ddp_rdma.c 32 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 "RDMA"
  32. #include "platform/ddp_info.h"
  33. #include "platform/ddp_matrix_para.h"
  34. #include "platform/ddp_reg.h"
  35. #include "platform/ddp_log.h"
  36. #include "platform/ddp_rdma.h"
  37. #include "platform/ddp_dump.h"
  38. #include "lcm_drv.h" // to check if UFO enabled.
  39. //#include "platform/mt_clkmgr.h"
  40. #include "platform/disp_drv_platform.h"
  41. enum RDMA_INPUT_FORMAT {
  42. RDMA_INPUT_FORMAT_BGR565 = 0,
  43. RDMA_INPUT_FORMAT_RGB888 = 1,
  44. RDMA_INPUT_FORMAT_RGBA8888 = 2,
  45. RDMA_INPUT_FORMAT_ARGB8888 = 3,
  46. RDMA_INPUT_FORMAT_VYUY = 4,
  47. RDMA_INPUT_FORMAT_YVYU = 5,
  48. RDMA_INPUT_FORMAT_RGB565 = 6,
  49. RDMA_INPUT_FORMAT_BGR888 = 7,
  50. RDMA_INPUT_FORMAT_BGRA8888 = 8,
  51. RDMA_INPUT_FORMAT_ABGR8888 = 9,
  52. RDMA_INPUT_FORMAT_UYVY = 10,
  53. RDMA_INPUT_FORMAT_YUYV = 11,
  54. RDMA_INPUT_FORMAT_UNKNOW = 32,
  55. };
  56. static enum RDMA_INPUT_FORMAT rdma_input_format_convert(DpColorFormat fmt);
  57. static unsigned int rdma_input_format_byte_swap(enum RDMA_INPUT_FORMAT inputFormat);
  58. static unsigned int rdma_input_format_bpp(enum RDMA_INPUT_FORMAT inputFormat);
  59. static unsigned int rdma_input_format_color_space(enum RDMA_INPUT_FORMAT inputFormat);
  60. static unsigned int rdma_input_format_reg_value(enum RDMA_INPUT_FORMAT inputFormat);
  61. static char *rdma_intput_format_name(int reg );
  62. static unsigned int rdma_index(DISP_MODULE_ENUM module)
  63. {
  64. int idx = 0;
  65. switch (module) {
  66. case DISP_MODULE_RDMA0:
  67. idx = 0;
  68. break;
  69. case DISP_MODULE_RDMA1:
  70. idx = 1;
  71. break;
  72. default:
  73. DDPERR("invalid rdma module=%d\n", module);// invalid module
  74. ASSERT(0);
  75. }
  76. return idx;
  77. }
  78. int RDMAStart(DISP_MODULE_ENUM module, void * handle)
  79. {
  80. unsigned int idx = rdma_index(module);
  81. unsigned int regval;
  82. ASSERT(idx <= RDMA_INSTANCES);
  83. regval = REG_FLD_VAL(INT_STATUS_FLD_REG_UPDATE_INT_FLAG, 0) |
  84. REG_FLD_VAL(INT_STATUS_FLD_FRAME_START_INT_FLAG, 1) |
  85. REG_FLD_VAL(INT_STATUS_FLD_FRAME_END_INT_FLAG, 1) |
  86. REG_FLD_VAL(INT_STATUS_FLD_EOF_ABNORMAL_INT_FLAG, 1) |
  87. REG_FLD_VAL(INT_STATUS_FLD_FIFO_UNDERFLOW_INT_FLAG, 1) |
  88. REG_FLD_VAL(INT_STATUS_FLD_TARGET_LINE_INT_FLAG, 0) |
  89. REG_FLD_VAL(INT_STATUS_FLD_FIFO_EMPTY_INT_FLAG, 0);
  90. #ifdef LK_BYPASS_SHADOW_REG
  91. /* bypass shadow */
  92. DISP_REG_SET(handle, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SHADOW_UPDATE, 0x6);
  93. #endif
  94. DISP_REG_SET(handle, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_INT_ENABLE, regval);
  95. DISP_REG_SET_FIELD(handle, GLOBAL_CON_FLD_ENGINE_EN,
  96. idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_GLOBAL_CON, 1);
  97. return 0;
  98. }
  99. int RDMAStop(DISP_MODULE_ENUM module,void * handle)
  100. {
  101. unsigned int idx = rdma_index(module);
  102. ASSERT(idx <= RDMA_INSTANCES);
  103. DISP_REG_SET_FIELD(handle,GLOBAL_CON_FLD_ENGINE_EN, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON, 0);
  104. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_ENABLE, 0);
  105. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS, 0);
  106. return 0;
  107. }
  108. int RDMAReset(DISP_MODULE_ENUM module,void * handle)
  109. {
  110. unsigned int delay_cnt=0;
  111. unsigned int idx = rdma_index(module);
  112. ASSERT(idx <= RDMA_INSTANCES);
  113. DISP_REG_SET_FIELD(handle,GLOBAL_CON_FLD_SOFT_RESET, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON, 1);
  114. while ((DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON)&0x700)==0x100) { //polling RESET_STATE is 0
  115. delay_cnt++;
  116. if (delay_cnt>10000) {
  117. DDPERR("RDMAReset(%d) timeout, stage 1! DISP_REG_RDMA_GLOBAL_CON=0x%x \n", idx, DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON));
  118. break;
  119. }
  120. }
  121. DISP_REG_SET_FIELD(handle,GLOBAL_CON_FLD_SOFT_RESET, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON, 0);
  122. delay_cnt =0;
  123. while ((DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON)&0x700)!=0x100) {
  124. delay_cnt++;
  125. if (delay_cnt>10000) {
  126. DDPERR("RDMAReset(%d) timeout, stage 2! DISP_REG_RDMA_GLOBAL_CON=0x%x \n", idx, DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON));
  127. break;
  128. }
  129. }
  130. return 0;
  131. }
  132. // set ultra registers
  133. void rdma_set_ultra(unsigned int idx, unsigned int width, unsigned int height, unsigned int bpp, unsigned int frame_rate,void * handle)
  134. {
  135. // constant
  136. static const unsigned int blank_overhead = 115; //it is 1.15, need to divide 100 later
  137. static const unsigned int rdma_fifo_width = 16; //in unit of byte
  138. static const unsigned int ultra_low_time = 4; //in unit of us
  139. static const unsigned int pre_ultra_low_time = 6; //in unit of us
  140. static const unsigned int pre_ultra_high_time = 7; //in unit of us
  141. static const unsigned int fifo_valid_line_ratio = 125; //valid size 1/8 line;
  142. static const unsigned int fifo_min_size = 32;
  143. // working variables
  144. unsigned int consume_levels_per_sec;
  145. unsigned int ultra_low_level;
  146. unsigned int pre_ultra_low_level;
  147. unsigned int pre_ultra_high_level;
  148. unsigned int ultra_high_ofs;
  149. unsigned int pre_ultra_low_ofs;
  150. unsigned int pre_ultra_high_ofs;
  151. unsigned int fifo_valid_size = 16;
  152. /* compute fifo valid size */
  153. fifo_valid_size = (width * bpp * fifo_valid_line_ratio) / (rdma_fifo_width * 1000);
  154. fifo_valid_size = fifo_valid_size > fifo_min_size ? fifo_valid_size : fifo_min_size;
  155. //consume_levels_per_sec = ((long long unsigned int)width*height*frame_rate*blank_overhead*bpp)/rdma_fifo_width/100;
  156. //change calculation order to prevent overflow of unsigned int
  157. consume_levels_per_sec = (width*height*frame_rate*bpp/rdma_fifo_width/100)*blank_overhead;
  158. // /1000000 for ultra_low_time in unit of us
  159. ultra_low_level = (unsigned int)(ultra_low_time * consume_levels_per_sec / 1000000 );
  160. pre_ultra_low_level = (unsigned int)(pre_ultra_low_time * consume_levels_per_sec / 1000000 );
  161. pre_ultra_high_level = (unsigned int)(pre_ultra_high_time * consume_levels_per_sec / 1000000 );
  162. pre_ultra_low_ofs = pre_ultra_low_level - ultra_low_level;
  163. ultra_high_ofs = 1;
  164. pre_ultra_high_ofs = pre_ultra_high_level - pre_ultra_low_level ;
  165. if (1) {
  166. ultra_low_level = 0x6b;
  167. pre_ultra_low_ofs = 0xa0;
  168. ultra_high_ofs = 1;
  169. pre_ultra_high_ofs = 1;
  170. }
  171. //write ultra_low_level, ultra_high_ofs, pre_ultra_low_ofs, pre_ultra_high_ofs into register DISP_RDMA_MEM_GMC_SETTING_0
  172. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_GMC_SETTING_0,
  173. ultra_low_level|(pre_ultra_low_ofs<<8)|(ultra_high_ofs<<16)|(pre_ultra_high_ofs<<24));
  174. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_GMC_SETTING_0, 0x1a01356b);
  175. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_OUTPUT_VALID_FIFO_THRESHOLD, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, fifo_valid_size);
  176. }
  177. // fixme: spec has no RDMA format, fix enum definition here
  178. int RDMAConfig(DISP_MODULE_ENUM module,
  179. enum RDMA_MODE mode,
  180. unsigned address,
  181. DpColorFormat inFormat,
  182. unsigned pitch,
  183. unsigned width,
  184. unsigned height,
  185. unsigned ufoe_enable,
  186. void * handle) // ourput setting
  187. {
  188. unsigned int output_is_yuv = 0;
  189. enum RDMA_INPUT_FORMAT inputFormat = rdma_input_format_convert(inFormat);
  190. unsigned int bpp = rdma_input_format_bpp(inputFormat);
  191. unsigned int input_is_yuv = rdma_input_format_color_space(inputFormat);
  192. unsigned int input_swap = rdma_input_format_byte_swap(inputFormat);
  193. unsigned int input_format_reg = rdma_input_format_reg_value(inputFormat);
  194. unsigned int idx = rdma_index(module);
  195. //DDPDBG("RDMAConfig idx %d, mode %d, address 0x%x, inputformat %d, input_swap %u, pitch %u, width %u, height %u\n",
  196. // idx, mode, address, inputFormat,input_swap, pitch,width, height);
  197. ASSERT(idx <= RDMA_INSTANCES);
  198. if ((width > RDMA_MAX_WIDTH) || (height > RDMA_MAX_HEIGHT)) {
  199. DDPERR("RDMA input overflow, w=%d, h=%d, max_w=%d, max_h=%d\n", width, height, RDMA_MAX_WIDTH, RDMA_MAX_HEIGHT);
  200. }
  201. if (input_is_yuv==1 && output_is_yuv==0) {
  202. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_ENABLE, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 1);
  203. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_INT_MTX_SEL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 0x6);
  204. // set color conversion matrix
  205. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C00, coef_rdma_601_y2r[0][0] );
  206. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C01, coef_rdma_601_y2r[0][1] );
  207. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C02, coef_rdma_601_y2r[0][2] );
  208. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C10, coef_rdma_601_y2r[1][0] );
  209. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C11, coef_rdma_601_y2r[1][1] );
  210. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C12, coef_rdma_601_y2r[1][2] );
  211. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C20, coef_rdma_601_y2r[2][0] );
  212. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C21, coef_rdma_601_y2r[2][1] );
  213. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C22, coef_rdma_601_y2r[2][2] );
  214. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_0, coef_rdma_601_y2r[3][0]);
  215. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_1, coef_rdma_601_y2r[3][1]);
  216. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_2, coef_rdma_601_y2r[3][2]);
  217. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_0, coef_rdma_601_y2r[4][0]);
  218. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_1, coef_rdma_601_y2r[4][1]);
  219. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_2, coef_rdma_601_y2r[4][2]);
  220. } else if (input_is_yuv==0 && output_is_yuv==1) {
  221. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_ENABLE, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 1);
  222. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_INT_MTX_SEL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 0x2);
  223. // set color conversion matrix
  224. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C00, coef_rdma_601_r2y[0][0] );
  225. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C01, coef_rdma_601_r2y[0][1] );
  226. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C02, coef_rdma_601_r2y[0][2] );
  227. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C10, coef_rdma_601_r2y[1][0] );
  228. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C11, coef_rdma_601_r2y[1][1] );
  229. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C12, coef_rdma_601_r2y[1][2] );
  230. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C20, coef_rdma_601_r2y[2][0] );
  231. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C21, coef_rdma_601_r2y[2][1] );
  232. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_C22, coef_rdma_601_r2y[2][2] );
  233. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_0, coef_rdma_601_r2y[3][0]);
  234. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_1, coef_rdma_601_r2y[3][1]);
  235. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_PRE_ADD_2, coef_rdma_601_r2y[3][2]);
  236. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_0, coef_rdma_601_r2y[4][0]);
  237. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_1, coef_rdma_601_r2y[4][1]);
  238. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_POST_ADD_2, coef_rdma_601_r2y[4][2]);
  239. } else {
  240. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_ENABLE, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 0);
  241. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_MATRIX_INT_MTX_SEL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, 0);
  242. }
  243. DISP_REG_SET_FIELD(handle,GLOBAL_CON_FLD_MODE_SEL, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_GLOBAL_CON, mode);
  244. // FORMAT & SWAP only works when RDMA memory mode, set both to 0 when RDMA direct link mode.
  245. DISP_REG_SET_FIELD(handle,MEM_CON_FLD_MEM_MODE_INPUT_FORMAT, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_CON, ((mode == RDMA_MODE_DIRECT_LINK) ? 0 : input_format_reg&0xf));
  246. DISP_REG_SET_FIELD(handle,MEM_CON_FLD_MEM_MODE_INPUT_SWAP, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_CON, ((mode == RDMA_MODE_DIRECT_LINK) ? 0 : input_swap));
  247. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_START_ADDR, address);
  248. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_MEM_SRC_PITCH, pitch);
  249. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_ENABLE, 0x1F);
  250. DISP_REG_SET_FIELD(handle,SIZE_CON_0_FLD_OUTPUT_FRAME_WIDTH, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_SIZE_CON_0, width);
  251. DISP_REG_SET_FIELD(handle,SIZE_CON_1_FLD_OUTPUT_FRAME_HEIGHT, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_SIZE_CON_1, height);
  252. rdma_set_ultra(idx, width, height, bpp, 60, handle);
  253. #if 1
  254. if (ufoe_enable==0) { //UFOE bypassed, enable RDMA underflow intr, else disable RDMA underflow intr
  255. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_FIFO_UNDERFLOW_EN, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, 1);
  256. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_OUTPUT_VALID_FIFO_THRESHOLD, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, 16);
  257. } else {
  258. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_FIFO_UNDERFLOW_EN, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, 1);
  259. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_OUTPUT_VALID_FIFO_THRESHOLD, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, width*3*3/16/2); //FHD:304, HD:203, QHD:151
  260. }
  261. DISP_REG_SET_FIELD(handle,FIFO_CON_FLD_FIFO_PSEUDO_SIZE, idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_FIFO_CON, 320);
  262. #endif
  263. return 0;
  264. }
  265. int RDMAWait(DISP_MODULE_ENUM module,void * handle)
  266. {
  267. unsigned int cnt = 0;
  268. unsigned int idx = rdma_index(module);
  269. // polling interrupt status
  270. while ((DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS) & 0x4) != 0x4) {
  271. cnt++;
  272. if (cnt>1000) {
  273. DDPERR("RDMA%dWait timeout! \n", idx);
  274. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS , 0x0);
  275. return -1;
  276. }
  277. }
  278. DDPMSG(" RDMA%dWait cnt=%d \n", idx, cnt);
  279. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS , 0x0);
  280. return 0;
  281. }
  282. void RDMASetTargetLine(DISP_MODULE_ENUM module, unsigned int line,void * handle)
  283. {
  284. unsigned int idx = rdma_index(module);
  285. DISP_REG_SET(handle,idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_TARGET_LINE, line);
  286. }
  287. static int RDMAPollingInterrupt(DISP_MODULE_ENUM module, int bit, int timeout)
  288. {
  289. unsigned int idx = rdma_index(module);
  290. unsigned int cnt = 0;
  291. unsigned int regval = 0;
  292. if (timeout <= 0) {
  293. while ((DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS) & bit)==0);
  294. cnt = 1;
  295. } else {
  296. // time need to update
  297. cnt = timeout*1000/100;
  298. while (cnt > 0) {
  299. cnt--;
  300. regval = DISP_REG_GET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS);
  301. if (regval & bit) {
  302. DISP_CPU_REG_SET(idx*DISP_RDMA_INDEX_OFFSET+ DISP_REG_RDMA_INT_STATUS, ~regval);
  303. break;
  304. }
  305. udelay(100);
  306. }
  307. }
  308. //should clear?
  309. DDPMSG(" RDMA%d polling interrupt ret =%d \n", idx, cnt);
  310. return cnt;
  311. }
  312. static enum RDMA_INPUT_FORMAT rdma_input_format_convert(DpColorFormat fmt)
  313. {
  314. enum RDMA_INPUT_FORMAT rdma_fmt = RDMA_INPUT_FORMAT_RGB565;
  315. switch (fmt) {
  316. case eBGR565 :
  317. rdma_fmt = RDMA_INPUT_FORMAT_BGR565 ;
  318. break;
  319. case eRGB888 :
  320. rdma_fmt = RDMA_INPUT_FORMAT_RGB888 ;
  321. break;
  322. case eRGBA8888 :
  323. rdma_fmt = RDMA_INPUT_FORMAT_RGBA8888 ;
  324. break;
  325. case eARGB8888 :
  326. rdma_fmt = RDMA_INPUT_FORMAT_ARGB8888 ;
  327. break;
  328. case eVYUY :
  329. rdma_fmt = RDMA_INPUT_FORMAT_VYUY ;
  330. break;
  331. case eYVYU :
  332. rdma_fmt = RDMA_INPUT_FORMAT_YVYU ;
  333. break;
  334. case eRGB565 :
  335. rdma_fmt = RDMA_INPUT_FORMAT_RGB565 ;
  336. break;
  337. case eBGR888 :
  338. rdma_fmt = RDMA_INPUT_FORMAT_BGR888 ;
  339. break;
  340. case eBGRA8888 :
  341. rdma_fmt = RDMA_INPUT_FORMAT_BGRA8888 ;
  342. break;
  343. case eABGR8888 :
  344. rdma_fmt = RDMA_INPUT_FORMAT_ABGR8888 ;
  345. break;
  346. case eUYVY :
  347. rdma_fmt = RDMA_INPUT_FORMAT_UYVY ;
  348. break;
  349. case eYUY2 :
  350. rdma_fmt = RDMA_INPUT_FORMAT_YUYV ;
  351. break;
  352. default:
  353. DDPERR("rdma_fmt_convert fmt=%d, rdma_fmt=%d \n", fmt, rdma_fmt);
  354. }
  355. return rdma_fmt;
  356. }
  357. static unsigned int rdma_input_format_byte_swap(enum RDMA_INPUT_FORMAT inputFormat)
  358. {
  359. int input_swap = 0;
  360. switch (inputFormat) {
  361. case RDMA_INPUT_FORMAT_BGR565:
  362. case RDMA_INPUT_FORMAT_RGB888:
  363. case RDMA_INPUT_FORMAT_RGBA8888:
  364. case RDMA_INPUT_FORMAT_ARGB8888:
  365. case RDMA_INPUT_FORMAT_VYUY:
  366. case RDMA_INPUT_FORMAT_YVYU:
  367. input_swap = 1;
  368. break;
  369. case RDMA_INPUT_FORMAT_RGB565:
  370. case RDMA_INPUT_FORMAT_BGR888:
  371. case RDMA_INPUT_FORMAT_BGRA8888:
  372. case RDMA_INPUT_FORMAT_ABGR8888:
  373. case RDMA_INPUT_FORMAT_UYVY:
  374. case RDMA_INPUT_FORMAT_YUYV:
  375. input_swap = 0;
  376. break;
  377. default:
  378. DDPERR("unknow RDMA input format is %d\n", inputFormat);
  379. ASSERT(0);
  380. }
  381. return input_swap;
  382. }
  383. static unsigned int rdma_input_format_bpp(enum RDMA_INPUT_FORMAT inputFormat)
  384. {
  385. int bpp = 0;
  386. switch (inputFormat) {
  387. case RDMA_INPUT_FORMAT_BGR565:
  388. case RDMA_INPUT_FORMAT_RGB565:
  389. case RDMA_INPUT_FORMAT_VYUY:
  390. case RDMA_INPUT_FORMAT_UYVY:
  391. case RDMA_INPUT_FORMAT_YVYU:
  392. case RDMA_INPUT_FORMAT_YUYV:
  393. bpp = 2;
  394. break;
  395. case RDMA_INPUT_FORMAT_RGB888:
  396. case RDMA_INPUT_FORMAT_BGR888:
  397. bpp = 3;
  398. break;
  399. case RDMA_INPUT_FORMAT_ARGB8888:
  400. case RDMA_INPUT_FORMAT_ABGR8888:
  401. case RDMA_INPUT_FORMAT_RGBA8888:
  402. case RDMA_INPUT_FORMAT_BGRA8888:
  403. bpp = 4;
  404. break;
  405. default:
  406. DDPERR("unknown RDMA input format = %d\n", inputFormat);
  407. ASSERT(0);
  408. }
  409. return bpp;
  410. }
  411. static unsigned int rdma_input_format_color_space(enum RDMA_INPUT_FORMAT inputFormat)
  412. {
  413. int space = 0;
  414. switch (inputFormat) {
  415. case RDMA_INPUT_FORMAT_BGR565:
  416. case RDMA_INPUT_FORMAT_RGB565:
  417. case RDMA_INPUT_FORMAT_RGB888:
  418. case RDMA_INPUT_FORMAT_BGR888:
  419. case RDMA_INPUT_FORMAT_RGBA8888:
  420. case RDMA_INPUT_FORMAT_BGRA8888:
  421. case RDMA_INPUT_FORMAT_ARGB8888:
  422. case RDMA_INPUT_FORMAT_ABGR8888:
  423. space = 0;
  424. break;
  425. case RDMA_INPUT_FORMAT_VYUY:
  426. case RDMA_INPUT_FORMAT_UYVY:
  427. case RDMA_INPUT_FORMAT_YVYU:
  428. case RDMA_INPUT_FORMAT_YUYV:
  429. space = 1;
  430. break;
  431. default:
  432. DDPERR("unknown RDMA input format = %d\n", inputFormat);
  433. ASSERT(0);
  434. }
  435. return space;
  436. }
  437. static unsigned int rdma_input_format_reg_value(enum RDMA_INPUT_FORMAT inputFormat)
  438. {
  439. int reg_value = 0;
  440. switch (inputFormat) {
  441. case RDMA_INPUT_FORMAT_BGR565:
  442. case RDMA_INPUT_FORMAT_RGB565:
  443. reg_value = 0x0;
  444. break;
  445. case RDMA_INPUT_FORMAT_RGB888:
  446. case RDMA_INPUT_FORMAT_BGR888:
  447. reg_value = 0x1;
  448. break;
  449. case RDMA_INPUT_FORMAT_RGBA8888:
  450. case RDMA_INPUT_FORMAT_BGRA8888:
  451. reg_value = 0x2;
  452. break;
  453. case RDMA_INPUT_FORMAT_ARGB8888:
  454. case RDMA_INPUT_FORMAT_ABGR8888:
  455. reg_value = 0x3;
  456. break;
  457. case RDMA_INPUT_FORMAT_VYUY:
  458. case RDMA_INPUT_FORMAT_UYVY:
  459. reg_value = 0x4;
  460. break;
  461. case RDMA_INPUT_FORMAT_YVYU:
  462. case RDMA_INPUT_FORMAT_YUYV:
  463. reg_value = 0x5;
  464. break;
  465. default:
  466. DDPERR("unknow RDMA input format is %d\n", inputFormat);
  467. ASSERT(0);
  468. }
  469. return reg_value;
  470. }
  471. static char * rdma_intput_format_name(int reg )
  472. {
  473. switch (reg) {
  474. case 0:
  475. return "rgb565";
  476. case 1:
  477. return "rgb888";
  478. case 2:
  479. return "rgba8888";
  480. case 3:
  481. return "argb8888";
  482. case 4:
  483. return "uyvy";
  484. case 5:
  485. return "yuyv";
  486. default:
  487. DDPMSG("rdma unknown reg=%d\n", reg);
  488. return "unknown";
  489. }
  490. }
  491. static int RDMAClockOn(DISP_MODULE_ENUM module,void * handle)
  492. {
  493. unsigned int idx = rdma_index(module);
  494. ddp_enable_module_clock(module);
  495. DDPMSG("RDMA%dClockOn CG 0x%x \n",idx, DISP_REG_GET(DISP_REG_CONFIG_MMSYS_CG_CON0));
  496. return 0;
  497. }
  498. static int RDMAClockOff(DISP_MODULE_ENUM module,void * handle)
  499. {
  500. unsigned int idx = rdma_index(module);
  501. DDPMSG("RDMA%dClockOff\n",idx);
  502. ddp_disable_module_clock(module);
  503. return 0;
  504. }
  505. static int RDMAInit(DISP_MODULE_ENUM module,void * handle)
  506. {
  507. ddp_enable_module_clock(module);
  508. return 0;
  509. }
  510. static int RDMADeInit(DISP_MODULE_ENUM module,void * handle)
  511. {
  512. unsigned int idx = rdma_index(module);
  513. DDPMSG("RDMA%dDeinit\n",idx);
  514. ddp_disable_module_clock(module);
  515. return 0;
  516. }
  517. void RDMADump(DISP_MODULE_ENUM module)
  518. {
  519. unsigned int idx = rdma_index(module);
  520. DDPDUMP("== DISP RDMA%d REGS ==\n", idx);
  521. DDPDUMP("(0x000)R_INTEN=0x%x\n",
  522. DISP_REG_GET(DISP_REG_RDMA_INT_ENABLE + DISP_RDMA_INDEX_OFFSET * idx));
  523. DDPDUMP("(0x004)R_INTS=0x%x\n",
  524. DISP_REG_GET(DISP_REG_RDMA_INT_STATUS + DISP_RDMA_INDEX_OFFSET * idx));
  525. DDPDUMP("(0x010)R_CON=0x%x\n",
  526. DISP_REG_GET(DISP_REG_RDMA_GLOBAL_CON + DISP_RDMA_INDEX_OFFSET * idx));
  527. DDPDUMP("(0x014)R_SIZE0=0x%x\n",
  528. DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_0 + DISP_RDMA_INDEX_OFFSET * idx));
  529. DDPDUMP("(0x018)R_SIZE1=0x%x\n",
  530. DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_1 + DISP_RDMA_INDEX_OFFSET * idx));
  531. DDPDUMP("(0x01c)R_TAR_LINE=0x%x\n",
  532. DISP_REG_GET(DISP_REG_RDMA_TARGET_LINE + DISP_RDMA_INDEX_OFFSET * idx));
  533. DDPDUMP("(0x024)R_M_CON=0x%x\n",
  534. DISP_REG_GET(DISP_REG_RDMA_MEM_CON + DISP_RDMA_INDEX_OFFSET * idx));
  535. DDPDUMP("(0xf00)R_M_S_ADDR=0x%x\n",
  536. DISP_REG_GET(DISP_REG_RDMA_MEM_START_ADDR + DISP_RDMA_INDEX_OFFSET * idx));
  537. DDPDUMP("(0x02c)R_M_SRC_PITCH=0x%x\n",
  538. DISP_REG_GET(DISP_REG_RDMA_MEM_SRC_PITCH + DISP_RDMA_INDEX_OFFSET * idx));
  539. DDPDUMP("(0x030)R_M_GMC_SET0=0x%x\n",
  540. DISP_REG_GET(DISP_REG_RDMA_MEM_GMC_SETTING_0 + DISP_RDMA_INDEX_OFFSET * idx));
  541. DDPDUMP("(0x034)R_M_GMC_SET1=0x%x\n",
  542. DISP_REG_GET(DISP_REG_RDMA_MEM_GMC_SETTING_1 + DISP_RDMA_INDEX_OFFSET * idx));
  543. DDPDUMP("(0x038)R_M_SLOW_CON=0x%x\n",
  544. DISP_REG_GET(DISP_REG_RDMA_MEM_SLOW_CON + DISP_RDMA_INDEX_OFFSET * idx));
  545. DDPDUMP("(0x03c)R_M_GMC_SET2=0x%x\n",
  546. DISP_REG_GET(DISP_REG_RDMA_MEM_GMC_SETTING_2 + DISP_RDMA_INDEX_OFFSET * idx));
  547. DDPDUMP("(0x040)R_FIFO_CON=0x%x\n",
  548. DISP_REG_GET(DISP_REG_RDMA_FIFO_CON + DISP_RDMA_INDEX_OFFSET * idx));
  549. DDPDUMP("(0x044)R_FIFO_LOG=0x%x\n",
  550. DISP_REG_GET(DISP_REG_RDMA_FIFO_LOG + DISP_RDMA_INDEX_OFFSET * idx));
  551. DDPDUMP("(0x078)R_PRE_ADD0=0x%x\n",
  552. DISP_REG_GET(DISP_REG_RDMA_PRE_ADD_0 + DISP_RDMA_INDEX_OFFSET * idx));
  553. DDPDUMP("(0x07c)R_PRE_ADD1=0x%x\n",
  554. DISP_REG_GET(DISP_REG_RDMA_PRE_ADD_1 + DISP_RDMA_INDEX_OFFSET * idx));
  555. DDPDUMP("(0x080)R_PRE_ADD2=0x%x\n",
  556. DISP_REG_GET(DISP_REG_RDMA_PRE_ADD_2 + DISP_RDMA_INDEX_OFFSET * idx));
  557. DDPDUMP("(0x084)R_POST_ADD0=0x%x\n",
  558. DISP_REG_GET(DISP_REG_RDMA_POST_ADD_0 + DISP_RDMA_INDEX_OFFSET * idx));
  559. DDPDUMP("(0x088)R_POST_ADD1=0x%x\n",
  560. DISP_REG_GET(DISP_REG_RDMA_POST_ADD_1 + DISP_RDMA_INDEX_OFFSET * idx));
  561. DDPDUMP("(0x08c)R_POST_ADD2=0x%x\n",
  562. DISP_REG_GET(DISP_REG_RDMA_POST_ADD_2 + DISP_RDMA_INDEX_OFFSET * idx));
  563. DDPDUMP("(0x090)R_DUMMY=0x%x\n",
  564. DISP_REG_GET(DISP_REG_RDMA_DUMMY + DISP_RDMA_INDEX_OFFSET * idx));
  565. DDPDUMP("(0x094)R_OUT_SEL=0x%x\n",
  566. DISP_REG_GET(DISP_REG_RDMA_DEBUG_OUT_SEL + DISP_RDMA_INDEX_OFFSET * idx));
  567. DDPDUMP("(0x094)R_M_START=0x%x\n",
  568. DISP_REG_GET(DISP_REG_RDMA_MEM_START_ADDR + DISP_RDMA_INDEX_OFFSET * idx));
  569. DDPDUMP("(0x0a0)R_BG_CON_0=0x%x\n",
  570. DISP_REG_GET(DISP_REG_RDMA_BG_CON_0 + DISP_RDMA_INDEX_OFFSET * idx));
  571. DDPDUMP("(0x0a4)R_BG_CON_1=0x%x\n",
  572. DISP_REG_GET(DISP_REG_RDMA_BG_CON_1 + DISP_RDMA_INDEX_OFFSET * idx));
  573. DDPDUMP("(0x0a8)R_FOR_SODI=0x%x\n",
  574. DISP_REG_GET(DISP_REG_RDMA_THRESHOLD_FOR_SODI + DISP_RDMA_INDEX_OFFSET * idx));
  575. DDPDUMP("(0x0ac)R_FOR_DVFS=0x%x\n",
  576. DISP_REG_GET(DISP_REG_RDMA_THRESHOLD_FOR_DVFS + DISP_RDMA_INDEX_OFFSET * idx));
  577. DDPDUMP("(0x0b0)R_FOR_SRAM=0x%x\n",
  578. DISP_REG_GET(DISP_REG_RDMA_SRAM_SEL + DISP_RDMA_INDEX_OFFSET * idx));
  579. DDPDUMP("(0x0b4)DISP_REG_RDMA_STALL_CG_CON=0x%x\n",
  580. DISP_REG_GET(DISP_REG_RDMA_STALL_CG_CON + DISP_RDMA_INDEX_OFFSET * idx));
  581. DDPDUMP("(0x0f0)R_IN_PXL_CNT=0x%x\n",
  582. DISP_REG_GET(DISP_REG_RDMA_IN_P_CNT + DISP_RDMA_INDEX_OFFSET * idx));
  583. DDPDUMP("(0x0f4)R_IN_LINE_CNT=0x%x\n",
  584. DISP_REG_GET(DISP_REG_RDMA_IN_LINE_CNT + DISP_RDMA_INDEX_OFFSET * idx));
  585. DDPDUMP("(0x0f8)R_OUT_PXL_CNT=0x%x\n",
  586. DISP_REG_GET(DISP_REG_RDMA_OUT_P_CNT + DISP_RDMA_INDEX_OFFSET * idx));
  587. DDPDUMP("(0x0fc)R_OUT_LINE_CNT=0x%x\n",
  588. DISP_REG_GET(DISP_REG_RDMA_OUT_LINE_CNT + DISP_RDMA_INDEX_OFFSET * idx));
  589. DDPDUMP("(0x100)R_DBG_OUT=0x%x\n",
  590. DISP_REG_GET(DISP_REG_RDMA_DBG_OUT + DISP_RDMA_INDEX_OFFSET * idx));
  591. DISP_REG_SET(NULL, DISP_REG_RDMA_INT_STATUS + DISP_RDMA_INDEX_OFFSET * idx, 0);
  592. }
  593. void rdma_dump_analysis(DISP_MODULE_ENUM module)
  594. {
  595. unsigned int idx = rdma_index(module);
  596. unsigned int global_ctrl = DISP_REG_GET(DISP_REG_RDMA_GLOBAL_CON + DISP_RDMA_INDEX_OFFSET * idx);
  597. unsigned int bg0 = DISP_REG_GET(idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_BG_CON_0);
  598. unsigned int bg1 = DISP_REG_GET(idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_BG_CON_1);
  599. DDPDUMP("== DISP RDMA%d ANALYSIS ==\n", idx);
  600. DDPDUMP("rdma%d: en=%d,memory_mode=%d,smi_busy=%d,w=%d,h=%d,pitch=%d,addr=0x%x,fmt=%s,fifo_min=%d,\n",
  601. idx, REG_FLD_VAL_GET(GLOBAL_CON_FLD_ENGINE_EN, global_ctrl),
  602. REG_FLD_VAL_GET(GLOBAL_CON_FLD_MODE_SEL, global_ctrl),
  603. REG_FLD_VAL_GET(GLOBAL_CON_FLD_SMI_BUSY, global_ctrl),
  604. DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_0 + DISP_RDMA_INDEX_OFFSET * idx) & 0xfff,
  605. DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_1 + DISP_RDMA_INDEX_OFFSET * idx) & 0xfffff,
  606. DISP_REG_GET(DISP_REG_RDMA_MEM_SRC_PITCH + DISP_RDMA_INDEX_OFFSET * idx),
  607. DISP_REG_GET(DISP_REG_RDMA_MEM_START_ADDR + DISP_RDMA_INDEX_OFFSET * idx),
  608. rdma_intput_format_name((DISP_REG_GET(DISP_REG_RDMA_MEM_CON+DISP_RDMA_INDEX_OFFSET*idx)>>4)&0xf),
  609. DISP_REG_GET(DISP_REG_RDMA_FIFO_LOG + DISP_RDMA_INDEX_OFFSET * idx));
  610. DDPDUMP("in_p=%d,in_l=%d,out_p=%d,out_l=%d,bg(t%d,b%d,l%d,r%d)\n",
  611. DISP_REG_GET(DISP_REG_RDMA_IN_P_CNT + DISP_RDMA_INDEX_OFFSET * idx),
  612. DISP_REG_GET(DISP_REG_RDMA_IN_LINE_CNT + DISP_RDMA_INDEX_OFFSET * idx),
  613. DISP_REG_GET(DISP_REG_RDMA_OUT_P_CNT + DISP_RDMA_INDEX_OFFSET * idx),
  614. DISP_REG_GET(DISP_REG_RDMA_OUT_LINE_CNT + DISP_RDMA_INDEX_OFFSET * idx),
  615. REG_FLD_VAL_GET(RDMA_BG_CON_1_TOP, bg1),
  616. REG_FLD_VAL_GET(RDMA_BG_CON_1_BOTTOM, bg1),
  617. REG_FLD_VAL_GET(RDMA_BG_CON_0_LEFT, bg0),
  618. REG_FLD_VAL_GET(RDMA_BG_CON_0_RIGHT, bg0)
  619. );
  620. }
  621. static int RDMAConfig_l(DISP_MODULE_ENUM module, disp_ddp_path_config* pConfig, void* handle)
  622. {
  623. RDMA_CONFIG_STRUCT * rdma_config = & pConfig->rdma_config;
  624. enum RDMA_MODE mode = rdma_config->address ? RDMA_MODE_MEMORY : RDMA_MODE_DIRECT_LINK;
  625. LCM_DSI_PARAMS *lcm_config = &(pConfig->dsi_config);
  626. if (pConfig->dst_dirty) {
  627. //config to direct link mode
  628. RDMAConfig(module,
  629. RDMA_MODE_DIRECT_LINK, // link mode
  630. 0, // address
  631. eRGB888, // inputFormat
  632. 0, // pitch
  633. pConfig->dst_w, // width
  634. pConfig->dst_h, // height
  635. lcm_config->ufoe_enable,
  636. handle);
  637. } else if (pConfig->rdma_dirty) {
  638. // decouple mode may use
  639. RDMAConfig(module,
  640. mode, // link mode
  641. (mode == RDMA_MODE_DIRECT_LINK) ? 0 : rdma_config->address, // address
  642. (mode == RDMA_MODE_DIRECT_LINK) ? eRGB888 : rdma_config->inputFormat, // inputFormat
  643. (mode == RDMA_MODE_DIRECT_LINK) ? 0 : rdma_config->pitch, // pitch
  644. rdma_config->width, // width
  645. rdma_config->height, // height
  646. lcm_config->ufoe_enable,
  647. handle);
  648. }
  649. return 0;
  650. }
  651. void rdma_enable_color_transform(DISP_MODULE_ENUM module)
  652. {
  653. unsigned int idx = rdma_index(module);
  654. UINT32 value = DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_0 + DISP_RDMA_INDEX_OFFSET * idx);
  655. value = value | REG_FLD_VAL((SIZE_CON_0_FLD_MATRIX_EXT_MTX_EN), 1) |
  656. REG_FLD_VAL((SIZE_CON_0_FLD_MATRIX_ENABLE), 1);
  657. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, value);
  658. }
  659. void rdma_disable_color_transform(DISP_MODULE_ENUM module)
  660. {
  661. unsigned int idx = rdma_index(module);
  662. UINT32 value = DISP_REG_GET(DISP_REG_RDMA_SIZE_CON_0 + DISP_RDMA_INDEX_OFFSET * idx);
  663. value = value | REG_FLD_VAL((SIZE_CON_0_FLD_MATRIX_EXT_MTX_EN), 0) |
  664. REG_FLD_VAL((SIZE_CON_0_FLD_MATRIX_ENABLE), 0);
  665. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_SIZE_CON_0, value);
  666. }
  667. void rdma_set_color_matrix(DISP_MODULE_ENUM module,
  668. rdma_color_matrix *matrix,
  669. rdma_color_pre *pre,
  670. rdma_color_post *post)
  671. {
  672. unsigned int idx = rdma_index(module);
  673. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C00, matrix->C00);
  674. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C01, matrix->C01);
  675. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C02, matrix->C02);
  676. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C10, matrix->C10);
  677. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C11, matrix->C11);
  678. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C12, matrix->C12);
  679. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C20, matrix->C20);
  680. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C21, matrix->C21);
  681. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_C22, matrix->C22);
  682. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_PRE_ADD_0, pre->ADD0);
  683. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_PRE_ADD_1, pre->ADD1);
  684. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_PRE_ADD_2, pre->ADD2);
  685. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_POST_ADD_0, post->ADD0);
  686. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_POST_ADD_1, post->ADD1);
  687. DISP_REG_SET(NULL, idx * DISP_RDMA_INDEX_OFFSET + DISP_REG_RDMA_POST_ADD_2, post->ADD2);
  688. }
  689. DDP_MODULE_DRIVER ddp_driver_rdma = {
  690. .module = DISP_MODULE_RDMA0,
  691. .init = RDMAInit,
  692. .deinit = RDMADeInit,
  693. .config = RDMAConfig_l,
  694. .start = RDMAStart,
  695. .trigger = NULL,
  696. .stop = RDMAStop,
  697. .reset = RDMAReset,
  698. .power_on = RDMAClockOn,
  699. .power_off = RDMAClockOff,
  700. .is_idle = NULL,
  701. .is_busy = NULL,
  702. .dump_info = NULL,
  703. .bypass = NULL,
  704. .build_cmdq = NULL,
  705. .set_lcm_utils = NULL,
  706. .polling_irq = RDMAPollingInterrupt,
  707. };