i2c_main.c 15 KB

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  1. #include <linux/module.h>
  2. #include <linux/kernel.h>
  3. #include <linux/init.h>
  4. #include <linux/cdev.h>
  5. #include <linux/fs.h>
  6. #include <linux/errno.h>
  7. #include <asm/current.h>
  8. #include <linux/sched.h>
  9. #include <linux/device.h>
  10. #include <linux/err.h>
  11. #include <asm/uaccess.h>
  12. #include <linux/delay.h>
  13. #include <linux/uaccess.h>
  14. #include <asm-generic/ioctl.h>
  15. #include <linux/interrupt.h>
  16. #include <linux/irqreturn.h>
  17. #include <linux/wait.h>
  18. #include "stm32f4xx.h"
  19. #include "stm32f4xx_hal_gpio.h"
  20. #include "stm32_hal_legacy.h"
  21. #include "stm32f4xx_hal_i2c.h"
  22. #include "driver.h"
  23. #define I2C_MAJOR MAJOR_I2C
  24. //static int minor = 0;
  25. //static dev_t devno;
  26. //static struct cdev *i2c_cdev = NULL;
  27. //static int count = 3;
  28. //static int ret=0;
  29. #define DEVNAME "i2c"
  30. #define NUM_OF_DEVICES 3
  31. static uint8_t i2c_rcv_buf[100];
  32. static uint8_t i2c_rcv_size;
  33. static DECLARE_WAIT_QUEUE_HEAD(wq_1);
  34. static DECLARE_WAIT_QUEUE_HEAD(wq_2);
  35. static DECLARE_WAIT_QUEUE_HEAD(wq_3);
  36. static int ev_press_1 = 0, ev_press_2 = 0, ev_press_3 = 0;
  37. struct i2c_device {
  38. dev_t devno;
  39. struct cdev cdev;
  40. char name[16];
  41. IRQn_Type Event_IRQn;
  42. IRQn_Type Err_IRQn;
  43. } i2c_dev[NUM_OF_DEVICES];
  44. static int i2c_open(struct inode *inode, struct file *filep);
  45. static int i2c_close(struct inode *inode, struct file *filep);
  46. static ssize_t i2c_read(struct file *filep, char __user *buf, size_t size, loff_t *offset);
  47. static ssize_t i2c_write(struct file *filep, const char __user *buf, size_t size, loff_t *offset);
  48. static int i2c_ioctl(struct inode *inode, struct file *filep, unsigned int cmd, unsigned long arg);
  49. static struct file_operations i2c_ops =
  50. {
  51. .owner = THIS_MODULE,
  52. .open = i2c_open,
  53. .release = i2c_close,
  54. .ioctl = i2c_ioctl,
  55. .read = i2c_read,
  56. .write = i2c_write,
  57. };
  58. static int i2c_open(struct inode *inode, struct file *filep)
  59. {
  60. int imajor,iminor;
  61. I2C_HandleTypeDef hi2c;
  62. imajor = MAJOR(inode->i_rdev);
  63. iminor = MINOR(inode->i_rdev);
  64. if(imajor != I2C_MAJOR)
  65. {
  66. printk("Error: %s %d i2c major fail! %d\n",__FILE__,__LINE__,imajor);
  67. return -1;
  68. }
  69. switch(iminor)
  70. {
  71. case 0:
  72. HAL_NVIC_EnableIRQ(I2C1_EV_IRQn);
  73. HAL_NVIC_EnableIRQ(I2C1_ER_IRQn);
  74. hi2c.Instance = I2C1;
  75. //printk("i2c1 open\n");
  76. break;
  77. case 1:
  78. HAL_NVIC_EnableIRQ(I2C2_EV_IRQn);
  79. HAL_NVIC_EnableIRQ(I2C2_ER_IRQn);
  80. hi2c.Instance = I2C2;
  81. //printk("i2c2 open\n");
  82. break;
  83. case 2:
  84. HAL_NVIC_EnableIRQ(I2C3_EV_IRQn);
  85. HAL_NVIC_EnableIRQ(I2C3_ER_IRQn);
  86. hi2c.Instance = I2C3;
  87. //printk("i2c3 open\n");
  88. break;
  89. default:
  90. printk("Error:%s %d Invalid minor %d",__FILE__,__LINE__,iminor);
  91. return -1;
  92. }
  93. __HAL_I2C_DISABLE(&hi2c); //clear all flags.
  94. hi2c.State = HAL_I2C_STATE_READY;
  95. __HAL_I2C_ENABLE(&hi2c);
  96. //HAL_I2C_EnableListen_IT(&hi2c);
  97. //printk("Open SR1 %#x, SR2: %#x\n", hi2c.Instance->SR1, hi2c.Instance->SR2);
  98. return 0;
  99. }
  100. static int i2c_close(struct inode *inode, struct file *filep)
  101. {
  102. return 0;
  103. }
  104. irqreturn_t i2cErrIRQHandler(int irqno, void *dev_id)
  105. {
  106. I2C_HandleTypeDef hi2c;
  107. switch(irqno)
  108. {
  109. case I2C1_EV_IRQn:
  110. hi2c.Instance = I2C1;
  111. printk("i2c1 Error, restart...\n");
  112. break;
  113. case I2C2_EV_IRQn:
  114. hi2c.Instance = I2C2;
  115. printk("i2c2 Error, restart...\n");
  116. break;
  117. case I2C3_EV_IRQn:
  118. hi2c.Instance = I2C3;
  119. printk("i2c3 Error, restart...\n");
  120. break;
  121. default:
  122. printk("Unknow irqno! %#x\n", irqno);
  123. return IRQ_HANDLED;
  124. }
  125. //restart i2c
  126. hi2c.State = HAL_I2C_STATE_READY;
  127. __HAL_I2C_DISABLE(&hi2c);
  128. __HAL_I2C_ENABLE(&hi2c);
  129. return IRQ_HANDLED;
  130. }
  131. /**
  132. ** @brief This function handles I2C event interrupt request.
  133. ** @param
  134. ** @retval
  135. **/
  136. irqreturn_t i2cEvIRQHandler(int irqno, void *dev_id)
  137. {
  138. I2C_HandleTypeDef hi2c;
  139. uint32_t sr2itflags;
  140. uint32_t sr1itflags;
  141. uint32_t itsources;
  142. uint32_t CurrentMode;
  143. wait_queue_head_t *pwq = NULL;
  144. int *pev_press = NULL;
  145. // memcpy(h12c, &I2cHandle, sizeof(I2C_HandleTypeDef));
  146. switch(irqno)
  147. {
  148. case I2C1_EV_IRQn:
  149. hi2c.Instance = I2C1;
  150. pwq = &wq_1;
  151. pev_press = &ev_press_1;
  152. break;
  153. case I2C2_EV_IRQn:
  154. hi2c.Instance = I2C2;
  155. pwq = &wq_2;
  156. pev_press = &ev_press_2;
  157. break;
  158. case I2C3_EV_IRQn:
  159. hi2c.Instance = I2C3;
  160. pwq = &wq_3;
  161. pev_press = &ev_press_3;
  162. break;
  163. default:
  164. return IRQ_HANDLED;
  165. }
  166. hi2c.Mode = HAL_I2C_MODE_SLAVE;
  167. sr2itflags = READ_REG(hi2c.Instance->SR2);
  168. sr1itflags = READ_REG(hi2c.Instance->SR1);
  169. itsources = READ_REG(hi2c.Instance->CR2);
  170. CurrentMode = hi2c.Mode;
  171. //printk("SR1: %#x, SR2: %#x, CR2: %#x\n", sr1itflags, sr2itflags, itsources);
  172. /* Slave mode selected */
  173. /* ADDR set --------------------------------------------------------------*/
  174. if(((sr1itflags & I2C_FLAG_ADDR) != RESET) && ((itsources & I2C_IT_EVT) != RESET))
  175. {
  176. i2c_rcv_size = 0;
  177. /* Clear ADDR flag */
  178. __HAL_I2C_CLEAR_ADDRFLAG(&hi2c);
  179. }
  180. else if(((sr1itflags & I2C_FLAG_RXNE) != RESET))
  181. {
  182. i2c_rcv_buf[i2c_rcv_size++] = hi2c.Instance->DR;
  183. }
  184. /* STOPF set --------------------------------------------------------------*/
  185. else if(((sr1itflags & I2C_FLAG_STOPF) != RESET) && ((itsources & I2C_IT_EVT) != RESET))
  186. {
  187. /* Clear STOPF flag */
  188. __HAL_I2C_CLEAR_STOPFLAG(&hi2c);
  189. if(i2c_rcv_size > 0)
  190. {
  191. *pev_press = 1;
  192. wake_up_interruptible(pwq);
  193. }
  194. //printk("irqno: %#x\n", irqno);
  195. }
  196. else
  197. {
  198. //clear all flags
  199. //printk("---> Unknow irq\n");
  200. hi2c.State = HAL_I2C_STATE_READY;
  201. //__HAL_I2C_DISABLE(&hi2c);
  202. //__HAL_I2C_ENABLE(&hi2c);
  203. }
  204. return IRQ_HANDLED;
  205. }
  206. static int i2c_ioctl(struct inode *inode, struct file *filep, unsigned int cmd, unsigned long arg)
  207. {
  208. uint32_t pclk1 = 0;
  209. I2C_HandleTypeDef I2CxHandle;
  210. i2c_arg_t i2c_arg;
  211. int imajor,iminor;
  212. HAL_StatusTypeDef retSta;
  213. IRQn_Type I2CxEvIRQn;
  214. wait_queue_head_t *pwq = NULL;
  215. int *pev_press = NULL;
  216. int retval = 0;
  217. imajor = MAJOR(inode->i_rdev);
  218. iminor = MINOR(inode->i_rdev);
  219. if(imajor != I2C_MAJOR)
  220. {
  221. printk("Error: %s %d i2c major fail! %d\n",__FILE__,__LINE__,imajor);
  222. return -EFAULT;
  223. }
  224. if(iminor == 0)
  225. {
  226. I2CxHandle.Instance = I2C1;
  227. I2CxEvIRQn = I2C1_EV_IRQn;
  228. pwq = &wq_1;
  229. pev_press = &ev_press_1;
  230. }
  231. else if(iminor == 1)
  232. {
  233. I2CxHandle.Instance = I2C2;
  234. I2CxEvIRQn = I2C2_EV_IRQn;
  235. pwq = &wq_2;
  236. pev_press = &ev_press_2;
  237. }
  238. else if(iminor == 2)
  239. {
  240. I2CxHandle.Instance = I2C3;
  241. I2CxEvIRQn = I2C3_EV_IRQn;
  242. pwq = &wq_3;
  243. pev_press = &ev_press_3;
  244. }
  245. else
  246. {
  247. printk(KERN_ERR"Invalid minor\n");
  248. return -EFAULT;
  249. }
  250. switch(cmd)
  251. {
  252. case SET_I2C_SPEED:
  253. if ( copy_from_user(&i2c_arg, (void*)arg, 11) != 0)
  254. {
  255. printk("---> copy form user space fail!\n");
  256. return -EFAULT;
  257. }
  258. /* Get PCLK1 frequency */
  259. pclk1 = HAL_RCC_GetPCLK1Freq();
  260. __HAL_I2C_DISABLE(&I2CxHandle);
  261. if(i2c_arg.ClockSpeed <= 100000)
  262. I2CxHandle.Instance->CCR = I2C_SPEED_STANDARD(pclk1, i2c_arg.ClockSpeed) & 0x7fff;
  263. else
  264. I2CxHandle.Instance->CCR = I2C_SPEED_FAST(pclk1, i2c_arg.ClockSpeed, I2C_DUTYCYCLE_16_9) | 0x8000;
  265. __HAL_I2C_ENABLE(&I2CxHandle);
  266. break;
  267. case GET_I2C_SPEED:
  268. pclk1 = HAL_RCC_GetPCLK1Freq();
  269. if(I2CxHandle.Instance->CCR & 0x8000) //fast mode
  270. i2c_arg.ClockSpeed = pclk1/((I2CxHandle.Instance->CCR & I2C_CCR_CCR)*25);
  271. else //slow mode
  272. i2c_arg.ClockSpeed = pclk1/((I2CxHandle.Instance->CCR & I2C_CCR_CCR)<<1);
  273. if(copy_to_user((void*)arg, &i2c_arg, 11))
  274. return -EFAULT;
  275. break;
  276. case SET_I2C_ADDR: //8bit
  277. __HAL_I2C_DISABLE(&I2CxHandle);
  278. if ( copy_from_user(&i2c_arg, (void*)arg, 11) != 0)
  279. {
  280. printk("---> copy form user space fail!\n");
  281. return -EFAULT;
  282. }
  283. /* Configure I2Cx: Own Address1 and addressing mode */
  284. I2CxHandle.Instance->OAR1 = (I2C_ADDRESSINGMODE_7BIT | i2c_arg.OwnAddress1)&0xff;
  285. __HAL_I2C_ENABLE(&I2CxHandle);
  286. // printk("OAR1: %#x\n", I2CxHandle.Instance->OAR1);
  287. break;
  288. case GET_I2C_ADDR: //8bit
  289. i2c_arg.OwnAddress1 = I2CxHandle.Instance->OAR1 & 0x0ff;
  290. if(copy_to_user((void*)arg, &i2c_arg, 11))
  291. return -EFAULT;
  292. break;
  293. case I2C_MASTER_TRANSFER:
  294. __HAL_I2C_DISABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  295. if ( copy_from_user(&i2c_arg, (void*)arg, sizeof(i2c_arg_t)) != 0)
  296. {
  297. printk("---> copy form user space fail!\n");
  298. return -EFAULT;
  299. }
  300. I2CxHandle.State = HAL_I2C_STATE_READY;
  301. I2CxHandle.Init.AddressingMode = I2C_ADDRESSINGMODE_7BIT;
  302. retSta = HAL_I2C_Master_Transmit(&I2CxHandle, (uint16_t)i2c_arg.DevAddress, i2c_arg.Buf, i2c_arg.WriteLen, 100); //timeout 1s
  303. if(retSta != HAL_OK)
  304. {
  305. retval = -1;
  306. //printk(KERN_ERR"I2C master tansfer error, Addr %#x, minor = %d, Err = %#x\n", i2c_arg.DevAddress, iminor, retSta);
  307. }
  308. __HAL_I2C_ENABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  309. break;
  310. case I2C_MASTER_RECEIVE:
  311. __HAL_I2C_DISABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  312. if ( copy_from_user(&i2c_arg, (void*)arg, 11) != 0)
  313. {
  314. printk("---> copy form user space fail!\n");
  315. return -EFAULT;
  316. }
  317. I2CxHandle.State = HAL_I2C_STATE_READY;
  318. I2CxHandle.Init.AddressingMode = I2C_ADDRESSINGMODE_7BIT;
  319. //printk("CR1 %#x, CR2 %#x, SR1 %#x, SR2 %#x\n", );
  320. retSta = HAL_I2C_Master_Receive(&I2CxHandle, (uint16_t) i2c_arg.DevAddress, i2c_arg.Buf, i2c_arg.ReadLen, 100); //timeout 1s
  321. if(retSta != HAL_OK)
  322. {
  323. //printk(KERN_ERR"I2C master recevice error, Addr %#x, retSta %d!\n", i2c_arg.DevAddress, retSta);
  324. retval = -1;
  325. }
  326. if(copy_to_user((void*)arg, &i2c_arg, 11+i2c_arg.ReadLen))
  327. return -EFAULT;
  328. __HAL_I2C_ENABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  329. break;
  330. case I2C_SLAVE_RECEIVE_IT:
  331. I2CxHandle.State = HAL_I2C_STATE_READY;
  332. HAL_I2C_EnableListen_IT(&I2CxHandle);
  333. if(0 == wait_event_interruptible_timeout(*pwq, *pev_press, 3*HZ)) //3s
  334. {
  335. i2c_arg.ReadLen = 0;
  336. }
  337. else
  338. {
  339. *pev_press = 0;
  340. memcpy(i2c_arg.Buf, i2c_rcv_buf, i2c_rcv_size);
  341. i2c_arg.ReadLen = i2c_rcv_size;
  342. }
  343. //printk("SR1: %#x, SR2: %#x, CR1: %#x, CR2: %#x\n", I2CxHandle.Instance->SR1,
  344. // I2CxHandle.Instance->SR2, I2CxHandle.Instance->CR1, I2CxHandle.Instance->CR2);
  345. if(copy_to_user((void*)arg, &i2c_arg, 11+i2c_arg.ReadLen))
  346. return -EFAULT;
  347. break;
  348. case I2C_MASTER_TRANSFER_RECEIVE:
  349. __HAL_I2C_DISABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  350. if ( copy_from_user(&i2c_arg, (void*)arg, sizeof(i2c_arg_t)) != 0)
  351. {
  352. printk("---> copy form user space fail!\n");
  353. return -EFAULT;
  354. }
  355. I2CxHandle.State = HAL_I2C_STATE_READY;
  356. I2CxHandle.Init.AddressingMode = I2C_ADDRESSINGMODE_7BIT;
  357. retSta = HAL_I2C_Master_Transmit_Receive(&I2CxHandle, (uint16_t)i2c_arg.DevAddress,i2c_arg.Buf, i2c_arg.WriteLen, i2c_arg.Buf, i2c_arg.ReadLen, 100);
  358. if(retSta != HAL_OK)
  359. {
  360. retval = -1;
  361. }
  362. if(copy_to_user((void*)arg, &i2c_arg, 11+i2c_arg.ReadLen))
  363. return -EFAULT;
  364. __HAL_I2C_ENABLE_IT(&I2CxHandle, I2C_IT_EVT | I2C_IT_ERR);
  365. break;
  366. default:
  367. printk("---> Invalid action\n");
  368. return -1;
  369. break;
  370. }
  371. return retval;
  372. }
  373. static ssize_t i2c_read(struct file *filep, char __user *buf, size_t size, loff_t *offset)
  374. {
  375. return 0;
  376. }
  377. static ssize_t i2c_write(struct file *filep, const char __user *buf, size_t size, loff_t *offset)
  378. {
  379. return 0;
  380. }
  381. void i2c_hw_init(void)
  382. {
  383. I2C_HandleTypeDef I2cHandle;
  384. GPIO_InitTypeDef GPIO_InitStruct;
  385. //enable periph clock
  386. __HAL_RCC_GPIOA_CLK_ENABLE();
  387. __HAL_RCC_GPIOB_CLK_ENABLE();
  388. __HAL_RCC_GPIOC_CLK_ENABLE();
  389. __HAL_RCC_GPIOH_CLK_ENABLE();
  390. __HAL_RCC_I2C1_CLK_ENABLE();
  391. __HAL_RCC_I2C2_CLK_ENABLE();
  392. __HAL_RCC_I2C3_CLK_ENABLE();
  393. //config gpio
  394. GPIO_InitStruct.Mode = GPIO_MODE_AF_OD;
  395. GPIO_InitStruct.Pull = GPIO_PULLUP;
  396. GPIO_InitStruct.Speed = GPIO_SPEED_FAST;
  397. //I2C1
  398. GPIO_InitStruct.Pin = GPIO_PIN_6 | GPIO_PIN_7; //SCL | SDA
  399. GPIO_InitStruct.Alternate = GPIO_AF4_I2C1;
  400. HAL_GPIO_Init(GPIOB, &GPIO_InitStruct);
  401. //I2C2
  402. GPIO_InitStruct.Pin = GPIO_PIN_4 | GPIO_PIN_5; //SCL | SDA
  403. GPIO_InitStruct.Alternate = GPIO_AF4_I2C2;
  404. HAL_GPIO_Init(GPIOH, &GPIO_InitStruct);
  405. //I2C3
  406. GPIO_InitStruct.Alternate = GPIO_AF4_I2C3;
  407. GPIO_InitStruct.Pin = GPIO_PIN_8; //SCL
  408. HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
  409. GPIO_InitStruct.Pin = GPIO_PIN_9; //SDA
  410. HAL_GPIO_Init(GPIOC, &GPIO_InitStruct);
  411. //config I2C controller
  412. I2cHandle.Init.AddressingMode = I2C_ADDRESSINGMODE_7BIT;
  413. I2cHandle.Init.ClockSpeed = 100000;
  414. I2cHandle.Init.DualAddressMode = I2C_DUALADDRESS_DISABLE;
  415. I2cHandle.Init.DutyCycle = I2C_DUTYCYCLE_16_9;
  416. I2cHandle.Init.GeneralCallMode = I2C_GENERALCALL_DISABLE;
  417. I2cHandle.Init.NoStretchMode = I2C_NOSTRETCH_DISABLE;
  418. I2cHandle.Init.OwnAddress1 = 0x22; //default address
  419. I2cHandle.Init.OwnAddress2 = 0xFE;
  420. I2cHandle.State = HAL_I2C_STATE_READY;
  421. I2cHandle.Instance = I2C1;
  422. if(HAL_I2C_Init(&I2cHandle) != HAL_OK)
  423. {
  424. printk(KERN_ERR"I2C1 hw init error!\n");
  425. }
  426. HAL_NVIC_SetPriority(I2C1_EV_IRQn, 2, 0);
  427. HAL_NVIC_SetPriority(I2C1_ER_IRQn, 15, 0);
  428. //HAL_NVIC_EnableIRQ(I2C1_EV_IRQn);
  429. //HAL_I2C_EnableListen_IT(&I2cHandle);
  430. I2cHandle.Instance = I2C2;
  431. if(HAL_I2C_Init(&I2cHandle) != HAL_OK)
  432. {
  433. printk(KERN_ERR"I2C1 hw init error!\n");
  434. }
  435. HAL_NVIC_SetPriority(I2C2_EV_IRQn, 2, 0);
  436. HAL_NVIC_SetPriority(I2C2_ER_IRQn, 15, 0);
  437. //HAL_NVIC_EnableIRQ(I2C2_EV_IRQn);
  438. //HAL_I2C_EnableListen_IT(&I2cHandle);
  439. I2cHandle.Instance = I2C3;
  440. if(HAL_I2C_Init(&I2cHandle) != HAL_OK)
  441. {
  442. printk(KERN_ERR"I2C1 hw init error!\n");
  443. }
  444. HAL_NVIC_SetPriority(I2C3_EV_IRQn, 2, 0);
  445. HAL_NVIC_SetPriority(I2C3_ER_IRQn, 15, 0);
  446. //HAL_NVIC_EnableIRQ(I2C3_EV_IRQn);
  447. //HAL_I2C_EnableListen_IT(&I2cHandle);
  448. }
  449. static int __init i2c_init(void)
  450. {
  451. int ret;
  452. int i;
  453. for (i = 0; i < NUM_OF_DEVICES; i++)
  454. {
  455. printk("i2c%d module start...\n", i+1);
  456. i2c_dev[i].devno = MKDEV(MAJOR_I2C, i);
  457. sprintf(i2c_dev[i].name, "%s%d", DEVNAME, i+1);
  458. register_chrdev_region(i2c_dev[i].devno, 1, i2c_dev[i].name);
  459. cdev_add(&i2c_dev[i].cdev, i2c_dev[i].devno, 1);
  460. cdev_init(&i2c_dev[i].cdev, &i2c_ops);
  461. }
  462. i2c_hw_init();
  463. i2c_dev[0].Event_IRQn = I2C1_EV_IRQn;
  464. i2c_dev[1].Event_IRQn = I2C2_EV_IRQn;
  465. i2c_dev[2].Event_IRQn = I2C3_EV_IRQn;
  466. i2c_dev[0].Err_IRQn = I2C1_ER_IRQn;
  467. i2c_dev[1].Err_IRQn = I2C2_ER_IRQn;
  468. i2c_dev[2].Err_IRQn = I2C3_ER_IRQn;
  469. for(i=0; i<NUM_OF_DEVICES; i++)
  470. {
  471. ret = request_irq(i2c_dev[i].Event_IRQn, i2cEvIRQHandler, IRQF_SHARED, i2c_dev[i].name, &i2c_dev[i].devno);
  472. if(ret) {
  473. printk("request_irq() event fialed! %d\n", ret);
  474. goto ERR_STEP1;
  475. }
  476. ret = request_irq(i2c_dev[i].Err_IRQn, i2cErrIRQHandler, IRQF_SHARED, i2c_dev[i].name, &i2c_dev[i].devno);
  477. if(ret) {
  478. printk("request_irq() error fialed! %d\n", ret);
  479. goto ERR_STEP1;
  480. }
  481. }
  482. return 0;
  483. ERR_STEP1:
  484. for(i=0;i<NUM_OF_DEVICES;i++)
  485. unregister_chrdev_region(i2c_dev[i].devno,1);
  486. //ERR_STEP:
  487. for(i=0;i<NUM_OF_DEVICES;i++)
  488. cdev_del(&i2c_dev[i].cdev);
  489. return ret;
  490. }
  491. static void __exit i2c_exit(void)
  492. {
  493. int i;
  494. for(i=0;i<NUM_OF_DEVICES;i++)
  495. {
  496. unregister_chrdev_region(i2c_dev[i].devno, 1);
  497. cdev_del(&i2c_dev[i].cdev);
  498. }
  499. }
  500. module_init(i2c_init);
  501. module_exit(i2c_exit);
  502. MODULE_LICENSE("GPL");
  503. MODULE_AUTHOR("Jimbo");
  504. MODULE_DESCRIPTION("this is i2c module");