source: mainline/uspace/drv/char/ns8250/ns8250.c@ ca4c5596

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since ca4c5596 was 4f87a85a, checked in by Jiri Svoboda <jiri@…>, 7 years ago

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1/*
2 * Copyright (c) 2010 Lenka Trochtova
3 * Copyright (c) 2017 Jiri Svoboda
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * - Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * - Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * - The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30/**
31 * @addtogroup ns8250
32 * @{
33 */
34
35/** @file
36 */
37
38#include <assert.h>
39#include <stdio.h>
40#include <errno.h>
41#include <str_error.h>
42#include <stdbool.h>
43#include <fibril_synch.h>
44#include <stdlib.h>
45#include <str.h>
46#include <ctype.h>
47#include <macros.h>
48#include <stdlib.h>
49#include <dirent.h>
50#include <ddi.h>
51
52#include <ddf/driver.h>
53#include <ddf/interrupt.h>
54#include <ddf/log.h>
55#include <io/chardev_srv.h>
56
57#include <device/hw_res.h>
58#include <ipc/serial_ctl.h>
59
60#include "cyclic_buffer.h"
61
62#define NAME "ns8250"
63
64#define REG_COUNT 7
65#define MAX_BAUD_RATE 115200
66#define DLAB_MASK (1 << 7)
67
68/** Interrupt Enable Register definition. */
69#define NS8250_IER_RXREADY (1 << 0)
70#define NS8250_IER_THRE (1 << 1)
71#define NS8250_IER_RXSTATUS (1 << 2)
72#define NS8250_IER_MODEM_STATUS (1 << 3)
73
74/** Interrupt ID Register definition. */
75#define NS8250_IID_ACTIVE (1 << 0)
76#define NS8250_IID_CAUSE_MASK 0x0e
77#define NS8250_IID_CAUSE_RXSTATUS 0x06
78
79/** FIFO Control Register definition. */
80#define NS8250_FCR_FIFOENABLE (1 << 0)
81#define NS8250_FCR_RXFIFORESET (1 << 1)
82#define NS8250_FCR_TXFIFORESET (1 << 2)
83#define NS8250_FCR_DMAMODE (1 << 3)
84#define NS8250_FCR_RXTRIGGERLOW (1 << 6)
85#define NS8250_FCR_RXTRIGGERHI (1 << 7)
86
87/** Line Control Register definition. */
88#define NS8250_LCR_STOPBITS (1 << 2)
89#define NS8250_LCR_PARITY (1 << 3)
90#define NS8250_LCR_SENDBREAK (1 << 6)
91#define NS8250_LCR_DLAB (1 << 7)
92
93/** Modem Control Register definition. */
94#define NS8250_MCR_DTR (1 << 0)
95#define NS8250_MCR_RTS (1 << 1)
96#define NS8250_MCR_OUT1 (1 << 2)
97#define NS8250_MCR_OUT2 (1 << 3)
98#define NS8250_MCR_LOOPBACK (1 << 4)
99#define NS8250_MCR_ALL (0x1f)
100
101/** Line Status Register definition. */
102#define NS8250_LSR_RXREADY (1 << 0)
103#define NS8250_LSR_OE (1 << 1)
104#define NS8250_LSR_PE (1 << 2)
105#define NS8250_LSR_FE (1 << 3)
106#define NS8250_LSR_BREAK (1 << 4)
107#define NS8250_LSR_THRE (1 << 5)
108#define NS8250_LSR_TSE (1 << 6)
109
110/** Modem Status Register definition. */
111#define NS8250_MSR_DELTACTS (1 << 0)
112#define NS8250_MSR_DELTADSR (1 << 1)
113#define NS8250_MSR_RITRAILING (1 << 2)
114#define NS8250_MSR_DELTADCD (1 << 3)
115#define NS8250_MSR_CTS (1 << 4)
116#define NS8250_MSR_DSR (1 << 5)
117#define NS8250_MSR_RI (1 << 6)
118#define NS8250_MSR_DCD (1 << 7)
119#define NS8250_MSR_SIGNALS (NS8250_MSR_CTS | NS8250_MSR_DSR \
120 | NS8250_MSR_RI | NS8250_MSR_DCD)
121
122/** The number of bits of one data unit send by the serial port. */
123typedef enum {
124 WORD_LENGTH_5,
125 WORD_LENGTH_6,
126 WORD_LENGTH_7,
127 WORD_LENGTH_8
128} word_length_t;
129
130/** The number of stop bits used by the serial port. */
131typedef enum {
132 /** Use one stop bit. */
133 ONE_STOP_BIT,
134 /** 1.5 stop bits for word length 5, 2 stop bits otherwise. */
135 TWO_STOP_BITS
136} stop_bit_t;
137
138/** 8250 UART registers layout. */
139typedef struct {
140 ioport8_t data; /**< Data register. */
141 ioport8_t ier; /**< Interrupt Enable Reg. */
142 ioport8_t iid; /**< Interrupt ID Reg. */
143 ioport8_t lcr; /**< Line Control Reg. */
144 ioport8_t mcr; /**< Modem Control Reg. */
145 ioport8_t lsr; /**< Line Status Reg. */
146 ioport8_t msr; /**< Modem Status Reg. */
147} ns8250_regs_t;
148
149/** The driver data for the serial port devices. */
150typedef struct ns8250 {
151 /** DDF device node */
152 ddf_dev_t *dev;
153 /** DDF function node */
154 ddf_fun_t *fun;
155 /** Character device service */
156 chardev_srvs_t cds;
157 /** Parent session */
158 async_sess_t *parent_sess;
159 /** I/O registers **/
160 ns8250_regs_t *regs;
161 /** Are there any clients connected to the device? */
162 unsigned client_connections;
163 /** The irq assigned to this device. */
164 int irq;
165 /** IRQ capability handle */
166 cap_irq_handle_t irq_handle;
167 /** The base i/o address of the devices registers. */
168 uintptr_t io_addr;
169 /** The i/o port used to access the serial ports registers. */
170 ioport8_t *port;
171 /** The buffer for incoming data. */
172 cyclic_buffer_t input_buffer;
173 /** The fibril mutex for synchronizing the access to the device. */
174 fibril_mutex_t mutex;
175 /** Indicates that some data has become available */
176 fibril_condvar_t input_buffer_available;
177 /** True if device is removed. */
178 bool removed;
179} ns8250_t;
180
181/** Obtain soft-state structure from device node */
182static ns8250_t *dev_ns8250(ddf_dev_t *dev)
183{
184 return ddf_dev_data_get(dev);
185}
186
187/** Obtain soft-state structure from function node */
188static ns8250_t *fun_ns8250(ddf_fun_t *fun)
189{
190 return dev_ns8250(ddf_fun_get_dev(fun));
191}
192
193/** Obtain soft-state structure from chardev srv */
194static ns8250_t *srv_ns8250(chardev_srv_t *srv)
195{
196 return (ns8250_t *)srv->srvs->sarg;
197}
198
199/** Find out if there is some incoming data available on the serial port.
200 *
201 * @param port The base address of the serial port device's ports.
202 * @return True if there are data waiting to be read, false
203 * otherwise.
204 */
205static bool ns8250_received(ns8250_regs_t *regs)
206{
207 return (pio_read_8(&regs->lsr) & NS8250_LSR_RXREADY) != 0;
208}
209
210/** Read one byte from the serial port.
211 *
212 * @param port The base address of the serial port device's ports.
213 * @return The data read.
214 */
215static uint8_t ns8250_read_8(ns8250_regs_t *regs)
216{
217 return pio_read_8(&regs->data);
218}
219
220/** Find out wheter it is possible to send data.
221 *
222 * @param port The base address of the serial port device's ports.
223 */
224static bool is_transmit_empty(ns8250_regs_t *regs)
225{
226 return (pio_read_8(&regs->lsr) & NS8250_LSR_THRE) != 0;
227}
228
229/** Write one character on the serial port.
230 *
231 * @param port The base address of the serial port device's ports.
232 * @param c The character to be written to the serial port device.
233 */
234static void ns8250_write_8(ns8250_regs_t *regs, uint8_t c)
235{
236 while (!is_transmit_empty(regs))
237 ;
238
239 pio_write_8(&regs->data, c);
240}
241
242/** Read data from the serial port device.
243 *
244 * @param srv Server-side connection data
245 * @param buf The output buffer for read data.
246 * @param count The number of bytes to be read.
247 * @param nread Place to store number of bytes actually read
248 *
249 * @return EOK on success or non-zero error code
250 */
251static errno_t ns8250_read(chardev_srv_t *srv, void *buf, size_t count, size_t *nread)
252{
253 ns8250_t *ns = srv_ns8250(srv);
254 char *bp = (char *) buf;
255 size_t pos = 0;
256
257 if (count == 0) {
258 *nread = 0;
259 return EOK;
260 }
261
262 fibril_mutex_lock(&ns->mutex);
263 while (buf_is_empty(&ns->input_buffer))
264 fibril_condvar_wait(&ns->input_buffer_available, &ns->mutex);
265 while (!buf_is_empty(&ns->input_buffer) && pos < count) {
266 bp[pos] = (char)buf_pop_front(&ns->input_buffer);
267 pos++;
268 }
269 fibril_mutex_unlock(&ns->mutex);
270
271 *nread = pos;
272 return EOK;
273}
274
275/** Write a character to the serial port.
276 *
277 * @param ns Serial port device
278 * @param c The character to be written
279 */
280static inline void ns8250_putchar(ns8250_t *ns, uint8_t c)
281{
282 fibril_mutex_lock(&ns->mutex);
283 ns8250_write_8(ns->regs, c);
284 fibril_mutex_unlock(&ns->mutex);
285}
286
287/** Write data to the serial port.
288 *
289 * @param srv Server-side connection data
290 * @param buf The data to be written
291 * @param count The number of bytes to be written
292 * @param nwritten Place to store number of bytes successfully written
293 * @return EOK on success or non-zero error code
294 */
295static errno_t ns8250_write(chardev_srv_t *srv, const void *buf, size_t count,
296 size_t *nwritten)
297{
298 ns8250_t *ns = srv_ns8250(srv);
299 size_t idx;
300 uint8_t *bp = (uint8_t *) buf;
301
302 for (idx = 0; idx < count; idx++)
303 ns8250_putchar(ns, bp[idx]);
304
305 *nwritten = count;
306 return EOK;
307}
308
309static errno_t ns8250_open(chardev_srvs_t *, chardev_srv_t *);
310static errno_t ns8250_close(chardev_srv_t *);
311static void ns8250_default_handler(chardev_srv_t *, ipc_call_t *);
312
313/** The character interface's callbacks. */
314static chardev_ops_t ns8250_chardev_ops = {
315 .open = ns8250_open,
316 .close = ns8250_close,
317 .read = ns8250_read,
318 .write = ns8250_write,
319 .def_handler = ns8250_default_handler
320};
321
322static void ns8250_char_conn(ipc_call_t *, void *);
323
324static errno_t ns8250_dev_add(ddf_dev_t *dev);
325static errno_t ns8250_dev_remove(ddf_dev_t *dev);
326
327/** The serial port device driver's standard operations. */
328static driver_ops_t ns8250_ops = {
329 .dev_add = &ns8250_dev_add,
330 .dev_remove = &ns8250_dev_remove
331};
332
333/** The serial port device driver structure. */
334static driver_t ns8250_driver = {
335 .name = NAME,
336 .driver_ops = &ns8250_ops
337};
338
339/** Clean up the serial port soft-state
340 *
341 * @param ns Serial port device
342 */
343static void ns8250_dev_cleanup(ns8250_t *ns)
344{
345}
346
347/** Enable the i/o ports of the device.
348 *
349 * @param ns Serial port device
350 * @return True on success, false otherwise
351 */
352static bool ns8250_pio_enable(ns8250_t *ns)
353{
354 ddf_msg(LVL_DEBUG, "ns8250_pio_enable %s", ddf_dev_get_name(ns->dev));
355
356 /* Gain control over port's registers. */
357 if (pio_enable((void *) ns->io_addr, REG_COUNT,
358 (void **) &ns->port)) {
359 ddf_msg(LVL_ERROR, "Cannot map the port %#" PRIxn
360 " for device %s.", ns->io_addr, ddf_dev_get_name(ns->dev));
361 return false;
362 }
363
364 ns->regs = (ns8250_regs_t *)ns->port;
365
366 return true;
367}
368
369/** Probe the serial port device for its presence.
370 *
371 * @param ns Serial port device
372 * @return True if the device is present, false otherwise
373 */
374static bool ns8250_dev_probe(ns8250_t *ns)
375{
376 ddf_msg(LVL_DEBUG, "ns8250_dev_probe %s", ddf_dev_get_name(ns->dev));
377
378 bool res = true;
379 uint8_t olddata;
380
381 olddata = pio_read_8(&ns->regs->mcr);
382
383 pio_write_8(&ns->regs->mcr, NS8250_MCR_LOOPBACK);
384 if (pio_read_8(&ns->regs->msr) & NS8250_MSR_SIGNALS)
385 res = false;
386
387 pio_write_8(&ns->regs->mcr, NS8250_MCR_ALL);
388 if ((pio_read_8(&ns->regs->msr) & NS8250_MSR_SIGNALS) !=
389 NS8250_MSR_SIGNALS)
390 res = false;
391
392 pio_write_8(&ns->regs->mcr, olddata);
393
394 if (!res) {
395 ddf_msg(LVL_DEBUG, "Device %s is not present.",
396 ddf_dev_get_name(ns->dev));
397 }
398
399 return res;
400}
401
402/** Initialize serial port device.
403 *
404 * @param ns Serial port device
405 * @return Zero on success, error number otherwise
406 */
407static errno_t ns8250_dev_initialize(ns8250_t *ns)
408{
409 errno_t ret = EOK;
410
411 ddf_msg(LVL_DEBUG, "ns8250_dev_initialize %s", ddf_dev_get_name(ns->dev));
412
413 hw_resource_list_t hw_resources;
414 memset(&hw_resources, 0, sizeof(hw_resource_list_t));
415
416 /* Get hw resources. */
417 ret = hw_res_get_resource_list(ns->parent_sess, &hw_resources);
418 if (ret != EOK) {
419 ddf_msg(LVL_ERROR, "Failed to get HW resources for device "
420 "%s.", ddf_dev_get_name(ns->dev));
421 goto failed;
422 }
423
424 size_t i;
425 hw_resource_t *res;
426 bool irq = false;
427 bool ioport = false;
428
429 for (i = 0; i < hw_resources.count; i++) {
430 res = &hw_resources.resources[i];
431 switch (res->type) {
432 case INTERRUPT:
433 ns->irq = res->res.interrupt.irq;
434 irq = true;
435 ddf_msg(LVL_NOTE, "Device %s was assigned irq = 0x%x.",
436 ddf_dev_get_name(ns->dev), ns->irq);
437 break;
438
439 case IO_RANGE:
440 ns->io_addr = res->res.io_range.address;
441 if (res->res.io_range.size < REG_COUNT) {
442 ddf_msg(LVL_ERROR, "I/O range assigned to "
443 "device %s is too small.", ddf_dev_get_name(ns->dev));
444 ret = ELIMIT;
445 goto failed;
446 }
447 ioport = true;
448 ddf_msg(LVL_NOTE, "Device %s was assigned I/O address = "
449 "0x%#" PRIxn ".", ddf_dev_get_name(ns->dev), ns->io_addr);
450 break;
451
452 default:
453 break;
454 }
455 }
456
457 if (!irq || !ioport) {
458 ddf_msg(LVL_ERROR, "Missing HW resource(s) for device %s.",
459 ddf_dev_get_name(ns->dev));
460 ret = ENOENT;
461 goto failed;
462 }
463
464 hw_res_clean_resource_list(&hw_resources);
465 return ret;
466
467failed:
468 ns8250_dev_cleanup(ns);
469 hw_res_clean_resource_list(&hw_resources);
470 return ret;
471}
472
473/** Enable interrupts on the serial port device.
474 *
475 * Interrupt when data is received
476 *
477 * @param port The base address of the serial port device's ports.
478 */
479static inline void ns8250_port_interrupts_enable(ns8250_regs_t *regs)
480{
481 /* Interrupt when data received. */
482 pio_write_8(&regs->ier, NS8250_IER_RXREADY | NS8250_IER_RXSTATUS);
483 pio_write_8(&regs->mcr, NS8250_MCR_DTR | NS8250_MCR_RTS |
484 NS8250_MCR_OUT2);
485}
486
487/** Disable interrupts on the serial port device.
488 *
489 * @param port The base address of the serial port device's ports
490 */
491static inline void ns8250_port_interrupts_disable(ns8250_regs_t *regs)
492{
493 pio_write_8(&regs->ier, 0x0); /* Disable all interrupts. */
494}
495
496/** Enable interrupts for the serial port device.
497 *
498 * @param ns Serial port device
499 * @return Zero on success, error number otherwise
500 */
501static errno_t ns8250_interrupt_enable(ns8250_t *ns)
502{
503 /* Enable interrupt using IRC service. */
504 errno_t rc = hw_res_enable_interrupt(ns->parent_sess, ns->irq);
505 if (rc != EOK)
506 return EIO;
507
508 /* Read LSR to clear possible previous LSR interrupt */
509 pio_read_8(&ns->regs->lsr);
510
511 /* Enable interrupt on the serial port. */
512 ns8250_port_interrupts_enable(ns->regs);
513
514 return EOK;
515}
516
517/** Set Divisor Latch Access Bit.
518 *
519 * When the Divisor Latch Access Bit is set, it is possible to set baud rate of
520 * the serial port device.
521 *
522 * @param port The base address of the serial port device's ports.
523 */
524static inline void enable_dlab(ns8250_regs_t *regs)
525{
526 uint8_t val = pio_read_8(&regs->lcr);
527 pio_write_8(&regs->lcr, val | NS8250_LCR_DLAB);
528}
529
530/** Clear Divisor Latch Access Bit.
531 *
532 * @param port The base address of the serial port device's ports.
533 */
534static inline void clear_dlab(ns8250_regs_t *regs)
535{
536 uint8_t val = pio_read_8(&regs->lcr);
537 pio_write_8(&regs->lcr, val & (~NS8250_LCR_DLAB));
538}
539
540/** Set baud rate of the serial communication on the serial device.
541 *
542 * @param port The base address of the serial port device's ports.
543 * @param baud_rate The baud rate to be used by the device.
544 * @return Zero on success, error number otherwise (EINVAL
545 * if the specified baud_rate is not valid).
546 */
547static errno_t ns8250_port_set_baud_rate(ns8250_regs_t *regs, unsigned int baud_rate)
548{
549 uint16_t divisor;
550 uint8_t div_low, div_high;
551
552 if (baud_rate < 50 || MAX_BAUD_RATE % baud_rate != 0) {
553 ddf_msg(LVL_ERROR, "Invalid baud rate %d requested.",
554 baud_rate);
555 return EINVAL;
556 }
557
558 divisor = MAX_BAUD_RATE / baud_rate;
559 div_low = (uint8_t)divisor;
560 div_high = (uint8_t)(divisor >> 8);
561
562 /* Enable DLAB to be able to access baud rate divisor. */
563 enable_dlab(regs);
564
565 /* Set divisor low byte. */
566 pio_write_8(&regs->data, div_low);
567 /* Set divisor high byte. */
568 pio_write_8(&regs->ier, div_high);
569
570 clear_dlab(regs);
571
572 return EOK;
573}
574
575/** Get baud rate used by the serial port device.
576 *
577 * @param port The base address of the serial port device's ports.
578 * @param baud_rate The ouput parameter to which the baud rate is stored.
579 */
580static unsigned int ns8250_port_get_baud_rate(ns8250_regs_t *regs)
581{
582 uint16_t divisor;
583 uint8_t div_low, div_high;
584
585 /* Enable DLAB to be able to access baud rate divisor. */
586 enable_dlab(regs);
587
588 /* Get divisor low byte. */
589 div_low = pio_read_8(&regs->data);
590 /* Get divisor high byte. */
591 div_high = pio_read_8(&regs->ier);
592
593 clear_dlab(regs);
594
595 divisor = (div_high << 8) | div_low;
596 return MAX_BAUD_RATE / divisor;
597}
598
599/** Get the parameters of the serial communication set on the serial port
600 * device.
601 *
602 * @param parity The parity used.
603 * @param word_length The length of one data unit in bits.
604 * @param stop_bits The number of stop bits used (one or two).
605 */
606static void ns8250_port_get_com_props(ns8250_regs_t *regs, unsigned int *parity,
607 unsigned int *word_length, unsigned int *stop_bits)
608{
609 uint8_t val;
610
611 val = pio_read_8(&regs->lcr);
612 *parity = ((val >> NS8250_LCR_PARITY) & 7);
613
614 /* Silence warnings */
615 *word_length = 0;
616
617 switch (val & 3) {
618 case WORD_LENGTH_5:
619 *word_length = 5;
620 break;
621 case WORD_LENGTH_6:
622 *word_length = 6;
623 break;
624 case WORD_LENGTH_7:
625 *word_length = 7;
626 break;
627 case WORD_LENGTH_8:
628 *word_length = 8;
629 break;
630 }
631
632 if ((val >> NS8250_LCR_STOPBITS) & 1)
633 *stop_bits = 2;
634 else
635 *stop_bits = 1;
636}
637
638/** Set the parameters of the serial communication on the serial port device.
639 *
640 * @param parity The parity to be used.
641 * @param word_length The length of one data unit in bits.
642 * @param stop_bits The number of stop bits used (one or two).
643 * @return Zero on success, EINVAL if some of the specified values
644 * is invalid.
645 */
646static errno_t ns8250_port_set_com_props(ns8250_regs_t *regs, unsigned int parity,
647 unsigned int word_length, unsigned int stop_bits)
648{
649 uint8_t val;
650
651 switch (word_length) {
652 case 5:
653 val = WORD_LENGTH_5;
654 break;
655 case 6:
656 val = WORD_LENGTH_6;
657 break;
658 case 7:
659 val = WORD_LENGTH_7;
660 break;
661 case 8:
662 val = WORD_LENGTH_8;
663 break;
664 default:
665 return EINVAL;
666 }
667
668 switch (stop_bits) {
669 case 1:
670 val |= ONE_STOP_BIT << NS8250_LCR_STOPBITS;
671 break;
672 case 2:
673 val |= TWO_STOP_BITS << NS8250_LCR_STOPBITS;
674 break;
675 default:
676 return EINVAL;
677 }
678
679 switch (parity) {
680 case SERIAL_NO_PARITY:
681 case SERIAL_ODD_PARITY:
682 case SERIAL_EVEN_PARITY:
683 case SERIAL_MARK_PARITY:
684 case SERIAL_SPACE_PARITY:
685 val |= parity << NS8250_LCR_PARITY;
686 break;
687 default:
688 return EINVAL;
689 }
690
691 pio_write_8(&regs->lcr, val);
692
693 return EOK;
694}
695
696/** Initialize the serial port device.
697 *
698 * Set the default parameters of the serial communication.
699 *
700 * @param ns Serial port device
701 */
702static void ns8250_initialize_port(ns8250_t *ns)
703{
704 /* Disable interrupts. */
705 ns8250_port_interrupts_disable(ns->regs);
706 /* Set baud rate. */
707 ns8250_port_set_baud_rate(ns->regs, 38400);
708 /* 8 bits, no parity, two stop bits. */
709 ns8250_port_set_com_props(ns->regs, SERIAL_NO_PARITY, 8, 2);
710 /*
711 * Enable FIFO, clear them, with 4-byte threshold for greater
712 * reliability.
713 */
714 pio_write_8(&ns->regs->iid, NS8250_FCR_FIFOENABLE |
715 NS8250_FCR_RXFIFORESET | NS8250_FCR_TXFIFORESET |
716 NS8250_FCR_RXTRIGGERLOW);
717 /*
718 * RTS/DSR set (Request to Send and Data Terminal Ready lines enabled),
719 * Aux Output2 set - needed for interrupts.
720 */
721 pio_write_8(&ns->regs->mcr, NS8250_MCR_DTR | NS8250_MCR_RTS |
722 NS8250_MCR_OUT2);
723}
724
725/** Deinitialize the serial port device.
726 *
727 * @param ns Serial port device
728 */
729static void ns8250_port_cleanup(ns8250_t *ns)
730{
731 /* Disable FIFO */
732 pio_write_8(&ns->regs->iid, 0x00);
733 /* Disable DTR, RTS, OUT1, OUT2 (int. enable) */
734 pio_write_8(&ns->regs->mcr, 0x00);
735 /* Disable all interrupts from the port */
736 ns8250_port_interrupts_disable(ns->regs);
737}
738
739/** Read the data from the serial port device and store them to the input
740 * buffer.
741 *
742 * @param ns Serial port device
743 */
744static void ns8250_read_from_device(ns8250_t *ns)
745{
746 ns8250_regs_t *regs = ns->regs;
747 bool cont = true;
748
749 fibril_mutex_lock(&ns->mutex);
750 while (cont) {
751 cont = ns8250_received(regs);
752 if (cont) {
753 uint8_t val = ns8250_read_8(regs);
754
755 if (ns->client_connections > 0) {
756 bool buf_was_empty = buf_is_empty(&ns->input_buffer);
757 if (!buf_push_back(&ns->input_buffer, val)) {
758 ddf_msg(LVL_WARN, "Buffer overflow on "
759 "%s.", ddf_dev_get_name(ns->dev));
760 break;
761 } else {
762 ddf_msg(LVL_DEBUG2, "Character %c saved "
763 "to the buffer of %s.",
764 val, ddf_dev_get_name(ns->dev));
765 if (buf_was_empty)
766 fibril_condvar_broadcast(&ns->input_buffer_available);
767 }
768 }
769 }
770 }
771 fibril_mutex_unlock(&ns->mutex);
772 fibril_yield();
773}
774
775/** The interrupt handler.
776 *
777 * The serial port is initialized to interrupt when some data come or line
778 * status register changes, so the interrupt is handled by reading the incoming
779 * data and reading the line status register.
780 *
781 * @param dev The serial port device.
782 *
783 */
784static inline void ns8250_interrupt_handler(ipc_call_t *icall, ddf_dev_t *dev)
785{
786 ns8250_t *ns = dev_ns8250(dev);
787 uint8_t iir = pio_read_8(&ns->regs->iid);
788 if ((iir & NS8250_IID_CAUSE_MASK) == NS8250_IID_CAUSE_RXSTATUS) {
789 uint8_t lsr = pio_read_8(&ns->regs->lsr);
790 if (lsr & NS8250_LSR_OE) {
791 ddf_msg(LVL_WARN, "Overrun error on %s", ddf_dev_get_name(ns->dev));
792 }
793 }
794
795 ns8250_read_from_device(ns);
796 hw_res_clear_interrupt(ns->parent_sess, ns->irq);
797}
798
799/** Register the interrupt handler for the device.
800 *
801 * @param ns Serial port device
802 */
803static inline errno_t ns8250_register_interrupt_handler(ns8250_t *ns,
804 cap_irq_handle_t *ihandle)
805{
806 return register_interrupt_handler(ns->dev, ns->irq,
807 ns8250_interrupt_handler, NULL, ihandle);
808}
809
810/** Unregister the interrupt handler for the device.
811 *
812 * @param ns Serial port device
813 */
814static inline errno_t ns8250_unregister_interrupt_handler(ns8250_t *ns)
815{
816 return unregister_interrupt_handler(ns->dev, ns->irq_handle);
817}
818
819/** The dev_add callback method of the serial port driver.
820 *
821 * Probe and initialize the newly added device.
822 *
823 * @param dev The serial port device.
824 */
825static errno_t ns8250_dev_add(ddf_dev_t *dev)
826{
827 ns8250_t *ns = NULL;
828 ddf_fun_t *fun = NULL;
829 bool need_cleanup = false;
830 bool need_unreg_intr_handler = false;
831 bool bound = false;
832 errno_t rc;
833
834 ddf_msg(LVL_DEBUG, "ns8250_dev_add %s (handle = %d)",
835 ddf_dev_get_name(dev), (int) ddf_dev_get_handle(dev));
836
837 /* Allocate soft-state for the device */
838 ns = ddf_dev_data_alloc(dev, sizeof(ns8250_t));
839 if (ns == NULL) {
840 rc = ENOMEM;
841 goto fail;
842 }
843
844 fibril_mutex_initialize(&ns->mutex);
845 fibril_condvar_initialize(&ns->input_buffer_available);
846 ns->dev = dev;
847
848 ns->parent_sess = ddf_dev_parent_sess_get(ns->dev);
849 if (ns->parent_sess == NULL) {
850 ddf_msg(LVL_ERROR, "Failed to connect to parent driver of "
851 "device %s.", ddf_dev_get_name(ns->dev));
852 rc = EIO;
853 goto fail;
854 }
855
856 rc = ns8250_dev_initialize(ns);
857 if (rc != EOK)
858 goto fail;
859
860 need_cleanup = true;
861
862 if (!ns8250_pio_enable(ns)) {
863 rc = EADDRNOTAVAIL;
864 goto fail;
865 }
866
867 /* Find out whether the device is present. */
868 if (!ns8250_dev_probe(ns)) {
869 rc = ENOENT;
870 goto fail;
871 }
872
873 /* Serial port initialization (baud rate etc.). */
874 ns8250_initialize_port(ns);
875
876 /* Register interrupt handler. */
877 ns->irq_handle = CAP_NIL;
878 rc = ns8250_register_interrupt_handler(ns, &ns->irq_handle);
879 if (rc != EOK) {
880 ddf_msg(LVL_ERROR, "Failed to register interrupt handler.");
881 rc = EADDRNOTAVAIL;
882 goto fail;
883 }
884 need_unreg_intr_handler = true;
885
886 /* Enable interrupt. */
887 rc = ns8250_interrupt_enable(ns);
888 if (rc != EOK) {
889 ddf_msg(LVL_ERROR, "Failed to enable the interrupt. Error code = "
890 "%s.", str_error_name(rc));
891 goto fail;
892 }
893
894 fun = ddf_fun_create(dev, fun_exposed, "a");
895 if (fun == NULL) {
896 ddf_msg(LVL_ERROR, "Failed creating function.");
897 goto fail;
898 }
899
900 ddf_fun_set_conn_handler(fun, ns8250_char_conn);
901
902 chardev_srvs_init(&ns->cds);
903 ns->cds.ops = &ns8250_chardev_ops;
904 ns->cds.sarg = ns;
905
906 rc = ddf_fun_bind(fun);
907 if (rc != EOK) {
908 ddf_msg(LVL_ERROR, "Failed binding function.");
909 goto fail;
910 }
911
912 bound = true;
913 ns->fun = fun;
914
915 rc = ddf_fun_add_to_category(fun, "serial");
916 if (rc != EOK) {
917 ddf_msg(LVL_ERROR, "Error adding function to category 'serial'.");
918 goto fail;
919 }
920
921 ddf_msg(LVL_NOTE, "Device %s successfully initialized.",
922 ddf_dev_get_name(dev));
923
924 return EOK;
925fail:
926 if (bound)
927 ddf_fun_unbind(fun);
928 if (fun != NULL)
929 ddf_fun_destroy(fun);
930 if (need_unreg_intr_handler)
931 ns8250_unregister_interrupt_handler(ns);
932 if (need_cleanup)
933 ns8250_dev_cleanup(ns);
934 return rc;
935}
936
937static errno_t ns8250_dev_remove(ddf_dev_t *dev)
938{
939 ns8250_t *ns = dev_ns8250(dev);
940 errno_t rc;
941
942 fibril_mutex_lock(&ns->mutex);
943 if (ns->client_connections > 0) {
944 fibril_mutex_unlock(&ns->mutex);
945 return EBUSY;
946 }
947 ns->removed = true;
948 fibril_mutex_unlock(&ns->mutex);
949
950 rc = ddf_fun_unbind(ns->fun);
951 if (rc != EOK) {
952 ddf_msg(LVL_ERROR, "Failed to unbind function.");
953 return rc;
954 }
955
956 ddf_fun_destroy(ns->fun);
957
958 ns8250_port_cleanup(ns);
959 ns8250_unregister_interrupt_handler(ns);
960 ns8250_dev_cleanup(ns);
961 return EOK;
962}
963
964/** Open the device.
965 *
966 * This is a callback function called when a client tries to connect to the
967 * device.
968 *
969 * @param srvs Service structure
970 * @param srv Server-side connection structure
971 */
972static errno_t ns8250_open(chardev_srvs_t *srvs, chardev_srv_t *srv)
973{
974 ns8250_t *ns = srv_ns8250(srv);
975 errno_t res;
976
977 fibril_mutex_lock(&ns->mutex);
978 if (ns->removed) {
979 res = ENXIO;
980 } else {
981 res = EOK;
982 ns->client_connections++;
983 }
984 fibril_mutex_unlock(&ns->mutex);
985
986 return res;
987}
988
989/** Close the device.
990 *
991 * This is a callback function called when a client tries to disconnect from
992 * the device.
993 *
994 * @param srv Server-side connection structure
995 */
996static errno_t ns8250_close(chardev_srv_t *srv)
997{
998 ns8250_t *data = srv_ns8250(srv);
999
1000 fibril_mutex_lock(&data->mutex);
1001
1002 assert(data->client_connections > 0);
1003
1004 if (!(--data->client_connections))
1005 buf_clear(&data->input_buffer);
1006
1007 fibril_mutex_unlock(&data->mutex);
1008
1009 return EOK;
1010}
1011
1012/** Get parameters of the serial communication which are set to the specified
1013 * device.
1014 *
1015 * @param dev The serial port device.
1016 * @param baud_rate The baud rate used by the device.
1017 * @param parity The type of parity used by the device.
1018 * @param word_length The size of one data unit in bits.
1019 * @param stop_bits The number of stop bits used.
1020 */
1021static void ns8250_get_props(ddf_dev_t *dev, unsigned int *baud_rate,
1022 unsigned int *parity, unsigned int *word_length, unsigned int *stop_bits)
1023{
1024 ns8250_t *data = dev_ns8250(dev);
1025 ns8250_regs_t *regs = data->regs;
1026
1027 fibril_mutex_lock(&data->mutex);
1028 ns8250_port_interrupts_disable(regs);
1029 *baud_rate = ns8250_port_get_baud_rate(regs);
1030 ns8250_port_get_com_props(regs, parity, word_length, stop_bits);
1031 ns8250_port_interrupts_enable(regs);
1032 fibril_mutex_unlock(&data->mutex);
1033
1034 ddf_msg(LVL_DEBUG, "ns8250_get_props: baud rate %d, parity 0x%x, word "
1035 "length %d, stop bits %d", *baud_rate, *parity, *word_length,
1036 *stop_bits);
1037}
1038
1039/** Set parameters of the serial communication to the specified serial port
1040 * device.
1041 *
1042 * @param dev The serial port device.
1043 * @param baud_rate The baud rate to be used by the device.
1044 * @param parity The type of parity to be used by the device.
1045 * @param word_length The size of one data unit in bits.
1046 * @param stop_bits The number of stop bits to be used.
1047 */
1048static errno_t ns8250_set_props(ddf_dev_t *dev, unsigned int baud_rate,
1049 unsigned int parity, unsigned int word_length, unsigned int stop_bits)
1050{
1051 ddf_msg(LVL_DEBUG, "ns8250_set_props: baud rate %d, parity 0x%x, word "
1052 "length %d, stop bits %d", baud_rate, parity, word_length,
1053 stop_bits);
1054
1055 ns8250_t *data = dev_ns8250(dev);
1056 ns8250_regs_t *regs = data->regs;
1057 errno_t ret;
1058
1059 fibril_mutex_lock(&data->mutex);
1060 ns8250_port_interrupts_disable(regs);
1061 ret = ns8250_port_set_baud_rate(regs, baud_rate);
1062 if (ret == EOK)
1063 ret = ns8250_port_set_com_props(regs, parity, word_length, stop_bits);
1064 ns8250_port_interrupts_enable(regs);
1065 fibril_mutex_unlock(&data->mutex);
1066
1067 return ret;
1068}
1069
1070/** Default handler for client requests which are not handled by the standard
1071 * interfaces.
1072 *
1073 * Configure the parameters of the serial communication.
1074 */
1075static void ns8250_default_handler(chardev_srv_t *srv, ipc_call_t *call)
1076{
1077 ns8250_t *ns8250 = srv_ns8250(srv);
1078 sysarg_t method = IPC_GET_IMETHOD(*call);
1079 errno_t ret;
1080 unsigned int baud_rate, parity, word_length, stop_bits;
1081
1082 switch (method) {
1083 case SERIAL_GET_COM_PROPS:
1084 ns8250_get_props(ns8250->dev, &baud_rate, &parity, &word_length,
1085 &stop_bits);
1086 async_answer_4(call, EOK, baud_rate, parity, word_length,
1087 stop_bits);
1088 break;
1089
1090 case SERIAL_SET_COM_PROPS:
1091 baud_rate = IPC_GET_ARG1(*call);
1092 parity = IPC_GET_ARG2(*call);
1093 word_length = IPC_GET_ARG3(*call);
1094 stop_bits = IPC_GET_ARG4(*call);
1095 ret = ns8250_set_props(ns8250->dev, baud_rate, parity, word_length,
1096 stop_bits);
1097 async_answer_0(call, ret);
1098 break;
1099
1100 default:
1101 async_answer_0(call, ENOTSUP);
1102 }
1103}
1104
1105void ns8250_char_conn(ipc_call_t *icall, void *arg)
1106{
1107 ns8250_t *ns8250 = fun_ns8250((ddf_fun_t *)arg);
1108
1109 chardev_conn(icall, &ns8250->cds);
1110}
1111
1112/** Initialize the serial port driver.
1113 *
1114 * Initialize device operations structures with callback methods for handling
1115 * client requests to the serial port devices.
1116 */
1117static void ns8250_init(void)
1118{
1119 ddf_log_init(NAME);
1120}
1121
1122int main(int argc, char *argv[])
1123{
1124 printf(NAME ": HelenOS serial port driver\n");
1125 ns8250_init();
1126 return ddf_driver_main(&ns8250_driver);
1127}
1128
1129/**
1130 * @}
1131 */
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