sadc.c 9.9 KB

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  1. /*
  2. * This file is part of FH8620 BSP for RT-Thread distribution.
  3. *
  4. * Copyright (c) 2016 Shanghai Fullhan Microelectronics Co., Ltd.
  5. * All rights reserved
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License along
  18. * with this program; if not, write to the Free Software Foundation, Inc.,
  19. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  20. *
  21. * Visit http://www.fullhan.com to get contact with Fullhan.
  22. *
  23. * Change Logs:
  24. * Date Author Notes
  25. */
  26. #include "sadc.h"
  27. #ifdef RT_USING_SADC
  28. #include "inc/fh_driverlib.h"
  29. #include "board_info.h"
  30. #include <rtdef.h>
  31. //#define FH_SADC_DEBUG
  32. //#define FH_TEST_SADC
  33. #ifdef FH_SADC_DEBUG
  34. #define PRINT_SADC_DBG(fmt, args...) \
  35. do \
  36. { \
  37. rt_kprintf("FH_SADC_DEBUG: "); \
  38. rt_kprintf(fmt, ## args); \
  39. } \
  40. while(0)
  41. #else
  42. #define PRINT_SADC_DBG(fmt, args...) do { } while (0)
  43. #endif
  44. #define __raw_writeb(v,a) ( *(volatile unsigned char *)(a) = (v))
  45. #define __raw_writew(v,a) ( *(volatile unsigned short *)(a) = (v))
  46. #define __raw_writel(v,a) ( *(volatile unsigned int *)(a) = (v))
  47. #define __raw_readb(a) ( *(volatile unsigned char *)(a))
  48. #define __raw_readw(a) ( *(volatile unsigned short *)(a))
  49. #define __raw_readl(a) ( *(volatile unsigned int *)(a))
  50. #define wrap_readl(wrap, name) \
  51. __raw_readl(&(((struct wrap_sadc_reg *)wrap->regs)->name))
  52. #define wrap_writel(wrap, name, val) \
  53. __raw_writel((val), &(((struct wrap_sadc_reg *)wrap->regs)->name))
  54. #define wrap_readw(wrap, name) \
  55. __raw_readw(&(((struct wrap_sadc_reg *)wrap->regs)->name))
  56. #define wrap_writew(wrap, name, val) \
  57. __raw_writew((val), &(((struct wrap_sadc_reg *)wrap->regs)->name))
  58. #define wrap_readb(wrap, name) \
  59. __raw_readb(&(((struct wrap_sadc_reg *)wrap->regs)->name))
  60. #define wrap_writeb(wrap, name, val) \
  61. __raw_writeb((val), &(((struct wrap_sadc_reg *)wrap->regs)->name))
  62. #define IOCTL_GET_SADC_DATA 1
  63. #define IOCTL_SADC_POWER_DOWN 0xff
  64. #define SADC_WRAP_BASE (0xf1200000)
  65. #define SADC_IRQn (23)
  66. #define SADC_MAX_CONTROLLER (1)
  67. #define SADC_STATUS_COLESD (0)
  68. #define SADC_STATUS_OPEN (1)
  69. rt_err_t fh_sadc_isr_read_data(struct wrap_sadc_obj *sadc, rt_uint32_t channel,
  70. rt_uint16_t *buf) {
  71. rt_uint32_t xainsel = 1 << channel;
  72. rt_uint32_t xversel = 0;
  73. rt_uint32_t xpwdb = 1;
  74. //cnt
  75. rt_uint32_t sel2sam_pre_cnt = 2;
  76. rt_uint32_t sam_cnt = 2;
  77. rt_uint32_t sam2sel_pos_cnt = 2;
  78. //time out
  79. rt_uint32_t eoc_tos = 0xff;
  80. rt_uint32_t eoc_toe = 0xff;
  81. rt_uint32_t time_out = 0xffff;
  82. //set isr en..
  83. rt_uint32_t sadc_isr = 0x01;
  84. //start
  85. rt_uint32_t sadc_cmd = 0x01;
  86. //get data
  87. rt_uint32_t temp_data = 0;
  88. rt_err_t ret;
  89. //control...
  90. wrap_writel(sadc, sadc_control, xainsel | (xversel << 8) | (xpwdb << 12));
  91. wrap_writel(sadc, sadc_cnt,
  92. sel2sam_pre_cnt | (sam_cnt << 8) | (sam2sel_pos_cnt << 16));
  93. wrap_writel(sadc, sadc_timeout,
  94. eoc_tos | (eoc_toe << 8) | (time_out << 16));
  95. wrap_writel(sadc, sadc_ier, sadc_isr);
  96. wrap_writel(sadc, sadc_cmd, sadc_cmd);
  97. // ret = rt_completion_wait(&sadc->completion, RT_TICK_PER_SECOND / 2);
  98. ret = rt_sem_take(&sadc->completion, 5000);
  99. if(ret != RT_EOK)
  100. return ret;
  101. switch (channel) {
  102. case 0:
  103. case 1:
  104. //read channel 0 1
  105. temp_data = wrap_readl(sadc, sadc_dout0);
  106. break;
  107. case 2:
  108. case 3:
  109. //read channel 2 3
  110. temp_data = wrap_readl(sadc, sadc_dout1);
  111. break;
  112. case 4:
  113. case 5:
  114. //read channel 4 5
  115. temp_data = wrap_readl(sadc, sadc_dout2);
  116. break;
  117. case 6:
  118. case 7:
  119. //read channel 6 7
  120. temp_data = wrap_readl(sadc, sadc_dout3);
  121. break;
  122. default:
  123. break;
  124. }
  125. if (channel % 2) {
  126. //read low 16bit
  127. *buf = (rt_uint16_t) (temp_data & 0xffff);
  128. } else {
  129. //read high 16bit
  130. *buf = (rt_uint16_t) (temp_data >> 16);
  131. }
  132. return RT_EOK;
  133. }
  134. static rt_err_t fh_sadc_init(rt_device_t dev)
  135. {
  136. // struct fh_pwm_obj *pwm_obj = (struct fh_pwm_obj *)pwm_drv.priv;
  137. PRINT_SADC_DBG("%s\n",__func__);
  138. struct wrap_sadc_obj *sadc_pri =(struct wrap_sadc_obj *)dev->user_data;
  139. return RT_EOK;
  140. }
  141. static rt_err_t fh_sadc_open(rt_device_t dev, rt_uint16_t oflag)
  142. {
  143. // struct fh_pwm_obj *pwm_obj = (struct fh_pwm_obj *)pwm_drv.priv;
  144. PRINT_SADC_DBG("%s\n",__func__);
  145. struct wrap_sadc_obj *sadc_pri =(struct wrap_sadc_obj *)dev->user_data;
  146. return RT_EOK;
  147. }
  148. static rt_err_t fh_sadc_close(rt_device_t dev)
  149. {
  150. PRINT_SADC_DBG("%s\n",__func__);
  151. struct wrap_sadc_obj *sadc_pri =(struct wrap_sadc_obj *)dev->user_data;
  152. return RT_EOK;
  153. }
  154. static rt_err_t fh_sadc_ioctl(rt_device_t dev, int cmd, void *arg)
  155. {
  156. rt_uint32_t control_reg;
  157. struct wrap_sadc_obj *sadc_pri =(struct wrap_sadc_obj *)dev->user_data;
  158. rt_uint32_t ad_data;
  159. rt_uint16_t ad_raw_data;
  160. SADC_INFO *sadc_info = (SADC_INFO *)arg;
  161. rt_err_t ret;
  162. switch(cmd){
  163. case SADC_CMD_READ_RAW_DATA:
  164. ret = fh_sadc_isr_read_data(sadc_pri, sadc_info->channel, &ad_raw_data);
  165. if(ret != RT_EOK)
  166. return ret;
  167. sadc_info->sadc_data = ad_raw_data;
  168. break;
  169. case SADC_CMD_READ_VOLT:
  170. ret = fh_sadc_isr_read_data(sadc_pri, sadc_info->channel, &ad_raw_data);
  171. if(ret != RT_EOK)
  172. return ret;
  173. ad_data = ad_raw_data * SADC_REF;
  174. ad_data /= SADC_MAX_AD_VALUE;
  175. sadc_info->sadc_data = ad_data;
  176. break;
  177. case SADC_CMD_DISABLE:
  178. control_reg = wrap_readl(sadc_pri, sadc_control);
  179. control_reg &= ~(1 << 12);
  180. wrap_writel(sadc_pri, sadc_control, control_reg);
  181. break;
  182. default :
  183. rt_kprintf("wrong para...\n");
  184. return RT_EIO;
  185. }
  186. return RT_EOK;
  187. }
  188. static void fh_sadc_interrupt(int irq, void *param)
  189. {
  190. rt_uint32_t isr_status;
  191. struct wrap_sadc_obj *sadc = (struct wrap_sadc_obj *) param;
  192. isr_status = wrap_readl(sadc, sadc_int_status);
  193. if (isr_status & 0x01) {
  194. //close isr
  195. rt_uint32_t sadc_isr = 0x00;
  196. wrap_writel(sadc, sadc_ier, sadc_isr);
  197. //clear status..
  198. wrap_writel(sadc, sadc_int_status, isr_status);
  199. rt_sem_release(&sadc->completion);
  200. // rt_completion_done(&sadc->completion);
  201. } else {
  202. //add error handle process
  203. rt_kprintf("sadc maybe error!\n");
  204. }
  205. }
  206. int fh_sadc_probe(void *priv_data)
  207. {
  208. int ret;
  209. rt_device_t sadc_dev;
  210. //check if the hw is init already...
  211. //caution this is a read only data...if the driver want to use.malloc and copy it..
  212. struct wrap_sadc_obj *sadc_obj = (struct wrap_sadc_obj *)priv_data;
  213. if(sadc_obj->init_flag == SADC_INIT_ALREADY)
  214. return RT_EFULL;
  215. //malloc a rt device..
  216. sadc_dev = RT_KERNEL_MALLOC(sizeof(struct rt_device));
  217. if(!sadc_dev){
  218. return RT_ENOMEM;
  219. }
  220. rt_memset(sadc_dev, 0, sizeof(struct rt_device));
  221. PRINT_SADC_DBG("id:%d,\treg:%x,\tirq:%d\n",sadc_obj->id,(rt_uint32_t)sadc_obj->regs,sadc_obj->irq_no);
  222. //bind rtdev to obj data...
  223. //caution ...this is used to free mem when exit....
  224. //free step:1:get sadc obj...2:free sadc_obj->rt_dev->user_data..3:free sadc_obj->rt_dev 4:sadc_obj->rt_dev = NULL
  225. sadc_obj->rt_dev = sadc_dev;
  226. //malloc a private data sadc use only...copy data from platform...
  227. struct wrap_sadc_obj *sadc_pri = RT_KERNEL_MALLOC(sizeof(struct wrap_sadc_obj));
  228. if(!sadc_pri){
  229. RT_KERNEL_FREE(sadc_dev);
  230. return RT_ENOMEM;
  231. }
  232. //copy platform data to pri data..
  233. rt_memcpy(sadc_pri,sadc_obj,sizeof(struct wrap_sadc_obj));
  234. PRINT_SADC_DBG("pri....id:%d,\treg:%x,\tirq:%d\n",sadc_pri->id,(rt_uint32_t)sadc_pri->regs,sadc_pri->irq_no);
  235. //init sem
  236. //rt_completion_init(&sadc_obj->completion);
  237. rt_sem_init(&sadc_pri->completion, "sadc_sem", 0, RT_IPC_FLAG_FIFO);
  238. //init lock
  239. rt_mutex_init(&sadc_pri->lock,"sadc_lock", RT_IPC_FLAG_FIFO);
  240. //bind pri data to rt_sadc_dev...
  241. sadc_dev->user_data = (void *)sadc_pri;
  242. sadc_dev->open =fh_sadc_open;
  243. sadc_dev->close = fh_sadc_close;
  244. sadc_dev->control = fh_sadc_ioctl;
  245. sadc_dev->init = fh_sadc_init;
  246. if(sadc_pri->id ==0){
  247. rt_hw_interrupt_install(sadc_pri->irq_no, fh_sadc_interrupt,
  248. (void *)sadc_pri, "sadc_isr_0");
  249. }
  250. rt_hw_interrupt_umask(sadc_pri->irq_no);
  251. rt_device_register(sadc_dev, "sadc", RT_DEVICE_FLAG_RDWR);
  252. sadc_obj->init_flag = SADC_INIT_ALREADY;
  253. return RT_EOK;
  254. }
  255. int fh_sadc_exit(void *priv_data)
  256. {
  257. PRINT_SADC_DBG("%s\n",__func__);
  258. struct wrap_sadc_obj *sadc_obj = (struct wrap_sadc_obj *)priv_data;
  259. struct wrap_sadc_obj *sadc_pri = sadc_obj->rt_dev->user_data;
  260. //release sem;
  261. rt_sem_detach(&sadc_pri->completion);
  262. //sadc_pri->completion = RT_NULL;
  263. //release lock;
  264. rt_mutex_detach(&sadc_pri->lock);
  265. RT_KERNEL_FREE(sadc_obj->rt_dev->user_data);
  266. sadc_obj->rt_dev->user_data = RT_NULL;
  267. RT_KERNEL_FREE(sadc_obj->rt_dev);
  268. sadc_obj->rt_dev = RT_NULL;
  269. return 0;
  270. }
  271. struct fh_board_ops sdac_driver_ops =
  272. {
  273. .probe = fh_sadc_probe,
  274. .exit = fh_sadc_exit,
  275. };
  276. void rt_hw_sadc_init(void)
  277. {
  278. int ret;
  279. fh_board_driver_register("sadc", &sdac_driver_ops);
  280. }
  281. #ifdef FH_TEST_SADC
  282. int fh_sadc_test(void){
  283. rt_device_t sadc_dev;
  284. SADC_INFO info;
  285. info.channel = 0;
  286. info.sadc_data = 0;
  287. sadc_dev = rt_device_find("sadc");
  288. if(!sadc_dev){
  289. rt_kprintf("cann't find the sadc dev\n");
  290. }
  291. sadc_dev->init(sadc_dev);
  292. sadc_dev->open(sadc_dev,0);
  293. while(1)
  294. {
  295. sadc_dev->control(sadc_dev,SADC_CMD_READ_VOLT,&info);
  296. rt_kprintf("channel:%d,volt:%dmv\n",info.channel,info.sadc_data);
  297. }
  298. return 0;
  299. }
  300. #endif
  301. #ifdef RT_USING_FINSH
  302. #include <finsh.h>
  303. #ifdef FH_TEST_SADC
  304. FINSH_FUNCTION_EXPORT(fh_sadc_test, fh_sadc_test);
  305. #endif
  306. #endif
  307. #endif