camera.c 9.8 KB

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  1. #include "camera.h"
  2. static void camera_view_draw_callback(Canvas* canvas, void* _model) {
  3. UartDumpModel* model = _model;
  4. // Prepare canvas
  5. //canvas_clear(canvas);
  6. canvas_set_color(canvas, ColorBlack);
  7. canvas_draw_frame(canvas, 0, 0, FRAME_WIDTH, FRAME_HEIGTH);
  8. for(size_t p = 0; p < FRAME_BUFFER_LENGTH; ++p) {
  9. uint8_t x = p % ROW_BUFFER_LENGTH; // 0 .. 15
  10. uint8_t y = p / ROW_BUFFER_LENGTH; // 0 .. 63
  11. for(uint8_t i = 0; i < 8; ++i) {
  12. if((model->pixels[p] & (1 << (7 - i))) != 0) {
  13. canvas_draw_dot(canvas, (x * 8) + i, y);
  14. }
  15. }
  16. }
  17. if(!model->initialized) {
  18. /*if(!model->marauderInitialized)
  19. {
  20. // Init marauder into stream mode
  21. uint8_t data[] = "\nstream\n";
  22. furi_hal_uart_tx(FuriHalUartIdUSART1, data, sizeof(data));
  23. }*/
  24. canvas_draw_icon(canvas, 80, 21, &I_WarningDolphinFlip_45x42);
  25. canvas_set_font(canvas, FontSecondary);
  26. canvas_draw_str(canvas, 8, 12, "Waiting ESP32-CAM...");
  27. canvas_draw_str(canvas, 20, 24, "VCC - 3V3/5V");
  28. canvas_draw_str(canvas, 20, 34, "GND - GND");
  29. canvas_draw_str(canvas, 20, 44, "U0R - TX");
  30. canvas_draw_str(canvas, 20, 54, "U0T - RX");
  31. }
  32. }
  33. void get_timefilename(FuriString* name) {
  34. FuriHalRtcDateTime datetime = {0};
  35. furi_hal_rtc_get_datetime(&datetime);
  36. furi_string_printf(
  37. name,
  38. APP_DATA_PATH("%.4d%.2d%.2d-%.2d%.2d%.2d.bmp"),
  39. datetime.year,
  40. datetime.month,
  41. datetime.day,
  42. datetime.hour,
  43. datetime.minute,
  44. datetime.second);
  45. }
  46. static void save_image(void* context) {
  47. UartEchoApp* app = context;
  48. furi_assert(app);
  49. NotificationApp* notifications = furi_record_open(RECORD_NOTIFICATION);
  50. // We need a storage struct (gain accesso to the filesystem API )
  51. Storage* storage = furi_record_open(RECORD_STORAGE);
  52. // storage_file_alloc gives to us a File pointer using the Storage API.
  53. File* file = storage_file_alloc(storage);
  54. if(storage_common_stat(storage, IMAGE_FILE_DIRECTORY_PATH, NULL) == FSE_NOT_EXIST) {
  55. storage_simply_mkdir(storage, IMAGE_FILE_DIRECTORY_PATH);
  56. }
  57. // create file name
  58. FuriString* file_name = furi_string_alloc();
  59. get_timefilename(file_name);
  60. // this functions open a file, using write access and creates new file if not exist.
  61. bool result =
  62. storage_file_open(file, furi_string_get_cstr(file_name), FSAM_WRITE, FSOM_OPEN_ALWAYS);
  63. //bool result = storage_file_open(file, EXT_PATH("DCIM/test.bmp"), FSAM_WRITE, FSOM_OPEN_ALWAYS);
  64. furi_string_free(file_name);
  65. if(result) {
  66. storage_file_write(file, bitmap_header, BITMAP_HEADER_LENGTH);
  67. with_view_model(
  68. app->view,
  69. UartDumpModel * model,
  70. {
  71. int8_t row_buffer[ROW_BUFFER_LENGTH];
  72. for(size_t i = 64; i > 0; --i) {
  73. for(size_t j = 0; j < ROW_BUFFER_LENGTH; ++j) {
  74. row_buffer[j] = model->pixels[((i - 1) * ROW_BUFFER_LENGTH) + j];
  75. }
  76. storage_file_write(file, row_buffer, ROW_BUFFER_LENGTH);
  77. }
  78. },
  79. false);
  80. }
  81. // Closing the "file descriptor"
  82. storage_file_close(file);
  83. // Freeing up memory
  84. storage_file_free(file);
  85. notification_message(notifications, result ? &sequence_success : &sequence_error);
  86. }
  87. static bool camera_view_input_callback(InputEvent* event, void* context) {
  88. if(event->type == InputTypePress) {
  89. uint8_t data[1];
  90. if(event->key == InputKeyUp) {
  91. data[0] = 'C';
  92. } else if(event->key == InputKeyDown) {
  93. data[0] = 'c';
  94. } else if(event->key == InputKeyRight) {
  95. data[0] = '>';
  96. } else if(event->key == InputKeyLeft) {
  97. data[0] = '<';
  98. } else if(event->key == InputKeyOk) {
  99. save_image(context);
  100. }
  101. furi_hal_uart_tx(FuriHalUartIdUSART1, data, 1);
  102. }
  103. return false;
  104. }
  105. static uint32_t camera_exit(void* context) {
  106. UNUSED(context);
  107. return VIEW_NONE;
  108. }
  109. static void camera_on_irq_cb(UartIrqEvent ev, uint8_t data, void* context) {
  110. furi_assert(context);
  111. UartEchoApp* app = context;
  112. if(ev == UartIrqEventRXNE) {
  113. furi_stream_buffer_send(app->rx_stream, &data, 1, 0);
  114. furi_thread_flags_set(furi_thread_get_id(app->worker_thread), WorkerEventRx);
  115. }
  116. }
  117. static void process_ringbuffer(UartDumpModel* model, uint8_t byte) {
  118. //// 1. Phase: filling the ringbuffer
  119. if(model->ringbuffer_index == 0 && byte != 'Y') { // First char has to be 'Y' in the buffer.
  120. return;
  121. }
  122. if(model->ringbuffer_index == 1 &&
  123. byte != ':') { // Second char has to be ':' in the buffer or reset.
  124. model->ringbuffer_index = 0;
  125. process_ringbuffer(model, byte);
  126. return;
  127. }
  128. model->row_ringbuffer[model->ringbuffer_index] =
  129. byte; // Assign current byte to the ringbuffer;
  130. ++model->ringbuffer_index; // Increment the ringbuffer index
  131. if(model->ringbuffer_index < RING_BUFFER_LENGTH) { // Let's wait 'till the buffer fills.
  132. return;
  133. }
  134. //// 2. Phase: flushing the ringbuffer to the framebuffer
  135. model->ringbuffer_index = 0; // Let's reset the ringbuffer
  136. model->initialized = true; // We've successfully established the connection
  137. size_t row_start_index =
  138. model->row_ringbuffer[2] * ROW_BUFFER_LENGTH; // Third char will determine the row number
  139. if(row_start_index > LAST_ROW_INDEX) { // Failsafe
  140. row_start_index = 0;
  141. }
  142. for(size_t i = 0; i < ROW_BUFFER_LENGTH; ++i) {
  143. model->pixels[row_start_index + i] =
  144. model->row_ringbuffer[i + 3]; // Writing the remaining 16 bytes into the frame buffer
  145. }
  146. }
  147. static int32_t camera_worker(void* context) {
  148. furi_assert(context);
  149. UartEchoApp* app = context;
  150. while(1) {
  151. uint32_t events =
  152. furi_thread_flags_wait(WORKER_EVENTS_MASK, FuriFlagWaitAny, FuriWaitForever);
  153. furi_check((events & FuriFlagError) == 0);
  154. if(events & WorkerEventStop) break;
  155. if(events & WorkerEventRx) {
  156. size_t length = 0;
  157. do {
  158. size_t intended_data_size = 64;
  159. uint8_t data[intended_data_size];
  160. length = furi_stream_buffer_receive(app->rx_stream, data, intended_data_size, 0);
  161. if(length > 0) {
  162. //furi_hal_uart_tx(FuriHalUartIdUSART1, data, length);
  163. with_view_model(
  164. app->view,
  165. UartDumpModel * model,
  166. {
  167. for(size_t i = 0; i < length; i++) {
  168. process_ringbuffer(model, data[i]);
  169. }
  170. },
  171. false);
  172. }
  173. } while(length > 0);
  174. notification_message(app->notification, &sequence_notification);
  175. with_view_model(
  176. app->view, UartDumpModel * model, { UNUSED(model); }, true);
  177. }
  178. }
  179. return 0;
  180. }
  181. static UartEchoApp* camera_app_alloc() {
  182. UartEchoApp* app = malloc(sizeof(UartEchoApp));
  183. app->rx_stream = furi_stream_buffer_alloc(2048, 1);
  184. // Gui
  185. app->gui = furi_record_open(RECORD_GUI);
  186. app->notification = furi_record_open(RECORD_NOTIFICATION);
  187. // View dispatcher
  188. app->view_dispatcher = view_dispatcher_alloc();
  189. view_dispatcher_enable_queue(app->view_dispatcher);
  190. view_dispatcher_attach_to_gui(app->view_dispatcher, app->gui, ViewDispatcherTypeFullscreen);
  191. // Views
  192. app->view = view_alloc();
  193. view_set_context(app->view, app);
  194. view_set_draw_callback(app->view, camera_view_draw_callback);
  195. view_set_input_callback(app->view, camera_view_input_callback);
  196. view_allocate_model(app->view, ViewModelTypeLocking, sizeof(UartDumpModel));
  197. with_view_model(
  198. app->view,
  199. UartDumpModel * model,
  200. {
  201. for(size_t i = 0; i < FRAME_BUFFER_LENGTH; i++) {
  202. model->pixels[i] = 0;
  203. }
  204. },
  205. true);
  206. view_set_previous_callback(app->view, camera_exit);
  207. view_dispatcher_add_view(app->view_dispatcher, 0, app->view);
  208. view_dispatcher_switch_to_view(app->view_dispatcher, 0);
  209. app->worker_thread = furi_thread_alloc_ex("UsbUartWorker", 2048, camera_worker, app);
  210. furi_thread_start(app->worker_thread);
  211. // Enable uart listener
  212. furi_hal_console_disable();
  213. furi_hal_uart_set_br(FuriHalUartIdUSART1, 230400);
  214. furi_hal_uart_set_irq_cb(FuriHalUartIdUSART1, camera_on_irq_cb, app);
  215. furi_hal_power_disable_external_3_3v();
  216. furi_hal_power_disable_otg();
  217. furi_delay_ms(200);
  218. furi_hal_power_enable_external_3_3v();
  219. furi_hal_power_enable_otg();
  220. for(int i = 0; i < 2; i++) {
  221. furi_delay_ms(500);
  222. furi_hal_uart_tx(FuriHalUartIdUSART1, (uint8_t[1]){'c'}, 1);
  223. }
  224. furi_delay_ms(1);
  225. return app;
  226. }
  227. static void camera_app_free(UartEchoApp* app) {
  228. furi_assert(app);
  229. furi_hal_console_enable(); // this will also clear IRQ callback so thread is no longer referenced
  230. furi_thread_flags_set(furi_thread_get_id(app->worker_thread), WorkerEventStop);
  231. furi_thread_join(app->worker_thread);
  232. furi_thread_free(app->worker_thread);
  233. // Free views
  234. view_dispatcher_remove_view(app->view_dispatcher, 0);
  235. view_free(app->view);
  236. view_dispatcher_free(app->view_dispatcher);
  237. // Close gui record
  238. furi_record_close(RECORD_GUI);
  239. furi_record_close(RECORD_NOTIFICATION);
  240. app->gui = NULL;
  241. furi_stream_buffer_free(app->rx_stream);
  242. // Free rest
  243. free(app);
  244. }
  245. int32_t camera_app(void* p) {
  246. UNUSED(p);
  247. UartEchoApp* app = camera_app_alloc();
  248. view_dispatcher_run(app->view_dispatcher);
  249. camera_app_free(app);
  250. furi_hal_power_disable_otg();
  251. return 0;
  252. }