adf4153(3476).c 14 KB

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  1. /******************************************************************************
  2. * @file ADF4153.c
  3. * @brief Implementation of ADF4153 Driver for Microblaze processor.
  4. * @author Istvan Csomortani (istvan.csomortani@analog.com)
  5. *
  6. *******************************************************************************
  7. * Copyright 2013(c) Analog Devices, Inc.
  8. *
  9. * All rights reserved.
  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. * - Redistributions of source code must retain the above copyright
  14. * notice, this list of conditions and the following disclaimer.
  15. * - Redistributions in binary form must reproduce the above copyright
  16. * notice, this list of conditions and the following disclaimer in
  17. * the documentation and/or other materials provided with the
  18. * distribution.
  19. * - Neither the name of Analog Devices, Inc. nor the names of its
  20. * contributors may be used to endorse or promote products derived
  21. * from this software without specific prior written permission.
  22. * - The use of this software may or may not infringe the patent rights
  23. * of one or more patent holders. This license does not release you
  24. * from the requirement that you obtain separate licenses from these
  25. * patent holders to use this software.
  26. * - Use of the software either in source or binary form, must be run
  27. * on or directly connected to an Analog Devices Inc. component.
  28. *
  29. * THIS SOFTWARE IS PROVIDED BY ANALOG DEVICES "AS IS" AND ANY EXPRESS OR IMPLIED
  30. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, NON-INFRINGEMENT, MERCHANTABILITY
  31. * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
  32. * IN NO EVENT SHALL ANALOG DEVICES BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  33. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
  34. * INTELLECTUAL PROPERTY RIGHTS, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  35. * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
  36. * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  37. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  38. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  39. *
  40. ******************************************************************************/
  41. /*****************************************************************************/
  42. /****************************** Include Files ********************************/
  43. /*****************************************************************************/
  44. #include "adf4153.h"
  45. typedef struct _adf4153_st{
  46. unsigned long long PFD_Value;
  47. uint16_t MOD_Value;
  48. uint32_t FRAC_Value;
  49. uint16_t INT_Value;
  50. double N_Value;
  51. }adf4153_st;
  52. uint32_t pow2(uint32_t val,int32_t val2){
  53. for(uint8_t i = 0; i < val2 - 1; i++){
  54. val = val * val;
  55. }
  56. return val;
  57. }
  58. double round_up( double value, int pos )
  59. {
  60. double temp;
  61. temp = value * pow2( 10, pos ); // �썝�븯�뒗 �냼�닔�젏 �옄由ъ닔留뚰겮 10�쓽 �늻�듅�쓣 �븿
  62. temp = (int)(temp + 0.5); // 0.5瑜� �뜑�븳�썑 踰꾨┝�븯硫� 諛섏삱由쇱씠 �맖
  63. temp *= pow2( 10, -pos ); // �떎�떆 �썝�옒 �냼�닔�젏 �옄由ъ닔濡�
  64. return temp;
  65. }
  66. double N_Reg_Value_Calc(double val){
  67. return val / 1000;
  68. }
  69. uint32_t N_Divider_Reg_Create(uint16_t _FRAC,uint16_t _INT,uint8_t _FASTLOCK){
  70. uint32_t ret = 0;
  71. uint32_t shift_bit = 0x01;
  72. uint8_t control_bit = 0;
  73. uint8_t i = 0;
  74. #ifdef DEBUG_PRINT
  75. printf("FRAC : %d INT : %d \r\n",(int)_FRAC,_INT);
  76. #endif /* DEBUG_PRINT */
  77. for(i = 0; i < 2; i++){
  78. if(control_bit & 0x01)
  79. ret += shift_bit << i;
  80. control_bit = control_bit >> 1;
  81. }
  82. #ifdef DEBUG_PRINT
  83. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  84. #endif /* DEBUG_PRINT */
  85. for(i = 2; i < 14; i++){
  86. if(_FRAC & 0x01)
  87. ret += shift_bit << i;
  88. _FRAC = _FRAC >> 1;
  89. }
  90. #ifdef DEBUG_PRINT
  91. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  92. #endif /* DEBUG_PRINT */
  93. for(i = 14; i < 22; i++){
  94. if(_INT & 0x01)
  95. ret += shift_bit << i;
  96. _INT = _INT >> 1;
  97. }
  98. #ifdef DEBUG_PRINT
  99. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  100. #endif /* DEBUG_PRINT */
  101. if(_FASTLOCK & 0x01)
  102. ret += shift_bit << i;
  103. #ifdef DEBUG_PRINT
  104. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  105. #endif /* DEBUG_PRINT */
  106. return ret;
  107. }
  108. uint32_t R_Divider_Reg_Create(uint16_t _MOD,uint8_t _RCOUNTER,uint8_t _PRESCALER,uint8_t _RESERVED,uint8_t _MUXOUT,uint8_t LOAD_CONTROL){
  109. uint32_t ret = 0;
  110. uint32_t shift_bit = 0x01;
  111. uint8_t control_bit = 1;
  112. uint8_t i = 0;
  113. #ifdef DEBUG_PRINT
  114. printf("_MOD : %d INT : %d \r\n",_MOD,_RCOUNTER);
  115. #endif /* DEBUG_PRINT */
  116. #ifdef DEBUG_PRINT
  117. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  118. #endif /* DEBUG_PRINT */
  119. for(i = 0; i < 2; i++){
  120. if(control_bit & 0x01)
  121. ret += shift_bit << i;
  122. control_bit = control_bit >> 1;
  123. }
  124. #ifdef DEBUG_PRINT
  125. printf("\r\nLINE : %d ret : %x\r\n",__LINE__,ret);
  126. #endif /* DEBUG_PRINT */
  127. for(i = 2; i < 14; i++){
  128. if(_MOD & 0x01)
  129. ret += shift_bit << i;
  130. _MOD = _MOD >> 1;
  131. }
  132. for(i = 14; i < 18; i++){
  133. if(_RCOUNTER & 0x01)
  134. ret += shift_bit << i;
  135. _RCOUNTER = _RCOUNTER >> 1;
  136. }
  137. if(_PRESCALER & 0x01)
  138. ret += shift_bit << i++;
  139. if(_RESERVED & 0x01)
  140. ret += shift_bit << i++;
  141. for(i = 19; i < 22; i++){
  142. if(_MUXOUT & 0x01)
  143. ret += shift_bit << i;
  144. _MUXOUT = _MUXOUT >> 1;
  145. }
  146. if(LOAD_CONTROL & 0x01)
  147. ret += shift_bit << i++;
  148. return ret;
  149. }
  150. ADF4153_R_N_Reg_st ADF4153_Freq_Calc(unsigned long long Freq,unsigned long long REFin,uint8_t R_Counter,uint32_t chspacing){
  151. adf4153_st temp_adf4153;
  152. double temp = 0;
  153. ADF4153_R_N_Reg_st temp_reg;
  154. temp_adf4153.PFD_Value = REFin / (R_Counter * 1000);
  155. temp_adf4153.MOD_Value = (temp_adf4153.PFD_Value / chspacing) * 1000;
  156. temp_adf4153.N_Value = N_Reg_Value_Calc(((double)(Freq / 1000) / (double)(temp_adf4153.PFD_Value / 1000)));
  157. temp_adf4153.INT_Value = temp_adf4153.N_Value ;
  158. #ifdef DEBUG_PRINT
  159. printf("\r\ntemp_adf4153.N_Value : %f temp_adf4153.INT_Value : %f temp_adf4153.MOD_Value : %f \r\n",temp_adf4153.N_Value,(double)temp_adf4153.INT_Value,(double)temp_adf4153.MOD_Value);
  160. #endif /* DEBUG_PRINT */
  161. temp = temp_adf4153.N_Value - (double)temp_adf4153.INT_Value;
  162. #ifdef DEBUG_PRINT
  163. printf("\r\n temp_adf4153.N_Value - (double)temp_adf4153.INT_Value) : %f temp * (double)temp_adf4153.MOD_Value : %f \r\n",temp,temp * (double)temp_adf4153.MOD_Value);
  164. #endif /* DEBUG_PRINT */
  165. temp_adf4153.FRAC_Value = (float)temp * temp_adf4153.MOD_Value;
  166. #ifdef DEBUG_PRINT
  167. printf("\r\ntemp_adf4153.N_Value : %x : %f ",temp_adf4153.N_Value,((double)(Freq / 1000) / (double)(temp_adf4153.PFD_Value / 1000)) / 1000);
  168. printf("temp_adf4153.MOD_Value : %x : %d \r\n",temp_adf4153.MOD_Value,temp_adf4153.MOD_Value);
  169. #endif /* DEBUG_PRINT */
  170. uint16_t tempmod = temp_adf4153.FRAC_Value;
  171. for(uint8_t i = 0; i < 12; i++){
  172. #ifdef DEBUG_PRINT
  173. if(temp_adf4153.MOD_Value & 0x800){
  174. printf("1");
  175. }else{
  176. printf("0");
  177. }
  178. #endif /* DEBUG_PRINT */
  179. tempmod = tempmod << 1;
  180. }
  181. #ifdef DEBUG_PRINT
  182. printf("\r\n");
  183. printf("temp_adf4153.FRAC_Value : %x : %d\r\n",temp_adf4153.FRAC_Value,temp_adf4153.FRAC_Value);
  184. #endif /* DEBUG_PRINT */
  185. uint16_t tempfrac = temp_adf4153.FRAC_Value;
  186. for(uint8_t i = 0; i < 12; i++){
  187. #ifdef DEBUG_PRINT
  188. if(tempfrac & 0x800){
  189. printf("1");
  190. }else{
  191. printf("0");
  192. }
  193. #endif /* DEBUG_PRINT */
  194. tempfrac = tempfrac << 1;
  195. }
  196. #ifdef DEBUG_PRINT
  197. printf("\r\n");
  198. #endif /* DEBUG_PRINT */
  199. #ifdef DEBUG_PRINT
  200. printf("temp_adf4153.INT_Value : %x : %d\r\n",temp_adf4153.INT_Value,temp_adf4153.INT_Value);
  201. #endif /* DEBUG_PRINT */
  202. uint16_t tempint = temp_adf4153.INT_Value;
  203. for(uint8_t i = 0; i < 9; i++){
  204. #ifdef DEBUG_PRINT
  205. if(tempint & 0x100){
  206. printf("1");
  207. }else{
  208. printf("0");
  209. }
  210. #endif /* DEBUG_PRINT */
  211. tempint = tempint << 1;
  212. }
  213. #ifdef DEBUG_PRINT
  214. printf("\r\n");
  215. printf("R0: %x R1: %x \r\n",N_Divider_Reg_Create(temp_adf4153.FRAC_Value,temp_adf4153.INT_Value,0),R_Divider_Reg_Create(temp_adf4153.MOD_Value,R_Counter,1,0,2,0));
  216. #endif /* DEBUG_PRINT */
  217. temp_reg.N_reg = N_Divider_Reg_Create(temp_adf4153.FRAC_Value,temp_adf4153.INT_Value,0);
  218. temp_reg.R_reg = R_Divider_Reg_Create(temp_adf4153.MOD_Value,R_Counter,1,0,2,0);
  219. return temp_reg;
  220. // R_Divider_Reg_Create(temp_adf4153.MOD_Value,R_Counter,1,0,1,0); //prescaler 1 : 8/9 0: 4/5
  221. }
  222. void ADF4153_Init(void){
  223. PLL_Setting_st Pll_test = {
  224. PLL_CLK_3_5G_GPIO_Port,
  225. PLL_CLK_3_5G_Pin,
  226. PLL_DATA_3_5G_GPIO_Port,
  227. PLL_DATA_3_5G_Pin,
  228. PLL_EN_3_5G_L_GPIO_Port,
  229. PLL_EN_3_5G_L_Pin,
  230. };
  231. PLL_Setting_st Pll_test2 = {
  232. PLL_CLK_3_5G_GPIO_Port,
  233. PLL_CLK_3_5G_Pin,
  234. PLL_DATA_3_5G_GPIO_Port,
  235. PLL_DATA_3_5G_Pin,
  236. PLL_EN_3_5G_H_GPIO_Port,
  237. PLL_EN_3_5G_H_Pin,
  238. };
  239. // ADF4153_Module_Ctrl(Pll_test,0x2B44B0,0x14BE81,0x0013C2,0x000003);
  240. ADF4153_R_N_Reg_st temp_reg;
  241. temp_reg = ADF4153_Freq_Calc(3465500000,ADF4153_REFIN,ADF4153_RCOUNTER,ADF4153_CHANNEL_SPACING);
  242. ADF4153_Module_Ctrl(Pll_test,temp_reg.N_reg,temp_reg.R_reg,0x13c2,0x3);
  243. HAL_Delay(1);
  244. #ifdef DEBUG_PRINT
  245. printf("\r\nPLL_EN_3_5G_H_GPIO_Port\r\n");
  246. #endif /* DEBUG_PRINT */
  247. temp_reg = ADF4153_Freq_Calc(3934500000,ADF4153_REFIN,ADF4153_RCOUNTER,ADF4153_CHANNEL_SPACING);
  248. ADF4153_Module_Ctrl(Pll_test2,temp_reg.N_reg,temp_reg.R_reg,0x13c2,0x3);
  249. // ADF4153_Module_Ctrl(Pll_test2,0x313840,0x14BE81,0x13C2,0x3);
  250. HAL_Delay(1);
  251. }
  252. void ADF4153_Module_Ctrl(PLL_Setting_st pll,uint32_t R0,uint32_t R1,uint32_t R2,uint32_t R3){
  253. R3 = R3 & 0x0007FF;
  254. R2 = R2 & 0x00FFFF;
  255. R1 = R1 & 0xFFFFFF;
  256. R0 = R0 & 0xFFFFFF;
  257. // ADF4153_Freq_Calc(3461500000,40000000,2,5000);
  258. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_RESET);
  259. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  260. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_RESET);
  261. #ifdef DEBUG_PRINT
  262. printf("YJ :R0: %x R1: %x R2 : %x R3 : %x ",R0,R1,R2,R3);
  263. printf("\r\n");
  264. #endif /* DEBUG_PRINT */
  265. /* R3 Ctrl */
  266. for(int i =0; i < 11; i++){
  267. if(R3 & 0x000400){
  268. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_SET);
  269. #ifdef DEBUG_PRINT
  270. printf("1");
  271. #endif /* DEBUG_PRINT */
  272. }
  273. else{
  274. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  275. #ifdef DEBUG_PRINT
  276. printf("0");
  277. #endif /* DEBUG_PRINT */
  278. }
  279. Pol_Delay_us(50);
  280. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_SET);
  281. Pol_Delay_us(50);
  282. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_RESET);
  283. R3 = (R3 << 1);
  284. }
  285. #ifdef DEBUG_PRINT
  286. printf("\r\n");
  287. #endif /* DEBUG_PRINT */
  288. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_SET);
  289. Pol_Delay_us(50);
  290. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_RESET);
  291. /* R2 Ctrl */
  292. for(int i =0; i < 16; i++){
  293. if(R2 & 0x008000){
  294. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_SET);
  295. #ifdef DEBUG_PRINT
  296. printf("1");
  297. #endif /* DEBUG_PRINT */
  298. }
  299. else{
  300. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  301. #ifdef DEBUG_PRINT
  302. printf("0");
  303. #endif /* DEBUG_PRINT */
  304. }
  305. Pol_Delay_us(50);
  306. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_SET);
  307. Pol_Delay_us(50);
  308. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_RESET);
  309. R2 = ((R2 << 1) & 0x00FFFF);
  310. }
  311. #ifdef DEBUG_PRINT
  312. printf("\r\n");
  313. #endif /* DEBUG_PRINT */
  314. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_SET);
  315. Pol_Delay_us(50);
  316. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_RESET);
  317. /* R1 Ctrl */
  318. for(int i =0; i < 24; i++){
  319. if(R1 & 0x800000){
  320. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_SET);
  321. #ifdef DEBUG_PRINT
  322. printf("1");
  323. #endif /* DEBUG_PRINT */
  324. }
  325. else{
  326. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  327. #ifdef DEBUG_PRINT
  328. printf("0");
  329. #endif /* DEBUG_PRINT */
  330. }
  331. Pol_Delay_us(50);
  332. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_SET);
  333. Pol_Delay_us(50);
  334. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_RESET);
  335. R1 = ((R1 << 1) & 0xFFFFFF);
  336. }
  337. #ifdef DEBUG_PRINT
  338. printf("\r\n");
  339. #endif /* DEBUG_PRINT */
  340. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_SET);
  341. Pol_Delay_us(50);
  342. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_RESET);
  343. /* R0 Ctrl */
  344. for(int i =0; i < 24; i++){
  345. if(R0 & 0x800000){
  346. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_SET);
  347. #ifdef DEBUG_PRINT
  348. printf("1");
  349. #endif /* DEBUG_PRINT */
  350. }
  351. else{
  352. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  353. #ifdef DEBUG_PRINT
  354. printf("0");
  355. #endif /* DEBUG_PRINT */
  356. }
  357. Pol_Delay_us(50);
  358. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_SET);
  359. Pol_Delay_us(50);
  360. HAL_GPIO_WritePin(pll.PLL_CLK_PORT, pll.PLL_CLK_PIN, GPIO_PIN_RESET);
  361. R0 = ((R0 << 1) & 0xFFFFFF);
  362. }
  363. #ifdef DEBUG_PRINT
  364. printf("\r\n");
  365. #endif /* DEBUG_PRINT */
  366. HAL_GPIO_WritePin(pll.PLL_DATA_PORT, pll.PLL_DATA_PIN, GPIO_PIN_RESET);
  367. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_SET);
  368. Pol_Delay_us(50);
  369. HAL_GPIO_WritePin(pll.PLL_ENABLE_PORT, pll.PLL_ENABLE_PIN, GPIO_PIN_RESET);
  370. }