My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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tft_lvgl_configuration.cpp 14KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (c) 2020 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
  4. *
  5. * Based on Sprinter and grbl.
  6. * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm
  7. *
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program. If not, see <https://www.gnu.org/licenses/>.
  20. *
  21. */
  22. /**
  23. * @file tft_lvgl_configuration.cpp
  24. * @date 2020-02-21
  25. */
  26. #include "../../../../inc/MarlinConfigPre.h"
  27. #if HAS_TFT_LVGL_UI
  28. #include "SPI_TFT.h"
  29. #include "tft_lvgl_configuration.h"
  30. #include "draw_ready_print.h"
  31. #include "pic_manager.h"
  32. #include "mks_hardware_test.h"
  33. #include "draw_ui.h"
  34. #include "SPIFlashStorage.h"
  35. #include <lvgl.h>
  36. #include "../../../../MarlinCore.h"
  37. #include "../../../../inc/MarlinConfig.h"
  38. #include HAL_PATH(../../HAL, tft/xpt2046.h)
  39. #include "../../../marlinui.h"
  40. XPT2046 touch;
  41. #if ENABLED(POWER_LOSS_RECOVERY)
  42. #include "../../../../feature/powerloss.h"
  43. #endif
  44. #include <SPI.h>
  45. #ifndef TFT_WIDTH
  46. #define TFT_WIDTH 480
  47. #endif
  48. #ifndef TFT_HEIGHT
  49. #define TFT_HEIGHT 320
  50. #endif
  51. #if HAS_SPI_FLASH_FONT
  52. extern void init_gb2312_font();
  53. #endif
  54. static lv_disp_buf_t disp_buf;
  55. lv_group_t* g;
  56. #if ENABLED(SDSUPPORT)
  57. extern void UpdateAssets();
  58. #endif
  59. uint16_t DeviceCode = 0x9488;
  60. extern uint8_t sel_id;
  61. extern bool flash_preview_begin, default_preview_flg, gcode_preview_over;
  62. uint8_t bmp_public_buf[17 * 1024];
  63. void SysTick_Callback() {
  64. lv_tick_inc(1);
  65. print_time_count();
  66. #if ENABLED(USE_WIFI_FUNCTION)
  67. if (tips_disp.timer == TIPS_TIMER_START)
  68. tips_disp.timer_count++;
  69. #endif
  70. if (uiCfg.filament_loading_time_flg == 1) {
  71. uiCfg.filament_loading_time_cnt++;
  72. uiCfg.filament_rate = (uint32_t)(((uiCfg.filament_loading_time_cnt / (uiCfg.filament_loading_time * 1000.0)) * 100.0) + 0.5);
  73. if (uiCfg.filament_loading_time_cnt >= (uiCfg.filament_loading_time * 1000)) {
  74. uiCfg.filament_loading_time_cnt = 0;
  75. uiCfg.filament_loading_time_flg = 0;
  76. uiCfg.filament_loading_completed = 1;
  77. }
  78. }
  79. if (uiCfg.filament_unloading_time_flg == 1) {
  80. uiCfg.filament_unloading_time_cnt++;
  81. uiCfg.filament_rate = (uint32_t)(((uiCfg.filament_unloading_time_cnt / (uiCfg.filament_unloading_time * 1000.0)) * 100.0) + 0.5);
  82. if (uiCfg.filament_unloading_time_cnt >= (uiCfg.filament_unloading_time * 1000)) {
  83. uiCfg.filament_unloading_time_cnt = 0;
  84. uiCfg.filament_unloading_time_flg = 0;
  85. uiCfg.filament_unloading_completed = 1;
  86. uiCfg.filament_rate = 100;
  87. }
  88. }
  89. }
  90. extern uint8_t bmp_public_buf[17 * 1024];
  91. void tft_lvgl_init() {
  92. //uint16_t test_id=0;
  93. W25QXX.init(SPI_QUARTER_SPEED);
  94. //test_id=W25QXX.W25QXX_ReadID();
  95. gCfgItems_init();
  96. ui_cfg_init();
  97. disp_language_init();
  98. //init tft first!
  99. SPI_TFT.spi_init(SPI_FULL_SPEED);
  100. SPI_TFT.LCD_init();
  101. //spi_flash_read_test();
  102. #if ENABLED(SDSUPPORT)
  103. watchdog_refresh();
  104. UpdateAssets();
  105. #endif
  106. watchdog_refresh();
  107. mks_test_get();
  108. touch.Init();
  109. lv_init();
  110. lv_disp_buf_init(&disp_buf, bmp_public_buf, NULL, LV_HOR_RES_MAX * 18); /*Initialize the display buffer*/
  111. lv_disp_drv_t disp_drv; /*Descriptor of a display driver*/
  112. lv_disp_drv_init(&disp_drv); /*Basic initialization*/
  113. disp_drv.flush_cb = my_disp_flush; /*Set your driver function*/
  114. disp_drv.buffer = &disp_buf; /*Assign the buffer to the display*/
  115. lv_disp_drv_register(&disp_drv); /*Finally register the driver*/
  116. lv_indev_drv_t indev_drv;
  117. lv_indev_drv_init(&indev_drv); /*Descriptor of a input device driver*/
  118. indev_drv.type = LV_INDEV_TYPE_POINTER; /*Touch pad is a pointer-like device*/
  119. indev_drv.read_cb = my_touchpad_read; /*Set your driver function*/
  120. lv_indev_drv_register(&indev_drv); /*Finally register the driver*/
  121. #if HAS_ROTARY_ENCODER
  122. g = lv_group_create();
  123. lv_indev_drv_t enc_drv;
  124. lv_indev_drv_init(&enc_drv);
  125. enc_drv.type = LV_INDEV_TYPE_ENCODER;
  126. enc_drv.read_cb = my_mousewheel_read;
  127. lv_indev_t * enc_indev = lv_indev_drv_register(&enc_drv);
  128. lv_indev_set_group(enc_indev, g);
  129. #endif
  130. lv_fs_drv_t spi_flash_drv;
  131. lv_fs_drv_init(&spi_flash_drv);
  132. spi_flash_drv.letter = 'F';
  133. spi_flash_drv.open_cb = spi_flash_open_cb;
  134. spi_flash_drv.close_cb = spi_flash_close_cb;
  135. spi_flash_drv.read_cb = spi_flash_read_cb;
  136. spi_flash_drv.seek_cb = spi_flash_seek_cb;
  137. spi_flash_drv.tell_cb = spi_flash_tell_cb;
  138. lv_fs_drv_register(&spi_flash_drv);
  139. lv_fs_drv_t sd_drv;
  140. lv_fs_drv_init(&sd_drv);
  141. sd_drv.letter = 'S';
  142. sd_drv.open_cb = sd_open_cb;
  143. sd_drv.close_cb = sd_close_cb;
  144. sd_drv.read_cb = sd_read_cb;
  145. sd_drv.seek_cb = sd_seek_cb;
  146. sd_drv.tell_cb = sd_tell_cb;
  147. lv_fs_drv_register(&sd_drv);
  148. systick_attach_callback(SysTick_Callback);
  149. #if HAS_SPI_FLASH_FONT
  150. init_gb2312_font();
  151. #endif
  152. tft_style_init();
  153. filament_pin_setup();
  154. lv_encoder_pin_init();
  155. #if ENABLED(POWER_LOSS_RECOVERY)
  156. recovery.load();
  157. if (recovery.valid()) {
  158. if (gCfgItems.from_flash_pic)
  159. flash_preview_begin = true;
  160. else
  161. default_preview_flg = true;
  162. uiCfg.print_state = REPRINTING;
  163. ZERO(public_buf_m);
  164. strncpy(public_buf_m, recovery.info.sd_filename, sizeof(public_buf_m));
  165. card.printLongPath(public_buf_m);
  166. strncpy(list_file.long_name[sel_id], card.longFilename, sizeof(list_file.long_name[sel_id]));
  167. lv_draw_printing();
  168. }
  169. else
  170. #endif
  171. lv_draw_ready_print();
  172. if (mks_test_flag == 0x1E)
  173. mks_gpio_test();
  174. }
  175. void my_disp_flush(lv_disp_drv_t * disp, const lv_area_t * area, lv_color_t * color_p) {
  176. uint16_t i, width, height;
  177. width = area->x2 - area->x1 + 1;
  178. height = area->y2 - area->y1 + 1;
  179. SPI_TFT.setWindow((uint16_t)area->x1, (uint16_t)area->y1, width, height);
  180. for (i = 0; i < height; i++) {
  181. SPI_TFT.tftio.WriteSequence((uint16_t*)(color_p + width * i), width);
  182. }
  183. lv_disp_flush_ready(disp); /* Indicate you are ready with the flushing*/
  184. W25QXX.init(SPI_QUARTER_SPEED);
  185. }
  186. #define TICK_CYCLE 1
  187. unsigned int getTickDiff(unsigned int curTick, unsigned int lastTick) {
  188. return TICK_CYCLE * (lastTick <= curTick ? (curTick - lastTick) : (0xFFFFFFFF - lastTick + curTick));
  189. }
  190. static bool get_point(int16_t *x, int16_t *y) {
  191. bool is_touched = touch.getRawPoint(x, y);
  192. if (is_touched) {
  193. *x = int16_t((int32_t(*x) * XPT2046_X_CALIBRATION) >> 16) + XPT2046_X_OFFSET;
  194. *y = int16_t((int32_t(*y) * XPT2046_Y_CALIBRATION) >> 16) + XPT2046_Y_OFFSET;
  195. }
  196. #if (TFT_ROTATION & TFT_ROTATE_180)
  197. *x = int16_t((TFT_WIDTH) - (int)(*x));
  198. *y = int16_t((TFT_HEIGHT) - (int)(*y));
  199. #endif
  200. return is_touched;
  201. }
  202. bool my_touchpad_read(lv_indev_drv_t * indev_driver, lv_indev_data_t * data) {
  203. static int16_t last_x = 0, last_y = 0;
  204. static uint8_t last_touch_state = LV_INDEV_STATE_REL;
  205. static int32_t touch_time1 = 0;
  206. uint32_t tmpTime, diffTime = 0;
  207. tmpTime = millis();
  208. diffTime = getTickDiff(tmpTime, touch_time1);
  209. /*Save the state and save the pressed coordinate*/
  210. //data->state = TOUCH_PressValid(last_x, last_y) ? LV_INDEV_STATE_PR : LV_INDEV_STATE_REL;
  211. //if (data->state == LV_INDEV_STATE_PR) ADS7843_Rd_Addata((u16 *)&last_x, (u16 *)&last_y);
  212. //touchpad_get_xy(&last_x, &last_y);
  213. /*Save the pressed coordinates and the state*/
  214. if (diffTime > 20) {
  215. if (get_point(&last_x, &last_y)) {
  216. if (last_touch_state == LV_INDEV_STATE_PR) return false;
  217. data->state = LV_INDEV_STATE_PR;
  218. // Set the coordinates (if released use the last-pressed coordinates)
  219. data->point.x = last_x;
  220. data->point.y = last_y;
  221. last_x = last_y = 0;
  222. last_touch_state = LV_INDEV_STATE_PR;
  223. }
  224. else {
  225. if (last_touch_state == LV_INDEV_STATE_PR)
  226. data->state = LV_INDEV_STATE_REL;
  227. last_touch_state = LV_INDEV_STATE_REL;
  228. }
  229. touch_time1 = tmpTime;
  230. }
  231. return false; // Return `false` since no data is buffering or left to read
  232. }
  233. int16_t enc_diff = 0;
  234. lv_indev_state_t state = LV_INDEV_STATE_REL;
  235. bool my_mousewheel_read(lv_indev_drv_t * indev_drv, lv_indev_data_t * data) {
  236. (void) indev_drv; /*Unused*/
  237. data->state = state;
  238. data->enc_diff = enc_diff;
  239. enc_diff = 0;
  240. return false; /*No more data to read so return false*/
  241. }
  242. extern uint8_t currentFlashPage;
  243. //spi_flash
  244. uint32_t pic_read_base_addr = 0, pic_read_addr_offset = 0;
  245. lv_fs_res_t spi_flash_open_cb (lv_fs_drv_t * drv, void * file_p, const char * path, lv_fs_mode_t mode) {
  246. static char last_path_name[30];
  247. if (strcasecmp(last_path_name,path) != 0) {
  248. pic_read_base_addr = lv_get_pic_addr((uint8_t *)path);
  249. ZERO(last_path_name);
  250. strcpy(last_path_name,path);
  251. }
  252. else {
  253. W25QXX.init(SPI_QUARTER_SPEED);
  254. currentFlashPage = 0;
  255. }
  256. pic_read_addr_offset = pic_read_base_addr;
  257. return LV_FS_RES_OK;
  258. }
  259. lv_fs_res_t spi_flash_close_cb (lv_fs_drv_t * drv, void * file_p) {
  260. lv_fs_res_t res = LV_FS_RES_OK;
  261. /* Add your code here*/
  262. pic_read_addr_offset = pic_read_base_addr;
  263. return res;
  264. }
  265. lv_fs_res_t spi_flash_read_cb (lv_fs_drv_t * drv, void * file_p, void * buf, uint32_t btr, uint32_t * br) {
  266. lv_pic_test((uint8_t *)buf, pic_read_addr_offset, btr);
  267. *br = btr;
  268. return LV_FS_RES_OK;
  269. }
  270. lv_fs_res_t spi_flash_seek_cb(lv_fs_drv_t * drv, void * file_p, uint32_t pos) {
  271. #if HAS_SPI_FLASH_COMPRESSION
  272. if (pos == 4) {
  273. uint8_t bmp_header[4];
  274. SPIFlash.beginRead(pic_read_base_addr);
  275. SPIFlash.readData(bmp_header, 4);
  276. currentFlashPage = 1;
  277. }
  278. pic_read_addr_offset = pic_read_base_addr;
  279. #else
  280. pic_read_addr_offset = pic_read_base_addr + pos;
  281. #endif
  282. return LV_FS_RES_OK;
  283. }
  284. lv_fs_res_t spi_flash_tell_cb(lv_fs_drv_t * drv, void * file_p, uint32_t * pos_p) {
  285. *pos_p = pic_read_addr_offset - pic_read_base_addr;
  286. return LV_FS_RES_OK;
  287. }
  288. //sd
  289. char *cur_namefff;
  290. uint32_t sd_read_base_addr = 0,sd_read_addr_offset = 0;
  291. lv_fs_res_t sd_open_cb (lv_fs_drv_t * drv, void * file_p, const char * path, lv_fs_mode_t mode) {
  292. //cur_namefff = strrchr(path, '/');
  293. char name_buf[100];
  294. ZERO(name_buf);
  295. strcat(name_buf,"/");
  296. strcat(name_buf,path);
  297. char *temp = strstr(name_buf,".bin");
  298. if (temp) { strcpy(temp,".GCO"); }
  299. sd_read_base_addr = lv_open_gcode_file((char *)name_buf);
  300. sd_read_addr_offset = sd_read_base_addr;
  301. if (sd_read_addr_offset == 0) return LV_FS_RES_NOT_EX;
  302. return LV_FS_RES_OK;
  303. }
  304. lv_fs_res_t sd_close_cb (lv_fs_drv_t * drv, void * file_p) {
  305. /* Add your code here*/
  306. lv_close_gcode_file();
  307. return LV_FS_RES_OK;
  308. }
  309. lv_fs_res_t sd_read_cb (lv_fs_drv_t * drv, void * file_p, void * buf, uint32_t btr, uint32_t * br) {
  310. if (btr == 200) {
  311. lv_gcode_file_read((uint8_t *)buf);
  312. //pic_read_addr_offset += 208;
  313. *br = 200;
  314. }
  315. else if (btr == 4) {
  316. uint8_t header_pic[4] = { 0x04, 0x90, 0x81, 0x0C };
  317. memcpy(buf, header_pic, 4);
  318. //pic_read_addr_offset += 4;
  319. *br = 4;
  320. }
  321. return LV_FS_RES_OK;
  322. }
  323. lv_fs_res_t sd_seek_cb(lv_fs_drv_t * drv, void * file_p, uint32_t pos) {
  324. sd_read_addr_offset = sd_read_base_addr + (pos - 4) / 200 * 409;
  325. lv_gcode_file_seek(sd_read_addr_offset);
  326. return LV_FS_RES_OK;
  327. }
  328. lv_fs_res_t sd_tell_cb(lv_fs_drv_t * drv, void * file_p, uint32_t * pos_p) {
  329. if (sd_read_addr_offset) *pos_p = 0;
  330. else *pos_p = (sd_read_addr_offset - sd_read_base_addr) / 409 * 200 + 4;
  331. return LV_FS_RES_OK;
  332. }
  333. void lv_encoder_pin_init() {
  334. #if BUTTON_EXISTS(EN1)
  335. SET_INPUT_PULLUP(BTN_EN1);
  336. #endif
  337. #if BUTTON_EXISTS(EN2)
  338. SET_INPUT_PULLUP(BTN_EN2);
  339. #endif
  340. #if BUTTON_EXISTS(ENC)
  341. SET_INPUT_PULLUP(BTN_ENC);
  342. #endif
  343. #if BUTTON_EXISTS(BACK)
  344. SET_INPUT_PULLUP(BTN_BACK);
  345. #endif
  346. #if BUTTON_EXISTS(UP)
  347. SET_INPUT(BTN_UP);
  348. #endif
  349. #if BUTTON_EXISTS(DWN)
  350. SET_INPUT(BTN_DWN);
  351. #endif
  352. #if BUTTON_EXISTS(LFT)
  353. SET_INPUT(BTN_LFT);
  354. #endif
  355. #if BUTTON_EXISTS(RT)
  356. SET_INPUT(BTN_RT);
  357. #endif
  358. }
  359. #if 1 // HAS_ENCODER_ACTION
  360. //static const int8_t encoderDirection = 1;
  361. //static int16_t enc_Direction;
  362. void lv_update_encoder() {
  363. static uint32_t encoder_time1;
  364. uint32_t tmpTime, diffTime = 0;
  365. tmpTime = millis();
  366. diffTime = getTickDiff(tmpTime, encoder_time1);
  367. if (diffTime > 50) {
  368. #if HAS_ENCODER_WHEEL
  369. #if ANY_BUTTON(EN1, EN2, ENC, BACK)
  370. uint8_t newbutton = 0;
  371. #if BUTTON_EXISTS(EN1)
  372. if (BUTTON_PRESSED(EN1)) newbutton |= EN_A;
  373. #endif
  374. #if BUTTON_EXISTS(EN2)
  375. if (BUTTON_PRESSED(EN2)) newbutton |= EN_B;
  376. #endif
  377. #if BUTTON_EXISTS(ENC)
  378. if (BUTTON_PRESSED(ENC)) newbutton |= EN_C;
  379. #endif
  380. #if BUTTON_EXISTS(BACK)
  381. if (BUTTON_PRESSED(BACK)) newbutton |= EN_D;
  382. #endif
  383. #else
  384. constexpr uint8_t newbutton = 0;
  385. #endif
  386. static uint8_t buttons = 0;
  387. buttons = newbutton;
  388. static uint8_t lastEncoderBits;
  389. #define encrot0 0
  390. #define encrot1 1
  391. #define encrot2 2
  392. // Manage encoder rotation
  393. //#define ENCODER_SPIN(_E1, _E2) switch (lastEncoderBits) { case _E1: enc_Direction += encoderDirection; break; case _E2: enc_Direction -= encoderDirection; }
  394. uint8_t enc = 0;
  395. if (buttons & EN_A) enc |= B01;
  396. if (buttons & EN_B) enc |= B10;
  397. if (enc != lastEncoderBits) {
  398. switch (enc) {
  399. case encrot1:
  400. if (lastEncoderBits == encrot0) {
  401. enc_diff--;
  402. encoder_time1 = tmpTime;
  403. }
  404. break;
  405. case encrot2:
  406. if (lastEncoderBits == encrot0) {
  407. enc_diff++;
  408. encoder_time1 = tmpTime;
  409. }
  410. break;
  411. }
  412. lastEncoderBits = enc;
  413. }
  414. static uint8_t last_button_state = LV_INDEV_STATE_REL;
  415. const uint8_t enc_c = (buttons & EN_C) ? LV_INDEV_STATE_PR : LV_INDEV_STATE_REL;
  416. if (enc_c != last_button_state) {
  417. state = enc_c ? LV_INDEV_STATE_PR : LV_INDEV_STATE_REL;
  418. last_button_state = enc_c;
  419. }
  420. #endif // HAS_ENCODER_WHEEL
  421. } // next_button_update_ms
  422. }
  423. #endif // HAS_ENCODER_ACTION
  424. #endif // HAS_TFT_LVGL_UI