drivers/uart: Add a driver for SiFive's UART

This UART is used in the SiFive FU540 SoC, and will probably be used in
other SoCs in the future.

Change-Id: I915edf39666b7a5f9550e3b7e743e97fe3cacfd3
Signed-off-by: Jonathan Neuschäfer <j.neuschaefer@gmx.net>
Reviewed-on: https://review.coreboot.org/25768
Tested-by: build bot (Jenkins) <no-reply@coreboot.org>
Reviewed-by: Kyösti Mälkki <kyosti.malkki@gmail.com>
This commit is contained in:
Jonathan Neuschäfer 2018-04-19 16:23:54 +02:00 committed by Patrick Georgi
parent f35cc4d60f
commit 894e3a9ec8
3 changed files with 126 additions and 0 deletions

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@ -61,6 +61,11 @@ config DRIVERS_UART_PL011
default n default n
select HAVE_UART_SPECIAL select HAVE_UART_SPECIAL
config DRIVERS_UART_SIFIVE
bool
select HAVE_UART_SPECIAL
select UART_OVERRIDE_INPUT_CLOCK_DIVIDER
config UART_USE_REFCLK_AS_INPUT_CLOCK config UART_USE_REFCLK_AS_INPUT_CLOCK
bool bool
default n default n

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@ -42,4 +42,11 @@ ramstage-y += pl011.c
verstage-y += pl011.c verstage-y += pl011.c
endif endif
ifeq ($(CONFIG_DRIVERS_UART_SIFIVE),y)
bootblock-$(CONFIG_BOOTBLOCK_CONSOLE) += sifive.c
romstage-y += sifive.c
postcar-y += sifive.c
ramstage-y += sifive.c
endif
endif endif

114
src/drivers/uart/sifive.c Normal file
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@ -0,0 +1,114 @@
/*
* This file is part of the coreboot project.
*
* Copyright (C) 2018 Jonathan Neuschäfer
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; version 2 of the License.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include <arch/io.h>
#include <boot/coreboot_tables.h>
#include <console/uart.h>
#include <types.h>
/*
* This is a driver for SiFive's own UART, documented in the FU540 manual:
* https://www.sifive.com/documentation/chips/freedom-u540-c000-manual/
*/
struct sifive_uart_registers {
uint32_t txdata; /* Transmit data register */
uint32_t rxdata; /* Receive data register */
uint32_t txctrl; /* Transmit control register */
uint32_t rxctrl; /* Receive control register */
uint32_t ie; /* UART interrupt enable */
uint32_t ip; /* UART interrupt pending */
uint32_t div; /* Baud rate divisor */
} __packed;
#define TXDATA_FULL BIT(31)
#define RXDATA_EMPTY BIT(31)
#define TXCTRL_TXEN BIT(0)
#define TXCTRL_NSTOP_SHIFT 1
#define TXCTRL_NSTOP(x) (((x)-1) << TXCTRL_NSTOP_SHIFT)
#define TXCTRL_TXCNT_SHIFT 16
#define TXCTRL_TXCNT(x) ((x) << TXCTRL_TXCNT_SHIFT)
#define RXCTRL_RXEN BIT(0)
#define RXCTRL_RXCNT_SHIFT 16
#define RXCTRL_RXCNT(x) ((x) << RXCTRL_RXCNT_SHIFT)
#define IP_TXWM BIT(0)
#define IP_RXWM BIT(1)
void uart_init(int idx)
{
struct sifive_uart_registers *regs = uart_platform_baseptr(idx);
/* TODO: Configure the divisor */
/* Enable transmission, one stop bit, transmit watermark at 1 */
write32(&regs->txctrl, TXCTRL_TXEN|TXCTRL_NSTOP(1)|TXCTRL_TXCNT(1));
/* Enable reception, receive watermark at 0 */
write32(&regs->rxctrl, RXCTRL_RXEN|RXCTRL_RXCNT(0));
}
static bool uart_can_tx(struct sifive_uart_registers *regs)
{
return !(read32(&regs->txdata) & TXDATA_FULL);
}
void uart_tx_byte(int idx, unsigned char data)
{
struct sifive_uart_registers *regs = uart_platform_baseptr(idx);
while (!uart_can_tx(regs))
; /* TODO: implement a timeout */
write32(&regs->txdata, data);
}
void uart_tx_flush(int idx)
{
struct sifive_uart_registers *regs = uart_platform_baseptr(idx);
uint32_t ip;
/* Use the TX watermark bit to find out if the TX FIFO is empty */
do {
ip = read32(&regs->ip);
} while (!(ip & IP_TXWM));
}
unsigned char uart_rx_byte(int idx)
{
struct sifive_uart_registers *regs = uart_platform_baseptr(idx);
uint32_t rxdata;
do {
rxdata = read32(&regs->rxdata);
} while (rxdata & RXDATA_EMPTY);
return rxdata & 0xff;
}
unsigned int uart_input_clock_divider(void)
{
/*
* The SiFive UART handles oversampling internally. The divided clock
* is the baud clock.
*/
return 1;
}
#ifndef __PRE_RAM__
void uart_fill_lb(void *data)
{
/* TODO */
}
#endif