main.c 28 KB

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  1. #include "main.h"
  2. #include "ReadKey.h"
  3. #include "key.h"
  4. #include "ReadKey.h"
  5. #include "crc8.h"
  6. #include "led.h"
  7. #include "eventUnit.h"
  8. #include "myADC.h"
  9. #include "myInputCapture.h"
  10. #include "myLcd.h"
  11. #include "myDisplayUnit.h"
  12. #include "myFlashData.h"
  13. #include "myTim.h"
  14. #include "myUart.h"
  15. #include "myUart3.h"
  16. #include "myRadio.h"
  17. #define SOFT_VERSION 0x12
  18. #define SET_RF_FREQ_HZ(base, ch,step) base+ch*step*10*1000
  19. //---------------key
  20. KeyParamExt_ts *getKeyReturn;
  21. key_value_te keyPressValue;
  22. static uint16_t present_adcValue;
  23. static uartPacket_ts uart3Packet;
  24. static uartPacket_ts uartPackage_Rx;
  25. static bool startToCountingRx = false;
  26. static float present_moduleCurrendValue;
  27. static float validPackageCount = 0;
  28. static uint32_t rfContinuousFreq = 1;
  29. static float rfRxTestRate = 1;
  30. static uint8_t packetTxMode;
  31. static uint8_t packetRxMode;
  32. static rfRxPacket_ts rfRecvPacket;
  33. static rfTxPacket_ts rfTxPacket;
  34. static uint32_t rfTxCount = 0;
  35. static uint32_t rfRxCount = 0;
  36. static uint32_t rfTxAndGetAckTime_ms = 0;
  37. static uint32_t rfTxAndGetAckTimeSet_ms = 1000;
  38. static uint32_t rfTxReTmCount = 0;
  39. static bool rfTxGetAckStatus = false;
  40. static uint8_t rfCtrlMode;
  41. const uint32_t rfBaseFreqList[DVTP_MAX_COUNT] =
  42. {
  43. 2400000000, 2400000000, 2400000000, 2400000000
  44. };
  45. const uint32_t rfBaudrateList[MAX_RF_BAUDRATE_GF_COUNT] =
  46. {
  47. 125, 250, 250, 400, 400, 500, 500, 800, 800, 1000, 1000, 1600, 2000
  48. };
  49. const uint32_t rfBaudrateList_flr[MAX_RF_BAUDRATE_FLR_COUNT] =
  50. {
  51. 130000, 260000, 520000, 1040000
  52. };
  53. const uint32_t rfLoraBaudrateList[MAX_RF_BAUDRATE_LR_COUNT] =
  54. {
  55. 216, 1000, 5000, 10000, 20000, 61000, 127000, 203000
  56. };
  57. const int8_t rfTxPowerList[RF_TX_PWR_MAX_COUNT] =
  58. {
  59. -18, -17, -16, -15, -14, -13, -12, -11, -10, -9, -8, -7, -6, -5, -4, -3, -2, -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13
  60. };
  61. static char deviceNameList[DVTP_MAX_COUNT][20] =
  62. {
  63. /*"0"*/"VG2391S240N0M1",
  64. /*"1"*/"VG2392S240N0M1",
  65. /*"2"*/"VG2392S240X0M1",
  66. /*"3"*/"VG2392S240X0M2",
  67. #ifdef MODULE_IS_1W
  68. /*"3"*/"VG2392S240X0M3",
  69. #endif
  70. };
  71. static char rf_cr_name[][20] =
  72. {
  73. /*"0"*/"4/5",
  74. /*"1"*/"4/6",
  75. /*"2"*/"4/7",
  76. /*"3"*/"4/8",
  77. };
  78. static char rf_bw_name[][20] =
  79. {
  80. /*"0"*/"62.5k",
  81. /*"1"*/"125k",
  82. /*"2"*/"250k",
  83. /*"3"*/"500k",
  84. };
  85. userParams_ts deviceInforDef =
  86. {
  87. .projectModel = "VG239x",
  88. .ver = SOFT_VERSION,
  89. .deviceId = 1,
  90. .rfChannel = 0,
  91. .channelStep = 100,
  92. .rfModuleMode = RF_MM_MODE_LORA,
  93. .txPower = RF_TX_PWR_P_13,
  94. .rfBaudrate = RF_BAUDRATE_LR_127K,
  95. .chipType = DVTP_VG2392S240N0M1,
  96. .packetLen = 12,
  97. .sendPacketCounts = 100,
  98. // .rf_sf = 10,
  99. // .rf_bw = 2,
  100. // .rf_cr = 4,
  101. .rf_regulatorMode = 0x01,
  102. };
  103. userParams_ts deviceInfor;
  104. #define EVENT_TIME_CYCLE_10ms 0
  105. #define EVENT_TIME_CYCLE_500ms 1
  106. #define EVENT_UART3_RECV 2
  107. #define EVENT_UART_RECV 3
  108. // #define EVENT_TEST_RX_TIMEOUT 4
  109. #define EVENT_RF_CONTINUOUS_TX 5
  110. #define EVENT_RF_CONTINUOUS_RX 6
  111. #define EVENT_RF_IDLE 7
  112. #define EVENT_RF_CONTINUOUS_TX_MD 8
  113. #define EVENT_TIMEOUT_TO_SAVE_PARAMS 9
  114. #define EVENT_RF_GET_RX_PACKET 10
  115. #define EVENT_RF_PACKET_TX 11
  116. #define EVENT_RF_PACKET_RX 12
  117. #define EVENT_TIMEOUT_CHECK_RF_PACKET 13
  118. #define EVENT_RF_RX_ERROR 14
  119. static uint16_t eventReturn;
  120. void dealKeyPressProccess(void)
  121. {
  122. if (getKeyReturn->haveKey == false)
  123. {
  124. return;
  125. }
  126. getKeyReturn->haveKey = false;
  127. switch (getKeyReturn->value)
  128. {
  129. case LEFT_KEY:
  130. {
  131. if(getLongKeySt() == true)
  132. {
  133. clearLongKey();
  134. EnableReleaseKey();
  135. myDisplay_enter(ENTER_LAST_PAGE);
  136. }
  137. else
  138. {
  139. if (getReleaseKeySt())
  140. {
  141. }
  142. else
  143. {
  144. EnableLongKey(5);
  145. }
  146. }
  147. }
  148. break;
  149. case RIGHT_KEY:
  150. {
  151. if(getLongKeySt() == true)
  152. {
  153. clearLongKey();
  154. EnableReleaseKey();
  155. }
  156. else
  157. {
  158. if (getReleaseKeySt())
  159. {
  160. }
  161. else
  162. {
  163. EnableLongKey(5);
  164. }
  165. }
  166. }
  167. break;
  168. case TOP_KEY:
  169. {
  170. if(getCyclicKeySt() == true)
  171. {
  172. EnableCyclicKey(30);
  173. myDisplay_change(1);
  174. }
  175. else
  176. {
  177. if (getReleaseKeySt())
  178. {
  179. beep_shortBeep();
  180. myDisplay_change(1);
  181. }
  182. else
  183. {
  184. EnableReleaseKey();
  185. EnableCyclicKey(300);
  186. }
  187. }
  188. }
  189. break;
  190. case BOTTOM_KEY:
  191. {
  192. if(getCyclicKeySt() == true)
  193. {
  194. EnableCyclicKey(30);
  195. myDisplay_change(0);
  196. }
  197. else
  198. {
  199. if (getReleaseKeySt())
  200. {
  201. beep_shortBeep();
  202. myDisplay_change(0);
  203. }
  204. else
  205. {
  206. EnableReleaseKey();
  207. EnableCyclicKey(300);
  208. }
  209. }
  210. }
  211. break;
  212. case OK_KEY:
  213. {
  214. if(getLongKeySt() == true)
  215. {
  216. clearLongKey();
  217. EnableReleaseKey();
  218. beep_shortBeep();
  219. myDisplay_enter(ENTER_NEXT_PAGE);
  220. }
  221. else
  222. {
  223. if (getReleaseKeySt())
  224. {
  225. }
  226. else
  227. {
  228. EnableLongKey(5);
  229. }
  230. }
  231. }
  232. break;
  233. default:
  234. break;
  235. }
  236. }
  237. static void rcc_init(void)
  238. {
  239. RCC_APB2PeriphClockCmd( RCC_APB2Periph_GPIOA, ENABLE );
  240. RCC_APB2PeriphClockCmd( RCC_APB2Periph_GPIOB, ENABLE );
  241. RCC_APB2PeriphClockCmd( RCC_APB2Periph_GPIOC, ENABLE );
  242. RCC_APB2PeriphClockCmd( RCC_APB2Periph_GPIOD, ENABLE );
  243. RCC_APB2PeriphClockCmd( RCC_APB2Periph_SPI1, ENABLE );
  244. RCC_APB2PeriphClockCmd(RCC_APB2Periph_AFIO, ENABLE);
  245. #if defined (STM32F10X_LD_VL) || defined (STM32F10X_MD_VL) || defined (STM32F10X_HD_VL)
  246. /* ADCCLK = PCLK2/2 */
  247. RCC_ADCCLKConfig(RCC_PCLK2_Div2);
  248. #else
  249. /* ADCCLK = PCLK2/4 */
  250. RCC_ADCCLKConfig(RCC_PCLK2_Div4);
  251. #endif
  252. }
  253. void UART1_CALLBACK(uint8_t *buf, uint16_t len)
  254. {
  255. if(uartPackage_Rx.isValid == 0)
  256. {
  257. memcpy(uartPackage_Rx.packet, buf, len);
  258. uartPackage_Rx.len = len;
  259. uartPackage_Rx.isValid = 1;
  260. event_post(EVENT_UART_RECV);
  261. }
  262. }
  263. void UART3_CALLBACK(uint8_t *buf, uint16_t len)
  264. {
  265. if(uart3Packet.isValid == 0)
  266. {
  267. memcpy(uart3Packet.packet, buf, len);
  268. uart3Packet.len = len;
  269. uart3Packet.isValid = true;
  270. event_post(EVENT_UART3_RECV);
  271. }
  272. }
  273. void TIM3_CALLBACK(void)
  274. {
  275. static uint8_t timeCnt_1ms = 0;
  276. beep_onDriver();
  277. if(timeCnt_1ms ++ == 5)
  278. {
  279. timeCnt_1ms = 0;
  280. rfTxAndGetAckTime_ms ++;
  281. eventDriver();
  282. }
  283. }
  284. void uiEnterCallback(int pageId, int cursorCount, int status, int value)
  285. {
  286. switch (pageId - 1)
  287. {
  288. case UI_PAGE_ID_ITEM_MODE:
  289. {
  290. }break;
  291. case UI_PAGE_ID_RF_CONTINUOUS:
  292. {
  293. switch (cursorCount)
  294. {
  295. case CNT_ITEM_INDEX_TX:
  296. {
  297. // event_post(status ? EVENT_RF_CONTINUOUS_TX : EVENT_RF_CONTINUOUS_RX);
  298. event_post(EVENT_RF_CONTINUOUS_TX);
  299. rfCtrlMode = status ? UI_PAGE_ID_RF_CONTINUOUS : 0;
  300. }
  301. break;
  302. case CNT_ITEM_INDEX_RX:
  303. {
  304. event_post(status ? EVENT_RF_CONTINUOUS_RX : EVENT_RF_IDLE);
  305. }
  306. break;
  307. case CNT_ITEM_INDEX_TX_MD:
  308. {
  309. event_post(status ? EVENT_RF_CONTINUOUS_TX_MD : EVENT_RF_IDLE);
  310. }
  311. break;
  312. default:
  313. break;
  314. }
  315. }
  316. break;
  317. case UI_PAGE_ID_TX_PACKET:
  318. {
  319. switch (cursorCount)
  320. {
  321. case 0://signle pcaket tx
  322. case 1:// pcaket tx and wait ack
  323. case 2://packet tx unitl max count
  324. {
  325. setEvent(status ? EVENT_RF_PACKET_TX : EVENT_RF_IDLE,
  326. status ? true : false,
  327. status ? 1500 : 0);
  328. rfCtrlMode = status ? UI_PAGE_ID_TX_PACKET : 0;
  329. rfTxCount = 0;
  330. rfRxCount = 0;
  331. packetTxMode = cursorCount;
  332. }
  333. break;
  334. default:
  335. break;
  336. }
  337. }
  338. break;
  339. case UI_PAGE_ID_RX_PACKET:
  340. {
  341. switch (cursorCount)
  342. {
  343. case 0:
  344. case 1:
  345. {
  346. event_post(status ? EVENT_RF_PACKET_RX : EVENT_RF_IDLE);
  347. rfCtrlMode = status ? UI_PAGE_ID_RX_PACKET : 0;
  348. rfTxCount = 0;
  349. rfRxCount = 0;
  350. packetRxMode = cursorCount;
  351. }
  352. break;
  353. default:
  354. break;
  355. }
  356. }
  357. break;
  358. case UI_PAGE_ID_SETTING:
  359. {
  360. switch (cursorCount)
  361. {
  362. case SET_ITEM_INDEX_TYPE://chipType
  363. {
  364. deviceInfor.chipType = value;
  365. if (deviceInfor.chipType >= DVTP_VG2392S240X0M1)
  366. {
  367. if (deviceInfor.txPower >= RF_TX_PWR_P_5)
  368. {
  369. deviceInfor.txPower = RF_TX_PWR_N_0;
  370. }
  371. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_TXPOWER,
  372. deviceInfor.txPower,
  373. RF_TX_PWR_N_18, RF_TX_PWR_P_5, 1);
  374. }
  375. else
  376. {
  377. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_TXPOWER,
  378. deviceInfor.txPower,
  379. RF_TX_PWR_N_18, RF_TX_PWR_MAX_COUNT, 1);
  380. }
  381. myRadio_setTxPower(rfTxPowerList[deviceInfor.txPower]);
  382. myDisplay_setting_loadParams(SET_ITEM_INDEX_TXPOWER, "%ddBm", rfTxPowerList[deviceInfor.txPower]);
  383. myDisplay_setting_loadParams(SET_ITEM_INDEX_TYPE, deviceNameList[deviceInfor.chipType]);
  384. myDisplay_setting_loadParams(SET_ITEM_INDEX_FREQ, "%03u->%6.2fMHz", deviceInfor.rfChannel, (float)(SET_RF_FREQ_HZ(rfBaseFreqList[deviceInfor.chipType], deviceInfor.rfChannel, deviceInfor.channelStep)) / 1000000.0);
  385. myRadio_setFrequency(SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  386. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  387. }
  388. break;
  389. case SET_ITEM_INDEX_FREQ://Freq
  390. {
  391. deviceInfor.rfChannel = value;
  392. myDisplay_setting_loadParams(SET_ITEM_INDEX_FREQ, "%03u->%6.2fMHz", deviceInfor.rfChannel, (float)(SET_RF_FREQ_HZ(rfBaseFreqList[deviceInfor.chipType], deviceInfor.rfChannel, deviceInfor.channelStep)) / 1000000.0);
  393. myRadio_setFrequency(SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  394. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  395. }
  396. break;
  397. case SET_ITEM_INDEX_STEP://channelStep
  398. {
  399. deviceInfor.channelStep = value;
  400. myDisplay_setting_loadParams(SET_ITEM_INDEX_STEP, "%uHz", deviceInfor.channelStep*10*1000);
  401. myDisplay_setting_loadParams(SET_ITEM_INDEX_FREQ, "%03u->%6.2fMHz", deviceInfor.rfChannel, (float)(SET_RF_FREQ_HZ(rfBaseFreqList[deviceInfor.chipType], deviceInfor.rfChannel, deviceInfor.channelStep)) / 1000000.0);
  402. myRadio_setFrequency(SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  403. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  404. }
  405. break;
  406. case SET_ITEM_INDEX_TXPOWER://TxPower
  407. {
  408. deviceInfor.txPower = value;
  409. if (deviceInfor.chipType >= DVTP_VG2392S240X0M1)
  410. {
  411. if (deviceInfor.txPower >= RF_TX_PWR_P_5)
  412. {
  413. deviceInfor.txPower = RF_TX_PWR_P_5;
  414. }
  415. }
  416. myRadio_setTxPower(rfTxPowerList[deviceInfor.txPower]);
  417. myDisplay_setting_loadParams(SET_ITEM_INDEX_TXPOWER, "%ddBm", rfTxPowerList[deviceInfor.txPower]);
  418. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  419. }
  420. break;
  421. case SET_ITEM_INDEX_PACKET_LEN://TxPower
  422. {
  423. deviceInfor.packetLen = value;
  424. myDisplay_setting_loadParams(SET_ITEM_INDEX_PACKET_LEN, "%u Byte", deviceInfor.packetLen);
  425. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  426. }
  427. break;
  428. case SET_ITEM_INDEX_RFBAUDRATE://RFBAUDRATE
  429. {
  430. deviceInfor.rfBaudrate = value;
  431. if(deviceInfor.rfModuleMode == RF_MM_MODE_GFSK)
  432. {
  433. }
  434. else if (deviceInfor.rfModuleMode == RF_MM_MODE_LORA)
  435. {
  436. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ubps", rfLoraBaudrateList[deviceInfor.rfBaudrate]);
  437. }
  438. else if (deviceInfor.rfModuleMode == RF_MM_MODE_FLRC)
  439. {
  440. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ukbps", rfBaudrateList[deviceInfor.rfBaudrate]);
  441. }
  442. else
  443. {
  444. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ukbps", rfBaudrateList[deviceInfor.rfBaudrate]);
  445. }
  446. setEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS, false, 200);
  447. }
  448. break;
  449. default:
  450. break;
  451. }
  452. }
  453. break;
  454. default:
  455. break;
  456. }
  457. }
  458. void rfRx_callback(uint8_t status, rfRxPacket_ts packet)
  459. {
  460. switch (status)
  461. {
  462. case RX_STA_SECCESS:
  463. {
  464. rfRecvPacket = packet;
  465. myRadio_receiver();
  466. switch (packetRxMode)
  467. {
  468. case 0://signle pcaket rx
  469. {
  470. event_post(EVENT_RF_GET_RX_PACKET);
  471. }break;
  472. case 1:// pcaket rx and wait ack
  473. {
  474. setEvent( EVENT_RF_GET_RX_PACKET, false, 50);
  475. }break;
  476. default:
  477. break;
  478. }
  479. if (startToCountingRx)
  480. {
  481. if (memcmp(rfRecvPacket.payload, "hel", 3) == 0)
  482. {
  483. validPackageCount ++;
  484. }
  485. }
  486. else
  487. {
  488. }
  489. }
  490. break;
  491. case RX_STA_TIMEOUT:
  492. {
  493. event_post(EVENT_RF_RX_ERROR);
  494. }
  495. break;
  496. case RX_STA_PAYLOAD_ERROR:
  497. {
  498. event_post(EVENT_RF_RX_ERROR);
  499. }
  500. break;
  501. case TX_STA_SECCESS:
  502. {
  503. LED1_ON_ONE();
  504. if (rfCtrlMode == UI_PAGE_ID_TX_PACKET)
  505. {
  506. switch (packetTxMode)
  507. {
  508. case 0://signle pcaket tx
  509. {
  510. setEvent( EVENT_RF_PACKET_TX, false, 50);
  511. }break;
  512. case 1:// pcaket tx and wait ack
  513. {
  514. setEvent( EVENT_RF_PACKET_TX, false, (uint32_t)((float)(rfTxAndGetAckTime_ms>100?rfTxAndGetAckTime_ms:100) * 1.5));
  515. myRadio_receiver();
  516. }break;
  517. case 2://packet tx unitl max count
  518. {
  519. if (rfTxCount < deviceInfor.sendPacketCounts)
  520. {
  521. setEvent( EVENT_RF_PACKET_TX, false, 50);
  522. }
  523. }
  524. break;
  525. default:
  526. break;
  527. }
  528. myDisplay_ui_rf_tx_packet_consumeTime(rfTxAndGetAckTime_ms);
  529. }
  530. else
  531. {
  532. myRadio_receiver();
  533. }
  534. }
  535. break;
  536. default:
  537. break;
  538. }
  539. }
  540. int main(void)
  541. {
  542. userParams_ts userParamsTemp;
  543. NVIC_PriorityGroupConfig(NVIC_PriorityGroup_2);//
  544. #ifdef BOOTLOADER_APP
  545. SCB->VTOR = FLASH_BASE | 0x000C800;
  546. #endif
  547. rcc_init();
  548. GPIO_PinRemapConfig(GPIO_Remap_SWJ_JTAGDisable, ENABLE);//
  549. myFlash_read((uint8_t*)&deviceInfor, sizeof(userParams_ts));
  550. if (crc8_gernCheckT((unsigned char*)&deviceInfor,
  551. sizeof(userParams_ts) - 1,
  552. deviceInfor.checkSum) == 0)
  553. {
  554. deviceInfor = deviceInforDef;
  555. }
  556. if (memcmp(deviceInfor.projectModel, deviceInforDef.projectModel, strlen(deviceInforDef.projectModel)) != 0)
  557. {
  558. deviceInfor = deviceInforDef;
  559. }
  560. if (deviceInfor.ver != deviceInforDef.ver)
  561. {
  562. deviceInfor = deviceInforDef;
  563. }
  564. if (deviceInfor.chipType >= DVTP_VG2392S240X0M1)
  565. {
  566. if (deviceInfor.txPower >= RF_TX_PWR_P_5)
  567. {
  568. deviceInfor.txPower = RF_TX_PWR_P_5;
  569. }
  570. }
  571. key_init();
  572. LED_Init();
  573. // myUart3_init(115200, UART3_CALLBACK); //
  574. myUart1_init(115200, UART1_CALLBACK);
  575. myTim1_init(200, TIM3_CALLBACK);
  576. myADC_init();
  577. beep_init();
  578. beep_setFreq(deviceInfor.beepNumb);
  579. myRadio_setRfModuleMode(deviceInfor.rfModuleMode);
  580. myRadio_setChipType(deviceInfor.chipType);
  581. myRadio_init(0, rfRx_callback);
  582. myRadio_setFrequency(SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  583. myRadio_setTxPower(rfTxPowerList[deviceInfor.txPower]);
  584. myRadio_setBaudrate(deviceInfor.rfBaudrate);
  585. myRadio_receiver();
  586. myDisplay_init(uiEnterCallback);
  587. myDisplay_ui_firstUi_setDeviceName(deviceNameList[deviceInfor.chipType]);
  588. myDisplay_ui_firstUi_setFreq(SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  589. myDisplay_ui_firstUi_setRfPower(rfTxPowerList[deviceInfor.txPower]);
  590. if(deviceInfor.rfModuleMode == RF_MM_MODE_GFSK)
  591. {
  592. }
  593. else if (deviceInfor.rfModuleMode == RF_MM_MODE_LORA)
  594. {
  595. myDisplay_ui_firstUi_setRfBr(rfLoraBaudrateList[deviceInfor.rfBaudrate]);
  596. }
  597. else if (deviceInfor.rfModuleMode == RF_MM_MODE_FLRC)
  598. {
  599. myDisplay_ui_firstUi_setRfBr(rfBaudrateList_flr[deviceInfor.rfBaudrate]);
  600. }
  601. else
  602. {
  603. myDisplay_ui_firstUi_setRfBr(rfBaudrateList_flr[deviceInfor.rfBaudrate]);
  604. }
  605. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_TYPE, deviceInfor.chipType, 0, DVTP_MAX_COUNT, 1);
  606. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_FREQ, deviceInfor.rfChannel, 0, 100, 1);
  607. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_STEP, deviceInfor.channelStep, 100, 100, 1);
  608. if (deviceInfor.chipType >= DVTP_VG2392S240X0M1)
  609. {
  610. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_TXPOWER,
  611. deviceInfor.txPower,
  612. RF_TX_PWR_N_18, RF_TX_PWR_P_5, 1);
  613. }
  614. else
  615. {
  616. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_TXPOWER,
  617. deviceInfor.txPower,
  618. RF_TX_PWR_N_18, RF_TX_PWR_MAX_COUNT, 1);
  619. }
  620. if(deviceInfor.rfModuleMode == RF_MM_MODE_GFSK)
  621. {
  622. }
  623. else if (deviceInfor.rfModuleMode == RF_MM_MODE_LORA)
  624. {
  625. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_RFBAUDRATE, deviceInfor.rfBaudrate, RF_BAUDRATE_LR_216B, MAX_RF_BAUDRATE_LR_COUNT, 1);
  626. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ubps", rfLoraBaudrateList[deviceInfor.rfBaudrate]);
  627. }
  628. else if (deviceInfor.rfModuleMode == RF_MM_MODE_FLRC)
  629. {
  630. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_RFBAUDRATE, deviceInfor.rfBaudrate, RF_BAUDRATE_FLR_0_13M, MAX_RF_BAUDRATE_FLR_COUNT, 1);
  631. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ukbps", rfBaudrateList[deviceInfor.rfBaudrate]);
  632. }
  633. else
  634. {
  635. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_RFBAUDRATE, deviceInfor.rfBaudrate, RF_BAUDRATE_FLR_0_13M, MAX_RF_BAUDRATE_FLR_COUNT, 1);
  636. myDisplay_setting_loadParams(SET_ITEM_INDEX_RFBAUDRATE, "%ukbps", rfBaudrateList[deviceInfor.rfBaudrate]);
  637. }
  638. myDisplay_setSettingParamsProfile(SET_ITEM_INDEX_PACKET_LEN, deviceInfor.packetLen, 1, 255, 1);
  639. myDisplay_setting_loadParams(SET_ITEM_INDEX_FREQ, "%03u->%6.2fMHz", deviceInfor.rfChannel, (float)(SET_RF_FREQ_HZ(rfBaseFreqList[deviceInfor.chipType], deviceInfor.rfChannel, deviceInfor.channelStep)) / 1000000.0);
  640. myDisplay_setting_loadParams(SET_ITEM_INDEX_STEP, "%uHz", deviceInfor.channelStep*10*1000);
  641. myDisplay_setting_loadParams(SET_ITEM_INDEX_TYPE, deviceNameList[deviceInfor.chipType]);
  642. myDisplay_setting_loadParams(SET_ITEM_INDEX_TXPOWER, "%ddBm", rfTxPowerList[deviceInfor.txPower]);
  643. myDisplay_setting_loadParams(SET_ITEM_INDEX_PACKET_LEN, "%u Byte", deviceInfor.packetLen);
  644. myDisplay_ui_deviceInfor_setVer(SOFT_VERSION);
  645. myDisplay_ui_deviceInfor_setModule("VGKitBoard_239xS");
  646. beep_longBeep();
  647. setEvent(EVENT_TIME_CYCLE_10ms, true, 10);
  648. setEvent(EVENT_TIME_CYCLE_500ms, true, 500);
  649. while(1)
  650. {
  651. eventReturn = event_pend();
  652. if (getEvent(EVENT_TIME_CYCLE_10ms))
  653. {
  654. getKeyReturn = KeyValueChange(keyPressValue);
  655. dealKeyPressProccess();
  656. }
  657. if (getEvent(EVENT_TIME_CYCLE_500ms))
  658. {
  659. present_moduleCurrendValue = myADC_getVoltageValue()/50/0.5*1000;
  660. myDisplay_ui_rf_continuos_txCurrent(present_moduleCurrendValue);
  661. myDisplay_ui_rf_rxPacket_rxCurrent(present_moduleCurrendValue);
  662. myDisplay_ui_rf_continuos_rxRssi(myRadio_getRssi());
  663. uiTimerFlash_callBack();
  664. }
  665. if (getEvent(EVENT_RF_CONTINUOUS_RX))
  666. {
  667. myRadio_setCtrl(RADIO_EXT_CONTROL_RX_SENSITIVITY,
  668. SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  669. startToCountingRx = true;
  670. validPackageCount = 0;
  671. }
  672. if (getEvent(EVENT_RF_CONTINUOUS_TX))
  673. {
  674. myRadio_setCtrl(RADIO_EXT_CONTROL_TX_UNMODULATED,
  675. SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  676. }
  677. if (getEvent(EVENT_RF_CONTINUOUS_TX_MD))
  678. {
  679. myRadio_setTxPower(deviceInfor.txPower);
  680. myRadio_setCtrl(RADIO_EXT_CONTROL_TX_MODULATED,
  681. SET_RF_FREQ_HZ(2400000000, deviceInfor.rfChannel, deviceInfor.channelStep));
  682. }
  683. if (getEvent(EVENT_RF_PACKET_TX))
  684. {
  685. rfTxCount ++;
  686. memset(rfTxPacket.payload, 0, sizeof(rfTxPacket.payload));
  687. sprintf(rfTxPacket.payload, "%05u-hello...", rfTxCount);
  688. rfTxPacket.len = strlen(rfTxPacket.payload);
  689. memset(&rfTxPacket.payload[rfTxPacket.len + 1], 0x77, sizeof(rfTxPacket.payload) - rfTxPacket.len - 1);
  690. rfTxPacket.len = deviceInfor.packetLen;
  691. myDisplay_ui_rf_tx_packet_buffer(rfTxPacket.payload);
  692. myDisplay_ui_rf_tx_packet_counts(deviceInfor.packetLen);
  693. rfTxAndGetAckTime_ms = 0;
  694. myRadio_transmit(&rfTxPacket);
  695. event_clear(EVENT_TIMEOUT_CHECK_RF_PACKET);
  696. if (rfCtrlMode == UI_PAGE_ID_TX_PACKET)
  697. {
  698. switch (packetTxMode)
  699. {
  700. case 0://signle pcaket tx
  701. {
  702. }break;
  703. case 1:// pcaket tx and wait ack
  704. {
  705. if (rfTxCount > deviceInfor.sendPacketCounts)
  706. {
  707. myDisplay_ui_rf_tx_packet_rate((float)rfRxCount/rfTxCount * 100);
  708. rfTxCount = 0;
  709. rfRxCount = 0;
  710. }
  711. }break;
  712. case 2://packet tx unitl max count
  713. {
  714. }
  715. break;
  716. default:
  717. break;
  718. }
  719. }
  720. }
  721. if (getEvent(EVENT_RF_PACKET_RX))
  722. {
  723. myRadio_receiver();
  724. validPackageCount = 0;
  725. }
  726. if (getEvent(EVENT_RF_GET_RX_PACKET))
  727. {
  728. rfRxCount ++;
  729. myDisplay_ui_rf_continuos_rxLen(0, validPackageCount);
  730. if (rfCtrlMode == UI_PAGE_ID_TX_PACKET)
  731. {
  732. switch (packetTxMode)
  733. {
  734. case 0://signle pcaket tx
  735. {
  736. }break;
  737. case 1:// pcaket tx and wait ack
  738. {
  739. event_post(EVENT_RF_PACKET_TX);
  740. myDisplay_ui_rf_tx_packet_ackRssi(rfRecvPacket.rssi);
  741. }break;
  742. case 2://packet tx unitl max count
  743. {
  744. }
  745. break;
  746. default:
  747. break;
  748. }
  749. }else if (rfCtrlMode == UI_PAGE_ID_RX_PACKET)
  750. {
  751. switch (packetRxMode)
  752. {
  753. case 0:
  754. {
  755. }break;
  756. case 1:
  757. {
  758. rfTxCount ++;
  759. memset(rfTxPacket.payload, 0, sizeof(rfTxPacket.payload));
  760. sprintf(rfTxPacket.payload, "%05u-hello...", rfTxCount);
  761. rfTxPacket.len = strlen(rfTxPacket.payload);
  762. memset(&rfTxPacket.payload[rfTxPacket.len + 1], 0x77, sizeof(rfTxPacket.payload) - rfTxPacket.len - 1);
  763. rfTxPacket.len = deviceInfor.packetLen;
  764. myRadio_transmit(&rfTxPacket);
  765. }break;
  766. default:
  767. break;
  768. }
  769. myDisplay_ui_rf_rxPacket_rssi(rfRecvPacket.rssi);
  770. myDisplay_ui_rf_rxPacket_count(rfRxCount);
  771. if (atoi(rfRecvPacket.payload) == 1)
  772. {
  773. rfRxCount = 1;
  774. }
  775. float rxRate = (float)rfRxCount / atoi(rfRecvPacket.payload) * 100;
  776. myDisplay_ui_rf_rxPacket_rate(rxRate);
  777. myDisplay_ui_rf_rxPacket_scroll_buffer(rfRecvPacket.payload, 0);
  778. myDisplay_ui_rf_rxContinue_scroll_buffer(rfRecvPacket.payload, 0);
  779. }
  780. myUart1_sendArray(rfRecvPacket.payload, rfRecvPacket.len);
  781. memset(rfRecvPacket.payload, 0, sizeof(rfRecvPacket.payload));
  782. LED2_ON_ONE();
  783. }
  784. if (getEvent(EVENT_RF_RX_ERROR))
  785. {
  786. myRadio_receiver();
  787. }
  788. if (getEvent(EVENT_RF_IDLE))
  789. {
  790. startToCountingRx = false;
  791. myRadio_abort();
  792. event_clear(EVENT_RF_PACKET_TX);
  793. }
  794. if (getEvent(EVENT_UART_RECV))
  795. {
  796. if (uartPackage_Rx.isValid)
  797. {
  798. uartPackage_Rx.isValid = false;
  799. myDisplay_ui_rf_rxPacket_buffer(uartPackage_Rx.packet, 10);
  800. rfTxPacket.len = uartPackage_Rx.len;
  801. memcpy(rfTxPacket.payload, uartPackage_Rx.packet, rfTxPacket.len);
  802. myRadio_transmit(&rfTxPacket);
  803. uartPackage_Rx.len = 0;
  804. }
  805. }
  806. if (getEvent(EVENT_UART3_RECV))
  807. {
  808. if (uart3Packet.isValid)
  809. {
  810. uart3Packet.isValid = false;
  811. uart3Packet.len = 0;
  812. myDisplay_ui_rf_rxPacket_buffer(uart3Packet.packet, 0);
  813. }
  814. }
  815. if (getEvent(EVENT_TIMEOUT_TO_SAVE_PARAMS))
  816. {
  817. deviceInfor.checkSum = crc8_ger((unsigned char*)&deviceInfor, sizeof(userParams_ts) - 1);
  818. myFlash_write((uint8_t*)&deviceInfor, sizeof(userParams_ts));
  819. }
  820. keyPressValue = keyScan();
  821. myRadio_process();
  822. }
  823. }