sed156x.c 15 KB

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  1. /*
  2. * (C) Copyright 2003
  3. *
  4. * Pantelis Antoniou <panto@intracom.gr>
  5. * Intracom S.A.
  6. *
  7. * SPDX-License-Identifier: GPL-2.0+
  8. */
  9. #include <common.h>
  10. #include <watchdog.h>
  11. #include <sed156x.h>
  12. /* configure according to the selected display */
  13. #if defined(CONFIG_SED156X_PG12864Q)
  14. #define LCD_WIDTH 128
  15. #define LCD_HEIGHT 64
  16. #define LCD_LINES 64
  17. #define LCD_PAGES 9
  18. #define LCD_COLUMNS 132
  19. #else
  20. #error Unsupported SED156x configuration
  21. #endif
  22. /* include the font data */
  23. #include <video_font.h>
  24. #if VIDEO_FONT_WIDTH != 8 || VIDEO_FONT_HEIGHT != 16
  25. #error Expecting VIDEO_FONT_WIDTH == 8 && VIDEO_FONT_HEIGHT == 16
  26. #endif
  27. #define LCD_BYTE_WIDTH (LCD_WIDTH / 8)
  28. #define VIDEO_FONT_BYTE_WIDTH (VIDEO_FONT_WIDTH / 8)
  29. #define LCD_TEXT_WIDTH (LCD_WIDTH / VIDEO_FONT_WIDTH)
  30. #define LCD_TEXT_HEIGHT (LCD_HEIGHT / VIDEO_FONT_HEIGHT)
  31. #define LCD_BYTE_LINESZ (LCD_BYTE_WIDTH * VIDEO_FONT_HEIGHT)
  32. const int sed156x_text_width = LCD_TEXT_WIDTH;
  33. const int sed156x_text_height = LCD_TEXT_HEIGHT;
  34. /**************************************************************************************/
  35. #define SED156X_SPI_RXD() (SED156X_SPI_RXD_PORT & SED156X_SPI_RXD_MASK)
  36. #define SED156X_SPI_TXD(x) \
  37. do { \
  38. if (x) \
  39. SED156X_SPI_TXD_PORT |= SED156X_SPI_TXD_MASK; \
  40. else \
  41. SED156X_SPI_TXD_PORT &= ~SED156X_SPI_TXD_MASK; \
  42. } while(0)
  43. #define SED156X_SPI_CLK(x) \
  44. do { \
  45. if (x) \
  46. SED156X_SPI_CLK_PORT |= SED156X_SPI_CLK_MASK; \
  47. else \
  48. SED156X_SPI_CLK_PORT &= ~SED156X_SPI_CLK_MASK; \
  49. } while(0)
  50. #define SED156X_SPI_CLK_TOGGLE() (SED156X_SPI_CLK_PORT ^= SED156X_SPI_CLK_MASK)
  51. #define SED156X_SPI_BIT_DELAY() /* no delay */
  52. #define SED156X_CS(x) \
  53. do { \
  54. if (x) \
  55. SED156X_CS_PORT |= SED156X_CS_MASK; \
  56. else \
  57. SED156X_CS_PORT &= ~SED156X_CS_MASK; \
  58. } while(0)
  59. #define SED156X_A0(x) \
  60. do { \
  61. if (x) \
  62. SED156X_A0_PORT |= SED156X_A0_MASK; \
  63. else \
  64. SED156X_A0_PORT &= ~SED156X_A0_MASK; \
  65. } while(0)
  66. /**************************************************************************************/
  67. /*** LCD Commands ***/
  68. #define LCD_ON 0xAF /* Display ON */
  69. #define LCD_OFF 0xAE /* Display OFF */
  70. #define LCD_LADDR 0x40 /* Display start line set + (6-bit) address */
  71. #define LCD_PADDR 0xB0 /* Page address set + (4-bit) page */
  72. #define LCD_CADRH 0x10 /* Column address set upper + (4-bit) column hi */
  73. #define LCD_CADRL 0x00 /* Column address set lower + (4-bit) column lo */
  74. #define LCD_ADC_NRM 0xA0 /* ADC select Normal */
  75. #define LCD_ADC_REV 0xA1 /* ADC select Reverse */
  76. #define LCD_DSP_NRM 0xA6 /* LCD display Normal */
  77. #define LCD_DSP_REV 0xA7 /* LCD display Reverse */
  78. #define LCD_DPT_NRM 0xA4 /* Display all points Normal */
  79. #define LCD_DPT_ALL 0xA5 /* Display all points ON */
  80. #define LCD_BIAS9 0xA2 /* LCD bias set 1/9 */
  81. #define LCD_BIAS7 0xA3 /* LCD bias set 1/7 */
  82. #define LCD_CAINC 0xE0 /* Read/modify/write */
  83. #define LCD_CAEND 0xEE /* End */
  84. #define LCD_RESET 0xE2 /* Reset */
  85. #define LCD_C_NRM 0xC0 /* Common output mode select Normal direction */
  86. #define LCD_C_RVS 0xC8 /* Common output mode select Reverse direction */
  87. #define LCD_PWRMD 0x28 /* Power control set + (3-bit) mode */
  88. #define LCD_RESRT 0x20 /* V5 v. reg. int. resistor ratio set + (3-bit) ratio */
  89. #define LCD_EVSET 0x81 /* Electronic volume mode set + byte = (6-bit) volume */
  90. #define LCD_SIOFF 0xAC /* Static indicator OFF */
  91. #define LCD_SION 0xAD /* Static indicator ON + byte = (2-bit) mode */
  92. #define LCD_NOP 0xE3 /* NOP */
  93. #define LCD_TEST 0xF0 /* Test/Test mode reset (Note: *DO NOT USE*) */
  94. /*-------------------------------------------------------------------------------
  95. Compound commands
  96. -------------------------------------------------------------------------------
  97. Command Description Commands
  98. ---------- ------------------------ -------------------------------------
  99. POWS_ON POWER SAVER ON command LCD_OFF, LCD_D_ALL
  100. POWS_OFF POWER SAVER OFF command LCD_D_NRM
  101. SLEEPON SLEEP mode LCD_SIOFF, POWS_ON
  102. SLEEPOFF SLEEP mode cancel LCD_D_NRM, LCD_SION, LCD_SIS_???
  103. STDBYON STAND BY mode LCD_SION, POWS_ON
  104. STDBYOFF STAND BY mode cancel LCD_D_NRM
  105. -------------------------------------------------------------------------------*/
  106. /*** LCD various parameters ***/
  107. #define LCD_PPB 8 /* Pixels per byte (display is B/W, 1 bit per pixel) */
  108. /*** LCD Status byte masks ***/
  109. #define LCD_S_BUSY 0x80 /* Status Read - BUSY mask */
  110. #define LCD_S_ADC 0x40 /* Status Read - ADC mask */
  111. #define LCD_S_ONOFF 0x20 /* Status Read - ON/OFF mask */
  112. #define LCD_S_RESET 0x10 /* Status Read - RESET mask */
  113. /*** LCD commands parameter masks ***/
  114. #define LCD_M_LADDR 0x3F /* Display start line (6-bit) address mask */
  115. #define LCD_M_PADDR 0x0F /* Page address (4-bit) page mask */
  116. #define LCD_M_CADRH 0x0F /* Column address upper (4-bit) column hi mask */
  117. #define LCD_M_CADRL 0x0F /* Column address lower (4-bit) column lo mask */
  118. #define LCD_M_PWRMD 0x07 /* Power control (3-bit) mode mask */
  119. #define LCD_M_RESRT 0x07 /* V5 v. reg. int. resistor ratio (3-bit) ratio mask */
  120. #define LCD_M_EVSET 0x3F /* Electronic volume mode byte (6-bit) volume mask */
  121. #define LCD_M_SION 0x03 /* Static indicator ON (2-bit) mode mask */
  122. /*** LCD Power control cirquits control masks ***/
  123. #define LCD_PWRBSTR 0x04 /* Power control mode - Booster cirquit ON */
  124. #define LCD_PWRVREG 0x02 /* Power control mode - Voltage regulator cirquit ON */
  125. #define LCD_PWRVFOL 0x01 /* Power control mode - Voltage follower cirquit ON */
  126. /*** LCD Static indicator states ***/
  127. #define LCD_SIS_OFF 0x00 /* Static indicator register set - OFF state */
  128. #define LCD_SIS_BL 0x01 /* Static indicator register set - 1s blink state */
  129. #define LCD_SIS_RBL 0x02 /* Static indicator register set - .5s rapid blink state */
  130. #define LCD_SIS_ON 0x03 /* Static indicator register set - constantly on state */
  131. /*** LCD functions special parameters (commands) ***/
  132. #define LCD_PREVP 0x80 /* Page number for moving to previous */
  133. #define LCD_NEXTP 0x81 /* or next page */
  134. #define LCD_ERR_P 0xFF /* Error in page number */
  135. /*** LCD initialization settings ***/
  136. #define LCD_BIAS LCD_BIAS9 /* Bias: 1/9 */
  137. #define LCD_ADCMODE LCD_ADC_NRM /* ADC mode: normal */
  138. #define LCD_COMDIR LCD_C_NRM /* Common output mode: normal */
  139. #define LCD_RRATIO 0 /* Resistor ratio: 0 */
  140. #define LCD_CNTRST 0x1C /* electronic volume: 1Ch */
  141. #define LCD_POWERM (LCD_PWRBSTR | LCD_PWRVREG | LCD_PWRVFOL) /* Power mode: All on */
  142. /**************************************************************************************/
  143. static inline unsigned int sed156x_transfer(unsigned int val)
  144. {
  145. unsigned int rx;
  146. int b;
  147. rx = 0; b = 8;
  148. while (--b >= 0) {
  149. SED156X_SPI_TXD(val & 0x80);
  150. val <<= 1;
  151. SED156X_SPI_CLK_TOGGLE();
  152. SED156X_SPI_BIT_DELAY();
  153. rx <<= 1;
  154. if (SED156X_SPI_RXD())
  155. rx |= 1;
  156. SED156X_SPI_CLK_TOGGLE();
  157. SED156X_SPI_BIT_DELAY();
  158. }
  159. return rx;
  160. }
  161. unsigned int sed156x_data_transfer(unsigned int val)
  162. {
  163. unsigned int rx;
  164. SED156X_SPI_CLK(1);
  165. SED156X_CS(0);
  166. SED156X_A0(1);
  167. rx = sed156x_transfer(val);
  168. SED156X_CS(1);
  169. return rx;
  170. }
  171. void sed156x_data_block_transfer(const u8 *p, int size)
  172. {
  173. SED156X_SPI_CLK(1);
  174. SED156X_CS(0);
  175. SED156X_A0(1);
  176. while (--size >= 0)
  177. sed156x_transfer(*p++);
  178. SED156X_CS(1);
  179. }
  180. unsigned int sed156x_cmd_transfer(unsigned int val)
  181. {
  182. unsigned int rx;
  183. SED156X_SPI_CLK(1);
  184. SED156X_CS(0);
  185. SED156X_A0(0);
  186. rx = sed156x_transfer(val);
  187. SED156X_CS(1);
  188. SED156X_A0(1);
  189. return rx;
  190. }
  191. /******************************************************************************/
  192. static u8 hw_screen[LCD_PAGES][LCD_COLUMNS];
  193. static u8 last_hw_screen[LCD_PAGES][LCD_COLUMNS];
  194. static u8 sw_screen[LCD_BYTE_WIDTH * LCD_HEIGHT];
  195. void sed156x_sync(void)
  196. {
  197. int i, j, last_page;
  198. u8 *d;
  199. const u8 *s, *e, *b, *r;
  200. u8 v0, v1, v2, v3, v4, v5, v6, v7;
  201. /* copy and rotate sw_screen to hw_screen */
  202. for (i = 0; i < LCD_HEIGHT / 8; i++) {
  203. d = &hw_screen[i][0];
  204. s = &sw_screen[LCD_BYTE_WIDTH * 8 * i + LCD_BYTE_WIDTH - 1];
  205. for (j = 0; j < LCD_WIDTH / 8; j++) {
  206. v0 = s[0 * LCD_BYTE_WIDTH];
  207. v1 = s[1 * LCD_BYTE_WIDTH];
  208. v2 = s[2 * LCD_BYTE_WIDTH];
  209. v3 = s[3 * LCD_BYTE_WIDTH];
  210. v4 = s[4 * LCD_BYTE_WIDTH];
  211. v5 = s[5 * LCD_BYTE_WIDTH];
  212. v6 = s[6 * LCD_BYTE_WIDTH];
  213. v7 = s[7 * LCD_BYTE_WIDTH];
  214. d[0] = ((v7 & 0x01) << 7) |
  215. ((v6 & 0x01) << 6) |
  216. ((v5 & 0x01) << 5) |
  217. ((v4 & 0x01) << 4) |
  218. ((v3 & 0x01) << 3) |
  219. ((v2 & 0x01) << 2) |
  220. ((v1 & 0x01) << 1) |
  221. (v0 & 0x01) ;
  222. d[1] = ((v7 & 0x02) << 6) |
  223. ((v6 & 0x02) << 5) |
  224. ((v5 & 0x02) << 4) |
  225. ((v4 & 0x02) << 3) |
  226. ((v3 & 0x02) << 2) |
  227. ((v2 & 0x02) << 1) |
  228. ((v1 & 0x02) << 0) |
  229. ((v0 & 0x02) >> 1) ;
  230. d[2] = ((v7 & 0x04) << 5) |
  231. ((v6 & 0x04) << 4) |
  232. ((v5 & 0x04) << 3) |
  233. ((v4 & 0x04) << 2) |
  234. ((v3 & 0x04) << 1) |
  235. (v2 & 0x04) |
  236. ((v1 & 0x04) >> 1) |
  237. ((v0 & 0x04) >> 2) ;
  238. d[3] = ((v7 & 0x08) << 4) |
  239. ((v6 & 0x08) << 3) |
  240. ((v5 & 0x08) << 2) |
  241. ((v4 & 0x08) << 1) |
  242. (v3 & 0x08) |
  243. ((v2 & 0x08) >> 1) |
  244. ((v1 & 0x08) >> 2) |
  245. ((v0 & 0x08) >> 3) ;
  246. d[4] = ((v7 & 0x10) << 3) |
  247. ((v6 & 0x10) << 2) |
  248. ((v5 & 0x10) << 1) |
  249. (v4 & 0x10) |
  250. ((v3 & 0x10) >> 1) |
  251. ((v2 & 0x10) >> 2) |
  252. ((v1 & 0x10) >> 3) |
  253. ((v0 & 0x10) >> 4) ;
  254. d[5] = ((v7 & 0x20) << 2) |
  255. ((v6 & 0x20) << 1) |
  256. (v5 & 0x20) |
  257. ((v4 & 0x20) >> 1) |
  258. ((v3 & 0x20) >> 2) |
  259. ((v2 & 0x20) >> 3) |
  260. ((v1 & 0x20) >> 4) |
  261. ((v0 & 0x20) >> 5) ;
  262. d[6] = ((v7 & 0x40) << 1) |
  263. (v6 & 0x40) |
  264. ((v5 & 0x40) >> 1) |
  265. ((v4 & 0x40) >> 2) |
  266. ((v3 & 0x40) >> 3) |
  267. ((v2 & 0x40) >> 4) |
  268. ((v1 & 0x40) >> 5) |
  269. ((v0 & 0x40) >> 6) ;
  270. d[7] = (v7 & 0x80) |
  271. ((v6 & 0x80) >> 1) |
  272. ((v5 & 0x80) >> 2) |
  273. ((v4 & 0x80) >> 3) |
  274. ((v3 & 0x80) >> 4) |
  275. ((v2 & 0x80) >> 5) |
  276. ((v1 & 0x80) >> 6) |
  277. ((v0 & 0x80) >> 7) ;
  278. d += 8;
  279. s--;
  280. }
  281. }
  282. /* and now output only the differences */
  283. for (i = 0; i < LCD_PAGES; i++) {
  284. b = &hw_screen[i][0];
  285. e = &hw_screen[i][LCD_COLUMNS];
  286. d = &last_hw_screen[i][0];
  287. s = b;
  288. last_page = -1;
  289. /* update only the differences */
  290. do {
  291. while (s < e && *s == *d) {
  292. s++;
  293. d++;
  294. }
  295. if (s == e)
  296. break;
  297. r = s;
  298. while (s < e && *s != *d)
  299. *d++ = *s++;
  300. j = r - b;
  301. if (i != last_page) {
  302. sed156x_cmd_transfer(LCD_PADDR | i);
  303. last_page = i;
  304. }
  305. sed156x_cmd_transfer(LCD_CADRH | ((j >> 4) & 0x0F));
  306. sed156x_cmd_transfer(LCD_CADRL | (j & 0x0F));
  307. sed156x_data_block_transfer(r, s - r);
  308. } while (s < e);
  309. }
  310. /********
  311. for (i = 0; i < LCD_PAGES; i++) {
  312. sed156x_cmd_transfer(LCD_PADDR | i);
  313. sed156x_cmd_transfer(LCD_CADRH | 0);
  314. sed156x_cmd_transfer(LCD_CADRL | 0);
  315. sed156x_data_block_transfer(&hw_screen[i][0], LCD_COLUMNS);
  316. }
  317. memcpy(last_hw_screen, hw_screen, sizeof(last_hw_screen));
  318. ********/
  319. }
  320. void sed156x_clear(void)
  321. {
  322. memset(sw_screen, 0, sizeof(sw_screen));
  323. }
  324. void sed156x_output_at(int x, int y, const char *str, int size)
  325. {
  326. int i, j;
  327. u8 *p;
  328. const u8 *s;
  329. if ((unsigned int)y >= LCD_TEXT_HEIGHT || (unsigned int)x >= LCD_TEXT_WIDTH)
  330. return;
  331. p = &sw_screen[y * VIDEO_FONT_HEIGHT * LCD_BYTE_WIDTH + x * VIDEO_FONT_BYTE_WIDTH];
  332. while (--size >= 0) {
  333. s = &video_fontdata[((int)*str++ & 0xff) * VIDEO_FONT_BYTE_WIDTH * VIDEO_FONT_HEIGHT];
  334. for (i = 0; i < VIDEO_FONT_HEIGHT; i++) {
  335. for (j = 0; j < VIDEO_FONT_BYTE_WIDTH; j++)
  336. *p++ = *s++;
  337. p += LCD_BYTE_WIDTH - VIDEO_FONT_BYTE_WIDTH;
  338. }
  339. p -= (LCD_BYTE_LINESZ - VIDEO_FONT_BYTE_WIDTH);
  340. if (x >= LCD_TEXT_WIDTH)
  341. break;
  342. x++;
  343. }
  344. }
  345. void sed156x_reverse_at(int x, int y, int size)
  346. {
  347. int i, j;
  348. u8 *p;
  349. if ((unsigned int)y >= LCD_TEXT_HEIGHT || (unsigned int)x >= LCD_TEXT_WIDTH)
  350. return;
  351. p = &sw_screen[y * VIDEO_FONT_HEIGHT * LCD_BYTE_WIDTH + x * VIDEO_FONT_BYTE_WIDTH];
  352. while (--size >= 0) {
  353. for (i = 0; i < VIDEO_FONT_HEIGHT; i++) {
  354. for (j = 0; j < VIDEO_FONT_BYTE_WIDTH; j++, p++)
  355. *p = ~*p;
  356. p += LCD_BYTE_WIDTH - VIDEO_FONT_BYTE_WIDTH;
  357. }
  358. p -= (LCD_BYTE_LINESZ - VIDEO_FONT_BYTE_WIDTH);
  359. if (x >= LCD_TEXT_WIDTH)
  360. break;
  361. x++;
  362. }
  363. }
  364. void sed156x_scroll_line(void)
  365. {
  366. memmove(&sw_screen[0],
  367. &sw_screen[LCD_BYTE_LINESZ],
  368. LCD_BYTE_WIDTH * (LCD_HEIGHT - VIDEO_FONT_HEIGHT));
  369. }
  370. void sed156x_scroll(int dx, int dy)
  371. {
  372. u8 *p1 = NULL, *p2 = NULL, *p3 = NULL; /* pacify gcc */
  373. int adx, ady, i, sz;
  374. adx = dx > 0 ? dx : -dx;
  375. ady = dy > 0 ? dy : -dy;
  376. /* overscroll? erase everything */
  377. if (adx >= LCD_TEXT_WIDTH || ady >= LCD_TEXT_HEIGHT) {
  378. memset(sw_screen, 0, sizeof(sw_screen));
  379. return;
  380. }
  381. sz = LCD_BYTE_LINESZ * ady;
  382. if (dy > 0) {
  383. p1 = &sw_screen[0];
  384. p2 = &sw_screen[sz];
  385. p3 = &sw_screen[LCD_BYTE_WIDTH * LCD_HEIGHT - sz];
  386. } else if (dy < 0) {
  387. p1 = &sw_screen[sz];
  388. p2 = &sw_screen[0];
  389. p3 = &sw_screen[0];
  390. }
  391. if (ady > 0) {
  392. memmove(p1, p2, LCD_BYTE_WIDTH * LCD_HEIGHT - sz);
  393. memset(p3, 0, sz);
  394. }
  395. sz = VIDEO_FONT_BYTE_WIDTH * adx;
  396. if (dx > 0) {
  397. p1 = &sw_screen[0];
  398. p2 = &sw_screen[0] + sz;
  399. p3 = &sw_screen[0] + LCD_BYTE_WIDTH - sz;
  400. } else if (dx < 0) {
  401. p1 = &sw_screen[0] + sz;
  402. p2 = &sw_screen[0];
  403. p3 = &sw_screen[0];
  404. }
  405. /* xscroll */
  406. if (adx > 0) {
  407. for (i = 0; i < LCD_HEIGHT; i++) {
  408. memmove(p1, p2, LCD_BYTE_WIDTH - sz);
  409. memset(p3, 0, sz);
  410. p1 += LCD_BYTE_WIDTH;
  411. p2 += LCD_BYTE_WIDTH;
  412. p3 += LCD_BYTE_WIDTH;
  413. }
  414. }
  415. }
  416. void sed156x_init(void)
  417. {
  418. int i;
  419. SED156X_CS(1);
  420. SED156X_A0(1);
  421. /* Send initialization commands to the LCD */
  422. sed156x_cmd_transfer(LCD_OFF); /* Turn display OFF */
  423. sed156x_cmd_transfer(LCD_BIAS); /* set the LCD Bias, */
  424. sed156x_cmd_transfer(LCD_ADCMODE); /* ADC mode, */
  425. sed156x_cmd_transfer(LCD_COMDIR); /* common output mode, */
  426. sed156x_cmd_transfer(LCD_RESRT | LCD_RRATIO); /* resistor ratio, */
  427. sed156x_cmd_transfer(LCD_EVSET); /* electronic volume, */
  428. sed156x_cmd_transfer(LCD_CNTRST);
  429. sed156x_cmd_transfer(LCD_PWRMD | LCD_POWERM); /* and power mode */
  430. sed156x_cmd_transfer(LCD_PADDR | 0); /* cursor home */
  431. sed156x_cmd_transfer(LCD_CADRH | 0);
  432. sed156x_cmd_transfer(LCD_CADRL | 0);
  433. sed156x_cmd_transfer(LCD_LADDR | 0); /* and display start line */
  434. sed156x_cmd_transfer(LCD_DSP_NRM); /* LCD display Normal */
  435. /* clear everything */
  436. memset(sw_screen, 0, sizeof(sw_screen));
  437. memset(hw_screen, 0, sizeof(hw_screen));
  438. memset(last_hw_screen, 0, sizeof(last_hw_screen));
  439. for (i = 0; i < LCD_PAGES; i++) {
  440. sed156x_cmd_transfer(LCD_PADDR | i);
  441. sed156x_cmd_transfer(LCD_CADRH | 0);
  442. sed156x_cmd_transfer(LCD_CADRL | 0);
  443. sed156x_data_block_transfer(&hw_screen[i][0], LCD_COLUMNS);
  444. }
  445. sed156x_clear();
  446. sed156x_sync();
  447. sed156x_cmd_transfer(LCD_ON); /* Turn display ON */
  448. }