serial: mcux: Shim driver for LPSCI UART on KL25Z

Adds a shim layer around the mcux lpsci driver to adapt it to the Zephyr
serial interface.

Change-Id: I024f1605e3194f34bb57e8a121900e05b3085a82
Signed-off-by: Kumar Gala <kumar.gala@linaro.org>
This commit is contained in:
Kumar Gala 2017-04-26 09:56:39 -05:00
commit ed467a695a
7 changed files with 381 additions and 0 deletions

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@ -58,6 +58,12 @@ config HAS_LPUART
help help
Set if the low power uart (LPUART) module is present in the SoC. Set if the low power uart (LPUART) module is present in the SoC.
config HAS_LPSCI
bool
default n
help
Set if the low power uart (LPSCI) module is present in the SoC.
if HAS_OSC if HAS_OSC
choice choice

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@ -59,6 +59,8 @@ source "drivers/serial/Kconfig.ns16550"
source "drivers/serial/Kconfig.mcux" source "drivers/serial/Kconfig.mcux"
source "drivers/serial/Kconfig.mcux_lpsci"
source "drivers/serial/Kconfig.mcux_lpuart" source "drivers/serial/Kconfig.mcux_lpuart"
source "drivers/serial/Kconfig.stellaris" source "drivers/serial/Kconfig.stellaris"

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@ -0,0 +1,32 @@
# Kconfig - MCUXpresso SDK LPSCI
#
# Copyright (c) 2017, NXP
#
# SPDX-License-Identifier: Apache-2.0
#
menuconfig UART_MCUX_LPSCI
bool "MCUX LPSCI driver"
depends on HAS_MCUX && HAS_LPSCI
default n
select SERIAL_HAS_DRIVER
help
Enable the MCUX LPSCI driver.
if UART_MCUX_LPSCI
menuconfig UART_MCUX_LPSCI_0
bool "UART 0"
default n
help
Enable UART 0.
if UART_MCUX_LPSCI_0
config UART_MCUX_LPSCI_0_NAME
string "UART 0 driver name"
default "UART_0"
endif # UART_MCUX_LPSCI_0
endif # UART_MCUX_LPSCI

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@ -3,6 +3,7 @@ ccflags-y +=-I$(srctree)/drivers
obj-$(CONFIG_UART_NS16550) += uart_ns16550.o obj-$(CONFIG_UART_NS16550) += uart_ns16550.o
obj-$(CONFIG_UART_MCUX) += uart_mcux.o obj-$(CONFIG_UART_MCUX) += uart_mcux.o
obj-$(CONFIG_UART_MCUX_LPSCI) += uart_mcux_lpsci.o
obj-$(CONFIG_UART_MCUX_LPUART) += uart_mcux_lpuart.o obj-$(CONFIG_UART_MCUX_LPUART) += uart_mcux_lpuart.o
obj-$(CONFIG_UART_STELLARIS) += uart_stellaris.o obj-$(CONFIG_UART_STELLARIS) += uart_stellaris.o
obj-$(CONFIG_UART_NSIM) += uart_nsim.o obj-$(CONFIG_UART_NSIM) += uart_nsim.o

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@ -0,0 +1,308 @@
/*
* Copyright (c) 2017, NXP
*
* SPDX-License-Identifier: Apache-2.0
*/
#include <errno.h>
#include <device.h>
#include <uart.h>
#include <fsl_lpsci.h>
#include <fsl_clock.h>
#include <soc.h>
struct mcux_lpsci_config {
UART0_Type *base;
clock_name_t clock_source;
u32_t baud_rate;
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
void (*irq_config_func)(struct device *dev);
#endif
};
struct mcux_lpsci_data {
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
uart_irq_callback_t callback;
#endif
};
static int mcux_lpsci_poll_in(struct device *dev, unsigned char *c)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t flags = LPSCI_GetStatusFlags(config->base);
int ret = -1;
if (flags & kLPSCI_RxDataRegFullFlag) {
*c = LPSCI_ReadByte(config->base);
ret = 0;
}
return ret;
}
static unsigned char mcux_lpsci_poll_out(struct device *dev, unsigned char c)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
while (!(LPSCI_GetStatusFlags(config->base)
& kLPSCI_TxDataRegEmptyFlag))
;
LPSCI_WriteByte(config->base, c);
return c;
}
static int mcux_lpsci_err_check(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t flags = LPSCI_GetStatusFlags(config->base);
int err = 0;
if (flags & kLPSCI_RxOverrunFlag) {
err |= UART_ERROR_OVERRUN;
}
if (flags & kLPSCI_ParityErrorFlag) {
err |= UART_ERROR_PARITY;
}
if (flags & kLPSCI_FramingErrorFlag) {
err |= UART_ERROR_FRAMING;
}
LPSCI_ClearStatusFlags(config->base, kLPSCI_RxOverrunFlag |
kLPSCI_ParityErrorFlag |
kLPSCI_FramingErrorFlag);
return err;
}
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
static int mcux_lpsci_fifo_fill(struct device *dev, const u8_t *tx_data,
int len)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u8_t num_tx = 0;
while ((len - num_tx > 0) &&
(LPSCI_GetStatusFlags(config->base)
& kLPSCI_TxDataRegEmptyFlag)) {
LPSCI_WriteByte(config->base, tx_data[num_tx++]);
}
return num_tx;
}
static int mcux_lpsci_fifo_read(struct device *dev, u8_t *rx_data,
const int len)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u8_t num_rx = 0;
while ((len - num_rx > 0) &&
(LPSCI_GetStatusFlags(config->base)
& kLPSCI_RxDataRegFullFlag)) {
rx_data[num_rx++] = LPSCI_ReadByte(config->base);
}
return num_rx;
}
static void mcux_lpsci_irq_tx_enable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_TxDataRegEmptyInterruptEnable;
LPSCI_EnableInterrupts(config->base, mask);
}
static void mcux_lpsci_irq_tx_disable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_TxDataRegEmptyInterruptEnable;
LPSCI_DisableInterrupts(config->base, mask);
}
static int mcux_lpsci_irq_tx_empty(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t flags = LPSCI_GetStatusFlags(config->base);
return (flags & kLPSCI_TxDataRegEmptyFlag) != 0;
}
static int mcux_lpsci_irq_tx_ready(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_TxDataRegEmptyInterruptEnable;
return (LPSCI_GetEnabledInterrupts(config->base) & mask)
&& mcux_lpsci_irq_tx_empty(dev);
}
static void mcux_lpsci_irq_rx_enable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_RxDataRegFullInterruptEnable;
LPSCI_EnableInterrupts(config->base, mask);
}
static void mcux_lpsci_irq_rx_disable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_RxDataRegFullInterruptEnable;
LPSCI_DisableInterrupts(config->base, mask);
}
static int mcux_lpsci_irq_rx_full(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t flags = LPSCI_GetStatusFlags(config->base);
return (flags & kLPSCI_RxDataRegFullFlag) != 0;
}
static int mcux_lpsci_irq_rx_ready(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_RxDataRegFullInterruptEnable;
return (LPSCI_GetEnabledInterrupts(config->base) & mask)
&& mcux_lpsci_irq_rx_full(dev);
}
static void mcux_lpsci_irq_err_enable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_NoiseErrorInterruptEnable |
kLPSCI_FramingErrorInterruptEnable |
kLPSCI_ParityErrorInterruptEnable;
LPSCI_EnableInterrupts(config->base, mask);
}
static void mcux_lpsci_irq_err_disable(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
u32_t mask = kLPSCI_NoiseErrorInterruptEnable |
kLPSCI_FramingErrorInterruptEnable |
kLPSCI_ParityErrorInterruptEnable;
LPSCI_DisableInterrupts(config->base, mask);
}
static int mcux_lpsci_irq_is_pending(struct device *dev)
{
return (mcux_lpsci_irq_tx_ready(dev)
|| mcux_lpsci_irq_rx_ready(dev));
}
static int mcux_lpsci_irq_update(struct device *dev)
{
return 1;
}
static void mcux_lpsci_irq_callback_set(struct device *dev,
uart_irq_callback_t cb)
{
struct mcux_lpsci_data *data = dev->driver_data;
data->callback = cb;
}
static void mcux_lpsci_isr(void *arg)
{
struct device *dev = arg;
struct mcux_lpsci_data *data = dev->driver_data;
if (data->callback) {
data->callback(dev);
}
}
#endif /* CONFIG_UART_INTERRUPT_DRIVEN */
static int mcux_lpsci_init(struct device *dev)
{
const struct mcux_lpsci_config *config = dev->config->config_info;
lpsci_config_t uart_config;
u32_t clock_freq;
clock_freq = CLOCK_GetFreq(config->clock_source);
LPSCI_GetDefaultConfig(&uart_config);
uart_config.enableTx = true;
uart_config.enableRx = true;
uart_config.baudRate_Bps = config->baud_rate;
LPSCI_Init(config->base, &uart_config, clock_freq);
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
config->irq_config_func(dev);
#endif
return 0;
}
static const struct uart_driver_api mcux_lpsci_driver_api = {
.poll_in = mcux_lpsci_poll_in,
.poll_out = mcux_lpsci_poll_out,
.err_check = mcux_lpsci_err_check,
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
.fifo_fill = mcux_lpsci_fifo_fill,
.fifo_read = mcux_lpsci_fifo_read,
.irq_tx_enable = mcux_lpsci_irq_tx_enable,
.irq_tx_disable = mcux_lpsci_irq_tx_disable,
.irq_tx_empty = mcux_lpsci_irq_tx_empty,
.irq_tx_ready = mcux_lpsci_irq_tx_ready,
.irq_rx_enable = mcux_lpsci_irq_rx_enable,
.irq_rx_disable = mcux_lpsci_irq_rx_disable,
.irq_rx_ready = mcux_lpsci_irq_rx_ready,
.irq_err_enable = mcux_lpsci_irq_err_enable,
.irq_err_disable = mcux_lpsci_irq_err_disable,
.irq_is_pending = mcux_lpsci_irq_is_pending,
.irq_update = mcux_lpsci_irq_update,
.irq_callback_set = mcux_lpsci_irq_callback_set,
#endif
};
#ifdef CONFIG_UART_MCUX_LPSCI_0
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
static void mcux_lpsci_config_func_0(struct device *dev);
#endif
static const struct mcux_lpsci_config mcux_lpsci_0_config = {
.base = UART0,
.clock_source = UART0_CLK_SRC,
.baud_rate = NXP_KINETIS_LPSCI_4006A000_CURRENT_SPEED,
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
.irq_config_func = mcux_lpsci_config_func_0,
#endif
};
static struct mcux_lpsci_data mcux_lpsci_0_data;
DEVICE_AND_API_INIT(uart_0, CONFIG_UART_MCUX_LPSCI_0_NAME,
&mcux_lpsci_init,
&mcux_lpsci_0_data, &mcux_lpsci_0_config,
PRE_KERNEL_1, CONFIG_KERNEL_INIT_PRIORITY_DEVICE,
&mcux_lpsci_driver_api);
#ifdef CONFIG_UART_INTERRUPT_DRIVEN
static void mcux_lpsci_config_func_0(struct device *dev)
{
IRQ_CONNECT(NXP_KINETIS_LPSCI_4006A000_IRQ_0,
NXP_KINETIS_LPSCI_4006A000_IRQ_0_PRIORITY,
mcux_lpsci_isr, DEVICE_GET(uart_0), 0);
irq_enable(NXP_KINETIS_LPSCI_4006A000_IRQ_0);
}
#endif
#endif /* CONFIG_UART_MCUX_LPSCI_0 */

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@ -0,0 +1,31 @@
---
title: Kinetis LPSCI UART
id: nxp,kinetis-lpsci
version: 0.1
description: >
This binding gives a base representation of the LPSCI UART
inherits:
- !include uart.yaml
properties:
- compatible:
type: string
category: required
description: compatible strings
constraint: "nxp,kinetis-lpsci"
- reg:
type: array
description: mmio register space
generation: define
category: required
- interrupts:
type: array
category: required
description: required interrupts
generation: define
...

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@ -11,4 +11,5 @@ obj-$(CONFIG_RANDOM_MCUX_TRNG) += fsl_trng.o
obj-$(CONFIG_SOC_FLASH_MCUX) += fsl_flash.o obj-$(CONFIG_SOC_FLASH_MCUX) += fsl_flash.o
obj-$(CONFIG_SPI_MCUX_DSPI) += fsl_dspi.o obj-$(CONFIG_SPI_MCUX_DSPI) += fsl_dspi.o
obj-$(CONFIG_UART_MCUX) += fsl_uart.o obj-$(CONFIG_UART_MCUX) += fsl_uart.o
obj-$(CONFIG_UART_MCUX_LPSCI) += fsl_lpsci.o
obj-$(CONFIG_UART_MCUX_LPUART) += fsl_lpuart.o obj-$(CONFIG_UART_MCUX_LPUART) += fsl_lpuart.o