luat_lcd.c 18 KB

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  1. #include "luat_base.h"
  2. #include "luat_lcd.h"
  3. #include "luat_gpio.h"
  4. #include "luat_spi.h"
  5. #include "luat_mem.h"
  6. #include "luat_rtos.h"
  7. #define LUAT_LOG_TAG "lcd"
  8. #include "luat_log.h"
  9. luat_color_t BACK_COLOR = LCD_WHITE, FORE_COLOR = LCD_BLACK;
  10. luat_lcd_conf_t* confs[LUAT_LCD_CONF_COUNT] = {0};
  11. void luat_lcd_execute_cmds(luat_lcd_conf_t* conf) {
  12. uint16_t cmd = 0,cmd_len = 0;
  13. uint8_t cmd_send = 0;
  14. uint8_t cmds[32]={0};
  15. for (size_t i = 0; i < conf->opts->init_cmds_len; i++){
  16. cmd = conf->opts->init_cmds[i];
  17. switch(((cmd >> 8) & 0xFF)) {
  18. case 0x0000:
  19. case 0x0002:
  20. if (i!=0){
  21. if (cmd_len){
  22. lcd_write_cmd_data(conf,cmd_send, cmds, cmd_len);
  23. }else{
  24. lcd_write_cmd_data(conf,cmd_send, NULL, 0);
  25. }
  26. }
  27. cmd_send = (uint8_t)(cmd & 0xFF);
  28. cmd_len = 0;
  29. break;
  30. case 0x0001:
  31. luat_rtos_task_sleep(cmd & 0xFF);
  32. break;
  33. case 0x0003:
  34. cmds[cmd_len]= (uint8_t)(cmd & 0xFF);
  35. cmd_len++;
  36. break;
  37. default:
  38. break;
  39. }
  40. if (i==conf->opts->init_cmds_len-1){
  41. if (cmd_len){
  42. lcd_write_cmd_data(conf,cmd_send, cmds, cmd_len);
  43. }else{
  44. lcd_write_cmd_data(conf,cmd_send, NULL, 0);
  45. }
  46. }
  47. }
  48. }
  49. int lcd_write_data(luat_lcd_conf_t* conf, const uint8_t data){
  50. size_t len;
  51. if (conf->port == LUAT_LCD_SPI_DEVICE){
  52. len = luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), (const char*)&data, 1);
  53. }else{
  54. len = luat_spi_send(conf->port, (const char*)&data, 1);
  55. }
  56. if (len != 1){
  57. LLOGI("lcd_write_data error. %d", len);
  58. return -1;
  59. }else{
  60. return 0;
  61. }
  62. }
  63. int lcd_write_cmd_data(luat_lcd_conf_t* conf,const uint8_t cmd, const uint8_t *data, uint8_t data_len){
  64. if (conf->opts->write_cmd_data){
  65. return conf->opts->write_cmd_data(conf,cmd,data,data_len);
  66. }
  67. size_t len;
  68. if (conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_I || conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_II){
  69. luat_gpio_set(conf->pin_dc, Luat_GPIO_LOW);
  70. }
  71. #ifdef LUAT_LCD_CMD_DELAY_US
  72. if (conf->dc_delay_us){
  73. luat_timer_us_delay(conf->dc_delay_us);
  74. }
  75. #endif
  76. if (conf->port == LUAT_LCD_SPI_DEVICE){
  77. len = luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), (const char*)&cmd, 1);
  78. }else{
  79. len = luat_spi_send(conf->port, (const char*)&cmd, 1);
  80. }
  81. if (conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_I || conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_II){
  82. luat_gpio_set(conf->pin_dc, Luat_GPIO_HIGH);
  83. }
  84. if (len != 1){
  85. LLOGI("lcd_write_cmd error. %d", len);
  86. return -1;
  87. }else{
  88. #ifdef LUAT_LCD_CMD_DELAY_US
  89. if (conf->dc_delay_us){
  90. luat_timer_us_delay(conf->dc_delay_us);
  91. }
  92. #endif
  93. }
  94. if (data_len){
  95. if (conf->port == LUAT_LCD_SPI_DEVICE){
  96. len = luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), (const char*)data, data_len);
  97. }else{
  98. len = luat_spi_send(conf->port, (const char*)data, data_len);
  99. }
  100. if (len != data_len){
  101. LLOGI("lcd_write_data error. %d", len);
  102. return -1;
  103. }
  104. }
  105. return 0;
  106. }
  107. luat_lcd_conf_t* luat_lcd_get_default(void) {
  108. for (size_t i = 0; i < LUAT_LCD_CONF_COUNT; i++){
  109. if (confs[i] != NULL) {
  110. return confs[i];
  111. }
  112. }
  113. return NULL;
  114. }
  115. const char* luat_lcd_name(luat_lcd_conf_t* conf) {
  116. return conf->opts->name;
  117. }
  118. LUAT_WEAK int luat_lcd_init_default(luat_lcd_conf_t* conf) {
  119. uint8_t direction_date = 0;
  120. conf->is_init_done = 0;
  121. if (conf->w == 0)
  122. conf->w = LCD_W;
  123. if (conf->h == 0)
  124. conf->h = LCD_H;
  125. if (conf->pin_pwr != LUAT_GPIO_NONE)
  126. luat_gpio_mode(conf->pin_pwr, Luat_GPIO_OUTPUT, Luat_GPIO_DEFAULT, Luat_GPIO_LOW); // POWER
  127. if (conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_I || conf->interface_mode==LUAT_LCD_IM_4_WIRE_8_BIT_INTERFACE_II){
  128. if (conf->pin_dc != LUAT_GPIO_NONE) {
  129. luat_gpio_mode(conf->pin_dc, Luat_GPIO_OUTPUT, Luat_GPIO_DEFAULT, Luat_GPIO_HIGH); // DC
  130. }
  131. }
  132. luat_gpio_mode(conf->pin_rst, Luat_GPIO_OUTPUT, Luat_GPIO_DEFAULT, Luat_GPIO_LOW); // RST
  133. if (conf->pin_pwr != LUAT_GPIO_NONE) {
  134. luat_gpio_set(conf->pin_pwr, Luat_GPIO_LOW);
  135. }
  136. if (conf->opts->user_ctrl_init)
  137. {
  138. conf->opts->user_ctrl_init(conf);
  139. goto INIT_DONE;
  140. }
  141. luat_gpio_set(conf->pin_rst, Luat_GPIO_LOW);
  142. luat_rtos_task_sleep(100);
  143. luat_gpio_set(conf->pin_rst, Luat_GPIO_HIGH);
  144. luat_rtos_task_sleep(120);
  145. luat_lcd_wakeup(conf);
  146. luat_rtos_task_sleep(120);
  147. // 发送初始化命令
  148. if (conf->opts->init){
  149. conf->opts->init(conf);
  150. }else{
  151. luat_lcd_execute_cmds(conf);
  152. if(strcmp(conf->opts->name,"custom") == 0){
  153. luat_heap_free(conf->opts->init_cmds);
  154. }
  155. luat_lcd_set_direction(conf,conf->direction);
  156. }
  157. luat_lcd_wakeup(conf);
  158. /* wait for power stability */
  159. luat_rtos_task_sleep(100);
  160. luat_lcd_clear(conf,LCD_BLACK);
  161. /* display on */
  162. luat_lcd_display_on(conf);
  163. INIT_DONE:
  164. conf->is_init_done = 1;
  165. for (size_t i = 0; i < LUAT_LCD_CONF_COUNT; i++){
  166. if (confs[i] == NULL) {
  167. confs[i] = conf;
  168. return 0;
  169. }
  170. }
  171. return -1;
  172. }
  173. LUAT_WEAK int luat_lcd_init(luat_lcd_conf_t* conf) {
  174. return luat_lcd_init_default(conf);
  175. }
  176. int luat_lcd_close(luat_lcd_conf_t* conf) {
  177. if (conf->pin_pwr != LUAT_GPIO_NONE)
  178. luat_gpio_set(conf->pin_pwr, Luat_GPIO_LOW);
  179. return 0;
  180. }
  181. int luat_lcd_display_off(luat_lcd_conf_t* conf) {
  182. if (conf->pin_pwr != LUAT_GPIO_NONE)
  183. luat_gpio_set(conf->pin_pwr, Luat_GPIO_LOW);
  184. lcd_write_cmd_data(conf,0x28, NULL, 0);
  185. return 0;
  186. }
  187. int luat_lcd_display_on(luat_lcd_conf_t* conf) {
  188. if (conf->pin_pwr != LUAT_GPIO_NONE)
  189. luat_gpio_set(conf->pin_pwr, Luat_GPIO_HIGH);
  190. lcd_write_cmd_data(conf,0x29, NULL, 0);
  191. return 0;
  192. }
  193. int luat_lcd_sleep(luat_lcd_conf_t* conf) {
  194. if (conf->pin_pwr != LUAT_GPIO_NONE)
  195. luat_gpio_set(conf->pin_pwr, Luat_GPIO_LOW);
  196. luat_rtos_task_sleep(5);
  197. lcd_write_cmd_data(conf,conf->opts->sleep_cmd?conf->opts->sleep_cmd:LUAT_LCD_DEFAULT_SLEEP, NULL, 0);
  198. return 0;
  199. }
  200. int luat_lcd_wakeup(luat_lcd_conf_t* conf) {
  201. if (conf->pin_pwr != LUAT_GPIO_NONE)
  202. luat_gpio_set(conf->pin_pwr, Luat_GPIO_HIGH);
  203. luat_rtos_task_sleep(5);
  204. lcd_write_cmd_data(conf,conf->opts->wakeup_cmd?conf->opts->wakeup_cmd:LUAT_LCD_DEFAULT_WAKEUP, NULL, 0);
  205. return 0;
  206. }
  207. int luat_lcd_inv_off(luat_lcd_conf_t* conf) {
  208. lcd_write_cmd_data(conf,0x20, NULL, 0);
  209. return 0;
  210. }
  211. int luat_lcd_inv_on(luat_lcd_conf_t* conf) {
  212. lcd_write_cmd_data(conf,0x21, NULL, 0);
  213. return 0;
  214. }
  215. int luat_lcd_set_address(luat_lcd_conf_t* conf,int16_t x1, int16_t y1, int16_t x2, int16_t y2) {
  216. uint8_t data_x[] = {(x1+conf->xoffset)>>8,x1+conf->xoffset,(x2+conf->xoffset)>>8,x2+conf->xoffset};
  217. lcd_write_cmd_data(conf,0x2a, data_x, 4);
  218. uint8_t data_y[] = {(y1+conf->yoffset)>>8,y1+conf->yoffset,(y2+conf->yoffset)>>8,y2+conf->yoffset};
  219. lcd_write_cmd_data(conf,0x2b, data_y, 4);
  220. lcd_write_cmd_data(conf,0x2c, NULL, 0);
  221. return 0;
  222. }
  223. int luat_lcd_set_color(luat_color_t back, luat_color_t fore){
  224. BACK_COLOR = back;
  225. FORE_COLOR = fore;
  226. return 0;
  227. }
  228. int luat_lcd_set_direction(luat_lcd_conf_t* conf, uint8_t direction){
  229. uint8_t direction_date = 0;
  230. if(direction==0) direction_date = conf->opts->direction0;
  231. else if(direction==1) direction_date = conf->opts->direction90;
  232. else if(direction==2) direction_date = conf->opts->direction180;
  233. else direction_date = conf->opts->direction270;
  234. lcd_write_cmd_data(conf,0x36, &direction_date, 1);
  235. return 0;
  236. }
  237. #ifndef LUAT_USE_LCD_CUSTOM_DRAW
  238. int luat_lcd_flush_default(luat_lcd_conf_t* conf) {
  239. if (conf->buff == NULL) {
  240. return 0;
  241. }
  242. //LLOGD("luat_lcd_flush range %d %d", conf->flush_y_min, conf->flush_y_max);
  243. if (conf->flush_y_max < conf->flush_y_min) {
  244. // 没有需要刷新的内容,直接跳过
  245. //LLOGD("luat_lcd_flush no need");
  246. return 0;
  247. }
  248. if (conf->opts->lcd_draw) {
  249. //LLOGD("luat_lcd_flush user flush");
  250. if (conf->opts->no_ram_mode)
  251. {
  252. conf->opts->lcd_draw(conf, 0, 0, 0, 0, conf->buff);
  253. }
  254. else
  255. {
  256. conf->opts->lcd_draw(conf, 0, conf->flush_y_min, conf->w - 1, conf->flush_y_max, &conf->buff[conf->flush_y_min * conf->w]);
  257. }
  258. } else {
  259. uint32_t size = conf->w * (conf->flush_y_max - conf->flush_y_min + 1) * 2;
  260. luat_lcd_set_address(conf, 0, conf->flush_y_min, conf->w - 1, conf->flush_y_max);
  261. const char* tmp = (const char*)(conf->buff + conf->flush_y_min * conf->w);
  262. if (conf->port == LUAT_LCD_SPI_DEVICE){
  263. luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), tmp, size);
  264. }else{
  265. luat_spi_send(conf->port, tmp, size);
  266. }
  267. }
  268. // 重置为不需要刷新的状态
  269. conf->flush_y_max = 0;
  270. conf->flush_y_min = conf->h;
  271. return 0;
  272. }
  273. LUAT_WEAK int luat_lcd_flush(luat_lcd_conf_t* conf) {
  274. return luat_lcd_flush_default(conf);
  275. }
  276. int luat_lcd_draw_default(luat_lcd_conf_t* conf, int16_t x1, int16_t y1, int16_t x2, int16_t y2, luat_color_t* color) {
  277. if (x1 >= conf->w || y1 >= conf->h || x2 < 0 || y2 < 0 || x2 < x1 || y2 < y1) {
  278. // LLOGE("out of lcd buff range %d %d %d %d", x1, y1, x2, y2);
  279. // LLOGE("out of lcd buff range %d %d %d %d %d", x1 >= conf->w, y1 >= conf->h, y2 < 0, x2 < x1, y2 < y1);
  280. return 0;
  281. }
  282. if (y2 >= conf->h) {
  283. y2 = conf->h - 1;
  284. }
  285. // 直接刷屏模式
  286. if (conf->buff == NULL) {
  287. // 常规数据, 整体传输
  288. if (x1 >= 0 && y1 >= 0 && x2 <= conf->w && y2 <= conf->h) {
  289. if (conf->opts->lcd_draw) {
  290. conf->opts->lcd_draw(conf, x1, y1, x2, y2, color);
  291. } else {
  292. uint32_t size = (x2 - x1 + 1) * (y2 - y1 + 1);
  293. // LLOGD("draw %dx%d %dx%d %d", x1, y1, x2, y2, size);
  294. luat_lcd_set_address(conf, x1, y1, x2, y2);
  295. if (conf->port == LUAT_LCD_SPI_DEVICE){
  296. luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), (const char*)color, size* sizeof(luat_color_t));
  297. }else{
  298. luat_spi_send(conf->port, (const char*)color, size * sizeof(luat_color_t));
  299. }
  300. }
  301. }
  302. // 超出边界的数据, 按行传输
  303. else {
  304. int line_size = (x2 - x1 + 1);
  305. // LLOGD("want draw %dx%d %dx%d %d", x1, y1, x2, y2, line_size);
  306. luat_color_t* ptr = (luat_color_t*)color;
  307. for (int i = y1; i <= y2; i++)
  308. {
  309. if (i < 0) {
  310. ptr += line_size;
  311. continue;
  312. }
  313. luat_color_t* line = ptr;
  314. int lsize = line_size;
  315. int tmp_x1 = x1;
  316. int tmp_x2 = x2;
  317. if (x1 < 0) {
  318. line += ( - x1);
  319. lsize += (x1);
  320. tmp_x1 = 0;
  321. }
  322. if (x2 > conf->w) {
  323. lsize -= (x2 - conf->w);
  324. tmp_x2 = conf->w;
  325. }
  326. if (conf->opts->lcd_draw) {
  327. conf->opts->lcd_draw(conf, tmp_x1, i, tmp_x2, i, line);
  328. } else {
  329. // LLOGD("action draw %dx%d %dx%d %d", tmp_x1, i, tmp_x2, i, lsize);
  330. luat_lcd_set_address(conf, tmp_x1, i, tmp_x2, i);
  331. if (conf->port == LUAT_LCD_SPI_DEVICE){
  332. luat_spi_device_send((luat_spi_device_t*)(conf->lcd_spi_device), (const char*)line, lsize * sizeof(luat_color_t));
  333. }else{
  334. luat_spi_send(conf->port, (const char*)line, lsize * sizeof(luat_color_t));
  335. }
  336. }
  337. ptr += line_size;
  338. }
  339. // TODO
  340. // LLOGD("超出边界,特殊处理");
  341. }
  342. return 0;
  343. }
  344. // buff模式
  345. #if 0
  346. int16_t x_end = x2 >= conf->w? (conf->w - 1):x2;
  347. luat_color_t* dst = (conf->buff);
  348. size_t lsize = (x2 - x1 + 1);
  349. for (int16_t x = x1; x <= x2; x++)
  350. {
  351. if (x < 0 || x >= conf->w)
  352. continue;
  353. for (int16_t y = y1; y <= y2; y++)
  354. {
  355. if (y < 0 || y >= conf->h)
  356. continue;
  357. memcpy((char*)(dst + (conf->w * y + x)), (char*)(color + (lsize * (y-y1) + (x-x1))), sizeof(luat_color_t));
  358. }
  359. }
  360. // 存储需要刷新的区域
  361. if (y1 < conf->flush_y_min) {
  362. if (y1 >= 0)
  363. conf->flush_y_min = y1;
  364. else
  365. conf->flush_y_min = 0;
  366. }
  367. if (y2 > conf->flush_y_max) {
  368. conf->flush_y_max = y2;
  369. }
  370. #endif
  371. //LLOGI("X1 %d Y1 %d X2 %d Y2 %d", x1, y1, x2, y2);
  372. int16_t x_end = (x2 >= conf->w)?(conf->w - 1):x2;
  373. int16_t y_end = (y2 >= conf->h)?(conf->h - 1):y2;
  374. luat_color_t* dst = (conf->buff);
  375. size_t fromlsize = (x2 - x1 + 1);
  376. size_t tolsize = (x_end - x1 + 1);
  377. for (int16_t y = y1; y <= y_end; y++)
  378. {
  379. if (y < 0) continue;
  380. //LLOGI("H%d L %d <- %d X2 %d Y2 %d", y, conf->w * y + x1, fromlsize * (y - y1));
  381. memcpy(&dst[(conf->w * y + x1)], &color[fromlsize * (y - y1)], tolsize * sizeof(luat_color_t));
  382. }
  383. // 存储需要刷新的区域
  384. if (y1 < conf->flush_y_min) {
  385. if (y1 >= 0)
  386. conf->flush_y_min = y1;
  387. else
  388. conf->flush_y_min = 0;
  389. }
  390. if (y_end > conf->flush_y_max) {
  391. conf->flush_y_max = y_end;
  392. }
  393. return 0;
  394. }
  395. LUAT_WEAK int luat_lcd_draw(luat_lcd_conf_t* conf, int16_t x1, int16_t y1, int16_t x2, int16_t y2, luat_color_t* color) {
  396. return luat_lcd_draw_default(conf, x1, y1, x2, y2, color);
  397. }
  398. #endif
  399. int luat_lcd_draw_point(luat_lcd_conf_t* conf, int16_t x, int16_t y, luat_color_t color) {
  400. luat_color_t tmp = color;
  401. if (conf->port < LUAT_LCD_HW_ID_0 || conf->port == LUAT_LCD_SPI_DEVICE)
  402. tmp = color_swap(color);// 注意, 这里需要把颜色swap了
  403. return luat_lcd_draw(conf, x, y, x, y, &tmp);
  404. }
  405. int luat_lcd_clear(luat_lcd_conf_t* conf, luat_color_t color){
  406. luat_lcd_draw_fill(conf, 0, 0, conf->w - 1, conf->h, color);
  407. return 0;
  408. }
  409. int luat_lcd_draw_fill(luat_lcd_conf_t* conf,int16_t x1,int16_t y1,int16_t x2,int16_t y2, luat_color_t color) {
  410. int16_t i;
  411. for(i=y1;i<y2;i++)
  412. {
  413. luat_lcd_draw_line(conf, x1, i, x2, i, color);
  414. }
  415. return 0;
  416. }
  417. int luat_lcd_draw_vline(luat_lcd_conf_t* conf, int16_t x, int16_t y,int16_t h, luat_color_t color) {
  418. if (h<=0) return 0;
  419. return luat_lcd_draw_line(conf, x, y, x, y + h - 1, color);
  420. }
  421. int luat_lcd_draw_hline(luat_lcd_conf_t* conf, int16_t x, int16_t y,int16_t w, luat_color_t color) {
  422. if (w<=0) return 0;
  423. return luat_lcd_draw_line(conf, x, y, x + w - 1, y, color);
  424. }
  425. int luat_lcd_draw_line(luat_lcd_conf_t* conf,int16_t x1, int16_t y1, int16_t x2, int16_t y2,luat_color_t color) {
  426. luat_color_t tmp = color;
  427. int16_t t;
  428. uint32_t i = 0;
  429. int xerr = 0, yerr = 0, delta_x, delta_y, distance;
  430. int incx, incy, row, col;
  431. if (x1 == x2 || y1 == y2) // 直线
  432. {
  433. size_t dots = (x2 - x1 + 1) * (y2 - y1 + 1);//点数量
  434. luat_color_t* line_buf = (luat_color_t*) luat_heap_malloc(dots * sizeof(luat_color_t));
  435. if (conf->port < LUAT_LCD_HW_ID_0 || conf->port == LUAT_LCD_SPI_DEVICE)
  436. tmp = color_swap(color);// 颜色swap
  437. if (line_buf) {
  438. for (i = 0; i < dots; i++)
  439. {
  440. line_buf[i] = tmp;
  441. }
  442. luat_lcd_draw(conf, x1, y1, x2, y2, line_buf);
  443. luat_heap_free(line_buf);
  444. return 0;
  445. }
  446. }
  447. delta_x = x2 - x1;
  448. delta_y = y2 - y1;
  449. row = x1;
  450. col = y1;
  451. if (delta_x > 0)incx = 1;
  452. else if (delta_x == 0)incx = 0;
  453. else
  454. {
  455. incx = -1;
  456. delta_x = -delta_x;
  457. }
  458. if (delta_y > 0)incy = 1;
  459. else if (delta_y == 0)incy = 0;
  460. else
  461. {
  462. incy = -1;
  463. delta_y = -delta_y;
  464. }
  465. if (delta_x > delta_y)distance = delta_x;
  466. else distance = delta_y;
  467. for (t = 0; t <= distance + 1; t++)
  468. {
  469. luat_lcd_draw_point(conf,row, col,color);
  470. xerr += delta_x ;
  471. yerr += delta_y ;
  472. if (xerr > distance)
  473. {
  474. xerr -= distance;
  475. row += incx;
  476. }
  477. if (yerr > distance)
  478. {
  479. yerr -= distance;
  480. col += incy;
  481. }
  482. }
  483. return 0;
  484. }
  485. int luat_lcd_draw_rectangle(luat_lcd_conf_t* conf,int16_t x1, int16_t y1, int16_t x2, int16_t y2, luat_color_t color){
  486. luat_lcd_draw_line(conf,x1, y1, x2, y1, color);
  487. luat_lcd_draw_line(conf,x1, y1, x1, y2, color);
  488. luat_lcd_draw_line(conf,x1, y2, x2, y2, color);
  489. luat_lcd_draw_line(conf,x2, y1, x2, y2, color);
  490. return 0;
  491. }
  492. int luat_lcd_draw_circle(luat_lcd_conf_t* conf,int16_t x0, int16_t y0, uint8_t r, luat_color_t color){
  493. int a, b;
  494. int di;
  495. a = 0;
  496. b = r;
  497. di = 3 - (r << 1);
  498. while (a <= b)
  499. {
  500. luat_lcd_draw_point(conf,x0 - b, y0 - a,color);
  501. luat_lcd_draw_point(conf,x0 + b, y0 - a,color);
  502. luat_lcd_draw_point(conf,x0 - a, y0 + b,color);
  503. luat_lcd_draw_point(conf,x0 - b, y0 - a,color);
  504. luat_lcd_draw_point(conf,x0 - a, y0 - b,color);
  505. luat_lcd_draw_point(conf,x0 + b, y0 + a,color);
  506. luat_lcd_draw_point(conf,x0 + a, y0 - b,color);
  507. luat_lcd_draw_point(conf,x0 + a, y0 + b,color);
  508. luat_lcd_draw_point(conf,x0 - b, y0 + a,color);
  509. a++;
  510. //Bresenham
  511. if (di < 0)di += 4 * a + 6;
  512. else
  513. {
  514. di += 10 + 4 * (a - b);
  515. b--;
  516. }
  517. luat_lcd_draw_point(conf,x0 + a, y0 + b,color);
  518. }
  519. return 0;
  520. }
  521. #ifndef LUAT_COMPILER_NOWEAK
  522. LUAT_WEAK int luat_lcd_qspi_config(luat_lcd_conf_t* conf, luat_lcd_qspi_conf_t *qspi_config) {
  523. return -1;
  524. };
  525. LUAT_WEAK int luat_lcd_qspi_auto_flush_on_off(luat_lcd_conf_t* conf, uint8_t on_off) {
  526. return -1;
  527. }
  528. LUAT_WEAK int luat_lcd_run_api_in_service(luat_lcd_api api, void *param, uint32_t param_len) {
  529. return -1;
  530. };
  531. #endif