blob: d08eb5d8330dc8a85d3149eb9a925d17966850f7 [file] [log] [blame]
Johannes Thumshirne264ebf2014-04-17 15:47:58 +02001/*
2 * MEN 16z135 High Speed UART
3 *
4 * Copyright (C) 2014 MEN Mikroelektronik GmbH (www.men.de)
5 * Author: Johannes Thumshirn <johannes.thumshirn@men.de>
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the Free
9 * Software Foundation; version 2 of the License.
10 */
11#define pr_fmt(fmt) KBUILD_MODNAME ":" fmt
12
13#include <linux/kernel.h>
14#include <linux/module.h>
15#include <linux/interrupt.h>
16#include <linux/serial_core.h>
17#include <linux/ioport.h>
18#include <linux/io.h>
19#include <linux/tty_flip.h>
20#include <linux/bitops.h>
21#include <linux/mcb.h>
22
23#define MEN_Z135_MAX_PORTS 12
24#define MEN_Z135_BASECLK 29491200
25#define MEN_Z135_FIFO_SIZE 1024
26#define MEN_Z135_NUM_MSI_VECTORS 2
27#define MEN_Z135_FIFO_WATERMARK 1020
28
29#define MEN_Z135_STAT_REG 0x0
30#define MEN_Z135_RX_RAM 0x4
31#define MEN_Z135_TX_RAM 0x400
32#define MEN_Z135_RX_CTRL 0x800
33#define MEN_Z135_TX_CTRL 0x804
34#define MEN_Z135_CONF_REG 0x808
35#define MEN_Z135_UART_FREQ 0x80c
36#define MEN_Z135_BAUD_REG 0x810
37#define MENZ135_TIMEOUT 0x814
38
39#define MEN_Z135_MEM_SIZE 0x818
40
41#define IS_IRQ(x) ((x) & 1)
42#define IRQ_ID(x) (((x) >> 1) & 7)
43
44#define MEN_Z135_IER_RXCIEN BIT(0) /* TX Space IRQ */
45#define MEN_Z135_IER_TXCIEN BIT(1) /* RX Space IRQ */
46#define MEN_Z135_IER_RLSIEN BIT(2) /* Receiver Line Status IRQ */
47#define MEN_Z135_IER_MSIEN BIT(3) /* Modem Status IRQ */
48#define MEN_Z135_ALL_IRQS (MEN_Z135_IER_RXCIEN \
49 | MEN_Z135_IER_RLSIEN \
50 | MEN_Z135_IER_MSIEN \
51 | MEN_Z135_IER_TXCIEN)
52
53#define MEN_Z135_MCR_DTR BIT(24)
54#define MEN_Z135_MCR_RTS BIT(25)
55#define MEN_Z135_MCR_OUT1 BIT(26)
56#define MEN_Z135_MCR_OUT2 BIT(27)
57#define MEN_Z135_MCR_LOOP BIT(28)
58#define MEN_Z135_MCR_RCFC BIT(29)
59
60#define MEN_Z135_MSR_DCTS BIT(0)
61#define MEN_Z135_MSR_DDSR BIT(1)
62#define MEN_Z135_MSR_DRI BIT(2)
63#define MEN_Z135_MSR_DDCD BIT(3)
64#define MEN_Z135_MSR_CTS BIT(4)
65#define MEN_Z135_MSR_DSR BIT(5)
66#define MEN_Z135_MSR_RI BIT(6)
67#define MEN_Z135_MSR_DCD BIT(7)
68
69#define MEN_Z135_LCR_SHIFT 8 /* LCR shift mask */
70
71#define MEN_Z135_WL5 0 /* CS5 */
72#define MEN_Z135_WL6 1 /* CS6 */
73#define MEN_Z135_WL7 2 /* CS7 */
74#define MEN_Z135_WL8 3 /* CS8 */
75
76#define MEN_Z135_STB_SHIFT 2 /* Stopbits */
77#define MEN_Z135_NSTB1 0
78#define MEN_Z135_NSTB2 1
79
80#define MEN_Z135_PEN_SHIFT 3 /* Parity enable */
81#define MEN_Z135_PAR_DIS 0
82#define MEN_Z135_PAR_ENA 1
83
84#define MEN_Z135_PTY_SHIFT 4 /* Parity type */
85#define MEN_Z135_PTY_ODD 0
86#define MEN_Z135_PTY_EVN 1
87
88#define MEN_Z135_LSR_DR BIT(0)
89#define MEN_Z135_LSR_OE BIT(1)
90#define MEN_Z135_LSR_PE BIT(2)
91#define MEN_Z135_LSR_FE BIT(3)
92#define MEN_Z135_LSR_BI BIT(4)
93#define MEN_Z135_LSR_THEP BIT(5)
94#define MEN_Z135_LSR_TEXP BIT(6)
95#define MEN_Z135_LSR_RXFIFOERR BIT(7)
96
97#define MEN_Z135_IRQ_ID_MST 0
98#define MEN_Z135_IRQ_ID_TSA 1
99#define MEN_Z135_IRQ_ID_RDA 2
100#define MEN_Z135_IRQ_ID_RLS 3
101#define MEN_Z135_IRQ_ID_CTI 6
102
103#define LCR(x) (((x) >> MEN_Z135_LCR_SHIFT) & 0xff)
104
105#define BYTES_TO_ALIGN(x) ((x) & 0x3)
106
107static int line;
108
109static int txlvl = 5;
110module_param(txlvl, int, S_IRUGO);
111MODULE_PARM_DESC(txlvl, "TX IRQ trigger level 0-7, default 5 (128 byte)");
112
113static int rxlvl = 6;
114module_param(rxlvl, int, S_IRUGO);
115MODULE_PARM_DESC(rxlvl, "RX IRQ trigger level 0-7, default 6 (256 byte)");
116
117static int align;
118module_param(align, int, S_IRUGO);
119MODULE_PARM_DESC(align, "Keep hardware FIFO write pointer aligned, default 0");
120
121struct men_z135_port {
122 struct uart_port port;
123 struct mcb_device *mdev;
124 unsigned char *rxbuf;
125 u32 stat_reg;
126 spinlock_t lock;
127};
128#define to_men_z135(port) container_of((port), struct men_z135_port, port)
129
130/**
131 * men_z135_reg_set() - Set value in register
132 * @uart: The UART port
133 * @addr: Register address
134 * @val: value to set
135 */
136static inline void men_z135_reg_set(struct men_z135_port *uart,
137 u32 addr, u32 val)
138{
139 struct uart_port *port = &uart->port;
140 unsigned long flags;
141 u32 reg;
142
143 spin_lock_irqsave(&uart->lock, flags);
144
145 reg = ioread32(port->membase + addr);
146 reg |= val;
147 iowrite32(reg, port->membase + addr);
148
149 spin_unlock_irqrestore(&uart->lock, flags);
150}
151
152/**
153 * men_z135_reg_clr() - Unset value in register
154 * @uart: The UART port
155 * @addr: Register address
156 * @val: value to clear
157 */
158static inline void men_z135_reg_clr(struct men_z135_port *uart,
159 u32 addr, u32 val)
160{
161 struct uart_port *port = &uart->port;
162 unsigned long flags;
163 u32 reg;
164
165 spin_lock_irqsave(&uart->lock, flags);
166
167 reg = ioread32(port->membase + addr);
168 reg &= ~val;
169 iowrite32(reg, port->membase + addr);
170
171 spin_unlock_irqrestore(&uart->lock, flags);
172}
173
174/**
175 * men_z135_handle_modem_status() - Handle change of modem status
176 * @port: The UART port
177 *
178 * Handle change of modem status register. This is done by reading the "delta"
179 * versions of DCD (Data Carrier Detect) and CTS (Clear To Send).
180 */
181static void men_z135_handle_modem_status(struct men_z135_port *uart)
182{
183 if (uart->stat_reg & MEN_Z135_MSR_DDCD)
184 uart_handle_dcd_change(&uart->port,
185 uart->stat_reg & ~MEN_Z135_MSR_DCD);
186 if (uart->stat_reg & MEN_Z135_MSR_DCTS)
187 uart_handle_cts_change(&uart->port,
188 uart->stat_reg & ~MEN_Z135_MSR_CTS);
189}
190
191static void men_z135_handle_lsr(struct men_z135_port *uart)
192{
193 struct uart_port *port = &uart->port;
194 u8 lsr;
195
196 lsr = (uart->stat_reg >> 16) & 0xff;
197
198 if (lsr & MEN_Z135_LSR_OE)
199 port->icount.overrun++;
200 if (lsr & MEN_Z135_LSR_PE)
201 port->icount.parity++;
202 if (lsr & MEN_Z135_LSR_FE)
203 port->icount.frame++;
204 if (lsr & MEN_Z135_LSR_BI) {
205 port->icount.brk++;
206 uart_handle_break(port);
207 }
208}
209
210/**
211 * get_rx_fifo_content() - Get the number of bytes in RX FIFO
212 * @uart: The UART port
213 *
214 * Read RXC register from hardware and return current FIFO fill size.
215 */
216static u16 get_rx_fifo_content(struct men_z135_port *uart)
217{
218 struct uart_port *port = &uart->port;
219 u32 stat_reg;
220 u16 rxc;
221 u8 rxc_lo;
222 u8 rxc_hi;
223
224 stat_reg = ioread32(port->membase + MEN_Z135_STAT_REG);
225 rxc_lo = stat_reg >> 24;
226 rxc_hi = (stat_reg & 0xC0) >> 6;
227
228 rxc = rxc_lo | (rxc_hi << 8);
229
230 return rxc;
231}
232
233/**
234 * men_z135_handle_rx() - RX tasklet routine
235 * @arg: Pointer to struct men_z135_port
236 *
237 * Copy from RX FIFO and acknowledge number of bytes copied.
238 */
239static void men_z135_handle_rx(struct men_z135_port *uart)
240{
241 struct uart_port *port = &uart->port;
242 struct tty_port *tport = &port->state->port;
243 int copied;
244 u16 size;
245 int room;
246
247 size = get_rx_fifo_content(uart);
248
249 if (size == 0)
250 return;
251
252 /* Avoid accidently accessing TX FIFO instead of RX FIFO. Last
253 * longword in RX FIFO cannot be read.(0x004-0x3FF)
254 */
255 if (size > MEN_Z135_FIFO_WATERMARK)
256 size = MEN_Z135_FIFO_WATERMARK;
257
258 room = tty_buffer_request_room(tport, size);
259 if (room != size)
260 dev_warn(&uart->mdev->dev,
261 "Not enough room in flip buffer, truncating to %d\n",
262 room);
263
264 if (room == 0)
265 return;
266
267 memcpy_fromio(uart->rxbuf, port->membase + MEN_Z135_RX_RAM, room);
268 /* Be sure to first copy all data and then acknowledge it */
269 mb();
270 iowrite32(room, port->membase + MEN_Z135_RX_CTRL);
271
272 copied = tty_insert_flip_string(tport, uart->rxbuf, room);
273 if (copied != room)
274 dev_warn(&uart->mdev->dev,
275 "Only copied %d instead of %d bytes\n",
276 copied, room);
277
278 port->icount.rx += copied;
279
280 tty_flip_buffer_push(tport);
281
282}
283
284/**
285 * men_z135_handle_tx() - TX tasklet routine
286 * @arg: Pointer to struct men_z135_port
287 *
288 */
289static void men_z135_handle_tx(struct men_z135_port *uart)
290{
291 struct uart_port *port = &uart->port;
292 struct circ_buf *xmit = &port->state->xmit;
293 u32 txc;
294 u32 wptr;
295 int qlen;
296 int n;
297 int txfree;
298 int head;
299 int tail;
300 int s;
301
302 if (uart_circ_empty(xmit))
303 goto out;
304
305 if (uart_tx_stopped(port))
306 goto out;
307
308 if (port->x_char)
309 goto out;
310
311 if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
312 uart_write_wakeup(port);
313
314 /* calculate bytes to copy */
315 qlen = uart_circ_chars_pending(xmit);
316 if (qlen <= 0)
317 goto out;
318
319 wptr = ioread32(port->membase + MEN_Z135_TX_CTRL);
320 txc = (wptr >> 16) & 0x3ff;
321 wptr &= 0x3ff;
322
323 if (txc > MEN_Z135_FIFO_WATERMARK)
324 txc = MEN_Z135_FIFO_WATERMARK;
325
326 txfree = MEN_Z135_FIFO_WATERMARK - txc;
327 if (txfree <= 0) {
328 pr_err("Not enough room in TX FIFO have %d, need %d\n",
329 txfree, qlen);
330 goto irq_en;
331 }
332
333 /* if we're not aligned, it's better to copy only 1 or 2 bytes and
334 * then the rest.
335 */
336 if (align && qlen >= 3 && BYTES_TO_ALIGN(wptr))
337 n = 4 - BYTES_TO_ALIGN(wptr);
338 else if (qlen > txfree)
339 n = txfree;
340 else
341 n = qlen;
342
343 if (n <= 0)
344 goto irq_en;
345
346 head = xmit->head & (UART_XMIT_SIZE - 1);
347 tail = xmit->tail & (UART_XMIT_SIZE - 1);
348
349 s = ((head >= tail) ? head : UART_XMIT_SIZE) - tail;
350 n = min(n, s);
351
352 memcpy_toio(port->membase + MEN_Z135_TX_RAM, &xmit->buf[xmit->tail], n);
353 xmit->tail = (xmit->tail + n) & (UART_XMIT_SIZE - 1);
354 mmiowb();
355
356 iowrite32(n & 0x3ff, port->membase + MEN_Z135_TX_CTRL);
357
358 port->icount.tx += n;
359
360irq_en:
361 if (!uart_circ_empty(xmit))
362 men_z135_reg_set(uart, MEN_Z135_CONF_REG, MEN_Z135_IER_TXCIEN);
363 else
364 men_z135_reg_clr(uart, MEN_Z135_CONF_REG, MEN_Z135_IER_TXCIEN);
365
366out:
367 return;
368
369}
370
371/**
372 * men_z135_intr() - Handle legacy IRQs
373 * @irq: The IRQ number
374 * @data: Pointer to UART port
375 *
376 * Check IIR register to see which tasklet to start.
377 */
378static irqreturn_t men_z135_intr(int irq, void *data)
379{
380 struct men_z135_port *uart = (struct men_z135_port *)data;
381 struct uart_port *port = &uart->port;
382 int irq_id;
383
384 uart->stat_reg = ioread32(port->membase + MEN_Z135_STAT_REG);
385 /* IRQ pending is low active */
386 if (IS_IRQ(uart->stat_reg))
387 return IRQ_NONE;
388
389 irq_id = IRQ_ID(uart->stat_reg);
390 switch (irq_id) {
391 case MEN_Z135_IRQ_ID_MST:
392 men_z135_handle_modem_status(uart);
393 break;
394 case MEN_Z135_IRQ_ID_TSA:
395 men_z135_handle_tx(uart);
396 break;
397 case MEN_Z135_IRQ_ID_CTI:
398 dev_dbg(&uart->mdev->dev, "Character Timeout Indication\n");
399 /* Fallthrough */
400 case MEN_Z135_IRQ_ID_RDA:
401 /* Reading data clears RX IRQ */
402 men_z135_handle_rx(uart);
403 break;
404 case MEN_Z135_IRQ_ID_RLS:
405 men_z135_handle_lsr(uart);
406 break;
407 default:
408 dev_warn(&uart->mdev->dev, "Unknown IRQ id %d\n", irq_id);
409 return IRQ_NONE;
410 }
411
412 return IRQ_HANDLED;
413}
414
415/**
416 * men_z135_request_irq() - Request IRQ for 16z135 core
417 * @uart: z135 private uart port structure
418 *
419 * Request an IRQ for 16z135 to use. First try using MSI, if it fails
420 * fall back to using legacy interrupts.
421 */
422static int men_z135_request_irq(struct men_z135_port *uart)
423{
424 struct device *dev = &uart->mdev->dev;
425 struct uart_port *port = &uart->port;
426 int err = 0;
427
428 err = request_irq(port->irq, men_z135_intr, IRQF_SHARED,
429 "men_z135_intr", uart);
430 if (err)
431 dev_err(dev, "Error %d getting interrupt\n", err);
432
433 return err;
434}
435
436/**
437 * men_z135_tx_empty() - Handle tx_empty call
438 * @port: The UART port
439 *
440 * This function tests whether the TX FIFO and shifter for the port
441 * described by @port is empty.
442 */
443static unsigned int men_z135_tx_empty(struct uart_port *port)
444{
445 u32 wptr;
446 u16 txc;
447
448 wptr = ioread32(port->membase + MEN_Z135_TX_CTRL);
449 txc = (wptr >> 16) & 0x3ff;
450
451 if (txc == 0)
452 return TIOCSER_TEMT;
453 else
454 return 0;
455}
456
457/**
458 * men_z135_set_mctrl() - Set modem control lines
459 * @port: The UART port
460 * @mctrl: The modem control lines
461 *
462 * This function sets the modem control lines for a port described by @port
463 * to the state described by @mctrl
464 */
465static void men_z135_set_mctrl(struct uart_port *port, unsigned int mctrl)
466{
467 struct men_z135_port *uart = to_men_z135(port);
468 u32 conf_reg = 0;
469
470 if (mctrl & TIOCM_RTS)
471 conf_reg |= MEN_Z135_MCR_RTS;
472 if (mctrl & TIOCM_DTR)
473 conf_reg |= MEN_Z135_MCR_DTR;
474 if (mctrl & TIOCM_OUT1)
475 conf_reg |= MEN_Z135_MCR_OUT1;
476 if (mctrl & TIOCM_OUT2)
477 conf_reg |= MEN_Z135_MCR_OUT2;
478 if (mctrl & TIOCM_LOOP)
479 conf_reg |= MEN_Z135_MCR_LOOP;
480
481 men_z135_reg_set(uart, MEN_Z135_CONF_REG, conf_reg);
482}
483
484/**
485 * men_z135_get_mctrl() - Get modem control lines
486 * @port: The UART port
487 *
488 * Retruns the current state of modem control inputs.
489 */
490static unsigned int men_z135_get_mctrl(struct uart_port *port)
491{
492 unsigned int mctrl = 0;
493 u32 stat_reg;
494 u8 msr;
495
496 stat_reg = ioread32(port->membase + MEN_Z135_STAT_REG);
497
498 msr = ~((stat_reg >> 8) & 0xff);
499
500 if (msr & MEN_Z135_MSR_CTS)
501 mctrl |= TIOCM_CTS;
502 if (msr & MEN_Z135_MSR_DSR)
503 mctrl |= TIOCM_DSR;
504 if (msr & MEN_Z135_MSR_RI)
505 mctrl |= TIOCM_RI;
506 if (msr & MEN_Z135_MSR_DCD)
507 mctrl |= TIOCM_CAR;
508
509 return mctrl;
510}
511
512/**
513 * men_z135_stop_tx() - Stop transmitting characters
514 * @port: The UART port
515 *
516 * Stop transmitting characters. This might be due to CTS line becomming
517 * inactive or the tty layer indicating we want to stop transmission due to
518 * an XOFF character.
519 */
520static void men_z135_stop_tx(struct uart_port *port)
521{
522 struct men_z135_port *uart = to_men_z135(port);
523
524 men_z135_reg_clr(uart, MEN_Z135_CONF_REG, MEN_Z135_IER_TXCIEN);
525}
526
527/**
528 * men_z135_start_tx() - Start transmitting characters
529 * @port: The UART port
530 *
531 * Start transmitting character. This actually doesn't transmit anything, but
532 * fires off the TX tasklet.
533 */
534static void men_z135_start_tx(struct uart_port *port)
535{
536 struct men_z135_port *uart = to_men_z135(port);
537
538 men_z135_handle_tx(uart);
539}
540
541/**
542 * men_z135_stop_rx() - Stop receiving characters
543 * @port: The UART port
544 *
545 * Stop receiving characters; the port is in the process of being closed.
546 */
547static void men_z135_stop_rx(struct uart_port *port)
548{
549 struct men_z135_port *uart = to_men_z135(port);
550
551 men_z135_reg_clr(uart, MEN_Z135_CONF_REG, MEN_Z135_IER_RXCIEN);
552}
553
554/**
555 * men_z135_enable_ms() - Enable Modem Status
556 * port:
557 *
558 * Enable Modem Status IRQ.
559 */
560static void men_z135_enable_ms(struct uart_port *port)
561{
562 struct men_z135_port *uart = to_men_z135(port);
563
564 men_z135_reg_set(uart, MEN_Z135_CONF_REG, MEN_Z135_IER_MSIEN);
565}
566
567static int men_z135_startup(struct uart_port *port)
568{
569 struct men_z135_port *uart = to_men_z135(port);
570 int err;
571 u32 conf_reg = 0;
572
573 err = men_z135_request_irq(uart);
574 if (err)
575 return -ENODEV;
576
577 conf_reg = ioread32(port->membase + MEN_Z135_CONF_REG);
578
579 conf_reg |= MEN_Z135_ALL_IRQS;
580 conf_reg &= ~(0xff << 16);
581 conf_reg |= (txlvl << 16);
582 conf_reg |= (rxlvl << 20);
583
584 iowrite32(conf_reg, port->membase + MEN_Z135_CONF_REG);
585
586 return 0;
587}
588
589static void men_z135_shutdown(struct uart_port *port)
590{
591 struct men_z135_port *uart = to_men_z135(port);
592 u32 conf_reg = 0;
593
594 conf_reg |= MEN_Z135_ALL_IRQS;
595
596 men_z135_reg_clr(uart, MEN_Z135_CONF_REG, conf_reg);
597
598 free_irq(uart->port.irq, uart);
599}
600
601static void men_z135_set_termios(struct uart_port *port,
602 struct ktermios *termios,
603 struct ktermios *old)
604{
605 unsigned int baud;
606 u32 conf_reg;
607 u32 bd_reg;
608 u32 uart_freq;
609 u8 lcr;
610
611 conf_reg = ioread32(port->membase + MEN_Z135_CONF_REG);
612 lcr = LCR(conf_reg);
613
614 /* byte size */
615 switch (termios->c_cflag & CSIZE) {
616 case CS5:
617 lcr |= MEN_Z135_WL5;
618 break;
619 case CS6:
620 lcr |= MEN_Z135_WL6;
621 break;
622 case CS7:
623 lcr |= MEN_Z135_WL7;
624 break;
625 case CS8:
626 lcr |= MEN_Z135_WL8;
627 break;
628 }
629
630 /* stop bits */
631 if (termios->c_cflag & CSTOPB)
632 lcr |= MEN_Z135_NSTB2 << MEN_Z135_STB_SHIFT;
633
634 /* parity */
635 if (termios->c_cflag & PARENB) {
636 lcr |= MEN_Z135_PAR_ENA << MEN_Z135_PEN_SHIFT;
637
638 if (termios->c_cflag & PARODD)
639 lcr |= MEN_Z135_PTY_ODD << MEN_Z135_PTY_SHIFT;
640 else
641 lcr |= MEN_Z135_PTY_EVN << MEN_Z135_PTY_SHIFT;
642 } else
643 lcr |= MEN_Z135_PAR_DIS << MEN_Z135_PEN_SHIFT;
644
645 termios->c_cflag &= ~CMSPAR; /* Mark/Space parity is not supported */
646
647 conf_reg |= lcr << MEN_Z135_LCR_SHIFT;
648 iowrite32(conf_reg, port->membase + MEN_Z135_CONF_REG);
649
650 uart_freq = ioread32(port->membase + MEN_Z135_UART_FREQ);
651 if (uart_freq == 0)
652 uart_freq = MEN_Z135_BASECLK;
653
654 baud = uart_get_baud_rate(port, termios, old, 0, uart_freq / 16);
655
656 spin_lock(&port->lock);
657 if (tty_termios_baud_rate(termios))
658 tty_termios_encode_baud_rate(termios, baud, baud);
659
660 bd_reg = uart_freq / (4 * baud);
661 iowrite32(bd_reg, port->membase + MEN_Z135_BAUD_REG);
662
663 uart_update_timeout(port, termios->c_cflag, baud);
664 spin_unlock(&port->lock);
665}
666
667static const char *men_z135_type(struct uart_port *port)
668{
669 return KBUILD_MODNAME;
670}
671
672static void men_z135_release_port(struct uart_port *port)
673{
674 iounmap(port->membase);
675 port->membase = NULL;
676
677 release_mem_region(port->mapbase, MEN_Z135_MEM_SIZE);
678}
679
680static int men_z135_request_port(struct uart_port *port)
681{
682 int size = MEN_Z135_MEM_SIZE;
683
684 if (!request_mem_region(port->mapbase, size, "men_z135_port"))
685 return -EBUSY;
686
687 port->membase = ioremap(port->mapbase, MEN_Z135_MEM_SIZE);
688 if (port->membase == NULL) {
689 release_mem_region(port->mapbase, MEN_Z135_MEM_SIZE);
690 return -ENOMEM;
691 }
692
693 return 0;
694}
695
696static void men_z135_config_port(struct uart_port *port, int type)
697{
698 port->type = PORT_MEN_Z135;
699 men_z135_request_port(port);
700}
701
702static int men_z135_verify_port(struct uart_port *port,
703 struct serial_struct *serinfo)
704{
705 return -EINVAL;
706}
707
708static struct uart_ops men_z135_ops = {
709 .tx_empty = men_z135_tx_empty,
710 .set_mctrl = men_z135_set_mctrl,
711 .get_mctrl = men_z135_get_mctrl,
712 .stop_tx = men_z135_stop_tx,
713 .start_tx = men_z135_start_tx,
714 .stop_rx = men_z135_stop_rx,
715 .enable_ms = men_z135_enable_ms,
716 .startup = men_z135_startup,
717 .shutdown = men_z135_shutdown,
718 .set_termios = men_z135_set_termios,
719 .type = men_z135_type,
720 .release_port = men_z135_release_port,
721 .request_port = men_z135_request_port,
722 .config_port = men_z135_config_port,
723 .verify_port = men_z135_verify_port,
724};
725
726static struct uart_driver men_z135_driver = {
727 .owner = THIS_MODULE,
728 .driver_name = KBUILD_MODNAME,
729 .dev_name = "ttyHSU",
730 .major = 0,
731 .minor = 0,
732 .nr = MEN_Z135_MAX_PORTS,
733};
734
735/**
736 * men_z135_probe() - Probe a z135 instance
737 * @mdev: The MCB device
738 * @id: The MCB device ID
739 *
740 * men_z135_probe does the basic setup of hardware resources and registers the
741 * new uart port to the tty layer.
742 */
743static int men_z135_probe(struct mcb_device *mdev,
744 const struct mcb_device_id *id)
745{
746 struct men_z135_port *uart;
747 struct resource *mem;
748 struct device *dev;
749 int err;
750
751 dev = &mdev->dev;
752
753 uart = devm_kzalloc(dev, sizeof(struct men_z135_port), GFP_KERNEL);
754 if (!uart)
755 return -ENOMEM;
756
757 uart->rxbuf = (unsigned char *)__get_free_page(GFP_KERNEL);
758 if (!uart->rxbuf)
759 return -ENOMEM;
760
761 mem = &mdev->mem;
762
763 mcb_set_drvdata(mdev, uart);
764
765 uart->port.uartclk = MEN_Z135_BASECLK * 16;
766 uart->port.fifosize = MEN_Z135_FIFO_SIZE;
767 uart->port.iotype = UPIO_MEM;
768 uart->port.ops = &men_z135_ops;
769 uart->port.irq = mcb_get_irq(mdev);
770 uart->port.iotype = UPIO_MEM;
771 uart->port.flags = UPF_BOOT_AUTOCONF | UPF_IOREMAP;
772 uart->port.line = line++;
773 uart->port.dev = dev;
774 uart->port.type = PORT_MEN_Z135;
775 uart->port.mapbase = mem->start;
776 uart->port.membase = NULL;
777 uart->mdev = mdev;
778
779 spin_lock_init(&uart->port.lock);
780 spin_lock_init(&uart->lock);
781
782 err = uart_add_one_port(&men_z135_driver, &uart->port);
783 if (err)
784 goto err;
785
786 return 0;
787
788err:
789 free_page((unsigned long) uart->rxbuf);
790 dev_err(dev, "Failed to add UART: %d\n", err);
791
792 return err;
793}
794
795/**
796 * men_z135_remove() - Remove a z135 instance from the system
797 *
798 * @mdev: The MCB device
799 */
800static void men_z135_remove(struct mcb_device *mdev)
801{
802 struct men_z135_port *uart = mcb_get_drvdata(mdev);
803
804 line--;
805 uart_remove_one_port(&men_z135_driver, &uart->port);
806 free_page((unsigned long) uart->rxbuf);
807}
808
809static const struct mcb_device_id men_z135_ids[] = {
810 { .device = 0x87 },
811};
812MODULE_DEVICE_TABLE(mcb, men_z135_ids);
813
814static struct mcb_driver mcb_driver = {
815 .driver = {
816 .name = "z135-uart",
817 .owner = THIS_MODULE,
818 },
819 .probe = men_z135_probe,
820 .remove = men_z135_remove,
821 .id_table = men_z135_ids,
822};
823
824/**
825 * men_z135_init() - Driver Registration Routine
826 *
827 * men_z135_init is the first routine called when the driver is loaded. All it
828 * does is register with the legacy MEN Chameleon subsystem.
829 */
830static int __init men_z135_init(void)
831{
832 int err;
833
834 err = uart_register_driver(&men_z135_driver);
835 if (err) {
836 pr_err("Failed to register UART: %d\n", err);
837 return err;
838 }
839
840 err = mcb_register_driver(&mcb_driver);
841 if (err) {
842 pr_err("Failed to register MCB driver: %d\n", err);
843 uart_unregister_driver(&men_z135_driver);
844 return err;
845 }
846
847 return 0;
848}
849module_init(men_z135_init);
850
851/**
852 * men_z135_exit() - Driver Exit Routine
853 *
854 * men_z135_exit is called just before the driver is removed from memory.
855 */
856static void __exit men_z135_exit(void)
857{
858 mcb_unregister_driver(&mcb_driver);
859 uart_unregister_driver(&men_z135_driver);
860}
861module_exit(men_z135_exit);
862
863MODULE_AUTHOR("Johannes Thumshirn <johannes.thumshirn@men.de>");
864MODULE_LICENSE("GPL v2");
865MODULE_DESCRIPTION("MEN 16z135 High Speed UART");
866MODULE_ALIAS("mcb:16z135");