Keyboard firmwares for Atmel AVR and Cortex-M
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  1. #include <stdint.h>
  2. #include "keycode.h"
  3. #include "serial.h"
  4. #include "host.h"
  5. #include "action.h"
  6. #include "action_util.h"
  7. #include "lufa.h"
  8. #include "rn42_task.h"
  9. #include "print.h"
  10. #include "debug.h"
  11. #include "timer.h"
  12. #include "command.h"
  13. #include "battery.h"
  14. static bool config_mode = false;
  15. static bool force_usb = false;
  16. static void status_led(bool on)
  17. {
  18. if (on) {
  19. DDRE |= (1<<6);
  20. PORTE &= ~(1<<6);
  21. } else {
  22. DDRE |= (1<<6);
  23. PORTE |= (1<<6);
  24. }
  25. }
  26. void rn42_task_init(void)
  27. {
  28. battery_init();
  29. }
  30. void rn42_task(void)
  31. {
  32. int16_t c;
  33. if (config_mode) {
  34. // Config mode: print output from RN-42
  35. while ((c = serial_recv2()) != -1) {
  36. // without flow control it'll fail to receive data when flooded
  37. xprintf("%c", c);
  38. }
  39. } else {
  40. // Raw mode: interpret output report of LED state
  41. while ((c = serial_recv2()) != -1) {
  42. // LED Out report: 0xFE, 0x02, 0x01, <leds>
  43. // To get the report over UART set bit3 with SH, command.
  44. static enum {LED_INIT, LED_FE, LED_02, LED_01} state = LED_INIT;
  45. switch (state) {
  46. case LED_INIT:
  47. if (c == 0xFE) state = LED_FE;
  48. else state = LED_INIT;
  49. break;
  50. case LED_FE:
  51. if (c == 0x02) state = LED_02;
  52. else state = LED_INIT;
  53. break;
  54. case LED_02:
  55. if (c == 0x01) state = LED_01;
  56. else state = LED_INIT;
  57. break;
  58. case LED_01:
  59. dprintf("LED status: %02X\n", c);
  60. rn42_set_leds(c);
  61. state = LED_INIT;
  62. break;
  63. default:
  64. state = LED_INIT;
  65. }
  66. }
  67. }
  68. /* Bluetooth mode when ready */
  69. if (!config_mode && !force_usb) {
  70. if (!rn42_rts() && host_get_driver() != &rn42_driver) {
  71. clear_keyboard();
  72. host_set_driver(&rn42_driver);
  73. } else if (rn42_rts() && host_get_driver() != &lufa_driver) {
  74. clear_keyboard();
  75. host_set_driver(&lufa_driver);
  76. }
  77. }
  78. static uint16_t prev_timer = 0;
  79. uint16_t e = timer_elapsed(prev_timer);
  80. if (e > 1000) {
  81. /* every second */
  82. prev_timer += e/1000*1000;
  83. /* Low voltage alert */
  84. uint8_t bs = battery_status();
  85. if (bs == LOW_VOLTAGE) {
  86. battery_led(LED_ON);
  87. } else {
  88. battery_led(LED_CHARGER);
  89. }
  90. /* every minute */
  91. uint32_t t = timer_read32()/1000;
  92. if (t%60 == 0) {
  93. uint16_t v = battery_voltage();
  94. uint8_t h = t/3600;
  95. uint8_t m = t%3600/60;
  96. uint8_t s = t%60;
  97. xprintf("%02u:%02u:%02u\t%umV\n", h, m, s, v);
  98. /* TODO: xprintf doesn't work for this.
  99. xprintf("%02u:%02u:%02u\t%umV\n", (t/3600), (t%3600/60), (t%60), v);
  100. */
  101. }
  102. }
  103. /* Connection monitor */
  104. if (rn42_linked()) {
  105. status_led(true);
  106. } else {
  107. status_led(false);
  108. }
  109. }
  110. /******************************************************************************
  111. * Command
  112. ******************************************************************************/
  113. bool command_extra(uint8_t code)
  114. {
  115. uint32_t t;
  116. uint16_t b;
  117. static host_driver_t *prev_driver = &rn42_driver;
  118. switch (code) {
  119. case KC_H:
  120. case KC_SLASH: /* ? */
  121. print("\n\n----- Bluetooth RN-42 Help -----\n");
  122. print("Del: enter/exit config mode(auto_connect/disconnect)\n");
  123. print("i: RN-42 info\n");
  124. print("b: battery voltage\n");
  125. if (config_mode) {
  126. return true;
  127. } else {
  128. print("u: Force USB mode\n");
  129. return false; // to display default command help
  130. }
  131. case KC_DELETE:
  132. if (rn42_autoconnecting()) {
  133. prev_driver = host_get_driver();
  134. clear_keyboard();
  135. _delay_ms(500);
  136. host_set_driver(&rn42_config_driver); // null driver; not to send a key to host
  137. rn42_disconnect();
  138. print("\nRN-42: disconnect\n");
  139. print("Enter config mode\n");
  140. print("type $$$ to start and + for local echo\n");
  141. command_state = CONSOLE;
  142. config_mode = true;
  143. } else {
  144. rn42_autoconnect();
  145. print("\nRN-42: auto_connect\n");
  146. print("Exit config mode\n");
  147. command_state = ONESHOT;
  148. config_mode = false;
  149. //clear_keyboard();
  150. host_set_driver(prev_driver);
  151. }
  152. return true;
  153. case KC_U:
  154. if (config_mode) return false;
  155. if (force_usb) {
  156. print("Auto mode\n");
  157. force_usb = false;
  158. } else {
  159. print("USB mode\n");
  160. force_usb = true;
  161. clear_keyboard();
  162. host_set_driver(&lufa_driver);
  163. }
  164. return true;
  165. case KC_I:
  166. print("\n----- RN-42 info -----\n");
  167. xprintf("protocol: %s\n", (host_get_driver() == &rn42_driver) ? "RN-42" : "LUFA");
  168. xprintf("force_usb: %X\n", force_usb);
  169. xprintf("rn42: %s\n", rn42_rts() ? "OFF" : (rn42_linked() ? "CONN" : "ON"));
  170. xprintf("rn42_autoconnecting(): %X\n", rn42_autoconnecting());
  171. xprintf("config_mode: %X\n", config_mode);
  172. xprintf("USB State: %s\n",
  173. (USB_DeviceState == DEVICE_STATE_Unattached) ? "Unattached" :
  174. (USB_DeviceState == DEVICE_STATE_Powered) ? "Powered" :
  175. (USB_DeviceState == DEVICE_STATE_Default) ? "Default" :
  176. (USB_DeviceState == DEVICE_STATE_Addressed) ? "Addressed" :
  177. (USB_DeviceState == DEVICE_STATE_Configured) ? "Configured" :
  178. (USB_DeviceState == DEVICE_STATE_Suspended) ? "Suspended" : "?");
  179. xprintf("battery: ");
  180. switch (battery_status()) {
  181. case FULL_CHARGED: xprintf("FULL"); break;
  182. case CHARGING: xprintf("CHARG"); break;
  183. case DISCHARGING: xprintf("DISCHG"); break;
  184. case LOW_VOLTAGE: xprintf("LOW"); break;
  185. default: xprintf("?"); break;
  186. };
  187. xprintf("\n");
  188. xprintf("RemoteWakeupEnabled: %X\n", USB_Device_RemoteWakeupEnabled);
  189. xprintf("VBUS: %X\n", USBSTA&(1<<VBUS));
  190. t = timer_read32()/1000;
  191. uint8_t d = t/3600/24;
  192. uint8_t h = t/3600;
  193. uint8_t m = t%3600/60;
  194. uint8_t s = t%60;
  195. xprintf("uptime: %02ud%02u:%02u:%02u\n", d, h, m, s);
  196. return true;
  197. case KC_B:
  198. // battery monitor
  199. t = timer_read32()/1000;
  200. b = battery_voltage();
  201. xprintf("BAT: %umV\t", b);
  202. xprintf("%02u:", t/3600);
  203. xprintf("%02u:", t%3600/60);
  204. xprintf("%02u\n", t%60);
  205. return true;
  206. default:
  207. if (config_mode)
  208. return true;
  209. else
  210. return false; // exec default command
  211. }
  212. return true;
  213. }
  214. static uint8_t code2asc(uint8_t code);
  215. bool command_console_extra(uint8_t code)
  216. {
  217. switch (code) {
  218. default:
  219. rn42_putc(code2asc(code));
  220. return true;
  221. }
  222. return false;
  223. }
  224. // convert keycode into ascii charactor
  225. static uint8_t code2asc(uint8_t code)
  226. {
  227. bool shifted = (get_mods() & (MOD_BIT(KC_LSHIFT)|MOD_BIT(KC_RSHIFT))) ? true : false;
  228. switch (code) {
  229. case KC_A: return (shifted ? 'A' : 'a');
  230. case KC_B: return (shifted ? 'B' : 'b');
  231. case KC_C: return (shifted ? 'C' : 'c');
  232. case KC_D: return (shifted ? 'D' : 'd');
  233. case KC_E: return (shifted ? 'E' : 'e');
  234. case KC_F: return (shifted ? 'F' : 'f');
  235. case KC_G: return (shifted ? 'G' : 'g');
  236. case KC_H: return (shifted ? 'H' : 'h');
  237. case KC_I: return (shifted ? 'I' : 'i');
  238. case KC_J: return (shifted ? 'J' : 'j');
  239. case KC_K: return (shifted ? 'K' : 'k');
  240. case KC_L: return (shifted ? 'L' : 'l');
  241. case KC_M: return (shifted ? 'M' : 'm');
  242. case KC_N: return (shifted ? 'N' : 'n');
  243. case KC_O: return (shifted ? 'O' : 'o');
  244. case KC_P: return (shifted ? 'P' : 'p');
  245. case KC_Q: return (shifted ? 'Q' : 'q');
  246. case KC_R: return (shifted ? 'R' : 'r');
  247. case KC_S: return (shifted ? 'S' : 's');
  248. case KC_T: return (shifted ? 'T' : 't');
  249. case KC_U: return (shifted ? 'U' : 'u');
  250. case KC_V: return (shifted ? 'V' : 'v');
  251. case KC_W: return (shifted ? 'W' : 'w');
  252. case KC_X: return (shifted ? 'X' : 'x');
  253. case KC_Y: return (shifted ? 'Y' : 'y');
  254. case KC_Z: return (shifted ? 'Z' : 'z');
  255. case KC_1: return (shifted ? '!' : '1');
  256. case KC_2: return (shifted ? '@' : '2');
  257. case KC_3: return (shifted ? '#' : '3');
  258. case KC_4: return (shifted ? '$' : '4');
  259. case KC_5: return (shifted ? '%' : '5');
  260. case KC_6: return (shifted ? '^' : '6');
  261. case KC_7: return (shifted ? '&' : '7');
  262. case KC_8: return (shifted ? '*' : '8');
  263. case KC_9: return (shifted ? '(' : '9');
  264. case KC_0: return (shifted ? ')' : '0');
  265. case KC_ENTER: return '\n';
  266. case KC_ESCAPE: return 0x1B;
  267. case KC_BSPACE: return '\b';
  268. case KC_TAB: return '\t';
  269. case KC_SPACE: return ' ';
  270. case KC_MINUS: return (shifted ? '_' : '-');
  271. case KC_EQUAL: return (shifted ? '+' : '=');
  272. case KC_LBRACKET: return (shifted ? '{' : '[');
  273. case KC_RBRACKET: return (shifted ? '}' : ']');
  274. case KC_BSLASH: return (shifted ? '|' : '\\');
  275. case KC_NONUS_HASH: return (shifted ? '|' : '\\');
  276. case KC_SCOLON: return (shifted ? ':' : ';');
  277. case KC_QUOTE: return (shifted ? '"' : '\'');
  278. case KC_GRAVE: return (shifted ? '~' : '`');
  279. case KC_COMMA: return (shifted ? '<' : ',');
  280. case KC_DOT: return (shifted ? '>' : '.');
  281. case KC_SLASH: return (shifted ? '?' : '/');
  282. case KC_DELETE: return '\0'; // Delete to disconnect
  283. default: return ' ';
  284. }
  285. }