pxa2xx_keypad.c 9.5 KB

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  1. /*
  2. * Intel PXA27X Keypad Controller emulation.
  3. *
  4. * Copyright (c) 2007 MontaVista Software, Inc
  5. * Written by Armin Kuster <akuster@kama-aina.net>
  6. * or <Akuster@mvista.com>
  7. *
  8. * This code is licensed under the GPLv2.
  9. */
  10. #include "hw.h"
  11. #include "pxa.h"
  12. #include "console.h"
  13. /*
  14. * Keypad
  15. */
  16. #define KPC 0x00 /* Keypad Interface Control register */
  17. #define KPDK 0x08 /* Keypad Interface Direct Key register */
  18. #define KPREC 0x10 /* Keypad Interface Rotary Encoder register */
  19. #define KPMK 0x18 /* Keypad Interface Matrix Key register */
  20. #define KPAS 0x20 /* Keypad Interface Automatic Scan register */
  21. #define KPASMKP0 0x28 /* Keypad Interface Automatic Scan Multiple
  22. Key Presser register 0 */
  23. #define KPASMKP1 0x30 /* Keypad Interface Automatic Scan Multiple
  24. Key Presser register 1 */
  25. #define KPASMKP2 0x38 /* Keypad Interface Automatic Scan Multiple
  26. Key Presser register 2 */
  27. #define KPASMKP3 0x40 /* Keypad Interface Automatic Scan Multiple
  28. Key Presser register 3 */
  29. #define KPKDI 0x48 /* Keypad Interface Key Debounce Interval
  30. register */
  31. /* Keypad defines */
  32. #define KPC_AS (0x1 << 30) /* Automatic Scan bit */
  33. #define KPC_ASACT (0x1 << 29) /* Automatic Scan on Activity */
  34. #define KPC_MI (0x1 << 22) /* Matrix interrupt bit */
  35. #define KPC_IMKP (0x1 << 21) /* Ignore Multiple Key Press */
  36. #define KPC_MS7 (0x1 << 20) /* Matrix scan line 7 */
  37. #define KPC_MS6 (0x1 << 19) /* Matrix scan line 6 */
  38. #define KPC_MS5 (0x1 << 18) /* Matrix scan line 5 */
  39. #define KPC_MS4 (0x1 << 17) /* Matrix scan line 4 */
  40. #define KPC_MS3 (0x1 << 16) /* Matrix scan line 3 */
  41. #define KPC_MS2 (0x1 << 15) /* Matrix scan line 2 */
  42. #define KPC_MS1 (0x1 << 14) /* Matrix scan line 1 */
  43. #define KPC_MS0 (0x1 << 13) /* Matrix scan line 0 */
  44. #define KPC_ME (0x1 << 12) /* Matrix Keypad Enable */
  45. #define KPC_MIE (0x1 << 11) /* Matrix Interrupt Enable */
  46. #define KPC_DK_DEB_SEL (0x1 << 9) /* Direct Keypad Debounce Select */
  47. #define KPC_DI (0x1 << 5) /* Direct key interrupt bit */
  48. #define KPC_RE_ZERO_DEB (0x1 << 4) /* Rotary Encoder Zero Debounce */
  49. #define KPC_REE1 (0x1 << 3) /* Rotary Encoder1 Enable */
  50. #define KPC_REE0 (0x1 << 2) /* Rotary Encoder0 Enable */
  51. #define KPC_DE (0x1 << 1) /* Direct Keypad Enable */
  52. #define KPC_DIE (0x1 << 0) /* Direct Keypad interrupt Enable */
  53. #define KPDK_DKP (0x1 << 31)
  54. #define KPDK_DK7 (0x1 << 7)
  55. #define KPDK_DK6 (0x1 << 6)
  56. #define KPDK_DK5 (0x1 << 5)
  57. #define KPDK_DK4 (0x1 << 4)
  58. #define KPDK_DK3 (0x1 << 3)
  59. #define KPDK_DK2 (0x1 << 2)
  60. #define KPDK_DK1 (0x1 << 1)
  61. #define KPDK_DK0 (0x1 << 0)
  62. #define KPREC_OF1 (0x1 << 31)
  63. #define KPREC_UF1 (0x1 << 30)
  64. #define KPREC_OF0 (0x1 << 15)
  65. #define KPREC_UF0 (0x1 << 14)
  66. #define KPMK_MKP (0x1 << 31)
  67. #define KPAS_SO (0x1 << 31)
  68. #define KPASMKPx_SO (0x1 << 31)
  69. #define KPASMKPx_MKC(row, col) (1 << (row + 16 * (col % 2)))
  70. #define PXAKBD_MAXROW 8
  71. #define PXAKBD_MAXCOL 8
  72. struct pxa2xx_keypad_s{
  73. qemu_irq irq;
  74. struct keymap *map;
  75. uint32_t kpc;
  76. uint32_t kpdk;
  77. uint32_t kprec;
  78. uint32_t kpmk;
  79. uint32_t kpas;
  80. uint32_t kpasmkp0;
  81. uint32_t kpasmkp1;
  82. uint32_t kpasmkp2;
  83. uint32_t kpasmkp3;
  84. uint32_t kpkdi;
  85. };
  86. static void pxa27x_keyboard_event (struct pxa2xx_keypad_s *kp, int keycode)
  87. {
  88. int row, col,rel;
  89. if(!(kp->kpc & KPC_ME)) /* skip if not enabled */
  90. return;
  91. if(kp->kpc & KPC_AS || kp->kpc & KPC_ASACT) {
  92. if(kp->kpc & KPC_AS)
  93. kp->kpc &= ~(KPC_AS);
  94. rel = (keycode & 0x80) ? 1 : 0; /* key release from qemu */
  95. keycode &= ~(0x80); /* strip qemu key release bit */
  96. row = kp->map[keycode].row;
  97. col = kp->map[keycode].column;
  98. if(row == -1 || col == -1)
  99. return;
  100. switch (col) {
  101. case 0:
  102. case 1:
  103. if(rel)
  104. kp->kpasmkp0 = ~(0xffffffff);
  105. else
  106. kp->kpasmkp0 |= KPASMKPx_MKC(row,col);
  107. break;
  108. case 2:
  109. case 3:
  110. if(rel)
  111. kp->kpasmkp1 = ~(0xffffffff);
  112. else
  113. kp->kpasmkp1 |= KPASMKPx_MKC(row,col);
  114. break;
  115. case 4:
  116. case 5:
  117. if(rel)
  118. kp->kpasmkp2 = ~(0xffffffff);
  119. else
  120. kp->kpasmkp2 |= KPASMKPx_MKC(row,col);
  121. break;
  122. case 6:
  123. case 7:
  124. if(rel)
  125. kp->kpasmkp3 = ~(0xffffffff);
  126. else
  127. kp->kpasmkp3 |= KPASMKPx_MKC(row,col);
  128. break;
  129. } /* switch */
  130. goto out;
  131. }
  132. return;
  133. out:
  134. if(kp->kpc & KPC_MIE) {
  135. kp->kpc |= KPC_MI;
  136. qemu_irq_raise(kp->irq);
  137. }
  138. return;
  139. }
  140. static uint32_t pxa2xx_keypad_read(void *opaque, target_phys_addr_t offset)
  141. {
  142. struct pxa2xx_keypad_s *s = (struct pxa2xx_keypad_s *) opaque;
  143. uint32_t tmp;
  144. switch (offset) {
  145. case KPC:
  146. tmp = s->kpc;
  147. if(tmp & KPC_MI)
  148. s->kpc &= ~(KPC_MI);
  149. if(tmp & KPC_DI)
  150. s->kpc &= ~(KPC_DI);
  151. qemu_irq_lower(s->irq);
  152. return tmp;
  153. break;
  154. case KPDK:
  155. return s->kpdk;
  156. break;
  157. case KPREC:
  158. tmp = s->kprec;
  159. if(tmp & KPREC_OF1)
  160. s->kprec &= ~(KPREC_OF1);
  161. if(tmp & KPREC_UF1)
  162. s->kprec &= ~(KPREC_UF1);
  163. if(tmp & KPREC_OF0)
  164. s->kprec &= ~(KPREC_OF0);
  165. if(tmp & KPREC_UF0)
  166. s->kprec &= ~(KPREC_UF0);
  167. return tmp;
  168. break;
  169. case KPMK:
  170. tmp = s->kpmk;
  171. if(tmp & KPMK_MKP)
  172. s->kpmk &= ~(KPMK_MKP);
  173. return tmp;
  174. break;
  175. case KPAS:
  176. return s->kpas;
  177. break;
  178. case KPASMKP0:
  179. return s->kpasmkp0;
  180. break;
  181. case KPASMKP1:
  182. return s->kpasmkp1;
  183. break;
  184. case KPASMKP2:
  185. return s->kpasmkp2;
  186. break;
  187. case KPASMKP3:
  188. return s->kpasmkp3;
  189. break;
  190. case KPKDI:
  191. return s->kpkdi;
  192. break;
  193. default:
  194. cpu_abort(cpu_single_env, "%s: Bad offset " REG_FMT "\n",
  195. __FUNCTION__, offset);
  196. }
  197. return 0;
  198. }
  199. static void pxa2xx_keypad_write(void *opaque,
  200. target_phys_addr_t offset, uint32_t value)
  201. {
  202. struct pxa2xx_keypad_s *s = (struct pxa2xx_keypad_s *) opaque;
  203. switch (offset) {
  204. case KPC:
  205. s->kpc = value;
  206. break;
  207. case KPDK:
  208. s->kpdk = value;
  209. break;
  210. case KPREC:
  211. s->kprec = value;
  212. break;
  213. case KPMK:
  214. s->kpmk = value;
  215. break;
  216. case KPAS:
  217. s->kpas = value;
  218. break;
  219. case KPASMKP0:
  220. s->kpasmkp0 = value;
  221. break;
  222. case KPASMKP1:
  223. s->kpasmkp1 = value;
  224. break;
  225. case KPASMKP2:
  226. s->kpasmkp2 = value;
  227. break;
  228. case KPASMKP3:
  229. s->kpasmkp3 = value;
  230. break;
  231. case KPKDI:
  232. s->kpkdi = value;
  233. break;
  234. default:
  235. cpu_abort(cpu_single_env, "%s: Bad offset " REG_FMT "\n",
  236. __FUNCTION__, offset);
  237. }
  238. }
  239. static CPUReadMemoryFunc *pxa2xx_keypad_readfn[] = {
  240. pxa2xx_keypad_read,
  241. pxa2xx_keypad_read,
  242. pxa2xx_keypad_read
  243. };
  244. static CPUWriteMemoryFunc *pxa2xx_keypad_writefn[] = {
  245. pxa2xx_keypad_write,
  246. pxa2xx_keypad_write,
  247. pxa2xx_keypad_write
  248. };
  249. static void pxa2xx_keypad_save(QEMUFile *f, void *opaque)
  250. {
  251. struct pxa2xx_keypad_s *s = (struct pxa2xx_keypad_s *) opaque;
  252. qemu_put_be32s(f, &s->kpc);
  253. qemu_put_be32s(f, &s->kpdk);
  254. qemu_put_be32s(f, &s->kprec);
  255. qemu_put_be32s(f, &s->kpmk);
  256. qemu_put_be32s(f, &s->kpas);
  257. qemu_put_be32s(f, &s->kpasmkp0);
  258. qemu_put_be32s(f, &s->kpasmkp1);
  259. qemu_put_be32s(f, &s->kpasmkp2);
  260. qemu_put_be32s(f, &s->kpasmkp3);
  261. qemu_put_be32s(f, &s->kpkdi);
  262. }
  263. static int pxa2xx_keypad_load(QEMUFile *f, void *opaque, int version_id)
  264. {
  265. struct pxa2xx_keypad_s *s = (struct pxa2xx_keypad_s *) opaque;
  266. qemu_get_be32s(f, &s->kpc);
  267. qemu_get_be32s(f, &s->kpdk);
  268. qemu_get_be32s(f, &s->kprec);
  269. qemu_get_be32s(f, &s->kpmk);
  270. qemu_get_be32s(f, &s->kpas);
  271. qemu_get_be32s(f, &s->kpasmkp0);
  272. qemu_get_be32s(f, &s->kpasmkp1);
  273. qemu_get_be32s(f, &s->kpasmkp2);
  274. qemu_get_be32s(f, &s->kpasmkp3);
  275. qemu_get_be32s(f, &s->kpkdi);
  276. return 0;
  277. }
  278. struct pxa2xx_keypad_s *pxa27x_keypad_init(target_phys_addr_t base,
  279. qemu_irq irq)
  280. {
  281. int iomemtype;
  282. struct pxa2xx_keypad_s *s;
  283. s = (struct pxa2xx_keypad_s *) qemu_mallocz(sizeof(struct pxa2xx_keypad_s));
  284. s->irq = irq;
  285. iomemtype = cpu_register_io_memory(0, pxa2xx_keypad_readfn,
  286. pxa2xx_keypad_writefn, s);
  287. cpu_register_physical_memory(base, 0x00100000, iomemtype);
  288. register_savevm("pxa2xx_keypad", 0, 0,
  289. pxa2xx_keypad_save, pxa2xx_keypad_load, s);
  290. return s;
  291. }
  292. void pxa27x_register_keypad(struct pxa2xx_keypad_s *kp, struct keymap *map,
  293. int size)
  294. {
  295. if(!map || size < 0x80) {
  296. fprintf(stderr, "%s - No PXA keypad map defined\n", __FUNCTION__);
  297. exit(-1);
  298. }
  299. kp->map = map;
  300. qemu_add_kbd_event_handler((QEMUPutKBDEvent *) pxa27x_keyboard_event, kp);
  301. }