2 * Copyright (C) 1996 SpellCaster Telecommunications Inc.
4 * This software may be used and distributed according to the terms
5 * of the GNU General Public License, incorporated herein by reference.
15 static int GetStatus(int card, boardInfo *);
18 * Process private IOCTL messages (typically from scctrl)
20 int sc_ioctl(int card, scs_ioctl *data)
29 rcvmsg = kmalloc(sizeof(RspMessage), GFP_KERNEL);
33 switch(data->command) {
34 case SCIOCRESET: /* Perform a hard reset of the adapter */
36 pr_debug("%s: SCIOCRESET: ioctl received\n",
37 sc_adapter[card]->devicename);
38 sc_adapter[card]->StartOnReset = 0;
47 srec = kmalloc(SCIOC_SRECSIZE, GFP_KERNEL);
52 pr_debug("%s: SCIOLOAD: ioctl received\n",
53 sc_adapter[card]->devicename);
54 if(sc_adapter[card]->EngineUp) {
55 pr_debug("%s: SCIOCLOAD: command failed, LoadProc while engine running.\n",
56 sc_adapter[card]->devicename);
63 * Get the SRec from user space
65 if (copy_from_user(srec, data->dataptr, SCIOC_SRECSIZE)) {
71 status = send_and_receive(card, CMPID, cmReqType2, cmReqClass0, cmReqLoadProc,
72 0, SCIOC_SRECSIZE, srec, rcvmsg, SAR_TIMEOUT);
77 pr_debug("%s: SCIOCLOAD: command failed, status = %d\n",
78 sc_adapter[card]->devicename, status);
82 pr_debug("%s: SCIOCLOAD: command successful\n",
83 sc_adapter[card]->devicename);
91 pr_debug("%s: SCIOSTART: ioctl received\n",
92 sc_adapter[card]->devicename);
93 if(sc_adapter[card]->EngineUp) {
94 pr_debug("%s: SCIOCSTART: command failed, engine already running.\n",
95 sc_adapter[card]->devicename);
99 sc_adapter[card]->StartOnReset = 1;
106 pr_debug("%s: SCIOSETSWITCH: ioctl received\n",
107 sc_adapter[card]->devicename);
110 * Get the switch type from user space
112 if (copy_from_user(&switchtype, data->dataptr, sizeof(char))) {
117 pr_debug("%s: SCIOCSETSWITCH: setting switch type to %d\n",
118 sc_adapter[card]->devicename,
120 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0, ceReqCallSetSwitchType,
121 0, sizeof(char),&switchtype, rcvmsg, SAR_TIMEOUT);
122 if(!status && !(rcvmsg->rsp_status)) {
123 pr_debug("%s: SCIOCSETSWITCH: command successful\n",
124 sc_adapter[card]->devicename);
129 pr_debug("%s: SCIOCSETSWITCH: command failed (status = %d)\n",
130 sc_adapter[card]->devicename, status);
138 pr_debug("%s: SCIOGETSWITCH: ioctl received\n",
139 sc_adapter[card]->devicename);
142 * Get the switch type from the board
144 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0,
145 ceReqCallGetSwitchType, 0, 0, NULL, rcvmsg, SAR_TIMEOUT);
146 if (!status && !(rcvmsg->rsp_status)) {
147 pr_debug("%s: SCIOCGETSWITCH: command successful\n",
148 sc_adapter[card]->devicename);
151 pr_debug("%s: SCIOCGETSWITCH: command failed (status = %d)\n",
152 sc_adapter[card]->devicename, status);
157 switchtype = rcvmsg->msg_data.byte_array[0];
160 * Package the switch type and send to user space
162 if (copy_to_user(data->dataptr, &switchtype,
174 pr_debug("%s: SCIOGETSPID: ioctl received\n",
175 sc_adapter[card]->devicename);
177 spid = kmalloc(SCIOC_SPIDSIZE, GFP_KERNEL);
183 * Get the spid from the board
185 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0, ceReqCallGetSPID,
186 data->channel, 0, NULL, rcvmsg, SAR_TIMEOUT);
188 pr_debug("%s: SCIOCGETSPID: command successful\n",
189 sc_adapter[card]->devicename);
191 pr_debug("%s: SCIOCGETSPID: command failed (status = %d)\n",
192 sc_adapter[card]->devicename, status);
197 strcpy(spid, rcvmsg->msg_data.byte_array);
200 * Package the switch type and send to user space
202 if (copy_to_user(data->dataptr, spid, SCIOC_SPIDSIZE)) {
215 pr_debug("%s: DCBIOSETSPID: ioctl received\n",
216 sc_adapter[card]->devicename);
218 spid = kmalloc(SCIOC_SPIDSIZE, GFP_KERNEL);
225 * Get the spid from user space
227 if (copy_from_user(spid, data->dataptr, SCIOC_SPIDSIZE)) {
233 pr_debug("%s: SCIOCSETSPID: setting channel %d spid to %s\n",
234 sc_adapter[card]->devicename, data->channel, spid);
235 status = send_and_receive(card, CEPID, ceReqTypeCall,
236 ceReqClass0, ceReqCallSetSPID, data->channel,
237 strlen(spid), spid, rcvmsg, SAR_TIMEOUT);
238 if(!status && !(rcvmsg->rsp_status)) {
239 pr_debug("%s: SCIOCSETSPID: command successful\n",
240 sc_adapter[card]->devicename);
246 pr_debug("%s: SCIOCSETSPID: command failed (status = %d)\n",
247 sc_adapter[card]->devicename, status);
256 pr_debug("%s: SCIOGETDN: ioctl received\n",
257 sc_adapter[card]->devicename);
260 * Get the dn from the board
262 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0, ceReqCallGetMyNumber,
263 data->channel, 0, NULL, rcvmsg, SAR_TIMEOUT);
265 pr_debug("%s: SCIOCGETDN: command successful\n",
266 sc_adapter[card]->devicename);
269 pr_debug("%s: SCIOCGETDN: command failed (status = %d)\n",
270 sc_adapter[card]->devicename, status);
275 dn = kmalloc(SCIOC_DNSIZE, GFP_KERNEL);
280 strcpy(dn, rcvmsg->msg_data.byte_array);
284 * Package the dn and send to user space
286 if (copy_to_user(data->dataptr, dn, SCIOC_DNSIZE)) {
296 pr_debug("%s: SCIOSETDN: ioctl received\n",
297 sc_adapter[card]->devicename);
299 dn = kmalloc(SCIOC_DNSIZE, GFP_KERNEL);
305 * Get the spid from user space
307 if (copy_from_user(dn, data->dataptr, SCIOC_DNSIZE)) {
313 pr_debug("%s: SCIOCSETDN: setting channel %d dn to %s\n",
314 sc_adapter[card]->devicename, data->channel, dn);
315 status = send_and_receive(card, CEPID, ceReqTypeCall,
316 ceReqClass0, ceReqCallSetMyNumber, data->channel,
317 strlen(dn),dn,rcvmsg, SAR_TIMEOUT);
318 if(!status && !(rcvmsg->rsp_status)) {
319 pr_debug("%s: SCIOCSETDN: command successful\n",
320 sc_adapter[card]->devicename);
326 pr_debug("%s: SCIOCSETDN: command failed (status = %d)\n",
327 sc_adapter[card]->devicename, status);
336 pr_debug("%s: SCIOTRACE: ioctl received\n",
337 sc_adapter[card]->devicename);
338 /* sc_adapter[card]->trace = !sc_adapter[card]->trace;
339 pr_debug("%s: SCIOCTRACE: tracing turned %s\n",
340 sc_adapter[card]->devicename,
341 sc_adapter[card]->trace ? "ON" : "OFF"); */
348 pr_debug("%s: SCIOSTAT: ioctl received\n",
349 sc_adapter[card]->devicename);
351 bi = kmalloc (sizeof(boardInfo), GFP_KERNEL);
360 if (copy_to_user(data->dataptr, bi, sizeof(boardInfo))) {
371 pr_debug("%s: SCIOGETSPEED: ioctl received\n",
372 sc_adapter[card]->devicename);
375 * Get the speed from the board
377 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0,
378 ceReqCallGetCallType, data->channel, 0, NULL, rcvmsg, SAR_TIMEOUT);
379 if (!status && !(rcvmsg->rsp_status)) {
380 pr_debug("%s: SCIOCGETSPEED: command successful\n",
381 sc_adapter[card]->devicename);
384 pr_debug("%s: SCIOCGETSPEED: command failed (status = %d)\n",
385 sc_adapter[card]->devicename, status);
390 speed = rcvmsg->msg_data.byte_array[0];
395 * Package the switch type and send to user space
398 if (copy_to_user(data->dataptr, &speed, sizeof(char)))
405 pr_debug("%s: SCIOCSETSPEED: ioctl received\n",
406 sc_adapter[card]->devicename);
410 pr_debug("%s: SCIOCLOOPTST: ioctl received\n",
411 sc_adapter[card]->devicename);
423 static int GetStatus(int card, boardInfo *bi)
429 * Fill in some of the basic info about the board
431 bi->modelid = sc_adapter[card]->model;
432 strcpy(bi->serial_no, sc_adapter[card]->hwconfig.serial_no);
433 strcpy(bi->part_no, sc_adapter[card]->hwconfig.part_no);
434 bi->iobase = sc_adapter[card]->iobase;
435 bi->rambase = sc_adapter[card]->rambase;
436 bi->irq = sc_adapter[card]->interrupt;
437 bi->ramsize = sc_adapter[card]->hwconfig.ram_size;
438 bi->interface = sc_adapter[card]->hwconfig.st_u_sense;
439 strcpy(bi->load_ver, sc_adapter[card]->load_ver);
440 strcpy(bi->proc_ver, sc_adapter[card]->proc_ver);
443 * Get the current PhyStats and LnkStats
445 status = send_and_receive(card, CEPID, ceReqTypePhy, ceReqClass2,
446 ceReqPhyStatus, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
448 if(sc_adapter[card]->model < PRI_BOARD) {
449 bi->l1_status = rcvmsg.msg_data.byte_array[2];
450 for(i = 0 ; i < BRI_CHANNELS ; i++)
451 bi->status.bristats[i].phy_stat =
452 rcvmsg.msg_data.byte_array[i];
455 bi->l1_status = rcvmsg.msg_data.byte_array[0];
456 bi->l2_status = rcvmsg.msg_data.byte_array[1];
457 for(i = 0 ; i < PRI_CHANNELS ; i++)
458 bi->status.pristats[i].phy_stat =
459 rcvmsg.msg_data.byte_array[i+2];
464 * Get the call types for each channel
466 for (i = 0 ; i < sc_adapter[card]->nChannels ; i++) {
467 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0,
468 ceReqCallGetCallType, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
470 if (sc_adapter[card]->model == PRI_BOARD) {
471 bi->status.pristats[i].call_type =
472 rcvmsg.msg_data.byte_array[0];
475 bi->status.bristats[i].call_type =
476 rcvmsg.msg_data.byte_array[0];
482 * If PRI, get the call states and service states for each channel
484 if (sc_adapter[card]->model == PRI_BOARD) {
486 * Get the call states
488 status = send_and_receive(card, CEPID, ceReqTypeStat, ceReqClass2,
489 ceReqPhyChCallState, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
491 for( i = 0 ; i < PRI_CHANNELS ; i++ )
492 bi->status.pristats[i].call_state =
493 rcvmsg.msg_data.byte_array[i];
497 * Get the service states
499 status = send_and_receive(card, CEPID, ceReqTypeStat, ceReqClass2,
500 ceReqPhyChServState, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
502 for( i = 0 ; i < PRI_CHANNELS ; i++ )
503 bi->status.pristats[i].serv_state =
504 rcvmsg.msg_data.byte_array[i];
508 * Get the link stats for the channels
510 for (i = 1 ; i <= PRI_CHANNELS ; i++) {
511 status = send_and_receive(card, CEPID, ceReqTypeLnk, ceReqClass0,
512 ceReqLnkGetStats, i, 0, NULL, &rcvmsg, SAR_TIMEOUT);
514 bi->status.pristats[i-1].link_stats.tx_good =
515 (unsigned long)rcvmsg.msg_data.byte_array[0];
516 bi->status.pristats[i-1].link_stats.tx_bad =
517 (unsigned long)rcvmsg.msg_data.byte_array[4];
518 bi->status.pristats[i-1].link_stats.rx_good =
519 (unsigned long)rcvmsg.msg_data.byte_array[8];
520 bi->status.pristats[i-1].link_stats.rx_bad =
521 (unsigned long)rcvmsg.msg_data.byte_array[12];
526 * Link stats for the D channel
528 status = send_and_receive(card, CEPID, ceReqTypeLnk, ceReqClass0,
529 ceReqLnkGetStats, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
531 bi->dch_stats.tx_good = (unsigned long)rcvmsg.msg_data.byte_array[0];
532 bi->dch_stats.tx_bad = (unsigned long)rcvmsg.msg_data.byte_array[4];
533 bi->dch_stats.rx_good = (unsigned long)rcvmsg.msg_data.byte_array[8];
534 bi->dch_stats.rx_bad = (unsigned long)rcvmsg.msg_data.byte_array[12];
541 * If BRI or POTS, Get SPID, DN and call types for each channel
545 * Get the link stats for the channels
547 status = send_and_receive(card, CEPID, ceReqTypeLnk, ceReqClass0,
548 ceReqLnkGetStats, 0, 0, NULL, &rcvmsg, SAR_TIMEOUT);
550 bi->dch_stats.tx_good = (unsigned long)rcvmsg.msg_data.byte_array[0];
551 bi->dch_stats.tx_bad = (unsigned long)rcvmsg.msg_data.byte_array[4];
552 bi->dch_stats.rx_good = (unsigned long)rcvmsg.msg_data.byte_array[8];
553 bi->dch_stats.rx_bad = (unsigned long)rcvmsg.msg_data.byte_array[12];
554 bi->status.bristats[0].link_stats.tx_good =
555 (unsigned long)rcvmsg.msg_data.byte_array[16];
556 bi->status.bristats[0].link_stats.tx_bad =
557 (unsigned long)rcvmsg.msg_data.byte_array[20];
558 bi->status.bristats[0].link_stats.rx_good =
559 (unsigned long)rcvmsg.msg_data.byte_array[24];
560 bi->status.bristats[0].link_stats.rx_bad =
561 (unsigned long)rcvmsg.msg_data.byte_array[28];
562 bi->status.bristats[1].link_stats.tx_good =
563 (unsigned long)rcvmsg.msg_data.byte_array[32];
564 bi->status.bristats[1].link_stats.tx_bad =
565 (unsigned long)rcvmsg.msg_data.byte_array[36];
566 bi->status.bristats[1].link_stats.rx_good =
567 (unsigned long)rcvmsg.msg_data.byte_array[40];
568 bi->status.bristats[1].link_stats.rx_bad =
569 (unsigned long)rcvmsg.msg_data.byte_array[44];
575 for (i = 0 ; i < BRI_CHANNELS ; i++) {
576 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0,
577 ceReqCallGetSPID, i+1, 0, NULL, &rcvmsg, SAR_TIMEOUT);
579 strcpy(bi->status.bristats[i].spid, rcvmsg.msg_data.byte_array);
585 for (i = 0 ; i < BRI_CHANNELS ; i++) {
586 status = send_and_receive(card, CEPID, ceReqTypeCall, ceReqClass0,
587 ceReqCallGetMyNumber, i+1, 0, NULL, &rcvmsg, SAR_TIMEOUT);
589 strcpy(bi->status.bristats[i].dn, rcvmsg.msg_data.byte_array);