stm32l4xx_ll_usart.c 20 KB

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  1. /**
  2. ******************************************************************************
  3. * @file stm32l4xx_ll_usart.c
  4. * @author MCD Application Team
  5. * @brief USART LL module driver.
  6. ******************************************************************************
  7. * @attention
  8. *
  9. * <h2><center>&copy; COPYRIGHT(c) 2017 STMicroelectronics</center></h2>
  10. *
  11. * Redistribution and use in source and binary forms, with or without modification,
  12. * are permitted provided that the following conditions are met:
  13. * 1. Redistributions of source code must retain the above copyright notice,
  14. * this list of conditions and the following disclaimer.
  15. * 2. Redistributions in binary form must reproduce the above copyright notice,
  16. * this list of conditions and the following disclaimer in the documentation
  17. * and/or other materials provided with the distribution.
  18. * 3. Neither the name of STMicroelectronics nor the names of its contributors
  19. * may be used to endorse or promote products derived from this software
  20. * without specific prior written permission.
  21. *
  22. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  23. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  24. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  25. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  26. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  27. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  28. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  29. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  30. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  31. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  32. *
  33. ******************************************************************************
  34. */
  35. #if defined(USE_FULL_LL_DRIVER)
  36. /* Includes ------------------------------------------------------------------*/
  37. #include "stm32l4xx_ll_usart.h"
  38. #include "stm32l4xx_ll_rcc.h"
  39. #include "stm32l4xx_ll_bus.h"
  40. #ifdef USE_FULL_ASSERT
  41. #include "stm32_assert.h"
  42. #else
  43. #define assert_param(expr) ((void)0U)
  44. #endif
  45. /** @addtogroup STM32L4xx_LL_Driver
  46. * @{
  47. */
  48. #if defined (USART1) || defined (USART2) || defined (USART3) || defined (UART4) || defined (UART5)
  49. /** @addtogroup USART_LL
  50. * @{
  51. */
  52. /* Private types -------------------------------------------------------------*/
  53. /* Private variables ---------------------------------------------------------*/
  54. /* Private constants ---------------------------------------------------------*/
  55. /** @addtogroup USART_LL_Private_Constants
  56. * @{
  57. */
  58. /**
  59. * @}
  60. */
  61. /* Private macros ------------------------------------------------------------*/
  62. /** @addtogroup USART_LL_Private_Macros
  63. * @{
  64. */
  65. #if defined(USART_PRESC_PRESCALER)
  66. #define IS_LL_USART_PRESCALER(__VALUE__) (((__VALUE__) == LL_USART_PRESCALER_DIV1) \
  67. || ((__VALUE__) == LL_USART_PRESCALER_DIV2) \
  68. || ((__VALUE__) == LL_USART_PRESCALER_DIV4) \
  69. || ((__VALUE__) == LL_USART_PRESCALER_DIV6) \
  70. || ((__VALUE__) == LL_USART_PRESCALER_DIV8) \
  71. || ((__VALUE__) == LL_USART_PRESCALER_DIV10) \
  72. || ((__VALUE__) == LL_USART_PRESCALER_DIV12) \
  73. || ((__VALUE__) == LL_USART_PRESCALER_DIV16) \
  74. || ((__VALUE__) == LL_USART_PRESCALER_DIV32) \
  75. || ((__VALUE__) == LL_USART_PRESCALER_DIV64) \
  76. || ((__VALUE__) == LL_USART_PRESCALER_DIV128) \
  77. || ((__VALUE__) == LL_USART_PRESCALER_DIV256))
  78. #endif
  79. /* __BAUDRATE__ The maximum Baud Rate is derived from the maximum clock available
  80. * divided by the smallest oversampling used on the USART (i.e. 8) */
  81. #if defined(STM32L4R5xx) || defined(STM32L4R7xx) || defined(STM32L4R9xx) || defined(STM32L4S5xx) || defined(STM32L4S7xx) || defined(STM32L4S9xx)
  82. #define IS_LL_USART_BAUDRATE(__BAUDRATE__) ((__BAUDRATE__) <= 15000000U)
  83. #else
  84. #define IS_LL_USART_BAUDRATE(__BAUDRATE__) ((__BAUDRATE__) <= 10000000U)
  85. #endif
  86. /* __VALUE__ In case of oversampling by 16 and 8, BRR content must be greater than or equal to 16d. */
  87. #define IS_LL_USART_BRR(__VALUE__) (((__VALUE__) >= 16U) \
  88. && ((__VALUE__) <= 0x0000FFFFU))
  89. #define IS_LL_USART_DIRECTION(__VALUE__) (((__VALUE__) == LL_USART_DIRECTION_NONE) \
  90. || ((__VALUE__) == LL_USART_DIRECTION_RX) \
  91. || ((__VALUE__) == LL_USART_DIRECTION_TX) \
  92. || ((__VALUE__) == LL_USART_DIRECTION_TX_RX))
  93. #define IS_LL_USART_PARITY(__VALUE__) (((__VALUE__) == LL_USART_PARITY_NONE) \
  94. || ((__VALUE__) == LL_USART_PARITY_EVEN) \
  95. || ((__VALUE__) == LL_USART_PARITY_ODD))
  96. #define IS_LL_USART_DATAWIDTH(__VALUE__) (((__VALUE__) == LL_USART_DATAWIDTH_7B) \
  97. || ((__VALUE__) == LL_USART_DATAWIDTH_8B) \
  98. || ((__VALUE__) == LL_USART_DATAWIDTH_9B))
  99. #define IS_LL_USART_OVERSAMPLING(__VALUE__) (((__VALUE__) == LL_USART_OVERSAMPLING_16) \
  100. || ((__VALUE__) == LL_USART_OVERSAMPLING_8))
  101. #define IS_LL_USART_LASTBITCLKOUTPUT(__VALUE__) (((__VALUE__) == LL_USART_LASTCLKPULSE_NO_OUTPUT) \
  102. || ((__VALUE__) == LL_USART_LASTCLKPULSE_OUTPUT))
  103. #define IS_LL_USART_CLOCKPHASE(__VALUE__) (((__VALUE__) == LL_USART_PHASE_1EDGE) \
  104. || ((__VALUE__) == LL_USART_PHASE_2EDGE))
  105. #define IS_LL_USART_CLOCKPOLARITY(__VALUE__) (((__VALUE__) == LL_USART_POLARITY_LOW) \
  106. || ((__VALUE__) == LL_USART_POLARITY_HIGH))
  107. #define IS_LL_USART_CLOCKOUTPUT(__VALUE__) (((__VALUE__) == LL_USART_CLOCK_DISABLE) \
  108. || ((__VALUE__) == LL_USART_CLOCK_ENABLE))
  109. #define IS_LL_USART_STOPBITS(__VALUE__) (((__VALUE__) == LL_USART_STOPBITS_0_5) \
  110. || ((__VALUE__) == LL_USART_STOPBITS_1) \
  111. || ((__VALUE__) == LL_USART_STOPBITS_1_5) \
  112. || ((__VALUE__) == LL_USART_STOPBITS_2))
  113. #define IS_LL_USART_HWCONTROL(__VALUE__) (((__VALUE__) == LL_USART_HWCONTROL_NONE) \
  114. || ((__VALUE__) == LL_USART_HWCONTROL_RTS) \
  115. || ((__VALUE__) == LL_USART_HWCONTROL_CTS) \
  116. || ((__VALUE__) == LL_USART_HWCONTROL_RTS_CTS))
  117. /**
  118. * @}
  119. */
  120. /* Private function prototypes -----------------------------------------------*/
  121. /* Exported functions --------------------------------------------------------*/
  122. /** @addtogroup USART_LL_Exported_Functions
  123. * @{
  124. */
  125. /** @addtogroup USART_LL_EF_Init
  126. * @{
  127. */
  128. /**
  129. * @brief De-initialize USART registers (Registers restored to their default values).
  130. * @param USARTx USART Instance
  131. * @retval An ErrorStatus enumeration value:
  132. * - SUCCESS: USART registers are de-initialized
  133. * - ERROR: USART registers are not de-initialized
  134. */
  135. ErrorStatus LL_USART_DeInit(USART_TypeDef *USARTx)
  136. {
  137. ErrorStatus status = SUCCESS;
  138. /* Check the parameters */
  139. assert_param(IS_UART_INSTANCE(USARTx));
  140. if (USARTx == USART1)
  141. {
  142. /* Force reset of USART clock */
  143. LL_APB2_GRP1_ForceReset(LL_APB2_GRP1_PERIPH_USART1);
  144. /* Release reset of USART clock */
  145. LL_APB2_GRP1_ReleaseReset(LL_APB2_GRP1_PERIPH_USART1);
  146. }
  147. else if (USARTx == USART2)
  148. {
  149. /* Force reset of USART clock */
  150. LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_USART2);
  151. /* Release reset of USART clock */
  152. LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_USART2);
  153. }
  154. #if defined(USART3)
  155. else if (USARTx == USART3)
  156. {
  157. /* Force reset of USART clock */
  158. LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_USART3);
  159. /* Release reset of USART clock */
  160. LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_USART3);
  161. }
  162. #endif /* USART3 */
  163. #if defined(UART4)
  164. else if (USARTx == UART4)
  165. {
  166. /* Force reset of UART clock */
  167. LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_UART4);
  168. /* Release reset of UART clock */
  169. LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_UART4);
  170. }
  171. #endif /* UART4 */
  172. #if defined(UART5)
  173. else if (USARTx == UART5)
  174. {
  175. /* Force reset of UART clock */
  176. LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_UART5);
  177. /* Release reset of UART clock */
  178. LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_UART5);
  179. }
  180. #endif /* UART5 */
  181. else
  182. {
  183. status = ERROR;
  184. }
  185. return (status);
  186. }
  187. /**
  188. * @brief Initialize USART registers according to the specified
  189. * parameters in USART_InitStruct.
  190. * @note As some bits in USART configuration registers can only be written when the USART is disabled (USART_CR1_UE bit =0),
  191. * USART IP should be in disabled state prior calling this function. Otherwise, ERROR result will be returned.
  192. * @note Baud rate value stored in USART_InitStruct BaudRate field, should be valid (different from 0).
  193. * @param USARTx USART Instance
  194. * @param USART_InitStruct: pointer to a LL_USART_InitTypeDef structure
  195. * that contains the configuration information for the specified USART peripheral.
  196. * @retval An ErrorStatus enumeration value:
  197. * - SUCCESS: USART registers are initialized according to USART_InitStruct content
  198. * - ERROR: Problem occurred during USART Registers initialization
  199. */
  200. ErrorStatus LL_USART_Init(USART_TypeDef *USARTx, LL_USART_InitTypeDef *USART_InitStruct)
  201. {
  202. ErrorStatus status = ERROR;
  203. uint32_t periphclk = LL_RCC_PERIPH_FREQUENCY_NO;
  204. /* Check the parameters */
  205. assert_param(IS_UART_INSTANCE(USARTx));
  206. #if defined(USART_PRESC_PRESCALER)
  207. assert_param(IS_LL_USART_PRESCALER(USART_InitStruct->PrescalerValue));
  208. #endif
  209. assert_param(IS_LL_USART_BAUDRATE(USART_InitStruct->BaudRate));
  210. assert_param(IS_LL_USART_DATAWIDTH(USART_InitStruct->DataWidth));
  211. assert_param(IS_LL_USART_STOPBITS(USART_InitStruct->StopBits));
  212. assert_param(IS_LL_USART_PARITY(USART_InitStruct->Parity));
  213. assert_param(IS_LL_USART_DIRECTION(USART_InitStruct->TransferDirection));
  214. assert_param(IS_LL_USART_HWCONTROL(USART_InitStruct->HardwareFlowControl));
  215. assert_param(IS_LL_USART_OVERSAMPLING(USART_InitStruct->OverSampling));
  216. /* USART needs to be in disabled state, in order to be able to configure some bits in
  217. CRx registers */
  218. if (LL_USART_IsEnabled(USARTx) == 0U)
  219. {
  220. /*---------------------------- USART CR1 Configuration ---------------------
  221. * Configure USARTx CR1 (USART Word Length, Parity, Mode and Oversampling bits) with parameters:
  222. * - DataWidth: USART_CR1_M bits according to USART_InitStruct->DataWidth value
  223. * - Parity: USART_CR1_PCE, USART_CR1_PS bits according to USART_InitStruct->Parity value
  224. * - TransferDirection: USART_CR1_TE, USART_CR1_RE bits according to USART_InitStruct->TransferDirection value
  225. * - Oversampling: USART_CR1_OVER8 bit according to USART_InitStruct->OverSampling value.
  226. */
  227. MODIFY_REG(USARTx->CR1,
  228. (USART_CR1_M | USART_CR1_PCE | USART_CR1_PS |
  229. USART_CR1_TE | USART_CR1_RE | USART_CR1_OVER8),
  230. (USART_InitStruct->DataWidth | USART_InitStruct->Parity |
  231. USART_InitStruct->TransferDirection | USART_InitStruct->OverSampling));
  232. /*---------------------------- USART CR2 Configuration ---------------------
  233. * Configure USARTx CR2 (Stop bits) with parameters:
  234. * - Stop Bits: USART_CR2_STOP bits according to USART_InitStruct->StopBits value.
  235. * - CLKEN, CPOL, CPHA and LBCL bits are to be configured using LL_USART_ClockInit().
  236. */
  237. LL_USART_SetStopBitsLength(USARTx, USART_InitStruct->StopBits);
  238. /*---------------------------- USART CR3 Configuration ---------------------
  239. * Configure USARTx CR3 (Hardware Flow Control) with parameters:
  240. * - HardwareFlowControl: USART_CR3_RTSE, USART_CR3_CTSE bits according to USART_InitStruct->HardwareFlowControl value.
  241. */
  242. LL_USART_SetHWFlowCtrl(USARTx, USART_InitStruct->HardwareFlowControl);
  243. /*---------------------------- USART BRR Configuration ---------------------
  244. * Retrieve Clock frequency used for USART Peripheral
  245. */
  246. if (USARTx == USART1)
  247. {
  248. periphclk = LL_RCC_GetUSARTClockFreq(LL_RCC_USART1_CLKSOURCE);
  249. }
  250. else if (USARTx == USART2)
  251. {
  252. periphclk = LL_RCC_GetUSARTClockFreq(LL_RCC_USART2_CLKSOURCE);
  253. }
  254. #if defined(USART3)
  255. else if (USARTx == USART3)
  256. {
  257. periphclk = LL_RCC_GetUSARTClockFreq(LL_RCC_USART3_CLKSOURCE);
  258. }
  259. #endif /* USART3 */
  260. #if defined(UART4)
  261. else if (USARTx == UART4)
  262. {
  263. periphclk = LL_RCC_GetUARTClockFreq(LL_RCC_UART4_CLKSOURCE);
  264. }
  265. #endif /* UART4 */
  266. #if defined(UART5)
  267. else if (USARTx == UART5)
  268. {
  269. periphclk = LL_RCC_GetUARTClockFreq(LL_RCC_UART5_CLKSOURCE);
  270. }
  271. #endif /* UART5 */
  272. else
  273. {
  274. /* Nothing to do, as error code is already assigned to ERROR value */
  275. }
  276. /* Configure the USART Baud Rate :
  277. #if defined(USART_PRESC_PRESCALER)
  278. - prescaler value is required
  279. #endif
  280. - valid baud rate value (different from 0) is required
  281. - Peripheral clock as returned by RCC service, should be valid (different from 0).
  282. */
  283. if ((periphclk != LL_RCC_PERIPH_FREQUENCY_NO)
  284. && (USART_InitStruct->BaudRate != 0U))
  285. {
  286. status = SUCCESS;
  287. LL_USART_SetBaudRate(USARTx,
  288. periphclk,
  289. #if defined(USART_PRESC_PRESCALER)
  290. USART_InitStruct->PrescalerValue,
  291. #endif
  292. USART_InitStruct->OverSampling,
  293. USART_InitStruct->BaudRate);
  294. /* Check BRR is greater than or equal to 16d */
  295. assert_param(IS_LL_USART_BRR(USARTx->BRR));
  296. }
  297. #if defined(USART_PRESC_PRESCALER)
  298. /*---------------------------- USART PRESC Configuration -----------------------
  299. * Configure USARTx PRESC (Prescaler) with parameters:
  300. * - PrescalerValue: USART_PRESC_PRESCALER bits according to USART_InitStruct->PrescalerValue value.
  301. */
  302. LL_USART_SetPrescaler(USARTx, USART_InitStruct->PrescalerValue);
  303. #endif
  304. }
  305. /* Endif (=> USART not in Disabled state => return ERROR) */
  306. return (status);
  307. }
  308. /**
  309. * @brief Set each @ref LL_USART_InitTypeDef field to default value.
  310. * @param USART_InitStruct: pointer to a @ref LL_USART_InitTypeDef structure
  311. * whose fields will be set to default values.
  312. * @retval None
  313. */
  314. void LL_USART_StructInit(LL_USART_InitTypeDef *USART_InitStruct)
  315. {
  316. /* Set USART_InitStruct fields to default values */
  317. #if defined(USART_PRESC_PRESCALER)
  318. USART_InitStruct->PrescalerValue = LL_USART_PRESCALER_DIV1;
  319. #endif
  320. USART_InitStruct->BaudRate = 9600U;
  321. USART_InitStruct->DataWidth = LL_USART_DATAWIDTH_8B;
  322. USART_InitStruct->StopBits = LL_USART_STOPBITS_1;
  323. USART_InitStruct->Parity = LL_USART_PARITY_NONE ;
  324. USART_InitStruct->TransferDirection = LL_USART_DIRECTION_TX_RX;
  325. USART_InitStruct->HardwareFlowControl = LL_USART_HWCONTROL_NONE;
  326. USART_InitStruct->OverSampling = LL_USART_OVERSAMPLING_16;
  327. }
  328. /**
  329. * @brief Initialize USART Clock related settings according to the
  330. * specified parameters in the USART_ClockInitStruct.
  331. * @note As some bits in USART configuration registers can only be written when the USART is disabled (USART_CR1_UE bit =0),
  332. * USART IP should be in disabled state prior calling this function. Otherwise, ERROR result will be returned.
  333. * @param USARTx USART Instance
  334. * @param USART_ClockInitStruct: pointer to a @ref LL_USART_ClockInitTypeDef structure
  335. * that contains the Clock configuration information for the specified USART peripheral.
  336. * @retval An ErrorStatus enumeration value:
  337. * - SUCCESS: USART registers related to Clock settings are initialized according to USART_ClockInitStruct content
  338. * - ERROR: Problem occurred during USART Registers initialization
  339. */
  340. ErrorStatus LL_USART_ClockInit(USART_TypeDef *USARTx, LL_USART_ClockInitTypeDef *USART_ClockInitStruct)
  341. {
  342. ErrorStatus status = SUCCESS;
  343. /* Check USART Instance and Clock signal output parameters */
  344. assert_param(IS_UART_INSTANCE(USARTx));
  345. assert_param(IS_LL_USART_CLOCKOUTPUT(USART_ClockInitStruct->ClockOutput));
  346. /* USART needs to be in disabled state, in order to be able to configure some bits in
  347. CRx registers */
  348. if (LL_USART_IsEnabled(USARTx) == 0U)
  349. {
  350. /*---------------------------- USART CR2 Configuration -----------------------*/
  351. /* If Clock signal has to be output */
  352. if (USART_ClockInitStruct->ClockOutput == LL_USART_CLOCK_DISABLE)
  353. {
  354. /* Deactivate Clock signal delivery :
  355. * - Disable Clock Output: USART_CR2_CLKEN cleared
  356. */
  357. LL_USART_DisableSCLKOutput(USARTx);
  358. }
  359. else
  360. {
  361. /* Ensure USART instance is USART capable */
  362. assert_param(IS_USART_INSTANCE(USARTx));
  363. /* Check clock related parameters */
  364. assert_param(IS_LL_USART_CLOCKPOLARITY(USART_ClockInitStruct->ClockPolarity));
  365. assert_param(IS_LL_USART_CLOCKPHASE(USART_ClockInitStruct->ClockPhase));
  366. assert_param(IS_LL_USART_LASTBITCLKOUTPUT(USART_ClockInitStruct->LastBitClockPulse));
  367. /*---------------------------- USART CR2 Configuration -----------------------
  368. * Configure USARTx CR2 (Clock signal related bits) with parameters:
  369. * - Enable Clock Output: USART_CR2_CLKEN set
  370. * - Clock Polarity: USART_CR2_CPOL bit according to USART_ClockInitStruct->ClockPolarity value
  371. * - Clock Phase: USART_CR2_CPHA bit according to USART_ClockInitStruct->ClockPhase value
  372. * - Last Bit Clock Pulse Output: USART_CR2_LBCL bit according to USART_ClockInitStruct->LastBitClockPulse value.
  373. */
  374. MODIFY_REG(USARTx->CR2,
  375. USART_CR2_CLKEN | USART_CR2_CPHA | USART_CR2_CPOL | USART_CR2_LBCL,
  376. USART_CR2_CLKEN | USART_ClockInitStruct->ClockPolarity |
  377. USART_ClockInitStruct->ClockPhase | USART_ClockInitStruct->LastBitClockPulse);
  378. }
  379. }
  380. /* Else (USART not in Disabled state => return ERROR */
  381. else
  382. {
  383. status = ERROR;
  384. }
  385. return (status);
  386. }
  387. /**
  388. * @brief Set each field of a @ref LL_USART_ClockInitTypeDef type structure to default value.
  389. * @param USART_ClockInitStruct: pointer to a @ref LL_USART_ClockInitTypeDef structure
  390. * whose fields will be set to default values.
  391. * @retval None
  392. */
  393. void LL_USART_ClockStructInit(LL_USART_ClockInitTypeDef *USART_ClockInitStruct)
  394. {
  395. /* Set LL_USART_ClockInitStruct fields with default values */
  396. USART_ClockInitStruct->ClockOutput = LL_USART_CLOCK_DISABLE;
  397. USART_ClockInitStruct->ClockPolarity = LL_USART_POLARITY_LOW; /* Not relevant when ClockOutput = LL_USART_CLOCK_DISABLE */
  398. USART_ClockInitStruct->ClockPhase = LL_USART_PHASE_1EDGE; /* Not relevant when ClockOutput = LL_USART_CLOCK_DISABLE */
  399. USART_ClockInitStruct->LastBitClockPulse = LL_USART_LASTCLKPULSE_NO_OUTPUT; /* Not relevant when ClockOutput = LL_USART_CLOCK_DISABLE */
  400. }
  401. /**
  402. * @}
  403. */
  404. /**
  405. * @}
  406. */
  407. /**
  408. * @}
  409. */
  410. #endif /* USART1 || USART2 || USART3 || UART4 || UART5 */
  411. /**
  412. * @}
  413. */
  414. #endif /* USE_FULL_LL_DRIVER */
  415. /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/