_repeat[IMG_RIGHT] < 0 || luma_repeat[IMG_RIGHT] > 3 ||
  373. luma_repeat[IMG_TOP] < 0 || luma_repeat[IMG_TOP] > 3 ||
  374. luma_repeat[IMG_BOTTOM] < 0 || luma_repeat[IMG_BOTTOM] > 3)
  375. return -1;
  376. regs->edge |= (chroma_repeat[IMG_LEFT] & 3) << MDP_LEFT_CHROMA;
  377. regs->edge |= (chroma_repeat[IMG_RIGHT] & 3) << MDP_RIGHT_CHROMA;
  378. regs->edge |= (chroma_repeat[IMG_TOP] & 3) << MDP_TOP_CHROMA;
  379. regs->edge |= (chroma_repeat[IMG_BOTTOM] & 3) << MDP_BOTTOM_CHROMA;
  380. regs->edge |= (luma_repeat[IMG_LEFT] & 3) << MDP_LEFT_LUMA;
  381. regs->edge |= (luma_repeat[IMG_RIGHT] & 3) << MDP_RIGHT_LUMA;
  382. regs->edge |= (luma_repeat[IMG_TOP] & 3) << MDP_TOP_LUMA;
  383. regs->edge |= (luma_repeat[IMG_BOTTOM] & 3) << MDP_BOTTOM_LUMA;
  384. return 0;
  385. }
  386. static int blit_scale(const struct mdp_info *mdp, struct mdp_blit_req *req,
  387. struct mdp_regs *regs)
  388. {
  389. uint32_t phase_init_x, phase_init_y, phase_step_x, phase_step_y;
  390. uint32_t scale_factor_x, scale_factor_y;
  391. uint32_t downscale;
  392. uint32_t dst_w, dst_h;
  393. if (req->flags & MDP_ROT_90) {
  394. dst_w = req->dst_rect.h;
  395. dst_h = req->dst_rect.w;
  396. } else {
  397. dst_w = req->dst_rect.w;
  398. dst_h = req->dst_rect.h;
  399. }
  400. if ((req->src_rect.w == dst_w) && (req->src_rect.h == dst_h) &&
  401. !(req->flags & MDP_BLUR)) {
  402. regs->phasex_init = 0;
  403. regs->phasey_init = 0;
  404. regs->phasex_step = 0;
  405. regs->phasey_step = 0;
  406. return 0;
  407. }
  408. if (scale_params(req->src_rect.w, dst_w, 1, &phase_init_x,
  409. &phase_step_x) ||
  410. scale_params(req->src_rect.h, dst_h, 1, &phase_init_y,
  411. &phase_step_y))
  412. return -1;
  413. scale_factor_x = (dst_w * 10) / req->src_rect.w;
  414. scale_factor_y = (dst_h * 10) / req->src_rect.h;
  415. if (scale_factor_x > 8)
  416. downscale = MDP_DOWNSCALE_PT8TO1;
  417. else if (scale_factor_x > 6)
  418. downscale = MDP_DOWNSCALE_PT6TOPT8;
  419. else if (scale_factor_x > 4)
  420. downscale = MDP_DOWNSCALE_PT4TOPT6;
  421. else
  422. downscale = MDP_DOWNSCALE_PT2TOPT4;
  423. if (downscale != downscale_x_table) {
  424. load_scale_table(mdp, mdp_downscale_x_table[downscale], 64);
  425. downscale_x_table = downscale;
  426. }
  427. if (scale_factor_y > 8)
  428. downscale = MDP_DOWNSCALE_PT8TO1;
  429. else if (scale_factor_y > 6)
  430. downscale = MDP_DOWNSCALE_PT6TOPT8;
  431. else if (scale_factor_y > 4)
  432. downscale = MDP_DOWNSCALE_PT4TOPT6;
  433. else
  434. downscale = MDP_DOWNSCALE_PT2TOPT4;
  435. if (downscale != downscale_y_table) {
  436. load_scale_table(mdp, mdp_downscale_y_table[downscale], 64);
  437. downscale_y_table = downscale;
  438. }
  439. regs->phasex_init = phase_init_x;
  440. regs->phasey_init = phase_init_y;
  441. regs->phasex_step = phase_step_x;
  442. regs->phasey_step = phase_step_y;
  443. regs->op |= (PPP_OP_SCALE_Y_ON | PPP_OP_SCALE_X_ON);
  444. return 0;
  445. }
  446. static void blit_blur(const struct mdp_info *mdp, struct mdp_blit_req *req,
  447. struct mdp_regs *regs)
  448. {
  449. if (!(req->flags & MDP_BLUR))
  450. return;
  451. if (!(downscale_x_table == MDP_DOWNSCALE_BLUR &&
  452. downscale_y_table == MDP_DOWNSCALE_BLUR)) {
  453. load_scale_table(mdp, mdp_gaussian_blur_table, 128);
  454. downscale_x_table = MDP_DOWNSCALE_BLUR;
  455. downscale_y_table = MDP_DOWNSCALE_BLUR;
  456. }
  457. regs->op |= (PPP_OP_SCALE_Y_ON | PPP_OP_SCALE_X_ON);
  458. }
  459. #define IMG_LEN(rect_h, w, rect_w, bpp) (((rect_h) * w) * bpp)
  460. #define Y_TO_CRCB_RATIO(format) \
  461. ((format == MDP_Y_CBCR_H2V2 || format == MDP_Y_CRCB_H2V2) ? 2 :\
  462. (format == MDP_Y_CBCR_H2V1 || format == MDP_Y_CRCB_H2V1) ? 1 : 1)
  463. static void get_len(struct mdp_img *img, struct mdp_rect *rect, uint32_t bpp,
  464. uint32_t *len0, uint32_t *len1)
  465. {
  466. *len0 = IMG_LEN(rect->h, img->width, rect->w, bpp);
  467. if (IS_PSEUDOPLNR(img->format))
  468. *len1 = *len0/Y_TO_CRCB_RATIO(img->format);
  469. else
  470. *len1 = 0;
  471. }
  472. static int valid_src_dst(unsigned long src_start, unsigned long src_len,
  473. unsigned long dst_start, unsigned long dst_len,
  474. struct mdp_blit_req *req, struct mdp_regs *regs)
  475. {
  476. unsigned long src_min_ok = src_start;
  477. unsigned long src_max_ok = src_start + src_len;
  478. unsigned long dst_min_ok = dst_start;
  479. unsigned long dst_max_ok = dst_start + dst_len;
  480. uint32_t src0_len, src1_len, dst0_len, dst1_len;
  481. get_len(&req->src, &req->src_rect, regs->src_bpp, &src0_len,
  482. &src1_len);
  483. get_len(&req->dst, &req->dst_rect, regs->dst_bpp, &dst0_len,
  484. &dst1_len);
  485. if (regs->src0 < src_min_ok || regs->src0 > src_max_ok ||
  486. regs->src0 + src0_len > src_max_ok) {
  487. DLOG("invalid_src %x %x %lx %lx\n", regs->src0,
  488. src0_len, src_min_ok, src_max_ok);
  489. return 0;
  490. }
  491. if (regs->src_cfg & PPP_SRC_PLANE_PSEUDOPLNR) {
  492. if (regs->src1 < src_min_ok || regs->src1 > src_max_ok ||
  493. regs->src1 + src1_len > src_max_ok) {
  494. DLOG("invalid_src1");
  495. return 0;
  496. }
  497. }
  498. if (regs->dst0 < dst_min_ok || regs->dst0 > dst_max_ok ||
  499. regs->dst0 + dst0_len > dst_max_ok) {
  500. DLOG("invalid_dst");
  501. return 0;
  502. }
  503. if (regs->dst_cfg & PPP_SRC_PLANE_PSEUDOPLNR) {
  504. if (regs->dst1 < dst_min_ok || regs->dst1 > dst_max_ok ||
  505. regs->dst1 + dst1_len > dst_max_ok) {
  506. DLOG("invalid_dst1");
  507. return 0;
  508. }
  509. }
  510. return 1;
  511. }
  512. static void flush_imgs(struct mdp_blit_req *req, struct mdp_regs *regs,
  513. struct file *src_file, struct file *dst_file)
  514. {
  515. }
  516. static void get_chroma_addr(struct mdp_img *img, struct mdp_rect *rect,
  517. uint32_t base, uint32_t bpp, uint32_t cfg,
  518. uint32_t *addr, uint32_t *ystride)
  519. {
  520. uint32_t compress_v = Y_TO_CRCB_RATIO(img->format);
  521. uint32_t compress_h = 2;
  522. uint32_t offset;
  523. if (IS_PSEUDOPLNR(img->format)) {
  524. offset = (rect->x / compress_h) * compress_h;
  525. offset += rect->y == 0 ? 0 :
  526. ((rect->y + 1) / compress_v) * img->width;
  527. *addr = base + (img->width * img->height * bpp);
  528. *addr += offset * bpp;
  529. *ystride |= *ystride << 16;
  530. } else {
  531. *addr = 0;
  532. }
  533. }
  534. static int send_blit(const struct mdp_info *mdp, struct mdp_blit_req *req,
  535. struct mdp_regs *regs, struct file *src_file,
  536. struct file *dst_file)
  537. {
  538. mdp_writel(mdp, 1, 0x060);
  539. mdp_writel(mdp, regs->src_rect, PPP_ADDR_SRC_ROI);
  540. mdp_writel(mdp, regs->src0, PPP_ADDR_SRC0);
  541. mdp_writel(mdp, regs->src1, PPP_ADDR_SRC1);
  542. mdp_writel(mdp, regs->src_ystride, PPP_ADDR_SRC_YSTRIDE);
  543. mdp_writel(mdp, regs->src_cfg, PPP_ADDR_SRC_CFG);
  544. mdp_writel(mdp, regs->src_pack, PPP_ADDR_SRC_PACK_PATTERN);
  545. mdp_writel(mdp, regs->op, PPP_ADDR_OPERATION);
  546. mdp_writel(mdp, regs->phasex_init, PPP_ADDR_PHASEX_INIT);
  547. mdp_writel(mdp, regs->phasey_init, PPP_ADDR_PHASEY_INIT);
  548. mdp_writel(mdp, regs->phasex_step, PPP_ADDR_PHASEX_STEP);
  549. mdp_writel(mdp, regs->phasey_step, PPP_ADDR_PHASEY_STEP);
  550. mdp_writel(mdp, (req->alpha << 24) | (req->transp_mask & 0xffffff),
  551. PPP_ADDR_ALPHA_TRANSP);
  552. mdp_writel(mdp, regs->dst_cfg, PPP_ADDR_DST_CFG);
  553. mdp_writel(mdp, regs->dst_pack, PPP_ADDR_DST_PACK_PATTERN);
  554. mdp_writel(mdp, regs->dst_rect, PPP_ADDR_DST_ROI);
  555. mdp_writel(mdp, regs->dst0, PPP_ADDR_DST0);
  556. mdp_writel(mdp, regs->dst1, PPP_ADDR_DST1);
  557. mdp_writel(mdp, regs->dst_ystride, PPP_ADDR_DST_YSTRIDE);
  558. mdp_writel(mdp, regs->edge, PPP_ADDR_EDGE);
  559. if (regs->op & PPP_OP_BLEND_ON) {
  560. mdp_writel(mdp, regs->dst0, PPP_ADDR_BG0);
  561. mdp_writel(mdp, regs->dst1, PPP_ADDR_BG1);
  562. mdp_writel(mdp, regs->dst_ystride, PPP_ADDR_BG_YSTRIDE);
  563. mdp_writel(mdp, src_img_cfg[req->dst.format], PPP_ADDR_BG_CFG);
  564. mdp_writel(mdp, pack_pattern[req->dst.format],
  565. PPP_ADDR_BG_PACK_PATTERN);
  566. }
  567. flush_imgs(req, regs, src_file, dst_file);
  568. mdp_writel(mdp, 0x1000, MDP_DISPLAY0_START);
  569. return 0;
  570. }
  571. int mdp_ppp_blit(const struct mdp_info *mdp, struct mdp_blit_req *req,
  572. struct file *src_file, unsigned long src_start, unsigned long src_len,
  573. struct file *dst_file, unsigned long dst_start, unsigned long dst_len)
  574. {
  575. struct mdp_regs regs = {0};
  576. if (unlikely(req->src.format >= MDP_IMGTYPE_LIMIT ||
  577. req->dst.format >= MDP_IMGTYPE_LIMIT)) {
  578. printk(KERN_ERR "mpd_ppp: img is of wrong format\n");
  579. return -EINVAL;
  580. }
  581. if (unlikely(req->src_rect.x > req->src.width ||
  582. req->src_rect.y > req->src.height ||
  583. req->dst_rect.x > req->dst.width ||
  584. req->dst_rect.y > req->dst.height)) {
  585. printk(KERN_ERR "mpd_ppp: img rect is outside of img!\n");
  586. return -EINVAL;
  587. }
  588. /* set the src image configuration */
  589. regs.src_cfg = src_img_cfg[req->src.format];
  590. regs.src_cfg |= (req->src_rect.x & 0x1) ? PPP_SRC_BPP_ROI_ODD_X : 0;
  591. regs.src_cfg |= (req->src_rect.y & 0x1) ? PPP_SRC_BPP_ROI_ODD_Y : 0;
  592. regs.src_rect = (req->src_rect.h << 16) | req->src_rect.w;
  593. regs.src_pack = pack_pattern[req->src.format];
  594. /* set the dest image configuration */
  595. regs.dst_cfg = dst_img_cfg[req->dst.format] | PPP_DST_OUT_SEL_AXI;
  596. regs.dst_rect = (req->dst_rect.h << 16) | req->dst_rect.w;
  597. regs.dst_pack = pack_pattern[req->dst.format];
  598. /* set src, bpp, start pixel and ystride */
  599. regs.src_bpp = bytes_per_pixel[req->src.format];
  600. regs.src0 = src_start + req->src.offset;
  601. regs.src_ystride = req->src.width * regs.src_bpp;
  602. get_chroma_addr(&req->src, &req->src_rect, regs.src0, regs.src_bpp,
  603. regs.src_cfg, &regs.src1, &regs.src_ystride);
  604. regs.src0 += (req->src_rect.x + (req->src_rect.y * req->src.width)) *
  605. regs.src_bpp;
  606. /* set dst, bpp, start pixel and ystride */
  607. regs.dst_bpp = bytes_per_pixel[req->dst.format];
  608. regs.dst0 = dst_start + req->dst.offset;
  609. regs.dst_ystride = req->dst.width * regs.dst_bpp;
  610. get_chroma_addr(&req->dst, &req->dst_rect, regs.dst0, regs.dst_bpp,
  611. regs.dst_cfg, &regs.dst1, &regs.dst_ystride);
  612. regs.dst0 += (req->dst_rect.x + (req->dst_rect.y * req->dst.width)) *
  613. regs.dst_bpp;
  614. if (!valid_src_dst(src_start, src_len, dst_start, dst_len, req,
  615. &regs)) {
  616. printk(KERN_ERR "mpd_ppp: final src or dst location is "
  617. "invalid, are you trying to make an image too large "
  618. "or to place it outside the screen?\n");
  619. return -EINVAL;
  620. }
  621. /* set up operation register */
  622. regs.op = 0;
  623. blit_rotate(req, &regs);
  624. blit_convert(req, &regs);
  625. if (req->flags & MDP_DITHER)
  626. regs.op |= PPP_OP_DITHER_EN;
  627. blit_blend(req, &regs);
  628. if (blit_scale(mdp, req, &regs)) {
  629. printk(KERN_ERR "mpd_ppp: error computing scale for img.\n");
  630. return -EINVAL;
  631. }
  632. blit_blur(mdp, req, &regs);
  633. regs.op |= dst_op_chroma[req->dst.format] |
  634. src_op_chroma[req->src.format];
  635. /* if the image is YCRYCB, the x and w must be even */
  636. if (unlikely(req->src.format == MDP_YCRYCB_H2V1)) {
  637. req->src_rect.x = req->src_rect.x & (~0x1);
  638. req->src_rect.w = req->src_rect.w & (~0x1);
  639. req->dst_rect.x = req->dst_rect.x & (~0x1);
  640. req->dst_rect.w = req->dst_rect.w & (~0x1);
  641. }
  642. if (get_edge_cond(req, &regs))
  643. return -EINVAL;
  644. send_blit(mdp, req, &regs, src_file, dst_file);
  645. return 0;
  646. }