ddp_ovl.c 52 KB

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  1. /* Copyright Statement:
  2. *
  3. * This software/firmware and related documentation ("MediaTek Software") are
  4. * protected under relevant copyright laws. The information contained herein
  5. * is confidential and proprietary to MediaTek Inc. and/or its licensors.
  6. * Without the prior written permission of MediaTek inc. and/or its licensors,
  7. * any reproduction, modification, use or disclosure of MediaTek Software,
  8. * and information contained herein, in whole or in part, shall be strictly prohibited.
  9. */
  10. /* MediaTek Inc. (C) 2015. All rights reserved.
  11. *
  12. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  13. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  14. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
  15. * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
  16. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
  17. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
  18. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
  19. * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
  20. * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
  21. * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
  22. * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
  23. * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
  24. * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  25. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
  26. * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
  27. * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
  28. * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
  29. * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  30. */
  31. #define LOG_TAG "OVL"
  32. #include "platform/ddp_reg.h"
  33. #include "platform/ddp_matrix_para.h"
  34. #include "platform/ddp_info.h"
  35. #include "platform/ddp_log.h"
  36. #include "platform/ddp_ovl.h"
  37. #include "platform/disp_drv_platform.h"
  38. #include "platform/mt_gpt.h"
  39. #define OVL_REG_BACK_MAX (40)
  40. #define OVL_LAYER_OFFSET (0x20)
  41. #define OVL_RDMA_DEBUG_OFFSET (0x4)
  42. enum OVL_COLOR_SPACE {
  43. OVL_COLOR_SPACE_RGB = 0,
  44. OVL_COLOR_SPACE_YUV,
  45. };
  46. enum OVL_INPUT_FORMAT {
  47. OVL_INPUT_FORMAT_BGR565 = 0,
  48. OVL_INPUT_FORMAT_RGB888 = 1,
  49. OVL_INPUT_FORMAT_RGBA8888 = 2,
  50. OVL_INPUT_FORMAT_ARGB8888 = 3,
  51. OVL_INPUT_FORMAT_VYUY = 4,
  52. OVL_INPUT_FORMAT_YVYU = 5,
  53. OVL_INPUT_FORMAT_RGB565 = 6,
  54. OVL_INPUT_FORMAT_BGR888 = 7,
  55. OVL_INPUT_FORMAT_BGRA8888 = 8,
  56. OVL_INPUT_FORMAT_ABGR8888 = 9,
  57. OVL_INPUT_FORMAT_UYVY = 10,
  58. OVL_INPUT_FORMAT_YUYV = 11,
  59. OVL_INPUT_FORMAT_RGBA4444 = 12,
  60. OVL_INPUT_FORMAT_BGRA4444 = 13,
  61. OVL_INPUT_FORMAT_UNKNOWN = 32,
  62. };
  63. typedef struct {
  64. unsigned int address;
  65. unsigned int value;
  66. } OVL_REG;
  67. static int reg_back_cnt[OVL_NUM];
  68. static OVL_REG reg_back[OVL_NUM][OVL_REG_BACK_MAX];
  69. static enum OVL_INPUT_FORMAT ovl_input_fmt_convert(DpColorFormat fmt);
  70. static unsigned int ovl_input_fmt_byte_swap(enum OVL_INPUT_FORMAT inputFormat);
  71. static unsigned int ovl_input_fmt_bpp(enum OVL_INPUT_FORMAT inputFormat);
  72. static enum OVL_COLOR_SPACE ovl_input_fmt_color_space(enum OVL_INPUT_FORMAT inputFormat);
  73. static unsigned int ovl_input_fmt_reg_value(enum OVL_INPUT_FORMAT inputFormat);
  74. static void ovl_store_regs(int idx);
  75. static void ovl_restore_regs(int idx,void * handle);
  76. static enum OVL_INPUT_FORMAT ovl_input_fmt_convert(DpColorFormat fmt)
  77. {
  78. enum OVL_INPUT_FORMAT ovl_fmt = OVL_INPUT_FORMAT_UNKNOWN;
  79. switch (fmt) {
  80. case eBGR565:
  81. ovl_fmt = OVL_INPUT_FORMAT_BGR565;
  82. break;
  83. case eRGB565:
  84. ovl_fmt = OVL_INPUT_FORMAT_RGB565;
  85. break;
  86. case eRGB888:
  87. ovl_fmt = OVL_INPUT_FORMAT_RGB888;
  88. break;
  89. case eBGR888:
  90. ovl_fmt = OVL_INPUT_FORMAT_BGR888;
  91. break;
  92. case eRGBA4444:
  93. ovl_fmt = OVL_INPUT_FORMAT_RGBA4444;
  94. break;
  95. case eBGRA4444:
  96. ovl_fmt = OVL_INPUT_FORMAT_BGRA4444;
  97. break;
  98. case eRGBA8888:
  99. ovl_fmt = OVL_INPUT_FORMAT_RGBA8888;
  100. break;
  101. case eBGRA8888:
  102. ovl_fmt = OVL_INPUT_FORMAT_BGRA8888;
  103. break;
  104. case eARGB8888:
  105. ovl_fmt = OVL_INPUT_FORMAT_ARGB8888;
  106. break;
  107. case eABGR8888:
  108. ovl_fmt = OVL_INPUT_FORMAT_ABGR8888;
  109. break;
  110. case eVYUY:
  111. ovl_fmt = OVL_INPUT_FORMAT_VYUY;
  112. break;
  113. case eYVYU:
  114. ovl_fmt = OVL_INPUT_FORMAT_YVYU;
  115. break;
  116. case eUYVY:
  117. ovl_fmt = OVL_INPUT_FORMAT_UYVY;
  118. break;
  119. case eYUY2:
  120. ovl_fmt = OVL_INPUT_FORMAT_YUYV;
  121. break;
  122. default:
  123. DDPERR("ovl_fmt_convert fmt=%d, ovl_fmt=%d\n", fmt, ovl_fmt);
  124. break;
  125. }
  126. return ovl_fmt;
  127. }
  128. unsigned long ovl_base_addr(DISP_MODULE_ENUM module)
  129. {
  130. switch (module) {
  131. case DISP_MODULE_OVL0:
  132. return DISPSYS_OVL0_BASE;
  133. case DISP_MODULE_OVL0_2L:
  134. return DISPSYS_OVL0_2L_BASE;
  135. default:
  136. return 0;
  137. }
  138. }
  139. unsigned long mmsys_ovl_ultra_offset(DISP_MODULE_ENUM module)
  140. {
  141. switch (module) {
  142. case DISP_MODULE_OVL0:
  143. return FLD_OVL0_ULTRA_SEL;
  144. case DISP_MODULE_OVL0_2L:
  145. return FLD_OVL0_2L_ULTRA_SEL;
  146. case DISP_MODULE_OVL2_2L:
  147. return FLD_OVL2_2L_ULTRA_SEL;
  148. default:
  149. return 0;
  150. }
  151. return 0;
  152. }
  153. static DpColorFormat ovl_input_fmt(enum OVL_INPUT_FORMAT fmt, int swap)
  154. {
  155. switch (fmt) {
  156. case OVL_INPUT_FORMAT_BGR565:
  157. return swap ? eBGR565 : eRGB565;
  158. case OVL_INPUT_FORMAT_RGB888:
  159. return swap ? eRGB888 : eBGR888;
  160. case OVL_INPUT_FORMAT_RGBA8888:
  161. return swap ? eRGBA8888 : eBGRA8888;
  162. case OVL_INPUT_FORMAT_ARGB8888:
  163. return swap ? eARGB8888 : eABGR8888;
  164. case OVL_INPUT_FORMAT_VYUY:
  165. return swap ? eVYUY : eUYVY;
  166. case OVL_INPUT_FORMAT_YVYU:
  167. return swap ? eYVYU : eYUY2;
  168. case OVL_INPUT_FORMAT_RGBA4444:
  169. return swap ? eRGBA4444 : eBGRA4444;
  170. default:
  171. DDPERR("ovl_input_fmt fmt=%d, swap=%d\n", fmt, swap);
  172. break;
  173. }
  174. return eRGB888;
  175. }
  176. static char *ovl_intput_format_name(enum OVL_INPUT_FORMAT fmt, int swap)
  177. {
  178. switch (fmt) {
  179. case OVL_INPUT_FORMAT_BGR565:
  180. return swap ? "eBGR565" : "eRGB565";
  181. case OVL_INPUT_FORMAT_RGB565:
  182. return "eRGB565";
  183. case OVL_INPUT_FORMAT_RGB888:
  184. return swap ? "eRGB888" : "eBGR888";
  185. case OVL_INPUT_FORMAT_BGR888:
  186. return "eBGR888";
  187. case OVL_INPUT_FORMAT_RGBA8888:
  188. return swap ? "eRGBA8888" : "eBGRA8888";
  189. case OVL_INPUT_FORMAT_BGRA8888:
  190. return "eBGRA8888";
  191. case OVL_INPUT_FORMAT_ARGB8888:
  192. return swap ? "eARGB8888" : "eABGR8888";
  193. case OVL_INPUT_FORMAT_ABGR8888:
  194. return "eABGR8888";
  195. case OVL_INPUT_FORMAT_VYUY:
  196. return swap ? "eVYUY" : "eUYVY";
  197. case OVL_INPUT_FORMAT_UYVY:
  198. return "eUYVY";
  199. case OVL_INPUT_FORMAT_YVYU:
  200. return swap ? "eYVYU" : "eYUY2";
  201. case OVL_INPUT_FORMAT_YUYV:
  202. return "eYUY2";
  203. case OVL_INPUT_FORMAT_RGBA4444:
  204. return swap ? "eRGBA4444" : "eBGRA4444";
  205. default:
  206. DDPERR("ovl_intput_fmt unknow fmt=%d, swap=%d\n", fmt, swap);
  207. break;
  208. }
  209. return "unknow";
  210. }
  211. static unsigned int ovl_index(DISP_MODULE_ENUM module)
  212. {
  213. int idx = 0;
  214. switch (module) {
  215. case DISP_MODULE_OVL0:
  216. idx = 0;
  217. break;
  218. case DISP_MODULE_OVL0_2L:
  219. idx = 1;
  220. break;
  221. default:
  222. DDPERR("invalid module=%d \n", module);// invalid module
  223. ASSERT(0);
  224. }
  225. return idx;
  226. }
  227. int OVLStart(DISP_MODULE_ENUM module, void *handle)
  228. {
  229. int idx = ovl_index(module);
  230. DISP_REG_SET_FIELD(handle, EN_FLD_OVL_EN, idx*DISP_INDEX_OFFSET + DISP_REG_OVL_EN, 0x1);
  231. DISP_REG_SET(handle, idx*DISP_INDEX_OFFSET + DISP_REG_OVL_INTEN,
  232. 0x1E | REG_FLD_VAL(INTEN_FLD_ABNORMAL_SOF, 1));
  233. DISP_REG_SET_FIELD(handle, FLD_RDMA_BURST_CON1_BURST16_EN,
  234. idx * DISP_INDEX_OFFSET +
  235. DISP_REG_OVL_RDMA_BURST_CON1, 1);
  236. DISP_REG_SET_FIELD(handle, DATAPATH_CON_FLD_LAYER_SMI_ID_EN,
  237. idx * DISP_INDEX_OFFSET +
  238. DISP_REG_OVL_DATAPATH_CON, 1);
  239. DISP_REG_SET_FIELD(handle, DATAPATH_CON_FLD_GCLAST_EN,
  240. idx * DISP_INDEX_OFFSET +
  241. DISP_REG_OVL_DATAPATH_CON, 1);
  242. DISP_REG_SET_FIELD(handle, DATAPATH_CON_FLD_OUTPUT_CLAMP,
  243. idx * DISP_INDEX_OFFSET +
  244. DISP_REG_OVL_DATAPATH_CON, 1);
  245. /* DISP_REG_SET_FIELD(handle, FLD_FBDC_8XE_MODE,
  246. idx * DISP_INDEX_OFFSET +
  247. DISP_REG_OVL_FBDC_CFG1, 1);
  248. */
  249. #if 0
  250. dprintf(CRITICAL, "ovl start done idx = %d, addr = 0x%x\n", idx, idx*DISP_INDEX_OFFSET + DISP_REG_OVL_EN);
  251. dprintf(CRITICAL, "ovl start done addr0 = 0x%x\n", DISP_INDEX_OFFSET);
  252. dprintf(CRITICAL, "ovl start done addr1 = 0x%x\n", idx*DISP_INDEX_OFFSET);
  253. dprintf(CRITICAL, "ovl start done addr2 = 0x%x\n", DISP_REG_OVL_EN);
  254. dprintf(CRITICAL, "ovl start done addr3 = 0x%x\n", (idx*DISP_INDEX_OFFSET) + DISP_REG_OVL_EN);
  255. dprintf(CRITICAL, "ovl start done addr4 = 0x%x\n", idx*DISP_INDEX_OFFSET+DISP_REG_OVL_EN);
  256. #endif
  257. return 0;
  258. }
  259. int OVLStop(DISP_MODULE_ENUM module, void *handle)
  260. {
  261. int idx = ovl_index(module);
  262. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_INTEN, 0x00);
  263. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_EN, 0x00);
  264. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_INTSTA, 0x00);
  265. return 0;
  266. }
  267. int OVLReset(DISP_MODULE_ENUM module, void *handle)
  268. {
  269. #define OVL_IDLE (0x3)
  270. unsigned int delay_cnt = 0;
  271. int idx = ovl_index(module);
  272. /*always use cpu do reset*/
  273. DISP_CPU_REG_SET(idx*DISP_INDEX_OFFSET+DISP_REG_OVL_RST, 0x1); // soft reset
  274. DISP_CPU_REG_SET(idx*DISP_INDEX_OFFSET+DISP_REG_OVL_RST, 0x0);
  275. while (!(DISP_REG_GET(idx*DISP_INDEX_OFFSET+DISP_REG_OVL_FLOW_CTRL_DBG) & OVL_IDLE)) {
  276. delay_cnt++;
  277. udelay(10);
  278. if (delay_cnt>2000) {
  279. DDPERR("OVL%dReset() timeout! \n",idx);
  280. break;
  281. }
  282. }
  283. return 0;
  284. }
  285. int OVLROI(DISP_MODULE_ENUM module,
  286. unsigned int bgW,
  287. unsigned int bgH,
  288. unsigned int bgColor,
  289. void * handle)
  290. {
  291. int idx = ovl_index(module);
  292. if ((bgW > OVL_MAX_WIDTH) || (bgH > OVL_MAX_HEIGHT)) {
  293. DDPERR("OVLROI(), exceed OVL max size, w=%d, h=%d \n", bgW, bgH);
  294. ASSERT(0);
  295. }
  296. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_ROI_SIZE, bgH<<16 | bgW);
  297. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_ROI_BGCLR, bgColor);
  298. return 0;
  299. }
  300. int OVLLayerSwitch(DISP_MODULE_ENUM module,
  301. unsigned layer,
  302. unsigned int en,
  303. void * handle)
  304. {
  305. int idx = ovl_index(module);
  306. unsigned int cur = 0;
  307. unsigned int addr = idx * DISP_INDEX_OFFSET + DISP_REG_OVL_SRC_CON;
  308. ASSERT(layer<=3);
  309. switch (layer) {
  310. case 0:
  311. cur = DISP_REG_GET_FIELD(SRC_CON_FLD_L0_EN, addr);
  312. if (cur != en)
  313. DISP_REG_SET_FIELD(handle,SRC_CON_FLD_L0_EN, addr, en);
  314. break;
  315. case 1:
  316. cur = DISP_REG_GET_FIELD(SRC_CON_FLD_L1_EN, addr);
  317. if (cur != en)
  318. DISP_REG_SET_FIELD(handle,SRC_CON_FLD_L1_EN, addr, en);
  319. break;
  320. case 2:
  321. cur = DISP_REG_GET_FIELD(SRC_CON_FLD_L2_EN, addr);
  322. if (cur != en)
  323. DISP_REG_SET_FIELD(handle,SRC_CON_FLD_L2_EN, addr, en);
  324. break;
  325. case 3:
  326. cur = DISP_REG_GET_FIELD(SRC_CON_FLD_L3_EN, addr);
  327. if (cur != en)
  328. DISP_REG_SET_FIELD(handle,SRC_CON_FLD_L3_EN, addr, en);
  329. break;
  330. default:
  331. DDPERR("invalid layer=%d\n", layer); // invalid layer
  332. ASSERT(0);
  333. }
  334. if (cur != en)
  335. DDPMSG("module:%d OVL layer:%d %s, en:%u cur:%u, addr:0x%x\n",
  336. module, layer, en ? "enable" : "disable", en, cur, addr);
  337. return 0;
  338. }
  339. int OVL3DConfig(DISP_MODULE_ENUM module,
  340. unsigned int layer_id,
  341. unsigned int en_3d,
  342. unsigned int landscape,
  343. unsigned int r_first,
  344. void *handle)
  345. {
  346. return 0;
  347. }
  348. int OVLLayerConfig(DISP_MODULE_ENUM module,
  349. unsigned int layer,
  350. unsigned int source,
  351. DpColorFormat format,
  352. unsigned int addr,
  353. unsigned int src_x, // ROI x offset
  354. unsigned int src_y, // ROI y offset
  355. unsigned int src_pitch,
  356. unsigned int dst_x, // ROI x offset
  357. unsigned int dst_y, // ROI y offset
  358. unsigned int dst_w, // ROT width
  359. unsigned int dst_h, // ROI height
  360. unsigned int keyEn,
  361. unsigned int key, // color key
  362. unsigned int aen, // alpha enable
  363. unsigned char alpha,
  364. void * handle)
  365. {
  366. int idx = ovl_index(module);
  367. unsigned int value = 0;
  368. enum OVL_INPUT_FORMAT fmt = ovl_input_fmt_convert(format);
  369. unsigned int bpp = ovl_input_fmt_bpp(fmt);
  370. unsigned int input_swap = ovl_input_fmt_byte_swap(fmt);
  371. unsigned int input_fmt = ovl_input_fmt_reg_value(fmt);
  372. enum OVL_COLOR_SPACE space = ovl_input_fmt_color_space(fmt);
  373. unsigned int offset = 0;
  374. /*0100 MTX_JPEG_TO_RGB (YUV FUll TO RGB)*/
  375. int color_matrix = 0x4;
  376. unsigned int idx_offset = idx*DISP_INDEX_OFFSET;
  377. unsigned int layer_offset = idx_offset + layer * 0x20;
  378. #ifdef MTK_LCM_PHYSICAL_ROTATION_HW
  379. unsigned int bg_h, bg_w;
  380. #endif
  381. ASSERT((dst_w <= OVL_MAX_WIDTH) &&
  382. (dst_h <= OVL_MAX_HEIGHT) &&
  383. (layer <= 3));
  384. if (addr == 0) {
  385. DDPERR("source from memory, but addr is 0!\n");
  386. ASSERT(0);
  387. }
  388. DDPDBG("ovl%d, layer=%d, source=%s, off(x=%d, y=%d), dst(%d, %d, %d, %d),pitch=%d,"
  389. "fmt=%s, addr=%x, keyEn=%d, key=%d, aen=%d, alpha=%d \n",
  390. idx,
  391. layer,
  392. (source==0)?"memory":"constant_color",
  393. src_x,
  394. src_y,
  395. dst_x,
  396. dst_y,
  397. dst_w,
  398. dst_h,
  399. src_pitch,
  400. ovl_intput_format_name(fmt, input_swap),
  401. addr,
  402. keyEn,
  403. key,
  404. aen,
  405. alpha);
  406. if (source==OVL_LAYER_SOURCE_RESERVED) { //==1, means constant color
  407. if (aen==0) {
  408. DDPERR("dim layer ahpha enable should be 1!\n");
  409. }
  410. if (fmt!=OVL_INPUT_FORMAT_RGB565) {
  411. DDPERR("dim layer format should be RGB565");
  412. fmt = OVL_INPUT_FORMAT_RGB565;
  413. }
  414. }
  415. DISP_REG_SET(handle, DISP_REG_OVL_RDMA0_CTRL+layer_offset, 0x1);
  416. value = (REG_FLD_VAL((L_CON_FLD_LARC), (source)) |
  417. REG_FLD_VAL((L_CON_FLD_CFMT), (input_fmt)) |
  418. REG_FLD_VAL((L_CON_FLD_AEN), (aen)) |
  419. REG_FLD_VAL((L_CON_FLD_APHA), (alpha)) |
  420. REG_FLD_VAL((L_CON_FLD_SKEN), (keyEn)) |
  421. REG_FLD_VAL((L_CON_FLD_BTSW), (input_swap)));
  422. if (fmt == OVL_INPUT_FORMAT_RGBA4444)
  423. value |= REG_FLD_VAL((L_CON_FLD_CLRFMT_MAN), (1));
  424. if (space == OVL_COLOR_SPACE_YUV)
  425. value = value | REG_FLD_VAL((L_CON_FLD_MTX), (color_matrix));
  426. #ifdef MTK_LCM_PHYSICAL_ROTATION_HW
  427. value |= (REG_FLD_VAL((L_CON_FLD_VIRTICAL_FLIP), 1) |
  428. REG_FLD_VAL((L_CON_FLD_HORI_FLIP), 1));
  429. #endif
  430. DISP_REG_SET(handle, DISP_REG_OVL_L0_CON+layer_offset, value);
  431. #ifdef MTK_LCM_PHYSICAL_ROTATION_HW
  432. bg_h = DISP_REG_GET(idx_offset + DISP_REG_OVL_ROI_SIZE);
  433. bg_w = bg_h & 0xFFFF;
  434. bg_h = bg_h >> 16;
  435. DISP_REG_SET(handle, DISP_REG_OVL_L0_OFFSET+layer_offset,
  436. (bg_h-dst_h-dst_y)<<16 | (bg_w-dst_w-dst_x));
  437. offset = (src_x+dst_w)*bpp + (src_y+dst_h-1)*src_pitch - 1;
  438. #else
  439. DISP_REG_SET(handle, DISP_REG_OVL_L0_OFFSET+layer_offset,
  440. dst_y<<16 | dst_x);
  441. offset = src_x*bpp+src_y*src_pitch;
  442. #endif
  443. DISP_REG_SET(handle, DISP_REG_OVL_L0_ADDR+layer_offset,
  444. addr+offset);
  445. DISP_REG_SET(handle, DISP_REG_OVL_L0_SRC_SIZE+layer_offset,
  446. dst_h<<16 | dst_w);
  447. DISP_REG_SET(handle, DISP_REG_OVL_L0_SRCKEY+layer_offset,
  448. key);
  449. value = REG_FLD_VAL((L_PITCH_FLD_LSP), (src_pitch));
  450. if (fmt == OVL_INPUT_FORMAT_RGBA4444) {
  451. value |= REG_FLD_VAL(L_PITCH_FLD_SRGB_SEL, (1)) |
  452. REG_FLD_VAL(L_PITCH_FLD_DRGB_SEL, (2)) |
  453. REG_FLD_VAL(L_PITCH_FLD_SURFL_EN, (1));
  454. }
  455. DISP_REG_SET(handle, DISP_REG_OVL_L0_PITCH+layer_offset, value);
  456. return 0;
  457. }
  458. static unsigned int ovl_input_fmt_byte_swap(enum OVL_INPUT_FORMAT inputFormat)
  459. {
  460. int input_swap = 0;
  461. switch (inputFormat) {
  462. case OVL_INPUT_FORMAT_BGR565:
  463. case OVL_INPUT_FORMAT_RGB888:
  464. case OVL_INPUT_FORMAT_RGBA8888:
  465. case OVL_INPUT_FORMAT_ARGB8888:
  466. case OVL_INPUT_FORMAT_BGRA4444:
  467. case OVL_INPUT_FORMAT_VYUY:
  468. case OVL_INPUT_FORMAT_YVYU:
  469. input_swap = 1;
  470. break;
  471. case OVL_INPUT_FORMAT_RGB565:
  472. case OVL_INPUT_FORMAT_BGR888:
  473. case OVL_INPUT_FORMAT_BGRA8888:
  474. case OVL_INPUT_FORMAT_ABGR8888:
  475. case OVL_INPUT_FORMAT_RGBA4444:
  476. case OVL_INPUT_FORMAT_UYVY:
  477. case OVL_INPUT_FORMAT_YUYV:
  478. input_swap = 0;
  479. break;
  480. default:
  481. DDPERR("unknow input ovl format is %d\n", inputFormat);
  482. ASSERT(0);
  483. }
  484. return input_swap;
  485. }
  486. static unsigned int ovl_input_fmt_bpp(enum OVL_INPUT_FORMAT inputFormat)
  487. {
  488. int bpp = 0;
  489. switch (inputFormat) {
  490. case OVL_INPUT_FORMAT_BGR565:
  491. case OVL_INPUT_FORMAT_RGB565:
  492. case OVL_INPUT_FORMAT_VYUY:
  493. case OVL_INPUT_FORMAT_UYVY:
  494. case OVL_INPUT_FORMAT_YVYU:
  495. case OVL_INPUT_FORMAT_YUYV:
  496. case OVL_INPUT_FORMAT_RGBA4444:
  497. case OVL_INPUT_FORMAT_BGRA4444:
  498. bpp = 2;
  499. break;
  500. case OVL_INPUT_FORMAT_RGB888:
  501. case OVL_INPUT_FORMAT_BGR888:
  502. bpp = 3;
  503. break;
  504. case OVL_INPUT_FORMAT_RGBA8888:
  505. case OVL_INPUT_FORMAT_BGRA8888:
  506. case OVL_INPUT_FORMAT_ARGB8888:
  507. case OVL_INPUT_FORMAT_ABGR8888:
  508. bpp = 4;
  509. break;
  510. default:
  511. DDPERR("unknown ovl input format = %d\n", inputFormat);
  512. ASSERT(0);
  513. }
  514. return bpp;
  515. }
  516. static enum OVL_COLOR_SPACE ovl_input_fmt_color_space(enum OVL_INPUT_FORMAT inputFormat)
  517. {
  518. enum OVL_COLOR_SPACE space = OVL_COLOR_SPACE_RGB;
  519. switch (inputFormat) {
  520. case OVL_INPUT_FORMAT_BGR565:
  521. case OVL_INPUT_FORMAT_RGB565:
  522. case OVL_INPUT_FORMAT_RGB888:
  523. case OVL_INPUT_FORMAT_BGR888:
  524. case OVL_INPUT_FORMAT_BGRA4444:
  525. case OVL_INPUT_FORMAT_RGBA4444:
  526. case OVL_INPUT_FORMAT_RGBA8888:
  527. case OVL_INPUT_FORMAT_BGRA8888:
  528. case OVL_INPUT_FORMAT_ARGB8888:
  529. case OVL_INPUT_FORMAT_ABGR8888:
  530. space = OVL_COLOR_SPACE_RGB;
  531. break;
  532. case OVL_INPUT_FORMAT_VYUY:
  533. case OVL_INPUT_FORMAT_UYVY:
  534. case OVL_INPUT_FORMAT_YVYU:
  535. case OVL_INPUT_FORMAT_YUYV:
  536. space = OVL_COLOR_SPACE_YUV;
  537. break;
  538. default:
  539. DDPERR("unknown ovl input format = %d\n", inputFormat);
  540. ASSERT(0);
  541. }
  542. return space;
  543. }
  544. static unsigned int ovl_input_fmt_reg_value(enum OVL_INPUT_FORMAT inputFormat)
  545. {
  546. int reg_value = 0;
  547. switch (inputFormat) {
  548. case OVL_INPUT_FORMAT_BGR565:
  549. case OVL_INPUT_FORMAT_RGB565:
  550. reg_value = 0x0;
  551. break;
  552. case OVL_INPUT_FORMAT_RGB888:
  553. case OVL_INPUT_FORMAT_BGR888:
  554. reg_value = 0x1;
  555. break;
  556. case OVL_INPUT_FORMAT_RGBA8888:
  557. case OVL_INPUT_FORMAT_BGRA8888:
  558. reg_value = 0x2;
  559. break;
  560. case OVL_INPUT_FORMAT_ARGB8888:
  561. case OVL_INPUT_FORMAT_ABGR8888:
  562. reg_value = 0x3;
  563. break;
  564. case OVL_INPUT_FORMAT_VYUY:
  565. case OVL_INPUT_FORMAT_UYVY:
  566. case OVL_INPUT_FORMAT_RGBA4444:
  567. case OVL_INPUT_FORMAT_BGRA4444:
  568. reg_value = 0x4;
  569. break;
  570. case OVL_INPUT_FORMAT_YVYU:
  571. case OVL_INPUT_FORMAT_YUYV:
  572. reg_value = 0x5;
  573. break;
  574. default:
  575. DDPERR("unknow ovl input format is %d\n", inputFormat);
  576. ASSERT(0);
  577. }
  578. return reg_value;
  579. }
  580. void OVLRegStore(DISP_MODULE_ENUM module)
  581. {
  582. int i =0;
  583. int idx = ovl_index(module);
  584. const unsigned int regs[] = {
  585. //start
  586. DISP_REG_OVL_INTEN , DISP_REG_OVL_EN ,DISP_REG_OVL_DATAPATH_CON,
  587. // roi
  588. DISP_REG_OVL_ROI_SIZE , DISP_REG_OVL_ROI_BGCLR ,
  589. //layers enable
  590. DISP_REG_OVL_SRC_CON,
  591. //layer0
  592. DISP_REG_OVL_RDMA0_CTRL , DISP_REG_OVL_L0_CON ,DISP_REG_OVL_L0_SRC_SIZE,
  593. DISP_REG_OVL_L0_OFFSET , DISP_REG_OVL_L0_ADDR ,DISP_REG_OVL_L0_PITCH,
  594. DISP_REG_OVL_L0_SRCKEY ,
  595. //layer1
  596. DISP_REG_OVL_RDMA1_CTRL , DISP_REG_OVL_L1_CON ,DISP_REG_OVL_L1_SRC_SIZE,
  597. DISP_REG_OVL_L1_OFFSET , DISP_REG_OVL_L1_ADDR ,DISP_REG_OVL_L1_PITCH,
  598. DISP_REG_OVL_L1_SRCKEY ,
  599. //layer2
  600. DISP_REG_OVL_RDMA2_CTRL , DISP_REG_OVL_L2_CON ,DISP_REG_OVL_L2_SRC_SIZE,
  601. DISP_REG_OVL_L2_OFFSET , DISP_REG_OVL_L2_ADDR ,DISP_REG_OVL_L2_PITCH,
  602. DISP_REG_OVL_L2_SRCKEY ,
  603. //layer3
  604. DISP_REG_OVL_RDMA3_CTRL , DISP_REG_OVL_L3_CON ,DISP_REG_OVL_L3_SRC_SIZE,
  605. DISP_REG_OVL_L3_OFFSET , DISP_REG_OVL_L3_ADDR ,DISP_REG_OVL_L3_PITCH,
  606. DISP_REG_OVL_L3_SRCKEY ,
  607. };
  608. reg_back_cnt[idx] = sizeof(regs)/sizeof(unsigned int);
  609. ASSERT(reg_back_cnt[idx] <= OVL_REG_BACK_MAX);
  610. for (i =0; i< reg_back_cnt[idx]; i++) {
  611. reg_back[idx][i].address = regs[i];
  612. reg_back[idx][i].value = DISP_REG_GET(regs[i]);
  613. }
  614. DDPDBG("store %c cnt registers on ovl %d",reg_back_cnt[idx],idx);
  615. }
  616. void OVLRegRestore(DISP_MODULE_ENUM module,void * handle)
  617. {
  618. int idx = ovl_index(module);
  619. int i = reg_back_cnt[idx];
  620. while (i > 0) {
  621. i--;
  622. DISP_REG_SET(handle,reg_back[idx][i].address, reg_back[idx][i].value);
  623. }
  624. DDPDBG("restore %d cnt registers on ovl %d",reg_back_cnt[idx],idx);
  625. reg_back_cnt[idx] = 0;
  626. }
  627. int OVLClockOn(DISP_MODULE_ENUM module,void * handle)
  628. {
  629. int idx = ovl_index(module);
  630. ddp_enable_module_clock(module);
  631. DDPMSG("OVL%dClockOn CG 0x%x \n",idx, DISP_REG_GET(DISP_REG_CONFIG_MMSYS_CG_CON0));
  632. return 0;
  633. }
  634. int OVLClockOff(DISP_MODULE_ENUM module,void * handle)
  635. {
  636. int idx = ovl_index(module);
  637. DDPMSG("OVL%dClockOff\n",idx);
  638. //store registers
  639. // OVLRegRestore(module,handle);
  640. DISP_REG_SET(handle, idx * DISP_INDEX_OFFSET + DISP_REG_OVL_EN, 0x00);
  641. OVLReset(module,handle);
  642. DISP_REG_SET(handle,idx*DISP_INDEX_OFFSET+DISP_REG_OVL_INTEN, 0x00);
  643. DISP_REG_SET(handle, idx * DISP_INDEX_OFFSET + DISP_REG_OVL_INTSTA, 0x00);
  644. ddp_disable_module_clock(module);
  645. return 0;
  646. }
  647. int OVLInit(DISP_MODULE_ENUM module,void * handle)
  648. {
  649. //power on, no need to care clock
  650. ddp_enable_module_clock(module);
  651. return 0;
  652. }
  653. int OVLDeInit(DISP_MODULE_ENUM module,void * handle)
  654. {
  655. int idx = ovl_index(module);
  656. DDPMSG("OVL%dDeInit close CG \n",idx);
  657. ddp_disable_module_clock(module);
  658. return 0;
  659. }
  660. static inline int is_module_ovl(DISP_MODULE_ENUM module)
  661. {
  662. if (module == DISP_MODULE_OVL0 ||
  663. module == DISP_MODULE_OVL0_2L)
  664. return 1;
  665. else
  666. return 0;
  667. }
  668. int OVLConnect(DISP_MODULE_ENUM module, DISP_MODULE_ENUM prev,
  669. DISP_MODULE_ENUM next, int connect, void *handle)
  670. {
  671. int idx = ovl_index(module);
  672. if (connect && is_module_ovl(prev))
  673. DISP_REG_SET_FIELD(handle, DATAPATH_CON_FLD_BGCLR_IN_SEL,
  674. idx * DISP_INDEX_OFFSET + DISP_REG_OVL_DATAPATH_CON, 1);
  675. else
  676. DISP_REG_SET_FIELD(handle, DATAPATH_CON_FLD_BGCLR_IN_SEL,
  677. idx * DISP_INDEX_OFFSET + DISP_REG_OVL_DATAPATH_CON, 0);
  678. if (connect && is_module_ovl(next)) {
  679. switch (module) {
  680. case DISP_MODULE_OVL0:
  681. DISP_REG_SET_FIELD(handle, FLD_CON_OVL0, DISP_REG_CONFIG_MMSYS_OVL_CON, 0x2);
  682. break;
  683. case DISP_MODULE_OVL0_2L:
  684. DISP_REG_SET_FIELD(handle, FLD_CON_OVL0_2L, DISP_REG_CONFIG_MMSYS_OVL_CON, 0x2);
  685. break;
  686. default:
  687. DDPERR("invalid module=%d \n", module);// invalid module
  688. ASSERT(0);
  689. }
  690. } else {
  691. switch (module) {
  692. case DISP_MODULE_OVL0:
  693. DISP_REG_SET_FIELD(handle, FLD_CON_OVL0, DISP_REG_CONFIG_MMSYS_OVL_CON, 0x1);
  694. break;
  695. case DISP_MODULE_OVL0_2L:
  696. DISP_REG_SET_FIELD(handle, FLD_CON_OVL0_2L, DISP_REG_CONFIG_MMSYS_OVL_CON, 0x1);
  697. break;
  698. default:
  699. DDPERR("invalid module=%d \n", module);// invalid module
  700. ASSERT(0);
  701. }
  702. }
  703. return 0;
  704. }
  705. void ovl_dump_golden_setting(DISP_MODULE_ENUM module)
  706. {
  707. unsigned long base = ovl_base_addr(module);
  708. base -= DISPSYS_OVL0_BASE;
  709. DDPDUMP("-- %s Golden Setting --\n", ddp_get_module_name(module));
  710. DDPDUMP("RDMA0_MEM_GMC_SETTING1\n");
  711. DDPDUMP("[9:0]:%x [25:16]:%x [28]:%x [31]:%x\n",
  712. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC_ULTRA_THRESHOLD,
  713. base + DISP_REG_OVL_RDMA0_MEM_GMC_SETTING),
  714. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC_PRE_ULTRA_THRESHOLD,
  715. base + DISP_REG_OVL_RDMA0_MEM_GMC_SETTING),
  716. DISP_REG_GET_FIELD(
  717. FLD_OVL_RDMA_MEM_GMC_ULTRA_THRESHOLD_HIGH_OFS,
  718. base + DISP_REG_OVL_RDMA0_MEM_GMC_SETTING),
  719. DISP_REG_GET_FIELD(
  720. FLD_OVL_RDMA_MEM_GMC_PRE_ULTRA_THRESHOLD_HIGH_OFS,
  721. base + DISP_REG_OVL_RDMA0_MEM_GMC_SETTING));
  722. DDPDUMP("RDMA0_FIFO_CTRL\n");
  723. DDPDUMP("[9:0]:%u [25:16]:%u\n",
  724. DISP_REG_GET_FIELD(FLD_OVL_RDMA_FIFO_THRD,
  725. base + DISP_REG_OVL_RDMA0_FIFO_CTRL),
  726. DISP_REG_GET_FIELD(FLD_OVL_RDMA_FIFO_SIZE,
  727. base + DISP_REG_OVL_RDMA0_FIFO_CTRL));
  728. DDPDUMP("RDMA0_MEM_GMC_SETTING2\n");
  729. DDPDUMP("[11:0]:%u [27:16]:%u [28]:%u [29]:%u [30]:%u\n",
  730. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC2_ISSUE_REQ_THRES,
  731. base + DISP_REG_OVL_RDMA0_MEM_GMC_S2),
  732. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC2_ISSUE_REQ_THRES_URG,
  733. base + DISP_REG_OVL_RDMA0_MEM_GMC_S2),
  734. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC2_REQ_THRES_PREULTRA,
  735. base + DISP_REG_OVL_RDMA0_MEM_GMC_S2),
  736. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC2_REQ_THRES_ULTRA,
  737. base + DISP_REG_OVL_RDMA0_MEM_GMC_S2),
  738. DISP_REG_GET_FIELD(FLD_OVL_RDMA_MEM_GMC2_FORCE_REQ_THRES,
  739. base + DISP_REG_OVL_RDMA0_MEM_GMC_S2));
  740. DDPDUMP("OVL_RDMA_BURST_CON1\n");
  741. DDPDUMP("[28]:%u\n",
  742. DISP_REG_GET_FIELD(FLD_RDMA_BURST_CON1_BURST16_EN,
  743. base + DISP_REG_OVL_RDMA_BURST_CON1));
  744. DDPDUMP("RDMA_GREQ_NUM\n");
  745. DDPDUMP("[3:0]%u [7:4]%u [11:8]%u [15:12]%u [23:16]%x [26:24]%u\n",
  746. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER0_GREQ_NUM,
  747. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  748. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER1_GREQ_NUM,
  749. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  750. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER2_GREQ_NUM,
  751. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  752. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER3_GREQ_NUM,
  753. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  754. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_OSTD_GREQ_NUM,
  755. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  756. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_GREQ_DIS_CNT,
  757. base + DISP_REG_OVL_RDMA_GREQ_NUM));
  758. DDPDUMP("[27]%u [28]%u [29]%u [30]%u [31]%u\n",
  759. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_STOP_EN,
  760. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  761. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_GRP_END_STOP,
  762. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  763. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_GRP_BRK_STOP,
  764. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  765. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_IOBUF_FLUSH_PREULTRA,
  766. base + DISP_REG_OVL_RDMA_GREQ_NUM),
  767. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_IOBUF_FLUSH_ULTRA,
  768. base + DISP_REG_OVL_RDMA_GREQ_NUM));
  769. DDPDUMP("RDMA_GREQ_URG_NUM\n");
  770. DDPDUMP("[3:0]:%u [7:4]:%u [11:8]:%u [15:12]:%u [25:16]:%u [28]:%u\n",
  771. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER0_GREQ_URG_NUM,
  772. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM),
  773. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER1_GREQ_URG_NUM,
  774. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM),
  775. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER2_GREQ_URG_NUM,
  776. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM),
  777. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_LAYER3_GREQ_URG_NUM,
  778. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM),
  779. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_ARG_GREQ_URG_TH,
  780. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM),
  781. DISP_REG_GET_FIELD(FLD_OVL_RDMA_GREQ_ARG_URG_BIAS,
  782. base + DISP_REG_OVL_RDMA_GREQ_URG_NUM));
  783. DDPDUMP("RDMA_ULTRA_SRC\n");
  784. DDPDUMP("[1:0]%u [3:2]%u [5:4]%u [7:6]%u [9:8]%u\n",
  785. DISP_REG_GET_FIELD(FLD_OVL_RDMA_PREULTRA_BUF_SRC,
  786. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  787. DISP_REG_GET_FIELD(FLD_OVL_RDMA_PREULTRA_SMI_SRC,
  788. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  789. DISP_REG_GET_FIELD(FLD_OVL_RDMA_PREULTRA_ROI_END_SRC,
  790. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  791. DISP_REG_GET_FIELD(FLD_OVL_RDMA_PREULTRA_RDMA_SRC,
  792. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  793. DISP_REG_GET_FIELD(FLD_OVL_RDMA_ULTRA_BUF_SRC,
  794. base + DISP_REG_OVL_RDMA_ULTRA_SRC));
  795. DDPDUMP("[11:10]%u [13:12]%u [15:14]%u\n",
  796. DISP_REG_GET_FIELD(FLD_OVL_RDMA_ULTRA_SMI_SRC,
  797. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  798. DISP_REG_GET_FIELD(FLD_OVL_RDMA_ULTRA_ROI_END_SRC,
  799. base + DISP_REG_OVL_RDMA_ULTRA_SRC),
  800. DISP_REG_GET_FIELD(FLD_OVL_RDMA_ULTRA_RDMA_SRC,
  801. base + DISP_REG_OVL_RDMA_ULTRA_SRC));
  802. DDPDUMP("RDMA0_BUF_LOW\n");
  803. DDPDUMP("[11:0]:%x [23:12]:%x\n",
  804. DISP_REG_GET_FIELD(FLD_OVL_RDMA_BUF_LOW_ULTRA_TH,
  805. base + DISP_REG_OVL_RDMAn_BUF_LOW(0)),
  806. DISP_REG_GET_FIELD(FLD_OVL_RDMA_BUF_LOW_PREULTRA_TH,
  807. base + DISP_REG_OVL_RDMAn_BUF_LOW(0)));
  808. DDPDUMP("RDMA0_BUF_HIGH\n");
  809. DDPDUMP("[23:12]:%x [31]:%x\n",
  810. DISP_REG_GET_FIELD(FLD_OVL_RDMA_BUF_HIGH_PREULTRA_TH,
  811. base + DISP_REG_OVL_RDMAn_BUF_HIGH(0)),
  812. DISP_REG_GET_FIELD(FLD_OVL_RDMA_BUF_HIGH_PREULTRA_DIS,
  813. base + DISP_REG_OVL_RDMAn_BUF_HIGH(0)));
  814. DDPDUMP("OVL_EN\n");
  815. DDPDUMP("[18]:%x [19]:%x\n",
  816. DISP_REG_GET_FIELD(EN_FLD_BLOCK_EXT_ULTRA,
  817. base + DISP_REG_OVL_EN),
  818. DISP_REG_GET_FIELD(EN_FLD_BLOCK_EXT_PREULTRA,
  819. base + DISP_REG_OVL_EN));
  820. DDPDUMP("DATAPATH_CON\n");
  821. DDPDUMP("[0]:%u, [3]:%u [24]:%u [25]:%u [26]:%u\n",
  822. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_LAYER_SMI_ID_EN,
  823. base + DISP_REG_OVL_DATAPATH_CON),
  824. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_OUTPUT_NO_RND,
  825. base + DISP_REG_OVL_DATAPATH_CON),
  826. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_GCLAST_EN,
  827. base + DISP_REG_OVL_DATAPATH_CON),
  828. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_HDR_GCLAST_EN,
  829. base + DISP_REG_OVL_DATAPATH_CON),
  830. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_OUTPUT_CLAMP,
  831. base + DISP_REG_OVL_DATAPATH_CON));
  832. DDPDUMP("OVL_FBDC_CFG1\n");
  833. DDPDUMP("[24]:%u\n", DISP_REG_GET_FIELD(FLD_FBDC_8XE_MODE,
  834. base + DISP_REG_OVL_FBDC_CFG1));
  835. }
  836. void OVLDump(DISP_MODULE_ENUM module)
  837. {
  838. #if 0
  839. int idx = ovl_index(module);
  840. unsigned long module_base = 0;
  841. const char *module_name = ddp_get_module_name(module);
  842. module_base = idx * DISP_INDEX_OFFSET + DISP_OVL0_OVL_STA;
  843. DDPDUMP("== START: DISP %s registers ==\n", module_name);
  844. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  845. module_name,
  846. 0x0, INREG32(module_base + 0x0),
  847. 0x4, INREG32(module_base + 0x4),
  848. 0x8, INREG32(module_base + 0x8),
  849. 0xC, INREG32(module_base + 0xC));
  850. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  851. module_name,
  852. 0x10, INREG32(module_base + 0x10),
  853. 0x14, INREG32(module_base + 0x14),
  854. 0x20, INREG32(module_base + 0x20),
  855. 0x24, INREG32(module_base + 0x24));
  856. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  857. module_name,
  858. 0x28, INREG32(module_base + 0x28),
  859. 0x2C, INREG32(module_base + 0x2C),
  860. 0x30, INREG32(module_base + 0x30),
  861. 0x34, INREG32(module_base + 0x34));
  862. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  863. module_name,
  864. 0x38, INREG32(module_base + 0x38),
  865. 0x3C, INREG32(module_base + 0x3C),
  866. 0xF40, INREG32(module_base + 0xF40),
  867. 0x44, INREG32(module_base + 0x44));
  868. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  869. module_name,
  870. 0x48, INREG32(module_base + 0x48),
  871. 0x4C, INREG32(module_base + 0x4C),
  872. 0x50, INREG32(module_base + 0x50),
  873. 0x54, INREG32(module_base + 0x54));
  874. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  875. module_name,
  876. 0x58, INREG32(module_base + 0x58),
  877. 0x5C, INREG32(module_base + 0x5C),
  878. 0xF60, INREG32(module_base + 0xF60),
  879. 0x64, INREG32(module_base + 0x64));
  880. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  881. module_name,
  882. 0x68, INREG32(module_base + 0x68),
  883. 0x6C, INREG32(module_base + 0x6C),
  884. 0x70, INREG32(module_base + 0x70),
  885. 0x74, INREG32(module_base + 0x74));
  886. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  887. module_name,
  888. 0x78, INREG32(module_base + 0x78),
  889. 0x7C, INREG32(module_base + 0x7C),
  890. 0xF80, INREG32(module_base + 0xF80),
  891. 0x84, INREG32(module_base + 0x84));
  892. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  893. module_name,
  894. 0x88, INREG32(module_base + 0x88),
  895. 0x8C, INREG32(module_base + 0x8C),
  896. 0x90, INREG32(module_base + 0x90),
  897. 0x94, INREG32(module_base + 0x94));
  898. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  899. module_name,
  900. 0x98, INREG32(module_base + 0x98),
  901. 0x9C, INREG32(module_base + 0x9C),
  902. 0xFa0, INREG32(module_base + 0xFa0),
  903. 0xa4, INREG32(module_base + 0xa4));
  904. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  905. module_name,
  906. 0xa8, INREG32(module_base + 0xa8),
  907. 0xAC, INREG32(module_base + 0xAC),
  908. 0xc0, INREG32(module_base + 0xc0),
  909. 0xc8, INREG32(module_base + 0xc8));
  910. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  911. module_name,
  912. 0xcc, INREG32(module_base + 0xcc),
  913. 0xd0, INREG32(module_base + 0xd0),
  914. 0xe0, INREG32(module_base + 0xe0),
  915. 0xe8, INREG32(module_base + 0xe8));
  916. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  917. module_name,
  918. 0xec, INREG32(module_base + 0xec),
  919. 0xf0, INREG32(module_base + 0xf0),
  920. 0x100, INREG32(module_base + 0x100),
  921. 0x108, INREG32(module_base + 0x108));
  922. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  923. module_name,
  924. 0x10c, INREG32(module_base + 0x10c),
  925. 0x110, INREG32(module_base + 0x110),
  926. 0x120, INREG32(module_base + 0x120),
  927. 0x128, INREG32(module_base + 0x128));
  928. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  929. module_name,
  930. 0x12c, INREG32(module_base + 0x12c),
  931. 0x130, INREG32(module_base + 0x130),
  932. 0x134, INREG32(module_base + 0x134),
  933. 0x138, INREG32(module_base + 0x138));
  934. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  935. module_name,
  936. 0x13c, INREG32(module_base + 0x13c),
  937. 0x140, INREG32(module_base + 0x140),
  938. 0x144, INREG32(module_base + 0x144),
  939. 0x148, INREG32(module_base + 0x148));
  940. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  941. module_name,
  942. 0x14c, INREG32(module_base + 0x14c),
  943. 0x150, INREG32(module_base + 0x150),
  944. 0x154, INREG32(module_base + 0x154),
  945. 0x158, INREG32(module_base + 0x158));
  946. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  947. module_name,
  948. 0x15c, INREG32(module_base + 0x15c),
  949. 0x160, INREG32(module_base + 0x160),
  950. 0x164, INREG32(module_base + 0x164),
  951. 0x168, INREG32(module_base + 0x168));
  952. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  953. module_name,
  954. 0x16c, INREG32(module_base + 0x16c),
  955. 0x170, INREG32(module_base + 0x170),
  956. 0x174, INREG32(module_base + 0x174),
  957. 0x178, INREG32(module_base + 0x178));
  958. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  959. module_name,
  960. 0x17c, INREG32(module_base + 0x17c),
  961. 0x180, INREG32(module_base + 0x180),
  962. 0x184, INREG32(module_base + 0x184),
  963. 0x188, INREG32(module_base + 0x188));
  964. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  965. module_name,
  966. 0x18c, INREG32(module_base + 0x18c),
  967. 0x190, INREG32(module_base + 0x190),
  968. 0x194, INREG32(module_base + 0x194),
  969. 0x198, INREG32(module_base + 0x198));
  970. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  971. module_name,
  972. 0x19c, INREG32(module_base + 0x19c),
  973. 0x1a0, INREG32(module_base + 0x1a0),
  974. 0x1a4, INREG32(module_base + 0x1a4),
  975. 0x1a8, INREG32(module_base + 0x1a8));
  976. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  977. module_name,
  978. 0x1ac, INREG32(module_base + 0x1ac),
  979. 0x1b0, INREG32(module_base + 0x1b0),
  980. 0x1b4, INREG32(module_base + 0x1b4),
  981. 0x1b8, INREG32(module_base + 0x1b8));
  982. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  983. module_name,
  984. 0x1bc, INREG32(module_base + 0x1bc),
  985. 0x1c0, INREG32(module_base + 0x1c0),
  986. 0x1c4, INREG32(module_base + 0x1c4),
  987. 0x1c8, INREG32(module_base + 0x1c8));
  988. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  989. module_name,
  990. 0x1cc, INREG32(module_base + 0x1cc),
  991. 0x1d0, INREG32(module_base + 0x1d0),
  992. 0x1d4, INREG32(module_base + 0x1d4),
  993. 0x1dc, INREG32(module_base + 0x1dc));
  994. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  995. module_name,
  996. 0x1e0, INREG32(module_base + 0x1e0),
  997. 0x1e4, INREG32(module_base + 0x1e4),
  998. 0x1e8, INREG32(module_base + 0x1e8),
  999. 0x1ec, INREG32(module_base + 0x1ec));
  1000. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1001. module_name,
  1002. 0x1F0, INREG32(module_base + 0x1F0),
  1003. 0x1F4, INREG32(module_base + 0x1F4),
  1004. 0x1F8, INREG32(module_base + 0x1F8),
  1005. 0x1FC, INREG32(module_base + 0x1FC));
  1006. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1007. module_name,
  1008. 0x200, INREG32(module_base + 0x200),
  1009. 0x208, INREG32(module_base + 0x208),
  1010. 0x20C, INREG32(module_base + 0x20C),
  1011. 0x210, INREG32(module_base + 0x210));
  1012. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1013. module_name,
  1014. 0x214, INREG32(module_base + 0x214),
  1015. 0x218, INREG32(module_base + 0x218),
  1016. 0x21C, INREG32(module_base + 0x21C),
  1017. 0x220, INREG32(module_base + 0x220));
  1018. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1019. module_name,
  1020. 0x224, INREG32(module_base + 0x224),
  1021. 0x228, INREG32(module_base + 0x228),
  1022. 0x22C, INREG32(module_base + 0x22C),
  1023. 0x230, INREG32(module_base + 0x230));
  1024. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1025. module_name,
  1026. 0x234, INREG32(module_base + 0x234),
  1027. 0x238, INREG32(module_base + 0x238),
  1028. 0x240, INREG32(module_base + 0x240),
  1029. 0x244, INREG32(module_base + 0x244));
  1030. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1031. module_name,
  1032. 0x24c, INREG32(module_base + 0x24c),
  1033. 0x250, INREG32(module_base + 0x250),
  1034. 0x254, INREG32(module_base + 0x254),
  1035. 0x258, INREG32(module_base + 0x258));
  1036. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1037. module_name,
  1038. 0x25c, INREG32(module_base + 0x25c),
  1039. 0x260, INREG32(module_base + 0x260),
  1040. 0x264, INREG32(module_base + 0x264),
  1041. 0x268, INREG32(module_base + 0x268));
  1042. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1043. module_name,
  1044. 0x26C, INREG32(module_base + 0x26C),
  1045. 0x270, INREG32(module_base + 0x270),
  1046. 0x280, INREG32(module_base + 0x280),
  1047. 0x284, INREG32(module_base + 0x284));
  1048. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1049. module_name,
  1050. 0x288, INREG32(module_base + 0x288),
  1051. 0x28C, INREG32(module_base + 0x28C),
  1052. 0x290, INREG32(module_base + 0x290),
  1053. 0x29C, INREG32(module_base + 0x29C));
  1054. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1055. module_name,
  1056. 0x2A0, INREG32(module_base + 0x2A0),
  1057. 0x2A4, INREG32(module_base + 0x2A4),
  1058. 0x2B0, INREG32(module_base + 0x2B0),
  1059. 0x2B4, INREG32(module_base + 0x2B4));
  1060. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1061. module_name,
  1062. 0x2B8, INREG32(module_base + 0x2B8),
  1063. 0x2BC, INREG32(module_base + 0x2BC),
  1064. 0x2C0, INREG32(module_base + 0x2C0),
  1065. 0x2C4, INREG32(module_base + 0x2C4));
  1066. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1067. module_name,
  1068. 0x2C8, INREG32(module_base + 0x2C8),
  1069. 0x324, INREG32(module_base + 0x324),
  1070. 0x330, INREG32(module_base + 0x330),
  1071. 0x334, INREG32(module_base + 0x334));
  1072. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1073. module_name,
  1074. 0x338, INREG32(module_base + 0x338),
  1075. 0x33C, INREG32(module_base + 0x33C),
  1076. 0xFB0, INREG32(module_base + 0xFB0),
  1077. 0x344, INREG32(module_base + 0x344));
  1078. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1079. module_name,
  1080. 0x348, INREG32(module_base + 0x348),
  1081. 0x34C, INREG32(module_base + 0x34C),
  1082. 0x350, INREG32(module_base + 0x350),
  1083. 0x354, INREG32(module_base + 0x354));
  1084. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1085. module_name,
  1086. 0x358, INREG32(module_base + 0x358),
  1087. 0x35C, INREG32(module_base + 0x35C),
  1088. 0xFB4, INREG32(module_base + 0xFB4),
  1089. 0x364, INREG32(module_base + 0x364));
  1090. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1091. module_name,
  1092. 0x368, INREG32(module_base + 0x368),
  1093. 0x36C, INREG32(module_base + 0x36C),
  1094. 0x370, INREG32(module_base + 0x370),
  1095. 0x374, INREG32(module_base + 0x374));
  1096. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1097. module_name,
  1098. 0x378, INREG32(module_base + 0x378),
  1099. 0x37C, INREG32(module_base + 0x37C),
  1100. 0xFB8, INREG32(module_base + 0xFB8),
  1101. 0x384, INREG32(module_base + 0x384));
  1102. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1103. module_name,
  1104. 0x388, INREG32(module_base + 0x388),
  1105. 0x38C, INREG32(module_base + 0x38C),
  1106. 0x390, INREG32(module_base + 0x390),
  1107. 0x394, INREG32(module_base + 0x394));
  1108. DDPDUMP("%s 0x%04x=0x%08x, 0x%04x=0x%08x\n",
  1109. module_name,
  1110. 0x398, INREG32(module_base + 0x398),
  1111. 0xFC0, INREG32(module_base + 0xFC0));
  1112. DDPDUMP("-- END: DISP %s registers --\n", module_name);
  1113. #endif
  1114. ovl_dump_golden_setting(module);
  1115. }
  1116. static void ovl_printf_status(unsigned int status)
  1117. {
  1118. DDPDUMP("=OVL_FLOW_CONTROL_DEBUG=:\n");
  1119. DDPDUMP("addcon_idle:%d,blend_idle:%d,out_valid:%d,out_ready:%d,out_idle:%d\n",
  1120. (status >> 10) & (0x1),
  1121. (status >> 11) & (0x1),
  1122. (status >> 12) & (0x1), (status >> 13) & (0x1), (status >> 15) & (0x1)
  1123. );
  1124. DDPDUMP("rdma3_idle:%d,rdma2_idle:%d,rdma1_idle:%d, rdma0_idle:%d,rst:%d\n",
  1125. (status >> 16) & (0x1),
  1126. (status >> 17) & (0x1),
  1127. (status >> 18) & (0x1), (status >> 19) & (0x1), (status >> 20) & (0x1)
  1128. );
  1129. DDPDUMP("trig:%d,frame_hwrst_done:%d,frame_swrst_done:%d,frame_underrun:%d,frame_done:%d\n",
  1130. (status >> 21) & (0x1),
  1131. (status >> 23) & (0x1),
  1132. (status >> 24) & (0x1), (status >> 25) & (0x1), (status >> 26) & (0x1)
  1133. );
  1134. DDPDUMP("ovl_running:%d,ovl_start:%d,ovl_clr:%d,reg_update:%d,ovl_upd_reg:%d\n",
  1135. (status >> 27) & (0x1),
  1136. (status >> 28) & (0x1),
  1137. (status >> 29) & (0x1), (status >> 30) & (0x1), (status >> 31) & (0x1)
  1138. );
  1139. DDPDUMP("ovl_fms_state:\n");
  1140. switch (status & 0x3ff) {
  1141. case 0x1:
  1142. DDPDUMP("idle\n");
  1143. break;
  1144. case 0x2:
  1145. DDPDUMP("wait_SOF\n");
  1146. break;
  1147. case 0x4:
  1148. DDPDUMP("prepare\n");
  1149. break;
  1150. case 0x8:
  1151. DDPDUMP("reg_update\n");
  1152. break;
  1153. case 0x10:
  1154. DDPDUMP("eng_clr(internal reset)\n");
  1155. break;
  1156. case 0x20:
  1157. DDPDUMP("eng_act(processing)\n");
  1158. break;
  1159. case 0x40:
  1160. DDPDUMP("h_wait_w_rst\n");
  1161. break;
  1162. case 0x80:
  1163. DDPDUMP("s_wait_w_rst\n");
  1164. break;
  1165. case 0x100:
  1166. DDPDUMP("h_w_rst\n");
  1167. break;
  1168. case 0x200:
  1169. DDPDUMP("s_w_rst\n");
  1170. break;
  1171. default:
  1172. DDPDUMP("ovl_fsm_unknown\n");
  1173. break;
  1174. }
  1175. }
  1176. static void ovl_print_ovl_rdma_status(unsigned int status)
  1177. {
  1178. DDPDUMP("wram_rst_cs:0x%x,layer_greq:0x%x,out_data:0x%x,",
  1179. status & 0x7, (status >> 3) & 0x1, (status >> 4) & 0xffffff);
  1180. DDPDUMP("out_ready:0x%x,out_valid:0x%x,smi_busy:0x%x,smi_greq:0x%x\n",
  1181. (status >> 28) & 0x1, (status >> 29) & 0x1, (status >> 30) & 0x1,
  1182. (status >> 31) & 0x1);
  1183. }
  1184. static void ovl_dump_layer_info(int layer, unsigned long layer_offset)
  1185. {
  1186. DDPDUMP("layer%d: w=%d,h=%d,off(x=%d,y=%d),pitch=%d,addr=0x%x,fmt=%s,source=%s,aen=%d,alpha=%d\n",
  1187. layer, DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_SRC_SIZE) & 0xfff,
  1188. (DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_SRC_SIZE) >> 16) & 0xfff,
  1189. DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_OFFSET) & 0xfff,
  1190. (DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_OFFSET) >> 16) & 0xfff,
  1191. DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_PITCH) & 0xffff,
  1192. DISP_REG_GET(layer_offset + DISP_REG_OVL_L0_ADDR),
  1193. ovl_intput_format_name(
  1194. DISP_REG_GET_FIELD(L_CON_FLD_CFMT, DISP_REG_OVL_L0_CON+layer_offset),
  1195. DISP_REG_GET_FIELD(L_CON_FLD_BTSW, DISP_REG_OVL_L0_CON+layer_offset)),
  1196. (DISP_REG_GET_FIELD(L_CON_FLD_LARC, DISP_REG_OVL_L0_CON + layer_offset) ==
  1197. 0) ? "memory" : "constant_color", DISP_REG_GET_FIELD(L_CON_FLD_AEN,
  1198. DISP_REG_OVL_L0_CON +
  1199. layer_offset),
  1200. DISP_REG_GET_FIELD(L_CON_FLD_APHA, DISP_REG_OVL_L0_CON + layer_offset)
  1201. );
  1202. }
  1203. void ovl_dump_analysis(DISP_MODULE_ENUM module)
  1204. {
  1205. int i = 0;
  1206. unsigned int layer_offset = 0;
  1207. unsigned int rdma_offset = 0;
  1208. int idx = ovl_index(module);
  1209. unsigned int offset = idx * DISP_INDEX_OFFSET;
  1210. unsigned int src_on = DISP_REG_GET(DISP_REG_OVL_SRC_CON+offset);
  1211. unsigned int rdma_ctrl;
  1212. DDPDUMP("==DISP %s ANALYSIS==\n", ddp_get_module_name(module));
  1213. DDPDUMP("ovl_en=%d,layer_enable(%d,%d,%d,%d),bg(w=%d, h=%d),",
  1214. DISP_REG_GET(DISP_REG_OVL_EN + offset),
  1215. DISP_REG_GET(DISP_REG_OVL_SRC_CON + offset) & 0x1,
  1216. (DISP_REG_GET(DISP_REG_OVL_SRC_CON + offset) >> 1) & 0x1,
  1217. (DISP_REG_GET(DISP_REG_OVL_SRC_CON + offset) >> 2) & 0x1,
  1218. (DISP_REG_GET(DISP_REG_OVL_SRC_CON + offset) >> 3) & 0x1,
  1219. DISP_REG_GET(DISP_REG_OVL_ROI_SIZE + offset) & 0xfff,
  1220. (DISP_REG_GET(DISP_REG_OVL_ROI_SIZE + offset) >> 16) & 0xfff);
  1221. DDPDUMP("cur_pos(x=%d,y=%d),layer_hit(%d,%d,%d,%d),bg_mode=%s,sta=0x%x\n",
  1222. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_ROI_X, DISP_REG_OVL_ADDCON_DBG + offset),
  1223. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_ROI_Y, DISP_REG_OVL_ADDCON_DBG + offset),
  1224. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_L0_WIN_HIT, DISP_REG_OVL_ADDCON_DBG + offset),
  1225. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_L1_WIN_HIT, DISP_REG_OVL_ADDCON_DBG + offset),
  1226. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_L2_WIN_HIT, DISP_REG_OVL_ADDCON_DBG + offset),
  1227. DISP_REG_GET_FIELD(ADDCON_DBG_FLD_L3_WIN_HIT, DISP_REG_OVL_ADDCON_DBG + offset),
  1228. DISP_REG_GET_FIELD(DATAPATH_CON_FLD_BGCLR_IN_SEL,
  1229. DISP_REG_OVL_DATAPATH_CON + offset) ? "directlink" : "const",
  1230. DISP_REG_GET(DISP_REG_OVL_STA + offset)
  1231. );
  1232. for (i = 0; i < 4; i++) {
  1233. layer_offset = i * OVL_LAYER_OFFSET + offset;
  1234. rdma_offset = i * OVL_RDMA_DEBUG_OFFSET + offset;
  1235. if (src_on & (0x1 << i))
  1236. ovl_dump_layer_info(i, layer_offset);
  1237. else
  1238. DDPDUMP("layer%d: disabled\n", i);
  1239. rdma_ctrl = DISP_REG_GET(layer_offset + DISP_REG_OVL_RDMA0_CTRL);
  1240. DDPDUMP("ovl rdma%d status:(en=%d, fifo_used %d, GMC=0x%x)\n", i,
  1241. REG_FLD_VAL_GET(RDMA0_CTRL_FLD_RDMA_EN, rdma_ctrl),
  1242. REG_FLD_VAL_GET(RDMA0_CTRL_FLD_RMDA_FIFO_USED_SZ, rdma_ctrl),
  1243. DISP_REG_GET(layer_offset + DISP_REG_OVL_RDMA0_MEM_GMC_SETTING));
  1244. ovl_print_ovl_rdma_status(DISP_REG_GET(DISP_REG_OVL_RDMA0_DBG + rdma_offset));
  1245. }
  1246. ovl_printf_status(DISP_REG_GET(DISP_REG_OVL_FLOW_CTRL_DBG + offset));
  1247. }
  1248. static inline unsigned long ovl_layer_num(DISP_MODULE_ENUM module)
  1249. {
  1250. switch (module) {
  1251. case DISP_MODULE_OVL0:
  1252. return 4;
  1253. case DISP_MODULE_OVL0_2L:
  1254. return 2;
  1255. default:
  1256. DDPERR("invalid ovl module=%d\n", module);
  1257. ASSERT(0);
  1258. }
  1259. return 0;
  1260. }
  1261. void ovl_cal_golden_setting(unsigned int *gs)
  1262. {
  1263. /* OVL_RDMA_MEM_GMC_SETTING_1 */
  1264. gs[GS_OVL_RDMA_ULTRA_TH] = 0x3ff;
  1265. gs[GS_OVL_RDMA_PRE_ULTRA_TH] = 0x3ff;
  1266. /* OVL_RDMA_FIFO_CTRL */
  1267. gs[GS_OVL_RDMA_FIFO_THRD] = 0;
  1268. gs[GS_OVL_RDMA_FIFO_SIZE] = 288;
  1269. /* OVL_RDMA_MEM_GMC_SETTING_2 */
  1270. gs[GS_OVL_RDMA_ISSUE_REQ_TH] = 191;
  1271. gs[GS_OVL_RDMA_ISSUE_REQ_TH_URG] = 95;
  1272. gs[GS_OVL_RDMA_REQ_TH_PRE_ULTRA] = 0;
  1273. gs[GS_OVL_RDMA_REQ_TH_ULTRA] = 1;
  1274. gs[GS_OVL_RDMA_FORCE_REQ_TH] = 0;
  1275. /* OVL_RDMA_GREQ_NUM */
  1276. gs[GS_OVL_RDMA_GREQ_NUM] = 0xF1FF5555;
  1277. /* OVL_RDMA_GREQURG_NUM */
  1278. gs[GS_OVL_RDMA_GREQ_URG_NUM] = 0x5555;
  1279. /* OVL_RDMA_ULTRA_SRC */
  1280. gs[GS_OVL_RDMA_ULTRA_SRC] = 0x8040;
  1281. /* OVL_RDMA_BUF_LOW_TH */
  1282. gs[GS_OVL_RDMA_ULTRA_LOW_TH] = 0;
  1283. gs[GS_OVL_RDMA_PRE_ULTRA_LOW_TH] = 0;
  1284. /* OVL_RDMA_BUF_HIGH_TH */
  1285. gs[GS_OVL_RDMA_PRE_ULTRA_HIGH_TH] = 0;
  1286. gs[GS_OVL_RDMA_PRE_ULTRA_HIGH_DIS] = 1;
  1287. /* OVL_EN */
  1288. gs[GS_OVL_BLOCK_EXT_ULTRA] = 0;
  1289. gs[GS_OVL_BLOCK_EXT_PRE_ULTRA] = 0;
  1290. }
  1291. static int ovl_golden_setting(DISP_MODULE_ENUM module, void *cmdq)
  1292. {
  1293. unsigned long baddr = ovl_base_addr(module);
  1294. unsigned int regval;
  1295. unsigned int gs[GS_OVL_FLD_NUM];
  1296. int i, layer_num;
  1297. unsigned long Lx_base;
  1298. baddr -= DISPSYS_OVL0_BASE;
  1299. layer_num = ovl_layer_num(module);
  1300. /* calculate ovl golden setting */
  1301. ovl_cal_golden_setting(gs);
  1302. /* OVL_RDMA_MEM_GMC_SETTING_1 */
  1303. regval = gs[GS_OVL_RDMA_ULTRA_TH] +
  1304. (gs[GS_OVL_RDMA_PRE_ULTRA_TH] << 16);
  1305. for (i = 0; i < layer_num; i++) {
  1306. Lx_base = i * OVL_LAYER_OFFSET + baddr;
  1307. DISP_REG_SET(cmdq, Lx_base +
  1308. DISP_REG_OVL_RDMA0_MEM_GMC_SETTING, regval);
  1309. }
  1310. /* OVL_RDMA_FIFO_CTRL */
  1311. regval = gs[GS_OVL_RDMA_FIFO_THRD] +
  1312. (gs[GS_OVL_RDMA_FIFO_SIZE] << 16);
  1313. for (i = 0; i < layer_num; i++) {
  1314. Lx_base = i * OVL_LAYER_OFFSET + baddr;
  1315. DISP_REG_SET(cmdq, Lx_base + DISP_REG_OVL_RDMA0_FIFO_CTRL,
  1316. regval);
  1317. }
  1318. /* OVL_RDMA_MEM_GMC_SETTING_2 */
  1319. regval = gs[GS_OVL_RDMA_ISSUE_REQ_TH] +
  1320. (gs[GS_OVL_RDMA_ISSUE_REQ_TH_URG] << 16) +
  1321. (gs[GS_OVL_RDMA_REQ_TH_PRE_ULTRA] << 28) +
  1322. (gs[GS_OVL_RDMA_REQ_TH_ULTRA] << 29) +
  1323. (gs[GS_OVL_RDMA_FORCE_REQ_TH] << 30);
  1324. for (i = 0; i < layer_num; i++)
  1325. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMA0_MEM_GMC_S2 +
  1326. i * 4, regval);
  1327. /* DISP_REG_OVL_RDMA_GREQ_NUM */
  1328. regval = gs[GS_OVL_RDMA_GREQ_NUM];
  1329. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMA_GREQ_NUM, regval);
  1330. /* DISP_REG_OVL_RDMA_GREQ_URG_NUM */
  1331. regval = gs[GS_OVL_RDMA_GREQ_URG_NUM];
  1332. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMA_GREQ_URG_NUM, regval);
  1333. /* DISP_REG_OVL_RDMA_ULTRA_SRC */
  1334. regval = gs[GS_OVL_RDMA_ULTRA_SRC];
  1335. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMA_ULTRA_SRC, regval);
  1336. /* DISP_REG_OVL_RDMAn_BUF_LOW */
  1337. regval = gs[GS_OVL_RDMA_ULTRA_LOW_TH] +
  1338. (gs[GS_OVL_RDMA_PRE_ULTRA_LOW_TH] << 12);
  1339. for (i = 0; i < layer_num; i++)
  1340. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMAn_BUF_LOW(i),
  1341. regval);
  1342. /* DISP_REG_OVL_RDMAn_BUF_HIGH */
  1343. regval = (gs[GS_OVL_RDMA_PRE_ULTRA_HIGH_TH] << 12) +
  1344. (gs[GS_OVL_RDMA_PRE_ULTRA_HIGH_DIS] << 31);
  1345. for (i = 0; i < layer_num; i++)
  1346. DISP_REG_SET(cmdq, baddr + DISP_REG_OVL_RDMAn_BUF_HIGH(i),
  1347. regval);
  1348. /* OVL_EN */
  1349. regval = gs[GS_OVL_BLOCK_EXT_ULTRA] +
  1350. (gs[GS_OVL_BLOCK_EXT_PRE_ULTRA] << 1);
  1351. DISP_REG_SET_FIELD(cmdq, REG_FLD_MSB_LSB(19, 18), baddr +
  1352. DISP_REG_OVL_EN, regval);
  1353. /* Set ultra_sel of ovl0 & ovl0_2l to RDMA0 if path is DL with rsz
  1354. * OVL0_2l -> RSZ -> OVL0 -> RDMA0 -> DSI
  1355. */
  1356. DISP_REG_SET_FIELD(cmdq, mmsys_ovl_ultra_offset(module),
  1357. DISP_REG_CONFIG_MMSYS_MISC, 1);
  1358. return 0;
  1359. }
  1360. static int OVLConfig_l(DISP_MODULE_ENUM module, disp_ddp_path_config* pConfig, void* handle)
  1361. {
  1362. int enabled_layers = 0;
  1363. unsigned int local_layer = 0, global_layer = 0, regval = 0;
  1364. int idx = ovl_index(module);
  1365. if (pConfig->dst_dirty) {
  1366. OVLROI(module,
  1367. pConfig->dst_w, // width
  1368. pConfig->dst_h, // height
  1369. 0xFF000000, // background color
  1370. handle);
  1371. }
  1372. if (!pConfig->ovl_dirty) {
  1373. return 0;
  1374. }
  1375. for (global_layer = 0; global_layer < TOTAL_OVL_LAYER_NUM; global_layer++) {
  1376. if (!(pConfig->ovl_layer_scanned & (1 << global_layer)))
  1377. break;
  1378. }
  1379. if (global_layer > TOTAL_OVL_LAYER_NUM - ovl_layer_num(module)) {
  1380. DDPERR("%s: %s scan error, layer_scanned=%u\n", __func__,
  1381. ddp_get_module_name(module), pConfig->ovl_layer_scanned);
  1382. ASSERT(0);
  1383. }
  1384. for (local_layer = 0; local_layer < ovl_layer_num(module); local_layer++, global_layer++) {
  1385. OVL_CONFIG_STRUCT *ovl_cfg = &pConfig->ovl_config[global_layer];
  1386. pConfig->ovl_layer_scanned |= (1 << global_layer);
  1387. if (ovl_cfg->layer_en == 0)
  1388. continue;
  1389. if (ovl_cfg->addr==0 || ovl_cfg->dst_w==0 || ovl_cfg->dst_h==0) {
  1390. DDPERR("ovl parameter invalidate, addr=0x%x, w=%d, h=%d \n",
  1391. ovl_cfg->addr,
  1392. ovl_cfg->dst_w,
  1393. ovl_cfg->dst_h);
  1394. return -1;
  1395. }
  1396. DDPDBG("module %d, layer=%d, en=%d, src=%d, fmt=%d, addr=0x%x, x=%d, y=%d, pitch=%d, dst(%d, %d, %d, %d),keyEn=%d, key=%d, aen=%d, alpha=%d\n",
  1397. module,
  1398. local_layer,
  1399. ovl_cfg->layer_en,
  1400. ovl_cfg->source, // data source (0=memory)
  1401. ovl_cfg->fmt,
  1402. ovl_cfg->addr, // addr
  1403. ovl_cfg->src_x, // x
  1404. ovl_cfg->src_y, // y
  1405. ovl_cfg->src_pitch, //pitch, pixel number
  1406. ovl_cfg->dst_x, // x
  1407. ovl_cfg->dst_y, // y
  1408. ovl_cfg->dst_w, // width
  1409. ovl_cfg->dst_h, // height
  1410. ovl_cfg->keyEn, //color key
  1411. ovl_cfg->key, //color key
  1412. ovl_cfg->aen, // alpha enable
  1413. ovl_cfg->alpha);
  1414. OVLLayerConfig(module,
  1415. local_layer,
  1416. ovl_cfg->source,
  1417. ovl_cfg->fmt,
  1418. ovl_cfg->addr,
  1419. ovl_cfg->src_x,
  1420. ovl_cfg->src_y,
  1421. ovl_cfg->src_pitch,
  1422. ovl_cfg->dst_x,
  1423. ovl_cfg->dst_y,
  1424. ovl_cfg->dst_w,
  1425. ovl_cfg->dst_h,
  1426. ovl_cfg->keyEn,
  1427. ovl_cfg->key,
  1428. ovl_cfg->aen,
  1429. ovl_cfg->alpha,
  1430. handle);
  1431. // print_layer_config_args(module, local_layer, ovl_cfg);
  1432. // ovl_layer_config(module, local_layer, has_sec_layer, ovl_cfg, handle);
  1433. #ifdef MTK_LOGO_RUNTIME_SWITCH
  1434. if (local_layer > 0)
  1435. enabled_layers |= 1 << local_layer;
  1436. #else
  1437. enabled_layers |= 1 << local_layer;
  1438. #endif
  1439. }
  1440. regval = DISP_REG_GET(idx * DISP_INDEX_OFFSET + DISP_REG_OVL_SRC_CON);
  1441. enabled_layers |= regval;
  1442. if (enabled_layers != regval) {
  1443. DDPMSG("module:%d OVL enable layer:0x%x, regval:0x%x\n",
  1444. module, enabled_layers, regval);
  1445. DISP_REG_SET(handle, idx * DISP_INDEX_OFFSET + DISP_REG_OVL_SRC_CON, enabled_layers);
  1446. }
  1447. ovl_golden_setting(module, handle);
  1448. return 0;
  1449. }
  1450. DDP_MODULE_DRIVER ddp_driver_ovl = {
  1451. .module = DISP_MODULE_OVL0,
  1452. .init = OVLInit,
  1453. .deinit = OVLDeInit,
  1454. .config = OVLConfig_l,
  1455. .start = OVLStart,
  1456. .trigger = NULL,
  1457. .stop = OVLStop,
  1458. .reset = NULL,
  1459. .power_on = OVLClockOn,
  1460. .power_off = OVLClockOff,
  1461. .is_idle = NULL,
  1462. .is_busy = NULL,
  1463. .dump_info = NULL,
  1464. .bypass = NULL,
  1465. .build_cmdq = NULL,
  1466. .set_lcm_utils = NULL,
  1467. .connect = OVLConnect,
  1468. .switch_layer = OVLLayerSwitch,
  1469. };