225 lines
5.8 KiB
C
225 lines
5.8 KiB
C
// SPDX-License-Identifier: BSD-3-Clause
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// Copyright (c) 2022, Alex Taradov <alex@taradov.com>. All rights reserved.
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/*- Includes ----------------------------------------------------------------*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include <string.h>
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#include "rp2040.h"
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#include "hal_config.h"
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#include "uart.h"
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#include "usb_cdc.h"
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/*- Definitions -------------------------------------------------------------*/
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#define UART_BUF_SIZE 256
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/*- Types ------------------------------------------------------------------*/
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typedef struct
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{
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int wr;
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int rd;
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uint16_t data[UART_BUF_SIZE];
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} fifo_buffer_t;
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/*- Variables --------------------------------------------------------------*/
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static volatile fifo_buffer_t uart_rx_fifo;
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static volatile fifo_buffer_t uart_tx_fifo;
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static volatile bool uart_fifo_overflow = false;
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/*- Implementations ---------------------------------------------------------*/
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//-----------------------------------------------------------------------------
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void uart_init(usb_cdc_line_coding_t *line_coding)
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{
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int wlen, parity, stop, baud;
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RESETS_SET->RESET = UART_RESET_MASK;
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RESETS_CLR->RESET = UART_RESET_MASK;
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while (0 == (RESETS->RESET_DONE & UART_RESET_MASK));
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uart_tx_fifo.wr = 0;
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uart_tx_fifo.rd = 0;
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uart_rx_fifo.wr = 0;
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uart_rx_fifo.rd = 0;
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uart_fifo_overflow = false;
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if (USB_CDC_5_DATA_BITS == line_coding->bDataBits)
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wlen = 0;
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else if (USB_CDC_6_DATA_BITS == line_coding->bDataBits)
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wlen = 1;
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else if (USB_CDC_7_DATA_BITS == line_coding->bDataBits)
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wlen = 2;
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else if (USB_CDC_8_DATA_BITS == line_coding->bDataBits)
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wlen = 3;
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else
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wlen = 3;
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if (USB_CDC_NO_PARITY == line_coding->bParityType)
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parity = 0;
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else if (USB_CDC_ODD_PARITY == line_coding->bParityType)
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parity = UART0_UARTLCR_H_PEN_Msk;
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else if (USB_CDC_EVEN_PARITY == line_coding->bParityType)
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parity = UART0_UARTLCR_H_PEN_Msk | UART0_UARTLCR_H_EPS_Msk;
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else if (USB_CDC_MARK_PARITY == line_coding->bParityType)
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parity = UART0_UARTLCR_H_PEN_Msk | UART0_UARTLCR_H_SPS_Msk;
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else if (USB_CDC_SPACE_PARITY == line_coding->bParityType)
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parity = UART0_UARTLCR_H_PEN_Msk | UART0_UARTLCR_H_SPS_Msk | UART0_UARTLCR_H_EPS_Msk;
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else
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parity = 0;
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if (USB_CDC_1_STOP_BIT == line_coding->bCharFormat)
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stop = 0;
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else
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stop = UART0_UARTLCR_H_STP2_Msk;
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baud = (UART_CLOCK * 4) / line_coding->dwDTERate;
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UART_PER->UARTIFLS = (3 << UART0_UARTIFLS_RXIFLSEL_Pos) | (0 << UART0_UARTIFLS_TXIFLSEL_Pos);
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UART_PER->UARTIBRD = baud / 64;
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UART_PER->UARTFBRD = baud % 64;
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UART_PER->UARTLCR_H = (wlen << UART0_UARTLCR_H_WLEN_Pos) | parity | stop | UART0_UARTLCR_H_FEN_Msk;
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UART_PER->UARTIMSC = UART0_UARTIMSC_RXIM_Msk | UART0_UARTIMSC_RTIM_Msk | UART0_UARTIMSC_TXIM_Msk;
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HAL_GPIO_UART_TX_init();
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HAL_GPIO_UART_TX_pullup();
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HAL_GPIO_UART_RX_init();
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HAL_GPIO_UART_RX_pullup();
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UART_PER->UARTCR = UART0_UARTCR_UARTEN_Msk | UART0_UARTCR_RXE_Msk | UART0_UARTCR_TXE_Msk;
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NVIC_EnableIRQ(UART_IRQ_INDEX);
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}
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//-----------------------------------------------------------------------------
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void uart_close(void)
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{
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RESETS_SET->RESET = UART_RESET_MASK;
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}
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//-----------------------------------------------------------------------------
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bool uart_write_byte(int byte)
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{
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int wr = (uart_tx_fifo.wr + 1) % UART_BUF_SIZE;
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bool res = false;
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NVIC_DisableIRQ(UART_IRQ_INDEX);
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if (uart_tx_fifo.rd == uart_tx_fifo.wr && !UART_PER->UARTFR_b.TXFF)
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{
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UART_PER->UARTDR = byte;
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res = true;
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}
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else if (wr != uart_tx_fifo.rd)
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{
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uart_tx_fifo.data[uart_tx_fifo.wr] = byte;
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uart_tx_fifo.wr = wr;
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res = true;
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}
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NVIC_EnableIRQ(UART_IRQ_INDEX);
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return res;
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}
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//-----------------------------------------------------------------------------
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bool uart_read_byte(int *byte)
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{
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bool res = false;
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NVIC_DisableIRQ(UART_IRQ_INDEX);
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if (uart_fifo_overflow)
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{
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*byte = (USB_CDC_SERIAL_STATE_OVERRUN << 8);
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uart_fifo_overflow = false;
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res = true;
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}
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else if (uart_rx_fifo.rd != uart_rx_fifo.wr)
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{
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*byte = uart_rx_fifo.data[uart_rx_fifo.rd];
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uart_rx_fifo.rd = (uart_rx_fifo.rd + 1) % UART_BUF_SIZE;
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res = true;
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}
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NVIC_EnableIRQ(UART_IRQ_INDEX);
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return res;
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}
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//-----------------------------------------------------------------------------
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void uart_set_break(bool brk)
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{
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if (brk)
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UART_PER->UARTLCR_H |= UART0_UARTLCR_H_BRK_Msk;
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else
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UART_PER->UARTLCR_H &= ~UART0_UARTLCR_H_BRK_Msk;
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}
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//-----------------------------------------------------------------------------
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void UART_IRQ_HANDLER(void)
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{
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int flags = UART_PER->UARTMIS;
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if (flags & (UART0_UARTIMSC_RXIM_Msk | UART0_UARTIMSC_RTIM_Msk))
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{
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while (!UART_PER->UARTFR_b.RXFE)
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{
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int byte = UART_PER->UARTDR;
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int wr = (uart_rx_fifo.wr + 1) % UART_BUF_SIZE;
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int state = 0;
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if (byte & UART0_UARTDR_BE_Msk)
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{
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state |= USB_CDC_SERIAL_STATE_BREAK;
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byte &= ~(UART0_UARTDR_PE_Msk | UART0_UARTDR_FE_Msk);
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}
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if (byte & UART0_UARTDR_PE_Msk)
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state |= USB_CDC_SERIAL_STATE_PARITY;
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if (byte & UART0_UARTDR_FE_Msk)
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state |= USB_CDC_SERIAL_STATE_FRAMING;
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if (byte & UART0_UARTDR_OE_Msk)
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state |= USB_CDC_SERIAL_STATE_OVERRUN;
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byte = (state << 8) | (byte & UART0_UARTDR_DATA_Msk);
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if (wr == uart_rx_fifo.rd)
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{
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uart_fifo_overflow = true;
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break;
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}
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else
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{
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uart_rx_fifo.data[uart_rx_fifo.wr] = byte;
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uart_rx_fifo.wr = wr;
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}
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}
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}
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if (flags & UART0_UARTIMSC_TXIM_Msk)
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{
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UART_PER->UARTICR = UART0_UARTICR_TXIC_Msk;
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while (!UART_PER->UARTFR_b.TXFF)
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{
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if (uart_tx_fifo.rd == uart_tx_fifo.wr)
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break;
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UART_PER->UARTDR = uart_tx_fifo.data[uart_tx_fifo.rd];
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uart_tx_fifo.rd = (uart_tx_fifo.rd + 1) % UART_BUF_SIZE;
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}
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}
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}
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