412 lines
12 KiB
C
412 lines
12 KiB
C
/*!
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* \file main.c
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*
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* \brief Target main implementation
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*
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* \copyright Revised BSD License, see section \ref LICENSE.
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*
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* \code
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*
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* _ __ _ ________ _
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* | |/ /(_)___ / ____/ /_ (_)___
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* | // / __ \/ / / __ \/ / __ \
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* / |/ / / / / /___/ / / / / /_/ /
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* /_/|_/_/_/ /_/\____/_/ /_/_/ .___/
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* /_/
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* (C) 2022-2025 XinChip
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*
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* \endcode
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*
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* \author ( XinChip ) Howl-C
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*
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* \author ( XinChip )
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*/
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/*-----------------------------------------------------------------------------------
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INCLUDE HEADE FILES
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------------------------------------------------------------------------------------*/
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#include "main.h"
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/*------------------------------------------------------------------------------------
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Macros
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-------------------------------------------------------------------------------------*/
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#define BLE_ADV_LEN 42
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/*------------------------------------------------------------------------------------
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Static Variables
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-------------------------------------------------------------------------------------*/
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static uint8_t rx_buf[256] = {0};
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static uint16_t rx_len = 0;
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static bool rf24g_rx_irq_flag = false;
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static bool rf24g_tx_irq_flag = false;
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/*------------------------------------------------------------------------------------
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Func Prototype
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-------------------------------------------------------------------------------------*/
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/*------------------------------------------------------------------------------------
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Functions
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-------------------------------------------------------------------------------------*/
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/**
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****************************************************************************************
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* @brief Clock Initialization
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*
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* @param[in]
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* @param[in]
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****************************************************************************************
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*/
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void clock_init(void)
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{
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CLOCK_InitCfg_t clock_cfg;
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clock_cfg.hfclk_src = CLOCK_HFCLK_SRC_XTAL;
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clock_cfg.hfclk_in = CLOCK_HFCLK_IN_32M;
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#if (RC_32K)
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clock_cb.lfclk_src = CLOCK_LFCLK_SRC_RC;
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#endif //(RC_32K)
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#if (XTAL_32K)
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clock_cb.lfclk_src = CLOCK_LFCLK_SRC_XTAL;
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#endif // (XTAL_32K)
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#if (XTAL_32768K)
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clock_cb.lfclk_src = CLOCK_LFCLK_SRC_XTAL;
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#endif // (XTAL_32768K)
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#ifdef XC62XX
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clock_cb.lfclk_src = CLOCK_LFCLK_SRC_RC;
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clock_cfg.lfclk_in = CLOCK_LFCLK_IN_32K;
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#else
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if (clock_cfg.lfclk_src == CLOCK_LFCLK_SRC_XTAL) {
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clock_cfg.lfclk_in = CLOCK_LFCLK_IN_32768;
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} else if (clock_cfg.lfclk_src == CLOCK_LFCLK_SRC_RC) {
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clock_cfg.lfclk_in = CLOCK_LFCLK_IN_32K;
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}
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#endif
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xc_clock_init_cfg(&clock_cfg);
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SysTick_Config(xc_clock_hfclk_in_get() / 100);
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SysTick->CTRL &= ~SysTick_CTRL_TICKINT_Msk;
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}
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#ifdef DEBUG_LOG
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/**
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* @brief RF 2.4g register information printing
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* @param void
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* @retval void
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*/
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void rf_2M_reg_info(void)
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{
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/* Register information printing */
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LOGI("CFG_TOP: 0x%08x\r\n", XC_RF_2_4G->CFG_TOP);
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LOGI("TXPROC_CFG: 0x%08x\r\n", XC_RF_2_4G->TXPROC_CFG);
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LOGI("RXPROC_CFG_L: 0x%08x\r\n", XC_RF_2_4G->RXPROC_CFG_L);
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LOGI("RF_CH: 0x%08x\r\n", XC_RF_2_4G->RF_CH);
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LOGI("rccal_reg_l: 0x%08x\r\n", XC_BT_RF->rccal_reg_l);
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LOGI("ana2_reg_l: 0x%08x\r\n", XC_BT_RF->ana2_reg_l);
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LOGI("ana3_reg_l: 0x%08x\r\n", XC_BT_RF->ana3_reg_l);
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LOGI("ana4_reg_l: 0x%08x\r\n", XC_BT_RF->ana4_reg_l);
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LOGI("ana5_reg_l: 0x%08x\r\n", XC_BT_RF->ana5_reg_l);
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LOGI("ana14_reg_l: 0x%08x\r\n", XC_BT_RF->ana14_reg_l);
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LOGI("ana15_reg_l: 0x%08x\r\n", XC_BT_RF->ana15_reg_l);
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LOGI("ana16_reg_l: 0x%08x\r\n", XC_BT_RF->ana16_reg_l);
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LOGI("ana17_reg_l: 0x%08x\r\n", XC_BT_RF->ana17_reg_l);
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LOGI("ana18_reg_l: 0x%08x\r\n", XC_BT_RF->ana18_reg_l);
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LOGI("ana21_reg_l: 0x%08x\r\n", XC_BT_RF->ana21_reg_l);
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LOGI("AON_RF_AONREG: 0x%08x\r\n", cprao_aon_rf_aonreg_get()); // 0x36
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}
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/**
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* @brief Rf 2.4g dump log
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* @param void
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*
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* @retval void
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*/
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void rf_dump_log(void)
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{
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LOGI("***************** 2.4G Param ******************\n");
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LOGI("CFG_TOP: 0x%08x\r\n", XC_RF_2_4G->CFG_TOP);
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LOGI("EN_AA: 0x%08x\r\n", XC_RF_2_4G->EN_AA);
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LOGI("EN_RXADDR: 0x%08x\r\n", XC_RF_2_4G->EN_RXADDR);
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LOGI("SETUP_AW: 0x%08x\r\n", XC_RF_2_4G->SETUP_AW);
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LOGI("SETUP_RETR: 0x%08x\r\n", XC_RF_2_4G->SETUP_RETR);
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LOGI("RF_CH: 0x%08x\r\n", XC_RF_2_4G->RF_CH);
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LOGI("SETUP_RF: 0x%08x\r\n", XC_RF_2_4G->SETUP_RF);
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LOGI("STATUS: 0x%08x\r\n", XC_RF_2_4G->STATUS);
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LOGI("OBSERVE_TX: 0x%08x\r\n", XC_RF_2_4G->OBSERVE_TX);
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LOGI("RSSI: 0x%08x\r\n", XC_RF_2_4G->RSSI);
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LOGI("RX_ADDR_P0: 0x%02x %08x\r\n", 0xFF & (XC_RF_2_4G->RX_ADDR_P0_H), XC_RF_2_4G->RX_ADDR_P0_L);
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LOGI("RX_ADDR_P1: 0x%02x %08x\r\n", 0xFF & (XC_RF_2_4G->RX_ADDR_P1_H), XC_RF_2_4G->RX_ADDR_P1_L);
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LOGI("RX_ADDR_P2TOP5:0x%08x\r\n", XC_RF_2_4G->RX_ADDR_P2TOP5);
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LOGI("BER_RESULT: 0x%08x%08x\r\n", XC_RF_2_4G->BER_ERR_CNT, XC_RF_2_4G->BER_RECV_CNT);
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LOGI("AGC_SETTING: 0x%08x\r\n", XC_RF_2_4G->AGC_SETTING);
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LOGI("PGA_SETTING: 0x%02x %08x\r\n", ((XC_RF_2_4G->TX_ADDR_H) & 0xFF00) >> 8, XC_RF_2_4G->PGA_SETTING);
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LOGI("TX_ADDR: 0x%02x %08x\r\n", ((XC_RF_2_4G->TX_ADDR_H) & 0xFF), XC_RF_2_4G->TX_ADDR_L);
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LOGI("RX_PW_PX: 0x%04x %08x\r\n", 0xFFFF & (XC_RF_2_4G->RX_PW_Px_H), XC_RF_2_4G->RX_PW_Px_L);
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LOGI("STATUS_FIFO: 0x%08x\r\n", XC_RF_2_4G->STATUS_FIFO);
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LOGI("RSSIREC: 0x%08x\r\n", XC_RF_2_4G->RSSIREC);
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LOGI("TXPROC_CFG: 0x%08x\r\n", XC_RF_2_4G->TXPROC_CFG);
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LOGI("RXPROC_CFG: 0x%02x %08x\r\n", 0xFF & (XC_RF_2_4G->RXPROC_CFG_H), XC_RF_2_4G->RXPROC_CFG_L);
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LOGI("DYNPD: 0x%08x\r\n", XC_RF_2_4G->DYNPD);
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LOGI("FEATURE: 0x%08x\r\n", XC_RF_2_4G->FEATURE);
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LOGI("PGA_SETTING_H: 0x%08x\r\n", XC_RF_2_4G->TX_ADDR_H);
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#ifdef XC62XX
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LOGI("HW_CONFIG: 0x%08x\r\n", XC_RF_2_4G->HW_CONFIG);
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LOGI("PBT_CONFIG: 0x%08x\r\n", XC_RF_2_4G->PBT_CONFIG);
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LOGI("PBT_TIMER: 0x%08x\r\n", XC_RF_2_4G->PBT_TIMER);
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LOGI("PBT_SYNC_TIME: 0x%08x\r\n", XC_RF_2_4G->PBT_SYNC_TIME);
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LOGI("PBT_TX_HEAD: 0x%08x\r\n", XC_RF_2_4G->PBT_TX_HEAD);
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LOGI("PBT_RX_HEAD: 0x%08x\r\n", XC_RF_2_4G->PBT_RX_HEAD);
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LOGI("PBT_AUTO_TRX_TIME: 0x%08x\r\n", XC_RF_2_4G->PBT_AUTO_TRX_TIME);
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#endif
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LOGI("TX_POWER 0x%08x\r\n", (XC_BT_RF->ana21_reg_l >> 6) & 0x3f);
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LOGI("ana11_reg_l: 0x%08x\r\n", XC_BT_RF->ana11_reg_l);
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LOGI("***********************************************\n");
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LOGI("\r\n");
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}
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#endif // DEBUG_LOG
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/**
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* @brief RF 2.4g buff info
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* @param uint8_t * - buff
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* uint8_t len
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* @retval void
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*/
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void rf_buff_info(uint8_t *buff, uint16_t len)
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{
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for (uint16_t i = 0; i < len; i++)
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LOGI("%02x ", buff[i]);
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LOGI("\r\n");
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}
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void app_uart_init(void)
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{
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GPIO_InitCfg_t gpio_cfg = {0};
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gpio_cfg.Mux = GPIO_Mux0;
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gpio_cfg.Pull = GPIO_PULLUP;
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gpio_cfg.Int = NOT_INT;
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gpio_cfg.FunSel = UART0_TX;
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gpio_cfg.Pin = GPIO_18;
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gpio_cfg.Dir = GPIO_DIR_OUTPUT;
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xc_gpio_init(&gpio_cfg);
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gpio_cfg.FunSel = UART0_RX;
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gpio_cfg.Pin = GPIO_19;
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gpio_cfg.Dir = GPIO_DIR_INPUT;
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xc_gpio_init(&gpio_cfg);
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UART_InitCfg_t uart_cfg = {0};
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uart_cfg.Parity = UART_PARITY_DISABLE;
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uart_cfg.StopBits = UART_STOP_1_BITS;
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uart_cfg.WordLength = UART_DATA_8_BITS;
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uart_cfg.BaudRate = UART_BAUDRATE_115200;
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uart_cfg.HardwareFlowControl = UART_HWFC_DISABLE;
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xc_uart_init(UART0_IDX, &uart_cfg);
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}
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/* switch mode and set channel */
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void rf_switch_mode(uint8_t mode, uint16_t channel)
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{
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CE_CTL_LOW;
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switch (mode) {
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case TX_MODE:
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case RX_MODE:
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break;
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default:
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LOGI("The mode is set incorrectly\n");
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while(1);
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}
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set_rf_mode(mode);
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rf_set_channel(channel);
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#ifdef XC62XX
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XC_RF_2_4G->STATUS = ((XC_RF_2_4G->CFG_TOP >> 30) & 0x3 << 7) | ((XC_RF_2_4G->CFG_TOP >> 4) & 0x7 << 4);
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#else
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XC_RF_2_4G->STATUS = MASK_ALL_INTER;
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#endif
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rf_wr_cmd(FLUSH_RX);
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rf_wr_cmd(FLUSH_TX);
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if (mode) {
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CE_CTL_HIGH;
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}
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}
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/* RF发送完成回调 */
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void rf_24g_tx_ds_cb(void)
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{
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/* set flag */
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rf24g_tx_irq_flag = true;
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}
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/* RF接收完成回调 */
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void rf_24g_rx_dr_cb(void)
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{
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/* stop RF */
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CE_CTL_LOW;
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/* set flag */
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rf24g_rx_irq_flag = true;
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/* recv data */
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rx_len = rf_rx_packet(rx_buf);
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/* start RF */
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CE_CTL_HIGH;
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}
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uint8_t rf24g_adv_packet_generate(uint8_t *buff)
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{
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uint8_t l = 0;
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uint8_t rf_adv_data_complete_name[26] = {"RF-ADV-TEST-123456789BLE52"};
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/* hearder */
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buff[l++] = 0x42;
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buff[l++] = 37;
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/* BLE MAC address */
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buff[l++] = MAC_ADDR_0;
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buff[l++] = MAC_ADDR_1;
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buff[l++] = MAC_ADDR_2;
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buff[l++] = MAC_ADDR_3;
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buff[l++] = MAC_ADDR_4;
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buff[l++] = MAC_ADDR_5;
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/* Flags */
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buff[l++] = 0x02;
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buff[l++] = 0x01;
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buff[l++] = 0x06;
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/* Complete Local Name */
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buff[l++] = 27;
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buff[l++] = 0x09;
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memcpy(&buff[l], rf_adv_data_complete_name, sizeof(rf_adv_data_complete_name));
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l += sizeof(rf_adv_data_complete_name);
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/* CRC */
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buff[l++] = 0x55;
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buff[l++] = 0x55;
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buff[l++] = 0x55;
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return l;
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}
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void rf24g_adv_tx_demo()
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{
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uint32_t tx_cnt = 0;
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uint16_t adv_len = 0;
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uint8_t adv_buff[BLE_ADV_LEN];
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uint16_t adv_channel = XINCX_2_4G_CHANNEL;
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/* Set the communication mode */
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rf_switch_mode( TX_MODE, adv_channel);
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/* genrate adv data */
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adv_len = rf24g_adv_packet_generate(adv_buff);
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/* CRC */
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ble_crc(adv_buff, adv_len - 3, adv_buff + adv_len - 3);
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/* whitening */
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ble_whiten(adv_buff, adv_len, bleWhitenStart(adv_channel));
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LOGI("************ADV Send Start**************\r\n");
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/* main loop */
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while(true)
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{
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/* Send data */
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rf_tx_packet(adv_buff, adv_len);
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tx_cnt += 1;
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LOGI("tx_cnt:%d\n", tx_cnt);
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delay_ms(10);
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}
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}
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void rf24g_adv_rx_demo()
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{
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uint32_t rx_cnt = 0;
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uint8_t adv_len = 0;
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uint16_t adv_channel = XINCX_2_4G_CHANNEL;
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uint32_t blecrc = 0;
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uint8_t rf_adv_crc_stat = CRC_IDLE;
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LOGI("************ADV Recv Start**************\r\n");
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/* Set the communication mode */
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rf_switch_mode( RX_MODE, adv_channel);
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/* main loop */
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while(true)
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{
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if (rf24g_rx_irq_flag)
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{
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rf24g_rx_irq_flag = false;
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/* Whitening of packet software */
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blecrc = rf_adv_unpacket( rx_buf, rx_len, &adv_len);
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/* Packet software CRC judgment */
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rf_adv_crc_stat = rf_adv_crc( rx_buf, &adv_len, blecrc);
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if (rf_adv_crc_stat == CRC_OK)
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{
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//rf_buff_info( rx_buf, rx_len);
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rx_cnt += 1;
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LOGI("rx_cnt:%d,len:%d\n", rx_cnt, adv_len);
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rf_adv_crc_stat = CRC_IDLE;
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}
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}
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}
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}
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int main(void)
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{
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/* Clock initialization */
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clock_init();
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/* Serial port initialization */
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app_uart_init();
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/* Simulate broadcast initialization */
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rf24g_adv_init();
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#if (XINCX_RF_NVIC_MODE)
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/* Enable RF2.4G interrupts */
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NVIC_EnableIRQ(RF24G_IRQn);
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/* Configure the RF2.4G interrupt priority */
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NVIC_SetPriority(RF24G_IRQn, 0);
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#endif // XINCX_RF_NVIC_MODE
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xc_system_param_check_rf24g();
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#if XINCX_RF_MODE == TX_MODE
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rf24g_adv_tx_demo();
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#elif XINCX_RF_MODE == RX_MODE
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rf24g_adv_rx_demo();
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#endif
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while(true);
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}
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