blob: 788b9a7c4df5ab0dcd50a6d303c164d986914679 [file] [log] [blame]
Karsten Keil6115d2f2009-07-22 19:52:24 +02001/*
2 * avm_fritz.c low level stuff for AVM FRITZ!CARD PCI ISDN cards
3 * Thanks to AVM, Berlin for informations
4 *
5 * Author Karsten Keil <keil@isdn4linux.de>
6 *
7 * Copyright 2009 by Karsten Keil <keil@isdn4linux.de>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 *
22 */
Alexey Dobriyana6b7a402011-06-06 10:43:46 +000023#include <linux/interrupt.h>
Karsten Keil6115d2f2009-07-22 19:52:24 +020024#include <linux/module.h>
25#include <linux/pci.h>
26#include <linux/delay.h>
27#include <linux/mISDNhw.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090028#include <linux/slab.h>
Karsten Keil6115d2f2009-07-22 19:52:24 +020029#include <asm/unaligned.h>
30#include "ipac.h"
31
32
33#define AVMFRITZ_REV "2.1"
34
35static int AVM_cnt;
36static int debug;
37
38enum {
39 AVM_FRITZ_PCI,
40 AVM_FRITZ_PCIV2,
41};
42
43#define HDLC_FIFO 0x0
44#define HDLC_STATUS 0x4
45#define CHIP_WINDOW 0x10
46
47#define CHIP_INDEX 0x4
48#define AVM_HDLC_1 0x00
49#define AVM_HDLC_2 0x01
50#define AVM_ISAC_FIFO 0x02
51#define AVM_ISAC_REG_LOW 0x04
52#define AVM_ISAC_REG_HIGH 0x06
53
54#define AVM_STATUS0_IRQ_ISAC 0x01
55#define AVM_STATUS0_IRQ_HDLC 0x02
56#define AVM_STATUS0_IRQ_TIMER 0x04
57#define AVM_STATUS0_IRQ_MASK 0x07
58
59#define AVM_STATUS0_RESET 0x01
60#define AVM_STATUS0_DIS_TIMER 0x02
61#define AVM_STATUS0_RES_TIMER 0x04
62#define AVM_STATUS0_ENA_IRQ 0x08
63#define AVM_STATUS0_TESTBIT 0x10
64
65#define AVM_STATUS1_INT_SEL 0x0f
66#define AVM_STATUS1_ENA_IOM 0x80
67
68#define HDLC_MODE_ITF_FLG 0x01
69#define HDLC_MODE_TRANS 0x02
70#define HDLC_MODE_CCR_7 0x04
71#define HDLC_MODE_CCR_16 0x08
72#define HDLC_MODE_TESTLOOP 0x80
73
74#define HDLC_INT_XPR 0x80
75#define HDLC_INT_XDU 0x40
76#define HDLC_INT_RPR 0x20
77#define HDLC_INT_MASK 0xE0
78
79#define HDLC_STAT_RME 0x01
80#define HDLC_STAT_RDO 0x10
81#define HDLC_STAT_CRCVFRRAB 0x0E
82#define HDLC_STAT_CRCVFR 0x06
83#define HDLC_STAT_RML_MASK 0x3f00
84
85#define HDLC_CMD_XRS 0x80
86#define HDLC_CMD_XME 0x01
87#define HDLC_CMD_RRS 0x20
88#define HDLC_CMD_XML_MASK 0x3f00
89#define HDLC_FIFO_SIZE 32
90
91/* Fritz PCI v2.0 */
92
93#define AVM_HDLC_FIFO_1 0x10
94#define AVM_HDLC_FIFO_2 0x18
95
96#define AVM_HDLC_STATUS_1 0x14
97#define AVM_HDLC_STATUS_2 0x1c
98
99#define AVM_ISACX_INDEX 0x04
100#define AVM_ISACX_DATA 0x08
101
102/* data struct */
103#define LOG_SIZE 63
104
105struct hdlc_stat_reg {
106#ifdef __BIG_ENDIAN
107 u8 fill;
108 u8 mode;
109 u8 xml;
110 u8 cmd;
111#else
112 u8 cmd;
113 u8 xml;
114 u8 mode;
115 u8 fill;
116#endif
117} __attribute__((packed));
118
119struct hdlc_hw {
120 union {
121 u32 ctrl;
122 struct hdlc_stat_reg sr;
123 } ctrl;
124 u32 stat;
125};
126
127struct fritzcard {
128 struct list_head list;
129 struct pci_dev *pdev;
130 char name[MISDN_MAX_IDLEN];
131 u8 type;
132 u8 ctrlreg;
133 u16 irq;
134 u32 irqcnt;
135 u32 addr;
136 spinlock_t lock; /* hw lock */
137 struct isac_hw isac;
138 struct hdlc_hw hdlc[2];
139 struct bchannel bch[2];
140 char log[LOG_SIZE + 1];
141};
142
143static LIST_HEAD(Cards);
144static DEFINE_RWLOCK(card_lock); /* protect Cards */
145
146static void
147_set_debug(struct fritzcard *card)
148{
149 card->isac.dch.debug = debug;
150 card->bch[0].debug = debug;
151 card->bch[1].debug = debug;
152}
153
154static int
155set_debug(const char *val, struct kernel_param *kp)
156{
157 int ret;
158 struct fritzcard *card;
159
160 ret = param_set_uint(val, kp);
161 if (!ret) {
162 read_lock(&card_lock);
163 list_for_each_entry(card, &Cards, list)
164 _set_debug(card);
165 read_unlock(&card_lock);
166 }
167 return ret;
168}
169
170MODULE_AUTHOR("Karsten Keil");
171MODULE_LICENSE("GPL v2");
172MODULE_VERSION(AVMFRITZ_REV);
173module_param_call(debug, set_debug, param_get_uint, &debug, S_IRUGO | S_IWUSR);
174MODULE_PARM_DESC(debug, "avmfritz debug mask");
175
176/* Interface functions */
177
178static u8
179ReadISAC_V1(void *p, u8 offset)
180{
181 struct fritzcard *fc = p;
182 u8 idx = (offset > 0x2f) ? AVM_ISAC_REG_HIGH : AVM_ISAC_REG_LOW;
183
184 outb(idx, fc->addr + CHIP_INDEX);
185 return inb(fc->addr + CHIP_WINDOW + (offset & 0xf));
186}
187
188static void
189WriteISAC_V1(void *p, u8 offset, u8 value)
190{
191 struct fritzcard *fc = p;
192 u8 idx = (offset > 0x2f) ? AVM_ISAC_REG_HIGH : AVM_ISAC_REG_LOW;
193
194 outb(idx, fc->addr + CHIP_INDEX);
195 outb(value, fc->addr + CHIP_WINDOW + (offset & 0xf));
196}
197
198static void
199ReadFiFoISAC_V1(void *p, u8 off, u8 *data, int size)
200{
201 struct fritzcard *fc = p;
202
203 outb(AVM_ISAC_FIFO, fc->addr + CHIP_INDEX);
204 insb(fc->addr + CHIP_WINDOW, data, size);
205}
206
207static void
208WriteFiFoISAC_V1(void *p, u8 off, u8 *data, int size)
209{
210 struct fritzcard *fc = p;
211
212 outb(AVM_ISAC_FIFO, fc->addr + CHIP_INDEX);
213 outsb(fc->addr + CHIP_WINDOW, data, size);
214}
215
216static u8
217ReadISAC_V2(void *p, u8 offset)
218{
219 struct fritzcard *fc = p;
220
221 outl(offset, fc->addr + AVM_ISACX_INDEX);
222 return 0xff & inl(fc->addr + AVM_ISACX_DATA);
223}
224
225static void
226WriteISAC_V2(void *p, u8 offset, u8 value)
227{
228 struct fritzcard *fc = p;
229
230 outl(offset, fc->addr + AVM_ISACX_INDEX);
231 outl(value, fc->addr + AVM_ISACX_DATA);
232}
233
234static void
235ReadFiFoISAC_V2(void *p, u8 off, u8 *data, int size)
236{
237 struct fritzcard *fc = p;
238 int i;
239
240 outl(off, fc->addr + AVM_ISACX_INDEX);
241 for (i = 0; i < size; i++)
242 data[i] = 0xff & inl(fc->addr + AVM_ISACX_DATA);
243}
244
245static void
246WriteFiFoISAC_V2(void *p, u8 off, u8 *data, int size)
247{
248 struct fritzcard *fc = p;
249 int i;
250
251 outl(off, fc->addr + AVM_ISACX_INDEX);
252 for (i = 0; i < size; i++)
253 outl(data[i], fc->addr + AVM_ISACX_DATA);
254}
255
256static struct bchannel *
257Sel_BCS(struct fritzcard *fc, u32 channel)
258{
259 if (test_bit(FLG_ACTIVE, &fc->bch[0].Flags) &&
Joe Perches475be4d2012-02-19 19:52:38 -0800260 (fc->bch[0].nr & channel))
Karsten Keil6115d2f2009-07-22 19:52:24 +0200261 return &fc->bch[0];
262 else if (test_bit(FLG_ACTIVE, &fc->bch[1].Flags) &&
Joe Perches475be4d2012-02-19 19:52:38 -0800263 (fc->bch[1].nr & channel))
Karsten Keil6115d2f2009-07-22 19:52:24 +0200264 return &fc->bch[1];
265 else
266 return NULL;
267}
268
269static inline void
270__write_ctrl_pci(struct fritzcard *fc, struct hdlc_hw *hdlc, u32 channel) {
271 u32 idx = channel == 2 ? AVM_HDLC_2 : AVM_HDLC_1;
272
273 outl(idx, fc->addr + CHIP_INDEX);
274 outl(hdlc->ctrl.ctrl, fc->addr + CHIP_WINDOW + HDLC_STATUS);
275}
276
277static inline void
278__write_ctrl_pciv2(struct fritzcard *fc, struct hdlc_hw *hdlc, u32 channel) {
279 outl(hdlc->ctrl.ctrl, fc->addr + (channel == 2 ? AVM_HDLC_STATUS_2 :
Joe Perches475be4d2012-02-19 19:52:38 -0800280 AVM_HDLC_STATUS_1));
Karsten Keil6115d2f2009-07-22 19:52:24 +0200281}
282
283void
284write_ctrl(struct bchannel *bch, int which) {
285 struct fritzcard *fc = bch->hw;
286 struct hdlc_hw *hdlc;
287
288 hdlc = &fc->hdlc[(bch->nr - 1) & 1];
289 pr_debug("%s: hdlc %c wr%x ctrl %x\n", fc->name, '@' + bch->nr,
Joe Perches475be4d2012-02-19 19:52:38 -0800290 which, hdlc->ctrl.ctrl);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200291 switch (fc->type) {
292 case AVM_FRITZ_PCIV2:
293 __write_ctrl_pciv2(fc, hdlc, bch->nr);
294 break;
295 case AVM_FRITZ_PCI:
296 __write_ctrl_pci(fc, hdlc, bch->nr);
297 break;
298 }
299}
300
301
302static inline u32
303__read_status_pci(u_long addr, u32 channel)
304{
305 outl(channel == 2 ? AVM_HDLC_2 : AVM_HDLC_1, addr + CHIP_INDEX);
306 return inl(addr + CHIP_WINDOW + HDLC_STATUS);
307}
308
309static inline u32
310__read_status_pciv2(u_long addr, u32 channel)
311{
312 return inl(addr + (channel == 2 ? AVM_HDLC_STATUS_2 :
Joe Perches475be4d2012-02-19 19:52:38 -0800313 AVM_HDLC_STATUS_1));
Karsten Keil6115d2f2009-07-22 19:52:24 +0200314}
315
316
317static u32
318read_status(struct fritzcard *fc, u32 channel)
319{
320 switch (fc->type) {
321 case AVM_FRITZ_PCIV2:
322 return __read_status_pciv2(fc->addr, channel);
323 case AVM_FRITZ_PCI:
324 return __read_status_pci(fc->addr, channel);
325 }
326 /* dummy */
327 return 0;
328}
329
330static void
331enable_hwirq(struct fritzcard *fc)
332{
333 fc->ctrlreg |= AVM_STATUS0_ENA_IRQ;
334 outb(fc->ctrlreg, fc->addr + 2);
335}
336
337static void
338disable_hwirq(struct fritzcard *fc)
339{
340 fc->ctrlreg &= ~AVM_STATUS0_ENA_IRQ;
341 outb(fc->ctrlreg, fc->addr + 2);
342}
343
344static int
345modehdlc(struct bchannel *bch, int protocol)
346{
347 struct fritzcard *fc = bch->hw;
348 struct hdlc_hw *hdlc;
349
350 hdlc = &fc->hdlc[(bch->nr - 1) & 1];
351 pr_debug("%s: hdlc %c protocol %x-->%x ch %d\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800352 '@' + bch->nr, bch->state, protocol, bch->nr);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200353 hdlc->ctrl.ctrl = 0;
354 switch (protocol) {
355 case -1: /* used for init */
356 bch->state = -1;
357 case ISDN_P_NONE:
358 if (bch->state == ISDN_P_NONE)
359 break;
360 hdlc->ctrl.sr.cmd = HDLC_CMD_XRS | HDLC_CMD_RRS;
361 hdlc->ctrl.sr.mode = HDLC_MODE_TRANS;
362 write_ctrl(bch, 5);
363 bch->state = ISDN_P_NONE;
364 test_and_clear_bit(FLG_HDLC, &bch->Flags);
365 test_and_clear_bit(FLG_TRANSPARENT, &bch->Flags);
366 break;
367 case ISDN_P_B_RAW:
368 bch->state = protocol;
369 hdlc->ctrl.sr.cmd = HDLC_CMD_XRS | HDLC_CMD_RRS;
370 hdlc->ctrl.sr.mode = HDLC_MODE_TRANS;
371 write_ctrl(bch, 5);
372 hdlc->ctrl.sr.cmd = HDLC_CMD_XRS;
373 write_ctrl(bch, 1);
374 hdlc->ctrl.sr.cmd = 0;
375 test_and_set_bit(FLG_TRANSPARENT, &bch->Flags);
376 break;
377 case ISDN_P_B_HDLC:
378 bch->state = protocol;
379 hdlc->ctrl.sr.cmd = HDLC_CMD_XRS | HDLC_CMD_RRS;
380 hdlc->ctrl.sr.mode = HDLC_MODE_ITF_FLG;
381 write_ctrl(bch, 5);
382 hdlc->ctrl.sr.cmd = HDLC_CMD_XRS;
383 write_ctrl(bch, 1);
384 hdlc->ctrl.sr.cmd = 0;
385 test_and_set_bit(FLG_HDLC, &bch->Flags);
386 break;
387 default:
388 pr_info("%s: protocol not known %x\n", fc->name, protocol);
389 return -ENOPROTOOPT;
390 }
391 return 0;
392}
393
394static void
395hdlc_empty_fifo(struct bchannel *bch, int count)
396{
397 u32 *ptr;
398 u8 *p;
399 u32 val, addr;
400 int cnt = 0;
401 struct fritzcard *fc = bch->hw;
402
403 pr_debug("%s: %s %d\n", fc->name, __func__, count);
404 if (!bch->rx_skb) {
405 bch->rx_skb = mI_alloc_skb(bch->maxlen, GFP_ATOMIC);
406 if (!bch->rx_skb) {
407 pr_info("%s: B receive out of memory\n",
408 fc->name);
409 return;
410 }
411 }
412 if ((bch->rx_skb->len + count) > bch->maxlen) {
413 pr_debug("%s: overrun %d\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800414 bch->rx_skb->len + count);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200415 return;
416 }
417 p = skb_put(bch->rx_skb, count);
418 ptr = (u32 *)p;
419 if (AVM_FRITZ_PCIV2 == fc->type)
420 addr = fc->addr + (bch->nr == 2 ?
Joe Perches475be4d2012-02-19 19:52:38 -0800421 AVM_HDLC_FIFO_2 : AVM_HDLC_FIFO_1);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200422 else {
423 addr = fc->addr + CHIP_WINDOW;
424 outl(bch->nr == 2 ? AVM_HDLC_2 : AVM_HDLC_1, fc->addr);
425 }
426 while (cnt < count) {
427 val = le32_to_cpu(inl(addr));
428 put_unaligned(val, ptr);
429 ptr++;
430 cnt += 4;
431 }
432 if (debug & DEBUG_HW_BFIFO) {
433 snprintf(fc->log, LOG_SIZE, "B%1d-recv %s %d ",
Joe Perches475be4d2012-02-19 19:52:38 -0800434 bch->nr, fc->name, count);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200435 print_hex_dump_bytes(fc->log, DUMP_PREFIX_OFFSET, p, count);
436 }
437}
438
439static void
440hdlc_fill_fifo(struct bchannel *bch)
441{
442 struct fritzcard *fc = bch->hw;
443 struct hdlc_hw *hdlc;
444 int count, cnt = 0;
445 u8 *p;
446 u32 *ptr, val, addr;
447
448 hdlc = &fc->hdlc[(bch->nr - 1) & 1];
449 if (!bch->tx_skb)
450 return;
451 count = bch->tx_skb->len - bch->tx_idx;
452 if (count <= 0)
453 return;
454 p = bch->tx_skb->data + bch->tx_idx;
455 hdlc->ctrl.sr.cmd &= ~HDLC_CMD_XME;
456 if (count > HDLC_FIFO_SIZE) {
457 count = HDLC_FIFO_SIZE;
458 } else {
459 if (test_bit(FLG_HDLC, &bch->Flags))
460 hdlc->ctrl.sr.cmd |= HDLC_CMD_XME;
461 }
462 pr_debug("%s: %s %d/%d/%d", fc->name, __func__, count,
Joe Perches475be4d2012-02-19 19:52:38 -0800463 bch->tx_idx, bch->tx_skb->len);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200464 ptr = (u32 *)p;
465 bch->tx_idx += count;
466 hdlc->ctrl.sr.xml = ((count == HDLC_FIFO_SIZE) ? 0 : count);
467 if (AVM_FRITZ_PCIV2 == fc->type) {
468 __write_ctrl_pciv2(fc, hdlc, bch->nr);
469 addr = fc->addr + (bch->nr == 2 ?
Joe Perches475be4d2012-02-19 19:52:38 -0800470 AVM_HDLC_FIFO_2 : AVM_HDLC_FIFO_1);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200471 } else {
472 __write_ctrl_pci(fc, hdlc, bch->nr);
473 addr = fc->addr + CHIP_WINDOW;
474 }
475 while (cnt < count) {
476 val = get_unaligned(ptr);
477 outl(cpu_to_le32(val), addr);
478 ptr++;
479 cnt += 4;
480 }
481 if (debug & DEBUG_HW_BFIFO) {
482 snprintf(fc->log, LOG_SIZE, "B%1d-send %s %d ",
Joe Perches475be4d2012-02-19 19:52:38 -0800483 bch->nr, fc->name, count);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200484 print_hex_dump_bytes(fc->log, DUMP_PREFIX_OFFSET, p, count);
485 }
486}
487
488static void
489HDLC_irq_xpr(struct bchannel *bch)
490{
Karsten Keil8bfddfb2012-05-15 23:51:02 +0000491 if (bch->tx_skb && bch->tx_idx < bch->tx_skb->len) {
Karsten Keil6115d2f2009-07-22 19:52:24 +0200492 hdlc_fill_fifo(bch);
Karsten Keil8bfddfb2012-05-15 23:51:02 +0000493 } else {
494 if (bch->tx_skb)
Karsten Keil6115d2f2009-07-22 19:52:24 +0200495 dev_kfree_skb(bch->tx_skb);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200496 if (get_next_bframe(bch))
497 hdlc_fill_fifo(bch);
498 }
499}
500
501static void
502HDLC_irq(struct bchannel *bch, u32 stat)
503{
504 struct fritzcard *fc = bch->hw;
505 int len;
506 struct hdlc_hw *hdlc;
507
508 hdlc = &fc->hdlc[(bch->nr - 1) & 1];
509 pr_debug("%s: ch%d stat %#x\n", fc->name, bch->nr, stat);
510 if (stat & HDLC_INT_RPR) {
511 if (stat & HDLC_STAT_RDO) {
512 hdlc->ctrl.sr.xml = 0;
513 hdlc->ctrl.sr.cmd |= HDLC_CMD_RRS;
514 write_ctrl(bch, 1);
515 hdlc->ctrl.sr.cmd &= ~HDLC_CMD_RRS;
516 write_ctrl(bch, 1);
517 if (bch->rx_skb)
518 skb_trim(bch->rx_skb, 0);
519 } else {
520 len = (stat & HDLC_STAT_RML_MASK) >> 8;
521 if (!len)
522 len = 32;
523 hdlc_empty_fifo(bch, len);
524 if (!bch->rx_skb)
525 goto handle_tx;
526 if ((stat & HDLC_STAT_RME) || test_bit(FLG_TRANSPARENT,
Joe Perches475be4d2012-02-19 19:52:38 -0800527 &bch->Flags)) {
Karsten Keil6115d2f2009-07-22 19:52:24 +0200528 if (((stat & HDLC_STAT_CRCVFRRAB) ==
Joe Perches475be4d2012-02-19 19:52:38 -0800529 HDLC_STAT_CRCVFR) ||
Karsten Keil6115d2f2009-07-22 19:52:24 +0200530 test_bit(FLG_TRANSPARENT, &bch->Flags)) {
531 recv_Bchannel(bch, 0);
532 } else {
533 pr_debug("%s: got invalid frame\n",
Joe Perches475be4d2012-02-19 19:52:38 -0800534 fc->name);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200535 skb_trim(bch->rx_skb, 0);
536 }
537 }
538 }
539 }
540handle_tx:
541 if (stat & HDLC_INT_XDU) {
542 /* Here we lost an TX interrupt, so
543 * restart transmitting the whole frame on HDLC
544 * in transparent mode we send the next data
545 */
546 if (bch->tx_skb)
547 pr_debug("%s: ch%d XDU len(%d) idx(%d) Flags(%lx)\n",
Joe Perches475be4d2012-02-19 19:52:38 -0800548 fc->name, bch->nr, bch->tx_skb->len,
549 bch->tx_idx, bch->Flags);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200550 else
551 pr_debug("%s: ch%d XDU no tx_skb Flags(%lx)\n",
Joe Perches475be4d2012-02-19 19:52:38 -0800552 fc->name, bch->nr, bch->Flags);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200553 if (bch->tx_skb && bch->tx_skb->len) {
554 if (!test_bit(FLG_TRANSPARENT, &bch->Flags))
555 bch->tx_idx = 0;
556 }
557 hdlc->ctrl.sr.xml = 0;
558 hdlc->ctrl.sr.cmd |= HDLC_CMD_XRS;
559 write_ctrl(bch, 1);
560 hdlc->ctrl.sr.cmd &= ~HDLC_CMD_XRS;
561 HDLC_irq_xpr(bch);
562 return;
563 } else if (stat & HDLC_INT_XPR)
564 HDLC_irq_xpr(bch);
565}
566
567static inline void
568HDLC_irq_main(struct fritzcard *fc)
569{
570 u32 stat;
571 struct bchannel *bch;
572
573 stat = read_status(fc, 1);
574 if (stat & HDLC_INT_MASK) {
575 bch = Sel_BCS(fc, 1);
576 if (bch)
577 HDLC_irq(bch, stat);
578 else
579 pr_debug("%s: spurious ch1 IRQ\n", fc->name);
580 }
581 stat = read_status(fc, 2);
582 if (stat & HDLC_INT_MASK) {
583 bch = Sel_BCS(fc, 2);
584 if (bch)
585 HDLC_irq(bch, stat);
586 else
587 pr_debug("%s: spurious ch2 IRQ\n", fc->name);
588 }
589}
590
591static irqreturn_t
592avm_fritz_interrupt(int intno, void *dev_id)
593{
594 struct fritzcard *fc = dev_id;
595 u8 val;
596 u8 sval;
597
598 spin_lock(&fc->lock);
599 sval = inb(fc->addr + 2);
600 pr_debug("%s: irq stat0 %x\n", fc->name, sval);
601 if ((sval & AVM_STATUS0_IRQ_MASK) == AVM_STATUS0_IRQ_MASK) {
602 /* shared IRQ from other HW */
603 spin_unlock(&fc->lock);
604 return IRQ_NONE;
605 }
606 fc->irqcnt++;
607
608 if (!(sval & AVM_STATUS0_IRQ_ISAC)) {
609 val = ReadISAC_V1(fc, ISAC_ISTA);
610 mISDNisac_irq(&fc->isac, val);
611 }
612 if (!(sval & AVM_STATUS0_IRQ_HDLC))
613 HDLC_irq_main(fc);
614 spin_unlock(&fc->lock);
615 return IRQ_HANDLED;
616}
617
618static irqreturn_t
619avm_fritzv2_interrupt(int intno, void *dev_id)
620{
621 struct fritzcard *fc = dev_id;
622 u8 val;
623 u8 sval;
624
625 spin_lock(&fc->lock);
626 sval = inb(fc->addr + 2);
627 pr_debug("%s: irq stat0 %x\n", fc->name, sval);
628 if (!(sval & AVM_STATUS0_IRQ_MASK)) {
629 /* shared IRQ from other HW */
630 spin_unlock(&fc->lock);
631 return IRQ_NONE;
632 }
633 fc->irqcnt++;
634
635 if (sval & AVM_STATUS0_IRQ_HDLC)
636 HDLC_irq_main(fc);
637 if (sval & AVM_STATUS0_IRQ_ISAC) {
638 val = ReadISAC_V2(fc, ISACX_ISTA);
639 mISDNisac_irq(&fc->isac, val);
640 }
641 if (sval & AVM_STATUS0_IRQ_TIMER) {
642 pr_debug("%s: timer irq\n", fc->name);
643 outb(fc->ctrlreg | AVM_STATUS0_RES_TIMER, fc->addr + 2);
644 udelay(1);
645 outb(fc->ctrlreg, fc->addr + 2);
646 }
647 spin_unlock(&fc->lock);
648 return IRQ_HANDLED;
649}
650
651static int
652avm_l2l1B(struct mISDNchannel *ch, struct sk_buff *skb)
653{
654 struct bchannel *bch = container_of(ch, struct bchannel, ch);
655 struct fritzcard *fc = bch->hw;
656 int ret = -EINVAL;
657 struct mISDNhead *hh = mISDN_HEAD_P(skb);
Karsten Keil8bfddfb2012-05-15 23:51:02 +0000658 unsigned long flags;
Karsten Keil6115d2f2009-07-22 19:52:24 +0200659
660 switch (hh->prim) {
661 case PH_DATA_REQ:
662 spin_lock_irqsave(&fc->lock, flags);
663 ret = bchannel_senddata(bch, skb);
664 if (ret > 0) { /* direct TX */
Karsten Keil6115d2f2009-07-22 19:52:24 +0200665 hdlc_fill_fifo(bch);
666 ret = 0;
Karsten Keil8bfddfb2012-05-15 23:51:02 +0000667 }
668 spin_unlock_irqrestore(&fc->lock, flags);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200669 return ret;
670 case PH_ACTIVATE_REQ:
671 spin_lock_irqsave(&fc->lock, flags);
672 if (!test_and_set_bit(FLG_ACTIVE, &bch->Flags))
673 ret = modehdlc(bch, ch->protocol);
674 else
675 ret = 0;
676 spin_unlock_irqrestore(&fc->lock, flags);
677 if (!ret)
678 _queue_data(ch, PH_ACTIVATE_IND, MISDN_ID_ANY, 0,
Joe Perches475be4d2012-02-19 19:52:38 -0800679 NULL, GFP_KERNEL);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200680 break;
681 case PH_DEACTIVATE_REQ:
682 spin_lock_irqsave(&fc->lock, flags);
683 mISDN_clear_bchannel(bch);
684 modehdlc(bch, ISDN_P_NONE);
685 spin_unlock_irqrestore(&fc->lock, flags);
686 _queue_data(ch, PH_DEACTIVATE_IND, MISDN_ID_ANY, 0,
Joe Perches475be4d2012-02-19 19:52:38 -0800687 NULL, GFP_KERNEL);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200688 ret = 0;
689 break;
690 }
691 if (!ret)
692 dev_kfree_skb(skb);
693 return ret;
694}
695
696static void
697inithdlc(struct fritzcard *fc)
698{
699 modehdlc(&fc->bch[0], -1);
700 modehdlc(&fc->bch[1], -1);
701}
702
703void
704clear_pending_hdlc_ints(struct fritzcard *fc)
705{
706 u32 val;
707
708 val = read_status(fc, 1);
709 pr_debug("%s: HDLC 1 STA %x\n", fc->name, val);
710 val = read_status(fc, 2);
711 pr_debug("%s: HDLC 2 STA %x\n", fc->name, val);
712}
713
714static void
715reset_avm(struct fritzcard *fc)
716{
717 switch (fc->type) {
718 case AVM_FRITZ_PCI:
719 fc->ctrlreg = AVM_STATUS0_RESET | AVM_STATUS0_DIS_TIMER;
720 break;
721 case AVM_FRITZ_PCIV2:
722 fc->ctrlreg = AVM_STATUS0_RESET;
723 break;
724 }
725 if (debug & DEBUG_HW)
726 pr_notice("%s: reset\n", fc->name);
727 disable_hwirq(fc);
728 mdelay(5);
729 switch (fc->type) {
730 case AVM_FRITZ_PCI:
731 fc->ctrlreg = AVM_STATUS0_DIS_TIMER | AVM_STATUS0_RES_TIMER;
732 disable_hwirq(fc);
733 outb(AVM_STATUS1_ENA_IOM, fc->addr + 3);
734 break;
735 case AVM_FRITZ_PCIV2:
736 fc->ctrlreg = 0;
737 disable_hwirq(fc);
738 break;
739 }
740 mdelay(1);
741 if (debug & DEBUG_HW)
742 pr_notice("%s: S0/S1 %x/%x\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800743 inb(fc->addr + 2), inb(fc->addr + 3));
Karsten Keil6115d2f2009-07-22 19:52:24 +0200744}
745
746static int
747init_card(struct fritzcard *fc)
748{
749 int ret, cnt = 3;
750 u_long flags;
751
752 reset_avm(fc); /* disable IRQ */
753 if (fc->type == AVM_FRITZ_PCIV2)
754 ret = request_irq(fc->irq, avm_fritzv2_interrupt,
Joe Perches475be4d2012-02-19 19:52:38 -0800755 IRQF_SHARED, fc->name, fc);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200756 else
757 ret = request_irq(fc->irq, avm_fritz_interrupt,
Joe Perches475be4d2012-02-19 19:52:38 -0800758 IRQF_SHARED, fc->name, fc);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200759 if (ret) {
760 pr_info("%s: couldn't get interrupt %d\n",
761 fc->name, fc->irq);
762 return ret;
763 }
764 while (cnt--) {
765 spin_lock_irqsave(&fc->lock, flags);
766 ret = fc->isac.init(&fc->isac);
767 if (ret) {
768 spin_unlock_irqrestore(&fc->lock, flags);
769 pr_info("%s: ISAC init failed with %d\n",
770 fc->name, ret);
771 break;
772 }
773 clear_pending_hdlc_ints(fc);
774 inithdlc(fc);
775 enable_hwirq(fc);
776 /* RESET Receiver and Transmitter */
777 if (AVM_FRITZ_PCIV2 == fc->type) {
778 WriteISAC_V2(fc, ISACX_MASK, 0);
779 WriteISAC_V2(fc, ISACX_CMDRD, 0x41);
780 } else {
781 WriteISAC_V1(fc, ISAC_MASK, 0);
782 WriteISAC_V1(fc, ISAC_CMDR, 0x41);
783 }
784 spin_unlock_irqrestore(&fc->lock, flags);
785 /* Timeout 10ms */
786 msleep_interruptible(10);
787 if (debug & DEBUG_HW)
788 pr_notice("%s: IRQ %d count %d\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800789 fc->irq, fc->irqcnt);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200790 if (!fc->irqcnt) {
791 pr_info("%s: IRQ(%d) getting no IRQs during init %d\n",
792 fc->name, fc->irq, 3 - cnt);
793 reset_avm(fc);
794 } else
795 return 0;
796 }
797 free_irq(fc->irq, fc);
798 return -EIO;
799}
800
801static int
802channel_bctrl(struct bchannel *bch, struct mISDN_ctrl_req *cq)
803{
804 int ret = 0;
805 struct fritzcard *fc = bch->hw;
806
807 switch (cq->op) {
808 case MISDN_CTRL_GETOP:
809 cq->op = 0;
810 break;
Joe Perches475be4d2012-02-19 19:52:38 -0800811 /* Nothing implemented yet */
Karsten Keil6115d2f2009-07-22 19:52:24 +0200812 case MISDN_CTRL_FILL_EMPTY:
813 default:
814 pr_info("%s: %s unknown Op %x\n", fc->name, __func__, cq->op);
815 ret = -EINVAL;
816 break;
817 }
818 return ret;
819}
820
821static int
822avm_bctrl(struct mISDNchannel *ch, u32 cmd, void *arg)
823{
824 struct bchannel *bch = container_of(ch, struct bchannel, ch);
825 struct fritzcard *fc = bch->hw;
826 int ret = -EINVAL;
827 u_long flags;
828
829 pr_debug("%s: %s cmd:%x %p\n", fc->name, __func__, cmd, arg);
830 switch (cmd) {
831 case CLOSE_CHANNEL:
832 test_and_clear_bit(FLG_OPEN, &bch->Flags);
Karsten Keil13681122012-05-15 23:51:01 +0000833 spin_lock_irqsave(&fc->lock, flags);
834 mISDN_freebchannel(bch);
835 modehdlc(bch, ISDN_P_NONE);
836 spin_unlock_irqrestore(&fc->lock, flags);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200837 ch->protocol = ISDN_P_NONE;
838 ch->peer = NULL;
839 module_put(THIS_MODULE);
840 ret = 0;
841 break;
842 case CONTROL_CHANNEL:
843 ret = channel_bctrl(bch, arg);
844 break;
845 default:
846 pr_info("%s: %s unknown prim(%x)\n", fc->name, __func__, cmd);
847 }
848 return ret;
849}
850
851static int
852channel_ctrl(struct fritzcard *fc, struct mISDN_ctrl_req *cq)
853{
854 int ret = 0;
855
856 switch (cq->op) {
857 case MISDN_CTRL_GETOP:
Karsten Keilc626c122012-05-04 04:15:33 +0000858 cq->op = MISDN_CTRL_LOOP | MISDN_CTRL_L1_TIMER3;
Karsten Keil6115d2f2009-07-22 19:52:24 +0200859 break;
860 case MISDN_CTRL_LOOP:
861 /* cq->channel: 0 disable, 1 B1 loop 2 B2 loop, 3 both */
862 if (cq->channel < 0 || cq->channel > 3) {
863 ret = -EINVAL;
864 break;
865 }
866 ret = fc->isac.ctrl(&fc->isac, HW_TESTLOOP, cq->channel);
867 break;
Karsten Keilc626c122012-05-04 04:15:33 +0000868 case MISDN_CTRL_L1_TIMER3:
869 ret = fc->isac.ctrl(&fc->isac, HW_TIMER3_VALUE, cq->p1);
870 break;
Karsten Keil6115d2f2009-07-22 19:52:24 +0200871 default:
872 pr_info("%s: %s unknown Op %x\n", fc->name, __func__, cq->op);
873 ret = -EINVAL;
874 break;
875 }
876 return ret;
877}
878
879static int
880open_bchannel(struct fritzcard *fc, struct channel_req *rq)
881{
882 struct bchannel *bch;
883
Dan Carpenter819a1002012-03-26 21:20:48 +0000884 if (rq->adr.channel == 0 || rq->adr.channel > 2)
Karsten Keil6115d2f2009-07-22 19:52:24 +0200885 return -EINVAL;
886 if (rq->protocol == ISDN_P_NONE)
887 return -EINVAL;
888 bch = &fc->bch[rq->adr.channel - 1];
889 if (test_and_set_bit(FLG_OPEN, &bch->Flags))
890 return -EBUSY; /* b-channel can be only open once */
891 test_and_clear_bit(FLG_FILLEMPTY, &bch->Flags);
892 bch->ch.protocol = rq->protocol;
893 rq->ch = &bch->ch;
894 return 0;
895}
896
897/*
898 * device control function
899 */
900static int
901avm_dctrl(struct mISDNchannel *ch, u32 cmd, void *arg)
902{
903 struct mISDNdevice *dev = container_of(ch, struct mISDNdevice, D);
904 struct dchannel *dch = container_of(dev, struct dchannel, dev);
905 struct fritzcard *fc = dch->hw;
906 struct channel_req *rq;
907 int err = 0;
908
909 pr_debug("%s: %s cmd:%x %p\n", fc->name, __func__, cmd, arg);
910 switch (cmd) {
911 case OPEN_CHANNEL:
912 rq = arg;
913 if (rq->protocol == ISDN_P_TE_S0)
914 err = fc->isac.open(&fc->isac, rq);
915 else
916 err = open_bchannel(fc, rq);
917 if (err)
918 break;
919 if (!try_module_get(THIS_MODULE))
920 pr_info("%s: cannot get module\n", fc->name);
921 break;
922 case CLOSE_CHANNEL:
923 pr_debug("%s: dev(%d) close from %p\n", fc->name, dch->dev.id,
Joe Perches475be4d2012-02-19 19:52:38 -0800924 __builtin_return_address(0));
Karsten Keil6115d2f2009-07-22 19:52:24 +0200925 module_put(THIS_MODULE);
926 break;
927 case CONTROL_CHANNEL:
928 err = channel_ctrl(fc, arg);
929 break;
930 default:
931 pr_debug("%s: %s unknown command %x\n",
Joe Perches475be4d2012-02-19 19:52:38 -0800932 fc->name, __func__, cmd);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200933 return -EINVAL;
934 }
935 return err;
936}
937
938int
939setup_fritz(struct fritzcard *fc)
940{
941 u32 val, ver;
942
943 if (!request_region(fc->addr, 32, fc->name)) {
944 pr_info("%s: AVM config port %x-%x already in use\n",
945 fc->name, fc->addr, fc->addr + 31);
946 return -EIO;
947 }
948 switch (fc->type) {
949 case AVM_FRITZ_PCI:
950 val = inl(fc->addr);
951 outl(AVM_HDLC_1, fc->addr + CHIP_INDEX);
952 ver = inl(fc->addr + CHIP_WINDOW + HDLC_STATUS) >> 24;
953 if (debug & DEBUG_HW) {
954 pr_notice("%s: PCI stat %#x\n", fc->name, val);
955 pr_notice("%s: PCI Class %X Rev %d\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800956 val & 0xff, (val >> 8) & 0xff);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200957 pr_notice("%s: HDLC version %x\n", fc->name, ver & 0xf);
958 }
959 ASSIGN_FUNC(V1, ISAC, fc->isac);
960 fc->isac.type = IPAC_TYPE_ISAC;
961 break;
962 case AVM_FRITZ_PCIV2:
963 val = inl(fc->addr);
964 ver = inl(fc->addr + AVM_HDLC_STATUS_1) >> 24;
965 if (debug & DEBUG_HW) {
966 pr_notice("%s: PCI V2 stat %#x\n", fc->name, val);
967 pr_notice("%s: PCI V2 Class %X Rev %d\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800968 val & 0xff, (val >> 8) & 0xff);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200969 pr_notice("%s: HDLC version %x\n", fc->name, ver & 0xf);
970 }
971 ASSIGN_FUNC(V2, ISAC, fc->isac);
972 fc->isac.type = IPAC_TYPE_ISACX;
973 break;
974 default:
975 release_region(fc->addr, 32);
976 pr_info("%s: AVM unknown type %d\n", fc->name, fc->type);
977 return -ENODEV;
978 }
979 pr_notice("%s: %s config irq:%d base:0x%X\n", fc->name,
Joe Perches475be4d2012-02-19 19:52:38 -0800980 (fc->type == AVM_FRITZ_PCI) ? "AVM Fritz!CARD PCI" :
981 "AVM Fritz!CARD PCIv2", fc->irq, fc->addr);
Karsten Keil6115d2f2009-07-22 19:52:24 +0200982 return 0;
983}
984
985static void
986release_card(struct fritzcard *card)
987{
988 u_long flags;
989
990 disable_hwirq(card);
991 spin_lock_irqsave(&card->lock, flags);
992 modehdlc(&card->bch[0], ISDN_P_NONE);
993 modehdlc(&card->bch[1], ISDN_P_NONE);
994 spin_unlock_irqrestore(&card->lock, flags);
995 card->isac.release(&card->isac);
996 free_irq(card->irq, card);
997 mISDN_freebchannel(&card->bch[1]);
998 mISDN_freebchannel(&card->bch[0]);
999 mISDN_unregister_device(&card->isac.dch.dev);
1000 release_region(card->addr, 32);
1001 pci_disable_device(card->pdev);
1002 pci_set_drvdata(card->pdev, NULL);
1003 write_lock_irqsave(&card_lock, flags);
1004 list_del(&card->list);
1005 write_unlock_irqrestore(&card_lock, flags);
1006 kfree(card);
1007 AVM_cnt--;
1008}
1009
1010static int __devinit
1011setup_instance(struct fritzcard *card)
1012{
1013 int i, err;
1014 u_long flags;
1015
1016 snprintf(card->name, MISDN_MAX_IDLEN - 1, "AVM.%d", AVM_cnt + 1);
1017 write_lock_irqsave(&card_lock, flags);
1018 list_add_tail(&card->list, &Cards);
1019 write_unlock_irqrestore(&card_lock, flags);
1020
1021 _set_debug(card);
1022 card->isac.name = card->name;
1023 spin_lock_init(&card->lock);
1024 card->isac.hwlock = &card->lock;
1025 mISDNisac_init(&card->isac, card);
1026
1027 card->isac.dch.dev.Bprotocols = (1 << (ISDN_P_B_RAW & ISDN_P_B_MASK)) |
Joe Perches475be4d2012-02-19 19:52:38 -08001028 (1 << (ISDN_P_B_HDLC & ISDN_P_B_MASK));
Karsten Keil6115d2f2009-07-22 19:52:24 +02001029 card->isac.dch.dev.D.ctrl = avm_dctrl;
1030 for (i = 0; i < 2; i++) {
1031 card->bch[i].nr = i + 1;
1032 set_channelmap(i + 1, card->isac.dch.dev.channelmap);
1033 mISDN_initbchannel(&card->bch[i], MAX_DATA_MEM);
1034 card->bch[i].hw = card;
1035 card->bch[i].ch.send = avm_l2l1B;
1036 card->bch[i].ch.ctrl = avm_bctrl;
1037 card->bch[i].ch.nr = i + 1;
1038 list_add(&card->bch[i].ch.list, &card->isac.dch.dev.bchannels);
1039 }
1040 err = setup_fritz(card);
1041 if (err)
1042 goto error;
1043 err = mISDN_register_device(&card->isac.dch.dev, &card->pdev->dev,
Joe Perches475be4d2012-02-19 19:52:38 -08001044 card->name);
Karsten Keil6115d2f2009-07-22 19:52:24 +02001045 if (err)
1046 goto error_reg;
1047 err = init_card(card);
1048 if (!err) {
1049 AVM_cnt++;
1050 pr_notice("AVM %d cards installed DEBUG\n", AVM_cnt);
1051 return 0;
1052 }
1053 mISDN_unregister_device(&card->isac.dch.dev);
1054error_reg:
1055 release_region(card->addr, 32);
1056error:
1057 card->isac.release(&card->isac);
1058 mISDN_freebchannel(&card->bch[1]);
1059 mISDN_freebchannel(&card->bch[0]);
1060 write_lock_irqsave(&card_lock, flags);
1061 list_del(&card->list);
1062 write_unlock_irqrestore(&card_lock, flags);
1063 kfree(card);
1064 return err;
1065}
1066
1067static int __devinit
1068fritzpci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
1069{
1070 int err = -ENOMEM;
1071 struct fritzcard *card;
1072
1073 card = kzalloc(sizeof(struct fritzcard), GFP_KERNEL);
1074 if (!card) {
1075 pr_info("No kmem for fritzcard\n");
1076 return err;
1077 }
1078 if (pdev->device == PCI_DEVICE_ID_AVM_A1_V2)
1079 card->type = AVM_FRITZ_PCIV2;
1080 else
1081 card->type = AVM_FRITZ_PCI;
1082 card->pdev = pdev;
1083 err = pci_enable_device(pdev);
1084 if (err) {
1085 kfree(card);
1086 return err;
1087 }
1088
1089 pr_notice("mISDN: found adapter %s at %s\n",
Joe Perches475be4d2012-02-19 19:52:38 -08001090 (char *) ent->driver_data, pci_name(pdev));
Karsten Keil6115d2f2009-07-22 19:52:24 +02001091
1092 card->addr = pci_resource_start(pdev, 1);
1093 card->irq = pdev->irq;
1094 pci_set_drvdata(pdev, card);
1095 err = setup_instance(card);
1096 if (err)
1097 pci_set_drvdata(pdev, NULL);
1098 return err;
1099}
1100
1101static void __devexit
1102fritz_remove_pci(struct pci_dev *pdev)
1103{
1104 struct fritzcard *card = pci_get_drvdata(pdev);
1105
1106 if (card)
1107 release_card(card);
1108 else
1109 if (debug)
Uwe Kleine-König698f9312010-07-02 20:41:51 +02001110 pr_info("%s: drvdata already removed\n", __func__);
Karsten Keil6115d2f2009-07-22 19:52:24 +02001111}
1112
1113static struct pci_device_id fcpci_ids[] __devinitdata = {
1114 { PCI_VENDOR_ID_AVM, PCI_DEVICE_ID_AVM_A1, PCI_ANY_ID, PCI_ANY_ID,
1115 0, 0, (unsigned long) "Fritz!Card PCI"},
1116 { PCI_VENDOR_ID_AVM, PCI_DEVICE_ID_AVM_A1_V2, PCI_ANY_ID, PCI_ANY_ID,
1117 0, 0, (unsigned long) "Fritz!Card PCI v2" },
1118 { }
1119};
1120MODULE_DEVICE_TABLE(pci, fcpci_ids);
1121
1122static struct pci_driver fcpci_driver = {
1123 .name = "fcpci",
1124 .probe = fritzpci_probe,
1125 .remove = __devexit_p(fritz_remove_pci),
1126 .id_table = fcpci_ids,
1127};
1128
1129static int __init AVM_init(void)
1130{
1131 int err;
1132
1133 pr_notice("AVM Fritz PCI driver Rev. %s\n", AVMFRITZ_REV);
1134 err = pci_register_driver(&fcpci_driver);
1135 return err;
1136}
1137
1138static void __exit AVM_cleanup(void)
1139{
1140 pci_unregister_driver(&fcpci_driver);
1141}
1142
1143module_init(AVM_init);
1144module_exit(AVM_cleanup);