282 lines
7.0 KiB
C
282 lines
7.0 KiB
C
/**************************************************************************//**
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*
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* @copyright (C) 2019 Nuvoton Technology Corp. All rights reserved.
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2020-12-12 Wayne First version
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*
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******************************************************************************/
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#include <rtconfig.h>
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#include <rtdevice.h>
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#if defined(BOARD_USING_STORAGE_SPIFLASH)
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#if defined(RT_USING_SFUD)
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#include "dev_spi_flash.h"
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#include "dev_spi_flash_sfud.h"
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#endif
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#include "drv_qspi.h"
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#define W25X_REG_READSTATUS (0x05)
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#define W25X_REG_READSTATUS2 (0x35)
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#define W25X_REG_WRITEENABLE (0x06)
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#define W25X_REG_WRITESTATUS (0x01)
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#define W25X_REG_QUADENABLE (0x02)
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static rt_uint8_t SpiFlash_ReadStatusReg(struct rt_qspi_device *qspi_device)
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{
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rt_uint8_t u8Val;
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rt_err_t result = RT_EOK;
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rt_uint8_t w25x_txCMD1 = W25X_REG_READSTATUS;
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result = rt_qspi_send_then_recv(qspi_device, &w25x_txCMD1, 1, &u8Val, 1);
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RT_ASSERT(result > 0);
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return u8Val;
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}
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static rt_uint8_t SpiFlash_ReadStatusReg2(struct rt_qspi_device *qspi_device)
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{
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rt_uint8_t u8Val;
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rt_err_t result = RT_EOK;
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rt_uint8_t w25x_txCMD1 = W25X_REG_READSTATUS2;
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result = rt_qspi_send_then_recv(qspi_device, &w25x_txCMD1, 1, &u8Val, 1);
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RT_ASSERT(result > 0);
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return u8Val;
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}
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static rt_err_t SpiFlash_WriteStatusReg(struct rt_qspi_device *qspi_device, uint8_t u8Value1, uint8_t u8Value2)
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{
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rt_uint8_t w25x_txCMD1;
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rt_uint8_t au8Val[2];
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rt_err_t result;
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struct rt_qspi_message qspi_message = {0};
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/* Enable WE */
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w25x_txCMD1 = W25X_REG_WRITEENABLE;
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result = rt_qspi_send(qspi_device, &w25x_txCMD1, sizeof(w25x_txCMD1));
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if (result != sizeof(w25x_txCMD1))
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goto exit_SpiFlash_WriteStatusReg;
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/* Prepare status-1, 2 data */
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au8Val[0] = u8Value1;
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au8Val[1] = u8Value2;
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/* 1-bit mode: Instruction+payload */
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qspi_message.instruction.content = W25X_REG_WRITESTATUS;
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qspi_message.instruction.qspi_lines = 1;
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qspi_message.qspi_data_lines = 1;
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qspi_message.parent.cs_take = 1;
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qspi_message.parent.cs_release = 1;
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qspi_message.parent.send_buf = &au8Val[0];
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qspi_message.parent.length = sizeof(au8Val);
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qspi_message.parent.next = RT_NULL;
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if (rt_qspi_transfer_message(qspi_device, &qspi_message) != sizeof(au8Val))
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{
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result = -RT_ERROR;
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}
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result = RT_EOK;
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exit_SpiFlash_WriteStatusReg:
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return result;
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}
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static void SpiFlash_WaitReady(struct rt_qspi_device *qspi_device)
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{
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volatile uint8_t u8ReturnValue;
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do
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{
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u8ReturnValue = SpiFlash_ReadStatusReg(qspi_device);
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u8ReturnValue = u8ReturnValue & 1;
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}
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while (u8ReturnValue != 0); // check the BUSY bit
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}
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static void SpiFlash_EnterQspiMode(struct rt_qspi_device *qspi_device)
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{
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rt_err_t result = RT_EOK;
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uint8_t u8Status1 = SpiFlash_ReadStatusReg(qspi_device);
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uint8_t u8Status2 = SpiFlash_ReadStatusReg2(qspi_device);
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u8Status2 |= W25X_REG_QUADENABLE;
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result = SpiFlash_WriteStatusReg(qspi_device, u8Status1, u8Status2);
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RT_ASSERT(result == RT_EOK);
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SpiFlash_WaitReady(qspi_device);
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}
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static void SpiFlash_ExitQspiMode(struct rt_qspi_device *qspi_device)
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{
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rt_err_t result = RT_EOK;
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uint8_t u8Status1 = SpiFlash_ReadStatusReg(qspi_device);
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uint8_t u8Status2 = SpiFlash_ReadStatusReg2(qspi_device);
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u8Status2 &= ~W25X_REG_QUADENABLE;
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result = SpiFlash_WriteStatusReg(qspi_device, u8Status1, u8Status2);
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RT_ASSERT(result == RT_EOK);
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SpiFlash_WaitReady(qspi_device);
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}
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static int rt_hw_spiflash_init(void)
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{
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if (nu_qspi_bus_attach_device("qspi0", "qspi01", 4, SpiFlash_EnterQspiMode, SpiFlash_ExitQspiMode) != RT_EOK)
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return -1;
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#if defined(RT_USING_SFUD)
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if (rt_sfud_flash_probe(FAL_USING_NOR_FLASH_DEV_NAME, "qspi01") == RT_NULL)
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{
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return -(RT_ERROR);
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}
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#endif
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return 0;
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}
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INIT_COMPONENT_EXPORT(rt_hw_spiflash_init);
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#endif
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#if defined(BOARD_USING_STORAGE_SPINAND) && defined(NU_PKG_USING_SPINAND)
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#include "drv_qspi.h"
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#include "spinand.h"
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struct rt_mtd_nand_device mtd_partitions[MTD_SPINAND_PARTITION_NUM] =
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{
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[0] =
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{
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/*nand0: U-boot, env, rtthread*/
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.block_start = 0,
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.block_end = 63,
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.block_total = 64,
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},
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[1] =
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{
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/*nand1: for filesystem mounting*/
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.block_start = 64,
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.block_end = 1023,
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.block_total = 960,
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},
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[2] =
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{
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/*nand2: Whole blocks size, overlay*/
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.block_start = 0,
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.block_end = 1023,
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.block_total = 1024,
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}
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};
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static int rt_hw_spinand_init(void)
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{
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if (nu_qspi_bus_attach_device("qspi0", "qspi01", 4, RT_NULL, RT_NULL) != RT_EOK)
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return -1;
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if (rt_hw_mtd_spinand_register("qspi01") != RT_EOK)
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return -1;
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return 0;
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}
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INIT_COMPONENT_EXPORT(rt_hw_spinand_init);
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#endif
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#if defined(BSP_USING_ADC_TOUCH) && defined(NU_PKG_USING_ADC_TOUCH)
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#include "adc_touch.h"
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#if (BSP_LCD_WIDTH==320) && (BSP_LCD_HEIGHT==240)
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S_CALIBRATION_MATRIX g_sCalMat = { 43, -5839, 21672848, 4193, -11, -747882, 65536 };
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#endif
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#endif
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#if defined(BOARD_USING_LCD_ILI9341) && defined(NU_PKG_USING_ILI9341_SPI)
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#include <lcd_ili9341.h>
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#if defined(PKG_USING_GUIENGINE)
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#include <rtgui/driver.h>
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#endif
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int rt_hw_ili9341_port(void)
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{
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if (rt_hw_lcd_ili9341_spi_init("spi0", RT_NULL) != RT_EOK)
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return -1;
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rt_hw_lcd_ili9341_init();
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#if defined(PKG_USING_GUIENGINE)
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rt_device_t lcd_ili9341;
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lcd_ili9341 = rt_device_find("lcd");
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if (lcd_ili9341)
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{
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rtgui_graphic_set_device(lcd_ili9341);
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}
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#endif
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return 0;
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}
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INIT_COMPONENT_EXPORT(rt_hw_ili9341_port);
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#endif /* BOARD_USING_LCD_ILI9341 */
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#if defined(BOARD_USING_ESP8266)
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#include <at_device_esp8266.h>
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#define LOG_TAG "at.sample.esp"
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#undef DBG_TAG
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#undef DBG_LVL
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#include <at_log.h>
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static struct at_device_esp8266 esp0 =
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{
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"esp0", /* esp8266 device name */
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"uart1", /* esp8266 serial device name, EX: uart1, uuart1 */
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"NT_ZY_BUFFALO", /* Wi-Fi SSID */
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"12345678", /* Wi-Fi PASSWORD */
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2048 /* Receive buffer length */
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};
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static int rt_hw_esp8266_port(void)
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{
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struct at_device_esp8266 *esp8266 = &esp0;
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return at_device_register(&(esp8266->device),
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esp8266->device_name,
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esp8266->client_name,
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AT_DEVICE_CLASS_ESP8266,
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(void *) esp8266);
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}
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INIT_APP_EXPORT(rt_hw_esp8266_port);
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#endif /* BOARD_USING_ESP8266 */
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#if defined(BOARD_USING_NAU8822) && defined(NU_PKG_USING_NAU8822)
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#include <acodec_nau8822.h>
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S_NU_NAU8822_CONFIG sCodecConfig =
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{
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.i2c_bus_name = "i2c0",
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.i2s_bus_name = "sound0",
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.pin_phonejack_en = 0,
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.pin_phonejack_det = 0,
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};
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int rt_hw_nau8822_port(void)
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{
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if (nu_hw_nau8822_init(&sCodecConfig) != RT_EOK)
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return -1;
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return 0;
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}
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INIT_COMPONENT_EXPORT(rt_hw_nau8822_port);
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#endif /* BOARD_USING_NAU8822 */
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