1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Copyright IBM Corp. 2001, 2007
4 * Authors: Fritz Elfert (felfert@millenux.com)
5 * Peter Tiedemann (ptiedem@de.ibm.com)
6 * MPC additions :
7 * Belinda Thompson (belindat@us.ibm.com)
8 * Andy Richter (richtera@us.ibm.com)
9 */
10
11 #undef DEBUG
12 #undef DEBUGDATA
13 #undef DEBUGCCW
14
15 #define pr_fmt(fmt) "ctcm: " fmt
16
17 #include <linux/module.h>
18 #include <linux/init.h>
19 #include <linux/kernel.h>
20 #include <linux/slab.h>
21 #include <linux/errno.h>
22 #include <linux/types.h>
23 #include <linux/interrupt.h>
24 #include <linux/timer.h>
25 #include <linux/bitops.h>
26
27 #include <linux/signal.h>
28 #include <linux/string.h>
29
30 #include <linux/ip.h>
31 #include <linux/if_arp.h>
32 #include <linux/tcp.h>
33 #include <linux/skbuff.h>
34 #include <linux/ctype.h>
35 #include <net/dst.h>
36
37 #include <linux/io.h>
38 #include <asm/ccwdev.h>
39 #include <asm/ccwgroup.h>
40 #include <linux/uaccess.h>
41
42 #include <asm/idals.h>
43
44 #include "fsm.h"
45
46 #include "ctcm_dbug.h"
47 #include "ctcm_main.h"
48 #include "ctcm_fsms.h"
49
50 const char *dev_state_names[] = {
51 [DEV_STATE_STOPPED] = "Stopped",
52 [DEV_STATE_STARTWAIT_RXTX] = "StartWait RXTX",
53 [DEV_STATE_STARTWAIT_RX] = "StartWait RX",
54 [DEV_STATE_STARTWAIT_TX] = "StartWait TX",
55 [DEV_STATE_STOPWAIT_RXTX] = "StopWait RXTX",
56 [DEV_STATE_STOPWAIT_RX] = "StopWait RX",
57 [DEV_STATE_STOPWAIT_TX] = "StopWait TX",
58 [DEV_STATE_RUNNING] = "Running",
59 };
60
61 const char *dev_event_names[] = {
62 [DEV_EVENT_START] = "Start",
63 [DEV_EVENT_STOP] = "Stop",
64 [DEV_EVENT_RXUP] = "RX up",
65 [DEV_EVENT_TXUP] = "TX up",
66 [DEV_EVENT_RXDOWN] = "RX down",
67 [DEV_EVENT_TXDOWN] = "TX down",
68 [DEV_EVENT_RESTART] = "Restart",
69 };
70
71 const char *ctc_ch_event_names[] = {
72 [CTC_EVENT_IO_SUCCESS] = "ccw_device success",
73 [CTC_EVENT_IO_EBUSY] = "ccw_device busy",
74 [CTC_EVENT_IO_ENODEV] = "ccw_device enodev",
75 [CTC_EVENT_IO_UNKNOWN] = "ccw_device unknown",
76 [CTC_EVENT_ATTNBUSY] = "Status ATTN & BUSY",
77 [CTC_EVENT_ATTN] = "Status ATTN",
78 [CTC_EVENT_BUSY] = "Status BUSY",
79 [CTC_EVENT_UC_RCRESET] = "Unit check remote reset",
80 [CTC_EVENT_UC_RSRESET] = "Unit check remote system reset",
81 [CTC_EVENT_UC_TXTIMEOUT] = "Unit check TX timeout",
82 [CTC_EVENT_UC_TXPARITY] = "Unit check TX parity",
83 [CTC_EVENT_UC_HWFAIL] = "Unit check Hardware failure",
84 [CTC_EVENT_UC_RXPARITY] = "Unit check RX parity",
85 [CTC_EVENT_UC_ZERO] = "Unit check ZERO",
86 [CTC_EVENT_UC_UNKNOWN] = "Unit check Unknown",
87 [CTC_EVENT_SC_UNKNOWN] = "SubChannel check Unknown",
88 [CTC_EVENT_MC_FAIL] = "Machine check failure",
89 [CTC_EVENT_MC_GOOD] = "Machine check operational",
90 [CTC_EVENT_IRQ] = "IRQ normal",
91 [CTC_EVENT_FINSTAT] = "IRQ final",
92 [CTC_EVENT_TIMER] = "Timer",
93 [CTC_EVENT_START] = "Start",
94 [CTC_EVENT_STOP] = "Stop",
95 /*
96 * additional MPC events
97 */
98 [CTC_EVENT_SEND_XID] = "XID Exchange",
99 [CTC_EVENT_RSWEEP_TIMER] = "MPC Group Sweep Timer",
100 };
101
102 const char *ctc_ch_state_names[] = {
103 [CTC_STATE_IDLE] = "Idle",
104 [CTC_STATE_STOPPED] = "Stopped",
105 [CTC_STATE_STARTWAIT] = "StartWait",
106 [CTC_STATE_STARTRETRY] = "StartRetry",
107 [CTC_STATE_SETUPWAIT] = "SetupWait",
108 [CTC_STATE_RXINIT] = "RX init",
109 [CTC_STATE_TXINIT] = "TX init",
110 [CTC_STATE_RX] = "RX",
111 [CTC_STATE_TX] = "TX",
112 [CTC_STATE_RXIDLE] = "RX idle",
113 [CTC_STATE_TXIDLE] = "TX idle",
114 [CTC_STATE_RXERR] = "RX error",
115 [CTC_STATE_TXERR] = "TX error",
116 [CTC_STATE_TERM] = "Terminating",
117 [CTC_STATE_DTERM] = "Restarting",
118 [CTC_STATE_NOTOP] = "Not operational",
119 /*
120 * additional MPC states
121 */
122 [CH_XID0_PENDING] = "Pending XID0 Start",
123 [CH_XID0_INPROGRESS] = "In XID0 Negotiations ",
124 [CH_XID7_PENDING] = "Pending XID7 P1 Start",
125 [CH_XID7_PENDING1] = "Active XID7 P1 Exchange ",
126 [CH_XID7_PENDING2] = "Pending XID7 P2 Start ",
127 [CH_XID7_PENDING3] = "Active XID7 P2 Exchange ",
128 [CH_XID7_PENDING4] = "XID7 Complete - Pending READY ",
129 };
130
131 static void ctcm_action_nop(fsm_instance *fi, int event, void *arg);
132
133 /*
134 * ----- static ctcm actions for channel statemachine -----
135 *
136 */
137 static void chx_txdone(fsm_instance *fi, int event, void *arg);
138 static void chx_rx(fsm_instance *fi, int event, void *arg);
139 static void chx_rxidle(fsm_instance *fi, int event, void *arg);
140 static void chx_firstio(fsm_instance *fi, int event, void *arg);
141 static void ctcm_chx_setmode(fsm_instance *fi, int event, void *arg);
142 static void ctcm_chx_start(fsm_instance *fi, int event, void *arg);
143 static void ctcm_chx_haltio(fsm_instance *fi, int event, void *arg);
144 static void ctcm_chx_stopped(fsm_instance *fi, int event, void *arg);
145 static void ctcm_chx_stop(fsm_instance *fi, int event, void *arg);
146 static void ctcm_chx_fail(fsm_instance *fi, int event, void *arg);
147 static void ctcm_chx_setuperr(fsm_instance *fi, int event, void *arg);
148 static void ctcm_chx_restart(fsm_instance *fi, int event, void *arg);
149 static void ctcm_chx_rxiniterr(fsm_instance *fi, int event, void *arg);
150 static void ctcm_chx_rxinitfail(fsm_instance *fi, int event, void *arg);
151 static void ctcm_chx_rxdisc(fsm_instance *fi, int event, void *arg);
152 static void ctcm_chx_txiniterr(fsm_instance *fi, int event, void *arg);
153 static void ctcm_chx_txretry(fsm_instance *fi, int event, void *arg);
154 static void ctcm_chx_iofatal(fsm_instance *fi, int event, void *arg);
155
156 /*
157 * ----- static ctcmpc actions for ctcmpc channel statemachine -----
158 *
159 */
160 static void ctcmpc_chx_txdone(fsm_instance *fi, int event, void *arg);
161 static void ctcmpc_chx_rx(fsm_instance *fi, int event, void *arg);
162 static void ctcmpc_chx_firstio(fsm_instance *fi, int event, void *arg);
163 /* shared :
164 static void ctcm_chx_setmode(fsm_instance *fi, int event, void *arg);
165 static void ctcm_chx_start(fsm_instance *fi, int event, void *arg);
166 static void ctcm_chx_haltio(fsm_instance *fi, int event, void *arg);
167 static void ctcm_chx_stopped(fsm_instance *fi, int event, void *arg);
168 static void ctcm_chx_stop(fsm_instance *fi, int event, void *arg);
169 static void ctcm_chx_fail(fsm_instance *fi, int event, void *arg);
170 static void ctcm_chx_setuperr(fsm_instance *fi, int event, void *arg);
171 static void ctcm_chx_restart(fsm_instance *fi, int event, void *arg);
172 static void ctcm_chx_rxiniterr(fsm_instance *fi, int event, void *arg);
173 static void ctcm_chx_rxinitfail(fsm_instance *fi, int event, void *arg);
174 static void ctcm_chx_rxdisc(fsm_instance *fi, int event, void *arg);
175 static void ctcm_chx_txiniterr(fsm_instance *fi, int event, void *arg);
176 static void ctcm_chx_txretry(fsm_instance *fi, int event, void *arg);
177 static void ctcm_chx_iofatal(fsm_instance *fi, int event, void *arg);
178 */
179 static void ctcmpc_chx_attn(fsm_instance *fsm, int event, void *arg);
180 static void ctcmpc_chx_attnbusy(fsm_instance *, int, void *);
181 static void ctcmpc_chx_resend(fsm_instance *, int, void *);
182 static void ctcmpc_chx_send_sweep(fsm_instance *fsm, int event, void *arg);
183
184 /*
185 * Check return code of a preceding ccw_device call, halt_IO etc...
186 *
187 * ch : The channel, the error belongs to.
188 * Returns the error code (!= 0) to inspect.
189 */
ctcm_ccw_check_rc(struct channel * ch,int rc,char * msg)190 void ctcm_ccw_check_rc(struct channel *ch, int rc, char *msg)
191 {
192 CTCM_DBF_TEXT_(ERROR, CTC_DBF_ERROR,
193 "%s(%s): %s: %04x\n",
194 CTCM_FUNTAIL, ch->id, msg, rc);
195 switch (rc) {
196 case -EBUSY:
197 pr_info("%s: The communication peer is busy\n",
198 ch->id);
199 fsm_event(ch->fsm, CTC_EVENT_IO_EBUSY, ch);
200 break;
201 case -ENODEV:
202 pr_err("%s: The specified target device is not valid\n",
203 ch->id);
204 fsm_event(ch->fsm, CTC_EVENT_IO_ENODEV, ch);
205 break;
206 default:
207 pr_err("An I/O operation resulted in error %04x\n",
208 rc);
209 fsm_event(ch->fsm, CTC_EVENT_IO_UNKNOWN, ch);
210 }
211 }
212
ctcm_purge_skb_queue(struct sk_buff_head * q)213 void ctcm_purge_skb_queue(struct sk_buff_head *q)
214 {
215 struct sk_buff *skb;
216
217 CTCM_DBF_TEXT(TRACE, CTC_DBF_DEBUG, __func__);
218
219 while ((skb = skb_dequeue(q))) {
220 refcount_dec(&skb->users);
221 dev_kfree_skb_any(skb);
222 }
223 }
224
225 /*
226 * NOP action for statemachines
227 */
ctcm_action_nop(fsm_instance * fi,int event,void * arg)228 static void ctcm_action_nop(fsm_instance *fi, int event, void *arg)
229 {
230 }
231
232 /*
233 * Actions for channel - statemachines.
234 */
235
236 /*
237 * Normal data has been send. Free the corresponding
238 * skb (it's in io_queue), reset dev->tbusy and
239 * revert to idle state.
240 *
241 * fi An instance of a channel statemachine.
242 * event The event, just happened.
243 * arg Generic pointer, casted from channel * upon call.
244 */
chx_txdone(fsm_instance * fi,int event,void * arg)245 static void chx_txdone(fsm_instance *fi, int event, void *arg)
246 {
247 struct channel *ch = arg;
248 struct net_device *dev = ch->netdev;
249 struct ctcm_priv *priv = dev->ml_priv;
250 struct sk_buff *skb;
251 int first = 1;
252 int i;
253 unsigned long duration;
254 unsigned long done_stamp = jiffies;
255
256 CTCM_PR_DEBUG("%s(%s): %s\n", __func__, ch->id, dev->name);
257
258 duration = done_stamp - ch->prof.send_stamp;
259 if (duration > ch->prof.tx_time)
260 ch->prof.tx_time = duration;
261
262 if (ch->irb->scsw.cmd.count != 0)
263 CTCM_DBF_TEXT_(TRACE, CTC_DBF_DEBUG,
264 "%s(%s): TX not complete, remaining %d bytes",
265 CTCM_FUNTAIL, dev->name, ch->irb->scsw.cmd.count);
266 fsm_deltimer(&ch->timer);
267 while ((skb = skb_dequeue(&ch->io_queue))) {
268 priv->stats.tx_packets++;
269 priv->stats.tx_bytes += skb->len - LL_HEADER_LENGTH;
270 if (first) {
271 priv->stats.tx_bytes += 2;
272 first = 0;
273 }
274 refcount_dec(&skb->users);
275 dev_kfree_skb_irq(skb);
276 }
277 spin_lock(&ch->collect_lock);
278 clear_normalized_cda(&ch->ccw[4]);
279 if (ch->collect_len > 0) {
280 int rc;
281
282 if (ctcm_checkalloc_buffer(ch)) {
283 spin_unlock(&ch->collect_lock);
284 return;
285 }
286 ch->trans_skb->data = ch->trans_skb_data;
287 skb_reset_tail_pointer(ch->trans_skb);
288 ch->trans_skb->len = 0;
289 if (ch->prof.maxmulti < (ch->collect_len + 2))
290 ch->prof.maxmulti = ch->collect_len + 2;
291 if (ch->prof.maxcqueue < skb_queue_len(&ch->collect_queue))
292 ch->prof.maxcqueue = skb_queue_len(&ch->collect_queue);
293 *((__u16 *)skb_put(ch->trans_skb, 2)) = ch->collect_len + 2;
294 i = 0;
295 while ((skb = skb_dequeue(&ch->collect_queue))) {
296 skb_copy_from_linear_data(skb,
297 skb_put(ch->trans_skb, skb->len), skb->len);
298 priv->stats.tx_packets++;
299 priv->stats.tx_bytes += skb->len - LL_HEADER_LENGTH;
300 refcount_dec(&skb->users);
301 dev_kfree_skb_irq(skb);
302 i++;
303 }
304 ch->collect_len = 0;
305 spin_unlock(&ch->collect_lock);
306 ch->ccw[1].count = ch->trans_skb->len;
307 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
308 ch->prof.send_stamp = jiffies;
309 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
310 ch->prof.doios_multi++;
311 if (rc != 0) {
312 priv->stats.tx_dropped += i;
313 priv->stats.tx_errors += i;
314 fsm_deltimer(&ch->timer);
315 ctcm_ccw_check_rc(ch, rc, "chained TX");
316 }
317 } else {
318 spin_unlock(&ch->collect_lock);
319 fsm_newstate(fi, CTC_STATE_TXIDLE);
320 }
321 ctcm_clear_busy_do(dev);
322 }
323
324 /*
325 * Initial data is sent.
326 * Notify device statemachine that we are up and
327 * running.
328 *
329 * fi An instance of a channel statemachine.
330 * event The event, just happened.
331 * arg Generic pointer, casted from channel * upon call.
332 */
ctcm_chx_txidle(fsm_instance * fi,int event,void * arg)333 void ctcm_chx_txidle(fsm_instance *fi, int event, void *arg)
334 {
335 struct channel *ch = arg;
336 struct net_device *dev = ch->netdev;
337 struct ctcm_priv *priv = dev->ml_priv;
338
339 CTCM_PR_DEBUG("%s(%s): %s\n", __func__, ch->id, dev->name);
340
341 fsm_deltimer(&ch->timer);
342 fsm_newstate(fi, CTC_STATE_TXIDLE);
343 fsm_event(priv->fsm, DEV_EVENT_TXUP, ch->netdev);
344 }
345
346 /*
347 * Got normal data, check for sanity, queue it up, allocate new buffer
348 * trigger bottom half, and initiate next read.
349 *
350 * fi An instance of a channel statemachine.
351 * event The event, just happened.
352 * arg Generic pointer, casted from channel * upon call.
353 */
chx_rx(fsm_instance * fi,int event,void * arg)354 static void chx_rx(fsm_instance *fi, int event, void *arg)
355 {
356 struct channel *ch = arg;
357 struct net_device *dev = ch->netdev;
358 struct ctcm_priv *priv = dev->ml_priv;
359 int len = ch->max_bufsize - ch->irb->scsw.cmd.count;
360 struct sk_buff *skb = ch->trans_skb;
361 __u16 block_len = *((__u16 *)skb->data);
362 int check_len;
363 int rc;
364
365 fsm_deltimer(&ch->timer);
366 if (len < 8) {
367 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
368 "%s(%s): got packet with length %d < 8\n",
369 CTCM_FUNTAIL, dev->name, len);
370 priv->stats.rx_dropped++;
371 priv->stats.rx_length_errors++;
372 goto again;
373 }
374 if (len > ch->max_bufsize) {
375 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
376 "%s(%s): got packet with length %d > %d\n",
377 CTCM_FUNTAIL, dev->name, len, ch->max_bufsize);
378 priv->stats.rx_dropped++;
379 priv->stats.rx_length_errors++;
380 goto again;
381 }
382
383 /*
384 * VM TCP seems to have a bug sending 2 trailing bytes of garbage.
385 */
386 switch (ch->protocol) {
387 case CTCM_PROTO_S390:
388 case CTCM_PROTO_OS390:
389 check_len = block_len + 2;
390 break;
391 default:
392 check_len = block_len;
393 break;
394 }
395 if ((len < block_len) || (len > check_len)) {
396 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
397 "%s(%s): got block length %d != rx length %d\n",
398 CTCM_FUNTAIL, dev->name, block_len, len);
399 if (do_debug)
400 ctcmpc_dump_skb(skb, 0);
401
402 *((__u16 *)skb->data) = len;
403 priv->stats.rx_dropped++;
404 priv->stats.rx_length_errors++;
405 goto again;
406 }
407 if (block_len > 2) {
408 *((__u16 *)skb->data) = block_len - 2;
409 ctcm_unpack_skb(ch, skb);
410 }
411 again:
412 skb->data = ch->trans_skb_data;
413 skb_reset_tail_pointer(skb);
414 skb->len = 0;
415 if (ctcm_checkalloc_buffer(ch))
416 return;
417 ch->ccw[1].count = ch->max_bufsize;
418 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
419 if (rc != 0)
420 ctcm_ccw_check_rc(ch, rc, "normal RX");
421 }
422
423 /*
424 * Initialize connection by sending a __u16 of value 0.
425 *
426 * fi An instance of a channel statemachine.
427 * event The event, just happened.
428 * arg Generic pointer, casted from channel * upon call.
429 */
chx_firstio(fsm_instance * fi,int event,void * arg)430 static void chx_firstio(fsm_instance *fi, int event, void *arg)
431 {
432 int rc;
433 struct channel *ch = arg;
434 int fsmstate = fsm_getstate(fi);
435
436 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
437 "%s(%s) : %02x",
438 CTCM_FUNTAIL, ch->id, fsmstate);
439
440 ch->sense_rc = 0; /* reset unit check report control */
441 if (fsmstate == CTC_STATE_TXIDLE)
442 CTCM_DBF_TEXT_(TRACE, CTC_DBF_DEBUG,
443 "%s(%s): remote side issued READ?, init.\n",
444 CTCM_FUNTAIL, ch->id);
445 fsm_deltimer(&ch->timer);
446 if (ctcm_checkalloc_buffer(ch))
447 return;
448 if ((fsmstate == CTC_STATE_SETUPWAIT) &&
449 (ch->protocol == CTCM_PROTO_OS390)) {
450 /* OS/390 resp. z/OS */
451 if (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) {
452 *((__u16 *)ch->trans_skb->data) = CTCM_INITIAL_BLOCKLEN;
453 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC,
454 CTC_EVENT_TIMER, ch);
455 chx_rxidle(fi, event, arg);
456 } else {
457 struct net_device *dev = ch->netdev;
458 struct ctcm_priv *priv = dev->ml_priv;
459 fsm_newstate(fi, CTC_STATE_TXIDLE);
460 fsm_event(priv->fsm, DEV_EVENT_TXUP, dev);
461 }
462 return;
463 }
464 /*
465 * Don't setup a timer for receiving the initial RX frame
466 * if in compatibility mode, since VM TCP delays the initial
467 * frame until it has some data to send.
468 */
469 if ((CHANNEL_DIRECTION(ch->flags) == CTCM_WRITE) ||
470 (ch->protocol != CTCM_PROTO_S390))
471 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
472
473 *((__u16 *)ch->trans_skb->data) = CTCM_INITIAL_BLOCKLEN;
474 ch->ccw[1].count = 2; /* Transfer only length */
475
476 fsm_newstate(fi, (CHANNEL_DIRECTION(ch->flags) == CTCM_READ)
477 ? CTC_STATE_RXINIT : CTC_STATE_TXINIT);
478 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
479 if (rc != 0) {
480 fsm_deltimer(&ch->timer);
481 fsm_newstate(fi, CTC_STATE_SETUPWAIT);
482 ctcm_ccw_check_rc(ch, rc, "init IO");
483 }
484 /*
485 * If in compatibility mode since we don't setup a timer, we
486 * also signal RX channel up immediately. This enables us
487 * to send packets early which in turn usually triggers some
488 * reply from VM TCP which brings up the RX channel to it's
489 * final state.
490 */
491 if ((CHANNEL_DIRECTION(ch->flags) == CTCM_READ) &&
492 (ch->protocol == CTCM_PROTO_S390)) {
493 struct net_device *dev = ch->netdev;
494 struct ctcm_priv *priv = dev->ml_priv;
495 fsm_event(priv->fsm, DEV_EVENT_RXUP, dev);
496 }
497 }
498
499 /*
500 * Got initial data, check it. If OK,
501 * notify device statemachine that we are up and
502 * running.
503 *
504 * fi An instance of a channel statemachine.
505 * event The event, just happened.
506 * arg Generic pointer, casted from channel * upon call.
507 */
chx_rxidle(fsm_instance * fi,int event,void * arg)508 static void chx_rxidle(fsm_instance *fi, int event, void *arg)
509 {
510 struct channel *ch = arg;
511 struct net_device *dev = ch->netdev;
512 struct ctcm_priv *priv = dev->ml_priv;
513 __u16 buflen;
514 int rc;
515
516 fsm_deltimer(&ch->timer);
517 buflen = *((__u16 *)ch->trans_skb->data);
518 CTCM_PR_DEBUG("%s: %s: Initial RX count = %d\n",
519 __func__, dev->name, buflen);
520
521 if (buflen >= CTCM_INITIAL_BLOCKLEN) {
522 if (ctcm_checkalloc_buffer(ch))
523 return;
524 ch->ccw[1].count = ch->max_bufsize;
525 fsm_newstate(fi, CTC_STATE_RXIDLE);
526 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
527 if (rc != 0) {
528 fsm_newstate(fi, CTC_STATE_RXINIT);
529 ctcm_ccw_check_rc(ch, rc, "initial RX");
530 } else
531 fsm_event(priv->fsm, DEV_EVENT_RXUP, dev);
532 } else {
533 CTCM_PR_DEBUG("%s: %s: Initial RX count %d not %d\n",
534 __func__, dev->name,
535 buflen, CTCM_INITIAL_BLOCKLEN);
536 chx_firstio(fi, event, arg);
537 }
538 }
539
540 /*
541 * Set channel into extended mode.
542 *
543 * fi An instance of a channel statemachine.
544 * event The event, just happened.
545 * arg Generic pointer, casted from channel * upon call.
546 */
ctcm_chx_setmode(fsm_instance * fi,int event,void * arg)547 static void ctcm_chx_setmode(fsm_instance *fi, int event, void *arg)
548 {
549 struct channel *ch = arg;
550 int rc;
551 unsigned long saveflags = 0;
552 int timeout = CTCM_TIME_5_SEC;
553
554 fsm_deltimer(&ch->timer);
555 if (IS_MPC(ch)) {
556 timeout = 1500;
557 CTCM_PR_DEBUG("enter %s: cp=%i ch=0x%p id=%s\n",
558 __func__, smp_processor_id(), ch, ch->id);
559 }
560 fsm_addtimer(&ch->timer, timeout, CTC_EVENT_TIMER, ch);
561 fsm_newstate(fi, CTC_STATE_SETUPWAIT);
562 CTCM_CCW_DUMP((char *)&ch->ccw[6], sizeof(struct ccw1) * 2);
563
564 if (event == CTC_EVENT_TIMER) /* only for timer not yet locked */
565 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
566 /* Such conditional locking is undeterministic in
567 * static view. => ignore sparse warnings here. */
568
569 rc = ccw_device_start(ch->cdev, &ch->ccw[6], 0, 0xff, 0);
570 if (event == CTC_EVENT_TIMER) /* see above comments */
571 spin_unlock_irqrestore(get_ccwdev_lock(ch->cdev), saveflags);
572 if (rc != 0) {
573 fsm_deltimer(&ch->timer);
574 fsm_newstate(fi, CTC_STATE_STARTWAIT);
575 ctcm_ccw_check_rc(ch, rc, "set Mode");
576 } else
577 ch->retry = 0;
578 }
579
580 /*
581 * Setup channel.
582 *
583 * fi An instance of a channel statemachine.
584 * event The event, just happened.
585 * arg Generic pointer, casted from channel * upon call.
586 */
ctcm_chx_start(fsm_instance * fi,int event,void * arg)587 static void ctcm_chx_start(fsm_instance *fi, int event, void *arg)
588 {
589 struct channel *ch = arg;
590 unsigned long saveflags;
591 int rc;
592
593 CTCM_DBF_TEXT_(SETUP, CTC_DBF_INFO, "%s(%s): %s",
594 CTCM_FUNTAIL, ch->id,
595 (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) ? "RX" : "TX");
596
597 if (ch->trans_skb != NULL) {
598 clear_normalized_cda(&ch->ccw[1]);
599 dev_kfree_skb(ch->trans_skb);
600 ch->trans_skb = NULL;
601 }
602 if (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) {
603 ch->ccw[1].cmd_code = CCW_CMD_READ;
604 ch->ccw[1].flags = CCW_FLAG_SLI;
605 ch->ccw[1].count = 0;
606 } else {
607 ch->ccw[1].cmd_code = CCW_CMD_WRITE;
608 ch->ccw[1].flags = CCW_FLAG_SLI | CCW_FLAG_CC;
609 ch->ccw[1].count = 0;
610 }
611 if (ctcm_checkalloc_buffer(ch)) {
612 CTCM_DBF_TEXT_(TRACE, CTC_DBF_DEBUG,
613 "%s(%s): %s trans_skb alloc delayed "
614 "until first transfer",
615 CTCM_FUNTAIL, ch->id,
616 (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) ?
617 "RX" : "TX");
618 }
619 ch->ccw[0].cmd_code = CCW_CMD_PREPARE;
620 ch->ccw[0].flags = CCW_FLAG_SLI | CCW_FLAG_CC;
621 ch->ccw[0].count = 0;
622 ch->ccw[0].cda = 0;
623 ch->ccw[2].cmd_code = CCW_CMD_NOOP; /* jointed CE + DE */
624 ch->ccw[2].flags = CCW_FLAG_SLI;
625 ch->ccw[2].count = 0;
626 ch->ccw[2].cda = 0;
627 memcpy(&ch->ccw[3], &ch->ccw[0], sizeof(struct ccw1) * 3);
628 ch->ccw[4].cda = 0;
629 ch->ccw[4].flags &= ~CCW_FLAG_IDA;
630
631 fsm_newstate(fi, CTC_STATE_STARTWAIT);
632 fsm_addtimer(&ch->timer, 1000, CTC_EVENT_TIMER, ch);
633 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
634 rc = ccw_device_halt(ch->cdev, 0);
635 spin_unlock_irqrestore(get_ccwdev_lock(ch->cdev), saveflags);
636 if (rc != 0) {
637 if (rc != -EBUSY)
638 fsm_deltimer(&ch->timer);
639 ctcm_ccw_check_rc(ch, rc, "initial HaltIO");
640 }
641 }
642
643 /*
644 * Shutdown a channel.
645 *
646 * fi An instance of a channel statemachine.
647 * event The event, just happened.
648 * arg Generic pointer, casted from channel * upon call.
649 */
ctcm_chx_haltio(fsm_instance * fi,int event,void * arg)650 static void ctcm_chx_haltio(fsm_instance *fi, int event, void *arg)
651 {
652 struct channel *ch = arg;
653 unsigned long saveflags = 0;
654 int rc;
655 int oldstate;
656
657 fsm_deltimer(&ch->timer);
658 if (IS_MPC(ch))
659 fsm_deltimer(&ch->sweep_timer);
660
661 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
662
663 if (event == CTC_EVENT_STOP) /* only for STOP not yet locked */
664 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
665 /* Such conditional locking is undeterministic in
666 * static view. => ignore sparse warnings here. */
667 oldstate = fsm_getstate(fi);
668 fsm_newstate(fi, CTC_STATE_TERM);
669 rc = ccw_device_halt(ch->cdev, 0);
670
671 if (event == CTC_EVENT_STOP)
672 spin_unlock_irqrestore(get_ccwdev_lock(ch->cdev), saveflags);
673 /* see remark above about conditional locking */
674
675 if (rc != 0 && rc != -EBUSY) {
676 fsm_deltimer(&ch->timer);
677 if (event != CTC_EVENT_STOP) {
678 fsm_newstate(fi, oldstate);
679 ctcm_ccw_check_rc(ch, rc, (char *)__func__);
680 }
681 }
682 }
683
684 /*
685 * Cleanup helper for chx_fail and chx_stopped
686 * cleanup channels queue and notify interface statemachine.
687 *
688 * fi An instance of a channel statemachine.
689 * state The next state (depending on caller).
690 * ch The channel to operate on.
691 */
ctcm_chx_cleanup(fsm_instance * fi,int state,struct channel * ch)692 static void ctcm_chx_cleanup(fsm_instance *fi, int state,
693 struct channel *ch)
694 {
695 struct net_device *dev = ch->netdev;
696 struct ctcm_priv *priv = dev->ml_priv;
697
698 CTCM_DBF_TEXT_(SETUP, CTC_DBF_NOTICE,
699 "%s(%s): %s[%d]\n",
700 CTCM_FUNTAIL, dev->name, ch->id, state);
701
702 fsm_deltimer(&ch->timer);
703 if (IS_MPC(ch))
704 fsm_deltimer(&ch->sweep_timer);
705
706 fsm_newstate(fi, state);
707 if (state == CTC_STATE_STOPPED && ch->trans_skb != NULL) {
708 clear_normalized_cda(&ch->ccw[1]);
709 dev_kfree_skb_any(ch->trans_skb);
710 ch->trans_skb = NULL;
711 }
712
713 ch->th_seg = 0x00;
714 ch->th_seq_num = 0x00;
715 if (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) {
716 skb_queue_purge(&ch->io_queue);
717 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
718 } else {
719 ctcm_purge_skb_queue(&ch->io_queue);
720 if (IS_MPC(ch))
721 ctcm_purge_skb_queue(&ch->sweep_queue);
722 spin_lock(&ch->collect_lock);
723 ctcm_purge_skb_queue(&ch->collect_queue);
724 ch->collect_len = 0;
725 spin_unlock(&ch->collect_lock);
726 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
727 }
728 }
729
730 /*
731 * A channel has successfully been halted.
732 * Cleanup it's queue and notify interface statemachine.
733 *
734 * fi An instance of a channel statemachine.
735 * event The event, just happened.
736 * arg Generic pointer, casted from channel * upon call.
737 */
ctcm_chx_stopped(fsm_instance * fi,int event,void * arg)738 static void ctcm_chx_stopped(fsm_instance *fi, int event, void *arg)
739 {
740 ctcm_chx_cleanup(fi, CTC_STATE_STOPPED, arg);
741 }
742
743 /*
744 * A stop command from device statemachine arrived and we are in
745 * not operational mode. Set state to stopped.
746 *
747 * fi An instance of a channel statemachine.
748 * event The event, just happened.
749 * arg Generic pointer, casted from channel * upon call.
750 */
ctcm_chx_stop(fsm_instance * fi,int event,void * arg)751 static void ctcm_chx_stop(fsm_instance *fi, int event, void *arg)
752 {
753 fsm_newstate(fi, CTC_STATE_STOPPED);
754 }
755
756 /*
757 * A machine check for no path, not operational status or gone device has
758 * happened.
759 * Cleanup queue and notify interface statemachine.
760 *
761 * fi An instance of a channel statemachine.
762 * event The event, just happened.
763 * arg Generic pointer, casted from channel * upon call.
764 */
ctcm_chx_fail(fsm_instance * fi,int event,void * arg)765 static void ctcm_chx_fail(fsm_instance *fi, int event, void *arg)
766 {
767 ctcm_chx_cleanup(fi, CTC_STATE_NOTOP, arg);
768 }
769
770 /*
771 * Handle error during setup of channel.
772 *
773 * fi An instance of a channel statemachine.
774 * event The event, just happened.
775 * arg Generic pointer, casted from channel * upon call.
776 */
ctcm_chx_setuperr(fsm_instance * fi,int event,void * arg)777 static void ctcm_chx_setuperr(fsm_instance *fi, int event, void *arg)
778 {
779 struct channel *ch = arg;
780 struct net_device *dev = ch->netdev;
781 struct ctcm_priv *priv = dev->ml_priv;
782
783 /*
784 * Special case: Got UC_RCRESET on setmode.
785 * This means that remote side isn't setup. In this case
786 * simply retry after some 10 secs...
787 */
788 if ((fsm_getstate(fi) == CTC_STATE_SETUPWAIT) &&
789 ((event == CTC_EVENT_UC_RCRESET) ||
790 (event == CTC_EVENT_UC_RSRESET))) {
791 fsm_newstate(fi, CTC_STATE_STARTRETRY);
792 fsm_deltimer(&ch->timer);
793 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
794 if (!IS_MPC(ch) &&
795 (CHANNEL_DIRECTION(ch->flags) == CTCM_READ)) {
796 int rc = ccw_device_halt(ch->cdev, 0);
797 if (rc != 0)
798 ctcm_ccw_check_rc(ch, rc,
799 "HaltIO in chx_setuperr");
800 }
801 return;
802 }
803
804 CTCM_DBF_TEXT_(ERROR, CTC_DBF_CRIT,
805 "%s(%s) : %s error during %s channel setup state=%s\n",
806 CTCM_FUNTAIL, dev->name, ctc_ch_event_names[event],
807 (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) ? "RX" : "TX",
808 fsm_getstate_str(fi));
809
810 if (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) {
811 fsm_newstate(fi, CTC_STATE_RXERR);
812 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
813 } else {
814 fsm_newstate(fi, CTC_STATE_TXERR);
815 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
816 }
817 }
818
819 /*
820 * Restart a channel after an error.
821 *
822 * fi An instance of a channel statemachine.
823 * event The event, just happened.
824 * arg Generic pointer, casted from channel * upon call.
825 */
ctcm_chx_restart(fsm_instance * fi,int event,void * arg)826 static void ctcm_chx_restart(fsm_instance *fi, int event, void *arg)
827 {
828 struct channel *ch = arg;
829 struct net_device *dev = ch->netdev;
830 unsigned long saveflags = 0;
831 int oldstate;
832 int rc;
833
834 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
835 "%s: %s[%d] of %s\n",
836 CTCM_FUNTAIL, ch->id, event, dev->name);
837
838 fsm_deltimer(&ch->timer);
839
840 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
841 oldstate = fsm_getstate(fi);
842 fsm_newstate(fi, CTC_STATE_STARTWAIT);
843 if (event == CTC_EVENT_TIMER) /* only for timer not yet locked */
844 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
845 /* Such conditional locking is a known problem for
846 * sparse because its undeterministic in static view.
847 * Warnings should be ignored here. */
848 rc = ccw_device_halt(ch->cdev, 0);
849 if (event == CTC_EVENT_TIMER)
850 spin_unlock_irqrestore(get_ccwdev_lock(ch->cdev), saveflags);
851 if (rc != 0) {
852 if (rc != -EBUSY) {
853 fsm_deltimer(&ch->timer);
854 fsm_newstate(fi, oldstate);
855 }
856 ctcm_ccw_check_rc(ch, rc, "HaltIO in ctcm_chx_restart");
857 }
858 }
859
860 /*
861 * Handle error during RX initial handshake (exchange of
862 * 0-length block header)
863 *
864 * fi An instance of a channel statemachine.
865 * event The event, just happened.
866 * arg Generic pointer, casted from channel * upon call.
867 */
ctcm_chx_rxiniterr(fsm_instance * fi,int event,void * arg)868 static void ctcm_chx_rxiniterr(fsm_instance *fi, int event, void *arg)
869 {
870 struct channel *ch = arg;
871 struct net_device *dev = ch->netdev;
872 struct ctcm_priv *priv = dev->ml_priv;
873
874 if (event == CTC_EVENT_TIMER) {
875 if (!IS_MPCDEV(dev))
876 /* TODO : check if MPC deletes timer somewhere */
877 fsm_deltimer(&ch->timer);
878 if (ch->retry++ < 3)
879 ctcm_chx_restart(fi, event, arg);
880 else {
881 fsm_newstate(fi, CTC_STATE_RXERR);
882 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
883 }
884 } else if (event == CTC_EVENT_UC_RCRESET) {
885 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
886 "%s(%s): %s in %s", CTCM_FUNTAIL, ch->id,
887 ctc_ch_event_names[event], fsm_getstate_str(fi));
888
889 dev_info(&dev->dev,
890 "Init handshake not received, peer not ready yet\n");
891 } else {
892 CTCM_DBF_TEXT_(ERROR, CTC_DBF_ERROR,
893 "%s(%s): %s in %s", CTCM_FUNTAIL, ch->id,
894 ctc_ch_event_names[event], fsm_getstate_str(fi));
895
896 dev_warn(&dev->dev,
897 "Initialization failed with RX/TX init handshake "
898 "error %s\n", ctc_ch_event_names[event]);
899 }
900 }
901
902 /*
903 * Notify device statemachine if we gave up initialization
904 * of RX channel.
905 *
906 * fi An instance of a channel statemachine.
907 * event The event, just happened.
908 * arg Generic pointer, casted from channel * upon call.
909 */
ctcm_chx_rxinitfail(fsm_instance * fi,int event,void * arg)910 static void ctcm_chx_rxinitfail(fsm_instance *fi, int event, void *arg)
911 {
912 struct channel *ch = arg;
913 struct net_device *dev = ch->netdev;
914 struct ctcm_priv *priv = dev->ml_priv;
915
916 CTCM_DBF_TEXT_(ERROR, CTC_DBF_ERROR,
917 "%s(%s): RX %s busy, init. fail",
918 CTCM_FUNTAIL, dev->name, ch->id);
919 fsm_newstate(fi, CTC_STATE_RXERR);
920 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
921 }
922
923 /*
924 * Handle RX Unit check remote reset (remote disconnected)
925 *
926 * fi An instance of a channel statemachine.
927 * event The event, just happened.
928 * arg Generic pointer, casted from channel * upon call.
929 */
ctcm_chx_rxdisc(fsm_instance * fi,int event,void * arg)930 static void ctcm_chx_rxdisc(fsm_instance *fi, int event, void *arg)
931 {
932 struct channel *ch = arg;
933 struct channel *ch2;
934 struct net_device *dev = ch->netdev;
935 struct ctcm_priv *priv = dev->ml_priv;
936
937 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
938 "%s: %s: remote disconnect - re-init ...",
939 CTCM_FUNTAIL, dev->name);
940 fsm_deltimer(&ch->timer);
941 /*
942 * Notify device statemachine
943 */
944 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
945 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
946
947 fsm_newstate(fi, CTC_STATE_DTERM);
948 ch2 = priv->channel[CTCM_WRITE];
949 fsm_newstate(ch2->fsm, CTC_STATE_DTERM);
950
951 ccw_device_halt(ch->cdev, 0);
952 ccw_device_halt(ch2->cdev, 0);
953 }
954
955 /*
956 * Handle error during TX channel initialization.
957 *
958 * fi An instance of a channel statemachine.
959 * event The event, just happened.
960 * arg Generic pointer, casted from channel * upon call.
961 */
ctcm_chx_txiniterr(fsm_instance * fi,int event,void * arg)962 static void ctcm_chx_txiniterr(fsm_instance *fi, int event, void *arg)
963 {
964 struct channel *ch = arg;
965 struct net_device *dev = ch->netdev;
966 struct ctcm_priv *priv = dev->ml_priv;
967
968 if (event == CTC_EVENT_TIMER) {
969 fsm_deltimer(&ch->timer);
970 if (ch->retry++ < 3)
971 ctcm_chx_restart(fi, event, arg);
972 else {
973 fsm_newstate(fi, CTC_STATE_TXERR);
974 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
975 }
976 } else if (event == CTC_EVENT_UC_RCRESET) {
977 CTCM_DBF_TEXT_(TRACE, CTC_DBF_NOTICE,
978 "%s(%s): %s in %s", CTCM_FUNTAIL, ch->id,
979 ctc_ch_event_names[event], fsm_getstate_str(fi));
980
981 dev_info(&dev->dev,
982 "Init handshake not sent, peer not ready yet\n");
983 } else {
984 CTCM_DBF_TEXT_(ERROR, CTC_DBF_ERROR,
985 "%s(%s): %s in %s", CTCM_FUNTAIL, ch->id,
986 ctc_ch_event_names[event], fsm_getstate_str(fi));
987
988 dev_warn(&dev->dev,
989 "Initialization failed with RX/TX init handshake "
990 "error %s\n", ctc_ch_event_names[event]);
991 }
992 }
993
994 /*
995 * Handle TX timeout by retrying operation.
996 *
997 * fi An instance of a channel statemachine.
998 * event The event, just happened.
999 * arg Generic pointer, casted from channel * upon call.
1000 */
ctcm_chx_txretry(fsm_instance * fi,int event,void * arg)1001 static void ctcm_chx_txretry(fsm_instance *fi, int event, void *arg)
1002 {
1003 struct channel *ch = arg;
1004 struct net_device *dev = ch->netdev;
1005 struct ctcm_priv *priv = dev->ml_priv;
1006 struct sk_buff *skb;
1007
1008 CTCM_PR_DEBUG("Enter: %s: cp=%i ch=0x%p id=%s\n",
1009 __func__, smp_processor_id(), ch, ch->id);
1010
1011 fsm_deltimer(&ch->timer);
1012 if (ch->retry++ > 3) {
1013 struct mpc_group *gptr = priv->mpcg;
1014 CTCM_DBF_TEXT_(TRACE, CTC_DBF_INFO,
1015 "%s: %s: retries exceeded",
1016 CTCM_FUNTAIL, ch->id);
1017 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
1018 /* call restart if not MPC or if MPC and mpcg fsm is ready.
1019 use gptr as mpc indicator */
1020 if (!(gptr && (fsm_getstate(gptr->fsm) != MPCG_STATE_READY)))
1021 ctcm_chx_restart(fi, event, arg);
1022 goto done;
1023 }
1024
1025 CTCM_DBF_TEXT_(TRACE, CTC_DBF_DEBUG,
1026 "%s : %s: retry %d",
1027 CTCM_FUNTAIL, ch->id, ch->retry);
1028 skb = skb_peek(&ch->io_queue);
1029 if (skb) {
1030 int rc = 0;
1031 unsigned long saveflags = 0;
1032 clear_normalized_cda(&ch->ccw[4]);
1033 ch->ccw[4].count = skb->len;
1034 if (set_normalized_cda(&ch->ccw[4], skb->data)) {
1035 CTCM_DBF_TEXT_(TRACE, CTC_DBF_INFO,
1036 "%s: %s: IDAL alloc failed",
1037 CTCM_FUNTAIL, ch->id);
1038 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
1039 ctcm_chx_restart(fi, event, arg);
1040 goto done;
1041 }
1042 fsm_addtimer(&ch->timer, 1000, CTC_EVENT_TIMER, ch);
1043 if (event == CTC_EVENT_TIMER) /* for TIMER not yet locked */
1044 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
1045 /* Such conditional locking is a known problem for
1046 * sparse because its undeterministic in static view.
1047 * Warnings should be ignored here. */
1048 if (do_debug_ccw)
1049 ctcmpc_dumpit((char *)&ch->ccw[3],
1050 sizeof(struct ccw1) * 3);
1051
1052 rc = ccw_device_start(ch->cdev, &ch->ccw[3], 0, 0xff, 0);
1053 if (event == CTC_EVENT_TIMER)
1054 spin_unlock_irqrestore(get_ccwdev_lock(ch->cdev),
1055 saveflags);
1056 if (rc != 0) {
1057 fsm_deltimer(&ch->timer);
1058 ctcm_ccw_check_rc(ch, rc, "TX in chx_txretry");
1059 ctcm_purge_skb_queue(&ch->io_queue);
1060 }
1061 }
1062 done:
1063 return;
1064 }
1065
1066 /*
1067 * Handle fatal errors during an I/O command.
1068 *
1069 * fi An instance of a channel statemachine.
1070 * event The event, just happened.
1071 * arg Generic pointer, casted from channel * upon call.
1072 */
ctcm_chx_iofatal(fsm_instance * fi,int event,void * arg)1073 static void ctcm_chx_iofatal(fsm_instance *fi, int event, void *arg)
1074 {
1075 struct channel *ch = arg;
1076 struct net_device *dev = ch->netdev;
1077 struct ctcm_priv *priv = dev->ml_priv;
1078 int rd = CHANNEL_DIRECTION(ch->flags);
1079
1080 fsm_deltimer(&ch->timer);
1081 CTCM_DBF_TEXT_(ERROR, CTC_DBF_ERROR,
1082 "%s: %s: %s unrecoverable channel error",
1083 CTCM_FUNTAIL, ch->id, rd == CTCM_READ ? "RX" : "TX");
1084
1085 if (IS_MPC(ch)) {
1086 priv->stats.tx_dropped++;
1087 priv->stats.tx_errors++;
1088 }
1089 if (rd == CTCM_READ) {
1090 fsm_newstate(fi, CTC_STATE_RXERR);
1091 fsm_event(priv->fsm, DEV_EVENT_RXDOWN, dev);
1092 } else {
1093 fsm_newstate(fi, CTC_STATE_TXERR);
1094 fsm_event(priv->fsm, DEV_EVENT_TXDOWN, dev);
1095 }
1096 }
1097
1098 /*
1099 * The ctcm statemachine for a channel.
1100 */
1101 const fsm_node ch_fsm[] = {
1102 { CTC_STATE_STOPPED, CTC_EVENT_STOP, ctcm_action_nop },
1103 { CTC_STATE_STOPPED, CTC_EVENT_START, ctcm_chx_start },
1104 { CTC_STATE_STOPPED, CTC_EVENT_FINSTAT, ctcm_action_nop },
1105 { CTC_STATE_STOPPED, CTC_EVENT_MC_FAIL, ctcm_action_nop },
1106
1107 { CTC_STATE_NOTOP, CTC_EVENT_STOP, ctcm_chx_stop },
1108 { CTC_STATE_NOTOP, CTC_EVENT_START, ctcm_action_nop },
1109 { CTC_STATE_NOTOP, CTC_EVENT_FINSTAT, ctcm_action_nop },
1110 { CTC_STATE_NOTOP, CTC_EVENT_MC_FAIL, ctcm_action_nop },
1111 { CTC_STATE_NOTOP, CTC_EVENT_MC_GOOD, ctcm_chx_start },
1112
1113 { CTC_STATE_STARTWAIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1114 { CTC_STATE_STARTWAIT, CTC_EVENT_START, ctcm_action_nop },
1115 { CTC_STATE_STARTWAIT, CTC_EVENT_FINSTAT, ctcm_chx_setmode },
1116 { CTC_STATE_STARTWAIT, CTC_EVENT_TIMER, ctcm_chx_setuperr },
1117 { CTC_STATE_STARTWAIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1118 { CTC_STATE_STARTWAIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1119
1120 { CTC_STATE_STARTRETRY, CTC_EVENT_STOP, ctcm_chx_haltio },
1121 { CTC_STATE_STARTRETRY, CTC_EVENT_TIMER, ctcm_chx_setmode },
1122 { CTC_STATE_STARTRETRY, CTC_EVENT_FINSTAT, ctcm_action_nop },
1123 { CTC_STATE_STARTRETRY, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1124
1125 { CTC_STATE_SETUPWAIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1126 { CTC_STATE_SETUPWAIT, CTC_EVENT_START, ctcm_action_nop },
1127 { CTC_STATE_SETUPWAIT, CTC_EVENT_FINSTAT, chx_firstio },
1128 { CTC_STATE_SETUPWAIT, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1129 { CTC_STATE_SETUPWAIT, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1130 { CTC_STATE_SETUPWAIT, CTC_EVENT_TIMER, ctcm_chx_setmode },
1131 { CTC_STATE_SETUPWAIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1132 { CTC_STATE_SETUPWAIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1133
1134 { CTC_STATE_RXINIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1135 { CTC_STATE_RXINIT, CTC_EVENT_START, ctcm_action_nop },
1136 { CTC_STATE_RXINIT, CTC_EVENT_FINSTAT, chx_rxidle },
1137 { CTC_STATE_RXINIT, CTC_EVENT_UC_RCRESET, ctcm_chx_rxiniterr },
1138 { CTC_STATE_RXINIT, CTC_EVENT_UC_RSRESET, ctcm_chx_rxiniterr },
1139 { CTC_STATE_RXINIT, CTC_EVENT_TIMER, ctcm_chx_rxiniterr },
1140 { CTC_STATE_RXINIT, CTC_EVENT_ATTNBUSY, ctcm_chx_rxinitfail },
1141 { CTC_STATE_RXINIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1142 { CTC_STATE_RXINIT, CTC_EVENT_UC_ZERO, chx_firstio },
1143 { CTC_STATE_RXINIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1144
1145 { CTC_STATE_RXIDLE, CTC_EVENT_STOP, ctcm_chx_haltio },
1146 { CTC_STATE_RXIDLE, CTC_EVENT_START, ctcm_action_nop },
1147 { CTC_STATE_RXIDLE, CTC_EVENT_FINSTAT, chx_rx },
1148 { CTC_STATE_RXIDLE, CTC_EVENT_UC_RCRESET, ctcm_chx_rxdisc },
1149 { CTC_STATE_RXIDLE, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1150 { CTC_STATE_RXIDLE, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1151 { CTC_STATE_RXIDLE, CTC_EVENT_UC_ZERO, chx_rx },
1152
1153 { CTC_STATE_TXINIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1154 { CTC_STATE_TXINIT, CTC_EVENT_START, ctcm_action_nop },
1155 { CTC_STATE_TXINIT, CTC_EVENT_FINSTAT, ctcm_chx_txidle },
1156 { CTC_STATE_TXINIT, CTC_EVENT_UC_RCRESET, ctcm_chx_txiniterr },
1157 { CTC_STATE_TXINIT, CTC_EVENT_UC_RSRESET, ctcm_chx_txiniterr },
1158 { CTC_STATE_TXINIT, CTC_EVENT_TIMER, ctcm_chx_txiniterr },
1159 { CTC_STATE_TXINIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1160 { CTC_STATE_TXINIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1161
1162 { CTC_STATE_TXIDLE, CTC_EVENT_STOP, ctcm_chx_haltio },
1163 { CTC_STATE_TXIDLE, CTC_EVENT_START, ctcm_action_nop },
1164 { CTC_STATE_TXIDLE, CTC_EVENT_FINSTAT, chx_firstio },
1165 { CTC_STATE_TXIDLE, CTC_EVENT_UC_RCRESET, ctcm_action_nop },
1166 { CTC_STATE_TXIDLE, CTC_EVENT_UC_RSRESET, ctcm_action_nop },
1167 { CTC_STATE_TXIDLE, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1168 { CTC_STATE_TXIDLE, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1169
1170 { CTC_STATE_TERM, CTC_EVENT_STOP, ctcm_action_nop },
1171 { CTC_STATE_TERM, CTC_EVENT_START, ctcm_chx_restart },
1172 { CTC_STATE_TERM, CTC_EVENT_FINSTAT, ctcm_chx_stopped },
1173 { CTC_STATE_TERM, CTC_EVENT_UC_RCRESET, ctcm_action_nop },
1174 { CTC_STATE_TERM, CTC_EVENT_UC_RSRESET, ctcm_action_nop },
1175 { CTC_STATE_TERM, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1176
1177 { CTC_STATE_DTERM, CTC_EVENT_STOP, ctcm_chx_haltio },
1178 { CTC_STATE_DTERM, CTC_EVENT_START, ctcm_chx_restart },
1179 { CTC_STATE_DTERM, CTC_EVENT_FINSTAT, ctcm_chx_setmode },
1180 { CTC_STATE_DTERM, CTC_EVENT_UC_RCRESET, ctcm_action_nop },
1181 { CTC_STATE_DTERM, CTC_EVENT_UC_RSRESET, ctcm_action_nop },
1182 { CTC_STATE_DTERM, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1183
1184 { CTC_STATE_TX, CTC_EVENT_STOP, ctcm_chx_haltio },
1185 { CTC_STATE_TX, CTC_EVENT_START, ctcm_action_nop },
1186 { CTC_STATE_TX, CTC_EVENT_FINSTAT, chx_txdone },
1187 { CTC_STATE_TX, CTC_EVENT_UC_RCRESET, ctcm_chx_txretry },
1188 { CTC_STATE_TX, CTC_EVENT_UC_RSRESET, ctcm_chx_txretry },
1189 { CTC_STATE_TX, CTC_EVENT_TIMER, ctcm_chx_txretry },
1190 { CTC_STATE_TX, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1191 { CTC_STATE_TX, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1192
1193 { CTC_STATE_RXERR, CTC_EVENT_STOP, ctcm_chx_haltio },
1194 { CTC_STATE_TXERR, CTC_EVENT_STOP, ctcm_chx_haltio },
1195 { CTC_STATE_TXERR, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1196 { CTC_STATE_RXERR, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1197 };
1198
1199 int ch_fsm_len = ARRAY_SIZE(ch_fsm);
1200
1201 /*
1202 * MPC actions for mpc channel statemachine
1203 * handling of MPC protocol requires extra
1204 * statemachine and actions which are prefixed ctcmpc_ .
1205 * The ctc_ch_states and ctc_ch_state_names,
1206 * ctc_ch_events and ctc_ch_event_names share the ctcm definitions
1207 * which are expanded by some elements.
1208 */
1209
1210 /*
1211 * Actions for mpc channel statemachine.
1212 */
1213
1214 /*
1215 * Normal data has been send. Free the corresponding
1216 * skb (it's in io_queue), reset dev->tbusy and
1217 * revert to idle state.
1218 *
1219 * fi An instance of a channel statemachine.
1220 * event The event, just happened.
1221 * arg Generic pointer, casted from channel * upon call.
1222 */
ctcmpc_chx_txdone(fsm_instance * fi,int event,void * arg)1223 static void ctcmpc_chx_txdone(fsm_instance *fi, int event, void *arg)
1224 {
1225 struct channel *ch = arg;
1226 struct net_device *dev = ch->netdev;
1227 struct ctcm_priv *priv = dev->ml_priv;
1228 struct mpc_group *grp = priv->mpcg;
1229 struct sk_buff *skb;
1230 int first = 1;
1231 int i;
1232 __u32 data_space;
1233 unsigned long duration;
1234 struct sk_buff *peekskb;
1235 int rc;
1236 struct th_header *header;
1237 struct pdu *p_header;
1238 unsigned long done_stamp = jiffies;
1239
1240 CTCM_PR_DEBUG("Enter %s: %s cp:%i\n",
1241 __func__, dev->name, smp_processor_id());
1242
1243 duration = done_stamp - ch->prof.send_stamp;
1244 if (duration > ch->prof.tx_time)
1245 ch->prof.tx_time = duration;
1246
1247 if (ch->irb->scsw.cmd.count != 0)
1248 CTCM_DBF_TEXT_(MPC_TRACE, CTC_DBF_DEBUG,
1249 "%s(%s): TX not complete, remaining %d bytes",
1250 CTCM_FUNTAIL, dev->name, ch->irb->scsw.cmd.count);
1251 fsm_deltimer(&ch->timer);
1252 while ((skb = skb_dequeue(&ch->io_queue))) {
1253 priv->stats.tx_packets++;
1254 priv->stats.tx_bytes += skb->len - TH_HEADER_LENGTH;
1255 if (first) {
1256 priv->stats.tx_bytes += 2;
1257 first = 0;
1258 }
1259 refcount_dec(&skb->users);
1260 dev_kfree_skb_irq(skb);
1261 }
1262 spin_lock(&ch->collect_lock);
1263 clear_normalized_cda(&ch->ccw[4]);
1264 if ((ch->collect_len <= 0) || (grp->in_sweep != 0)) {
1265 spin_unlock(&ch->collect_lock);
1266 fsm_newstate(fi, CTC_STATE_TXIDLE);
1267 goto done;
1268 }
1269
1270 if (ctcm_checkalloc_buffer(ch)) {
1271 spin_unlock(&ch->collect_lock);
1272 goto done;
1273 }
1274 ch->trans_skb->data = ch->trans_skb_data;
1275 skb_reset_tail_pointer(ch->trans_skb);
1276 ch->trans_skb->len = 0;
1277 if (ch->prof.maxmulti < (ch->collect_len + TH_HEADER_LENGTH))
1278 ch->prof.maxmulti = ch->collect_len + TH_HEADER_LENGTH;
1279 if (ch->prof.maxcqueue < skb_queue_len(&ch->collect_queue))
1280 ch->prof.maxcqueue = skb_queue_len(&ch->collect_queue);
1281 i = 0;
1282 p_header = NULL;
1283 data_space = grp->group_max_buflen - TH_HEADER_LENGTH;
1284
1285 CTCM_PR_DBGDATA("%s: building trans_skb from collect_q"
1286 " data_space:%04x\n",
1287 __func__, data_space);
1288
1289 while ((skb = skb_dequeue(&ch->collect_queue))) {
1290 skb_put_data(ch->trans_skb, skb->data, skb->len);
1291 p_header = (struct pdu *)
1292 (skb_tail_pointer(ch->trans_skb) - skb->len);
1293 p_header->pdu_flag = 0x00;
1294 if (be16_to_cpu(skb->protocol) == ETH_P_SNAP)
1295 p_header->pdu_flag |= 0x60;
1296 else
1297 p_header->pdu_flag |= 0x20;
1298
1299 CTCM_PR_DBGDATA("%s: trans_skb len:%04x \n",
1300 __func__, ch->trans_skb->len);
1301 CTCM_PR_DBGDATA("%s: pdu header and data for up"
1302 " to 32 bytes sent to vtam\n", __func__);
1303 CTCM_D3_DUMP((char *)p_header, min_t(int, skb->len, 32));
1304
1305 ch->collect_len -= skb->len;
1306 data_space -= skb->len;
1307 priv->stats.tx_packets++;
1308 priv->stats.tx_bytes += skb->len;
1309 refcount_dec(&skb->users);
1310 dev_kfree_skb_any(skb);
1311 peekskb = skb_peek(&ch->collect_queue);
1312 if (peekskb->len > data_space)
1313 break;
1314 i++;
1315 }
1316 /* p_header points to the last one we handled */
1317 if (p_header)
1318 p_header->pdu_flag |= PDU_LAST; /*Say it's the last one*/
1319
1320 header = skb_push(ch->trans_skb, TH_HEADER_LENGTH);
1321 memset(header, 0, TH_HEADER_LENGTH);
1322
1323 header->th_ch_flag = TH_HAS_PDU; /* Normal data */
1324 ch->th_seq_num++;
1325 header->th_seq_num = ch->th_seq_num;
1326
1327 CTCM_PR_DBGDATA("%s: ToVTAM_th_seq= %08x\n" ,
1328 __func__, ch->th_seq_num);
1329
1330 CTCM_PR_DBGDATA("%s: trans_skb len:%04x \n",
1331 __func__, ch->trans_skb->len);
1332 CTCM_PR_DBGDATA("%s: up-to-50 bytes of trans_skb "
1333 "data to vtam from collect_q\n", __func__);
1334 CTCM_D3_DUMP((char *)ch->trans_skb->data,
1335 min_t(int, ch->trans_skb->len, 50));
1336
1337 spin_unlock(&ch->collect_lock);
1338 clear_normalized_cda(&ch->ccw[1]);
1339
1340 CTCM_PR_DBGDATA("ccwcda=0x%p data=0x%p\n",
1341 (void *)(u64)dma32_to_u32(ch->ccw[1].cda),
1342 ch->trans_skb->data);
1343 ch->ccw[1].count = ch->max_bufsize;
1344
1345 if (set_normalized_cda(&ch->ccw[1], ch->trans_skb->data)) {
1346 dev_kfree_skb_any(ch->trans_skb);
1347 ch->trans_skb = NULL;
1348 CTCM_DBF_TEXT_(MPC_TRACE, CTC_DBF_ERROR,
1349 "%s: %s: IDAL alloc failed",
1350 CTCM_FUNTAIL, ch->id);
1351 fsm_event(priv->mpcg->fsm, MPCG_EVENT_INOP, dev);
1352 return;
1353 }
1354
1355 CTCM_PR_DBGDATA("ccwcda=0x%p data=0x%p\n",
1356 (void *)(u64)dma32_to_u32(ch->ccw[1].cda),
1357 ch->trans_skb->data);
1358
1359 ch->ccw[1].count = ch->trans_skb->len;
1360 fsm_addtimer(&ch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, ch);
1361 ch->prof.send_stamp = jiffies;
1362 if (do_debug_ccw)
1363 ctcmpc_dumpit((char *)&ch->ccw[0], sizeof(struct ccw1) * 3);
1364 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
1365 ch->prof.doios_multi++;
1366 if (rc != 0) {
1367 priv->stats.tx_dropped += i;
1368 priv->stats.tx_errors += i;
1369 fsm_deltimer(&ch->timer);
1370 ctcm_ccw_check_rc(ch, rc, "chained TX");
1371 }
1372 done:
1373 ctcm_clear_busy(dev);
1374 return;
1375 }
1376
1377 /*
1378 * Got normal data, check for sanity, queue it up, allocate new buffer
1379 * trigger bottom half, and initiate next read.
1380 *
1381 * fi An instance of a channel statemachine.
1382 * event The event, just happened.
1383 * arg Generic pointer, casted from channel * upon call.
1384 */
ctcmpc_chx_rx(fsm_instance * fi,int event,void * arg)1385 static void ctcmpc_chx_rx(fsm_instance *fi, int event, void *arg)
1386 {
1387 struct channel *ch = arg;
1388 struct net_device *dev = ch->netdev;
1389 struct ctcm_priv *priv = dev->ml_priv;
1390 struct mpc_group *grp = priv->mpcg;
1391 struct sk_buff *skb = ch->trans_skb;
1392 struct sk_buff *new_skb;
1393 unsigned long saveflags = 0; /* avoids compiler warning */
1394 int len = ch->max_bufsize - ch->irb->scsw.cmd.count;
1395
1396 CTCM_PR_DEBUG("%s: %s: cp:%i %s maxbuf : %04x, len: %04x\n",
1397 CTCM_FUNTAIL, dev->name, smp_processor_id(),
1398 ch->id, ch->max_bufsize, len);
1399 fsm_deltimer(&ch->timer);
1400
1401 if (skb == NULL) {
1402 CTCM_DBF_TEXT_(MPC_ERROR, CTC_DBF_ERROR,
1403 "%s(%s): TRANS_SKB = NULL",
1404 CTCM_FUNTAIL, dev->name);
1405 goto again;
1406 }
1407
1408 if (len < TH_HEADER_LENGTH) {
1409 CTCM_DBF_TEXT_(MPC_ERROR, CTC_DBF_ERROR,
1410 "%s(%s): packet length %d too short",
1411 CTCM_FUNTAIL, dev->name, len);
1412 priv->stats.rx_dropped++;
1413 priv->stats.rx_length_errors++;
1414 } else {
1415 /* must have valid th header or game over */
1416 __u32 block_len = len;
1417 len = TH_HEADER_LENGTH + XID2_LENGTH + 4;
1418 new_skb = __dev_alloc_skb(ch->max_bufsize, GFP_ATOMIC);
1419
1420 if (new_skb == NULL) {
1421 CTCM_DBF_TEXT_(MPC_ERROR, CTC_DBF_ERROR,
1422 "%s(%s): skb allocation failed",
1423 CTCM_FUNTAIL, dev->name);
1424 fsm_event(priv->mpcg->fsm, MPCG_EVENT_INOP, dev);
1425 goto again;
1426 }
1427 switch (fsm_getstate(grp->fsm)) {
1428 case MPCG_STATE_RESET:
1429 case MPCG_STATE_INOP:
1430 dev_kfree_skb_any(new_skb);
1431 break;
1432 case MPCG_STATE_FLOWC:
1433 case MPCG_STATE_READY:
1434 skb_put_data(new_skb, skb->data, block_len);
1435 skb_queue_tail(&ch->io_queue, new_skb);
1436 tasklet_schedule(&ch->ch_tasklet);
1437 break;
1438 default:
1439 skb_put_data(new_skb, skb->data, len);
1440 skb_queue_tail(&ch->io_queue, new_skb);
1441 tasklet_hi_schedule(&ch->ch_tasklet);
1442 break;
1443 }
1444 }
1445
1446 again:
1447 switch (fsm_getstate(grp->fsm)) {
1448 int rc, dolock;
1449 case MPCG_STATE_FLOWC:
1450 case MPCG_STATE_READY:
1451 if (ctcm_checkalloc_buffer(ch))
1452 break;
1453 ch->trans_skb->data = ch->trans_skb_data;
1454 skb_reset_tail_pointer(ch->trans_skb);
1455 ch->trans_skb->len = 0;
1456 ch->ccw[1].count = ch->max_bufsize;
1457 if (do_debug_ccw)
1458 ctcmpc_dumpit((char *)&ch->ccw[0],
1459 sizeof(struct ccw1) * 3);
1460 dolock = !in_hardirq();
1461 if (dolock)
1462 spin_lock_irqsave(
1463 get_ccwdev_lock(ch->cdev), saveflags);
1464 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
1465 if (dolock) /* see remark about conditional locking */
1466 spin_unlock_irqrestore(
1467 get_ccwdev_lock(ch->cdev), saveflags);
1468 if (rc != 0)
1469 ctcm_ccw_check_rc(ch, rc, "normal RX");
1470 break;
1471 default:
1472 break;
1473 }
1474
1475 CTCM_PR_DEBUG("Exit %s: %s, ch=0x%p, id=%s\n",
1476 __func__, dev->name, ch, ch->id);
1477
1478 }
1479
1480 /*
1481 * Initialize connection by sending a __u16 of value 0.
1482 *
1483 * fi An instance of a channel statemachine.
1484 * event The event, just happened.
1485 * arg Generic pointer, casted from channel * upon call.
1486 */
ctcmpc_chx_firstio(fsm_instance * fi,int event,void * arg)1487 static void ctcmpc_chx_firstio(fsm_instance *fi, int event, void *arg)
1488 {
1489 struct channel *ch = arg;
1490 struct net_device *dev = ch->netdev;
1491 struct ctcm_priv *priv = dev->ml_priv;
1492 struct mpc_group *gptr = priv->mpcg;
1493
1494 CTCM_PR_DEBUG("Enter %s: id=%s, ch=0x%p\n",
1495 __func__, ch->id, ch);
1496
1497 CTCM_DBF_TEXT_(MPC_TRACE, CTC_DBF_INFO,
1498 "%s: %s: chstate:%i, grpstate:%i, prot:%i\n",
1499 CTCM_FUNTAIL, ch->id, fsm_getstate(fi),
1500 fsm_getstate(gptr->fsm), ch->protocol);
1501
1502 if (fsm_getstate(fi) == CTC_STATE_TXIDLE)
1503 MPC_DBF_DEV_NAME(TRACE, dev, "remote side issued READ? ");
1504
1505 fsm_deltimer(&ch->timer);
1506 if (ctcm_checkalloc_buffer(ch))
1507 goto done;
1508
1509 switch (fsm_getstate(fi)) {
1510 case CTC_STATE_STARTRETRY:
1511 case CTC_STATE_SETUPWAIT:
1512 if (CHANNEL_DIRECTION(ch->flags) == CTCM_READ) {
1513 ctcmpc_chx_rxidle(fi, event, arg);
1514 } else {
1515 fsm_newstate(fi, CTC_STATE_TXIDLE);
1516 fsm_event(priv->fsm, DEV_EVENT_TXUP, dev);
1517 }
1518 goto done;
1519 default:
1520 break;
1521 }
1522
1523 fsm_newstate(fi, (CHANNEL_DIRECTION(ch->flags) == CTCM_READ)
1524 ? CTC_STATE_RXINIT : CTC_STATE_TXINIT);
1525
1526 done:
1527 CTCM_PR_DEBUG("Exit %s: id=%s, ch=0x%p\n",
1528 __func__, ch->id, ch);
1529 return;
1530 }
1531
1532 /*
1533 * Got initial data, check it. If OK,
1534 * notify device statemachine that we are up and
1535 * running.
1536 *
1537 * fi An instance of a channel statemachine.
1538 * event The event, just happened.
1539 * arg Generic pointer, casted from channel * upon call.
1540 */
ctcmpc_chx_rxidle(fsm_instance * fi,int event,void * arg)1541 void ctcmpc_chx_rxidle(fsm_instance *fi, int event, void *arg)
1542 {
1543 struct channel *ch = arg;
1544 struct net_device *dev = ch->netdev;
1545 struct ctcm_priv *priv = dev->ml_priv;
1546 struct mpc_group *grp = priv->mpcg;
1547 int rc;
1548 unsigned long saveflags = 0; /* avoids compiler warning */
1549
1550 fsm_deltimer(&ch->timer);
1551 CTCM_PR_DEBUG("%s: %s: %s: cp:%i, chstate:%i grpstate:%i\n",
1552 __func__, ch->id, dev->name, smp_processor_id(),
1553 fsm_getstate(fi), fsm_getstate(grp->fsm));
1554
1555 fsm_newstate(fi, CTC_STATE_RXIDLE);
1556 /* XID processing complete */
1557
1558 switch (fsm_getstate(grp->fsm)) {
1559 case MPCG_STATE_FLOWC:
1560 case MPCG_STATE_READY:
1561 if (ctcm_checkalloc_buffer(ch))
1562 goto done;
1563 ch->trans_skb->data = ch->trans_skb_data;
1564 skb_reset_tail_pointer(ch->trans_skb);
1565 ch->trans_skb->len = 0;
1566 ch->ccw[1].count = ch->max_bufsize;
1567 CTCM_CCW_DUMP((char *)&ch->ccw[0], sizeof(struct ccw1) * 3);
1568 if (event == CTC_EVENT_START)
1569 /* see remark about conditional locking */
1570 spin_lock_irqsave(get_ccwdev_lock(ch->cdev), saveflags);
1571 rc = ccw_device_start(ch->cdev, &ch->ccw[0], 0, 0xff, 0);
1572 if (event == CTC_EVENT_START)
1573 spin_unlock_irqrestore(
1574 get_ccwdev_lock(ch->cdev), saveflags);
1575 if (rc != 0) {
1576 fsm_newstate(fi, CTC_STATE_RXINIT);
1577 ctcm_ccw_check_rc(ch, rc, "initial RX");
1578 goto done;
1579 }
1580 break;
1581 default:
1582 break;
1583 }
1584
1585 fsm_event(priv->fsm, DEV_EVENT_RXUP, dev);
1586 done:
1587 return;
1588 }
1589
1590 /*
1591 * ctcmpc channel FSM action
1592 * called from several points in ctcmpc_ch_fsm
1593 * ctcmpc only
1594 */
ctcmpc_chx_attn(fsm_instance * fsm,int event,void * arg)1595 static void ctcmpc_chx_attn(fsm_instance *fsm, int event, void *arg)
1596 {
1597 struct channel *ch = arg;
1598 struct net_device *dev = ch->netdev;
1599 struct ctcm_priv *priv = dev->ml_priv;
1600 struct mpc_group *grp = priv->mpcg;
1601
1602 CTCM_PR_DEBUG("%s(%s): %s(ch=0x%p), cp=%i, ChStat:%s, GrpStat:%s\n",
1603 __func__, dev->name, ch->id, ch, smp_processor_id(),
1604 fsm_getstate_str(ch->fsm), fsm_getstate_str(grp->fsm));
1605
1606 switch (fsm_getstate(grp->fsm)) {
1607 case MPCG_STATE_XID2INITW:
1608 /* ok..start yside xid exchanges */
1609 if (!ch->in_mpcgroup)
1610 break;
1611 if (fsm_getstate(ch->fsm) == CH_XID0_PENDING) {
1612 fsm_deltimer(&grp->timer);
1613 fsm_addtimer(&grp->timer,
1614 MPC_XID_TIMEOUT_VALUE,
1615 MPCG_EVENT_TIMER, dev);
1616 fsm_event(grp->fsm, MPCG_EVENT_XID0DO, ch);
1617
1618 } else if (fsm_getstate(ch->fsm) < CH_XID7_PENDING1)
1619 /* attn rcvd before xid0 processed via bh */
1620 fsm_newstate(ch->fsm, CH_XID7_PENDING1);
1621 break;
1622 case MPCG_STATE_XID2INITX:
1623 case MPCG_STATE_XID0IOWAIT:
1624 case MPCG_STATE_XID0IOWAIX:
1625 /* attn rcvd before xid0 processed on ch
1626 but mid-xid0 processing for group */
1627 if (fsm_getstate(ch->fsm) < CH_XID7_PENDING1)
1628 fsm_newstate(ch->fsm, CH_XID7_PENDING1);
1629 break;
1630 case MPCG_STATE_XID7INITW:
1631 case MPCG_STATE_XID7INITX:
1632 case MPCG_STATE_XID7INITI:
1633 case MPCG_STATE_XID7INITZ:
1634 switch (fsm_getstate(ch->fsm)) {
1635 case CH_XID7_PENDING:
1636 fsm_newstate(ch->fsm, CH_XID7_PENDING1);
1637 break;
1638 case CH_XID7_PENDING2:
1639 fsm_newstate(ch->fsm, CH_XID7_PENDING3);
1640 break;
1641 }
1642 fsm_event(grp->fsm, MPCG_EVENT_XID7DONE, dev);
1643 break;
1644 }
1645
1646 return;
1647 }
1648
1649 /*
1650 * ctcmpc channel FSM action
1651 * called from one point in ctcmpc_ch_fsm
1652 * ctcmpc only
1653 */
ctcmpc_chx_attnbusy(fsm_instance * fsm,int event,void * arg)1654 static void ctcmpc_chx_attnbusy(fsm_instance *fsm, int event, void *arg)
1655 {
1656 struct channel *ch = arg;
1657 struct net_device *dev = ch->netdev;
1658 struct ctcm_priv *priv = dev->ml_priv;
1659 struct mpc_group *grp = priv->mpcg;
1660
1661 CTCM_PR_DEBUG("%s(%s): %s\n ChState:%s GrpState:%s\n",
1662 __func__, dev->name, ch->id,
1663 fsm_getstate_str(ch->fsm), fsm_getstate_str(grp->fsm));
1664
1665 fsm_deltimer(&ch->timer);
1666
1667 switch (fsm_getstate(grp->fsm)) {
1668 case MPCG_STATE_XID0IOWAIT:
1669 /* vtam wants to be primary.start yside xid exchanges*/
1670 /* only receive one attn-busy at a time so must not */
1671 /* change state each time */
1672 grp->changed_side = 1;
1673 fsm_newstate(grp->fsm, MPCG_STATE_XID2INITW);
1674 break;
1675 case MPCG_STATE_XID2INITW:
1676 if (grp->changed_side == 1) {
1677 grp->changed_side = 2;
1678 break;
1679 }
1680 /* process began via call to establish_conn */
1681 /* so must report failure instead of reverting */
1682 /* back to ready-for-xid passive state */
1683 if (grp->estconnfunc)
1684 goto done;
1685 /* this attnbusy is NOT the result of xside xid */
1686 /* collisions so yside must have been triggered */
1687 /* by an ATTN that was not intended to start XID */
1688 /* processing. Revert back to ready-for-xid and */
1689 /* wait for ATTN interrupt to signal xid start */
1690 if (fsm_getstate(ch->fsm) == CH_XID0_INPROGRESS) {
1691 fsm_newstate(ch->fsm, CH_XID0_PENDING) ;
1692 fsm_deltimer(&grp->timer);
1693 goto done;
1694 }
1695 fsm_event(grp->fsm, MPCG_EVENT_INOP, dev);
1696 goto done;
1697 case MPCG_STATE_XID2INITX:
1698 /* XID2 was received before ATTN Busy for second
1699 channel.Send yside xid for second channel.
1700 */
1701 if (grp->changed_side == 1) {
1702 grp->changed_side = 2;
1703 break;
1704 }
1705 fallthrough;
1706 case MPCG_STATE_XID0IOWAIX:
1707 case MPCG_STATE_XID7INITW:
1708 case MPCG_STATE_XID7INITX:
1709 case MPCG_STATE_XID7INITI:
1710 case MPCG_STATE_XID7INITZ:
1711 default:
1712 /* multiple attn-busy indicates too out-of-sync */
1713 /* and they are certainly not being received as part */
1714 /* of valid mpc group negotiations.. */
1715 fsm_event(grp->fsm, MPCG_EVENT_INOP, dev);
1716 goto done;
1717 }
1718
1719 if (grp->changed_side == 1) {
1720 fsm_deltimer(&grp->timer);
1721 fsm_addtimer(&grp->timer, MPC_XID_TIMEOUT_VALUE,
1722 MPCG_EVENT_TIMER, dev);
1723 }
1724 if (ch->in_mpcgroup)
1725 fsm_event(grp->fsm, MPCG_EVENT_XID0DO, ch);
1726 else
1727 CTCM_DBF_TEXT_(MPC_ERROR, CTC_DBF_ERROR,
1728 "%s(%s): channel %s not added to group",
1729 CTCM_FUNTAIL, dev->name, ch->id);
1730
1731 done:
1732 return;
1733 }
1734
1735 /*
1736 * ctcmpc channel FSM action
1737 * called from several points in ctcmpc_ch_fsm
1738 * ctcmpc only
1739 */
ctcmpc_chx_resend(fsm_instance * fsm,int event,void * arg)1740 static void ctcmpc_chx_resend(fsm_instance *fsm, int event, void *arg)
1741 {
1742 struct channel *ch = arg;
1743 struct net_device *dev = ch->netdev;
1744 struct ctcm_priv *priv = dev->ml_priv;
1745 struct mpc_group *grp = priv->mpcg;
1746
1747 fsm_event(grp->fsm, MPCG_EVENT_XID0DO, ch);
1748 return;
1749 }
1750
1751 /*
1752 * ctcmpc channel FSM action
1753 * called from several points in ctcmpc_ch_fsm
1754 * ctcmpc only
1755 */
ctcmpc_chx_send_sweep(fsm_instance * fsm,int event,void * arg)1756 static void ctcmpc_chx_send_sweep(fsm_instance *fsm, int event, void *arg)
1757 {
1758 struct channel *ach = arg;
1759 struct net_device *dev = ach->netdev;
1760 struct ctcm_priv *priv = dev->ml_priv;
1761 struct mpc_group *grp = priv->mpcg;
1762 struct channel *wch = priv->channel[CTCM_WRITE];
1763 struct channel *rch = priv->channel[CTCM_READ];
1764 struct sk_buff *skb;
1765 struct th_sweep *header;
1766 int rc = 0;
1767 unsigned long saveflags = 0;
1768
1769 CTCM_PR_DEBUG("ctcmpc enter: %s(): cp=%i ch=0x%p id=%s\n",
1770 __func__, smp_processor_id(), ach, ach->id);
1771
1772 if (grp->in_sweep == 0)
1773 goto done;
1774
1775 CTCM_PR_DBGDATA("%s: 1: ToVTAM_th_seq= %08x\n" ,
1776 __func__, wch->th_seq_num);
1777 CTCM_PR_DBGDATA("%s: 1: FromVTAM_th_seq= %08x\n" ,
1778 __func__, rch->th_seq_num);
1779
1780 if (fsm_getstate(wch->fsm) != CTC_STATE_TXIDLE) {
1781 /* give the previous IO time to complete */
1782 fsm_addtimer(&wch->sweep_timer,
1783 200, CTC_EVENT_RSWEEP_TIMER, wch);
1784 goto done;
1785 }
1786
1787 skb = skb_dequeue(&wch->sweep_queue);
1788 if (!skb)
1789 goto done;
1790
1791 if (set_normalized_cda(&wch->ccw[4], skb->data)) {
1792 grp->in_sweep = 0;
1793 ctcm_clear_busy_do(dev);
1794 dev_kfree_skb_any(skb);
1795 fsm_event(grp->fsm, MPCG_EVENT_INOP, dev);
1796 goto done;
1797 } else {
1798 refcount_inc(&skb->users);
1799 skb_queue_tail(&wch->io_queue, skb);
1800 }
1801
1802 /* send out the sweep */
1803 wch->ccw[4].count = skb->len;
1804
1805 header = (struct th_sweep *)skb->data;
1806 switch (header->th.th_ch_flag) {
1807 case TH_SWEEP_REQ:
1808 grp->sweep_req_pend_num--;
1809 break;
1810 case TH_SWEEP_RESP:
1811 grp->sweep_rsp_pend_num--;
1812 break;
1813 }
1814
1815 header->sw.th_last_seq = wch->th_seq_num;
1816
1817 CTCM_CCW_DUMP((char *)&wch->ccw[3], sizeof(struct ccw1) * 3);
1818 CTCM_PR_DBGDATA("%s: sweep packet\n", __func__);
1819 CTCM_D3_DUMP((char *)header, TH_SWEEP_LENGTH);
1820
1821 fsm_addtimer(&wch->timer, CTCM_TIME_5_SEC, CTC_EVENT_TIMER, wch);
1822 fsm_newstate(wch->fsm, CTC_STATE_TX);
1823
1824 spin_lock_irqsave(get_ccwdev_lock(wch->cdev), saveflags);
1825 wch->prof.send_stamp = jiffies;
1826 rc = ccw_device_start(wch->cdev, &wch->ccw[3], 0, 0xff, 0);
1827 spin_unlock_irqrestore(get_ccwdev_lock(wch->cdev), saveflags);
1828
1829 if ((grp->sweep_req_pend_num == 0) &&
1830 (grp->sweep_rsp_pend_num == 0)) {
1831 grp->in_sweep = 0;
1832 rch->th_seq_num = 0x00;
1833 wch->th_seq_num = 0x00;
1834 ctcm_clear_busy_do(dev);
1835 }
1836
1837 CTCM_PR_DBGDATA("%s: To-/From-VTAM_th_seq = %08x/%08x\n" ,
1838 __func__, wch->th_seq_num, rch->th_seq_num);
1839
1840 if (rc != 0)
1841 ctcm_ccw_check_rc(wch, rc, "send sweep");
1842
1843 done:
1844 return;
1845 }
1846
1847
1848 /*
1849 * The ctcmpc statemachine for a channel.
1850 */
1851
1852 const fsm_node ctcmpc_ch_fsm[] = {
1853 { CTC_STATE_STOPPED, CTC_EVENT_STOP, ctcm_action_nop },
1854 { CTC_STATE_STOPPED, CTC_EVENT_START, ctcm_chx_start },
1855 { CTC_STATE_STOPPED, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1856 { CTC_STATE_STOPPED, CTC_EVENT_FINSTAT, ctcm_action_nop },
1857 { CTC_STATE_STOPPED, CTC_EVENT_MC_FAIL, ctcm_action_nop },
1858
1859 { CTC_STATE_NOTOP, CTC_EVENT_STOP, ctcm_chx_stop },
1860 { CTC_STATE_NOTOP, CTC_EVENT_START, ctcm_action_nop },
1861 { CTC_STATE_NOTOP, CTC_EVENT_FINSTAT, ctcm_action_nop },
1862 { CTC_STATE_NOTOP, CTC_EVENT_MC_FAIL, ctcm_action_nop },
1863 { CTC_STATE_NOTOP, CTC_EVENT_MC_GOOD, ctcm_chx_start },
1864 { CTC_STATE_NOTOP, CTC_EVENT_UC_RCRESET, ctcm_chx_stop },
1865 { CTC_STATE_NOTOP, CTC_EVENT_UC_RSRESET, ctcm_chx_stop },
1866 { CTC_STATE_NOTOP, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1867
1868 { CTC_STATE_STARTWAIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1869 { CTC_STATE_STARTWAIT, CTC_EVENT_START, ctcm_action_nop },
1870 { CTC_STATE_STARTWAIT, CTC_EVENT_FINSTAT, ctcm_chx_setmode },
1871 { CTC_STATE_STARTWAIT, CTC_EVENT_TIMER, ctcm_chx_setuperr },
1872 { CTC_STATE_STARTWAIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1873 { CTC_STATE_STARTWAIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1874
1875 { CTC_STATE_STARTRETRY, CTC_EVENT_STOP, ctcm_chx_haltio },
1876 { CTC_STATE_STARTRETRY, CTC_EVENT_TIMER, ctcm_chx_setmode },
1877 { CTC_STATE_STARTRETRY, CTC_EVENT_FINSTAT, ctcm_chx_setmode },
1878 { CTC_STATE_STARTRETRY, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1879 { CTC_STATE_STARTRETRY, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1880
1881 { CTC_STATE_SETUPWAIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1882 { CTC_STATE_SETUPWAIT, CTC_EVENT_START, ctcm_action_nop },
1883 { CTC_STATE_SETUPWAIT, CTC_EVENT_FINSTAT, ctcmpc_chx_firstio },
1884 { CTC_STATE_SETUPWAIT, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1885 { CTC_STATE_SETUPWAIT, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1886 { CTC_STATE_SETUPWAIT, CTC_EVENT_TIMER, ctcm_chx_setmode },
1887 { CTC_STATE_SETUPWAIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1888 { CTC_STATE_SETUPWAIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1889
1890 { CTC_STATE_RXINIT, CTC_EVENT_STOP, ctcm_chx_haltio },
1891 { CTC_STATE_RXINIT, CTC_EVENT_START, ctcm_action_nop },
1892 { CTC_STATE_RXINIT, CTC_EVENT_FINSTAT, ctcmpc_chx_rxidle },
1893 { CTC_STATE_RXINIT, CTC_EVENT_UC_RCRESET, ctcm_chx_rxiniterr },
1894 { CTC_STATE_RXINIT, CTC_EVENT_UC_RSRESET, ctcm_chx_rxiniterr },
1895 { CTC_STATE_RXINIT, CTC_EVENT_TIMER, ctcm_chx_rxiniterr },
1896 { CTC_STATE_RXINIT, CTC_EVENT_ATTNBUSY, ctcm_chx_rxinitfail },
1897 { CTC_STATE_RXINIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1898 { CTC_STATE_RXINIT, CTC_EVENT_UC_ZERO, ctcmpc_chx_firstio },
1899 { CTC_STATE_RXINIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1900
1901 { CH_XID0_PENDING, CTC_EVENT_FINSTAT, ctcm_action_nop },
1902 { CH_XID0_PENDING, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1903 { CH_XID0_PENDING, CTC_EVENT_STOP, ctcm_chx_haltio },
1904 { CH_XID0_PENDING, CTC_EVENT_START, ctcm_action_nop },
1905 { CH_XID0_PENDING, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1906 { CH_XID0_PENDING, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1907 { CH_XID0_PENDING, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1908 { CH_XID0_PENDING, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1909 { CH_XID0_PENDING, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1910 { CH_XID0_PENDING, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1911
1912 { CH_XID0_INPROGRESS, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1913 { CH_XID0_INPROGRESS, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1914 { CH_XID0_INPROGRESS, CTC_EVENT_STOP, ctcm_chx_haltio },
1915 { CH_XID0_INPROGRESS, CTC_EVENT_START, ctcm_action_nop },
1916 { CH_XID0_INPROGRESS, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1917 { CH_XID0_INPROGRESS, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1918 { CH_XID0_INPROGRESS, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1919 { CH_XID0_INPROGRESS, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1920 { CH_XID0_INPROGRESS, CTC_EVENT_ATTNBUSY, ctcmpc_chx_attnbusy },
1921 { CH_XID0_INPROGRESS, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1922 { CH_XID0_INPROGRESS, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1923
1924 { CH_XID7_PENDING, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1925 { CH_XID7_PENDING, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1926 { CH_XID7_PENDING, CTC_EVENT_STOP, ctcm_chx_haltio },
1927 { CH_XID7_PENDING, CTC_EVENT_START, ctcm_action_nop },
1928 { CH_XID7_PENDING, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1929 { CH_XID7_PENDING, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1930 { CH_XID7_PENDING, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1931 { CH_XID7_PENDING, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1932 { CH_XID7_PENDING, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1933 { CH_XID7_PENDING, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1934 { CH_XID7_PENDING, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1935 { CH_XID7_PENDING, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1936 { CH_XID7_PENDING, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1937
1938 { CH_XID7_PENDING1, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1939 { CH_XID7_PENDING1, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1940 { CH_XID7_PENDING1, CTC_EVENT_STOP, ctcm_chx_haltio },
1941 { CH_XID7_PENDING1, CTC_EVENT_START, ctcm_action_nop },
1942 { CH_XID7_PENDING1, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1943 { CH_XID7_PENDING1, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1944 { CH_XID7_PENDING1, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1945 { CH_XID7_PENDING1, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1946 { CH_XID7_PENDING1, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1947 { CH_XID7_PENDING1, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1948 { CH_XID7_PENDING1, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1949 { CH_XID7_PENDING1, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1950
1951 { CH_XID7_PENDING2, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1952 { CH_XID7_PENDING2, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1953 { CH_XID7_PENDING2, CTC_EVENT_STOP, ctcm_chx_haltio },
1954 { CH_XID7_PENDING2, CTC_EVENT_START, ctcm_action_nop },
1955 { CH_XID7_PENDING2, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1956 { CH_XID7_PENDING2, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1957 { CH_XID7_PENDING2, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1958 { CH_XID7_PENDING2, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1959 { CH_XID7_PENDING2, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1960 { CH_XID7_PENDING2, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1961 { CH_XID7_PENDING2, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1962 { CH_XID7_PENDING2, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1963
1964 { CH_XID7_PENDING3, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1965 { CH_XID7_PENDING3, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1966 { CH_XID7_PENDING3, CTC_EVENT_STOP, ctcm_chx_haltio },
1967 { CH_XID7_PENDING3, CTC_EVENT_START, ctcm_action_nop },
1968 { CH_XID7_PENDING3, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1969 { CH_XID7_PENDING3, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1970 { CH_XID7_PENDING3, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1971 { CH_XID7_PENDING3, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1972 { CH_XID7_PENDING3, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1973 { CH_XID7_PENDING3, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1974 { CH_XID7_PENDING3, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1975 { CH_XID7_PENDING3, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1976
1977 { CH_XID7_PENDING4, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1978 { CH_XID7_PENDING4, CTC_EVENT_ATTN, ctcmpc_chx_attn },
1979 { CH_XID7_PENDING4, CTC_EVENT_STOP, ctcm_chx_haltio },
1980 { CH_XID7_PENDING4, CTC_EVENT_START, ctcm_action_nop },
1981 { CH_XID7_PENDING4, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1982 { CH_XID7_PENDING4, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1983 { CH_XID7_PENDING4, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1984 { CH_XID7_PENDING4, CTC_EVENT_UC_RCRESET, ctcm_chx_setuperr },
1985 { CH_XID7_PENDING4, CTC_EVENT_UC_RSRESET, ctcm_chx_setuperr },
1986 { CH_XID7_PENDING4, CTC_EVENT_ATTNBUSY, ctcm_chx_iofatal },
1987 { CH_XID7_PENDING4, CTC_EVENT_TIMER, ctcmpc_chx_resend },
1988 { CH_XID7_PENDING4, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
1989
1990 { CTC_STATE_RXIDLE, CTC_EVENT_STOP, ctcm_chx_haltio },
1991 { CTC_STATE_RXIDLE, CTC_EVENT_START, ctcm_action_nop },
1992 { CTC_STATE_RXIDLE, CTC_EVENT_FINSTAT, ctcmpc_chx_rx },
1993 { CTC_STATE_RXIDLE, CTC_EVENT_UC_RCRESET, ctcm_chx_rxdisc },
1994 { CTC_STATE_RXIDLE, CTC_EVENT_UC_RSRESET, ctcm_chx_fail },
1995 { CTC_STATE_RXIDLE, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
1996 { CTC_STATE_RXIDLE, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
1997 { CTC_STATE_RXIDLE, CTC_EVENT_UC_ZERO, ctcmpc_chx_rx },
1998
1999 { CTC_STATE_TXINIT, CTC_EVENT_STOP, ctcm_chx_haltio },
2000 { CTC_STATE_TXINIT, CTC_EVENT_START, ctcm_action_nop },
2001 { CTC_STATE_TXINIT, CTC_EVENT_FINSTAT, ctcm_chx_txidle },
2002 { CTC_STATE_TXINIT, CTC_EVENT_UC_RCRESET, ctcm_chx_txiniterr },
2003 { CTC_STATE_TXINIT, CTC_EVENT_UC_RSRESET, ctcm_chx_txiniterr },
2004 { CTC_STATE_TXINIT, CTC_EVENT_TIMER, ctcm_chx_txiniterr },
2005 { CTC_STATE_TXINIT, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2006 { CTC_STATE_TXINIT, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2007 { CTC_STATE_TXINIT, CTC_EVENT_RSWEEP_TIMER, ctcmpc_chx_send_sweep },
2008
2009 { CTC_STATE_TXIDLE, CTC_EVENT_STOP, ctcm_chx_haltio },
2010 { CTC_STATE_TXIDLE, CTC_EVENT_START, ctcm_action_nop },
2011 { CTC_STATE_TXIDLE, CTC_EVENT_FINSTAT, ctcmpc_chx_firstio },
2012 { CTC_STATE_TXIDLE, CTC_EVENT_UC_RCRESET, ctcm_chx_fail },
2013 { CTC_STATE_TXIDLE, CTC_EVENT_UC_RSRESET, ctcm_chx_fail },
2014 { CTC_STATE_TXIDLE, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2015 { CTC_STATE_TXIDLE, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2016 { CTC_STATE_TXIDLE, CTC_EVENT_RSWEEP_TIMER, ctcmpc_chx_send_sweep },
2017
2018 { CTC_STATE_TERM, CTC_EVENT_STOP, ctcm_action_nop },
2019 { CTC_STATE_TERM, CTC_EVENT_START, ctcm_chx_restart },
2020 { CTC_STATE_TERM, CTC_EVENT_FINSTAT, ctcm_chx_stopped },
2021 { CTC_STATE_TERM, CTC_EVENT_UC_RCRESET, ctcm_action_nop },
2022 { CTC_STATE_TERM, CTC_EVENT_UC_RSRESET, ctcm_action_nop },
2023 { CTC_STATE_TERM, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2024 { CTC_STATE_TERM, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
2025 { CTC_STATE_TERM, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2026
2027 { CTC_STATE_DTERM, CTC_EVENT_STOP, ctcm_chx_haltio },
2028 { CTC_STATE_DTERM, CTC_EVENT_START, ctcm_chx_restart },
2029 { CTC_STATE_DTERM, CTC_EVENT_FINSTAT, ctcm_chx_setmode },
2030 { CTC_STATE_DTERM, CTC_EVENT_UC_RCRESET, ctcm_action_nop },
2031 { CTC_STATE_DTERM, CTC_EVENT_UC_RSRESET, ctcm_action_nop },
2032 { CTC_STATE_DTERM, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2033 { CTC_STATE_DTERM, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2034
2035 { CTC_STATE_TX, CTC_EVENT_STOP, ctcm_chx_haltio },
2036 { CTC_STATE_TX, CTC_EVENT_START, ctcm_action_nop },
2037 { CTC_STATE_TX, CTC_EVENT_FINSTAT, ctcmpc_chx_txdone },
2038 { CTC_STATE_TX, CTC_EVENT_UC_RCRESET, ctcm_chx_fail },
2039 { CTC_STATE_TX, CTC_EVENT_UC_RSRESET, ctcm_chx_fail },
2040 { CTC_STATE_TX, CTC_EVENT_TIMER, ctcm_chx_txretry },
2041 { CTC_STATE_TX, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2042 { CTC_STATE_TX, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2043 { CTC_STATE_TX, CTC_EVENT_RSWEEP_TIMER, ctcmpc_chx_send_sweep },
2044 { CTC_STATE_TX, CTC_EVENT_IO_EBUSY, ctcm_chx_fail },
2045
2046 { CTC_STATE_RXERR, CTC_EVENT_STOP, ctcm_chx_haltio },
2047 { CTC_STATE_TXERR, CTC_EVENT_STOP, ctcm_chx_haltio },
2048 { CTC_STATE_TXERR, CTC_EVENT_IO_ENODEV, ctcm_chx_iofatal },
2049 { CTC_STATE_TXERR, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2050 { CTC_STATE_RXERR, CTC_EVENT_MC_FAIL, ctcm_chx_fail },
2051 };
2052
2053 int mpc_ch_fsm_len = ARRAY_SIZE(ctcmpc_ch_fsm);
2054
2055 /*
2056 * Actions for interface - statemachine.
2057 */
2058
2059 /*
2060 * Startup channels by sending CTC_EVENT_START to each channel.
2061 *
2062 * fi An instance of an interface statemachine.
2063 * event The event, just happened.
2064 * arg Generic pointer, casted from struct net_device * upon call.
2065 */
dev_action_start(fsm_instance * fi,int event,void * arg)2066 static void dev_action_start(fsm_instance *fi, int event, void *arg)
2067 {
2068 struct net_device *dev = arg;
2069 struct ctcm_priv *priv = dev->ml_priv;
2070 int direction;
2071
2072 CTCMY_DBF_DEV_NAME(SETUP, dev, "");
2073
2074 fsm_deltimer(&priv->restart_timer);
2075 fsm_newstate(fi, DEV_STATE_STARTWAIT_RXTX);
2076 if (IS_MPC(priv))
2077 priv->mpcg->channels_terminating = 0;
2078 for (direction = CTCM_READ; direction <= CTCM_WRITE; direction++) {
2079 struct channel *ch = priv->channel[direction];
2080 fsm_event(ch->fsm, CTC_EVENT_START, ch);
2081 }
2082 }
2083
2084 /*
2085 * Shutdown channels by sending CTC_EVENT_STOP to each channel.
2086 *
2087 * fi An instance of an interface statemachine.
2088 * event The event, just happened.
2089 * arg Generic pointer, casted from struct net_device * upon call.
2090 */
dev_action_stop(fsm_instance * fi,int event,void * arg)2091 static void dev_action_stop(fsm_instance *fi, int event, void *arg)
2092 {
2093 int direction;
2094 struct net_device *dev = arg;
2095 struct ctcm_priv *priv = dev->ml_priv;
2096
2097 CTCMY_DBF_DEV_NAME(SETUP, dev, "");
2098
2099 fsm_newstate(fi, DEV_STATE_STOPWAIT_RXTX);
2100 for (direction = CTCM_READ; direction <= CTCM_WRITE; direction++) {
2101 struct channel *ch = priv->channel[direction];
2102 fsm_event(ch->fsm, CTC_EVENT_STOP, ch);
2103 ch->th_seq_num = 0x00;
2104 CTCM_PR_DEBUG("%s: CH_th_seq= %08x\n",
2105 __func__, ch->th_seq_num);
2106 }
2107 if (IS_MPC(priv))
2108 fsm_newstate(priv->mpcg->fsm, MPCG_STATE_RESET);
2109 }
2110
dev_action_restart(fsm_instance * fi,int event,void * arg)2111 static void dev_action_restart(fsm_instance *fi, int event, void *arg)
2112 {
2113 int restart_timer;
2114 struct net_device *dev = arg;
2115 struct ctcm_priv *priv = dev->ml_priv;
2116
2117 CTCMY_DBF_DEV_NAME(TRACE, dev, "");
2118
2119 if (IS_MPC(priv)) {
2120 restart_timer = CTCM_TIME_1_SEC;
2121 } else {
2122 restart_timer = CTCM_TIME_5_SEC;
2123 }
2124 dev_info(&dev->dev, "Restarting device\n");
2125
2126 dev_action_stop(fi, event, arg);
2127 fsm_event(priv->fsm, DEV_EVENT_STOP, dev);
2128 if (IS_MPC(priv))
2129 fsm_newstate(priv->mpcg->fsm, MPCG_STATE_RESET);
2130
2131 /* going back into start sequence too quickly can */
2132 /* result in the other side becoming unreachable due */
2133 /* to sense reported when IO is aborted */
2134 fsm_addtimer(&priv->restart_timer, restart_timer,
2135 DEV_EVENT_START, dev);
2136 }
2137
2138 /*
2139 * Called from channel statemachine
2140 * when a channel is up and running.
2141 *
2142 * fi An instance of an interface statemachine.
2143 * event The event, just happened.
2144 * arg Generic pointer, casted from struct net_device * upon call.
2145 */
dev_action_chup(fsm_instance * fi,int event,void * arg)2146 static void dev_action_chup(fsm_instance *fi, int event, void *arg)
2147 {
2148 struct net_device *dev = arg;
2149 struct ctcm_priv *priv = dev->ml_priv;
2150 int dev_stat = fsm_getstate(fi);
2151
2152 CTCM_DBF_TEXT_(SETUP, CTC_DBF_NOTICE,
2153 "%s(%s): priv = %p [%d,%d]\n ", CTCM_FUNTAIL,
2154 dev->name, dev->ml_priv, dev_stat, event);
2155
2156 switch (fsm_getstate(fi)) {
2157 case DEV_STATE_STARTWAIT_RXTX:
2158 if (event == DEV_EVENT_RXUP)
2159 fsm_newstate(fi, DEV_STATE_STARTWAIT_TX);
2160 else
2161 fsm_newstate(fi, DEV_STATE_STARTWAIT_RX);
2162 break;
2163 case DEV_STATE_STARTWAIT_RX:
2164 if (event == DEV_EVENT_RXUP) {
2165 fsm_newstate(fi, DEV_STATE_RUNNING);
2166 dev_info(&dev->dev,
2167 "Connected with remote side\n");
2168 ctcm_clear_busy(dev);
2169 }
2170 break;
2171 case DEV_STATE_STARTWAIT_TX:
2172 if (event == DEV_EVENT_TXUP) {
2173 fsm_newstate(fi, DEV_STATE_RUNNING);
2174 dev_info(&dev->dev,
2175 "Connected with remote side\n");
2176 ctcm_clear_busy(dev);
2177 }
2178 break;
2179 case DEV_STATE_STOPWAIT_TX:
2180 if (event == DEV_EVENT_RXUP)
2181 fsm_newstate(fi, DEV_STATE_STOPWAIT_RXTX);
2182 break;
2183 case DEV_STATE_STOPWAIT_RX:
2184 if (event == DEV_EVENT_TXUP)
2185 fsm_newstate(fi, DEV_STATE_STOPWAIT_RXTX);
2186 break;
2187 }
2188
2189 if (IS_MPC(priv)) {
2190 if (event == DEV_EVENT_RXUP)
2191 mpc_channel_action(priv->channel[CTCM_READ],
2192 CTCM_READ, MPC_CHANNEL_ADD);
2193 else
2194 mpc_channel_action(priv->channel[CTCM_WRITE],
2195 CTCM_WRITE, MPC_CHANNEL_ADD);
2196 }
2197 }
2198
2199 /*
2200 * Called from device statemachine
2201 * when a channel has been shutdown.
2202 *
2203 * fi An instance of an interface statemachine.
2204 * event The event, just happened.
2205 * arg Generic pointer, casted from struct net_device * upon call.
2206 */
dev_action_chdown(fsm_instance * fi,int event,void * arg)2207 static void dev_action_chdown(fsm_instance *fi, int event, void *arg)
2208 {
2209
2210 struct net_device *dev = arg;
2211 struct ctcm_priv *priv = dev->ml_priv;
2212
2213 CTCMY_DBF_DEV_NAME(SETUP, dev, "");
2214
2215 switch (fsm_getstate(fi)) {
2216 case DEV_STATE_RUNNING:
2217 if (event == DEV_EVENT_TXDOWN)
2218 fsm_newstate(fi, DEV_STATE_STARTWAIT_TX);
2219 else
2220 fsm_newstate(fi, DEV_STATE_STARTWAIT_RX);
2221 break;
2222 case DEV_STATE_STARTWAIT_RX:
2223 if (event == DEV_EVENT_TXDOWN)
2224 fsm_newstate(fi, DEV_STATE_STARTWAIT_RXTX);
2225 break;
2226 case DEV_STATE_STARTWAIT_TX:
2227 if (event == DEV_EVENT_RXDOWN)
2228 fsm_newstate(fi, DEV_STATE_STARTWAIT_RXTX);
2229 break;
2230 case DEV_STATE_STOPWAIT_RXTX:
2231 if (event == DEV_EVENT_TXDOWN)
2232 fsm_newstate(fi, DEV_STATE_STOPWAIT_RX);
2233 else
2234 fsm_newstate(fi, DEV_STATE_STOPWAIT_TX);
2235 break;
2236 case DEV_STATE_STOPWAIT_RX:
2237 if (event == DEV_EVENT_RXDOWN)
2238 fsm_newstate(fi, DEV_STATE_STOPPED);
2239 break;
2240 case DEV_STATE_STOPWAIT_TX:
2241 if (event == DEV_EVENT_TXDOWN)
2242 fsm_newstate(fi, DEV_STATE_STOPPED);
2243 break;
2244 }
2245 if (IS_MPC(priv)) {
2246 if (event == DEV_EVENT_RXDOWN)
2247 mpc_channel_action(priv->channel[CTCM_READ],
2248 CTCM_READ, MPC_CHANNEL_REMOVE);
2249 else
2250 mpc_channel_action(priv->channel[CTCM_WRITE],
2251 CTCM_WRITE, MPC_CHANNEL_REMOVE);
2252 }
2253 }
2254
2255 const fsm_node dev_fsm[] = {
2256 { DEV_STATE_STOPPED, DEV_EVENT_START, dev_action_start },
2257 { DEV_STATE_STOPWAIT_RXTX, DEV_EVENT_START, dev_action_start },
2258 { DEV_STATE_STOPWAIT_RXTX, DEV_EVENT_RXDOWN, dev_action_chdown },
2259 { DEV_STATE_STOPWAIT_RXTX, DEV_EVENT_TXDOWN, dev_action_chdown },
2260 { DEV_STATE_STOPWAIT_RXTX, DEV_EVENT_RESTART, dev_action_restart },
2261 { DEV_STATE_STOPWAIT_RX, DEV_EVENT_START, dev_action_start },
2262 { DEV_STATE_STOPWAIT_RX, DEV_EVENT_RXUP, dev_action_chup },
2263 { DEV_STATE_STOPWAIT_RX, DEV_EVENT_TXUP, dev_action_chup },
2264 { DEV_STATE_STOPWAIT_RX, DEV_EVENT_RXDOWN, dev_action_chdown },
2265 { DEV_STATE_STOPWAIT_RX, DEV_EVENT_RESTART, dev_action_restart },
2266 { DEV_STATE_STOPWAIT_TX, DEV_EVENT_START, dev_action_start },
2267 { DEV_STATE_STOPWAIT_TX, DEV_EVENT_RXUP, dev_action_chup },
2268 { DEV_STATE_STOPWAIT_TX, DEV_EVENT_TXUP, dev_action_chup },
2269 { DEV_STATE_STOPWAIT_TX, DEV_EVENT_TXDOWN, dev_action_chdown },
2270 { DEV_STATE_STOPWAIT_TX, DEV_EVENT_RESTART, dev_action_restart },
2271 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_STOP, dev_action_stop },
2272 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_RXUP, dev_action_chup },
2273 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_TXUP, dev_action_chup },
2274 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_RXDOWN, dev_action_chdown },
2275 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_TXDOWN, dev_action_chdown },
2276 { DEV_STATE_STARTWAIT_RXTX, DEV_EVENT_RESTART, dev_action_restart },
2277 { DEV_STATE_STARTWAIT_TX, DEV_EVENT_STOP, dev_action_stop },
2278 { DEV_STATE_STARTWAIT_TX, DEV_EVENT_RXUP, dev_action_chup },
2279 { DEV_STATE_STARTWAIT_TX, DEV_EVENT_TXUP, dev_action_chup },
2280 { DEV_STATE_STARTWAIT_TX, DEV_EVENT_RXDOWN, dev_action_chdown },
2281 { DEV_STATE_STARTWAIT_TX, DEV_EVENT_RESTART, dev_action_restart },
2282 { DEV_STATE_STARTWAIT_RX, DEV_EVENT_STOP, dev_action_stop },
2283 { DEV_STATE_STARTWAIT_RX, DEV_EVENT_RXUP, dev_action_chup },
2284 { DEV_STATE_STARTWAIT_RX, DEV_EVENT_TXUP, dev_action_chup },
2285 { DEV_STATE_STARTWAIT_RX, DEV_EVENT_TXDOWN, dev_action_chdown },
2286 { DEV_STATE_STARTWAIT_RX, DEV_EVENT_RESTART, dev_action_restart },
2287 { DEV_STATE_RUNNING, DEV_EVENT_STOP, dev_action_stop },
2288 { DEV_STATE_RUNNING, DEV_EVENT_RXDOWN, dev_action_chdown },
2289 { DEV_STATE_RUNNING, DEV_EVENT_TXDOWN, dev_action_chdown },
2290 { DEV_STATE_RUNNING, DEV_EVENT_TXUP, ctcm_action_nop },
2291 { DEV_STATE_RUNNING, DEV_EVENT_RXUP, ctcm_action_nop },
2292 { DEV_STATE_RUNNING, DEV_EVENT_RESTART, dev_action_restart },
2293 };
2294
2295 int dev_fsm_len = ARRAY_SIZE(dev_fsm);
2296
2297 /* --- This is the END my friend --- */
2298
2299