h070d_18dm.c 19 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. * The following software/firmware and/or related documentation ("MediaTek Software")
  32. * have been modified by MediaTek Inc. All revisions are subject to any receiver\'s
  33. * applicable license agreements with MediaTek Inc.
  34. */
  35. #ifndef BUILD_LK
  36. #include <linux/string.h>
  37. #endif
  38. #ifdef BUILD_LK
  39. #include <platform/mt_gpio.h>
  40. #include <platform/mt_pmic.h>
  41. #include <platform/mt_i2c.h>
  42. #include <platform/upmu_common.h>
  43. #include <debug.h>
  44. #elif (defined BUILD_UBOOT)
  45. #include <asm/arch/mt6577_gpio.h>
  46. #else
  47. #include <mach/mt_gpio.h>
  48. #include <linux/xlog.h>
  49. #include "mt8193_iic.h"
  50. #include <mach/mt_pm_ldo.h>
  51. #include <mach/upmu_common.h>
  52. #endif
  53. #include "lcm_drv.h"
  54. #include "mt8193_lvds.h"
  55. //#include <mach/upmu_common.h>
  56. // ---------------------------------------------------------------------------
  57. // Local Constants
  58. // ---------------------------------------------------------------------------
  59. #define FRAME_WIDTH (1024)
  60. #define FRAME_HEIGHT (600)
  61. #define GPIO_LCD_PWR_EN GPIO115
  62. //#define GPIO_SHIFT_EN GPIO117
  63. #define GPIO_LCD_RST_EN GPIO119
  64. #define GPIO_LCD_STB_EN GPIO118
  65. #define HSYNC_PULSE_WIDTH 10
  66. #define HSYNC_BACK_PORCH 155
  67. #define HSYNC_FRONT_PORCH 155
  68. #define VSYNC_PULSE_WIDTH 3
  69. #define VSYNC_BACK_PORCH 13
  70. #define VSYNC_FRONT_PORCH 12
  71. #define LCD_DATA_FORMAT LCD_DATA_FORMAT_VESA8BIT
  72. #define V_TOTAL (FRAME_HEIGHT + VSYNC_PULSE_WIDTH + VSYNC_BACK_PORCH + VSYNC_FRONT_PORCH)
  73. #define H_TOTAL (FRAME_WIDTH + HSYNC_PULSE_WIDTH + HSYNC_BACK_PORCH + HSYNC_FRONT_PORCH)
  74. #define H_START (HSYNC_PULSE_WIDTH + HSYNC_BACK_PORCH)
  75. #define H_END (H_START + FRAME_WIDTH - 1)
  76. #define V_START (VSYNC_PULSE_WIDTH + VSYNC_BACK_PORCH)
  77. #define V_END (V_START + FRAME_HEIGHT - 1)
  78. #define V_DELAY 0x0002 //Fixed Value
  79. #define H_DELAY (FRAME_WIDTH + HSYNC_PULSE_WIDTH + HSYNC_BACK_PORCH + HSYNC_FRONT_PORCH - V_DELAY)
  80. #ifdef BUILD_LK
  81. #define MT8193_REG_WRITE(add, data) mt8193_reg_i2c_write(add, data)
  82. #define MT8193_REG_READ(add) mt8193_reg_i2c_read(add)
  83. #elif (defined BUILD_UBOOT)
  84. // do nothing in uboot
  85. #else
  86. extern int mt8193_i2c_write(u16 addr, u32 data);
  87. extern int mt8193_i2c_read(u16 addr, u32 *data);
  88. #define MT8193_REG_WRITE(add, data) mt8193_i2c_write(add, data)
  89. #define MT8193_REG_READ(add) lcm_mt8193_i2c_read(add)
  90. #endif
  91. // ---------------------------------------------------------------------------
  92. // Local Variables
  93. // ---------------------------------------------------------------------------
  94. static LCM_UTIL_FUNCS lcm_util = {0};
  95. #define SET_RESET_PIN(v) (mt_set_reset_pin((v)))
  96. #define UDELAY(n) (lcm_util.udelay(n))
  97. #define MDELAY(n) (lcm_util.mdelay(n))
  98. // ---------------------------------------------------------------------------
  99. // Local Functions
  100. // ---------------------------------------------------------------------------
  101. static __inline void send_ctrl_cmd(unsigned int cmd)
  102. {
  103. }
  104. static __inline void send_data_cmd(unsigned int data)
  105. {
  106. }
  107. static __inline void set_lcm_register(unsigned int regIndex,
  108. unsigned int regData)
  109. {
  110. }
  111. static void lcm_set_gpio_output(unsigned int GPIO, unsigned int output)
  112. {
  113. mt_set_gpio_mode(GPIO, GPIO_MODE_00);
  114. mt_set_gpio_dir(GPIO, GPIO_DIR_OUT);
  115. mt_set_gpio_out(GPIO, (output>0)? GPIO_OUT_ONE: GPIO_OUT_ZERO);
  116. }
  117. // ---------------------------------------------------------------------------
  118. // LCM Driver Implementations
  119. // ---------------------------------------------------------------------------
  120. static void lcm_set_util_funcs(const LCM_UTIL_FUNCS *util)
  121. {
  122. memcpy(&lcm_util, util, sizeof(LCM_UTIL_FUNCS));
  123. }
  124. #ifdef BUILD_LK
  125. #define I2C_CH I2C0
  126. #define MT8193_I2C_ADDR 0x3A
  127. int mt8193_reg_i2c_write(u16 addr, u32 data)
  128. {
  129. u8 buffer[8];
  130. u8 lens;
  131. U32 ret_code = 0;
  132. if(((addr >> 8) & 0xFF) >= 0x80) // 8 bit : fast mode
  133. {
  134. buffer[0] = (addr >> 8) & 0xFF;
  135. buffer[1] = (data >> 24) & 0xFF;
  136. buffer[2] = (data >> 16) & 0xFF;
  137. buffer[3] = (data >> 8) & 0xFF;
  138. buffer[4] = data & 0xFF;
  139. lens = 5;
  140. }
  141. else // 16 bit : noraml mode
  142. {
  143. buffer[0] = (addr >> 8) & 0xFF;
  144. buffer[1] = addr & 0xFF;
  145. buffer[2] = (data >> 24) & 0xFF;
  146. buffer[3] = (data >> 16) & 0xFF;
  147. buffer[4] = (data >> 8) & 0xFF;
  148. buffer[5] = data & 0xFF;
  149. lens = 6;
  150. }
  151. ret_code = mt_i2c_write(I2C_CH, MT8193_I2C_ADDR, buffer, lens, 0); // 0:I2C_PATH_NORMAL
  152. if (ret_code != 0)
  153. {
  154. printf("[LK/LCM] mt8193_reg_i2c_write reg[0x%X] fail, Error code [0x%X] \n", addr, ret_code);
  155. return ret_code;
  156. }
  157. printf("[LK/LCM] mt8193_reg_i2c_write reg[0x%X] = 0x%X\n", addr, data);
  158. return 0;
  159. }
  160. u32 mt8193_reg_i2c_read(u16 addr)
  161. {
  162. u8 buffer[8] = {0};
  163. u8 lens;
  164. u32 ret_code = 0;
  165. u32 data;
  166. if(((addr >> 8) & 0xFF) >= 0x80) // 8 bit : fast mode
  167. {
  168. buffer[0] = (addr >> 8) & 0xFF;
  169. lens = 1;
  170. }
  171. else // 16 bit : noraml mode
  172. {
  173. buffer[0] = ( addr >> 8 ) & 0xFF;
  174. buffer[1] = addr & 0xFF;
  175. lens = 2;
  176. }
  177. ret_code = mt_i2c_write(I2C_CH, MT8193_I2C_ADDR, buffer, lens, 0); // set register command
  178. if (ret_code != 0)
  179. return ret_code;
  180. lens = 4;
  181. ret_code = mt_i2c_read(I2C_CH, MT8193_I2C_ADDR, buffer, lens, 0);
  182. if (ret_code != 0)
  183. {
  184. printf("[LK/LCM] mt8193_reg_i2c_read reg[0x%X] fail, Error code [0x%X] \n", addr, ret_code);
  185. return ret_code;
  186. }
  187. data = (buffer[3] << 24) | (buffer[2] << 16) | (buffer[1] << 8) | (buffer[0]); //LSB fisrt
  188. printf("[LK/LCM] mt8193_reg_i2c_read reg[0x%X] = 0x%X\n", addr, data);
  189. return data;
  190. }
  191. #elif (defined BUILD_UBOOT)
  192. // do nothing in uboot
  193. #else
  194. u32 lcm_mt8193_i2c_read(u16 addr)
  195. {
  196. u32 u4Reg = 0;
  197. u32 ret_code = 0;
  198. ret_code = mt8193_i2c_read(addr, &u4Reg);
  199. if (ret_code != 0)
  200. {
  201. return ret_code;
  202. }
  203. return u4Reg;
  204. }
  205. #endif
  206. static void lcm_mt8193_set_ckgen(void)
  207. {
  208. u32 u4Reg = 0;
  209. u4Reg = MT8193_REG_READ(REG_PLL_GPANACFG0);
  210. u4Reg&=(~(0x7c000000)); //clear bit 26~30
  211. u4Reg |= (RG_PLL1_FBDIV | RG_PLL1_PREDIV | RG_PLL1_RST_DLY | RG_PLL1_LF | RG_PLL1_MONCKEN | RG_PLL1_VODEN | RG_NFIPLL_EN);
  212. MT8193_REG_WRITE(REG_PLL_GPANACFG0, u4Reg);
  213. u4Reg = MT8193_REG_READ(RG_LVDSWRAP_CTRL1);
  214. u4Reg&=(~(0x0000000f)); //clear bit 0~3
  215. u4Reg |= (RG_DCXO_POR_MON_EN | RG_PLL1_DIV);
  216. MT8193_REG_WRITE(RG_LVDSWRAP_CTRL1, u4Reg);
  217. UDELAY(200);
  218. MT8193_REG_WRITE(REG_LVDS_ANACFG2, (RG_VPLL_BC | RG_VPLL_BIC | RG_VPLL_BIR | RG_VPLL_BP | RG_VPLL_BR));
  219. u4Reg = 0;
  220. u4Reg |= (RG_VPLL_DIV | RG_VPLL_DPIX_CKSEL | RG_LVDS_DELAY | RG_VPLL_MKVCO |RG_VPLL_POSTDIV_EN);
  221. MT8193_REG_WRITE(REG_LVDS_ANACFG3, u4Reg);
  222. UDELAY(200);
  223. u4Reg &= (~(RG_VPLL_POSTDIV_EN));
  224. MT8193_REG_WRITE(REG_LVDS_ANACFG3, u4Reg);
  225. }
  226. static void lcm_mt8193_set_lvds_analog(void)
  227. {
  228. MT8193_REG_WRITE(REG_LVDS_ANACFG4, (RG_BYPASS | RG_LVDS_BYPASS));
  229. MT8193_REG_WRITE(REG_LVDS_ANACFG0, (RG_LVDS_ATERM_EN | RG_LVDS_APSRC | RG_LVDS_ANSRC | RG_LVDS_ATVCM | RG_LVDS_ATVO));
  230. MT8193_REG_WRITE(REG_LVDS_ANACFG1, 0x00000000);
  231. MDELAY(10);
  232. }
  233. static void lcm_mt8193_ckgen_power_on(void)
  234. {
  235. u32 u4Reg = 0;
  236. u4Reg = MT8193_REG_READ(REG_PLL_GPANACFG0);
  237. u4Reg |= RG_PLL1_EN;
  238. MT8193_REG_WRITE(REG_PLL_GPANACFG0, u4Reg);
  239. UDELAY(200);
  240. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG2);
  241. u4Reg &= (~(RG_VPLL_BG_PD | RG_VPLL_BIAS_PD));
  242. MT8193_REG_WRITE(REG_LVDS_ANACFG2, u4Reg);
  243. UDELAY(200);
  244. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG4);
  245. u4Reg &= (~(RG_VPLL_PD));
  246. MT8193_REG_WRITE(REG_LVDS_ANACFG4, u4Reg);
  247. UDELAY(200);
  248. u4Reg &= (~(RG_VPLL_RST));
  249. MT8193_REG_WRITE(REG_LVDS_ANACFG4, u4Reg);
  250. UDELAY(200);
  251. }
  252. static void lcm_mt8193_ckgen_power_off(void)
  253. {
  254. u32 u4Reg = 0;
  255. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG4);
  256. u4Reg |= (RG_VPLL_RST);
  257. MT8193_REG_WRITE(REG_LVDS_ANACFG4, u4Reg);
  258. UDELAY(200);
  259. u4Reg |= (RG_VPLL_PD);
  260. MT8193_REG_WRITE(REG_LVDS_ANACFG4, u4Reg);
  261. UDELAY(200);
  262. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG2);
  263. u4Reg |= (RG_VPLL_BG_PD | RG_VPLL_BIAS_PD);
  264. MT8193_REG_WRITE(REG_LVDS_ANACFG2, u4Reg);
  265. UDELAY(200);
  266. u4Reg = MT8193_REG_READ(REG_PLL_GPANACFG0);
  267. u4Reg &= (~(RG_PLL1_EN));
  268. MT8193_REG_WRITE(REG_PLL_GPANACFG0, u4Reg);
  269. UDELAY(200);
  270. }
  271. static void lcm_mt8193_lvds_analog_power_on(void)
  272. {
  273. u32 u4Reg = 0;
  274. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG0);
  275. u4Reg &= (~(RG_LVDS_APD | RG_LVDS_BIASA_PD));
  276. MT8193_REG_WRITE(REG_LVDS_ANACFG0, u4Reg);
  277. UDELAY(200);
  278. }
  279. static void lcm_mt8193_lvds_analog_power_off(void)
  280. {
  281. u32 u4Reg = 0;
  282. u4Reg = MT8193_REG_READ(REG_LVDS_ANACFG0);
  283. u4Reg |= (RG_LVDS_APD | RG_LVDS_BIASA_PD);
  284. MT8193_REG_WRITE(REG_LVDS_ANACFG0, u4Reg);
  285. UDELAY(200);
  286. }
  287. static void lcm_mt8193_set_lvds_digital(void)
  288. {
  289. MT8193_REG_WRITE(LVDS_CLK_CTRL, (RG_TEST_CK_EN | RG_RX_CK_EN | RG_TX_CK_EN));
  290. MT8193_REG_WRITE(LVDS_CH_SWAP, RG_SWAP_SEL);
  291. MT8193_REG_WRITE(LVDS_CLK_RESET, (RG_CTSCLK_RESET_B | RG_PCLK_RESET_B));
  292. }
  293. static void lcm_mt8193_set_dgi0(void)
  294. {
  295. MT8193_REG_WRITE(DGI0_DATA_OUT_CTRL, DATA_OUT_SWAP);
  296. MT8193_REG_WRITE(DGI0_TG_CTRL00, PRGS_OUT);
  297. MT8193_REG_WRITE(DGI0_TG_CTRL02, ((V_TOTAL<<16) | H_TOTAL));
  298. MT8193_REG_WRITE(DGI0_TG_CTRL03, ((VSYNC_PULSE_WIDTH<<16) | HSYNC_PULSE_WIDTH));
  299. MT8193_REG_WRITE(DGI0_TG_CTRL05, ((H_START<<16) | H_END));
  300. MT8193_REG_WRITE(DGI0_TG_CTRL06, ((V_START<<16) | V_END));
  301. MT8193_REG_WRITE(DGI0_TG_CTRL07, ((V_START<<16) | V_END));
  302. MT8193_REG_WRITE(DGI0_TG_CTRL01, ((V_DELAY<<16) | H_DELAY));
  303. MT8193_REG_WRITE(DGI0_TTL_ANAIF_CTRL, TTL_CLK_INV_ENABLE);
  304. MT8193_REG_WRITE(DGI0_TTL_ANAIF_CTRL1, PAD_TTL_EN_PP);
  305. }
  306. static void lcm_mt8193_anaif_clock_enable(void)
  307. {
  308. MT8193_REG_WRITE(DGI0_ANAIF_CTRL0, DGI0_PAD_CLK_ENABLE);
  309. }
  310. static void lcm_mt8193_anaif_clock_disable(void)
  311. {
  312. MT8193_REG_WRITE(DGI0_ANAIF_CTRL0, DGI0_PAD_CLK_DISABLE);
  313. }
  314. static void lcm_mt8193_dgi0_clock_enable(void)
  315. {
  316. MT8193_REG_WRITE(DGI0_CLK_RST_CTRL, (DGI0_CLK_OUT_ENABLE | DGI0_CLK_IN_INV_ENABLE | DGI0_CLK_IN_ENABLE));
  317. }
  318. static void lcm_mt8193_dgi0_clock_disable(void)
  319. {
  320. MT8193_REG_WRITE(DGI0_CLK_RST_CTRL, DGI0_CLK_OUT_DISABLE);
  321. }
  322. static void lcm_mt8193_dgi0_fifo_write_disable(void)
  323. {
  324. MT8193_REG_WRITE(DGI0_DEC_CTRL, 0x0);
  325. }
  326. static void lcm_mt8193_dgi0_fifo_write_enable(void)
  327. {
  328. MT8193_REG_WRITE(DGI0_DEC_CTRL, FIFO_WRITE_EN);
  329. }
  330. static void lcm_mt8193_sw_reset(void)
  331. {
  332. MT8193_REG_WRITE(DGI0_FIFO_CTRL, (SW_RST | FIFO_RESET_ON | RD_START));
  333. UDELAY(200);
  334. MT8193_REG_WRITE(DGI0_FIFO_CTRL, (FIFO_RESET_ON | RD_START));
  335. }
  336. static void lcm_mt8193_lvds_power_off(void)
  337. {
  338. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000006);
  339. UDELAY(200);
  340. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000007);
  341. UDELAY(200);
  342. MT8193_REG_WRITE(REG_LVDS_PWR_RST_B, 0x00000000);
  343. UDELAY(200);
  344. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000005);
  345. MDELAY(5);
  346. }
  347. static void lcm_mt8193_lvds_power_on(void)
  348. {
  349. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000007);
  350. UDELAY(200);
  351. MT8193_REG_WRITE(REG_LVDS_PWR_RST_B, 0x00000001);
  352. UDELAY(200);
  353. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000006);
  354. UDELAY(200);
  355. MT8193_REG_WRITE(REG_LVDS_PWR_CTRL, 0x00000002);
  356. MDELAY(5);
  357. }
  358. static void lcm_mt8193_lvds_top_clock_disable(void)
  359. {
  360. MT8193_REG_WRITE(LVDS_CLK_CTRL, 0x0);
  361. }
  362. static void lcm_mt8193_lvds_top_clock_enable(void)
  363. {
  364. MT8193_REG_WRITE(LVDS_CLK_CTRL, (RG_TEST_CK_EN | RG_RX_CK_EN | RG_TX_CK_EN));
  365. }
  366. static void lcm_mt8193_lvds_out_disable(void)
  367. {
  368. MT8193_REG_WRITE(LVDS_OUTPUT_CTRL, 0x0);
  369. }
  370. static void lcm_mt8193_lvds_out_enable(void)
  371. {
  372. MT8193_REG_WRITE(LVDS_OUTPUT_CTRL, (RG_LVDSRX_FIFO_EN | RG_SYNC_TRIG_MODE | RG_OUT_FIFO_EN | RG_LVDS_E));
  373. }
  374. static void lcm_mt8193_enable_output(void)
  375. {
  376. lcm_mt8193_lvds_power_on();
  377. lcm_mt8193_anaif_clock_enable();
  378. lcm_mt8193_set_ckgen();
  379. lcm_mt8193_ckgen_power_on();
  380. lcm_mt8193_dgi0_clock_enable();
  381. lcm_mt8193_dgi0_fifo_write_disable();
  382. lcm_mt8193_set_dgi0();
  383. lcm_mt8193_dgi0_fifo_write_enable();
  384. lcm_mt8193_lvds_top_clock_enable();
  385. lcm_mt8193_lvds_out_disable();
  386. lcm_mt8193_set_lvds_digital();
  387. lcm_mt8193_lvds_analog_power_on();
  388. lcm_mt8193_set_lvds_analog();
  389. MDELAY(1);
  390. lcm_mt8193_lvds_out_enable();
  391. lcm_mt8193_sw_reset();
  392. }
  393. static void lcm_mt8193_disable_output(void)
  394. {
  395. lcm_mt8193_lvds_analog_power_off();
  396. lcm_mt8193_lvds_out_disable();
  397. lcm_mt8193_lvds_top_clock_disable();
  398. lcm_mt8193_dgi0_fifo_write_disable();
  399. lcm_mt8193_dgi0_clock_disable();
  400. lcm_mt8193_ckgen_power_off();
  401. lcm_mt8193_anaif_clock_disable();
  402. lcm_mt8193_lvds_power_off();
  403. }
  404. static void lcm_get_params(LCM_PARAMS *params)
  405. {
  406. memset(params, 0, sizeof(LCM_PARAMS));
  407. params->type = LCM_TYPE_DPI;
  408. params->ctrl = LCM_CTRL_SERIAL_DBI;
  409. params->width = FRAME_WIDTH;
  410. params->height = FRAME_HEIGHT;
  411. params->io_select_mode = 0;
  412. params->physical_width = 150;
  413. params->physical_height = 94;
  414. // div0_real = div0==0 ? 1:
  415. // div0==1 ? 2: 4;
  416. // div1_real = div1==0 ? 1:
  417. // div1==1 ? 2: 4;
  418. // freq = 26*mipi_pll_clk_ref/2^24/div0_real/div1_real/8
  419. /* RGB interface configurations */
  420. params->dpi.mipi_pll_clk_ref = 536870912;
  421. params->dpi.mipi_pll_clk_div1 = 0; // div0=0,1,2,3;div0_real=1,2,4,4
  422. params->dpi.mipi_pll_clk_div2 = 0; // div1=0,1,2,3;div1_real=1,2,4,4
  423. params->dpi.dpi_clk_div = 4; //{4,2}, pll/4=51.025M
  424. params->dpi.dpi_clk_duty = 2;
  425. params->dpi.clk_pol = LCM_POLARITY_RISING;
  426. params->dpi.de_pol = LCM_POLARITY_RISING;
  427. params->dpi.vsync_pol = LCM_POLARITY_FALLING;
  428. params->dpi.hsync_pol = LCM_POLARITY_FALLING;
  429. params->dpi.hsync_pulse_width = HSYNC_PULSE_WIDTH;
  430. params->dpi.hsync_back_porch = HSYNC_BACK_PORCH;
  431. params->dpi.hsync_front_porch = HSYNC_FRONT_PORCH;
  432. params->dpi.vsync_pulse_width = VSYNC_PULSE_WIDTH;
  433. params->dpi.vsync_back_porch = VSYNC_BACK_PORCH;
  434. params->dpi.vsync_front_porch = VSYNC_FRONT_PORCH;
  435. params->dpi.i2x_en = 1;
  436. params->dpi.format = LCM_DPI_FORMAT_RGB888; // format is 24 bit
  437. params->dpi.rgb_order = LCM_COLOR_ORDER_RGB;
  438. params->dpi.is_serial_output = 0;
  439. params->dpi.intermediat_buffer_num = 0;
  440. params->dpi.io_driving_current = LCM_DRIVING_CURRENT_2MA;
  441. }
  442. static void lcm_init(void)
  443. {
  444. #ifdef BUILD_LK
  445. printf("[LK/LCM] lcm_init() \n");
  446. lcm_set_gpio_output(GPIO_LCD_PWR_EN, 1);
  447. lcm_mt8193_enable_output();
  448. //VGP6 3.3V
  449. upmu_set_rg_vgp1_vosel(0x7);
  450. upmu_set_rg_vgp1_en(0x1);
  451. MDELAY(20);
  452. lcm_set_gpio_output(GPIO_LCD_STB_EN, 1);
  453. lcm_set_gpio_output(GPIO_LCD_RST_EN, 1);
  454. MDELAY(20);
  455. lcm_set_gpio_output(GPIO_LCD_RST_EN, 0);
  456. MDELAY(5);
  457. lcm_set_gpio_output(GPIO_LCD_RST_EN, 1);
  458. MDELAY(20);
  459. #elif (defined BUILD_UBOOT)
  460. // do nothing in uboot
  461. #else
  462. printk("[LCM] lcm_init() enter\n");
  463. #endif
  464. }
  465. static void lcm_suspend(void)
  466. {
  467. #ifdef BUILD_LK
  468. printf("[LK/LCM] lcm_suspend() enter\n");
  469. lcm_set_gpio_output(GPIO_LCD_PWR_EN, 0);
  470. lcm_mt8193_disable_output();
  471. lcm_set_gpio_output(GPIO_LCD_STB_EN, 0);
  472. MDELAY(20);
  473. lcm_set_gpio_output(GPIO_LCD_RST_EN, 0);
  474. MDELAY(20);
  475. //VGP1 3.3V
  476. upmu_set_rg_vgp1_vosel(0);
  477. upmu_set_rg_vgp1_en(0);
  478. #elif (defined BUILD_UBOOT)
  479. // do nothing in uboot
  480. #else
  481. printk("[LCM] lcm_suspend() enter\n");
  482. lcm_mt8193_disable_output();
  483. lcm_set_gpio_output(GPIO_LCD_STB_EN, 0);
  484. MDELAY(5);
  485. lcm_set_gpio_output(GPIO_LCD_RST_EN, 0);
  486. MDELAY(5);
  487. lcm_set_gpio_output(GPIO_LCD_PWR_EN, 0);
  488. MDELAY(20);
  489. upmu_set_rg_vgp1_en(0);
  490. upmu_set_rg_vgp1_vosel(0);
  491. MDELAY(50);
  492. #endif
  493. }
  494. static void lcm_resume(void)
  495. {
  496. #ifdef BUILD_LK
  497. u32 u4Reg = 0;
  498. printf("[LK/LCM] lcm_resume() enter\n");
  499. u4Reg = MT8193_REG_READ(REG_LVDS_PWR_RST_B);
  500. if(1)
  501. {
  502. lcm_mt8193_enable_output();
  503. upmu_set_rg_vgp1_vosel(0x7);
  504. upmu_set_rg_vgp1_en(0x1);
  505. lcm_set_gpio_output(GPIO_LCD_STB_EN, 1);
  506. MDELAY(20);
  507. lcm_set_gpio_output(GPIO_LCD_PWR_EN, 1);
  508. MDELAY(5);
  509. lcm_set_gpio_output(GPIO_LCD_RST_EN, 1);
  510. MDELAY(20);
  511. }
  512. #elif (defined BUILD_UBOOT)
  513. // do nothing in uboot
  514. #else
  515. printk("[LCM] MT8193 EJ101IA lcm_resume() enter\n");
  516. lcm_mt8193_enable_output();
  517. upmu_set_rg_vgp1_en(0x1);
  518. upmu_set_rg_vgp1_vosel(0x7);
  519. lcm_set_gpio_output(GPIO_LCD_PWR_EN, 1);
  520. MDELAY(5);
  521. lcm_set_gpio_output(GPIO_LCD_STB_EN, 1);
  522. MDELAY(5);
  523. lcm_set_gpio_output(GPIO_LCD_RST_EN, 1);
  524. MDELAY(20);
  525. lcm_set_gpio_output(GPIO_LCD_RST_EN, 0);
  526. MDELAY(5);
  527. lcm_set_gpio_output(GPIO_LCD_RST_EN, 1);
  528. MDELAY(180);
  529. #endif
  530. }
  531. static unsigned int lcm_check_status(void)
  532. {
  533. return 0;
  534. }
  535. static void lcm_update(unsigned int x, unsigned int y,
  536. unsigned int width, unsigned int height)
  537. {
  538. }
  539. LCM_DRIVER h070d_18dm_lcm_drv =
  540. {
  541. .name = "h070d_18dm",
  542. .set_util_funcs = lcm_set_util_funcs,
  543. .get_params = lcm_get_params,
  544. .init = lcm_init,
  545. .suspend = lcm_suspend,
  546. .resume = lcm_resume,
  547. .check_status = lcm_check_status,
  548. .update = lcm_update,
  549. };