sde_formats.c 43 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2024 Qualcomm Innovation Center, Inc. All rights reserved.
  4. * Copyright (c) 2015-2021, The Linux Foundation. All rights reserved.
  5. */
  6. #define pr_fmt(fmt) "[drm:%s:%d] " fmt, __func__, __LINE__
  7. #include <drm/drm_fourcc.h>
  8. #include <media/mmm_color_fmt.h>
  9. #include "sde_kms.h"
  10. #include "sde_formats.h"
  11. #define SDE_UBWC_META_MACRO_W_H 16
  12. #define SDE_UBWC_META_BLOCK_SIZE 256
  13. #define SDE_UBWC_PLANE_SIZE_ALIGNMENT 4096
  14. #define SDE_TILE_HEIGHT_DEFAULT 1
  15. #define SDE_TILE_HEIGHT_TILED 4
  16. #define SDE_TILE_HEIGHT_UBWC 4
  17. #define SDE_TILE_HEIGHT_NV12 8
  18. #define SDE_MAX_IMG_WIDTH 0x3FFF
  19. #define SDE_MAX_IMG_HEIGHT 0x3FFF
  20. /**
  21. * SDE supported format packing, bpp, and other format
  22. * information.
  23. * SDE currently only supports interleaved RGB formats
  24. * UBWC support for a pixel format is indicated by the flag,
  25. * there is additional meta data plane for such formats
  26. */
  27. #define INTERLEAVED_RGB_FMT(fmt, a, r, g, b, e0, e1, e2, e3, uc, alpha, \
  28. bp, flg, fm, np) \
  29. { \
  30. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  31. .fetch_planes = SDE_PLANE_INTERLEAVED, \
  32. .alpha_enable = alpha, \
  33. .element = { (e0), (e1), (e2), (e3) }, \
  34. .bits = { g, b, r, a }, \
  35. .chroma_sample = SDE_CHROMA_RGB, \
  36. .unpack_align_msb = 0, \
  37. .unpack_tight = 1, \
  38. .unpack_count = uc, \
  39. .bpp = bp, \
  40. .fetch_mode = fm, \
  41. .flag = {(flg)}, \
  42. .num_planes = np, \
  43. .tile_height = SDE_TILE_HEIGHT_DEFAULT \
  44. }
  45. #define INTERLEAVED_RGB_FMT_TILED(fmt, a, r, g, b, e0, e1, e2, e3, uc, \
  46. alpha, bp, flg, fm, np, th) \
  47. { \
  48. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  49. .fetch_planes = SDE_PLANE_INTERLEAVED, \
  50. .alpha_enable = alpha, \
  51. .element = { (e0), (e1), (e2), (e3) }, \
  52. .bits = { g, b, r, a }, \
  53. .chroma_sample = SDE_CHROMA_RGB, \
  54. .unpack_align_msb = 0, \
  55. .unpack_tight = 1, \
  56. .unpack_count = uc, \
  57. .bpp = bp, \
  58. .fetch_mode = fm, \
  59. .flag = {(flg)}, \
  60. .num_planes = np, \
  61. .tile_height = th \
  62. }
  63. #define INTERLEAVED_YUV_FMT(fmt, a, r, g, b, e0, e1, e2, e3, \
  64. alpha, chroma, count, bp, flg, fm, np) \
  65. { \
  66. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  67. .fetch_planes = SDE_PLANE_INTERLEAVED, \
  68. .alpha_enable = alpha, \
  69. .element = { (e0), (e1), (e2), (e3)}, \
  70. .bits = { g, b, r, a }, \
  71. .chroma_sample = chroma, \
  72. .unpack_align_msb = 0, \
  73. .unpack_tight = 1, \
  74. .unpack_count = count, \
  75. .bpp = bp, \
  76. .fetch_mode = fm, \
  77. .flag = {(flg)}, \
  78. .num_planes = np, \
  79. .tile_height = SDE_TILE_HEIGHT_DEFAULT \
  80. }
  81. #define PSEUDO_YUV_FMT(fmt, a, r, g, b, e0, e1, chroma, flg, fm, np) \
  82. { \
  83. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  84. .fetch_planes = SDE_PLANE_PSEUDO_PLANAR, \
  85. .alpha_enable = false, \
  86. .element = { (e0), (e1), 0, 0 }, \
  87. .bits = { g, b, r, a }, \
  88. .chroma_sample = chroma, \
  89. .unpack_align_msb = 0, \
  90. .unpack_tight = 1, \
  91. .unpack_count = 2, \
  92. .bpp = 2, \
  93. .fetch_mode = fm, \
  94. .flag = {(flg)}, \
  95. .num_planes = np, \
  96. .tile_height = SDE_TILE_HEIGHT_DEFAULT \
  97. }
  98. #define PSEUDO_YUV_FMT_TILED(fmt, a, r, g, b, e0, e1, chroma, \
  99. flg, fm, np, th) \
  100. { \
  101. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  102. .fetch_planes = SDE_PLANE_PSEUDO_PLANAR, \
  103. .alpha_enable = false, \
  104. .element = { (e0), (e1), 0, 0 }, \
  105. .bits = { g, b, r, a }, \
  106. .chroma_sample = chroma, \
  107. .unpack_align_msb = 0, \
  108. .unpack_tight = 1, \
  109. .unpack_count = 2, \
  110. .bpp = 2, \
  111. .fetch_mode = fm, \
  112. .flag = {(flg)}, \
  113. .num_planes = np, \
  114. .tile_height = th \
  115. }
  116. #define PSEUDO_YUV_FMT_LOOSE(fmt, a, r, g, b, e0, e1, chroma, flg, fm, np)\
  117. { \
  118. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  119. .fetch_planes = SDE_PLANE_PSEUDO_PLANAR, \
  120. .alpha_enable = false, \
  121. .element = { (e0), (e1), 0, 0 }, \
  122. .bits = { g, b, r, a }, \
  123. .chroma_sample = chroma, \
  124. .unpack_align_msb = 1, \
  125. .unpack_tight = 0, \
  126. .unpack_count = 2, \
  127. .bpp = 2, \
  128. .fetch_mode = fm, \
  129. .flag = {(flg)}, \
  130. .num_planes = np, \
  131. .tile_height = SDE_TILE_HEIGHT_DEFAULT \
  132. }
  133. #define PSEUDO_YUV_FMT_LOOSE_TILED(fmt, a, r, g, b, e0, e1, chroma, \
  134. flg, fm, np, th) \
  135. { \
  136. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  137. .fetch_planes = SDE_PLANE_PSEUDO_PLANAR, \
  138. .alpha_enable = false, \
  139. .element = { (e0), (e1), 0, 0 }, \
  140. .bits = { g, b, r, a }, \
  141. .chroma_sample = chroma, \
  142. .unpack_align_msb = 1, \
  143. .unpack_tight = 0, \
  144. .unpack_count = 2, \
  145. .bpp = 2, \
  146. .fetch_mode = fm, \
  147. .flag = {(flg)}, \
  148. .num_planes = np, \
  149. .tile_height = th \
  150. }
  151. #define PLANAR_YUV_FMT(fmt, a, r, g, b, e0, e1, e2, alpha, chroma, bp, \
  152. flg, fm, np) \
  153. { \
  154. .base.pixel_format = DRM_FORMAT_ ## fmt, \
  155. .fetch_planes = SDE_PLANE_PLANAR, \
  156. .alpha_enable = alpha, \
  157. .element = { (e0), (e1), (e2), 0 }, \
  158. .bits = { g, b, r, a }, \
  159. .chroma_sample = chroma, \
  160. .unpack_align_msb = 0, \
  161. .unpack_tight = 1, \
  162. .unpack_count = 1, \
  163. .bpp = bp, \
  164. .fetch_mode = fm, \
  165. .flag = {(flg)}, \
  166. .num_planes = np, \
  167. .tile_height = SDE_TILE_HEIGHT_DEFAULT \
  168. }
  169. /*
  170. * struct sde_media_color_map - maps drm format to media format
  171. * @format: DRM base pixel format
  172. * @color: Media API color related to DRM format
  173. */
  174. struct sde_media_color_map {
  175. uint32_t format;
  176. uint32_t color;
  177. };
  178. static const struct sde_format sde_format_map[] = {
  179. INTERLEAVED_RGB_FMT(ARGB8888,
  180. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  181. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  182. true, 4, 0,
  183. SDE_FETCH_LINEAR, 1),
  184. INTERLEAVED_RGB_FMT(ABGR8888,
  185. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  186. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  187. true, 4, 0,
  188. SDE_FETCH_LINEAR, 1),
  189. INTERLEAVED_RGB_FMT(XBGR8888,
  190. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  191. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  192. true, 4, 0,
  193. SDE_FETCH_LINEAR, 1),
  194. INTERLEAVED_RGB_FMT(RGBA8888,
  195. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  196. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  197. true, 4, 0,
  198. SDE_FETCH_LINEAR, 1),
  199. INTERLEAVED_RGB_FMT(BGRA8888,
  200. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  201. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  202. true, 4, 0,
  203. SDE_FETCH_LINEAR, 1),
  204. INTERLEAVED_RGB_FMT(BGRX8888,
  205. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  206. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  207. false, 4, 0,
  208. SDE_FETCH_LINEAR, 1),
  209. INTERLEAVED_RGB_FMT(XRGB8888,
  210. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  211. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  212. false, 4, 0,
  213. SDE_FETCH_LINEAR, 1),
  214. INTERLEAVED_RGB_FMT(RGBX8888,
  215. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  216. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  217. false, 4, 0,
  218. SDE_FETCH_LINEAR, 1),
  219. INTERLEAVED_RGB_FMT(RGB888,
  220. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  221. C1_B_Cb, C0_G_Y, C2_R_Cr, 0, 3,
  222. false, 3, 0,
  223. SDE_FETCH_LINEAR, 1),
  224. INTERLEAVED_RGB_FMT(BGR888,
  225. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  226. C2_R_Cr, C0_G_Y, C1_B_Cb, 0, 3,
  227. false, 3, 0,
  228. SDE_FETCH_LINEAR, 1),
  229. INTERLEAVED_RGB_FMT(RGB565,
  230. 0, COLOR_5BIT, COLOR_6BIT, COLOR_5BIT,
  231. C2_R_Cr, C0_G_Y, C1_B_Cb, 0, 3,
  232. false, 2, 0,
  233. SDE_FETCH_LINEAR, 1),
  234. INTERLEAVED_RGB_FMT(BGR565,
  235. 0, COLOR_5BIT, COLOR_6BIT, COLOR_5BIT,
  236. C1_B_Cb, C0_G_Y, C2_R_Cr, 0, 3,
  237. false, 2, 0,
  238. SDE_FETCH_LINEAR, 1),
  239. INTERLEAVED_RGB_FMT(ARGB1555,
  240. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  241. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  242. true, 2, 0,
  243. SDE_FETCH_LINEAR, 1),
  244. INTERLEAVED_RGB_FMT(ABGR1555,
  245. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  246. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  247. true, 2, 0,
  248. SDE_FETCH_LINEAR, 1),
  249. INTERLEAVED_RGB_FMT(RGBA5551,
  250. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  251. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  252. true, 2, 0,
  253. SDE_FETCH_LINEAR, 1),
  254. INTERLEAVED_RGB_FMT(BGRA5551,
  255. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  256. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  257. true, 2, 0,
  258. SDE_FETCH_LINEAR, 1),
  259. INTERLEAVED_RGB_FMT(XRGB1555,
  260. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  261. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  262. false, 2, 0,
  263. SDE_FETCH_LINEAR, 1),
  264. INTERLEAVED_RGB_FMT(XBGR1555,
  265. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  266. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  267. false, 2, 0,
  268. SDE_FETCH_LINEAR, 1),
  269. INTERLEAVED_RGB_FMT(RGBX5551,
  270. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  271. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  272. false, 2, 0,
  273. SDE_FETCH_LINEAR, 1),
  274. INTERLEAVED_RGB_FMT(BGRX5551,
  275. COLOR_ALPHA_1BIT, COLOR_5BIT, COLOR_5BIT, COLOR_5BIT,
  276. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  277. false, 2, 0,
  278. SDE_FETCH_LINEAR, 1),
  279. INTERLEAVED_RGB_FMT(ARGB4444,
  280. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  281. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  282. true, 2, 0,
  283. SDE_FETCH_LINEAR, 1),
  284. INTERLEAVED_RGB_FMT(ABGR4444,
  285. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  286. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  287. true, 2, 0,
  288. SDE_FETCH_LINEAR, 1),
  289. INTERLEAVED_RGB_FMT(RGBA4444,
  290. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  291. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  292. true, 2, 0,
  293. SDE_FETCH_LINEAR, 1),
  294. INTERLEAVED_RGB_FMT(BGRA4444,
  295. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  296. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  297. true, 2, 0,
  298. SDE_FETCH_LINEAR, 1),
  299. INTERLEAVED_RGB_FMT(XRGB4444,
  300. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  301. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  302. false, 2, 0,
  303. SDE_FETCH_LINEAR, 1),
  304. INTERLEAVED_RGB_FMT(XBGR4444,
  305. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  306. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  307. false, 2, 0,
  308. SDE_FETCH_LINEAR, 1),
  309. INTERLEAVED_RGB_FMT(RGBX4444,
  310. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  311. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  312. false, 2, 0,
  313. SDE_FETCH_LINEAR, 1),
  314. INTERLEAVED_RGB_FMT(BGRX4444,
  315. COLOR_ALPHA_4BIT, COLOR_4BIT, COLOR_4BIT, COLOR_4BIT,
  316. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  317. false, 2, 0,
  318. SDE_FETCH_LINEAR, 1),
  319. INTERLEAVED_RGB_FMT(BGRA1010102,
  320. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  321. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  322. true, 4, SDE_FORMAT_FLAG_DX,
  323. SDE_FETCH_LINEAR, 1),
  324. INTERLEAVED_RGB_FMT(RGBA1010102,
  325. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  326. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  327. true, 4, SDE_FORMAT_FLAG_DX,
  328. SDE_FETCH_LINEAR, 1),
  329. INTERLEAVED_RGB_FMT(ABGR2101010,
  330. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  331. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  332. true, 4, SDE_FORMAT_FLAG_DX,
  333. SDE_FETCH_LINEAR, 1),
  334. INTERLEAVED_RGB_FMT(ARGB2101010,
  335. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  336. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  337. true, 4, SDE_FORMAT_FLAG_DX,
  338. SDE_FETCH_LINEAR, 1),
  339. INTERLEAVED_RGB_FMT(XRGB2101010,
  340. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  341. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  342. false, 4, SDE_FORMAT_FLAG_DX,
  343. SDE_FETCH_LINEAR, 1),
  344. INTERLEAVED_RGB_FMT(BGRX1010102,
  345. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  346. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  347. false, 4, SDE_FORMAT_FLAG_DX,
  348. SDE_FETCH_LINEAR, 1),
  349. INTERLEAVED_RGB_FMT(XBGR2101010,
  350. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  351. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  352. false, 4, SDE_FORMAT_FLAG_DX,
  353. SDE_FETCH_LINEAR, 1),
  354. INTERLEAVED_RGB_FMT(RGBX1010102,
  355. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  356. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  357. false, 4, SDE_FORMAT_FLAG_DX,
  358. SDE_FETCH_LINEAR, 1),
  359. INTERLEAVED_RGB_FMT(ARGB16161616F,
  360. COLOR_16BIT, COLOR_16BIT, COLOR_16BIT, COLOR_16BIT,
  361. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  362. true, 8, SDE_FORMAT_FLAG_FP16,
  363. SDE_FETCH_LINEAR, 1),
  364. INTERLEAVED_RGB_FMT(ABGR16161616F,
  365. COLOR_16BIT, COLOR_16BIT, COLOR_16BIT, COLOR_16BIT,
  366. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  367. true, 8, SDE_FORMAT_FLAG_FP16,
  368. SDE_FETCH_LINEAR, 1),
  369. PSEUDO_YUV_FMT(NV12,
  370. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  371. C1_B_Cb, C2_R_Cr,
  372. SDE_CHROMA_420, SDE_FORMAT_FLAG_YUV,
  373. SDE_FETCH_LINEAR, 2),
  374. PSEUDO_YUV_FMT(NV21,
  375. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  376. C2_R_Cr, C1_B_Cb,
  377. SDE_CHROMA_420, SDE_FORMAT_FLAG_YUV,
  378. SDE_FETCH_LINEAR, 2),
  379. PSEUDO_YUV_FMT(NV16,
  380. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  381. C1_B_Cb, C2_R_Cr,
  382. SDE_CHROMA_H2V1, SDE_FORMAT_FLAG_YUV,
  383. SDE_FETCH_LINEAR, 2),
  384. PSEUDO_YUV_FMT(NV61,
  385. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  386. C2_R_Cr, C1_B_Cb,
  387. SDE_CHROMA_H2V1, SDE_FORMAT_FLAG_YUV,
  388. SDE_FETCH_LINEAR, 2),
  389. INTERLEAVED_YUV_FMT(VYUY,
  390. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  391. C2_R_Cr, C0_G_Y, C1_B_Cb, C0_G_Y,
  392. false, SDE_CHROMA_H2V1, 4, 2, SDE_FORMAT_FLAG_YUV,
  393. SDE_FETCH_LINEAR, 2),
  394. INTERLEAVED_YUV_FMT(UYVY,
  395. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  396. C1_B_Cb, C0_G_Y, C2_R_Cr, C0_G_Y,
  397. false, SDE_CHROMA_H2V1, 4, 2, SDE_FORMAT_FLAG_YUV,
  398. SDE_FETCH_LINEAR, 2),
  399. INTERLEAVED_YUV_FMT(YUYV,
  400. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  401. C0_G_Y, C1_B_Cb, C0_G_Y, C2_R_Cr,
  402. false, SDE_CHROMA_H2V1, 4, 2, SDE_FORMAT_FLAG_YUV,
  403. SDE_FETCH_LINEAR, 2),
  404. INTERLEAVED_YUV_FMT(YVYU,
  405. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  406. C0_G_Y, C2_R_Cr, C0_G_Y, C1_B_Cb,
  407. false, SDE_CHROMA_H2V1, 4, 2, SDE_FORMAT_FLAG_YUV,
  408. SDE_FETCH_LINEAR, 2),
  409. PLANAR_YUV_FMT(YUV420,
  410. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  411. C2_R_Cr, C1_B_Cb, C0_G_Y,
  412. false, SDE_CHROMA_420, 1, SDE_FORMAT_FLAG_YUV,
  413. SDE_FETCH_LINEAR, 3),
  414. PLANAR_YUV_FMT(YVU420,
  415. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  416. C1_B_Cb, C2_R_Cr, C0_G_Y,
  417. false, SDE_CHROMA_420, 1, SDE_FORMAT_FLAG_YUV,
  418. SDE_FETCH_LINEAR, 3),
  419. };
  420. /* Base formats supporting the alpha swapping modifier */
  421. static const struct sde_format sde_format_map_alpha_swap[] = {
  422. INTERLEAVED_RGB_FMT(ARGB16161616F,
  423. COLOR_16BIT, COLOR_16BIT, COLOR_16BIT, COLOR_16BIT,
  424. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  425. true, 8, SDE_FORMAT_FLAG_FP16 | SDE_FORMAT_FLAG_ALPHA_SWAP,
  426. SDE_FETCH_LINEAR, 1),
  427. INTERLEAVED_RGB_FMT(ABGR16161616F,
  428. COLOR_16BIT, COLOR_16BIT, COLOR_16BIT, COLOR_16BIT,
  429. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  430. true, 8, SDE_FORMAT_FLAG_FP16 | SDE_FORMAT_FLAG_ALPHA_SWAP,
  431. SDE_FETCH_LINEAR, 1),
  432. };
  433. /*
  434. * A5x tile formats tables:
  435. * These tables hold the A5x tile formats supported.
  436. */
  437. static const struct sde_format sde_format_map_tile[] = {
  438. INTERLEAVED_RGB_FMT_TILED(BGR565,
  439. 0, COLOR_5BIT, COLOR_6BIT, COLOR_5BIT,
  440. C2_R_Cr, C0_G_Y, C1_B_Cb, 0, 3,
  441. false, 2, 0,
  442. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  443. INTERLEAVED_RGB_FMT_TILED(ARGB8888,
  444. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  445. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  446. true, 4, 0,
  447. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  448. INTERLEAVED_RGB_FMT_TILED(ABGR8888,
  449. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  450. C3_ALPHA, C1_B_Cb, C0_G_Y, C2_R_Cr, 4,
  451. true, 4, 0,
  452. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  453. INTERLEAVED_RGB_FMT_TILED(XBGR8888,
  454. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  455. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  456. false, 4, 0,
  457. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  458. INTERLEAVED_RGB_FMT_TILED(RGBA8888,
  459. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  460. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  461. true, 4, 0,
  462. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  463. INTERLEAVED_RGB_FMT_TILED(BGRA8888,
  464. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  465. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  466. true, 4, 0,
  467. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  468. INTERLEAVED_RGB_FMT_TILED(BGRX8888,
  469. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  470. C1_B_Cb, C0_G_Y, C2_R_Cr, C3_ALPHA, 4,
  471. false, 4, 0,
  472. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  473. INTERLEAVED_RGB_FMT_TILED(XRGB8888,
  474. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  475. C3_ALPHA, C2_R_Cr, C0_G_Y, C1_B_Cb, 4,
  476. false, 4, 0,
  477. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  478. INTERLEAVED_RGB_FMT_TILED(RGBX8888,
  479. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  480. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  481. false, 4, 0,
  482. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  483. INTERLEAVED_RGB_FMT_TILED(ABGR2101010,
  484. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  485. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  486. true, 4, SDE_FORMAT_FLAG_DX,
  487. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  488. INTERLEAVED_RGB_FMT_TILED(XBGR2101010,
  489. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  490. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  491. true, 4, SDE_FORMAT_FLAG_DX,
  492. SDE_FETCH_UBWC, 1, SDE_TILE_HEIGHT_TILED),
  493. PSEUDO_YUV_FMT_TILED(NV12,
  494. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  495. C1_B_Cb, C2_R_Cr,
  496. SDE_CHROMA_420, SDE_FORMAT_FLAG_YUV,
  497. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_NV12),
  498. PSEUDO_YUV_FMT_TILED(NV21,
  499. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  500. C2_R_Cr, C1_B_Cb,
  501. SDE_CHROMA_420, SDE_FORMAT_FLAG_YUV,
  502. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_NV12),
  503. };
  504. static const struct sde_format sde_format_map_p010_tile[] = {
  505. PSEUDO_YUV_FMT_LOOSE_TILED(NV12,
  506. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  507. C1_B_Cb, C2_R_Cr,
  508. SDE_CHROMA_420, (SDE_FORMAT_FLAG_YUV | SDE_FORMAT_FLAG_DX),
  509. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_NV12),
  510. };
  511. static const struct sde_format sde_format_map_tp10_tile[] = {
  512. PSEUDO_YUV_FMT_TILED(NV12,
  513. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  514. C1_B_Cb, C2_R_Cr,
  515. SDE_CHROMA_420, (SDE_FORMAT_FLAG_YUV | SDE_FORMAT_FLAG_DX),
  516. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_NV12),
  517. };
  518. /*
  519. * UBWC formats table:
  520. * This table holds the UBWC formats supported.
  521. * If a compression ratio needs to be used for this or any other format,
  522. * the data will be passed by user-space.
  523. */
  524. static const struct sde_format sde_format_map_ubwc[] = {
  525. INTERLEAVED_RGB_FMT_TILED(BGR565,
  526. 0, COLOR_5BIT, COLOR_6BIT, COLOR_5BIT,
  527. C2_R_Cr, C0_G_Y, C1_B_Cb, 0, 3,
  528. false, 2, SDE_FORMAT_FLAG_COMPRESSED,
  529. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  530. INTERLEAVED_RGB_FMT_TILED(ABGR8888,
  531. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  532. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  533. true, 4, SDE_FORMAT_FLAG_COMPRESSED,
  534. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  535. INTERLEAVED_RGB_FMT_TILED(XBGR8888,
  536. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  537. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  538. false, 4, SDE_FORMAT_FLAG_COMPRESSED,
  539. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  540. INTERLEAVED_RGB_FMT_TILED(ABGR2101010,
  541. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  542. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  543. true, 4, SDE_FORMAT_FLAG_DX | SDE_FORMAT_FLAG_COMPRESSED,
  544. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  545. INTERLEAVED_RGB_FMT_TILED(XBGR2101010,
  546. COLOR_8BIT, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  547. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  548. true, 4, SDE_FORMAT_FLAG_DX | SDE_FORMAT_FLAG_COMPRESSED,
  549. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  550. INTERLEAVED_RGB_FMT_TILED(ABGR16161616F,
  551. COLOR_16BIT, COLOR_16BIT, COLOR_16BIT, COLOR_16BIT,
  552. C2_R_Cr, C0_G_Y, C1_B_Cb, C3_ALPHA, 4,
  553. true, 8, SDE_FORMAT_FLAG_FP16 | SDE_FORMAT_FLAG_COMPRESSED,
  554. SDE_FETCH_UBWC, 2, SDE_TILE_HEIGHT_UBWC),
  555. PSEUDO_YUV_FMT_TILED(NV12,
  556. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  557. C1_B_Cb, C2_R_Cr,
  558. SDE_CHROMA_420, SDE_FORMAT_FLAG_YUV |
  559. SDE_FORMAT_FLAG_COMPRESSED,
  560. SDE_FETCH_UBWC, 4, SDE_TILE_HEIGHT_NV12),
  561. };
  562. static const struct sde_format sde_format_map_p010[] = {
  563. PSEUDO_YUV_FMT_LOOSE(NV12,
  564. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  565. C1_B_Cb, C2_R_Cr,
  566. SDE_CHROMA_420, (SDE_FORMAT_FLAG_YUV | SDE_FORMAT_FLAG_DX),
  567. SDE_FETCH_LINEAR, 2),
  568. };
  569. static const struct sde_format sde_format_map_p010_ubwc[] = {
  570. PSEUDO_YUV_FMT_LOOSE_TILED(NV12,
  571. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  572. C1_B_Cb, C2_R_Cr,
  573. SDE_CHROMA_420, (SDE_FORMAT_FLAG_YUV | SDE_FORMAT_FLAG_DX |
  574. SDE_FORMAT_FLAG_COMPRESSED),
  575. SDE_FETCH_UBWC, 4, SDE_TILE_HEIGHT_NV12),
  576. };
  577. static const struct sde_format sde_format_map_tp10_ubwc[] = {
  578. PSEUDO_YUV_FMT_TILED(NV12,
  579. 0, COLOR_8BIT, COLOR_8BIT, COLOR_8BIT,
  580. C1_B_Cb, C2_R_Cr,
  581. SDE_CHROMA_420, (SDE_FORMAT_FLAG_YUV | SDE_FORMAT_FLAG_DX |
  582. SDE_FORMAT_FLAG_COMPRESSED),
  583. SDE_FETCH_UBWC, 4, SDE_TILE_HEIGHT_NV12),
  584. };
  585. bool sde_format_is_tp10_ubwc(const struct sde_format *fmt)
  586. {
  587. if (SDE_FORMAT_IS_YUV(fmt) && SDE_FORMAT_IS_DX(fmt) &&
  588. SDE_FORMAT_IS_UBWC(fmt) &&
  589. (fmt->num_planes == 4) && fmt->unpack_tight)
  590. return true;
  591. else
  592. return false;
  593. }
  594. /* _sde_get_v_h_subsample_rate - Get subsample rates for all formats we support
  595. * Note: Not using the drm_format_*_subsampling since we have formats
  596. */
  597. static void _sde_get_v_h_subsample_rate(
  598. enum sde_chroma_samp_type chroma_sample,
  599. uint32_t *v_sample,
  600. uint32_t *h_sample)
  601. {
  602. if (!v_sample || !h_sample)
  603. return;
  604. switch (chroma_sample) {
  605. case SDE_CHROMA_H2V1:
  606. *v_sample = 1;
  607. *h_sample = 2;
  608. break;
  609. case SDE_CHROMA_H1V2:
  610. *v_sample = 2;
  611. *h_sample = 1;
  612. break;
  613. case SDE_CHROMA_420:
  614. *v_sample = 2;
  615. *h_sample = 2;
  616. break;
  617. default:
  618. *v_sample = 1;
  619. *h_sample = 1;
  620. break;
  621. }
  622. }
  623. static int _sde_format_get_media_color_ubwc(const struct sde_format *fmt)
  624. {
  625. static const struct sde_media_color_map sde_media_ubwc_map[] = {
  626. {DRM_FORMAT_ABGR8888, MMM_COLOR_FMT_RGBA8888_UBWC},
  627. {DRM_FORMAT_XBGR8888, MMM_COLOR_FMT_RGBA8888_UBWC},
  628. {DRM_FORMAT_ABGR2101010, MMM_COLOR_FMT_RGBA1010102_UBWC},
  629. {DRM_FORMAT_XBGR2101010, MMM_COLOR_FMT_RGBA1010102_UBWC},
  630. {DRM_FORMAT_BGR565, MMM_COLOR_FMT_RGB565_UBWC},
  631. {DRM_FORMAT_ABGR16161616F, MMM_COLOR_FMT_RGBA16161616F_UBWC},
  632. };
  633. int color_fmt = -1;
  634. int i;
  635. if (fmt->base.pixel_format == DRM_FORMAT_NV12) {
  636. if (SDE_FORMAT_IS_DX(fmt)) {
  637. if (fmt->unpack_tight)
  638. color_fmt = MMM_COLOR_FMT_NV12_BPP10_UBWC;
  639. else
  640. color_fmt = MMM_COLOR_FMT_P010_UBWC;
  641. } else
  642. color_fmt = MMM_COLOR_FMT_NV12_UBWC;
  643. return color_fmt;
  644. }
  645. for (i = 0; i < ARRAY_SIZE(sde_media_ubwc_map); ++i)
  646. if (fmt->base.pixel_format == sde_media_ubwc_map[i].format) {
  647. color_fmt = sde_media_ubwc_map[i].color;
  648. break;
  649. }
  650. return color_fmt;
  651. }
  652. static int _sde_format_get_plane_sizes_ubwc(
  653. const struct sde_format *fmt,
  654. const uint32_t width,
  655. const uint32_t height,
  656. struct sde_hw_fmt_layout *layout)
  657. {
  658. int i;
  659. int color;
  660. bool meta = SDE_FORMAT_IS_UBWC(fmt);
  661. memset(layout, 0, sizeof(struct sde_hw_fmt_layout));
  662. layout->format = fmt;
  663. layout->width = width;
  664. layout->height = height;
  665. layout->num_planes = fmt->num_planes;
  666. color = _sde_format_get_media_color_ubwc(fmt);
  667. if (color < 0) {
  668. DRM_ERROR("UBWC format not supported for fmt: %4.4s\n",
  669. (char *)&fmt->base.pixel_format);
  670. return -EINVAL;
  671. }
  672. if (SDE_FORMAT_IS_YUV(layout->format)) {
  673. uint32_t y_sclines, uv_sclines;
  674. uint32_t y_meta_scanlines = 0;
  675. uint32_t uv_meta_scanlines = 0;
  676. layout->num_planes = 2;
  677. layout->plane_pitch[0] = MMM_COLOR_FMT_Y_STRIDE(color, width);
  678. y_sclines = MMM_COLOR_FMT_Y_SCANLINES(color, height);
  679. layout->plane_size[0] =
  680. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[0] *
  681. y_sclines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  682. layout->plane_pitch[1] = MMM_COLOR_FMT_UV_STRIDE(color, width);
  683. uv_sclines = MMM_COLOR_FMT_UV_SCANLINES(color, height);
  684. layout->plane_size[1] =
  685. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[1] *
  686. uv_sclines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  687. if (!meta)
  688. goto done;
  689. layout->num_planes += 2;
  690. layout->plane_pitch[2] =
  691. MMM_COLOR_FMT_Y_META_STRIDE(color, width);
  692. y_meta_scanlines =
  693. MMM_COLOR_FMT_Y_META_SCANLINES(color, height);
  694. layout->plane_size[2] =
  695. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[2] *
  696. y_meta_scanlines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  697. layout->plane_pitch[3] =
  698. MMM_COLOR_FMT_UV_META_STRIDE(color, width);
  699. uv_meta_scanlines =
  700. MMM_COLOR_FMT_UV_META_SCANLINES(color, height);
  701. layout->plane_size[3] =
  702. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[3] *
  703. uv_meta_scanlines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  704. } else {
  705. uint32_t rgb_scanlines, rgb_meta_scanlines;
  706. layout->num_planes = 1;
  707. layout->plane_pitch[0] =
  708. MMM_COLOR_FMT_RGB_STRIDE(color, width);
  709. rgb_scanlines = MMM_COLOR_FMT_RGB_SCANLINES(color, height);
  710. layout->plane_size[0] =
  711. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[0] *
  712. rgb_scanlines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  713. if (!meta)
  714. goto done;
  715. layout->num_planes += 2;
  716. layout->plane_pitch[2] =
  717. MMM_COLOR_FMT_RGB_META_STRIDE(color, width);
  718. rgb_meta_scanlines =
  719. MMM_COLOR_FMT_RGB_META_SCANLINES(color, height);
  720. layout->plane_size[2] =
  721. MMM_COLOR_FMT_ALIGN(layout->plane_pitch[2] *
  722. rgb_meta_scanlines, SDE_UBWC_PLANE_SIZE_ALIGNMENT);
  723. }
  724. done:
  725. for (i = 0; i < SDE_MAX_PLANES; i++)
  726. layout->total_size += layout->plane_size[i];
  727. return 0;
  728. }
  729. static int _sde_format_get_plane_sizes_linear(
  730. const struct sde_format *fmt,
  731. const uint32_t width,
  732. const uint32_t height,
  733. struct sde_hw_fmt_layout *layout,
  734. const uint32_t *pitches)
  735. {
  736. int i;
  737. memset(layout, 0, sizeof(struct sde_hw_fmt_layout));
  738. layout->format = fmt;
  739. layout->width = width;
  740. layout->height = height;
  741. layout->num_planes = fmt->num_planes;
  742. /* Due to memset above, only need to set planes of interest */
  743. if (fmt->fetch_planes == SDE_PLANE_INTERLEAVED) {
  744. layout->num_planes = 1;
  745. layout->plane_size[0] = width * height * layout->format->bpp;
  746. layout->plane_pitch[0] = width * layout->format->bpp;
  747. } else {
  748. uint32_t v_subsample, h_subsample;
  749. uint32_t chroma_samp;
  750. uint32_t bpp = 1;
  751. chroma_samp = fmt->chroma_sample;
  752. _sde_get_v_h_subsample_rate(chroma_samp, &v_subsample,
  753. &h_subsample);
  754. if (width % h_subsample || height % v_subsample) {
  755. DRM_ERROR("mismatch in subsample vs dimensions\n");
  756. return -EINVAL;
  757. }
  758. if ((fmt->base.pixel_format == DRM_FORMAT_NV12) &&
  759. (SDE_FORMAT_IS_DX(fmt)))
  760. bpp = 2;
  761. layout->plane_pitch[0] = width * bpp;
  762. layout->plane_pitch[1] = layout->plane_pitch[0] / h_subsample;
  763. layout->plane_size[0] = layout->plane_pitch[0] * height;
  764. layout->plane_size[1] = layout->plane_pitch[1] *
  765. (height / v_subsample);
  766. if (fmt->fetch_planes == SDE_PLANE_PSEUDO_PLANAR) {
  767. layout->num_planes = 2;
  768. layout->plane_size[1] *= 2;
  769. layout->plane_pitch[1] *= 2;
  770. } else {
  771. /* planar */
  772. layout->num_planes = 3;
  773. layout->plane_size[2] = layout->plane_size[1];
  774. layout->plane_pitch[2] = layout->plane_pitch[1];
  775. }
  776. }
  777. /*
  778. * linear format: allow user allocated pitches if they are greater than
  779. * the requirement.
  780. * ubwc format: pitch values are computed uniformly across
  781. * all the components based on ubwc specifications.
  782. */
  783. for (i = 0; i < layout->num_planes && i < SDE_MAX_PLANES; ++i) {
  784. if (pitches && layout->plane_pitch[i] < pitches[i])
  785. layout->plane_pitch[i] = pitches[i];
  786. }
  787. for (i = 0; i < SDE_MAX_PLANES; i++)
  788. layout->total_size += layout->plane_size[i];
  789. return 0;
  790. }
  791. int sde_format_get_plane_sizes(
  792. const struct sde_format *fmt,
  793. const uint32_t w,
  794. const uint32_t h,
  795. struct sde_hw_fmt_layout *layout,
  796. const uint32_t *pitches)
  797. {
  798. if (!layout || !fmt) {
  799. DRM_ERROR("invalid pointer\n");
  800. return -EINVAL;
  801. }
  802. if ((w > SDE_MAX_IMG_WIDTH) || (h > SDE_MAX_IMG_HEIGHT)) {
  803. DRM_ERROR("image dimensions outside max range\n");
  804. return -ERANGE;
  805. }
  806. if (SDE_FORMAT_IS_UBWC(fmt) || SDE_FORMAT_IS_TILE(fmt))
  807. return _sde_format_get_plane_sizes_ubwc(fmt, w, h, layout);
  808. return _sde_format_get_plane_sizes_linear(fmt, w, h, layout, pitches);
  809. }
  810. uint32_t sde_format_get_framebuffer_size(
  811. const uint32_t format,
  812. const uint32_t width,
  813. const uint32_t height,
  814. const uint32_t *pitches,
  815. const uint64_t modifier)
  816. {
  817. const struct sde_format *fmt;
  818. struct sde_hw_fmt_layout layout;
  819. fmt = sde_get_sde_format_ext(format, modifier);
  820. if (!fmt)
  821. return 0;
  822. if (!pitches)
  823. return -EINVAL;
  824. if (sde_format_get_plane_sizes(fmt, width, height, &layout, pitches))
  825. layout.total_size = 0;
  826. return layout.total_size;
  827. }
  828. static int _sde_format_populate_addrs_ubwc(
  829. struct msm_gem_address_space *aspace,
  830. struct drm_framebuffer *fb,
  831. struct sde_hw_fmt_layout *layout)
  832. {
  833. uint32_t base_addr;
  834. bool meta;
  835. if (!fb || !layout) {
  836. DRM_ERROR("invalid pointers\n");
  837. return -EINVAL;
  838. }
  839. if (aspace)
  840. base_addr = msm_framebuffer_iova(fb, aspace, 0);
  841. else
  842. base_addr = msm_framebuffer_phys(fb, 0);
  843. if (!base_addr) {
  844. DRM_ERROR("failed to retrieve base addr\n");
  845. return -EFAULT;
  846. }
  847. meta = SDE_FORMAT_IS_UBWC(layout->format);
  848. /* Per-format logic for verifying active planes */
  849. if (SDE_FORMAT_IS_YUV(layout->format)) {
  850. /************************************************/
  851. /* UBWC ** */
  852. /* buffer ** SDE PLANE */
  853. /* format ** */
  854. /************************************************/
  855. /* ------------------- ** -------------------- */
  856. /* | Y meta | ** | Y bitstream | */
  857. /* | data | ** | plane | */
  858. /* ------------------- ** -------------------- */
  859. /* | Y bitstream | ** | CbCr bitstream | */
  860. /* | data | ** | plane | */
  861. /* ------------------- ** -------------------- */
  862. /* | Cbcr metadata | ** | Y meta | */
  863. /* | data | ** | plane | */
  864. /* ------------------- ** -------------------- */
  865. /* | CbCr bitstream | ** | CbCr meta | */
  866. /* | data | ** | plane | */
  867. /* ------------------- ** -------------------- */
  868. /************************************************/
  869. /* configure Y bitstream plane */
  870. layout->plane_addr[0] = base_addr + layout->plane_size[2];
  871. /* configure CbCr bitstream plane */
  872. layout->plane_addr[1] = base_addr + layout->plane_size[0]
  873. + layout->plane_size[2] + layout->plane_size[3];
  874. if (!meta)
  875. goto done;
  876. /* configure Y metadata plane */
  877. layout->plane_addr[2] = base_addr;
  878. /* configure CbCr metadata plane */
  879. layout->plane_addr[3] = base_addr + layout->plane_size[0]
  880. + layout->plane_size[2];
  881. } else {
  882. /************************************************/
  883. /* UBWC ** */
  884. /* buffer ** SDE PLANE */
  885. /* format ** */
  886. /************************************************/
  887. /* ------------------- ** -------------------- */
  888. /* | RGB meta | ** | RGB bitstream | */
  889. /* | data | ** | plane | */
  890. /* ------------------- ** -------------------- */
  891. /* | RGB bitstream | ** | NONE | */
  892. /* | data | ** | | */
  893. /* ------------------- ** -------------------- */
  894. /* ** | RGB meta | */
  895. /* ** | plane | */
  896. /* ** -------------------- */
  897. /************************************************/
  898. layout->plane_addr[0] = base_addr + layout->plane_size[2];
  899. layout->plane_addr[1] = 0;
  900. if (!meta)
  901. goto done;
  902. layout->plane_addr[2] = base_addr;
  903. layout->plane_addr[3] = 0;
  904. }
  905. done:
  906. return 0;
  907. }
  908. static int _sde_format_populate_addrs_linear(
  909. struct msm_gem_address_space *aspace,
  910. struct drm_framebuffer *fb,
  911. struct sde_hw_fmt_layout *layout)
  912. {
  913. unsigned int i;
  914. /* Can now check the pitches given vs pitches expected */
  915. for (i = 0; i < layout->num_planes; ++i) {
  916. if (layout->plane_pitch[i] > fb->pitches[i]) {
  917. DRM_ERROR("plane %u expected pitch %u, fb %u\n",
  918. i, layout->plane_pitch[i], fb->pitches[i]);
  919. return -EINVAL;
  920. }
  921. }
  922. /* Populate addresses for simple formats here */
  923. for (i = 0; i < layout->num_planes; ++i) {
  924. if (aspace)
  925. layout->plane_addr[i] =
  926. msm_framebuffer_iova(fb, aspace, i);
  927. else
  928. layout->plane_addr[i] = msm_framebuffer_phys(fb, i);
  929. if (!layout->plane_addr[i]) {
  930. DRM_ERROR("failed to retrieve base addr\n");
  931. return -EFAULT;
  932. }
  933. }
  934. return 0;
  935. }
  936. int sde_format_populate_layout(
  937. struct msm_gem_address_space *aspace,
  938. struct drm_framebuffer *fb,
  939. struct sde_hw_fmt_layout *layout)
  940. {
  941. uint32_t plane_addr[SDE_MAX_PLANES];
  942. int i, ret;
  943. if (!fb || !layout) {
  944. DRM_ERROR("invalid arguments\n");
  945. return -EINVAL;
  946. }
  947. if ((fb->width > SDE_MAX_IMG_WIDTH) ||
  948. (fb->height > SDE_MAX_IMG_HEIGHT)) {
  949. DRM_ERROR("image dimensions outside max range\n");
  950. return -ERANGE;
  951. }
  952. layout->format = to_sde_format(msm_framebuffer_format(fb));
  953. /* Populate the plane sizes etc via get_format */
  954. ret = sde_format_get_plane_sizes(layout->format, fb->width, fb->height,
  955. layout, fb->pitches);
  956. if (ret)
  957. return ret;
  958. for (i = 0; i < SDE_MAX_PLANES; ++i)
  959. plane_addr[i] = layout->plane_addr[i];
  960. /* Populate the addresses given the fb */
  961. if (SDE_FORMAT_IS_UBWC(layout->format) ||
  962. SDE_FORMAT_IS_TILE(layout->format))
  963. ret = _sde_format_populate_addrs_ubwc(aspace, fb, layout);
  964. else
  965. ret = _sde_format_populate_addrs_linear(aspace, fb, layout);
  966. /* check if anything changed */
  967. if (!ret && !memcmp(plane_addr, layout->plane_addr, sizeof(plane_addr)))
  968. ret = -EAGAIN;
  969. return ret;
  970. }
  971. int sde_format_check_modified_format(
  972. const struct msm_kms *kms,
  973. const struct msm_format *msm_fmt,
  974. const struct drm_mode_fb_cmd2 *cmd,
  975. struct drm_gem_object **bos)
  976. {
  977. const struct drm_format_info *info;
  978. const struct sde_format *fmt;
  979. struct sde_hw_fmt_layout layout;
  980. uint32_t bos_total_size = 0;
  981. int ret, i;
  982. if (!msm_fmt || !cmd || !bos) {
  983. DRM_ERROR("invalid arguments\n");
  984. return -EINVAL;
  985. }
  986. fmt = to_sde_format(msm_fmt);
  987. info = drm_format_info(fmt->base.pixel_format);
  988. if (!info)
  989. return -EINVAL;
  990. ret = sde_format_get_plane_sizes(fmt, cmd->width, cmd->height,
  991. &layout, cmd->pitches);
  992. if (ret)
  993. return ret;
  994. for (i = 0; i < info->num_planes; i++) {
  995. if (!bos[i]) {
  996. DRM_ERROR("invalid handle for plane %d\n", i);
  997. return -EINVAL;
  998. }
  999. if ((i == 0) || (bos[i] != bos[0]))
  1000. bos_total_size += bos[i]->size;
  1001. }
  1002. if (bos_total_size < layout.total_size) {
  1003. DRM_ERROR("buffers total size too small %u expected %u\n",
  1004. bos_total_size, layout.total_size);
  1005. return -EINVAL;
  1006. }
  1007. return 0;
  1008. }
  1009. const struct sde_format *sde_get_sde_format_ext(
  1010. const uint32_t format,
  1011. const uint64_t modifier)
  1012. {
  1013. uint32_t i = 0;
  1014. const struct sde_format *fmt = NULL;
  1015. const struct sde_format *map = NULL;
  1016. ssize_t map_size = 0;
  1017. /*
  1018. * Currently only support exactly zero or one modifier.
  1019. * All planes use the same modifier.
  1020. */
  1021. SDE_DEBUG("plane format modifier 0x%llX\n", modifier);
  1022. switch (modifier) {
  1023. case 0:
  1024. map = sde_format_map;
  1025. map_size = ARRAY_SIZE(sde_format_map);
  1026. break;
  1027. case DRM_FORMAT_MOD_QCOM_ALPHA_SWAP:
  1028. map = sde_format_map_alpha_swap;
  1029. map_size = ARRAY_SIZE(sde_format_map_alpha_swap);
  1030. break;
  1031. case DRM_FORMAT_MOD_QCOM_COMPRESSED:
  1032. case DRM_FORMAT_MOD_QCOM_COMPRESSED | DRM_FORMAT_MOD_QCOM_TILE:
  1033. map = sde_format_map_ubwc;
  1034. map_size = ARRAY_SIZE(sde_format_map_ubwc);
  1035. SDE_DEBUG("found fmt: %4.4s DRM_FORMAT_MOD_QCOM_COMPRESSED\n",
  1036. (char *)&format);
  1037. break;
  1038. case DRM_FORMAT_MOD_QCOM_DX:
  1039. map = sde_format_map_p010;
  1040. map_size = ARRAY_SIZE(sde_format_map_p010);
  1041. SDE_DEBUG("found fmt: %4.4s DRM_FORMAT_MOD_QCOM_DX\n",
  1042. (char *)&format);
  1043. break;
  1044. case (DRM_FORMAT_MOD_QCOM_DX | DRM_FORMAT_MOD_QCOM_COMPRESSED):
  1045. case (DRM_FORMAT_MOD_QCOM_DX | DRM_FORMAT_MOD_QCOM_COMPRESSED |
  1046. DRM_FORMAT_MOD_QCOM_TILE):
  1047. map = sde_format_map_p010_ubwc;
  1048. map_size = ARRAY_SIZE(sde_format_map_p010_ubwc);
  1049. SDE_DEBUG(
  1050. "found fmt: %4.4s DRM_FORMAT_MOD_QCOM_COMPRESSED/DX\n",
  1051. (char *)&format);
  1052. break;
  1053. case (DRM_FORMAT_MOD_QCOM_DX | DRM_FORMAT_MOD_QCOM_COMPRESSED |
  1054. DRM_FORMAT_MOD_QCOM_TIGHT):
  1055. case (DRM_FORMAT_MOD_QCOM_DX | DRM_FORMAT_MOD_QCOM_COMPRESSED |
  1056. DRM_FORMAT_MOD_QCOM_TIGHT | DRM_FORMAT_MOD_QCOM_TILE):
  1057. map = sde_format_map_tp10_ubwc;
  1058. map_size = ARRAY_SIZE(sde_format_map_tp10_ubwc);
  1059. SDE_DEBUG(
  1060. "found fmt: %4.4s DRM_FORMAT_MOD_QCOM_COMPRESSED/DX/TIGHT\n",
  1061. (char *)&format);
  1062. break;
  1063. case DRM_FORMAT_MOD_QCOM_TILE:
  1064. map = sde_format_map_tile;
  1065. map_size = ARRAY_SIZE(sde_format_map_tile);
  1066. SDE_DEBUG("found fmt: %4.4s DRM_FORMAT_MOD_QCOM_TILE\n",
  1067. (char *)&format);
  1068. break;
  1069. case (DRM_FORMAT_MOD_QCOM_TILE | DRM_FORMAT_MOD_QCOM_DX):
  1070. map = sde_format_map_p010_tile;
  1071. map_size = ARRAY_SIZE(sde_format_map_p010_tile);
  1072. SDE_DEBUG("found fmt: %4.4s DRM_FORMAT_MOD_QCOM_TILE/DX\n",
  1073. (char *)&format);
  1074. break;
  1075. case (DRM_FORMAT_MOD_QCOM_TILE | DRM_FORMAT_MOD_QCOM_DX |
  1076. DRM_FORMAT_MOD_QCOM_TIGHT):
  1077. map = sde_format_map_tp10_tile;
  1078. map_size = ARRAY_SIZE(sde_format_map_tp10_tile);
  1079. SDE_DEBUG(
  1080. "found fmt: %4.4s DRM_FORMAT_MOD_QCOM_TILE/DX/TIGHT\n",
  1081. (char *)&format);
  1082. break;
  1083. default:
  1084. SDE_ERROR("unsupported format modifier %llX\n", modifier);
  1085. return NULL;
  1086. }
  1087. for (i = 0; i < map_size; i++) {
  1088. if (format == map[i].base.pixel_format) {
  1089. fmt = &map[i];
  1090. break;
  1091. }
  1092. }
  1093. if (fmt == NULL)
  1094. SDE_ERROR("unsupported fmt: %4.4s modifier 0x%llX\n",
  1095. (char *)&format, modifier);
  1096. else
  1097. SDE_DEBUG("fmt %4.4s mod 0x%llX ubwc %d yuv %d\n",
  1098. (char *)&format, modifier,
  1099. SDE_FORMAT_IS_UBWC(fmt),
  1100. SDE_FORMAT_IS_YUV(fmt));
  1101. return fmt;
  1102. }
  1103. const struct msm_format *sde_get_msm_format(
  1104. struct msm_kms *kms,
  1105. const uint32_t format,
  1106. const uint64_t modifier)
  1107. {
  1108. const struct sde_format *fmt = sde_get_sde_format_ext(format,
  1109. modifier);
  1110. if (fmt)
  1111. return &fmt->base;
  1112. return NULL;
  1113. }
  1114. uint32_t sde_populate_formats(
  1115. const struct sde_format_extended *format_list,
  1116. uint32_t *pixel_formats,
  1117. uint64_t *pixel_modifiers,
  1118. uint32_t pixel_formats_max)
  1119. {
  1120. uint32_t i, fourcc_format;
  1121. if (!format_list || !pixel_formats)
  1122. return 0;
  1123. for (i = 0, fourcc_format = 0;
  1124. format_list->fourcc_format && i < pixel_formats_max;
  1125. ++format_list) {
  1126. /* verify if listed format is in sde_format_map? */
  1127. /* optionally return modified formats */
  1128. if (pixel_modifiers) {
  1129. /* assume same modifier for all fb planes */
  1130. pixel_formats[i] = format_list->fourcc_format;
  1131. pixel_modifiers[i++] = format_list->modifier;
  1132. } else {
  1133. /* assume base formats grouped together */
  1134. if (fourcc_format != format_list->fourcc_format) {
  1135. fourcc_format = format_list->fourcc_format;
  1136. pixel_formats[i++] = fourcc_format;
  1137. }
  1138. }
  1139. }
  1140. return i;
  1141. }
  1142. int sde_format_validate_fmt(struct msm_kms *kms,
  1143. const struct sde_format *sde_fmt,
  1144. const struct sde_format_extended *fmt_list)
  1145. {
  1146. const struct sde_format *fmt_tmp;
  1147. bool valid_format = false;
  1148. int ret = 0;
  1149. if (!sde_fmt || !fmt_list) {
  1150. SDE_ERROR("invalid fmt:%d list:%d\n",
  1151. !sde_fmt, !fmt_list);
  1152. ret = -EINVAL;
  1153. goto exit;
  1154. }
  1155. while (fmt_list->fourcc_format) {
  1156. fmt_tmp = sde_get_sde_format_ext(fmt_list->fourcc_format,
  1157. fmt_list->modifier);
  1158. if (fmt_tmp &&
  1159. (fmt_tmp->base.pixel_format == sde_fmt->base.pixel_format) &&
  1160. (fmt_tmp->fetch_mode == sde_fmt->fetch_mode) &&
  1161. (bitmap_equal(fmt_tmp->flag, sde_fmt->flag, SDE_FORMAT_FLAG_BIT_MAX)) &&
  1162. (fmt_tmp->unpack_tight == sde_fmt->unpack_tight)) {
  1163. valid_format = true;
  1164. break;
  1165. }
  1166. ++fmt_list;
  1167. }
  1168. if (!valid_format)
  1169. ret = -EINVAL;
  1170. exit:
  1171. return ret;
  1172. }