mbox.c 11 KB

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  1. /*
  2. * File : mbox.c
  3. * Copyright (c) 2006-2021, RT-Thread Development Team
  4. *
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Change Logs:
  8. * Date Author Notes
  9. * 2019-08-29 zdzn first version
  10. */
  11. /* mailbox message buffer */
  12. #include "mbox.h"
  13. #include "mmu.h"
  14. //volatile unsigned int __attribute__((aligned(16))) mbox[36];
  15. volatile unsigned int *mbox = (volatile unsigned int *) MBOX_ADDR;
  16. /**
  17. * Make a mailbox call. Returns 0 on failure, non-zero on success
  18. */
  19. int mbox_call(unsigned char ch, int mmu_enable)
  20. {
  21. unsigned int r = (((MBOX_ADDR)&~0xF) | (ch&0xF));
  22. if(mmu_enable)
  23. r = BUS_ADDRESS(r);
  24. /* wait until we can write to the mailbox */
  25. do
  26. {
  27. asm volatile("nop");
  28. } while (*MBOX_STATUS & MBOX_FULL);
  29. /* write the address of our message to the mailbox with channel identifier */
  30. *MBOX_WRITE = r;
  31. /* now wait for the response */
  32. // rt_kprintf("mailbox request %x\n",r);
  33. while(1)
  34. {
  35. /* is there a response? */
  36. do
  37. {
  38. asm volatile("nop");
  39. } while (*MBOX_STATUS & MBOX_EMPTY);
  40. /* is it a response to our message? */
  41. if (r == *MBOX_READ){
  42. /* is it a valid successful response? */
  43. // rt_kprintf("mbox: %x, %x, %x, %x, %x, %x, %x, %x\n", mbox[0], mbox[1], mbox[2], mbox[3], mbox[4], mbox[5], mbox[6], mbox[7]);
  44. return mbox[1] == MBOX_RESPONSE;
  45. }
  46. }
  47. return 0;
  48. }
  49. int bcm283x_mbox_hardware_get_model(void)
  50. {
  51. mbox[0] = 8*4; // length of the message
  52. mbox[1] = MBOX_REQUEST; // this is a request message
  53. mbox[2] = MBOX_TAG_HARDWARE_GET_MODEL;
  54. mbox[3] = 4; // buffer size
  55. mbox[4] = 0; // len
  56. mbox[5] = 0;
  57. mbox[6] = 0;
  58. mbox[7] = MBOX_TAG_LAST;
  59. mbox_call(8, MMU_DISABLE);
  60. return mbox[5];
  61. }
  62. int bcm283x_mbox_hardware_get_revison(void)
  63. {
  64. mbox[0] = 8*4; // length of the message
  65. mbox[1] = MBOX_REQUEST; // this is a request message
  66. mbox[2] = MBOX_TAG_HARDWARE_GET_REV;
  67. mbox[3] = 4; // buffer size
  68. mbox[4] = 0; // len
  69. mbox[5] = 0;
  70. mbox[6] = 0;
  71. mbox[7] = MBOX_TAG_LAST;
  72. mbox_call(8, MMU_DISABLE);
  73. return mbox[5];
  74. }
  75. int bcm283x_mbox_hardware_get_mac_address(uint8_t * mac)
  76. {
  77. mbox[0] = 8*4; // length of the message
  78. mbox[1] = MBOX_REQUEST; // this is a request message
  79. mbox[2] = MBOX_TAG_HARDWARE_GET_MAC_ADDRESS;
  80. mbox[3] = 6; // buffer size
  81. mbox[4] = 0; // len
  82. mbox[5] = 0;
  83. mbox[6] = 0;
  84. mbox[7] = MBOX_TAG_LAST;
  85. mbox_call(8, MMU_DISABLE);
  86. char * mac_str = (char *)&mbox[5];
  87. mac[0] = mac_str[0];
  88. mac[1] = mac_str[1];
  89. mac[2] = mac_str[2];
  90. mac[3] = mac_str[3];
  91. mac[4] = mac_str[4];
  92. mac[5] = mac_str[5];
  93. return 0;
  94. }
  95. int bcm283x_mbox_hardware_get_serial(rt_uint64_t* sn)
  96. {
  97. mbox[0] = 8*4; // length of the message
  98. mbox[1] = MBOX_REQUEST; // this is a request message
  99. mbox[2] = MBOX_TAG_HARDWARE_GET_SERIAL;
  100. mbox[3] = 8; // buffer size
  101. mbox[4] = 0; // len
  102. mbox[5] = 0;
  103. mbox[6] = 0;
  104. mbox[7] = MBOX_TAG_LAST;
  105. mbox_call(8, MMU_DISABLE);
  106. sn = (rt_uint64_t *)&mbox[5];
  107. return 0;
  108. }
  109. int bcm283x_mbox_hardware_get_arm_memory(rt_uint32_t * base, rt_uint32_t * size)
  110. {
  111. mbox[0] = 8*4; // length of the message
  112. mbox[1] = MBOX_REQUEST; // this is a request message
  113. mbox[2] = MBOX_TAG_HARDWARE_GET_ARM_MEMORY;
  114. mbox[3] = 8; // buffer size
  115. mbox[4] = 0; // len
  116. mbox[5] = 0;
  117. mbox[6] = 0;
  118. mbox[7] = MBOX_TAG_LAST;
  119. mbox_call(8, MMU_DISABLE);
  120. *base = mbox[5];
  121. *size = mbox[6];
  122. return 0;
  123. }
  124. int bcm283x_mbox_hardware_get_vc_memory(rt_uint32_t * base, rt_uint32_t * size)
  125. {
  126. mbox[0] = 8*4; // length of the message
  127. mbox[1] = MBOX_REQUEST; // this is a request message
  128. mbox[2] = MBOX_TAG_HARDWARE_GET_VC_MEMORY;
  129. mbox[3] = 8; // buffer size
  130. mbox[4] = 0; // len
  131. mbox[5] = 0;
  132. mbox[6] = 0;
  133. mbox[7] = MBOX_TAG_LAST;
  134. mbox_call(8, MMU_DISABLE);
  135. *base = mbox[5];
  136. *size = mbox[6];
  137. return 0;
  138. }
  139. int bcm283x_mbox_clock_get_turbo(void)
  140. {
  141. mbox[0] = 8*4; // length of the message
  142. mbox[1] = MBOX_REQUEST; // this is a request message
  143. mbox[2] = MBOX_TAG_CLOCK_GET_TURBO;
  144. mbox[3] = 8; // buffer size
  145. mbox[4] = 4; // len
  146. mbox[5] = 0; // id
  147. mbox[6] = 0; // val
  148. mbox[7] = MBOX_TAG_LAST;
  149. mbox_call(8, MMU_DISABLE);
  150. if(mbox[5] != 0)
  151. {
  152. return -1;
  153. }
  154. return mbox[6];
  155. }
  156. int bcm283x_mbox_clock_set_turbo(int level)
  157. {
  158. mbox[0] = 8*4; // length of the message
  159. mbox[1] = MBOX_REQUEST; // this is a request message
  160. mbox[2] = MBOX_TAG_CLOCK_SET_TURBO;
  161. mbox[3] = 8; // buffer size
  162. mbox[4] = 8; // len
  163. mbox[5] = 0; // id
  164. mbox[6] = level ? 1 : 0;
  165. mbox[7] = MBOX_TAG_LAST;
  166. mbox_call(8, MMU_DISABLE);
  167. if(mbox[5] != 0)
  168. {
  169. return -1;
  170. }
  171. return mbox[6];
  172. }
  173. int bcm283x_mbox_clock_get_state(int id)
  174. {
  175. mbox[0] = 8*4; // length of the message
  176. mbox[1] = MBOX_REQUEST; // this is a request message
  177. mbox[2] = MBOX_TAG_CLOCK_GET_STATE;
  178. mbox[3] = 8; // buffer size
  179. mbox[4] = 4; // len
  180. mbox[5] = id; // id
  181. mbox[6] = 0;
  182. mbox[7] = MBOX_TAG_LAST;
  183. mbox_call(8, MMU_DISABLE);
  184. if(mbox[5] != id)
  185. {
  186. return -1;
  187. }
  188. return (mbox[6] & 0x3);
  189. }
  190. int bcm283x_mbox_clock_set_state(int id, int state)
  191. {
  192. mbox[0] = 8*4; // length of the message
  193. mbox[1] = MBOX_REQUEST; // this is a request message
  194. mbox[2] = MBOX_TAG_CLOCK_SET_STATE;
  195. mbox[3] = 8; // buffer size
  196. mbox[4] = 8; // len
  197. mbox[5] = id; // id
  198. mbox[6] = state & 0x3;
  199. mbox[7] = MBOX_TAG_LAST;
  200. mbox_call(8, MMU_DISABLE);
  201. if(mbox[5] != id)
  202. {
  203. return -1;
  204. }
  205. return (mbox[6] & 0x3);
  206. }
  207. int bcm283x_mbox_clock_get_rate(int id)
  208. {
  209. mbox[0] = 8*4; // length of the message
  210. mbox[1] = MBOX_REQUEST; // this is a request message
  211. mbox[2] = MBOX_TAG_CLOCK_GET_RATE;
  212. mbox[3] = 8; // buffer size
  213. mbox[4] = 4; // len
  214. mbox[5] = id; // id
  215. mbox[6] = 0;
  216. mbox[7] = MBOX_TAG_LAST;
  217. mbox_call(8, MMU_DISABLE);
  218. if(mbox[5] != id)
  219. {
  220. return -1;
  221. }
  222. return mbox[6];
  223. }
  224. int bcm283x_mbox_clock_set_rate(int id, int rate)
  225. {
  226. mbox[0] = 8*4; // length of the message
  227. mbox[1] = MBOX_REQUEST; // this is a request message
  228. mbox[2] = MBOX_TAG_CLOCK_SET_RATE;
  229. mbox[3] = 8; // buffer size
  230. mbox[4] = 8; // len
  231. mbox[5] = id; // id
  232. mbox[6] = rate;
  233. mbox[7] = MBOX_TAG_LAST;
  234. mbox_call(8, MMU_DISABLE);
  235. if(mbox[5] != id)
  236. {
  237. return -1;
  238. }
  239. return mbox[6];
  240. }
  241. int bcm283x_mbox_clock_get_max_rate(int id)
  242. {
  243. mbox[0] = 8*4; // length of the message
  244. mbox[1] = MBOX_REQUEST; // this is a request message
  245. mbox[2] = MBOX_TAG_CLOCK_GET_MAX_RATE;
  246. mbox[3] = 8; // buffer size
  247. mbox[4] = 4; // len
  248. mbox[5] = id; // id
  249. mbox[6] = 0;
  250. mbox[7] = MBOX_TAG_LAST;
  251. mbox_call(8, MMU_DISABLE);
  252. if(mbox[5] != id)
  253. {
  254. return -1;
  255. }
  256. return mbox[6];
  257. }
  258. int bcm283x_mbox_clock_get_min_rate(int id)
  259. {
  260. mbox[0] = 8*4; // length of the message
  261. mbox[1] = MBOX_REQUEST; // this is a request message
  262. mbox[2] = MBOX_TAG_CLOCK_GET_MIN_RATE;
  263. mbox[3] = 8; // buffer size
  264. mbox[4] = 4; // len
  265. mbox[5] = id; // id
  266. mbox[6] = 0;
  267. mbox[7] = MBOX_TAG_LAST;
  268. mbox_call(8, MMU_DISABLE);
  269. if(mbox[5] != id)
  270. {
  271. return -1;
  272. }
  273. return mbox[6];
  274. }
  275. int bcm283x_mbox_power_get_state(int id)
  276. {
  277. mbox[0] = 8*4; // length of the message
  278. mbox[1] = MBOX_REQUEST; // this is a request message
  279. mbox[2] = MBOX_TAG_POWER_GET_STATE;
  280. mbox[3] = 8; // buffer size
  281. mbox[4] = 4; // len
  282. mbox[5] = id; // id
  283. mbox[6] = 0;
  284. mbox[7] = MBOX_TAG_LAST;
  285. mbox_call(8, MMU_DISABLE);
  286. if(mbox[5] != id)
  287. {
  288. return -1;
  289. }
  290. return (mbox[6] & 0x3);
  291. }
  292. int bcm283x_mbox_power_set_state(int id, int state)
  293. {
  294. mbox[0] = 8*4; // length of the message
  295. mbox[1] = MBOX_REQUEST; // this is a request message
  296. mbox[2] = MBOX_TAG_POWER_SET_STATE;
  297. mbox[3] = 8; // buffer size
  298. mbox[4] = 8; // len
  299. mbox[5] = id; // id
  300. mbox[6] = state & 0x3;
  301. mbox[7] = MBOX_TAG_LAST;
  302. mbox_call(8, MMU_DISABLE);
  303. if(mbox[5] != id)
  304. {
  305. return -1;
  306. }
  307. return (mbox[6] & 0x3);
  308. }
  309. int bcm283x_mbox_temp_get(void)
  310. {
  311. mbox[0] = 8*4; // length of the message
  312. mbox[1] = MBOX_REQUEST; // this is a request message
  313. mbox[2] = MBOX_TAG_TEMP_GET;
  314. mbox[3] = 8; // buffer size
  315. mbox[4] = 4; // len
  316. mbox[5] = 0; //id
  317. mbox[6] = 0;
  318. mbox[7] = MBOX_TAG_LAST;
  319. mbox_call(8, MMU_DISABLE);
  320. if(mbox[5] != 0)
  321. {
  322. return -1;
  323. }
  324. return mbox[6];
  325. }
  326. int bcm283x_mbox_temp_get_max(void)
  327. {
  328. mbox[0] = 8*4; // length of the message
  329. mbox[1] = MBOX_REQUEST; // this is a request message
  330. mbox[2] = MBOX_TAG_TEMP_GET_MAX;
  331. mbox[3] = 8; // buffer size
  332. mbox[4] = 4; // len
  333. mbox[5] = 0; // id
  334. mbox[6] = 0;
  335. mbox[7] = MBOX_TAG_LAST;
  336. mbox_call(8, MMU_DISABLE);
  337. if(mbox[5] != 0)
  338. {
  339. return -1;
  340. }
  341. return mbox[6];
  342. }