211 lines
5.8 KiB
C
211 lines
5.8 KiB
C
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/*
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* Copyright (c) 2018, Synopsys, Inc.
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include "inc/arc/arc.h"
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#include "inc/arc/arc_builtin.h"
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#include "inc/embARC_toolchain.h"
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#include "inc/embARC_error.h"
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#include "inc/arc/arc_exception.h"
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#include "device/designware/uart/dw_uart.h"
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#include "dw_uart_obj.h"
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#include "emsk_hardware.h"
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#define DW_UART_FIFO_LEN 32
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/**
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* \name EMSK DesignWare UART 0 Object Instantiation
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* @{
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*/
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#if (USE_DW_UART_0)
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static void dw_uart_0_isr(void *ptr);
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#define DW_UART_0_RELBASE (REL_REGBASE_UART0) /*!< designware uart 0 relative baseaddr */
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#define DW_UART_0_INTNO (INTNO_UART0) /*!< designware uart 0 interrupt number */
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DEV_UART dw_uart_0; /*!< designware uart object */
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DW_UART_CTRL dw_uart_0_ctrl = { /*!< designware uart 0 ctrl */
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0, CLK_BUS_APB, DW_UART_0_INTNO, (INT_HANDLER)dw_uart_0_isr,
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DW_UART_FIFO_LEN, DW_UART_FIFO_LEN, 0
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};
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/** designware uart 0 open */
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static int32_t dw_uart_0_open (uint32_t baud)
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{
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return dw_uart_open(&dw_uart_0, baud);
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}
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/** designware uart 0 close */
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static int32_t dw_uart_0_close (void)
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{
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return dw_uart_close(&dw_uart_0);
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}
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/** designware uart 0 control */
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static int32_t dw_uart_0_control (uint32_t ctrl_cmd, void *param)
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{
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return dw_uart_control(&dw_uart_0, ctrl_cmd, param);
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}
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/** designware uart 0 write */
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static int32_t dw_uart_0_write (const void *data, uint32_t len)
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{
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return dw_uart_write(&dw_uart_0, data, len);
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}
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/** designware uart 0 close */
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static int32_t dw_uart_0_read (void *data, uint32_t len)
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{
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return dw_uart_read(&dw_uart_0, data, len);
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}
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/** designware uart 0 interrupt rountine */
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static void dw_uart_0_isr(void *ptr)
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{
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dw_uart_isr(&dw_uart_0, ptr);
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}
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/** install designware uart 0 to system */
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static void dw_uart_0_install(void)
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{
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uint32_t uart_abs_base = 0;
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DEV_UART *dw_uart_ptr = &dw_uart_0;
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DEV_UART_INFO *dw_uart_info_ptr = &(dw_uart_0.uart_info);
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DW_UART_CTRL *dw_uart_ctrl_ptr = &dw_uart_0_ctrl;
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/**
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* get absolute designware base address
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*/
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uart_abs_base = (uint32_t)PERIPHERAL_BASE + DW_UART_0_RELBASE;
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dw_uart_ctrl_ptr->dw_uart_regbase = uart_abs_base;
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/** uart info init */
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dw_uart_info_ptr->uart_ctrl = (void *)dw_uart_ctrl_ptr;
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dw_uart_info_ptr->opn_cnt = 0;
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dw_uart_info_ptr->status = 0;
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dw_uart_info_ptr->baudrate = UART_BAUDRATE_115200; /* default 115200bps */
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/** uart dev init */
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dw_uart_ptr->uart_open = dw_uart_0_open;
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dw_uart_ptr->uart_close = dw_uart_0_close;
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dw_uart_ptr->uart_control = dw_uart_0_control;
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dw_uart_ptr->uart_write = dw_uart_0_write;
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dw_uart_ptr->uart_read = dw_uart_0_read;
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}
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#endif /* USE_DW_UART_0 */
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/** @} end of name */
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/**
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* \name EMSK DesignWare UART 1 Object Instantiation
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* @{
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*/
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#if (USE_DW_UART_1)
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static void dw_uart_1_isr(void *ptr);
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#define DW_UART_1_RELBASE (REL_REGBASE_UART1) /*!< designware uart 1 relative baseaddr */
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#define DW_UART_1_INTNO (INTNO_UART1) /*!< designware uart 1 interrupt number */
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DEV_UART dw_uart_1; /*!< designware uart 1 object */
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DW_UART_CTRL dw_uart_1_ctrl = { /*!< designware uart 1 ctrl */
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0, CLK_BUS_APB, DW_UART_1_INTNO, (INT_HANDLER)dw_uart_1_isr,
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DW_UART_FIFO_LEN, DW_UART_FIFO_LEN, 0
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};
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/** designware uart 1 open */
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static int32_t dw_uart_1_open (uint32_t baud)
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{
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return dw_uart_open(&dw_uart_1, baud);
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}
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/** designware uart 1 close */
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static int32_t dw_uart_1_close (void)
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{
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return dw_uart_close(&dw_uart_1);
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}
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/** designware uart 1 control */
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static int32_t dw_uart_1_control (uint32_t ctrl_cmd, void *param)
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{
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return dw_uart_control(&dw_uart_1, ctrl_cmd, param);
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}
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/** designware uart 1 write */
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static int32_t dw_uart_1_write (const void *data, uint32_t len)
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{
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return dw_uart_write(&dw_uart_1, data, len);
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}
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/** designware uart 1 close */
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static int32_t dw_uart_1_read (void *data, uint32_t len)
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{
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return dw_uart_read(&dw_uart_1, data, len);
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}
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/** designware uart 1 interrupt routine */
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static void dw_uart_1_isr(void *ptr)
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{
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dw_uart_isr(&dw_uart_1, ptr);
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}
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/** install designware uart 1 to system */
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static void dw_uart_1_install(void)
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{
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uint32_t uart_abs_base = 0;
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DEV_UART *dw_uart_ptr = &dw_uart_1;
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DEV_UART_INFO *dw_uart_info_ptr = &(dw_uart_1.uart_info);
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DW_UART_CTRL *dw_uart_ctrl_ptr = &dw_uart_1_ctrl;
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/**
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* get absolute designware base address
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*/
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uart_abs_base = (uint32_t)PERIPHERAL_BASE + DW_UART_1_RELBASE;
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dw_uart_ctrl_ptr->dw_uart_regbase = uart_abs_base;
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/** uart info init */
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dw_uart_info_ptr->uart_ctrl = (void *)dw_uart_ctrl_ptr;
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dw_uart_info_ptr->opn_cnt = 0;
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dw_uart_info_ptr->status = 0;
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dw_uart_info_ptr->baudrate = UART_BAUDRATE_115200; /* default 115200bps */
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/** uart dev init */
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dw_uart_ptr->uart_open = dw_uart_1_open;
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dw_uart_ptr->uart_close = dw_uart_1_close;
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dw_uart_ptr->uart_control = dw_uart_1_control;
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dw_uart_ptr->uart_write = dw_uart_1_write;
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dw_uart_ptr->uart_read = dw_uart_1_read;
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}
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#endif /* USE_DW_UART_1 */
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/** @} end of name */
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/** get one designware device structure */
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DEV_UART_PTR uart_get_dev(int32_t uart_id)
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{
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static uint32_t install_flag = 0;
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/* intall device objects */
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if (install_flag == 0) {
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install_flag = 1;
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dw_uart_all_install();
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}
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switch (uart_id) {
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#if (USE_DW_UART_0)
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case DW_UART_0_ID:
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return &dw_uart_0;
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break;
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#endif
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#if (USE_DW_UART_1)
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case DW_UART_1_ID:
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return &dw_uart_1;
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break;
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#endif
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default:
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break;
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}
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return NULL;
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}
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/**
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* \brief install all uart objects
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* \note \b MUST be called during system init
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*/
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void dw_uart_all_install(void)
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{
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#if (USE_DW_UART_0)
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dw_uart_0_install();
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#endif
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#if (USE_DW_UART_1)
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dw_uart_1_install();
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#endif
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}
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