270 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			270 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
| /****************************************************************************
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| 
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| Copyright(c) 2019 by Aerospace C.Power (Chongqing) Microelectronics. ALL RIGHTS RESERVED.
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| 
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| This Information is proprietary to Aerospace C.Power (Chongqing) Microelectronics and MAY NOT
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| be copied by any method or incorporated into another program without
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| the express written consent of Aerospace C.Power. This Information or any portion
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| thereof remains the property of Aerospace C.Power. The Information contained herein
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| is believed to be accurate and Aerospace C.Power assumes no responsibility or
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| liability for its use in any way and conveys no license or title under
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| any patent or copyright and makes no representation or warranty that this
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| Information is free from patent or copyright infringement.
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| 
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| ****************************************************************************/
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| #include "chip_reg_base.h"
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| #include "hw_reg_api.h"
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| #include "iot_bitops.h"
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| #include "flash.h"
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| #include "os_lock.h"
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| #include "iot_config.h"
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| #include "ahb.h"
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| 
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| #include "sec_glb.h"
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| 
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| #if HW_PLATFORM > HW_PLATFORM_SIMU
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| #include "dbg_io.h"
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| #endif
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| #include "iot_io.h"
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| 
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| #define SFC_API_TEST   1
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| 
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| #if SFC_API_TEST == 1
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| #include "sfc.h"
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| #endif
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| 
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| #define FLASH_TEST_OFFSET   (0x100000)
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| uint8_t rdata[0x100] = {0};
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| uint8_t wdata[0x100] = {1,2,3,4,5,6,7,8,9,0,255,254,253,252,251,250};
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| 
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| void sfc_rst() {
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| 
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|     ahb_cache_disable();
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| }
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| 
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| void get_id_test()
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| {
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|     uint8_t param[0x100] = {0};
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|     iot_printf("[SFDP data]\n");
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|     sfc_read_sfdp(param, 0x0, 0x4);
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|     iot_printf("0x0: %x %x %x %x\n", param[0], param[1], param[2], param[3]);
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|     sfc_read_sfdp(param, 0x10, 0x4);
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|     iot_printf("0x0: %x %x %x %x\n", param[0], param[1], param[2], param[3]);
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| 
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|     iot_printf("\n[SFC API TEST] start get id test\n");
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|     //g_sfc_ctrl->get_dev_id(rdata);
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|     iot_printf("Manufacturer ID:%x%x\r\n",rdata[1], rdata[0]);
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|     sfc_qspi_get_id_mult(rdata, MOD_SFC_SERIAL);
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|     iot_printf("Manufacturer ID:%x%x\r\n",rdata[1], rdata[0]);
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|     sfc_qspi_get_id_mult(rdata, MOD_SFC_DUAL);
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|     iot_printf("Manufacturer ID dual: %x%x\r\n",rdata[1], rdata[0]);
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|     sfc_qspi_get_id_mult(rdata, MOD_SFC_QUAD);
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|     iot_printf("Manufacturer ID quad: %x%x\r\n",rdata[1], rdata[0]);
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|     iot_printf("[SFC API TEST] end get id test\n");
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| }
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| 
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| void get_sts_reg_test()
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| {
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|     uint8_t data;
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|     uint8_t reg = 0;
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|     iot_printf("\n[SFC API TEST] start get status reg test\n");
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|     g_sfc_ctrl->get_sts_reg(&data, reg);
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|     iot_printf("get reg[%d]: %08x\n ", reg, data);
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|     reg = 1;
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|     g_sfc_ctrl->get_sts_reg(&data, reg);
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|     iot_printf("get reg[%d]: %08x\n ", reg, data);
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|     iot_printf("[SFC API TEST] end get status reg test\n");
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| }
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| 
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| void erase_test()
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| {
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|     iot_printf("\n[SFC API TEST] start erase test\n");
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| 
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|     g_sfc_ctrl->read(rdata, FLASH_TEST_OFFSET, sizeof(wdata), MOD_SFC_READ_SIG);
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|     iot_printf("0x%8x: %02x %02x\n", FLASH_TEST_OFFSET, rdata[0], rdata[1]);
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|     g_sfc_ctrl->erase_block(FLASH_TEST_OFFSET, MOD_SW_MODE_DIS);
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|     g_sfc_ctrl->read(rdata, FLASH_TEST_OFFSET, sizeof(wdata), MOD_SFC_READ_SIG);
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|     iot_printf("0x%8x: %02x %02x\n", FLASH_TEST_OFFSET, rdata[0], rdata[1]);
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| 
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|     iot_printf("[SFC API TEST] end erase test\n");
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| }
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| 
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| void write_test()
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| {
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|     iot_printf("\n[SFC API TEST] start write test\n");
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|     g_sfc_ctrl->erase_sector(FLASH_TEST_OFFSET, MOD_SW_MODE_DIS);
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|     wdata[10] = 0x5a;
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|     rdata[10] = 0x0;
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|     g_sfc_ctrl->write(wdata,FLASH_TEST_OFFSET, sizeof(wdata),
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|             MOD_SFC_PROG_STAND, MOD_SW_MODE_DIS);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,sizeof(wdata), MOD_SFC_READ_SIG);
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|     if (wdata[10] != rdata[10]) {
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|         iot_printf("qspi write, qspi read error\n");
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|     } else {
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|         iot_printf("qspi write, qspi read success\n");
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|     }
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| 
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|     iot_printf("quad write test\n");
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|     g_sfc_ctrl->erase_sector(FLASH_TEST_OFFSET, MOD_SW_MODE_DIS);
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|     wdata[10] = 0xa5;
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|     rdata[10] = 0x0;
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|     g_sfc_ctrl->write(wdata,FLASH_TEST_OFFSET,sizeof(wdata),
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|                       MOD_SFC_PROG_QUAD, MOD_SW_MODE_DIS);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,sizeof(wdata), MOD_SFC_READ_SIG);
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|     if (wdata[10] != rdata[10]) {
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|         iot_printf("quad write, qspi read error\n");
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|     } else {
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|         iot_printf("quad write, qspi read success\n");
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|     }
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|     iot_printf("[SFC API TEST] end write test\n");
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| }
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| 
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| void read_test()
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| {
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|     iot_printf("\n[SFC API TEST] start read test\n");
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|     iot_printf("read test\n");
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_SIG);
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|     iot_printf("sig: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_HIGH_SPD);
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|     iot_printf("high speed: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_DUAL_FAST);
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|     iot_printf("dual fast: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_QUAD_FAST);
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|     iot_printf("quad fast: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_DUAL_IO_FAST);
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|     iot_printf("dual fast: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_QUAD_IO_FAST);
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|     iot_printf("quad io fast: rdata[10] = %02x\n", rdata[10]);
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|     g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                 sizeof(wdata), MOD_SFC_READ_QUAD_IO_WORD_FAST);
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|     iot_printf("quad io word fast: rdata[10] = %02x\n", rdata[10]);
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| 
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|     iot_printf("[SFC API TEST] end read test\n");
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| }
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| 
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| uint8_t g_dump_data[0x1000] = {0};
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| void static flash_dump_fw_data(uint32_t addr, uint32_t size)
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| {
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|     uint32_t i = 0;
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|     uint32_t j = 0;
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|     uint32_t n = 0;
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|     n = size / 0x1000;
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|     iot_printf("addr: %08x, size: %08x, n: %08x\n", addr, size, n);
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|     for(i = 0; i < n; i++) {
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|         flash_read(g_dump_data, addr, 0x1000, MOD_SFC_READ_QUAD_IO_FAST);
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|         iot_printf("\naddr: 0x%08x:\n", addr);
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|         for(j = 0; j < 0x1000; j++) {
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|             if (j%4 == 0) {
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|                 iot_printf(" ");
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|                 if (j%16 == 0) {
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|                     iot_printf("\n");
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|                 }
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|             }
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|             iot_printf("%02x", g_dump_data[j]);
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| 
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|         }
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|         addr += 0x1000;
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|         iot_printf("\n");
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|     }
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|     iot_printf("end...........\n");
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| }
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| 
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| void flash_kunlun_dump()
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| {
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| #define PIB_ADDR_1 0x00012000
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| #define PIB_SIZE_1 0x00003000
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| #define PIB_ADDR_2 0x00019000
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| #define PIB_SIZE_2 0x00003000
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| #define FW_ADDR_1 0x00020000
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| #define FW_SIZE_1 0x00068000
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| #define FW_ADDR_2 0x00090000
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| #define FW_SIZE_2 0x00068000
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|     iot_printf("####start to dump flash data####\n");
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| 
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|     iot_printf("\npib1 addr 0x%08x, size 0x%08\n", PIB_ADDR_1, PIB_SIZE_1);
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|     flash_dump_fw_data(PIB_ADDR_1, PIB_SIZE_1);
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| 
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|     iot_printf("\npib2 addr 0x%08x, size 0x%08\n", PIB_ADDR_2, PIB_SIZE_2);
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|     flash_dump_fw_data(PIB_ADDR_2, PIB_SIZE_2);
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| 
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|     iot_printf("\nfw1 addr 0x%08x, size 0x%08\n", FW_ADDR_1, FW_SIZE_1);
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|     flash_dump_fw_data(FW_ADDR_1, FW_SIZE_1);
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| 
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|     iot_printf("\nfw2 addr 0x%08x, size 0x%08\n", FW_ADDR_2, FW_SIZE_2);
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|     flash_dump_fw_data(FW_ADDR_2, FW_SIZE_2);
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| 
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|     iot_printf("####end to dump flash data####\n");
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|     while(1);
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| }
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| 
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| void sfc_main() {
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|     uint8_t wip_sts;
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|     uint32_t loop = 0x10000;
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| 
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|     dbg_uart_init();
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|     //dbg_uart_init_port(0, 1);  // enable 3000000 baud
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|     iot_printf("\r\n>>>>flash read&write test begin<<<<\r\n");
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| 
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|     /* rst sfc */
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|     //sfc_rst();
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| 
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|     /* init sfc and flash */
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|     flash_init(1);
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| 
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|     do {
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|         iot_printf("quad: %d\n", g_sfc_ctrl->is_quad);
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| 
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|         get_id_test();
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| 
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|         get_sts_reg_test();
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| 
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|         //erase_test();
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| 
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|         g_sfc_ctrl->query_wip_sts(&wip_sts);
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| 
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|         if(wip_sts == 1) {
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|             iot_printf("FLASH is WORK IN STATUS\r\n");
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|         } else{
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|             iot_printf("erase sector test\n");
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|             g_sfc_ctrl->erase_sector(FLASH_TEST_OFFSET, MOD_SW_MODE_DIS);
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|             g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                     sizeof(wdata), MOD_SFC_READ_SIG);
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|             if (rdata[0] != 0xff) {
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|                 iot_printf("erase sector failed\n");
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|             } else {
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|                 iot_printf("erase sector success\n\n");
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|             }
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| 
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|             write_test();
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|             g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                     sizeof(wdata), MOD_SFC_READ_SIG);
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|             read_test();
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| 
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|             g_sfc_ctrl->erase_sector(FLASH_TEST_OFFSET, MOD_SW_MODE_DIS);
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|             g_sfc_ctrl->read(rdata,FLASH_TEST_OFFSET,
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|                     sizeof(wdata), MOD_SFC_READ_SIG);
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|             read_test();
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|         }
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| 
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|         loop = 0x10000;
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|         while(loop--);
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|     } while (0);
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| 
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|     return;
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| }
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| 
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| #ifdef __GNUC__
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| 
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| int main(void) {
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|     sfc_main();
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|     return 0;
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| }
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| #endif // __GCC__
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| 
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