2600d99394
The DT of_device.h and of_platform.h date back to the separate of_platform_bus_type before it was merged into the regular platform bus. As part of that merge prepping Arm DT support 13 years ago, they "temporarily" include each other. They also include platform_device.h and of.h. Soon the implicit includes are going to be removed. Signed-off-by: Rob Herring <robh@kernel.org> Link: https://lore.kernel.org/r/20231207162632.2650356-1-robh@kernel.org Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
459 lines
11 KiB
C
459 lines
11 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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#include <linux/bitfield.h>
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#include <linux/bits.h>
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#include <linux/console.h>
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#include <linux/delay.h>
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#include <linux/io.h>
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#include <linux/irq.h>
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#include <linux/module.h>
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#include <linux/of.h>
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#include <linux/platform_device.h>
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#include <linux/serial_core.h>
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#include <linux/slab.h>
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#include <linux/tty_flip.h>
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#include <asm/serial.h>
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#define DRIVER_NAME "esp32s3-acm"
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#define DEV_NAME "ttyGS"
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#define UART_NR 4
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#define ESP32S3_ACM_TX_FIFO_SIZE 64
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#define USB_SERIAL_JTAG_EP1_REG 0x00
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#define USB_SERIAL_JTAG_EP1_CONF_REG 0x04
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#define USB_SERIAL_JTAG_WR_DONE BIT(0)
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#define USB_SERIAL_JTAG_SERIAL_IN_EP_DATA_FREE BIT(1)
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#define USB_SERIAL_JTAG_INT_ST_REG 0x0c
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#define USB_SERIAL_JTAG_SERIAL_OUT_RECV_PKT_INT_ST BIT(2)
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#define USB_SERIAL_JTAG_SERIAL_IN_EMPTY_INT_ST BIT(3)
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#define USB_SERIAL_JTAG_INT_ENA_REG 0x10
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#define USB_SERIAL_JTAG_SERIAL_OUT_RECV_PKT_INT_ENA BIT(2)
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#define USB_SERIAL_JTAG_SERIAL_IN_EMPTY_INT_ENA BIT(3)
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#define USB_SERIAL_JTAG_INT_CLR_REG 0x14
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#define USB_SERIAL_JTAG_IN_EP1_ST_REG 0x2c
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#define USB_SERIAL_JTAG_IN_EP1_WR_ADDR GENMASK(8, 2)
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#define USB_SERIAL_JTAG_OUT_EP1_ST_REG 0x3c
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#define USB_SERIAL_JTAG_OUT_EP1_REC_DATA_CNT GENMASK(22, 16)
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static const struct of_device_id esp32s3_acm_dt_ids[] = {
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{
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.compatible = "esp,esp32s3-acm",
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}, { /* sentinel */ }
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};
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MODULE_DEVICE_TABLE(of, esp32s3_acm_dt_ids);
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static struct uart_port *esp32s3_acm_ports[UART_NR];
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static void esp32s3_acm_write(struct uart_port *port, unsigned long reg, u32 v)
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{
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writel(v, port->membase + reg);
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}
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static u32 esp32s3_acm_read(struct uart_port *port, unsigned long reg)
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{
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return readl(port->membase + reg);
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}
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static u32 esp32s3_acm_tx_fifo_free(struct uart_port *port)
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{
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u32 status = esp32s3_acm_read(port, USB_SERIAL_JTAG_EP1_CONF_REG);
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return status & USB_SERIAL_JTAG_SERIAL_IN_EP_DATA_FREE;
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}
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static u32 esp32s3_acm_tx_fifo_cnt(struct uart_port *port)
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{
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u32 status = esp32s3_acm_read(port, USB_SERIAL_JTAG_IN_EP1_ST_REG);
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return FIELD_GET(USB_SERIAL_JTAG_IN_EP1_WR_ADDR, status);
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}
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static u32 esp32s3_acm_rx_fifo_cnt(struct uart_port *port)
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{
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u32 status = esp32s3_acm_read(port, USB_SERIAL_JTAG_OUT_EP1_ST_REG);
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return FIELD_GET(USB_SERIAL_JTAG_OUT_EP1_REC_DATA_CNT, status);
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}
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/* return TIOCSER_TEMT when transmitter is not busy */
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static unsigned int esp32s3_acm_tx_empty(struct uart_port *port)
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{
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return esp32s3_acm_tx_fifo_cnt(port) == 0 ? TIOCSER_TEMT : 0;
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}
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static void esp32s3_acm_set_mctrl(struct uart_port *port, unsigned int mctrl)
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{
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}
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static unsigned int esp32s3_acm_get_mctrl(struct uart_port *port)
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{
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return TIOCM_CAR;
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}
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static void esp32s3_acm_stop_tx(struct uart_port *port)
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{
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u32 int_ena;
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int_ena = esp32s3_acm_read(port, USB_SERIAL_JTAG_INT_ENA_REG);
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int_ena &= ~USB_SERIAL_JTAG_SERIAL_IN_EMPTY_INT_ENA;
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_ENA_REG, int_ena);
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}
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static void esp32s3_acm_rxint(struct uart_port *port)
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{
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struct tty_port *tty_port = &port->state->port;
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u32 rx_fifo_cnt = esp32s3_acm_rx_fifo_cnt(port);
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unsigned long flags;
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u32 i;
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if (!rx_fifo_cnt)
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return;
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spin_lock_irqsave(&port->lock, flags);
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for (i = 0; i < rx_fifo_cnt; ++i) {
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u32 rx = esp32s3_acm_read(port, USB_SERIAL_JTAG_EP1_REG);
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++port->icount.rx;
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tty_insert_flip_char(tty_port, rx, TTY_NORMAL);
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}
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spin_unlock_irqrestore(&port->lock, flags);
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tty_flip_buffer_push(tty_port);
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}
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static void esp32s3_acm_push(struct uart_port *port)
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{
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if (esp32s3_acm_tx_fifo_free(port))
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esp32s3_acm_write(port, USB_SERIAL_JTAG_EP1_CONF_REG,
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USB_SERIAL_JTAG_WR_DONE);
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}
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static void esp32s3_acm_put_char(struct uart_port *port, u8 c)
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{
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esp32s3_acm_write(port, USB_SERIAL_JTAG_EP1_REG, c);
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}
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static void esp32s3_acm_put_char_sync(struct uart_port *port, u8 c)
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{
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unsigned long timeout = jiffies + HZ;
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while (!esp32s3_acm_tx_fifo_free(port)) {
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if (time_after(jiffies, timeout)) {
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dev_warn(port->dev, "timeout waiting for TX FIFO\n");
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return;
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}
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cpu_relax();
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}
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esp32s3_acm_put_char(port, c);
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esp32s3_acm_push(port);
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}
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static void esp32s3_acm_transmit_buffer(struct uart_port *port)
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{
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u32 tx_fifo_used;
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unsigned int pending;
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u8 ch;
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if (!esp32s3_acm_tx_fifo_free(port))
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return;
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tx_fifo_used = esp32s3_acm_tx_fifo_cnt(port);
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pending = uart_port_tx_limited(port, ch,
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ESP32S3_ACM_TX_FIFO_SIZE - tx_fifo_used,
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true, esp32s3_acm_put_char(port, ch),
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({}));
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if (pending) {
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u32 int_ena;
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int_ena = esp32s3_acm_read(port, USB_SERIAL_JTAG_INT_ENA_REG);
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int_ena |= USB_SERIAL_JTAG_SERIAL_IN_EMPTY_INT_ENA;
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_ENA_REG, int_ena);
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}
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esp32s3_acm_push(port);
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}
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static void esp32s3_acm_txint(struct uart_port *port)
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{
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esp32s3_acm_transmit_buffer(port);
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}
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static irqreturn_t esp32s3_acm_int(int irq, void *dev_id)
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{
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struct uart_port *port = dev_id;
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u32 status;
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status = esp32s3_acm_read(port, USB_SERIAL_JTAG_INT_ST_REG);
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_CLR_REG, status);
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if (status & USB_SERIAL_JTAG_SERIAL_OUT_RECV_PKT_INT_ST)
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esp32s3_acm_rxint(port);
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if (status & USB_SERIAL_JTAG_SERIAL_IN_EMPTY_INT_ST)
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esp32s3_acm_txint(port);
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return IRQ_RETVAL(status);
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}
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static void esp32s3_acm_start_tx(struct uart_port *port)
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{
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esp32s3_acm_transmit_buffer(port);
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}
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static void esp32s3_acm_stop_rx(struct uart_port *port)
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{
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u32 int_ena;
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int_ena = esp32s3_acm_read(port, USB_SERIAL_JTAG_INT_ENA_REG);
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int_ena &= ~USB_SERIAL_JTAG_SERIAL_OUT_RECV_PKT_INT_ENA;
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_ENA_REG, int_ena);
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}
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static int esp32s3_acm_startup(struct uart_port *port)
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{
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int ret;
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ret = request_irq(port->irq, esp32s3_acm_int, 0, DRIVER_NAME, port);
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if (ret)
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return ret;
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_ENA_REG,
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USB_SERIAL_JTAG_SERIAL_OUT_RECV_PKT_INT_ENA);
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return 0;
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}
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static void esp32s3_acm_shutdown(struct uart_port *port)
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{
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esp32s3_acm_write(port, USB_SERIAL_JTAG_INT_ENA_REG, 0);
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free_irq(port->irq, port);
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}
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static void esp32s3_acm_set_termios(struct uart_port *port,
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struct ktermios *termios,
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const struct ktermios *old)
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{
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}
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static const char *esp32s3_acm_type(struct uart_port *port)
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{
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return "ESP32S3 ACM";
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}
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/* configure/auto-configure the port */
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static void esp32s3_acm_config_port(struct uart_port *port, int flags)
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{
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if (flags & UART_CONFIG_TYPE)
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port->type = PORT_GENERIC;
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}
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#ifdef CONFIG_CONSOLE_POLL
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static void esp32s3_acm_poll_put_char(struct uart_port *port, unsigned char c)
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{
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esp32s3_acm_put_char_sync(port, c);
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}
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static int esp32s3_acm_poll_get_char(struct uart_port *port)
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{
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if (esp32s3_acm_rx_fifo_cnt(port))
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return esp32s3_acm_read(port, USB_SERIAL_JTAG_EP1_REG);
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else
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return NO_POLL_CHAR;
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}
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#endif
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static const struct uart_ops esp32s3_acm_pops = {
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.tx_empty = esp32s3_acm_tx_empty,
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.set_mctrl = esp32s3_acm_set_mctrl,
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.get_mctrl = esp32s3_acm_get_mctrl,
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.stop_tx = esp32s3_acm_stop_tx,
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.start_tx = esp32s3_acm_start_tx,
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.stop_rx = esp32s3_acm_stop_rx,
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.startup = esp32s3_acm_startup,
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.shutdown = esp32s3_acm_shutdown,
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.set_termios = esp32s3_acm_set_termios,
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.type = esp32s3_acm_type,
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.config_port = esp32s3_acm_config_port,
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#ifdef CONFIG_CONSOLE_POLL
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.poll_put_char = esp32s3_acm_poll_put_char,
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.poll_get_char = esp32s3_acm_poll_get_char,
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#endif
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};
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static void esp32s3_acm_string_write(struct uart_port *port, const char *s,
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unsigned int count)
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{
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uart_console_write(port, s, count, esp32s3_acm_put_char_sync);
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}
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static void
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esp32s3_acm_console_write(struct console *co, const char *s, unsigned int count)
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{
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struct uart_port *port = esp32s3_acm_ports[co->index];
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unsigned long flags;
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bool locked = true;
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if (port->sysrq)
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locked = false;
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else if (oops_in_progress)
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locked = spin_trylock_irqsave(&port->lock, flags);
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else
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spin_lock_irqsave(&port->lock, flags);
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esp32s3_acm_string_write(port, s, count);
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if (locked)
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spin_unlock_irqrestore(&port->lock, flags);
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}
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static struct uart_driver esp32s3_acm_reg;
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static struct console esp32s3_acm_console = {
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.name = DEV_NAME,
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.write = esp32s3_acm_console_write,
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.device = uart_console_device,
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.flags = CON_PRINTBUFFER,
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.index = -1,
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.data = &esp32s3_acm_reg,
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};
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static void esp32s3_acm_earlycon_write(struct console *con, const char *s,
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unsigned int n)
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{
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struct earlycon_device *dev = con->data;
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uart_console_write(&dev->port, s, n, esp32s3_acm_put_char_sync);
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}
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#ifdef CONFIG_CONSOLE_POLL
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static int esp32s3_acm_earlycon_read(struct console *con, char *s, unsigned int n)
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{
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struct earlycon_device *dev = con->data;
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unsigned int num_read = 0;
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while (num_read < n) {
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int c = esp32s3_acm_poll_get_char(&dev->port);
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if (c == NO_POLL_CHAR)
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break;
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s[num_read++] = c;
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}
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return num_read;
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}
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#endif
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static int __init esp32s3_acm_early_console_setup(struct earlycon_device *device,
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const char *options)
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{
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if (!device->port.membase)
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return -ENODEV;
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device->con->write = esp32s3_acm_earlycon_write;
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#ifdef CONFIG_CONSOLE_POLL
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device->con->read = esp32s3_acm_earlycon_read;
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#endif
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return 0;
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}
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OF_EARLYCON_DECLARE(esp32s3acm, "esp,esp32s3-acm",
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esp32s3_acm_early_console_setup);
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static struct uart_driver esp32s3_acm_reg = {
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.owner = THIS_MODULE,
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.driver_name = DRIVER_NAME,
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.dev_name = DEV_NAME,
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.nr = ARRAY_SIZE(esp32s3_acm_ports),
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.cons = &esp32s3_acm_console,
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};
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static int esp32s3_acm_probe(struct platform_device *pdev)
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{
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struct device_node *np = pdev->dev.of_node;
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struct uart_port *port;
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struct resource *res;
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int ret;
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port = devm_kzalloc(&pdev->dev, sizeof(*port), GFP_KERNEL);
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if (!port)
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return -ENOMEM;
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ret = of_alias_get_id(np, "serial");
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if (ret < 0) {
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dev_err(&pdev->dev, "failed to get alias id, errno %d\n", ret);
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return ret;
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}
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if (ret >= UART_NR) {
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dev_err(&pdev->dev, "driver limited to %d serial ports\n",
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UART_NR);
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return -ENOMEM;
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}
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port->line = ret;
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res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
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if (!res)
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return -ENODEV;
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port->mapbase = res->start;
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port->membase = devm_ioremap_resource(&pdev->dev, res);
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if (IS_ERR(port->membase))
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return PTR_ERR(port->membase);
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port->dev = &pdev->dev;
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port->type = PORT_GENERIC;
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port->iotype = UPIO_MEM;
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port->irq = platform_get_irq(pdev, 0);
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port->ops = &esp32s3_acm_pops;
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port->flags = UPF_BOOT_AUTOCONF;
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port->has_sysrq = 1;
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port->fifosize = ESP32S3_ACM_TX_FIFO_SIZE;
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esp32s3_acm_ports[port->line] = port;
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platform_set_drvdata(pdev, port);
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return uart_add_one_port(&esp32s3_acm_reg, port);
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}
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static void esp32s3_acm_remove(struct platform_device *pdev)
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{
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struct uart_port *port = platform_get_drvdata(pdev);
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uart_remove_one_port(&esp32s3_acm_reg, port);
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}
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static struct platform_driver esp32s3_acm_driver = {
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.probe = esp32s3_acm_probe,
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.remove_new = esp32s3_acm_remove,
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.driver = {
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.name = DRIVER_NAME,
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.of_match_table = esp32s3_acm_dt_ids,
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},
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};
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static int __init esp32s3_acm_init(void)
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{
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int ret;
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ret = uart_register_driver(&esp32s3_acm_reg);
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if (ret)
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return ret;
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ret = platform_driver_register(&esp32s3_acm_driver);
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if (ret)
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uart_unregister_driver(&esp32s3_acm_reg);
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return ret;
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}
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static void __exit esp32s3_acm_exit(void)
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{
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platform_driver_unregister(&esp32s3_acm_driver);
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uart_unregister_driver(&esp32s3_acm_reg);
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}
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module_init(esp32s3_acm_init);
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module_exit(esp32s3_acm_exit);
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MODULE_AUTHOR("Max Filippov <jcmvbkbc@gmail.com>");
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MODULE_LICENSE("GPL");
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