eeprom.c 16 KB

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  1. /*
  2. * eeprom.c
  3. *
  4. * Created on: 2020. 4. 22.
  5. * Author: parkyj
  6. */
  7. #include "main.h"
  8. #include "eeprom.h"
  9. #include "Bluecell_operate.h"
  10. #include "stm32f1xx_hal.h"
  11. #include "stm32f1xx_hal_gpio.h"
  12. /* Includes ------------------------------------------------------------------*/
  13. HAL_StatusTypeDef EEPROM_M24C08_ByteRead(uint16_t devid,uint16_t Address,uint8_t* data,uint8_t size);
  14. unsigned char E2promWriteByte( uint16_t addr, uint8_t data );
  15. /////////////////////////////////////////////////////////////
  16. unsigned char E2promReadByte( uint16_t addr );
  17. bool EEPROM24XX_Save(uint16_t Address,void *data,size_t size_of_data);
  18. bool EEPROM24XX_Load(uint16_t Address,void *data,size_t size_of_data);
  19. void EEPROM_M24C08_Init(void){
  20. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_BASE,&bluecell_Currdatastatus.bluecell_header,sizeof(BLUESTATUS_st) );
  21. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_WINDOW_STATUS_ADDRESDS,&Att_DL1.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  22. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_DL1_TABLE_ADDRESDS,&Att_DL2.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  23. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_DL2_TABLE_ADDRESDS,&Att_DL3.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  24. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_DL3_TABLE_ADDRESDS,&Att_DL4.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  25. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_DL4_TABLE_ADDRESDS,&Att_UL1.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  26. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_UL1_TABLE_ADDRESDS,&Att_UL2.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  27. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_UL2_TABLE_ADDRESDS,&Att_UL3.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  28. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_UL3_TABLE_ADDRESDS,&Att_UL4.Table_0_0_dBm_H,sizeof(ATT_TABLE_st) );
  29. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_UL4_TABLE_ADDRESDS,&Det_DL1.Table_Det5_dBm_H,sizeof(DET_TABLEDL_st) );
  30. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_DL1_TABLE_ADDRESDS,&Det_DL2.Table_Det5_dBm_H,sizeof(DET_TABLEDL_st) );
  31. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_DL2_TABLE_ADDRESDS,&Det_DL3.Table_Det5_dBm_H,sizeof(DET_TABLEDL_st) );
  32. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_DL3_TABLE_ADDRESDS,&Det_DL4.Table_Det5_dBm_H,sizeof(DET_TABLEDL_st) );
  33. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_DL4_TABLE_ADDRESDS,&Det_UL1.Table_Det_15_dBm_H,sizeof(DET_TABLEUL_st) );
  34. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_UL1_TABLE_ADDRESDS,&Det_UL2.Table_Det_15_dBm_H,sizeof(DET_TABLEUL_st) );
  35. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_UL2_TABLE_ADDRESDS,&Det_UL3.Table_Det_15_dBm_H,sizeof(DET_TABLEUL_st) );
  36. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_UL3_TABLE_ADDRESDS,&Det_UL4.Table_Det_15_dBm_H,sizeof(DET_TABLEUL_st) );
  37. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_DET_UL4_TABLE_ADDRESDS,&Temp_DL1.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  38. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_DL1_TABLE_ADDRESDS,&Temp_DL2.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  39. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_DL2_TABLE_ADDRESDS,&Temp_DL3.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  40. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_DL3_TABLE_ADDRESDS,&Temp_DL4.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  41. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_DL4_TABLE_ADDRESDS,&Temp_UL1.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  42. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_UL1_TABLE_ADDRESDS,&Temp_UL2.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  43. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_UL2_TABLE_ADDRESDS,&Temp_UL3.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  44. EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_TEMP_UL3_TABLE_ADDRESDS,&Temp_UL4.Table_10_Temp_H,sizeof(TEMP_TABLE_st) );
  45. // printf("bluecell_Currdatastatus.ATT_DL1_H : %x\r\n",bluecell_Currdatastatus.ATT_DL1_H);
  46. // printf("bluecell_Currdatastatus.ATT_DL1_L : %x\r\n",bluecell_Currdatastatus.ATT_DL1_L);
  47. //
  48. printf("EEPROM INIT COMPLETE\r\n");
  49. }
  50. #if 0 // PYJ.2020.04.23_BEGIN --
  51. void eepromtest(){
  52. memset(&eepdata[0],0x33,100);
  53. for(int i = 0; i < 100; i ++ ){
  54. printf("data[%d] : %x \r\n",i,eepdata[i]);
  55. EEPROM_M24C08_Bytewrite(EEPROM_M24C08_ID,EEPROM_ATT_BASE + i,&eepdata[i],1);
  56. }
  57. for(int i = 0; i < 100; i ++ ){
  58. EEPROM_M24C08_ByteRead(EEPROM_M24C08_ID,EEPROM_ATT_BASE + i,&eepdata[i],1);
  59. printf("data[%d] : %x \r\n",i,eepdata[i]);
  60. }
  61. // EEPROM_M24C08_Read(EEPROM_M24C08_ID,EEPROM_ATT_BASE,&eepdata[0],100);
  62. // for(int i = 0; i < 100; i ++ ){
  63. // printf("data[%d] : %x \r\n",i,eepdata[i]);
  64. // }
  65. }
  66. #endif // PYJ.2020.04.23_END --
  67. #define MAXEEPROM_LENG 32
  68. HAL_StatusTypeDef EEPROM_M24C08_Read(uint8_t devid,uint16_t Address,uint8_t* data,uint16_t size){
  69. HAL_StatusTypeDef ret = HAL_ERROR;
  70. uint16_t sizecnt = 0,sizeremain = 0;
  71. uint16_t addrees_inc = 0;
  72. // ret = HAL_I2C_Mem_Read(&hi2c2, devid | ((Address & 0x0300) >> 7),((Address )), I2C_MEMADD_SIZE_8BIT, &data[0], size, 1024);
  73. ret = HAL_I2C_Mem_Read(&hi2c2, devid ,((Address )), I2C_MEMADD_SIZE_16BIT, &data[0], size, 1024);
  74. // EEPROM24XX_Load( Address,data, size);
  75. if(ret == HAL_ERROR)
  76. printf("Write ERR\r\n");
  77. else
  78. HAL_Delay(20);
  79. return ret;
  80. }
  81. HAL_StatusTypeDef EEPROM_M24C08_write(uint8_t devid,uint16_t Address,uint8_t* data,uint16_t size){
  82. HAL_StatusTypeDef ret = HAL_ERROR;
  83. uint8_t sizecnt = 0,sizeremain = 0;
  84. uint16_t addrees_inc = 0;
  85. sizecnt = size /MAXEEPROM_LENG;
  86. sizeremain = size % MAXEEPROM_LENG;
  87. addrees_inc = 0;
  88. #if 0 // PYJ.2020.04.25_BEGIN --
  89. for(int i = 0 ; i <sizecnt; i++ ){
  90. addrees_inc = i * 16;
  91. ret = HAL_I2C_Mem_Write(&hi2c2, devid | (((Address + addrees_inc) & 0x0300) >> 7),((Address + addrees_inc)) , I2C_MEMADD_SIZE_8BIT, &data[addrees_inc], 16, 1024);
  92. if(ret == HAL_ERROR)
  93. printf("Write ERR\r\n");
  94. else
  95. HAL_Delay(20);
  96. }
  97. addrees_inc += 16;
  98. ret = HAL_I2C_Mem_Write(&hi2c2, devid | (((Address + addrees_inc) & 0x0300) >> 7),((Address + addrees_inc)) , I2C_MEMADD_SIZE_8BIT, &data[addrees_inc], sizeremain, 1024);
  99. // EEPROM24XX_Save( Address,data, size);
  100. if(ret == HAL_ERROR)
  101. printf("Write ERR\r\n");
  102. else
  103. HAL_Delay(20);
  104. #else
  105. // printf("size : %d sizecnt = %d sizeremain : %d\r\n",size,sizecnt,sizeremain);
  106. if(sizecnt > 0){
  107. for(int i = 0 ; i < sizecnt; i++ ){
  108. addrees_inc = i * MAXEEPROM_LENG;
  109. ret = HAL_I2C_Mem_Write(&hi2c2, devid ,((Address + addrees_inc) & 0xFFFF) , I2C_MEMADD_SIZE_16BIT, &data[addrees_inc], MAXEEPROM_LENG, 1024);
  110. if(ret == HAL_ERROR)
  111. printf("Write ERR\r\n");
  112. else
  113. HAL_Delay(20);
  114. }
  115. addrees_inc += MAXEEPROM_LENG;
  116. }
  117. // printf("Remain Data Index : %d \r\n",sizeremain);
  118. if(sizeremain > 0){
  119. // printf("Remain Data Write Start ");
  120. for(int i = 0; i < sizeremain; i++){
  121. ret = HAL_I2C_Mem_Write(&hi2c2, devid ,((Address + addrees_inc + i)& 0xFFFF) , I2C_MEMADD_SIZE_16BIT, &data[addrees_inc + i], 1, 1024);
  122. // EEPROM24XX_Save( Address,data, size);
  123. if(ret == HAL_ERROR)
  124. printf("Write ERR\r\n");
  125. else
  126. HAL_Delay(20);
  127. }
  128. }
  129. #endif // PYJ.2020.04.25_END --
  130. return ret;
  131. }
  132. HAL_StatusTypeDef EEPROM_M24C08_Zerowrite(uint8_t devid,uint16_t Address){
  133. HAL_StatusTypeDef ret = HAL_ERROR;
  134. uint8_t sizecnt = 0,sizeremain = 0;
  135. uint16_t addrees_inc = 0;
  136. addrees_inc = 0;
  137. uint8_t data[4096] = {0,};
  138. for(int i = 0 ; i < 128; i++ ){
  139. addrees_inc = i * MAXEEPROM_LENG;
  140. ret = HAL_I2C_Mem_Write(&hi2c2, devid ,((Address + addrees_inc) & 0xFFFF) , I2C_MEMADD_SIZE_16BIT, &data[0], MAXEEPROM_LENG, 1024);
  141. if(ret == HAL_ERROR)
  142. printf("Write ERR\r\n");
  143. else
  144. HAL_Delay(20);
  145. }
  146. return ret;
  147. }
  148. HAL_StatusTypeDef EEPROM_M24C08_ByteRead(uint16_t devid,uint16_t Address,uint8_t* data,uint8_t size){
  149. HAL_StatusTypeDef ret = HAL_ERROR;
  150. #if 0 // PYJ.2020.04.24_BEGIN --
  151. for(int i = 0; i < size; i++){
  152. ret = HAL_I2C_Mem_Read(&hi2c2, devid, Address + i, I2C_MEMADD_SIZE_8BIT, &data[i], 1, 1024);
  153. // ret = HAL_I2C_Mem_Read(&hi2c2, devid|(((Address + i)&0x0700>>7)),((Address + i)&0xff), I2C_MEMADD_SIZE_16BIT, &data[i], 1, 1024);
  154. if(ret == HAL_ERROR)
  155. printf("Write ERR\r\n");
  156. // ret = HAL_I2C_Mem_Read_IT(&hi2c2, devid, Address + i, I2C_MEMADD_SIZE_8BIT, &data[i], 1);
  157. HAL_Delay(10);
  158. }
  159. #endif // PYJ.2020.04.24_END --
  160. return ret;
  161. }
  162. uint8_t I2CWrite[1024];
  163. HAL_StatusTypeDef EEPROM_M24C08_Bytewrite(uint16_t devid,uint16_t Address,uint8_t* data,uint8_t size){
  164. HAL_StatusTypeDef ret = HAL_ERROR;
  165. #if 0 // PYJ.2020.04.24_BEGIN --
  166. for(int i = 0; i < size; i++){
  167. ret = HAL_I2C_Mem_Write(&hi2c2, devid, Address + i, I2C_MEMADD_SIZE_8BIT, &data[i], 1, 1024);
  168. // ret = HAL_I2C_Mem_Write(&hi2c2, devid|(((Address + i)&0x0700>>7)),((Address + i)&0xff), I2C_MEMADD_SIZE_16BIT, &data[i], 1, 1024);
  169. if(ret == HAL_ERROR)
  170. printf("Write ERR\r\n");
  171. else
  172. HAL_Delay(7);
  173. // ret = HAL_I2C_Mem_Write_IT(&hi2c2, devid, Address + i, I2C_MEMADD_SIZE_8BIT, &data[i], 1);
  174. }
  175. #endif // PYJ.2020.04.24_END --
  176. return ret;
  177. }
  178. #define _EEPROM_SIZE_KBIT 8
  179. bool EEPROM24XX_IsConnected(void)
  180. {
  181. #if (_EEPROM_USE_WP_PIN==1)
  182. #endif
  183. if(HAL_I2C_IsDeviceReady(&hi2c2,0xa0,1,100)==HAL_OK)
  184. return true;
  185. else
  186. return false;
  187. }
  188. //##########################################################################
  189. bool EEPROM24XX_Save(uint16_t Address,void *data,size_t size_of_data)
  190. {
  191. #if ((_EEPROM_SIZE_KBIT==1) || (_EEPROM_SIZE_KBIT==2))
  192. if(size_of_data > 8)
  193. return false;
  194. #elif ((_EEPROM_SIZE_KBIT==4) || (_EEPROM_SIZE_KBIT==8) || (_EEPROM_SIZE_KBIT==16))
  195. if(size_of_data > 16)
  196. return false;
  197. #else
  198. if(size_of_data > 32)
  199. return false;
  200. #endif
  201. #if (_EEPROM_USE_WP_PIN==1)
  202. HAL_GPIO_WritePin(_EEPROM_WP_GPIO,_EEPROM_WP_PIN,GPIO_PIN_RESET);
  203. #endif
  204. #if ((_EEPROM_SIZE_KBIT==1) || (_EEPROM_SIZE_KBIT==2))
  205. if(HAL_I2C_Mem_Write(&hi2c2,0xa0,Address,I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  206. #elif (_EEPROM_SIZE_KBIT==4)
  207. if(HAL_I2C_Mem_Write(&hi2c2,0xa0|((Address&0x0100>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  208. #elif (_EEPROM_SIZE_KBIT==8)
  209. if(HAL_I2C_Mem_Write(&hi2c2,0xa0|((Address&0x0300>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  210. #elif (_EEPROM_SIZE_KBIT==16)
  211. if(HAL_I2C_Mem_Write(&hi2c2,0xa0|((Address&0x0700>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  212. #else
  213. if(HAL_I2C_Mem_Write(&hi2c2,0xa0,Address,I2C_MEMADD_SIZE_16BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  214. #endif
  215. {
  216. HAL_Delay(7);
  217. }
  218. else
  219. {
  220. }
  221. }
  222. //##########################################################################
  223. bool EEPROM24XX_Load(uint16_t Address,void *data,size_t size_of_data)
  224. {
  225. #if (_EEPROM_USE_WP_PIN==1)
  226. HAL_GPIO_WritePin(_EEPROM_WP_GPIO,_EEPROM_WP_PIN,GPIO_PIN_SET);
  227. #endif
  228. #if ((_EEPROM_SIZE_KBIT==1) || (_EEPROM_SIZE_KBIT==2))
  229. if(HAL_I2C_Mem_Read(&hi2c2,0xa0,Address,I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  230. #elif (_EEPROM_SIZE_KBIT==4)
  231. if(HAL_I2C_Mem_Read(&hi2c2,0xa0|((Address&0x0100>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  232. #elif (_EEPROM_SIZE_KBIT==8)
  233. if(HAL_I2C_Mem_Read(&hi2c2,0xa0|((Address&0x0300>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  234. #elif (_EEPROM_SIZE_KBIT==16)
  235. if(HAL_I2C_Mem_Read(&hi2c2,0xa0|((Address&0x0700>>7)),(Address&0xff),I2C_MEMADD_SIZE_8BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  236. #else
  237. if(HAL_I2C_Mem_Read(&hi2c2,0xa0,Address,I2C_MEMADD_SIZE_16BIT,(uint8_t*)data,size_of_data,100) == HAL_OK)
  238. #endif
  239. return true;
  240. else
  241. return false;
  242. }
  243. // EEPROM 24lcXXX
  244. /// ST에서 제공하는 I2C 소스는 뭘 해도 안된다.. 내가 잘못한건지 뭔지 참..
  245. /// while(!I2C_CheckEvent(I2C1, I2C_EVENT_MASTER_MODE_SELECT)); ??????????
  246. /// 중국애들?이 제공하는 소스로 하니 바로 되버리는 이 현상은 뭘까...
  247. /////////////////////////
  248. ///// i2c gpio 직접 제어 코드..
  249. #define E2PROM_SDA EEPROM_SCL_Pin
  250. #define E2PROM_SCL EEPROM_SDA_Pin
  251. #define E2PROM_CMD_WRITE 0xA0
  252. #define E2PROM_CMD_READ 0xA1
  253. #define I2C_PageSize 16
  254. void I2CStart( void )
  255. {
  256. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA ,GPIO_PIN_SET );
  257. HAL_Delay(10);
  258. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_SET );
  259. HAL_Delay(10);
  260. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA,GPIO_PIN_RESET );
  261. HAL_Delay(10);
  262. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL ,GPIO_PIN_RESET);
  263. }
  264. void I2CStop( void )
  265. {
  266. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA,GPIO_PIN_RESET );
  267. HAL_Delay(10);
  268. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL ,GPIO_PIN_SET);
  269. HAL_Delay(10);
  270. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA ,GPIO_PIN_SET);
  271. HAL_Delay(10);
  272. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_RESET );
  273. }
  274. unsigned char I2CSlaveAck( void )
  275. {
  276. GPIO_InitTypeDef GPIO_InitStruct;
  277. unsigned int TimeOut;
  278. unsigned char RetValue;
  279. GPIO_InitStruct.Mode = GPIO_MODE_INPUT; /*?里一定要?成?入上拉,否?不能?出?据*/
  280. GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
  281. GPIO_InitStruct.Pin = E2PROM_SDA;
  282. HAL_GPIO_Init( GPIOB, &GPIO_InitStruct );
  283. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_SET );
  284. TimeOut = 10000;
  285. while( TimeOut-- > 0 )
  286. {
  287. if( SET == HAL_GPIO_ReadPin( GPIOB, E2PROM_SDA ) )
  288. {
  289. RetValue = RESET;
  290. break;
  291. }
  292. else
  293. {
  294. RetValue = SET;
  295. }
  296. }
  297. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_RESET );
  298. GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
  299. HAL_GPIO_Init( GPIOB, &GPIO_InitStruct );
  300. return RetValue;
  301. }
  302. void I2CWriteByte( unsigned char byte )
  303. {
  304. unsigned char i;
  305. for( i=0; i<8; i++ )
  306. {
  307. if( 0X80 & byte )
  308. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA ,GPIO_PIN_SET);
  309. else
  310. HAL_GPIO_WritePin( GPIOB, E2PROM_SDA,GPIO_PIN_RESET );
  311. byte <<= 1;
  312. HAL_Delay(10);
  313. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL ,GPIO_PIN_SET);
  314. HAL_Delay(10);
  315. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_RESET );
  316. HAL_Delay(10);
  317. }
  318. }
  319. unsigned char I2CReadByte( void )
  320. {
  321. unsigned char i;
  322. unsigned char ReadValue = 0;
  323. GPIO_InitTypeDef GPIO_InitStruct;
  324. unsigned char bit;
  325. GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
  326. GPIO_InitStruct.Pin = E2PROM_SDA;
  327. GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
  328. HAL_GPIO_Init( GPIOB, &GPIO_InitStruct );
  329. for( i=0; i<8; i++ )
  330. {
  331. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL ,GPIO_PIN_SET);
  332. HAL_Delay(10);
  333. if( SET == HAL_GPIO_ReadPin( GPIOB, E2PROM_SDA ) )
  334. bit = 0X01;
  335. else
  336. bit = 0x00;
  337. ReadValue = (ReadValue<<1)|bit;
  338. HAL_GPIO_WritePin( GPIOB, E2PROM_SCL,GPIO_PIN_RESET );
  339. HAL_Delay(10);
  340. }
  341. GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
  342. HAL_GPIO_Init( GPIOB, &GPIO_InitStruct );
  343. return ReadValue;
  344. }
  345. unsigned char E2promWriteByte( uint16_t addr, uint8_t data )
  346. {
  347. I2CStart();
  348. I2CWriteByte( E2PROM_CMD_WRITE );
  349. if( RESET == I2CSlaveAck() )
  350. {
  351. return RESET;
  352. }
  353. I2CWriteByte((unsigned char)(addr>>8));
  354. if( RESET == I2CSlaveAck() )
  355. {
  356. return RESET;
  357. }
  358. I2CWriteByte((uint8_t)(addr));
  359. if( RESET == I2CSlaveAck() )
  360. {
  361. return RESET;
  362. }
  363. I2CWriteByte( data );
  364. if( RESET == I2CSlaveAck() )
  365. {
  366. return RESET;
  367. }
  368. I2CStop();
  369. //asm("CPSIE I"); //?中?
  370. return SET;
  371. }
  372. /////////////////////////////////////////////////////////////
  373. unsigned char E2promReadByte( uint16_t addr )
  374. {
  375. unsigned char ReadValue;
  376. I2CStart();
  377. I2CWriteByte( E2PROM_CMD_WRITE );
  378. if( RESET == I2CSlaveAck() )
  379. {
  380. return RESET;
  381. }
  382. I2CWriteByte((unsigned char)(addr>>8));
  383. if( RESET == I2CSlaveAck() )
  384. {
  385. return RESET;
  386. }
  387. I2CWriteByte((uint8_t)(addr));
  388. if( RESET == I2CSlaveAck() )
  389. {
  390. return RESET;
  391. }
  392. I2CStart();
  393. I2CWriteByte( E2PROM_CMD_READ );
  394. if( RESET == I2CSlaveAck() )
  395. {
  396. return RESET;
  397. }
  398. ReadValue = I2CReadByte();
  399. I2CStop();
  400. return ReadValue;
  401. }