259 lines
5.6 KiB
C
259 lines
5.6 KiB
C
/*----------------------------------------------------------------------------------------------------
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INCLUDE HEADE FILES
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----------------------------------------------------------------------------------------------------*/
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//#include "Includes.h"
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#include "xc6xxx.h"
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#include <stdio.h>
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#include <stdarg.h>
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#include <string.h>
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#include "BootSecond.h"
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extern void makeCRC32table(unsigned int table[]);
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extern unsigned int crc32table[];
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void clock_init(void)
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{
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clock_cb.hfclk_src = CLOCK_HFCLK_SRC_XTAL;
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clock_cb.hfclk_in = CLOCK_HFCLK_IN_32M;
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clock_cb.systick_unit = (Systick_Unit_Typedef)(clock_cb.hfclk_in / 1000000);
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/* Set the voltages of bbldo and lpldo */
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cprao_aon_bbldo_adj_set(0x2c);
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cprao_aon_lpoldo_adj_set(7);
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/* Set the 32K lfclk */
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clock_cb.lfclk_src = CLOCK_LFCLK_SRC_RC;
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clock_cb.lfclk_in = CLOCK_LFCLK_IN_32K;
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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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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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void printf_string(char *strings)
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{
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while(*strings != '\0')
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{
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xc_uart_send_byte(UART0_IDX, *strings);
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strings ++;
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}
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}
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void printf_hex(uint32_t input_data)
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{
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uint8_t temp[96];
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uint8_t i = 0;
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while(input_data > 0)
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{
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if((input_data % 16) > 9)
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temp[i]=(input_data % 16) - 10 + 'a';
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else
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temp[i]=(input_data % 16) + '0';
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input_data = input_data / 16;
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i ++;
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}
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for( ; i>0; i --)
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{
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xc_uart_send_byte(UART0_IDX, temp[i-1]);
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}
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}
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int uart_printf(const char *fmt,...)
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{
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char chr;
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int argint;
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char temp;
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char *argstr;
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va_list va;
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va_start(va,fmt);
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while((chr= *fmt++) != '\0')
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{
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if(chr != '%')
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{
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xc_uart_send_byte(UART0_IDX, chr);
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continue;
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}
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if(*fmt != '\0')
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temp=*fmt++;
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else
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temp='\0';
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switch(temp)
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{
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case '\0':
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xc_uart_send_byte(UART0_IDX, '%');
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break;
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case 'c':
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xc_uart_send_byte(UART0_IDX, va_arg(va,int));
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break;
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case 's':
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argstr = va_arg(va,char *);
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printf_string(argstr);
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break;
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case 'x':
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case 'X':
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argint = va_arg(va,int);
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printf_hex(argint);
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break;
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default :
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xc_uart_send_byte(UART0_IDX, '%');
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fmt --;
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break;
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}
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}
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va_end(va);
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return 0;
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}
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__RAM_CODE void Wdt_Rreset(void)
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{
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xc_pwr_rom_on();
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cprao_aon_slp_pd_mask_set(0x001);
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#if XTAL_32K
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cprao_aon_ctl_clk32k_set(0x109);
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#endif
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WDT_InitCfg_t wdt_cfg ;
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wdt_cfg.WorkMode = WDT_WORK_MODE0;
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wdt_cfg.ReloadValue = WDT_CLK_32M_RESET_MODE0_4096US;
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wdt_cfg.PclkSel = WDT_WORK_32M;
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// xc_wdt_init(&wdt_cfg);
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// xc_wdt_start();
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// xc_wdt_init
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cpr_ctlapbclken_grctl__wdt_pclk_en__setf(ENABLE);
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cpr_rstctl_ctlapb_sw__wdt_rstn__setf(RSTCTL_ENABLE);
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cpr_rstctl_ctlapb_sw__wdt_rstn__setf(RSTCTL_DISABLE);
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/*
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SYS_DISABLE | M0_ENABLE : SYS RST, for low-power reset or quick system reset;
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SYS_ENABLE | M0_DISABLE: M0 RST, only for m0 reset;
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SYS_DISABLE | M0_DISABLE: M0 RST, m0 reset and low-power reset;
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*/
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cpr_rstctl_wdtrst_mask_set(
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(WDT_SYS_RSTN_MASK_DISABLE | WDT_M0_RSTN_MASK_ENABLE));
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cpr_lp_ctl__wdt_pclk_sel__setf(wdt_cfg.PclkSel);
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cpr_lp_ctl__wdt_tclk_en__setf(ENABLE);
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wdt_cr__wdt_rmod__setf(wdt_cfg.WorkMode);
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wdt_torr__wdt_top__setf(wdt_cfg.ReloadValue);
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//xc_wdt_start();
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wdt_cr__wdt_rpl__setf(WDT_CR_RPL_4PCLK);
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wdt_cr__wdt_en__setf(ENABLE);
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wdt_crr__setf(WDT_CRR_CRR_ENABLE);
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cpr_ctlapbclken_grctl__wdt_pclk_en__setf(DISABLE);
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while(1);
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}
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void wdt_init(void)
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{
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WDT_InitCfg_t wdt_cfg ;
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wdt_cfg.WorkMode = WDT_WORK_MODE0;
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wdt_cfg.ReloadValue = WDT_CLK_32K_RESET_MODE0_4096MS;
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wdt_cfg.PclkSel = WDT_WORK_32K;
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xc_wdt_init(&wdt_cfg);
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xc_wdt_start();
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}
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void bor_init(void)
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{
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cprao_aon_bor_ctr_reg0__bor_ctrl__setf(0x4);
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cprao_aon_bor_ctr_reg0__bor_rstn_mask__setf(1);
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cprao_aon_bor_ctr_reg0__bor_intr_mask__setf(0);
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NVIC_EnableIRQ(MPU_IRQn);
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}
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__RAM_CODE void MPU_Handler(void)
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{
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Wdt_Rreset();
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}
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__RAM_CODE void HardFault_Handler()
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{
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printf_string("HardFault_Handler\n");
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Wdt_Rreset();
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}
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int main(void)
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{
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wdt_init();
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bor_init();
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#ifdef WITHOUT_OTA
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#ifdef QUAD_ENABLE
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init_xip(QUAD_MODE);
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#else
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init_xip(DUAL_MODE);
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jump_app();
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#endif
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#endif
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#ifdef BLE_OTA
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clock_init();
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app_uart_init();
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uart_printf("boot init\n");
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// Init_spi_master(0, SPIM_CLK_16MHZ);
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flash_init();
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// makeCRC32table(crc32table);
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boot_run_sec();
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#endif
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#ifdef OTA_24G
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config_2_4g_rf();
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Init_spi_master(0, SPIM_CLK_16MHZ);
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makeCRC32table(crc32table);
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spi_flash_Release_powerdown();
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*((uint32_t volatile *)0x40002450) |= 0x0; //- open rf digital
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// erase_flash_chip();
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printf("erase_flash_chip\n");
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rx_24g_ota();
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#endif
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while (1)
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;
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}
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